--- a/go.mod
+++ b/go.mod
@@ -61,26 +61,26 @@
 	go.etcd.io/etcd/client/v3 v3.6.5
 	go.opentelemetry.io/contrib/instrumentation/github.com/emicklei/go-restful/otelrestful v0.44.0
 	go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.61.0
-	go.opentelemetry.io/otel v1.41.0
+	go.opentelemetry.io/otel v1.43.0
 	go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.34.0
-	go.opentelemetry.io/otel/metric v1.41.0
-	go.opentelemetry.io/otel/sdk v1.36.0
-	go.opentelemetry.io/otel/trace v1.41.0
+	go.opentelemetry.io/otel/metric v1.43.0
+	go.opentelemetry.io/otel/sdk v1.43.0
+	go.opentelemetry.io/otel/trace v1.43.0
 	go.opentelemetry.io/proto/otlp v1.5.0
 	go.uber.org/goleak v1.3.0
 	go.uber.org/zap v1.27.0
 	go.yaml.in/yaml/v2 v2.4.3
-	golang.org/x/crypto v0.53.0
-	golang.org/x/net v0.56.0
-	golang.org/x/oauth2 v0.30.0
-	golang.org/x/sync v0.21.0
-	golang.org/x/sys v0.46.0
-	golang.org/x/term v0.44.0
-	golang.org/x/text v0.39.0
+	golang.org/x/crypto v0.54.0
+	golang.org/x/net v0.57.0
+	golang.org/x/oauth2 v0.36.0
+	golang.org/x/sync v0.22.0
+	golang.org/x/sys v0.47.0
+	golang.org/x/term v0.45.0
+	golang.org/x/text v0.41.0
 	golang.org/x/time v0.9.0
-	golang.org/x/tools v0.47.0
-	google.golang.org/genproto/googleapis/rpc v0.0.0-20250528174236-200df99c418a
-	google.golang.org/grpc v1.72.2
+	golang.org/x/tools v0.48.0
+	google.golang.org/genproto/googleapis/rpc v0.0.0-20260414002931-afd174a4e478
+	google.golang.org/grpc v1.79.3
 	google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af
 	gopkg.in/evanphx/json-patch.v4 v4.13.0
 	gopkg.in/go-jose/go-jose.v2 v2.6.3
@@ -125,7 +125,7 @@
 )
 
 require (
-	cel.dev/expr v0.24.0 // indirect
+	cel.dev/expr v0.25.1 // indirect
 	cyphar.com/go-pathrs v0.2.1 // indirect
 	github.com/Azure/go-ansiterm v0.0.0-20230124172434-306776ec8161 // indirect
 	github.com/MakeNowJust/heredoc v1.0.0 // indirect
@@ -211,8 +211,8 @@
 	go.uber.org/multierr v1.11.0 // indirect
 	go.yaml.in/yaml/v3 v3.0.4 // indirect
 	golang.org/x/exp v0.0.0-20240719175910-8a7402abbf56 // indirect
-	golang.org/x/mod v0.37.0 // indirect
-	google.golang.org/genproto/googleapis/api v0.0.0-20250303144028-a0af3efb3deb // indirect
+	golang.org/x/mod v0.38.0 // indirect
+	google.golang.org/genproto/googleapis/api v0.0.0-20260414002931-afd174a4e478 // indirect
 	gopkg.in/inf.v0 v0.9.1 // indirect
 	gopkg.in/natefinch/lumberjack.v2 v2.2.1 // indirect
 	gopkg.in/yaml.v3 v3.0.1 // indirect
@@ -256,3 +256,9 @@
 	k8s.io/sample-cli-plugin => ./staging/src/k8s.io/sample-cli-plugin
 	k8s.io/sample-controller => ./staging/src/k8s.io/sample-controller
 )
+
+replace go.opentelemetry.io/otel/sdk => go.opentelemetry.io/otel/sdk v1.43.0
+
+replace golang.org/x/crypto => golang.org/x/crypto v0.55.0
+
+replace google.golang.org/grpc => google.golang.org/grpc v1.82.1
--- a/go.sum
+++ b/go.sum
@@ -1,14 +1,11 @@
 bitbucket.org/bertimus9/systemstat v0.5.0 h1:n0aLnh2Jo4nBUBym9cE5PJDG8GT6g+4VuS2Ya2jYYpA=
 bitbucket.org/bertimus9/systemstat v0.5.0/go.mod h1:EkUWPp8lKFPMXP8vnbpT5JDI0W/sTiLZAvN8ONWErHY=
-buf.build/gen/go/bufbuild/protovalidate/protocolbuffers/go v1.36.4-20250130201111-63bb56e20495.1/go.mod h1:novQBstnxcGpfKf8qGRATqn1anQKwMJIbH5Q581jibU=
-cel.dev/expr v0.24.0 h1:56OvJKSH3hDGL0ml5uSxZmz3/3Pq4tJ+fb1unVLAFcY=
-cel.dev/expr v0.24.0/go.mod h1:hLPLo1W4QUmuYdA72RBX06QTs6MXw941piREPl3Yfiw=
-cloud.google.com/go/compute/metadata v0.7.0/go.mod h1:j5MvL9PprKL39t166CoB1uVHfQMs4tFQZZcKwksXUjo=
+cel.dev/expr v0.25.1 h1:1KrZg61W6TWSxuNZ37Xy49ps13NUovb66QLprthtwi4=
+cel.dev/expr v0.25.1/go.mod h1:hrXvqGP6G6gyx8UAHSHJ5RGk//1Oj5nXQ2NI02Nrsg4=
 cyphar.com/go-pathrs v0.2.1 h1:9nx1vOgwVvX1mNBWDu93+vaceedpbsDqo+XuBGL40b8=
 cyphar.com/go-pathrs v0.2.1/go.mod h1:y8f1EMG7r+hCuFf/rXsKqMJrJAUoADZGNh5/vZPKcGc=
 github.com/Azure/go-ansiterm v0.0.0-20230124172434-306776ec8161 h1:L/gRVlceqvL25UVaW/CKtUDjefjrs0SPonmDGUVOYP0=
 github.com/Azure/go-ansiterm v0.0.0-20230124172434-306776ec8161/go.mod h1:xomTg63KZ2rFqZQzSB4Vz2SUXa1BpHTVz9L5PTmPC4E=
-github.com/GoogleCloudPlatform/opentelemetry-operations-go/detectors/gcp v1.26.0/go.mod h1:2bIszWvQRlJVmJLiuLhukLImRjKPcYdzzsx6darK02A=
 github.com/JeffAshton/win_pdh v0.0.0-20161109143554-76bb4ee9f0ab h1:UKkYhof1njT1/xq4SEg5z+VpTgjmNeHwPGRQl7takDI=
 github.com/JeffAshton/win_pdh v0.0.0-20161109143554-76bb4ee9f0ab/go.mod h1:3VYc5hodBMJ5+l/7J4xAyMeuM2PNuepvHlGs8yilUCA=
 github.com/MakeNowJust/heredoc v1.0.0 h1:cXCdzVdstXyiTqTvfqk9SDHpKNjxuom+DOlyEeQ4pzQ=
@@ -21,42 +18,22 @@
 github.com/Microsoft/hnslib v0.1.2/go.mod h1:5vTyBey4N/VI2ZTNh2gdWhkPMefSbCFYjpvVwye+qtI=
 github.com/NYTimes/gziphandler v1.1.1 h1:ZUDjpQae29j0ryrS0u/B8HZfJBtBQHjqw2rQ2cqUQ3I=
 github.com/NYTimes/gziphandler v1.1.1/go.mod h1:n/CVRwUEOgIxrgPvAQhUUr9oeUtvrhMomdKFjzJNB0c=
-github.com/alecthomas/kingpin/v2 v2.4.0/go.mod h1:0gyi0zQnjuFk8xrkNKamJoyUo382HRL7ATRpFZCw6tE=
-github.com/alecthomas/units v0.0.0-20211218093645-b94a6e3cc137/go.mod h1:OMCwj8VM1Kc9e19TLln2VL61YJF0x1XFtfdL4JdbSyE=
-github.com/antihax/optional v1.0.0/go.mod h1:uupD/76wgC+ih3iEmQUL+0Ugr19nfwCT1kdvxnR2qWY=
 github.com/antlr4-go/antlr/v4 v4.13.0 h1:lxCg3LAv+EUK6t1i0y1V6/SLeUi0eKEKdhQAlS8TVTI=
 github.com/antlr4-go/antlr/v4 v4.13.0/go.mod h1:pfChB/xh/Unjila75QW7+VU4TSnWnnk9UTnmpPaOR2g=
 github.com/armon/circbuf v0.0.0-20190214190532-5111143e8da2 h1:7Ip0wMmLHLRJdrloDxZfhMm0xrLXZS8+COSu2bXmEQs=
 github.com/armon/circbuf v0.0.0-20190214190532-5111143e8da2/go.mod h1:3U/XgcO3hCbHZ8TKRvWD2dDTCfh9M9ya+I9JpbB7O8o=
 github.com/armon/go-socks5 v0.0.0-20160902184237-e75332964ef5 h1:0CwZNZbxp69SHPdPJAN/hZIm0C4OItdklCFmMRWYpio=
 github.com/armon/go-socks5 v0.0.0-20160902184237-e75332964ef5/go.mod h1:wHh0iHkYZB8zMSxRWpUBQtwG5a7fFgvEO+odwuTv2gs=
-github.com/aws/aws-sdk-go-v2 v1.36.3/go.mod h1:LLXuLpgzEbD766Z5ECcRmi8AzSwfZItDtmABVkRLGzg=
-github.com/aws/aws-sdk-go-v2/config v1.29.14/go.mod h1:wVPHWcIFv3WO89w0rE10gzf17ZYy+UVS1Geq8Iei34g=
-github.com/aws/aws-sdk-go-v2/credentials v1.17.67/go.mod h1:p3C44m+cfnbv763s52gCqrjaqyPikj9Sg47kUVaNZQQ=
-github.com/aws/aws-sdk-go-v2/feature/ec2/imds v1.16.30/go.mod h1:Jpne2tDnYiFascUEs2AWHJL9Yp7A5ZVy3TNyxaAjD6M=
-github.com/aws/aws-sdk-go-v2/internal/configsources v1.3.34/go.mod h1:p4VfIceZokChbA9FzMbRGz5OV+lekcVtHlPKEO0gSZY=
-github.com/aws/aws-sdk-go-v2/internal/endpoints/v2 v2.6.34/go.mod h1:dFZsC0BLo346mvKQLWmoJxT+Sjp+qcVR1tRVHQGOH9Q=
-github.com/aws/aws-sdk-go-v2/internal/ini v1.8.3/go.mod h1:H5O/EsxDWyU+LP/V8i5sm8cxoZgc2fdNR9bxlOFrQTo=
-github.com/aws/aws-sdk-go-v2/service/internal/accept-encoding v1.12.3/go.mod h1:0yKJC/kb8sAnmlYa6Zs3QVYqaC8ug2AbnNChv5Ox3uA=
-github.com/aws/aws-sdk-go-v2/service/internal/presigned-url v1.12.15/go.mod h1:SwFBy2vjtA0vZbjjaFtfN045boopadnoVPhu4Fv66vY=
-github.com/aws/aws-sdk-go-v2/service/sso v1.25.3/go.mod h1:qs4a9T5EMLl/Cajiw2TcbNt2UNo/Hqlyp+GiuG4CFDI=
-github.com/aws/aws-sdk-go-v2/service/ssooidc v1.30.1/go.mod h1:MlYRNmYu/fGPoxBQVvBYr9nyr948aY/WLUvwBMBJubs=
-github.com/aws/aws-sdk-go-v2/service/sts v1.33.19/go.mod h1:cQnB8CUnxbMU82JvlqjKR2HBOm3fe9pWorWBza6MBJ4=
-github.com/aws/smithy-go v1.22.3/go.mod h1:t1ufH5HMublsJYulve2RKmHDC15xu1f26kHCp/HgceI=
 github.com/beorn7/perks v1.0.1 h1:VlbKKnNfV8bJzeqoa4cOKqO6bYr3WgKZxO8Z16+hsOM=
 github.com/beorn7/perks v1.0.1/go.mod h1:G2ZrVWU2WbWT9wwq4/hrbKbnv/1ERSJQ0ibhJ6rlkpw=
 github.com/blang/semver/v4 v4.0.0 h1:1PFHFE6yCCTv8C1TeyNNarDzntLi7wMI5i/pzqYIsAM=
 github.com/blang/semver/v4 v4.0.0/go.mod h1:IbckMUScFkM3pff0VJDNKRiT6TG/YpiHIM2yvyW5YoQ=
-github.com/bufbuild/protovalidate-go v0.9.1/go.mod h1:5jptBxfvlY51RhX32zR6875JfPBRXUsQjyZjm/NqkLQ=
 github.com/cenkalti/backoff/v4 v4.3.0 h1:MyRJ/UdXutAwSAT+s3wNd7MfTIcy71VQueUuFK343L8=
 github.com/cenkalti/backoff/v4 v4.3.0/go.mod h1:Y3VNntkOUPxTVeUxJ/G5vcM//AlwfmyYozVcomhLiZE=
 github.com/cespare/xxhash/v2 v2.3.0 h1:UL815xU9SqsFlibzuggzjXhog7bL6oX9BbNZnL2UFvs=
 github.com/cespare/xxhash/v2 v2.3.0/go.mod h1:VGX0DQ3Q6kWi7AoAeZDth3/j3BFtOZR5XLFGgcrjCOs=
 github.com/chai2010/gettext-go v1.0.2 h1:1Lwwip6Q2QGsAdl/ZKPCwTe9fe0CjlUbqj5bFNSjIRk=
 github.com/chai2010/gettext-go v1.0.2/go.mod h1:y+wnP2cHYaVj19NZhYKAwEMH2CI1gNHeQQ+5AjwawxA=
-github.com/chzyer/readline v1.5.1/go.mod h1:Eh+b79XXUwfKfcPLepksvw2tcLE/Ct21YObkaSkeBlk=
-github.com/cilium/ebpf v0.17.3/go.mod h1:G5EDHij8yiLzaqn0WjyfJHvRa+3aDlReIaLVRMvOyJk=
-github.com/cncf/xds/go v0.0.0-20250121191232-2f005788dc42/go.mod h1:W+zGtBO5Y1IgJhy4+A9GOqVhqLpfZi+vwmdNXUehLA8=
 github.com/cockroachdb/datadriven v1.0.2 h1:H9MtNqVoVhvd9nCBwOyDjUEdZCREqbIdCJD93PBm/jA=
 github.com/cockroachdb/datadriven v1.0.2/go.mod h1:a9RdTaap04u637JoCzcUoIcDmvwSUtcUFtT/C3kJlTU=
 github.com/container-storage-interface/spec v1.9.0 h1:zKtX4STsq31Knz3gciCYCi1SXtO2HJDecIjDVboYavY=
@@ -105,10 +82,6 @@
 github.com/dustin/go-humanize v1.0.1/go.mod h1:Mu1zIs6XwVuF/gI1OepvI0qD18qycQx+mFykh5fBlto=
 github.com/emicklei/go-restful/v3 v3.12.2 h1:DhwDP0vY3k8ZzE0RunuJy8GhNpPL6zqLkDf9B/a0/xU=
 github.com/emicklei/go-restful/v3 v3.12.2/go.mod h1:6n3XBCmQQb25CM2LCACGz8ukIrRry+4bhvbpWn3mrbc=
-github.com/envoyproxy/go-control-plane v0.13.4/go.mod h1:kDfuBlDVsSj2MjrLEtRWtHlsWIFcGyB2RMO44Dc5GZA=
-github.com/envoyproxy/go-control-plane/envoy v1.32.4/go.mod h1:Gzjc5k8JcJswLjAx1Zm+wSYE20UrLtt7JZMWiWQXQEw=
-github.com/envoyproxy/go-control-plane/ratelimit v0.1.0/go.mod h1:Wk+tMFAFbCXaJPzVVHnPgRKdUdwW/KdbRt94AzgRee4=
-github.com/envoyproxy/protoc-gen-validate v1.2.1/go.mod h1:d/C80l/jxXLdfEIhX1W2TmLfsJ31lvEjwamM4DxlWXU=
 github.com/euank/go-kmsg-parser v2.0.0+incompatible h1:cHD53+PLQuuQyLZeriD1V/esuG4MuU0Pjs5y6iknohY=
 github.com/euank/go-kmsg-parser v2.0.0+incompatible/go.mod h1:MhmAMZ8V4CYH4ybgdRwPr2TU5ThnS43puaKEMpja1uw=
 github.com/exponent-io/jsonpath v0.0.0-20210407135951-1de76d718b3f h1:Wl78ApPPB2Wvf/TIe2xdyJxTlb6obmF18d8QdkxNDu4=
@@ -130,7 +103,6 @@
 github.com/gkampitakis/go-snaps v0.5.15/go.mod h1:HNpx/9GoKisdhw9AFOBT1N7DBs9DiHo/hGheFGBZ+mc=
 github.com/go-errors/errors v1.4.2 h1:J6MZopCL4uSllY1OfXM374weqZFFItUbrImctkmUxIA=
 github.com/go-errors/errors v1.4.2/go.mod h1:sIVyrIiJhuEF+Pj9Ebtd6P/rEYROXFi3BopGUQ5a5Og=
-github.com/go-jose/go-jose/v4 v4.0.4/go.mod h1:NKb5HO1EZccyMpiZNbdUw/14tiXNyUJh188dfnMCAfc=
 github.com/go-logr/logr v1.2.2/go.mod h1:jdQByPbusPIv2/zmleS9BjJVeZ6kBagPoEUsqbVz/1A=
 github.com/go-logr/logr v1.4.3 h1:CjnDlHq8ikf6E492q6eKboGOC0T8CDaOvkHCIg8idEI=
 github.com/go-logr/logr v1.4.3/go.mod h1:9T104GzyrTigFIr8wt5mBrctHMim0Nb2HLGrmQ40KvY=
@@ -157,8 +129,6 @@
 github.com/gogo/protobuf v1.3.2/go.mod h1:P1XiOD3dCwIKUDQYPy72D8LYyHL2YPYrpS2s69NZV8Q=
 github.com/golang-jwt/jwt/v5 v5.2.2 h1:Rl4B7itRWVtYIHFrSNd7vhTiz9UpLdi6gZhZ3wEeDy8=
 github.com/golang-jwt/jwt/v5 v5.2.2/go.mod h1:pqrtFR0X4osieyHYxtmOUWsAWrfe1Q5UVIyoH402zdk=
-github.com/golang/glog v1.2.4/go.mod h1:6AhwSGph0fcJtXVM/PEHPqZlFeoLxhs7/t5UDAwmO+w=
-github.com/golang/groupcache v0.0.0-20210331224755-41bb18bfe9da/go.mod h1:cIg4eruTrX1D+g88fzRXU5OdNfaM+9IcxsU14FzY7Hc=
 github.com/golang/protobuf v1.5.4 h1:i7eJL8qZTpSEXOPTxNKhASYpMn+8e5Q6AdndVa1dWek=
 github.com/golang/protobuf v1.5.4/go.mod h1:lnTiLA8Wa4RWRcIUkrtSVa5nRhsEGBg48fD6rSs7xps=
 github.com/google/btree v1.1.3 h1:CVpQJjYgC4VbzxeGVHfvZrv1ctoYCAI8vbl07Fcxlyg=
@@ -169,6 +139,7 @@
 github.com/google/cel-go v0.26.0/go.mod h1:A9O8OU9rdvrK5MQyrqfIxo1a0u4g3sF8KB6PUIaryMM=
 github.com/google/gnostic-models v0.7.0 h1:qwTtogB15McXDaNqTZdzPJRHvaVJlAl+HVQnLmJEJxo=
 github.com/google/gnostic-models v0.7.0/go.mod h1:whL5G0m6dmc5cPxKc5bdKdEN3UjI7OUGxBlw57miDrQ=
+github.com/google/go-cmp v0.6.0/go.mod h1:17dUlkBOakJ0+DkrSSNjCkIjxS6bF9zb3elmeNGIjoY=
 github.com/google/go-cmp v0.7.0 h1:wk8382ETsv4JYUZwIsn6YpYiWiBsYLSJiTsyBybVuN8=
 github.com/google/go-cmp v0.7.0/go.mod h1:pXiqmnSA92OHEEa9HXL2W4E7lf9JzCmGVUdgjX3N/iU=
 github.com/google/gofuzz v1.0.0/go.mod h1:dBl0BpW6vV/+mYPU4Po3pmUjxk6FQPldtuIdl/M65Eg=
@@ -182,7 +153,6 @@
 github.com/gorilla/websocket v1.5.4-0.20250319132907-e064f32e3674/go.mod h1:r4w70xmWCQKmi1ONH4KIaBptdivuRPyosB9RmPlGEwA=
 github.com/gregjones/httpcache v0.0.0-20190611155906-901d90724c79 h1:+ngKgrYPPJrOjhax5N+uePQ0Fh1Z7PheYoUI/0nzkPA=
 github.com/gregjones/httpcache v0.0.0-20190611155906-901d90724c79/go.mod h1:FecbI9+v66THATjSRHfNgh1IVFe/9kFxbXtjV0ctIMA=
-github.com/grpc-ecosystem/go-grpc-middleware v1.3.0/go.mod h1:z0ButlSOZa5vEBq9m2m2hlwIgKw+rp3sdCBRoJY+30Y=
 github.com/grpc-ecosystem/go-grpc-middleware/providers/prometheus v1.0.1 h1:qnpSQwGEnkcRpTqNOIR6bJbR0gAorgP9CSALpRcKoAA=
 github.com/grpc-ecosystem/go-grpc-middleware/providers/prometheus v1.0.1/go.mod h1:lXGCsh6c22WGtjr+qGHj1otzZpV/1kwTMAqkwZsnWRU=
 github.com/grpc-ecosystem/go-grpc-middleware/v2 v2.3.0 h1:FbSCl+KggFl+Ocym490i/EyXF4lPgLoUtcSWquBM0Rs=
@@ -191,7 +161,6 @@
 github.com/grpc-ecosystem/go-grpc-prometheus v1.2.0/go.mod h1:8NvIoxWQoOIhqOTXgfV/d3M/q6VIi02HzZEHgUlZvzk=
 github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.3 h1:5ZPtiqj0JL5oKWmcsq4VMaAW5ukBEgSGXEN89zeH1Jo=
 github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.3/go.mod h1:ndYquD05frm2vACXE1nsccT4oJzjhw2arTS2cpUD1PI=
-github.com/ianlancetaylor/demangle v0.0.0-20240312041847-bd984b5ce465/go.mod h1:gx7rwoVhcfuVKG5uya9Hs3Sxj7EIvldVofAWIUtGouw=
 github.com/inconshreveable/mousetrap v1.1.0 h1:wN+x4NVGpMsO7ErUn/mUI3vEoE6Jt13X2s0bqwp9tc8=
 github.com/inconshreveable/mousetrap v1.1.0/go.mod h1:vpF70FUmC8bwa3OWnCshd2FqLfsEA9PFc4w1p2J65bw=
 github.com/ishidawataru/sctp v0.0.0-20250521072954-ae8eb7fa7995 h1:GtGlZy0FQTUGKSGVhzFZixkUXnpRj7s1rKEegNZcy9Y=
@@ -202,10 +171,8 @@
 github.com/josharian/intern v1.0.0/go.mod h1:5DoeVV0s6jJacbCEi61lwdGj/aVlrQvzHFFd8Hwg//Y=
 github.com/joshdk/go-junit v1.0.0 h1:S86cUKIdwBHWwA6xCmFlf3RTLfVXYQfvanM5Uh+K6GE=
 github.com/joshdk/go-junit v1.0.0/go.mod h1:TiiV0PqkaNfFXjEiyjWM3XXrhVyCa1K4Zfga6W52ung=
-github.com/jpillora/backoff v1.0.0/go.mod h1:J/6gKK9jxlEcS3zixgDgUAsiuZ7yrSoa/FX5e0EB2j4=
 github.com/json-iterator/go v1.1.12 h1:PV8peI4a0ysnczrg+LtxykD8LfKY9ML6u2jnxaEnrnM=
 github.com/json-iterator/go v1.1.12/go.mod h1:e30LSqwooZae/UwlEbR2852Gd8hjQvJoHmT4TnhNGBo=
-github.com/julienschmidt/httprouter v1.3.0/go.mod h1:JR6WtHb+2LUe8TCKY3cZOxFyyO8IZAc4RVcycCCAKdM=
 github.com/karrick/godirwalk v1.17.0 h1:b4kY7nqDdioR/6qnbHQyDvmA17u5G1cZ6J+CZXwSWoI=
 github.com/karrick/godirwalk v1.17.0/go.mod h1:j4mkqPuvaLI8mp1DroR3P6ad7cyYd4c1qeJ3RV7ULlk=
 github.com/kisielk/errcheck v1.5.0/go.mod h1:pFxgyoBC7bSaBwPgfKdkLd5X25qrDl4LWUI2bnpBCr8=
@@ -231,7 +198,6 @@
 github.com/mailru/easyjson v0.7.7/go.mod h1:xzfreul335JAWq5oZzymOObrkdz5UnU4kGfJJLY9Nlc=
 github.com/maruel/natural v1.1.1 h1:Hja7XhhmvEFhcByqDoHz9QZbkWey+COd9xWfCfn1ioo=
 github.com/maruel/natural v1.1.1/go.mod h1:v+Rfd79xlw1AgVBjbO0BEQmptqb5HvL/k9GRHB7ZKEg=
-github.com/matttproud/golang_protobuf_extensions v1.0.1/go.mod h1:D8He9yQNgCq6Z5Ld7szi9bcBfOoFv/3dc6xSMkL2PC0=
 github.com/mfridman/tparse v0.18.0 h1:wh6dzOKaIwkUGyKgOntDW4liXSo37qg5AXbIhkMV3vE=
 github.com/mfridman/tparse v0.18.0/go.mod h1:gEvqZTuCgEhPbYk/2lS3Kcxg1GmTxxU7kTC8DvP0i/A=
 github.com/mistifyio/go-zfs v2.1.2-0.20190413222219-f784269be439+incompatible h1:aKW/4cBs+yK6gpqU3K/oIwk9Q/XICqd3zOX/UFuvqmk=
@@ -244,7 +210,6 @@
 github.com/moby/ipvs v1.1.0/go.mod h1:4VJMWuf098bsUMmZEiD4Tjk/O7mOn3l1PTD3s4OoYAs=
 github.com/moby/spdystream v0.5.1 h1:9sNYeYZUcci9R6/w7KDaFWEWeV4LStVG78Mpyq/Zm/Y=
 github.com/moby/spdystream v0.5.1/go.mod h1:xBAYlnt/ay+11ShkdFKNAG7LsyK/tmNBVvVOwrfMgdI=
-github.com/moby/sys/atomicwriter v0.1.0/go.mod h1:Ul8oqv2ZMNHOceF643P6FKPXeCmYtlQMvpizfsSoaWs=
 github.com/moby/sys/mountinfo v0.7.2 h1:1shs6aH5s4o5H2zQLn796ADW1wMrIwHsyJ2v9KouLrg=
 github.com/moby/sys/mountinfo v0.7.2/go.mod h1:1YOa8w8Ih7uW0wALDUgT1dTTSBrZ+HiBLGws92L2RU4=
 github.com/moby/sys/userns v0.1.0 h1:tVLXkFOxVu9A64/yh59slHVv9ahO9UIev4JZusOLG/g=
@@ -261,12 +226,10 @@
 github.com/mohae/deepcopy v0.0.0-20170929034955-c48cc78d4826/go.mod h1:TaXosZuwdSHYgviHp1DAtfrULt5eUgsSMsZf+YrPgl8=
 github.com/monochromegane/go-gitignore v0.0.0-20200626010858-205db1a8cc00 h1:n6/2gBQ3RWajuToeY6ZtZTIKv2v7ThUy5KKusIT0yc0=
 github.com/monochromegane/go-gitignore v0.0.0-20200626010858-205db1a8cc00/go.mod h1:Pm3mSP3c5uWn86xMLZ5Sa7JB9GsEZySvHYXCTK4E9q4=
-github.com/morikuni/aec v1.0.0/go.mod h1:BbKIizmSmc5MMPqRYbxO4ZU0S0+P200+tUnFx7PXmsc=
 github.com/mrunalp/fileutils v0.5.1 h1:F+S7ZlNKnrwHfSwdlgNSkKo67ReVf8o9fel6C3dkm/Q=
 github.com/mrunalp/fileutils v0.5.1/go.mod h1:M1WthSahJixYnrXQl/DFQuteStB1weuxD2QJNHXfbSQ=
 github.com/munnerz/goautoneg v0.0.0-20191010083416-a7dc8b61c822 h1:C3w9PqII01/Oq1c1nUAm88MOHcQC9l5mIlSMApZMrHA=
 github.com/munnerz/goautoneg v0.0.0-20191010083416-a7dc8b61c822/go.mod h1:+n7T8mK8HuQTcFwEeznm/DIxMOiR9yIdICNftLE1DvQ=
-github.com/mwitkow/go-conntrack v0.0.0-20190716064945-2f068394615f/go.mod h1:qRWi+5nqEBWmkhHvq77mSJWrCKwh8bxhgT7d/eI7P4U=
 github.com/mxk/go-flowrate v0.0.0-20140419014527-cca7078d478f h1:y5//uYreIhSUg3J1GEMiLbxo1LJaP8RfCpH6pymGZus=
 github.com/mxk/go-flowrate v0.0.0-20140419014527-cca7078d478f/go.mod h1:ZdcZmHo+o7JKHSa8/e818NopupXU1YMK5fe1lsApnBw=
 github.com/onsi/ginkgo/v2 v2.27.2 h1:LzwLj0b89qtIy6SSASkzlNvX6WktqurSHwkk2ipF/Ns=
@@ -279,7 +242,6 @@
 github.com/opencontainers/go-digest v1.0.0/go.mod h1:0JzlMkj0TRzQZfJkVvzbP0HBR3IKzErnv2BNG4W4MAM=
 github.com/opencontainers/image-spec v1.1.1 h1:y0fUlFfIZhPF1W537XOLg0/fcx6zcHCJwooC2xJA040=
 github.com/opencontainers/image-spec v1.1.1/go.mod h1:qpqAh3Dmcf36wStyyWU+kCeDgrGnAve2nCC8+7h8Q0M=
-github.com/opencontainers/runc v1.3.0/go.mod h1:9wbWt42gV+KRxKRVVugNP6D5+PQciRbenB4fLVsqGPs=
 github.com/opencontainers/runtime-spec v1.2.1 h1:S4k4ryNgEpxW1dzyqffOmhI1BHYcjzU8lpJfSlR0xww=
 github.com/opencontainers/runtime-spec v1.2.1/go.mod h1:jwyrGlmzljRJv/Fgzds9SsS/C5hL+LL3ko9hs6T5lQ0=
 github.com/opencontainers/selinux v1.13.0 h1:Zza88GWezyT7RLql12URvoxsbLfjFx988+LGaWfbL84=
@@ -288,7 +250,6 @@
 github.com/peterbourgon/diskv v2.0.1+incompatible/go.mod h1:uqqh8zWWbv1HBMNONnaR/tNboyR3/BZd58JJSHlUSCU=
 github.com/pkg/errors v0.9.1 h1:FEBLx1zS214owpjy7qsBeixbURkuhQAwrK5UwLGTwt4=
 github.com/pkg/errors v0.9.1/go.mod h1:bwawxfHBFNV+L2hUp1rHADufV3IMtnDRdf1r5NINEl0=
-github.com/planetscale/vtprotobuf v0.6.1-0.20240319094008-0393e58bdf10/go.mod h1:t/avpk3KcrXxUnYOhZhMXJlSEyie6gQbtLq5NM3loB8=
 github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZbAQM=
 github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4=
 github.com/pquerna/cachecontrol v0.1.0 h1:yJMy84ti9h/+OEWa752kBTKv4XC30OtVVHYv/8cTqKc=
@@ -303,13 +264,10 @@
 github.com/prometheus/procfs v0.16.1/go.mod h1:teAbpZRB1iIAJYREa1LsoWUXykVXA1KlTmWl8x/U+Is=
 github.com/robfig/cron/v3 v3.0.1 h1:WdRxkvbJztn8LMz/QEvLN5sBU+xKpSqwwUO1Pjr4qDs=
 github.com/robfig/cron/v3 v3.0.1/go.mod h1:eQICP3HwyT7UooqI/z+Ov+PtYAWygg1TEWWzGIFLtro=
-github.com/rogpeppe/fastuuid v1.2.0/go.mod h1:jVj6XXZzXRy/MSR5jhDC/2q6DgLz+nrA6LYCDYWNEvQ=
 github.com/rogpeppe/go-internal v1.14.1 h1:UQB4HGPB6osV0SQTLymcB4TgvyWu6ZyliaW0tI/otEQ=
 github.com/rogpeppe/go-internal v1.14.1/go.mod h1:MaRKkUm5W0goXpeCfT7UZI6fk/L7L7so1lCWt35ZSgc=
-github.com/russross/blackfriday v1.6.0/go.mod h1:ti0ldHuxg49ri4ksnFxlkCfN+hvslNlmVHqNRXXJNAY=
 github.com/russross/blackfriday/v2 v2.1.0 h1:JIOH55/0cWyOuilr9/qlrm0BSXldqnqwMsf35Ld67mk=
 github.com/russross/blackfriday/v2 v2.1.0/go.mod h1:+Rmxgy9KzJVeS9/2gXHxylqXiyQDYRxCVz55jmeOWTM=
-github.com/santhosh-tekuri/jsonschema/v5 v5.3.1/go.mod h1:uToXkOrWAZ6/Oc07xWQrPOhJotwFIyu2bBVN41fcDUY=
 github.com/sergi/go-diff v1.2.0 h1:XU+rvMAioB0UC3q1MFrIQy4Vo5/4VsRDQQXHsEya6xQ=
 github.com/sergi/go-diff v1.2.0/go.mod h1:STckp+ISIX8hZLjrqAeVduY0gWCT9IjLuqbuNXdaHfM=
 github.com/sirupsen/logrus v1.8.1/go.mod h1:yWOB1SBYBC5VeMP7gHvWumXLIWorT60ONWic61uBYv0=
@@ -322,7 +280,6 @@
 github.com/spf13/pflag v1.0.8/go.mod h1:McXfInJRrz4CZXVZOBLb0bTZqETkiAhM9Iw0y3An2Bg=
 github.com/spf13/pflag v1.0.9 h1:9exaQaMOCwffKiiiYk6/BndUBv+iRViNW+4lEMi0PvY=
 github.com/spf13/pflag v1.0.9/go.mod h1:McXfInJRrz4CZXVZOBLb0bTZqETkiAhM9Iw0y3An2Bg=
-github.com/spiffe/go-spiffe/v2 v2.5.0/go.mod h1:P+NxobPc6wXhVtINNtFjNWGBTreew1GBUCwT2wPmb7g=
 github.com/stoewer/go-strcase v1.3.0 h1:g0eASXYtp+yvN9fK8sH94oCIk0fau9uV1/ZdJ0AVEzs=
 github.com/stoewer/go-strcase v1.3.0/go.mod h1:fAH5hQ5pehh+j3nZfvwdk2RgEgQjAoM8wodgtPmh1xo=
 github.com/stretchr/objx v0.1.0/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME=
@@ -355,7 +312,6 @@
 github.com/vishvananda/netns v0.0.5/go.mod h1:SpkAiCQRtJ6TvvxPnOSyH3BMl6unz3xZlaprSwhNNJM=
 github.com/x448/float16 v0.8.4 h1:qLwI1I70+NjRFUR3zs1JPUCgaCXSh3SW62uAKT1mSBM=
 github.com/x448/float16 v0.8.4/go.mod h1:14CWIYCyZA/cWjXOioeEpHeN/83MdbZDRQHoFcYsOfg=
-github.com/xhit/go-str2duration/v2 v2.1.0/go.mod h1:ohY8p+0f07DiV6Em5LKB0s2YpLtXVyJfNt1+BlmyAsU=
 github.com/xiang90/probing v0.0.0-20221125231312-a49e3df8f510 h1:S2dVYn90KE98chqDkyE9Z4N61UnQd+KOfgp5Iu53llk=
 github.com/xiang90/probing v0.0.0-20221125231312-a49e3df8f510/go.mod h1:UETIi67q53MR2AWcXfiuqkDkRtnGDLqkBTpCHuJHxtU=
 github.com/xlab/treeprint v1.2.0 h1:HzHnuAF1plUN2zGlAFHbSQP2qJ0ZAD3XF5XD7OesXRQ=
@@ -363,7 +319,6 @@
 github.com/yuin/goldmark v1.1.27/go.mod h1:3hX8gzYuyVAZsxl0MRgGTJEmQBFcNTphYh9decYSb74=
 github.com/yuin/goldmark v1.2.1/go.mod h1:3hX8gzYuyVAZsxl0MRgGTJEmQBFcNTphYh9decYSb74=
 github.com/yuin/goldmark v1.4.13/go.mod h1:6yULJ656Px+3vBD8DxQVa3kxgyrAnzto9xy5taEt/CY=
-github.com/zeebo/errs v1.4.0/go.mod h1:sgbWHsvVuTPHcqJJGQ1WhI5KbWlHYz+2+2C/LSEtCw4=
 go.etcd.io/bbolt v1.4.3 h1:dEadXpI6G79deX5prL3QRNP6JB8UxVkqo4UPnHaNXJo=
 go.etcd.io/bbolt v1.4.3/go.mod h1:tKQlpPaYCVFctUIgFKFnAlvbmB3tpy1vkTnDWohtc0E=
 go.etcd.io/etcd/api/v3 v3.6.5 h1:pMMc42276sgR1j1raO/Qv3QI9Af/AuyQUW6CBAWuntA=
@@ -376,12 +331,10 @@
 go.etcd.io/etcd/pkg/v3 v3.6.5/go.mod h1:uqrXrzmMIJDEy5j00bCqhVLzR5jEJIwDp5wTlLwPGOU=
 go.etcd.io/etcd/server/v3 v3.6.5 h1:4RbUb1Bd4y1WkBHmuF+cZII83JNQMuNXzyjwigQ06y0=
 go.etcd.io/etcd/server/v3 v3.6.5/go.mod h1:PLuhyVXz8WWRhzXDsl3A3zv/+aK9e4A9lpQkqawIaH0=
-go.etcd.io/gofail v0.2.0/go.mod h1:nL3ILMGfkXTekKI3clMBNazKnjUZjYLKmBHzsVAnC1o=
 go.etcd.io/raft/v3 v3.6.0 h1:5NtvbDVYpnfZWcIHgGRk9DyzkBIXOi8j+DDp1IcnUWQ=
 go.etcd.io/raft/v3 v3.6.0/go.mod h1:nLvLevg6+xrVtHUmVaTcTz603gQPHfh7kUAwV6YpfGo=
 go.opentelemetry.io/auto/sdk v1.2.1 h1:jXsnJ4Lmnqd11kwkBV2LgLoFMZKizbCi5fNZ/ipaZ64=
 go.opentelemetry.io/auto/sdk v1.2.1/go.mod h1:KRTj+aOaElaLi+wW1kO/DZRXwkF4C5xPbEe3ZiIhN7Y=
-go.opentelemetry.io/contrib/detectors/gcp v1.34.0/go.mod h1:cV4BMFcscUR/ckqLkbfQmF0PRsq8w/lMGzdbCSveBHo=
 go.opentelemetry.io/contrib/instrumentation/github.com/emicklei/go-restful/otelrestful v0.44.0 h1:KemlMZlVwBSEGaO91WKgp41BBFsnWqqj9sKRwmOqC40=
 go.opentelemetry.io/contrib/instrumentation/github.com/emicklei/go-restful/otelrestful v0.44.0/go.mod h1:uq8DrRaen3suIWTpdR/JNHCGpurSvMv9D5Nr5CU5TXc=
 go.opentelemetry.io/contrib/instrumentation/google.golang.org/grpc/otelgrpc v0.60.0 h1:x7wzEgXfnzJcHDwStJT+mxOz4etr2EcexjqhBvmoakw=
@@ -390,24 +343,22 @@
 go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.61.0/go.mod h1:UHB22Z8QsdRDrnAtX4PntOl36ajSxcdUMt1sF7Y6E7Q=
 go.opentelemetry.io/contrib/propagators/b3 v1.19.0 h1:ulz44cpm6V5oAeg5Aw9HyqGFMS6XM7untlMEhD7YzzA=
 go.opentelemetry.io/contrib/propagators/b3 v1.19.0/go.mod h1:OzCmE2IVS+asTI+odXQstRGVfXQ4bXv9nMBRK0nNyqQ=
-go.opentelemetry.io/otel v1.41.0 h1:YlEwVsGAlCvczDILpUXpIpPSL/VPugt7zHThEMLce1c=
-go.opentelemetry.io/otel v1.41.0/go.mod h1:Yt4UwgEKeT05QbLwbyHXEwhnjxNO6D8L5PQP51/46dE=
+go.opentelemetry.io/otel v1.43.0 h1:mYIM03dnh5zfN7HautFE4ieIig9amkNANT+xcVxAj9I=
+go.opentelemetry.io/otel v1.43.0/go.mod h1:JuG+u74mvjvcm8vj8pI5XiHy1zDeoCS2LB1spIq7Ay0=
 go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.34.0 h1:OeNbIYk/2C15ckl7glBlOBp5+WlYsOElzTNmiPW/x60=
 go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.34.0/go.mod h1:7Bept48yIeqxP2OZ9/AqIpYS94h2or0aB4FypJTc8ZM=
 go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.34.0 h1:tgJ0uaNS4c98WRNUEx5U3aDlrDOI5Rs+1Vifcw4DJ8U=
 go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.34.0/go.mod h1:U7HYyW0zt/a9x5J1Kjs+r1f/d4ZHnYFclhYY2+YbeoE=
-go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp v1.27.0/go.mod h1:HVkSiDhTM9BoUJU8qE6j2eSWLLXvi1USXjyd2BXT8PY=
-go.opentelemetry.io/otel/metric v1.41.0 h1:rFnDcs4gRzBcsO9tS8LCpgR0dxg4aaxWlJxCno7JlTQ=
-go.opentelemetry.io/otel/metric v1.41.0/go.mod h1:xPvCwd9pU0VN8tPZYzDZV/BMj9CM9vs00GuBjeKhJps=
-go.opentelemetry.io/otel/sdk v1.36.0 h1:b6SYIuLRs88ztox4EyrvRti80uXIFy+Sqzoh9kFULbs=
-go.opentelemetry.io/otel/sdk v1.36.0/go.mod h1:+lC+mTgD+MUWfjJubi2vvXWcVxyr9rmlshZni72pXeY=
-go.opentelemetry.io/otel/sdk/metric v1.36.0 h1:r0ntwwGosWGaa0CrSt8cuNuTcccMXERFwHX4dThiPis=
-go.opentelemetry.io/otel/sdk/metric v1.36.0/go.mod h1:qTNOhFDfKRwX0yXOqJYegL5WRaW376QbB7P4Pb0qva4=
-go.opentelemetry.io/otel/trace v1.41.0 h1:Vbk2co6bhj8L59ZJ6/xFTskY+tGAbOnCtQGVVa9TIN0=
-go.opentelemetry.io/otel/trace v1.41.0/go.mod h1:U1NU4ULCoxeDKc09yCWdWe+3QoyweJcISEVa1RBzOis=
+go.opentelemetry.io/otel/metric v1.43.0 h1:d7638QeInOnuwOONPp4JAOGfbCEpYb+K6DVWvdxGzgM=
+go.opentelemetry.io/otel/metric v1.43.0/go.mod h1:RDnPtIxvqlgO8GRW18W6Z/4P462ldprJtfxHxyKd2PY=
+go.opentelemetry.io/otel/sdk v1.43.0 h1:pi5mE86i5rTeLXqoF/hhiBtUNcrAGHLKQdhg4h4V9Dg=
+go.opentelemetry.io/otel/sdk v1.43.0/go.mod h1:P+IkVU3iWukmiit/Yf9AWvpyRDlUeBaRg6Y+C58QHzg=
+go.opentelemetry.io/otel/sdk/metric v1.43.0 h1:S88dyqXjJkuBNLeMcVPRFXpRw2fuwdvfCGLEo89fDkw=
+go.opentelemetry.io/otel/sdk/metric v1.43.0/go.mod h1:C/RJtwSEJ5hzTiUz5pXF1kILHStzb9zFlIEe85bhj6A=
+go.opentelemetry.io/otel/trace v1.43.0 h1:BkNrHpup+4k4w+ZZ86CZoHHEkohws8AY+WTX09nk+3A=
+go.opentelemetry.io/otel/trace v1.43.0/go.mod h1:/QJhyVBUUswCphDVxq+8mld+AvhXZLhe+8WVFxiFff0=
 go.opentelemetry.io/proto/otlp v1.5.0 h1:xJvq7gMzB31/d406fB8U5CBdyQGw4P399D1aQWU/3i4=
 go.opentelemetry.io/proto/otlp v1.5.0/go.mod h1:keN8WnHxOy8PG0rQZjJJ5A2ebUoafqWp0eVQ4yIXvJ4=
-go.uber.org/automaxprocs v1.6.0/go.mod h1:ifeIMSnPZuznNm6jmdzmU3/bfk01Fe2fotchwEFJ8r8=
 go.uber.org/goleak v1.3.0 h1:2K3zAYmnTNqV73imy9J1T3WC+gmCePx2hEGkimedGto=
 go.uber.org/goleak v1.3.0/go.mod h1:CoHD4mav9JJNrW/WLlf7HGZPjdw8EucARQHekz1X6bE=
 go.uber.org/multierr v1.11.0 h1:blXXJkSxSSfBVBlC76pxqeO+LN3aDfLQo+309xJstO0=
@@ -418,63 +369,196 @@
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 golang.org/x/tools v0.0.0-20191119224855-298f0cb1881e/go.mod h1:b+2E5dAYhXwXZwtnZ6UAqBI28+e2cm9otk0dWdXHAEo=
 golang.org/x/tools v0.0.0-20200619180055-7c47624df98f/go.mod h1:EkVYQZoAsY45+roYkvgYkIh4xh/qjgUK9TdY2XT94GE=
 golang.org/x/tools v0.0.0-20210106214847-113979e3529a/go.mod h1:emZCQorbCU4vsT4fOWvOPXz4eW1wZW4PmDk9uLelYpA=
-golang.org/x/tools v0.47.0 h1:7Kn5x/d1svx/PzryTsqeoZN4TZwqeH5pGWjefhLi/1Q=
+golang.org/x/tools v0.1.12/go.mod h1:hNGJHUnrk76NpqgfD5Aqm5Crs+Hm0VOH/i9J2+nxYbc=
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+golang.org/x/tools v0.45.0/go.mod h1:LuUGqqaXcXMEFEruIVJVm5mgDD8vww/z/SR1gQ4uE/0=
 golang.org/x/tools v0.47.0/go.mod h1:dFHnyTvFWY212G+h7ZY4Vsp/K3U4/7W9TyVaAul8uCA=
+golang.org/x/tools v0.48.0 h1:3+hClM1aLL5mjMKm5ovokw9epgRXPuu2tILgismM6RE=
+golang.org/x/tools v0.48.0/go.mod h1:08xX0orndb/F7jJxGDicx061tyd5pcMto75YMAXr6lk=
 golang.org/x/tools/go/expect v0.1.1-deprecated h1:jpBZDwmgPhXsKZC6WhL20P4b/wmnpsEAGHaNy0n/rJM=
 golang.org/x/tools/go/expect v0.1.1-deprecated/go.mod h1:eihoPOH+FgIqa3FpoTwguz/bVUSGBlGQU67vpBeOrBY=
 golang.org/x/tools/go/packages/packagestest v0.1.1-deprecated h1:1h2MnaIAIXISqTFKdENegdpAgUXz6NrPEsbIeWaBRvM=
@@ -483,12 +567,14 @@
 golang.org/x/xerrors v0.0.0-20191011141410-1b5146add898/go.mod h1:I/5z698sn9Ka8TeJc9MKroUUfqBBauWjQqLJ2OPfmY0=
 golang.org/x/xerrors v0.0.0-20191204190536-9bdfabe68543/go.mod h1:I/5z698sn9Ka8TeJc9MKroUUfqBBauWjQqLJ2OPfmY0=
 golang.org/x/xerrors v0.0.0-20200804184101-5ec99f83aff1/go.mod h1:I/5z698sn9Ka8TeJc9MKroUUfqBBauWjQqLJ2OPfmY0=
-google.golang.org/genproto/googleapis/api v0.0.0-20250303144028-a0af3efb3deb h1:p31xT4yrYrSM/G4Sn2+TNUkVhFCbG9y8itM2S6Th950=
-google.golang.org/genproto/googleapis/api v0.0.0-20250303144028-a0af3efb3deb/go.mod h1:jbe3Bkdp+Dh2IrslsFCklNhweNTBgSYanP1UXhJDhKg=
-google.golang.org/genproto/googleapis/rpc v0.0.0-20250528174236-200df99c418a h1:v2PbRU4K3llS09c7zodFpNePeamkAwG3mPrAery9VeE=
-google.golang.org/genproto/googleapis/rpc v0.0.0-20250528174236-200df99c418a/go.mod h1:qQ0YXyHHx3XkvlzUtpXDkS29lDSafHMZBAZDc03LQ3A=
-google.golang.org/grpc v1.72.2 h1:TdbGzwb82ty4OusHWepvFWGLgIbNo1/SUynEN0ssqv8=
-google.golang.org/grpc v1.72.2/go.mod h1:wH5Aktxcg25y1I3w7H69nHfXdOG3UiadoBtjh3izSDM=
+gonum.org/v1/gonum v0.17.0 h1:VbpOemQlsSMrYmn7T2OUvQ4dqxQXU+ouZFQsZOx50z4=
+gonum.org/v1/gonum v0.17.0/go.mod h1:El3tOrEuMpv2UdMrbNlKEh9vd86bmQ6vqIcDwxEOc1E=
+google.golang.org/genproto/googleapis/api v0.0.0-20260414002931-afd174a4e478 h1:yQugLulqltosq0B/f8l4w9VryjV+N/5gcW0jQ3N8Qec=
+google.golang.org/genproto/googleapis/api v0.0.0-20260414002931-afd174a4e478/go.mod h1:C6ADNqOxbgdUUeRTU+LCHDPB9ttAMCTff6auwCVa4uc=
+google.golang.org/genproto/googleapis/rpc v0.0.0-20260414002931-afd174a4e478 h1:RmoJA1ujG+/lRGNfUnOMfhCy5EipVMyvUE+KNbPbTlw=
+google.golang.org/genproto/googleapis/rpc v0.0.0-20260414002931-afd174a4e478/go.mod h1:4Hqkh8ycfw05ld/3BWL7rJOSfebL2Q+DVDeRgYgxUU8=
+google.golang.org/grpc v1.82.1 h1:NnAxzGRA0677vCa4BUkOAnO5+FfQqVl9iUXeD0IqcGE=
+google.golang.org/grpc v1.82.1/go.mod h1:yzTZ1TB1Z3SG+LIYaI+WiE8D5+PZ3ArnrSp8zF3+/ZA=
 google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af h1:+5/Sw3GsDNlEmu7TfklWKPdQ0Ykja5VEmq2i817+jbI=
 google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af/go.mod h1:HTf+CrKn2C3g5S8VImy6tdcUvCska2kB7j23XfzDpco=
 gopkg.in/check.v1 v0.0.0-20161208181325-20d25e280405/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
@@ -505,7 +591,6 @@
 gopkg.in/yaml.v3 v3.0.0-20200313102051-9f266ea9e77c/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM=
 gopkg.in/yaml.v3 v3.0.1 h1:fxVm/GzAzEWqLHuvctI91KS9hhNmmWOoWu0XTYJS7CA=
 gopkg.in/yaml.v3 v3.0.1/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM=
-gotest.tools/v3 v3.0.2/go.mod h1:3SzNCllyD9/Y+b5r9JIKQ474KzkZyqLqEfYqMsX94Bk=
 k8s.io/gengo/v2 v2.0.0-20250922181213-ec3ebc5fd46b h1:gMplByicHV/TJBizHd9aVEsTYoJBnnUAT5MHlTkbjhQ=
 k8s.io/gengo/v2 v2.0.0-20250922181213-ec3ebc5fd46b/go.mod h1:CgujABENc3KuTrcsdpGmrrASjtQsWCT7R99mEV4U/fM=
 k8s.io/klog/v2 v2.130.1 h1:n9Xl7H1Xvksem4KFG4PYbdQCQxqc/tTUyrgXaOhHSzk=
@@ -524,7 +609,6 @@
 sigs.k8s.io/knftables v0.0.21/go.mod h1:f/5ZLKYEUPUhVjUCg6l80ACdL7CIIyeL0DxfgojGRTk=
 sigs.k8s.io/kustomize/api v0.20.1 h1:iWP1Ydh3/lmldBnH/S5RXgT98vWYMaTUL1ADcr+Sv7I=
 sigs.k8s.io/kustomize/api v0.20.1/go.mod h1:t6hUFxO+Ph0VxIk1sKp1WS0dOjbPCtLJ4p8aADLwqjM=
-sigs.k8s.io/kustomize/cmd/config v0.20.1/go.mod h1:R7rQ8kxknVlXWVUIbxWtMgu8DCCNVtl8V0KrmeVd/KE=
 sigs.k8s.io/kustomize/kustomize/v5 v5.7.1 h1:sYJsarwy/SDJfjjLMUqwFDGPwzUtMOQ1i1Ed49+XSbw=
 sigs.k8s.io/kustomize/kustomize/v5 v5.7.1/go.mod h1:+5/SrBcJ4agx1SJknGuR/c9thwRSKLxnKoI5BzXFaLU=
 sigs.k8s.io/kustomize/kyaml v0.20.1 h1:PCMnA2mrVbRP3NIB6v9kYCAc38uvFLVs8j/CD567A78=
diff -Nur /work/src-orig/kubernetes/vendor/OWNERS /work/src/kubernetes/vendor/OWNERS
--- a/vendor/OWNERS	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/OWNERS	1970-01-01 00:00:00.000000000 +0000
@@ -1,9 +0,0 @@
-# See the OWNERS docs at https://go.k8s.io/owners
-
-options:
-  # make root approval non-recursive
-  no_parent_owners: true
-approvers:
-  - dep-approvers
-reviewers:
-  - dep-reviewers
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/BUILD.bazel /work/src/kubernetes/vendor/cel.dev/expr/BUILD.bazel
--- a/vendor/cel.dev/expr/BUILD.bazel	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/BUILD.bazel	2026-09-02 10:25:21.637024679 +0000
@@ -16,7 +16,6 @@
     importpath = "cel.dev/expr",
     visibility = ["//visibility:public"],
     deps = [
-        "@org_golang_google_genproto_googleapis_rpc//status:go_default_library",
         "@org_golang_google_protobuf//reflect/protoreflect",
         "@org_golang_google_protobuf//runtime/protoimpl",
         "@org_golang_google_protobuf//types/known/anypb",
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/MODULE.bazel /work/src/kubernetes/vendor/cel.dev/expr/MODULE.bazel
--- a/vendor/cel.dev/expr/MODULE.bazel	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/MODULE.bazel	2026-09-02 10:25:21.641024685 +0000
@@ -12,25 +12,8 @@
     repo_name = "bazel_gazelle",
 )
 bazel_dep(
-    name = "googleapis",
-    version = "0.0.0-20241220-5e258e33.bcr.1",
-    repo_name = "com_google_googleapis",
-)
-bazel_dep(
-    name = "googleapis-cc",
-    version = "1.0.0",
-)
-bazel_dep(
-    name = "googleapis-java",
-    version = "1.0.0",
-)
-bazel_dep(
-    name = "googleapis-go",
-    version = "1.0.0",
-)
-bazel_dep(
     name = "protobuf",
-    version = "27.0",
+    version = "27.1",
     repo_name = "com_google_protobuf",
 )
 bazel_dep(
@@ -63,12 +46,11 @@
 )
 
 go_sdk = use_extension("@io_bazel_rules_go//go:extensions.bzl", "go_sdk")
-go_sdk.download(version = "1.22.0")
+go_sdk.download(version = "1.23.0")
 
 go_deps = use_extension("@bazel_gazelle//:extensions.bzl", "go_deps")
 go_deps.from_file(go_mod = "//:go.mod")
 use_repo(
     go_deps,
-    "org_golang_google_genproto_googleapis_rpc",
     "org_golang_google_protobuf",
 )
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/checked.pb.go /work/src/kubernetes/vendor/cel.dev/expr/checked.pb.go
--- a/vendor/cel.dev/expr/checked.pb.go	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/checked.pb.go	2026-09-02 10:25:21.641024685 +0000
@@ -1,7 +1,7 @@
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.28.1
-// 	protoc        v3.21.5
+// 	protoc-gen-go v1.36.10
+// 	protoc        v5.27.1
 // source: cel/expr/checked.proto
 
 package expr
@@ -13,6 +13,7 @@
 	structpb "google.golang.org/protobuf/types/known/structpb"
 	reflect "reflect"
 	sync "sync"
+	unsafe "unsafe"
 )
 
 const (
@@ -136,24 +137,21 @@
 }
 
 type CheckedExpr struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	ReferenceMap  map[int64]*Reference   `protobuf:"bytes,2,rep,name=reference_map,json=referenceMap,proto3" json:"reference_map,omitempty" protobuf_key:"varint,1,opt,name=key" protobuf_val:"bytes,2,opt,name=value"`
+	TypeMap       map[int64]*Type        `protobuf:"bytes,3,rep,name=type_map,json=typeMap,proto3" json:"type_map,omitempty" protobuf_key:"varint,1,opt,name=key" protobuf_val:"bytes,2,opt,name=value"`
+	SourceInfo    *SourceInfo            `protobuf:"bytes,5,opt,name=source_info,json=sourceInfo,proto3" json:"source_info,omitempty"`
+	ExprVersion   string                 `protobuf:"bytes,6,opt,name=expr_version,json=exprVersion,proto3" json:"expr_version,omitempty"`
+	Expr          *Expr                  `protobuf:"bytes,4,opt,name=expr,proto3" json:"expr,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	ReferenceMap map[int64]*Reference `protobuf:"bytes,2,rep,name=reference_map,json=referenceMap,proto3" json:"reference_map,omitempty" protobuf_key:"varint,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"`
-	TypeMap      map[int64]*Type      `protobuf:"bytes,3,rep,name=type_map,json=typeMap,proto3" json:"type_map,omitempty" protobuf_key:"varint,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"`
-	SourceInfo   *SourceInfo          `protobuf:"bytes,5,opt,name=source_info,json=sourceInfo,proto3" json:"source_info,omitempty"`
-	ExprVersion  string               `protobuf:"bytes,6,opt,name=expr_version,json=exprVersion,proto3" json:"expr_version,omitempty"`
-	Expr         *Expr                `protobuf:"bytes,4,opt,name=expr,proto3" json:"expr,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *CheckedExpr) Reset() {
 	*x = CheckedExpr{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[0]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[0]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *CheckedExpr) String() string {
@@ -164,7 +162,7 @@
 
 func (x *CheckedExpr) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[0]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -215,11 +213,8 @@
 }
 
 type Type struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	// Types that are assignable to TypeKind:
+	state protoimpl.MessageState `protogen:"open.v1"`
+	// Types that are valid to be assigned to TypeKind:
 	//
 	//	*Type_Dyn
 	//	*Type_Null
@@ -234,16 +229,16 @@
 	//	*Type_Type
 	//	*Type_Error
 	//	*Type_AbstractType_
-	TypeKind isType_TypeKind `protobuf_oneof:"type_kind"`
+	TypeKind      isType_TypeKind `protobuf_oneof:"type_kind"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Type) Reset() {
 	*x = Type{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[1]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[1]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Type) String() string {
@@ -254,7 +249,7 @@
 
 func (x *Type) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[1]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -269,100 +264,126 @@
 	return file_cel_expr_checked_proto_rawDescGZIP(), []int{1}
 }
 
-func (m *Type) GetTypeKind() isType_TypeKind {
-	if m != nil {
-		return m.TypeKind
+func (x *Type) GetTypeKind() isType_TypeKind {
+	if x != nil {
+		return x.TypeKind
 	}
 	return nil
 }
 
 func (x *Type) GetDyn() *emptypb.Empty {
-	if x, ok := x.GetTypeKind().(*Type_Dyn); ok {
-		return x.Dyn
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Dyn); ok {
+			return x.Dyn
+		}
 	}
 	return nil
 }
 
 func (x *Type) GetNull() structpb.NullValue {
-	if x, ok := x.GetTypeKind().(*Type_Null); ok {
-		return x.Null
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Null); ok {
+			return x.Null
+		}
 	}
 	return structpb.NullValue(0)
 }
 
 func (x *Type) GetPrimitive() Type_PrimitiveType {
-	if x, ok := x.GetTypeKind().(*Type_Primitive); ok {
-		return x.Primitive
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Primitive); ok {
+			return x.Primitive
+		}
 	}
 	return Type_PRIMITIVE_TYPE_UNSPECIFIED
 }
 
 func (x *Type) GetWrapper() Type_PrimitiveType {
-	if x, ok := x.GetTypeKind().(*Type_Wrapper); ok {
-		return x.Wrapper
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Wrapper); ok {
+			return x.Wrapper
+		}
 	}
 	return Type_PRIMITIVE_TYPE_UNSPECIFIED
 }
 
 func (x *Type) GetWellKnown() Type_WellKnownType {
-	if x, ok := x.GetTypeKind().(*Type_WellKnown); ok {
-		return x.WellKnown
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_WellKnown); ok {
+			return x.WellKnown
+		}
 	}
 	return Type_WELL_KNOWN_TYPE_UNSPECIFIED
 }
 
 func (x *Type) GetListType() *Type_ListType {
-	if x, ok := x.GetTypeKind().(*Type_ListType_); ok {
-		return x.ListType
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_ListType_); ok {
+			return x.ListType
+		}
 	}
 	return nil
 }
 
 func (x *Type) GetMapType() *Type_MapType {
-	if x, ok := x.GetTypeKind().(*Type_MapType_); ok {
-		return x.MapType
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_MapType_); ok {
+			return x.MapType
+		}
 	}
 	return nil
 }
 
 func (x *Type) GetFunction() *Type_FunctionType {
-	if x, ok := x.GetTypeKind().(*Type_Function); ok {
-		return x.Function
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Function); ok {
+			return x.Function
+		}
 	}
 	return nil
 }
 
 func (x *Type) GetMessageType() string {
-	if x, ok := x.GetTypeKind().(*Type_MessageType); ok {
-		return x.MessageType
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_MessageType); ok {
+			return x.MessageType
+		}
 	}
 	return ""
 }
 
 func (x *Type) GetTypeParam() string {
-	if x, ok := x.GetTypeKind().(*Type_TypeParam); ok {
-		return x.TypeParam
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_TypeParam); ok {
+			return x.TypeParam
+		}
 	}
 	return ""
 }
 
 func (x *Type) GetType() *Type {
-	if x, ok := x.GetTypeKind().(*Type_Type); ok {
-		return x.Type
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Type); ok {
+			return x.Type
+		}
 	}
 	return nil
 }
 
 func (x *Type) GetError() *emptypb.Empty {
-	if x, ok := x.GetTypeKind().(*Type_Error); ok {
-		return x.Error
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_Error); ok {
+			return x.Error
+		}
 	}
 	return nil
 }
 
 func (x *Type) GetAbstractType() *Type_AbstractType {
-	if x, ok := x.GetTypeKind().(*Type_AbstractType_); ok {
-		return x.AbstractType
+	if x != nil {
+		if x, ok := x.TypeKind.(*Type_AbstractType_); ok {
+			return x.AbstractType
+		}
 	}
 	return nil
 }
@@ -450,25 +471,22 @@
 func (*Type_AbstractType_) isType_TypeKind() {}
 
 type Decl struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	Name string `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
-	// Types that are assignable to DeclKind:
+	state protoimpl.MessageState `protogen:"open.v1"`
+	Name  string                 `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
+	// Types that are valid to be assigned to DeclKind:
 	//
 	//	*Decl_Ident
 	//	*Decl_Function
-	DeclKind isDecl_DeclKind `protobuf_oneof:"decl_kind"`
+	DeclKind      isDecl_DeclKind `protobuf_oneof:"decl_kind"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Decl) Reset() {
 	*x = Decl{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[2]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[2]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Decl) String() string {
@@ -479,7 +497,7 @@
 
 func (x *Decl) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[2]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -501,23 +519,27 @@
 	return ""
 }
 
-func (m *Decl) GetDeclKind() isDecl_DeclKind {
-	if m != nil {
-		return m.DeclKind
+func (x *Decl) GetDeclKind() isDecl_DeclKind {
+	if x != nil {
+		return x.DeclKind
 	}
 	return nil
 }
 
 func (x *Decl) GetIdent() *Decl_IdentDecl {
-	if x, ok := x.GetDeclKind().(*Decl_Ident); ok {
-		return x.Ident
+	if x != nil {
+		if x, ok := x.DeclKind.(*Decl_Ident); ok {
+			return x.Ident
+		}
 	}
 	return nil
 }
 
 func (x *Decl) GetFunction() *Decl_FunctionDecl {
-	if x, ok := x.GetDeclKind().(*Decl_Function); ok {
-		return x.Function
+	if x != nil {
+		if x, ok := x.DeclKind.(*Decl_Function); ok {
+			return x.Function
+		}
 	}
 	return nil
 }
@@ -539,22 +561,19 @@
 func (*Decl_Function) isDecl_DeclKind() {}
 
 type Reference struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Name          string                 `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
+	OverloadId    []string               `protobuf:"bytes,3,rep,name=overload_id,json=overloadId,proto3" json:"overload_id,omitempty"`
+	Value         *Constant              `protobuf:"bytes,4,opt,name=value,proto3" json:"value,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Name       string    `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
-	OverloadId []string  `protobuf:"bytes,3,rep,name=overload_id,json=overloadId,proto3" json:"overload_id,omitempty"`
-	Value      *Constant `protobuf:"bytes,4,opt,name=value,proto3" json:"value,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Reference) Reset() {
 	*x = Reference{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[3]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[3]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Reference) String() string {
@@ -565,7 +584,7 @@
 
 func (x *Reference) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[3]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -602,20 +621,17 @@
 }
 
 type Type_ListType struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	ElemType      *Type                  `protobuf:"bytes,1,opt,name=elem_type,json=elemType,proto3" json:"elem_type,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	ElemType *Type `protobuf:"bytes,1,opt,name=elem_type,json=elemType,proto3" json:"elem_type,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Type_ListType) Reset() {
 	*x = Type_ListType{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[6]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[6]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Type_ListType) String() string {
@@ -626,7 +642,7 @@
 
 func (x *Type_ListType) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[6]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -649,21 +665,18 @@
 }
 
 type Type_MapType struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	KeyType       *Type                  `protobuf:"bytes,1,opt,name=key_type,json=keyType,proto3" json:"key_type,omitempty"`
+	ValueType     *Type                  `protobuf:"bytes,2,opt,name=value_type,json=valueType,proto3" json:"value_type,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	KeyType   *Type `protobuf:"bytes,1,opt,name=key_type,json=keyType,proto3" json:"key_type,omitempty"`
-	ValueType *Type `protobuf:"bytes,2,opt,name=value_type,json=valueType,proto3" json:"value_type,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Type_MapType) Reset() {
 	*x = Type_MapType{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[7]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[7]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Type_MapType) String() string {
@@ -674,7 +687,7 @@
 
 func (x *Type_MapType) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[7]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -704,21 +717,18 @@
 }
 
 type Type_FunctionType struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	ResultType    *Type                  `protobuf:"bytes,1,opt,name=result_type,json=resultType,proto3" json:"result_type,omitempty"`
+	ArgTypes      []*Type                `protobuf:"bytes,2,rep,name=arg_types,json=argTypes,proto3" json:"arg_types,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	ResultType *Type   `protobuf:"bytes,1,opt,name=result_type,json=resultType,proto3" json:"result_type,omitempty"`
-	ArgTypes   []*Type `protobuf:"bytes,2,rep,name=arg_types,json=argTypes,proto3" json:"arg_types,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Type_FunctionType) Reset() {
 	*x = Type_FunctionType{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[8]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[8]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Type_FunctionType) String() string {
@@ -729,7 +739,7 @@
 
 func (x *Type_FunctionType) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[8]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -759,21 +769,18 @@
 }
 
 type Type_AbstractType struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	Name           string  `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
-	ParameterTypes []*Type `protobuf:"bytes,2,rep,name=parameter_types,json=parameterTypes,proto3" json:"parameter_types,omitempty"`
+	state          protoimpl.MessageState `protogen:"open.v1"`
+	Name           string                 `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
+	ParameterTypes []*Type                `protobuf:"bytes,2,rep,name=parameter_types,json=parameterTypes,proto3" json:"parameter_types,omitempty"`
+	unknownFields  protoimpl.UnknownFields
+	sizeCache      protoimpl.SizeCache
 }
 
 func (x *Type_AbstractType) Reset() {
 	*x = Type_AbstractType{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[9]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[9]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Type_AbstractType) String() string {
@@ -784,7 +791,7 @@
 
 func (x *Type_AbstractType) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[9]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -814,22 +821,19 @@
 }
 
 type Decl_IdentDecl struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Type          *Type                  `protobuf:"bytes,1,opt,name=type,proto3" json:"type,omitempty"`
+	Value         *Constant              `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"`
+	Doc           string                 `protobuf:"bytes,3,opt,name=doc,proto3" json:"doc,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Type  *Type     `protobuf:"bytes,1,opt,name=type,proto3" json:"type,omitempty"`
-	Value *Constant `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"`
-	Doc   string    `protobuf:"bytes,3,opt,name=doc,proto3" json:"doc,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Decl_IdentDecl) Reset() {
 	*x = Decl_IdentDecl{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[10]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[10]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Decl_IdentDecl) String() string {
@@ -840,7 +844,7 @@
 
 func (x *Decl_IdentDecl) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[10]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -877,20 +881,18 @@
 }
 
 type Decl_FunctionDecl struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState        `protogen:"open.v1"`
+	Overloads     []*Decl_FunctionDecl_Overload `protobuf:"bytes,1,rep,name=overloads,proto3" json:"overloads,omitempty"`
+	Doc           string                        `protobuf:"bytes,2,opt,name=doc,proto3" json:"doc,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Overloads []*Decl_FunctionDecl_Overload `protobuf:"bytes,1,rep,name=overloads,proto3" json:"overloads,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Decl_FunctionDecl) Reset() {
 	*x = Decl_FunctionDecl{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[11]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[11]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Decl_FunctionDecl) String() string {
@@ -901,7 +903,7 @@
 
 func (x *Decl_FunctionDecl) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[11]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -923,26 +925,30 @@
 	return nil
 }
 
-type Decl_FunctionDecl_Overload struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
+func (x *Decl_FunctionDecl) GetDoc() string {
+	if x != nil {
+		return x.Doc
+	}
+	return ""
+}
 
-	OverloadId         string   `protobuf:"bytes,1,opt,name=overload_id,json=overloadId,proto3" json:"overload_id,omitempty"`
-	Params             []*Type  `protobuf:"bytes,2,rep,name=params,proto3" json:"params,omitempty"`
-	TypeParams         []string `protobuf:"bytes,3,rep,name=type_params,json=typeParams,proto3" json:"type_params,omitempty"`
-	ResultType         *Type    `protobuf:"bytes,4,opt,name=result_type,json=resultType,proto3" json:"result_type,omitempty"`
-	IsInstanceFunction bool     `protobuf:"varint,5,opt,name=is_instance_function,json=isInstanceFunction,proto3" json:"is_instance_function,omitempty"`
-	Doc                string   `protobuf:"bytes,6,opt,name=doc,proto3" json:"doc,omitempty"`
+type Decl_FunctionDecl_Overload struct {
+	state              protoimpl.MessageState `protogen:"open.v1"`
+	OverloadId         string                 `protobuf:"bytes,1,opt,name=overload_id,json=overloadId,proto3" json:"overload_id,omitempty"`
+	Params             []*Type                `protobuf:"bytes,2,rep,name=params,proto3" json:"params,omitempty"`
+	TypeParams         []string               `protobuf:"bytes,3,rep,name=type_params,json=typeParams,proto3" json:"type_params,omitempty"`
+	ResultType         *Type                  `protobuf:"bytes,4,opt,name=result_type,json=resultType,proto3" json:"result_type,omitempty"`
+	IsInstanceFunction bool                   `protobuf:"varint,5,opt,name=is_instance_function,json=isInstanceFunction,proto3" json:"is_instance_function,omitempty"`
+	Doc                string                 `protobuf:"bytes,6,opt,name=doc,proto3" json:"doc,omitempty"`
+	unknownFields      protoimpl.UnknownFields
+	sizeCache          protoimpl.SizeCache
 }
 
 func (x *Decl_FunctionDecl_Overload) Reset() {
 	*x = Decl_FunctionDecl_Overload{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_checked_proto_msgTypes[12]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_checked_proto_msgTypes[12]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Decl_FunctionDecl_Overload) String() string {
@@ -953,7 +959,7 @@
 
 func (x *Decl_FunctionDecl_Overload) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_checked_proto_msgTypes[12]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -1012,185 +1018,113 @@
 
 var File_cel_expr_checked_proto protoreflect.FileDescriptor
 
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-}
+const file_cel_expr_checked_proto_rawDesc = "" +
+	"\n" +
+	"\x16cel/expr/checked.proto\x12\bcel.expr\x1a\x15cel/expr/syntax.proto\x1a\x1bgoogle/protobuf/empty.proto\x1a\x1cgoogle/protobuf/struct.proto\"\xba\x03\n" +
+	"\vCheckedExpr\x12L\n" +
+	"\rreference_map\x18\x02 \x03(\v2'.cel.expr.CheckedExpr.ReferenceMapEntryR\freferenceMap\x12=\n" +
+	"\btype_map\x18\x03 \x03(\v2\".cel.expr.CheckedExpr.TypeMapEntryR\atypeMap\x125\n" +
+	"\vsource_info\x18\x05 \x01(\v2\x14.cel.expr.SourceInfoR\n" +
+	"sourceInfo\x12!\n" +
+	"\fexpr_version\x18\x06 \x01(\tR\vexprVersion\x12\"\n" +
+	"\x04expr\x18\x04 \x01(\v2\x0e.cel.expr.ExprR\x04expr\x1aT\n" +
+	"\x11ReferenceMapEntry\x12\x10\n" +
+	"\x03key\x18\x01 \x01(\x03R\x03key\x12)\n" +
+	"\x05value\x18\x02 \x01(\v2\x13.cel.expr.ReferenceR\x05value:\x028\x01\x1aJ\n" +
+	"\fTypeMapEntry\x12\x10\n" +
+	"\x03key\x18\x01 \x01(\x03R\x03key\x12$\n" +
+	"\x05value\x18\x02 \x01(\v2\x0e.cel.expr.TypeR\x05value:\x028\x01\"\xe6\t\n" +
+	"\x04Type\x12*\n" +
+	"\x03dyn\x18\x01 \x01(\v2\x16.google.protobuf.EmptyH\x00R\x03dyn\x120\n" +
+	"\x04null\x18\x02 \x01(\x0e2\x1a.google.protobuf.NullValueH\x00R\x04null\x12<\n" +
+	"\tprimitive\x18\x03 \x01(\x0e2\x1c.cel.expr.Type.PrimitiveTypeH\x00R\tprimitive\x128\n" +
+	"\awrapper\x18\x04 \x01(\x0e2\x1c.cel.expr.Type.PrimitiveTypeH\x00R\awrapper\x12=\n" +
+	"\n" +
+	"well_known\x18\x05 \x01(\x0e2\x1c.cel.expr.Type.WellKnownTypeH\x00R\twellKnown\x126\n" +
+	"\tlist_type\x18\x06 \x01(\v2\x17.cel.expr.Type.ListTypeH\x00R\blistType\x123\n" +
+	"\bmap_type\x18\a \x01(\v2\x16.cel.expr.Type.MapTypeH\x00R\amapType\x129\n" +
+	"\bfunction\x18\b \x01(\v2\x1b.cel.expr.Type.FunctionTypeH\x00R\bfunction\x12#\n" +
+	"\fmessage_type\x18\t \x01(\tH\x00R\vmessageType\x12\x1f\n" +
+	"\n" +
+	"type_param\x18\n" +
+	" \x01(\tH\x00R\ttypeParam\x12$\n" +
+	"\x04type\x18\v \x01(\v2\x0e.cel.expr.TypeH\x00R\x04type\x12.\n" +
+	"\x05error\x18\f \x01(\v2\x16.google.protobuf.EmptyH\x00R\x05error\x12B\n" +
+	"\rabstract_type\x18\x0e \x01(\v2\x1b.cel.expr.Type.AbstractTypeH\x00R\fabstractType\x1a7\n" +
+	"\bListType\x12+\n" +
+	"\telem_type\x18\x01 \x01(\v2\x0e.cel.expr.TypeR\belemType\x1ac\n" +
+	"\aMapType\x12)\n" +
+	"\bkey_type\x18\x01 \x01(\v2\x0e.cel.expr.TypeR\akeyType\x12-\n" +
+	"\n" +
+	"value_type\x18\x02 \x01(\v2\x0e.cel.expr.TypeR\tvalueType\x1al\n" +
+	"\fFunctionType\x12/\n" +
+	"\vresult_type\x18\x01 \x01(\v2\x0e.cel.expr.TypeR\n" +
+	"resultType\x12+\n" +
+	"\targ_types\x18\x02 \x03(\v2\x0e.cel.expr.TypeR\bargTypes\x1a[\n" +
+	"\fAbstractType\x12\x12\n" +
+	"\x04name\x18\x01 \x01(\tR\x04name\x127\n" +
+	"\x0fparameter_types\x18\x02 \x03(\v2\x0e.cel.expr.TypeR\x0eparameterTypes\"s\n" +
+	"\rPrimitiveType\x12\x1e\n" +
+	"\x1aPRIMITIVE_TYPE_UNSPECIFIED\x10\x00\x12\b\n" +
+	"\x04BOOL\x10\x01\x12\t\n" +
+	"\x05INT64\x10\x02\x12\n" +
+	"\n" +
+	"\x06UINT64\x10\x03\x12\n" +
+	"\n" +
+	"\x06DOUBLE\x10\x04\x12\n" +
+	"\n" +
+	"\x06STRING\x10\x05\x12\t\n" +
+	"\x05BYTES\x10\x06\"V\n" +
+	"\rWellKnownType\x12\x1f\n" +
+	"\x1bWELL_KNOWN_TYPE_UNSPECIFIED\x10\x00\x12\a\n" +
+	"\x03ANY\x10\x01\x12\r\n" +
+	"\tTIMESTAMP\x10\x02\x12\f\n" +
+	"\bDURATION\x10\x03B\v\n" +
+	"\ttype_kind\"\xd4\x04\n" +
+	"\x04Decl\x12\x12\n" +
+	"\x04name\x18\x01 \x01(\tR\x04name\x120\n" +
+	"\x05ident\x18\x02 \x01(\v2\x18.cel.expr.Decl.IdentDeclH\x00R\x05ident\x129\n" +
+	"\bfunction\x18\x03 \x01(\v2\x1b.cel.expr.Decl.FunctionDeclH\x00R\bfunction\x1ak\n" +
+	"\tIdentDecl\x12\"\n" +
+	"\x04type\x18\x01 \x01(\v2\x0e.cel.expr.TypeR\x04type\x12(\n" +
+	"\x05value\x18\x02 \x01(\v2\x12.cel.expr.ConstantR\x05value\x12\x10\n" +
+	"\x03doc\x18\x03 \x01(\tR\x03doc\x1a\xd0\x02\n" +
+	"\fFunctionDecl\x12B\n" +
+	"\toverloads\x18\x01 \x03(\v2$.cel.expr.Decl.FunctionDecl.OverloadR\toverloads\x12\x10\n" +
+	"\x03doc\x18\x02 \x01(\tR\x03doc\x1a\xe9\x01\n" +
+	"\bOverload\x12\x1f\n" +
+	"\voverload_id\x18\x01 \x01(\tR\n" +
+	"overloadId\x12&\n" +
+	"\x06params\x18\x02 \x03(\v2\x0e.cel.expr.TypeR\x06params\x12\x1f\n" +
+	"\vtype_params\x18\x03 \x03(\tR\n" +
+	"typeParams\x12/\n" +
+	"\vresult_type\x18\x04 \x01(\v2\x0e.cel.expr.TypeR\n" +
+	"resultType\x120\n" +
+	"\x14is_instance_function\x18\x05 \x01(\bR\x12isInstanceFunction\x12\x10\n" +
+	"\x03doc\x18\x06 \x01(\tR\x03docB\v\n" +
+	"\tdecl_kind\"j\n" +
+	"\tReference\x12\x12\n" +
+	"\x04name\x18\x01 \x01(\tR\x04name\x12\x1f\n" +
+	"\voverload_id\x18\x03 \x03(\tR\n" +
+	"overloadId\x12(\n" +
+	"\x05value\x18\x04 \x01(\v2\x12.cel.expr.ConstantR\x05valueB,\n" +
+	"\fdev.cel.exprB\tDeclProtoP\x01Z\fcel.dev/expr\xf8\x01\x01b\x06proto3"
 
 var (
 	file_cel_expr_checked_proto_rawDescOnce sync.Once
-	file_cel_expr_checked_proto_rawDescData = file_cel_expr_checked_proto_rawDesc
+	file_cel_expr_checked_proto_rawDescData []byte
 )
 
 func file_cel_expr_checked_proto_rawDescGZIP() []byte {
 	file_cel_expr_checked_proto_rawDescOnce.Do(func() {
-		file_cel_expr_checked_proto_rawDescData = protoimpl.X.CompressGZIP(file_cel_expr_checked_proto_rawDescData)
+		file_cel_expr_checked_proto_rawDescData = protoimpl.X.CompressGZIP(unsafe.Slice(unsafe.StringData(file_cel_expr_checked_proto_rawDesc), len(file_cel_expr_checked_proto_rawDesc)))
 	})
 	return file_cel_expr_checked_proto_rawDescData
 }
 
 var file_cel_expr_checked_proto_enumTypes = make([]protoimpl.EnumInfo, 2)
 var file_cel_expr_checked_proto_msgTypes = make([]protoimpl.MessageInfo, 13)
-var file_cel_expr_checked_proto_goTypes = []interface{}{
+var file_cel_expr_checked_proto_goTypes = []any{
 	(Type_PrimitiveType)(0),            // 0: cel.expr.Type.PrimitiveType
 	(Type_WellKnownType)(0),            // 1: cel.expr.Type.WellKnownType
 	(*CheckedExpr)(nil),                // 2: cel.expr.CheckedExpr
@@ -1257,141 +1191,7 @@
 		return
 	}
 	file_cel_expr_syntax_proto_init()
-	if !protoimpl.UnsafeEnabled {
-		file_cel_expr_checked_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*CheckedExpr); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Type); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Decl); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Reference); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[6].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Type_ListType); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[7].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Type_MapType); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[8].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Type_FunctionType); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[9].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Type_AbstractType); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[10].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Decl_IdentDecl); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[11].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Decl_FunctionDecl); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_checked_proto_msgTypes[12].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Decl_FunctionDecl_Overload); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-	}
-	file_cel_expr_checked_proto_msgTypes[1].OneofWrappers = []interface{}{
+	file_cel_expr_checked_proto_msgTypes[1].OneofWrappers = []any{
 		(*Type_Dyn)(nil),
 		(*Type_Null)(nil),
 		(*Type_Primitive)(nil),
@@ -1406,7 +1206,7 @@
 		(*Type_Error)(nil),
 		(*Type_AbstractType_)(nil),
 	}
-	file_cel_expr_checked_proto_msgTypes[2].OneofWrappers = []interface{}{
+	file_cel_expr_checked_proto_msgTypes[2].OneofWrappers = []any{
 		(*Decl_Ident)(nil),
 		(*Decl_Function)(nil),
 	}
@@ -1414,7 +1214,7 @@
 	out := protoimpl.TypeBuilder{
 		File: protoimpl.DescBuilder{
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
-			RawDescriptor: file_cel_expr_checked_proto_rawDesc,
+			RawDescriptor: unsafe.Slice(unsafe.StringData(file_cel_expr_checked_proto_rawDesc), len(file_cel_expr_checked_proto_rawDesc)),
 			NumEnums:      2,
 			NumMessages:   13,
 			NumExtensions: 0,
@@ -1426,7 +1226,6 @@
 		MessageInfos:      file_cel_expr_checked_proto_msgTypes,
 	}.Build()
 	File_cel_expr_checked_proto = out.File
-	file_cel_expr_checked_proto_rawDesc = nil
 	file_cel_expr_checked_proto_goTypes = nil
 	file_cel_expr_checked_proto_depIdxs = nil
 }
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/eval.pb.go /work/src/kubernetes/vendor/cel.dev/expr/eval.pb.go
--- a/vendor/cel.dev/expr/eval.pb.go	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/eval.pb.go	2026-09-02 10:25:21.641024685 +0000
@@ -1,6 +1,6 @@
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.36.3
+// 	protoc-gen-go v1.36.10
 // 	protoc        v5.27.1
 // source: cel/expr/eval.proto
 
@@ -12,6 +12,7 @@
 	anypb "google.golang.org/protobuf/types/known/anypb"
 	reflect "reflect"
 	sync "sync"
+	unsafe "unsafe"
 )
 
 const (
@@ -373,58 +374,39 @@
 
 var File_cel_expr_eval_proto protoreflect.FileDescriptor
 
-var file_cel_expr_eval_proto_rawDesc = []byte{
-	0x0a, 0x13, 0x63, 0x65, 0x6c, 0x2f, 0x65, 0x78, 0x70, 0x72, 0x2f, 0x65, 0x76, 0x61, 0x6c, 0x2e,
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-}
+const file_cel_expr_eval_proto_rawDesc = "" +
+	"\n" +
+	"\x13cel/expr/eval.proto\x12\bcel.expr\x1a\x19google/protobuf/any.proto\x1a\x14cel/expr/value.proto\"\xa2\x01\n" +
+	"\tEvalState\x12+\n" +
+	"\x06values\x18\x01 \x03(\v2\x13.cel.expr.ExprValueR\x06values\x124\n" +
+	"\aresults\x18\x03 \x03(\v2\x1a.cel.expr.EvalState.ResultR\aresults\x1a2\n" +
+	"\x06Result\x12\x12\n" +
+	"\x04expr\x18\x01 \x01(\x03R\x04expr\x12\x14\n" +
+	"\x05value\x18\x02 \x01(\x03R\x05value\"\x9a\x01\n" +
+	"\tExprValue\x12'\n" +
+	"\x05value\x18\x01 \x01(\v2\x0f.cel.expr.ValueH\x00R\x05value\x12*\n" +
+	"\x05error\x18\x02 \x01(\v2\x12.cel.expr.ErrorSetH\x00R\x05error\x120\n" +
+	"\aunknown\x18\x03 \x01(\v2\x14.cel.expr.UnknownSetH\x00R\aunknownB\x06\n" +
+	"\x04kind\"4\n" +
+	"\bErrorSet\x12(\n" +
+	"\x06errors\x18\x01 \x03(\v2\x10.cel.expr.StatusR\x06errors\"f\n" +
+	"\x06Status\x12\x12\n" +
+	"\x04code\x18\x01 \x01(\x05R\x04code\x12\x18\n" +
+	"\amessage\x18\x02 \x01(\tR\amessage\x12.\n" +
+	"\adetails\x18\x03 \x03(\v2\x14.google.protobuf.AnyR\adetails\"\"\n" +
+	"\n" +
+	"UnknownSet\x12\x14\n" +
+	"\x05exprs\x18\x01 \x03(\x03R\x05exprsB,\n" +
+	"\fdev.cel.exprB\tEvalProtoP\x01Z\fcel.dev/expr\xf8\x01\x01b\x06proto3"
 
 var (
 	file_cel_expr_eval_proto_rawDescOnce sync.Once
-	file_cel_expr_eval_proto_rawDescData = file_cel_expr_eval_proto_rawDesc
+	file_cel_expr_eval_proto_rawDescData []byte
 )
 
 func file_cel_expr_eval_proto_rawDescGZIP() []byte {
 	file_cel_expr_eval_proto_rawDescOnce.Do(func() {
-		file_cel_expr_eval_proto_rawDescData = protoimpl.X.CompressGZIP(file_cel_expr_eval_proto_rawDescData)
+		file_cel_expr_eval_proto_rawDescData = protoimpl.X.CompressGZIP(unsafe.Slice(unsafe.StringData(file_cel_expr_eval_proto_rawDesc), len(file_cel_expr_eval_proto_rawDesc)))
 	})
 	return file_cel_expr_eval_proto_rawDescData
 }
@@ -470,7 +452,7 @@
 	out := protoimpl.TypeBuilder{
 		File: protoimpl.DescBuilder{
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
-			RawDescriptor: file_cel_expr_eval_proto_rawDesc,
+			RawDescriptor: unsafe.Slice(unsafe.StringData(file_cel_expr_eval_proto_rawDesc), len(file_cel_expr_eval_proto_rawDesc)),
 			NumEnums:      0,
 			NumMessages:   6,
 			NumExtensions: 0,
@@ -481,7 +463,6 @@
 		MessageInfos:      file_cel_expr_eval_proto_msgTypes,
 	}.Build()
 	File_cel_expr_eval_proto = out.File
-	file_cel_expr_eval_proto_rawDesc = nil
 	file_cel_expr_eval_proto_goTypes = nil
 	file_cel_expr_eval_proto_depIdxs = nil
 }
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/explain.pb.go /work/src/kubernetes/vendor/cel.dev/expr/explain.pb.go
--- a/vendor/cel.dev/expr/explain.pb.go	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/explain.pb.go	2026-09-02 10:25:21.641024685 +0000
@@ -1,7 +1,7 @@
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.28.1
-// 	protoc        v3.21.5
+// 	protoc-gen-go v1.36.10
+// 	protoc        v5.27.1
 // source: cel/expr/explain.proto
 
 package expr
@@ -11,6 +11,7 @@
 	protoimpl "google.golang.org/protobuf/runtime/protoimpl"
 	reflect "reflect"
 	sync "sync"
+	unsafe "unsafe"
 )
 
 const (
@@ -20,23 +21,20 @@
 	_ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20)
 )
 
-// Deprecated: Do not use.
+// Deprecated: Marked as deprecated in cel/expr/explain.proto.
 type Explain struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Values        []*Value               `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"`
+	ExprSteps     []*Explain_ExprStep    `protobuf:"bytes,2,rep,name=expr_steps,json=exprSteps,proto3" json:"expr_steps,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Values    []*Value            `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"`
-	ExprSteps []*Explain_ExprStep `protobuf:"bytes,2,rep,name=expr_steps,json=exprSteps,proto3" json:"expr_steps,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Explain) Reset() {
 	*x = Explain{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_explain_proto_msgTypes[0]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_explain_proto_msgTypes[0]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Explain) String() string {
@@ -47,7 +45,7 @@
 
 func (x *Explain) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_explain_proto_msgTypes[0]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -77,21 +75,18 @@
 }
 
 type Explain_ExprStep struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Id            int64                  `protobuf:"varint,1,opt,name=id,proto3" json:"id,omitempty"`
+	ValueIndex    int32                  `protobuf:"varint,2,opt,name=value_index,json=valueIndex,proto3" json:"value_index,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Id         int64 `protobuf:"varint,1,opt,name=id,proto3" json:"id,omitempty"`
-	ValueIndex int32 `protobuf:"varint,2,opt,name=value_index,json=valueIndex,proto3" json:"value_index,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Explain_ExprStep) Reset() {
 	*x = Explain_ExprStep{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_explain_proto_msgTypes[1]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_explain_proto_msgTypes[1]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Explain_ExprStep) String() string {
@@ -102,7 +97,7 @@
 
 func (x *Explain_ExprStep) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_explain_proto_msgTypes[1]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -133,42 +128,33 @@
 
 var File_cel_expr_explain_proto protoreflect.FileDescriptor
 
-var file_cel_expr_explain_proto_rawDesc = []byte{
-	0x0a, 0x16, 0x63, 0x65, 0x6c, 0x2f, 0x65, 0x78, 0x70, 0x72, 0x2f, 0x65, 0x78, 0x70, 0x6c, 0x61,
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-	0x0b, 0x32, 0x1a, 0x2e, 0x63, 0x65, 0x6c, 0x2e, 0x65, 0x78, 0x70, 0x72, 0x2e, 0x45, 0x78, 0x70,
-	0x6c, 0x61, 0x69, 0x6e, 0x2e, 0x45, 0x78, 0x70, 0x72, 0x53, 0x74, 0x65, 0x70, 0x52, 0x09, 0x65,
-	0x78, 0x70, 0x72, 0x53, 0x74, 0x65, 0x70, 0x73, 0x1a, 0x3b, 0x0a, 0x08, 0x45, 0x78, 0x70, 0x72,
-	0x53, 0x74, 0x65, 0x70, 0x12, 0x0e, 0x0a, 0x02, 0x69, 0x64, 0x18, 0x01, 0x20, 0x01, 0x28, 0x03,
-	0x52, 0x02, 0x69, 0x64, 0x12, 0x1f, 0x0a, 0x0b, 0x76, 0x61, 0x6c, 0x75, 0x65, 0x5f, 0x69, 0x6e,
-	0x64, 0x65, 0x78, 0x18, 0x02, 0x20, 0x01, 0x28, 0x05, 0x52, 0x0a, 0x76, 0x61, 0x6c, 0x75, 0x65,
-	0x49, 0x6e, 0x64, 0x65, 0x78, 0x3a, 0x02, 0x18, 0x01, 0x42, 0x2f, 0x0a, 0x0c, 0x64, 0x65, 0x76,
-	0x2e, 0x63, 0x65, 0x6c, 0x2e, 0x65, 0x78, 0x70, 0x72, 0x42, 0x0c, 0x45, 0x78, 0x70, 0x6c, 0x61,
-	0x69, 0x6e, 0x50, 0x72, 0x6f, 0x74, 0x6f, 0x50, 0x01, 0x5a, 0x0c, 0x63, 0x65, 0x6c, 0x2e, 0x64,
-	0x65, 0x76, 0x2f, 0x65, 0x78, 0x70, 0x72, 0xf8, 0x01, 0x01, 0x62, 0x06, 0x70, 0x72, 0x6f, 0x74,
-	0x6f, 0x33,
-}
+const file_cel_expr_explain_proto_rawDesc = "" +
+	"\n" +
+	"\x16cel/expr/explain.proto\x12\bcel.expr\x1a\x14cel/expr/value.proto\"\xae\x01\n" +
+	"\aExplain\x12'\n" +
+	"\x06values\x18\x01 \x03(\v2\x0f.cel.expr.ValueR\x06values\x129\n" +
+	"\n" +
+	"expr_steps\x18\x02 \x03(\v2\x1a.cel.expr.Explain.ExprStepR\texprSteps\x1a;\n" +
+	"\bExprStep\x12\x0e\n" +
+	"\x02id\x18\x01 \x01(\x03R\x02id\x12\x1f\n" +
+	"\vvalue_index\x18\x02 \x01(\x05R\n" +
+	"valueIndex:\x02\x18\x01B/\n" +
+	"\fdev.cel.exprB\fExplainProtoP\x01Z\fcel.dev/expr\xf8\x01\x01b\x06proto3"
 
 var (
 	file_cel_expr_explain_proto_rawDescOnce sync.Once
-	file_cel_expr_explain_proto_rawDescData = file_cel_expr_explain_proto_rawDesc
+	file_cel_expr_explain_proto_rawDescData []byte
 )
 
 func file_cel_expr_explain_proto_rawDescGZIP() []byte {
 	file_cel_expr_explain_proto_rawDescOnce.Do(func() {
-		file_cel_expr_explain_proto_rawDescData = protoimpl.X.CompressGZIP(file_cel_expr_explain_proto_rawDescData)
+		file_cel_expr_explain_proto_rawDescData = protoimpl.X.CompressGZIP(unsafe.Slice(unsafe.StringData(file_cel_expr_explain_proto_rawDesc), len(file_cel_expr_explain_proto_rawDesc)))
 	})
 	return file_cel_expr_explain_proto_rawDescData
 }
 
 var file_cel_expr_explain_proto_msgTypes = make([]protoimpl.MessageInfo, 2)
-var file_cel_expr_explain_proto_goTypes = []interface{}{
+var file_cel_expr_explain_proto_goTypes = []any{
 	(*Explain)(nil),          // 0: cel.expr.Explain
 	(*Explain_ExprStep)(nil), // 1: cel.expr.Explain.ExprStep
 	(*Value)(nil),            // 2: cel.expr.Value
@@ -189,37 +175,11 @@
 		return
 	}
 	file_cel_expr_value_proto_init()
-	if !protoimpl.UnsafeEnabled {
-		file_cel_expr_explain_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Explain); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_explain_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Explain_ExprStep); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-	}
 	type x struct{}
 	out := protoimpl.TypeBuilder{
 		File: protoimpl.DescBuilder{
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
-			RawDescriptor: file_cel_expr_explain_proto_rawDesc,
+			RawDescriptor: unsafe.Slice(unsafe.StringData(file_cel_expr_explain_proto_rawDesc), len(file_cel_expr_explain_proto_rawDesc)),
 			NumEnums:      0,
 			NumMessages:   2,
 			NumExtensions: 0,
@@ -230,7 +190,6 @@
 		MessageInfos:      file_cel_expr_explain_proto_msgTypes,
 	}.Build()
 	File_cel_expr_explain_proto = out.File
-	file_cel_expr_explain_proto_rawDesc = nil
 	file_cel_expr_explain_proto_goTypes = nil
 	file_cel_expr_explain_proto_depIdxs = nil
 }
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/syntax.pb.go /work/src/kubernetes/vendor/cel.dev/expr/syntax.pb.go
--- a/vendor/cel.dev/expr/syntax.pb.go	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/syntax.pb.go	2026-09-02 10:25:21.641024685 +0000
@@ -1,7 +1,7 @@
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.28.1
-// 	protoc        v3.21.5
+// 	protoc-gen-go v1.36.10
+// 	protoc        v5.27.1
 // source: cel/expr/syntax.proto
 
 package expr
@@ -14,6 +14,7 @@
 	timestamppb "google.golang.org/protobuf/types/known/timestamppb"
 	reflect "reflect"
 	sync "sync"
+	unsafe "unsafe"
 )
 
 const (
@@ -76,21 +77,18 @@
 }
 
 type ParsedExpr struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Expr          *Expr                  `protobuf:"bytes,2,opt,name=expr,proto3" json:"expr,omitempty"`
+	SourceInfo    *SourceInfo            `protobuf:"bytes,3,opt,name=source_info,json=sourceInfo,proto3" json:"source_info,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Expr       *Expr       `protobuf:"bytes,2,opt,name=expr,proto3" json:"expr,omitempty"`
-	SourceInfo *SourceInfo `protobuf:"bytes,3,opt,name=source_info,json=sourceInfo,proto3" json:"source_info,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *ParsedExpr) Reset() {
 	*x = ParsedExpr{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[0]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[0]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *ParsedExpr) String() string {
@@ -101,7 +99,7 @@
 
 func (x *ParsedExpr) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[0]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -131,12 +129,9 @@
 }
 
 type Expr struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	Id int64 `protobuf:"varint,2,opt,name=id,proto3" json:"id,omitempty"`
-	// Types that are assignable to ExprKind:
+	state protoimpl.MessageState `protogen:"open.v1"`
+	Id    int64                  `protobuf:"varint,2,opt,name=id,proto3" json:"id,omitempty"`
+	// Types that are valid to be assigned to ExprKind:
 	//
 	//	*Expr_ConstExpr
 	//	*Expr_IdentExpr
@@ -145,16 +140,16 @@
 	//	*Expr_ListExpr
 	//	*Expr_StructExpr
 	//	*Expr_ComprehensionExpr
-	ExprKind isExpr_ExprKind `protobuf_oneof:"expr_kind"`
+	ExprKind      isExpr_ExprKind `protobuf_oneof:"expr_kind"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr) Reset() {
 	*x = Expr{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[1]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[1]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr) String() string {
@@ -165,7 +160,7 @@
 
 func (x *Expr) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[1]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -187,58 +182,72 @@
 	return 0
 }
 
-func (m *Expr) GetExprKind() isExpr_ExprKind {
-	if m != nil {
-		return m.ExprKind
+func (x *Expr) GetExprKind() isExpr_ExprKind {
+	if x != nil {
+		return x.ExprKind
 	}
 	return nil
 }
 
 func (x *Expr) GetConstExpr() *Constant {
-	if x, ok := x.GetExprKind().(*Expr_ConstExpr); ok {
-		return x.ConstExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_ConstExpr); ok {
+			return x.ConstExpr
+		}
 	}
 	return nil
 }
 
 func (x *Expr) GetIdentExpr() *Expr_Ident {
-	if x, ok := x.GetExprKind().(*Expr_IdentExpr); ok {
-		return x.IdentExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_IdentExpr); ok {
+			return x.IdentExpr
+		}
 	}
 	return nil
 }
 
 func (x *Expr) GetSelectExpr() *Expr_Select {
-	if x, ok := x.GetExprKind().(*Expr_SelectExpr); ok {
-		return x.SelectExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_SelectExpr); ok {
+			return x.SelectExpr
+		}
 	}
 	return nil
 }
 
 func (x *Expr) GetCallExpr() *Expr_Call {
-	if x, ok := x.GetExprKind().(*Expr_CallExpr); ok {
-		return x.CallExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_CallExpr); ok {
+			return x.CallExpr
+		}
 	}
 	return nil
 }
 
 func (x *Expr) GetListExpr() *Expr_CreateList {
-	if x, ok := x.GetExprKind().(*Expr_ListExpr); ok {
-		return x.ListExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_ListExpr); ok {
+			return x.ListExpr
+		}
 	}
 	return nil
 }
 
 func (x *Expr) GetStructExpr() *Expr_CreateStruct {
-	if x, ok := x.GetExprKind().(*Expr_StructExpr); ok {
-		return x.StructExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_StructExpr); ok {
+			return x.StructExpr
+		}
 	}
 	return nil
 }
 
 func (x *Expr) GetComprehensionExpr() *Expr_Comprehension {
-	if x, ok := x.GetExprKind().(*Expr_ComprehensionExpr); ok {
-		return x.ComprehensionExpr
+	if x != nil {
+		if x, ok := x.ExprKind.(*Expr_ComprehensionExpr); ok {
+			return x.ComprehensionExpr
+		}
 	}
 	return nil
 }
@@ -290,11 +299,8 @@
 func (*Expr_ComprehensionExpr) isExpr_ExprKind() {}
 
 type Constant struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	// Types that are assignable to ConstantKind:
+	state protoimpl.MessageState `protogen:"open.v1"`
+	// Types that are valid to be assigned to ConstantKind:
 	//
 	//	*Constant_NullValue
 	//	*Constant_BoolValue
@@ -305,16 +311,16 @@
 	//	*Constant_BytesValue
 	//	*Constant_DurationValue
 	//	*Constant_TimestampValue
-	ConstantKind isConstant_ConstantKind `protobuf_oneof:"constant_kind"`
+	ConstantKind  isConstant_ConstantKind `protobuf_oneof:"constant_kind"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Constant) Reset() {
 	*x = Constant{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[2]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[2]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Constant) String() string {
@@ -325,7 +331,7 @@
 
 func (x *Constant) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[2]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -340,74 +346,92 @@
 	return file_cel_expr_syntax_proto_rawDescGZIP(), []int{2}
 }
 
-func (m *Constant) GetConstantKind() isConstant_ConstantKind {
-	if m != nil {
-		return m.ConstantKind
+func (x *Constant) GetConstantKind() isConstant_ConstantKind {
+	if x != nil {
+		return x.ConstantKind
 	}
 	return nil
 }
 
 func (x *Constant) GetNullValue() structpb.NullValue {
-	if x, ok := x.GetConstantKind().(*Constant_NullValue); ok {
-		return x.NullValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_NullValue); ok {
+			return x.NullValue
+		}
 	}
 	return structpb.NullValue(0)
 }
 
 func (x *Constant) GetBoolValue() bool {
-	if x, ok := x.GetConstantKind().(*Constant_BoolValue); ok {
-		return x.BoolValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_BoolValue); ok {
+			return x.BoolValue
+		}
 	}
 	return false
 }
 
 func (x *Constant) GetInt64Value() int64 {
-	if x, ok := x.GetConstantKind().(*Constant_Int64Value); ok {
-		return x.Int64Value
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_Int64Value); ok {
+			return x.Int64Value
+		}
 	}
 	return 0
 }
 
 func (x *Constant) GetUint64Value() uint64 {
-	if x, ok := x.GetConstantKind().(*Constant_Uint64Value); ok {
-		return x.Uint64Value
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_Uint64Value); ok {
+			return x.Uint64Value
+		}
 	}
 	return 0
 }
 
 func (x *Constant) GetDoubleValue() float64 {
-	if x, ok := x.GetConstantKind().(*Constant_DoubleValue); ok {
-		return x.DoubleValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_DoubleValue); ok {
+			return x.DoubleValue
+		}
 	}
 	return 0
 }
 
 func (x *Constant) GetStringValue() string {
-	if x, ok := x.GetConstantKind().(*Constant_StringValue); ok {
-		return x.StringValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_StringValue); ok {
+			return x.StringValue
+		}
 	}
 	return ""
 }
 
 func (x *Constant) GetBytesValue() []byte {
-	if x, ok := x.GetConstantKind().(*Constant_BytesValue); ok {
-		return x.BytesValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_BytesValue); ok {
+			return x.BytesValue
+		}
 	}
 	return nil
 }
 
-// Deprecated: Do not use.
+// Deprecated: Marked as deprecated in cel/expr/syntax.proto.
 func (x *Constant) GetDurationValue() *durationpb.Duration {
-	if x, ok := x.GetConstantKind().(*Constant_DurationValue); ok {
-		return x.DurationValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_DurationValue); ok {
+			return x.DurationValue
+		}
 	}
 	return nil
 }
 
-// Deprecated: Do not use.
+// Deprecated: Marked as deprecated in cel/expr/syntax.proto.
 func (x *Constant) GetTimestampValue() *timestamppb.Timestamp {
-	if x, ok := x.GetConstantKind().(*Constant_TimestampValue); ok {
-		return x.TimestampValue
+	if x != nil {
+		if x, ok := x.ConstantKind.(*Constant_TimestampValue); ok {
+			return x.TimestampValue
+		}
 	}
 	return nil
 }
@@ -445,12 +469,12 @@
 }
 
 type Constant_DurationValue struct {
-	// Deprecated: Do not use.
+	// Deprecated: Marked as deprecated in cel/expr/syntax.proto.
 	DurationValue *durationpb.Duration `protobuf:"bytes,8,opt,name=duration_value,json=durationValue,proto3,oneof"`
 }
 
 type Constant_TimestampValue struct {
-	// Deprecated: Do not use.
+	// Deprecated: Marked as deprecated in cel/expr/syntax.proto.
 	TimestampValue *timestamppb.Timestamp `protobuf:"bytes,9,opt,name=timestamp_value,json=timestampValue,proto3,oneof"`
 }
 
@@ -473,25 +497,22 @@
 func (*Constant_TimestampValue) isConstant_ConstantKind() {}
 
 type SourceInfo struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
+	state         protoimpl.MessageState  `protogen:"open.v1"`
 	SyntaxVersion string                  `protobuf:"bytes,1,opt,name=syntax_version,json=syntaxVersion,proto3" json:"syntax_version,omitempty"`
 	Location      string                  `protobuf:"bytes,2,opt,name=location,proto3" json:"location,omitempty"`
 	LineOffsets   []int32                 `protobuf:"varint,3,rep,packed,name=line_offsets,json=lineOffsets,proto3" json:"line_offsets,omitempty"`
-	Positions     map[int64]int32         `protobuf:"bytes,4,rep,name=positions,proto3" json:"positions,omitempty" protobuf_key:"varint,1,opt,name=key,proto3" protobuf_val:"varint,2,opt,name=value,proto3"`
-	MacroCalls    map[int64]*Expr         `protobuf:"bytes,5,rep,name=macro_calls,json=macroCalls,proto3" json:"macro_calls,omitempty" protobuf_key:"varint,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"`
+	Positions     map[int64]int32         `protobuf:"bytes,4,rep,name=positions,proto3" json:"positions,omitempty" protobuf_key:"varint,1,opt,name=key" protobuf_val:"varint,2,opt,name=value"`
+	MacroCalls    map[int64]*Expr         `protobuf:"bytes,5,rep,name=macro_calls,json=macroCalls,proto3" json:"macro_calls,omitempty" protobuf_key:"varint,1,opt,name=key" protobuf_val:"bytes,2,opt,name=value"`
 	Extensions    []*SourceInfo_Extension `protobuf:"bytes,6,rep,name=extensions,proto3" json:"extensions,omitempty"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *SourceInfo) Reset() {
 	*x = SourceInfo{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[3]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[3]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *SourceInfo) String() string {
@@ -502,7 +523,7 @@
 
 func (x *SourceInfo) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[3]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -560,20 +581,17 @@
 }
 
 type Expr_Ident struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Name          string                 `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Name string `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr_Ident) Reset() {
 	*x = Expr_Ident{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[4]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[4]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_Ident) String() string {
@@ -584,7 +602,7 @@
 
 func (x *Expr_Ident) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[4]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -607,22 +625,19 @@
 }
 
 type Expr_Select struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Operand       *Expr                  `protobuf:"bytes,1,opt,name=operand,proto3" json:"operand,omitempty"`
+	Field         string                 `protobuf:"bytes,2,opt,name=field,proto3" json:"field,omitempty"`
+	TestOnly      bool                   `protobuf:"varint,3,opt,name=test_only,json=testOnly,proto3" json:"test_only,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Operand  *Expr  `protobuf:"bytes,1,opt,name=operand,proto3" json:"operand,omitempty"`
-	Field    string `protobuf:"bytes,2,opt,name=field,proto3" json:"field,omitempty"`
-	TestOnly bool   `protobuf:"varint,3,opt,name=test_only,json=testOnly,proto3" json:"test_only,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr_Select) Reset() {
 	*x = Expr_Select{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[5]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[5]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_Select) String() string {
@@ -633,7 +648,7 @@
 
 func (x *Expr_Select) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[5]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -670,22 +685,19 @@
 }
 
 type Expr_Call struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Target        *Expr                  `protobuf:"bytes,1,opt,name=target,proto3" json:"target,omitempty"`
+	Function      string                 `protobuf:"bytes,2,opt,name=function,proto3" json:"function,omitempty"`
+	Args          []*Expr                `protobuf:"bytes,3,rep,name=args,proto3" json:"args,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Target   *Expr   `protobuf:"bytes,1,opt,name=target,proto3" json:"target,omitempty"`
-	Function string  `protobuf:"bytes,2,opt,name=function,proto3" json:"function,omitempty"`
-	Args     []*Expr `protobuf:"bytes,3,rep,name=args,proto3" json:"args,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr_Call) Reset() {
 	*x = Expr_Call{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[6]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[6]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_Call) String() string {
@@ -696,7 +708,7 @@
 
 func (x *Expr_Call) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[6]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -733,21 +745,18 @@
 }
 
 type Expr_CreateList struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	Elements        []*Expr `protobuf:"bytes,1,rep,name=elements,proto3" json:"elements,omitempty"`
-	OptionalIndices []int32 `protobuf:"varint,2,rep,packed,name=optional_indices,json=optionalIndices,proto3" json:"optional_indices,omitempty"`
+	state           protoimpl.MessageState `protogen:"open.v1"`
+	Elements        []*Expr                `protobuf:"bytes,1,rep,name=elements,proto3" json:"elements,omitempty"`
+	OptionalIndices []int32                `protobuf:"varint,2,rep,packed,name=optional_indices,json=optionalIndices,proto3" json:"optional_indices,omitempty"`
+	unknownFields   protoimpl.UnknownFields
+	sizeCache       protoimpl.SizeCache
 }
 
 func (x *Expr_CreateList) Reset() {
 	*x = Expr_CreateList{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[7]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[7]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_CreateList) String() string {
@@ -758,7 +767,7 @@
 
 func (x *Expr_CreateList) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[7]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -788,21 +797,18 @@
 }
 
 type Expr_CreateStruct struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState     `protogen:"open.v1"`
+	MessageName   string                     `protobuf:"bytes,1,opt,name=message_name,json=messageName,proto3" json:"message_name,omitempty"`
+	Entries       []*Expr_CreateStruct_Entry `protobuf:"bytes,2,rep,name=entries,proto3" json:"entries,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	MessageName string                     `protobuf:"bytes,1,opt,name=message_name,json=messageName,proto3" json:"message_name,omitempty"`
-	Entries     []*Expr_CreateStruct_Entry `protobuf:"bytes,2,rep,name=entries,proto3" json:"entries,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr_CreateStruct) Reset() {
 	*x = Expr_CreateStruct{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[8]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[8]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_CreateStruct) String() string {
@@ -813,7 +819,7 @@
 
 func (x *Expr_CreateStruct) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[8]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -843,26 +849,24 @@
 }
 
 type Expr_Comprehension struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	IterVar       string                 `protobuf:"bytes,1,opt,name=iter_var,json=iterVar,proto3" json:"iter_var,omitempty"`
+	IterVar2      string                 `protobuf:"bytes,8,opt,name=iter_var2,json=iterVar2,proto3" json:"iter_var2,omitempty"`
+	IterRange     *Expr                  `protobuf:"bytes,2,opt,name=iter_range,json=iterRange,proto3" json:"iter_range,omitempty"`
+	AccuVar       string                 `protobuf:"bytes,3,opt,name=accu_var,json=accuVar,proto3" json:"accu_var,omitempty"`
+	AccuInit      *Expr                  `protobuf:"bytes,4,opt,name=accu_init,json=accuInit,proto3" json:"accu_init,omitempty"`
+	LoopCondition *Expr                  `protobuf:"bytes,5,opt,name=loop_condition,json=loopCondition,proto3" json:"loop_condition,omitempty"`
+	LoopStep      *Expr                  `protobuf:"bytes,6,opt,name=loop_step,json=loopStep,proto3" json:"loop_step,omitempty"`
+	Result        *Expr                  `protobuf:"bytes,7,opt,name=result,proto3" json:"result,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	IterVar       string `protobuf:"bytes,1,opt,name=iter_var,json=iterVar,proto3" json:"iter_var,omitempty"`
-	IterRange     *Expr  `protobuf:"bytes,2,opt,name=iter_range,json=iterRange,proto3" json:"iter_range,omitempty"`
-	AccuVar       string `protobuf:"bytes,3,opt,name=accu_var,json=accuVar,proto3" json:"accu_var,omitempty"`
-	AccuInit      *Expr  `protobuf:"bytes,4,opt,name=accu_init,json=accuInit,proto3" json:"accu_init,omitempty"`
-	LoopCondition *Expr  `protobuf:"bytes,5,opt,name=loop_condition,json=loopCondition,proto3" json:"loop_condition,omitempty"`
-	LoopStep      *Expr  `protobuf:"bytes,6,opt,name=loop_step,json=loopStep,proto3" json:"loop_step,omitempty"`
-	Result        *Expr  `protobuf:"bytes,7,opt,name=result,proto3" json:"result,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr_Comprehension) Reset() {
 	*x = Expr_Comprehension{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[9]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[9]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_Comprehension) String() string {
@@ -873,7 +877,7 @@
 
 func (x *Expr_Comprehension) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[9]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -895,6 +899,13 @@
 	return ""
 }
 
+func (x *Expr_Comprehension) GetIterVar2() string {
+	if x != nil {
+		return x.IterVar2
+	}
+	return ""
+}
+
 func (x *Expr_Comprehension) GetIterRange() *Expr {
 	if x != nil {
 		return x.IterRange
@@ -938,27 +949,24 @@
 }
 
 type Expr_CreateStruct_Entry struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	Id int64 `protobuf:"varint,1,opt,name=id,proto3" json:"id,omitempty"`
-	// Types that are assignable to KeyKind:
+	state protoimpl.MessageState `protogen:"open.v1"`
+	Id    int64                  `protobuf:"varint,1,opt,name=id,proto3" json:"id,omitempty"`
+	// Types that are valid to be assigned to KeyKind:
 	//
 	//	*Expr_CreateStruct_Entry_FieldKey
 	//	*Expr_CreateStruct_Entry_MapKey
 	KeyKind       isExpr_CreateStruct_Entry_KeyKind `protobuf_oneof:"key_kind"`
 	Value         *Expr                             `protobuf:"bytes,4,opt,name=value,proto3" json:"value,omitempty"`
 	OptionalEntry bool                              `protobuf:"varint,5,opt,name=optional_entry,json=optionalEntry,proto3" json:"optional_entry,omitempty"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Expr_CreateStruct_Entry) Reset() {
 	*x = Expr_CreateStruct_Entry{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[10]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[10]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Expr_CreateStruct_Entry) String() string {
@@ -969,7 +977,7 @@
 
 func (x *Expr_CreateStruct_Entry) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[10]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -991,23 +999,27 @@
 	return 0
 }
 
-func (m *Expr_CreateStruct_Entry) GetKeyKind() isExpr_CreateStruct_Entry_KeyKind {
-	if m != nil {
-		return m.KeyKind
+func (x *Expr_CreateStruct_Entry) GetKeyKind() isExpr_CreateStruct_Entry_KeyKind {
+	if x != nil {
+		return x.KeyKind
 	}
 	return nil
 }
 
 func (x *Expr_CreateStruct_Entry) GetFieldKey() string {
-	if x, ok := x.GetKeyKind().(*Expr_CreateStruct_Entry_FieldKey); ok {
-		return x.FieldKey
+	if x != nil {
+		if x, ok := x.KeyKind.(*Expr_CreateStruct_Entry_FieldKey); ok {
+			return x.FieldKey
+		}
 	}
 	return ""
 }
 
 func (x *Expr_CreateStruct_Entry) GetMapKey() *Expr {
-	if x, ok := x.GetKeyKind().(*Expr_CreateStruct_Entry_MapKey); ok {
-		return x.MapKey
+	if x != nil {
+		if x, ok := x.KeyKind.(*Expr_CreateStruct_Entry_MapKey); ok {
+			return x.MapKey
+		}
 	}
 	return nil
 }
@@ -1043,22 +1055,19 @@
 func (*Expr_CreateStruct_Entry_MapKey) isExpr_CreateStruct_Entry_KeyKind() {}
 
 type SourceInfo_Extension struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
+	state              protoimpl.MessageState           `protogen:"open.v1"`
 	Id                 string                           `protobuf:"bytes,1,opt,name=id,proto3" json:"id,omitempty"`
 	AffectedComponents []SourceInfo_Extension_Component `protobuf:"varint,2,rep,packed,name=affected_components,json=affectedComponents,proto3,enum=cel.expr.SourceInfo_Extension_Component" json:"affected_components,omitempty"`
 	Version            *SourceInfo_Extension_Version    `protobuf:"bytes,3,opt,name=version,proto3" json:"version,omitempty"`
+	unknownFields      protoimpl.UnknownFields
+	sizeCache          protoimpl.SizeCache
 }
 
 func (x *SourceInfo_Extension) Reset() {
 	*x = SourceInfo_Extension{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[13]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[13]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *SourceInfo_Extension) String() string {
@@ -1069,7 +1078,7 @@
 
 func (x *SourceInfo_Extension) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[13]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -1106,21 +1115,18 @@
 }
 
 type SourceInfo_Extension_Version struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Major         int64                  `protobuf:"varint,1,opt,name=major,proto3" json:"major,omitempty"`
+	Minor         int64                  `protobuf:"varint,2,opt,name=minor,proto3" json:"minor,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Major int64 `protobuf:"varint,1,opt,name=major,proto3" json:"major,omitempty"`
-	Minor int64 `protobuf:"varint,2,opt,name=minor,proto3" json:"minor,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *SourceInfo_Extension_Version) Reset() {
 	*x = SourceInfo_Extension_Version{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_syntax_proto_msgTypes[14]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_syntax_proto_msgTypes[14]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *SourceInfo_Extension_Version) String() string {
@@ -1131,7 +1137,7 @@
 
 func (x *SourceInfo_Extension_Version) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_syntax_proto_msgTypes[14]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -1162,210 +1168,124 @@
 
 var File_cel_expr_syntax_proto protoreflect.FileDescriptor
 
-var file_cel_expr_syntax_proto_rawDesc = []byte{
-	0x0a, 0x15, 0x63, 0x65, 0x6c, 0x2f, 0x65, 0x78, 0x70, 0x72, 0x2f, 0x73, 0x79, 0x6e, 0x74, 0x61,
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-}
+const file_cel_expr_syntax_proto_rawDesc = "" +
+	"\n" +
+	"\x15cel/expr/syntax.proto\x12\bcel.expr\x1a\x1egoogle/protobuf/duration.proto\x1a\x1cgoogle/protobuf/struct.proto\x1a\x1fgoogle/protobuf/timestamp.proto\"g\n" +
+	"\n" +
+	"ParsedExpr\x12\"\n" +
+	"\x04expr\x18\x02 \x01(\v2\x0e.cel.expr.ExprR\x04expr\x125\n" +
+	"\vsource_info\x18\x03 \x01(\v2\x14.cel.expr.SourceInfoR\n" +
+	"sourceInfo\"\x9a\v\n" +
+	"\x04Expr\x12\x0e\n" +
+	"\x02id\x18\x02 \x01(\x03R\x02id\x123\n" +
+	"\n" +
+	"const_expr\x18\x03 \x01(\v2\x12.cel.expr.ConstantH\x00R\tconstExpr\x125\n" +
+	"\n" +
+	"ident_expr\x18\x04 \x01(\v2\x14.cel.expr.Expr.IdentH\x00R\tidentExpr\x128\n" +
+	"\vselect_expr\x18\x05 \x01(\v2\x15.cel.expr.Expr.SelectH\x00R\n" +
+	"selectExpr\x122\n" +
+	"\tcall_expr\x18\x06 \x01(\v2\x13.cel.expr.Expr.CallH\x00R\bcallExpr\x128\n" +
+	"\tlist_expr\x18\a \x01(\v2\x19.cel.expr.Expr.CreateListH\x00R\blistExpr\x12>\n" +
+	"\vstruct_expr\x18\b \x01(\v2\x1b.cel.expr.Expr.CreateStructH\x00R\n" +
+	"structExpr\x12M\n" +
+	"\x12comprehension_expr\x18\t \x01(\v2\x1c.cel.expr.Expr.ComprehensionH\x00R\x11comprehensionExpr\x1a\x1b\n" +
+	"\x05Ident\x12\x12\n" +
+	"\x04name\x18\x01 \x01(\tR\x04name\x1ae\n" +
+	"\x06Select\x12(\n" +
+	"\aoperand\x18\x01 \x01(\v2\x0e.cel.expr.ExprR\aoperand\x12\x14\n" +
+	"\x05field\x18\x02 \x01(\tR\x05field\x12\x1b\n" +
+	"\ttest_only\x18\x03 \x01(\bR\btestOnly\x1an\n" +
+	"\x04Call\x12&\n" +
+	"\x06target\x18\x01 \x01(\v2\x0e.cel.expr.ExprR\x06target\x12\x1a\n" +
+	"\bfunction\x18\x02 \x01(\tR\bfunction\x12\"\n" +
+	"\x04args\x18\x03 \x03(\v2\x0e.cel.expr.ExprR\x04args\x1ac\n" +
+	"\n" +
+	"CreateList\x12*\n" +
+	"\belements\x18\x01 \x03(\v2\x0e.cel.expr.ExprR\belements\x12)\n" +
+	"\x10optional_indices\x18\x02 \x03(\x05R\x0foptionalIndices\x1a\xab\x02\n" +
+	"\fCreateStruct\x12!\n" +
+	"\fmessage_name\x18\x01 \x01(\tR\vmessageName\x12;\n" +
+	"\aentries\x18\x02 \x03(\v2!.cel.expr.Expr.CreateStruct.EntryR\aentries\x1a\xba\x01\n" +
+	"\x05Entry\x12\x0e\n" +
+	"\x02id\x18\x01 \x01(\x03R\x02id\x12\x1d\n" +
+	"\tfield_key\x18\x02 \x01(\tH\x00R\bfieldKey\x12)\n" +
+	"\amap_key\x18\x03 \x01(\v2\x0e.cel.expr.ExprH\x00R\x06mapKey\x12$\n" +
+	"\x05value\x18\x04 \x01(\v2\x0e.cel.expr.ExprR\x05value\x12%\n" +
+	"\x0eoptional_entry\x18\x05 \x01(\bR\roptionalEntryB\n" +
+	"\n" +
+	"\bkey_kind\x1a\xca\x02\n" +
+	"\rComprehension\x12\x19\n" +
+	"\biter_var\x18\x01 \x01(\tR\aiterVar\x12\x1b\n" +
+	"\titer_var2\x18\b \x01(\tR\biterVar2\x12-\n" +
+	"\n" +
+	"iter_range\x18\x02 \x01(\v2\x0e.cel.expr.ExprR\titerRange\x12\x19\n" +
+	"\baccu_var\x18\x03 \x01(\tR\aaccuVar\x12+\n" +
+	"\taccu_init\x18\x04 \x01(\v2\x0e.cel.expr.ExprR\baccuInit\x125\n" +
+	"\x0eloop_condition\x18\x05 \x01(\v2\x0e.cel.expr.ExprR\rloopCondition\x12+\n" +
+	"\tloop_step\x18\x06 \x01(\v2\x0e.cel.expr.ExprR\bloopStep\x12&\n" +
+	"\x06result\x18\a \x01(\v2\x0e.cel.expr.ExprR\x06resultB\v\n" +
+	"\texpr_kind\"\xc1\x03\n" +
+	"\bConstant\x12;\n" +
+	"\n" +
+	"null_value\x18\x01 \x01(\x0e2\x1a.google.protobuf.NullValueH\x00R\tnullValue\x12\x1f\n" +
+	"\n" +
+	"bool_value\x18\x02 \x01(\bH\x00R\tboolValue\x12!\n" +
+	"\vint64_value\x18\x03 \x01(\x03H\x00R\n" +
+	"int64Value\x12#\n" +
+	"\fuint64_value\x18\x04 \x01(\x04H\x00R\vuint64Value\x12#\n" +
+	"\fdouble_value\x18\x05 \x01(\x01H\x00R\vdoubleValue\x12#\n" +
+	"\fstring_value\x18\x06 \x01(\tH\x00R\vstringValue\x12!\n" +
+	"\vbytes_value\x18\a \x01(\fH\x00R\n" +
+	"bytesValue\x12F\n" +
+	"\x0eduration_value\x18\b \x01(\v2\x19.google.protobuf.DurationB\x02\x18\x01H\x00R\rdurationValue\x12I\n" +
+	"\x0ftimestamp_value\x18\t \x01(\v2\x1a.google.protobuf.TimestampB\x02\x18\x01H\x00R\x0etimestampValueB\x0f\n" +
+	"\rconstant_kind\"\xac\x06\n" +
+	"\n" +
+	"SourceInfo\x12%\n" +
+	"\x0esyntax_version\x18\x01 \x01(\tR\rsyntaxVersion\x12\x1a\n" +
+	"\blocation\x18\x02 \x01(\tR\blocation\x12!\n" +
+	"\fline_offsets\x18\x03 \x03(\x05R\vlineOffsets\x12A\n" +
+	"\tpositions\x18\x04 \x03(\v2#.cel.expr.SourceInfo.PositionsEntryR\tpositions\x12E\n" +
+	"\vmacro_calls\x18\x05 \x03(\v2$.cel.expr.SourceInfo.MacroCallsEntryR\n" +
+	"macroCalls\x12>\n" +
+	"\n" +
+	"extensions\x18\x06 \x03(\v2\x1e.cel.expr.SourceInfo.ExtensionR\n" +
+	"extensions\x1a<\n" +
+	"\x0ePositionsEntry\x12\x10\n" +
+	"\x03key\x18\x01 \x01(\x03R\x03key\x12\x14\n" +
+	"\x05value\x18\x02 \x01(\x05R\x05value:\x028\x01\x1aM\n" +
+	"\x0fMacroCallsEntry\x12\x10\n" +
+	"\x03key\x18\x01 \x01(\x03R\x03key\x12$\n" +
+	"\x05value\x18\x02 \x01(\v2\x0e.cel.expr.ExprR\x05value:\x028\x01\x1a\xe0\x02\n" +
+	"\tExtension\x12\x0e\n" +
+	"\x02id\x18\x01 \x01(\tR\x02id\x12Y\n" +
+	"\x13affected_components\x18\x02 \x03(\x0e2(.cel.expr.SourceInfo.Extension.ComponentR\x12affectedComponents\x12@\n" +
+	"\aversion\x18\x03 \x01(\v2&.cel.expr.SourceInfo.Extension.VersionR\aversion\x1a5\n" +
+	"\aVersion\x12\x14\n" +
+	"\x05major\x18\x01 \x01(\x03R\x05major\x12\x14\n" +
+	"\x05minor\x18\x02 \x01(\x03R\x05minor\"o\n" +
+	"\tComponent\x12\x19\n" +
+	"\x15COMPONENT_UNSPECIFIED\x10\x00\x12\x14\n" +
+	"\x10COMPONENT_PARSER\x10\x01\x12\x1a\n" +
+	"\x16COMPONENT_TYPE_CHECKER\x10\x02\x12\x15\n" +
+	"\x11COMPONENT_RUNTIME\x10\x03B.\n" +
+	"\fdev.cel.exprB\vSyntaxProtoP\x01Z\fcel.dev/expr\xf8\x01\x01b\x06proto3"
 
 var (
 	file_cel_expr_syntax_proto_rawDescOnce sync.Once
-	file_cel_expr_syntax_proto_rawDescData = file_cel_expr_syntax_proto_rawDesc
+	file_cel_expr_syntax_proto_rawDescData []byte
 )
 
 func file_cel_expr_syntax_proto_rawDescGZIP() []byte {
 	file_cel_expr_syntax_proto_rawDescOnce.Do(func() {
-		file_cel_expr_syntax_proto_rawDescData = protoimpl.X.CompressGZIP(file_cel_expr_syntax_proto_rawDescData)
+		file_cel_expr_syntax_proto_rawDescData = protoimpl.X.CompressGZIP(unsafe.Slice(unsafe.StringData(file_cel_expr_syntax_proto_rawDesc), len(file_cel_expr_syntax_proto_rawDesc)))
 	})
 	return file_cel_expr_syntax_proto_rawDescData
 }
 
 var file_cel_expr_syntax_proto_enumTypes = make([]protoimpl.EnumInfo, 1)
 var file_cel_expr_syntax_proto_msgTypes = make([]protoimpl.MessageInfo, 15)
-var file_cel_expr_syntax_proto_goTypes = []interface{}{
+var file_cel_expr_syntax_proto_goTypes = []any{
 	(SourceInfo_Extension_Component)(0),  // 0: cel.expr.SourceInfo.Extension.Component
 	(*ParsedExpr)(nil),                   // 1: cel.expr.ParsedExpr
 	(*Expr)(nil),                         // 2: cel.expr.Expr
@@ -1429,165 +1349,7 @@
 	if File_cel_expr_syntax_proto != nil {
 		return
 	}
-	if !protoimpl.UnsafeEnabled {
-		file_cel_expr_syntax_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*ParsedExpr); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Constant); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*SourceInfo); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_Ident); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_Select); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[6].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_Call); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[7].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_CreateList); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[8].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_CreateStruct); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[9].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_Comprehension); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[10].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Expr_CreateStruct_Entry); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[13].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*SourceInfo_Extension); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_syntax_proto_msgTypes[14].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*SourceInfo_Extension_Version); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-	}
-	file_cel_expr_syntax_proto_msgTypes[1].OneofWrappers = []interface{}{
+	file_cel_expr_syntax_proto_msgTypes[1].OneofWrappers = []any{
 		(*Expr_ConstExpr)(nil),
 		(*Expr_IdentExpr)(nil),
 		(*Expr_SelectExpr)(nil),
@@ -1596,7 +1358,7 @@
 		(*Expr_StructExpr)(nil),
 		(*Expr_ComprehensionExpr)(nil),
 	}
-	file_cel_expr_syntax_proto_msgTypes[2].OneofWrappers = []interface{}{
+	file_cel_expr_syntax_proto_msgTypes[2].OneofWrappers = []any{
 		(*Constant_NullValue)(nil),
 		(*Constant_BoolValue)(nil),
 		(*Constant_Int64Value)(nil),
@@ -1607,7 +1369,7 @@
 		(*Constant_DurationValue)(nil),
 		(*Constant_TimestampValue)(nil),
 	}
-	file_cel_expr_syntax_proto_msgTypes[10].OneofWrappers = []interface{}{
+	file_cel_expr_syntax_proto_msgTypes[10].OneofWrappers = []any{
 		(*Expr_CreateStruct_Entry_FieldKey)(nil),
 		(*Expr_CreateStruct_Entry_MapKey)(nil),
 	}
@@ -1615,7 +1377,7 @@
 	out := protoimpl.TypeBuilder{
 		File: protoimpl.DescBuilder{
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
-			RawDescriptor: file_cel_expr_syntax_proto_rawDesc,
+			RawDescriptor: unsafe.Slice(unsafe.StringData(file_cel_expr_syntax_proto_rawDesc), len(file_cel_expr_syntax_proto_rawDesc)),
 			NumEnums:      1,
 			NumMessages:   15,
 			NumExtensions: 0,
@@ -1627,7 +1389,6 @@
 		MessageInfos:      file_cel_expr_syntax_proto_msgTypes,
 	}.Build()
 	File_cel_expr_syntax_proto = out.File
-	file_cel_expr_syntax_proto_rawDesc = nil
 	file_cel_expr_syntax_proto_goTypes = nil
 	file_cel_expr_syntax_proto_depIdxs = nil
 }
diff -Nur /work/src-orig/kubernetes/vendor/cel.dev/expr/value.pb.go /work/src/kubernetes/vendor/cel.dev/expr/value.pb.go
--- a/vendor/cel.dev/expr/value.pb.go	2026-09-02 10:24:54.792997300 +0000
+++ b/vendor/cel.dev/expr/value.pb.go	2026-09-02 10:25:21.641024685 +0000
@@ -1,7 +1,7 @@
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.28.1
-// 	protoc        v3.21.5
+// 	protoc-gen-go v1.36.10
+// 	protoc        v5.27.1
 // source: cel/expr/value.proto
 
 package expr
@@ -13,6 +13,7 @@
 	structpb "google.golang.org/protobuf/types/known/structpb"
 	reflect "reflect"
 	sync "sync"
+	unsafe "unsafe"
 )
 
 const (
@@ -23,11 +24,8 @@
 )
 
 type Value struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
-	unknownFields protoimpl.UnknownFields
-
-	// Types that are assignable to Kind:
+	state protoimpl.MessageState `protogen:"open.v1"`
+	// Types that are valid to be assigned to Kind:
 	//
 	//	*Value_NullValue
 	//	*Value_BoolValue
@@ -41,16 +39,16 @@
 	//	*Value_MapValue
 	//	*Value_ListValue
 	//	*Value_TypeValue
-	Kind isValue_Kind `protobuf_oneof:"kind"`
+	Kind          isValue_Kind `protobuf_oneof:"kind"`
+	unknownFields protoimpl.UnknownFields
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *Value) Reset() {
 	*x = Value{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_value_proto_msgTypes[0]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_value_proto_msgTypes[0]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *Value) String() string {
@@ -61,7 +59,7 @@
 
 func (x *Value) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_value_proto_msgTypes[0]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -76,93 +74,117 @@
 	return file_cel_expr_value_proto_rawDescGZIP(), []int{0}
 }
 
-func (m *Value) GetKind() isValue_Kind {
-	if m != nil {
-		return m.Kind
+func (x *Value) GetKind() isValue_Kind {
+	if x != nil {
+		return x.Kind
 	}
 	return nil
 }
 
 func (x *Value) GetNullValue() structpb.NullValue {
-	if x, ok := x.GetKind().(*Value_NullValue); ok {
-		return x.NullValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_NullValue); ok {
+			return x.NullValue
+		}
 	}
 	return structpb.NullValue(0)
 }
 
 func (x *Value) GetBoolValue() bool {
-	if x, ok := x.GetKind().(*Value_BoolValue); ok {
-		return x.BoolValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_BoolValue); ok {
+			return x.BoolValue
+		}
 	}
 	return false
 }
 
 func (x *Value) GetInt64Value() int64 {
-	if x, ok := x.GetKind().(*Value_Int64Value); ok {
-		return x.Int64Value
+	if x != nil {
+		if x, ok := x.Kind.(*Value_Int64Value); ok {
+			return x.Int64Value
+		}
 	}
 	return 0
 }
 
 func (x *Value) GetUint64Value() uint64 {
-	if x, ok := x.GetKind().(*Value_Uint64Value); ok {
-		return x.Uint64Value
+	if x != nil {
+		if x, ok := x.Kind.(*Value_Uint64Value); ok {
+			return x.Uint64Value
+		}
 	}
 	return 0
 }
 
 func (x *Value) GetDoubleValue() float64 {
-	if x, ok := x.GetKind().(*Value_DoubleValue); ok {
-		return x.DoubleValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_DoubleValue); ok {
+			return x.DoubleValue
+		}
 	}
 	return 0
 }
 
 func (x *Value) GetStringValue() string {
-	if x, ok := x.GetKind().(*Value_StringValue); ok {
-		return x.StringValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_StringValue); ok {
+			return x.StringValue
+		}
 	}
 	return ""
 }
 
 func (x *Value) GetBytesValue() []byte {
-	if x, ok := x.GetKind().(*Value_BytesValue); ok {
-		return x.BytesValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_BytesValue); ok {
+			return x.BytesValue
+		}
 	}
 	return nil
 }
 
 func (x *Value) GetEnumValue() *EnumValue {
-	if x, ok := x.GetKind().(*Value_EnumValue); ok {
-		return x.EnumValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_EnumValue); ok {
+			return x.EnumValue
+		}
 	}
 	return nil
 }
 
 func (x *Value) GetObjectValue() *anypb.Any {
-	if x, ok := x.GetKind().(*Value_ObjectValue); ok {
-		return x.ObjectValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_ObjectValue); ok {
+			return x.ObjectValue
+		}
 	}
 	return nil
 }
 
 func (x *Value) GetMapValue() *MapValue {
-	if x, ok := x.GetKind().(*Value_MapValue); ok {
-		return x.MapValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_MapValue); ok {
+			return x.MapValue
+		}
 	}
 	return nil
 }
 
 func (x *Value) GetListValue() *ListValue {
-	if x, ok := x.GetKind().(*Value_ListValue); ok {
-		return x.ListValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_ListValue); ok {
+			return x.ListValue
+		}
 	}
 	return nil
 }
 
 func (x *Value) GetTypeValue() string {
-	if x, ok := x.GetKind().(*Value_TypeValue); ok {
-		return x.TypeValue
+	if x != nil {
+		if x, ok := x.Kind.(*Value_TypeValue); ok {
+			return x.TypeValue
+		}
 	}
 	return ""
 }
@@ -244,21 +266,18 @@
 func (*Value_TypeValue) isValue_Kind() {}
 
 type EnumValue struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Type          string                 `protobuf:"bytes,1,opt,name=type,proto3" json:"type,omitempty"`
+	Value         int32                  `protobuf:"varint,2,opt,name=value,proto3" json:"value,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Type  string `protobuf:"bytes,1,opt,name=type,proto3" json:"type,omitempty"`
-	Value int32  `protobuf:"varint,2,opt,name=value,proto3" json:"value,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *EnumValue) Reset() {
 	*x = EnumValue{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_value_proto_msgTypes[1]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_value_proto_msgTypes[1]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *EnumValue) String() string {
@@ -269,7 +288,7 @@
 
 func (x *EnumValue) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_value_proto_msgTypes[1]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -299,20 +318,17 @@
 }
 
 type ListValue struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Values        []*Value               `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Values []*Value `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *ListValue) Reset() {
 	*x = ListValue{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_value_proto_msgTypes[2]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_value_proto_msgTypes[2]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *ListValue) String() string {
@@ -323,7 +339,7 @@
 
 func (x *ListValue) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_value_proto_msgTypes[2]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -346,20 +362,17 @@
 }
 
 type MapValue struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Entries       []*MapValue_Entry      `protobuf:"bytes,1,rep,name=entries,proto3" json:"entries,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Entries []*MapValue_Entry `protobuf:"bytes,1,rep,name=entries,proto3" json:"entries,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *MapValue) Reset() {
 	*x = MapValue{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_value_proto_msgTypes[3]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_value_proto_msgTypes[3]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *MapValue) String() string {
@@ -370,7 +383,7 @@
 
 func (x *MapValue) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_value_proto_msgTypes[3]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -393,21 +406,18 @@
 }
 
 type MapValue_Entry struct {
-	state         protoimpl.MessageState
-	sizeCache     protoimpl.SizeCache
+	state         protoimpl.MessageState `protogen:"open.v1"`
+	Key           *Value                 `protobuf:"bytes,1,opt,name=key,proto3" json:"key,omitempty"`
+	Value         *Value                 `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"`
 	unknownFields protoimpl.UnknownFields
-
-	Key   *Value `protobuf:"bytes,1,opt,name=key,proto3" json:"key,omitempty"`
-	Value *Value `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"`
+	sizeCache     protoimpl.SizeCache
 }
 
 func (x *MapValue_Entry) Reset() {
 	*x = MapValue_Entry{}
-	if protoimpl.UnsafeEnabled {
-		mi := &file_cel_expr_value_proto_msgTypes[4]
-		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
-		ms.StoreMessageInfo(mi)
-	}
+	mi := &file_cel_expr_value_proto_msgTypes[4]
+	ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+	ms.StoreMessageInfo(mi)
 }
 
 func (x *MapValue_Entry) String() string {
@@ -418,7 +428,7 @@
 
 func (x *MapValue_Entry) ProtoReflect() protoreflect.Message {
 	mi := &file_cel_expr_value_proto_msgTypes[4]
-	if protoimpl.UnsafeEnabled && x != nil {
+	if x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
 			ms.StoreMessageInfo(mi)
@@ -449,83 +459,58 @@
 
 var File_cel_expr_value_proto protoreflect.FileDescriptor
 
-var file_cel_expr_value_proto_rawDesc = []byte{
-	0x0a, 0x14, 0x63, 0x65, 0x6c, 0x2f, 0x65, 0x78, 0x70, 0x72, 0x2f, 0x76, 0x61, 0x6c, 0x75, 0x65,
-	0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x12, 0x08, 0x63, 0x65, 0x6c, 0x2e, 0x65, 0x78, 0x70, 0x72,
-	0x1a, 0x19, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2f, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x62, 0x75,
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-	0x6b, 0x65, 0x79, 0x12, 0x25, 0x0a, 0x05, 0x76, 0x61, 0x6c, 0x75, 0x65, 0x18, 0x02, 0x20, 0x01,
-	0x28, 0x0b, 0x32, 0x0f, 0x2e, 0x63, 0x65, 0x6c, 0x2e, 0x65, 0x78, 0x70, 0x72, 0x2e, 0x56, 0x61,
-	0x6c, 0x75, 0x65, 0x52, 0x05, 0x76, 0x61, 0x6c, 0x75, 0x65, 0x42, 0x2d, 0x0a, 0x0c, 0x64, 0x65,
-	0x76, 0x2e, 0x63, 0x65, 0x6c, 0x2e, 0x65, 0x78, 0x70, 0x72, 0x42, 0x0a, 0x56, 0x61, 0x6c, 0x75,
-	0x65, 0x50, 0x72, 0x6f, 0x74, 0x6f, 0x50, 0x01, 0x5a, 0x0c, 0x63, 0x65, 0x6c, 0x2e, 0x64, 0x65,
-	0x76, 0x2f, 0x65, 0x78, 0x70, 0x72, 0xf8, 0x01, 0x01, 0x62, 0x06, 0x70, 0x72, 0x6f, 0x74, 0x6f,
-	0x33,
-}
+const file_cel_expr_value_proto_rawDesc = "" +
+	"\n" +
+	"\x14cel/expr/value.proto\x12\bcel.expr\x1a\x19google/protobuf/any.proto\x1a\x1cgoogle/protobuf/struct.proto\"\x9d\x04\n" +
+	"\x05Value\x12;\n" +
+	"\n" +
+	"null_value\x18\x01 \x01(\x0e2\x1a.google.protobuf.NullValueH\x00R\tnullValue\x12\x1f\n" +
+	"\n" +
+	"bool_value\x18\x02 \x01(\bH\x00R\tboolValue\x12!\n" +
+	"\vint64_value\x18\x03 \x01(\x03H\x00R\n" +
+	"int64Value\x12#\n" +
+	"\fuint64_value\x18\x04 \x01(\x04H\x00R\vuint64Value\x12#\n" +
+	"\fdouble_value\x18\x05 \x01(\x01H\x00R\vdoubleValue\x12#\n" +
+	"\fstring_value\x18\x06 \x01(\tH\x00R\vstringValue\x12!\n" +
+	"\vbytes_value\x18\a \x01(\fH\x00R\n" +
+	"bytesValue\x124\n" +
+	"\n" +
+	"enum_value\x18\t \x01(\v2\x13.cel.expr.EnumValueH\x00R\tenumValue\x129\n" +
+	"\fobject_value\x18\n" +
+	" \x01(\v2\x14.google.protobuf.AnyH\x00R\vobjectValue\x121\n" +
+	"\tmap_value\x18\v \x01(\v2\x12.cel.expr.MapValueH\x00R\bmapValue\x124\n" +
+	"\n" +
+	"list_value\x18\f \x01(\v2\x13.cel.expr.ListValueH\x00R\tlistValue\x12\x1f\n" +
+	"\n" +
+	"type_value\x18\x0f \x01(\tH\x00R\ttypeValueB\x06\n" +
+	"\x04kind\"5\n" +
+	"\tEnumValue\x12\x12\n" +
+	"\x04type\x18\x01 \x01(\tR\x04type\x12\x14\n" +
+	"\x05value\x18\x02 \x01(\x05R\x05value\"4\n" +
+	"\tListValue\x12'\n" +
+	"\x06values\x18\x01 \x03(\v2\x0f.cel.expr.ValueR\x06values\"\x91\x01\n" +
+	"\bMapValue\x122\n" +
+	"\aentries\x18\x01 \x03(\v2\x18.cel.expr.MapValue.EntryR\aentries\x1aQ\n" +
+	"\x05Entry\x12!\n" +
+	"\x03key\x18\x01 \x01(\v2\x0f.cel.expr.ValueR\x03key\x12%\n" +
+	"\x05value\x18\x02 \x01(\v2\x0f.cel.expr.ValueR\x05valueB-\n" +
+	"\fdev.cel.exprB\n" +
+	"ValueProtoP\x01Z\fcel.dev/expr\xf8\x01\x01b\x06proto3"
 
 var (
 	file_cel_expr_value_proto_rawDescOnce sync.Once
-	file_cel_expr_value_proto_rawDescData = file_cel_expr_value_proto_rawDesc
+	file_cel_expr_value_proto_rawDescData []byte
 )
 
 func file_cel_expr_value_proto_rawDescGZIP() []byte {
 	file_cel_expr_value_proto_rawDescOnce.Do(func() {
-		file_cel_expr_value_proto_rawDescData = protoimpl.X.CompressGZIP(file_cel_expr_value_proto_rawDescData)
+		file_cel_expr_value_proto_rawDescData = protoimpl.X.CompressGZIP(unsafe.Slice(unsafe.StringData(file_cel_expr_value_proto_rawDesc), len(file_cel_expr_value_proto_rawDesc)))
 	})
 	return file_cel_expr_value_proto_rawDescData
 }
 
 var file_cel_expr_value_proto_msgTypes = make([]protoimpl.MessageInfo, 5)
-var file_cel_expr_value_proto_goTypes = []interface{}{
+var file_cel_expr_value_proto_goTypes = []any{
 	(*Value)(nil),           // 0: cel.expr.Value
 	(*EnumValue)(nil),       // 1: cel.expr.EnumValue
 	(*ListValue)(nil),       // 2: cel.expr.ListValue
@@ -556,69 +541,7 @@
 	if File_cel_expr_value_proto != nil {
 		return
 	}
-	if !protoimpl.UnsafeEnabled {
-		file_cel_expr_value_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*Value); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_value_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*EnumValue); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_value_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*ListValue); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_value_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*MapValue); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-		file_cel_expr_value_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} {
-			switch v := v.(*MapValue_Entry); i {
-			case 0:
-				return &v.state
-			case 1:
-				return &v.sizeCache
-			case 2:
-				return &v.unknownFields
-			default:
-				return nil
-			}
-		}
-	}
-	file_cel_expr_value_proto_msgTypes[0].OneofWrappers = []interface{}{
+	file_cel_expr_value_proto_msgTypes[0].OneofWrappers = []any{
 		(*Value_NullValue)(nil),
 		(*Value_BoolValue)(nil),
 		(*Value_Int64Value)(nil),
@@ -636,7 +559,7 @@
 	out := protoimpl.TypeBuilder{
 		File: protoimpl.DescBuilder{
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
-			RawDescriptor: file_cel_expr_value_proto_rawDesc,
+			RawDescriptor: unsafe.Slice(unsafe.StringData(file_cel_expr_value_proto_rawDesc), len(file_cel_expr_value_proto_rawDesc)),
 			NumEnums:      0,
 			NumMessages:   5,
 			NumExtensions: 0,
@@ -647,7 +570,6 @@
 		MessageInfos:      file_cel_expr_value_proto_msgTypes,
 	}.Build()
 	File_cel_expr_value_proto = out.File
-	file_cel_expr_value_proto_rawDesc = nil
 	file_cel_expr_value_proto_goTypes = nil
 	file_cel_expr_value_proto_depIdxs = nil
 }
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/.golangci.yml /work/src/kubernetes/vendor/go.opentelemetry.io/otel/.golangci.yml
--- a/vendor/go.opentelemetry.io/otel/.golangci.yml	2026-09-02 10:24:54.932997495 +0000
+++ b/vendor/go.opentelemetry.io/otel/.golangci.yml	2026-09-02 10:25:23.433027139 +0000
@@ -17,6 +17,7 @@
     - ineffassign
     - misspell
     - modernize
+    - noctx
     - perfsprint
     - revive
     - staticcheck
@@ -88,6 +89,16 @@
           deny:
             - pkg: go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal
               desc: Do not use cross-module internal packages.
+        semconv:
+          list-mode: lax
+          files:
+            - "!**/semconv/**"
+            - "!**/exporters/zipkin/**"
+          deny:
+            - pkg: go.opentelemetry.io/otel/semconv
+              desc: "Use go.opentelemetry.io/otel/semconv/v1.40.0 instead. If a newer semconv version has been released, update the depguard rule."
+          allow:
+            - go.opentelemetry.io/otel/semconv/v1.40.0
     gocritic:
       disabled-checks:
         - appendAssign
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/CHANGELOG.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/CHANGELOG.md
--- a/vendor/go.opentelemetry.io/otel/CHANGELOG.md	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/CHANGELOG.md	2026-09-02 10:25:23.433027139 +0000
@@ -8,6 +8,75 @@
 
 ## [Unreleased]
 
+<!-- Released section -->
+<!-- Don't change this section unless doing release -->
+
+## [1.43.0/0.65.0/0.19.0] 2026-04-02
+
+### Added
+
+- Add `IsRandom` and `WithRandom` on `TraceFlags`, and `IsRandom` on `SpanContext` in `go.opentelemetry.io/otel/trace` for [W3C Trace Context Level 2 Random Trace ID Flag](https://www.w3.org/TR/trace-context-2/#random-trace-id-flag) support. (#8012)
+- Add service detection with `WithService` in `go.opentelemetry.io/otel/sdk/resource`. (#7642)
+- Add `DefaultWithContext` and `EnvironmentWithContext` in `go.opentelemetry.io/otel/sdk/resource` to support plumbing `context.Context` through default and environment detectors. (#8051)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#8038)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#8038)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. (#8038)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#8038)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#8038)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#8038)
+- Support attributes with empty value (`attribute.EMPTY`) in `go.opentelemetry.io/otel/sdk/metric/metricdata/metricdatatest`. (#8038)
+- Add support for per-series start time tracking for cumulative metrics in `go.opentelemetry.io/otel/sdk/metric`.
+  Set `OTEL_GO_X_PER_SERIES_START_TIMESTAMPS=true` to enable. (#8060)
+- Add `WithCardinalityLimitSelector` for metric reader for configuring cardinality limits specific to the instrument kind. (#7855)
+
+### Changed
+
+- Introduce the `EMPTY` Type in `go.opentelemetry.io/otel/attribute` to reflect that an empty value is now a valid value, with `INVALID` remaining as a deprecated alias of `EMPTY`. (#8038)
+- Improve slice handling in `go.opentelemetry.io/otel/attribute` to optimize short slice values with fixed-size fast paths. (#8039)
+- Improve performance of span metric recording in `go.opentelemetry.io/otel/sdk/trace` by returning early if self-observability is not enabled. (#8067)
+- Improve formatting of metric data diffs in `go.opentelemetry.io/otel/sdk/metric/metricdata/metricdatatest`. (#8073)
+
+### Deprecated
+
+- Deprecate `INVALID` in `go.opentelemetry.io/otel/attribute`. Use `EMPTY` instead. (#8038)
+
+### Fixed
+
+- Return spec-compliant `TraceIdRatioBased` description. This is a breaking behavioral change, but it is necessary to
+  make the implementation [spec-compliant](https://opentelemetry.io/docs/specs/otel/trace/sdk/#traceidratiobased). (#8027)
+- Fix a race condition in `go.opentelemetry.io/otel/sdk/metric` where the lastvalue aggregation could collect the value 0 even when no zero-value measurements were recorded. (#8056)
+- Limit HTTP response body to 4 MiB in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` to mitigate excessive memory usage caused by a misconfigured or malicious server.
+  Responses exceeding the limit are treated as non-retryable errors. (#8108)
+- Limit HTTP response body to 4 MiB in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` to mitigate excessive memory usage caused by a misconfigured or malicious server.
+  Responses exceeding the limit are treated as non-retryable errors. (#8108)
+- Limit HTTP response body to 4 MiB in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` to mitigate excessive memory usage caused by a misconfigured or malicious server.
+  Responses exceeding the limit are treated as non-retryable errors. (#8108)
+- `WithHostID` detector in `go.opentelemetry.io/otel/sdk/resource` to use full path for `kenv` command on BSD. (#8113)
+- Fix missing `request.GetBody` in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` to correctly handle HTTP2 GOAWAY frame. (#8096)
+
+## [1.42.0/0.64.0/0.18.0/0.0.16] 2026-03-06
+
+### Added
+
+- Add `go.opentelemetry.io/otel/semconv/v1.40.0` package.
+  The package contains semantic conventions from the `v1.40.0` version of the OpenTelemetry Semantic Conventions.
+  See the [migration documentation](./semconv/v1.40.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.39.0`. (#7985)
+- Add `Err` and `SetErr` on `Record` in `go.opentelemetry.io/otel/log` to attach an error and set record exception attributes in `go.opentelemetry.io/otel/log/sdk`. (#7924)
+
+### Changed
+
+- `TracerProvider.ForceFlush` in `go.opentelemetry.io/otel/sdk/trace` joins errors together and continues iteration through SpanProcessors as opposed to returning the first encountered error without attempting exports on subsequent SpanProcessors. (#7856)
+
+### Fixed
+
+- Fix missing `request.GetBody` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` to correctly handle HTTP2 GOAWAY frame. (#7931)
+- Fix semconv v1.39.0 generated metric helpers skipping required attributes when extra attributes were empty. (#7964)
+- Preserve W3C TraceFlags bitmask (including the random Trace ID flag) during trace context extraction and injection in `go.opentelemetry.io/otel/propagation`. (#7834)
+
+### Removed
+
+- Drop support for [Go 1.24]. (#7984)
+
 ## [1.41.0/0.63.0/0.17.0/0.0.15] 2026-03-02
 
 This release is the last to support [Go 1.24].
@@ -26,9 +95,6 @@
 - Return an error when the endpoint is configured as insecure and with TLS configuration in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#7914)
 - Return an error when the endpoint is configured as insecure and with TLS configuration in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#7914)
 
-<!-- Released section -->
-<!-- Don't change this section unless doing release -->
-
 ## [1.40.0/0.62.0/0.16.0] 2026-02-02
 
 ### Added
@@ -3553,7 +3619,9 @@
 - CircleCI build CI manifest files.
 - CODEOWNERS file to track owners of this project.
 
-[Unreleased]: https://github.com/open-telemetry/opentelemetry-go/compare/v1.41.0...HEAD
+[Unreleased]: https://github.com/open-telemetry/opentelemetry-go/compare/v1.43.0...HEAD
+[1.43.0/0.65.0/0.19.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.43.0
+[1.42.0/0.64.0/0.18.0/0.0.16]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.42.0
 [1.41.0/0.63.0/0.17.0/0.0.15]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.41.0
 [1.40.0/0.62.0/0.16.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.40.0
 [1.39.0/0.61.0/0.15.0/0.0.14]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.39.0
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md
--- a/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md	2026-09-02 10:25:23.433027139 +0000
@@ -746,8 +746,8 @@
 import (
 	"errors"
 
-	semconv "go.opentelemetry.io/otel/semconv/v1.39.0"
-	"go.opentelemetry.io/otel/semconv/v1.39.0/otelconv"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
+	"go.opentelemetry.io/otel/semconv/v1.40.0/otelconv"
 )
 
 type SDKComponent struct {
@@ -1039,7 +1039,7 @@
 
 All observability metrics should follow the [OpenTelemetry Semantic Conventions for SDK metrics](https://github.com/open-telemetry/semantic-conventions/blob/1cf2476ae5e518225a766990a28a6d5602bd5a30/docs/otel/sdk-metrics.md).
 
-Use the metric semantic conventions convenience package [otelconv](./semconv/v1.39.0/otelconv/metric.go).
+Use the metric semantic conventions convenience package [otelconv](./semconv/v1.40.0/otelconv/metric.go).
 
 ##### Component Identification
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/Makefile /work/src/kubernetes/vendor/go.opentelemetry.io/otel/Makefile
--- a/vendor/go.opentelemetry.io/otel/Makefile	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/Makefile	2026-09-02 10:25:23.433027139 +0000
@@ -38,10 +38,14 @@
 $(TOOLS)/crosslink: PACKAGE=go.opentelemetry.io/build-tools/crosslink
 
 SEMCONVKIT = $(TOOLS)/semconvkit
+SEMCONVKIT_FILES := $(sort $(shell find $(TOOLS_MOD_DIR)/semconvkit -type f))
 $(TOOLS)/semconvkit: PACKAGE=go.opentelemetry.io/otel/$(TOOLS_MOD_DIR)/semconvkit
+$(TOOLS)/semconvkit: $(SEMCONVKIT_FILES)
 
 VERIFYREADMES = $(TOOLS)/verifyreadmes
+VERIFYREADMES_FILES := $(sort $(shell find $(TOOLS_MOD_DIR)/verifyreadmes -type f))
 $(TOOLS)/verifyreadmes: PACKAGE=go.opentelemetry.io/otel/$(TOOLS_MOD_DIR)/verifyreadmes
+$(TOOLS)/verifyreadmes: $(VERIFYREADMES_FILES)
 
 GOLANGCI_LINT = $(TOOLS)/golangci-lint
 $(TOOLS)/golangci-lint: PACKAGE=github.com/golangci/golangci-lint/v2/cmd/golangci-lint
@@ -185,11 +189,10 @@
 .PHONY: benchmark
 benchmark: $(OTEL_GO_MOD_DIRS:%=benchmark/%)
 benchmark/%:
-	@echo "$(GO) test -run=xxxxxMatchNothingxxxxx -bench=. $*..." \
-		&& cd $* \
-		&& $(GO) list ./... \
-		| grep -v third_party \
-		| xargs $(GO) test -run=xxxxxMatchNothingxxxxx -bench=.
+	cd $* && $(GO) test -run='^$$' -bench=. $(ARGS) ./...
+
+print-sharded-benchmarks:
+	@echo $(OTEL_GO_MOD_DIRS) | jq -cR 'split(" ")'
 
 .PHONY: golangci-lint golangci-lint-fix
 golangci-lint-fix: ARGS=--fix
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/README.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/README.md
--- a/vendor/go.opentelemetry.io/otel/README.md	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/README.md	2026-09-02 10:25:23.433027139 +0000
@@ -55,25 +55,18 @@
 |----------|------------|--------------|
 | Ubuntu   | 1.26       | amd64        |
 | Ubuntu   | 1.25       | amd64        |
-| Ubuntu   | 1.24       | amd64        |
 | Ubuntu   | 1.26       | 386          |
 | Ubuntu   | 1.25       | 386          |
-| Ubuntu   | 1.24       | 386          |
 | Ubuntu   | 1.26       | arm64        |
 | Ubuntu   | 1.25       | arm64        |
-| Ubuntu   | 1.24       | arm64        |
 | macOS    | 1.26       | amd64        |
 | macOS    | 1.25       | amd64        |
-| macOS    | 1.24       | amd64        |
 | macOS    | 1.26       | arm64        |
 | macOS    | 1.25       | arm64        |
-| macOS    | 1.24       | arm64        |
 | Windows  | 1.26       | amd64        |
 | Windows  | 1.25       | amd64        |
-| Windows  | 1.24       | amd64        |
 | Windows  | 1.26       | 386          |
 | Windows  | 1.25       | 386          |
-| Windows  | 1.24       | 386          |
 
 While this project should work for other systems, no compatibility guarantees
 are made for those systems currently.
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/RELEASING.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/RELEASING.md
--- a/vendor/go.opentelemetry.io/otel/RELEASING.md	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/RELEASING.md	2026-09-02 10:25:23.433027139 +0000
@@ -4,7 +4,9 @@
 
 Create a `Version Release` issue to track the release process.
 
-## Semantic Convention Generation
+## Semantic Convention Upgrade
+
+### Semantic Convention Generation
 
 New versions of the [OpenTelemetry Semantic Conventions] mean new versions of the `semconv` package need to be generated.
 The `semconv-generate` make target is used for this.
@@ -22,6 +24,43 @@
 This should create a new sub-package of [`semconv`](./semconv).
 Ensure things look correct before submitting a pull request to include the addition.
 
+The `CHANGELOG.md` should also be updated to reflect the new changes:
+
+```md
+- The `go.opentelemetry.io/otel/semconv/<NEW VERSION>` package. The package contains semantic conventions from the `<NEW VERSION>` version of the OpenTelemetry Semantic Conventions. See the [migration documentation](./semconv/<NEW VERSION>/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/<PREVIOUS VERSION>`. (#PR_NUMBER)
+```
+
+> **Tip:** Change to the release and prior version to match the changes
+
+### Update semconv imports
+
+Once the new semconv module has been generated, update all semconv imports throughout the codebase to reference the new version:
+
+```go
+// Before
+semconv "go.opentelemetry.io/otel/semconv/v1.37.0"
+"go.opentelemetry.io/otel/semconv/v1.37.0/otelconv"
+
+
+// After
+semconv "go.opentelemetry.io/otel/semconv/v1.39.0"
+"go.opentelemetry.io/otel/semconv/v1.39.0/otelconv"
+```
+
+Once complete, run `make` to check for any compilation or test failures.
+
+#### Handling attribute changes
+
+Some semconv releases might add new attributes or impact attributes that are currently being used. Changes could stem from a simple renaming, to more complex changes like merging attributes and property values being changed.
+
+One should update the code to the new attributes that supersede the impacted ones, hence sticking to the semantic conventions. However, legacy attributes might still be emitted in accordance to the `OTEL_SEMCONV_STABILITY_OPT_IN` environment variable.
+
+For an example on how such migration might have to be tracked and performed, see issue [#7806](https://github.com/open-telemetry/opentelemetry-go/issues/7806).
+
+### Go contrib linter update
+
+Update [.golangci.yml](https://github.com/open-telemetry/opentelemetry-go-contrib/blob/main/.golangci.yml) in [opentelemetry-go-contrib](https://github.com/open-telemetry/opentelemetry-go-contrib/) to mandate the new semconv version.
+
 ## Breaking changes validation
 
 You can run `make gorelease` which runs [gorelease](https://pkg.go.dev/golang.org/x/exp/cmd/gorelease) to ensure that there are no unwanted changes made in the public API.
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/attribute/encoder.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/attribute/encoder.go
--- a/vendor/go.opentelemetry.io/otel/attribute/encoder.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/attribute/encoder.go	2026-09-02 10:25:23.433027139 +0000
@@ -53,7 +53,7 @@
 	_ Encoder = &defaultAttrEncoder{}
 
 	// encoderIDCounter is for generating IDs for other attribute encoders.
-	encoderIDCounter uint64
+	encoderIDCounter atomic.Uint64
 
 	defaultEncoderOnce     sync.Once
 	defaultEncoderID       = NewEncoderID()
@@ -64,7 +64,7 @@
 // once per each type of attribute encoder. Preferably in init() or in var
 // definition.
 func NewEncoderID() EncoderID {
-	return EncoderID{value: atomic.AddUint64(&encoderIDCounter, 1)}
+	return EncoderID{value: encoderIDCounter.Add(1)}
 }
 
 // DefaultEncoder returns an attribute encoder that encodes attributes in such
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/attribute/hash.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/attribute/hash.go
--- a/vendor/go.opentelemetry.io/otel/attribute/hash.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/attribute/hash.go	2026-09-02 10:25:23.433027139 +0000
@@ -27,6 +27,7 @@
 	int64SliceID   uint64 = 3762322556277578591 // "_[]int64" (little endian)
 	float64SliceID uint64 = 7308324551835016539 // "[]double" (little endian)
 	stringSliceID  uint64 = 7453010373645655387 // "[]string" (little endian)
+	emptyID        uint64 = 7305809155345288421 // "__empty_" (little endian)
 )
 
 // hashKVs returns a new xxHash64 hash of kvs.
@@ -80,7 +81,8 @@
 		for i := 0; i < rv.Len(); i++ {
 			h = h.String(rv.Index(i).String())
 		}
-	case INVALID:
+	case EMPTY:
+		h = h.Uint64(emptyID)
 	default:
 		// Logging is an alternative, but using the internal logger here
 		// causes an import cycle so it is not done.
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go
--- a/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go	2026-09-02 10:25:23.433027139 +0000
@@ -11,80 +11,63 @@
 	"reflect"
 )
 
-// BoolSliceValue converts a bool slice into an array with same elements as slice.
-func BoolSliceValue(v []bool) any {
-	cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[bool]())).Elem()
-	reflect.Copy(cp, reflect.ValueOf(v))
-	return cp.Interface()
-}
+// sliceElem is the exact set of element types stored in attribute slice values.
+// Using a closed set prevents accidental instantiations for unsupported types.
+type sliceElem interface {
+	bool | int64 | float64 | string
+}
+
+// SliceValue converts a slice into an array with the same elements.
+func SliceValue[T sliceElem](v []T) any {
+	// Keep only the common tiny-slice cases out of reflection. Extending this
+	// much further increases code size for diminishing benefit while larger
+	// slices still need the generic reflective path to preserve comparability.
+	// This matches the short lengths that show up most often in local
+	// benchmarks and semantic convention examples while leaving larger, less
+	// predictable slices on the generic reflective path.
+	switch len(v) {
+	case 0:
+		return [0]T{}
+	case 1:
+		return [1]T{v[0]}
+	case 2:
+		return [2]T{v[0], v[1]}
+	case 3:
+		return [3]T{v[0], v[1], v[2]}
+	}
+
+	return sliceValueReflect(v)
+}
+
+// AsSlice converts an array into a slice with the same elements.
+func AsSlice[T sliceElem](v any) []T {
+	// Mirror the small fixed-array fast path used by SliceValue.
+	switch a := v.(type) {
+	case [0]T:
+		return []T{}
+	case [1]T:
+		return []T{a[0]}
+	case [2]T:
+		return []T{a[0], a[1]}
+	case [3]T:
+		return []T{a[0], a[1], a[2]}
+	}
 
-// Int64SliceValue converts an int64 slice into an array with same elements as slice.
-func Int64SliceValue(v []int64) any {
-	cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[int64]())).Elem()
-	reflect.Copy(cp, reflect.ValueOf(v))
-	return cp.Interface()
+	return asSliceReflect[T](v)
 }
 
-// Float64SliceValue converts a float64 slice into an array with same elements as slice.
-func Float64SliceValue(v []float64) any {
-	cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[float64]())).Elem()
+func sliceValueReflect[T sliceElem](v []T) any {
+	cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[T]())).Elem()
 	reflect.Copy(cp, reflect.ValueOf(v))
 	return cp.Interface()
 }
 
-// StringSliceValue converts a string slice into an array with same elements as slice.
-func StringSliceValue(v []string) any {
-	cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[string]())).Elem()
-	reflect.Copy(cp, reflect.ValueOf(v))
-	return cp.Interface()
-}
-
-// AsBoolSlice converts a bool array into a slice into with same elements as array.
-func AsBoolSlice(v any) []bool {
-	rv := reflect.ValueOf(v)
-	if rv.Type().Kind() != reflect.Array {
-		return nil
-	}
-	cpy := make([]bool, rv.Len())
-	if len(cpy) > 0 {
-		_ = reflect.Copy(reflect.ValueOf(cpy), rv)
-	}
-	return cpy
-}
-
-// AsInt64Slice converts an int64 array into a slice into with same elements as array.
-func AsInt64Slice(v any) []int64 {
-	rv := reflect.ValueOf(v)
-	if rv.Type().Kind() != reflect.Array {
-		return nil
-	}
-	cpy := make([]int64, rv.Len())
-	if len(cpy) > 0 {
-		_ = reflect.Copy(reflect.ValueOf(cpy), rv)
-	}
-	return cpy
-}
-
-// AsFloat64Slice converts a float64 array into a slice into with same elements as array.
-func AsFloat64Slice(v any) []float64 {
-	rv := reflect.ValueOf(v)
-	if rv.Type().Kind() != reflect.Array {
-		return nil
-	}
-	cpy := make([]float64, rv.Len())
-	if len(cpy) > 0 {
-		_ = reflect.Copy(reflect.ValueOf(cpy), rv)
-	}
-	return cpy
-}
-
-// AsStringSlice converts a string array into a slice into with same elements as array.
-func AsStringSlice(v any) []string {
+func asSliceReflect[T sliceElem](v any) []T {
 	rv := reflect.ValueOf(v)
-	if rv.Type().Kind() != reflect.Array {
+	if !rv.IsValid() || rv.Kind() != reflect.Array || rv.Type().Elem() != reflect.TypeFor[T]() {
 		return nil
 	}
-	cpy := make([]string, rv.Len())
+	cpy := make([]T, rv.Len())
 	if len(cpy) > 0 {
 		_ = reflect.Copy(reflect.ValueOf(cpy), rv)
 	}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/attribute/kv.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/attribute/kv.go
--- a/vendor/go.opentelemetry.io/otel/attribute/kv.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/attribute/kv.go	2026-09-02 10:25:23.433027139 +0000
@@ -15,7 +15,7 @@
 
 // Valid reports whether kv is a valid OpenTelemetry attribute.
 func (kv KeyValue) Valid() bool {
-	return kv.Key.Defined() && kv.Value.Type() != INVALID
+	return kv.Key.Defined()
 }
 
 // Bool creates a KeyValue with a BOOL Value type.
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/attribute/type_string.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/attribute/type_string.go
--- a/vendor/go.opentelemetry.io/otel/attribute/type_string.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/attribute/type_string.go	2026-09-02 10:25:23.433027139 +0000
@@ -8,7 +8,7 @@
 	// An "invalid array index" compiler error signifies that the constant values have changed.
 	// Re-run the stringer command to generate them again.
 	var x [1]struct{}
-	_ = x[INVALID-0]
+	_ = x[EMPTY-0]
 	_ = x[BOOL-1]
 	_ = x[INT64-2]
 	_ = x[FLOAT64-3]
@@ -19,9 +19,9 @@
 	_ = x[STRINGSLICE-8]
 }
 
-const _Type_name = "INVALIDBOOLINT64FLOAT64STRINGBOOLSLICEINT64SLICEFLOAT64SLICESTRINGSLICE"
+const _Type_name = "EMPTYBOOLINT64FLOAT64STRINGBOOLSLICEINT64SLICEFLOAT64SLICESTRINGSLICE"
 
-var _Type_index = [...]uint8{0, 7, 11, 16, 23, 29, 38, 48, 60, 71}
+var _Type_index = [...]uint8{0, 5, 9, 14, 21, 27, 36, 46, 58, 69}
 
 func (i Type) String() string {
 	idx := int(i) - 0
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/attribute/value.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/attribute/value.go
--- a/vendor/go.opentelemetry.io/otel/attribute/value.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/attribute/value.go	2026-09-02 10:25:23.433027139 +0000
@@ -6,7 +6,6 @@
 import (
 	"encoding/json"
 	"fmt"
-	"reflect"
 	"strconv"
 
 	attribute "go.opentelemetry.io/otel/attribute/internal"
@@ -18,6 +17,8 @@
 type Type int // nolint: revive  // redefines builtin Type.
 
 // Value represents the value part in key-value pairs.
+//
+// Note that the zero value is a valid empty value.
 type Value struct {
 	vtype    Type
 	numeric  uint64
@@ -26,8 +27,8 @@
 }
 
 const (
-	// INVALID is used for a Value with no value set.
-	INVALID Type = iota
+	// EMPTY is used for a Value with no value set.
+	EMPTY Type = iota
 	// BOOL is a boolean Type Value.
 	BOOL
 	// INT64 is a 64-bit signed integral Type Value.
@@ -44,6 +45,10 @@
 	FLOAT64SLICE
 	// STRINGSLICE is a slice of strings Type Value.
 	STRINGSLICE
+	// INVALID is used for a Value with no value set.
+	//
+	// Deprecated: Use EMPTY instead as an empty value is a valid value.
+	INVALID = EMPTY
 )
 
 // BoolValue creates a BOOL Value.
@@ -56,7 +61,7 @@
 
 // BoolSliceValue creates a BOOLSLICE Value.
 func BoolSliceValue(v []bool) Value {
-	return Value{vtype: BOOLSLICE, slice: attribute.BoolSliceValue(v)}
+	return Value{vtype: BOOLSLICE, slice: attribute.SliceValue(v)}
 }
 
 // IntValue creates an INT64 Value.
@@ -64,16 +69,30 @@
 	return Int64Value(int64(v))
 }
 
-// IntSliceValue creates an INTSLICE Value.
+// IntSliceValue creates an INT64SLICE Value.
 func IntSliceValue(v []int) Value {
-	cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeFor[int64]()))
-	for i, val := range v {
-		cp.Elem().Index(i).SetInt(int64(val))
-	}
-	return Value{
-		vtype: INT64SLICE,
-		slice: cp.Elem().Interface(),
+	val := Value{vtype: INT64SLICE}
+
+	// Avoid the common tiny-slice cases from allocating a new slice.
+	switch len(v) {
+	case 0:
+		val.slice = [0]int64{}
+	case 1:
+		val.slice = [1]int64{int64(v[0])}
+	case 2:
+		val.slice = [2]int64{int64(v[0]), int64(v[1])}
+	case 3:
+		val.slice = [3]int64{int64(v[0]), int64(v[1]), int64(v[2])}
+	default:
+		// Fallback to a new slice for larger slices.
+		cp := make([]int64, len(v))
+		for i, val := range v {
+			cp[i] = int64(val)
+		}
+		val.slice = attribute.SliceValue(cp)
 	}
+
+	return val
 }
 
 // Int64Value creates an INT64 Value.
@@ -86,7 +105,7 @@
 
 // Int64SliceValue creates an INT64SLICE Value.
 func Int64SliceValue(v []int64) Value {
-	return Value{vtype: INT64SLICE, slice: attribute.Int64SliceValue(v)}
+	return Value{vtype: INT64SLICE, slice: attribute.SliceValue(v)}
 }
 
 // Float64Value creates a FLOAT64 Value.
@@ -99,7 +118,7 @@
 
 // Float64SliceValue creates a FLOAT64SLICE Value.
 func Float64SliceValue(v []float64) Value {
-	return Value{vtype: FLOAT64SLICE, slice: attribute.Float64SliceValue(v)}
+	return Value{vtype: FLOAT64SLICE, slice: attribute.SliceValue(v)}
 }
 
 // StringValue creates a STRING Value.
@@ -112,7 +131,7 @@
 
 // StringSliceValue creates a STRINGSLICE Value.
 func StringSliceValue(v []string) Value {
-	return Value{vtype: STRINGSLICE, slice: attribute.StringSliceValue(v)}
+	return Value{vtype: STRINGSLICE, slice: attribute.SliceValue(v)}
 }
 
 // Type returns a type of the Value.
@@ -136,7 +155,7 @@
 }
 
 func (v Value) asBoolSlice() []bool {
-	return attribute.AsBoolSlice(v.slice)
+	return attribute.AsSlice[bool](v.slice)
 }
 
 // AsInt64 returns the int64 value. Make sure that the Value's type is
@@ -155,7 +174,7 @@
 }
 
 func (v Value) asInt64Slice() []int64 {
-	return attribute.AsInt64Slice(v.slice)
+	return attribute.AsSlice[int64](v.slice)
 }
 
 // AsFloat64 returns the float64 value. Make sure that the Value's
@@ -174,7 +193,7 @@
 }
 
 func (v Value) asFloat64Slice() []float64 {
-	return attribute.AsFloat64Slice(v.slice)
+	return attribute.AsSlice[float64](v.slice)
 }
 
 // AsString returns the string value. Make sure that the Value's type
@@ -193,7 +212,7 @@
 }
 
 func (v Value) asStringSlice() []string {
-	return attribute.AsStringSlice(v.slice)
+	return attribute.AsSlice[string](v.slice)
 }
 
 type unknownValueType struct{}
@@ -217,6 +236,8 @@
 		return v.stringly
 	case STRINGSLICE:
 		return v.asStringSlice()
+	case EMPTY:
+		return nil
 	}
 	return unknownValueType{}
 }
@@ -252,6 +273,8 @@
 		return string(j)
 	case STRING:
 		return v.stringly
+	case EMPTY:
+		return ""
 	default:
 		return "unknown"
 	}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile /work/src/kubernetes/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile
--- a/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile	2026-09-02 10:25:23.433027139 +0000
@@ -1,4 +1,4 @@
 # This is a renovate-friendly source of Docker images.
 FROM python:3.13.6-slim-bullseye@sha256:e98b521460ee75bca92175c16247bdf7275637a8faaeb2bcfa19d879ae5c4b9a AS python
-FROM otel/weaver:v0.21.2@sha256:2401de985c38bdb98b43918e2f43aa36b2afed4aa5669ac1c1de0a17301cd36d AS weaver
+FROM otel/weaver:v0.22.1@sha256:33ae522ae4b71c1c562563c1d81f46aa0f79f088a0873199143a1f11ac30e5c9 AS weaver
 FROM avtodev/markdown-lint:v1@sha256:6aeedc2f49138ce7a1cd0adffc1b1c0321b841dc2102408967d9301c031949ee AS markdown
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/propagation/trace_context.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/propagation/trace_context.go
--- a/vendor/go.opentelemetry.io/otel/propagation/trace_context.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/propagation/trace_context.go	2026-09-02 10:25:23.437027145 +0000
@@ -46,8 +46,8 @@
 		carrier.Set(tracestateHeader, ts)
 	}
 
-	// Clear all flags other than the trace-context supported sampling bit.
-	flags := sc.TraceFlags() & trace.FlagsSampled
+	// Preserve only the spec-defined flags: sampled (0x01) and random (0x02).
+	flags := sc.TraceFlags() & (trace.FlagsSampled | trace.FlagsRandom)
 
 	var sb strings.Builder
 	sb.Grow(2 + 32 + 16 + 2 + 3)
@@ -104,14 +104,13 @@
 	if !extractPart(opts[:], &h, 2) {
 		return trace.SpanContext{}
 	}
-	if version == 0 && (h != "" || opts[0] > 2) {
-		// version 0 not allow extra
-		// version 0 not allow other flag
+	if version == 0 && (h != "" || opts[0] > 3) {
+		// version 0 does not allow extra fields or reserved flag bits.
 		return trace.SpanContext{}
 	}
 
-	// Clear all flags other than the trace-context supported sampling bit.
-	scc.TraceFlags = trace.TraceFlags(opts[0]) & trace.FlagsSampled // nolint:gosec // slice size already checked.
+	scc.TraceFlags = trace.TraceFlags(opts[0]) & //nolint:gosec // slice size already checked.
+		(trace.FlagsSampled | trace.FlagsRandom)
 
 	// Ignore the error returned here. Failure to parse tracestate MUST NOT
 	// affect the parsing of traceparent according to the W3C tracecontext
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/requirements.txt /work/src/kubernetes/vendor/go.opentelemetry.io/otel/requirements.txt
--- a/vendor/go.opentelemetry.io/otel/requirements.txt	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/requirements.txt	2026-09-02 10:25:23.433027139 +0000
@@ -1 +1 @@
-codespell==2.4.1
+codespell==2.4.2
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/LICENSE /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/LICENSE
--- a/vendor/go.opentelemetry.io/otel/sdk/LICENSE	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/LICENSE	2026-09-02 10:25:23.489027216 +0000
@@ -199,3 +199,33 @@
    WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
    See the License for the specific language governing permissions and
    limitations under the License.
+
+--------------------------------------------------------------------------------
+
+Copyright 2009 The Go Authors.
+
+Redistribution and use in source and binary forms, with or without
+modification, are permitted provided that the following conditions are
+met:
+
+   * Redistributions of source code must retain the above copyright
+notice, this list of conditions and the following disclaimer.
+   * Redistributions in binary form must reproduce the above
+copyright notice, this list of conditions and the following disclaimer
+in the documentation and/or other materials provided with the
+distribution.
+   * Neither the name of Google LLC nor the names of its
+contributors may be used to endorse or promote products derived from
+this software without specific prior written permission.
+
+THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
+"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
+LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
+A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
+OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
+DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
+THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
+(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
+OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
\ No newline at end of file
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go
--- a/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,168 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-// Package env provides types and functionality for environment variable support
-// in the OpenTelemetry SDK.
-package env // import "go.opentelemetry.io/otel/sdk/internal/env"
-
-import (
-	"os"
-	"strconv"
-
-	"go.opentelemetry.io/otel/internal/global"
-)
-
-// Environment variable names.
-const (
-	// BatchSpanProcessorScheduleDelayKey is the delay interval between two
-	// consecutive exports (i.e. 5000).
-	BatchSpanProcessorScheduleDelayKey = "OTEL_BSP_SCHEDULE_DELAY"
-	// BatchSpanProcessorExportTimeoutKey is the maximum allowed time to
-	// export data (i.e. 3000).
-	BatchSpanProcessorExportTimeoutKey = "OTEL_BSP_EXPORT_TIMEOUT"
-	// BatchSpanProcessorMaxQueueSizeKey is the maximum queue size (i.e. 2048).
-	BatchSpanProcessorMaxQueueSizeKey = "OTEL_BSP_MAX_QUEUE_SIZE"
-	// BatchSpanProcessorMaxExportBatchSizeKey is the maximum batch size (i.e.
-	// 512). Note: it must be less than or equal to
-	// BatchSpanProcessorMaxQueueSize.
-	BatchSpanProcessorMaxExportBatchSizeKey = "OTEL_BSP_MAX_EXPORT_BATCH_SIZE"
-
-	// AttributeValueLengthKey is the maximum allowed attribute value size.
-	AttributeValueLengthKey = "OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT"
-
-	// AttributeCountKey is the maximum allowed span attribute count.
-	AttributeCountKey = "OTEL_ATTRIBUTE_COUNT_LIMIT"
-
-	// SpanAttributeValueLengthKey is the maximum allowed attribute value size
-	// for a span.
-	SpanAttributeValueLengthKey = "OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT"
-
-	// SpanAttributeCountKey is the maximum allowed span attribute count for a
-	// span.
-	SpanAttributeCountKey = "OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT"
-
-	// SpanEventCountKey is the maximum allowed span event count.
-	SpanEventCountKey = "OTEL_SPAN_EVENT_COUNT_LIMIT"
-
-	// SpanEventAttributeCountKey is the maximum allowed attribute per span
-	// event count.
-	SpanEventAttributeCountKey = "OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT"
-
-	// SpanLinkCountKey is the maximum allowed span link count.
-	SpanLinkCountKey = "OTEL_SPAN_LINK_COUNT_LIMIT"
-
-	// SpanLinkAttributeCountKey is the maximum allowed attribute per span
-	// link count.
-	SpanLinkAttributeCountKey = "OTEL_LINK_ATTRIBUTE_COUNT_LIMIT"
-)
-
-// firstInt returns the value of the first matching environment variable from
-// keys. If the value is not an integer or no match is found, defaultValue is
-// returned.
-func firstInt(defaultValue int, keys ...string) int {
-	for _, key := range keys {
-		value := os.Getenv(key)
-		if value == "" {
-			continue
-		}
-
-		intValue, err := strconv.Atoi(value)
-		if err != nil {
-			global.Info("Got invalid value, number value expected.", key, value)
-			return defaultValue
-		}
-
-		return intValue
-	}
-
-	return defaultValue
-}
-
-// IntEnvOr returns the int value of the environment variable with name key if
-// it exists, it is not empty, and the value is an int. Otherwise, defaultValue is returned.
-func IntEnvOr(key string, defaultValue int) int {
-	value := os.Getenv(key)
-	if value == "" {
-		return defaultValue
-	}
-
-	intValue, err := strconv.Atoi(value)
-	if err != nil {
-		global.Info("Got invalid value, number value expected.", key, value)
-		return defaultValue
-	}
-
-	return intValue
-}
-
-// BatchSpanProcessorScheduleDelay returns the environment variable value for
-// the OTEL_BSP_SCHEDULE_DELAY key if it exists, otherwise defaultValue is
-// returned.
-func BatchSpanProcessorScheduleDelay(defaultValue int) int {
-	return IntEnvOr(BatchSpanProcessorScheduleDelayKey, defaultValue)
-}
-
-// BatchSpanProcessorExportTimeout returns the environment variable value for
-// the OTEL_BSP_EXPORT_TIMEOUT key if it exists, otherwise defaultValue is
-// returned.
-func BatchSpanProcessorExportTimeout(defaultValue int) int {
-	return IntEnvOr(BatchSpanProcessorExportTimeoutKey, defaultValue)
-}
-
-// BatchSpanProcessorMaxQueueSize returns the environment variable value for
-// the OTEL_BSP_MAX_QUEUE_SIZE key if it exists, otherwise defaultValue is
-// returned.
-func BatchSpanProcessorMaxQueueSize(defaultValue int) int {
-	return IntEnvOr(BatchSpanProcessorMaxQueueSizeKey, defaultValue)
-}
-
-// BatchSpanProcessorMaxExportBatchSize returns the environment variable value for
-// the OTEL_BSP_MAX_EXPORT_BATCH_SIZE key if it exists, otherwise defaultValue
-// is returned.
-func BatchSpanProcessorMaxExportBatchSize(defaultValue int) int {
-	return IntEnvOr(BatchSpanProcessorMaxExportBatchSizeKey, defaultValue)
-}
-
-// SpanAttributeValueLength returns the environment variable value for the
-// OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT key if it exists. Otherwise, the
-// environment variable value for OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT is
-// returned or defaultValue if that is not set.
-func SpanAttributeValueLength(defaultValue int) int {
-	return firstInt(defaultValue, SpanAttributeValueLengthKey, AttributeValueLengthKey)
-}
-
-// SpanAttributeCount returns the environment variable value for the
-// OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT key if it exists. Otherwise, the
-// environment variable value for OTEL_ATTRIBUTE_COUNT_LIMIT is returned or
-// defaultValue if that is not set.
-func SpanAttributeCount(defaultValue int) int {
-	return firstInt(defaultValue, SpanAttributeCountKey, AttributeCountKey)
-}
-
-// SpanEventCount returns the environment variable value for the
-// OTEL_SPAN_EVENT_COUNT_LIMIT key if it exists, otherwise defaultValue is
-// returned.
-func SpanEventCount(defaultValue int) int {
-	return IntEnvOr(SpanEventCountKey, defaultValue)
-}
-
-// SpanEventAttributeCount returns the environment variable value for the
-// OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT key if it exists, otherwise defaultValue
-// is returned.
-func SpanEventAttributeCount(defaultValue int) int {
-	return IntEnvOr(SpanEventAttributeCountKey, defaultValue)
-}
-
-// SpanLinkCount returns the environment variable value for the
-// OTEL_SPAN_LINK_COUNT_LIMIT key if it exists, otherwise defaultValue is
-// returned.
-func SpanLinkCount(defaultValue int) int {
-	return IntEnvOr(SpanLinkCountKey, defaultValue)
-}
-
-// SpanLinkAttributeCount returns the environment variable value for the
-// OTEL_LINK_ATTRIBUTE_COUNT_LIMIT key if it exists, otherwise defaultValue is
-// returned.
-func SpanLinkAttributeCount(defaultValue int) int {
-	return IntEnvOr(SpanLinkAttributeCountKey, defaultValue)
-}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go
--- a/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/internal/x/features.go	2026-09-02 10:25:23.489027216 +0000
@@ -0,0 +1,54 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+// Package x documents experimental features for [go.opentelemetry.io/otel/sdk].
+package x // import "go.opentelemetry.io/otel/sdk/internal/x"
+
+import "strings"
+
+// Resource is an experimental feature flag that defines if resource detectors
+// should be included experimental semantic conventions.
+//
+// To enable this feature set the OTEL_GO_X_RESOURCE environment variable
+// to the case-insensitive string value of "true" (i.e. "True" and "TRUE"
+// will also enable this).
+var Resource = newFeature(
+	[]string{"RESOURCE"},
+	func(v string) (string, bool) {
+		if strings.EqualFold(v, "true") {
+			return v, true
+		}
+		return "", false
+	},
+)
+
+// Observability is an experimental feature flag that determines if SDK
+// observability metrics are enabled.
+//
+// To enable this feature set the OTEL_GO_X_OBSERVABILITY environment variable
+// to the case-insensitive string value of "true" (i.e. "True" and "TRUE"
+// will also enable this).
+var Observability = newFeature(
+	[]string{"OBSERVABILITY", "SELF_OBSERVABILITY"},
+	func(v string) (string, bool) {
+		if strings.EqualFold(v, "true") {
+			return v, true
+		}
+		return "", false
+	},
+)
+
+// PerSeriesStartTimestamps is an experimental feature flag that determines if the SDK
+// uses the new Start Timestamps specification.
+//
+// To enable this feature set the OTEL_GO_X_PER_SERIES_START_TIMESTAMPS environment variable
+// to the case-insensitive string value of "true".
+var PerSeriesStartTimestamps = newFeature(
+	[]string{"PER_SERIES_START_TIMESTAMPS"},
+	func(v string) (bool, bool) {
+		if strings.EqualFold(v, "true") {
+			return true, true
+		}
+		return false, false
+	},
+)
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go
--- a/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go	2026-09-02 10:25:23.489027216 +0000
@@ -1,48 +1,38 @@
+// Code generated by gotmpl. DO NOT MODIFY.
+// source: internal/shared/x/x.go.tmpl
+
 // Copyright The OpenTelemetry Authors
 // SPDX-License-Identifier: Apache-2.0
 
-// Package x contains support for OTel SDK experimental features.
-//
-// This package should only be used for features defined in the specification.
-// It should not be used for experiments or new project ideas.
+// Package x documents experimental features for [go.opentelemetry.io/otel/sdk].
 package x // import "go.opentelemetry.io/otel/sdk/internal/x"
 
 import (
 	"os"
-	"strings"
 )
 
-// Resource is an experimental feature flag that defines if resource detectors
-// should be included experimental semantic conventions.
-//
-// To enable this feature set the OTEL_GO_X_RESOURCE environment variable
-// to the case-insensitive string value of "true" (i.e. "True" and "TRUE"
-// will also enable this).
-var Resource = newFeature("RESOURCE", func(v string) (string, bool) {
-	if strings.ToLower(v) == "true" {
-		return v, true
-	}
-	return "", false
-})
-
 // Feature is an experimental feature control flag. It provides a uniform way
 // to interact with these feature flags and parse their values.
 type Feature[T any] struct {
-	key   string
+	keys  []string
 	parse func(v string) (T, bool)
 }
 
-func newFeature[T any](suffix string, parse func(string) (T, bool)) Feature[T] {
+func newFeature[T any](suffix []string, parse func(string) (T, bool)) Feature[T] {
 	const envKeyRoot = "OTEL_GO_X_"
+	keys := make([]string, 0, len(suffix))
+	for _, s := range suffix {
+		keys = append(keys, envKeyRoot+s)
+	}
 	return Feature[T]{
-		key:   envKeyRoot + suffix,
+		keys:  keys,
 		parse: parse,
 	}
 }
 
-// Key returns the environment variable key that needs to be set to enable the
+// Keys returns the environment variable keys that can be set to enable the
 // feature.
-func (f Feature[T]) Key() string { return f.key }
+func (f Feature[T]) Keys() []string { return f.keys }
 
 // Lookup returns the user configured value for the feature and true if the
 // user has enabled the feature. Otherwise, if the feature is not enabled, a
@@ -52,14 +42,16 @@
 	//
 	// > The SDK MUST interpret an empty value of an environment variable the
 	// > same way as when the variable is unset.
-	vRaw := os.Getenv(f.key)
-	if vRaw == "" {
-		return v, ok
+	for _, key := range f.keys {
+		vRaw := os.Getenv(key)
+		if vRaw != "" {
+			return f.parse(vRaw)
+		}
 	}
-	return f.parse(vRaw)
+	return v, ok
 }
 
-// Enabled returns if the feature is enabled.
+// Enabled reports whether the feature is enabled.
 func (f Feature[T]) Enabled() bool {
 	_, ok := f.Lookup()
 	return ok
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go	2026-09-02 10:24:54.936997501 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go	2026-09-02 10:25:23.489027216 +0000
@@ -13,7 +13,7 @@
 
 	"go.opentelemetry.io/otel/attribute"
 	"go.opentelemetry.io/otel/sdk"
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 )
 
 type (
@@ -72,7 +72,7 @@
 
 // Detect returns a *Resource that describes the string as a value
 // corresponding to attribute.Key as well as the specific schemaURL.
-func (sd stringDetector) Detect(ctx context.Context) (*Resource, error) {
+func (sd stringDetector) Detect(context.Context) (*Resource, error) {
 	value, err := sd.F()
 	if err != nil {
 		return nil, fmt.Errorf("%s: %w", string(sd.K), err)
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/config.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/config.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/config.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/config.go	2026-09-02 10:25:23.489027216 +0000
@@ -193,3 +193,11 @@
 func WithContainerID() Option {
 	return WithDetectors(cgroupContainerIDDetector{})
 }
+
+// WithService adds all the Service attributes to the configured Resource.
+func WithService() Option {
+	return WithDetectors(
+		defaultServiceInstanceIDDetector{},
+		defaultServiceNameDetector{},
+	)
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/container.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/container.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/container.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/container.go	2026-09-02 10:25:23.489027216 +0000
@@ -11,7 +11,7 @@
 	"os"
 	"regexp"
 
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 )
 
 type containerIDProvider func() (string, error)
@@ -27,7 +27,7 @@
 
 // Detect returns a *Resource that describes the id of the container.
 // If no container id found, an empty resource will be returned.
-func (cgroupContainerIDDetector) Detect(ctx context.Context) (*Resource, error) {
+func (cgroupContainerIDDetector) Detect(context.Context) (*Resource, error) {
 	containerID, err := containerID()
 	if err != nil {
 		return nil, err
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/env.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/env.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/env.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/env.go	2026-09-02 10:25:23.489027216 +0000
@@ -12,7 +12,7 @@
 
 	"go.opentelemetry.io/otel"
 	"go.opentelemetry.io/otel/attribute"
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 )
 
 const (
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go	2026-09-02 10:25:23.489027216 +0000
@@ -8,7 +8,7 @@
 	"errors"
 	"strings"
 
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 )
 
 type hostIDProvider func() (string, error)
@@ -31,19 +31,19 @@
 	readFile    fileReader
 }
 
-// read attempts to read the machine-id from /etc/hostid. If not found it will
-// execute `kenv -q smbios.system.uuid`. If neither location yields an id an
-// error will be returned.
+// read attempts to read the machine-id from /etc/hostid.
+// If not found it will execute: /bin/kenv -q smbios.system.uuid.
+// If neither location yields an id an error will be returned.
 func (r *hostIDReaderBSD) read() (string, error) {
 	if result, err := r.readFile("/etc/hostid"); err == nil {
 		return strings.TrimSpace(result), nil
 	}
 
-	if result, err := r.execCommand("kenv", "-q", "smbios.system.uuid"); err == nil {
+	if result, err := r.execCommand("/bin/kenv", "-q", "smbios.system.uuid"); err == nil {
 		return strings.TrimSpace(result), nil
 	}
 
-	return "", errors.New("host id not found in: /etc/hostid or kenv")
+	return "", errors.New("host id not found in: /etc/hostid or /bin/kenv")
 }
 
 // hostIDReaderDarwin implements hostIDReader.
@@ -51,17 +51,16 @@
 	execCommand commandExecutor
 }
 
-// read executes `ioreg -rd1 -c "IOPlatformExpertDevice"` and parses host id
+// read executes `/usr/sbin/ioreg -rd1 -c "IOPlatformExpertDevice"` and parses host id
 // from the IOPlatformUUID line. If the command fails or the uuid cannot be
 // parsed an error will be returned.
 func (r *hostIDReaderDarwin) read() (string, error) {
-	result, err := r.execCommand("ioreg", "-rd1", "-c", "IOPlatformExpertDevice")
+	result, err := r.execCommand("/usr/sbin/ioreg", "-rd1", "-c", "IOPlatformExpertDevice")
 	if err != nil {
 		return "", err
 	}
 
-	lines := strings.Split(result, "\n")
-	for _, line := range lines {
+	for line := range strings.SplitSeq(result, "\n") {
 		if strings.Contains(line, "IOPlatformUUID") {
 			parts := strings.Split(line, " = ")
 			if len(parts) == 2 {
@@ -96,7 +95,7 @@
 type hostIDDetector struct{}
 
 // Detect returns a *Resource containing the platform specific host id.
-func (hostIDDetector) Detect(ctx context.Context) (*Resource, error) {
+func (hostIDDetector) Detect(context.Context) (*Resource, error) {
 	hostID, err := hostID()
 	if err != nil {
 		return nil, err
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build dragonfly || freebsd || netbsd || openbsd || solaris
-// +build dragonfly freebsd netbsd openbsd solaris
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build linux
-// +build linux
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go	2026-09-02 10:25:23.489027216 +0000
@@ -8,7 +8,7 @@
 import "os"
 
 func readFile(filename string) (string, error) {
-	b, err := os.ReadFile(filename)
+	b, err := os.ReadFile(filename) // nolint:gosec // false positive
 	if err != nil {
 		return "", err
 	}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build !darwin && !dragonfly && !freebsd && !linux && !netbsd && !openbsd && !solaris && !windows
-// +build !darwin,!dragonfly,!freebsd,!linux,!netbsd,!openbsd,!solaris,!windows
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build windows
-// +build windows
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/os.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os.go	2026-09-02 10:25:23.489027216 +0000
@@ -8,7 +8,7 @@
 	"strings"
 
 	"go.opentelemetry.io/otel/attribute"
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 )
 
 type osDescriptionProvider func() (string, error)
@@ -32,7 +32,7 @@
 
 // Detect returns a *Resource that describes the operating system type the
 // service is running on.
-func (osTypeDetector) Detect(ctx context.Context) (*Resource, error) {
+func (osTypeDetector) Detect(context.Context) (*Resource, error) {
 	osType := runtimeOS()
 
 	osTypeAttribute := mapRuntimeOSToSemconvOSType(osType)
@@ -45,7 +45,7 @@
 
 // Detect returns a *Resource that describes the operating system the
 // service is running on.
-func (osDescriptionDetector) Detect(ctx context.Context) (*Resource, error) {
+func (osDescriptionDetector) Detect(context.Context) (*Resource, error) {
 	description, err := osDescription()
 	if err != nil {
 		return nil, err
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build aix || dragonfly || freebsd || linux || netbsd || openbsd || solaris || zos
-// +build aix dragonfly freebsd linux netbsd openbsd solaris zos
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
@@ -63,12 +62,12 @@
 	return values
 }
 
-// skip returns true if the line is blank or starts with a '#' character, and
+// skip reports whether the line is blank or starts with a '#' character, and
 // therefore should be skipped from processing.
 func skip(line string) bool {
 	line = strings.TrimSpace(line)
 
-	return len(line) == 0 || strings.HasPrefix(line, "#")
+	return line == "" || strings.HasPrefix(line, "#")
 }
 
 // parse attempts to split the provided line on the first '=' character, and then
@@ -76,7 +75,7 @@
 func parse(line string) (string, string, bool) {
 	k, v, found := strings.Cut(line, "=")
 
-	if !found || len(k) == 0 {
+	if !found || k == "" {
 		return "", "", false
 	}
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build aix || darwin || dragonfly || freebsd || linux || netbsd || openbsd || solaris || zos
-// +build aix darwin dragonfly freebsd linux netbsd openbsd solaris zos
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go	2026-09-02 10:25:23.489027216 +0000
@@ -2,7 +2,6 @@
 // SPDX-License-Identifier: Apache-2.0
 
 //go:build !aix && !darwin && !dragonfly && !freebsd && !linux && !netbsd && !openbsd && !solaris && !windows && !zos
-// +build !aix,!darwin,!dragonfly,!freebsd,!linux,!netbsd,!openbsd,!solaris,!windows,!zos
 
 package resource // import "go.opentelemetry.io/otel/sdk/resource"
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/process.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/process.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/process.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/process.go	2026-09-02 10:25:23.489027216 +0000
@@ -11,7 +11,7 @@
 	"path/filepath"
 	"runtime"
 
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 )
 
 type (
@@ -112,19 +112,19 @@
 
 // Detect returns a *Resource that describes the process identifier (PID) of the
 // executing process.
-func (processPIDDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processPIDDetector) Detect(context.Context) (*Resource, error) {
 	return NewWithAttributes(semconv.SchemaURL, semconv.ProcessPID(pid())), nil
 }
 
 // Detect returns a *Resource that describes the name of the process executable.
-func (processExecutableNameDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processExecutableNameDetector) Detect(context.Context) (*Resource, error) {
 	executableName := filepath.Base(commandArgs()[0])
 
 	return NewWithAttributes(semconv.SchemaURL, semconv.ProcessExecutableName(executableName)), nil
 }
 
 // Detect returns a *Resource that describes the full path of the process executable.
-func (processExecutablePathDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processExecutablePathDetector) Detect(context.Context) (*Resource, error) {
 	executablePath, err := executablePath()
 	if err != nil {
 		return nil, err
@@ -135,13 +135,13 @@
 
 // Detect returns a *Resource that describes all the command arguments as received
 // by the process.
-func (processCommandArgsDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processCommandArgsDetector) Detect(context.Context) (*Resource, error) {
 	return NewWithAttributes(semconv.SchemaURL, semconv.ProcessCommandArgs(commandArgs()...)), nil
 }
 
 // Detect returns a *Resource that describes the username of the user that owns the
 // process.
-func (processOwnerDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processOwnerDetector) Detect(context.Context) (*Resource, error) {
 	owner, err := owner()
 	if err != nil {
 		return nil, err
@@ -152,17 +152,17 @@
 
 // Detect returns a *Resource that describes the name of the compiler used to compile
 // this process image.
-func (processRuntimeNameDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processRuntimeNameDetector) Detect(context.Context) (*Resource, error) {
 	return NewWithAttributes(semconv.SchemaURL, semconv.ProcessRuntimeName(runtimeName())), nil
 }
 
 // Detect returns a *Resource that describes the version of the runtime of this process.
-func (processRuntimeVersionDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processRuntimeVersionDetector) Detect(context.Context) (*Resource, error) {
 	return NewWithAttributes(semconv.SchemaURL, semconv.ProcessRuntimeVersion(runtimeVersion())), nil
 }
 
 // Detect returns a *Resource that describes the runtime of this process.
-func (processRuntimeDescriptionDetector) Detect(ctx context.Context) (*Resource, error) {
+func (processRuntimeDescriptionDetector) Detect(context.Context) (*Resource, error) {
 	runtimeDescription := fmt.Sprintf(
 		"go version %s %s/%s", runtimeVersion(), runtimeOS(), runtimeArch())
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go
--- a/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go	2026-09-02 10:25:23.489027216 +0000
@@ -112,7 +112,7 @@
 }
 
 // MarshalLog is the marshaling function used by the logging system to represent this Resource.
-func (r *Resource) MarshalLog() interface{} {
+func (r *Resource) MarshalLog() any {
 	return struct {
 		Attributes attribute.Set
 		SchemaURL  string
@@ -148,7 +148,7 @@
 	return r.attrs.Iter()
 }
 
-// Equal returns whether r and o represent the same resource. Two resources can
+// Equal reports whether r and o represent the same resource. Two resources can
 // be equal even if they have different schema URLs.
 //
 // See the documentation on the [Resource] type for the pitfalls of using ==
@@ -232,6 +232,15 @@
 // Default returns an instance of Resource with a default
 // "service.name" and OpenTelemetrySDK attributes.
 func Default() *Resource {
+	return DefaultWithContext(context.Background())
+}
+
+// DefaultWithContext returns an instance of Resource with a default
+// "service.name" and OpenTelemetrySDK attributes.
+//
+// If the default resource has already been initialized, the provided ctx
+// is ignored and the cached resource is returned.
+func DefaultWithContext(ctx context.Context) *Resource {
 	defaultResourceOnce.Do(func() {
 		var err error
 		defaultDetectors := []Detector{
@@ -243,7 +252,7 @@
 			defaultDetectors = append([]Detector{defaultServiceInstanceIDDetector{}}, defaultDetectors...)
 		}
 		defaultResource, err = Detect(
-			context.Background(),
+			ctx,
 			defaultDetectors...,
 		)
 		if err != nil {
@@ -260,8 +269,14 @@
 // Environment returns an instance of Resource with attributes
 // extracted from the OTEL_RESOURCE_ATTRIBUTES environment variable.
 func Environment() *Resource {
+	return EnvironmentWithContext(context.Background())
+}
+
+// EnvironmentWithContext returns an instance of Resource with attributes
+// extracted from the OTEL_RESOURCE_ATTRIBUTES environment variable.
+func EnvironmentWithContext(ctx context.Context) *Resource {
 	detector := &fromEnv{}
-	resource, err := detector.Detect(context.Background())
+	resource, err := detector.Detect(ctx)
 	if err != nil {
 		otel.Handle(err)
 	}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go	2026-09-02 10:25:23.493027222 +0000
@@ -5,20 +5,24 @@
 
 import (
 	"context"
+	"errors"
 	"sync"
 	"sync/atomic"
 	"time"
 
 	"go.opentelemetry.io/otel"
 	"go.opentelemetry.io/otel/internal/global"
-	"go.opentelemetry.io/otel/sdk/internal/env"
+	"go.opentelemetry.io/otel/sdk/trace/internal/env"
+	"go.opentelemetry.io/otel/sdk/trace/internal/observ"
 	"go.opentelemetry.io/otel/trace"
 )
 
 // Defaults for BatchSpanProcessorOptions.
 const (
-	DefaultMaxQueueSize       = 2048
-	DefaultScheduleDelay      = 5000
+	DefaultMaxQueueSize = 2048
+	// DefaultScheduleDelay is the delay interval between two consecutive exports, in milliseconds.
+	DefaultScheduleDelay = 5000
+	// DefaultExportTimeout is the duration after which an export is cancelled, in milliseconds.
 	DefaultExportTimeout      = 30000
 	DefaultMaxExportBatchSize = 512
 )
@@ -64,7 +68,9 @@
 	o BatchSpanProcessorOptions
 
 	queue   chan ReadOnlySpan
-	dropped uint32
+	dropped atomic.Uint32
+
+	inst *observ.BSP
 
 	batch      []ReadOnlySpan
 	batchMutex sync.Mutex
@@ -86,11 +92,7 @@
 	maxExportBatchSize := env.BatchSpanProcessorMaxExportBatchSize(DefaultMaxExportBatchSize)
 
 	if maxExportBatchSize > maxQueueSize {
-		if DefaultMaxExportBatchSize > maxQueueSize {
-			maxExportBatchSize = maxQueueSize
-		} else {
-			maxExportBatchSize = DefaultMaxExportBatchSize
-		}
+		maxExportBatchSize = min(DefaultMaxExportBatchSize, maxQueueSize)
 	}
 
 	o := BatchSpanProcessorOptions{
@@ -111,18 +113,34 @@
 		stopCh: make(chan struct{}),
 	}
 
-	bsp.stopWait.Add(1)
-	go func() {
-		defer bsp.stopWait.Done()
+	var err error
+	bsp.inst, err = observ.NewBSP(
+		nextProcessorID(),
+		func() int64 { return int64(len(bsp.queue)) },
+		int64(bsp.o.MaxQueueSize),
+	)
+	if err != nil {
+		otel.Handle(err)
+	}
+
+	bsp.stopWait.Go(func() {
 		bsp.processQueue()
 		bsp.drainQueue()
-	}()
+	})
 
 	return bsp
 }
 
+var processorIDCounter atomic.Int64
+
+// nextProcessorID returns an identifier for this batch span processor,
+// starting with 0 and incrementing by 1 each time it is called.
+func nextProcessorID() int64 {
+	return processorIDCounter.Add(1) - 1
+}
+
 // OnStart method does nothing.
-func (bsp *batchSpanProcessor) OnStart(parent context.Context, s ReadWriteSpan) {}
+func (*batchSpanProcessor) OnStart(context.Context, ReadWriteSpan) {}
 
 // OnEnd method enqueues a ReadOnlySpan for later processing.
 func (bsp *batchSpanProcessor) OnEnd(s ReadOnlySpan) {
@@ -161,6 +179,9 @@
 		case <-ctx.Done():
 			err = ctx.Err()
 		}
+		if bsp.inst != nil {
+			err = errors.Join(err, bsp.inst.Shutdown())
+		}
 	})
 	return err
 }
@@ -170,7 +191,7 @@
 	flushed chan struct{}
 }
 
-func (f forceFlushSpan) SpanContext() trace.SpanContext {
+func (forceFlushSpan) SpanContext() trace.SpanContext {
 	return trace.NewSpanContext(trace.SpanContextConfig{TraceFlags: trace.FlagsSampled})
 }
 
@@ -267,12 +288,15 @@
 
 	if bsp.o.ExportTimeout > 0 {
 		var cancel context.CancelFunc
-		ctx, cancel = context.WithTimeout(ctx, bsp.o.ExportTimeout)
+		ctx, cancel = context.WithTimeoutCause(ctx, bsp.o.ExportTimeout, errors.New("processor export timeout"))
 		defer cancel()
 	}
 
 	if l := len(bsp.batch); l > 0 {
-		global.Debug("exporting spans", "count", len(bsp.batch), "total_dropped", atomic.LoadUint32(&bsp.dropped))
+		global.Debug("exporting spans", "count", len(bsp.batch), "total_dropped", bsp.dropped.Load())
+		if bsp.inst != nil {
+			bsp.inst.Processed(ctx, int64(l))
+		}
 		err := bsp.e.ExportSpans(ctx, bsp.batch)
 
 		// A new batch is always created after exporting, even if the batch failed to be exported.
@@ -381,11 +405,14 @@
 	case bsp.queue <- sd:
 		return true
 	case <-ctx.Done():
+		if bsp.inst != nil {
+			bsp.inst.ProcessedQueueFull(ctx, 1)
+		}
 		return false
 	}
 }
 
-func (bsp *batchSpanProcessor) enqueueDrop(_ context.Context, sd ReadOnlySpan) bool {
+func (bsp *batchSpanProcessor) enqueueDrop(ctx context.Context, sd ReadOnlySpan) bool {
 	if !sd.SpanContext().IsSampled() {
 		return false
 	}
@@ -394,13 +421,16 @@
 	case bsp.queue <- sd:
 		return true
 	default:
-		atomic.AddUint32(&bsp.dropped, 1)
+		bsp.dropped.Add(1)
+		if bsp.inst != nil {
+			bsp.inst.ProcessedQueueFull(ctx, 1)
+		}
 	}
 	return false
 }
 
 // MarshalLog is the marshaling function used by the logging system to represent this Span Processor.
-func (bsp *batchSpanProcessor) MarshalLog() interface{} {
+func (bsp *batchSpanProcessor) MarshalLog() any {
 	return struct {
 		Type         string
 		SpanExporter SpanExporter
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go	2026-09-02 10:25:23.493027222 +0000
@@ -6,5 +6,8 @@
 
 The following assumes a basic familiarity with OpenTelemetry concepts.
 See https://opentelemetry.io.
+
+See [go.opentelemetry.io/otel/sdk/internal/x] for information about
+the experimental features.
 */
 package trace // import "go.opentelemetry.io/otel/sdk/trace"
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go	2026-09-02 10:25:23.493027222 +0000
@@ -32,7 +32,7 @@
 var _ IDGenerator = &randomIDGenerator{}
 
 // NewSpanID returns a non-zero span ID from a randomly-chosen sequence.
-func (gen *randomIDGenerator) NewSpanID(ctx context.Context, traceID trace.TraceID) trace.SpanID {
+func (*randomIDGenerator) NewSpanID(context.Context, trace.TraceID) trace.SpanID {
 	sid := trace.SpanID{}
 	for {
 		binary.NativeEndian.PutUint64(sid[:], rand.Uint64())
@@ -45,7 +45,7 @@
 
 // NewIDs returns a non-zero trace ID and a non-zero span ID from a
 // randomly-chosen sequence.
-func (gen *randomIDGenerator) NewIDs(ctx context.Context) (trace.TraceID, trace.SpanID) {
+func (*randomIDGenerator) NewIDs(context.Context) (trace.TraceID, trace.SpanID) {
 	tid := trace.TraceID{}
 	sid := trace.SpanID{}
 	for {
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/env/env.go	2026-09-02 10:25:23.493027222 +0000
@@ -0,0 +1,168 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+// Package env provides types and functionality for environment variable support
+// in the OpenTelemetry SDK.
+package env // import "go.opentelemetry.io/otel/sdk/trace/internal/env"
+
+import (
+	"os"
+	"strconv"
+
+	"go.opentelemetry.io/otel/internal/global"
+)
+
+// Environment variable names.
+const (
+	// BatchSpanProcessorScheduleDelayKey is the delay interval between two
+	// consecutive exports (i.e. 5000).
+	BatchSpanProcessorScheduleDelayKey = "OTEL_BSP_SCHEDULE_DELAY"
+	// BatchSpanProcessorExportTimeoutKey is the maximum allowed time to
+	// export data (i.e. 3000).
+	BatchSpanProcessorExportTimeoutKey = "OTEL_BSP_EXPORT_TIMEOUT"
+	// BatchSpanProcessorMaxQueueSizeKey is the maximum queue size (i.e. 2048).
+	BatchSpanProcessorMaxQueueSizeKey = "OTEL_BSP_MAX_QUEUE_SIZE"
+	// BatchSpanProcessorMaxExportBatchSizeKey is the maximum batch size (i.e.
+	// 512). Note: it must be less than or equal to
+	// BatchSpanProcessorMaxQueueSize.
+	BatchSpanProcessorMaxExportBatchSizeKey = "OTEL_BSP_MAX_EXPORT_BATCH_SIZE"
+
+	// AttributeValueLengthKey is the maximum allowed attribute value size.
+	AttributeValueLengthKey = "OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT"
+
+	// AttributeCountKey is the maximum allowed span attribute count.
+	AttributeCountKey = "OTEL_ATTRIBUTE_COUNT_LIMIT"
+
+	// SpanAttributeValueLengthKey is the maximum allowed attribute value size
+	// for a span.
+	SpanAttributeValueLengthKey = "OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT"
+
+	// SpanAttributeCountKey is the maximum allowed span attribute count for a
+	// span.
+	SpanAttributeCountKey = "OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT"
+
+	// SpanEventCountKey is the maximum allowed span event count.
+	SpanEventCountKey = "OTEL_SPAN_EVENT_COUNT_LIMIT"
+
+	// SpanEventAttributeCountKey is the maximum allowed attribute per span
+	// event count.
+	SpanEventAttributeCountKey = "OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT"
+
+	// SpanLinkCountKey is the maximum allowed span link count.
+	SpanLinkCountKey = "OTEL_SPAN_LINK_COUNT_LIMIT"
+
+	// SpanLinkAttributeCountKey is the maximum allowed attribute per span
+	// link count.
+	SpanLinkAttributeCountKey = "OTEL_LINK_ATTRIBUTE_COUNT_LIMIT"
+)
+
+// firstInt returns the value of the first matching environment variable from
+// keys. If the value is not an integer or no match is found, defaultValue is
+// returned.
+func firstInt(defaultValue int, keys ...string) int {
+	for _, key := range keys {
+		value := os.Getenv(key)
+		if value == "" {
+			continue
+		}
+
+		intValue, err := strconv.Atoi(value)
+		if err != nil {
+			global.Info("Got invalid value, number value expected.", key, value)
+			return defaultValue
+		}
+
+		return intValue
+	}
+
+	return defaultValue
+}
+
+// IntEnvOr returns the int value of the environment variable with name key if
+// it exists, it is not empty, and the value is an int. Otherwise, defaultValue is returned.
+func IntEnvOr(key string, defaultValue int) int {
+	value := os.Getenv(key)
+	if value == "" {
+		return defaultValue
+	}
+
+	intValue, err := strconv.Atoi(value)
+	if err != nil {
+		global.Info("Got invalid value, number value expected.", key, value)
+		return defaultValue
+	}
+
+	return intValue
+}
+
+// BatchSpanProcessorScheduleDelay returns the environment variable value for
+// the OTEL_BSP_SCHEDULE_DELAY key if it exists, otherwise defaultValue is
+// returned.
+func BatchSpanProcessorScheduleDelay(defaultValue int) int {
+	return IntEnvOr(BatchSpanProcessorScheduleDelayKey, defaultValue)
+}
+
+// BatchSpanProcessorExportTimeout returns the environment variable value for
+// the OTEL_BSP_EXPORT_TIMEOUT key if it exists, otherwise defaultValue is
+// returned.
+func BatchSpanProcessorExportTimeout(defaultValue int) int {
+	return IntEnvOr(BatchSpanProcessorExportTimeoutKey, defaultValue)
+}
+
+// BatchSpanProcessorMaxQueueSize returns the environment variable value for
+// the OTEL_BSP_MAX_QUEUE_SIZE key if it exists, otherwise defaultValue is
+// returned.
+func BatchSpanProcessorMaxQueueSize(defaultValue int) int {
+	return IntEnvOr(BatchSpanProcessorMaxQueueSizeKey, defaultValue)
+}
+
+// BatchSpanProcessorMaxExportBatchSize returns the environment variable value for
+// the OTEL_BSP_MAX_EXPORT_BATCH_SIZE key if it exists, otherwise defaultValue
+// is returned.
+func BatchSpanProcessorMaxExportBatchSize(defaultValue int) int {
+	return IntEnvOr(BatchSpanProcessorMaxExportBatchSizeKey, defaultValue)
+}
+
+// SpanAttributeValueLength returns the environment variable value for the
+// OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT key if it exists. Otherwise, the
+// environment variable value for OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT is
+// returned or defaultValue if that is not set.
+func SpanAttributeValueLength(defaultValue int) int {
+	return firstInt(defaultValue, SpanAttributeValueLengthKey, AttributeValueLengthKey)
+}
+
+// SpanAttributeCount returns the environment variable value for the
+// OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT key if it exists. Otherwise, the
+// environment variable value for OTEL_ATTRIBUTE_COUNT_LIMIT is returned or
+// defaultValue if that is not set.
+func SpanAttributeCount(defaultValue int) int {
+	return firstInt(defaultValue, SpanAttributeCountKey, AttributeCountKey)
+}
+
+// SpanEventCount returns the environment variable value for the
+// OTEL_SPAN_EVENT_COUNT_LIMIT key if it exists, otherwise defaultValue is
+// returned.
+func SpanEventCount(defaultValue int) int {
+	return IntEnvOr(SpanEventCountKey, defaultValue)
+}
+
+// SpanEventAttributeCount returns the environment variable value for the
+// OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT key if it exists, otherwise defaultValue
+// is returned.
+func SpanEventAttributeCount(defaultValue int) int {
+	return IntEnvOr(SpanEventAttributeCountKey, defaultValue)
+}
+
+// SpanLinkCount returns the environment variable value for the
+// OTEL_SPAN_LINK_COUNT_LIMIT key if it exists, otherwise defaultValue is
+// returned.
+func SpanLinkCount(defaultValue int) int {
+	return IntEnvOr(SpanLinkCountKey, defaultValue)
+}
+
+// SpanLinkAttributeCount returns the environment variable value for the
+// OTEL_LINK_ATTRIBUTE_COUNT_LIMIT key if it exists, otherwise defaultValue is
+// returned.
+func SpanLinkAttributeCount(defaultValue int) int {
+	return IntEnvOr(SpanLinkAttributeCountKey, defaultValue)
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/batch_span_processor.go	2026-09-02 10:25:23.493027222 +0000
@@ -0,0 +1,119 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ"
+
+import (
+	"context"
+	"errors"
+	"fmt"
+
+	"go.opentelemetry.io/otel"
+	"go.opentelemetry.io/otel/attribute"
+	"go.opentelemetry.io/otel/metric"
+	"go.opentelemetry.io/otel/sdk"
+	"go.opentelemetry.io/otel/sdk/internal/x"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
+	"go.opentelemetry.io/otel/semconv/v1.40.0/otelconv"
+)
+
+const (
+	// ScopeName is the name of the instrumentation scope.
+	ScopeName = "go.opentelemetry.io/otel/sdk/trace/internal/observ"
+
+	// SchemaURL is the schema URL of the instrumentation.
+	SchemaURL = semconv.SchemaURL
+)
+
+// ErrQueueFull is the attribute value for the "queue_full" error type.
+var ErrQueueFull = otelconv.SDKProcessorSpanProcessed{}.AttrErrorType(
+	otelconv.ErrorTypeAttr("queue_full"),
+)
+
+// BSPComponentName returns the component name attribute for a
+// BatchSpanProcessor with the given ID.
+func BSPComponentName(id int64) attribute.KeyValue {
+	t := otelconv.ComponentTypeBatchingSpanProcessor
+	name := fmt.Sprintf("%s/%d", t, id)
+	return semconv.OTelComponentName(name)
+}
+
+// BSP is the instrumentation for an OTel SDK BatchSpanProcessor.
+type BSP struct {
+	reg metric.Registration
+
+	processed              metric.Int64Counter
+	processedOpts          []metric.AddOption
+	processedQueueFullOpts []metric.AddOption
+}
+
+func NewBSP(id int64, qLen func() int64, qMax int64) (*BSP, error) {
+	if !x.Observability.Enabled() {
+		return nil, nil
+	}
+
+	meter := otel.GetMeterProvider().Meter(
+		ScopeName,
+		metric.WithInstrumentationVersion(sdk.Version()),
+		metric.WithSchemaURL(SchemaURL),
+	)
+
+	qCap, err := otelconv.NewSDKProcessorSpanQueueCapacity(meter)
+	if err != nil {
+		err = fmt.Errorf("failed to create BSP queue capacity metric: %w", err)
+	}
+	qCapInst := qCap.Inst()
+
+	qSize, e := otelconv.NewSDKProcessorSpanQueueSize(meter)
+	if e != nil {
+		e := fmt.Errorf("failed to create BSP queue size metric: %w", e)
+		err = errors.Join(err, e)
+	}
+	qSizeInst := qSize.Inst()
+
+	cmpntT := semconv.OTelComponentTypeBatchingSpanProcessor
+	cmpnt := BSPComponentName(id)
+	set := attribute.NewSet(cmpnt, cmpntT)
+
+	obsOpts := []metric.ObserveOption{metric.WithAttributeSet(set)}
+	reg, e := meter.RegisterCallback(
+		func(_ context.Context, o metric.Observer) error {
+			o.ObserveInt64(qSizeInst, qLen(), obsOpts...)
+			o.ObserveInt64(qCapInst, qMax, obsOpts...)
+			return nil
+		},
+		qSizeInst,
+		qCapInst,
+	)
+	if e != nil {
+		e := fmt.Errorf("failed to register BSP queue size/capacity callback: %w", e)
+		err = errors.Join(err, e)
+	}
+
+	processed, e := otelconv.NewSDKProcessorSpanProcessed(meter)
+	if e != nil {
+		e := fmt.Errorf("failed to create BSP processed spans metric: %w", e)
+		err = errors.Join(err, e)
+	}
+	processedOpts := []metric.AddOption{metric.WithAttributeSet(set)}
+
+	set = attribute.NewSet(cmpnt, cmpntT, ErrQueueFull)
+	processedQueueFullOpts := []metric.AddOption{metric.WithAttributeSet(set)}
+
+	return &BSP{
+		reg:                    reg,
+		processed:              processed.Inst(),
+		processedOpts:          processedOpts,
+		processedQueueFullOpts: processedQueueFullOpts,
+	}, err
+}
+
+func (b *BSP) Shutdown() error { return b.reg.Unregister() }
+
+func (b *BSP) Processed(ctx context.Context, n int64) {
+	b.processed.Add(ctx, n, b.processedOpts...)
+}
+
+func (b *BSP) ProcessedQueueFull(ctx context.Context, n int64) {
+	b.processed.Add(ctx, n, b.processedQueueFullOpts...)
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/doc.go	2026-09-02 10:25:23.493027222 +0000
@@ -0,0 +1,6 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+// Package observ provides observability instrumentation for the OTel trace SDK
+// package.
+package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ"
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/simple_span_processor.go	2026-09-02 10:25:23.493027222 +0000
@@ -0,0 +1,97 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ"
+
+import (
+	"context"
+	"fmt"
+	"sync"
+
+	"go.opentelemetry.io/otel"
+	"go.opentelemetry.io/otel/attribute"
+	"go.opentelemetry.io/otel/metric"
+	"go.opentelemetry.io/otel/sdk"
+	"go.opentelemetry.io/otel/sdk/internal/x"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
+	"go.opentelemetry.io/otel/semconv/v1.40.0/otelconv"
+)
+
+var measureAttrsPool = sync.Pool{
+	New: func() any {
+		// "component.name" + "component.type" + "error.type"
+		const n = 1 + 1 + 1
+		s := make([]attribute.KeyValue, 0, n)
+		// Return a pointer to a slice instead of a slice itself
+		// to avoid allocations on every call.
+		return &s
+	},
+}
+
+// SSP is the instrumentation for an OTel SDK SimpleSpanProcessor.
+type SSP struct {
+	spansProcessedCounter metric.Int64Counter
+	addOpts               []metric.AddOption
+	attrs                 []attribute.KeyValue
+}
+
+// SSPComponentName returns the component name attribute for a
+// SimpleSpanProcessor with the given ID.
+func SSPComponentName(id int64) attribute.KeyValue {
+	t := otelconv.ComponentTypeSimpleSpanProcessor
+	name := fmt.Sprintf("%s/%d", t, id)
+	return semconv.OTelComponentName(name)
+}
+
+// NewSSP returns instrumentation for an OTel SDK SimpleSpanProcessor with the
+// provided ID.
+//
+// If the experimental observability is disabled, nil is returned.
+func NewSSP(id int64) (*SSP, error) {
+	if !x.Observability.Enabled() {
+		return nil, nil
+	}
+
+	meter := otel.GetMeterProvider().Meter(
+		ScopeName,
+		metric.WithInstrumentationVersion(sdk.Version()),
+		metric.WithSchemaURL(SchemaURL),
+	)
+	spansProcessedCounter, err := otelconv.NewSDKProcessorSpanProcessed(meter)
+	if err != nil {
+		err = fmt.Errorf("failed to create SSP processed spans metric: %w", err)
+	}
+
+	componentName := SSPComponentName(id)
+	componentType := spansProcessedCounter.AttrComponentType(otelconv.ComponentTypeSimpleSpanProcessor)
+	attrs := []attribute.KeyValue{componentName, componentType}
+	addOpts := []metric.AddOption{metric.WithAttributeSet(attribute.NewSet(attrs...))}
+
+	return &SSP{
+		spansProcessedCounter: spansProcessedCounter.Inst(),
+		addOpts:               addOpts,
+		attrs:                 attrs,
+	}, err
+}
+
+// SpanProcessed records that a span has been processed by the SimpleSpanProcessor.
+// If err is non-nil, it records the processing error as an attribute.
+func (ssp *SSP) SpanProcessed(ctx context.Context, err error) {
+	ssp.spansProcessedCounter.Add(ctx, 1, ssp.addOption(err)...)
+}
+
+func (ssp *SSP) addOption(err error) []metric.AddOption {
+	if err == nil {
+		return ssp.addOpts
+	}
+	attrs := measureAttrsPool.Get().(*[]attribute.KeyValue)
+	defer func() {
+		*attrs = (*attrs)[:0] // reset the slice for reuse
+		measureAttrsPool.Put(attrs)
+	}()
+	*attrs = append(*attrs, ssp.attrs...)
+	*attrs = append(*attrs, semconv.ErrorType(err))
+	// Do not inefficiently make a copy of attrs by using
+	// WithAttributes instead of WithAttributeSet.
+	return []metric.AddOption{metric.WithAttributeSet(attribute.NewSet(*attrs...))}
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/internal/observ/tracer.go	2026-09-02 10:25:23.493027222 +0000
@@ -0,0 +1,231 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+package observ // import "go.opentelemetry.io/otel/sdk/trace/internal/observ"
+
+import (
+	"context"
+	"errors"
+	"fmt"
+
+	"go.opentelemetry.io/otel"
+	"go.opentelemetry.io/otel/attribute"
+	"go.opentelemetry.io/otel/metric"
+	"go.opentelemetry.io/otel/sdk"
+	"go.opentelemetry.io/otel/sdk/internal/x"
+	"go.opentelemetry.io/otel/semconv/v1.40.0/otelconv"
+	"go.opentelemetry.io/otel/trace"
+)
+
+var meterOpts = []metric.MeterOption{
+	metric.WithInstrumentationVersion(sdk.Version()),
+	metric.WithSchemaURL(SchemaURL),
+}
+
+// Tracer is instrumentation for an OTel SDK Tracer.
+type Tracer struct {
+	enabled bool
+
+	live    metric.Int64UpDownCounter
+	started metric.Int64Counter
+}
+
+func NewTracer() (Tracer, error) {
+	if !x.Observability.Enabled() {
+		return Tracer{}, nil
+	}
+	meter := otel.GetMeterProvider().Meter(ScopeName, meterOpts...)
+
+	var err error
+	l, e := otelconv.NewSDKSpanLive(meter)
+	if e != nil {
+		e = fmt.Errorf("failed to create span live metric: %w", e)
+		err = errors.Join(err, e)
+	}
+
+	s, e := otelconv.NewSDKSpanStarted(meter)
+	if e != nil {
+		e = fmt.Errorf("failed to create span started metric: %w", e)
+		err = errors.Join(err, e)
+	}
+
+	return Tracer{enabled: true, live: l.Inst(), started: s.Inst()}, err
+}
+
+func (t Tracer) Enabled() bool { return t.enabled }
+
+func (t Tracer) SpanStarted(ctx context.Context, psc trace.SpanContext, span trace.Span) {
+	if !t.started.Enabled(ctx) {
+		return
+	}
+
+	key := spanStartedKey{
+		parent:   parentStateNoParent,
+		sampling: samplingStateDrop,
+	}
+
+	if psc.IsValid() {
+		if psc.IsRemote() {
+			key.parent = parentStateRemoteParent
+		} else {
+			key.parent = parentStateLocalParent
+		}
+	}
+
+	if span.IsRecording() {
+		if span.SpanContext().IsSampled() {
+			key.sampling = samplingStateRecordAndSample
+		} else {
+			key.sampling = samplingStateRecordOnly
+		}
+	}
+
+	opts := spanStartedOpts[key]
+	t.started.Add(ctx, 1, opts...)
+}
+
+func (t Tracer) SpanLive(ctx context.Context, span trace.Span) {
+	t.spanLive(ctx, 1, span)
+}
+
+func (t Tracer) SpanEnded(ctx context.Context, span trace.Span) {
+	t.spanLive(ctx, -1, span)
+}
+
+func (t Tracer) spanLive(ctx context.Context, value int64, span trace.Span) {
+	if !t.live.Enabled(ctx) {
+		return
+	}
+
+	key := spanLiveKey{sampled: span.SpanContext().IsSampled()}
+	opts := spanLiveOpts[key]
+	t.live.Add(ctx, value, opts...)
+}
+
+type parentState int
+
+const (
+	parentStateNoParent parentState = iota
+	parentStateLocalParent
+	parentStateRemoteParent
+)
+
+type samplingState int
+
+const (
+	samplingStateDrop samplingState = iota
+	samplingStateRecordOnly
+	samplingStateRecordAndSample
+)
+
+type spanStartedKey struct {
+	parent   parentState
+	sampling samplingState
+}
+
+var spanStartedOpts = map[spanStartedKey][]metric.AddOption{
+	{
+		parentStateNoParent,
+		samplingStateDrop,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginNone),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultDrop),
+		)),
+	},
+	{
+		parentStateLocalParent,
+		samplingStateDrop,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginLocal),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultDrop),
+		)),
+	},
+	{
+		parentStateRemoteParent,
+		samplingStateDrop,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginRemote),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultDrop),
+		)),
+	},
+
+	{
+		parentStateNoParent,
+		samplingStateRecordOnly,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginNone),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultRecordOnly),
+		)),
+	},
+	{
+		parentStateLocalParent,
+		samplingStateRecordOnly,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginLocal),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultRecordOnly),
+		)),
+	},
+	{
+		parentStateRemoteParent,
+		samplingStateRecordOnly,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginRemote),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultRecordOnly),
+		)),
+	},
+
+	{
+		parentStateNoParent,
+		samplingStateRecordAndSample,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginNone),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultRecordAndSample),
+		)),
+	},
+	{
+		parentStateLocalParent,
+		samplingStateRecordAndSample,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginLocal),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultRecordAndSample),
+		)),
+	},
+	{
+		parentStateRemoteParent,
+		samplingStateRecordAndSample,
+	}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanStarted{}.AttrSpanParentOrigin(otelconv.SpanParentOriginRemote),
+			otelconv.SDKSpanStarted{}.AttrSpanSamplingResult(otelconv.SpanSamplingResultRecordAndSample),
+		)),
+	},
+}
+
+type spanLiveKey struct {
+	sampled bool
+}
+
+var spanLiveOpts = map[spanLiveKey][]metric.AddOption{
+	{true}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanLive{}.AttrSpanSamplingResult(
+				otelconv.SpanSamplingResultRecordAndSample,
+			),
+		)),
+	},
+	{false}: {
+		metric.WithAttributeSet(attribute.NewSet(
+			otelconv.SDKSpanLive{}.AttrSpanSamplingResult(
+				otelconv.SpanSamplingResultRecordOnly,
+			),
+		)),
+	},
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go	2026-09-02 10:25:23.493027222 +0000
@@ -5,6 +5,7 @@
 
 import (
 	"context"
+	"errors"
 	"fmt"
 	"sync"
 	"sync/atomic"
@@ -13,14 +14,13 @@
 	"go.opentelemetry.io/otel/internal/global"
 	"go.opentelemetry.io/otel/sdk/instrumentation"
 	"go.opentelemetry.io/otel/sdk/resource"
+	"go.opentelemetry.io/otel/sdk/trace/internal/observ"
 	"go.opentelemetry.io/otel/trace"
 	"go.opentelemetry.io/otel/trace/embedded"
 	"go.opentelemetry.io/otel/trace/noop"
 )
 
-const (
-	defaultTracerName = "go.opentelemetry.io/otel/sdk/tracer"
-)
+const defaultTracerName = "go.opentelemetry.io/otel/sdk/tracer"
 
 // tracerProviderConfig.
 type tracerProviderConfig struct {
@@ -45,7 +45,7 @@
 }
 
 // MarshalLog is the marshaling function used by the logging system to represent this Provider.
-func (cfg tracerProviderConfig) MarshalLog() interface{} {
+func (cfg tracerProviderConfig) MarshalLog() any {
 	return struct {
 		SpanProcessors  []SpanProcessor
 		SamplerType     string
@@ -159,6 +159,13 @@
 				provider:             p,
 				instrumentationScope: is,
 			}
+
+			var err error
+			t.inst, err = observ.NewTracer()
+			if err != nil {
+				otel.Handle(err)
+			}
+
 			p.namedTracer[is] = t
 		}
 		return t, ok
@@ -256,6 +263,7 @@
 		return nil
 	}
 
+	var err error
 	for _, sps := range spss {
 		select {
 		case <-ctx.Done():
@@ -263,11 +271,9 @@
 		default:
 		}
 
-		if err := sps.sp.ForceFlush(ctx); err != nil {
-			return err
-		}
+		err = errors.Join(err, sps.sp.ForceFlush(ctx))
 	}
-	return nil
+	return err
 }
 
 // Shutdown shuts down TracerProvider. All registered span processors are shut down
@@ -297,14 +303,7 @@
 		sps.state.Do(func() {
 			err = sps.sp.Shutdown(ctx)
 		})
-		if err != nil {
-			if retErr == nil {
-				retErr = err
-			} else {
-				// Poor man's list of errors
-				retErr = fmt.Errorf("%w; %w", retErr, err)
-			}
-		}
+		retErr = errors.Join(retErr, err)
 	}
 	p.spanProcessors.Store(&spanProcessorStates{})
 	return retErr
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go	2026-09-02 10:25:23.493027222 +0000
@@ -69,17 +69,17 @@
 }
 
 func (ts traceIDRatioSampler) ShouldSample(p SamplingParameters) SamplingResult {
-	psc := trace.SpanContextFromContext(p.ParentContext)
+	state := trace.SpanContextFromContext(p.ParentContext).TraceState()
 	x := binary.BigEndian.Uint64(p.TraceID[8:16]) >> 1
 	if x < ts.traceIDUpperBound {
 		return SamplingResult{
 			Decision:   RecordAndSample,
-			Tracestate: psc.TraceState(),
+			Tracestate: state,
 		}
 	}
 	return SamplingResult{
 		Decision:   Drop,
-		Tracestate: psc.TraceState(),
+		Tracestate: state,
 	}
 }
 
@@ -94,12 +94,20 @@
 //
 //nolint:revive // revive complains about stutter of `trace.TraceIDRatioBased`
 func TraceIDRatioBased(fraction float64) Sampler {
+	// Cannot use AlwaysSample() and NeverSample(), must return spec-compliant descriptions.
+	// See https://opentelemetry.io/docs/specs/otel/trace/sdk/#traceidratiobased.
 	if fraction >= 1 {
-		return AlwaysSample()
+		return predeterminedSampler{
+			description: "TraceIDRatioBased{1}",
+			decision:    RecordAndSample,
+		}
 	}
 
 	if fraction <= 0 {
-		fraction = 0
+		return predeterminedSampler{
+			description: "TraceIDRatioBased{0}",
+			decision:    Drop,
+		}
 	}
 
 	return &traceIDRatioSampler{
@@ -110,14 +118,15 @@
 
 type alwaysOnSampler struct{}
 
-func (as alwaysOnSampler) ShouldSample(p SamplingParameters) SamplingResult {
+func (alwaysOnSampler) ShouldSample(p SamplingParameters) SamplingResult {
 	return SamplingResult{
 		Decision:   RecordAndSample,
 		Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(),
 	}
 }
 
-func (as alwaysOnSampler) Description() string {
+func (alwaysOnSampler) Description() string {
+	// https://opentelemetry.io/docs/specs/otel/trace/sdk/#alwayson
 	return "AlwaysOnSampler"
 }
 
@@ -131,14 +140,15 @@
 
 type alwaysOffSampler struct{}
 
-func (as alwaysOffSampler) ShouldSample(p SamplingParameters) SamplingResult {
+func (alwaysOffSampler) ShouldSample(p SamplingParameters) SamplingResult {
 	return SamplingResult{
 		Decision:   Drop,
 		Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(),
 	}
 }
 
-func (as alwaysOffSampler) Description() string {
+func (alwaysOffSampler) Description() string {
+	// https://opentelemetry.io/docs/specs/otel/trace/sdk/#alwaysoff
 	return "AlwaysOffSampler"
 }
 
@@ -147,6 +157,22 @@
 	return alwaysOffSampler{}
 }
 
+type predeterminedSampler struct {
+	description string
+	decision    SamplingDecision
+}
+
+func (s predeterminedSampler) ShouldSample(p SamplingParameters) SamplingResult {
+	return SamplingResult{
+		Decision:   s.decision,
+		Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(),
+	}
+}
+
+func (s predeterminedSampler) Description() string {
+	return s.description
+}
+
 // ParentBased returns a sampler decorator which behaves differently,
 // based on the parent of the span. If the span has no parent,
 // the decorated sampler is used to make sampling decision. If the span has
@@ -280,3 +306,31 @@
 		pb.config.localParentNotSampled.Description(),
 	)
 }
+
+// AlwaysRecord returns a sampler decorator which ensures that every span
+// is passed to the SpanProcessor, even those that would be normally dropped.
+// It converts `Drop` decisions from the root sampler into `RecordOnly` decisions,
+// allowing processors to see all spans without sending them to exporters. This is
+// typically used to enable accurate span-to-metrics processing.
+func AlwaysRecord(root Sampler) Sampler {
+	return alwaysRecord{root}
+}
+
+type alwaysRecord struct {
+	root Sampler
+}
+
+func (ar alwaysRecord) ShouldSample(p SamplingParameters) SamplingResult {
+	rootSamplerSamplingResult := ar.root.ShouldSample(p)
+	if rootSamplerSamplingResult.Decision == Drop {
+		return SamplingResult{
+			Decision:   RecordOnly,
+			Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(),
+		}
+	}
+	return rootSamplerSamplingResult
+}
+
+func (ar alwaysRecord) Description() string {
+	return "AlwaysRecord{root:" + ar.root.Description() + "}"
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go	2026-09-02 10:25:23.493027222 +0000
@@ -6,9 +6,12 @@
 import (
 	"context"
 	"sync"
+	"sync/atomic"
 
 	"go.opentelemetry.io/otel"
 	"go.opentelemetry.io/otel/internal/global"
+	"go.opentelemetry.io/otel/sdk/trace/internal/observ"
+	"go.opentelemetry.io/otel/trace"
 )
 
 // simpleSpanProcessor is a SpanProcessor that synchronously sends all
@@ -17,6 +20,8 @@
 	exporterMu sync.Mutex
 	exporter   SpanExporter
 	stopOnce   sync.Once
+
+	inst *observ.SSP
 }
 
 var _ SpanProcessor = (*simpleSpanProcessor)(nil)
@@ -33,24 +38,48 @@
 	ssp := &simpleSpanProcessor{
 		exporter: exporter,
 	}
+
+	var err error
+	ssp.inst, err = observ.NewSSP(nextSimpleProcessorID())
+	if err != nil {
+		otel.Handle(err)
+	}
+
 	global.Warn("SimpleSpanProcessor is not recommended for production use, consider using BatchSpanProcessor instead.")
 
 	return ssp
 }
 
+var simpleProcessorIDCounter atomic.Int64
+
+// nextSimpleProcessorID returns an identifier for this simple span processor,
+// starting with 0 and incrementing by 1 each time it is called.
+func nextSimpleProcessorID() int64 {
+	return simpleProcessorIDCounter.Add(1) - 1
+}
+
 // OnStart does nothing.
-func (ssp *simpleSpanProcessor) OnStart(context.Context, ReadWriteSpan) {}
+func (*simpleSpanProcessor) OnStart(context.Context, ReadWriteSpan) {}
 
 // OnEnd immediately exports a ReadOnlySpan.
 func (ssp *simpleSpanProcessor) OnEnd(s ReadOnlySpan) {
 	ssp.exporterMu.Lock()
 	defer ssp.exporterMu.Unlock()
 
+	var err error
 	if ssp.exporter != nil && s.SpanContext().TraceFlags().IsSampled() {
-		if err := ssp.exporter.ExportSpans(context.Background(), []ReadOnlySpan{s}); err != nil {
+		err = ssp.exporter.ExportSpans(context.Background(), []ReadOnlySpan{s})
+		if err != nil {
 			otel.Handle(err)
 		}
 	}
+
+	if ssp.inst != nil {
+		// Add the span to the context to ensure the metric is recorded
+		// with the correct span context.
+		ctx := trace.ContextWithSpanContext(context.Background(), s.SpanContext())
+		ssp.inst.SpanProcessed(ctx, err)
+	}
 }
 
 // Shutdown shuts down the exporter this SimpleSpanProcessor exports to.
@@ -104,13 +133,13 @@
 }
 
 // ForceFlush does nothing as there is no data to flush.
-func (ssp *simpleSpanProcessor) ForceFlush(context.Context) error {
+func (*simpleSpanProcessor) ForceFlush(context.Context) error {
 	return nil
 }
 
 // MarshalLog is the marshaling function used by the logging system to represent
 // this Span Processor.
-func (ssp *simpleSpanProcessor) MarshalLog() interface{} {
+func (ssp *simpleSpanProcessor) MarshalLog() any {
 	return struct {
 		Type     string
 		Exporter SpanExporter
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go	2026-09-02 10:25:23.493027222 +0000
@@ -35,7 +35,7 @@
 
 var _ ReadOnlySpan = snapshot{}
 
-func (s snapshot) private() {}
+func (snapshot) private() {}
 
 // Name returns the name of the span.
 func (s snapshot) Name() string {
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/span.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/span.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/span.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span.go	2026-09-02 10:25:23.493027222 +0000
@@ -20,7 +20,7 @@
 	"go.opentelemetry.io/otel/internal/global"
 	"go.opentelemetry.io/otel/sdk/instrumentation"
 	"go.opentelemetry.io/otel/sdk/resource"
-	semconv "go.opentelemetry.io/otel/semconv/v1.26.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 	"go.opentelemetry.io/otel/trace"
 	"go.opentelemetry.io/otel/trace/embedded"
 )
@@ -61,6 +61,7 @@
 	InstrumentationScope() instrumentation.Scope
 	// InstrumentationLibrary returns information about the instrumentation
 	// library that created the span.
+	//
 	// Deprecated: please use InstrumentationScope instead.
 	InstrumentationLibrary() instrumentation.Library //nolint:staticcheck // This method needs to be define for backwards compatibility
 	// Resource returns information about the entity that produced the span.
@@ -150,6 +151,12 @@
 
 	// tracer is the SDK tracer that created this span.
 	tracer *tracer
+
+	// origCtx is the context used when starting this span that has the
+	// recordingSpan instance set as the active span. If not nil, it is used
+	// when ending the span to ensure any metrics are recorded with a context
+	// containing this span without requiring an additional allocation.
+	origCtx context.Context
 }
 
 var (
@@ -157,6 +164,10 @@
 	_ runtimeTracer = (*recordingSpan)(nil)
 )
 
+func (s *recordingSpan) setOrigCtx(ctx context.Context) {
+	s.origCtx = ctx
+}
+
 // SpanContext returns the SpanContext of this span.
 func (s *recordingSpan) SpanContext() trace.SpanContext {
 	if s == nil {
@@ -165,7 +176,7 @@
 	return s.spanContext
 }
 
-// IsRecording returns if this span is being recorded. If this span has ended
+// IsRecording reports whether this span is being recorded. If this span has ended
 // this will return false.
 func (s *recordingSpan) IsRecording() bool {
 	if s == nil {
@@ -177,7 +188,7 @@
 	return s.isRecording()
 }
 
-// isRecording returns if this span is being recorded. If this span has ended
+// isRecording reports whether this span is being recorded. If this span has ended
 // this will return false.
 //
 // This method assumes s.mu.Lock is held by the caller.
@@ -495,6 +506,17 @@
 	}
 	s.mu.Unlock()
 
+	if s.tracer.inst.Enabled() {
+		ctx := s.origCtx
+		if ctx == nil {
+			// This should not happen as the origCtx should be set, but
+			// ensure trace information is propagated in the case of an
+			// error.
+			ctx = trace.ContextWithSpan(context.Background(), s)
+		}
+		defer s.tracer.inst.SpanEnded(ctx, s)
+	}
+
 	sps := s.tracer.provider.getSpanProcessors()
 	if len(sps) == 0 {
 		return
@@ -545,7 +567,7 @@
 	s.addEvent(semconv.ExceptionEventName, opts...)
 }
 
-func typeStr(i interface{}) string {
+func typeStr(i any) string {
 	t := reflect.TypeOf(i)
 	if t.PkgPath() == "" && t.Name() == "" {
 		// Likely a builtin type.
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go	2026-09-02 10:25:23.493027222 +0000
@@ -3,7 +3,7 @@
 
 package trace // import "go.opentelemetry.io/otel/sdk/trace"
 
-import "go.opentelemetry.io/otel/sdk/internal/env"
+import "go.opentelemetry.io/otel/sdk/trace/internal/env"
 
 const (
 	// DefaultAttributeValueLengthLimit is the default maximum allowed
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go	2026-09-02 10:25:23.493027222 +0000
@@ -8,6 +8,7 @@
 	"time"
 
 	"go.opentelemetry.io/otel/sdk/instrumentation"
+	"go.opentelemetry.io/otel/sdk/trace/internal/observ"
 	"go.opentelemetry.io/otel/trace"
 	"go.opentelemetry.io/otel/trace/embedded"
 )
@@ -17,6 +18,8 @@
 
 	provider             *TracerProvider
 	instrumentationScope instrumentation.Scope
+
+	inst observ.Tracer
 }
 
 var _ trace.Tracer = &tracer{}
@@ -46,17 +49,32 @@
 	}
 
 	s := tr.newSpan(ctx, name, &config)
+	newCtx := trace.ContextWithSpan(ctx, s)
+	if tr.inst.Enabled() {
+		if o, ok := s.(interface{ setOrigCtx(context.Context) }); ok {
+			// If this is a recording span, store the original context.
+			// This allows later retrieval of baggage and other information
+			// that may have been stored in the context at span start time and
+			// to avoid the allocation of repeatedly calling
+			// trace.ContextWithSpan.
+			o.setOrigCtx(newCtx)
+		}
+		psc := trace.SpanContextFromContext(ctx)
+		tr.inst.SpanStarted(newCtx, psc, s)
+	}
+
 	if rw, ok := s.(ReadWriteSpan); ok && s.IsRecording() {
 		sps := tr.provider.getSpanProcessors()
 		for _, sp := range sps {
+			// Use original context.
 			sp.sp.OnStart(ctx, rw)
 		}
 	}
 	if rtt, ok := s.(runtimeTracer); ok {
-		ctx = rtt.runtimeTrace(ctx)
+		newCtx = rtt.runtimeTrace(newCtx)
 	}
 
-	return trace.ContextWithSpan(ctx, s), s
+	return newCtx, s
 }
 
 type runtimeTracer interface {
@@ -112,11 +130,12 @@
 	if !isRecording(samplingResult) {
 		return tr.newNonRecordingSpan(sc)
 	}
-	return tr.newRecordingSpan(psc, sc, name, samplingResult, config)
+	return tr.newRecordingSpan(ctx, psc, sc, name, samplingResult, config)
 }
 
 // newRecordingSpan returns a new configured recordingSpan.
 func (tr *tracer) newRecordingSpan(
+	ctx context.Context,
 	psc, sc trace.SpanContext,
 	name string,
 	sr SamplingResult,
@@ -153,6 +172,13 @@
 	s.SetAttributes(sr.Attributes...)
 	s.SetAttributes(config.Attributes()...)
 
+	if tr.inst.Enabled() {
+		// Propagate any existing values from the context with the new span to
+		// the measurement context.
+		ctx = trace.ContextWithSpan(ctx, s)
+		tr.inst.SpanLive(ctx, s)
+	}
+
 	return s
 }
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go	2026-09-02 10:25:23.493027222 +0000
@@ -25,10 +25,10 @@
 type NoopExporter struct{}
 
 // ExportSpans handles export of spans by dropping them.
-func (nsb *NoopExporter) ExportSpans(context.Context, []trace.ReadOnlySpan) error { return nil }
+func (*NoopExporter) ExportSpans(context.Context, []trace.ReadOnlySpan) error { return nil }
 
 // Shutdown stops the exporter by doing nothing.
-func (nsb *NoopExporter) Shutdown(context.Context) error { return nil }
+func (*NoopExporter) Shutdown(context.Context) error { return nil }
 
 var _ trace.SpanExporter = (*InMemoryExporter)(nil)
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go	2026-09-02 10:25:23.493027222 +0000
@@ -47,14 +47,14 @@
 // Shutdown does nothing.
 //
 // This method is safe to be called concurrently.
-func (sr *SpanRecorder) Shutdown(context.Context) error {
+func (*SpanRecorder) Shutdown(context.Context) error {
 	return nil
 }
 
 // ForceFlush does nothing.
 //
 // This method is safe to be called concurrently.
-func (sr *SpanRecorder) ForceFlush(context.Context) error {
+func (*SpanRecorder) ForceFlush(context.Context) error {
 	return nil
 }
 
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go	2026-09-02 10:25:23.493027222 +0000
@@ -37,7 +37,7 @@
 	}
 
 	ro := make([]tracesdk.ReadOnlySpan, len(s))
-	for i := 0; i < len(s); i++ {
+	for i := range s {
 		ro[i] = s[i].Snapshot()
 	}
 	return ro
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/version.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/trace/version.go
--- a/vendor/go.opentelemetry.io/otel/sdk/trace/version.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/trace/version.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,9 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-package trace // import "go.opentelemetry.io/otel/sdk/trace"
-
-// version is the current release version of the metric SDK in use.
-func version() string {
-	return "1.16.0-rc.1"
-}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/sdk/version.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/sdk/version.go
--- a/vendor/go.opentelemetry.io/otel/sdk/version.go	2026-09-02 10:24:54.940997506 +0000
+++ b/vendor/go.opentelemetry.io/otel/sdk/version.go	2026-09-02 10:25:23.489027216 +0000
@@ -6,5 +6,5 @@
 
 // Version is the current release version of the OpenTelemetry SDK in use.
 func Version() string {
-	return "1.36.0"
+	return "1.43.0"
 }
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md	2026-09-02 10:24:54.944997512 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/MIGRATION.md	1970-01-01 00:00:00.000000000 +0000
@@ -1,78 +0,0 @@
-<!-- Generated. DO NOT MODIFY. -->
-# Migration from v1.38.0 to v1.39.0
-
-The `go.opentelemetry.io/otel/semconv/v1.39.0` package should be a drop-in replacement for `go.opentelemetry.io/otel/semconv/v1.38.0` with the following exceptions.
-
-## Removed
-
-The following declarations have been removed.
-Refer to the [OpenTelemetry Semantic Conventions documentation] for deprecation instructions.
-
-If the type is not listed in the documentation as deprecated, it has been removed in this version due to lack of applicability or use.
-If you use any of these non-deprecated declarations in your Go application, please [open an issue] describing your use-case.
-
-- `LinuxMemorySlabStateKey`
-- `LinuxMemorySlabStateReclaimable`
-- `LinuxMemorySlabStateUnreclaimable`
-- `PeerService`
-- `PeerServiceKey`
-- `RPCConnectRPCErrorCodeAborted`
-- `RPCConnectRPCErrorCodeAlreadyExists`
-- `RPCConnectRPCErrorCodeCancelled`
-- `RPCConnectRPCErrorCodeDataLoss`
-- `RPCConnectRPCErrorCodeDeadlineExceeded`
-- `RPCConnectRPCErrorCodeFailedPrecondition`
-- `RPCConnectRPCErrorCodeInternal`
-- `RPCConnectRPCErrorCodeInvalidArgument`
-- `RPCConnectRPCErrorCodeKey`
-- `RPCConnectRPCErrorCodeNotFound`
-- `RPCConnectRPCErrorCodeOutOfRange`
-- `RPCConnectRPCErrorCodePermissionDenied`
-- `RPCConnectRPCErrorCodeResourceExhausted`
-- `RPCConnectRPCErrorCodeUnauthenticated`
-- `RPCConnectRPCErrorCodeUnavailable`
-- `RPCConnectRPCErrorCodeUnimplemented`
-- `RPCConnectRPCErrorCodeUnknown`
-- `RPCConnectRPCRequestMetadata`
-- `RPCConnectRPCResponseMetadata`
-- `RPCGRPCRequestMetadata`
-- `RPCGRPCResponseMetadata`
-- `RPCGRPCStatusCodeAborted`
-- `RPCGRPCStatusCodeAlreadyExists`
-- `RPCGRPCStatusCodeCancelled`
-- `RPCGRPCStatusCodeDataLoss`
-- `RPCGRPCStatusCodeDeadlineExceeded`
-- `RPCGRPCStatusCodeFailedPrecondition`
-- `RPCGRPCStatusCodeInternal`
-- `RPCGRPCStatusCodeInvalidArgument`
-- `RPCGRPCStatusCodeKey`
-- `RPCGRPCStatusCodeNotFound`
-- `RPCGRPCStatusCodeOk`
-- `RPCGRPCStatusCodeOutOfRange`
-- `RPCGRPCStatusCodePermissionDenied`
-- `RPCGRPCStatusCodeResourceExhausted`
-- `RPCGRPCStatusCodeUnauthenticated`
-- `RPCGRPCStatusCodeUnavailable`
-- `RPCGRPCStatusCodeUnimplemented`
-- `RPCGRPCStatusCodeUnknown`
-- `RPCJSONRPCErrorCode`
-- `RPCJSONRPCErrorCodeKey`
-- `RPCJSONRPCErrorMessage`
-- `RPCJSONRPCErrorMessageKey`
-- `RPCJSONRPCRequestID`
-- `RPCJSONRPCRequestIDKey`
-- `RPCJSONRPCVersion`
-- `RPCJSONRPCVersionKey`
-- `RPCService`
-- `RPCServiceKey`
-- `RPCSystemApacheDubbo`
-- `RPCSystemConnectRPC`
-- `RPCSystemDotnetWcf`
-- `RPCSystemGRPC`
-- `RPCSystemJSONRPC`
-- `RPCSystemJavaRmi`
-- `RPCSystemKey`
-- `RPCSystemOncRPC`
-
-[OpenTelemetry Semantic Conventions documentation]: https://github.com/open-telemetry/semantic-conventions
-[open an issue]: https://github.com/open-telemetry/opentelemetry-go/issues/new?template=Blank+issue
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md	2026-09-02 10:24:54.944997512 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/README.md	1970-01-01 00:00:00.000000000 +0000
@@ -1,3 +0,0 @@
-# Semconv v1.39.0
-
-[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.39.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.39.0)
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/attribute_group.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,16239 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-// Code generated from semantic convention specification. DO NOT EDIT.
-
-package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0"
-
-import "go.opentelemetry.io/otel/attribute"
-
-// Namespace: android
-const (
-	// AndroidAppStateKey is the attribute Key conforming to the "android.app.state"
-	// semantic conventions. It represents the this attribute represents the state
-	// of the application.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "created"
-	// Note: The Android lifecycle states are defined in
-	// [Activity lifecycle callbacks], and from which the `OS identifiers` are
-	// derived.
-	//
-	// [Activity lifecycle callbacks]: https://developer.android.com/guide/components/activities/activity-lifecycle#lc
-	AndroidAppStateKey = attribute.Key("android.app.state")
-
-	// AndroidOSAPILevelKey is the attribute Key conforming to the
-	// "android.os.api_level" semantic conventions. It represents the uniquely
-	// identifies the framework API revision offered by a version (`os.version`) of
-	// the android operating system. More information can be found in the
-	// [Android API levels documentation].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "33", "32"
-	//
-	// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels
-	AndroidOSAPILevelKey = attribute.Key("android.os.api_level")
-)
-
-// AndroidOSAPILevel returns an attribute KeyValue conforming to the
-// "android.os.api_level" semantic conventions. It represents the uniquely
-// identifies the framework API revision offered by a version (`os.version`) of
-// the android operating system. More information can be found in the
-// [Android API levels documentation].
-//
-// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels
-func AndroidOSAPILevel(val string) attribute.KeyValue {
-	return AndroidOSAPILevelKey.String(val)
-}
-
-// Enum values for android.app.state
-var (
-	// Any time before Activity.onResume() or, if the app has no Activity,
-	// Context.startService() has been called in the app for the first time.
-	//
-	// Stability: development
-	AndroidAppStateCreated = AndroidAppStateKey.String("created")
-	// Any time after Activity.onPause() or, if the app has no Activity,
-	// Context.stopService() has been called when the app was in the foreground
-	// state.
-	//
-	// Stability: development
-	AndroidAppStateBackground = AndroidAppStateKey.String("background")
-	// Any time after Activity.onResume() or, if the app has no Activity,
-	// Context.startService() has been called when the app was in either the created
-	// or background states.
-	//
-	// Stability: development
-	AndroidAppStateForeground = AndroidAppStateKey.String("foreground")
-)
-
-// Namespace: app
-const (
-	// AppBuildIDKey is the attribute Key conforming to the "app.build_id" semantic
-	// conventions. It represents the unique identifier for a particular build or
-	// compilation of the application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "6cff0a7e-cefc-4668-96f5-1273d8b334d0",
-	// "9f2b833506aa6973a92fde9733e6271f", "my-app-1.0.0-code-123"
-	AppBuildIDKey = attribute.Key("app.build_id")
-
-	// AppInstallationIDKey is the attribute Key conforming to the
-	// "app.installation.id" semantic conventions. It represents a unique identifier
-	// representing the installation of an application on a specific device.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2ab2916d-a51f-4ac8-80ee-45ac31a28092"
-	// Note: Its value SHOULD persist across launches of the same application
-	// installation, including through application upgrades.
-	// It SHOULD change if the application is uninstalled or if all applications of
-	// the vendor are uninstalled.
-	// Additionally, users might be able to reset this value (e.g. by clearing
-	// application data).
-	// If an app is installed multiple times on the same device (e.g. in different
-	// accounts on Android), each `app.installation.id` SHOULD have a different
-	// value.
-	// If multiple OpenTelemetry SDKs are used within the same application, they
-	// SHOULD use the same value for `app.installation.id`.
-	// Hardware IDs (e.g. serial number, IMEI, MAC address) MUST NOT be used as the
-	// `app.installation.id`.
-	//
-	// For iOS, this value SHOULD be equal to the [vendor identifier].
-	//
-	// For Android, examples of `app.installation.id` implementations include:
-	//
-	//   - [Firebase Installation ID].
-	//   - A globally unique UUID which is persisted across sessions in your
-	//     application.
-	//   - [App set ID].
-	//   - [`Settings.getString(Settings.Secure.ANDROID_ID)`].
-	//
-	// More information about Android identifier best practices can be found in the
-	// [Android user data IDs guide].
-	//
-	// [vendor identifier]: https://developer.apple.com/documentation/uikit/uidevice/identifierforvendor
-	// [Firebase Installation ID]: https://firebase.google.com/docs/projects/manage-installations
-	// [App set ID]: https://developer.android.com/identity/app-set-id
-	// [`Settings.getString(Settings.Secure.ANDROID_ID)`]: https://developer.android.com/reference/android/provider/Settings.Secure#ANDROID_ID
-	// [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids
-	AppInstallationIDKey = attribute.Key("app.installation.id")
-
-	// AppJankFrameCountKey is the attribute Key conforming to the
-	// "app.jank.frame_count" semantic conventions. It represents a number of frame
-	// renders that experienced jank.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 9, 42
-	// Note: Depending on platform limitations, the value provided MAY be
-	// approximation.
-	AppJankFrameCountKey = attribute.Key("app.jank.frame_count")
-
-	// AppJankPeriodKey is the attribute Key conforming to the "app.jank.period"
-	// semantic conventions. It represents the time period, in seconds, for which
-	// this jank is being reported.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0, 5.0, 10.24
-	AppJankPeriodKey = attribute.Key("app.jank.period")
-
-	// AppJankThresholdKey is the attribute Key conforming to the
-	// "app.jank.threshold" semantic conventions. It represents the minimum
-	// rendering threshold for this jank, in seconds.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0.016, 0.7, 1.024
-	AppJankThresholdKey = attribute.Key("app.jank.threshold")
-
-	// AppScreenCoordinateXKey is the attribute Key conforming to the
-	// "app.screen.coordinate.x" semantic conventions. It represents the x
-	// (horizontal) coordinate of a screen coordinate, in screen pixels.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0, 131
-	AppScreenCoordinateXKey = attribute.Key("app.screen.coordinate.x")
-
-	// AppScreenCoordinateYKey is the attribute Key conforming to the
-	// "app.screen.coordinate.y" semantic conventions. It represents the y
-	// (vertical) component of a screen coordinate, in screen pixels.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 12, 99
-	AppScreenCoordinateYKey = attribute.Key("app.screen.coordinate.y")
-
-	// AppScreenIDKey is the attribute Key conforming to the "app.screen.id"
-	// semantic conventions. It represents an identifier that uniquely
-	// differentiates this screen from other screens in the same application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3",
-	// "com.example.app.MainActivity", "com.example.shop.ProductDetailFragment",
-	// "MyApp.ProfileView", "MyApp.ProfileViewController"
-	// Note: A screen represents only the part of the device display drawn by the
-	// app. It typically contains multiple widgets or UI components and is larger in
-	// scope than individual widgets. Multiple screens can coexist on the same
-	// display simultaneously (e.g., split view on tablets).
-	AppScreenIDKey = attribute.Key("app.screen.id")
-
-	// AppScreenNameKey is the attribute Key conforming to the "app.screen.name"
-	// semantic conventions. It represents the name of an application screen.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "MainActivity", "ProductDetailFragment", "ProfileView",
-	// "ProfileViewController"
-	// Note: A screen represents only the part of the device display drawn by the
-	// app. It typically contains multiple widgets or UI components and is larger in
-	// scope than individual widgets. Multiple screens can coexist on the same
-	// display simultaneously (e.g., split view on tablets).
-	AppScreenNameKey = attribute.Key("app.screen.name")
-
-	// AppWidgetIDKey is the attribute Key conforming to the "app.widget.id"
-	// semantic conventions. It represents an identifier that uniquely
-	// differentiates this widget from other widgets in the same application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", "submit_order_1829"
-	// Note: A widget is an application component, typically an on-screen visual GUI
-	// element.
-	AppWidgetIDKey = attribute.Key("app.widget.id")
-
-	// AppWidgetNameKey is the attribute Key conforming to the "app.widget.name"
-	// semantic conventions. It represents the name of an application widget.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "submit", "attack", "Clear Cart"
-	// Note: A widget is an application component, typically an on-screen visual GUI
-	// element.
-	AppWidgetNameKey = attribute.Key("app.widget.name")
-)
-
-// AppBuildID returns an attribute KeyValue conforming to the "app.build_id"
-// semantic conventions. It represents the unique identifier for a particular
-// build or compilation of the application.
-func AppBuildID(val string) attribute.KeyValue {
-	return AppBuildIDKey.String(val)
-}
-
-// AppInstallationID returns an attribute KeyValue conforming to the
-// "app.installation.id" semantic conventions. It represents a unique identifier
-// representing the installation of an application on a specific device.
-func AppInstallationID(val string) attribute.KeyValue {
-	return AppInstallationIDKey.String(val)
-}
-
-// AppJankFrameCount returns an attribute KeyValue conforming to the
-// "app.jank.frame_count" semantic conventions. It represents a number of frame
-// renders that experienced jank.
-func AppJankFrameCount(val int) attribute.KeyValue {
-	return AppJankFrameCountKey.Int(val)
-}
-
-// AppJankPeriod returns an attribute KeyValue conforming to the
-// "app.jank.period" semantic conventions. It represents the time period, in
-// seconds, for which this jank is being reported.
-func AppJankPeriod(val float64) attribute.KeyValue {
-	return AppJankPeriodKey.Float64(val)
-}
-
-// AppJankThreshold returns an attribute KeyValue conforming to the
-// "app.jank.threshold" semantic conventions. It represents the minimum rendering
-// threshold for this jank, in seconds.
-func AppJankThreshold(val float64) attribute.KeyValue {
-	return AppJankThresholdKey.Float64(val)
-}
-
-// AppScreenCoordinateX returns an attribute KeyValue conforming to the
-// "app.screen.coordinate.x" semantic conventions. It represents the x
-// (horizontal) coordinate of a screen coordinate, in screen pixels.
-func AppScreenCoordinateX(val int) attribute.KeyValue {
-	return AppScreenCoordinateXKey.Int(val)
-}
-
-// AppScreenCoordinateY returns an attribute KeyValue conforming to the
-// "app.screen.coordinate.y" semantic conventions. It represents the y (vertical)
-// component of a screen coordinate, in screen pixels.
-func AppScreenCoordinateY(val int) attribute.KeyValue {
-	return AppScreenCoordinateYKey.Int(val)
-}
-
-// AppScreenID returns an attribute KeyValue conforming to the "app.screen.id"
-// semantic conventions. It represents an identifier that uniquely differentiates
-// this screen from other screens in the same application.
-func AppScreenID(val string) attribute.KeyValue {
-	return AppScreenIDKey.String(val)
-}
-
-// AppScreenName returns an attribute KeyValue conforming to the
-// "app.screen.name" semantic conventions. It represents the name of an
-// application screen.
-func AppScreenName(val string) attribute.KeyValue {
-	return AppScreenNameKey.String(val)
-}
-
-// AppWidgetID returns an attribute KeyValue conforming to the "app.widget.id"
-// semantic conventions. It represents an identifier that uniquely differentiates
-// this widget from other widgets in the same application.
-func AppWidgetID(val string) attribute.KeyValue {
-	return AppWidgetIDKey.String(val)
-}
-
-// AppWidgetName returns an attribute KeyValue conforming to the
-// "app.widget.name" semantic conventions. It represents the name of an
-// application widget.
-func AppWidgetName(val string) attribute.KeyValue {
-	return AppWidgetNameKey.String(val)
-}
-
-// Namespace: artifact
-const (
-	// ArtifactAttestationFilenameKey is the attribute Key conforming to the
-	// "artifact.attestation.filename" semantic conventions. It represents the
-	// provenance filename of the built attestation which directly relates to the
-	// build artifact filename. This filename SHOULD accompany the artifact at
-	// publish time. See the [SLSA Relationship] specification for more information.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "golang-binary-amd64-v0.1.0.attestation",
-	// "docker-image-amd64-v0.1.0.intoto.json1", "release-1.tar.gz.attestation",
-	// "file-name-package.tar.gz.intoto.json1"
-	//
-	// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations
-	ArtifactAttestationFilenameKey = attribute.Key("artifact.attestation.filename")
-
-	// ArtifactAttestationHashKey is the attribute Key conforming to the
-	// "artifact.attestation.hash" semantic conventions. It represents the full
-	// [hash value (see glossary)], of the built attestation. Some envelopes in the
-	// [software attestation space] also refer to this as the **digest**.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1b31dfcd5b7f9267bf2ff47651df1cfb9147b9e4df1f335accf65b4cda498408"
-	//
-	// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
-	// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec
-	ArtifactAttestationHashKey = attribute.Key("artifact.attestation.hash")
-
-	// ArtifactAttestationIDKey is the attribute Key conforming to the
-	// "artifact.attestation.id" semantic conventions. It represents the id of the
-	// build [software attestation].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "123"
-	//
-	// [software attestation]: https://slsa.dev/attestation-model
-	ArtifactAttestationIDKey = attribute.Key("artifact.attestation.id")
-
-	// ArtifactFilenameKey is the attribute Key conforming to the
-	// "artifact.filename" semantic conventions. It represents the human readable
-	// file name of the artifact, typically generated during build and release
-	// processes. Often includes the package name and version in the file name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "golang-binary-amd64-v0.1.0", "docker-image-amd64-v0.1.0",
-	// "release-1.tar.gz", "file-name-package.tar.gz"
-	// Note: This file name can also act as the [Package Name]
-	// in cases where the package ecosystem maps accordingly.
-	// Additionally, the artifact [can be published]
-	// for others, but that is not a guarantee.
-	//
-	// [Package Name]: https://slsa.dev/spec/v1.0/terminology#package-model
-	// [can be published]: https://slsa.dev/spec/v1.0/terminology#software-supply-chain
-	ArtifactFilenameKey = attribute.Key("artifact.filename")
-
-	// ArtifactHashKey is the attribute Key conforming to the "artifact.hash"
-	// semantic conventions. It represents the full [hash value (see glossary)],
-	// often found in checksum.txt on a release of the artifact and used to verify
-	// package integrity.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "9ff4c52759e2c4ac70b7d517bc7fcdc1cda631ca0045271ddd1b192544f8a3e9"
-	// Note: The specific algorithm used to create the cryptographic hash value is
-	// not defined. In situations where an artifact has multiple
-	// cryptographic hashes, it is up to the implementer to choose which
-	// hash value to set here; this should be the most secure hash algorithm
-	// that is suitable for the situation and consistent with the
-	// corresponding attestation. The implementer can then provide the other
-	// hash values through an additional set of attribute extensions as they
-	// deem necessary.
-	//
-	// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
-	ArtifactHashKey = attribute.Key("artifact.hash")
-
-	// ArtifactPurlKey is the attribute Key conforming to the "artifact.purl"
-	// semantic conventions. It represents the [Package URL] of the
-	// [package artifact] provides a standard way to identify and locate the
-	// packaged artifact.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "pkg:github/package-url/purl-spec@1209109710924",
-	// "pkg:npm/foo@12.12.3"
-	//
-	// [Package URL]: https://github.com/package-url/purl-spec
-	// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model
-	ArtifactPurlKey = attribute.Key("artifact.purl")
-
-	// ArtifactVersionKey is the attribute Key conforming to the "artifact.version"
-	// semantic conventions. It represents the version of the artifact.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "v0.1.0", "1.2.1", "122691-build"
-	ArtifactVersionKey = attribute.Key("artifact.version")
-)
-
-// ArtifactAttestationFilename returns an attribute KeyValue conforming to the
-// "artifact.attestation.filename" semantic conventions. It represents the
-// provenance filename of the built attestation which directly relates to the
-// build artifact filename. This filename SHOULD accompany the artifact at
-// publish time. See the [SLSA Relationship] specification for more information.
-//
-// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations
-func ArtifactAttestationFilename(val string) attribute.KeyValue {
-	return ArtifactAttestationFilenameKey.String(val)
-}
-
-// ArtifactAttestationHash returns an attribute KeyValue conforming to the
-// "artifact.attestation.hash" semantic conventions. It represents the full
-// [hash value (see glossary)], of the built attestation. Some envelopes in the
-// [software attestation space] also refer to this as the **digest**.
-//
-// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
-// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec
-func ArtifactAttestationHash(val string) attribute.KeyValue {
-	return ArtifactAttestationHashKey.String(val)
-}
-
-// ArtifactAttestationID returns an attribute KeyValue conforming to the
-// "artifact.attestation.id" semantic conventions. It represents the id of the
-// build [software attestation].
-//
-// [software attestation]: https://slsa.dev/attestation-model
-func ArtifactAttestationID(val string) attribute.KeyValue {
-	return ArtifactAttestationIDKey.String(val)
-}
-
-// ArtifactFilename returns an attribute KeyValue conforming to the
-// "artifact.filename" semantic conventions. It represents the human readable
-// file name of the artifact, typically generated during build and release
-// processes. Often includes the package name and version in the file name.
-func ArtifactFilename(val string) attribute.KeyValue {
-	return ArtifactFilenameKey.String(val)
-}
-
-// ArtifactHash returns an attribute KeyValue conforming to the "artifact.hash"
-// semantic conventions. It represents the full [hash value (see glossary)],
-// often found in checksum.txt on a release of the artifact and used to verify
-// package integrity.
-//
-// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
-func ArtifactHash(val string) attribute.KeyValue {
-	return ArtifactHashKey.String(val)
-}
-
-// ArtifactPurl returns an attribute KeyValue conforming to the "artifact.purl"
-// semantic conventions. It represents the [Package URL] of the
-// [package artifact] provides a standard way to identify and locate the packaged
-// artifact.
-//
-// [Package URL]: https://github.com/package-url/purl-spec
-// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model
-func ArtifactPurl(val string) attribute.KeyValue {
-	return ArtifactPurlKey.String(val)
-}
-
-// ArtifactVersion returns an attribute KeyValue conforming to the
-// "artifact.version" semantic conventions. It represents the version of the
-// artifact.
-func ArtifactVersion(val string) attribute.KeyValue {
-	return ArtifactVersionKey.String(val)
-}
-
-// Namespace: aws
-const (
-	// AWSBedrockGuardrailIDKey is the attribute Key conforming to the
-	// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique
-	// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and
-	// prevent unwanted behavior from model responses or user messages.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "sgi5gkybzqak"
-	//
-	// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html
-	AWSBedrockGuardrailIDKey = attribute.Key("aws.bedrock.guardrail.id")
-
-	// AWSBedrockKnowledgeBaseIDKey is the attribute Key conforming to the
-	// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the
-	// unique identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a
-	// bank of information that can be queried by models to generate more relevant
-	// responses and augment prompts.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "XFWUPB9PAW"
-	//
-	// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html
-	AWSBedrockKnowledgeBaseIDKey = attribute.Key("aws.bedrock.knowledge_base.id")
-
-	// AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to the
-	// "aws.dynamodb.attribute_definitions" semantic conventions. It represents the
-	// JSON-serialized value of each item in the `AttributeDefinitions` request
-	// field.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{ "AttributeName": "string", "AttributeType": "string" }"
-	AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions")
-
-	// AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the
-	// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the
-	// value of the `AttributesToGet` request parameter.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "lives", "id"
-	AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get")
-
-	// AWSDynamoDBConsistentReadKey is the attribute Key conforming to the
-	// "aws.dynamodb.consistent_read" semantic conventions. It represents the value
-	// of the `ConsistentRead` request parameter.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read")
-
-	// AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the
-	// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the
-	// JSON-serialized value of each item in the `ConsumedCapacity` response field.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{ "CapacityUnits": number, "GlobalSecondaryIndexes": { "string" :
-	// { "CapacityUnits": number, "ReadCapacityUnits": number, "WriteCapacityUnits":
-	// number } }, "LocalSecondaryIndexes": { "string" : { "CapacityUnits": number,
-	// "ReadCapacityUnits": number, "WriteCapacityUnits": number } },
-	// "ReadCapacityUnits": number, "Table": { "CapacityUnits": number,
-	// "ReadCapacityUnits": number, "WriteCapacityUnits": number }, "TableName":
-	// "string", "WriteCapacityUnits": number }"
-	AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity")
-
-	// AWSDynamoDBCountKey is the attribute Key conforming to the
-	// "aws.dynamodb.count" semantic conventions. It represents the value of the
-	// `Count` response parameter.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 10
-	AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count")
-
-	// AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the
-	// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the
-	// value of the `ExclusiveStartTableName` request parameter.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Users", "CatsTable"
-	AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table")
-
-	// AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key conforming to
-	// the "aws.dynamodb.global_secondary_index_updates" semantic conventions. It
-	// represents the JSON-serialized value of each item in the
-	// `GlobalSecondaryIndexUpdates` request field.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{ "Create": { "IndexName": "string", "KeySchema": [ {
-	// "AttributeName": "string", "KeyType": "string" } ], "Projection": {
-	// "NonKeyAttributes": [ "string" ], "ProjectionType": "string" },
-	// "ProvisionedThroughput": { "ReadCapacityUnits": number, "WriteCapacityUnits":
-	// number } }"
-	AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates")
-
-	// AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to the
-	// "aws.dynamodb.global_secondary_indexes" semantic conventions. It represents
-	// the JSON-serialized value of each item of the `GlobalSecondaryIndexes`
-	// request field.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{ "IndexName": "string", "KeySchema": [ { "AttributeName":
-	// "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [
-	// "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": {
-	// "ReadCapacityUnits": number, "WriteCapacityUnits": number } }"
-	AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes")
-
-	// AWSDynamoDBIndexNameKey is the attribute Key conforming to the
-	// "aws.dynamodb.index_name" semantic conventions. It represents the value of
-	// the `IndexName` request parameter.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "name_to_group"
-	AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name")
-
-	// AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to the
-	// "aws.dynamodb.item_collection_metrics" semantic conventions. It represents
-	// the JSON-serialized value of the `ItemCollectionMetrics` response field.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{ "string" : [ { "ItemCollectionKey": { "string" : { "B": blob,
-	// "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { "string" :
-	// "AttributeValue" }, "N": "string", "NS": [ "string" ], "NULL": boolean, "S":
-	// "string", "SS": [ "string" ] } }, "SizeEstimateRangeGB": [ number ] } ] }"
-	AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics")
-
-	// AWSDynamoDBLimitKey is the attribute Key conforming to the
-	// "aws.dynamodb.limit" semantic conventions. It represents the value of the
-	// `Limit` request parameter.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 10
-	AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit")
-
-	// AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to the
-	// "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents
-	// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request
-	// field.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{ "IndexArn": "string", "IndexName": "string", "IndexSizeBytes":
-	// number, "ItemCount": number, "KeySchema": [ { "AttributeName": "string",
-	// "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ "string" ],
-	// "ProjectionType": "string" } }"
-	AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes")
-
-	// AWSDynamoDBProjectionKey is the attribute Key conforming to the
-	// "aws.dynamodb.projection" semantic conventions. It represents the value of
-	// the `ProjectionExpression` request parameter.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Title", "Title, Price, Color", "Title, Description, RelatedItems,
-	// ProductReviews"
-	AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection")
-
-	// AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to the
-	// "aws.dynamodb.provisioned_read_capacity" semantic conventions. It represents
-	// the value of the `ProvisionedThroughput.ReadCapacityUnits` request parameter.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0, 2.0
-	AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity")
-
-	// AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming to the
-	// "aws.dynamodb.provisioned_write_capacity" semantic conventions. It represents
-	// the value of the `ProvisionedThroughput.WriteCapacityUnits` request
-	// parameter.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0, 2.0
-	AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity")
-
-	// AWSDynamoDBScanForwardKey is the attribute Key conforming to the
-	// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of
-	// the `ScanIndexForward` request parameter.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward")
-
-	// AWSDynamoDBScannedCountKey is the attribute Key conforming to the
-	// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of
-	// the `ScannedCount` response parameter.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 50
-	AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count")
-
-	// AWSDynamoDBSegmentKey is the attribute Key conforming to the
-	// "aws.dynamodb.segment" semantic conventions. It represents the value of the
-	// `Segment` request parameter.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 10
-	AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment")
-
-	// AWSDynamoDBSelectKey is the attribute Key conforming to the
-	// "aws.dynamodb.select" semantic conventions. It represents the value of the
-	// `Select` request parameter.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "ALL_ATTRIBUTES", "COUNT"
-	AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select")
-
-	// AWSDynamoDBTableCountKey is the attribute Key conforming to the
-	// "aws.dynamodb.table_count" semantic conventions. It represents the number of
-	// items in the `TableNames` response parameter.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 20
-	AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count")
-
-	// AWSDynamoDBTableNamesKey is the attribute Key conforming to the
-	// "aws.dynamodb.table_names" semantic conventions. It represents the keys in
-	// the `RequestItems` object field.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Users", "Cats"
-	AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names")
-
-	// AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the
-	// "aws.dynamodb.total_segments" semantic conventions. It represents the value
-	// of the `TotalSegments` request parameter.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 100
-	AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments")
-
-	// AWSECSClusterARNKey is the attribute Key conforming to the
-	// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an
-	// [ECS cluster].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster"
-	//
-	// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html
-	AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn")
-
-	// AWSECSContainerARNKey is the attribute Key conforming to the
-	// "aws.ecs.container.arn" semantic conventions. It represents the Amazon
-	// Resource Name (ARN) of an [ECS container instance].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9"
-	//
-	// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html
-	AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn")
-
-	// AWSECSLaunchtypeKey is the attribute Key conforming to the
-	// "aws.ecs.launchtype" semantic conventions. It represents the [launch type]
-	// for an ECS task.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [launch type]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html
-	AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype")
-
-	// AWSECSTaskARNKey is the attribute Key conforming to the "aws.ecs.task.arn"
-	// semantic conventions. It represents the ARN of a running [ECS task].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b",
-	// "arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd"
-	//
-	// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids
-	AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn")
-
-	// AWSECSTaskFamilyKey is the attribute Key conforming to the
-	// "aws.ecs.task.family" semantic conventions. It represents the family name of
-	// the [ECS task definition] used to create the ECS task.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry-family"
-	//
-	// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html
-	AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family")
-
-	// AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id"
-	// semantic conventions. It represents the ID of a running ECS task. The ID MUST
-	// be extracted from `task.arn`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "10838bed-421f-43ef-870a-f43feacbbb5b",
-	// "23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd"
-	AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id")
-
-	// AWSECSTaskRevisionKey is the attribute Key conforming to the
-	// "aws.ecs.task.revision" semantic conventions. It represents the revision for
-	// the task definition used to create the ECS task.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "8", "26"
-	AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision")
-
-	// AWSEKSClusterARNKey is the attribute Key conforming to the
-	// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS
-	// cluster.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster"
-	AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn")
-
-	// AWSExtendedRequestIDKey is the attribute Key conforming to the
-	// "aws.extended_request_id" semantic conventions. It represents the AWS
-	// extended request ID as returned in the response header `x-amz-id-2`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "wzHcyEWfmOGDIE5QOhTAqFDoDWP3y8IUvpNINCwL9N4TEHbUw0/gZJ+VZTmCNCWR7fezEN3eCiQ="
-	AWSExtendedRequestIDKey = attribute.Key("aws.extended_request_id")
-
-	// AWSKinesisStreamNameKey is the attribute Key conforming to the
-	// "aws.kinesis.stream_name" semantic conventions. It represents the name of the
-	// AWS Kinesis [stream] the request refers to. Corresponds to the
-	// `--stream-name` parameter of the Kinesis [describe-stream] operation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "some-stream-name"
-	//
-	// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html
-	// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html
-	AWSKinesisStreamNameKey = attribute.Key("aws.kinesis.stream_name")
-
-	// AWSLambdaInvokedARNKey is the attribute Key conforming to the
-	// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked
-	// ARN as provided on the `Context` passed to the function (
-	// `Lambda-Runtime-Invoked-Function-Arn` header on the
-	// `/runtime/invocation/next` applicable).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:lambda:us-east-1:123456:function:myfunction:myalias"
-	// Note: This may be different from `cloud.resource_id` if an alias is involved.
-	AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn")
-
-	// AWSLambdaResourceMappingIDKey is the attribute Key conforming to the
-	// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID
-	// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda
-	// function. It's contents are read by Lambda and used to trigger a function.
-	// This isn't available in the lambda execution context or the lambda runtime
-	// environtment. This is going to be populated by the AWS SDK for each language
-	// when that UUID is present. Some of these operations are
-	// Create/Delete/Get/List/Update EventSourceMapping.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "587ad24b-03b9-4413-8202-bbd56b36e5b7"
-	//
-	// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html
-	AWSLambdaResourceMappingIDKey = attribute.Key("aws.lambda.resource_mapping.id")
-
-	// AWSLogGroupARNsKey is the attribute Key conforming to the
-	// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource
-	// Name(s) (ARN) of the AWS log group(s).
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*"
-	// Note: See the [log group ARN format documentation].
-	//
-	// [log group ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format
-	AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns")
-
-	// AWSLogGroupNamesKey is the attribute Key conforming to the
-	// "aws.log.group.names" semantic conventions. It represents the name(s) of the
-	// AWS log group(s) an application is writing to.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/aws/lambda/my-function", "opentelemetry-service"
-	// Note: Multiple log groups must be supported for cases like multi-container
-	// applications, where a single application has sidecar containers, and each
-	// write to their own log group.
-	AWSLogGroupNamesKey = attribute.Key("aws.log.group.names")
-
-	// AWSLogStreamARNsKey is the attribute Key conforming to the
-	// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the
-	// AWS log stream(s).
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b"
-	// Note: See the [log stream ARN format documentation]. One log group can
-	// contain several log streams, so these ARNs necessarily identify both a log
-	// group and a log stream.
-	//
-	// [log stream ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format
-	AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns")
-
-	// AWSLogStreamNamesKey is the attribute Key conforming to the
-	// "aws.log.stream.names" semantic conventions. It represents the name(s) of the
-	// AWS log stream(s) an application is writing to.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "logs/main/10838bed-421f-43ef-870a-f43feacbbb5b"
-	AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names")
-
-	// AWSRequestIDKey is the attribute Key conforming to the "aws.request_id"
-	// semantic conventions. It represents the AWS request ID as returned in the
-	// response headers `x-amzn-requestid`, `x-amzn-request-id` or
-	// `x-amz-request-id`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "79b9da39-b7ae-508a-a6bc-864b2829c622", "C9ER4AJX75574TDJ"
-	AWSRequestIDKey = attribute.Key("aws.request_id")
-
-	// AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket"
-	// semantic conventions. It represents the S3 bucket name the request refers to.
-	// Corresponds to the `--bucket` parameter of the [S3 API] operations.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "some-bucket-name"
-	// Note: The `bucket` attribute is applicable to all S3 operations that
-	// reference a bucket, i.e. that require the bucket name as a mandatory
-	// parameter.
-	// This applies to almost all S3 operations except `list-buckets`.
-	//
-	// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
-	AWSS3BucketKey = attribute.Key("aws.s3.bucket")
-
-	// AWSS3CopySourceKey is the attribute Key conforming to the
-	// "aws.s3.copy_source" semantic conventions. It represents the source object
-	// (in the form `bucket`/`key`) for the copy operation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "someFile.yml"
-	// Note: The `copy_source` attribute applies to S3 copy operations and
-	// corresponds to the `--copy-source` parameter
-	// of the [copy-object operation within the S3 API].
-	// This applies in particular to the following operations:
-	//
-	//   - [copy-object]
-	//   - [upload-part-copy]
-	//
-	//
-	// [copy-object operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html
-	// [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html
-	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
-	AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source")
-
-	// AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete"
-	// semantic conventions. It represents the delete request container that
-	// specifies the objects to be deleted.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "Objects=[{Key=string,VersionId=string},{Key=string,VersionId=string}],Quiet=boolean"
-	// Note: The `delete` attribute is only applicable to the [delete-object]
-	// operation.
-	// The `delete` attribute corresponds to the `--delete` parameter of the
-	// [delete-objects operation within the S3 API].
-	//
-	// [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html
-	// [delete-objects operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html
-	AWSS3DeleteKey = attribute.Key("aws.s3.delete")
-
-	// AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic
-	// conventions. It represents the S3 object key the request refers to.
-	// Corresponds to the `--key` parameter of the [S3 API] operations.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "someFile.yml"
-	// Note: The `key` attribute is applicable to all object-related S3 operations,
-	// i.e. that require the object key as a mandatory parameter.
-	// This applies in particular to the following operations:
-	//
-	//   - [copy-object]
-	//   - [delete-object]
-	//   - [get-object]
-	//   - [head-object]
-	//   - [put-object]
-	//   - [restore-object]
-	//   - [select-object-content]
-	//   - [abort-multipart-upload]
-	//   - [complete-multipart-upload]
-	//   - [create-multipart-upload]
-	//   - [list-parts]
-	//   - [upload-part]
-	//   - [upload-part-copy]
-	//
-	//
-	// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
-	// [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html
-	// [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html
-	// [get-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html
-	// [head-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html
-	// [put-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html
-	// [restore-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html
-	// [select-object-content]: https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html
-	// [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html
-	// [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html
-	// [create-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html
-	// [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html
-	// [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
-	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
-	AWSS3KeyKey = attribute.Key("aws.s3.key")
-
-	// AWSS3PartNumberKey is the attribute Key conforming to the
-	// "aws.s3.part_number" semantic conventions. It represents the part number of
-	// the part being uploaded in a multipart-upload operation. This is a positive
-	// integer between 1 and 10,000.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 3456
-	// Note: The `part_number` attribute is only applicable to the [upload-part]
-	// and [upload-part-copy] operations.
-	// The `part_number` attribute corresponds to the `--part-number` parameter of
-	// the
-	// [upload-part operation within the S3 API].
-	//
-	// [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
-	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
-	// [upload-part operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
-	AWSS3PartNumberKey = attribute.Key("aws.s3.part_number")
-
-	// AWSS3UploadIDKey is the attribute Key conforming to the "aws.s3.upload_id"
-	// semantic conventions. It represents the upload ID that identifies the
-	// multipart upload.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ"
-	// Note: The `upload_id` attribute applies to S3 multipart-upload operations and
-	// corresponds to the `--upload-id` parameter
-	// of the [S3 API] multipart operations.
-	// This applies in particular to the following operations:
-	//
-	//   - [abort-multipart-upload]
-	//   - [complete-multipart-upload]
-	//   - [list-parts]
-	//   - [upload-part]
-	//   - [upload-part-copy]
-	//
-	//
-	// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
-	// [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html
-	// [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html
-	// [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html
-	// [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
-	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
-	AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id")
-
-	// AWSSecretsmanagerSecretARNKey is the attribute Key conforming to the
-	// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN
-	// of the Secret stored in the Secrets Mangger.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "arn:aws:secretsmanager:us-east-1:123456789012:secret:SecretName-6RandomCharacters"
-	AWSSecretsmanagerSecretARNKey = attribute.Key("aws.secretsmanager.secret.arn")
-
-	// AWSSNSTopicARNKey is the attribute Key conforming to the "aws.sns.topic.arn"
-	// semantic conventions. It represents the ARN of the AWS SNS Topic. An Amazon
-	// SNS [topic] is a logical access point that acts as a communication channel.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:sns:us-east-1:123456789012:mystack-mytopic-NZJ5JSMVGFIE"
-	//
-	// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html
-	AWSSNSTopicARNKey = attribute.Key("aws.sns.topic.arn")
-
-	// AWSSQSQueueURLKey is the attribute Key conforming to the "aws.sqs.queue.url"
-	// semantic conventions. It represents the URL of the AWS SQS Queue. It's a
-	// unique identifier for a queue in Amazon Simple Queue Service (SQS) and is
-	// used to access the queue and perform actions on it.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "https://sqs.us-east-1.amazonaws.com/123456789012/MyQueue"
-	AWSSQSQueueURLKey = attribute.Key("aws.sqs.queue.url")
-
-	// AWSStepFunctionsActivityARNKey is the attribute Key conforming to the
-	// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN
-	// of the AWS Step Functions Activity.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:states:us-east-1:123456789012:activity:get-greeting"
-	AWSStepFunctionsActivityARNKey = attribute.Key("aws.step_functions.activity.arn")
-
-	// AWSStepFunctionsStateMachineARNKey is the attribute Key conforming to the
-	// "aws.step_functions.state_machine.arn" semantic conventions. It represents
-	// the ARN of the AWS Step Functions State Machine.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "arn:aws:states:us-east-1:123456789012:stateMachine:myStateMachine:1"
-	AWSStepFunctionsStateMachineARNKey = attribute.Key("aws.step_functions.state_machine.arn")
-)
-
-// AWSBedrockGuardrailID returns an attribute KeyValue conforming to the
-// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique
-// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and
-// prevent unwanted behavior from model responses or user messages.
-//
-// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html
-func AWSBedrockGuardrailID(val string) attribute.KeyValue {
-	return AWSBedrockGuardrailIDKey.String(val)
-}
-
-// AWSBedrockKnowledgeBaseID returns an attribute KeyValue conforming to the
-// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the unique
-// identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a bank of
-// information that can be queried by models to generate more relevant responses
-// and augment prompts.
-//
-// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html
-func AWSBedrockKnowledgeBaseID(val string) attribute.KeyValue {
-	return AWSBedrockKnowledgeBaseIDKey.String(val)
-}
-
-// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming to
-// the "aws.dynamodb.attribute_definitions" semantic conventions. It represents
-// the JSON-serialized value of each item in the `AttributeDefinitions` request
-// field.
-func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue {
-	return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val)
-}
-
-// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to the
-// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the value
-// of the `AttributesToGet` request parameter.
-func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue {
-	return AWSDynamoDBAttributesToGetKey.StringSlice(val)
-}
-
-// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the
-// "aws.dynamodb.consistent_read" semantic conventions. It represents the value
-// of the `ConsistentRead` request parameter.
-func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue {
-	return AWSDynamoDBConsistentReadKey.Bool(val)
-}
-
-// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to the
-// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the
-// JSON-serialized value of each item in the `ConsumedCapacity` response field.
-func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue {
-	return AWSDynamoDBConsumedCapacityKey.StringSlice(val)
-}
-
-// AWSDynamoDBCount returns an attribute KeyValue conforming to the
-// "aws.dynamodb.count" semantic conventions. It represents the value of the
-// `Count` response parameter.
-func AWSDynamoDBCount(val int) attribute.KeyValue {
-	return AWSDynamoDBCountKey.Int(val)
-}
-
-// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming to the
-// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the
-// value of the `ExclusiveStartTableName` request parameter.
-func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue {
-	return AWSDynamoDBExclusiveStartTableKey.String(val)
-}
-
-// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue
-// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic
-// conventions. It represents the JSON-serialized value of each item in the
-// `GlobalSecondaryIndexUpdates` request field.
-func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue {
-	return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val)
-}
-
-// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue conforming to
-// the "aws.dynamodb.global_secondary_indexes" semantic conventions. It
-// represents the JSON-serialized value of each item of the
-// `GlobalSecondaryIndexes` request field.
-func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue {
-	return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val)
-}
-
-// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the
-// "aws.dynamodb.index_name" semantic conventions. It represents the value of the
-// `IndexName` request parameter.
-func AWSDynamoDBIndexName(val string) attribute.KeyValue {
-	return AWSDynamoDBIndexNameKey.String(val)
-}
-
-// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming to
-// the "aws.dynamodb.item_collection_metrics" semantic conventions. It represents
-// the JSON-serialized value of the `ItemCollectionMetrics` response field.
-func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue {
-	return AWSDynamoDBItemCollectionMetricsKey.String(val)
-}
-
-// AWSDynamoDBLimit returns an attribute KeyValue conforming to the
-// "aws.dynamodb.limit" semantic conventions. It represents the value of the
-// `Limit` request parameter.
-func AWSDynamoDBLimit(val int) attribute.KeyValue {
-	return AWSDynamoDBLimitKey.Int(val)
-}
-
-// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming to
-// the "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents
-// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request
-// field.
-func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue {
-	return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val)
-}
-
-// AWSDynamoDBProjection returns an attribute KeyValue conforming to the
-// "aws.dynamodb.projection" semantic conventions. It represents the value of the
-// `ProjectionExpression` request parameter.
-func AWSDynamoDBProjection(val string) attribute.KeyValue {
-	return AWSDynamoDBProjectionKey.String(val)
-}
-
-// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue conforming to
-// the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It
-// represents the value of the `ProvisionedThroughput.ReadCapacityUnits` request
-// parameter.
-func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue {
-	return AWSDynamoDBProvisionedReadCapacityKey.Float64(val)
-}
-
-// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue conforming
-// to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. It
-// represents the value of the `ProvisionedThroughput.WriteCapacityUnits` request
-// parameter.
-func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue {
-	return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val)
-}
-
-// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the
-// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of
-// the `ScanIndexForward` request parameter.
-func AWSDynamoDBScanForward(val bool) attribute.KeyValue {
-	return AWSDynamoDBScanForwardKey.Bool(val)
-}
-
-// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the
-// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of
-// the `ScannedCount` response parameter.
-func AWSDynamoDBScannedCount(val int) attribute.KeyValue {
-	return AWSDynamoDBScannedCountKey.Int(val)
-}
-
-// AWSDynamoDBSegment returns an attribute KeyValue conforming to the
-// "aws.dynamodb.segment" semantic conventions. It represents the value of the
-// `Segment` request parameter.
-func AWSDynamoDBSegment(val int) attribute.KeyValue {
-	return AWSDynamoDBSegmentKey.Int(val)
-}
-
-// AWSDynamoDBSelect returns an attribute KeyValue conforming to the
-// "aws.dynamodb.select" semantic conventions. It represents the value of the
-// `Select` request parameter.
-func AWSDynamoDBSelect(val string) attribute.KeyValue {
-	return AWSDynamoDBSelectKey.String(val)
-}
-
-// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the
-// "aws.dynamodb.table_count" semantic conventions. It represents the number of
-// items in the `TableNames` response parameter.
-func AWSDynamoDBTableCount(val int) attribute.KeyValue {
-	return AWSDynamoDBTableCountKey.Int(val)
-}
-
-// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the
-// "aws.dynamodb.table_names" semantic conventions. It represents the keys in the
-// `RequestItems` object field.
-func AWSDynamoDBTableNames(val ...string) attribute.KeyValue {
-	return AWSDynamoDBTableNamesKey.StringSlice(val)
-}
-
-// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the
-// "aws.dynamodb.total_segments" semantic conventions. It represents the value of
-// the `TotalSegments` request parameter.
-func AWSDynamoDBTotalSegments(val int) attribute.KeyValue {
-	return AWSDynamoDBTotalSegmentsKey.Int(val)
-}
-
-// AWSECSClusterARN returns an attribute KeyValue conforming to the
-// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an
-// [ECS cluster].
-//
-// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html
-func AWSECSClusterARN(val string) attribute.KeyValue {
-	return AWSECSClusterARNKey.String(val)
-}
-
-// AWSECSContainerARN returns an attribute KeyValue conforming to the
-// "aws.ecs.container.arn" semantic conventions. It represents the Amazon
-// Resource Name (ARN) of an [ECS container instance].
-//
-// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html
-func AWSECSContainerARN(val string) attribute.KeyValue {
-	return AWSECSContainerARNKey.String(val)
-}
-
-// AWSECSTaskARN returns an attribute KeyValue conforming to the
-// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running
-// [ECS task].
-//
-// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids
-func AWSECSTaskARN(val string) attribute.KeyValue {
-	return AWSECSTaskARNKey.String(val)
-}
-
-// AWSECSTaskFamily returns an attribute KeyValue conforming to the
-// "aws.ecs.task.family" semantic conventions. It represents the family name of
-// the [ECS task definition] used to create the ECS task.
-//
-// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html
-func AWSECSTaskFamily(val string) attribute.KeyValue {
-	return AWSECSTaskFamilyKey.String(val)
-}
-
-// AWSECSTaskID returns an attribute KeyValue conforming to the "aws.ecs.task.id"
-// semantic conventions. It represents the ID of a running ECS task. The ID MUST
-// be extracted from `task.arn`.
-func AWSECSTaskID(val string) attribute.KeyValue {
-	return AWSECSTaskIDKey.String(val)
-}
-
-// AWSECSTaskRevision returns an attribute KeyValue conforming to the
-// "aws.ecs.task.revision" semantic conventions. It represents the revision for
-// the task definition used to create the ECS task.
-func AWSECSTaskRevision(val string) attribute.KeyValue {
-	return AWSECSTaskRevisionKey.String(val)
-}
-
-// AWSEKSClusterARN returns an attribute KeyValue conforming to the
-// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS
-// cluster.
-func AWSEKSClusterARN(val string) attribute.KeyValue {
-	return AWSEKSClusterARNKey.String(val)
-}
-
-// AWSExtendedRequestID returns an attribute KeyValue conforming to the
-// "aws.extended_request_id" semantic conventions. It represents the AWS extended
-// request ID as returned in the response header `x-amz-id-2`.
-func AWSExtendedRequestID(val string) attribute.KeyValue {
-	return AWSExtendedRequestIDKey.String(val)
-}
-
-// AWSKinesisStreamName returns an attribute KeyValue conforming to the
-// "aws.kinesis.stream_name" semantic conventions. It represents the name of the
-// AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name`
-//  parameter of the Kinesis [describe-stream] operation.
-//
-// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html
-// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html
-func AWSKinesisStreamName(val string) attribute.KeyValue {
-	return AWSKinesisStreamNameKey.String(val)
-}
-
-// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the
-// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked
-// ARN as provided on the `Context` passed to the function (
-// `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next`
-//  applicable).
-func AWSLambdaInvokedARN(val string) attribute.KeyValue {
-	return AWSLambdaInvokedARNKey.String(val)
-}
-
-// AWSLambdaResourceMappingID returns an attribute KeyValue conforming to the
-// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID
-// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda
-// function. It's contents are read by Lambda and used to trigger a function.
-// This isn't available in the lambda execution context or the lambda runtime
-// environtment. This is going to be populated by the AWS SDK for each language
-// when that UUID is present. Some of these operations are
-// Create/Delete/Get/List/Update EventSourceMapping.
-//
-// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html
-func AWSLambdaResourceMappingID(val string) attribute.KeyValue {
-	return AWSLambdaResourceMappingIDKey.String(val)
-}
-
-// AWSLogGroupARNs returns an attribute KeyValue conforming to the
-// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource
-// Name(s) (ARN) of the AWS log group(s).
-func AWSLogGroupARNs(val ...string) attribute.KeyValue {
-	return AWSLogGroupARNsKey.StringSlice(val)
-}
-
-// AWSLogGroupNames returns an attribute KeyValue conforming to the
-// "aws.log.group.names" semantic conventions. It represents the name(s) of the
-// AWS log group(s) an application is writing to.
-func AWSLogGroupNames(val ...string) attribute.KeyValue {
-	return AWSLogGroupNamesKey.StringSlice(val)
-}
-
-// AWSLogStreamARNs returns an attribute KeyValue conforming to the
-// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the
-// AWS log stream(s).
-func AWSLogStreamARNs(val ...string) attribute.KeyValue {
-	return AWSLogStreamARNsKey.StringSlice(val)
-}
-
-// AWSLogStreamNames returns an attribute KeyValue conforming to the
-// "aws.log.stream.names" semantic conventions. It represents the name(s) of the
-// AWS log stream(s) an application is writing to.
-func AWSLogStreamNames(val ...string) attribute.KeyValue {
-	return AWSLogStreamNamesKey.StringSlice(val)
-}
-
-// AWSRequestID returns an attribute KeyValue conforming to the "aws.request_id"
-// semantic conventions. It represents the AWS request ID as returned in the
-// response headers `x-amzn-requestid`, `x-amzn-request-id` or `x-amz-request-id`
-// .
-func AWSRequestID(val string) attribute.KeyValue {
-	return AWSRequestIDKey.String(val)
-}
-
-// AWSS3Bucket returns an attribute KeyValue conforming to the "aws.s3.bucket"
-// semantic conventions. It represents the S3 bucket name the request refers to.
-// Corresponds to the `--bucket` parameter of the [S3 API] operations.
-//
-// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
-func AWSS3Bucket(val string) attribute.KeyValue {
-	return AWSS3BucketKey.String(val)
-}
-
-// AWSS3CopySource returns an attribute KeyValue conforming to the
-// "aws.s3.copy_source" semantic conventions. It represents the source object (in
-// the form `bucket`/`key`) for the copy operation.
-func AWSS3CopySource(val string) attribute.KeyValue {
-	return AWSS3CopySourceKey.String(val)
-}
-
-// AWSS3Delete returns an attribute KeyValue conforming to the "aws.s3.delete"
-// semantic conventions. It represents the delete request container that
-// specifies the objects to be deleted.
-func AWSS3Delete(val string) attribute.KeyValue {
-	return AWSS3DeleteKey.String(val)
-}
-
-// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" semantic
-// conventions. It represents the S3 object key the request refers to.
-// Corresponds to the `--key` parameter of the [S3 API] operations.
-//
-// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
-func AWSS3Key(val string) attribute.KeyValue {
-	return AWSS3KeyKey.String(val)
-}
-
-// AWSS3PartNumber returns an attribute KeyValue conforming to the
-// "aws.s3.part_number" semantic conventions. It represents the part number of
-// the part being uploaded in a multipart-upload operation. This is a positive
-// integer between 1 and 10,000.
-func AWSS3PartNumber(val int) attribute.KeyValue {
-	return AWSS3PartNumberKey.Int(val)
-}
-
-// AWSS3UploadID returns an attribute KeyValue conforming to the
-// "aws.s3.upload_id" semantic conventions. It represents the upload ID that
-// identifies the multipart upload.
-func AWSS3UploadID(val string) attribute.KeyValue {
-	return AWSS3UploadIDKey.String(val)
-}
-
-// AWSSecretsmanagerSecretARN returns an attribute KeyValue conforming to the
-// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN of
-// the Secret stored in the Secrets Mangger.
-func AWSSecretsmanagerSecretARN(val string) attribute.KeyValue {
-	return AWSSecretsmanagerSecretARNKey.String(val)
-}
-
-// AWSSNSTopicARN returns an attribute KeyValue conforming to the
-// "aws.sns.topic.arn" semantic conventions. It represents the ARN of the AWS SNS
-// Topic. An Amazon SNS [topic] is a logical access point that acts as a
-// communication channel.
-//
-// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html
-func AWSSNSTopicARN(val string) attribute.KeyValue {
-	return AWSSNSTopicARNKey.String(val)
-}
-
-// AWSSQSQueueURL returns an attribute KeyValue conforming to the
-// "aws.sqs.queue.url" semantic conventions. It represents the URL of the AWS SQS
-// Queue. It's a unique identifier for a queue in Amazon Simple Queue Service
-// (SQS) and is used to access the queue and perform actions on it.
-func AWSSQSQueueURL(val string) attribute.KeyValue {
-	return AWSSQSQueueURLKey.String(val)
-}
-
-// AWSStepFunctionsActivityARN returns an attribute KeyValue conforming to the
-// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN
-// of the AWS Step Functions Activity.
-func AWSStepFunctionsActivityARN(val string) attribute.KeyValue {
-	return AWSStepFunctionsActivityARNKey.String(val)
-}
-
-// AWSStepFunctionsStateMachineARN returns an attribute KeyValue conforming to
-// the "aws.step_functions.state_machine.arn" semantic conventions. It represents
-// the ARN of the AWS Step Functions State Machine.
-func AWSStepFunctionsStateMachineARN(val string) attribute.KeyValue {
-	return AWSStepFunctionsStateMachineARNKey.String(val)
-}
-
-// Enum values for aws.ecs.launchtype
-var (
-	// Amazon EC2
-	// Stability: development
-	AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2")
-	// Amazon Fargate
-	// Stability: development
-	AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate")
-)
-
-// Namespace: azure
-const (
-	// AzureClientIDKey is the attribute Key conforming to the "azure.client.id"
-	// semantic conventions. It represents the unique identifier of the client
-	// instance.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "3ba4827d-4422-483f-b59f-85b74211c11d", "storage-client-1"
-	AzureClientIDKey = attribute.Key("azure.client.id")
-
-	// AzureCosmosDBConnectionModeKey is the attribute Key conforming to the
-	// "azure.cosmosdb.connection.mode" semantic conventions. It represents the
-	// cosmos client connection mode.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	AzureCosmosDBConnectionModeKey = attribute.Key("azure.cosmosdb.connection.mode")
-
-	// AzureCosmosDBConsistencyLevelKey is the attribute Key conforming to the
-	// "azure.cosmosdb.consistency.level" semantic conventions. It represents the
-	// account or request [consistency level].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Eventual", "ConsistentPrefix", "BoundedStaleness", "Strong",
-	// "Session"
-	//
-	// [consistency level]: https://learn.microsoft.com/azure/cosmos-db/consistency-levels
-	AzureCosmosDBConsistencyLevelKey = attribute.Key("azure.cosmosdb.consistency.level")
-
-	// AzureCosmosDBOperationContactedRegionsKey is the attribute Key conforming to
-	// the "azure.cosmosdb.operation.contacted_regions" semantic conventions. It
-	// represents the list of regions contacted during operation in the order that
-	// they were contacted. If there is more than one region listed, it indicates
-	// that the operation was performed on multiple regions i.e. cross-regional
-	// call.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "North Central US", "Australia East", "Australia Southeast"
-	// Note: Region name matches the format of `displayName` in [Azure Location API]
-	//
-	// [Azure Location API]: https://learn.microsoft.com/rest/api/resources/subscriptions/list-locations
-	AzureCosmosDBOperationContactedRegionsKey = attribute.Key("azure.cosmosdb.operation.contacted_regions")
-
-	// AzureCosmosDBOperationRequestChargeKey is the attribute Key conforming to the
-	// "azure.cosmosdb.operation.request_charge" semantic conventions. It represents
-	// the number of request units consumed by the operation.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 46.18, 1.0
-	AzureCosmosDBOperationRequestChargeKey = attribute.Key("azure.cosmosdb.operation.request_charge")
-
-	// AzureCosmosDBRequestBodySizeKey is the attribute Key conforming to the
-	// "azure.cosmosdb.request.body.size" semantic conventions. It represents the
-	// request payload size in bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	AzureCosmosDBRequestBodySizeKey = attribute.Key("azure.cosmosdb.request.body.size")
-
-	// AzureCosmosDBResponseSubStatusCodeKey is the attribute Key conforming to the
-	// "azure.cosmosdb.response.sub_status_code" semantic conventions. It represents
-	// the cosmos DB sub status code.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1000, 1002
-	AzureCosmosDBResponseSubStatusCodeKey = attribute.Key("azure.cosmosdb.response.sub_status_code")
-
-	// AzureResourceProviderNamespaceKey is the attribute Key conforming to the
-	// "azure.resource_provider.namespace" semantic conventions. It represents the
-	// [Azure Resource Provider Namespace] as recognized by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Microsoft.Storage", "Microsoft.KeyVault", "Microsoft.ServiceBus"
-	//
-	// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers
-	AzureResourceProviderNamespaceKey = attribute.Key("azure.resource_provider.namespace")
-
-	// AzureServiceRequestIDKey is the attribute Key conforming to the
-	// "azure.service.request.id" semantic conventions. It represents the unique
-	// identifier of the service request. It's generated by the Azure service and
-	// returned with the response.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "00000000-0000-0000-0000-000000000000"
-	AzureServiceRequestIDKey = attribute.Key("azure.service.request.id")
-)
-
-// AzureClientID returns an attribute KeyValue conforming to the
-// "azure.client.id" semantic conventions. It represents the unique identifier of
-// the client instance.
-func AzureClientID(val string) attribute.KeyValue {
-	return AzureClientIDKey.String(val)
-}
-
-// AzureCosmosDBOperationContactedRegions returns an attribute KeyValue
-// conforming to the "azure.cosmosdb.operation.contacted_regions" semantic
-// conventions. It represents the list of regions contacted during operation in
-// the order that they were contacted. If there is more than one region listed,
-// it indicates that the operation was performed on multiple regions i.e.
-// cross-regional call.
-func AzureCosmosDBOperationContactedRegions(val ...string) attribute.KeyValue {
-	return AzureCosmosDBOperationContactedRegionsKey.StringSlice(val)
-}
-
-// AzureCosmosDBOperationRequestCharge returns an attribute KeyValue conforming
-// to the "azure.cosmosdb.operation.request_charge" semantic conventions. It
-// represents the number of request units consumed by the operation.
-func AzureCosmosDBOperationRequestCharge(val float64) attribute.KeyValue {
-	return AzureCosmosDBOperationRequestChargeKey.Float64(val)
-}
-
-// AzureCosmosDBRequestBodySize returns an attribute KeyValue conforming to the
-// "azure.cosmosdb.request.body.size" semantic conventions. It represents the
-// request payload size in bytes.
-func AzureCosmosDBRequestBodySize(val int) attribute.KeyValue {
-	return AzureCosmosDBRequestBodySizeKey.Int(val)
-}
-
-// AzureCosmosDBResponseSubStatusCode returns an attribute KeyValue conforming to
-// the "azure.cosmosdb.response.sub_status_code" semantic conventions. It
-// represents the cosmos DB sub status code.
-func AzureCosmosDBResponseSubStatusCode(val int) attribute.KeyValue {
-	return AzureCosmosDBResponseSubStatusCodeKey.Int(val)
-}
-
-// AzureResourceProviderNamespace returns an attribute KeyValue conforming to the
-// "azure.resource_provider.namespace" semantic conventions. It represents the
-// [Azure Resource Provider Namespace] as recognized by the client.
-//
-// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers
-func AzureResourceProviderNamespace(val string) attribute.KeyValue {
-	return AzureResourceProviderNamespaceKey.String(val)
-}
-
-// AzureServiceRequestID returns an attribute KeyValue conforming to the
-// "azure.service.request.id" semantic conventions. It represents the unique
-// identifier of the service request. It's generated by the Azure service and
-// returned with the response.
-func AzureServiceRequestID(val string) attribute.KeyValue {
-	return AzureServiceRequestIDKey.String(val)
-}
-
-// Enum values for azure.cosmosdb.connection.mode
-var (
-	// Gateway (HTTP) connection.
-	// Stability: development
-	AzureCosmosDBConnectionModeGateway = AzureCosmosDBConnectionModeKey.String("gateway")
-	// Direct connection.
-	// Stability: development
-	AzureCosmosDBConnectionModeDirect = AzureCosmosDBConnectionModeKey.String("direct")
-)
-
-// Enum values for azure.cosmosdb.consistency.level
-var (
-	// Strong
-	// Stability: development
-	AzureCosmosDBConsistencyLevelStrong = AzureCosmosDBConsistencyLevelKey.String("Strong")
-	// Bounded Staleness
-	// Stability: development
-	AzureCosmosDBConsistencyLevelBoundedStaleness = AzureCosmosDBConsistencyLevelKey.String("BoundedStaleness")
-	// Session
-	// Stability: development
-	AzureCosmosDBConsistencyLevelSession = AzureCosmosDBConsistencyLevelKey.String("Session")
-	// Eventual
-	// Stability: development
-	AzureCosmosDBConsistencyLevelEventual = AzureCosmosDBConsistencyLevelKey.String("Eventual")
-	// Consistent Prefix
-	// Stability: development
-	AzureCosmosDBConsistencyLevelConsistentPrefix = AzureCosmosDBConsistencyLevelKey.String("ConsistentPrefix")
-)
-
-// Namespace: browser
-const (
-	// BrowserBrandsKey is the attribute Key conforming to the "browser.brands"
-	// semantic conventions. It represents the array of brand name and version
-	// separated by a space.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: " Not A;Brand 99", "Chromium 99", "Chrome 99"
-	// Note: This value is intended to be taken from the [UA client hints API] (
-	// `navigator.userAgentData.brands`).
-	//
-	// [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface
-	BrowserBrandsKey = attribute.Key("browser.brands")
-
-	// BrowserLanguageKey is the attribute Key conforming to the "browser.language"
-	// semantic conventions. It represents the preferred language of the user using
-	// the browser.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "en", "en-US", "fr", "fr-FR"
-	// Note: This value is intended to be taken from the Navigator API
-	// `navigator.language`.
-	BrowserLanguageKey = attribute.Key("browser.language")
-
-	// BrowserMobileKey is the attribute Key conforming to the "browser.mobile"
-	// semantic conventions. It represents a boolean that is true if the browser is
-	// running on a mobile device.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: This value is intended to be taken from the [UA client hints API] (
-	// `navigator.userAgentData.mobile`). If unavailable, this attribute SHOULD be
-	// left unset.
-	//
-	// [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface
-	BrowserMobileKey = attribute.Key("browser.mobile")
-
-	// BrowserPlatformKey is the attribute Key conforming to the "browser.platform"
-	// semantic conventions. It represents the platform on which the browser is
-	// running.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Windows", "macOS", "Android"
-	// Note: This value is intended to be taken from the [UA client hints API] (
-	// `navigator.userAgentData.platform`). If unavailable, the legacy
-	// `navigator.platform` API SHOULD NOT be used instead and this attribute SHOULD
-	// be left unset in order for the values to be consistent.
-	// The list of possible values is defined in the
-	// [W3C User-Agent Client Hints specification]. Note that some (but not all) of
-	// these values can overlap with values in the
-	// [`os.type` and `os.name` attributes]. However, for consistency, the values in
-	// the `browser.platform` attribute should capture the exact value that the user
-	// agent provides.
-	//
-	// [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface
-	// [W3C User-Agent Client Hints specification]: https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform
-	// [`os.type` and `os.name` attributes]: ./os.md
-	BrowserPlatformKey = attribute.Key("browser.platform")
-)
-
-// BrowserBrands returns an attribute KeyValue conforming to the "browser.brands"
-// semantic conventions. It represents the array of brand name and version
-// separated by a space.
-func BrowserBrands(val ...string) attribute.KeyValue {
-	return BrowserBrandsKey.StringSlice(val)
-}
-
-// BrowserLanguage returns an attribute KeyValue conforming to the
-// "browser.language" semantic conventions. It represents the preferred language
-// of the user using the browser.
-func BrowserLanguage(val string) attribute.KeyValue {
-	return BrowserLanguageKey.String(val)
-}
-
-// BrowserMobile returns an attribute KeyValue conforming to the "browser.mobile"
-// semantic conventions. It represents a boolean that is true if the browser is
-// running on a mobile device.
-func BrowserMobile(val bool) attribute.KeyValue {
-	return BrowserMobileKey.Bool(val)
-}
-
-// BrowserPlatform returns an attribute KeyValue conforming to the
-// "browser.platform" semantic conventions. It represents the platform on which
-// the browser is running.
-func BrowserPlatform(val string) attribute.KeyValue {
-	return BrowserPlatformKey.String(val)
-}
-
-// Namespace: cassandra
-const (
-	// CassandraConsistencyLevelKey is the attribute Key conforming to the
-	// "cassandra.consistency.level" semantic conventions. It represents the
-	// consistency level of the query. Based on consistency values from [CQL].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [CQL]: https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html
-	CassandraConsistencyLevelKey = attribute.Key("cassandra.consistency.level")
-
-	// CassandraCoordinatorDCKey is the attribute Key conforming to the
-	// "cassandra.coordinator.dc" semantic conventions. It represents the data
-	// center of the coordinating node for a query.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: us-west-2
-	CassandraCoordinatorDCKey = attribute.Key("cassandra.coordinator.dc")
-
-	// CassandraCoordinatorIDKey is the attribute Key conforming to the
-	// "cassandra.coordinator.id" semantic conventions. It represents the ID of the
-	// coordinating node for a query.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: be13faa2-8574-4d71-926d-27f16cf8a7af
-	CassandraCoordinatorIDKey = attribute.Key("cassandra.coordinator.id")
-
-	// CassandraPageSizeKey is the attribute Key conforming to the
-	// "cassandra.page.size" semantic conventions. It represents the fetch size used
-	// for paging, i.e. how many rows will be returned at once.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 5000
-	CassandraPageSizeKey = attribute.Key("cassandra.page.size")
-
-	// CassandraQueryIdempotentKey is the attribute Key conforming to the
-	// "cassandra.query.idempotent" semantic conventions. It represents the whether
-	// or not the query is idempotent.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	CassandraQueryIdempotentKey = attribute.Key("cassandra.query.idempotent")
-
-	// CassandraSpeculativeExecutionCountKey is the attribute Key conforming to the
-	// "cassandra.speculative_execution.count" semantic conventions. It represents
-	// the number of times a query was speculatively executed. Not set or `0` if the
-	// query was not executed speculatively.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0, 2
-	CassandraSpeculativeExecutionCountKey = attribute.Key("cassandra.speculative_execution.count")
-)
-
-// CassandraCoordinatorDC returns an attribute KeyValue conforming to the
-// "cassandra.coordinator.dc" semantic conventions. It represents the data center
-// of the coordinating node for a query.
-func CassandraCoordinatorDC(val string) attribute.KeyValue {
-	return CassandraCoordinatorDCKey.String(val)
-}
-
-// CassandraCoordinatorID returns an attribute KeyValue conforming to the
-// "cassandra.coordinator.id" semantic conventions. It represents the ID of the
-// coordinating node for a query.
-func CassandraCoordinatorID(val string) attribute.KeyValue {
-	return CassandraCoordinatorIDKey.String(val)
-}
-
-// CassandraPageSize returns an attribute KeyValue conforming to the
-// "cassandra.page.size" semantic conventions. It represents the fetch size used
-// for paging, i.e. how many rows will be returned at once.
-func CassandraPageSize(val int) attribute.KeyValue {
-	return CassandraPageSizeKey.Int(val)
-}
-
-// CassandraQueryIdempotent returns an attribute KeyValue conforming to the
-// "cassandra.query.idempotent" semantic conventions. It represents the whether
-// or not the query is idempotent.
-func CassandraQueryIdempotent(val bool) attribute.KeyValue {
-	return CassandraQueryIdempotentKey.Bool(val)
-}
-
-// CassandraSpeculativeExecutionCount returns an attribute KeyValue conforming to
-// the "cassandra.speculative_execution.count" semantic conventions. It
-// represents the number of times a query was speculatively executed. Not set or
-// `0` if the query was not executed speculatively.
-func CassandraSpeculativeExecutionCount(val int) attribute.KeyValue {
-	return CassandraSpeculativeExecutionCountKey.Int(val)
-}
-
-// Enum values for cassandra.consistency.level
-var (
-	// All
-	// Stability: development
-	CassandraConsistencyLevelAll = CassandraConsistencyLevelKey.String("all")
-	// Each Quorum
-	// Stability: development
-	CassandraConsistencyLevelEachQuorum = CassandraConsistencyLevelKey.String("each_quorum")
-	// Quorum
-	// Stability: development
-	CassandraConsistencyLevelQuorum = CassandraConsistencyLevelKey.String("quorum")
-	// Local Quorum
-	// Stability: development
-	CassandraConsistencyLevelLocalQuorum = CassandraConsistencyLevelKey.String("local_quorum")
-	// One
-	// Stability: development
-	CassandraConsistencyLevelOne = CassandraConsistencyLevelKey.String("one")
-	// Two
-	// Stability: development
-	CassandraConsistencyLevelTwo = CassandraConsistencyLevelKey.String("two")
-	// Three
-	// Stability: development
-	CassandraConsistencyLevelThree = CassandraConsistencyLevelKey.String("three")
-	// Local One
-	// Stability: development
-	CassandraConsistencyLevelLocalOne = CassandraConsistencyLevelKey.String("local_one")
-	// Any
-	// Stability: development
-	CassandraConsistencyLevelAny = CassandraConsistencyLevelKey.String("any")
-	// Serial
-	// Stability: development
-	CassandraConsistencyLevelSerial = CassandraConsistencyLevelKey.String("serial")
-	// Local Serial
-	// Stability: development
-	CassandraConsistencyLevelLocalSerial = CassandraConsistencyLevelKey.String("local_serial")
-)
-
-// Namespace: cicd
-const (
-	// CICDPipelineActionNameKey is the attribute Key conforming to the
-	// "cicd.pipeline.action.name" semantic conventions. It represents the kind of
-	// action a pipeline run is performing.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "BUILD", "RUN", "SYNC"
-	CICDPipelineActionNameKey = attribute.Key("cicd.pipeline.action.name")
-
-	// CICDPipelineNameKey is the attribute Key conforming to the
-	// "cicd.pipeline.name" semantic conventions. It represents the human readable
-	// name of the pipeline within a CI/CD system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Build and Test", "Lint", "Deploy Go Project",
-	// "deploy_to_environment"
-	CICDPipelineNameKey = attribute.Key("cicd.pipeline.name")
-
-	// CICDPipelineResultKey is the attribute Key conforming to the
-	// "cicd.pipeline.result" semantic conventions. It represents the result of a
-	// pipeline run.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "success", "failure", "timeout", "skipped"
-	CICDPipelineResultKey = attribute.Key("cicd.pipeline.result")
-
-	// CICDPipelineRunIDKey is the attribute Key conforming to the
-	// "cicd.pipeline.run.id" semantic conventions. It represents the unique
-	// identifier of a pipeline run within a CI/CD system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "120912"
-	CICDPipelineRunIDKey = attribute.Key("cicd.pipeline.run.id")
-
-	// CICDPipelineRunStateKey is the attribute Key conforming to the
-	// "cicd.pipeline.run.state" semantic conventions. It represents the pipeline
-	// run goes through these states during its lifecycle.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "pending", "executing", "finalizing"
-	CICDPipelineRunStateKey = attribute.Key("cicd.pipeline.run.state")
-
-	// CICDPipelineRunURLFullKey is the attribute Key conforming to the
-	// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of
-	// the pipeline run, providing the complete address in order to locate and
-	// identify the pipeline run.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763?pr=1075"
-	//
-	// [URL]: https://wikipedia.org/wiki/URL
-	CICDPipelineRunURLFullKey = attribute.Key("cicd.pipeline.run.url.full")
-
-	// CICDPipelineTaskNameKey is the attribute Key conforming to the
-	// "cicd.pipeline.task.name" semantic conventions. It represents the human
-	// readable name of a task within a pipeline. Task here most closely aligns with
-	// a [computing process] in a pipeline. Other terms for tasks include commands,
-	// steps, and procedures.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Run GoLang Linter", "Go Build", "go-test", "deploy_binary"
-	//
-	// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing)
-	CICDPipelineTaskNameKey = attribute.Key("cicd.pipeline.task.name")
-
-	// CICDPipelineTaskRunIDKey is the attribute Key conforming to the
-	// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique
-	// identifier of a task run within a pipeline.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "12097"
-	CICDPipelineTaskRunIDKey = attribute.Key("cicd.pipeline.task.run.id")
-
-	// CICDPipelineTaskRunResultKey is the attribute Key conforming to the
-	// "cicd.pipeline.task.run.result" semantic conventions. It represents the
-	// result of a task run.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "success", "failure", "timeout", "skipped"
-	CICDPipelineTaskRunResultKey = attribute.Key("cicd.pipeline.task.run.result")
-
-	// CICDPipelineTaskRunURLFullKey is the attribute Key conforming to the
-	// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the
-	// [URL] of the pipeline task run, providing the complete address in order to
-	// locate and identify the pipeline task run.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763/job/26920038674?pr=1075"
-	//
-	// [URL]: https://wikipedia.org/wiki/URL
-	CICDPipelineTaskRunURLFullKey = attribute.Key("cicd.pipeline.task.run.url.full")
-
-	// CICDPipelineTaskTypeKey is the attribute Key conforming to the
-	// "cicd.pipeline.task.type" semantic conventions. It represents the type of the
-	// task within a pipeline.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "build", "test", "deploy"
-	CICDPipelineTaskTypeKey = attribute.Key("cicd.pipeline.task.type")
-
-	// CICDSystemComponentKey is the attribute Key conforming to the
-	// "cicd.system.component" semantic conventions. It represents the name of a
-	// component of the CICD system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "controller", "scheduler", "agent"
-	CICDSystemComponentKey = attribute.Key("cicd.system.component")
-
-	// CICDWorkerIDKey is the attribute Key conforming to the "cicd.worker.id"
-	// semantic conventions. It represents the unique identifier of a worker within
-	// a CICD system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "abc123", "10.0.1.2", "controller"
-	CICDWorkerIDKey = attribute.Key("cicd.worker.id")
-
-	// CICDWorkerNameKey is the attribute Key conforming to the "cicd.worker.name"
-	// semantic conventions. It represents the name of a worker within a CICD
-	// system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "agent-abc", "controller", "Ubuntu LTS"
-	CICDWorkerNameKey = attribute.Key("cicd.worker.name")
-
-	// CICDWorkerStateKey is the attribute Key conforming to the "cicd.worker.state"
-	// semantic conventions. It represents the state of a CICD worker / agent.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "idle", "busy", "down"
-	CICDWorkerStateKey = attribute.Key("cicd.worker.state")
-
-	// CICDWorkerURLFullKey is the attribute Key conforming to the
-	// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the
-	// worker, providing the complete address in order to locate and identify the
-	// worker.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "https://cicd.example.org/worker/abc123"
-	//
-	// [URL]: https://wikipedia.org/wiki/URL
-	CICDWorkerURLFullKey = attribute.Key("cicd.worker.url.full")
-)
-
-// CICDPipelineName returns an attribute KeyValue conforming to the
-// "cicd.pipeline.name" semantic conventions. It represents the human readable
-// name of the pipeline within a CI/CD system.
-func CICDPipelineName(val string) attribute.KeyValue {
-	return CICDPipelineNameKey.String(val)
-}
-
-// CICDPipelineRunID returns an attribute KeyValue conforming to the
-// "cicd.pipeline.run.id" semantic conventions. It represents the unique
-// identifier of a pipeline run within a CI/CD system.
-func CICDPipelineRunID(val string) attribute.KeyValue {
-	return CICDPipelineRunIDKey.String(val)
-}
-
-// CICDPipelineRunURLFull returns an attribute KeyValue conforming to the
-// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of
-// the pipeline run, providing the complete address in order to locate and
-// identify the pipeline run.
-//
-// [URL]: https://wikipedia.org/wiki/URL
-func CICDPipelineRunURLFull(val string) attribute.KeyValue {
-	return CICDPipelineRunURLFullKey.String(val)
-}
-
-// CICDPipelineTaskName returns an attribute KeyValue conforming to the
-// "cicd.pipeline.task.name" semantic conventions. It represents the human
-// readable name of a task within a pipeline. Task here most closely aligns with
-// a [computing process] in a pipeline. Other terms for tasks include commands,
-// steps, and procedures.
-//
-// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing)
-func CICDPipelineTaskName(val string) attribute.KeyValue {
-	return CICDPipelineTaskNameKey.String(val)
-}
-
-// CICDPipelineTaskRunID returns an attribute KeyValue conforming to the
-// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique
-// identifier of a task run within a pipeline.
-func CICDPipelineTaskRunID(val string) attribute.KeyValue {
-	return CICDPipelineTaskRunIDKey.String(val)
-}
-
-// CICDPipelineTaskRunURLFull returns an attribute KeyValue conforming to the
-// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the
-// [URL] of the pipeline task run, providing the complete address in order to
-// locate and identify the pipeline task run.
-//
-// [URL]: https://wikipedia.org/wiki/URL
-func CICDPipelineTaskRunURLFull(val string) attribute.KeyValue {
-	return CICDPipelineTaskRunURLFullKey.String(val)
-}
-
-// CICDSystemComponent returns an attribute KeyValue conforming to the
-// "cicd.system.component" semantic conventions. It represents the name of a
-// component of the CICD system.
-func CICDSystemComponent(val string) attribute.KeyValue {
-	return CICDSystemComponentKey.String(val)
-}
-
-// CICDWorkerID returns an attribute KeyValue conforming to the "cicd.worker.id"
-// semantic conventions. It represents the unique identifier of a worker within a
-// CICD system.
-func CICDWorkerID(val string) attribute.KeyValue {
-	return CICDWorkerIDKey.String(val)
-}
-
-// CICDWorkerName returns an attribute KeyValue conforming to the
-// "cicd.worker.name" semantic conventions. It represents the name of a worker
-// within a CICD system.
-func CICDWorkerName(val string) attribute.KeyValue {
-	return CICDWorkerNameKey.String(val)
-}
-
-// CICDWorkerURLFull returns an attribute KeyValue conforming to the
-// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the
-// worker, providing the complete address in order to locate and identify the
-// worker.
-//
-// [URL]: https://wikipedia.org/wiki/URL
-func CICDWorkerURLFull(val string) attribute.KeyValue {
-	return CICDWorkerURLFullKey.String(val)
-}
-
-// Enum values for cicd.pipeline.action.name
-var (
-	// The pipeline run is executing a build.
-	// Stability: development
-	CICDPipelineActionNameBuild = CICDPipelineActionNameKey.String("BUILD")
-	// The pipeline run is executing.
-	// Stability: development
-	CICDPipelineActionNameRun = CICDPipelineActionNameKey.String("RUN")
-	// The pipeline run is executing a sync.
-	// Stability: development
-	CICDPipelineActionNameSync = CICDPipelineActionNameKey.String("SYNC")
-)
-
-// Enum values for cicd.pipeline.result
-var (
-	// The pipeline run finished successfully.
-	// Stability: development
-	CICDPipelineResultSuccess = CICDPipelineResultKey.String("success")
-	// The pipeline run did not finish successfully, eg. due to a compile error or a
-	// failing test. Such failures are usually detected by non-zero exit codes of
-	// the tools executed in the pipeline run.
-	// Stability: development
-	CICDPipelineResultFailure = CICDPipelineResultKey.String("failure")
-	// The pipeline run failed due to an error in the CICD system, eg. due to the
-	// worker being killed.
-	// Stability: development
-	CICDPipelineResultError = CICDPipelineResultKey.String("error")
-	// A timeout caused the pipeline run to be interrupted.
-	// Stability: development
-	CICDPipelineResultTimeout = CICDPipelineResultKey.String("timeout")
-	// The pipeline run was cancelled, eg. by a user manually cancelling the
-	// pipeline run.
-	// Stability: development
-	CICDPipelineResultCancellation = CICDPipelineResultKey.String("cancellation")
-	// The pipeline run was skipped, eg. due to a precondition not being met.
-	// Stability: development
-	CICDPipelineResultSkip = CICDPipelineResultKey.String("skip")
-)
-
-// Enum values for cicd.pipeline.run.state
-var (
-	// The run pending state spans from the event triggering the pipeline run until
-	// the execution of the run starts (eg. time spent in a queue, provisioning
-	// agents, creating run resources).
-	//
-	// Stability: development
-	CICDPipelineRunStatePending = CICDPipelineRunStateKey.String("pending")
-	// The executing state spans the execution of any run tasks (eg. build, test).
-	// Stability: development
-	CICDPipelineRunStateExecuting = CICDPipelineRunStateKey.String("executing")
-	// The finalizing state spans from when the run has finished executing (eg.
-	// cleanup of run resources).
-	// Stability: development
-	CICDPipelineRunStateFinalizing = CICDPipelineRunStateKey.String("finalizing")
-)
-
-// Enum values for cicd.pipeline.task.run.result
-var (
-	// The task run finished successfully.
-	// Stability: development
-	CICDPipelineTaskRunResultSuccess = CICDPipelineTaskRunResultKey.String("success")
-	// The task run did not finish successfully, eg. due to a compile error or a
-	// failing test. Such failures are usually detected by non-zero exit codes of
-	// the tools executed in the task run.
-	// Stability: development
-	CICDPipelineTaskRunResultFailure = CICDPipelineTaskRunResultKey.String("failure")
-	// The task run failed due to an error in the CICD system, eg. due to the worker
-	// being killed.
-	// Stability: development
-	CICDPipelineTaskRunResultError = CICDPipelineTaskRunResultKey.String("error")
-	// A timeout caused the task run to be interrupted.
-	// Stability: development
-	CICDPipelineTaskRunResultTimeout = CICDPipelineTaskRunResultKey.String("timeout")
-	// The task run was cancelled, eg. by a user manually cancelling the task run.
-	// Stability: development
-	CICDPipelineTaskRunResultCancellation = CICDPipelineTaskRunResultKey.String("cancellation")
-	// The task run was skipped, eg. due to a precondition not being met.
-	// Stability: development
-	CICDPipelineTaskRunResultSkip = CICDPipelineTaskRunResultKey.String("skip")
-)
-
-// Enum values for cicd.pipeline.task.type
-var (
-	// build
-	// Stability: development
-	CICDPipelineTaskTypeBuild = CICDPipelineTaskTypeKey.String("build")
-	// test
-	// Stability: development
-	CICDPipelineTaskTypeTest = CICDPipelineTaskTypeKey.String("test")
-	// deploy
-	// Stability: development
-	CICDPipelineTaskTypeDeploy = CICDPipelineTaskTypeKey.String("deploy")
-)
-
-// Enum values for cicd.worker.state
-var (
-	// The worker is not performing work for the CICD system. It is available to the
-	// CICD system to perform work on (online / idle).
-	// Stability: development
-	CICDWorkerStateAvailable = CICDWorkerStateKey.String("available")
-	// The worker is performing work for the CICD system.
-	// Stability: development
-	CICDWorkerStateBusy = CICDWorkerStateKey.String("busy")
-	// The worker is not available to the CICD system (disconnected / down).
-	// Stability: development
-	CICDWorkerStateOffline = CICDWorkerStateKey.String("offline")
-)
-
-// Namespace: client
-const (
-	// ClientAddressKey is the attribute Key conforming to the "client.address"
-	// semantic conventions. It represents the client address - domain name if
-	// available without reverse DNS lookup; otherwise, IP address or Unix domain
-	// socket name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "client.example.com", "10.1.2.80", "/tmp/my.sock"
-	// Note: When observed from the server side, and when communicating through an
-	// intermediary, `client.address` SHOULD represent the client address behind any
-	// intermediaries, for example proxies, if it's available.
-	ClientAddressKey = attribute.Key("client.address")
-
-	// ClientPortKey is the attribute Key conforming to the "client.port" semantic
-	// conventions. It represents the client port number.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: 65123
-	// Note: When observed from the server side, and when communicating through an
-	// intermediary, `client.port` SHOULD represent the client port behind any
-	// intermediaries, for example proxies, if it's available.
-	ClientPortKey = attribute.Key("client.port")
-)
-
-// ClientAddress returns an attribute KeyValue conforming to the "client.address"
-// semantic conventions. It represents the client address - domain name if
-// available without reverse DNS lookup; otherwise, IP address or Unix domain
-// socket name.
-func ClientAddress(val string) attribute.KeyValue {
-	return ClientAddressKey.String(val)
-}
-
-// ClientPort returns an attribute KeyValue conforming to the "client.port"
-// semantic conventions. It represents the client port number.
-func ClientPort(val int) attribute.KeyValue {
-	return ClientPortKey.Int(val)
-}
-
-// Namespace: cloud
-const (
-	// CloudAccountIDKey is the attribute Key conforming to the "cloud.account.id"
-	// semantic conventions. It represents the cloud account ID the resource is
-	// assigned to.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "111111111111", "opentelemetry"
-	CloudAccountIDKey = attribute.Key("cloud.account.id")
-
-	// CloudAvailabilityZoneKey is the attribute Key conforming to the
-	// "cloud.availability_zone" semantic conventions. It represents the cloud
-	// regions often have multiple, isolated locations known as zones to increase
-	// availability. Availability zone represents the zone where the resource is
-	// running.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "us-east-1c"
-	// Note: Availability zones are called "zones" on Alibaba Cloud and Google
-	// Cloud.
-	CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone")
-
-	// CloudPlatformKey is the attribute Key conforming to the "cloud.platform"
-	// semantic conventions. It represents the cloud platform in use.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: The prefix of the service SHOULD match the one specified in
-	// `cloud.provider`.
-	CloudPlatformKey = attribute.Key("cloud.platform")
-
-	// CloudProviderKey is the attribute Key conforming to the "cloud.provider"
-	// semantic conventions. It represents the name of the cloud provider.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	CloudProviderKey = attribute.Key("cloud.provider")
-
-	// CloudRegionKey is the attribute Key conforming to the "cloud.region" semantic
-	// conventions. It represents the geographical region within a cloud provider.
-	// When associated with a resource, this attribute specifies the region where
-	// the resource operates. When calling services or APIs deployed on a cloud,
-	// this attribute identifies the region where the called destination is
-	// deployed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "us-central1", "us-east-1"
-	// Note: Refer to your provider's docs to see the available regions, for example
-	// [Alibaba Cloud regions], [AWS regions], [Azure regions],
-	// [Google Cloud regions], or [Tencent Cloud regions].
-	//
-	// [Alibaba Cloud regions]: https://www.alibabacloud.com/help/doc-detail/40654.htm
-	// [AWS regions]: https://aws.amazon.com/about-aws/global-infrastructure/regions_az/
-	// [Azure regions]: https://azure.microsoft.com/global-infrastructure/geographies/
-	// [Google Cloud regions]: https://cloud.google.com/about/locations
-	// [Tencent Cloud regions]: https://www.tencentcloud.com/document/product/213/6091
-	CloudRegionKey = attribute.Key("cloud.region")
-
-	// CloudResourceIDKey is the attribute Key conforming to the "cloud.resource_id"
-	// semantic conventions. It represents the cloud provider-specific native
-	// identifier of the monitored cloud resource (e.g. an [ARN] on AWS, a
-	// [fully qualified resource ID] on Azure, a [full resource name] on GCP).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function",
-	// "//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID",
-	// "/subscriptions/<SUBSCRIPTION_GUID>/resourceGroups/<RG>
-	// /providers/Microsoft.Web/sites/<FUNCAPP>/functions/<FUNC>"
-	// Note: On some cloud providers, it may not be possible to determine the full
-	// ID at startup,
-	// so it may be necessary to set `cloud.resource_id` as a span attribute
-	// instead.
-	//
-	// The exact value to use for `cloud.resource_id` depends on the cloud provider.
-	// The following well-known definitions MUST be used if you set this attribute
-	// and they apply:
-	//
-	//   - **AWS Lambda:** The function [ARN].
-	//     Take care not to use the "invoked ARN" directly but replace any
-	//     [alias suffix]
-	//     with the resolved function version, as the same runtime instance may be
-	//     invocable with
-	//     multiple different aliases.
-	//   - **GCP:** The [URI of the resource]
-	//   - **Azure:** The [Fully Qualified Resource ID] of the invoked function,
-	//     *not* the function app, having the form
-	//
-	//     `/subscriptions/<SUBSCRIPTION_GUID>/resourceGroups/<RG>/providers/Microsoft.Web/sites/<FUNCAPP>/functions/<FUNC>`
-	//     .
-	//     This means that a span attribute MUST be used, as an Azure function app
-	//     can host multiple functions that would usually share
-	//     a TracerProvider.
-	//
-	//
-	// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html
-	// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id
-	// [full resource name]: https://google.aip.dev/122#full-resource-names
-	// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html
-	// [alias suffix]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html
-	// [URI of the resource]: https://cloud.google.com/iam/docs/full-resource-names
-	// [Fully Qualified Resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id
-	CloudResourceIDKey = attribute.Key("cloud.resource_id")
-)
-
-// CloudAccountID returns an attribute KeyValue conforming to the
-// "cloud.account.id" semantic conventions. It represents the cloud account ID
-// the resource is assigned to.
-func CloudAccountID(val string) attribute.KeyValue {
-	return CloudAccountIDKey.String(val)
-}
-
-// CloudAvailabilityZone returns an attribute KeyValue conforming to the
-// "cloud.availability_zone" semantic conventions. It represents the cloud
-// regions often have multiple, isolated locations known as zones to increase
-// availability. Availability zone represents the zone where the resource is
-// running.
-func CloudAvailabilityZone(val string) attribute.KeyValue {
-	return CloudAvailabilityZoneKey.String(val)
-}
-
-// CloudRegion returns an attribute KeyValue conforming to the "cloud.region"
-// semantic conventions. It represents the geographical region within a cloud
-// provider. When associated with a resource, this attribute specifies the region
-// where the resource operates. When calling services or APIs deployed on a
-// cloud, this attribute identifies the region where the called destination is
-// deployed.
-func CloudRegion(val string) attribute.KeyValue {
-	return CloudRegionKey.String(val)
-}
-
-// CloudResourceID returns an attribute KeyValue conforming to the
-// "cloud.resource_id" semantic conventions. It represents the cloud
-// provider-specific native identifier of the monitored cloud resource (e.g. an
-// [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name]
-//  on GCP).
-//
-// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html
-// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id
-// [full resource name]: https://google.aip.dev/122#full-resource-names
-func CloudResourceID(val string) attribute.KeyValue {
-	return CloudResourceIDKey.String(val)
-}
-
-// Enum values for cloud.platform
-var (
-	// Akamai Cloud Compute
-	// Stability: development
-	CloudPlatformAkamaiCloudCompute = CloudPlatformKey.String("akamai_cloud.compute")
-	// Alibaba Cloud Elastic Compute Service
-	// Stability: development
-	CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs")
-	// Alibaba Cloud Function Compute
-	// Stability: development
-	CloudPlatformAlibabaCloudFC = CloudPlatformKey.String("alibaba_cloud_fc")
-	// Red Hat OpenShift on Alibaba Cloud
-	// Stability: development
-	CloudPlatformAlibabaCloudOpenShift = CloudPlatformKey.String("alibaba_cloud_openshift")
-	// AWS Elastic Compute Cloud
-	// Stability: development
-	CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2")
-	// AWS Elastic Container Service
-	// Stability: development
-	CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs")
-	// AWS Elastic Kubernetes Service
-	// Stability: development
-	CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks")
-	// AWS Lambda
-	// Stability: development
-	CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda")
-	// AWS Elastic Beanstalk
-	// Stability: development
-	CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk")
-	// AWS App Runner
-	// Stability: development
-	CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner")
-	// Red Hat OpenShift on AWS (ROSA)
-	// Stability: development
-	CloudPlatformAWSOpenShift = CloudPlatformKey.String("aws_openshift")
-	// Azure Virtual Machines
-	// Stability: development
-	CloudPlatformAzureVM = CloudPlatformKey.String("azure.vm")
-	// Azure Container Apps
-	// Stability: development
-	CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure.container_apps")
-	// Azure Container Instances
-	// Stability: development
-	CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure.container_instances")
-	// Azure Kubernetes Service
-	// Stability: development
-	CloudPlatformAzureAKS = CloudPlatformKey.String("azure.aks")
-	// Azure Functions
-	// Stability: development
-	CloudPlatformAzureFunctions = CloudPlatformKey.String("azure.functions")
-	// Azure App Service
-	// Stability: development
-	CloudPlatformAzureAppService = CloudPlatformKey.String("azure.app_service")
-	// Azure Red Hat OpenShift
-	// Stability: development
-	CloudPlatformAzureOpenShift = CloudPlatformKey.String("azure.openshift")
-	// Google Vertex AI Agent Engine
-	// Stability: development
-	CloudPlatformGCPAgentEngine = CloudPlatformKey.String("gcp.agent_engine")
-	// Google Bare Metal Solution (BMS)
-	// Stability: development
-	CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution")
-	// Google Cloud Compute Engine (GCE)
-	// Stability: development
-	CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine")
-	// Google Cloud Run
-	// Stability: development
-	CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run")
-	// Google Cloud Kubernetes Engine (GKE)
-	// Stability: development
-	CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine")
-	// Google Cloud Functions (GCF)
-	// Stability: development
-	CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions")
-	// Google Cloud App Engine (GAE)
-	// Stability: development
-	CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine")
-	// Red Hat OpenShift on Google Cloud
-	// Stability: development
-	CloudPlatformGCPOpenShift = CloudPlatformKey.String("gcp_openshift")
-	// Server on Hetzner Cloud
-	// Stability: development
-	CloudPlatformHetznerCloudServer = CloudPlatformKey.String("hetzner.cloud_server")
-	// Red Hat OpenShift on IBM Cloud
-	// Stability: development
-	CloudPlatformIBMCloudOpenShift = CloudPlatformKey.String("ibm_cloud_openshift")
-	// Compute on Oracle Cloud Infrastructure (OCI)
-	// Stability: development
-	CloudPlatformOracleCloudCompute = CloudPlatformKey.String("oracle_cloud_compute")
-	// Kubernetes Engine (OKE) on Oracle Cloud Infrastructure (OCI)
-	// Stability: development
-	CloudPlatformOracleCloudOKE = CloudPlatformKey.String("oracle_cloud_oke")
-	// Tencent Cloud Cloud Virtual Machine (CVM)
-	// Stability: development
-	CloudPlatformTencentCloudCVM = CloudPlatformKey.String("tencent_cloud_cvm")
-	// Tencent Cloud Elastic Kubernetes Service (EKS)
-	// Stability: development
-	CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks")
-	// Tencent Cloud Serverless Cloud Function (SCF)
-	// Stability: development
-	CloudPlatformTencentCloudSCF = CloudPlatformKey.String("tencent_cloud_scf")
-	// Vultr Cloud Compute
-	// Stability: development
-	CloudPlatformVultrCloudCompute = CloudPlatformKey.String("vultr.cloud_compute")
-)
-
-// Enum values for cloud.provider
-var (
-	// Akamai Cloud
-	// Stability: development
-	CloudProviderAkamaiCloud = CloudProviderKey.String("akamai_cloud")
-	// Alibaba Cloud
-	// Stability: development
-	CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud")
-	// Amazon Web Services
-	// Stability: development
-	CloudProviderAWS = CloudProviderKey.String("aws")
-	// Microsoft Azure
-	// Stability: development
-	CloudProviderAzure = CloudProviderKey.String("azure")
-	// Google Cloud Platform
-	// Stability: development
-	CloudProviderGCP = CloudProviderKey.String("gcp")
-	// Heroku Platform as a Service
-	// Stability: development
-	CloudProviderHeroku = CloudProviderKey.String("heroku")
-	// Hetzner
-	// Stability: development
-	CloudProviderHetzner = CloudProviderKey.String("hetzner")
-	// IBM Cloud
-	// Stability: development
-	CloudProviderIBMCloud = CloudProviderKey.String("ibm_cloud")
-	// Oracle Cloud Infrastructure (OCI)
-	// Stability: development
-	CloudProviderOracleCloud = CloudProviderKey.String("oracle_cloud")
-	// Tencent Cloud
-	// Stability: development
-	CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud")
-	// Vultr
-	// Stability: development
-	CloudProviderVultr = CloudProviderKey.String("vultr")
-)
-
-// Namespace: cloudevents
-const (
-	// CloudEventsEventIDKey is the attribute Key conforming to the
-	// "cloudevents.event_id" semantic conventions. It represents the [event_id]
-	// uniquely identifies the event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "123e4567-e89b-12d3-a456-426614174000", "0001"
-	//
-	// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id
-	CloudEventsEventIDKey = attribute.Key("cloudevents.event_id")
-
-	// CloudEventsEventSourceKey is the attribute Key conforming to the
-	// "cloudevents.event_source" semantic conventions. It represents the [source]
-	// identifies the context in which an event happened.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "https://github.com/cloudevents", "/cloudevents/spec/pull/123",
-	// "my-service"
-	//
-	// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1
-	CloudEventsEventSourceKey = attribute.Key("cloudevents.event_source")
-
-	// CloudEventsEventSpecVersionKey is the attribute Key conforming to the
-	// "cloudevents.event_spec_version" semantic conventions. It represents the
-	// [version of the CloudEvents specification] which the event uses.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0
-	//
-	// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion
-	CloudEventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version")
-
-	// CloudEventsEventSubjectKey is the attribute Key conforming to the
-	// "cloudevents.event_subject" semantic conventions. It represents the [subject]
-	//  of the event in the context of the event producer (identified by source).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: mynewfile.jpg
-	//
-	// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject
-	CloudEventsEventSubjectKey = attribute.Key("cloudevents.event_subject")
-
-	// CloudEventsEventTypeKey is the attribute Key conforming to the
-	// "cloudevents.event_type" semantic conventions. It represents the [event_type]
-	//  contains a value describing the type of event related to the originating
-	// occurrence.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "com.github.pull_request.opened", "com.example.object.deleted.v2"
-	//
-	// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type
-	CloudEventsEventTypeKey = attribute.Key("cloudevents.event_type")
-)
-
-// CloudEventsEventID returns an attribute KeyValue conforming to the
-// "cloudevents.event_id" semantic conventions. It represents the [event_id]
-// uniquely identifies the event.
-//
-// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id
-func CloudEventsEventID(val string) attribute.KeyValue {
-	return CloudEventsEventIDKey.String(val)
-}
-
-// CloudEventsEventSource returns an attribute KeyValue conforming to the
-// "cloudevents.event_source" semantic conventions. It represents the [source]
-// identifies the context in which an event happened.
-//
-// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1
-func CloudEventsEventSource(val string) attribute.KeyValue {
-	return CloudEventsEventSourceKey.String(val)
-}
-
-// CloudEventsEventSpecVersion returns an attribute KeyValue conforming to the
-// "cloudevents.event_spec_version" semantic conventions. It represents the
-// [version of the CloudEvents specification] which the event uses.
-//
-// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion
-func CloudEventsEventSpecVersion(val string) attribute.KeyValue {
-	return CloudEventsEventSpecVersionKey.String(val)
-}
-
-// CloudEventsEventSubject returns an attribute KeyValue conforming to the
-// "cloudevents.event_subject" semantic conventions. It represents the [subject]
-// of the event in the context of the event producer (identified by source).
-//
-// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject
-func CloudEventsEventSubject(val string) attribute.KeyValue {
-	return CloudEventsEventSubjectKey.String(val)
-}
-
-// CloudEventsEventType returns an attribute KeyValue conforming to the
-// "cloudevents.event_type" semantic conventions. It represents the [event_type]
-// contains a value describing the type of event related to the originating
-// occurrence.
-//
-// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type
-func CloudEventsEventType(val string) attribute.KeyValue {
-	return CloudEventsEventTypeKey.String(val)
-}
-
-// Namespace: cloudfoundry
-const (
-	// CloudFoundryAppIDKey is the attribute Key conforming to the
-	// "cloudfoundry.app.id" semantic conventions. It represents the guid of the
-	// application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.application_id`. This is the same value as
-	// reported by `cf app <app-name> --guid`.
-	CloudFoundryAppIDKey = attribute.Key("cloudfoundry.app.id")
-
-	// CloudFoundryAppInstanceIDKey is the attribute Key conforming to the
-	// "cloudfoundry.app.instance.id" semantic conventions. It represents the index
-	// of the application instance. 0 when just one instance is active.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0", "1"
-	// Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope]
-	// .
-	// It is used for logs and metrics emitted by CloudFoundry. It is
-	// supposed to contain the application instance index for applications
-	// deployed on the runtime.
-	//
-	// Application instrumentation should use the value from environment
-	// variable `CF_INSTANCE_INDEX`.
-	//
-	// [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope
-	CloudFoundryAppInstanceIDKey = attribute.Key("cloudfoundry.app.instance.id")
-
-	// CloudFoundryAppNameKey is the attribute Key conforming to the
-	// "cloudfoundry.app.name" semantic conventions. It represents the name of the
-	// application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-app-name"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.application_name`. This is the same value
-	// as reported by `cf apps`.
-	CloudFoundryAppNameKey = attribute.Key("cloudfoundry.app.name")
-
-	// CloudFoundryOrgIDKey is the attribute Key conforming to the
-	// "cloudfoundry.org.id" semantic conventions. It represents the guid of the
-	// CloudFoundry org the application is running in.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.org_id`. This is the same value as
-	// reported by `cf org <org-name> --guid`.
-	CloudFoundryOrgIDKey = attribute.Key("cloudfoundry.org.id")
-
-	// CloudFoundryOrgNameKey is the attribute Key conforming to the
-	// "cloudfoundry.org.name" semantic conventions. It represents the name of the
-	// CloudFoundry organization the app is running in.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-org-name"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.org_name`. This is the same value as
-	// reported by `cf orgs`.
-	CloudFoundryOrgNameKey = attribute.Key("cloudfoundry.org.name")
-
-	// CloudFoundryProcessIDKey is the attribute Key conforming to the
-	// "cloudfoundry.process.id" semantic conventions. It represents the UID
-	// identifying the process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.process_id`. It is supposed to be equal to
-	// `VCAP_APPLICATION.app_id` for applications deployed to the runtime.
-	// For system components, this could be the actual PID.
-	CloudFoundryProcessIDKey = attribute.Key("cloudfoundry.process.id")
-
-	// CloudFoundryProcessTypeKey is the attribute Key conforming to the
-	// "cloudfoundry.process.type" semantic conventions. It represents the type of
-	// process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "web"
-	// Note: CloudFoundry applications can consist of multiple jobs. Usually the
-	// main process will be of type `web`. There can be additional background
-	// tasks or side-cars with different process types.
-	CloudFoundryProcessTypeKey = attribute.Key("cloudfoundry.process.type")
-
-	// CloudFoundrySpaceIDKey is the attribute Key conforming to the
-	// "cloudfoundry.space.id" semantic conventions. It represents the guid of the
-	// CloudFoundry space the application is running in.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.space_id`. This is the same value as
-	// reported by `cf space <space-name> --guid`.
-	CloudFoundrySpaceIDKey = attribute.Key("cloudfoundry.space.id")
-
-	// CloudFoundrySpaceNameKey is the attribute Key conforming to the
-	// "cloudfoundry.space.name" semantic conventions. It represents the name of the
-	// CloudFoundry space the application is running in.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-space-name"
-	// Note: Application instrumentation should use the value from environment
-	// variable `VCAP_APPLICATION.space_name`. This is the same value as
-	// reported by `cf spaces`.
-	CloudFoundrySpaceNameKey = attribute.Key("cloudfoundry.space.name")
-
-	// CloudFoundrySystemIDKey is the attribute Key conforming to the
-	// "cloudfoundry.system.id" semantic conventions. It represents a guid or
-	// another name describing the event source.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "cf/gorouter"
-	// Note: CloudFoundry defines the `source_id` in the [Loggregator v2 envelope].
-	// It is used for logs and metrics emitted by CloudFoundry. It is
-	// supposed to contain the component name, e.g. "gorouter", for
-	// CloudFoundry components.
-	//
-	// When system components are instrumented, values from the
-	// [Bosh spec]
-	// should be used. The `system.id` should be set to
-	// `spec.deployment/spec.name`.
-	//
-	// [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope
-	// [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec
-	CloudFoundrySystemIDKey = attribute.Key("cloudfoundry.system.id")
-
-	// CloudFoundrySystemInstanceIDKey is the attribute Key conforming to the
-	// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid
-	// describing the concrete instance of the event source.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
-	// Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope]
-	// .
-	// It is used for logs and metrics emitted by CloudFoundry. It is
-	// supposed to contain the vm id for CloudFoundry components.
-	//
-	// When system components are instrumented, values from the
-	// [Bosh spec]
-	// should be used. The `system.instance.id` should be set to `spec.id`.
-	//
-	// [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope
-	// [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec
-	CloudFoundrySystemInstanceIDKey = attribute.Key("cloudfoundry.system.instance.id")
-)
-
-// CloudFoundryAppID returns an attribute KeyValue conforming to the
-// "cloudfoundry.app.id" semantic conventions. It represents the guid of the
-// application.
-func CloudFoundryAppID(val string) attribute.KeyValue {
-	return CloudFoundryAppIDKey.String(val)
-}
-
-// CloudFoundryAppInstanceID returns an attribute KeyValue conforming to the
-// "cloudfoundry.app.instance.id" semantic conventions. It represents the index
-// of the application instance. 0 when just one instance is active.
-func CloudFoundryAppInstanceID(val string) attribute.KeyValue {
-	return CloudFoundryAppInstanceIDKey.String(val)
-}
-
-// CloudFoundryAppName returns an attribute KeyValue conforming to the
-// "cloudfoundry.app.name" semantic conventions. It represents the name of the
-// application.
-func CloudFoundryAppName(val string) attribute.KeyValue {
-	return CloudFoundryAppNameKey.String(val)
-}
-
-// CloudFoundryOrgID returns an attribute KeyValue conforming to the
-// "cloudfoundry.org.id" semantic conventions. It represents the guid of the
-// CloudFoundry org the application is running in.
-func CloudFoundryOrgID(val string) attribute.KeyValue {
-	return CloudFoundryOrgIDKey.String(val)
-}
-
-// CloudFoundryOrgName returns an attribute KeyValue conforming to the
-// "cloudfoundry.org.name" semantic conventions. It represents the name of the
-// CloudFoundry organization the app is running in.
-func CloudFoundryOrgName(val string) attribute.KeyValue {
-	return CloudFoundryOrgNameKey.String(val)
-}
-
-// CloudFoundryProcessID returns an attribute KeyValue conforming to the
-// "cloudfoundry.process.id" semantic conventions. It represents the UID
-// identifying the process.
-func CloudFoundryProcessID(val string) attribute.KeyValue {
-	return CloudFoundryProcessIDKey.String(val)
-}
-
-// CloudFoundryProcessType returns an attribute KeyValue conforming to the
-// "cloudfoundry.process.type" semantic conventions. It represents the type of
-// process.
-func CloudFoundryProcessType(val string) attribute.KeyValue {
-	return CloudFoundryProcessTypeKey.String(val)
-}
-
-// CloudFoundrySpaceID returns an attribute KeyValue conforming to the
-// "cloudfoundry.space.id" semantic conventions. It represents the guid of the
-// CloudFoundry space the application is running in.
-func CloudFoundrySpaceID(val string) attribute.KeyValue {
-	return CloudFoundrySpaceIDKey.String(val)
-}
-
-// CloudFoundrySpaceName returns an attribute KeyValue conforming to the
-// "cloudfoundry.space.name" semantic conventions. It represents the name of the
-// CloudFoundry space the application is running in.
-func CloudFoundrySpaceName(val string) attribute.KeyValue {
-	return CloudFoundrySpaceNameKey.String(val)
-}
-
-// CloudFoundrySystemID returns an attribute KeyValue conforming to the
-// "cloudfoundry.system.id" semantic conventions. It represents a guid or another
-// name describing the event source.
-func CloudFoundrySystemID(val string) attribute.KeyValue {
-	return CloudFoundrySystemIDKey.String(val)
-}
-
-// CloudFoundrySystemInstanceID returns an attribute KeyValue conforming to the
-// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid
-// describing the concrete instance of the event source.
-func CloudFoundrySystemInstanceID(val string) attribute.KeyValue {
-	return CloudFoundrySystemInstanceIDKey.String(val)
-}
-
-// Namespace: code
-const (
-	// CodeColumnNumberKey is the attribute Key conforming to the
-	// "code.column.number" semantic conventions. It represents the column number in
-	// `code.file.path` best representing the operation. It SHOULD point within the
-	// code unit named in `code.function.name`. This attribute MUST NOT be used on
-	// the Profile signal since the data is already captured in 'message Line'. This
-	// constraint is imposed to prevent redundancy and maintain data integrity.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	CodeColumnNumberKey = attribute.Key("code.column.number")
-
-	// CodeFilePathKey is the attribute Key conforming to the "code.file.path"
-	// semantic conventions. It represents the source code file name that identifies
-	// the code unit as uniquely as possible (preferably an absolute file path).
-	// This attribute MUST NOT be used on the Profile signal since the data is
-	// already captured in 'message Function'. This constraint is imposed to prevent
-	// redundancy and maintain data integrity.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: /usr/local/MyApplication/content_root/app/index.php
-	CodeFilePathKey = attribute.Key("code.file.path")
-
-	// CodeFunctionNameKey is the attribute Key conforming to the
-	// "code.function.name" semantic conventions. It represents the method or
-	// function fully-qualified name without arguments. The value should fit the
-	// natural representation of the language runtime, which is also likely the same
-	// used within `code.stacktrace` attribute value. This attribute MUST NOT be
-	// used on the Profile signal since the data is already captured in 'message
-	// Function'. This constraint is imposed to prevent redundancy and maintain data
-	// integrity.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "com.example.MyHttpService.serveRequest",
-	// "GuzzleHttp\Client::transfer", "fopen"
-	// Note: Values and format depends on each language runtime, thus it is
-	// impossible to provide an exhaustive list of examples.
-	// The values are usually the same (or prefixes of) the ones found in native
-	// stack trace representation stored in
-	// `code.stacktrace` without information on arguments.
-	//
-	// Examples:
-	//
-	//   - Java method: `com.example.MyHttpService.serveRequest`
-	//   - Java anonymous class method: `com.mycompany.Main$1.myMethod`
-	//   - Java lambda method:
-	//     `com.mycompany.Main$$Lambda/0x0000748ae4149c00.myMethod`
-	//   - PHP function: `GuzzleHttp\Client::transfer`
-	//   - Go function: `github.com/my/repo/pkg.foo.func5`
-	//   - Elixir: `OpenTelemetry.Ctx.new`
-	//   - Erlang: `opentelemetry_ctx:new`
-	//   - Rust: `playground::my_module::my_cool_func`
-	//   - C function: `fopen`
-	CodeFunctionNameKey = attribute.Key("code.function.name")
-
-	// CodeLineNumberKey is the attribute Key conforming to the "code.line.number"
-	// semantic conventions. It represents the line number in `code.file.path` best
-	// representing the operation. It SHOULD point within the code unit named in
-	// `code.function.name`. This attribute MUST NOT be used on the Profile signal
-	// since the data is already captured in 'message Line'. This constraint is
-	// imposed to prevent redundancy and maintain data integrity.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	CodeLineNumberKey = attribute.Key("code.line.number")
-
-	// CodeStacktraceKey is the attribute Key conforming to the "code.stacktrace"
-	// semantic conventions. It represents a stacktrace as a string in the natural
-	// representation for the language runtime. The representation is identical to
-	// [`exception.stacktrace`]. This attribute MUST NOT be used on the Profile
-	// signal since the data is already captured in 'message Location'. This
-	// constraint is imposed to prevent redundancy and maintain data integrity.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at
-	// com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at
-	// com.example.GenerateTrace.main(GenerateTrace.java:5)
-	//
-	// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation
-	CodeStacktraceKey = attribute.Key("code.stacktrace")
-)
-
-// CodeColumnNumber returns an attribute KeyValue conforming to the
-// "code.column.number" semantic conventions. It represents the column number in
-// `code.file.path` best representing the operation. It SHOULD point within the
-// code unit named in `code.function.name`. This attribute MUST NOT be used on
-// the Profile signal since the data is already captured in 'message Line'. This
-// constraint is imposed to prevent redundancy and maintain data integrity.
-func CodeColumnNumber(val int) attribute.KeyValue {
-	return CodeColumnNumberKey.Int(val)
-}
-
-// CodeFilePath returns an attribute KeyValue conforming to the "code.file.path"
-// semantic conventions. It represents the source code file name that identifies
-// the code unit as uniquely as possible (preferably an absolute file path). This
-// attribute MUST NOT be used on the Profile signal since the data is already
-// captured in 'message Function'. This constraint is imposed to prevent
-// redundancy and maintain data integrity.
-func CodeFilePath(val string) attribute.KeyValue {
-	return CodeFilePathKey.String(val)
-}
-
-// CodeFunctionName returns an attribute KeyValue conforming to the
-// "code.function.name" semantic conventions. It represents the method or
-// function fully-qualified name without arguments. The value should fit the
-// natural representation of the language runtime, which is also likely the same
-// used within `code.stacktrace` attribute value. This attribute MUST NOT be used
-// on the Profile signal since the data is already captured in 'message
-// Function'. This constraint is imposed to prevent redundancy and maintain data
-// integrity.
-func CodeFunctionName(val string) attribute.KeyValue {
-	return CodeFunctionNameKey.String(val)
-}
-
-// CodeLineNumber returns an attribute KeyValue conforming to the
-// "code.line.number" semantic conventions. It represents the line number in
-// `code.file.path` best representing the operation. It SHOULD point within the
-// code unit named in `code.function.name`. This attribute MUST NOT be used on
-// the Profile signal since the data is already captured in 'message Line'. This
-// constraint is imposed to prevent redundancy and maintain data integrity.
-func CodeLineNumber(val int) attribute.KeyValue {
-	return CodeLineNumberKey.Int(val)
-}
-
-// CodeStacktrace returns an attribute KeyValue conforming to the
-// "code.stacktrace" semantic conventions. It represents a stacktrace as a string
-// in the natural representation for the language runtime. The representation is
-// identical to [`exception.stacktrace`]. This attribute MUST NOT be used on the
-// Profile signal since the data is already captured in 'message Location'. This
-// constraint is imposed to prevent redundancy and maintain data integrity.
-//
-// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation
-func CodeStacktrace(val string) attribute.KeyValue {
-	return CodeStacktraceKey.String(val)
-}
-
-// Namespace: container
-const (
-	// ContainerCommandKey is the attribute Key conforming to the
-	// "container.command" semantic conventions. It represents the command used to
-	// run the container (i.e. the command name).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "otelcontribcol"
-	// Note: If using embedded credentials or sensitive data, it is recommended to
-	// remove them to prevent potential leakage.
-	ContainerCommandKey = attribute.Key("container.command")
-
-	// ContainerCommandArgsKey is the attribute Key conforming to the
-	// "container.command_args" semantic conventions. It represents the all the
-	// command arguments (including the command/executable itself) run by the
-	// container.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "otelcontribcol", "--config", "config.yaml"
-	ContainerCommandArgsKey = attribute.Key("container.command_args")
-
-	// ContainerCommandLineKey is the attribute Key conforming to the
-	// "container.command_line" semantic conventions. It represents the full command
-	// run by the container as a single string representing the full command.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "otelcontribcol --config config.yaml"
-	ContainerCommandLineKey = attribute.Key("container.command_line")
-
-	// ContainerCSIPluginNameKey is the attribute Key conforming to the
-	// "container.csi.plugin.name" semantic conventions. It represents the name of
-	// the CSI ([Container Storage Interface]) plugin used by the volume.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "pd.csi.storage.gke.io"
-	// Note: This can sometimes be referred to as a "driver" in CSI implementations.
-	// This should represent the `name` field of the GetPluginInfo RPC.
-	//
-	// [Container Storage Interface]: https://github.com/container-storage-interface/spec
-	ContainerCSIPluginNameKey = attribute.Key("container.csi.plugin.name")
-
-	// ContainerCSIVolumeIDKey is the attribute Key conforming to the
-	// "container.csi.volume.id" semantic conventions. It represents the unique
-	// volume ID returned by the CSI ([Container Storage Interface]) plugin.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "projects/my-gcp-project/zones/my-gcp-zone/disks/my-gcp-disk"
-	// Note: This can sometimes be referred to as a "volume handle" in CSI
-	// implementations. This should represent the `Volume.volume_id` field in CSI
-	// spec.
-	//
-	// [Container Storage Interface]: https://github.com/container-storage-interface/spec
-	ContainerCSIVolumeIDKey = attribute.Key("container.csi.volume.id")
-
-	// ContainerIDKey is the attribute Key conforming to the "container.id" semantic
-	// conventions. It represents the container ID. Usually a UUID, as for example
-	// used to [identify Docker containers]. The UUID might be abbreviated.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "a3bf90e006b2"
-	//
-	// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification
-	ContainerIDKey = attribute.Key("container.id")
-
-	// ContainerImageIDKey is the attribute Key conforming to the
-	// "container.image.id" semantic conventions. It represents the runtime specific
-	// image identifier. Usually a hash algorithm followed by a UUID.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f"
-	// Note: Docker defines a sha256 of the image id; `container.image.id`
-	// corresponds to the `Image` field from the Docker container inspect [API]
-	// endpoint.
-	// K8s defines a link to the container registry repository with digest
-	// `"imageID": "registry.azurecr.io /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"`
-	// .
-	// The ID is assigned by the container runtime and can vary in different
-	// environments. Consider using `oci.manifest.digest` if it is important to
-	// identify the same image in different environments/runtimes.
-	//
-	// [API]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Container/operation/ContainerInspect
-	ContainerImageIDKey = attribute.Key("container.image.id")
-
-	// ContainerImageNameKey is the attribute Key conforming to the
-	// "container.image.name" semantic conventions. It represents the name of the
-	// image the container was built on.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "gcr.io/opentelemetry/operator"
-	ContainerImageNameKey = attribute.Key("container.image.name")
-
-	// ContainerImageRepoDigestsKey is the attribute Key conforming to the
-	// "container.image.repo_digests" semantic conventions. It represents the repo
-	// digests of the container image as provided by the container runtime.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples:
-	// "example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb",
-	// "internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578"
-	// Note: [Docker] and [CRI] report those under the `RepoDigests` field.
-	//
-	// [Docker]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect
-	// [CRI]: https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238
-	ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests")
-
-	// ContainerImageTagsKey is the attribute Key conforming to the
-	// "container.image.tags" semantic conventions. It represents the container
-	// image tags. An example can be found in [Docker Image Inspect]. Should be only
-	// the `<tag>` section of the full name for example from
-	// `registry.example.com/my-org/my-image:<tag>`.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "v1.27.1", "3.5.7-0"
-	//
-	// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect
-	ContainerImageTagsKey = attribute.Key("container.image.tags")
-
-	// ContainerNameKey is the attribute Key conforming to the "container.name"
-	// semantic conventions. It represents the container name used by container
-	// runtime.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry-autoconf"
-	ContainerNameKey = attribute.Key("container.name")
-
-	// ContainerRuntimeDescriptionKey is the attribute Key conforming to the
-	// "container.runtime.description" semantic conventions. It represents a
-	// description about the runtime which could include, for example details about
-	// the CRI/API version being used or other customisations.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "docker://19.3.1 - CRI: 1.22.0"
-	ContainerRuntimeDescriptionKey = attribute.Key("container.runtime.description")
-
-	// ContainerRuntimeNameKey is the attribute Key conforming to the
-	// "container.runtime.name" semantic conventions. It represents the container
-	// runtime managing this container.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "docker", "containerd", "rkt"
-	ContainerRuntimeNameKey = attribute.Key("container.runtime.name")
-
-	// ContainerRuntimeVersionKey is the attribute Key conforming to the
-	// "container.runtime.version" semantic conventions. It represents the version
-	// of the runtime of this process, as returned by the runtime without
-	// modification.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0.0
-	ContainerRuntimeVersionKey = attribute.Key("container.runtime.version")
-)
-
-// ContainerCommand returns an attribute KeyValue conforming to the
-// "container.command" semantic conventions. It represents the command used to
-// run the container (i.e. the command name).
-func ContainerCommand(val string) attribute.KeyValue {
-	return ContainerCommandKey.String(val)
-}
-
-// ContainerCommandArgs returns an attribute KeyValue conforming to the
-// "container.command_args" semantic conventions. It represents the all the
-// command arguments (including the command/executable itself) run by the
-// container.
-func ContainerCommandArgs(val ...string) attribute.KeyValue {
-	return ContainerCommandArgsKey.StringSlice(val)
-}
-
-// ContainerCommandLine returns an attribute KeyValue conforming to the
-// "container.command_line" semantic conventions. It represents the full command
-// run by the container as a single string representing the full command.
-func ContainerCommandLine(val string) attribute.KeyValue {
-	return ContainerCommandLineKey.String(val)
-}
-
-// ContainerCSIPluginName returns an attribute KeyValue conforming to the
-// "container.csi.plugin.name" semantic conventions. It represents the name of
-// the CSI ([Container Storage Interface]) plugin used by the volume.
-//
-// [Container Storage Interface]: https://github.com/container-storage-interface/spec
-func ContainerCSIPluginName(val string) attribute.KeyValue {
-	return ContainerCSIPluginNameKey.String(val)
-}
-
-// ContainerCSIVolumeID returns an attribute KeyValue conforming to the
-// "container.csi.volume.id" semantic conventions. It represents the unique
-// volume ID returned by the CSI ([Container Storage Interface]) plugin.
-//
-// [Container Storage Interface]: https://github.com/container-storage-interface/spec
-func ContainerCSIVolumeID(val string) attribute.KeyValue {
-	return ContainerCSIVolumeIDKey.String(val)
-}
-
-// ContainerID returns an attribute KeyValue conforming to the "container.id"
-// semantic conventions. It represents the container ID. Usually a UUID, as for
-// example used to [identify Docker containers]. The UUID might be abbreviated.
-//
-// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification
-func ContainerID(val string) attribute.KeyValue {
-	return ContainerIDKey.String(val)
-}
-
-// ContainerImageID returns an attribute KeyValue conforming to the
-// "container.image.id" semantic conventions. It represents the runtime specific
-// image identifier. Usually a hash algorithm followed by a UUID.
-func ContainerImageID(val string) attribute.KeyValue {
-	return ContainerImageIDKey.String(val)
-}
-
-// ContainerImageName returns an attribute KeyValue conforming to the
-// "container.image.name" semantic conventions. It represents the name of the
-// image the container was built on.
-func ContainerImageName(val string) attribute.KeyValue {
-	return ContainerImageNameKey.String(val)
-}
-
-// ContainerImageRepoDigests returns an attribute KeyValue conforming to the
-// "container.image.repo_digests" semantic conventions. It represents the repo
-// digests of the container image as provided by the container runtime.
-func ContainerImageRepoDigests(val ...string) attribute.KeyValue {
-	return ContainerImageRepoDigestsKey.StringSlice(val)
-}
-
-// ContainerImageTags returns an attribute KeyValue conforming to the
-// "container.image.tags" semantic conventions. It represents the container image
-// tags. An example can be found in [Docker Image Inspect]. Should be only the
-// `<tag>` section of the full name for example from
-// `registry.example.com/my-org/my-image:<tag>`.
-//
-// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect
-func ContainerImageTags(val ...string) attribute.KeyValue {
-	return ContainerImageTagsKey.StringSlice(val)
-}
-
-// ContainerLabel returns an attribute KeyValue conforming to the
-// "container.label" semantic conventions. It represents the container labels,
-// `<key>` being the label name, the value being the label value.
-func ContainerLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("container.label."+key, val)
-}
-
-// ContainerName returns an attribute KeyValue conforming to the "container.name"
-// semantic conventions. It represents the container name used by container
-// runtime.
-func ContainerName(val string) attribute.KeyValue {
-	return ContainerNameKey.String(val)
-}
-
-// ContainerRuntimeDescription returns an attribute KeyValue conforming to the
-// "container.runtime.description" semantic conventions. It represents a
-// description about the runtime which could include, for example details about
-// the CRI/API version being used or other customisations.
-func ContainerRuntimeDescription(val string) attribute.KeyValue {
-	return ContainerRuntimeDescriptionKey.String(val)
-}
-
-// ContainerRuntimeName returns an attribute KeyValue conforming to the
-// "container.runtime.name" semantic conventions. It represents the container
-// runtime managing this container.
-func ContainerRuntimeName(val string) attribute.KeyValue {
-	return ContainerRuntimeNameKey.String(val)
-}
-
-// ContainerRuntimeVersion returns an attribute KeyValue conforming to the
-// "container.runtime.version" semantic conventions. It represents the version of
-// the runtime of this process, as returned by the runtime without modification.
-func ContainerRuntimeVersion(val string) attribute.KeyValue {
-	return ContainerRuntimeVersionKey.String(val)
-}
-
-// Namespace: cpu
-const (
-	// CPULogicalNumberKey is the attribute Key conforming to the
-	// "cpu.logical_number" semantic conventions. It represents the logical CPU
-	// number [0..n-1].
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1
-	CPULogicalNumberKey = attribute.Key("cpu.logical_number")
-
-	// CPUModeKey is the attribute Key conforming to the "cpu.mode" semantic
-	// conventions. It represents the mode of the CPU.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "user", "system"
-	CPUModeKey = attribute.Key("cpu.mode")
-)
-
-// CPULogicalNumber returns an attribute KeyValue conforming to the
-// "cpu.logical_number" semantic conventions. It represents the logical CPU
-// number [0..n-1].
-func CPULogicalNumber(val int) attribute.KeyValue {
-	return CPULogicalNumberKey.Int(val)
-}
-
-// Enum values for cpu.mode
-var (
-	// User
-	// Stability: development
-	CPUModeUser = CPUModeKey.String("user")
-	// System
-	// Stability: development
-	CPUModeSystem = CPUModeKey.String("system")
-	// Nice
-	// Stability: development
-	CPUModeNice = CPUModeKey.String("nice")
-	// Idle
-	// Stability: development
-	CPUModeIdle = CPUModeKey.String("idle")
-	// IO Wait
-	// Stability: development
-	CPUModeIOWait = CPUModeKey.String("iowait")
-	// Interrupt
-	// Stability: development
-	CPUModeInterrupt = CPUModeKey.String("interrupt")
-	// Steal
-	// Stability: development
-	CPUModeSteal = CPUModeKey.String("steal")
-	// Kernel
-	// Stability: development
-	CPUModeKernel = CPUModeKey.String("kernel")
-)
-
-// Namespace: db
-const (
-	// DBClientConnectionPoolNameKey is the attribute Key conforming to the
-	// "db.client.connection.pool.name" semantic conventions. It represents the name
-	// of the connection pool; unique within the instrumented application. In case
-	// the connection pool implementation doesn't provide a name, instrumentation
-	// SHOULD use a combination of parameters that would make the name unique, for
-	// example, combining attributes `server.address`, `server.port`, and
-	// `db.namespace`, formatted as `server.address:server.port/db.namespace`.
-	// Instrumentations that generate connection pool name following different
-	// patterns SHOULD document it.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "myDataSource"
-	DBClientConnectionPoolNameKey = attribute.Key("db.client.connection.pool.name")
-
-	// DBClientConnectionStateKey is the attribute Key conforming to the
-	// "db.client.connection.state" semantic conventions. It represents the state of
-	// a connection in the pool.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "idle"
-	DBClientConnectionStateKey = attribute.Key("db.client.connection.state")
-
-	// DBCollectionNameKey is the attribute Key conforming to the
-	// "db.collection.name" semantic conventions. It represents the name of a
-	// collection (table, container) within the database.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "public.users", "customers"
-	// Note: It is RECOMMENDED to capture the value as provided by the application
-	// without attempting to do any case normalization.
-	//
-	// The collection name SHOULD NOT be extracted from `db.query.text`,
-	// when the database system supports query text with multiple collections
-	// in non-batch operations.
-	//
-	// For batch operations, if the individual operations are known to have the same
-	// collection name then that collection name SHOULD be used.
-	DBCollectionNameKey = attribute.Key("db.collection.name")
-
-	// DBNamespaceKey is the attribute Key conforming to the "db.namespace" semantic
-	// conventions. It represents the name of the database, fully qualified within
-	// the server address and port.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "customers", "test.users"
-	// Note: If a database system has multiple namespace components, they SHOULD be
-	// concatenated from the most general to the most specific namespace component,
-	// using `|` as a separator between the components. Any missing components (and
-	// their associated separators) SHOULD be omitted.
-	// Semantic conventions for individual database systems SHOULD document what
-	// `db.namespace` means in the context of that system.
-	// It is RECOMMENDED to capture the value as provided by the application without
-	// attempting to do any case normalization.
-	DBNamespaceKey = attribute.Key("db.namespace")
-
-	// DBOperationBatchSizeKey is the attribute Key conforming to the
-	// "db.operation.batch.size" semantic conventions. It represents the number of
-	// queries included in a batch operation.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: 2, 3, 4
-	// Note: Operations are only considered batches when they contain two or more
-	// operations, and so `db.operation.batch.size` SHOULD never be `1`.
-	DBOperationBatchSizeKey = attribute.Key("db.operation.batch.size")
-
-	// DBOperationNameKey is the attribute Key conforming to the "db.operation.name"
-	// semantic conventions. It represents the name of the operation or command
-	// being executed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "findAndModify", "HMSET", "SELECT"
-	// Note: It is RECOMMENDED to capture the value as provided by the application
-	// without attempting to do any case normalization.
-	//
-	// The operation name SHOULD NOT be extracted from `db.query.text`,
-	// when the database system supports query text with multiple operations
-	// in non-batch operations.
-	//
-	// If spaces can occur in the operation name, multiple consecutive spaces
-	// SHOULD be normalized to a single space.
-	//
-	// For batch operations, if the individual operations are known to have the same
-	// operation name
-	// then that operation name SHOULD be used prepended by `BATCH `,
-	// otherwise `db.operation.name` SHOULD be `BATCH` or some other database
-	// system specific term if more applicable.
-	DBOperationNameKey = attribute.Key("db.operation.name")
-
-	// DBQuerySummaryKey is the attribute Key conforming to the "db.query.summary"
-	// semantic conventions. It represents the low cardinality summary of a database
-	// query.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "SELECT wuser_table", "INSERT shipping_details SELECT orders", "get
-	// user by id"
-	// Note: The query summary describes a class of database queries and is useful
-	// as a grouping key, especially when analyzing telemetry for database
-	// calls involving complex queries.
-	//
-	// Summary may be available to the instrumentation through
-	// instrumentation hooks or other means. If it is not available,
-	// instrumentations
-	// that support query parsing SHOULD generate a summary following
-	// [Generating query summary]
-	// section.
-	//
-	// [Generating query summary]: /docs/db/database-spans.md#generating-a-summary-of-the-query
-	DBQuerySummaryKey = attribute.Key("db.query.summary")
-
-	// DBQueryTextKey is the attribute Key conforming to the "db.query.text"
-	// semantic conventions. It represents the database query being executed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "SELECT * FROM wuser_table where username = ?", "SET mykey ?"
-	// Note: For sanitization see [Sanitization of `db.query.text`].
-	// For batch operations, if the individual operations are known to have the same
-	// query text then that query text SHOULD be used, otherwise all of the
-	// individual query texts SHOULD be concatenated with separator `; ` or some
-	// other database system specific separator if more applicable.
-	// Parameterized query text SHOULD NOT be sanitized. Even though parameterized
-	// query text can potentially have sensitive data, by using a parameterized
-	// query the user is giving a strong signal that any sensitive data will be
-	// passed as parameter values, and the benefit to observability of capturing the
-	// static part of the query text by default outweighs the risk.
-	//
-	// [Sanitization of `db.query.text`]: /docs/db/database-spans.md#sanitization-of-dbquerytext
-	DBQueryTextKey = attribute.Key("db.query.text")
-
-	// DBResponseReturnedRowsKey is the attribute Key conforming to the
-	// "db.response.returned_rows" semantic conventions. It represents the number of
-	// rows returned by the operation.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 10, 30, 1000
-	DBResponseReturnedRowsKey = attribute.Key("db.response.returned_rows")
-
-	// DBResponseStatusCodeKey is the attribute Key conforming to the
-	// "db.response.status_code" semantic conventions. It represents the database
-	// response status code.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "102", "ORA-17002", "08P01", "404"
-	// Note: The status code returned by the database. Usually it represents an
-	// error code, but may also represent partial success, warning, or differentiate
-	// between various types of successful outcomes.
-	// Semantic conventions for individual database systems SHOULD document what
-	// `db.response.status_code` means in the context of that system.
-	DBResponseStatusCodeKey = attribute.Key("db.response.status_code")
-
-	// DBStoredProcedureNameKey is the attribute Key conforming to the
-	// "db.stored_procedure.name" semantic conventions. It represents the name of a
-	// stored procedure within the database.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "GetCustomer"
-	// Note: It is RECOMMENDED to capture the value as provided by the application
-	// without attempting to do any case normalization.
-	//
-	// For batch operations, if the individual operations are known to have the same
-	// stored procedure name then that stored procedure name SHOULD be used.
-	DBStoredProcedureNameKey = attribute.Key("db.stored_procedure.name")
-
-	// DBSystemNameKey is the attribute Key conforming to the "db.system.name"
-	// semantic conventions. It represents the database management system (DBMS)
-	// product as identified by the client instrumentation.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples:
-	// Note: The actual DBMS may differ from the one identified by the client. For
-	// example, when using PostgreSQL client libraries to connect to a CockroachDB,
-	// the `db.system.name` is set to `postgresql` based on the instrumentation's
-	// best knowledge.
-	DBSystemNameKey = attribute.Key("db.system.name")
-)
-
-// DBClientConnectionPoolName returns an attribute KeyValue conforming to the
-// "db.client.connection.pool.name" semantic conventions. It represents the name
-// of the connection pool; unique within the instrumented application. In case
-// the connection pool implementation doesn't provide a name, instrumentation
-// SHOULD use a combination of parameters that would make the name unique, for
-// example, combining attributes `server.address`, `server.port`, and
-// `db.namespace`, formatted as `server.address:server.port/db.namespace`.
-// Instrumentations that generate connection pool name following different
-// patterns SHOULD document it.
-func DBClientConnectionPoolName(val string) attribute.KeyValue {
-	return DBClientConnectionPoolNameKey.String(val)
-}
-
-// DBCollectionName returns an attribute KeyValue conforming to the
-// "db.collection.name" semantic conventions. It represents the name of a
-// collection (table, container) within the database.
-func DBCollectionName(val string) attribute.KeyValue {
-	return DBCollectionNameKey.String(val)
-}
-
-// DBNamespace returns an attribute KeyValue conforming to the "db.namespace"
-// semantic conventions. It represents the name of the database, fully qualified
-// within the server address and port.
-func DBNamespace(val string) attribute.KeyValue {
-	return DBNamespaceKey.String(val)
-}
-
-// DBOperationBatchSize returns an attribute KeyValue conforming to the
-// "db.operation.batch.size" semantic conventions. It represents the number of
-// queries included in a batch operation.
-func DBOperationBatchSize(val int) attribute.KeyValue {
-	return DBOperationBatchSizeKey.Int(val)
-}
-
-// DBOperationName returns an attribute KeyValue conforming to the
-// "db.operation.name" semantic conventions. It represents the name of the
-// operation or command being executed.
-func DBOperationName(val string) attribute.KeyValue {
-	return DBOperationNameKey.String(val)
-}
-
-// DBOperationParameter returns an attribute KeyValue conforming to the
-// "db.operation.parameter" semantic conventions. It represents a database
-// operation parameter, with `<key>` being the parameter name, and the attribute
-// value being a string representation of the parameter value.
-func DBOperationParameter(key string, val string) attribute.KeyValue {
-	return attribute.String("db.operation.parameter."+key, val)
-}
-
-// DBQueryParameter returns an attribute KeyValue conforming to the
-// "db.query.parameter" semantic conventions. It represents a database query
-// parameter, with `<key>` being the parameter name, and the attribute value
-// being a string representation of the parameter value.
-func DBQueryParameter(key string, val string) attribute.KeyValue {
-	return attribute.String("db.query.parameter."+key, val)
-}
-
-// DBQuerySummary returns an attribute KeyValue conforming to the
-// "db.query.summary" semantic conventions. It represents the low cardinality
-// summary of a database query.
-func DBQuerySummary(val string) attribute.KeyValue {
-	return DBQuerySummaryKey.String(val)
-}
-
-// DBQueryText returns an attribute KeyValue conforming to the "db.query.text"
-// semantic conventions. It represents the database query being executed.
-func DBQueryText(val string) attribute.KeyValue {
-	return DBQueryTextKey.String(val)
-}
-
-// DBResponseReturnedRows returns an attribute KeyValue conforming to the
-// "db.response.returned_rows" semantic conventions. It represents the number of
-// rows returned by the operation.
-func DBResponseReturnedRows(val int) attribute.KeyValue {
-	return DBResponseReturnedRowsKey.Int(val)
-}
-
-// DBResponseStatusCode returns an attribute KeyValue conforming to the
-// "db.response.status_code" semantic conventions. It represents the database
-// response status code.
-func DBResponseStatusCode(val string) attribute.KeyValue {
-	return DBResponseStatusCodeKey.String(val)
-}
-
-// DBStoredProcedureName returns an attribute KeyValue conforming to the
-// "db.stored_procedure.name" semantic conventions. It represents the name of a
-// stored procedure within the database.
-func DBStoredProcedureName(val string) attribute.KeyValue {
-	return DBStoredProcedureNameKey.String(val)
-}
-
-// Enum values for db.client.connection.state
-var (
-	// idle
-	// Stability: development
-	DBClientConnectionStateIdle = DBClientConnectionStateKey.String("idle")
-	// used
-	// Stability: development
-	DBClientConnectionStateUsed = DBClientConnectionStateKey.String("used")
-)
-
-// Enum values for db.system.name
-var (
-	// Some other SQL database. Fallback only.
-	// Stability: development
-	DBSystemNameOtherSQL = DBSystemNameKey.String("other_sql")
-	// [Adabas (Adaptable Database System)]
-	// Stability: development
-	//
-	// [Adabas (Adaptable Database System)]: https://documentation.softwareag.com/?pf=adabas
-	DBSystemNameSoftwareagAdabas = DBSystemNameKey.String("softwareag.adabas")
-	// [Actian Ingres]
-	// Stability: development
-	//
-	// [Actian Ingres]: https://www.actian.com/databases/ingres/
-	DBSystemNameActianIngres = DBSystemNameKey.String("actian.ingres")
-	// [Amazon DynamoDB]
-	// Stability: development
-	//
-	// [Amazon DynamoDB]: https://aws.amazon.com/pm/dynamodb/
-	DBSystemNameAWSDynamoDB = DBSystemNameKey.String("aws.dynamodb")
-	// [Amazon Redshift]
-	// Stability: development
-	//
-	// [Amazon Redshift]: https://aws.amazon.com/redshift/
-	DBSystemNameAWSRedshift = DBSystemNameKey.String("aws.redshift")
-	// [Azure Cosmos DB]
-	// Stability: development
-	//
-	// [Azure Cosmos DB]: https://learn.microsoft.com/azure/cosmos-db
-	DBSystemNameAzureCosmosDB = DBSystemNameKey.String("azure.cosmosdb")
-	// [InterSystems Caché]
-	// Stability: development
-	//
-	// [InterSystems Caché]: https://www.intersystems.com/products/cache/
-	DBSystemNameIntersystemsCache = DBSystemNameKey.String("intersystems.cache")
-	// [Apache Cassandra]
-	// Stability: development
-	//
-	// [Apache Cassandra]: https://cassandra.apache.org/
-	DBSystemNameCassandra = DBSystemNameKey.String("cassandra")
-	// [ClickHouse]
-	// Stability: development
-	//
-	// [ClickHouse]: https://clickhouse.com/
-	DBSystemNameClickHouse = DBSystemNameKey.String("clickhouse")
-	// [CockroachDB]
-	// Stability: development
-	//
-	// [CockroachDB]: https://www.cockroachlabs.com/
-	DBSystemNameCockroachDB = DBSystemNameKey.String("cockroachdb")
-	// [Couchbase]
-	// Stability: development
-	//
-	// [Couchbase]: https://www.couchbase.com/
-	DBSystemNameCouchbase = DBSystemNameKey.String("couchbase")
-	// [Apache CouchDB]
-	// Stability: development
-	//
-	// [Apache CouchDB]: https://couchdb.apache.org/
-	DBSystemNameCouchDB = DBSystemNameKey.String("couchdb")
-	// [Apache Derby]
-	// Stability: development
-	//
-	// [Apache Derby]: https://db.apache.org/derby/
-	DBSystemNameDerby = DBSystemNameKey.String("derby")
-	// [Elasticsearch]
-	// Stability: development
-	//
-	// [Elasticsearch]: https://www.elastic.co/elasticsearch
-	DBSystemNameElasticsearch = DBSystemNameKey.String("elasticsearch")
-	// [Firebird]
-	// Stability: development
-	//
-	// [Firebird]: https://www.firebirdsql.org/
-	DBSystemNameFirebirdSQL = DBSystemNameKey.String("firebirdsql")
-	// [Google Cloud Spanner]
-	// Stability: development
-	//
-	// [Google Cloud Spanner]: https://cloud.google.com/spanner
-	DBSystemNameGCPSpanner = DBSystemNameKey.String("gcp.spanner")
-	// [Apache Geode]
-	// Stability: development
-	//
-	// [Apache Geode]: https://geode.apache.org/
-	DBSystemNameGeode = DBSystemNameKey.String("geode")
-	// [H2 Database]
-	// Stability: development
-	//
-	// [H2 Database]: https://h2database.com/
-	DBSystemNameH2database = DBSystemNameKey.String("h2database")
-	// [Apache HBase]
-	// Stability: development
-	//
-	// [Apache HBase]: https://hbase.apache.org/
-	DBSystemNameHBase = DBSystemNameKey.String("hbase")
-	// [Apache Hive]
-	// Stability: development
-	//
-	// [Apache Hive]: https://hive.apache.org/
-	DBSystemNameHive = DBSystemNameKey.String("hive")
-	// [HyperSQL Database]
-	// Stability: development
-	//
-	// [HyperSQL Database]: https://hsqldb.org/
-	DBSystemNameHSQLDB = DBSystemNameKey.String("hsqldb")
-	// [IBM Db2]
-	// Stability: development
-	//
-	// [IBM Db2]: https://www.ibm.com/db2
-	DBSystemNameIBMDB2 = DBSystemNameKey.String("ibm.db2")
-	// [IBM Informix]
-	// Stability: development
-	//
-	// [IBM Informix]: https://www.ibm.com/products/informix
-	DBSystemNameIBMInformix = DBSystemNameKey.String("ibm.informix")
-	// [IBM Netezza]
-	// Stability: development
-	//
-	// [IBM Netezza]: https://www.ibm.com/products/netezza
-	DBSystemNameIBMNetezza = DBSystemNameKey.String("ibm.netezza")
-	// [InfluxDB]
-	// Stability: development
-	//
-	// [InfluxDB]: https://www.influxdata.com/
-	DBSystemNameInfluxDB = DBSystemNameKey.String("influxdb")
-	// [Instant]
-	// Stability: development
-	//
-	// [Instant]: https://www.instantdb.com/
-	DBSystemNameInstantDB = DBSystemNameKey.String("instantdb")
-	// [MariaDB]
-	// Stability: stable
-	//
-	// [MariaDB]: https://mariadb.org/
-	DBSystemNameMariaDB = DBSystemNameKey.String("mariadb")
-	// [Memcached]
-	// Stability: development
-	//
-	// [Memcached]: https://memcached.org/
-	DBSystemNameMemcached = DBSystemNameKey.String("memcached")
-	// [MongoDB]
-	// Stability: development
-	//
-	// [MongoDB]: https://www.mongodb.com/
-	DBSystemNameMongoDB = DBSystemNameKey.String("mongodb")
-	// [Microsoft SQL Server]
-	// Stability: stable
-	//
-	// [Microsoft SQL Server]: https://www.microsoft.com/sql-server
-	DBSystemNameMicrosoftSQLServer = DBSystemNameKey.String("microsoft.sql_server")
-	// [MySQL]
-	// Stability: stable
-	//
-	// [MySQL]: https://www.mysql.com/
-	DBSystemNameMySQL = DBSystemNameKey.String("mysql")
-	// [Neo4j]
-	// Stability: development
-	//
-	// [Neo4j]: https://neo4j.com/
-	DBSystemNameNeo4j = DBSystemNameKey.String("neo4j")
-	// [OpenSearch]
-	// Stability: development
-	//
-	// [OpenSearch]: https://opensearch.org/
-	DBSystemNameOpenSearch = DBSystemNameKey.String("opensearch")
-	// [Oracle Database]
-	// Stability: development
-	//
-	// [Oracle Database]: https://www.oracle.com/database/
-	DBSystemNameOracleDB = DBSystemNameKey.String("oracle.db")
-	// [PostgreSQL]
-	// Stability: stable
-	//
-	// [PostgreSQL]: https://www.postgresql.org/
-	DBSystemNamePostgreSQL = DBSystemNameKey.String("postgresql")
-	// [Redis]
-	// Stability: development
-	//
-	// [Redis]: https://redis.io/
-	DBSystemNameRedis = DBSystemNameKey.String("redis")
-	// [SAP HANA]
-	// Stability: development
-	//
-	// [SAP HANA]: https://www.sap.com/products/technology-platform/hana/what-is-sap-hana.html
-	DBSystemNameSAPHANA = DBSystemNameKey.String("sap.hana")
-	// [SAP MaxDB]
-	// Stability: development
-	//
-	// [SAP MaxDB]: https://maxdb.sap.com/
-	DBSystemNameSAPMaxDB = DBSystemNameKey.String("sap.maxdb")
-	// [SQLite]
-	// Stability: development
-	//
-	// [SQLite]: https://www.sqlite.org/
-	DBSystemNameSQLite = DBSystemNameKey.String("sqlite")
-	// [Teradata]
-	// Stability: development
-	//
-	// [Teradata]: https://www.teradata.com/
-	DBSystemNameTeradata = DBSystemNameKey.String("teradata")
-	// [Trino]
-	// Stability: development
-	//
-	// [Trino]: https://trino.io/
-	DBSystemNameTrino = DBSystemNameKey.String("trino")
-)
-
-// Namespace: deployment
-const (
-	// DeploymentEnvironmentNameKey is the attribute Key conforming to the
-	// "deployment.environment.name" semantic conventions. It represents the name of
-	// the [deployment environment] (aka deployment tier).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "staging", "production"
-	// Note: `deployment.environment.name` does not affect the uniqueness
-	// constraints defined through
-	// the `service.namespace`, `service.name` and `service.instance.id` resource
-	// attributes.
-	// This implies that resources carrying the following attribute combinations
-	// MUST be
-	// considered to be identifying the same service:
-	//
-	//   - `service.name=frontend`, `deployment.environment.name=production`
-	//   - `service.name=frontend`, `deployment.environment.name=staging`.
-	//
-	//
-	// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment
-	DeploymentEnvironmentNameKey = attribute.Key("deployment.environment.name")
-
-	// DeploymentIDKey is the attribute Key conforming to the "deployment.id"
-	// semantic conventions. It represents the id of the deployment.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1208"
-	DeploymentIDKey = attribute.Key("deployment.id")
-
-	// DeploymentNameKey is the attribute Key conforming to the "deployment.name"
-	// semantic conventions. It represents the name of the deployment.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "deploy my app", "deploy-frontend"
-	DeploymentNameKey = attribute.Key("deployment.name")
-
-	// DeploymentStatusKey is the attribute Key conforming to the
-	// "deployment.status" semantic conventions. It represents the status of the
-	// deployment.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	DeploymentStatusKey = attribute.Key("deployment.status")
-)
-
-// DeploymentEnvironmentName returns an attribute KeyValue conforming to the
-// "deployment.environment.name" semantic conventions. It represents the name of
-// the [deployment environment] (aka deployment tier).
-//
-// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment
-func DeploymentEnvironmentName(val string) attribute.KeyValue {
-	return DeploymentEnvironmentNameKey.String(val)
-}
-
-// DeploymentID returns an attribute KeyValue conforming to the "deployment.id"
-// semantic conventions. It represents the id of the deployment.
-func DeploymentID(val string) attribute.KeyValue {
-	return DeploymentIDKey.String(val)
-}
-
-// DeploymentName returns an attribute KeyValue conforming to the
-// "deployment.name" semantic conventions. It represents the name of the
-// deployment.
-func DeploymentName(val string) attribute.KeyValue {
-	return DeploymentNameKey.String(val)
-}
-
-// Enum values for deployment.status
-var (
-	// failed
-	// Stability: development
-	DeploymentStatusFailed = DeploymentStatusKey.String("failed")
-	// succeeded
-	// Stability: development
-	DeploymentStatusSucceeded = DeploymentStatusKey.String("succeeded")
-)
-
-// Namespace: destination
-const (
-	// DestinationAddressKey is the attribute Key conforming to the
-	// "destination.address" semantic conventions. It represents the destination
-	// address - domain name if available without reverse DNS lookup; otherwise, IP
-	// address or Unix domain socket name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "destination.example.com", "10.1.2.80", "/tmp/my.sock"
-	// Note: When observed from the source side, and when communicating through an
-	// intermediary, `destination.address` SHOULD represent the destination address
-	// behind any intermediaries, for example proxies, if it's available.
-	DestinationAddressKey = attribute.Key("destination.address")
-
-	// DestinationPortKey is the attribute Key conforming to the "destination.port"
-	// semantic conventions. It represents the destination port number.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 3389, 2888
-	DestinationPortKey = attribute.Key("destination.port")
-)
-
-// DestinationAddress returns an attribute KeyValue conforming to the
-// "destination.address" semantic conventions. It represents the destination
-// address - domain name if available without reverse DNS lookup; otherwise, IP
-// address or Unix domain socket name.
-func DestinationAddress(val string) attribute.KeyValue {
-	return DestinationAddressKey.String(val)
-}
-
-// DestinationPort returns an attribute KeyValue conforming to the
-// "destination.port" semantic conventions. It represents the destination port
-// number.
-func DestinationPort(val int) attribute.KeyValue {
-	return DestinationPortKey.Int(val)
-}
-
-// Namespace: device
-const (
-	// DeviceIDKey is the attribute Key conforming to the "device.id" semantic
-	// conventions. It represents a unique identifier representing the device.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "123456789012345", "01:23:45:67:89:AB"
-	// Note: Its value SHOULD be identical for all apps on a device and it SHOULD
-	// NOT change if an app is uninstalled and re-installed.
-	// However, it might be resettable by the user for all apps on a device.
-	// Hardware IDs (e.g. vendor-specific serial number, IMEI or MAC address) MAY be
-	// used as values.
-	//
-	// More information about Android identifier best practices can be found in the
-	// [Android user data IDs guide].
-	//
-	// > [!WARNING]> This attribute may contain sensitive (PII) information. Caution
-	// > should be taken when storing personal data or anything which can identify a
-	// > user. GDPR and data protection laws may apply,
-	// > ensure you do your own due diligence.> Due to these reasons, this
-	// > identifier is not recommended for consumer applications and will likely
-	// > result in rejection from both Google Play and App Store.
-	// > However, it may be appropriate for specific enterprise scenarios, such as
-	// > kiosk devices or enterprise-managed devices, with appropriate compliance
-	// > clearance.
-	// > Any instrumentation providing this identifier MUST implement it as an
-	// > opt-in feature.> See [`app.installation.id`]>  for a more
-	// > privacy-preserving alternative.
-	//
-	// [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids
-	// [`app.installation.id`]: /docs/registry/attributes/app.md#app-installation-id
-	DeviceIDKey = attribute.Key("device.id")
-
-	// DeviceManufacturerKey is the attribute Key conforming to the
-	// "device.manufacturer" semantic conventions. It represents the name of the
-	// device manufacturer.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Apple", "Samsung"
-	// Note: The Android OS provides this field via [Build]. iOS apps SHOULD
-	// hardcode the value `Apple`.
-	//
-	// [Build]: https://developer.android.com/reference/android/os/Build#MANUFACTURER
-	DeviceManufacturerKey = attribute.Key("device.manufacturer")
-
-	// DeviceModelIdentifierKey is the attribute Key conforming to the
-	// "device.model.identifier" semantic conventions. It represents the model
-	// identifier for the device.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "iPhone3,4", "SM-G920F"
-	// Note: It's recommended this value represents a machine-readable version of
-	// the model identifier rather than the market or consumer-friendly name of the
-	// device.
-	DeviceModelIdentifierKey = attribute.Key("device.model.identifier")
-
-	// DeviceModelNameKey is the attribute Key conforming to the "device.model.name"
-	// semantic conventions. It represents the marketing name for the device model.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "iPhone 6s Plus", "Samsung Galaxy S6"
-	// Note: It's recommended this value represents a human-readable version of the
-	// device model rather than a machine-readable alternative.
-	DeviceModelNameKey = attribute.Key("device.model.name")
-)
-
-// DeviceID returns an attribute KeyValue conforming to the "device.id" semantic
-// conventions. It represents a unique identifier representing the device.
-func DeviceID(val string) attribute.KeyValue {
-	return DeviceIDKey.String(val)
-}
-
-// DeviceManufacturer returns an attribute KeyValue conforming to the
-// "device.manufacturer" semantic conventions. It represents the name of the
-// device manufacturer.
-func DeviceManufacturer(val string) attribute.KeyValue {
-	return DeviceManufacturerKey.String(val)
-}
-
-// DeviceModelIdentifier returns an attribute KeyValue conforming to the
-// "device.model.identifier" semantic conventions. It represents the model
-// identifier for the device.
-func DeviceModelIdentifier(val string) attribute.KeyValue {
-	return DeviceModelIdentifierKey.String(val)
-}
-
-// DeviceModelName returns an attribute KeyValue conforming to the
-// "device.model.name" semantic conventions. It represents the marketing name for
-// the device model.
-func DeviceModelName(val string) attribute.KeyValue {
-	return DeviceModelNameKey.String(val)
-}
-
-// Namespace: disk
-const (
-	// DiskIODirectionKey is the attribute Key conforming to the "disk.io.direction"
-	// semantic conventions. It represents the disk IO operation direction.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "read"
-	DiskIODirectionKey = attribute.Key("disk.io.direction")
-)
-
-// Enum values for disk.io.direction
-var (
-	// read
-	// Stability: development
-	DiskIODirectionRead = DiskIODirectionKey.String("read")
-	// write
-	// Stability: development
-	DiskIODirectionWrite = DiskIODirectionKey.String("write")
-)
-
-// Namespace: dns
-const (
-	// DNSAnswersKey is the attribute Key conforming to the "dns.answers" semantic
-	// conventions. It represents the list of IPv4 or IPv6 addresses resolved during
-	// DNS lookup.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "10.0.0.1", "2001:0db8:85a3:0000:0000:8a2e:0370:7334"
-	DNSAnswersKey = attribute.Key("dns.answers")
-
-	// DNSQuestionNameKey is the attribute Key conforming to the "dns.question.name"
-	// semantic conventions. It represents the name being queried.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "www.example.com", "opentelemetry.io"
-	// Note: The name represents the queried domain name as it appears in the DNS
-	// query without any additional normalization.
-	DNSQuestionNameKey = attribute.Key("dns.question.name")
-)
-
-// DNSAnswers returns an attribute KeyValue conforming to the "dns.answers"
-// semantic conventions. It represents the list of IPv4 or IPv6 addresses
-// resolved during DNS lookup.
-func DNSAnswers(val ...string) attribute.KeyValue {
-	return DNSAnswersKey.StringSlice(val)
-}
-
-// DNSQuestionName returns an attribute KeyValue conforming to the
-// "dns.question.name" semantic conventions. It represents the name being
-// queried.
-func DNSQuestionName(val string) attribute.KeyValue {
-	return DNSQuestionNameKey.String(val)
-}
-
-// Namespace: elasticsearch
-const (
-	// ElasticsearchNodeNameKey is the attribute Key conforming to the
-	// "elasticsearch.node.name" semantic conventions. It represents the represents
-	// the human-readable identifier of the node/instance to which a request was
-	// routed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "instance-0000000001"
-	ElasticsearchNodeNameKey = attribute.Key("elasticsearch.node.name")
-)
-
-// ElasticsearchNodeName returns an attribute KeyValue conforming to the
-// "elasticsearch.node.name" semantic conventions. It represents the represents
-// the human-readable identifier of the node/instance to which a request was
-// routed.
-func ElasticsearchNodeName(val string) attribute.KeyValue {
-	return ElasticsearchNodeNameKey.String(val)
-}
-
-// Namespace: enduser
-const (
-	// EnduserIDKey is the attribute Key conforming to the "enduser.id" semantic
-	// conventions. It represents the unique identifier of an end user in the
-	// system. It maybe a username, email address, or other identifier.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "username"
-	// Note: Unique identifier of an end user in the system.
-	//
-	// > [!Warning]
-	// > This field contains sensitive (PII) information.
-	EnduserIDKey = attribute.Key("enduser.id")
-
-	// EnduserPseudoIDKey is the attribute Key conforming to the "enduser.pseudo.id"
-	// semantic conventions. It represents the pseudonymous identifier of an end
-	// user. This identifier should be a random value that is not directly linked or
-	// associated with the end user's actual identity.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "QdH5CAWJgqVT4rOr0qtumf"
-	// Note: Pseudonymous identifier of an end user.
-	//
-	// > [!Warning]
-	// > This field contains sensitive (linkable PII) information.
-	EnduserPseudoIDKey = attribute.Key("enduser.pseudo.id")
-)
-
-// EnduserID returns an attribute KeyValue conforming to the "enduser.id"
-// semantic conventions. It represents the unique identifier of an end user in
-// the system. It maybe a username, email address, or other identifier.
-func EnduserID(val string) attribute.KeyValue {
-	return EnduserIDKey.String(val)
-}
-
-// EnduserPseudoID returns an attribute KeyValue conforming to the
-// "enduser.pseudo.id" semantic conventions. It represents the pseudonymous
-// identifier of an end user. This identifier should be a random value that is
-// not directly linked or associated with the end user's actual identity.
-func EnduserPseudoID(val string) attribute.KeyValue {
-	return EnduserPseudoIDKey.String(val)
-}
-
-// Namespace: error
-const (
-	// ErrorMessageKey is the attribute Key conforming to the "error.message"
-	// semantic conventions. It represents a message providing more detail about an
-	// error in human-readable form.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Unexpected input type: string", "The user has exceeded their
-	// storage quota"
-	// Note: `error.message` should provide additional context and detail about an
-	// error.
-	// It is NOT RECOMMENDED to duplicate the value of `error.type` in
-	// `error.message`.
-	// It is also NOT RECOMMENDED to duplicate the value of `exception.message` in
-	// `error.message`.
-	//
-	// `error.message` is NOT RECOMMENDED for metrics or spans due to its unbounded
-	// cardinality and overlap with span status.
-	ErrorMessageKey = attribute.Key("error.message")
-
-	// ErrorTypeKey is the attribute Key conforming to the "error.type" semantic
-	// conventions. It represents the describes a class of error the operation ended
-	// with.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "timeout", "java.net.UnknownHostException",
-	// "server_certificate_invalid", "500"
-	// Note: The `error.type` SHOULD be predictable, and SHOULD have low
-	// cardinality.
-	//
-	// When `error.type` is set to a type (e.g., an exception type), its
-	// canonical class name identifying the type within the artifact SHOULD be used.
-	//
-	// Instrumentations SHOULD document the list of errors they report.
-	//
-	// The cardinality of `error.type` within one instrumentation library SHOULD be
-	// low.
-	// Telemetry consumers that aggregate data from multiple instrumentation
-	// libraries and applications
-	// should be prepared for `error.type` to have high cardinality at query time
-	// when no
-	// additional filters are applied.
-	//
-	// If the operation has completed successfully, instrumentations SHOULD NOT set
-	// `error.type`.
-	//
-	// If a specific domain defines its own set of error identifiers (such as HTTP
-	// or RPC status codes),
-	// it's RECOMMENDED to:
-	//
-	//   - Use a domain-specific attribute
-	//   - Set `error.type` to capture all errors, regardless of whether they are
-	//     defined within the domain-specific set or not.
-	ErrorTypeKey = attribute.Key("error.type")
-)
-
-// ErrorMessage returns an attribute KeyValue conforming to the "error.message"
-// semantic conventions. It represents a message providing more detail about an
-// error in human-readable form.
-func ErrorMessage(val string) attribute.KeyValue {
-	return ErrorMessageKey.String(val)
-}
-
-// Enum values for error.type
-var (
-	// A fallback error value to be used when the instrumentation doesn't define a
-	// custom value.
-	//
-	// Stability: stable
-	ErrorTypeOther = ErrorTypeKey.String("_OTHER")
-)
-
-// Namespace: exception
-const (
-	// ExceptionMessageKey is the attribute Key conforming to the
-	// "exception.message" semantic conventions. It represents the exception
-	// message.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "Division by zero", "Can't convert 'int' object to str implicitly"
-	ExceptionMessageKey = attribute.Key("exception.message")
-
-	// ExceptionStacktraceKey is the attribute Key conforming to the
-	// "exception.stacktrace" semantic conventions. It represents a stacktrace as a
-	// string in the natural representation for the language runtime. The
-	// representation is to be determined and documented by each language SIG.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: Exception in thread "main" java.lang.RuntimeException: Test
-	// exception\n at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at
-	// com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at
-	// com.example.GenerateTrace.main(GenerateTrace.java:5)
-	ExceptionStacktraceKey = attribute.Key("exception.stacktrace")
-
-	// ExceptionTypeKey is the attribute Key conforming to the "exception.type"
-	// semantic conventions. It represents the type of the exception (its
-	// fully-qualified class name, if applicable). The dynamic type of the exception
-	// should be preferred over the static type in languages that support it.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "java.net.ConnectException", "OSError"
-	ExceptionTypeKey = attribute.Key("exception.type")
-)
-
-// ExceptionMessage returns an attribute KeyValue conforming to the
-// "exception.message" semantic conventions. It represents the exception message.
-func ExceptionMessage(val string) attribute.KeyValue {
-	return ExceptionMessageKey.String(val)
-}
-
-// ExceptionStacktrace returns an attribute KeyValue conforming to the
-// "exception.stacktrace" semantic conventions. It represents a stacktrace as a
-// string in the natural representation for the language runtime. The
-// representation is to be determined and documented by each language SIG.
-func ExceptionStacktrace(val string) attribute.KeyValue {
-	return ExceptionStacktraceKey.String(val)
-}
-
-// ExceptionType returns an attribute KeyValue conforming to the "exception.type"
-// semantic conventions. It represents the type of the exception (its
-// fully-qualified class name, if applicable). The dynamic type of the exception
-// should be preferred over the static type in languages that support it.
-func ExceptionType(val string) attribute.KeyValue {
-	return ExceptionTypeKey.String(val)
-}
-
-// Namespace: faas
-const (
-	// FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart"
-	// semantic conventions. It represents a boolean that is true if the serverless
-	// function is executed for the first time (aka cold-start).
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	FaaSColdstartKey = attribute.Key("faas.coldstart")
-
-	// FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic
-	// conventions. It represents a string containing the schedule period as
-	// [Cron Expression].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0/5 * * * ? *
-	//
-	// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm
-	FaaSCronKey = attribute.Key("faas.cron")
-
-	// FaaSDocumentCollectionKey is the attribute Key conforming to the
-	// "faas.document.collection" semantic conventions. It represents the name of
-	// the source on which the triggering operation was performed. For example, in
-	// Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the
-	// database name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "myBucketName", "myDbName"
-	FaaSDocumentCollectionKey = attribute.Key("faas.document.collection")
-
-	// FaaSDocumentNameKey is the attribute Key conforming to the
-	// "faas.document.name" semantic conventions. It represents the document
-	// name/table subjected to the operation. For example, in Cloud Storage or S3 is
-	// the name of the file, and in Cosmos DB the table name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "myFile.txt", "myTableName"
-	FaaSDocumentNameKey = attribute.Key("faas.document.name")
-
-	// FaaSDocumentOperationKey is the attribute Key conforming to the
-	// "faas.document.operation" semantic conventions. It represents the describes
-	// the type of the operation that was performed on the data.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	FaaSDocumentOperationKey = attribute.Key("faas.document.operation")
-
-	// FaaSDocumentTimeKey is the attribute Key conforming to the
-	// "faas.document.time" semantic conventions. It represents a string containing
-	// the time when the data was accessed in the [ISO 8601] format expressed in
-	// [UTC].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 2020-01-23T13:47:06Z
-	//
-	// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
-	// [UTC]: https://www.w3.org/TR/NOTE-datetime
-	FaaSDocumentTimeKey = attribute.Key("faas.document.time")
-
-	// FaaSInstanceKey is the attribute Key conforming to the "faas.instance"
-	// semantic conventions. It represents the execution environment ID as a string,
-	// that will be potentially reused for other invocations to the same
-	// function/function version.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de"
-	// Note: - **AWS Lambda:** Use the (full) log stream name.
-	FaaSInstanceKey = attribute.Key("faas.instance")
-
-	// FaaSInvocationIDKey is the attribute Key conforming to the
-	// "faas.invocation_id" semantic conventions. It represents the invocation ID of
-	// the current function invocation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: af9d5aa4-a685-4c5f-a22b-444f80b3cc28
-	FaaSInvocationIDKey = attribute.Key("faas.invocation_id")
-
-	// FaaSInvokedNameKey is the attribute Key conforming to the "faas.invoked_name"
-	// semantic conventions. It represents the name of the invoked function.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: my-function
-	// Note: SHOULD be equal to the `faas.name` resource attribute of the invoked
-	// function.
-	FaaSInvokedNameKey = attribute.Key("faas.invoked_name")
-
-	// FaaSInvokedProviderKey is the attribute Key conforming to the
-	// "faas.invoked_provider" semantic conventions. It represents the cloud
-	// provider of the invoked function.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: SHOULD be equal to the `cloud.provider` resource attribute of the
-	// invoked function.
-	FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider")
-
-	// FaaSInvokedRegionKey is the attribute Key conforming to the
-	// "faas.invoked_region" semantic conventions. It represents the cloud region of
-	// the invoked function.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: eu-central-1
-	// Note: SHOULD be equal to the `cloud.region` resource attribute of the invoked
-	// function.
-	FaaSInvokedRegionKey = attribute.Key("faas.invoked_region")
-
-	// FaaSMaxMemoryKey is the attribute Key conforming to the "faas.max_memory"
-	// semantic conventions. It represents the amount of memory available to the
-	// serverless function converted to Bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Note: It's recommended to set this attribute since e.g. too little memory can
-	// easily stop a Java AWS Lambda function from working correctly. On AWS Lambda,
-	// the environment variable `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this
-	// information (which must be multiplied by 1,048,576).
-	FaaSMaxMemoryKey = attribute.Key("faas.max_memory")
-
-	// FaaSNameKey is the attribute Key conforming to the "faas.name" semantic
-	// conventions. It represents the name of the single function that this runtime
-	// instance executes.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-function", "myazurefunctionapp/some-function-name"
-	// Note: This is the name of the function as configured/deployed on the FaaS
-	// platform and is usually different from the name of the callback
-	// function (which may be stored in the
-	// [`code.namespace`/`code.function.name`]
-	// span attributes).
-	//
-	// For some cloud providers, the above definition is ambiguous. The following
-	// definition of function name MUST be used for this attribute
-	// (and consequently the span name) for the listed cloud providers/products:
-	//
-	//   - **Azure:** The full name `<FUNCAPP>/<FUNC>`, i.e., function app name
-	//     followed by a forward slash followed by the function name (this form
-	//     can also be seen in the resource JSON for the function).
-	//     This means that a span attribute MUST be used, as an Azure function
-	//     app can host multiple functions that would usually share
-	//     a TracerProvider (see also the `cloud.resource_id` attribute).
-	//
-	//
-	// [`code.namespace`/`code.function.name`]: /docs/general/attributes.md#source-code-attributes
-	FaaSNameKey = attribute.Key("faas.name")
-
-	// FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic
-	// conventions. It represents a string containing the function invocation time
-	// in the [ISO 8601] format expressed in [UTC].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 2020-01-23T13:47:06Z
-	//
-	// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
-	// [UTC]: https://www.w3.org/TR/NOTE-datetime
-	FaaSTimeKey = attribute.Key("faas.time")
-
-	// FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" semantic
-	// conventions. It represents the type of the trigger which caused this function
-	// invocation.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	FaaSTriggerKey = attribute.Key("faas.trigger")
-
-	// FaaSVersionKey is the attribute Key conforming to the "faas.version" semantic
-	// conventions. It represents the immutable version of the function being
-	// executed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "26", "pinkfroid-00002"
-	// Note: Depending on the cloud provider and platform, use:
-	//
-	//   - **AWS Lambda:** The [function version]
-	//     (an integer represented as a decimal string).
-	//   - **Google Cloud Run (Services):** The [revision]
-	//     (i.e., the function name plus the revision suffix).
-	//   - **Google Cloud Functions:** The value of the
-	//     [`K_REVISION` environment variable].
-	//   - **Azure Functions:** Not applicable. Do not set this attribute.
-	//
-	//
-	// [function version]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html
-	// [revision]: https://cloud.google.com/run/docs/managing/revisions
-	// [`K_REVISION` environment variable]: https://cloud.google.com/run/docs/container-contract#services-env-vars
-	FaaSVersionKey = attribute.Key("faas.version")
-)
-
-// FaaSColdstart returns an attribute KeyValue conforming to the "faas.coldstart"
-// semantic conventions. It represents a boolean that is true if the serverless
-// function is executed for the first time (aka cold-start).
-func FaaSColdstart(val bool) attribute.KeyValue {
-	return FaaSColdstartKey.Bool(val)
-}
-
-// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" semantic
-// conventions. It represents a string containing the schedule period as
-// [Cron Expression].
-//
-// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm
-func FaaSCron(val string) attribute.KeyValue {
-	return FaaSCronKey.String(val)
-}
-
-// FaaSDocumentCollection returns an attribute KeyValue conforming to the
-// "faas.document.collection" semantic conventions. It represents the name of the
-// source on which the triggering operation was performed. For example, in Cloud
-// Storage or S3 corresponds to the bucket name, and in Cosmos DB to the database
-// name.
-func FaaSDocumentCollection(val string) attribute.KeyValue {
-	return FaaSDocumentCollectionKey.String(val)
-}
-
-// FaaSDocumentName returns an attribute KeyValue conforming to the
-// "faas.document.name" semantic conventions. It represents the document
-// name/table subjected to the operation. For example, in Cloud Storage or S3 is
-// the name of the file, and in Cosmos DB the table name.
-func FaaSDocumentName(val string) attribute.KeyValue {
-	return FaaSDocumentNameKey.String(val)
-}
-
-// FaaSDocumentTime returns an attribute KeyValue conforming to the
-// "faas.document.time" semantic conventions. It represents a string containing
-// the time when the data was accessed in the [ISO 8601] format expressed in
-// [UTC].
-//
-// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
-// [UTC]: https://www.w3.org/TR/NOTE-datetime
-func FaaSDocumentTime(val string) attribute.KeyValue {
-	return FaaSDocumentTimeKey.String(val)
-}
-
-// FaaSInstance returns an attribute KeyValue conforming to the "faas.instance"
-// semantic conventions. It represents the execution environment ID as a string,
-// that will be potentially reused for other invocations to the same
-// function/function version.
-func FaaSInstance(val string) attribute.KeyValue {
-	return FaaSInstanceKey.String(val)
-}
-
-// FaaSInvocationID returns an attribute KeyValue conforming to the
-// "faas.invocation_id" semantic conventions. It represents the invocation ID of
-// the current function invocation.
-func FaaSInvocationID(val string) attribute.KeyValue {
-	return FaaSInvocationIDKey.String(val)
-}
-
-// FaaSInvokedName returns an attribute KeyValue conforming to the
-// "faas.invoked_name" semantic conventions. It represents the name of the
-// invoked function.
-func FaaSInvokedName(val string) attribute.KeyValue {
-	return FaaSInvokedNameKey.String(val)
-}
-
-// FaaSInvokedRegion returns an attribute KeyValue conforming to the
-// "faas.invoked_region" semantic conventions. It represents the cloud region of
-// the invoked function.
-func FaaSInvokedRegion(val string) attribute.KeyValue {
-	return FaaSInvokedRegionKey.String(val)
-}
-
-// FaaSMaxMemory returns an attribute KeyValue conforming to the
-// "faas.max_memory" semantic conventions. It represents the amount of memory
-// available to the serverless function converted to Bytes.
-func FaaSMaxMemory(val int) attribute.KeyValue {
-	return FaaSMaxMemoryKey.Int(val)
-}
-
-// FaaSName returns an attribute KeyValue conforming to the "faas.name" semantic
-// conventions. It represents the name of the single function that this runtime
-// instance executes.
-func FaaSName(val string) attribute.KeyValue {
-	return FaaSNameKey.String(val)
-}
-
-// FaaSTime returns an attribute KeyValue conforming to the "faas.time" semantic
-// conventions. It represents a string containing the function invocation time in
-// the [ISO 8601] format expressed in [UTC].
-//
-// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
-// [UTC]: https://www.w3.org/TR/NOTE-datetime
-func FaaSTime(val string) attribute.KeyValue {
-	return FaaSTimeKey.String(val)
-}
-
-// FaaSVersion returns an attribute KeyValue conforming to the "faas.version"
-// semantic conventions. It represents the immutable version of the function
-// being executed.
-func FaaSVersion(val string) attribute.KeyValue {
-	return FaaSVersionKey.String(val)
-}
-
-// Enum values for faas.document.operation
-var (
-	// When a new object is created.
-	// Stability: development
-	FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert")
-	// When an object is modified.
-	// Stability: development
-	FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit")
-	// When an object is deleted.
-	// Stability: development
-	FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete")
-)
-
-// Enum values for faas.invoked_provider
-var (
-	// Alibaba Cloud
-	// Stability: development
-	FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud")
-	// Amazon Web Services
-	// Stability: development
-	FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws")
-	// Microsoft Azure
-	// Stability: development
-	FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure")
-	// Google Cloud Platform
-	// Stability: development
-	FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp")
-	// Tencent Cloud
-	// Stability: development
-	FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud")
-)
-
-// Enum values for faas.trigger
-var (
-	// A response to some data source operation such as a database or filesystem
-	// read/write
-	// Stability: development
-	FaaSTriggerDatasource = FaaSTriggerKey.String("datasource")
-	// To provide an answer to an inbound HTTP request
-	// Stability: development
-	FaaSTriggerHTTP = FaaSTriggerKey.String("http")
-	// A function is set to be executed when messages are sent to a messaging system
-	// Stability: development
-	FaaSTriggerPubSub = FaaSTriggerKey.String("pubsub")
-	// A function is scheduled to be executed regularly
-	// Stability: development
-	FaaSTriggerTimer = FaaSTriggerKey.String("timer")
-	// If none of the others apply
-	// Stability: development
-	FaaSTriggerOther = FaaSTriggerKey.String("other")
-)
-
-// Namespace: feature_flag
-const (
-	// FeatureFlagContextIDKey is the attribute Key conforming to the
-	// "feature_flag.context.id" semantic conventions. It represents the unique
-	// identifier for the flag evaluation context. For example, the targeting key.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "5157782b-2203-4c80-a857-dbbd5e7761db"
-	FeatureFlagContextIDKey = attribute.Key("feature_flag.context.id")
-
-	// FeatureFlagKeyKey is the attribute Key conforming to the "feature_flag.key"
-	// semantic conventions. It represents the lookup key of the feature flag.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "logo-color"
-	FeatureFlagKeyKey = attribute.Key("feature_flag.key")
-
-	// FeatureFlagProviderNameKey is the attribute Key conforming to the
-	// "feature_flag.provider.name" semantic conventions. It represents the
-	// identifies the feature flag provider.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "Flag Manager"
-	FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider.name")
-
-	// FeatureFlagResultReasonKey is the attribute Key conforming to the
-	// "feature_flag.result.reason" semantic conventions. It represents the reason
-	// code which shows how a feature flag value was determined.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "static", "targeting_match", "error", "default"
-	FeatureFlagResultReasonKey = attribute.Key("feature_flag.result.reason")
-
-	// FeatureFlagResultValueKey is the attribute Key conforming to the
-	// "feature_flag.result.value" semantic conventions. It represents the evaluated
-	// value of the feature flag.
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "#ff0000", true, 3
-	// Note: With some feature flag providers, feature flag results can be quite
-	// large or contain private or sensitive details.
-	// Because of this, `feature_flag.result.variant` is often the preferred
-	// attribute if it is available.
-	//
-	// It may be desirable to redact or otherwise limit the size and scope of
-	// `feature_flag.result.value` if possible.
-	// Because the evaluated flag value is unstructured and may be any type, it is
-	// left to the instrumentation author to determine how best to achieve this.
-	FeatureFlagResultValueKey = attribute.Key("feature_flag.result.value")
-
-	// FeatureFlagResultVariantKey is the attribute Key conforming to the
-	// "feature_flag.result.variant" semantic conventions. It represents a semantic
-	// identifier for an evaluated flag value.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "red", "true", "on"
-	// Note: A semantic identifier, commonly referred to as a variant, provides a
-	// means
-	// for referring to a value without including the value itself. This can
-	// provide additional context for understanding the meaning behind a value.
-	// For example, the variant `red` maybe be used for the value `#c05543`.
-	FeatureFlagResultVariantKey = attribute.Key("feature_flag.result.variant")
-
-	// FeatureFlagSetIDKey is the attribute Key conforming to the
-	// "feature_flag.set.id" semantic conventions. It represents the identifier of
-	// the [flag set] to which the feature flag belongs.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "proj-1", "ab98sgs", "service1/dev"
-	//
-	// [flag set]: https://openfeature.dev/specification/glossary/#flag-set
-	FeatureFlagSetIDKey = attribute.Key("feature_flag.set.id")
-
-	// FeatureFlagVersionKey is the attribute Key conforming to the
-	// "feature_flag.version" semantic conventions. It represents the version of the
-	// ruleset used during the evaluation. This may be any stable value which
-	// uniquely identifies the ruleset.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Release_Candidate
-	//
-	// Examples: "1", "01ABCDEF"
-	FeatureFlagVersionKey = attribute.Key("feature_flag.version")
-)
-
-// FeatureFlagContextID returns an attribute KeyValue conforming to the
-// "feature_flag.context.id" semantic conventions. It represents the unique
-// identifier for the flag evaluation context. For example, the targeting key.
-func FeatureFlagContextID(val string) attribute.KeyValue {
-	return FeatureFlagContextIDKey.String(val)
-}
-
-// FeatureFlagKey returns an attribute KeyValue conforming to the
-// "feature_flag.key" semantic conventions. It represents the lookup key of the
-// feature flag.
-func FeatureFlagKey(val string) attribute.KeyValue {
-	return FeatureFlagKeyKey.String(val)
-}
-
-// FeatureFlagProviderName returns an attribute KeyValue conforming to the
-// "feature_flag.provider.name" semantic conventions. It represents the
-// identifies the feature flag provider.
-func FeatureFlagProviderName(val string) attribute.KeyValue {
-	return FeatureFlagProviderNameKey.String(val)
-}
-
-// FeatureFlagResultVariant returns an attribute KeyValue conforming to the
-// "feature_flag.result.variant" semantic conventions. It represents a semantic
-// identifier for an evaluated flag value.
-func FeatureFlagResultVariant(val string) attribute.KeyValue {
-	return FeatureFlagResultVariantKey.String(val)
-}
-
-// FeatureFlagSetID returns an attribute KeyValue conforming to the
-// "feature_flag.set.id" semantic conventions. It represents the identifier of
-// the [flag set] to which the feature flag belongs.
-//
-// [flag set]: https://openfeature.dev/specification/glossary/#flag-set
-func FeatureFlagSetID(val string) attribute.KeyValue {
-	return FeatureFlagSetIDKey.String(val)
-}
-
-// FeatureFlagVersion returns an attribute KeyValue conforming to the
-// "feature_flag.version" semantic conventions. It represents the version of the
-// ruleset used during the evaluation. This may be any stable value which
-// uniquely identifies the ruleset.
-func FeatureFlagVersion(val string) attribute.KeyValue {
-	return FeatureFlagVersionKey.String(val)
-}
-
-// Enum values for feature_flag.result.reason
-var (
-	// The resolved value is static (no dynamic evaluation).
-	// Stability: release_candidate
-	FeatureFlagResultReasonStatic = FeatureFlagResultReasonKey.String("static")
-	// The resolved value fell back to a pre-configured value (no dynamic evaluation
-	// occurred or dynamic evaluation yielded no result).
-	// Stability: release_candidate
-	FeatureFlagResultReasonDefault = FeatureFlagResultReasonKey.String("default")
-	// The resolved value was the result of a dynamic evaluation, such as a rule or
-	// specific user-targeting.
-	// Stability: release_candidate
-	FeatureFlagResultReasonTargetingMatch = FeatureFlagResultReasonKey.String("targeting_match")
-	// The resolved value was the result of pseudorandom assignment.
-	// Stability: release_candidate
-	FeatureFlagResultReasonSplit = FeatureFlagResultReasonKey.String("split")
-	// The resolved value was retrieved from cache.
-	// Stability: release_candidate
-	FeatureFlagResultReasonCached = FeatureFlagResultReasonKey.String("cached")
-	// The resolved value was the result of the flag being disabled in the
-	// management system.
-	// Stability: release_candidate
-	FeatureFlagResultReasonDisabled = FeatureFlagResultReasonKey.String("disabled")
-	// The reason for the resolved value could not be determined.
-	// Stability: release_candidate
-	FeatureFlagResultReasonUnknown = FeatureFlagResultReasonKey.String("unknown")
-	// The resolved value is non-authoritative or possibly out of date
-	// Stability: release_candidate
-	FeatureFlagResultReasonStale = FeatureFlagResultReasonKey.String("stale")
-	// The resolved value was the result of an error.
-	// Stability: release_candidate
-	FeatureFlagResultReasonError = FeatureFlagResultReasonKey.String("error")
-)
-
-// Namespace: file
-const (
-	// FileAccessedKey is the attribute Key conforming to the "file.accessed"
-	// semantic conventions. It represents the time when the file was last accessed,
-	// in ISO 8601 format.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021-01-01T12:00:00Z"
-	// Note: This attribute might not be supported by some file systems — NFS,
-	// FAT32, in embedded OS, etc.
-	FileAccessedKey = attribute.Key("file.accessed")
-
-	// FileAttributesKey is the attribute Key conforming to the "file.attributes"
-	// semantic conventions. It represents the array of file attributes.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "readonly", "hidden"
-	// Note: Attributes names depend on the OS or file system. Here’s a
-	// non-exhaustive list of values expected for this attribute: `archive`,
-	// `compressed`, `directory`, `encrypted`, `execute`, `hidden`, `immutable`,
-	// `journaled`, `read`, `readonly`, `symbolic link`, `system`, `temporary`,
-	// `write`.
-	FileAttributesKey = attribute.Key("file.attributes")
-
-	// FileChangedKey is the attribute Key conforming to the "file.changed" semantic
-	// conventions. It represents the time when the file attributes or metadata was
-	// last changed, in ISO 8601 format.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021-01-01T12:00:00Z"
-	// Note: `file.changed` captures the time when any of the file's properties or
-	// attributes (including the content) are changed, while `file.modified`
-	// captures the timestamp when the file content is modified.
-	FileChangedKey = attribute.Key("file.changed")
-
-	// FileCreatedKey is the attribute Key conforming to the "file.created" semantic
-	// conventions. It represents the time when the file was created, in ISO 8601
-	// format.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021-01-01T12:00:00Z"
-	// Note: This attribute might not be supported by some file systems — NFS,
-	// FAT32, in embedded OS, etc.
-	FileCreatedKey = attribute.Key("file.created")
-
-	// FileDirectoryKey is the attribute Key conforming to the "file.directory"
-	// semantic conventions. It represents the directory where the file is located.
-	// It should include the drive letter, when appropriate.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/home/user", "C:\Program Files\MyApp"
-	FileDirectoryKey = attribute.Key("file.directory")
-
-	// FileExtensionKey is the attribute Key conforming to the "file.extension"
-	// semantic conventions. It represents the file extension, excluding the leading
-	// dot.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "png", "gz"
-	// Note: When the file name has multiple extensions (example.tar.gz), only the
-	// last one should be captured ("gz", not "tar.gz").
-	FileExtensionKey = attribute.Key("file.extension")
-
-	// FileForkNameKey is the attribute Key conforming to the "file.fork_name"
-	// semantic conventions. It represents the name of the fork. A fork is
-	// additional data associated with a filesystem object.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Zone.Identifier"
-	// Note: On Linux, a resource fork is used to store additional data with a
-	// filesystem object. A file always has at least one fork for the data portion,
-	// and additional forks may exist.
-	// On NTFS, this is analogous to an Alternate Data Stream (ADS), and the default
-	// data stream for a file is just called $DATA. Zone.Identifier is commonly used
-	// by Windows to track contents downloaded from the Internet. An ADS is
-	// typically of the form: C:\path\to\filename.extension:some_fork_name, and
-	// some_fork_name is the value that should populate `fork_name`.
-	// `filename.extension` should populate `file.name`, and `extension` should
-	// populate `file.extension`. The full path, `file.path`, will include the fork
-	// name.
-	FileForkNameKey = attribute.Key("file.fork_name")
-
-	// FileGroupIDKey is the attribute Key conforming to the "file.group.id"
-	// semantic conventions. It represents the primary Group ID (GID) of the file.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1000"
-	FileGroupIDKey = attribute.Key("file.group.id")
-
-	// FileGroupNameKey is the attribute Key conforming to the "file.group.name"
-	// semantic conventions. It represents the primary group name of the file.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "users"
-	FileGroupNameKey = attribute.Key("file.group.name")
-
-	// FileInodeKey is the attribute Key conforming to the "file.inode" semantic
-	// conventions. It represents the inode representing the file in the filesystem.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "256383"
-	FileInodeKey = attribute.Key("file.inode")
-
-	// FileModeKey is the attribute Key conforming to the "file.mode" semantic
-	// conventions. It represents the mode of the file in octal representation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0640"
-	FileModeKey = attribute.Key("file.mode")
-
-	// FileModifiedKey is the attribute Key conforming to the "file.modified"
-	// semantic conventions. It represents the time when the file content was last
-	// modified, in ISO 8601 format.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021-01-01T12:00:00Z"
-	FileModifiedKey = attribute.Key("file.modified")
-
-	// FileNameKey is the attribute Key conforming to the "file.name" semantic
-	// conventions. It represents the name of the file including the extension,
-	// without the directory.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "example.png"
-	FileNameKey = attribute.Key("file.name")
-
-	// FileOwnerIDKey is the attribute Key conforming to the "file.owner.id"
-	// semantic conventions. It represents the user ID (UID) or security identifier
-	// (SID) of the file owner.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1000"
-	FileOwnerIDKey = attribute.Key("file.owner.id")
-
-	// FileOwnerNameKey is the attribute Key conforming to the "file.owner.name"
-	// semantic conventions. It represents the username of the file owner.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "root"
-	FileOwnerNameKey = attribute.Key("file.owner.name")
-
-	// FilePathKey is the attribute Key conforming to the "file.path" semantic
-	// conventions. It represents the full path to the file, including the file
-	// name. It should include the drive letter, when appropriate.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/home/alice/example.png", "C:\Program Files\MyApp\myapp.exe"
-	FilePathKey = attribute.Key("file.path")
-
-	// FileSizeKey is the attribute Key conforming to the "file.size" semantic
-	// conventions. It represents the file size in bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	FileSizeKey = attribute.Key("file.size")
-
-	// FileSymbolicLinkTargetPathKey is the attribute Key conforming to the
-	// "file.symbolic_link.target_path" semantic conventions. It represents the path
-	// to the target of a symbolic link.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/usr/bin/python3"
-	// Note: This attribute is only applicable to symbolic links.
-	FileSymbolicLinkTargetPathKey = attribute.Key("file.symbolic_link.target_path")
-)
-
-// FileAccessed returns an attribute KeyValue conforming to the "file.accessed"
-// semantic conventions. It represents the time when the file was last accessed,
-// in ISO 8601 format.
-func FileAccessed(val string) attribute.KeyValue {
-	return FileAccessedKey.String(val)
-}
-
-// FileAttributes returns an attribute KeyValue conforming to the
-// "file.attributes" semantic conventions. It represents the array of file
-// attributes.
-func FileAttributes(val ...string) attribute.KeyValue {
-	return FileAttributesKey.StringSlice(val)
-}
-
-// FileChanged returns an attribute KeyValue conforming to the "file.changed"
-// semantic conventions. It represents the time when the file attributes or
-// metadata was last changed, in ISO 8601 format.
-func FileChanged(val string) attribute.KeyValue {
-	return FileChangedKey.String(val)
-}
-
-// FileCreated returns an attribute KeyValue conforming to the "file.created"
-// semantic conventions. It represents the time when the file was created, in ISO
-// 8601 format.
-func FileCreated(val string) attribute.KeyValue {
-	return FileCreatedKey.String(val)
-}
-
-// FileDirectory returns an attribute KeyValue conforming to the "file.directory"
-// semantic conventions. It represents the directory where the file is located.
-// It should include the drive letter, when appropriate.
-func FileDirectory(val string) attribute.KeyValue {
-	return FileDirectoryKey.String(val)
-}
-
-// FileExtension returns an attribute KeyValue conforming to the "file.extension"
-// semantic conventions. It represents the file extension, excluding the leading
-// dot.
-func FileExtension(val string) attribute.KeyValue {
-	return FileExtensionKey.String(val)
-}
-
-// FileForkName returns an attribute KeyValue conforming to the "file.fork_name"
-// semantic conventions. It represents the name of the fork. A fork is additional
-// data associated with a filesystem object.
-func FileForkName(val string) attribute.KeyValue {
-	return FileForkNameKey.String(val)
-}
-
-// FileGroupID returns an attribute KeyValue conforming to the "file.group.id"
-// semantic conventions. It represents the primary Group ID (GID) of the file.
-func FileGroupID(val string) attribute.KeyValue {
-	return FileGroupIDKey.String(val)
-}
-
-// FileGroupName returns an attribute KeyValue conforming to the
-// "file.group.name" semantic conventions. It represents the primary group name
-// of the file.
-func FileGroupName(val string) attribute.KeyValue {
-	return FileGroupNameKey.String(val)
-}
-
-// FileInode returns an attribute KeyValue conforming to the "file.inode"
-// semantic conventions. It represents the inode representing the file in the
-// filesystem.
-func FileInode(val string) attribute.KeyValue {
-	return FileInodeKey.String(val)
-}
-
-// FileMode returns an attribute KeyValue conforming to the "file.mode" semantic
-// conventions. It represents the mode of the file in octal representation.
-func FileMode(val string) attribute.KeyValue {
-	return FileModeKey.String(val)
-}
-
-// FileModified returns an attribute KeyValue conforming to the "file.modified"
-// semantic conventions. It represents the time when the file content was last
-// modified, in ISO 8601 format.
-func FileModified(val string) attribute.KeyValue {
-	return FileModifiedKey.String(val)
-}
-
-// FileName returns an attribute KeyValue conforming to the "file.name" semantic
-// conventions. It represents the name of the file including the extension,
-// without the directory.
-func FileName(val string) attribute.KeyValue {
-	return FileNameKey.String(val)
-}
-
-// FileOwnerID returns an attribute KeyValue conforming to the "file.owner.id"
-// semantic conventions. It represents the user ID (UID) or security identifier
-// (SID) of the file owner.
-func FileOwnerID(val string) attribute.KeyValue {
-	return FileOwnerIDKey.String(val)
-}
-
-// FileOwnerName returns an attribute KeyValue conforming to the
-// "file.owner.name" semantic conventions. It represents the username of the file
-// owner.
-func FileOwnerName(val string) attribute.KeyValue {
-	return FileOwnerNameKey.String(val)
-}
-
-// FilePath returns an attribute KeyValue conforming to the "file.path" semantic
-// conventions. It represents the full path to the file, including the file name.
-// It should include the drive letter, when appropriate.
-func FilePath(val string) attribute.KeyValue {
-	return FilePathKey.String(val)
-}
-
-// FileSize returns an attribute KeyValue conforming to the "file.size" semantic
-// conventions. It represents the file size in bytes.
-func FileSize(val int) attribute.KeyValue {
-	return FileSizeKey.Int(val)
-}
-
-// FileSymbolicLinkTargetPath returns an attribute KeyValue conforming to the
-// "file.symbolic_link.target_path" semantic conventions. It represents the path
-// to the target of a symbolic link.
-func FileSymbolicLinkTargetPath(val string) attribute.KeyValue {
-	return FileSymbolicLinkTargetPathKey.String(val)
-}
-
-// Namespace: gcp
-const (
-	// GCPAppHubApplicationContainerKey is the attribute Key conforming to the
-	// "gcp.apphub.application.container" semantic conventions. It represents the
-	// container within GCP where the AppHub application is defined.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "projects/my-container-project"
-	GCPAppHubApplicationContainerKey = attribute.Key("gcp.apphub.application.container")
-
-	// GCPAppHubApplicationIDKey is the attribute Key conforming to the
-	// "gcp.apphub.application.id" semantic conventions. It represents the name of
-	// the application as configured in AppHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-application"
-	GCPAppHubApplicationIDKey = attribute.Key("gcp.apphub.application.id")
-
-	// GCPAppHubApplicationLocationKey is the attribute Key conforming to the
-	// "gcp.apphub.application.location" semantic conventions. It represents the GCP
-	// zone or region where the application is defined.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "us-central1"
-	GCPAppHubApplicationLocationKey = attribute.Key("gcp.apphub.application.location")
-
-	// GCPAppHubServiceCriticalityTypeKey is the attribute Key conforming to the
-	// "gcp.apphub.service.criticality_type" semantic conventions. It represents the
-	// criticality of a service indicates its importance to the business.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: [See AppHub type enum]
-	//
-	// [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
-	GCPAppHubServiceCriticalityTypeKey = attribute.Key("gcp.apphub.service.criticality_type")
-
-	// GCPAppHubServiceEnvironmentTypeKey is the attribute Key conforming to the
-	// "gcp.apphub.service.environment_type" semantic conventions. It represents the
-	// environment of a service is the stage of a software lifecycle.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: [See AppHub environment type]
-	//
-	// [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
-	GCPAppHubServiceEnvironmentTypeKey = attribute.Key("gcp.apphub.service.environment_type")
-
-	// GCPAppHubServiceIDKey is the attribute Key conforming to the
-	// "gcp.apphub.service.id" semantic conventions. It represents the name of the
-	// service as configured in AppHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-service"
-	GCPAppHubServiceIDKey = attribute.Key("gcp.apphub.service.id")
-
-	// GCPAppHubWorkloadCriticalityTypeKey is the attribute Key conforming to the
-	// "gcp.apphub.workload.criticality_type" semantic conventions. It represents
-	// the criticality of a workload indicates its importance to the business.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: [See AppHub type enum]
-	//
-	// [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
-	GCPAppHubWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub.workload.criticality_type")
-
-	// GCPAppHubWorkloadEnvironmentTypeKey is the attribute Key conforming to the
-	// "gcp.apphub.workload.environment_type" semantic conventions. It represents
-	// the environment of a workload is the stage of a software lifecycle.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: [See AppHub environment type]
-	//
-	// [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
-	GCPAppHubWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub.workload.environment_type")
-
-	// GCPAppHubWorkloadIDKey is the attribute Key conforming to the
-	// "gcp.apphub.workload.id" semantic conventions. It represents the name of the
-	// workload as configured in AppHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-workload"
-	GCPAppHubWorkloadIDKey = attribute.Key("gcp.apphub.workload.id")
-
-	// GCPAppHubDestinationApplicationContainerKey is the attribute Key conforming
-	// to the "gcp.apphub_destination.application.container" semantic conventions.
-	// It represents the container within GCP where the AppHub destination
-	// application is defined.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "projects/my-container-project"
-	GCPAppHubDestinationApplicationContainerKey = attribute.Key("gcp.apphub_destination.application.container")
-
-	// GCPAppHubDestinationApplicationIDKey is the attribute Key conforming to the
-	// "gcp.apphub_destination.application.id" semantic conventions. It represents
-	// the name of the destination application as configured in AppHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-application"
-	GCPAppHubDestinationApplicationIDKey = attribute.Key("gcp.apphub_destination.application.id")
-
-	// GCPAppHubDestinationApplicationLocationKey is the attribute Key conforming to
-	// the "gcp.apphub_destination.application.location" semantic conventions. It
-	// represents the GCP zone or region where the destination application is
-	// defined.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "us-central1"
-	GCPAppHubDestinationApplicationLocationKey = attribute.Key("gcp.apphub_destination.application.location")
-
-	// GCPAppHubDestinationServiceCriticalityTypeKey is the attribute Key conforming
-	// to the "gcp.apphub_destination.service.criticality_type" semantic
-	// conventions. It represents the criticality of a destination workload
-	// indicates its importance to the business as specified in [AppHub type enum].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
-	GCPAppHubDestinationServiceCriticalityTypeKey = attribute.Key("gcp.apphub_destination.service.criticality_type")
-
-	// GCPAppHubDestinationServiceEnvironmentTypeKey is the attribute Key conforming
-	// to the "gcp.apphub_destination.service.environment_type" semantic
-	// conventions. It represents the software lifecycle stage of a destination
-	// service as defined [AppHub environment type].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
-	GCPAppHubDestinationServiceEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.service.environment_type")
-
-	// GCPAppHubDestinationServiceIDKey is the attribute Key conforming to the
-	// "gcp.apphub_destination.service.id" semantic conventions. It represents the
-	// name of the destination service as configured in AppHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-service"
-	GCPAppHubDestinationServiceIDKey = attribute.Key("gcp.apphub_destination.service.id")
-
-	// GCPAppHubDestinationWorkloadCriticalityTypeKey is the attribute Key
-	// conforming to the "gcp.apphub_destination.workload.criticality_type" semantic
-	// conventions. It represents the criticality of a destination workload
-	// indicates its importance to the business as specified in [AppHub type enum].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
-	GCPAppHubDestinationWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub_destination.workload.criticality_type")
-
-	// GCPAppHubDestinationWorkloadEnvironmentTypeKey is the attribute Key
-	// conforming to the "gcp.apphub_destination.workload.environment_type" semantic
-	// conventions. It represents the environment of a destination workload is the
-	// stage of a software lifecycle as provided in the [AppHub environment type].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
-	GCPAppHubDestinationWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.workload.environment_type")
-
-	// GCPAppHubDestinationWorkloadIDKey is the attribute Key conforming to the
-	// "gcp.apphub_destination.workload.id" semantic conventions. It represents the
-	// name of the destination workload as configured in AppHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-workload"
-	GCPAppHubDestinationWorkloadIDKey = attribute.Key("gcp.apphub_destination.workload.id")
-
-	// GCPClientServiceKey is the attribute Key conforming to the
-	// "gcp.client.service" semantic conventions. It represents the identifies the
-	// Google Cloud service for which the official client library is intended.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "appengine", "run", "firestore", "alloydb", "spanner"
-	// Note: Intended to be a stable identifier for Google Cloud client libraries
-	// that is uniform across implementation languages. The value should be derived
-	// from the canonical service domain for the service; for example,
-	// 'foo.googleapis.com' should result in a value of 'foo'.
-	GCPClientServiceKey = attribute.Key("gcp.client.service")
-
-	// GCPCloudRunJobExecutionKey is the attribute Key conforming to the
-	// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of
-	// the Cloud Run [execution] being run for the Job, as set by the
-	// [`CLOUD_RUN_EXECUTION`] environment variable.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "job-name-xxxx", "sample-job-mdw84"
-	//
-	// [execution]: https://cloud.google.com/run/docs/managing/job-executions
-	// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
-	GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution")
-
-	// GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the
-	// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index
-	// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`]
-	// environment variable.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0, 1
-	//
-	// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
-	GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index")
-
-	// GCPGCEInstanceHostnameKey is the attribute Key conforming to the
-	// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname
-	// of a GCE instance. This is the full value of the default or [custom hostname]
-	// .
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-host1234.example.com",
-	// "sample-vm.us-west1-b.c.my-project.internal"
-	//
-	// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm
-	GCPGCEInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname")
-
-	// GCPGCEInstanceNameKey is the attribute Key conforming to the
-	// "gcp.gce.instance.name" semantic conventions. It represents the instance name
-	// of a GCE instance. This is the value provided by `host.name`, the visible
-	// name of the instance in the Cloud Console UI, and the prefix for the default
-	// hostname of the instance as defined by the [default internal DNS name].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "instance-1", "my-vm-name"
-	//
-	// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names
-	GCPGCEInstanceNameKey = attribute.Key("gcp.gce.instance.name")
-)
-
-// GCPAppHubApplicationContainer returns an attribute KeyValue conforming to the
-// "gcp.apphub.application.container" semantic conventions. It represents the
-// container within GCP where the AppHub application is defined.
-func GCPAppHubApplicationContainer(val string) attribute.KeyValue {
-	return GCPAppHubApplicationContainerKey.String(val)
-}
-
-// GCPAppHubApplicationID returns an attribute KeyValue conforming to the
-// "gcp.apphub.application.id" semantic conventions. It represents the name of
-// the application as configured in AppHub.
-func GCPAppHubApplicationID(val string) attribute.KeyValue {
-	return GCPAppHubApplicationIDKey.String(val)
-}
-
-// GCPAppHubApplicationLocation returns an attribute KeyValue conforming to the
-// "gcp.apphub.application.location" semantic conventions. It represents the GCP
-// zone or region where the application is defined.
-func GCPAppHubApplicationLocation(val string) attribute.KeyValue {
-	return GCPAppHubApplicationLocationKey.String(val)
-}
-
-// GCPAppHubServiceID returns an attribute KeyValue conforming to the
-// "gcp.apphub.service.id" semantic conventions. It represents the name of the
-// service as configured in AppHub.
-func GCPAppHubServiceID(val string) attribute.KeyValue {
-	return GCPAppHubServiceIDKey.String(val)
-}
-
-// GCPAppHubWorkloadID returns an attribute KeyValue conforming to the
-// "gcp.apphub.workload.id" semantic conventions. It represents the name of the
-// workload as configured in AppHub.
-func GCPAppHubWorkloadID(val string) attribute.KeyValue {
-	return GCPAppHubWorkloadIDKey.String(val)
-}
-
-// GCPAppHubDestinationApplicationContainer returns an attribute KeyValue
-// conforming to the "gcp.apphub_destination.application.container" semantic
-// conventions. It represents the container within GCP where the AppHub
-// destination application is defined.
-func GCPAppHubDestinationApplicationContainer(val string) attribute.KeyValue {
-	return GCPAppHubDestinationApplicationContainerKey.String(val)
-}
-
-// GCPAppHubDestinationApplicationID returns an attribute KeyValue conforming to
-// the "gcp.apphub_destination.application.id" semantic conventions. It
-// represents the name of the destination application as configured in AppHub.
-func GCPAppHubDestinationApplicationID(val string) attribute.KeyValue {
-	return GCPAppHubDestinationApplicationIDKey.String(val)
-}
-
-// GCPAppHubDestinationApplicationLocation returns an attribute KeyValue
-// conforming to the "gcp.apphub_destination.application.location" semantic
-// conventions. It represents the GCP zone or region where the destination
-// application is defined.
-func GCPAppHubDestinationApplicationLocation(val string) attribute.KeyValue {
-	return GCPAppHubDestinationApplicationLocationKey.String(val)
-}
-
-// GCPAppHubDestinationServiceID returns an attribute KeyValue conforming to the
-// "gcp.apphub_destination.service.id" semantic conventions. It represents the
-// name of the destination service as configured in AppHub.
-func GCPAppHubDestinationServiceID(val string) attribute.KeyValue {
-	return GCPAppHubDestinationServiceIDKey.String(val)
-}
-
-// GCPAppHubDestinationWorkloadID returns an attribute KeyValue conforming to the
-// "gcp.apphub_destination.workload.id" semantic conventions. It represents the
-// name of the destination workload as configured in AppHub.
-func GCPAppHubDestinationWorkloadID(val string) attribute.KeyValue {
-	return GCPAppHubDestinationWorkloadIDKey.String(val)
-}
-
-// GCPClientService returns an attribute KeyValue conforming to the
-// "gcp.client.service" semantic conventions. It represents the identifies the
-// Google Cloud service for which the official client library is intended.
-func GCPClientService(val string) attribute.KeyValue {
-	return GCPClientServiceKey.String(val)
-}
-
-// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the
-// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of
-// the Cloud Run [execution] being run for the Job, as set by the
-// [`CLOUD_RUN_EXECUTION`] environment variable.
-//
-// [execution]: https://cloud.google.com/run/docs/managing/job-executions
-// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
-func GCPCloudRunJobExecution(val string) attribute.KeyValue {
-	return GCPCloudRunJobExecutionKey.String(val)
-}
-
-// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the
-// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index
-// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`]
-// environment variable.
-//
-// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
-func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue {
-	return GCPCloudRunJobTaskIndexKey.Int(val)
-}
-
-// GCPGCEInstanceHostname returns an attribute KeyValue conforming to the
-// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname
-// of a GCE instance. This is the full value of the default or [custom hostname]
-// .
-//
-// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm
-func GCPGCEInstanceHostname(val string) attribute.KeyValue {
-	return GCPGCEInstanceHostnameKey.String(val)
-}
-
-// GCPGCEInstanceName returns an attribute KeyValue conforming to the
-// "gcp.gce.instance.name" semantic conventions. It represents the instance name
-// of a GCE instance. This is the value provided by `host.name`, the visible name
-// of the instance in the Cloud Console UI, and the prefix for the default
-// hostname of the instance as defined by the [default internal DNS name].
-//
-// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names
-func GCPGCEInstanceName(val string) attribute.KeyValue {
-	return GCPGCEInstanceNameKey.String(val)
-}
-
-// Enum values for gcp.apphub.service.criticality_type
-var (
-	// Mission critical service.
-	// Stability: development
-	GCPAppHubServiceCriticalityTypeMissionCritical = GCPAppHubServiceCriticalityTypeKey.String("MISSION_CRITICAL")
-	// High impact.
-	// Stability: development
-	GCPAppHubServiceCriticalityTypeHigh = GCPAppHubServiceCriticalityTypeKey.String("HIGH")
-	// Medium impact.
-	// Stability: development
-	GCPAppHubServiceCriticalityTypeMedium = GCPAppHubServiceCriticalityTypeKey.String("MEDIUM")
-	// Low impact.
-	// Stability: development
-	GCPAppHubServiceCriticalityTypeLow = GCPAppHubServiceCriticalityTypeKey.String("LOW")
-)
-
-// Enum values for gcp.apphub.service.environment_type
-var (
-	// Production environment.
-	// Stability: development
-	GCPAppHubServiceEnvironmentTypeProduction = GCPAppHubServiceEnvironmentTypeKey.String("PRODUCTION")
-	// Staging environment.
-	// Stability: development
-	GCPAppHubServiceEnvironmentTypeStaging = GCPAppHubServiceEnvironmentTypeKey.String("STAGING")
-	// Test environment.
-	// Stability: development
-	GCPAppHubServiceEnvironmentTypeTest = GCPAppHubServiceEnvironmentTypeKey.String("TEST")
-	// Development environment.
-	// Stability: development
-	GCPAppHubServiceEnvironmentTypeDevelopment = GCPAppHubServiceEnvironmentTypeKey.String("DEVELOPMENT")
-)
-
-// Enum values for gcp.apphub.workload.criticality_type
-var (
-	// Mission critical service.
-	// Stability: development
-	GCPAppHubWorkloadCriticalityTypeMissionCritical = GCPAppHubWorkloadCriticalityTypeKey.String("MISSION_CRITICAL")
-	// High impact.
-	// Stability: development
-	GCPAppHubWorkloadCriticalityTypeHigh = GCPAppHubWorkloadCriticalityTypeKey.String("HIGH")
-	// Medium impact.
-	// Stability: development
-	GCPAppHubWorkloadCriticalityTypeMedium = GCPAppHubWorkloadCriticalityTypeKey.String("MEDIUM")
-	// Low impact.
-	// Stability: development
-	GCPAppHubWorkloadCriticalityTypeLow = GCPAppHubWorkloadCriticalityTypeKey.String("LOW")
-)
-
-// Enum values for gcp.apphub.workload.environment_type
-var (
-	// Production environment.
-	// Stability: development
-	GCPAppHubWorkloadEnvironmentTypeProduction = GCPAppHubWorkloadEnvironmentTypeKey.String("PRODUCTION")
-	// Staging environment.
-	// Stability: development
-	GCPAppHubWorkloadEnvironmentTypeStaging = GCPAppHubWorkloadEnvironmentTypeKey.String("STAGING")
-	// Test environment.
-	// Stability: development
-	GCPAppHubWorkloadEnvironmentTypeTest = GCPAppHubWorkloadEnvironmentTypeKey.String("TEST")
-	// Development environment.
-	// Stability: development
-	GCPAppHubWorkloadEnvironmentTypeDevelopment = GCPAppHubWorkloadEnvironmentTypeKey.String("DEVELOPMENT")
-)
-
-// Enum values for gcp.apphub_destination.service.criticality_type
-var (
-	// Mission critical service.
-	// Stability: development
-	GCPAppHubDestinationServiceCriticalityTypeMissionCritical = GCPAppHubDestinationServiceCriticalityTypeKey.String("MISSION_CRITICAL")
-	// High impact.
-	// Stability: development
-	GCPAppHubDestinationServiceCriticalityTypeHigh = GCPAppHubDestinationServiceCriticalityTypeKey.String("HIGH")
-	// Medium impact.
-	// Stability: development
-	GCPAppHubDestinationServiceCriticalityTypeMedium = GCPAppHubDestinationServiceCriticalityTypeKey.String("MEDIUM")
-	// Low impact.
-	// Stability: development
-	GCPAppHubDestinationServiceCriticalityTypeLow = GCPAppHubDestinationServiceCriticalityTypeKey.String("LOW")
-)
-
-// Enum values for gcp.apphub_destination.service.environment_type
-var (
-	// Production environment.
-	// Stability: development
-	GCPAppHubDestinationServiceEnvironmentTypeProduction = GCPAppHubDestinationServiceEnvironmentTypeKey.String("PRODUCTION")
-	// Staging environment.
-	// Stability: development
-	GCPAppHubDestinationServiceEnvironmentTypeStaging = GCPAppHubDestinationServiceEnvironmentTypeKey.String("STAGING")
-	// Test environment.
-	// Stability: development
-	GCPAppHubDestinationServiceEnvironmentTypeTest = GCPAppHubDestinationServiceEnvironmentTypeKey.String("TEST")
-	// Development environment.
-	// Stability: development
-	GCPAppHubDestinationServiceEnvironmentTypeDevelopment = GCPAppHubDestinationServiceEnvironmentTypeKey.String("DEVELOPMENT")
-)
-
-// Enum values for gcp.apphub_destination.workload.criticality_type
-var (
-	// Mission critical service.
-	// Stability: development
-	GCPAppHubDestinationWorkloadCriticalityTypeMissionCritical = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MISSION_CRITICAL")
-	// High impact.
-	// Stability: development
-	GCPAppHubDestinationWorkloadCriticalityTypeHigh = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("HIGH")
-	// Medium impact.
-	// Stability: development
-	GCPAppHubDestinationWorkloadCriticalityTypeMedium = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MEDIUM")
-	// Low impact.
-	// Stability: development
-	GCPAppHubDestinationWorkloadCriticalityTypeLow = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("LOW")
-)
-
-// Enum values for gcp.apphub_destination.workload.environment_type
-var (
-	// Production environment.
-	// Stability: development
-	GCPAppHubDestinationWorkloadEnvironmentTypeProduction = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("PRODUCTION")
-	// Staging environment.
-	// Stability: development
-	GCPAppHubDestinationWorkloadEnvironmentTypeStaging = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("STAGING")
-	// Test environment.
-	// Stability: development
-	GCPAppHubDestinationWorkloadEnvironmentTypeTest = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("TEST")
-	// Development environment.
-	// Stability: development
-	GCPAppHubDestinationWorkloadEnvironmentTypeDevelopment = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("DEVELOPMENT")
-)
-
-// Namespace: gen_ai
-const (
-	// GenAIAgentDescriptionKey is the attribute Key conforming to the
-	// "gen_ai.agent.description" semantic conventions. It represents the free-form
-	// description of the GenAI agent provided by the application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Helps with math problems", "Generates fiction stories"
-	GenAIAgentDescriptionKey = attribute.Key("gen_ai.agent.description")
-
-	// GenAIAgentIDKey is the attribute Key conforming to the "gen_ai.agent.id"
-	// semantic conventions. It represents the unique identifier of the GenAI agent.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "asst_5j66UpCpwteGg4YSxUnt7lPY"
-	GenAIAgentIDKey = attribute.Key("gen_ai.agent.id")
-
-	// GenAIAgentNameKey is the attribute Key conforming to the "gen_ai.agent.name"
-	// semantic conventions. It represents the human-readable name of the GenAI
-	// agent provided by the application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Math Tutor", "Fiction Writer"
-	GenAIAgentNameKey = attribute.Key("gen_ai.agent.name")
-
-	// GenAIConversationIDKey is the attribute Key conforming to the
-	// "gen_ai.conversation.id" semantic conventions. It represents the unique
-	// identifier for a conversation (session, thread), used to store and correlate
-	// messages within this conversation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "conv_5j66UpCpwteGg4YSxUnt7lPY"
-	GenAIConversationIDKey = attribute.Key("gen_ai.conversation.id")
-
-	// GenAIDataSourceIDKey is the attribute Key conforming to the
-	// "gen_ai.data_source.id" semantic conventions. It represents the data source
-	// identifier.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "H7STPQYOND"
-	// Note: Data sources are used by AI agents and RAG applications to store
-	// grounding data. A data source may be an external database, object store,
-	// document collection, website, or any other storage system used by the GenAI
-	// agent or application. The `gen_ai.data_source.id` SHOULD match the identifier
-	// used by the GenAI system rather than a name specific to the external storage,
-	// such as a database or object store. Semantic conventions referencing
-	// `gen_ai.data_source.id` MAY also leverage additional attributes, such as
-	// `db.*`, to further identify and describe the data source.
-	GenAIDataSourceIDKey = attribute.Key("gen_ai.data_source.id")
-
-	// GenAIEmbeddingsDimensionCountKey is the attribute Key conforming to the
-	// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the
-	// number of dimensions the resulting output embeddings should have.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 512, 1024
-	GenAIEmbeddingsDimensionCountKey = attribute.Key("gen_ai.embeddings.dimension.count")
-
-	// GenAIEvaluationExplanationKey is the attribute Key conforming to the
-	// "gen_ai.evaluation.explanation" semantic conventions. It represents a
-	// free-form explanation for the assigned score provided by the evaluator.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "The response is factually accurate but lacks sufficient detail to
-	// fully address the question."
-	GenAIEvaluationExplanationKey = attribute.Key("gen_ai.evaluation.explanation")
-
-	// GenAIEvaluationNameKey is the attribute Key conforming to the
-	// "gen_ai.evaluation.name" semantic conventions. It represents the name of the
-	// evaluation metric used for the GenAI response.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Relevance", "IntentResolution"
-	GenAIEvaluationNameKey = attribute.Key("gen_ai.evaluation.name")
-
-	// GenAIEvaluationScoreLabelKey is the attribute Key conforming to the
-	// "gen_ai.evaluation.score.label" semantic conventions. It represents the human
-	// readable label for evaluation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "relevant", "not_relevant", "correct", "incorrect", "pass", "fail"
-	// Note: This attribute provides a human-readable interpretation of the
-	// evaluation score produced by an evaluator. For example, a score value of 1
-	// could mean "relevant" in one evaluation system and "not relevant" in another,
-	// depending on the scoring range and evaluator. The label SHOULD have low
-	// cardinality. Possible values depend on the evaluation metric and evaluator
-	// used; implementations SHOULD document the possible values.
-	GenAIEvaluationScoreLabelKey = attribute.Key("gen_ai.evaluation.score.label")
-
-	// GenAIEvaluationScoreValueKey is the attribute Key conforming to the
-	// "gen_ai.evaluation.score.value" semantic conventions. It represents the
-	// evaluation score returned by the evaluator.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 4.0
-	GenAIEvaluationScoreValueKey = attribute.Key("gen_ai.evaluation.score.value")
-
-	// GenAIInputMessagesKey is the attribute Key conforming to the
-	// "gen_ai.input.messages" semantic conventions. It represents the chat history
-	// provided to the model as an input.
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "[\n {\n "role": "user",\n "parts": [\n {\n "type": "text",\n
-	// "content": "Weather in Paris?"\n }\n ]\n },\n {\n "role": "assistant",\n
-	// "parts": [\n {\n "type": "tool_call",\n "id":
-	// "call_VSPygqKTWdrhaFErNvMV18Yl",\n "name": "get_weather",\n "arguments": {\n
-	// "location": "Paris"\n }\n }\n ]\n },\n {\n "role": "tool",\n "parts": [\n {\n
-	// "type": "tool_call_response",\n "id": " call_VSPygqKTWdrhaFErNvMV18Yl",\n
-	// "result": "rainy, 57°F"\n }\n ]\n }\n]\n"
-	// Note: Instrumentations MUST follow [Input messages JSON schema].
-	// When the attribute is recorded on events, it MUST be recorded in structured
-	// form. When recorded on spans, it MAY be recorded as a JSON string if
-	// structured
-	// format is not supported and SHOULD be recorded in structured form otherwise.
-	//
-	// Messages MUST be provided in the order they were sent to the model.
-	// Instrumentations MAY provide a way for users to filter or truncate
-	// input messages.
-	//
-	// > [!Warning]
-	// > This attribute is likely to contain sensitive information including
-	// > user/PII data.
-	//
-	// See [Recording content on attributes]
-	// section for more details.
-	//
-	// [Input messages JSON schema]: /docs/gen-ai/gen-ai-input-messages.json
-	// [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes
-	GenAIInputMessagesKey = attribute.Key("gen_ai.input.messages")
-
-	// GenAIOperationNameKey is the attribute Key conforming to the
-	// "gen_ai.operation.name" semantic conventions. It represents the name of the
-	// operation being performed.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: If one of the predefined values applies, but specific system uses a
-	// different name it's RECOMMENDED to document it in the semantic conventions
-	// for specific GenAI system and use system-specific name in the
-	// instrumentation. If a different name is not documented, instrumentation
-	// libraries SHOULD use applicable predefined value.
-	GenAIOperationNameKey = attribute.Key("gen_ai.operation.name")
-
-	// GenAIOutputMessagesKey is the attribute Key conforming to the
-	// "gen_ai.output.messages" semantic conventions. It represents the messages
-	// returned by the model where each message represents a specific model response
-	// (choice, candidate).
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "[\n {\n "role": "assistant",\n "parts": [\n {\n "type": "text",\n
-	// "content": "The weather in Paris is currently rainy with a temperature of
-	// 57°F."\n }\n ],\n "finish_reason": "stop"\n }\n]\n"
-	// Note: Instrumentations MUST follow [Output messages JSON schema]
-	//
-	// Each message represents a single output choice/candidate generated by
-	// the model. Each message corresponds to exactly one generation
-	// (choice/candidate) and vice versa - one choice cannot be split across
-	// multiple messages or one message cannot contain parts from multiple choices.
-	//
-	// When the attribute is recorded on events, it MUST be recorded in structured
-	// form. When recorded on spans, it MAY be recorded as a JSON string if
-	// structured
-	// format is not supported and SHOULD be recorded in structured form otherwise.
-	//
-	// Instrumentations MAY provide a way for users to filter or truncate
-	// output messages.
-	//
-	// > [!Warning]
-	// > This attribute is likely to contain sensitive information including
-	// > user/PII data.
-	//
-	// See [Recording content on attributes]
-	// section for more details.
-	//
-	// [Output messages JSON schema]: /docs/gen-ai/gen-ai-output-messages.json
-	// [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes
-	GenAIOutputMessagesKey = attribute.Key("gen_ai.output.messages")
-
-	// GenAIOutputTypeKey is the attribute Key conforming to the
-	// "gen_ai.output.type" semantic conventions. It represents the represents the
-	// content type requested by the client.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: This attribute SHOULD be used when the client requests output of a
-	// specific type. The model may return zero or more outputs of this type.
-	// This attribute specifies the output modality and not the actual output
-	// format. For example, if an image is requested, the actual output could be a
-	// URL pointing to an image file.
-	// Additional output format details may be recorded in the future in the
-	// `gen_ai.output.{type}.*` attributes.
-	GenAIOutputTypeKey = attribute.Key("gen_ai.output.type")
-
-	// GenAIPromptNameKey is the attribute Key conforming to the
-	// "gen_ai.prompt.name" semantic conventions. It represents the name of the
-	// prompt that uniquely identifies it.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "analyze-code"
-	GenAIPromptNameKey = attribute.Key("gen_ai.prompt.name")
-
-	// GenAIProviderNameKey is the attribute Key conforming to the
-	// "gen_ai.provider.name" semantic conventions. It represents the Generative AI
-	// provider as identified by the client or server instrumentation.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: The attribute SHOULD be set based on the instrumentation's best
-	// knowledge and may differ from the actual model provider.
-	//
-	// Multiple providers, including Azure OpenAI, Gemini, and AI hosting platforms
-	// are accessible using the OpenAI REST API and corresponding client libraries,
-	// but may proxy or host models from different providers.
-	//
-	// The `gen_ai.request.model`, `gen_ai.response.model`, and `server.address`
-	// attributes may help identify the actual system in use.
-	//
-	// The `gen_ai.provider.name` attribute acts as a discriminator that
-	// identifies the GenAI telemetry format flavor specific to that provider
-	// within GenAI semantic conventions.
-	// It SHOULD be set consistently with provider-specific attributes and signals.
-	// For example, GenAI spans, metrics, and events related to AWS Bedrock
-	// should have the `gen_ai.provider.name` set to `aws.bedrock` and include
-	// applicable `aws.bedrock.*` attributes and are not expected to include
-	// `openai.*` attributes.
-	GenAIProviderNameKey = attribute.Key("gen_ai.provider.name")
-
-	// GenAIRequestChoiceCountKey is the attribute Key conforming to the
-	// "gen_ai.request.choice.count" semantic conventions. It represents the target
-	// number of candidate completions to return.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 3
-	GenAIRequestChoiceCountKey = attribute.Key("gen_ai.request.choice.count")
-
-	// GenAIRequestEncodingFormatsKey is the attribute Key conforming to the
-	// "gen_ai.request.encoding_formats" semantic conventions. It represents the
-	// encoding formats requested in an embeddings operation, if specified.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "base64"], ["float", "binary"
-	// Note: In some GenAI systems the encoding formats are called embedding types.
-	// Also, some GenAI systems only accept a single format per request.
-	GenAIRequestEncodingFormatsKey = attribute.Key("gen_ai.request.encoding_formats")
-
-	// GenAIRequestFrequencyPenaltyKey is the attribute Key conforming to the
-	// "gen_ai.request.frequency_penalty" semantic conventions. It represents the
-	// frequency penalty setting for the GenAI request.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0.1
-	GenAIRequestFrequencyPenaltyKey = attribute.Key("gen_ai.request.frequency_penalty")
-
-	// GenAIRequestMaxTokensKey is the attribute Key conforming to the
-	// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum
-	// number of tokens the model generates for a request.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 100
-	GenAIRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens")
-
-	// GenAIRequestModelKey is the attribute Key conforming to the
-	// "gen_ai.request.model" semantic conventions. It represents the name of the
-	// GenAI model a request is being made to.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: gpt-4
-	GenAIRequestModelKey = attribute.Key("gen_ai.request.model")
-
-	// GenAIRequestPresencePenaltyKey is the attribute Key conforming to the
-	// "gen_ai.request.presence_penalty" semantic conventions. It represents the
-	// presence penalty setting for the GenAI request.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0.1
-	GenAIRequestPresencePenaltyKey = attribute.Key("gen_ai.request.presence_penalty")
-
-	// GenAIRequestSeedKey is the attribute Key conforming to the
-	// "gen_ai.request.seed" semantic conventions. It represents the requests with
-	// same seed value more likely to return same result.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 100
-	GenAIRequestSeedKey = attribute.Key("gen_ai.request.seed")
-
-	// GenAIRequestStopSequencesKey is the attribute Key conforming to the
-	// "gen_ai.request.stop_sequences" semantic conventions. It represents the list
-	// of sequences that the model will use to stop generating further tokens.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "forest", "lived"
-	GenAIRequestStopSequencesKey = attribute.Key("gen_ai.request.stop_sequences")
-
-	// GenAIRequestTemperatureKey is the attribute Key conforming to the
-	// "gen_ai.request.temperature" semantic conventions. It represents the
-	// temperature setting for the GenAI request.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0.0
-	GenAIRequestTemperatureKey = attribute.Key("gen_ai.request.temperature")
-
-	// GenAIRequestTopKKey is the attribute Key conforming to the
-	// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling
-	// setting for the GenAI request.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0
-	GenAIRequestTopKKey = attribute.Key("gen_ai.request.top_k")
-
-	// GenAIRequestTopPKey is the attribute Key conforming to the
-	// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling
-	// setting for the GenAI request.
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1.0
-	GenAIRequestTopPKey = attribute.Key("gen_ai.request.top_p")
-
-	// GenAIResponseFinishReasonsKey is the attribute Key conforming to the
-	// "gen_ai.response.finish_reasons" semantic conventions. It represents the
-	// array of reasons the model stopped generating tokens, corresponding to each
-	// generation received.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "stop"], ["stop", "length"
-	GenAIResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons")
-
-	// GenAIResponseIDKey is the attribute Key conforming to the
-	// "gen_ai.response.id" semantic conventions. It represents the unique
-	// identifier for the completion.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "chatcmpl-123"
-	GenAIResponseIDKey = attribute.Key("gen_ai.response.id")
-
-	// GenAIResponseModelKey is the attribute Key conforming to the
-	// "gen_ai.response.model" semantic conventions. It represents the name of the
-	// model that generated the response.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "gpt-4-0613"
-	GenAIResponseModelKey = attribute.Key("gen_ai.response.model")
-
-	// GenAISystemInstructionsKey is the attribute Key conforming to the
-	// "gen_ai.system_instructions" semantic conventions. It represents the system
-	// message or instructions provided to the GenAI model separately from the chat
-	// history.
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "[\n {\n "type": "text",\n "content": "You are an Agent that greet
-	// users, always use greetings tool to respond"\n }\n]\n", "[\n {\n "type":
-	// "text",\n "content": "You are a language translator."\n },\n {\n "type":
-	// "text",\n "content": "Your mission is to translate text in English to
-	// French."\n }\n]\n"
-	// Note: This attribute SHOULD be used when the corresponding provider or API
-	// allows to provide system instructions or messages separately from the
-	// chat history.
-	//
-	// Instructions that are part of the chat history SHOULD be recorded in
-	// `gen_ai.input.messages` attribute instead.
-	//
-	// Instrumentations MUST follow [System instructions JSON schema].
-	//
-	// When recorded on spans, it MAY be recorded as a JSON string if structured
-	// format is not supported and SHOULD be recorded in structured form otherwise.
-	//
-	// Instrumentations MAY provide a way for users to filter or truncate
-	// system instructions.
-	//
-	// > [!Warning]
-	// > This attribute may contain sensitive information.
-	//
-	// See [Recording content on attributes]
-	// section for more details.
-	//
-	// [System instructions JSON schema]: /docs/gen-ai/gen-ai-system-instructions.json
-	// [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes
-	GenAISystemInstructionsKey = attribute.Key("gen_ai.system_instructions")
-
-	// GenAITokenTypeKey is the attribute Key conforming to the "gen_ai.token.type"
-	// semantic conventions. It represents the type of token being counted.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "input", "output"
-	GenAITokenTypeKey = attribute.Key("gen_ai.token.type")
-
-	// GenAIToolCallArgumentsKey is the attribute Key conforming to the
-	// "gen_ai.tool.call.arguments" semantic conventions. It represents the
-	// parameters passed to the tool call.
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{\n "location": "San Francisco?",\n "date": "2025-10-01"\n}\n"
-	// Note: > [!WARNING]
-	//
-	// > This attribute may contain sensitive information.
-	//
-	// It's expected to be an object - in case a serialized string is available
-	// to the instrumentation, the instrumentation SHOULD do the best effort to
-	// deserialize it to an object. When recorded on spans, it MAY be recorded as a
-	// JSON string if structured format is not supported and SHOULD be recorded in
-	// structured form otherwise.
-	GenAIToolCallArgumentsKey = attribute.Key("gen_ai.tool.call.arguments")
-
-	// GenAIToolCallIDKey is the attribute Key conforming to the
-	// "gen_ai.tool.call.id" semantic conventions. It represents the tool call
-	// identifier.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "call_mszuSIzqtI65i1wAUOE8w5H4"
-	GenAIToolCallIDKey = attribute.Key("gen_ai.tool.call.id")
-
-	// GenAIToolCallResultKey is the attribute Key conforming to the
-	// "gen_ai.tool.call.result" semantic conventions. It represents the result
-	// returned by the tool call (if any and if execution was successful).
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "{\n "temperature_range": {\n "high": 75,\n "low": 60\n },\n
-	// "conditions": "sunny"\n}\n"
-	// Note: > [!WARNING]
-	//
-	// > This attribute may contain sensitive information.
-	//
-	// It's expected to be an object - in case a serialized string is available
-	// to the instrumentation, the instrumentation SHOULD do the best effort to
-	// deserialize it to an object. When recorded on spans, it MAY be recorded as a
-	// JSON string if structured format is not supported and SHOULD be recorded in
-	// structured form otherwise.
-	GenAIToolCallResultKey = attribute.Key("gen_ai.tool.call.result")
-
-	// GenAIToolDefinitionsKey is the attribute Key conforming to the
-	// "gen_ai.tool.definitions" semantic conventions. It represents the list of
-	// source system tool definitions available to the GenAI agent or model.
-	//
-	// Type: any
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "[\n {\n "type": "function",\n "name": "get_current_weather",\n
-	// "description": "Get the current weather in a given location",\n "parameters":
-	// {\n "type": "object",\n "properties": {\n "location": {\n "type": "string",\n
-	// "description": "The city and state, e.g. San Francisco, CA"\n },\n "unit":
-	// {\n "type": "string",\n "enum": [\n "celsius",\n "fahrenheit"\n ]\n }\n },\n
-	// "required": [\n "location",\n "unit"\n ]\n }\n }\n]\n"
-	// Note: The value of this attribute matches source system tool definition
-	// format.
-	//
-	// It's expected to be an array of objects where each object represents a tool
-	// definition. In case a serialized string is available
-	// to the instrumentation, the instrumentation SHOULD do the best effort to
-	// deserialize it to an array. When recorded on spans, it MAY be recorded as a
-	// JSON string if structured format is not supported and SHOULD be recorded in
-	// structured form otherwise.
-	//
-	// Since this attribute could be large, it's NOT RECOMMENDED to populate
-	// it by default. Instrumentations MAY provide a way to enable
-	// populating this attribute.
-	GenAIToolDefinitionsKey = attribute.Key("gen_ai.tool.definitions")
-
-	// GenAIToolDescriptionKey is the attribute Key conforming to the
-	// "gen_ai.tool.description" semantic conventions. It represents the tool
-	// description.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Multiply two numbers"
-	GenAIToolDescriptionKey = attribute.Key("gen_ai.tool.description")
-
-	// GenAIToolNameKey is the attribute Key conforming to the "gen_ai.tool.name"
-	// semantic conventions. It represents the name of the tool utilized by the
-	// agent.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Flights"
-	GenAIToolNameKey = attribute.Key("gen_ai.tool.name")
-
-	// GenAIToolTypeKey is the attribute Key conforming to the "gen_ai.tool.type"
-	// semantic conventions. It represents the type of the tool utilized by the
-	// agent.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "function", "extension", "datastore"
-	// Note: Extension: A tool executed on the agent-side to directly call external
-	// APIs, bridging the gap between the agent and real-world systems.
-	// Agent-side operations involve actions that are performed by the agent on the
-	// server or within the agent's controlled environment.
-	// Function: A tool executed on the client-side, where the agent generates
-	// parameters for a predefined function, and the client executes the logic.
-	// Client-side operations are actions taken on the user's end or within the
-	// client application.
-	// Datastore: A tool used by the agent to access and query structured or
-	// unstructured external data for retrieval-augmented tasks or knowledge
-	// updates.
-	GenAIToolTypeKey = attribute.Key("gen_ai.tool.type")
-
-	// GenAIUsageInputTokensKey is the attribute Key conforming to the
-	// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of
-	// tokens used in the GenAI input (prompt).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 100
-	GenAIUsageInputTokensKey = attribute.Key("gen_ai.usage.input_tokens")
-
-	// GenAIUsageOutputTokensKey is the attribute Key conforming to the
-	// "gen_ai.usage.output_tokens" semantic conventions. It represents the number
-	// of tokens used in the GenAI response (completion).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 180
-	GenAIUsageOutputTokensKey = attribute.Key("gen_ai.usage.output_tokens")
-)
-
-// GenAIAgentDescription returns an attribute KeyValue conforming to the
-// "gen_ai.agent.description" semantic conventions. It represents the free-form
-// description of the GenAI agent provided by the application.
-func GenAIAgentDescription(val string) attribute.KeyValue {
-	return GenAIAgentDescriptionKey.String(val)
-}
-
-// GenAIAgentID returns an attribute KeyValue conforming to the "gen_ai.agent.id"
-// semantic conventions. It represents the unique identifier of the GenAI agent.
-func GenAIAgentID(val string) attribute.KeyValue {
-	return GenAIAgentIDKey.String(val)
-}
-
-// GenAIAgentName returns an attribute KeyValue conforming to the
-// "gen_ai.agent.name" semantic conventions. It represents the human-readable
-// name of the GenAI agent provided by the application.
-func GenAIAgentName(val string) attribute.KeyValue {
-	return GenAIAgentNameKey.String(val)
-}
-
-// GenAIConversationID returns an attribute KeyValue conforming to the
-// "gen_ai.conversation.id" semantic conventions. It represents the unique
-// identifier for a conversation (session, thread), used to store and correlate
-// messages within this conversation.
-func GenAIConversationID(val string) attribute.KeyValue {
-	return GenAIConversationIDKey.String(val)
-}
-
-// GenAIDataSourceID returns an attribute KeyValue conforming to the
-// "gen_ai.data_source.id" semantic conventions. It represents the data source
-// identifier.
-func GenAIDataSourceID(val string) attribute.KeyValue {
-	return GenAIDataSourceIDKey.String(val)
-}
-
-// GenAIEmbeddingsDimensionCount returns an attribute KeyValue conforming to the
-// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the
-// number of dimensions the resulting output embeddings should have.
-func GenAIEmbeddingsDimensionCount(val int) attribute.KeyValue {
-	return GenAIEmbeddingsDimensionCountKey.Int(val)
-}
-
-// GenAIEvaluationExplanation returns an attribute KeyValue conforming to the
-// "gen_ai.evaluation.explanation" semantic conventions. It represents a
-// free-form explanation for the assigned score provided by the evaluator.
-func GenAIEvaluationExplanation(val string) attribute.KeyValue {
-	return GenAIEvaluationExplanationKey.String(val)
-}
-
-// GenAIEvaluationName returns an attribute KeyValue conforming to the
-// "gen_ai.evaluation.name" semantic conventions. It represents the name of the
-// evaluation metric used for the GenAI response.
-func GenAIEvaluationName(val string) attribute.KeyValue {
-	return GenAIEvaluationNameKey.String(val)
-}
-
-// GenAIEvaluationScoreLabel returns an attribute KeyValue conforming to the
-// "gen_ai.evaluation.score.label" semantic conventions. It represents the human
-// readable label for evaluation.
-func GenAIEvaluationScoreLabel(val string) attribute.KeyValue {
-	return GenAIEvaluationScoreLabelKey.String(val)
-}
-
-// GenAIEvaluationScoreValue returns an attribute KeyValue conforming to the
-// "gen_ai.evaluation.score.value" semantic conventions. It represents the
-// evaluation score returned by the evaluator.
-func GenAIEvaluationScoreValue(val float64) attribute.KeyValue {
-	return GenAIEvaluationScoreValueKey.Float64(val)
-}
-
-// GenAIPromptName returns an attribute KeyValue conforming to the
-// "gen_ai.prompt.name" semantic conventions. It represents the name of the
-// prompt that uniquely identifies it.
-func GenAIPromptName(val string) attribute.KeyValue {
-	return GenAIPromptNameKey.String(val)
-}
-
-// GenAIRequestChoiceCount returns an attribute KeyValue conforming to the
-// "gen_ai.request.choice.count" semantic conventions. It represents the target
-// number of candidate completions to return.
-func GenAIRequestChoiceCount(val int) attribute.KeyValue {
-	return GenAIRequestChoiceCountKey.Int(val)
-}
-
-// GenAIRequestEncodingFormats returns an attribute KeyValue conforming to the
-// "gen_ai.request.encoding_formats" semantic conventions. It represents the
-// encoding formats requested in an embeddings operation, if specified.
-func GenAIRequestEncodingFormats(val ...string) attribute.KeyValue {
-	return GenAIRequestEncodingFormatsKey.StringSlice(val)
-}
-
-// GenAIRequestFrequencyPenalty returns an attribute KeyValue conforming to the
-// "gen_ai.request.frequency_penalty" semantic conventions. It represents the
-// frequency penalty setting for the GenAI request.
-func GenAIRequestFrequencyPenalty(val float64) attribute.KeyValue {
-	return GenAIRequestFrequencyPenaltyKey.Float64(val)
-}
-
-// GenAIRequestMaxTokens returns an attribute KeyValue conforming to the
-// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum
-// number of tokens the model generates for a request.
-func GenAIRequestMaxTokens(val int) attribute.KeyValue {
-	return GenAIRequestMaxTokensKey.Int(val)
-}
-
-// GenAIRequestModel returns an attribute KeyValue conforming to the
-// "gen_ai.request.model" semantic conventions. It represents the name of the
-// GenAI model a request is being made to.
-func GenAIRequestModel(val string) attribute.KeyValue {
-	return GenAIRequestModelKey.String(val)
-}
-
-// GenAIRequestPresencePenalty returns an attribute KeyValue conforming to the
-// "gen_ai.request.presence_penalty" semantic conventions. It represents the
-// presence penalty setting for the GenAI request.
-func GenAIRequestPresencePenalty(val float64) attribute.KeyValue {
-	return GenAIRequestPresencePenaltyKey.Float64(val)
-}
-
-// GenAIRequestSeed returns an attribute KeyValue conforming to the
-// "gen_ai.request.seed" semantic conventions. It represents the requests with
-// same seed value more likely to return same result.
-func GenAIRequestSeed(val int) attribute.KeyValue {
-	return GenAIRequestSeedKey.Int(val)
-}
-
-// GenAIRequestStopSequences returns an attribute KeyValue conforming to the
-// "gen_ai.request.stop_sequences" semantic conventions. It represents the list
-// of sequences that the model will use to stop generating further tokens.
-func GenAIRequestStopSequences(val ...string) attribute.KeyValue {
-	return GenAIRequestStopSequencesKey.StringSlice(val)
-}
-
-// GenAIRequestTemperature returns an attribute KeyValue conforming to the
-// "gen_ai.request.temperature" semantic conventions. It represents the
-// temperature setting for the GenAI request.
-func GenAIRequestTemperature(val float64) attribute.KeyValue {
-	return GenAIRequestTemperatureKey.Float64(val)
-}
-
-// GenAIRequestTopK returns an attribute KeyValue conforming to the
-// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling
-// setting for the GenAI request.
-func GenAIRequestTopK(val float64) attribute.KeyValue {
-	return GenAIRequestTopKKey.Float64(val)
-}
-
-// GenAIRequestTopP returns an attribute KeyValue conforming to the
-// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling
-// setting for the GenAI request.
-func GenAIRequestTopP(val float64) attribute.KeyValue {
-	return GenAIRequestTopPKey.Float64(val)
-}
-
-// GenAIResponseFinishReasons returns an attribute KeyValue conforming to the
-// "gen_ai.response.finish_reasons" semantic conventions. It represents the array
-// of reasons the model stopped generating tokens, corresponding to each
-// generation received.
-func GenAIResponseFinishReasons(val ...string) attribute.KeyValue {
-	return GenAIResponseFinishReasonsKey.StringSlice(val)
-}
-
-// GenAIResponseID returns an attribute KeyValue conforming to the
-// "gen_ai.response.id" semantic conventions. It represents the unique identifier
-// for the completion.
-func GenAIResponseID(val string) attribute.KeyValue {
-	return GenAIResponseIDKey.String(val)
-}
-
-// GenAIResponseModel returns an attribute KeyValue conforming to the
-// "gen_ai.response.model" semantic conventions. It represents the name of the
-// model that generated the response.
-func GenAIResponseModel(val string) attribute.KeyValue {
-	return GenAIResponseModelKey.String(val)
-}
-
-// GenAIToolCallID returns an attribute KeyValue conforming to the
-// "gen_ai.tool.call.id" semantic conventions. It represents the tool call
-// identifier.
-func GenAIToolCallID(val string) attribute.KeyValue {
-	return GenAIToolCallIDKey.String(val)
-}
-
-// GenAIToolDescription returns an attribute KeyValue conforming to the
-// "gen_ai.tool.description" semantic conventions. It represents the tool
-// description.
-func GenAIToolDescription(val string) attribute.KeyValue {
-	return GenAIToolDescriptionKey.String(val)
-}
-
-// GenAIToolName returns an attribute KeyValue conforming to the
-// "gen_ai.tool.name" semantic conventions. It represents the name of the tool
-// utilized by the agent.
-func GenAIToolName(val string) attribute.KeyValue {
-	return GenAIToolNameKey.String(val)
-}
-
-// GenAIToolType returns an attribute KeyValue conforming to the
-// "gen_ai.tool.type" semantic conventions. It represents the type of the tool
-// utilized by the agent.
-func GenAIToolType(val string) attribute.KeyValue {
-	return GenAIToolTypeKey.String(val)
-}
-
-// GenAIUsageInputTokens returns an attribute KeyValue conforming to the
-// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of
-// tokens used in the GenAI input (prompt).
-func GenAIUsageInputTokens(val int) attribute.KeyValue {
-	return GenAIUsageInputTokensKey.Int(val)
-}
-
-// GenAIUsageOutputTokens returns an attribute KeyValue conforming to the
-// "gen_ai.usage.output_tokens" semantic conventions. It represents the number of
-// tokens used in the GenAI response (completion).
-func GenAIUsageOutputTokens(val int) attribute.KeyValue {
-	return GenAIUsageOutputTokensKey.Int(val)
-}
-
-// Enum values for gen_ai.operation.name
-var (
-	// Chat completion operation such as [OpenAI Chat API]
-	// Stability: development
-	//
-	// [OpenAI Chat API]: https://platform.openai.com/docs/api-reference/chat
-	GenAIOperationNameChat = GenAIOperationNameKey.String("chat")
-	// Multimodal content generation operation such as [Gemini Generate Content]
-	// Stability: development
-	//
-	// [Gemini Generate Content]: https://ai.google.dev/api/generate-content
-	GenAIOperationNameGenerateContent = GenAIOperationNameKey.String("generate_content")
-	// Text completions operation such as [OpenAI Completions API (Legacy)]
-	// Stability: development
-	//
-	// [OpenAI Completions API (Legacy)]: https://platform.openai.com/docs/api-reference/completions
-	GenAIOperationNameTextCompletion = GenAIOperationNameKey.String("text_completion")
-	// Embeddings operation such as [OpenAI Create embeddings API]
-	// Stability: development
-	//
-	// [OpenAI Create embeddings API]: https://platform.openai.com/docs/api-reference/embeddings/create
-	GenAIOperationNameEmbeddings = GenAIOperationNameKey.String("embeddings")
-	// Create GenAI agent
-	// Stability: development
-	GenAIOperationNameCreateAgent = GenAIOperationNameKey.String("create_agent")
-	// Invoke GenAI agent
-	// Stability: development
-	GenAIOperationNameInvokeAgent = GenAIOperationNameKey.String("invoke_agent")
-	// Execute a tool
-	// Stability: development
-	GenAIOperationNameExecuteTool = GenAIOperationNameKey.String("execute_tool")
-)
-
-// Enum values for gen_ai.output.type
-var (
-	// Plain text
-	// Stability: development
-	GenAIOutputTypeText = GenAIOutputTypeKey.String("text")
-	// JSON object with known or unknown schema
-	// Stability: development
-	GenAIOutputTypeJSON = GenAIOutputTypeKey.String("json")
-	// Image
-	// Stability: development
-	GenAIOutputTypeImage = GenAIOutputTypeKey.String("image")
-	// Speech
-	// Stability: development
-	GenAIOutputTypeSpeech = GenAIOutputTypeKey.String("speech")
-)
-
-// Enum values for gen_ai.provider.name
-var (
-	// [OpenAI]
-	// Stability: development
-	//
-	// [OpenAI]: https://openai.com/
-	GenAIProviderNameOpenAI = GenAIProviderNameKey.String("openai")
-	// Any Google generative AI endpoint
-	// Stability: development
-	GenAIProviderNameGCPGenAI = GenAIProviderNameKey.String("gcp.gen_ai")
-	// [Vertex AI]
-	// Stability: development
-	//
-	// [Vertex AI]: https://cloud.google.com/vertex-ai
-	GenAIProviderNameGCPVertexAI = GenAIProviderNameKey.String("gcp.vertex_ai")
-	// [Gemini]
-	// Stability: development
-	//
-	// [Gemini]: https://cloud.google.com/products/gemini
-	GenAIProviderNameGCPGemini = GenAIProviderNameKey.String("gcp.gemini")
-	// [Anthropic]
-	// Stability: development
-	//
-	// [Anthropic]: https://www.anthropic.com/
-	GenAIProviderNameAnthropic = GenAIProviderNameKey.String("anthropic")
-	// [Cohere]
-	// Stability: development
-	//
-	// [Cohere]: https://cohere.com/
-	GenAIProviderNameCohere = GenAIProviderNameKey.String("cohere")
-	// Azure AI Inference
-	// Stability: development
-	GenAIProviderNameAzureAIInference = GenAIProviderNameKey.String("azure.ai.inference")
-	// [Azure OpenAI]
-	// Stability: development
-	//
-	// [Azure OpenAI]: https://azure.microsoft.com/products/ai-services/openai-service/
-	GenAIProviderNameAzureAIOpenAI = GenAIProviderNameKey.String("azure.ai.openai")
-	// [IBM Watsonx AI]
-	// Stability: development
-	//
-	// [IBM Watsonx AI]: https://www.ibm.com/products/watsonx-ai
-	GenAIProviderNameIBMWatsonxAI = GenAIProviderNameKey.String("ibm.watsonx.ai")
-	// [AWS Bedrock]
-	// Stability: development
-	//
-	// [AWS Bedrock]: https://aws.amazon.com/bedrock
-	GenAIProviderNameAWSBedrock = GenAIProviderNameKey.String("aws.bedrock")
-	// [Perplexity]
-	// Stability: development
-	//
-	// [Perplexity]: https://www.perplexity.ai/
-	GenAIProviderNamePerplexity = GenAIProviderNameKey.String("perplexity")
-	// [xAI]
-	// Stability: development
-	//
-	// [xAI]: https://x.ai/
-	GenAIProviderNameXAI = GenAIProviderNameKey.String("x_ai")
-	// [DeepSeek]
-	// Stability: development
-	//
-	// [DeepSeek]: https://www.deepseek.com/
-	GenAIProviderNameDeepseek = GenAIProviderNameKey.String("deepseek")
-	// [Groq]
-	// Stability: development
-	//
-	// [Groq]: https://groq.com/
-	GenAIProviderNameGroq = GenAIProviderNameKey.String("groq")
-	// [Mistral AI]
-	// Stability: development
-	//
-	// [Mistral AI]: https://mistral.ai/
-	GenAIProviderNameMistralAI = GenAIProviderNameKey.String("mistral_ai")
-)
-
-// Enum values for gen_ai.token.type
-var (
-	// Input tokens (prompt, input, etc.)
-	// Stability: development
-	GenAITokenTypeInput = GenAITokenTypeKey.String("input")
-	// Output tokens (completion, response, etc.)
-	// Stability: development
-	GenAITokenTypeOutput = GenAITokenTypeKey.String("output")
-)
-
-// Namespace: geo
-const (
-	// GeoContinentCodeKey is the attribute Key conforming to the
-	// "geo.continent.code" semantic conventions. It represents the two-letter code
-	// representing continent’s name.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	GeoContinentCodeKey = attribute.Key("geo.continent.code")
-
-	// GeoCountryISOCodeKey is the attribute Key conforming to the
-	// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO
-	// Country Code ([ISO 3166-1 alpha2]).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CA"
-	//
-	// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes
-	GeoCountryISOCodeKey = attribute.Key("geo.country.iso_code")
-
-	// GeoLocalityNameKey is the attribute Key conforming to the "geo.locality.name"
-	// semantic conventions. It represents the locality name. Represents the name of
-	// a city, town, village, or similar populated place.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Montreal", "Berlin"
-	GeoLocalityNameKey = attribute.Key("geo.locality.name")
-
-	// GeoLocationLatKey is the attribute Key conforming to the "geo.location.lat"
-	// semantic conventions. It represents the latitude of the geo location in
-	// [WGS84].
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 45.505918
-	//
-	// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
-	GeoLocationLatKey = attribute.Key("geo.location.lat")
-
-	// GeoLocationLonKey is the attribute Key conforming to the "geo.location.lon"
-	// semantic conventions. It represents the longitude of the geo location in
-	// [WGS84].
-	//
-	// Type: double
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: -73.61483
-	//
-	// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
-	GeoLocationLonKey = attribute.Key("geo.location.lon")
-
-	// GeoPostalCodeKey is the attribute Key conforming to the "geo.postal_code"
-	// semantic conventions. It represents the postal code associated with the
-	// location. Values appropriate for this field may also be known as a postcode
-	// or ZIP code and will vary widely from country to country.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "94040"
-	GeoPostalCodeKey = attribute.Key("geo.postal_code")
-
-	// GeoRegionISOCodeKey is the attribute Key conforming to the
-	// "geo.region.iso_code" semantic conventions. It represents the region ISO code
-	// ([ISO 3166-2]).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CA-QC"
-	//
-	// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2
-	GeoRegionISOCodeKey = attribute.Key("geo.region.iso_code")
-)
-
-// GeoCountryISOCode returns an attribute KeyValue conforming to the
-// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO
-// Country Code ([ISO 3166-1 alpha2]).
-//
-// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes
-func GeoCountryISOCode(val string) attribute.KeyValue {
-	return GeoCountryISOCodeKey.String(val)
-}
-
-// GeoLocalityName returns an attribute KeyValue conforming to the
-// "geo.locality.name" semantic conventions. It represents the locality name.
-// Represents the name of a city, town, village, or similar populated place.
-func GeoLocalityName(val string) attribute.KeyValue {
-	return GeoLocalityNameKey.String(val)
-}
-
-// GeoLocationLat returns an attribute KeyValue conforming to the
-// "geo.location.lat" semantic conventions. It represents the latitude of the geo
-// location in [WGS84].
-//
-// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
-func GeoLocationLat(val float64) attribute.KeyValue {
-	return GeoLocationLatKey.Float64(val)
-}
-
-// GeoLocationLon returns an attribute KeyValue conforming to the
-// "geo.location.lon" semantic conventions. It represents the longitude of the
-// geo location in [WGS84].
-//
-// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
-func GeoLocationLon(val float64) attribute.KeyValue {
-	return GeoLocationLonKey.Float64(val)
-}
-
-// GeoPostalCode returns an attribute KeyValue conforming to the
-// "geo.postal_code" semantic conventions. It represents the postal code
-// associated with the location. Values appropriate for this field may also be
-// known as a postcode or ZIP code and will vary widely from country to country.
-func GeoPostalCode(val string) attribute.KeyValue {
-	return GeoPostalCodeKey.String(val)
-}
-
-// GeoRegionISOCode returns an attribute KeyValue conforming to the
-// "geo.region.iso_code" semantic conventions. It represents the region ISO code
-// ([ISO 3166-2]).
-//
-// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2
-func GeoRegionISOCode(val string) attribute.KeyValue {
-	return GeoRegionISOCodeKey.String(val)
-}
-
-// Enum values for geo.continent.code
-var (
-	// Africa
-	// Stability: development
-	GeoContinentCodeAf = GeoContinentCodeKey.String("AF")
-	// Antarctica
-	// Stability: development
-	GeoContinentCodeAn = GeoContinentCodeKey.String("AN")
-	// Asia
-	// Stability: development
-	GeoContinentCodeAs = GeoContinentCodeKey.String("AS")
-	// Europe
-	// Stability: development
-	GeoContinentCodeEu = GeoContinentCodeKey.String("EU")
-	// North America
-	// Stability: development
-	GeoContinentCodeNa = GeoContinentCodeKey.String("NA")
-	// Oceania
-	// Stability: development
-	GeoContinentCodeOc = GeoContinentCodeKey.String("OC")
-	// South America
-	// Stability: development
-	GeoContinentCodeSa = GeoContinentCodeKey.String("SA")
-)
-
-// Namespace: go
-const (
-	// GoMemoryTypeKey is the attribute Key conforming to the "go.memory.type"
-	// semantic conventions. It represents the type of memory.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "other", "stack"
-	GoMemoryTypeKey = attribute.Key("go.memory.type")
-)
-
-// Enum values for go.memory.type
-var (
-	// Memory allocated from the heap that is reserved for stack space, whether or
-	// not it is currently in-use.
-	// Stability: development
-	GoMemoryTypeStack = GoMemoryTypeKey.String("stack")
-	// Memory used by the Go runtime, excluding other categories of memory usage
-	// described in this enumeration.
-	// Stability: development
-	GoMemoryTypeOther = GoMemoryTypeKey.String("other")
-)
-
-// Namespace: graphql
-const (
-	// GraphQLDocumentKey is the attribute Key conforming to the "graphql.document"
-	// semantic conventions. It represents the GraphQL document being executed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: query findBookById { bookById(id: ?) { name } }
-	// Note: The value may be sanitized to exclude sensitive information.
-	GraphQLDocumentKey = attribute.Key("graphql.document")
-
-	// GraphQLOperationNameKey is the attribute Key conforming to the
-	// "graphql.operation.name" semantic conventions. It represents the name of the
-	// operation being executed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: findBookById
-	GraphQLOperationNameKey = attribute.Key("graphql.operation.name")
-
-	// GraphQLOperationTypeKey is the attribute Key conforming to the
-	// "graphql.operation.type" semantic conventions. It represents the type of the
-	// operation being executed.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "query", "mutation", "subscription"
-	GraphQLOperationTypeKey = attribute.Key("graphql.operation.type")
-)
-
-// GraphQLDocument returns an attribute KeyValue conforming to the
-// "graphql.document" semantic conventions. It represents the GraphQL document
-// being executed.
-func GraphQLDocument(val string) attribute.KeyValue {
-	return GraphQLDocumentKey.String(val)
-}
-
-// GraphQLOperationName returns an attribute KeyValue conforming to the
-// "graphql.operation.name" semantic conventions. It represents the name of the
-// operation being executed.
-func GraphQLOperationName(val string) attribute.KeyValue {
-	return GraphQLOperationNameKey.String(val)
-}
-
-// Enum values for graphql.operation.type
-var (
-	// GraphQL query
-	// Stability: development
-	GraphQLOperationTypeQuery = GraphQLOperationTypeKey.String("query")
-	// GraphQL mutation
-	// Stability: development
-	GraphQLOperationTypeMutation = GraphQLOperationTypeKey.String("mutation")
-	// GraphQL subscription
-	// Stability: development
-	GraphQLOperationTypeSubscription = GraphQLOperationTypeKey.String("subscription")
-)
-
-// Namespace: heroku
-const (
-	// HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id"
-	// semantic conventions. It represents the unique identifier for the
-	// application.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2daa2797-e42b-4624-9322-ec3f968df4da"
-	HerokuAppIDKey = attribute.Key("heroku.app.id")
-
-	// HerokuReleaseCommitKey is the attribute Key conforming to the
-	// "heroku.release.commit" semantic conventions. It represents the commit hash
-	// for the current release.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "e6134959463efd8966b20e75b913cafe3f5ec"
-	HerokuReleaseCommitKey = attribute.Key("heroku.release.commit")
-
-	// HerokuReleaseCreationTimestampKey is the attribute Key conforming to the
-	// "heroku.release.creation_timestamp" semantic conventions. It represents the
-	// time and date the release was created.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2022-10-23T18:00:42Z"
-	HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp")
-)
-
-// HerokuAppID returns an attribute KeyValue conforming to the "heroku.app.id"
-// semantic conventions. It represents the unique identifier for the application.
-func HerokuAppID(val string) attribute.KeyValue {
-	return HerokuAppIDKey.String(val)
-}
-
-// HerokuReleaseCommit returns an attribute KeyValue conforming to the
-// "heroku.release.commit" semantic conventions. It represents the commit hash
-// for the current release.
-func HerokuReleaseCommit(val string) attribute.KeyValue {
-	return HerokuReleaseCommitKey.String(val)
-}
-
-// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming to the
-// "heroku.release.creation_timestamp" semantic conventions. It represents the
-// time and date the release was created.
-func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue {
-	return HerokuReleaseCreationTimestampKey.String(val)
-}
-
-// Namespace: host
-const (
-	// HostArchKey is the attribute Key conforming to the "host.arch" semantic
-	// conventions. It represents the CPU architecture the host system is running
-	// on.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HostArchKey = attribute.Key("host.arch")
-
-	// HostCPUCacheL2SizeKey is the attribute Key conforming to the
-	// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of
-	// level 2 memory cache available to the processor (in Bytes).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 12288000
-	HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size")
-
-	// HostCPUFamilyKey is the attribute Key conforming to the "host.cpu.family"
-	// semantic conventions. It represents the family or generation of the CPU.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "6", "PA-RISC 1.1e"
-	HostCPUFamilyKey = attribute.Key("host.cpu.family")
-
-	// HostCPUModelIDKey is the attribute Key conforming to the "host.cpu.model.id"
-	// semantic conventions. It represents the model identifier. It provides more
-	// granular information about the CPU, distinguishing it from other CPUs within
-	// the same family.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "6", "9000/778/B180L"
-	HostCPUModelIDKey = attribute.Key("host.cpu.model.id")
-
-	// HostCPUModelNameKey is the attribute Key conforming to the
-	// "host.cpu.model.name" semantic conventions. It represents the model
-	// designation of the processor.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz"
-	HostCPUModelNameKey = attribute.Key("host.cpu.model.name")
-
-	// HostCPUSteppingKey is the attribute Key conforming to the "host.cpu.stepping"
-	// semantic conventions. It represents the stepping or core revisions.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1", "r1p1"
-	HostCPUSteppingKey = attribute.Key("host.cpu.stepping")
-
-	// HostCPUVendorIDKey is the attribute Key conforming to the
-	// "host.cpu.vendor.id" semantic conventions. It represents the processor
-	// manufacturer identifier. A maximum 12-character string.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "GenuineIntel"
-	// Note: [CPUID] command returns the vendor ID string in EBX, EDX and ECX
-	// registers. Writing these to memory in this order results in a 12-character
-	// string.
-	//
-	// [CPUID]: https://wiki.osdev.org/CPUID
-	HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id")
-
-	// HostIDKey is the attribute Key conforming to the "host.id" semantic
-	// conventions. It represents the unique host ID. For Cloud, this must be the
-	// instance_id assigned by the cloud provider. For non-containerized systems,
-	// this should be the `machine-id`. See the table below for the sources to use
-	// to determine the `machine-id` based on operating system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "fdbf79e8af94cb7f9e8df36789187052"
-	HostIDKey = attribute.Key("host.id")
-
-	// HostImageIDKey is the attribute Key conforming to the "host.image.id"
-	// semantic conventions. It represents the VM image ID or host OS image ID. For
-	// Cloud, this value is from the provider.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "ami-07b06b442921831e5"
-	HostImageIDKey = attribute.Key("host.image.id")
-
-	// HostImageNameKey is the attribute Key conforming to the "host.image.name"
-	// semantic conventions. It represents the name of the VM image or OS install
-	// the host was instantiated from.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "infra-ami-eks-worker-node-7d4ec78312", "CentOS-8-x86_64-1905"
-	HostImageNameKey = attribute.Key("host.image.name")
-
-	// HostImageVersionKey is the attribute Key conforming to the
-	// "host.image.version" semantic conventions. It represents the version string
-	// of the VM image or host OS as defined in [Version Attributes].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0.1"
-	//
-	// [Version Attributes]: /docs/resource/README.md#version-attributes
-	HostImageVersionKey = attribute.Key("host.image.version")
-
-	// HostIPKey is the attribute Key conforming to the "host.ip" semantic
-	// conventions. It represents the available IP addresses of the host, excluding
-	// loopback interfaces.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "192.168.1.140", "fe80::abc2:4a28:737a:609e"
-	// Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6
-	// addresses MUST be specified in the [RFC 5952] format.
-	//
-	// [RFC 5952]: https://www.rfc-editor.org/rfc/rfc5952.html
-	HostIPKey = attribute.Key("host.ip")
-
-	// HostMacKey is the attribute Key conforming to the "host.mac" semantic
-	// conventions. It represents the available MAC addresses of the host, excluding
-	// loopback interfaces.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "AC-DE-48-23-45-67", "AC-DE-48-23-45-67-01-9F"
-	// Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal form]: as
-	// hyphen-separated octets in uppercase hexadecimal form from most to least
-	// significant.
-	//
-	// [IEEE RA hexadecimal form]: https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf
-	HostMacKey = attribute.Key("host.mac")
-
-	// HostNameKey is the attribute Key conforming to the "host.name" semantic
-	// conventions. It represents the name of the host. On Unix systems, it may
-	// contain what the hostname command returns, or the fully qualified hostname,
-	// or another name specified by the user.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry-test"
-	HostNameKey = attribute.Key("host.name")
-
-	// HostTypeKey is the attribute Key conforming to the "host.type" semantic
-	// conventions. It represents the type of host. For Cloud, this must be the
-	// machine type.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "n1-standard-1"
-	HostTypeKey = attribute.Key("host.type")
-)
-
-// HostCPUCacheL2Size returns an attribute KeyValue conforming to the
-// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of
-// level 2 memory cache available to the processor (in Bytes).
-func HostCPUCacheL2Size(val int) attribute.KeyValue {
-	return HostCPUCacheL2SizeKey.Int(val)
-}
-
-// HostCPUFamily returns an attribute KeyValue conforming to the
-// "host.cpu.family" semantic conventions. It represents the family or generation
-// of the CPU.
-func HostCPUFamily(val string) attribute.KeyValue {
-	return HostCPUFamilyKey.String(val)
-}
-
-// HostCPUModelID returns an attribute KeyValue conforming to the
-// "host.cpu.model.id" semantic conventions. It represents the model identifier.
-// It provides more granular information about the CPU, distinguishing it from
-// other CPUs within the same family.
-func HostCPUModelID(val string) attribute.KeyValue {
-	return HostCPUModelIDKey.String(val)
-}
-
-// HostCPUModelName returns an attribute KeyValue conforming to the
-// "host.cpu.model.name" semantic conventions. It represents the model
-// designation of the processor.
-func HostCPUModelName(val string) attribute.KeyValue {
-	return HostCPUModelNameKey.String(val)
-}
-
-// HostCPUStepping returns an attribute KeyValue conforming to the
-// "host.cpu.stepping" semantic conventions. It represents the stepping or core
-// revisions.
-func HostCPUStepping(val string) attribute.KeyValue {
-	return HostCPUSteppingKey.String(val)
-}
-
-// HostCPUVendorID returns an attribute KeyValue conforming to the
-// "host.cpu.vendor.id" semantic conventions. It represents the processor
-// manufacturer identifier. A maximum 12-character string.
-func HostCPUVendorID(val string) attribute.KeyValue {
-	return HostCPUVendorIDKey.String(val)
-}
-
-// HostID returns an attribute KeyValue conforming to the "host.id" semantic
-// conventions. It represents the unique host ID. For Cloud, this must be the
-// instance_id assigned by the cloud provider. For non-containerized systems,
-// this should be the `machine-id`. See the table below for the sources to use to
-// determine the `machine-id` based on operating system.
-func HostID(val string) attribute.KeyValue {
-	return HostIDKey.String(val)
-}
-
-// HostImageID returns an attribute KeyValue conforming to the "host.image.id"
-// semantic conventions. It represents the VM image ID or host OS image ID. For
-// Cloud, this value is from the provider.
-func HostImageID(val string) attribute.KeyValue {
-	return HostImageIDKey.String(val)
-}
-
-// HostImageName returns an attribute KeyValue conforming to the
-// "host.image.name" semantic conventions. It represents the name of the VM image
-// or OS install the host was instantiated from.
-func HostImageName(val string) attribute.KeyValue {
-	return HostImageNameKey.String(val)
-}
-
-// HostImageVersion returns an attribute KeyValue conforming to the
-// "host.image.version" semantic conventions. It represents the version string of
-// the VM image or host OS as defined in [Version Attributes].
-//
-// [Version Attributes]: /docs/resource/README.md#version-attributes
-func HostImageVersion(val string) attribute.KeyValue {
-	return HostImageVersionKey.String(val)
-}
-
-// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic
-// conventions. It represents the available IP addresses of the host, excluding
-// loopback interfaces.
-func HostIP(val ...string) attribute.KeyValue {
-	return HostIPKey.StringSlice(val)
-}
-
-// HostMac returns an attribute KeyValue conforming to the "host.mac" semantic
-// conventions. It represents the available MAC addresses of the host, excluding
-// loopback interfaces.
-func HostMac(val ...string) attribute.KeyValue {
-	return HostMacKey.StringSlice(val)
-}
-
-// HostName returns an attribute KeyValue conforming to the "host.name" semantic
-// conventions. It represents the name of the host. On Unix systems, it may
-// contain what the hostname command returns, or the fully qualified hostname, or
-// another name specified by the user.
-func HostName(val string) attribute.KeyValue {
-	return HostNameKey.String(val)
-}
-
-// HostType returns an attribute KeyValue conforming to the "host.type" semantic
-// conventions. It represents the type of host. For Cloud, this must be the
-// machine type.
-func HostType(val string) attribute.KeyValue {
-	return HostTypeKey.String(val)
-}
-
-// Enum values for host.arch
-var (
-	// AMD64
-	// Stability: development
-	HostArchAMD64 = HostArchKey.String("amd64")
-	// ARM32
-	// Stability: development
-	HostArchARM32 = HostArchKey.String("arm32")
-	// ARM64
-	// Stability: development
-	HostArchARM64 = HostArchKey.String("arm64")
-	// Itanium
-	// Stability: development
-	HostArchIA64 = HostArchKey.String("ia64")
-	// 32-bit PowerPC
-	// Stability: development
-	HostArchPPC32 = HostArchKey.String("ppc32")
-	// 64-bit PowerPC
-	// Stability: development
-	HostArchPPC64 = HostArchKey.String("ppc64")
-	// IBM z/Architecture
-	// Stability: development
-	HostArchS390x = HostArchKey.String("s390x")
-	// 32-bit x86
-	// Stability: development
-	HostArchX86 = HostArchKey.String("x86")
-)
-
-// Namespace: http
-const (
-	// HTTPConnectionStateKey is the attribute Key conforming to the
-	// "http.connection.state" semantic conventions. It represents the state of the
-	// HTTP connection in the HTTP connection pool.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "active", "idle"
-	HTTPConnectionStateKey = attribute.Key("http.connection.state")
-
-	// HTTPRequestBodySizeKey is the attribute Key conforming to the
-	// "http.request.body.size" semantic conventions. It represents the size of the
-	// request payload body in bytes. This is the number of bytes transferred
-	// excluding headers and is often, but not always, present as the
-	// [Content-Length] header. For requests using transport encoding, this should
-	// be the compressed size.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
-	HTTPRequestBodySizeKey = attribute.Key("http.request.body.size")
-
-	// HTTPRequestMethodKey is the attribute Key conforming to the
-	// "http.request.method" semantic conventions. It represents the HTTP request
-	// method.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "GET", "POST", "HEAD"
-	// Note: HTTP request method value SHOULD be "known" to the instrumentation.
-	// By default, this convention defines "known" methods as the ones listed in
-	// [RFC9110],
-	// the PATCH method defined in [RFC5789]
-	// and the QUERY method defined in [httpbis-safe-method-w-body].
-	//
-	// If the HTTP request method is not known to instrumentation, it MUST set the
-	// `http.request.method` attribute to `_OTHER`.
-	//
-	// If the HTTP instrumentation could end up converting valid HTTP request
-	// methods to `_OTHER`, then it MUST provide a way to override
-	// the list of known HTTP methods. If this override is done via environment
-	// variable, then the environment variable MUST be named
-	// OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated list of
-	// case-sensitive known HTTP methods
-	// (this list MUST be a full override of the default known method, it is not a
-	// list of known methods in addition to the defaults).
-	//
-	// HTTP method names are case-sensitive and `http.request.method` attribute
-	// value MUST match a known HTTP method name exactly.
-	// Instrumentations for specific web frameworks that consider HTTP methods to be
-	// case insensitive, SHOULD populate a canonical equivalent.
-	// Tracing instrumentations that do so, MUST also set
-	// `http.request.method_original` to the original value.
-	//
-	// [RFC9110]: https://www.rfc-editor.org/rfc/rfc9110.html#name-methods
-	// [RFC5789]: https://www.rfc-editor.org/rfc/rfc5789.html
-	// [httpbis-safe-method-w-body]: https://datatracker.ietf.org/doc/draft-ietf-httpbis-safe-method-w-body/?include_text=1
-	HTTPRequestMethodKey = attribute.Key("http.request.method")
-
-	// HTTPRequestMethodOriginalKey is the attribute Key conforming to the
-	// "http.request.method_original" semantic conventions. It represents the
-	// original HTTP method sent by the client in the request line.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "GeT", "ACL", "foo"
-	HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original")
-
-	// HTTPRequestResendCountKey is the attribute Key conforming to the
-	// "http.request.resend_count" semantic conventions. It represents the ordinal
-	// number of request resending attempt (for any reason, including redirects).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Note: The resend count SHOULD be updated each time an HTTP request gets
-	// resent by the client, regardless of what was the cause of the resending (e.g.
-	// redirection, authorization failure, 503 Server Unavailable, network issues,
-	// or any other).
-	HTTPRequestResendCountKey = attribute.Key("http.request.resend_count")
-
-	// HTTPRequestSizeKey is the attribute Key conforming to the "http.request.size"
-	// semantic conventions. It represents the total size of the request in bytes.
-	// This should be the total number of bytes sent over the wire, including the
-	// request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, and request
-	// body if any.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	HTTPRequestSizeKey = attribute.Key("http.request.size")
-
-	// HTTPResponseBodySizeKey is the attribute Key conforming to the
-	// "http.response.body.size" semantic conventions. It represents the size of the
-	// response payload body in bytes. This is the number of bytes transferred
-	// excluding headers and is often, but not always, present as the
-	// [Content-Length] header. For requests using transport encoding, this should
-	// be the compressed size.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
-	HTTPResponseBodySizeKey = attribute.Key("http.response.body.size")
-
-	// HTTPResponseSizeKey is the attribute Key conforming to the
-	// "http.response.size" semantic conventions. It represents the total size of
-	// the response in bytes. This should be the total number of bytes sent over the
-	// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3),
-	// headers, and response body and trailers if any.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	HTTPResponseSizeKey = attribute.Key("http.response.size")
-
-	// HTTPResponseStatusCodeKey is the attribute Key conforming to the
-	// "http.response.status_code" semantic conventions. It represents the
-	// [HTTP response status code].
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: 200
-	//
-	// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6
-	HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code")
-
-	// HTTPRouteKey is the attribute Key conforming to the "http.route" semantic
-	// conventions. It represents the matched route template for the request. This
-	// MUST be low-cardinality and include all static path segments, with dynamic
-	// path segments represented with placeholders.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "/users/:userID?", "my-controller/my-action/{id?}"
-	// Note: MUST NOT be populated when this is not supported by the HTTP server
-	// framework as the route attribute should have low-cardinality and the URI path
-	// can NOT substitute it.
-	// SHOULD include the [application root] if there is one.
-	//
-	// A static path segment is a part of the route template with a fixed,
-	// low-cardinality value. This includes literal strings like `/users/` and
-	// placeholders that
-	// are constrained to a finite, predefined set of values, e.g. `{controller}` or
-	// `{action}`.
-	//
-	// A dynamic path segment is a placeholder for a value that can have high
-	// cardinality and is not constrained to a predefined list like static path
-	// segments.
-	//
-	// Instrumentations SHOULD use routing information provided by the corresponding
-	// web framework. They SHOULD pick the most precise source of routing
-	// information and MAY
-	// support custom route formatting. Instrumentations SHOULD document the format
-	// and the API used to obtain the route string.
-	//
-	// [application root]: /docs/http/http-spans.md#http-server-definitions
-	HTTPRouteKey = attribute.Key("http.route")
-)
-
-// HTTPRequestBodySize returns an attribute KeyValue conforming to the
-// "http.request.body.size" semantic conventions. It represents the size of the
-// request payload body in bytes. This is the number of bytes transferred
-// excluding headers and is often, but not always, present as the
-// [Content-Length] header. For requests using transport encoding, this should be
-// the compressed size.
-//
-// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
-func HTTPRequestBodySize(val int) attribute.KeyValue {
-	return HTTPRequestBodySizeKey.Int(val)
-}
-
-// HTTPRequestHeader returns an attribute KeyValue conforming to the
-// "http.request.header" semantic conventions. It represents the HTTP request
-// headers, `<key>` being the normalized HTTP Header name (lowercase), the value
-// being the header values.
-func HTTPRequestHeader(key string, val ...string) attribute.KeyValue {
-	return attribute.StringSlice("http.request.header."+key, val)
-}
-
-// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the
-// "http.request.method_original" semantic conventions. It represents the
-// original HTTP method sent by the client in the request line.
-func HTTPRequestMethodOriginal(val string) attribute.KeyValue {
-	return HTTPRequestMethodOriginalKey.String(val)
-}
-
-// HTTPRequestResendCount returns an attribute KeyValue conforming to the
-// "http.request.resend_count" semantic conventions. It represents the ordinal
-// number of request resending attempt (for any reason, including redirects).
-func HTTPRequestResendCount(val int) attribute.KeyValue {
-	return HTTPRequestResendCountKey.Int(val)
-}
-
-// HTTPRequestSize returns an attribute KeyValue conforming to the
-// "http.request.size" semantic conventions. It represents the total size of the
-// request in bytes. This should be the total number of bytes sent over the wire,
-// including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers,
-// and request body if any.
-func HTTPRequestSize(val int) attribute.KeyValue {
-	return HTTPRequestSizeKey.Int(val)
-}
-
-// HTTPResponseBodySize returns an attribute KeyValue conforming to the
-// "http.response.body.size" semantic conventions. It represents the size of the
-// response payload body in bytes. This is the number of bytes transferred
-// excluding headers and is often, but not always, present as the
-// [Content-Length] header. For requests using transport encoding, this should be
-// the compressed size.
-//
-// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
-func HTTPResponseBodySize(val int) attribute.KeyValue {
-	return HTTPResponseBodySizeKey.Int(val)
-}
-
-// HTTPResponseHeader returns an attribute KeyValue conforming to the
-// "http.response.header" semantic conventions. It represents the HTTP response
-// headers, `<key>` being the normalized HTTP Header name (lowercase), the value
-// being the header values.
-func HTTPResponseHeader(key string, val ...string) attribute.KeyValue {
-	return attribute.StringSlice("http.response.header."+key, val)
-}
-
-// HTTPResponseSize returns an attribute KeyValue conforming to the
-// "http.response.size" semantic conventions. It represents the total size of the
-// response in bytes. This should be the total number of bytes sent over the
-// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3),
-// headers, and response body and trailers if any.
-func HTTPResponseSize(val int) attribute.KeyValue {
-	return HTTPResponseSizeKey.Int(val)
-}
-
-// HTTPResponseStatusCode returns an attribute KeyValue conforming to the
-// "http.response.status_code" semantic conventions. It represents the
-// [HTTP response status code].
-//
-// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6
-func HTTPResponseStatusCode(val int) attribute.KeyValue {
-	return HTTPResponseStatusCodeKey.Int(val)
-}
-
-// HTTPRoute returns an attribute KeyValue conforming to the "http.route"
-// semantic conventions. It represents the matched route template for the
-// request. This MUST be low-cardinality and include all static path segments,
-// with dynamic path segments represented with placeholders.
-func HTTPRoute(val string) attribute.KeyValue {
-	return HTTPRouteKey.String(val)
-}
-
-// Enum values for http.connection.state
-var (
-	// active state.
-	// Stability: development
-	HTTPConnectionStateActive = HTTPConnectionStateKey.String("active")
-	// idle state.
-	// Stability: development
-	HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle")
-)
-
-// Enum values for http.request.method
-var (
-	// CONNECT method.
-	// Stability: stable
-	HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT")
-	// DELETE method.
-	// Stability: stable
-	HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE")
-	// GET method.
-	// Stability: stable
-	HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET")
-	// HEAD method.
-	// Stability: stable
-	HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD")
-	// OPTIONS method.
-	// Stability: stable
-	HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS")
-	// PATCH method.
-	// Stability: stable
-	HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH")
-	// POST method.
-	// Stability: stable
-	HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST")
-	// PUT method.
-	// Stability: stable
-	HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT")
-	// TRACE method.
-	// Stability: stable
-	HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE")
-	// QUERY method.
-	// Stability: development
-	HTTPRequestMethodQuery = HTTPRequestMethodKey.String("QUERY")
-	// Any HTTP method that the instrumentation has no prior knowledge of.
-	// Stability: stable
-	HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER")
-)
-
-// Namespace: hw
-const (
-	// HwBatteryCapacityKey is the attribute Key conforming to the
-	// "hw.battery.capacity" semantic conventions. It represents the design capacity
-	// in Watts-hours or Amper-hours.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "9.3Ah", "50Wh"
-	HwBatteryCapacityKey = attribute.Key("hw.battery.capacity")
-
-	// HwBatteryChemistryKey is the attribute Key conforming to the
-	// "hw.battery.chemistry" semantic conventions. It represents the battery
-	// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Li-ion", "NiMH"
-	//
-	// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html
-	HwBatteryChemistryKey = attribute.Key("hw.battery.chemistry")
-
-	// HwBatteryStateKey is the attribute Key conforming to the "hw.battery.state"
-	// semantic conventions. It represents the current state of the battery.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwBatteryStateKey = attribute.Key("hw.battery.state")
-
-	// HwBiosVersionKey is the attribute Key conforming to the "hw.bios_version"
-	// semantic conventions. It represents the BIOS version of the hardware
-	// component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1.2.3"
-	HwBiosVersionKey = attribute.Key("hw.bios_version")
-
-	// HwDriverVersionKey is the attribute Key conforming to the "hw.driver_version"
-	// semantic conventions. It represents the driver version for the hardware
-	// component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "10.2.1-3"
-	HwDriverVersionKey = attribute.Key("hw.driver_version")
-
-	// HwEnclosureTypeKey is the attribute Key conforming to the "hw.enclosure.type"
-	// semantic conventions. It represents the type of the enclosure (useful for
-	// modular systems).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Computer", "Storage", "Switch"
-	HwEnclosureTypeKey = attribute.Key("hw.enclosure.type")
-
-	// HwFirmwareVersionKey is the attribute Key conforming to the
-	// "hw.firmware_version" semantic conventions. It represents the firmware
-	// version of the hardware component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2.0.1"
-	HwFirmwareVersionKey = attribute.Key("hw.firmware_version")
-
-	// HwGpuTaskKey is the attribute Key conforming to the "hw.gpu.task" semantic
-	// conventions. It represents the type of task the GPU is performing.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwGpuTaskKey = attribute.Key("hw.gpu.task")
-
-	// HwIDKey is the attribute Key conforming to the "hw.id" semantic conventions.
-	// It represents an identifier for the hardware component, unique within the
-	// monitored host.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "win32battery_battery_testsysa33_1"
-	HwIDKey = attribute.Key("hw.id")
-
-	// HwLimitTypeKey is the attribute Key conforming to the "hw.limit_type"
-	// semantic conventions. It represents the type of limit for hardware
-	// components.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwLimitTypeKey = attribute.Key("hw.limit_type")
-
-	// HwLogicalDiskRaidLevelKey is the attribute Key conforming to the
-	// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID
-	// Level of the logical disk.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "RAID0+1", "RAID5", "RAID10"
-	HwLogicalDiskRaidLevelKey = attribute.Key("hw.logical_disk.raid_level")
-
-	// HwLogicalDiskStateKey is the attribute Key conforming to the
-	// "hw.logical_disk.state" semantic conventions. It represents the state of the
-	// logical disk space usage.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwLogicalDiskStateKey = attribute.Key("hw.logical_disk.state")
-
-	// HwMemoryTypeKey is the attribute Key conforming to the "hw.memory.type"
-	// semantic conventions. It represents the type of the memory module.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "DDR4", "DDR5", "LPDDR5"
-	HwMemoryTypeKey = attribute.Key("hw.memory.type")
-
-	// HwModelKey is the attribute Key conforming to the "hw.model" semantic
-	// conventions. It represents the descriptive model name of the hardware
-	// component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "PERC H740P", "Intel(R) Core(TM) i7-10700K", "Dell XPS 15 Battery"
-	HwModelKey = attribute.Key("hw.model")
-
-	// HwNameKey is the attribute Key conforming to the "hw.name" semantic
-	// conventions. It represents an easily-recognizable name for the hardware
-	// component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "eth0"
-	HwNameKey = attribute.Key("hw.name")
-
-	// HwNetworkLogicalAddressesKey is the attribute Key conforming to the
-	// "hw.network.logical_addresses" semantic conventions. It represents the
-	// logical addresses of the adapter (e.g. IP address, or WWPN).
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "172.16.8.21", "57.11.193.42"
-	HwNetworkLogicalAddressesKey = attribute.Key("hw.network.logical_addresses")
-
-	// HwNetworkPhysicalAddressKey is the attribute Key conforming to the
-	// "hw.network.physical_address" semantic conventions. It represents the
-	// physical address of the adapter (e.g. MAC address, or WWNN).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "00-90-F5-E9-7B-36"
-	HwNetworkPhysicalAddressKey = attribute.Key("hw.network.physical_address")
-
-	// HwParentKey is the attribute Key conforming to the "hw.parent" semantic
-	// conventions. It represents the unique identifier of the parent component
-	// (typically the `hw.id` attribute of the enclosure, or disk controller).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "dellStorage_perc_0"
-	HwParentKey = attribute.Key("hw.parent")
-
-	// HwPhysicalDiskSmartAttributeKey is the attribute Key conforming to the
-	// "hw.physical_disk.smart_attribute" semantic conventions. It represents the
-	// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute
-	// of the physical disk.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Spin Retry Count", "Seek Error Rate", "Raw Read Error Rate"
-	//
-	// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T.
-	HwPhysicalDiskSmartAttributeKey = attribute.Key("hw.physical_disk.smart_attribute")
-
-	// HwPhysicalDiskStateKey is the attribute Key conforming to the
-	// "hw.physical_disk.state" semantic conventions. It represents the state of the
-	// physical disk endurance utilization.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwPhysicalDiskStateKey = attribute.Key("hw.physical_disk.state")
-
-	// HwPhysicalDiskTypeKey is the attribute Key conforming to the
-	// "hw.physical_disk.type" semantic conventions. It represents the type of the
-	// physical disk.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "HDD", "SSD", "10K"
-	HwPhysicalDiskTypeKey = attribute.Key("hw.physical_disk.type")
-
-	// HwSensorLocationKey is the attribute Key conforming to the
-	// "hw.sensor_location" semantic conventions. It represents the location of the
-	// sensor.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "cpu0", "ps1", "INLET", "CPU0_DIE", "AMBIENT", "MOTHERBOARD", "PS0
-	// V3_3", "MAIN_12V", "CPU_VCORE"
-	HwSensorLocationKey = attribute.Key("hw.sensor_location")
-
-	// HwSerialNumberKey is the attribute Key conforming to the "hw.serial_number"
-	// semantic conventions. It represents the serial number of the hardware
-	// component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CNFCP0123456789"
-	HwSerialNumberKey = attribute.Key("hw.serial_number")
-
-	// HwStateKey is the attribute Key conforming to the "hw.state" semantic
-	// conventions. It represents the current state of the component.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwStateKey = attribute.Key("hw.state")
-
-	// HwTapeDriveOperationTypeKey is the attribute Key conforming to the
-	// "hw.tape_drive.operation_type" semantic conventions. It represents the type
-	// of tape drive operation.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	HwTapeDriveOperationTypeKey = attribute.Key("hw.tape_drive.operation_type")
-
-	// HwTypeKey is the attribute Key conforming to the "hw.type" semantic
-	// conventions. It represents the type of the component.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: Describes the category of the hardware component for which `hw.state`
-	// is being reported. For example, `hw.type=temperature` along with
-	// `hw.state=degraded` would indicate that the temperature of the hardware
-	// component has been reported as `degraded`.
-	HwTypeKey = attribute.Key("hw.type")
-
-	// HwVendorKey is the attribute Key conforming to the "hw.vendor" semantic
-	// conventions. It represents the vendor name of the hardware component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Dell", "HP", "Intel", "AMD", "LSI", "Lenovo"
-	HwVendorKey = attribute.Key("hw.vendor")
-)
-
-// HwBatteryCapacity returns an attribute KeyValue conforming to the
-// "hw.battery.capacity" semantic conventions. It represents the design capacity
-// in Watts-hours or Amper-hours.
-func HwBatteryCapacity(val string) attribute.KeyValue {
-	return HwBatteryCapacityKey.String(val)
-}
-
-// HwBatteryChemistry returns an attribute KeyValue conforming to the
-// "hw.battery.chemistry" semantic conventions. It represents the battery
-// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc.
-//
-// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html
-func HwBatteryChemistry(val string) attribute.KeyValue {
-	return HwBatteryChemistryKey.String(val)
-}
-
-// HwBiosVersion returns an attribute KeyValue conforming to the
-// "hw.bios_version" semantic conventions. It represents the BIOS version of the
-// hardware component.
-func HwBiosVersion(val string) attribute.KeyValue {
-	return HwBiosVersionKey.String(val)
-}
-
-// HwDriverVersion returns an attribute KeyValue conforming to the
-// "hw.driver_version" semantic conventions. It represents the driver version for
-// the hardware component.
-func HwDriverVersion(val string) attribute.KeyValue {
-	return HwDriverVersionKey.String(val)
-}
-
-// HwEnclosureType returns an attribute KeyValue conforming to the
-// "hw.enclosure.type" semantic conventions. It represents the type of the
-// enclosure (useful for modular systems).
-func HwEnclosureType(val string) attribute.KeyValue {
-	return HwEnclosureTypeKey.String(val)
-}
-
-// HwFirmwareVersion returns an attribute KeyValue conforming to the
-// "hw.firmware_version" semantic conventions. It represents the firmware version
-// of the hardware component.
-func HwFirmwareVersion(val string) attribute.KeyValue {
-	return HwFirmwareVersionKey.String(val)
-}
-
-// HwID returns an attribute KeyValue conforming to the "hw.id" semantic
-// conventions. It represents an identifier for the hardware component, unique
-// within the monitored host.
-func HwID(val string) attribute.KeyValue {
-	return HwIDKey.String(val)
-}
-
-// HwLogicalDiskRaidLevel returns an attribute KeyValue conforming to the
-// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID
-// Level of the logical disk.
-func HwLogicalDiskRaidLevel(val string) attribute.KeyValue {
-	return HwLogicalDiskRaidLevelKey.String(val)
-}
-
-// HwMemoryType returns an attribute KeyValue conforming to the "hw.memory.type"
-// semantic conventions. It represents the type of the memory module.
-func HwMemoryType(val string) attribute.KeyValue {
-	return HwMemoryTypeKey.String(val)
-}
-
-// HwModel returns an attribute KeyValue conforming to the "hw.model" semantic
-// conventions. It represents the descriptive model name of the hardware
-// component.
-func HwModel(val string) attribute.KeyValue {
-	return HwModelKey.String(val)
-}
-
-// HwName returns an attribute KeyValue conforming to the "hw.name" semantic
-// conventions. It represents an easily-recognizable name for the hardware
-// component.
-func HwName(val string) attribute.KeyValue {
-	return HwNameKey.String(val)
-}
-
-// HwNetworkLogicalAddresses returns an attribute KeyValue conforming to the
-// "hw.network.logical_addresses" semantic conventions. It represents the logical
-// addresses of the adapter (e.g. IP address, or WWPN).
-func HwNetworkLogicalAddresses(val ...string) attribute.KeyValue {
-	return HwNetworkLogicalAddressesKey.StringSlice(val)
-}
-
-// HwNetworkPhysicalAddress returns an attribute KeyValue conforming to the
-// "hw.network.physical_address" semantic conventions. It represents the physical
-// address of the adapter (e.g. MAC address, or WWNN).
-func HwNetworkPhysicalAddress(val string) attribute.KeyValue {
-	return HwNetworkPhysicalAddressKey.String(val)
-}
-
-// HwParent returns an attribute KeyValue conforming to the "hw.parent" semantic
-// conventions. It represents the unique identifier of the parent component
-// (typically the `hw.id` attribute of the enclosure, or disk controller).
-func HwParent(val string) attribute.KeyValue {
-	return HwParentKey.String(val)
-}
-
-// HwPhysicalDiskSmartAttribute returns an attribute KeyValue conforming to the
-// "hw.physical_disk.smart_attribute" semantic conventions. It represents the
-// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute
-// of the physical disk.
-//
-// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T.
-func HwPhysicalDiskSmartAttribute(val string) attribute.KeyValue {
-	return HwPhysicalDiskSmartAttributeKey.String(val)
-}
-
-// HwPhysicalDiskType returns an attribute KeyValue conforming to the
-// "hw.physical_disk.type" semantic conventions. It represents the type of the
-// physical disk.
-func HwPhysicalDiskType(val string) attribute.KeyValue {
-	return HwPhysicalDiskTypeKey.String(val)
-}
-
-// HwSensorLocation returns an attribute KeyValue conforming to the
-// "hw.sensor_location" semantic conventions. It represents the location of the
-// sensor.
-func HwSensorLocation(val string) attribute.KeyValue {
-	return HwSensorLocationKey.String(val)
-}
-
-// HwSerialNumber returns an attribute KeyValue conforming to the
-// "hw.serial_number" semantic conventions. It represents the serial number of
-// the hardware component.
-func HwSerialNumber(val string) attribute.KeyValue {
-	return HwSerialNumberKey.String(val)
-}
-
-// HwVendor returns an attribute KeyValue conforming to the "hw.vendor" semantic
-// conventions. It represents the vendor name of the hardware component.
-func HwVendor(val string) attribute.KeyValue {
-	return HwVendorKey.String(val)
-}
-
-// Enum values for hw.battery.state
-var (
-	// Charging
-	// Stability: development
-	HwBatteryStateCharging = HwBatteryStateKey.String("charging")
-	// Discharging
-	// Stability: development
-	HwBatteryStateDischarging = HwBatteryStateKey.String("discharging")
-)
-
-// Enum values for hw.gpu.task
-var (
-	// Decoder
-	// Stability: development
-	HwGpuTaskDecoder = HwGpuTaskKey.String("decoder")
-	// Encoder
-	// Stability: development
-	HwGpuTaskEncoder = HwGpuTaskKey.String("encoder")
-	// General
-	// Stability: development
-	HwGpuTaskGeneral = HwGpuTaskKey.String("general")
-)
-
-// Enum values for hw.limit_type
-var (
-	// Critical
-	// Stability: development
-	HwLimitTypeCritical = HwLimitTypeKey.String("critical")
-	// Degraded
-	// Stability: development
-	HwLimitTypeDegraded = HwLimitTypeKey.String("degraded")
-	// High Critical
-	// Stability: development
-	HwLimitTypeHighCritical = HwLimitTypeKey.String("high.critical")
-	// High Degraded
-	// Stability: development
-	HwLimitTypeHighDegraded = HwLimitTypeKey.String("high.degraded")
-	// Low Critical
-	// Stability: development
-	HwLimitTypeLowCritical = HwLimitTypeKey.String("low.critical")
-	// Low Degraded
-	// Stability: development
-	HwLimitTypeLowDegraded = HwLimitTypeKey.String("low.degraded")
-	// Maximum
-	// Stability: development
-	HwLimitTypeMax = HwLimitTypeKey.String("max")
-	// Throttled
-	// Stability: development
-	HwLimitTypeThrottled = HwLimitTypeKey.String("throttled")
-	// Turbo
-	// Stability: development
-	HwLimitTypeTurbo = HwLimitTypeKey.String("turbo")
-)
-
-// Enum values for hw.logical_disk.state
-var (
-	// Used
-	// Stability: development
-	HwLogicalDiskStateUsed = HwLogicalDiskStateKey.String("used")
-	// Free
-	// Stability: development
-	HwLogicalDiskStateFree = HwLogicalDiskStateKey.String("free")
-)
-
-// Enum values for hw.physical_disk.state
-var (
-	// Remaining
-	// Stability: development
-	HwPhysicalDiskStateRemaining = HwPhysicalDiskStateKey.String("remaining")
-)
-
-// Enum values for hw.state
-var (
-	// Degraded
-	// Stability: development
-	HwStateDegraded = HwStateKey.String("degraded")
-	// Failed
-	// Stability: development
-	HwStateFailed = HwStateKey.String("failed")
-	// Needs Cleaning
-	// Stability: development
-	HwStateNeedsCleaning = HwStateKey.String("needs_cleaning")
-	// OK
-	// Stability: development
-	HwStateOk = HwStateKey.String("ok")
-	// Predicted Failure
-	// Stability: development
-	HwStatePredictedFailure = HwStateKey.String("predicted_failure")
-)
-
-// Enum values for hw.tape_drive.operation_type
-var (
-	// Mount
-	// Stability: development
-	HwTapeDriveOperationTypeMount = HwTapeDriveOperationTypeKey.String("mount")
-	// Unmount
-	// Stability: development
-	HwTapeDriveOperationTypeUnmount = HwTapeDriveOperationTypeKey.String("unmount")
-	// Clean
-	// Stability: development
-	HwTapeDriveOperationTypeClean = HwTapeDriveOperationTypeKey.String("clean")
-)
-
-// Enum values for hw.type
-var (
-	// Battery
-	// Stability: development
-	HwTypeBattery = HwTypeKey.String("battery")
-	// CPU
-	// Stability: development
-	HwTypeCPU = HwTypeKey.String("cpu")
-	// Disk controller
-	// Stability: development
-	HwTypeDiskController = HwTypeKey.String("disk_controller")
-	// Enclosure
-	// Stability: development
-	HwTypeEnclosure = HwTypeKey.String("enclosure")
-	// Fan
-	// Stability: development
-	HwTypeFan = HwTypeKey.String("fan")
-	// GPU
-	// Stability: development
-	HwTypeGpu = HwTypeKey.String("gpu")
-	// Logical disk
-	// Stability: development
-	HwTypeLogicalDisk = HwTypeKey.String("logical_disk")
-	// Memory
-	// Stability: development
-	HwTypeMemory = HwTypeKey.String("memory")
-	// Network
-	// Stability: development
-	HwTypeNetwork = HwTypeKey.String("network")
-	// Physical disk
-	// Stability: development
-	HwTypePhysicalDisk = HwTypeKey.String("physical_disk")
-	// Power supply
-	// Stability: development
-	HwTypePowerSupply = HwTypeKey.String("power_supply")
-	// Tape drive
-	// Stability: development
-	HwTypeTapeDrive = HwTypeKey.String("tape_drive")
-	// Temperature
-	// Stability: development
-	HwTypeTemperature = HwTypeKey.String("temperature")
-	// Voltage
-	// Stability: development
-	HwTypeVoltage = HwTypeKey.String("voltage")
-)
-
-// Namespace: ios
-const (
-	// IOSAppStateKey is the attribute Key conforming to the "ios.app.state"
-	// semantic conventions. It represents the this attribute represents the state
-	// of the application.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: The iOS lifecycle states are defined in the
-	// [UIApplicationDelegate documentation], and from which the `OS terminology`
-	// column values are derived.
-	//
-	// [UIApplicationDelegate documentation]: https://developer.apple.com/documentation/uikit/uiapplicationdelegate
-	IOSAppStateKey = attribute.Key("ios.app.state")
-)
-
-// Enum values for ios.app.state
-var (
-	// The app has become `active`. Associated with UIKit notification
-	// `applicationDidBecomeActive`.
-	//
-	// Stability: development
-	IOSAppStateActive = IOSAppStateKey.String("active")
-	// The app is now `inactive`. Associated with UIKit notification
-	// `applicationWillResignActive`.
-	//
-	// Stability: development
-	IOSAppStateInactive = IOSAppStateKey.String("inactive")
-	// The app is now in the background. This value is associated with UIKit
-	// notification `applicationDidEnterBackground`.
-	//
-	// Stability: development
-	IOSAppStateBackground = IOSAppStateKey.String("background")
-	// The app is now in the foreground. This value is associated with UIKit
-	// notification `applicationWillEnterForeground`.
-	//
-	// Stability: development
-	IOSAppStateForeground = IOSAppStateKey.String("foreground")
-	// The app is about to terminate. Associated with UIKit notification
-	// `applicationWillTerminate`.
-	//
-	// Stability: development
-	IOSAppStateTerminate = IOSAppStateKey.String("terminate")
-)
-
-// Namespace: jsonrpc
-const (
-	// JSONRPCProtocolVersionKey is the attribute Key conforming to the
-	// "jsonrpc.protocol.version" semantic conventions. It represents the protocol
-	// version, as specified in the `jsonrpc` property of the request and its
-	// corresponding response.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2.0", "1.0"
-	JSONRPCProtocolVersionKey = attribute.Key("jsonrpc.protocol.version")
-
-	// JSONRPCRequestIDKey is the attribute Key conforming to the
-	// "jsonrpc.request.id" semantic conventions. It represents a string
-	// representation of the `id` property of the request and its corresponding
-	// response.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "10", "request-7"
-	// Note: Under the [JSON-RPC specification], the `id` property may be a string,
-	// number, null, or omitted entirely. When omitted, the request is treated as a
-	// notification. Using `null` is not equivalent to omitting the `id`, but it is
-	// discouraged.
-	// Instrumentations SHOULD NOT capture this attribute when the `id` is `null` or
-	// omitted.
-	//
-	// [JSON-RPC specification]: https://www.jsonrpc.org/specification
-	JSONRPCRequestIDKey = attribute.Key("jsonrpc.request.id")
-)
-
-// JSONRPCProtocolVersion returns an attribute KeyValue conforming to the
-// "jsonrpc.protocol.version" semantic conventions. It represents the protocol
-// version, as specified in the `jsonrpc` property of the request and its
-// corresponding response.
-func JSONRPCProtocolVersion(val string) attribute.KeyValue {
-	return JSONRPCProtocolVersionKey.String(val)
-}
-
-// JSONRPCRequestID returns an attribute KeyValue conforming to the
-// "jsonrpc.request.id" semantic conventions. It represents a string
-// representation of the `id` property of the request and its corresponding
-// response.
-func JSONRPCRequestID(val string) attribute.KeyValue {
-	return JSONRPCRequestIDKey.String(val)
-}
-
-// Namespace: k8s
-const (
-	// K8SClusterNameKey is the attribute Key conforming to the "k8s.cluster.name"
-	// semantic conventions. It represents the name of the cluster.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry-cluster"
-	K8SClusterNameKey = attribute.Key("k8s.cluster.name")
-
-	// K8SClusterUIDKey is the attribute Key conforming to the "k8s.cluster.uid"
-	// semantic conventions. It represents a pseudo-ID for the cluster, set to the
-	// UID of the `kube-system` namespace.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
-	// Note: K8s doesn't have support for obtaining a cluster ID. If this is ever
-	// added, we will recommend collecting the `k8s.cluster.uid` through the
-	// official APIs. In the meantime, we are able to use the `uid` of the
-	// `kube-system` namespace as a proxy for cluster ID. Read on for the
-	// rationale.
-	//
-	// Every object created in a K8s cluster is assigned a distinct UID. The
-	// `kube-system` namespace is used by Kubernetes itself and will exist
-	// for the lifetime of the cluster. Using the `uid` of the `kube-system`
-	// namespace is a reasonable proxy for the K8s ClusterID as it will only
-	// change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are
-	// UUIDs as standardized by
-	// [ISO/IEC 9834-8 and ITU-T X.667].
-	// Which states:
-	//
-	// > If generated according to one of the mechanisms defined in Rec.
-	// > ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be
-	// > different from all other UUIDs generated before 3603 A.D., or is
-	// > extremely likely to be different (depending on the mechanism chosen).
-	//
-	// Therefore, UIDs between clusters should be extremely unlikely to
-	// conflict.
-	//
-	// [ISO/IEC 9834-8 and ITU-T X.667]: https://www.itu.int/ITU-T/studygroups/com17/oid.html
-	K8SClusterUIDKey = attribute.Key("k8s.cluster.uid")
-
-	// K8SContainerNameKey is the attribute Key conforming to the
-	// "k8s.container.name" semantic conventions. It represents the name of the
-	// Container from Pod specification, must be unique within a Pod. Container
-	// runtime usually uses different globally unique name (`container.name`).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "redis"
-	K8SContainerNameKey = attribute.Key("k8s.container.name")
-
-	// K8SContainerRestartCountKey is the attribute Key conforming to the
-	// "k8s.container.restart_count" semantic conventions. It represents the number
-	// of times the container was restarted. This attribute can be used to identify
-	// a particular container (running or stopped) within a container spec.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples:
-	K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count")
-
-	// K8SContainerStatusLastTerminatedReasonKey is the attribute Key conforming to
-	// the "k8s.container.status.last_terminated_reason" semantic conventions. It
-	// represents the last terminated reason of the Container.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Evicted", "Error"
-	K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason")
-
-	// K8SContainerStatusReasonKey is the attribute Key conforming to the
-	// "k8s.container.status.reason" semantic conventions. It represents the reason
-	// for the container state. Corresponds to the `reason` field of the:
-	// [K8s ContainerStateWaiting] or [K8s ContainerStateTerminated].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "ContainerCreating", "CrashLoopBackOff",
-	// "CreateContainerConfigError", "ErrImagePull", "ImagePullBackOff",
-	// "OOMKilled", "Completed", "Error", "ContainerCannotRun"
-	//
-	// [K8s ContainerStateWaiting]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstatewaiting-v1-core
-	// [K8s ContainerStateTerminated]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstateterminated-v1-core
-	K8SContainerStatusReasonKey = attribute.Key("k8s.container.status.reason")
-
-	// K8SContainerStatusStateKey is the attribute Key conforming to the
-	// "k8s.container.status.state" semantic conventions. It represents the state of
-	// the container. [K8s ContainerState].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "terminated", "running", "waiting"
-	//
-	// [K8s ContainerState]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstate-v1-core
-	K8SContainerStatusStateKey = attribute.Key("k8s.container.status.state")
-
-	// K8SCronJobNameKey is the attribute Key conforming to the "k8s.cronjob.name"
-	// semantic conventions. It represents the name of the CronJob.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry"
-	K8SCronJobNameKey = attribute.Key("k8s.cronjob.name")
-
-	// K8SCronJobUIDKey is the attribute Key conforming to the "k8s.cronjob.uid"
-	// semantic conventions. It represents the UID of the CronJob.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid")
-
-	// K8SDaemonSetNameKey is the attribute Key conforming to the
-	// "k8s.daemonset.name" semantic conventions. It represents the name of the
-	// DaemonSet.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry"
-	K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name")
-
-	// K8SDaemonSetUIDKey is the attribute Key conforming to the "k8s.daemonset.uid"
-	// semantic conventions. It represents the UID of the DaemonSet.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid")
-
-	// K8SDeploymentNameKey is the attribute Key conforming to the
-	// "k8s.deployment.name" semantic conventions. It represents the name of the
-	// Deployment.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry"
-	K8SDeploymentNameKey = attribute.Key("k8s.deployment.name")
-
-	// K8SDeploymentUIDKey is the attribute Key conforming to the
-	// "k8s.deployment.uid" semantic conventions. It represents the UID of the
-	// Deployment.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid")
-
-	// K8SHPAMetricTypeKey is the attribute Key conforming to the
-	// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric
-	// source for the horizontal pod autoscaler.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Resource", "ContainerResource"
-	// Note: This attribute reflects the `type` field of spec.metrics[] in the HPA.
-	K8SHPAMetricTypeKey = attribute.Key("k8s.hpa.metric.type")
-
-	// K8SHPANameKey is the attribute Key conforming to the "k8s.hpa.name" semantic
-	// conventions. It represents the name of the horizontal pod autoscaler.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry"
-	K8SHPANameKey = attribute.Key("k8s.hpa.name")
-
-	// K8SHPAScaletargetrefAPIVersionKey is the attribute Key conforming to the
-	// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the
-	// API version of the target resource to scale for the HorizontalPodAutoscaler.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "apps/v1", "autoscaling/v2"
-	// Note: This maps to the `apiVersion` field in the `scaleTargetRef` of the HPA
-	// spec.
-	K8SHPAScaletargetrefAPIVersionKey = attribute.Key("k8s.hpa.scaletargetref.api_version")
-
-	// K8SHPAScaletargetrefKindKey is the attribute Key conforming to the
-	// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of
-	// the target resource to scale for the HorizontalPodAutoscaler.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Deployment", "StatefulSet"
-	// Note: This maps to the `kind` field in the `scaleTargetRef` of the HPA spec.
-	K8SHPAScaletargetrefKindKey = attribute.Key("k8s.hpa.scaletargetref.kind")
-
-	// K8SHPAScaletargetrefNameKey is the attribute Key conforming to the
-	// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of
-	// the target resource to scale for the HorizontalPodAutoscaler.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-deployment", "my-statefulset"
-	// Note: This maps to the `name` field in the `scaleTargetRef` of the HPA spec.
-	K8SHPAScaletargetrefNameKey = attribute.Key("k8s.hpa.scaletargetref.name")
-
-	// K8SHPAUIDKey is the attribute Key conforming to the "k8s.hpa.uid" semantic
-	// conventions. It represents the UID of the horizontal pod autoscaler.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SHPAUIDKey = attribute.Key("k8s.hpa.uid")
-
-	// K8SHugepageSizeKey is the attribute Key conforming to the "k8s.hugepage.size"
-	// semantic conventions. It represents the size (identifier) of the K8s huge
-	// page.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2Mi"
-	K8SHugepageSizeKey = attribute.Key("k8s.hugepage.size")
-
-	// K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" semantic
-	// conventions. It represents the name of the Job.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry"
-	K8SJobNameKey = attribute.Key("k8s.job.name")
-
-	// K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" semantic
-	// conventions. It represents the UID of the Job.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SJobUIDKey = attribute.Key("k8s.job.uid")
-
-	// K8SNamespaceNameKey is the attribute Key conforming to the
-	// "k8s.namespace.name" semantic conventions. It represents the name of the
-	// namespace that the pod is running in.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "default"
-	K8SNamespaceNameKey = attribute.Key("k8s.namespace.name")
-
-	// K8SNamespacePhaseKey is the attribute Key conforming to the
-	// "k8s.namespace.phase" semantic conventions. It represents the phase of the
-	// K8s namespace.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "active", "terminating"
-	// Note: This attribute aligns with the `phase` field of the
-	// [K8s NamespaceStatus]
-	//
-	// [K8s NamespaceStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#namespacestatus-v1-core
-	K8SNamespacePhaseKey = attribute.Key("k8s.namespace.phase")
-
-	// K8SNodeConditionStatusKey is the attribute Key conforming to the
-	// "k8s.node.condition.status" semantic conventions. It represents the status of
-	// the condition, one of True, False, Unknown.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "true", "false", "unknown"
-	// Note: This attribute aligns with the `status` field of the
-	// [NodeCondition]
-	//
-	// [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core
-	K8SNodeConditionStatusKey = attribute.Key("k8s.node.condition.status")
-
-	// K8SNodeConditionTypeKey is the attribute Key conforming to the
-	// "k8s.node.condition.type" semantic conventions. It represents the condition
-	// type of a K8s Node.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Ready", "DiskPressure"
-	// Note: K8s Node conditions as described
-	// by [K8s documentation].
-	//
-	// This attribute aligns with the `type` field of the
-	// [NodeCondition]
-	//
-	// The set of possible values is not limited to those listed here. Managed
-	// Kubernetes environments,
-	// or custom controllers MAY introduce additional node condition types.
-	// When this occurs, the exact value as reported by the Kubernetes API SHOULD be
-	// used.
-	//
-	// [K8s documentation]: https://v1-32.docs.kubernetes.io/docs/reference/node/node-status/#condition
-	// [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core
-	K8SNodeConditionTypeKey = attribute.Key("k8s.node.condition.type")
-
-	// K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name"
-	// semantic conventions. It represents the name of the Node.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "node-1"
-	K8SNodeNameKey = attribute.Key("k8s.node.name")
-
-	// K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" semantic
-	// conventions. It represents the UID of the Node.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2"
-	K8SNodeUIDKey = attribute.Key("k8s.node.uid")
-
-	// K8SPodHostnameKey is the attribute Key conforming to the "k8s.pod.hostname"
-	// semantic conventions. It represents the specifies the hostname of the Pod.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "collector-gateway"
-	// Note: The K8s Pod spec has an optional hostname field, which can be used to
-	// specify a hostname.
-	// Refer to [K8s docs]
-	// for more information about this field.
-	//
-	// This attribute aligns with the `hostname` field of the
-	// [K8s PodSpec].
-	//
-	// [K8s docs]: https://kubernetes.io/docs/concepts/services-networking/dns-pod-service/#pod-hostname-and-subdomain-field
-	// [K8s PodSpec]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podspec-v1-core
-	K8SPodHostnameKey = attribute.Key("k8s.pod.hostname")
-
-	// K8SPodIPKey is the attribute Key conforming to the "k8s.pod.ip" semantic
-	// conventions. It represents the IP address allocated to the Pod.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "172.18.0.2"
-	// Note: This attribute aligns with the `podIP` field of the
-	// [K8s PodStatus].
-	//
-	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core
-	K8SPodIPKey = attribute.Key("k8s.pod.ip")
-
-	// K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" semantic
-	// conventions. It represents the name of the Pod.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry-pod-autoconf"
-	K8SPodNameKey = attribute.Key("k8s.pod.name")
-
-	// K8SPodStartTimeKey is the attribute Key conforming to the
-	// "k8s.pod.start_time" semantic conventions. It represents the start timestamp
-	// of the Pod.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "2025-12-04T08:41:03Z"
-	// Note: Date and time at which the object was acknowledged by the Kubelet.
-	// This is before the Kubelet pulled the container image(s) for the pod.
-	//
-	// This attribute aligns with the `startTime` field of the
-	// [K8s PodStatus],
-	// in ISO 8601 (RFC 3339 compatible) format.
-	//
-	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core
-	K8SPodStartTimeKey = attribute.Key("k8s.pod.start_time")
-
-	// K8SPodStatusPhaseKey is the attribute Key conforming to the
-	// "k8s.pod.status.phase" semantic conventions. It represents the phase for the
-	// pod. Corresponds to the `phase` field of the: [K8s PodStatus].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Pending", "Running"
-	//
-	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core
-	K8SPodStatusPhaseKey = attribute.Key("k8s.pod.status.phase")
-
-	// K8SPodStatusReasonKey is the attribute Key conforming to the
-	// "k8s.pod.status.reason" semantic conventions. It represents the reason for
-	// the pod state. Corresponds to the `reason` field of the: [K8s PodStatus].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Evicted", "NodeAffinity"
-	//
-	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core
-	K8SPodStatusReasonKey = attribute.Key("k8s.pod.status.reason")
-
-	// K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" semantic
-	// conventions. It represents the UID of the Pod.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SPodUIDKey = attribute.Key("k8s.pod.uid")
-
-	// K8SReplicaSetNameKey is the attribute Key conforming to the
-	// "k8s.replicaset.name" semantic conventions. It represents the name of the
-	// ReplicaSet.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry"
-	K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name")
-
-	// K8SReplicaSetUIDKey is the attribute Key conforming to the
-	// "k8s.replicaset.uid" semantic conventions. It represents the UID of the
-	// ReplicaSet.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid")
-
-	// K8SReplicationControllerNameKey is the attribute Key conforming to the
-	// "k8s.replicationcontroller.name" semantic conventions. It represents the name
-	// of the replication controller.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry"
-	K8SReplicationControllerNameKey = attribute.Key("k8s.replicationcontroller.name")
-
-	// K8SReplicationControllerUIDKey is the attribute Key conforming to the
-	// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID
-	// of the replication controller.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SReplicationControllerUIDKey = attribute.Key("k8s.replicationcontroller.uid")
-
-	// K8SResourceQuotaNameKey is the attribute Key conforming to the
-	// "k8s.resourcequota.name" semantic conventions. It represents the name of the
-	// resource quota.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry"
-	K8SResourceQuotaNameKey = attribute.Key("k8s.resourcequota.name")
-
-	// K8SResourceQuotaResourceNameKey is the attribute Key conforming to the
-	// "k8s.resourcequota.resource_name" semantic conventions. It represents the
-	// name of the K8s resource a resource quota defines.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "count/replicationcontrollers"
-	// Note: The value for this attribute can be either the full
-	// `count/<resource>[.<group>]` string (e.g., count/deployments.apps,
-	// count/pods), or, for certain core Kubernetes resources, just the resource
-	// name (e.g., pods, services, configmaps). Both forms are supported by
-	// Kubernetes for object count quotas. See
-	// [Kubernetes Resource Quotas documentation] for more details.
-	//
-	// [Kubernetes Resource Quotas documentation]: https://kubernetes.io/docs/concepts/policy/resource-quotas/#quota-on-object-count
-	K8SResourceQuotaResourceNameKey = attribute.Key("k8s.resourcequota.resource_name")
-
-	// K8SResourceQuotaUIDKey is the attribute Key conforming to the
-	// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the
-	// resource quota.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SResourceQuotaUIDKey = attribute.Key("k8s.resourcequota.uid")
-
-	// K8SStatefulSetNameKey is the attribute Key conforming to the
-	// "k8s.statefulset.name" semantic conventions. It represents the name of the
-	// StatefulSet.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "opentelemetry"
-	K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name")
-
-	// K8SStatefulSetUIDKey is the attribute Key conforming to the
-	// "k8s.statefulset.uid" semantic conventions. It represents the UID of the
-	// StatefulSet.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Alpha
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid")
-
-	// K8SStorageclassNameKey is the attribute Key conforming to the
-	// "k8s.storageclass.name" semantic conventions. It represents the name of K8s
-	// [StorageClass] object.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "gold.storageclass.storage.k8s.io"
-	//
-	// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io
-	K8SStorageclassNameKey = attribute.Key("k8s.storageclass.name")
-
-	// K8SVolumeNameKey is the attribute Key conforming to the "k8s.volume.name"
-	// semantic conventions. It represents the name of the K8s volume.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "volume0"
-	K8SVolumeNameKey = attribute.Key("k8s.volume.name")
-
-	// K8SVolumeTypeKey is the attribute Key conforming to the "k8s.volume.type"
-	// semantic conventions. It represents the type of the K8s volume.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "emptyDir", "persistentVolumeClaim"
-	K8SVolumeTypeKey = attribute.Key("k8s.volume.type")
-)
-
-// K8SClusterName returns an attribute KeyValue conforming to the
-// "k8s.cluster.name" semantic conventions. It represents the name of the
-// cluster.
-func K8SClusterName(val string) attribute.KeyValue {
-	return K8SClusterNameKey.String(val)
-}
-
-// K8SClusterUID returns an attribute KeyValue conforming to the
-// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the
-// cluster, set to the UID of the `kube-system` namespace.
-func K8SClusterUID(val string) attribute.KeyValue {
-	return K8SClusterUIDKey.String(val)
-}
-
-// K8SContainerName returns an attribute KeyValue conforming to the
-// "k8s.container.name" semantic conventions. It represents the name of the
-// Container from Pod specification, must be unique within a Pod. Container
-// runtime usually uses different globally unique name (`container.name`).
-func K8SContainerName(val string) attribute.KeyValue {
-	return K8SContainerNameKey.String(val)
-}
-
-// K8SContainerRestartCount returns an attribute KeyValue conforming to the
-// "k8s.container.restart_count" semantic conventions. It represents the number
-// of times the container was restarted. This attribute can be used to identify a
-// particular container (running or stopped) within a container spec.
-func K8SContainerRestartCount(val int) attribute.KeyValue {
-	return K8SContainerRestartCountKey.Int(val)
-}
-
-// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue
-// conforming to the "k8s.container.status.last_terminated_reason" semantic
-// conventions. It represents the last terminated reason of the Container.
-func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue {
-	return K8SContainerStatusLastTerminatedReasonKey.String(val)
-}
-
-// K8SCronJobAnnotation returns an attribute KeyValue conforming to the
-// "k8s.cronjob.annotation" semantic conventions. It represents the cronjob
-// annotation placed on the CronJob, the `<key>` being the annotation name, the
-// value being the annotation value.
-func K8SCronJobAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.cronjob.annotation."+key, val)
-}
-
-// K8SCronJobLabel returns an attribute KeyValue conforming to the
-// "k8s.cronjob.label" semantic conventions. It represents the label placed on
-// the CronJob, the `<key>` being the label name, the value being the label
-// value.
-func K8SCronJobLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.cronjob.label."+key, val)
-}
-
-// K8SCronJobName returns an attribute KeyValue conforming to the
-// "k8s.cronjob.name" semantic conventions. It represents the name of the
-// CronJob.
-func K8SCronJobName(val string) attribute.KeyValue {
-	return K8SCronJobNameKey.String(val)
-}
-
-// K8SCronJobUID returns an attribute KeyValue conforming to the
-// "k8s.cronjob.uid" semantic conventions. It represents the UID of the CronJob.
-func K8SCronJobUID(val string) attribute.KeyValue {
-	return K8SCronJobUIDKey.String(val)
-}
-
-// K8SDaemonSetAnnotation returns an attribute KeyValue conforming to the
-// "k8s.daemonset.annotation" semantic conventions. It represents the annotation
-// placed on the DaemonSet, the `<key>` being the annotation name, the value
-// being the annotation value, even if the value is empty.
-func K8SDaemonSetAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.daemonset.annotation."+key, val)
-}
-
-// K8SDaemonSetLabel returns an attribute KeyValue conforming to the
-// "k8s.daemonset.label" semantic conventions. It represents the label placed on
-// the DaemonSet, the `<key>` being the label name, the value being the label
-// value, even if the value is empty.
-func K8SDaemonSetLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.daemonset.label."+key, val)
-}
-
-// K8SDaemonSetName returns an attribute KeyValue conforming to the
-// "k8s.daemonset.name" semantic conventions. It represents the name of the
-// DaemonSet.
-func K8SDaemonSetName(val string) attribute.KeyValue {
-	return K8SDaemonSetNameKey.String(val)
-}
-
-// K8SDaemonSetUID returns an attribute KeyValue conforming to the
-// "k8s.daemonset.uid" semantic conventions. It represents the UID of the
-// DaemonSet.
-func K8SDaemonSetUID(val string) attribute.KeyValue {
-	return K8SDaemonSetUIDKey.String(val)
-}
-
-// K8SDeploymentAnnotation returns an attribute KeyValue conforming to the
-// "k8s.deployment.annotation" semantic conventions. It represents the annotation
-// placed on the Deployment, the `<key>` being the annotation name, the value
-// being the annotation value, even if the value is empty.
-func K8SDeploymentAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.deployment.annotation."+key, val)
-}
-
-// K8SDeploymentLabel returns an attribute KeyValue conforming to the
-// "k8s.deployment.label" semantic conventions. It represents the label placed on
-// the Deployment, the `<key>` being the label name, the value being the label
-// value, even if the value is empty.
-func K8SDeploymentLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.deployment.label."+key, val)
-}
-
-// K8SDeploymentName returns an attribute KeyValue conforming to the
-// "k8s.deployment.name" semantic conventions. It represents the name of the
-// Deployment.
-func K8SDeploymentName(val string) attribute.KeyValue {
-	return K8SDeploymentNameKey.String(val)
-}
-
-// K8SDeploymentUID returns an attribute KeyValue conforming to the
-// "k8s.deployment.uid" semantic conventions. It represents the UID of the
-// Deployment.
-func K8SDeploymentUID(val string) attribute.KeyValue {
-	return K8SDeploymentUIDKey.String(val)
-}
-
-// K8SHPAMetricType returns an attribute KeyValue conforming to the
-// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric
-// source for the horizontal pod autoscaler.
-func K8SHPAMetricType(val string) attribute.KeyValue {
-	return K8SHPAMetricTypeKey.String(val)
-}
-
-// K8SHPAName returns an attribute KeyValue conforming to the "k8s.hpa.name"
-// semantic conventions. It represents the name of the horizontal pod autoscaler.
-func K8SHPAName(val string) attribute.KeyValue {
-	return K8SHPANameKey.String(val)
-}
-
-// K8SHPAScaletargetrefAPIVersion returns an attribute KeyValue conforming to the
-// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the
-// API version of the target resource to scale for the HorizontalPodAutoscaler.
-func K8SHPAScaletargetrefAPIVersion(val string) attribute.KeyValue {
-	return K8SHPAScaletargetrefAPIVersionKey.String(val)
-}
-
-// K8SHPAScaletargetrefKind returns an attribute KeyValue conforming to the
-// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of
-// the target resource to scale for the HorizontalPodAutoscaler.
-func K8SHPAScaletargetrefKind(val string) attribute.KeyValue {
-	return K8SHPAScaletargetrefKindKey.String(val)
-}
-
-// K8SHPAScaletargetrefName returns an attribute KeyValue conforming to the
-// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of
-// the target resource to scale for the HorizontalPodAutoscaler.
-func K8SHPAScaletargetrefName(val string) attribute.KeyValue {
-	return K8SHPAScaletargetrefNameKey.String(val)
-}
-
-// K8SHPAUID returns an attribute KeyValue conforming to the "k8s.hpa.uid"
-// semantic conventions. It represents the UID of the horizontal pod autoscaler.
-func K8SHPAUID(val string) attribute.KeyValue {
-	return K8SHPAUIDKey.String(val)
-}
-
-// K8SHugepageSize returns an attribute KeyValue conforming to the
-// "k8s.hugepage.size" semantic conventions. It represents the size (identifier)
-// of the K8s huge page.
-func K8SHugepageSize(val string) attribute.KeyValue {
-	return K8SHugepageSizeKey.String(val)
-}
-
-// K8SJobAnnotation returns an attribute KeyValue conforming to the
-// "k8s.job.annotation" semantic conventions. It represents the annotation placed
-// on the Job, the `<key>` being the annotation name, the value being the
-// annotation value, even if the value is empty.
-func K8SJobAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.job.annotation."+key, val)
-}
-
-// K8SJobLabel returns an attribute KeyValue conforming to the "k8s.job.label"
-// semantic conventions. It represents the label placed on the Job, the `<key>`
-// being the label name, the value being the label value, even if the value is
-// empty.
-func K8SJobLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.job.label."+key, val)
-}
-
-// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name"
-// semantic conventions. It represents the name of the Job.
-func K8SJobName(val string) attribute.KeyValue {
-	return K8SJobNameKey.String(val)
-}
-
-// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid"
-// semantic conventions. It represents the UID of the Job.
-func K8SJobUID(val string) attribute.KeyValue {
-	return K8SJobUIDKey.String(val)
-}
-
-// K8SNamespaceAnnotation returns an attribute KeyValue conforming to the
-// "k8s.namespace.annotation" semantic conventions. It represents the annotation
-// placed on the Namespace, the `<key>` being the annotation name, the value
-// being the annotation value, even if the value is empty.
-func K8SNamespaceAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.namespace.annotation."+key, val)
-}
-
-// K8SNamespaceLabel returns an attribute KeyValue conforming to the
-// "k8s.namespace.label" semantic conventions. It represents the label placed on
-// the Namespace, the `<key>` being the label name, the value being the label
-// value, even if the value is empty.
-func K8SNamespaceLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.namespace.label."+key, val)
-}
-
-// K8SNamespaceName returns an attribute KeyValue conforming to the
-// "k8s.namespace.name" semantic conventions. It represents the name of the
-// namespace that the pod is running in.
-func K8SNamespaceName(val string) attribute.KeyValue {
-	return K8SNamespaceNameKey.String(val)
-}
-
-// K8SNodeAnnotation returns an attribute KeyValue conforming to the
-// "k8s.node.annotation" semantic conventions. It represents the annotation
-// placed on the Node, the `<key>` being the annotation name, the value being the
-// annotation value, even if the value is empty.
-func K8SNodeAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.node.annotation."+key, val)
-}
-
-// K8SNodeLabel returns an attribute KeyValue conforming to the "k8s.node.label"
-// semantic conventions. It represents the label placed on the Node, the `<key>`
-// being the label name, the value being the label value, even if the value is
-// empty.
-func K8SNodeLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.node.label."+key, val)
-}
-
-// K8SNodeName returns an attribute KeyValue conforming to the "k8s.node.name"
-// semantic conventions. It represents the name of the Node.
-func K8SNodeName(val string) attribute.KeyValue {
-	return K8SNodeNameKey.String(val)
-}
-
-// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid"
-// semantic conventions. It represents the UID of the Node.
-func K8SNodeUID(val string) attribute.KeyValue {
-	return K8SNodeUIDKey.String(val)
-}
-
-// K8SPodAnnotation returns an attribute KeyValue conforming to the
-// "k8s.pod.annotation" semantic conventions. It represents the annotation placed
-// on the Pod, the `<key>` being the annotation name, the value being the
-// annotation value.
-func K8SPodAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.pod.annotation."+key, val)
-}
-
-// K8SPodHostname returns an attribute KeyValue conforming to the
-// "k8s.pod.hostname" semantic conventions. It represents the specifies the
-// hostname of the Pod.
-func K8SPodHostname(val string) attribute.KeyValue {
-	return K8SPodHostnameKey.String(val)
-}
-
-// K8SPodIP returns an attribute KeyValue conforming to the "k8s.pod.ip" semantic
-// conventions. It represents the IP address allocated to the Pod.
-func K8SPodIP(val string) attribute.KeyValue {
-	return K8SPodIPKey.String(val)
-}
-
-// K8SPodLabel returns an attribute KeyValue conforming to the "k8s.pod.label"
-// semantic conventions. It represents the label placed on the Pod, the `<key>`
-// being the label name, the value being the label value.
-func K8SPodLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.pod.label."+key, val)
-}
-
-// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name"
-// semantic conventions. It represents the name of the Pod.
-func K8SPodName(val string) attribute.KeyValue {
-	return K8SPodNameKey.String(val)
-}
-
-// K8SPodStartTime returns an attribute KeyValue conforming to the
-// "k8s.pod.start_time" semantic conventions. It represents the start timestamp
-// of the Pod.
-func K8SPodStartTime(val string) attribute.KeyValue {
-	return K8SPodStartTimeKey.String(val)
-}
-
-// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid"
-// semantic conventions. It represents the UID of the Pod.
-func K8SPodUID(val string) attribute.KeyValue {
-	return K8SPodUIDKey.String(val)
-}
-
-// K8SReplicaSetAnnotation returns an attribute KeyValue conforming to the
-// "k8s.replicaset.annotation" semantic conventions. It represents the annotation
-// placed on the ReplicaSet, the `<key>` being the annotation name, the value
-// being the annotation value, even if the value is empty.
-func K8SReplicaSetAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.replicaset.annotation."+key, val)
-}
-
-// K8SReplicaSetLabel returns an attribute KeyValue conforming to the
-// "k8s.replicaset.label" semantic conventions. It represents the label placed on
-// the ReplicaSet, the `<key>` being the label name, the value being the label
-// value, even if the value is empty.
-func K8SReplicaSetLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.replicaset.label."+key, val)
-}
-
-// K8SReplicaSetName returns an attribute KeyValue conforming to the
-// "k8s.replicaset.name" semantic conventions. It represents the name of the
-// ReplicaSet.
-func K8SReplicaSetName(val string) attribute.KeyValue {
-	return K8SReplicaSetNameKey.String(val)
-}
-
-// K8SReplicaSetUID returns an attribute KeyValue conforming to the
-// "k8s.replicaset.uid" semantic conventions. It represents the UID of the
-// ReplicaSet.
-func K8SReplicaSetUID(val string) attribute.KeyValue {
-	return K8SReplicaSetUIDKey.String(val)
-}
-
-// K8SReplicationControllerName returns an attribute KeyValue conforming to the
-// "k8s.replicationcontroller.name" semantic conventions. It represents the name
-// of the replication controller.
-func K8SReplicationControllerName(val string) attribute.KeyValue {
-	return K8SReplicationControllerNameKey.String(val)
-}
-
-// K8SReplicationControllerUID returns an attribute KeyValue conforming to the
-// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID of
-// the replication controller.
-func K8SReplicationControllerUID(val string) attribute.KeyValue {
-	return K8SReplicationControllerUIDKey.String(val)
-}
-
-// K8SResourceQuotaName returns an attribute KeyValue conforming to the
-// "k8s.resourcequota.name" semantic conventions. It represents the name of the
-// resource quota.
-func K8SResourceQuotaName(val string) attribute.KeyValue {
-	return K8SResourceQuotaNameKey.String(val)
-}
-
-// K8SResourceQuotaResourceName returns an attribute KeyValue conforming to the
-// "k8s.resourcequota.resource_name" semantic conventions. It represents the name
-// of the K8s resource a resource quota defines.
-func K8SResourceQuotaResourceName(val string) attribute.KeyValue {
-	return K8SResourceQuotaResourceNameKey.String(val)
-}
-
-// K8SResourceQuotaUID returns an attribute KeyValue conforming to the
-// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the
-// resource quota.
-func K8SResourceQuotaUID(val string) attribute.KeyValue {
-	return K8SResourceQuotaUIDKey.String(val)
-}
-
-// K8SStatefulSetAnnotation returns an attribute KeyValue conforming to the
-// "k8s.statefulset.annotation" semantic conventions. It represents the
-// annotation placed on the StatefulSet, the `<key>` being the annotation name,
-// the value being the annotation value, even if the value is empty.
-func K8SStatefulSetAnnotation(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.statefulset.annotation."+key, val)
-}
-
-// K8SStatefulSetLabel returns an attribute KeyValue conforming to the
-// "k8s.statefulset.label" semantic conventions. It represents the label placed
-// on the StatefulSet, the `<key>` being the label name, the value being the
-// label value, even if the value is empty.
-func K8SStatefulSetLabel(key string, val string) attribute.KeyValue {
-	return attribute.String("k8s.statefulset.label."+key, val)
-}
-
-// K8SStatefulSetName returns an attribute KeyValue conforming to the
-// "k8s.statefulset.name" semantic conventions. It represents the name of the
-// StatefulSet.
-func K8SStatefulSetName(val string) attribute.KeyValue {
-	return K8SStatefulSetNameKey.String(val)
-}
-
-// K8SStatefulSetUID returns an attribute KeyValue conforming to the
-// "k8s.statefulset.uid" semantic conventions. It represents the UID of the
-// StatefulSet.
-func K8SStatefulSetUID(val string) attribute.KeyValue {
-	return K8SStatefulSetUIDKey.String(val)
-}
-
-// K8SStorageclassName returns an attribute KeyValue conforming to the
-// "k8s.storageclass.name" semantic conventions. It represents the name of K8s
-// [StorageClass] object.
-//
-// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io
-func K8SStorageclassName(val string) attribute.KeyValue {
-	return K8SStorageclassNameKey.String(val)
-}
-
-// K8SVolumeName returns an attribute KeyValue conforming to the
-// "k8s.volume.name" semantic conventions. It represents the name of the K8s
-// volume.
-func K8SVolumeName(val string) attribute.KeyValue {
-	return K8SVolumeNameKey.String(val)
-}
-
-// Enum values for k8s.container.status.reason
-var (
-	// The container is being created.
-	// Stability: development
-	K8SContainerStatusReasonContainerCreating = K8SContainerStatusReasonKey.String("ContainerCreating")
-	// The container is in a crash loop back off state.
-	// Stability: development
-	K8SContainerStatusReasonCrashLoopBackOff = K8SContainerStatusReasonKey.String("CrashLoopBackOff")
-	// There was an error creating the container configuration.
-	// Stability: development
-	K8SContainerStatusReasonCreateContainerConfigError = K8SContainerStatusReasonKey.String("CreateContainerConfigError")
-	// There was an error pulling the container image.
-	// Stability: development
-	K8SContainerStatusReasonErrImagePull = K8SContainerStatusReasonKey.String("ErrImagePull")
-	// The container image pull is in back off state.
-	// Stability: development
-	K8SContainerStatusReasonImagePullBackOff = K8SContainerStatusReasonKey.String("ImagePullBackOff")
-	// The container was killed due to out of memory.
-	// Stability: development
-	K8SContainerStatusReasonOomKilled = K8SContainerStatusReasonKey.String("OOMKilled")
-	// The container has completed execution.
-	// Stability: development
-	K8SContainerStatusReasonCompleted = K8SContainerStatusReasonKey.String("Completed")
-	// There was an error with the container.
-	// Stability: development
-	K8SContainerStatusReasonError = K8SContainerStatusReasonKey.String("Error")
-	// The container cannot run.
-	// Stability: development
-	K8SContainerStatusReasonContainerCannotRun = K8SContainerStatusReasonKey.String("ContainerCannotRun")
-)
-
-// Enum values for k8s.container.status.state
-var (
-	// The container has terminated.
-	// Stability: development
-	K8SContainerStatusStateTerminated = K8SContainerStatusStateKey.String("terminated")
-	// The container is running.
-	// Stability: development
-	K8SContainerStatusStateRunning = K8SContainerStatusStateKey.String("running")
-	// The container is waiting.
-	// Stability: development
-	K8SContainerStatusStateWaiting = K8SContainerStatusStateKey.String("waiting")
-)
-
-// Enum values for k8s.namespace.phase
-var (
-	// Active namespace phase as described by [K8s API]
-	// Stability: development
-	//
-	// [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase
-	K8SNamespacePhaseActive = K8SNamespacePhaseKey.String("active")
-	// Terminating namespace phase as described by [K8s API]
-	// Stability: development
-	//
-	// [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase
-	K8SNamespacePhaseTerminating = K8SNamespacePhaseKey.String("terminating")
-)
-
-// Enum values for k8s.node.condition.status
-var (
-	// condition_true
-	// Stability: development
-	K8SNodeConditionStatusConditionTrue = K8SNodeConditionStatusKey.String("true")
-	// condition_false
-	// Stability: development
-	K8SNodeConditionStatusConditionFalse = K8SNodeConditionStatusKey.String("false")
-	// condition_unknown
-	// Stability: development
-	K8SNodeConditionStatusConditionUnknown = K8SNodeConditionStatusKey.String("unknown")
-)
-
-// Enum values for k8s.node.condition.type
-var (
-	// The node is healthy and ready to accept pods
-	// Stability: development
-	K8SNodeConditionTypeReady = K8SNodeConditionTypeKey.String("Ready")
-	// Pressure exists on the disk size—that is, if the disk capacity is low
-	// Stability: development
-	K8SNodeConditionTypeDiskPressure = K8SNodeConditionTypeKey.String("DiskPressure")
-	// Pressure exists on the node memory—that is, if the node memory is low
-	// Stability: development
-	K8SNodeConditionTypeMemoryPressure = K8SNodeConditionTypeKey.String("MemoryPressure")
-	// Pressure exists on the processes—that is, if there are too many processes
-	// on the node
-	// Stability: development
-	K8SNodeConditionTypePIDPressure = K8SNodeConditionTypeKey.String("PIDPressure")
-	// The network for the node is not correctly configured
-	// Stability: development
-	K8SNodeConditionTypeNetworkUnavailable = K8SNodeConditionTypeKey.String("NetworkUnavailable")
-)
-
-// Enum values for k8s.pod.status.phase
-var (
-	// The pod has been accepted by the system, but one or more of the containers
-	// has not been started. This includes time before being bound to a node, as
-	// well as time spent pulling images onto the host.
-	//
-	// Stability: development
-	K8SPodStatusPhasePending = K8SPodStatusPhaseKey.String("Pending")
-	// The pod has been bound to a node and all of the containers have been started.
-	// At least one container is still running or is in the process of being
-	// restarted.
-	//
-	// Stability: development
-	K8SPodStatusPhaseRunning = K8SPodStatusPhaseKey.String("Running")
-	// All containers in the pod have voluntarily terminated with a container exit
-	// code of 0, and the system is not going to restart any of these containers.
-	//
-	// Stability: development
-	K8SPodStatusPhaseSucceeded = K8SPodStatusPhaseKey.String("Succeeded")
-	// All containers in the pod have terminated, and at least one container has
-	// terminated in a failure (exited with a non-zero exit code or was stopped by
-	// the system).
-	//
-	// Stability: development
-	K8SPodStatusPhaseFailed = K8SPodStatusPhaseKey.String("Failed")
-	// For some reason the state of the pod could not be obtained, typically due to
-	// an error in communicating with the host of the pod.
-	//
-	// Stability: development
-	K8SPodStatusPhaseUnknown = K8SPodStatusPhaseKey.String("Unknown")
-)
-
-// Enum values for k8s.pod.status.reason
-var (
-	// The pod is evicted.
-	// Stability: development
-	K8SPodStatusReasonEvicted = K8SPodStatusReasonKey.String("Evicted")
-	// The pod is in a status because of its node affinity
-	// Stability: development
-	K8SPodStatusReasonNodeAffinity = K8SPodStatusReasonKey.String("NodeAffinity")
-	// The reason on a pod when its state cannot be confirmed as kubelet is
-	// unresponsive on the node it is (was) running.
-	//
-	// Stability: development
-	K8SPodStatusReasonNodeLost = K8SPodStatusReasonKey.String("NodeLost")
-	// The node is shutdown
-	// Stability: development
-	K8SPodStatusReasonShutdown = K8SPodStatusReasonKey.String("Shutdown")
-	// The pod was rejected admission to the node because of an error during
-	// admission that could not be categorized.
-	//
-	// Stability: development
-	K8SPodStatusReasonUnexpectedAdmissionError = K8SPodStatusReasonKey.String("UnexpectedAdmissionError")
-)
-
-// Enum values for k8s.volume.type
-var (
-	// A [persistentVolumeClaim] volume
-	// Stability: development
-	//
-	// [persistentVolumeClaim]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#persistentvolumeclaim
-	K8SVolumeTypePersistentVolumeClaim = K8SVolumeTypeKey.String("persistentVolumeClaim")
-	// A [configMap] volume
-	// Stability: development
-	//
-	// [configMap]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#configmap
-	K8SVolumeTypeConfigMap = K8SVolumeTypeKey.String("configMap")
-	// A [downwardAPI] volume
-	// Stability: development
-	//
-	// [downwardAPI]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#downwardapi
-	K8SVolumeTypeDownwardAPI = K8SVolumeTypeKey.String("downwardAPI")
-	// An [emptyDir] volume
-	// Stability: development
-	//
-	// [emptyDir]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#emptydir
-	K8SVolumeTypeEmptyDir = K8SVolumeTypeKey.String("emptyDir")
-	// A [secret] volume
-	// Stability: development
-	//
-	// [secret]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#secret
-	K8SVolumeTypeSecret = K8SVolumeTypeKey.String("secret")
-	// A [local] volume
-	// Stability: development
-	//
-	// [local]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#local
-	K8SVolumeTypeLocal = K8SVolumeTypeKey.String("local")
-)
-
-// Namespace: log
-const (
-	// LogFileNameKey is the attribute Key conforming to the "log.file.name"
-	// semantic conventions. It represents the basename of the file.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "audit.log"
-	LogFileNameKey = attribute.Key("log.file.name")
-
-	// LogFileNameResolvedKey is the attribute Key conforming to the
-	// "log.file.name_resolved" semantic conventions. It represents the basename of
-	// the file, with symlinks resolved.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "uuid.log"
-	LogFileNameResolvedKey = attribute.Key("log.file.name_resolved")
-
-	// LogFilePathKey is the attribute Key conforming to the "log.file.path"
-	// semantic conventions. It represents the full path to the file.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/var/log/mysql/audit.log"
-	LogFilePathKey = attribute.Key("log.file.path")
-
-	// LogFilePathResolvedKey is the attribute Key conforming to the
-	// "log.file.path_resolved" semantic conventions. It represents the full path to
-	// the file, with symlinks resolved.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/var/lib/docker/uuid.log"
-	LogFilePathResolvedKey = attribute.Key("log.file.path_resolved")
-
-	// LogIostreamKey is the attribute Key conforming to the "log.iostream" semantic
-	// conventions. It represents the stream associated with the log. See below for
-	// a list of well-known values.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	LogIostreamKey = attribute.Key("log.iostream")
-
-	// LogRecordOriginalKey is the attribute Key conforming to the
-	// "log.record.original" semantic conventions. It represents the complete
-	// original Log Record.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "77 <86>1 2015-08-06T21:58:59.694Z 192.168.2.133 inactive - - -
-	// Something happened", "[INFO] 8/3/24 12:34:56 Something happened"
-	// Note: This value MAY be added when processing a Log Record which was
-	// originally transmitted as a string or equivalent data type AND the Body field
-	// of the Log Record does not contain the same value. (e.g. a syslog or a log
-	// record read from a file.)
-	LogRecordOriginalKey = attribute.Key("log.record.original")
-
-	// LogRecordUIDKey is the attribute Key conforming to the "log.record.uid"
-	// semantic conventions. It represents a unique identifier for the Log Record.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "01ARZ3NDEKTSV4RRFFQ69G5FAV"
-	// Note: If an id is provided, other log records with the same id will be
-	// considered duplicates and can be removed safely. This means, that two
-	// distinguishable log records MUST have different values.
-	// The id MAY be an
-	// [Universally Unique Lexicographically Sortable Identifier (ULID)], but other
-	// identifiers (e.g. UUID) may be used as needed.
-	//
-	// [Universally Unique Lexicographically Sortable Identifier (ULID)]: https://github.com/ulid/spec
-	LogRecordUIDKey = attribute.Key("log.record.uid")
-)
-
-// LogFileName returns an attribute KeyValue conforming to the "log.file.name"
-// semantic conventions. It represents the basename of the file.
-func LogFileName(val string) attribute.KeyValue {
-	return LogFileNameKey.String(val)
-}
-
-// LogFileNameResolved returns an attribute KeyValue conforming to the
-// "log.file.name_resolved" semantic conventions. It represents the basename of
-// the file, with symlinks resolved.
-func LogFileNameResolved(val string) attribute.KeyValue {
-	return LogFileNameResolvedKey.String(val)
-}
-
-// LogFilePath returns an attribute KeyValue conforming to the "log.file.path"
-// semantic conventions. It represents the full path to the file.
-func LogFilePath(val string) attribute.KeyValue {
-	return LogFilePathKey.String(val)
-}
-
-// LogFilePathResolved returns an attribute KeyValue conforming to the
-// "log.file.path_resolved" semantic conventions. It represents the full path to
-// the file, with symlinks resolved.
-func LogFilePathResolved(val string) attribute.KeyValue {
-	return LogFilePathResolvedKey.String(val)
-}
-
-// LogRecordOriginal returns an attribute KeyValue conforming to the
-// "log.record.original" semantic conventions. It represents the complete
-// original Log Record.
-func LogRecordOriginal(val string) attribute.KeyValue {
-	return LogRecordOriginalKey.String(val)
-}
-
-// LogRecordUID returns an attribute KeyValue conforming to the "log.record.uid"
-// semantic conventions. It represents a unique identifier for the Log Record.
-func LogRecordUID(val string) attribute.KeyValue {
-	return LogRecordUIDKey.String(val)
-}
-
-// Enum values for log.iostream
-var (
-	// Logs from stdout stream
-	// Stability: development
-	LogIostreamStdout = LogIostreamKey.String("stdout")
-	// Events from stderr stream
-	// Stability: development
-	LogIostreamStderr = LogIostreamKey.String("stderr")
-)
-
-// Namespace: mainframe
-const (
-	// MainframeLparNameKey is the attribute Key conforming to the
-	// "mainframe.lpar.name" semantic conventions. It represents the name of the
-	// logical partition that hosts a systems with a mainframe operating system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "LPAR01"
-	MainframeLparNameKey = attribute.Key("mainframe.lpar.name")
-)
-
-// MainframeLparName returns an attribute KeyValue conforming to the
-// "mainframe.lpar.name" semantic conventions. It represents the name of the
-// logical partition that hosts a systems with a mainframe operating system.
-func MainframeLparName(val string) attribute.KeyValue {
-	return MainframeLparNameKey.String(val)
-}
-
-// Namespace: mcp
-const (
-	// McpMethodNameKey is the attribute Key conforming to the "mcp.method.name"
-	// semantic conventions. It represents the name of the request or notification
-	// method.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	McpMethodNameKey = attribute.Key("mcp.method.name")
-
-	// McpProtocolVersionKey is the attribute Key conforming to the
-	// "mcp.protocol.version" semantic conventions. It represents the [version] of
-	// the Model Context Protocol used.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2025-06-18"
-	//
-	// [version]: https://modelcontextprotocol.io/specification/versioning
-	McpProtocolVersionKey = attribute.Key("mcp.protocol.version")
-
-	// McpResourceURIKey is the attribute Key conforming to the "mcp.resource.uri"
-	// semantic conventions. It represents the value of the resource uri.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "postgres://database/customers/schema",
-	// "file:///home/user/documents/report.pdf"
-	// Note: This is a URI of the resource provided in the following requests or
-	// notifications: `resources/read`, `resources/subscribe`,
-	// `resources/unsubscribe`, or `notifications/resources/updated`.
-	McpResourceURIKey = attribute.Key("mcp.resource.uri")
-
-	// McpSessionIDKey is the attribute Key conforming to the "mcp.session.id"
-	// semantic conventions. It represents the identifies [MCP session].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "191c4850af6c49e08843a3f6c80e5046"
-	//
-	// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management
-	McpSessionIDKey = attribute.Key("mcp.session.id")
-)
-
-// McpProtocolVersion returns an attribute KeyValue conforming to the
-// "mcp.protocol.version" semantic conventions. It represents the [version] of
-// the Model Context Protocol used.
-//
-// [version]: https://modelcontextprotocol.io/specification/versioning
-func McpProtocolVersion(val string) attribute.KeyValue {
-	return McpProtocolVersionKey.String(val)
-}
-
-// McpResourceURI returns an attribute KeyValue conforming to the
-// "mcp.resource.uri" semantic conventions. It represents the value of the
-// resource uri.
-func McpResourceURI(val string) attribute.KeyValue {
-	return McpResourceURIKey.String(val)
-}
-
-// McpSessionID returns an attribute KeyValue conforming to the "mcp.session.id"
-// semantic conventions. It represents the identifies [MCP session].
-//
-// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management
-func McpSessionID(val string) attribute.KeyValue {
-	return McpSessionIDKey.String(val)
-}
-
-// Enum values for mcp.method.name
-var (
-	// Notification cancelling a previously-issued request.
-	//
-	// Stability: development
-	McpMethodNameNotificationsCancelled = McpMethodNameKey.String("notifications/cancelled")
-	// Request to initialize the MCP client.
-	//
-	// Stability: development
-	McpMethodNameInitialize = McpMethodNameKey.String("initialize")
-	// Notification indicating that the MCP client has been initialized.
-	//
-	// Stability: development
-	McpMethodNameNotificationsInitialized = McpMethodNameKey.String("notifications/initialized")
-	// Notification indicating the progress for a long-running operation.
-	//
-	// Stability: development
-	McpMethodNameNotificationsProgress = McpMethodNameKey.String("notifications/progress")
-	// Request to check that the other party is still alive.
-	//
-	// Stability: development
-	McpMethodNamePing = McpMethodNameKey.String("ping")
-	// Request to list resources available on server.
-	//
-	// Stability: development
-	McpMethodNameResourcesList = McpMethodNameKey.String("resources/list")
-	// Request to list resource templates available on server.
-	//
-	// Stability: development
-	McpMethodNameResourcesTemplatesList = McpMethodNameKey.String("resources/templates/list")
-	// Request to read a resource.
-	//
-	// Stability: development
-	McpMethodNameResourcesRead = McpMethodNameKey.String("resources/read")
-	// Notification indicating that the list of resources has changed.
-	//
-	// Stability: development
-	McpMethodNameNotificationsResourcesListChanged = McpMethodNameKey.String("notifications/resources/list_changed")
-	// Request to subscribe to a resource.
-	//
-	// Stability: development
-	McpMethodNameResourcesSubscribe = McpMethodNameKey.String("resources/subscribe")
-	// Request to unsubscribe from resource updates.
-	//
-	// Stability: development
-	McpMethodNameResourcesUnsubscribe = McpMethodNameKey.String("resources/unsubscribe")
-	// Notification indicating that a resource has been updated.
-	//
-	// Stability: development
-	McpMethodNameNotificationsResourcesUpdated = McpMethodNameKey.String("notifications/resources/updated")
-	// Request to list prompts available on server.
-	//
-	// Stability: development
-	McpMethodNamePromptsList = McpMethodNameKey.String("prompts/list")
-	// Request to get a prompt.
-	//
-	// Stability: development
-	McpMethodNamePromptsGet = McpMethodNameKey.String("prompts/get")
-	// Notification indicating that the list of prompts has changed.
-	//
-	// Stability: development
-	McpMethodNameNotificationsPromptsListChanged = McpMethodNameKey.String("notifications/prompts/list_changed")
-	// Request to list tools available on server.
-	//
-	// Stability: development
-	McpMethodNameToolsList = McpMethodNameKey.String("tools/list")
-	// Request to call a tool.
-	//
-	// Stability: development
-	McpMethodNameToolsCall = McpMethodNameKey.String("tools/call")
-	// Notification indicating that the list of tools has changed.
-	//
-	// Stability: development
-	McpMethodNameNotificationsToolsListChanged = McpMethodNameKey.String("notifications/tools/list_changed")
-	// Request to set the logging level.
-	//
-	// Stability: development
-	McpMethodNameLoggingSetLevel = McpMethodNameKey.String("logging/setLevel")
-	// Notification indicating that a message has been received.
-	//
-	// Stability: development
-	McpMethodNameNotificationsMessage = McpMethodNameKey.String("notifications/message")
-	// Request to create a sampling message.
-	//
-	// Stability: development
-	McpMethodNameSamplingCreateMessage = McpMethodNameKey.String("sampling/createMessage")
-	// Request to complete a prompt.
-	//
-	// Stability: development
-	McpMethodNameCompletionComplete = McpMethodNameKey.String("completion/complete")
-	// Request to list roots available on server.
-	//
-	// Stability: development
-	McpMethodNameRootsList = McpMethodNameKey.String("roots/list")
-	// Notification indicating that the list of roots has changed.
-	//
-	// Stability: development
-	McpMethodNameNotificationsRootsListChanged = McpMethodNameKey.String("notifications/roots/list_changed")
-	// Request from the server to elicit additional information from the user via
-	// the client
-	//
-	// Stability: development
-	McpMethodNameElicitationCreate = McpMethodNameKey.String("elicitation/create")
-)
-
-// Namespace: messaging
-const (
-	// MessagingBatchMessageCountKey is the attribute Key conforming to the
-	// "messaging.batch.message_count" semantic conventions. It represents the
-	// number of messages sent, received, or processed in the scope of the batching
-	// operation.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 0, 1, 2
-	// Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on
-	// spans that operate with a single message. When a messaging client library
-	// supports both batch and single-message API for the same operation,
-	// instrumentations SHOULD use `messaging.batch.message_count` for batching APIs
-	// and SHOULD NOT use it for single-message APIs.
-	MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count")
-
-	// MessagingClientIDKey is the attribute Key conforming to the
-	// "messaging.client.id" semantic conventions. It represents a unique identifier
-	// for the client that consumes or produces a message.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "client-5", "myhost@8742@s8083jm"
-	MessagingClientIDKey = attribute.Key("messaging.client.id")
-
-	// MessagingConsumerGroupNameKey is the attribute Key conforming to the
-	// "messaging.consumer.group.name" semantic conventions. It represents the name
-	// of the consumer group with which a consumer is associated.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-group", "indexer"
-	// Note: Semantic conventions for individual messaging systems SHOULD document
-	// whether `messaging.consumer.group.name` is applicable and what it means in
-	// the context of that system.
-	MessagingConsumerGroupNameKey = attribute.Key("messaging.consumer.group.name")
-
-	// MessagingDestinationAnonymousKey is the attribute Key conforming to the
-	// "messaging.destination.anonymous" semantic conventions. It represents a
-	// boolean that is true if the message destination is anonymous (could be
-	// unnamed or have auto-generated name).
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous")
-
-	// MessagingDestinationNameKey is the attribute Key conforming to the
-	// "messaging.destination.name" semantic conventions. It represents the message
-	// destination name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "MyQueue", "MyTopic"
-	// Note: Destination name SHOULD uniquely identify a specific queue, topic or
-	// other entity within the broker. If
-	// the broker doesn't have such notion, the destination name SHOULD uniquely
-	// identify the broker.
-	MessagingDestinationNameKey = attribute.Key("messaging.destination.name")
-
-	// MessagingDestinationPartitionIDKey is the attribute Key conforming to the
-	// "messaging.destination.partition.id" semantic conventions. It represents the
-	// identifier of the partition messages are sent to or received from, unique
-	// within the `messaging.destination.name`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1
-	MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id")
-
-	// MessagingDestinationSubscriptionNameKey is the attribute Key conforming to
-	// the "messaging.destination.subscription.name" semantic conventions. It
-	// represents the name of the destination subscription from which a message is
-	// consumed.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "subscription-a"
-	// Note: Semantic conventions for individual messaging systems SHOULD document
-	// whether `messaging.destination.subscription.name` is applicable and what it
-	// means in the context of that system.
-	MessagingDestinationSubscriptionNameKey = attribute.Key("messaging.destination.subscription.name")
-
-	// MessagingDestinationTemplateKey is the attribute Key conforming to the
-	// "messaging.destination.template" semantic conventions. It represents the low
-	// cardinality representation of the messaging destination name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/customers/{customerId}"
-	// Note: Destination names could be constructed from templates. An example would
-	// be a destination name involving a user name or product id. Although the
-	// destination name in this case is of high cardinality, the underlying template
-	// is of low cardinality and can be effectively used for grouping and
-	// aggregation.
-	MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template")
-
-	// MessagingDestinationTemporaryKey is the attribute Key conforming to the
-	// "messaging.destination.temporary" semantic conventions. It represents a
-	// boolean that is true if the message destination is temporary and might not
-	// exist anymore after messages are processed.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary")
-
-	// MessagingEventHubsMessageEnqueuedTimeKey is the attribute Key conforming to
-	// the "messaging.eventhubs.message.enqueued_time" semantic conventions. It
-	// represents the UTC epoch seconds at which the message has been accepted and
-	// stored in the entity.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingEventHubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time")
-
-	// MessagingGCPPubSubMessageAckDeadlineKey is the attribute Key conforming to
-	// the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It
-	// represents the ack deadline in seconds set for the modify ack deadline
-	// request.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingGCPPubSubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline")
-
-	// MessagingGCPPubSubMessageAckIDKey is the attribute Key conforming to the
-	// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the
-	// ack id for a given message.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: ack_id
-	MessagingGCPPubSubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id")
-
-	// MessagingGCPPubSubMessageDeliveryAttemptKey is the attribute Key conforming
-	// to the "messaging.gcp_pubsub.message.delivery_attempt" semantic conventions.
-	// It represents the delivery attempt for a given message.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingGCPPubSubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt")
-
-	// MessagingGCPPubSubMessageOrderingKeyKey is the attribute Key conforming to
-	// the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It
-	// represents the ordering key for a given message. If the attribute is not
-	// present, the message does not have an ordering key.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: ordering_key
-	MessagingGCPPubSubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key")
-
-	// MessagingKafkaMessageKeyKey is the attribute Key conforming to the
-	// "messaging.kafka.message.key" semantic conventions. It represents the message
-	// keys in Kafka are used for grouping alike messages to ensure they're
-	// processed on the same partition. They differ from `messaging.message.id` in
-	// that they're not unique. If the key is `null`, the attribute MUST NOT be set.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: myKey
-	// Note: If the key type is not string, it's string representation has to be
-	// supplied for the attribute. If the key has no unambiguous, canonical string
-	// form, don't include its value.
-	MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key")
-
-	// MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the
-	// "messaging.kafka.message.tombstone" semantic conventions. It represents a
-	// boolean that is true if the message is a tombstone.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone")
-
-	// MessagingKafkaOffsetKey is the attribute Key conforming to the
-	// "messaging.kafka.offset" semantic conventions. It represents the offset of a
-	// record in the corresponding Kafka partition.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingKafkaOffsetKey = attribute.Key("messaging.kafka.offset")
-
-	// MessagingMessageBodySizeKey is the attribute Key conforming to the
-	// "messaging.message.body.size" semantic conventions. It represents the size of
-	// the message body in bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Note: This can refer to both the compressed or uncompressed body size. If
-	// both sizes are known, the uncompressed
-	// body size should be used.
-	MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size")
-
-	// MessagingMessageConversationIDKey is the attribute Key conforming to the
-	// "messaging.message.conversation_id" semantic conventions. It represents the
-	// conversation ID identifying the conversation to which the message belongs,
-	// represented as a string. Sometimes called "Correlation ID".
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: MyConversationId
-	MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id")
-
-	// MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the
-	// "messaging.message.envelope.size" semantic conventions. It represents the
-	// size of the message body and metadata in bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Note: This can refer to both the compressed or uncompressed size. If both
-	// sizes are known, the uncompressed
-	// size should be used.
-	MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size")
-
-	// MessagingMessageIDKey is the attribute Key conforming to the
-	// "messaging.message.id" semantic conventions. It represents a value used by
-	// the messaging system as an identifier for the message, represented as a
-	// string.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 452a7c7c7c7048c2f887f61572b18fc2
-	MessagingMessageIDKey = attribute.Key("messaging.message.id")
-
-	// MessagingOperationNameKey is the attribute Key conforming to the
-	// "messaging.operation.name" semantic conventions. It represents the
-	// system-specific name of the messaging operation.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "ack", "nack", "send"
-	MessagingOperationNameKey = attribute.Key("messaging.operation.name")
-
-	// MessagingOperationTypeKey is the attribute Key conforming to the
-	// "messaging.operation.type" semantic conventions. It represents a string
-	// identifying the type of the messaging operation.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: If a custom value is used, it MUST be of low cardinality.
-	MessagingOperationTypeKey = attribute.Key("messaging.operation.type")
-
-	// MessagingRabbitMQDestinationRoutingKeyKey is the attribute Key conforming to
-	// the "messaging.rabbitmq.destination.routing_key" semantic conventions. It
-	// represents the rabbitMQ message routing key.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: myKey
-	MessagingRabbitMQDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key")
-
-	// MessagingRabbitMQMessageDeliveryTagKey is the attribute Key conforming to the
-	// "messaging.rabbitmq.message.delivery_tag" semantic conventions. It represents
-	// the rabbitMQ message delivery tag.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingRabbitMQMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag")
-
-	// MessagingRocketMQConsumptionModelKey is the attribute Key conforming to the
-	// "messaging.rocketmq.consumption_model" semantic conventions. It represents
-	// the model of message consumption. This only applies to consumer spans.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	MessagingRocketMQConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model")
-
-	// MessagingRocketMQMessageDelayTimeLevelKey is the attribute Key conforming to
-	// the "messaging.rocketmq.message.delay_time_level" semantic conventions. It
-	// represents the delay time level for delay message, which determines the
-	// message delay time.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingRocketMQMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level")
-
-	// MessagingRocketMQMessageDeliveryTimestampKey is the attribute Key conforming
-	// to the "messaging.rocketmq.message.delivery_timestamp" semantic conventions.
-	// It represents the timestamp in milliseconds that the delay message is
-	// expected to be delivered to consumer.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingRocketMQMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp")
-
-	// MessagingRocketMQMessageGroupKey is the attribute Key conforming to the
-	// "messaging.rocketmq.message.group" semantic conventions. It represents the it
-	// is essential for FIFO message. Messages that belong to the same message group
-	// are always processed one by one within the same consumer group.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: myMessageGroup
-	MessagingRocketMQMessageGroupKey = attribute.Key("messaging.rocketmq.message.group")
-
-	// MessagingRocketMQMessageKeysKey is the attribute Key conforming to the
-	// "messaging.rocketmq.message.keys" semantic conventions. It represents the
-	// key(s) of message, another way to mark message besides message id.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "keyA", "keyB"
-	MessagingRocketMQMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys")
-
-	// MessagingRocketMQMessageTagKey is the attribute Key conforming to the
-	// "messaging.rocketmq.message.tag" semantic conventions. It represents the
-	// secondary classifier of message besides topic.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: tagA
-	MessagingRocketMQMessageTagKey = attribute.Key("messaging.rocketmq.message.tag")
-
-	// MessagingRocketMQMessageTypeKey is the attribute Key conforming to the
-	// "messaging.rocketmq.message.type" semantic conventions. It represents the
-	// type of message.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	MessagingRocketMQMessageTypeKey = attribute.Key("messaging.rocketmq.message.type")
-
-	// MessagingRocketMQNamespaceKey is the attribute Key conforming to the
-	// "messaging.rocketmq.namespace" semantic conventions. It represents the
-	// namespace of RocketMQ resources, resources in different namespaces are
-	// individual.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: myNamespace
-	MessagingRocketMQNamespaceKey = attribute.Key("messaging.rocketmq.namespace")
-
-	// MessagingServiceBusDispositionStatusKey is the attribute Key conforming to
-	// the "messaging.servicebus.disposition_status" semantic conventions. It
-	// represents the describes the [settlement type].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [settlement type]: https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock
-	MessagingServiceBusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status")
-
-	// MessagingServiceBusMessageDeliveryCountKey is the attribute Key conforming to
-	// the "messaging.servicebus.message.delivery_count" semantic conventions. It
-	// represents the number of deliveries that have been attempted for this
-	// message.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingServiceBusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count")
-
-	// MessagingServiceBusMessageEnqueuedTimeKey is the attribute Key conforming to
-	// the "messaging.servicebus.message.enqueued_time" semantic conventions. It
-	// represents the UTC epoch seconds at which the message has been accepted and
-	// stored in the entity.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	MessagingServiceBusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time")
-
-	// MessagingSystemKey is the attribute Key conforming to the "messaging.system"
-	// semantic conventions. It represents the messaging system as identified by the
-	// client instrumentation.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: The actual messaging system may differ from the one known by the
-	// client. For example, when using Kafka client libraries to communicate with
-	// Azure Event Hubs, the `messaging.system` is set to `kafka` based on the
-	// instrumentation's best knowledge.
-	MessagingSystemKey = attribute.Key("messaging.system")
-)
-
-// MessagingBatchMessageCount returns an attribute KeyValue conforming to the
-// "messaging.batch.message_count" semantic conventions. It represents the number
-// of messages sent, received, or processed in the scope of the batching
-// operation.
-func MessagingBatchMessageCount(val int) attribute.KeyValue {
-	return MessagingBatchMessageCountKey.Int(val)
-}
-
-// MessagingClientID returns an attribute KeyValue conforming to the
-// "messaging.client.id" semantic conventions. It represents a unique identifier
-// for the client that consumes or produces a message.
-func MessagingClientID(val string) attribute.KeyValue {
-	return MessagingClientIDKey.String(val)
-}
-
-// MessagingConsumerGroupName returns an attribute KeyValue conforming to the
-// "messaging.consumer.group.name" semantic conventions. It represents the name
-// of the consumer group with which a consumer is associated.
-func MessagingConsumerGroupName(val string) attribute.KeyValue {
-	return MessagingConsumerGroupNameKey.String(val)
-}
-
-// MessagingDestinationAnonymous returns an attribute KeyValue conforming to the
-// "messaging.destination.anonymous" semantic conventions. It represents a
-// boolean that is true if the message destination is anonymous (could be unnamed
-// or have auto-generated name).
-func MessagingDestinationAnonymous(val bool) attribute.KeyValue {
-	return MessagingDestinationAnonymousKey.Bool(val)
-}
-
-// MessagingDestinationName returns an attribute KeyValue conforming to the
-// "messaging.destination.name" semantic conventions. It represents the message
-// destination name.
-func MessagingDestinationName(val string) attribute.KeyValue {
-	return MessagingDestinationNameKey.String(val)
-}
-
-// MessagingDestinationPartitionID returns an attribute KeyValue conforming to
-// the "messaging.destination.partition.id" semantic conventions. It represents
-// the identifier of the partition messages are sent to or received from, unique
-// within the `messaging.destination.name`.
-func MessagingDestinationPartitionID(val string) attribute.KeyValue {
-	return MessagingDestinationPartitionIDKey.String(val)
-}
-
-// MessagingDestinationSubscriptionName returns an attribute KeyValue conforming
-// to the "messaging.destination.subscription.name" semantic conventions. It
-// represents the name of the destination subscription from which a message is
-// consumed.
-func MessagingDestinationSubscriptionName(val string) attribute.KeyValue {
-	return MessagingDestinationSubscriptionNameKey.String(val)
-}
-
-// MessagingDestinationTemplate returns an attribute KeyValue conforming to the
-// "messaging.destination.template" semantic conventions. It represents the low
-// cardinality representation of the messaging destination name.
-func MessagingDestinationTemplate(val string) attribute.KeyValue {
-	return MessagingDestinationTemplateKey.String(val)
-}
-
-// MessagingDestinationTemporary returns an attribute KeyValue conforming to the
-// "messaging.destination.temporary" semantic conventions. It represents a
-// boolean that is true if the message destination is temporary and might not
-// exist anymore after messages are processed.
-func MessagingDestinationTemporary(val bool) attribute.KeyValue {
-	return MessagingDestinationTemporaryKey.Bool(val)
-}
-
-// MessagingEventHubsMessageEnqueuedTime returns an attribute KeyValue conforming
-// to the "messaging.eventhubs.message.enqueued_time" semantic conventions. It
-// represents the UTC epoch seconds at which the message has been accepted and
-// stored in the entity.
-func MessagingEventHubsMessageEnqueuedTime(val int) attribute.KeyValue {
-	return MessagingEventHubsMessageEnqueuedTimeKey.Int(val)
-}
-
-// MessagingGCPPubSubMessageAckDeadline returns an attribute KeyValue conforming
-// to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It
-// represents the ack deadline in seconds set for the modify ack deadline
-// request.
-func MessagingGCPPubSubMessageAckDeadline(val int) attribute.KeyValue {
-	return MessagingGCPPubSubMessageAckDeadlineKey.Int(val)
-}
-
-// MessagingGCPPubSubMessageAckID returns an attribute KeyValue conforming to the
-// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the
-// ack id for a given message.
-func MessagingGCPPubSubMessageAckID(val string) attribute.KeyValue {
-	return MessagingGCPPubSubMessageAckIDKey.String(val)
-}
-
-// MessagingGCPPubSubMessageDeliveryAttempt returns an attribute KeyValue
-// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic
-// conventions. It represents the delivery attempt for a given message.
-func MessagingGCPPubSubMessageDeliveryAttempt(val int) attribute.KeyValue {
-	return MessagingGCPPubSubMessageDeliveryAttemptKey.Int(val)
-}
-
-// MessagingGCPPubSubMessageOrderingKey returns an attribute KeyValue conforming
-// to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It
-// represents the ordering key for a given message. If the attribute is not
-// present, the message does not have an ordering key.
-func MessagingGCPPubSubMessageOrderingKey(val string) attribute.KeyValue {
-	return MessagingGCPPubSubMessageOrderingKeyKey.String(val)
-}
-
-// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the
-// "messaging.kafka.message.key" semantic conventions. It represents the message
-// keys in Kafka are used for grouping alike messages to ensure they're processed
-// on the same partition. They differ from `messaging.message.id` in that they're
-// not unique. If the key is `null`, the attribute MUST NOT be set.
-func MessagingKafkaMessageKey(val string) attribute.KeyValue {
-	return MessagingKafkaMessageKeyKey.String(val)
-}
-
-// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming to the
-// "messaging.kafka.message.tombstone" semantic conventions. It represents a
-// boolean that is true if the message is a tombstone.
-func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue {
-	return MessagingKafkaMessageTombstoneKey.Bool(val)
-}
-
-// MessagingKafkaOffset returns an attribute KeyValue conforming to the
-// "messaging.kafka.offset" semantic conventions. It represents the offset of a
-// record in the corresponding Kafka partition.
-func MessagingKafkaOffset(val int) attribute.KeyValue {
-	return MessagingKafkaOffsetKey.Int(val)
-}
-
-// MessagingMessageBodySize returns an attribute KeyValue conforming to the
-// "messaging.message.body.size" semantic conventions. It represents the size of
-// the message body in bytes.
-func MessagingMessageBodySize(val int) attribute.KeyValue {
-	return MessagingMessageBodySizeKey.Int(val)
-}
-
-// MessagingMessageConversationID returns an attribute KeyValue conforming to the
-// "messaging.message.conversation_id" semantic conventions. It represents the
-// conversation ID identifying the conversation to which the message belongs,
-// represented as a string. Sometimes called "Correlation ID".
-func MessagingMessageConversationID(val string) attribute.KeyValue {
-	return MessagingMessageConversationIDKey.String(val)
-}
-
-// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to the
-// "messaging.message.envelope.size" semantic conventions. It represents the size
-// of the message body and metadata in bytes.
-func MessagingMessageEnvelopeSize(val int) attribute.KeyValue {
-	return MessagingMessageEnvelopeSizeKey.Int(val)
-}
-
-// MessagingMessageID returns an attribute KeyValue conforming to the
-// "messaging.message.id" semantic conventions. It represents a value used by the
-// messaging system as an identifier for the message, represented as a string.
-func MessagingMessageID(val string) attribute.KeyValue {
-	return MessagingMessageIDKey.String(val)
-}
-
-// MessagingOperationName returns an attribute KeyValue conforming to the
-// "messaging.operation.name" semantic conventions. It represents the
-// system-specific name of the messaging operation.
-func MessagingOperationName(val string) attribute.KeyValue {
-	return MessagingOperationNameKey.String(val)
-}
-
-// MessagingRabbitMQDestinationRoutingKey returns an attribute KeyValue
-// conforming to the "messaging.rabbitmq.destination.routing_key" semantic
-// conventions. It represents the rabbitMQ message routing key.
-func MessagingRabbitMQDestinationRoutingKey(val string) attribute.KeyValue {
-	return MessagingRabbitMQDestinationRoutingKeyKey.String(val)
-}
-
-// MessagingRabbitMQMessageDeliveryTag returns an attribute KeyValue conforming
-// to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. It
-// represents the rabbitMQ message delivery tag.
-func MessagingRabbitMQMessageDeliveryTag(val int) attribute.KeyValue {
-	return MessagingRabbitMQMessageDeliveryTagKey.Int(val)
-}
-
-// MessagingRocketMQMessageDelayTimeLevel returns an attribute KeyValue
-// conforming to the "messaging.rocketmq.message.delay_time_level" semantic
-// conventions. It represents the delay time level for delay message, which
-// determines the message delay time.
-func MessagingRocketMQMessageDelayTimeLevel(val int) attribute.KeyValue {
-	return MessagingRocketMQMessageDelayTimeLevelKey.Int(val)
-}
-
-// MessagingRocketMQMessageDeliveryTimestamp returns an attribute KeyValue
-// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic
-// conventions. It represents the timestamp in milliseconds that the delay
-// message is expected to be delivered to consumer.
-func MessagingRocketMQMessageDeliveryTimestamp(val int) attribute.KeyValue {
-	return MessagingRocketMQMessageDeliveryTimestampKey.Int(val)
-}
-
-// MessagingRocketMQMessageGroup returns an attribute KeyValue conforming to the
-// "messaging.rocketmq.message.group" semantic conventions. It represents the it
-// is essential for FIFO message. Messages that belong to the same message group
-// are always processed one by one within the same consumer group.
-func MessagingRocketMQMessageGroup(val string) attribute.KeyValue {
-	return MessagingRocketMQMessageGroupKey.String(val)
-}
-
-// MessagingRocketMQMessageKeys returns an attribute KeyValue conforming to the
-// "messaging.rocketmq.message.keys" semantic conventions. It represents the
-// key(s) of message, another way to mark message besides message id.
-func MessagingRocketMQMessageKeys(val ...string) attribute.KeyValue {
-	return MessagingRocketMQMessageKeysKey.StringSlice(val)
-}
-
-// MessagingRocketMQMessageTag returns an attribute KeyValue conforming to the
-// "messaging.rocketmq.message.tag" semantic conventions. It represents the
-// secondary classifier of message besides topic.
-func MessagingRocketMQMessageTag(val string) attribute.KeyValue {
-	return MessagingRocketMQMessageTagKey.String(val)
-}
-
-// MessagingRocketMQNamespace returns an attribute KeyValue conforming to the
-// "messaging.rocketmq.namespace" semantic conventions. It represents the
-// namespace of RocketMQ resources, resources in different namespaces are
-// individual.
-func MessagingRocketMQNamespace(val string) attribute.KeyValue {
-	return MessagingRocketMQNamespaceKey.String(val)
-}
-
-// MessagingServiceBusMessageDeliveryCount returns an attribute KeyValue
-// conforming to the "messaging.servicebus.message.delivery_count" semantic
-// conventions. It represents the number of deliveries that have been attempted
-// for this message.
-func MessagingServiceBusMessageDeliveryCount(val int) attribute.KeyValue {
-	return MessagingServiceBusMessageDeliveryCountKey.Int(val)
-}
-
-// MessagingServiceBusMessageEnqueuedTime returns an attribute KeyValue
-// conforming to the "messaging.servicebus.message.enqueued_time" semantic
-// conventions. It represents the UTC epoch seconds at which the message has been
-// accepted and stored in the entity.
-func MessagingServiceBusMessageEnqueuedTime(val int) attribute.KeyValue {
-	return MessagingServiceBusMessageEnqueuedTimeKey.Int(val)
-}
-
-// Enum values for messaging.operation.type
-var (
-	// A message is created. "Create" spans always refer to a single message and are
-	// used to provide a unique creation context for messages in batch sending
-	// scenarios.
-	//
-	// Stability: development
-	MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create")
-	// One or more messages are provided for sending to an intermediary. If a single
-	// message is sent, the context of the "Send" span can be used as the creation
-	// context and no "Create" span needs to be created.
-	//
-	// Stability: development
-	MessagingOperationTypeSend = MessagingOperationTypeKey.String("send")
-	// One or more messages are requested by a consumer. This operation refers to
-	// pull-based scenarios, where consumers explicitly call methods of messaging
-	// SDKs to receive messages.
-	//
-	// Stability: development
-	MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive")
-	// One or more messages are processed by a consumer.
-	//
-	// Stability: development
-	MessagingOperationTypeProcess = MessagingOperationTypeKey.String("process")
-	// One or more messages are settled.
-	//
-	// Stability: development
-	MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle")
-)
-
-// Enum values for messaging.rocketmq.consumption_model
-var (
-	// Clustering consumption model
-	// Stability: development
-	MessagingRocketMQConsumptionModelClustering = MessagingRocketMQConsumptionModelKey.String("clustering")
-	// Broadcasting consumption model
-	// Stability: development
-	MessagingRocketMQConsumptionModelBroadcasting = MessagingRocketMQConsumptionModelKey.String("broadcasting")
-)
-
-// Enum values for messaging.rocketmq.message.type
-var (
-	// Normal message
-	// Stability: development
-	MessagingRocketMQMessageTypeNormal = MessagingRocketMQMessageTypeKey.String("normal")
-	// FIFO message
-	// Stability: development
-	MessagingRocketMQMessageTypeFifo = MessagingRocketMQMessageTypeKey.String("fifo")
-	// Delay message
-	// Stability: development
-	MessagingRocketMQMessageTypeDelay = MessagingRocketMQMessageTypeKey.String("delay")
-	// Transaction message
-	// Stability: development
-	MessagingRocketMQMessageTypeTransaction = MessagingRocketMQMessageTypeKey.String("transaction")
-)
-
-// Enum values for messaging.servicebus.disposition_status
-var (
-	// Message is completed
-	// Stability: development
-	MessagingServiceBusDispositionStatusComplete = MessagingServiceBusDispositionStatusKey.String("complete")
-	// Message is abandoned
-	// Stability: development
-	MessagingServiceBusDispositionStatusAbandon = MessagingServiceBusDispositionStatusKey.String("abandon")
-	// Message is sent to dead letter queue
-	// Stability: development
-	MessagingServiceBusDispositionStatusDeadLetter = MessagingServiceBusDispositionStatusKey.String("dead_letter")
-	// Message is deferred
-	// Stability: development
-	MessagingServiceBusDispositionStatusDefer = MessagingServiceBusDispositionStatusKey.String("defer")
-)
-
-// Enum values for messaging.system
-var (
-	// Apache ActiveMQ
-	// Stability: development
-	MessagingSystemActiveMQ = MessagingSystemKey.String("activemq")
-	// Amazon Simple Notification Service (SNS)
-	// Stability: development
-	MessagingSystemAWSSNS = MessagingSystemKey.String("aws.sns")
-	// Amazon Simple Queue Service (SQS)
-	// Stability: development
-	MessagingSystemAWSSQS = MessagingSystemKey.String("aws_sqs")
-	// Azure Event Grid
-	// Stability: development
-	MessagingSystemEventGrid = MessagingSystemKey.String("eventgrid")
-	// Azure Event Hubs
-	// Stability: development
-	MessagingSystemEventHubs = MessagingSystemKey.String("eventhubs")
-	// Azure Service Bus
-	// Stability: development
-	MessagingSystemServiceBus = MessagingSystemKey.String("servicebus")
-	// Google Cloud Pub/Sub
-	// Stability: development
-	MessagingSystemGCPPubSub = MessagingSystemKey.String("gcp_pubsub")
-	// Java Message Service
-	// Stability: development
-	MessagingSystemJMS = MessagingSystemKey.String("jms")
-	// Apache Kafka
-	// Stability: development
-	MessagingSystemKafka = MessagingSystemKey.String("kafka")
-	// RabbitMQ
-	// Stability: development
-	MessagingSystemRabbitMQ = MessagingSystemKey.String("rabbitmq")
-	// Apache RocketMQ
-	// Stability: development
-	MessagingSystemRocketMQ = MessagingSystemKey.String("rocketmq")
-	// Apache Pulsar
-	// Stability: development
-	MessagingSystemPulsar = MessagingSystemKey.String("pulsar")
-)
-
-// Namespace: network
-const (
-	// NetworkCarrierICCKey is the attribute Key conforming to the
-	// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1
-	// alpha-2 2-character country code associated with the mobile carrier network.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: DE
-	NetworkCarrierICCKey = attribute.Key("network.carrier.icc")
-
-	// NetworkCarrierMCCKey is the attribute Key conforming to the
-	// "network.carrier.mcc" semantic conventions. It represents the mobile carrier
-	// country code.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 310
-	NetworkCarrierMCCKey = attribute.Key("network.carrier.mcc")
-
-	// NetworkCarrierMNCKey is the attribute Key conforming to the
-	// "network.carrier.mnc" semantic conventions. It represents the mobile carrier
-	// network code.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 001
-	NetworkCarrierMNCKey = attribute.Key("network.carrier.mnc")
-
-	// NetworkCarrierNameKey is the attribute Key conforming to the
-	// "network.carrier.name" semantic conventions. It represents the name of the
-	// mobile carrier.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: sprint
-	NetworkCarrierNameKey = attribute.Key("network.carrier.name")
-
-	// NetworkConnectionStateKey is the attribute Key conforming to the
-	// "network.connection.state" semantic conventions. It represents the state of
-	// network connection.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "close_wait"
-	// Note: Connection states are defined as part of the [rfc9293]
-	//
-	// [rfc9293]: https://datatracker.ietf.org/doc/html/rfc9293#section-3.3.2
-	NetworkConnectionStateKey = attribute.Key("network.connection.state")
-
-	// NetworkConnectionSubtypeKey is the attribute Key conforming to the
-	// "network.connection.subtype" semantic conventions. It represents the this
-	// describes more details regarding the connection.type. It may be the type of
-	// cell technology connection, but it could be used for describing details about
-	// a wifi connection.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: LTE
-	NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype")
-
-	// NetworkConnectionTypeKey is the attribute Key conforming to the
-	// "network.connection.type" semantic conventions. It represents the internet
-	// connection type.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: wifi
-	NetworkConnectionTypeKey = attribute.Key("network.connection.type")
-
-	// NetworkInterfaceNameKey is the attribute Key conforming to the
-	// "network.interface.name" semantic conventions. It represents the network
-	// interface name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "lo", "eth0"
-	NetworkInterfaceNameKey = attribute.Key("network.interface.name")
-
-	// NetworkIODirectionKey is the attribute Key conforming to the
-	// "network.io.direction" semantic conventions. It represents the network IO
-	// operation direction.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "transmit"
-	NetworkIODirectionKey = attribute.Key("network.io.direction")
-
-	// NetworkLocalAddressKey is the attribute Key conforming to the
-	// "network.local.address" semantic conventions. It represents the local address
-	// of the network connection - IP address or Unix domain socket name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "10.1.2.80", "/tmp/my.sock"
-	NetworkLocalAddressKey = attribute.Key("network.local.address")
-
-	// NetworkLocalPortKey is the attribute Key conforming to the
-	// "network.local.port" semantic conventions. It represents the local port
-	// number of the network connection.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: 65123
-	NetworkLocalPortKey = attribute.Key("network.local.port")
-
-	// NetworkPeerAddressKey is the attribute Key conforming to the
-	// "network.peer.address" semantic conventions. It represents the peer address
-	// of the network connection - IP address or Unix domain socket name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "10.1.2.80", "/tmp/my.sock"
-	NetworkPeerAddressKey = attribute.Key("network.peer.address")
-
-	// NetworkPeerPortKey is the attribute Key conforming to the "network.peer.port"
-	// semantic conventions. It represents the peer port number of the network
-	// connection.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: 65123
-	NetworkPeerPortKey = attribute.Key("network.peer.port")
-
-	// NetworkProtocolNameKey is the attribute Key conforming to the
-	// "network.protocol.name" semantic conventions. It represents the
-	// [OSI application layer] or non-OSI equivalent.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "amqp", "http", "mqtt"
-	// Note: The value SHOULD be normalized to lowercase.
-	//
-	// [OSI application layer]: https://wikipedia.org/wiki/Application_layer
-	NetworkProtocolNameKey = attribute.Key("network.protocol.name")
-
-	// NetworkProtocolVersionKey is the attribute Key conforming to the
-	// "network.protocol.version" semantic conventions. It represents the actual
-	// version of the protocol used for network communication.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "1.1", "2"
-	// Note: If protocol version is subject to negotiation (for example using [ALPN]
-	// ), this attribute SHOULD be set to the negotiated version. If the actual
-	// protocol version is not known, this attribute SHOULD NOT be set.
-	//
-	// [ALPN]: https://www.rfc-editor.org/rfc/rfc7301.html
-	NetworkProtocolVersionKey = attribute.Key("network.protocol.version")
-
-	// NetworkTransportKey is the attribute Key conforming to the
-	// "network.transport" semantic conventions. It represents the
-	// [OSI transport layer] or [inter-process communication method].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "tcp", "udp"
-	// Note: The value SHOULD be normalized to lowercase.
-	//
-	// Consider always setting the transport when setting a port number, since
-	// a port number is ambiguous without knowing the transport. For example
-	// different processes could be listening on TCP port 12345 and UDP port 12345.
-	//
-	// [OSI transport layer]: https://wikipedia.org/wiki/Transport_layer
-	// [inter-process communication method]: https://wikipedia.org/wiki/Inter-process_communication
-	NetworkTransportKey = attribute.Key("network.transport")
-
-	// NetworkTypeKey is the attribute Key conforming to the "network.type" semantic
-	// conventions. It represents the [OSI network layer] or non-OSI equivalent.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "ipv4", "ipv6"
-	// Note: The value SHOULD be normalized to lowercase.
-	//
-	// [OSI network layer]: https://wikipedia.org/wiki/Network_layer
-	NetworkTypeKey = attribute.Key("network.type")
-)
-
-// NetworkCarrierICC returns an attribute KeyValue conforming to the
-// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1
-// alpha-2 2-character country code associated with the mobile carrier network.
-func NetworkCarrierICC(val string) attribute.KeyValue {
-	return NetworkCarrierICCKey.String(val)
-}
-
-// NetworkCarrierMCC returns an attribute KeyValue conforming to the
-// "network.carrier.mcc" semantic conventions. It represents the mobile carrier
-// country code.
-func NetworkCarrierMCC(val string) attribute.KeyValue {
-	return NetworkCarrierMCCKey.String(val)
-}
-
-// NetworkCarrierMNC returns an attribute KeyValue conforming to the
-// "network.carrier.mnc" semantic conventions. It represents the mobile carrier
-// network code.
-func NetworkCarrierMNC(val string) attribute.KeyValue {
-	return NetworkCarrierMNCKey.String(val)
-}
-
-// NetworkCarrierName returns an attribute KeyValue conforming to the
-// "network.carrier.name" semantic conventions. It represents the name of the
-// mobile carrier.
-func NetworkCarrierName(val string) attribute.KeyValue {
-	return NetworkCarrierNameKey.String(val)
-}
-
-// NetworkInterfaceName returns an attribute KeyValue conforming to the
-// "network.interface.name" semantic conventions. It represents the network
-// interface name.
-func NetworkInterfaceName(val string) attribute.KeyValue {
-	return NetworkInterfaceNameKey.String(val)
-}
-
-// NetworkLocalAddress returns an attribute KeyValue conforming to the
-// "network.local.address" semantic conventions. It represents the local address
-// of the network connection - IP address or Unix domain socket name.
-func NetworkLocalAddress(val string) attribute.KeyValue {
-	return NetworkLocalAddressKey.String(val)
-}
-
-// NetworkLocalPort returns an attribute KeyValue conforming to the
-// "network.local.port" semantic conventions. It represents the local port number
-// of the network connection.
-func NetworkLocalPort(val int) attribute.KeyValue {
-	return NetworkLocalPortKey.Int(val)
-}
-
-// NetworkPeerAddress returns an attribute KeyValue conforming to the
-// "network.peer.address" semantic conventions. It represents the peer address of
-// the network connection - IP address or Unix domain socket name.
-func NetworkPeerAddress(val string) attribute.KeyValue {
-	return NetworkPeerAddressKey.String(val)
-}
-
-// NetworkPeerPort returns an attribute KeyValue conforming to the
-// "network.peer.port" semantic conventions. It represents the peer port number
-// of the network connection.
-func NetworkPeerPort(val int) attribute.KeyValue {
-	return NetworkPeerPortKey.Int(val)
-}
-
-// NetworkProtocolName returns an attribute KeyValue conforming to the
-// "network.protocol.name" semantic conventions. It represents the
-// [OSI application layer] or non-OSI equivalent.
-//
-// [OSI application layer]: https://wikipedia.org/wiki/Application_layer
-func NetworkProtocolName(val string) attribute.KeyValue {
-	return NetworkProtocolNameKey.String(val)
-}
-
-// NetworkProtocolVersion returns an attribute KeyValue conforming to the
-// "network.protocol.version" semantic conventions. It represents the actual
-// version of the protocol used for network communication.
-func NetworkProtocolVersion(val string) attribute.KeyValue {
-	return NetworkProtocolVersionKey.String(val)
-}
-
-// Enum values for network.connection.state
-var (
-	// closed
-	// Stability: development
-	NetworkConnectionStateClosed = NetworkConnectionStateKey.String("closed")
-	// close_wait
-	// Stability: development
-	NetworkConnectionStateCloseWait = NetworkConnectionStateKey.String("close_wait")
-	// closing
-	// Stability: development
-	NetworkConnectionStateClosing = NetworkConnectionStateKey.String("closing")
-	// established
-	// Stability: development
-	NetworkConnectionStateEstablished = NetworkConnectionStateKey.String("established")
-	// fin_wait_1
-	// Stability: development
-	NetworkConnectionStateFinWait1 = NetworkConnectionStateKey.String("fin_wait_1")
-	// fin_wait_2
-	// Stability: development
-	NetworkConnectionStateFinWait2 = NetworkConnectionStateKey.String("fin_wait_2")
-	// last_ack
-	// Stability: development
-	NetworkConnectionStateLastAck = NetworkConnectionStateKey.String("last_ack")
-	// listen
-	// Stability: development
-	NetworkConnectionStateListen = NetworkConnectionStateKey.String("listen")
-	// syn_received
-	// Stability: development
-	NetworkConnectionStateSynReceived = NetworkConnectionStateKey.String("syn_received")
-	// syn_sent
-	// Stability: development
-	NetworkConnectionStateSynSent = NetworkConnectionStateKey.String("syn_sent")
-	// time_wait
-	// Stability: development
-	NetworkConnectionStateTimeWait = NetworkConnectionStateKey.String("time_wait")
-)
-
-// Enum values for network.connection.subtype
-var (
-	// GPRS
-	// Stability: development
-	NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs")
-	// EDGE
-	// Stability: development
-	NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge")
-	// UMTS
-	// Stability: development
-	NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts")
-	// CDMA
-	// Stability: development
-	NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma")
-	// EVDO Rel. 0
-	// Stability: development
-	NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0")
-	// EVDO Rev. A
-	// Stability: development
-	NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a")
-	// CDMA2000 1XRTT
-	// Stability: development
-	NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt")
-	// HSDPA
-	// Stability: development
-	NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa")
-	// HSUPA
-	// Stability: development
-	NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa")
-	// HSPA
-	// Stability: development
-	NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa")
-	// IDEN
-	// Stability: development
-	NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden")
-	// EVDO Rev. B
-	// Stability: development
-	NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b")
-	// LTE
-	// Stability: development
-	NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte")
-	// EHRPD
-	// Stability: development
-	NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd")
-	// HSPAP
-	// Stability: development
-	NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap")
-	// GSM
-	// Stability: development
-	NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm")
-	// TD-SCDMA
-	// Stability: development
-	NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma")
-	// IWLAN
-	// Stability: development
-	NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan")
-	// 5G NR (New Radio)
-	// Stability: development
-	NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr")
-	// 5G NRNSA (New Radio Non-Standalone)
-	// Stability: development
-	NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa")
-	// LTE CA
-	// Stability: development
-	NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca")
-)
-
-// Enum values for network.connection.type
-var (
-	// wifi
-	// Stability: development
-	NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi")
-	// wired
-	// Stability: development
-	NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired")
-	// cell
-	// Stability: development
-	NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell")
-	// unavailable
-	// Stability: development
-	NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable")
-	// unknown
-	// Stability: development
-	NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown")
-)
-
-// Enum values for network.io.direction
-var (
-	// transmit
-	// Stability: development
-	NetworkIODirectionTransmit = NetworkIODirectionKey.String("transmit")
-	// receive
-	// Stability: development
-	NetworkIODirectionReceive = NetworkIODirectionKey.String("receive")
-)
-
-// Enum values for network.transport
-var (
-	// TCP
-	// Stability: stable
-	NetworkTransportTCP = NetworkTransportKey.String("tcp")
-	// UDP
-	// Stability: stable
-	NetworkTransportUDP = NetworkTransportKey.String("udp")
-	// Named or anonymous pipe.
-	// Stability: stable
-	NetworkTransportPipe = NetworkTransportKey.String("pipe")
-	// Unix domain socket
-	// Stability: stable
-	NetworkTransportUnix = NetworkTransportKey.String("unix")
-	// QUIC
-	// Stability: stable
-	NetworkTransportQUIC = NetworkTransportKey.String("quic")
-)
-
-// Enum values for network.type
-var (
-	// IPv4
-	// Stability: stable
-	NetworkTypeIPv4 = NetworkTypeKey.String("ipv4")
-	// IPv6
-	// Stability: stable
-	NetworkTypeIPv6 = NetworkTypeKey.String("ipv6")
-)
-
-// Namespace: nfs
-const (
-	// NfsOperationNameKey is the attribute Key conforming to the
-	// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation
-	// name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "OPEN", "READ", "GETATTR"
-	NfsOperationNameKey = attribute.Key("nfs.operation.name")
-
-	// NfsServerRepcacheStatusKey is the attribute Key conforming to the
-	// "nfs.server.repcache.status" semantic conventions. It represents the linux:
-	// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or
-	// "nocache" (NFSD_STATS_RC_NOCACHE -- uncacheable).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: hit
-	NfsServerRepcacheStatusKey = attribute.Key("nfs.server.repcache.status")
-)
-
-// NfsOperationName returns an attribute KeyValue conforming to the
-// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation
-// name.
-func NfsOperationName(val string) attribute.KeyValue {
-	return NfsOperationNameKey.String(val)
-}
-
-// NfsServerRepcacheStatus returns an attribute KeyValue conforming to the
-// "nfs.server.repcache.status" semantic conventions. It represents the linux:
-// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or "nocache"
-// (NFSD_STATS_RC_NOCACHE -- uncacheable).
-func NfsServerRepcacheStatus(val string) attribute.KeyValue {
-	return NfsServerRepcacheStatusKey.String(val)
-}
-
-// Namespace: oci
-const (
-	// OCIManifestDigestKey is the attribute Key conforming to the
-	// "oci.manifest.digest" semantic conventions. It represents the digest of the
-	// OCI image manifest. For container images specifically is the digest by which
-	// the container image is known.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4"
-	// Note: Follows [OCI Image Manifest Specification], and specifically the
-	// [Digest property].
-	// An example can be found in [Example Image Manifest].
-	//
-	// [OCI Image Manifest Specification]: https://github.com/opencontainers/image-spec/blob/main/manifest.md
-	// [Digest property]: https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests
-	// [Example Image Manifest]: https://github.com/opencontainers/image-spec/blob/main/manifest.md#example-image-manifest
-	OCIManifestDigestKey = attribute.Key("oci.manifest.digest")
-)
-
-// OCIManifestDigest returns an attribute KeyValue conforming to the
-// "oci.manifest.digest" semantic conventions. It represents the digest of the
-// OCI image manifest. For container images specifically is the digest by which
-// the container image is known.
-func OCIManifestDigest(val string) attribute.KeyValue {
-	return OCIManifestDigestKey.String(val)
-}
-
-// Namespace: onc_rpc
-const (
-	// OncRPCProcedureNameKey is the attribute Key conforming to the
-	// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC
-	// procedure name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "OPEN", "READ", "GETATTR"
-	OncRPCProcedureNameKey = attribute.Key("onc_rpc.procedure.name")
-
-	// OncRPCProcedureNumberKey is the attribute Key conforming to the
-	// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun
-	// RPC procedure number.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	OncRPCProcedureNumberKey = attribute.Key("onc_rpc.procedure.number")
-
-	// OncRPCProgramNameKey is the attribute Key conforming to the
-	// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC
-	// program name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "portmapper", "nfs"
-	OncRPCProgramNameKey = attribute.Key("onc_rpc.program.name")
-
-	// OncRPCVersionKey is the attribute Key conforming to the "onc_rpc.version"
-	// semantic conventions. It represents the ONC/Sun RPC program version.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	OncRPCVersionKey = attribute.Key("onc_rpc.version")
-)
-
-// OncRPCProcedureName returns an attribute KeyValue conforming to the
-// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC
-// procedure name.
-func OncRPCProcedureName(val string) attribute.KeyValue {
-	return OncRPCProcedureNameKey.String(val)
-}
-
-// OncRPCProcedureNumber returns an attribute KeyValue conforming to the
-// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun RPC
-// procedure number.
-func OncRPCProcedureNumber(val int) attribute.KeyValue {
-	return OncRPCProcedureNumberKey.Int(val)
-}
-
-// OncRPCProgramName returns an attribute KeyValue conforming to the
-// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC
-// program name.
-func OncRPCProgramName(val string) attribute.KeyValue {
-	return OncRPCProgramNameKey.String(val)
-}
-
-// OncRPCVersion returns an attribute KeyValue conforming to the
-// "onc_rpc.version" semantic conventions. It represents the ONC/Sun RPC program
-// version.
-func OncRPCVersion(val int) attribute.KeyValue {
-	return OncRPCVersionKey.Int(val)
-}
-
-// Namespace: openai
-const (
-	// OpenAIRequestServiceTierKey is the attribute Key conforming to the
-	// "openai.request.service_tier" semantic conventions. It represents the service
-	// tier requested. May be a specific tier, default, or auto.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "auto", "default"
-	OpenAIRequestServiceTierKey = attribute.Key("openai.request.service_tier")
-
-	// OpenAIResponseServiceTierKey is the attribute Key conforming to the
-	// "openai.response.service_tier" semantic conventions. It represents the
-	// service tier used for the response.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "scale", "default"
-	OpenAIResponseServiceTierKey = attribute.Key("openai.response.service_tier")
-
-	// OpenAIResponseSystemFingerprintKey is the attribute Key conforming to the
-	// "openai.response.system_fingerprint" semantic conventions. It represents a
-	// fingerprint to track any eventual change in the Generative AI environment.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "fp_44709d6fcb"
-	OpenAIResponseSystemFingerprintKey = attribute.Key("openai.response.system_fingerprint")
-)
-
-// OpenAIResponseServiceTier returns an attribute KeyValue conforming to the
-// "openai.response.service_tier" semantic conventions. It represents the service
-// tier used for the response.
-func OpenAIResponseServiceTier(val string) attribute.KeyValue {
-	return OpenAIResponseServiceTierKey.String(val)
-}
-
-// OpenAIResponseSystemFingerprint returns an attribute KeyValue conforming to
-// the "openai.response.system_fingerprint" semantic conventions. It represents a
-// fingerprint to track any eventual change in the Generative AI environment.
-func OpenAIResponseSystemFingerprint(val string) attribute.KeyValue {
-	return OpenAIResponseSystemFingerprintKey.String(val)
-}
-
-// Enum values for openai.request.service_tier
-var (
-	// The system will utilize scale tier credits until they are exhausted.
-	// Stability: development
-	OpenAIRequestServiceTierAuto = OpenAIRequestServiceTierKey.String("auto")
-	// The system will utilize the default scale tier.
-	// Stability: development
-	OpenAIRequestServiceTierDefault = OpenAIRequestServiceTierKey.String("default")
-)
-
-// Namespace: openshift
-const (
-	// OpenShiftClusterquotaNameKey is the attribute Key conforming to the
-	// "openshift.clusterquota.name" semantic conventions. It represents the name of
-	// the cluster quota.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "opentelemetry"
-	OpenShiftClusterquotaNameKey = attribute.Key("openshift.clusterquota.name")
-
-	// OpenShiftClusterquotaUIDKey is the attribute Key conforming to the
-	// "openshift.clusterquota.uid" semantic conventions. It represents the UID of
-	// the cluster quota.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
-	OpenShiftClusterquotaUIDKey = attribute.Key("openshift.clusterquota.uid")
-)
-
-// OpenShiftClusterquotaName returns an attribute KeyValue conforming to the
-// "openshift.clusterquota.name" semantic conventions. It represents the name of
-// the cluster quota.
-func OpenShiftClusterquotaName(val string) attribute.KeyValue {
-	return OpenShiftClusterquotaNameKey.String(val)
-}
-
-// OpenShiftClusterquotaUID returns an attribute KeyValue conforming to the
-// "openshift.clusterquota.uid" semantic conventions. It represents the UID of
-// the cluster quota.
-func OpenShiftClusterquotaUID(val string) attribute.KeyValue {
-	return OpenShiftClusterquotaUIDKey.String(val)
-}
-
-// Namespace: opentracing
-const (
-	// OpenTracingRefTypeKey is the attribute Key conforming to the
-	// "opentracing.ref_type" semantic conventions. It represents the parent-child
-	// Reference type.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: The causal relationship between a child Span and a parent Span.
-	OpenTracingRefTypeKey = attribute.Key("opentracing.ref_type")
-)
-
-// Enum values for opentracing.ref_type
-var (
-	// The parent Span depends on the child Span in some capacity
-	// Stability: development
-	OpenTracingRefTypeChildOf = OpenTracingRefTypeKey.String("child_of")
-	// The parent Span doesn't depend in any way on the result of the child Span
-	// Stability: development
-	OpenTracingRefTypeFollowsFrom = OpenTracingRefTypeKey.String("follows_from")
-)
-
-// Namespace: os
-const (
-	// OSBuildIDKey is the attribute Key conforming to the "os.build_id" semantic
-	// conventions. It represents the unique identifier for a particular build or
-	// compilation of the operating system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "TQ3C.230805.001.B2", "20E247", "22621"
-	OSBuildIDKey = attribute.Key("os.build_id")
-
-	// OSDescriptionKey is the attribute Key conforming to the "os.description"
-	// semantic conventions. It represents the human readable (not intended to be
-	// parsed) OS version information, like e.g. reported by `ver` or
-	// `lsb_release -a` commands.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Microsoft Windows [Version 10.0.18363.778]", "Ubuntu 18.04.1 LTS"
-	OSDescriptionKey = attribute.Key("os.description")
-
-	// OSNameKey is the attribute Key conforming to the "os.name" semantic
-	// conventions. It represents the human readable operating system name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "iOS", "Android", "Ubuntu"
-	OSNameKey = attribute.Key("os.name")
-
-	// OSTypeKey is the attribute Key conforming to the "os.type" semantic
-	// conventions. It represents the operating system type.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	OSTypeKey = attribute.Key("os.type")
-
-	// OSVersionKey is the attribute Key conforming to the "os.version" semantic
-	// conventions. It represents the version string of the operating system as
-	// defined in [Version Attributes].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "14.2.1", "18.04.1"
-	//
-	// [Version Attributes]: /docs/resource/README.md#version-attributes
-	OSVersionKey = attribute.Key("os.version")
-)
-
-// OSBuildID returns an attribute KeyValue conforming to the "os.build_id"
-// semantic conventions. It represents the unique identifier for a particular
-// build or compilation of the operating system.
-func OSBuildID(val string) attribute.KeyValue {
-	return OSBuildIDKey.String(val)
-}
-
-// OSDescription returns an attribute KeyValue conforming to the "os.description"
-// semantic conventions. It represents the human readable (not intended to be
-// parsed) OS version information, like e.g. reported by `ver` or
-// `lsb_release -a` commands.
-func OSDescription(val string) attribute.KeyValue {
-	return OSDescriptionKey.String(val)
-}
-
-// OSName returns an attribute KeyValue conforming to the "os.name" semantic
-// conventions. It represents the human readable operating system name.
-func OSName(val string) attribute.KeyValue {
-	return OSNameKey.String(val)
-}
-
-// OSVersion returns an attribute KeyValue conforming to the "os.version"
-// semantic conventions. It represents the version string of the operating system
-// as defined in [Version Attributes].
-//
-// [Version Attributes]: /docs/resource/README.md#version-attributes
-func OSVersion(val string) attribute.KeyValue {
-	return OSVersionKey.String(val)
-}
-
-// Enum values for os.type
-var (
-	// Microsoft Windows
-	// Stability: development
-	OSTypeWindows = OSTypeKey.String("windows")
-	// Linux
-	// Stability: development
-	OSTypeLinux = OSTypeKey.String("linux")
-	// Apple Darwin
-	// Stability: development
-	OSTypeDarwin = OSTypeKey.String("darwin")
-	// FreeBSD
-	// Stability: development
-	OSTypeFreeBSD = OSTypeKey.String("freebsd")
-	// NetBSD
-	// Stability: development
-	OSTypeNetBSD = OSTypeKey.String("netbsd")
-	// OpenBSD
-	// Stability: development
-	OSTypeOpenBSD = OSTypeKey.String("openbsd")
-	// DragonFly BSD
-	// Stability: development
-	OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd")
-	// HP-UX (Hewlett Packard Unix)
-	// Stability: development
-	OSTypeHPUX = OSTypeKey.String("hpux")
-	// AIX (Advanced Interactive eXecutive)
-	// Stability: development
-	OSTypeAIX = OSTypeKey.String("aix")
-	// SunOS, Oracle Solaris
-	// Stability: development
-	OSTypeSolaris = OSTypeKey.String("solaris")
-	// IBM z/OS
-	// Stability: development
-	OSTypeZOS = OSTypeKey.String("zos")
-)
-
-// Namespace: otel
-const (
-	// OTelComponentNameKey is the attribute Key conforming to the
-	// "otel.component.name" semantic conventions. It represents a name uniquely
-	// identifying the instance of the OpenTelemetry component within its containing
-	// SDK instance.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "otlp_grpc_span_exporter/0", "custom-name"
-	// Note: Implementations SHOULD ensure a low cardinality for this attribute,
-	// even across application or SDK restarts.
-	// E.g. implementations MUST NOT use UUIDs as values for this attribute.
-	//
-	// Implementations MAY achieve these goals by following a
-	// `<otel.component.type>/<instance-counter>` pattern, e.g.
-	// `batching_span_processor/0`.
-	// Hereby `otel.component.type` refers to the corresponding attribute value of
-	// the component.
-	//
-	// The value of `instance-counter` MAY be automatically assigned by the
-	// component and uniqueness within the enclosing SDK instance MUST be
-	// guaranteed.
-	// For example, `<instance-counter>` MAY be implemented by using a monotonically
-	// increasing counter (starting with `0`), which is incremented every time an
-	// instance of the given component type is started.
-	//
-	// With this implementation, for example the first Batching Span Processor would
-	// have `batching_span_processor/0`
-	// as `otel.component.name`, the second one `batching_span_processor/1` and so
-	// on.
-	// These values will therefore be reused in the case of an application restart.
-	OTelComponentNameKey = attribute.Key("otel.component.name")
-
-	// OTelComponentTypeKey is the attribute Key conforming to the
-	// "otel.component.type" semantic conventions. It represents a name identifying
-	// the type of the OpenTelemetry component.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "batching_span_processor", "com.example.MySpanExporter"
-	// Note: If none of the standardized values apply, implementations SHOULD use
-	// the language-defined name of the type.
-	// E.g. for Java the fully qualified classname SHOULD be used in this case.
-	OTelComponentTypeKey = attribute.Key("otel.component.type")
-
-	// OTelEventNameKey is the attribute Key conforming to the "otel.event.name"
-	// semantic conventions. It represents the identifies the class / type of event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "browser.mouse.click", "device.app.lifecycle"
-	// Note: This attribute SHOULD be used by non-OTLP exporters when destination
-	// does not support `EventName` or equivalent field. This attribute MAY be used
-	// by applications using existing logging libraries so that it can be used to
-	// set the `EventName` field by Collector or SDK components.
-	OTelEventNameKey = attribute.Key("otel.event.name")
-
-	// OTelScopeNameKey is the attribute Key conforming to the "otel.scope.name"
-	// semantic conventions. It represents the name of the instrumentation scope - (
-	// `InstrumentationScope.Name` in OTLP).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "io.opentelemetry.contrib.mongodb"
-	OTelScopeNameKey = attribute.Key("otel.scope.name")
-
-	// OTelScopeSchemaURLKey is the attribute Key conforming to the
-	// "otel.scope.schema_url" semantic conventions. It represents the schema URL of
-	// the instrumentation scope.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "https://opentelemetry.io/schemas/1.31.0"
-	OTelScopeSchemaURLKey = attribute.Key("otel.scope.schema_url")
-
-	// OTelScopeVersionKey is the attribute Key conforming to the
-	// "otel.scope.version" semantic conventions. It represents the version of the
-	// instrumentation scope - (`InstrumentationScope.Version` in OTLP).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "1.0.0"
-	OTelScopeVersionKey = attribute.Key("otel.scope.version")
-
-	// OTelSpanParentOriginKey is the attribute Key conforming to the
-	// "otel.span.parent.origin" semantic conventions. It represents the determines
-	// whether the span has a parent span, and if so,
-	// [whether it is a remote parent].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
-	OTelSpanParentOriginKey = attribute.Key("otel.span.parent.origin")
-
-	// OTelSpanSamplingResultKey is the attribute Key conforming to the
-	// "otel.span.sampling_result" semantic conventions. It represents the result
-	// value of the sampler for this span.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	OTelSpanSamplingResultKey = attribute.Key("otel.span.sampling_result")
-
-	// OTelStatusCodeKey is the attribute Key conforming to the "otel.status_code"
-	// semantic conventions. It represents the name of the code, either "OK" or
-	// "ERROR". MUST NOT be set if the status code is UNSET.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples:
-	OTelStatusCodeKey = attribute.Key("otel.status_code")
-
-	// OTelStatusDescriptionKey is the attribute Key conforming to the
-	// "otel.status_description" semantic conventions. It represents the description
-	// of the Status if it has a value, otherwise not set.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "resource not found"
-	OTelStatusDescriptionKey = attribute.Key("otel.status_description")
-)
-
-// OTelComponentName returns an attribute KeyValue conforming to the
-// "otel.component.name" semantic conventions. It represents a name uniquely
-// identifying the instance of the OpenTelemetry component within its containing
-// SDK instance.
-func OTelComponentName(val string) attribute.KeyValue {
-	return OTelComponentNameKey.String(val)
-}
-
-// OTelEventName returns an attribute KeyValue conforming to the
-// "otel.event.name" semantic conventions. It represents the identifies the class
-// / type of event.
-func OTelEventName(val string) attribute.KeyValue {
-	return OTelEventNameKey.String(val)
-}
-
-// OTelScopeName returns an attribute KeyValue conforming to the
-// "otel.scope.name" semantic conventions. It represents the name of the
-// instrumentation scope - (`InstrumentationScope.Name` in OTLP).
-func OTelScopeName(val string) attribute.KeyValue {
-	return OTelScopeNameKey.String(val)
-}
-
-// OTelScopeSchemaURL returns an attribute KeyValue conforming to the
-// "otel.scope.schema_url" semantic conventions. It represents the schema URL of
-// the instrumentation scope.
-func OTelScopeSchemaURL(val string) attribute.KeyValue {
-	return OTelScopeSchemaURLKey.String(val)
-}
-
-// OTelScopeVersion returns an attribute KeyValue conforming to the
-// "otel.scope.version" semantic conventions. It represents the version of the
-// instrumentation scope - (`InstrumentationScope.Version` in OTLP).
-func OTelScopeVersion(val string) attribute.KeyValue {
-	return OTelScopeVersionKey.String(val)
-}
-
-// OTelStatusDescription returns an attribute KeyValue conforming to the
-// "otel.status_description" semantic conventions. It represents the description
-// of the Status if it has a value, otherwise not set.
-func OTelStatusDescription(val string) attribute.KeyValue {
-	return OTelStatusDescriptionKey.String(val)
-}
-
-// Enum values for otel.component.type
-var (
-	// The builtin SDK batching span processor
-	//
-	// Stability: development
-	OTelComponentTypeBatchingSpanProcessor = OTelComponentTypeKey.String("batching_span_processor")
-	// The builtin SDK simple span processor
-	//
-	// Stability: development
-	OTelComponentTypeSimpleSpanProcessor = OTelComponentTypeKey.String("simple_span_processor")
-	// The builtin SDK batching log record processor
-	//
-	// Stability: development
-	OTelComponentTypeBatchingLogProcessor = OTelComponentTypeKey.String("batching_log_processor")
-	// The builtin SDK simple log record processor
-	//
-	// Stability: development
-	OTelComponentTypeSimpleLogProcessor = OTelComponentTypeKey.String("simple_log_processor")
-	// OTLP span exporter over gRPC with protobuf serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpGRPCSpanExporter = OTelComponentTypeKey.String("otlp_grpc_span_exporter")
-	// OTLP span exporter over HTTP with protobuf serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpHTTPSpanExporter = OTelComponentTypeKey.String("otlp_http_span_exporter")
-	// OTLP span exporter over HTTP with JSON serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpHTTPJSONSpanExporter = OTelComponentTypeKey.String("otlp_http_json_span_exporter")
-	// Zipkin span exporter over HTTP
-	//
-	// Stability: development
-	OTelComponentTypeZipkinHTTPSpanExporter = OTelComponentTypeKey.String("zipkin_http_span_exporter")
-	// OTLP log record exporter over gRPC with protobuf serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpGRPCLogExporter = OTelComponentTypeKey.String("otlp_grpc_log_exporter")
-	// OTLP log record exporter over HTTP with protobuf serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpHTTPLogExporter = OTelComponentTypeKey.String("otlp_http_log_exporter")
-	// OTLP log record exporter over HTTP with JSON serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpHTTPJSONLogExporter = OTelComponentTypeKey.String("otlp_http_json_log_exporter")
-	// The builtin SDK periodically exporting metric reader
-	//
-	// Stability: development
-	OTelComponentTypePeriodicMetricReader = OTelComponentTypeKey.String("periodic_metric_reader")
-	// OTLP metric exporter over gRPC with protobuf serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpGRPCMetricExporter = OTelComponentTypeKey.String("otlp_grpc_metric_exporter")
-	// OTLP metric exporter over HTTP with protobuf serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpHTTPMetricExporter = OTelComponentTypeKey.String("otlp_http_metric_exporter")
-	// OTLP metric exporter over HTTP with JSON serialization
-	//
-	// Stability: development
-	OTelComponentTypeOtlpHTTPJSONMetricExporter = OTelComponentTypeKey.String("otlp_http_json_metric_exporter")
-	// Prometheus metric exporter over HTTP with the default text-based format
-	//
-	// Stability: development
-	OTelComponentTypePrometheusHTTPTextMetricExporter = OTelComponentTypeKey.String("prometheus_http_text_metric_exporter")
-)
-
-// Enum values for otel.span.parent.origin
-var (
-	// The span does not have a parent, it is a root span
-	// Stability: development
-	OTelSpanParentOriginNone = OTelSpanParentOriginKey.String("none")
-	// The span has a parent and the parent's span context [isRemote()] is false
-	// Stability: development
-	//
-	// [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
-	OTelSpanParentOriginLocal = OTelSpanParentOriginKey.String("local")
-	// The span has a parent and the parent's span context [isRemote()] is true
-	// Stability: development
-	//
-	// [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
-	OTelSpanParentOriginRemote = OTelSpanParentOriginKey.String("remote")
-)
-
-// Enum values for otel.span.sampling_result
-var (
-	// The span is not sampled and not recording
-	// Stability: development
-	OTelSpanSamplingResultDrop = OTelSpanSamplingResultKey.String("DROP")
-	// The span is not sampled, but recording
-	// Stability: development
-	OTelSpanSamplingResultRecordOnly = OTelSpanSamplingResultKey.String("RECORD_ONLY")
-	// The span is sampled and recording
-	// Stability: development
-	OTelSpanSamplingResultRecordAndSample = OTelSpanSamplingResultKey.String("RECORD_AND_SAMPLE")
-)
-
-// Enum values for otel.status_code
-var (
-	// The operation has been validated by an Application developer or Operator to
-	// have completed successfully.
-	// Stability: stable
-	OTelStatusCodeOk = OTelStatusCodeKey.String("OK")
-	// The operation contains an error.
-	// Stability: stable
-	OTelStatusCodeError = OTelStatusCodeKey.String("ERROR")
-)
-
-// Namespace: pprof
-const (
-	// PprofLocationIsFoldedKey is the attribute Key conforming to the
-	// "pprof.location.is_folded" semantic conventions. It represents the provides
-	// an indication that multiple symbols map to this location's address, for
-	// example due to identical code folding by the linker. In that case the line
-	// information represents one of the multiple symbols. This field must be
-	// recomputed when the symbolization state of the profile changes.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	PprofLocationIsFoldedKey = attribute.Key("pprof.location.is_folded")
-
-	// PprofMappingHasFilenamesKey is the attribute Key conforming to the
-	// "pprof.mapping.has_filenames" semantic conventions. It represents the
-	// indicates that there are filenames related to this mapping.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	PprofMappingHasFilenamesKey = attribute.Key("pprof.mapping.has_filenames")
-
-	// PprofMappingHasFunctionsKey is the attribute Key conforming to the
-	// "pprof.mapping.has_functions" semantic conventions. It represents the
-	// indicates that there are functions related to this mapping.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	PprofMappingHasFunctionsKey = attribute.Key("pprof.mapping.has_functions")
-
-	// PprofMappingHasInlineFramesKey is the attribute Key conforming to the
-	// "pprof.mapping.has_inline_frames" semantic conventions. It represents the
-	// indicates that there are inline frames related to this mapping.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	PprofMappingHasInlineFramesKey = attribute.Key("pprof.mapping.has_inline_frames")
-
-	// PprofMappingHasLineNumbersKey is the attribute Key conforming to the
-	// "pprof.mapping.has_line_numbers" semantic conventions. It represents the
-	// indicates that there are line numbers related to this mapping.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	PprofMappingHasLineNumbersKey = attribute.Key("pprof.mapping.has_line_numbers")
-
-	// PprofProfileCommentKey is the attribute Key conforming to the
-	// "pprof.profile.comment" semantic conventions. It represents the free-form
-	// text associated with the profile. This field should not be used to store any
-	// machine-readable information, it is only for human-friendly content.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "hello world", "bazinga"
-	PprofProfileCommentKey = attribute.Key("pprof.profile.comment")
-
-	// PprofProfileDocURLKey is the attribute Key conforming to the
-	// "pprof.profile.doc_url" semantic conventions. It represents the documentation
-	// link for this profile type.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "http://pprof.example.com/cpu-profile.html"
-	// Note: The URL must be absolute and may be missing if the profile was
-	// generated by code that did not supply a link
-	PprofProfileDocURLKey = attribute.Key("pprof.profile.doc_url")
-
-	// PprofProfileDropFramesKey is the attribute Key conforming to the
-	// "pprof.profile.drop_frames" semantic conventions. It represents the frames
-	// with Function.function_name fully matching the regexp will be dropped from
-	// the samples, along with their successors.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/foobar/"
-	PprofProfileDropFramesKey = attribute.Key("pprof.profile.drop_frames")
-
-	// PprofProfileKeepFramesKey is the attribute Key conforming to the
-	// "pprof.profile.keep_frames" semantic conventions. It represents the frames
-	// with Function.function_name fully matching the regexp will be kept, even if
-	// it matches drop_frames.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/bazinga/"
-	PprofProfileKeepFramesKey = attribute.Key("pprof.profile.keep_frames")
-)
-
-// PprofLocationIsFolded returns an attribute KeyValue conforming to the
-// "pprof.location.is_folded" semantic conventions. It represents the provides an
-// indication that multiple symbols map to this location's address, for example
-// due to identical code folding by the linker. In that case the line information
-// represents one of the multiple symbols. This field must be recomputed when the
-// symbolization state of the profile changes.
-func PprofLocationIsFolded(val bool) attribute.KeyValue {
-	return PprofLocationIsFoldedKey.Bool(val)
-}
-
-// PprofMappingHasFilenames returns an attribute KeyValue conforming to the
-// "pprof.mapping.has_filenames" semantic conventions. It represents the
-// indicates that there are filenames related to this mapping.
-func PprofMappingHasFilenames(val bool) attribute.KeyValue {
-	return PprofMappingHasFilenamesKey.Bool(val)
-}
-
-// PprofMappingHasFunctions returns an attribute KeyValue conforming to the
-// "pprof.mapping.has_functions" semantic conventions. It represents the
-// indicates that there are functions related to this mapping.
-func PprofMappingHasFunctions(val bool) attribute.KeyValue {
-	return PprofMappingHasFunctionsKey.Bool(val)
-}
-
-// PprofMappingHasInlineFrames returns an attribute KeyValue conforming to the
-// "pprof.mapping.has_inline_frames" semantic conventions. It represents the
-// indicates that there are inline frames related to this mapping.
-func PprofMappingHasInlineFrames(val bool) attribute.KeyValue {
-	return PprofMappingHasInlineFramesKey.Bool(val)
-}
-
-// PprofMappingHasLineNumbers returns an attribute KeyValue conforming to the
-// "pprof.mapping.has_line_numbers" semantic conventions. It represents the
-// indicates that there are line numbers related to this mapping.
-func PprofMappingHasLineNumbers(val bool) attribute.KeyValue {
-	return PprofMappingHasLineNumbersKey.Bool(val)
-}
-
-// PprofProfileComment returns an attribute KeyValue conforming to the
-// "pprof.profile.comment" semantic conventions. It represents the free-form text
-// associated with the profile. This field should not be used to store any
-// machine-readable information, it is only for human-friendly content.
-func PprofProfileComment(val ...string) attribute.KeyValue {
-	return PprofProfileCommentKey.StringSlice(val)
-}
-
-// PprofProfileDocURL returns an attribute KeyValue conforming to the
-// "pprof.profile.doc_url" semantic conventions. It represents the documentation
-// link for this profile type.
-func PprofProfileDocURL(val string) attribute.KeyValue {
-	return PprofProfileDocURLKey.String(val)
-}
-
-// PprofProfileDropFrames returns an attribute KeyValue conforming to the
-// "pprof.profile.drop_frames" semantic conventions. It represents the frames
-// with Function.function_name fully matching the regexp will be dropped from the
-// samples, along with their successors.
-func PprofProfileDropFrames(val string) attribute.KeyValue {
-	return PprofProfileDropFramesKey.String(val)
-}
-
-// PprofProfileKeepFrames returns an attribute KeyValue conforming to the
-// "pprof.profile.keep_frames" semantic conventions. It represents the frames
-// with Function.function_name fully matching the regexp will be kept, even if it
-// matches drop_frames.
-func PprofProfileKeepFrames(val string) attribute.KeyValue {
-	return PprofProfileKeepFramesKey.String(val)
-}
-
-// Namespace: process
-const (
-	// ProcessArgsCountKey is the attribute Key conforming to the
-	// "process.args_count" semantic conventions. It represents the length of the
-	// process.command_args array.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 4
-	// Note: This field can be useful for querying or performing bucket analysis on
-	// how many arguments were provided to start a process. More arguments may be an
-	// indication of suspicious activity.
-	ProcessArgsCountKey = attribute.Key("process.args_count")
-
-	// ProcessCommandKey is the attribute Key conforming to the "process.command"
-	// semantic conventions. It represents the command used to launch the process
-	// (i.e. the command name). On Linux based systems, can be set to the zeroth
-	// string in `proc/[pid]/cmdline`. On Windows, can be set to the first parameter
-	// extracted from `GetCommandLineW`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "cmd/otelcol"
-	ProcessCommandKey = attribute.Key("process.command")
-
-	// ProcessCommandArgsKey is the attribute Key conforming to the
-	// "process.command_args" semantic conventions. It represents the all the
-	// command arguments (including the command/executable itself) as received by
-	// the process. On Linux-based systems (and some other Unixoid systems
-	// supporting procfs), can be set according to the list of null-delimited
-	// strings extracted from `proc/[pid]/cmdline`. For libc-based executables, this
-	// would be the full argv vector passed to `main`. SHOULD NOT be collected by
-	// default unless there is sanitization that excludes sensitive data.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "cmd/otecol", "--config=config.yaml"
-	ProcessCommandArgsKey = attribute.Key("process.command_args")
-
-	// ProcessCommandLineKey is the attribute Key conforming to the
-	// "process.command_line" semantic conventions. It represents the full command
-	// used to launch the process as a single string representing the full command.
-	// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if
-	// you have to assemble it just for monitoring; use `process.command_args`
-	// instead. SHOULD NOT be collected by default unless there is sanitization that
-	// excludes sensitive data.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "C:\cmd\otecol --config="my directory\config.yaml""
-	ProcessCommandLineKey = attribute.Key("process.command_line")
-
-	// ProcessContextSwitchTypeKey is the attribute Key conforming to the
-	// "process.context_switch.type" semantic conventions. It represents the
-	// specifies whether the context switches for this data point were voluntary or
-	// involuntary.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	ProcessContextSwitchTypeKey = attribute.Key("process.context_switch.type")
-
-	// ProcessCreationTimeKey is the attribute Key conforming to the
-	// "process.creation.time" semantic conventions. It represents the date and time
-	// the process was created, in ISO 8601 format.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2023-11-21T09:25:34.853Z"
-	ProcessCreationTimeKey = attribute.Key("process.creation.time")
-
-	// ProcessExecutableBuildIDGNUKey is the attribute Key conforming to the
-	// "process.executable.build_id.gnu" semantic conventions. It represents the GNU
-	// build ID as found in the `.note.gnu.build-id` ELF section (hex string).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "c89b11207f6479603b0d49bf291c092c2b719293"
-	ProcessExecutableBuildIDGNUKey = attribute.Key("process.executable.build_id.gnu")
-
-	// ProcessExecutableBuildIDGoKey is the attribute Key conforming to the
-	// "process.executable.build_id.go" semantic conventions. It represents the Go
-	// build ID as retrieved by `go tool buildid <go executable>`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "foh3mEXu7BLZjsN9pOwG/kATcXlYVCDEFouRMQed_/WwRFB1hPo9LBkekthSPG/x8hMC8emW2cCjXD0_1aY"
-	ProcessExecutableBuildIDGoKey = attribute.Key("process.executable.build_id.go")
-
-	// ProcessExecutableBuildIDHtlhashKey is the attribute Key conforming to the
-	// "process.executable.build_id.htlhash" semantic conventions. It represents the
-	// profiling specific build ID for executables. See the OTel specification for
-	// Profiles for more information.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "600DCAFE4A110000F2BF38C493F5FB92"
-	ProcessExecutableBuildIDHtlhashKey = attribute.Key("process.executable.build_id.htlhash")
-
-	// ProcessExecutableNameKey is the attribute Key conforming to the
-	// "process.executable.name" semantic conventions. It represents the name of the
-	// process executable. On Linux based systems, this SHOULD be set to the base
-	// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to
-	// the base name of `GetProcessImageFileNameW`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "otelcol"
-	ProcessExecutableNameKey = attribute.Key("process.executable.name")
-
-	// ProcessExecutablePathKey is the attribute Key conforming to the
-	// "process.executable.path" semantic conventions. It represents the full path
-	// to the process executable. On Linux based systems, can be set to the target
-	// of `proc/[pid]/exe`. On Windows, can be set to the result of
-	// `GetProcessImageFileNameW`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/usr/bin/cmd/otelcol"
-	ProcessExecutablePathKey = attribute.Key("process.executable.path")
-
-	// ProcessExitCodeKey is the attribute Key conforming to the "process.exit.code"
-	// semantic conventions. It represents the exit code of the process.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 127
-	ProcessExitCodeKey = attribute.Key("process.exit.code")
-
-	// ProcessExitTimeKey is the attribute Key conforming to the "process.exit.time"
-	// semantic conventions. It represents the date and time the process exited, in
-	// ISO 8601 format.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2023-11-21T09:26:12.315Z"
-	ProcessExitTimeKey = attribute.Key("process.exit.time")
-
-	// ProcessGroupLeaderPIDKey is the attribute Key conforming to the
-	// "process.group_leader.pid" semantic conventions. It represents the PID of the
-	// process's group leader. This is also the process group ID (PGID) of the
-	// process.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 23
-	ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid")
-
-	// ProcessInteractiveKey is the attribute Key conforming to the
-	// "process.interactive" semantic conventions. It represents the whether the
-	// process is connected to an interactive shell.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	ProcessInteractiveKey = attribute.Key("process.interactive")
-
-	// ProcessLinuxCgroupKey is the attribute Key conforming to the
-	// "process.linux.cgroup" semantic conventions. It represents the control group
-	// associated with the process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1:name=systemd:/user.slice/user-1000.slice/session-3.scope",
-	// "0::/user.slice/user-1000.slice/user@1000.service/tmux-spawn-0267755b-4639-4a27-90ed-f19f88e53748.scope"
-	// Note: Control groups (cgroups) are a kernel feature used to organize and
-	// manage process resources. This attribute provides the path(s) to the
-	// cgroup(s) associated with the process, which should match the contents of the
-	// [/proc/[PID]/cgroup] file.
-	//
-	// [/proc/[PID]/cgroup]: https://man7.org/linux/man-pages/man7/cgroups.7.html
-	ProcessLinuxCgroupKey = attribute.Key("process.linux.cgroup")
-
-	// ProcessOwnerKey is the attribute Key conforming to the "process.owner"
-	// semantic conventions. It represents the username of the user that owns the
-	// process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "root"
-	ProcessOwnerKey = attribute.Key("process.owner")
-
-	// ProcessParentPIDKey is the attribute Key conforming to the
-	// "process.parent_pid" semantic conventions. It represents the parent Process
-	// identifier (PPID).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 111
-	ProcessParentPIDKey = attribute.Key("process.parent_pid")
-
-	// ProcessPIDKey is the attribute Key conforming to the "process.pid" semantic
-	// conventions. It represents the process identifier (PID).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1234
-	ProcessPIDKey = attribute.Key("process.pid")
-
-	// ProcessRealUserIDKey is the attribute Key conforming to the
-	// "process.real_user.id" semantic conventions. It represents the real user ID
-	// (RUID) of the process.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1000
-	ProcessRealUserIDKey = attribute.Key("process.real_user.id")
-
-	// ProcessRealUserNameKey is the attribute Key conforming to the
-	// "process.real_user.name" semantic conventions. It represents the username of
-	// the real user of the process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "operator"
-	ProcessRealUserNameKey = attribute.Key("process.real_user.name")
-
-	// ProcessRuntimeDescriptionKey is the attribute Key conforming to the
-	// "process.runtime.description" semantic conventions. It represents an
-	// additional description about the runtime of the process, for example a
-	// specific vendor customization of the runtime environment.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0
-	ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description")
-
-	// ProcessRuntimeNameKey is the attribute Key conforming to the
-	// "process.runtime.name" semantic conventions. It represents the name of the
-	// runtime of this process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "OpenJDK Runtime Environment"
-	ProcessRuntimeNameKey = attribute.Key("process.runtime.name")
-
-	// ProcessRuntimeVersionKey is the attribute Key conforming to the
-	// "process.runtime.version" semantic conventions. It represents the version of
-	// the runtime of this process, as returned by the runtime without modification.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 14.0.2
-	ProcessRuntimeVersionKey = attribute.Key("process.runtime.version")
-
-	// ProcessSavedUserIDKey is the attribute Key conforming to the
-	// "process.saved_user.id" semantic conventions. It represents the saved user ID
-	// (SUID) of the process.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1002
-	ProcessSavedUserIDKey = attribute.Key("process.saved_user.id")
-
-	// ProcessSavedUserNameKey is the attribute Key conforming to the
-	// "process.saved_user.name" semantic conventions. It represents the username of
-	// the saved user.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "operator"
-	ProcessSavedUserNameKey = attribute.Key("process.saved_user.name")
-
-	// ProcessSessionLeaderPIDKey is the attribute Key conforming to the
-	// "process.session_leader.pid" semantic conventions. It represents the PID of
-	// the process's session leader. This is also the session ID (SID) of the
-	// process.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 14
-	ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid")
-
-	// ProcessStateKey is the attribute Key conforming to the "process.state"
-	// semantic conventions. It represents the process state, e.g.,
-	// [Linux Process State Codes].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "running"
-	//
-	// [Linux Process State Codes]: https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES
-	ProcessStateKey = attribute.Key("process.state")
-
-	// ProcessTitleKey is the attribute Key conforming to the "process.title"
-	// semantic conventions. It represents the process title (proctitle).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "cat /etc/hostname", "xfce4-session", "bash"
-	// Note: In many Unix-like systems, process title (proctitle), is the string
-	// that represents the name or command line of a running process, displayed by
-	// system monitoring tools like ps, top, and htop.
-	ProcessTitleKey = attribute.Key("process.title")
-
-	// ProcessUserIDKey is the attribute Key conforming to the "process.user.id"
-	// semantic conventions. It represents the effective user ID (EUID) of the
-	// process.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 1001
-	ProcessUserIDKey = attribute.Key("process.user.id")
-
-	// ProcessUserNameKey is the attribute Key conforming to the "process.user.name"
-	// semantic conventions. It represents the username of the effective user of the
-	// process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "root"
-	ProcessUserNameKey = attribute.Key("process.user.name")
-
-	// ProcessVpidKey is the attribute Key conforming to the "process.vpid" semantic
-	// conventions. It represents the virtual process identifier.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 12
-	// Note: The process ID within a PID namespace. This is not necessarily unique
-	// across all processes on the host but it is unique within the process
-	// namespace that the process exists within.
-	ProcessVpidKey = attribute.Key("process.vpid")
-
-	// ProcessWorkingDirectoryKey is the attribute Key conforming to the
-	// "process.working_directory" semantic conventions. It represents the working
-	// directory of the process.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/root"
-	ProcessWorkingDirectoryKey = attribute.Key("process.working_directory")
-)
-
-// ProcessArgsCount returns an attribute KeyValue conforming to the
-// "process.args_count" semantic conventions. It represents the length of the
-// process.command_args array.
-func ProcessArgsCount(val int) attribute.KeyValue {
-	return ProcessArgsCountKey.Int(val)
-}
-
-// ProcessCommand returns an attribute KeyValue conforming to the
-// "process.command" semantic conventions. It represents the command used to
-// launch the process (i.e. the command name). On Linux based systems, can be set
-// to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to the
-// first parameter extracted from `GetCommandLineW`.
-func ProcessCommand(val string) attribute.KeyValue {
-	return ProcessCommandKey.String(val)
-}
-
-// ProcessCommandArgs returns an attribute KeyValue conforming to the
-// "process.command_args" semantic conventions. It represents the all the command
-// arguments (including the command/executable itself) as received by the
-// process. On Linux-based systems (and some other Unixoid systems supporting
-// procfs), can be set according to the list of null-delimited strings extracted
-// from `proc/[pid]/cmdline`. For libc-based executables, this would be the full
-// argv vector passed to `main`. SHOULD NOT be collected by default unless there
-// is sanitization that excludes sensitive data.
-func ProcessCommandArgs(val ...string) attribute.KeyValue {
-	return ProcessCommandArgsKey.StringSlice(val)
-}
-
-// ProcessCommandLine returns an attribute KeyValue conforming to the
-// "process.command_line" semantic conventions. It represents the full command
-// used to launch the process as a single string representing the full command.
-// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if
-// you have to assemble it just for monitoring; use `process.command_args`
-// instead. SHOULD NOT be collected by default unless there is sanitization that
-// excludes sensitive data.
-func ProcessCommandLine(val string) attribute.KeyValue {
-	return ProcessCommandLineKey.String(val)
-}
-
-// ProcessCreationTime returns an attribute KeyValue conforming to the
-// "process.creation.time" semantic conventions. It represents the date and time
-// the process was created, in ISO 8601 format.
-func ProcessCreationTime(val string) attribute.KeyValue {
-	return ProcessCreationTimeKey.String(val)
-}
-
-// ProcessEnvironmentVariable returns an attribute KeyValue conforming to the
-// "process.environment_variable" semantic conventions. It represents the process
-// environment variables, `<key>` being the environment variable name, the value
-// being the environment variable value.
-func ProcessEnvironmentVariable(key string, val string) attribute.KeyValue {
-	return attribute.String("process.environment_variable."+key, val)
-}
-
-// ProcessExecutableBuildIDGNU returns an attribute KeyValue conforming to the
-// "process.executable.build_id.gnu" semantic conventions. It represents the GNU
-// build ID as found in the `.note.gnu.build-id` ELF section (hex string).
-func ProcessExecutableBuildIDGNU(val string) attribute.KeyValue {
-	return ProcessExecutableBuildIDGNUKey.String(val)
-}
-
-// ProcessExecutableBuildIDGo returns an attribute KeyValue conforming to the
-// "process.executable.build_id.go" semantic conventions. It represents the Go
-// build ID as retrieved by `go tool buildid <go executable>`.
-func ProcessExecutableBuildIDGo(val string) attribute.KeyValue {
-	return ProcessExecutableBuildIDGoKey.String(val)
-}
-
-// ProcessExecutableBuildIDHtlhash returns an attribute KeyValue conforming to
-// the "process.executable.build_id.htlhash" semantic conventions. It represents
-// the profiling specific build ID for executables. See the OTel specification
-// for Profiles for more information.
-func ProcessExecutableBuildIDHtlhash(val string) attribute.KeyValue {
-	return ProcessExecutableBuildIDHtlhashKey.String(val)
-}
-
-// ProcessExecutableName returns an attribute KeyValue conforming to the
-// "process.executable.name" semantic conventions. It represents the name of the
-// process executable. On Linux based systems, this SHOULD be set to the base
-// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to the
-// base name of `GetProcessImageFileNameW`.
-func ProcessExecutableName(val string) attribute.KeyValue {
-	return ProcessExecutableNameKey.String(val)
-}
-
-// ProcessExecutablePath returns an attribute KeyValue conforming to the
-// "process.executable.path" semantic conventions. It represents the full path to
-// the process executable. On Linux based systems, can be set to the target of
-// `proc/[pid]/exe`. On Windows, can be set to the result of
-// `GetProcessImageFileNameW`.
-func ProcessExecutablePath(val string) attribute.KeyValue {
-	return ProcessExecutablePathKey.String(val)
-}
-
-// ProcessExitCode returns an attribute KeyValue conforming to the
-// "process.exit.code" semantic conventions. It represents the exit code of the
-// process.
-func ProcessExitCode(val int) attribute.KeyValue {
-	return ProcessExitCodeKey.Int(val)
-}
-
-// ProcessExitTime returns an attribute KeyValue conforming to the
-// "process.exit.time" semantic conventions. It represents the date and time the
-// process exited, in ISO 8601 format.
-func ProcessExitTime(val string) attribute.KeyValue {
-	return ProcessExitTimeKey.String(val)
-}
-
-// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the
-// "process.group_leader.pid" semantic conventions. It represents the PID of the
-// process's group leader. This is also the process group ID (PGID) of the
-// process.
-func ProcessGroupLeaderPID(val int) attribute.KeyValue {
-	return ProcessGroupLeaderPIDKey.Int(val)
-}
-
-// ProcessInteractive returns an attribute KeyValue conforming to the
-// "process.interactive" semantic conventions. It represents the whether the
-// process is connected to an interactive shell.
-func ProcessInteractive(val bool) attribute.KeyValue {
-	return ProcessInteractiveKey.Bool(val)
-}
-
-// ProcessLinuxCgroup returns an attribute KeyValue conforming to the
-// "process.linux.cgroup" semantic conventions. It represents the control group
-// associated with the process.
-func ProcessLinuxCgroup(val string) attribute.KeyValue {
-	return ProcessLinuxCgroupKey.String(val)
-}
-
-// ProcessOwner returns an attribute KeyValue conforming to the "process.owner"
-// semantic conventions. It represents the username of the user that owns the
-// process.
-func ProcessOwner(val string) attribute.KeyValue {
-	return ProcessOwnerKey.String(val)
-}
-
-// ProcessParentPID returns an attribute KeyValue conforming to the
-// "process.parent_pid" semantic conventions. It represents the parent Process
-// identifier (PPID).
-func ProcessParentPID(val int) attribute.KeyValue {
-	return ProcessParentPIDKey.Int(val)
-}
-
-// ProcessPID returns an attribute KeyValue conforming to the "process.pid"
-// semantic conventions. It represents the process identifier (PID).
-func ProcessPID(val int) attribute.KeyValue {
-	return ProcessPIDKey.Int(val)
-}
-
-// ProcessRealUserID returns an attribute KeyValue conforming to the
-// "process.real_user.id" semantic conventions. It represents the real user ID
-// (RUID) of the process.
-func ProcessRealUserID(val int) attribute.KeyValue {
-	return ProcessRealUserIDKey.Int(val)
-}
-
-// ProcessRealUserName returns an attribute KeyValue conforming to the
-// "process.real_user.name" semantic conventions. It represents the username of
-// the real user of the process.
-func ProcessRealUserName(val string) attribute.KeyValue {
-	return ProcessRealUserNameKey.String(val)
-}
-
-// ProcessRuntimeDescription returns an attribute KeyValue conforming to the
-// "process.runtime.description" semantic conventions. It represents an
-// additional description about the runtime of the process, for example a
-// specific vendor customization of the runtime environment.
-func ProcessRuntimeDescription(val string) attribute.KeyValue {
-	return ProcessRuntimeDescriptionKey.String(val)
-}
-
-// ProcessRuntimeName returns an attribute KeyValue conforming to the
-// "process.runtime.name" semantic conventions. It represents the name of the
-// runtime of this process.
-func ProcessRuntimeName(val string) attribute.KeyValue {
-	return ProcessRuntimeNameKey.String(val)
-}
-
-// ProcessRuntimeVersion returns an attribute KeyValue conforming to the
-// "process.runtime.version" semantic conventions. It represents the version of
-// the runtime of this process, as returned by the runtime without modification.
-func ProcessRuntimeVersion(val string) attribute.KeyValue {
-	return ProcessRuntimeVersionKey.String(val)
-}
-
-// ProcessSavedUserID returns an attribute KeyValue conforming to the
-// "process.saved_user.id" semantic conventions. It represents the saved user ID
-// (SUID) of the process.
-func ProcessSavedUserID(val int) attribute.KeyValue {
-	return ProcessSavedUserIDKey.Int(val)
-}
-
-// ProcessSavedUserName returns an attribute KeyValue conforming to the
-// "process.saved_user.name" semantic conventions. It represents the username of
-// the saved user.
-func ProcessSavedUserName(val string) attribute.KeyValue {
-	return ProcessSavedUserNameKey.String(val)
-}
-
-// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the
-// "process.session_leader.pid" semantic conventions. It represents the PID of
-// the process's session leader. This is also the session ID (SID) of the
-// process.
-func ProcessSessionLeaderPID(val int) attribute.KeyValue {
-	return ProcessSessionLeaderPIDKey.Int(val)
-}
-
-// ProcessTitle returns an attribute KeyValue conforming to the "process.title"
-// semantic conventions. It represents the process title (proctitle).
-func ProcessTitle(val string) attribute.KeyValue {
-	return ProcessTitleKey.String(val)
-}
-
-// ProcessUserID returns an attribute KeyValue conforming to the
-// "process.user.id" semantic conventions. It represents the effective user ID
-// (EUID) of the process.
-func ProcessUserID(val int) attribute.KeyValue {
-	return ProcessUserIDKey.Int(val)
-}
-
-// ProcessUserName returns an attribute KeyValue conforming to the
-// "process.user.name" semantic conventions. It represents the username of the
-// effective user of the process.
-func ProcessUserName(val string) attribute.KeyValue {
-	return ProcessUserNameKey.String(val)
-}
-
-// ProcessVpid returns an attribute KeyValue conforming to the "process.vpid"
-// semantic conventions. It represents the virtual process identifier.
-func ProcessVpid(val int) attribute.KeyValue {
-	return ProcessVpidKey.Int(val)
-}
-
-// ProcessWorkingDirectory returns an attribute KeyValue conforming to the
-// "process.working_directory" semantic conventions. It represents the working
-// directory of the process.
-func ProcessWorkingDirectory(val string) attribute.KeyValue {
-	return ProcessWorkingDirectoryKey.String(val)
-}
-
-// Enum values for process.context_switch.type
-var (
-	// voluntary
-	// Stability: development
-	ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary")
-	// involuntary
-	// Stability: development
-	ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary")
-)
-
-// Enum values for process.state
-var (
-	// running
-	// Stability: development
-	ProcessStateRunning = ProcessStateKey.String("running")
-	// sleeping
-	// Stability: development
-	ProcessStateSleeping = ProcessStateKey.String("sleeping")
-	// stopped
-	// Stability: development
-	ProcessStateStopped = ProcessStateKey.String("stopped")
-	// defunct
-	// Stability: development
-	ProcessStateDefunct = ProcessStateKey.String("defunct")
-)
-
-// Namespace: profile
-const (
-	// ProfileFrameTypeKey is the attribute Key conforming to the
-	// "profile.frame.type" semantic conventions. It represents the describes the
-	// interpreter or compiler of a single frame.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "cpython"
-	ProfileFrameTypeKey = attribute.Key("profile.frame.type")
-)
-
-// Enum values for profile.frame.type
-var (
-	// [.NET]
-	//
-	// Stability: development
-	//
-	// [.NET]: https://wikipedia.org/wiki/.NET
-	ProfileFrameTypeDotnet = ProfileFrameTypeKey.String("dotnet")
-	// [JVM]
-	//
-	// Stability: development
-	//
-	// [JVM]: https://wikipedia.org/wiki/Java_virtual_machine
-	ProfileFrameTypeJVM = ProfileFrameTypeKey.String("jvm")
-	// [Kernel]
-	//
-	// Stability: development
-	//
-	// [Kernel]: https://wikipedia.org/wiki/Kernel_(operating_system)
-	ProfileFrameTypeKernel = ProfileFrameTypeKey.String("kernel")
-	// Can be one of but not limited to [C], [C++], [Go] or [Rust]. If possible, a
-	// more precise value MUST be used.
-	//
-	// Stability: development
-	//
-	// [C]: https://wikipedia.org/wiki/C_(programming_language)
-	// [C++]: https://wikipedia.org/wiki/C%2B%2B
-	// [Go]: https://wikipedia.org/wiki/Go_(programming_language)
-	// [Rust]: https://wikipedia.org/wiki/Rust_(programming_language)
-	ProfileFrameTypeNative = ProfileFrameTypeKey.String("native")
-	// [Perl]
-	//
-	// Stability: development
-	//
-	// [Perl]: https://wikipedia.org/wiki/Perl
-	ProfileFrameTypePerl = ProfileFrameTypeKey.String("perl")
-	// [PHP]
-	//
-	// Stability: development
-	//
-	// [PHP]: https://wikipedia.org/wiki/PHP
-	ProfileFrameTypePHP = ProfileFrameTypeKey.String("php")
-	// [Python]
-	//
-	// Stability: development
-	//
-	// [Python]: https://wikipedia.org/wiki/Python_(programming_language)
-	ProfileFrameTypeCpython = ProfileFrameTypeKey.String("cpython")
-	// [Ruby]
-	//
-	// Stability: development
-	//
-	// [Ruby]: https://wikipedia.org/wiki/Ruby_(programming_language)
-	ProfileFrameTypeRuby = ProfileFrameTypeKey.String("ruby")
-	// [V8JS]
-	//
-	// Stability: development
-	//
-	// [V8JS]: https://wikipedia.org/wiki/V8_(JavaScript_engine)
-	ProfileFrameTypeV8JS = ProfileFrameTypeKey.String("v8js")
-	// [Erlang]
-	//
-	// Stability: development
-	//
-	// [Erlang]: https://en.wikipedia.org/wiki/BEAM_(Erlang_virtual_machine)
-	ProfileFrameTypeBeam = ProfileFrameTypeKey.String("beam")
-	// [Go],
-	//
-	// Stability: development
-	//
-	// [Go]: https://wikipedia.org/wiki/Go_(programming_language)
-	ProfileFrameTypeGo = ProfileFrameTypeKey.String("go")
-	// [Rust]
-	//
-	// Stability: development
-	//
-	// [Rust]: https://wikipedia.org/wiki/Rust_(programming_language)
-	ProfileFrameTypeRust = ProfileFrameTypeKey.String("rust")
-)
-
-// Namespace: rpc
-const (
-	// RPCMessageCompressedSizeKey is the attribute Key conforming to the
-	// "rpc.message.compressed_size" semantic conventions. It represents the
-	// compressed size of the message in bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	RPCMessageCompressedSizeKey = attribute.Key("rpc.message.compressed_size")
-
-	// RPCMessageIDKey is the attribute Key conforming to the "rpc.message.id"
-	// semantic conventions. It MUST be calculated as two different counters
-	// starting from `1` one for sent messages and one for received message..
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: This way we guarantee that the values will be consistent between
-	// different implementations.
-	RPCMessageIDKey = attribute.Key("rpc.message.id")
-
-	// RPCMessageTypeKey is the attribute Key conforming to the "rpc.message.type"
-	// semantic conventions. It represents the whether this is a received or sent
-	// message.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	RPCMessageTypeKey = attribute.Key("rpc.message.type")
-
-	// RPCMessageUncompressedSizeKey is the attribute Key conforming to the
-	// "rpc.message.uncompressed_size" semantic conventions. It represents the
-	// uncompressed size of the message in bytes.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	RPCMessageUncompressedSizeKey = attribute.Key("rpc.message.uncompressed_size")
-
-	// RPCMethodKey is the attribute Key conforming to the "rpc.method" semantic
-	// conventions. It represents the fully-qualified logical name of the method
-	// from the RPC interface perspective.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "com.example.ExampleService/exampleMethod", "EchoService/Echo",
-	// "_OTHER"
-	// Note: The method name MAY have unbounded cardinality in edge or error cases.
-	//
-	// Some RPC frameworks or libraries provide a fixed set of recognized methods
-	// for client stubs and server implementations. Instrumentations for such
-	// frameworks MUST set this attribute to the original method name only
-	// when the method is recognized by the framework or library.
-	//
-	// When the method is not recognized, for example, when the server receives
-	// a request for a method that is not predefined on the server, or when
-	// instrumentation is not able to reliably detect if the method is predefined,
-	// the attribute MUST be set to `_OTHER`. In such cases, tracing
-	// instrumentations MUST also set `rpc.method_original` attribute to
-	// the original method value.
-	//
-	// If the RPC instrumentation could end up converting valid RPC methods to
-	// `_OTHER`, then it SHOULD provide a way to configure the list of recognized
-	// RPC methods.
-	//
-	// The `rpc.method` can be different from the name of any implementing
-	// method/function.
-	// The `code.function.name` attribute may be used to record the fully-qualified
-	// method actually executing the call on the server side, or the
-	// RPC client stub method on the client side.
-	RPCMethodKey = attribute.Key("rpc.method")
-
-	// RPCMethodOriginalKey is the attribute Key conforming to the
-	// "rpc.method_original" semantic conventions. It represents the original name
-	// of the method used by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "com.myservice.EchoService/catchAll",
-	// "com.myservice.EchoService/unknownMethod", "InvalidMethod"
-	RPCMethodOriginalKey = attribute.Key("rpc.method_original")
-
-	// RPCResponseStatusCodeKey is the attribute Key conforming to the
-	// "rpc.response.status_code" semantic conventions. It represents the status
-	// code of the RPC returned by the RPC server or generated by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "OK", "DEADLINE_EXCEEDED", "-32602"
-	// Note: Usually it represents an error code, but may also represent partial
-	// success, warning, or differentiate between various types of successful
-	// outcomes.
-	// Semantic conventions for individual RPC frameworks SHOULD document what
-	// `rpc.response.status_code` means in the context of that system and which
-	// values are considered to represent errors.
-	RPCResponseStatusCodeKey = attribute.Key("rpc.response.status_code")
-
-	// RPCSystemNameKey is the attribute Key conforming to the "rpc.system.name"
-	// semantic conventions. It represents the Remote Procedure Call (RPC) system.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: The client and server RPC systems may differ for the same RPC
-	// interaction. For example, a client may use Apache Dubbo or Connect RPC to
-	// communicate with a server that uses gRPC since both protocols provide
-	// compatibility with gRPC.
-	RPCSystemNameKey = attribute.Key("rpc.system.name")
-)
-
-// RPCMessageCompressedSize returns an attribute KeyValue conforming to the
-// "rpc.message.compressed_size" semantic conventions. It represents the
-// compressed size of the message in bytes.
-func RPCMessageCompressedSize(val int) attribute.KeyValue {
-	return RPCMessageCompressedSizeKey.Int(val)
-}
-
-// RPCMessageID returns an attribute KeyValue conforming to the "rpc.message.id"
-// semantic conventions. It MUST be calculated as two different counters starting
-// from `1` one for sent messages and one for received message..
-func RPCMessageID(val int) attribute.KeyValue {
-	return RPCMessageIDKey.Int(val)
-}
-
-// RPCMessageUncompressedSize returns an attribute KeyValue conforming to the
-// "rpc.message.uncompressed_size" semantic conventions. It represents the
-// uncompressed size of the message in bytes.
-func RPCMessageUncompressedSize(val int) attribute.KeyValue {
-	return RPCMessageUncompressedSizeKey.Int(val)
-}
-
-// RPCMethod returns an attribute KeyValue conforming to the "rpc.method"
-// semantic conventions. It represents the fully-qualified logical name of the
-// method from the RPC interface perspective.
-func RPCMethod(val string) attribute.KeyValue {
-	return RPCMethodKey.String(val)
-}
-
-// RPCMethodOriginal returns an attribute KeyValue conforming to the
-// "rpc.method_original" semantic conventions. It represents the original name of
-// the method used by the client.
-func RPCMethodOriginal(val string) attribute.KeyValue {
-	return RPCMethodOriginalKey.String(val)
-}
-
-// RPCRequestMetadata returns an attribute KeyValue conforming to the
-// "rpc.request.metadata" semantic conventions. It represents the RPC request
-// metadata, `<key>` being the normalized RPC metadata key (lowercase), the value
-// being the metadata values.
-func RPCRequestMetadata(key string, val ...string) attribute.KeyValue {
-	return attribute.StringSlice("rpc.request.metadata."+key, val)
-}
-
-// RPCResponseMetadata returns an attribute KeyValue conforming to the
-// "rpc.response.metadata" semantic conventions. It represents the RPC response
-// metadata, `<key>` being the normalized RPC metadata key (lowercase), the value
-// being the metadata values.
-func RPCResponseMetadata(key string, val ...string) attribute.KeyValue {
-	return attribute.StringSlice("rpc.response.metadata."+key, val)
-}
-
-// RPCResponseStatusCode returns an attribute KeyValue conforming to the
-// "rpc.response.status_code" semantic conventions. It represents the status code
-// of the RPC returned by the RPC server or generated by the client.
-func RPCResponseStatusCode(val string) attribute.KeyValue {
-	return RPCResponseStatusCodeKey.String(val)
-}
-
-// Enum values for rpc.message.type
-var (
-	// sent
-	// Stability: development
-	RPCMessageTypeSent = RPCMessageTypeKey.String("SENT")
-	// received
-	// Stability: development
-	RPCMessageTypeReceived = RPCMessageTypeKey.String("RECEIVED")
-)
-
-// Enum values for rpc.system.name
-var (
-	// [gRPC]
-	// Stability: development
-	//
-	// [gRPC]: https://grpc.io/
-	RPCSystemNameGRPC = RPCSystemNameKey.String("grpc")
-	// [Apache Dubbo]
-	// Stability: development
-	//
-	// [Apache Dubbo]: https://dubbo.apache.org/
-	RPCSystemNameDubbo = RPCSystemNameKey.String("dubbo")
-	// [Connect RPC]
-	// Stability: development
-	//
-	// [Connect RPC]: https://connectrpc.com/
-	RPCSystemNameConnectrpc = RPCSystemNameKey.String("connectrpc")
-	// [JSON-RPC]
-	// Stability: development
-	//
-	// [JSON-RPC]: https://www.jsonrpc.org/
-	RPCSystemNameJSONRPC = RPCSystemNameKey.String("jsonrpc")
-)
-
-// Namespace: security_rule
-const (
-	// SecurityRuleCategoryKey is the attribute Key conforming to the
-	// "security_rule.category" semantic conventions. It represents a categorization
-	// value keyword used by the entity using the rule for detection of this event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Attempted Information Leak"
-	SecurityRuleCategoryKey = attribute.Key("security_rule.category")
-
-	// SecurityRuleDescriptionKey is the attribute Key conforming to the
-	// "security_rule.description" semantic conventions. It represents the
-	// description of the rule generating the event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Block requests to public DNS over HTTPS / TLS protocols"
-	SecurityRuleDescriptionKey = attribute.Key("security_rule.description")
-
-	// SecurityRuleLicenseKey is the attribute Key conforming to the
-	// "security_rule.license" semantic conventions. It represents the name of the
-	// license under which the rule used to generate this event is made available.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Apache 2.0"
-	SecurityRuleLicenseKey = attribute.Key("security_rule.license")
-
-	// SecurityRuleNameKey is the attribute Key conforming to the
-	// "security_rule.name" semantic conventions. It represents the name of the rule
-	// or signature generating the event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "BLOCK_DNS_over_TLS"
-	SecurityRuleNameKey = attribute.Key("security_rule.name")
-
-	// SecurityRuleReferenceKey is the attribute Key conforming to the
-	// "security_rule.reference" semantic conventions. It represents the reference
-	// URL to additional information about the rule used to generate this event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "https://en.wikipedia.org/wiki/DNS_over_TLS"
-	// Note: The URL can point to the vendor’s documentation about the rule. If
-	// that’s not available, it can also be a link to a more general page
-	// describing this type of alert.
-	SecurityRuleReferenceKey = attribute.Key("security_rule.reference")
-
-	// SecurityRuleRulesetNameKey is the attribute Key conforming to the
-	// "security_rule.ruleset.name" semantic conventions. It represents the name of
-	// the ruleset, policy, group, or parent category in which the rule used to
-	// generate this event is a member.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Standard_Protocol_Filters"
-	SecurityRuleRulesetNameKey = attribute.Key("security_rule.ruleset.name")
-
-	// SecurityRuleUUIDKey is the attribute Key conforming to the
-	// "security_rule.uuid" semantic conventions. It represents a rule ID that is
-	// unique within the scope of a set or group of agents, observers, or other
-	// entities using the rule for detection of this event.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "550e8400-e29b-41d4-a716-446655440000", "1100110011"
-	SecurityRuleUUIDKey = attribute.Key("security_rule.uuid")
-
-	// SecurityRuleVersionKey is the attribute Key conforming to the
-	// "security_rule.version" semantic conventions. It represents the version /
-	// revision of the rule being used for analysis.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1.0.0"
-	SecurityRuleVersionKey = attribute.Key("security_rule.version")
-)
-
-// SecurityRuleCategory returns an attribute KeyValue conforming to the
-// "security_rule.category" semantic conventions. It represents a categorization
-// value keyword used by the entity using the rule for detection of this event.
-func SecurityRuleCategory(val string) attribute.KeyValue {
-	return SecurityRuleCategoryKey.String(val)
-}
-
-// SecurityRuleDescription returns an attribute KeyValue conforming to the
-// "security_rule.description" semantic conventions. It represents the
-// description of the rule generating the event.
-func SecurityRuleDescription(val string) attribute.KeyValue {
-	return SecurityRuleDescriptionKey.String(val)
-}
-
-// SecurityRuleLicense returns an attribute KeyValue conforming to the
-// "security_rule.license" semantic conventions. It represents the name of the
-// license under which the rule used to generate this event is made available.
-func SecurityRuleLicense(val string) attribute.KeyValue {
-	return SecurityRuleLicenseKey.String(val)
-}
-
-// SecurityRuleName returns an attribute KeyValue conforming to the
-// "security_rule.name" semantic conventions. It represents the name of the rule
-// or signature generating the event.
-func SecurityRuleName(val string) attribute.KeyValue {
-	return SecurityRuleNameKey.String(val)
-}
-
-// SecurityRuleReference returns an attribute KeyValue conforming to the
-// "security_rule.reference" semantic conventions. It represents the reference
-// URL to additional information about the rule used to generate this event.
-func SecurityRuleReference(val string) attribute.KeyValue {
-	return SecurityRuleReferenceKey.String(val)
-}
-
-// SecurityRuleRulesetName returns an attribute KeyValue conforming to the
-// "security_rule.ruleset.name" semantic conventions. It represents the name of
-// the ruleset, policy, group, or parent category in which the rule used to
-// generate this event is a member.
-func SecurityRuleRulesetName(val string) attribute.KeyValue {
-	return SecurityRuleRulesetNameKey.String(val)
-}
-
-// SecurityRuleUUID returns an attribute KeyValue conforming to the
-// "security_rule.uuid" semantic conventions. It represents a rule ID that is
-// unique within the scope of a set or group of agents, observers, or other
-// entities using the rule for detection of this event.
-func SecurityRuleUUID(val string) attribute.KeyValue {
-	return SecurityRuleUUIDKey.String(val)
-}
-
-// SecurityRuleVersion returns an attribute KeyValue conforming to the
-// "security_rule.version" semantic conventions. It represents the version /
-// revision of the rule being used for analysis.
-func SecurityRuleVersion(val string) attribute.KeyValue {
-	return SecurityRuleVersionKey.String(val)
-}
-
-// Namespace: server
-const (
-	// ServerAddressKey is the attribute Key conforming to the "server.address"
-	// semantic conventions. It represents the server domain name if available
-	// without reverse DNS lookup; otherwise, IP address or Unix domain socket name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "example.com", "10.1.2.80", "/tmp/my.sock"
-	// Note: When observed from the client side, and when communicating through an
-	// intermediary, `server.address` SHOULD represent the server address behind any
-	// intermediaries, for example proxies, if it's available.
-	ServerAddressKey = attribute.Key("server.address")
-
-	// ServerPortKey is the attribute Key conforming to the "server.port" semantic
-	// conventions. It represents the server port number.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: 80, 8080, 443
-	// Note: When observed from the client side, and when communicating through an
-	// intermediary, `server.port` SHOULD represent the server port behind any
-	// intermediaries, for example proxies, if it's available.
-	ServerPortKey = attribute.Key("server.port")
-)
-
-// ServerAddress returns an attribute KeyValue conforming to the "server.address"
-// semantic conventions. It represents the server domain name if available
-// without reverse DNS lookup; otherwise, IP address or Unix domain socket name.
-func ServerAddress(val string) attribute.KeyValue {
-	return ServerAddressKey.String(val)
-}
-
-// ServerPort returns an attribute KeyValue conforming to the "server.port"
-// semantic conventions. It represents the server port number.
-func ServerPort(val int) attribute.KeyValue {
-	return ServerPortKey.Int(val)
-}
-
-// Namespace: service
-const (
-	// ServiceInstanceIDKey is the attribute Key conforming to the
-	// "service.instance.id" semantic conventions. It represents the string ID of
-	// the service instance.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "627cc493-f310-47de-96bd-71410b7dec09"
-	// Note: MUST be unique for each instance of the same
-	// `service.namespace,service.name` pair (in other words
-	// `service.namespace,service.name,service.instance.id` triplet MUST be globally
-	// unique). The ID helps to
-	// distinguish instances of the same service that exist at the same time (e.g.
-	// instances of a horizontally scaled
-	// service).
-	//
-	// Implementations, such as SDKs, are recommended to generate a random Version 1
-	// or Version 4 [RFC
-	// 4122] UUID, but are free to use an inherent unique ID as
-	// the source of
-	// this value if stability is desirable. In that case, the ID SHOULD be used as
-	// source of a UUID Version 5 and
-	// SHOULD use the following UUID as the namespace:
-	// `4d63009a-8d0f-11ee-aad7-4c796ed8e320`.
-	//
-	// UUIDs are typically recommended, as only an opaque value for the purposes of
-	// identifying a service instance is
-	// needed. Similar to what can be seen in the man page for the
-	// [`/etc/machine-id`] file, the underlying
-	// data, such as pod name and namespace should be treated as confidential, being
-	// the user's choice to expose it
-	// or not via another resource attribute.
-	//
-	// For applications running behind an application server (like unicorn), we do
-	// not recommend using one identifier
-	// for all processes participating in the application. Instead, it's recommended
-	// each division (e.g. a worker
-	// thread in unicorn) to have its own instance.id.
-	//
-	// It's not recommended for a Collector to set `service.instance.id` if it can't
-	// unambiguously determine the
-	// service instance that is generating that telemetry. For instance, creating an
-	// UUID based on `pod.name` will
-	// likely be wrong, as the Collector might not know from which container within
-	// that pod the telemetry originated.
-	// However, Collectors can set the `service.instance.id` if they can
-	// unambiguously determine the service instance
-	// for that telemetry. This is typically the case for scraping receivers, as
-	// they know the target address and
-	// port.
-	//
-	// [RFC
-	// 4122]: https://www.ietf.org/rfc/rfc4122.txt
-	// [`/etc/machine-id`]: https://www.freedesktop.org/software/systemd/man/latest/machine-id.html
-	ServiceInstanceIDKey = attribute.Key("service.instance.id")
-
-	// ServiceNameKey is the attribute Key conforming to the "service.name" semantic
-	// conventions. It represents the logical name of the service.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "shoppingcart"
-	// Note: MUST be the same for all instances of horizontally scaled services. If
-	// the value was not specified, SDKs MUST fallback to `unknown_service:`
-	// concatenated with [`process.executable.name`], e.g. `unknown_service:bash`.
-	// If `process.executable.name` is not available, the value MUST be set to
-	// `unknown_service`.
-	//
-	// [`process.executable.name`]: process.md
-	ServiceNameKey = attribute.Key("service.name")
-
-	// ServiceNamespaceKey is the attribute Key conforming to the
-	// "service.namespace" semantic conventions. It represents a namespace for
-	// `service.name`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Shop"
-	// Note: A string value having a meaning that helps to distinguish a group of
-	// services, for example the team name that owns a group of services.
-	// `service.name` is expected to be unique within the same namespace. If
-	// `service.namespace` is not specified in the Resource then `service.name` is
-	// expected to be unique for all services that have no explicit namespace
-	// defined (so the empty/unspecified namespace is simply one more valid
-	// namespace). Zero-length namespace string is assumed equal to unspecified
-	// namespace.
-	ServiceNamespaceKey = attribute.Key("service.namespace")
-
-	// ServicePeerNameKey is the attribute Key conforming to the "service.peer.name"
-	// semantic conventions. It represents the logical name of the service on the
-	// other side of the connection. SHOULD be equal to the actual [`service.name`]
-	// resource attribute of the remote service if any.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "shoppingcart"
-	//
-	// [`service.name`]: /docs/resource/README.md#service
-	ServicePeerNameKey = attribute.Key("service.peer.name")
-
-	// ServicePeerNamespaceKey is the attribute Key conforming to the
-	// "service.peer.namespace" semantic conventions. It represents the logical
-	// namespace of the service on the other side of the connection. SHOULD be equal
-	// to the actual [`service.namespace`] resource attribute of the remote service
-	// if any.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Shop"
-	//
-	// [`service.namespace`]: /docs/resource/README.md#service
-	ServicePeerNamespaceKey = attribute.Key("service.peer.namespace")
-
-	// ServiceVersionKey is the attribute Key conforming to the "service.version"
-	// semantic conventions. It represents the version string of the service
-	// component. The format is not defined by these conventions.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "2.0.0", "a01dbef8a"
-	ServiceVersionKey = attribute.Key("service.version")
-)
-
-// ServiceInstanceID returns an attribute KeyValue conforming to the
-// "service.instance.id" semantic conventions. It represents the string ID of the
-// service instance.
-func ServiceInstanceID(val string) attribute.KeyValue {
-	return ServiceInstanceIDKey.String(val)
-}
-
-// ServiceName returns an attribute KeyValue conforming to the "service.name"
-// semantic conventions. It represents the logical name of the service.
-func ServiceName(val string) attribute.KeyValue {
-	return ServiceNameKey.String(val)
-}
-
-// ServiceNamespace returns an attribute KeyValue conforming to the
-// "service.namespace" semantic conventions. It represents a namespace for
-// `service.name`.
-func ServiceNamespace(val string) attribute.KeyValue {
-	return ServiceNamespaceKey.String(val)
-}
-
-// ServicePeerName returns an attribute KeyValue conforming to the
-// "service.peer.name" semantic conventions. It represents the logical name of
-// the service on the other side of the connection. SHOULD be equal to the actual
-// [`service.name`] resource attribute of the remote service if any.
-//
-// [`service.name`]: /docs/resource/README.md#service
-func ServicePeerName(val string) attribute.KeyValue {
-	return ServicePeerNameKey.String(val)
-}
-
-// ServicePeerNamespace returns an attribute KeyValue conforming to the
-// "service.peer.namespace" semantic conventions. It represents the logical
-// namespace of the service on the other side of the connection. SHOULD be equal
-// to the actual [`service.namespace`] resource attribute of the remote service
-// if any.
-//
-// [`service.namespace`]: /docs/resource/README.md#service
-func ServicePeerNamespace(val string) attribute.KeyValue {
-	return ServicePeerNamespaceKey.String(val)
-}
-
-// ServiceVersion returns an attribute KeyValue conforming to the
-// "service.version" semantic conventions. It represents the version string of
-// the service component. The format is not defined by these conventions.
-func ServiceVersion(val string) attribute.KeyValue {
-	return ServiceVersionKey.String(val)
-}
-
-// Namespace: session
-const (
-	// SessionIDKey is the attribute Key conforming to the "session.id" semantic
-	// conventions. It represents a unique id to identify a session.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 00112233-4455-6677-8899-aabbccddeeff
-	SessionIDKey = attribute.Key("session.id")
-
-	// SessionPreviousIDKey is the attribute Key conforming to the
-	// "session.previous_id" semantic conventions. It represents the previous
-	// `session.id` for this user, when known.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 00112233-4455-6677-8899-aabbccddeeff
-	SessionPreviousIDKey = attribute.Key("session.previous_id")
-)
-
-// SessionID returns an attribute KeyValue conforming to the "session.id"
-// semantic conventions. It represents a unique id to identify a session.
-func SessionID(val string) attribute.KeyValue {
-	return SessionIDKey.String(val)
-}
-
-// SessionPreviousID returns an attribute KeyValue conforming to the
-// "session.previous_id" semantic conventions. It represents the previous
-// `session.id` for this user, when known.
-func SessionPreviousID(val string) attribute.KeyValue {
-	return SessionPreviousIDKey.String(val)
-}
-
-// Namespace: signalr
-const (
-	// SignalRConnectionStatusKey is the attribute Key conforming to the
-	// "signalr.connection.status" semantic conventions. It represents the signalR
-	// HTTP connection closure status.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "app_shutdown", "timeout"
-	SignalRConnectionStatusKey = attribute.Key("signalr.connection.status")
-
-	// SignalRTransportKey is the attribute Key conforming to the
-	// "signalr.transport" semantic conventions. It represents the
-	// [SignalR transport type].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "web_sockets", "long_polling"
-	//
-	// [SignalR transport type]: https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md
-	SignalRTransportKey = attribute.Key("signalr.transport")
-)
-
-// Enum values for signalr.connection.status
-var (
-	// The connection was closed normally.
-	// Stability: stable
-	SignalRConnectionStatusNormalClosure = SignalRConnectionStatusKey.String("normal_closure")
-	// The connection was closed due to a timeout.
-	// Stability: stable
-	SignalRConnectionStatusTimeout = SignalRConnectionStatusKey.String("timeout")
-	// The connection was closed because the app is shutting down.
-	// Stability: stable
-	SignalRConnectionStatusAppShutdown = SignalRConnectionStatusKey.String("app_shutdown")
-)
-
-// Enum values for signalr.transport
-var (
-	// ServerSentEvents protocol
-	// Stability: stable
-	SignalRTransportServerSentEvents = SignalRTransportKey.String("server_sent_events")
-	// LongPolling protocol
-	// Stability: stable
-	SignalRTransportLongPolling = SignalRTransportKey.String("long_polling")
-	// WebSockets protocol
-	// Stability: stable
-	SignalRTransportWebSockets = SignalRTransportKey.String("web_sockets")
-)
-
-// Namespace: source
-const (
-	// SourceAddressKey is the attribute Key conforming to the "source.address"
-	// semantic conventions. It represents the source address - domain name if
-	// available without reverse DNS lookup; otherwise, IP address or Unix domain
-	// socket name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "source.example.com", "10.1.2.80", "/tmp/my.sock"
-	// Note: When observed from the destination side, and when communicating through
-	// an intermediary, `source.address` SHOULD represent the source address behind
-	// any intermediaries, for example proxies, if it's available.
-	SourceAddressKey = attribute.Key("source.address")
-
-	// SourcePortKey is the attribute Key conforming to the "source.port" semantic
-	// conventions. It represents the source port number.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 3389, 2888
-	SourcePortKey = attribute.Key("source.port")
-)
-
-// SourceAddress returns an attribute KeyValue conforming to the "source.address"
-// semantic conventions. It represents the source address - domain name if
-// available without reverse DNS lookup; otherwise, IP address or Unix domain
-// socket name.
-func SourceAddress(val string) attribute.KeyValue {
-	return SourceAddressKey.String(val)
-}
-
-// SourcePort returns an attribute KeyValue conforming to the "source.port"
-// semantic conventions. It represents the source port number.
-func SourcePort(val int) attribute.KeyValue {
-	return SourcePortKey.Int(val)
-}
-
-// Namespace: system
-const (
-	// SystemDeviceKey is the attribute Key conforming to the "system.device"
-	// semantic conventions. It represents the device identifier.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "(identifier)"
-	SystemDeviceKey = attribute.Key("system.device")
-
-	// SystemFilesystemModeKey is the attribute Key conforming to the
-	// "system.filesystem.mode" semantic conventions. It represents the filesystem
-	// mode.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "rw, ro"
-	SystemFilesystemModeKey = attribute.Key("system.filesystem.mode")
-
-	// SystemFilesystemMountpointKey is the attribute Key conforming to the
-	// "system.filesystem.mountpoint" semantic conventions. It represents the
-	// filesystem mount path.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/mnt/data"
-	SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint")
-
-	// SystemFilesystemStateKey is the attribute Key conforming to the
-	// "system.filesystem.state" semantic conventions. It represents the filesystem
-	// state.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "used"
-	SystemFilesystemStateKey = attribute.Key("system.filesystem.state")
-
-	// SystemFilesystemTypeKey is the attribute Key conforming to the
-	// "system.filesystem.type" semantic conventions. It represents the filesystem
-	// type.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "ext4"
-	SystemFilesystemTypeKey = attribute.Key("system.filesystem.type")
-
-	// SystemMemoryLinuxSlabStateKey is the attribute Key conforming to the
-	// "system.memory.linux.slab.state" semantic conventions. It represents the
-	// Linux Slab memory state.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "reclaimable", "unreclaimable"
-	SystemMemoryLinuxSlabStateKey = attribute.Key("system.memory.linux.slab.state")
-
-	// SystemMemoryStateKey is the attribute Key conforming to the
-	// "system.memory.state" semantic conventions. It represents the memory state.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "free", "cached"
-	SystemMemoryStateKey = attribute.Key("system.memory.state")
-
-	// SystemPagingDirectionKey is the attribute Key conforming to the
-	// "system.paging.direction" semantic conventions. It represents the paging
-	// access direction.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "in"
-	SystemPagingDirectionKey = attribute.Key("system.paging.direction")
-
-	// SystemPagingFaultTypeKey is the attribute Key conforming to the
-	// "system.paging.fault.type" semantic conventions. It represents the paging
-	// fault type.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "minor"
-	SystemPagingFaultTypeKey = attribute.Key("system.paging.fault.type")
-
-	// SystemPagingStateKey is the attribute Key conforming to the
-	// "system.paging.state" semantic conventions. It represents the memory paging
-	// state.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "free"
-	SystemPagingStateKey = attribute.Key("system.paging.state")
-)
-
-// SystemDevice returns an attribute KeyValue conforming to the "system.device"
-// semantic conventions. It represents the device identifier.
-func SystemDevice(val string) attribute.KeyValue {
-	return SystemDeviceKey.String(val)
-}
-
-// SystemFilesystemMode returns an attribute KeyValue conforming to the
-// "system.filesystem.mode" semantic conventions. It represents the filesystem
-// mode.
-func SystemFilesystemMode(val string) attribute.KeyValue {
-	return SystemFilesystemModeKey.String(val)
-}
-
-// SystemFilesystemMountpoint returns an attribute KeyValue conforming to the
-// "system.filesystem.mountpoint" semantic conventions. It represents the
-// filesystem mount path.
-func SystemFilesystemMountpoint(val string) attribute.KeyValue {
-	return SystemFilesystemMountpointKey.String(val)
-}
-
-// Enum values for system.filesystem.state
-var (
-	// used
-	// Stability: development
-	SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used")
-	// free
-	// Stability: development
-	SystemFilesystemStateFree = SystemFilesystemStateKey.String("free")
-	// reserved
-	// Stability: development
-	SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved")
-)
-
-// Enum values for system.filesystem.type
-var (
-	// fat32
-	// Stability: development
-	SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32")
-	// exfat
-	// Stability: development
-	SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat")
-	// ntfs
-	// Stability: development
-	SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs")
-	// refs
-	// Stability: development
-	SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs")
-	// hfsplus
-	// Stability: development
-	SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus")
-	// ext4
-	// Stability: development
-	SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4")
-)
-
-// Enum values for system.memory.linux.slab.state
-var (
-	// reclaimable
-	// Stability: development
-	SystemMemoryLinuxSlabStateReclaimable = SystemMemoryLinuxSlabStateKey.String("reclaimable")
-	// unreclaimable
-	// Stability: development
-	SystemMemoryLinuxSlabStateUnreclaimable = SystemMemoryLinuxSlabStateKey.String("unreclaimable")
-)
-
-// Enum values for system.memory.state
-var (
-	// Actual used virtual memory in bytes.
-	// Stability: development
-	SystemMemoryStateUsed = SystemMemoryStateKey.String("used")
-	// free
-	// Stability: development
-	SystemMemoryStateFree = SystemMemoryStateKey.String("free")
-	// buffers
-	// Stability: development
-	SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers")
-	// cached
-	// Stability: development
-	SystemMemoryStateCached = SystemMemoryStateKey.String("cached")
-)
-
-// Enum values for system.paging.direction
-var (
-	// in
-	// Stability: development
-	SystemPagingDirectionIn = SystemPagingDirectionKey.String("in")
-	// out
-	// Stability: development
-	SystemPagingDirectionOut = SystemPagingDirectionKey.String("out")
-)
-
-// Enum values for system.paging.fault.type
-var (
-	// major
-	// Stability: development
-	SystemPagingFaultTypeMajor = SystemPagingFaultTypeKey.String("major")
-	// minor
-	// Stability: development
-	SystemPagingFaultTypeMinor = SystemPagingFaultTypeKey.String("minor")
-)
-
-// Enum values for system.paging.state
-var (
-	// used
-	// Stability: development
-	SystemPagingStateUsed = SystemPagingStateKey.String("used")
-	// free
-	// Stability: development
-	SystemPagingStateFree = SystemPagingStateKey.String("free")
-)
-
-// Namespace: telemetry
-const (
-	// TelemetryDistroNameKey is the attribute Key conforming to the
-	// "telemetry.distro.name" semantic conventions. It represents the name of the
-	// auto instrumentation agent or distribution, if used.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "parts-unlimited-java"
-	// Note: Official auto instrumentation agents and distributions SHOULD set the
-	// `telemetry.distro.name` attribute to
-	// a string starting with `opentelemetry-`, e.g.
-	// `opentelemetry-java-instrumentation`.
-	TelemetryDistroNameKey = attribute.Key("telemetry.distro.name")
-
-	// TelemetryDistroVersionKey is the attribute Key conforming to the
-	// "telemetry.distro.version" semantic conventions. It represents the version
-	// string of the auto instrumentation agent or distribution, if used.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1.2.3"
-	TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version")
-
-	// TelemetrySDKLanguageKey is the attribute Key conforming to the
-	// "telemetry.sdk.language" semantic conventions. It represents the language of
-	// the telemetry SDK.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples:
-	TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language")
-
-	// TelemetrySDKNameKey is the attribute Key conforming to the
-	// "telemetry.sdk.name" semantic conventions. It represents the name of the
-	// telemetry SDK as defined above.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "opentelemetry"
-	// Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute to
-	// `opentelemetry`.
-	// If another SDK, like a fork or a vendor-provided implementation, is used,
-	// this SDK MUST set the
-	// `telemetry.sdk.name` attribute to the fully-qualified class or module name of
-	// this SDK's main entry point
-	// or another suitable identifier depending on the language.
-	// The identifier `opentelemetry` is reserved and MUST NOT be used in this case.
-	// All custom identifiers SHOULD be stable across different versions of an
-	// implementation.
-	TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name")
-
-	// TelemetrySDKVersionKey is the attribute Key conforming to the
-	// "telemetry.sdk.version" semantic conventions. It represents the version
-	// string of the telemetry SDK.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "1.2.3"
-	TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version")
-)
-
-// TelemetryDistroName returns an attribute KeyValue conforming to the
-// "telemetry.distro.name" semantic conventions. It represents the name of the
-// auto instrumentation agent or distribution, if used.
-func TelemetryDistroName(val string) attribute.KeyValue {
-	return TelemetryDistroNameKey.String(val)
-}
-
-// TelemetryDistroVersion returns an attribute KeyValue conforming to the
-// "telemetry.distro.version" semantic conventions. It represents the version
-// string of the auto instrumentation agent or distribution, if used.
-func TelemetryDistroVersion(val string) attribute.KeyValue {
-	return TelemetryDistroVersionKey.String(val)
-}
-
-// TelemetrySDKName returns an attribute KeyValue conforming to the
-// "telemetry.sdk.name" semantic conventions. It represents the name of the
-// telemetry SDK as defined above.
-func TelemetrySDKName(val string) attribute.KeyValue {
-	return TelemetrySDKNameKey.String(val)
-}
-
-// TelemetrySDKVersion returns an attribute KeyValue conforming to the
-// "telemetry.sdk.version" semantic conventions. It represents the version string
-// of the telemetry SDK.
-func TelemetrySDKVersion(val string) attribute.KeyValue {
-	return TelemetrySDKVersionKey.String(val)
-}
-
-// Enum values for telemetry.sdk.language
-var (
-	// cpp
-	// Stability: stable
-	TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp")
-	// dotnet
-	// Stability: stable
-	TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet")
-	// erlang
-	// Stability: stable
-	TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang")
-	// go
-	// Stability: stable
-	TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go")
-	// java
-	// Stability: stable
-	TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java")
-	// nodejs
-	// Stability: stable
-	TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs")
-	// php
-	// Stability: stable
-	TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php")
-	// python
-	// Stability: stable
-	TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python")
-	// ruby
-	// Stability: stable
-	TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby")
-	// rust
-	// Stability: stable
-	TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust")
-	// swift
-	// Stability: stable
-	TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift")
-	// webjs
-	// Stability: stable
-	TelemetrySDKLanguageWebJS = TelemetrySDKLanguageKey.String("webjs")
-)
-
-// Namespace: test
-const (
-	// TestCaseNameKey is the attribute Key conforming to the "test.case.name"
-	// semantic conventions. It represents the fully qualified human readable name
-	// of the [test case].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "org.example.TestCase1.test1", "example/tests/TestCase1.test1",
-	// "ExampleTestCase1_test1"
-	//
-	// [test case]: https://wikipedia.org/wiki/Test_case
-	TestCaseNameKey = attribute.Key("test.case.name")
-
-	// TestCaseResultStatusKey is the attribute Key conforming to the
-	// "test.case.result.status" semantic conventions. It represents the status of
-	// the actual test case result from test execution.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "pass", "fail"
-	TestCaseResultStatusKey = attribute.Key("test.case.result.status")
-
-	// TestSuiteNameKey is the attribute Key conforming to the "test.suite.name"
-	// semantic conventions. It represents the human readable name of a [test suite]
-	// .
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "TestSuite1"
-	//
-	// [test suite]: https://wikipedia.org/wiki/Test_suite
-	TestSuiteNameKey = attribute.Key("test.suite.name")
-
-	// TestSuiteRunStatusKey is the attribute Key conforming to the
-	// "test.suite.run.status" semantic conventions. It represents the status of the
-	// test suite run.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "success", "failure", "skipped", "aborted", "timed_out",
-	// "in_progress"
-	TestSuiteRunStatusKey = attribute.Key("test.suite.run.status")
-)
-
-// TestCaseName returns an attribute KeyValue conforming to the "test.case.name"
-// semantic conventions. It represents the fully qualified human readable name of
-// the [test case].
-//
-// [test case]: https://wikipedia.org/wiki/Test_case
-func TestCaseName(val string) attribute.KeyValue {
-	return TestCaseNameKey.String(val)
-}
-
-// TestSuiteName returns an attribute KeyValue conforming to the
-// "test.suite.name" semantic conventions. It represents the human readable name
-// of a [test suite].
-//
-// [test suite]: https://wikipedia.org/wiki/Test_suite
-func TestSuiteName(val string) attribute.KeyValue {
-	return TestSuiteNameKey.String(val)
-}
-
-// Enum values for test.case.result.status
-var (
-	// pass
-	// Stability: development
-	TestCaseResultStatusPass = TestCaseResultStatusKey.String("pass")
-	// fail
-	// Stability: development
-	TestCaseResultStatusFail = TestCaseResultStatusKey.String("fail")
-)
-
-// Enum values for test.suite.run.status
-var (
-	// success
-	// Stability: development
-	TestSuiteRunStatusSuccess = TestSuiteRunStatusKey.String("success")
-	// failure
-	// Stability: development
-	TestSuiteRunStatusFailure = TestSuiteRunStatusKey.String("failure")
-	// skipped
-	// Stability: development
-	TestSuiteRunStatusSkipped = TestSuiteRunStatusKey.String("skipped")
-	// aborted
-	// Stability: development
-	TestSuiteRunStatusAborted = TestSuiteRunStatusKey.String("aborted")
-	// timed_out
-	// Stability: development
-	TestSuiteRunStatusTimedOut = TestSuiteRunStatusKey.String("timed_out")
-	// in_progress
-	// Stability: development
-	TestSuiteRunStatusInProgress = TestSuiteRunStatusKey.String("in_progress")
-)
-
-// Namespace: thread
-const (
-	// ThreadIDKey is the attribute Key conforming to the "thread.id" semantic
-	// conventions. It represents the current "managed" thread ID (as opposed to OS
-	// thread ID).
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Note:
-	// Examples of where the value can be extracted from:
-	//
-	// | Language or platform | Source |
-	// | --- | --- |
-	// | JVM | `Thread.currentThread().threadId()` |
-	// | .NET | `Thread.CurrentThread.ManagedThreadId` |
-	// | Python | `threading.current_thread().ident` |
-	// | Ruby | `Thread.current.object_id` |
-	// | C++ | `std::this_thread::get_id()` |
-	// | Erlang | `erlang:self()` |
-	ThreadIDKey = attribute.Key("thread.id")
-
-	// ThreadNameKey is the attribute Key conforming to the "thread.name" semantic
-	// conventions. It represents the current thread name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: main
-	// Note:
-	// Examples of where the value can be extracted from:
-	//
-	// | Language or platform | Source |
-	// | --- | --- |
-	// | JVM | `Thread.currentThread().getName()` |
-	// | .NET | `Thread.CurrentThread.Name` |
-	// | Python | `threading.current_thread().name` |
-	// | Ruby | `Thread.current.name` |
-	// | Erlang | `erlang:process_info(self(), registered_name)` |
-	ThreadNameKey = attribute.Key("thread.name")
-)
-
-// ThreadID returns an attribute KeyValue conforming to the "thread.id" semantic
-// conventions. It represents the current "managed" thread ID (as opposed to OS
-// thread ID).
-func ThreadID(val int) attribute.KeyValue {
-	return ThreadIDKey.Int(val)
-}
-
-// ThreadName returns an attribute KeyValue conforming to the "thread.name"
-// semantic conventions. It represents the current thread name.
-func ThreadName(val string) attribute.KeyValue {
-	return ThreadNameKey.String(val)
-}
-
-// Namespace: tls
-const (
-	// TLSCipherKey is the attribute Key conforming to the "tls.cipher" semantic
-	// conventions. It represents the string indicating the [cipher] used during the
-	// current connection.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "TLS_RSA_WITH_3DES_EDE_CBC_SHA",
-	// "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256"
-	// Note: The values allowed for `tls.cipher` MUST be one of the `Descriptions`
-	// of the [registered TLS Cipher Suits].
-	//
-	// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5
-	// [registered TLS Cipher Suits]: https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4
-	TLSCipherKey = attribute.Key("tls.cipher")
-
-	// TLSClientCertificateKey is the attribute Key conforming to the
-	// "tls.client.certificate" semantic conventions. It represents the PEM-encoded
-	// stand-alone certificate offered by the client. This is usually
-	// mutually-exclusive of `client.certificate_chain` since this value also exists
-	// in that list.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "MII..."
-	TLSClientCertificateKey = attribute.Key("tls.client.certificate")
-
-	// TLSClientCertificateChainKey is the attribute Key conforming to the
-	// "tls.client.certificate_chain" semantic conventions. It represents the array
-	// of PEM-encoded certificates that make up the certificate chain offered by the
-	// client. This is usually mutually-exclusive of `client.certificate` since that
-	// value should be the first certificate in the chain.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "MII...", "MI..."
-	TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain")
-
-	// TLSClientHashMd5Key is the attribute Key conforming to the
-	// "tls.client.hash.md5" semantic conventions. It represents the certificate
-	// fingerprint using the MD5 digest of DER-encoded version of certificate
-	// offered by the client. For consistency with other hash values, this value
-	// should be formatted as an uppercase hash.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC"
-	TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5")
-
-	// TLSClientHashSha1Key is the attribute Key conforming to the
-	// "tls.client.hash.sha1" semantic conventions. It represents the certificate
-	// fingerprint using the SHA1 digest of DER-encoded version of certificate
-	// offered by the client. For consistency with other hash values, this value
-	// should be formatted as an uppercase hash.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A"
-	TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1")
-
-	// TLSClientHashSha256Key is the attribute Key conforming to the
-	// "tls.client.hash.sha256" semantic conventions. It represents the certificate
-	// fingerprint using the SHA256 digest of DER-encoded version of certificate
-	// offered by the client. For consistency with other hash values, this value
-	// should be formatted as an uppercase hash.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0"
-	TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256")
-
-	// TLSClientIssuerKey is the attribute Key conforming to the "tls.client.issuer"
-	// semantic conventions. It represents the distinguished name of [subject] of
-	// the issuer of the x.509 certificate presented by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com"
-	//
-	// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
-	TLSClientIssuerKey = attribute.Key("tls.client.issuer")
-
-	// TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3"
-	// semantic conventions. It represents a hash that identifies clients based on
-	// how they perform an SSL/TLS handshake.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "d4e5b18d6b55c71272893221c96ba240"
-	TLSClientJa3Key = attribute.Key("tls.client.ja3")
-
-	// TLSClientNotAfterKey is the attribute Key conforming to the
-	// "tls.client.not_after" semantic conventions. It represents the date/Time
-	// indicating when client certificate is no longer considered valid.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021-01-01T00:00:00.000Z"
-	TLSClientNotAfterKey = attribute.Key("tls.client.not_after")
-
-	// TLSClientNotBeforeKey is the attribute Key conforming to the
-	// "tls.client.not_before" semantic conventions. It represents the date/Time
-	// indicating when client certificate is first considered valid.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1970-01-01T00:00:00.000Z"
-	TLSClientNotBeforeKey = attribute.Key("tls.client.not_before")
-
-	// TLSClientSubjectKey is the attribute Key conforming to the
-	// "tls.client.subject" semantic conventions. It represents the distinguished
-	// name of subject of the x.509 certificate presented by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CN=myclient, OU=Documentation Team, DC=example, DC=com"
-	TLSClientSubjectKey = attribute.Key("tls.client.subject")
-
-	// TLSClientSupportedCiphersKey is the attribute Key conforming to the
-	// "tls.client.supported_ciphers" semantic conventions. It represents the array
-	// of ciphers offered by the client during the client hello.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384",
-	// "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384"
-	TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers")
-
-	// TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic
-	// conventions. It represents the string indicating the curve used for the given
-	// cipher, when applicable.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "secp256r1"
-	TLSCurveKey = attribute.Key("tls.curve")
-
-	// TLSEstablishedKey is the attribute Key conforming to the "tls.established"
-	// semantic conventions. It represents the boolean flag indicating if the TLS
-	// negotiation was successful and transitioned to an encrypted tunnel.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: true
-	TLSEstablishedKey = attribute.Key("tls.established")
-
-	// TLSNextProtocolKey is the attribute Key conforming to the "tls.next_protocol"
-	// semantic conventions. It represents the string indicating the protocol being
-	// tunneled. Per the values in the [IANA registry], this string should be lower
-	// case.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "http/1.1"
-	//
-	// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids
-	TLSNextProtocolKey = attribute.Key("tls.next_protocol")
-
-	// TLSProtocolNameKey is the attribute Key conforming to the "tls.protocol.name"
-	// semantic conventions. It represents the normalized lowercase protocol name
-	// parsed from original string of the negotiated [SSL/TLS protocol version].
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	//
-	// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values
-	TLSProtocolNameKey = attribute.Key("tls.protocol.name")
-
-	// TLSProtocolVersionKey is the attribute Key conforming to the
-	// "tls.protocol.version" semantic conventions. It represents the numeric part
-	// of the version parsed from the original string of the negotiated
-	// [SSL/TLS protocol version].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1.2", "3"
-	//
-	// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values
-	TLSProtocolVersionKey = attribute.Key("tls.protocol.version")
-
-	// TLSResumedKey is the attribute Key conforming to the "tls.resumed" semantic
-	// conventions. It represents the boolean flag indicating if this TLS connection
-	// was resumed from an existing TLS negotiation.
-	//
-	// Type: boolean
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: true
-	TLSResumedKey = attribute.Key("tls.resumed")
-
-	// TLSServerCertificateKey is the attribute Key conforming to the
-	// "tls.server.certificate" semantic conventions. It represents the PEM-encoded
-	// stand-alone certificate offered by the server. This is usually
-	// mutually-exclusive of `server.certificate_chain` since this value also exists
-	// in that list.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "MII..."
-	TLSServerCertificateKey = attribute.Key("tls.server.certificate")
-
-	// TLSServerCertificateChainKey is the attribute Key conforming to the
-	// "tls.server.certificate_chain" semantic conventions. It represents the array
-	// of PEM-encoded certificates that make up the certificate chain offered by the
-	// server. This is usually mutually-exclusive of `server.certificate` since that
-	// value should be the first certificate in the chain.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "MII...", "MI..."
-	TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain")
-
-	// TLSServerHashMd5Key is the attribute Key conforming to the
-	// "tls.server.hash.md5" semantic conventions. It represents the certificate
-	// fingerprint using the MD5 digest of DER-encoded version of certificate
-	// offered by the server. For consistency with other hash values, this value
-	// should be formatted as an uppercase hash.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC"
-	TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5")
-
-	// TLSServerHashSha1Key is the attribute Key conforming to the
-	// "tls.server.hash.sha1" semantic conventions. It represents the certificate
-	// fingerprint using the SHA1 digest of DER-encoded version of certificate
-	// offered by the server. For consistency with other hash values, this value
-	// should be formatted as an uppercase hash.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A"
-	TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1")
-
-	// TLSServerHashSha256Key is the attribute Key conforming to the
-	// "tls.server.hash.sha256" semantic conventions. It represents the certificate
-	// fingerprint using the SHA256 digest of DER-encoded version of certificate
-	// offered by the server. For consistency with other hash values, this value
-	// should be formatted as an uppercase hash.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0"
-	TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256")
-
-	// TLSServerIssuerKey is the attribute Key conforming to the "tls.server.issuer"
-	// semantic conventions. It represents the distinguished name of [subject] of
-	// the issuer of the x.509 certificate presented by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com"
-	//
-	// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
-	TLSServerIssuerKey = attribute.Key("tls.server.issuer")
-
-	// TLSServerJa3sKey is the attribute Key conforming to the "tls.server.ja3s"
-	// semantic conventions. It represents a hash that identifies servers based on
-	// how they perform an SSL/TLS handshake.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "d4e5b18d6b55c71272893221c96ba240"
-	TLSServerJa3sKey = attribute.Key("tls.server.ja3s")
-
-	// TLSServerNotAfterKey is the attribute Key conforming to the
-	// "tls.server.not_after" semantic conventions. It represents the date/Time
-	// indicating when server certificate is no longer considered valid.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "2021-01-01T00:00:00.000Z"
-	TLSServerNotAfterKey = attribute.Key("tls.server.not_after")
-
-	// TLSServerNotBeforeKey is the attribute Key conforming to the
-	// "tls.server.not_before" semantic conventions. It represents the date/Time
-	// indicating when server certificate is first considered valid.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "1970-01-01T00:00:00.000Z"
-	TLSServerNotBeforeKey = attribute.Key("tls.server.not_before")
-
-	// TLSServerSubjectKey is the attribute Key conforming to the
-	// "tls.server.subject" semantic conventions. It represents the distinguished
-	// name of subject of the x.509 certificate presented by the server.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "CN=myserver, OU=Documentation Team, DC=example, DC=com"
-	TLSServerSubjectKey = attribute.Key("tls.server.subject")
-)
-
-// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher"
-// semantic conventions. It represents the string indicating the [cipher] used
-// during the current connection.
-//
-// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5
-func TLSCipher(val string) attribute.KeyValue {
-	return TLSCipherKey.String(val)
-}
-
-// TLSClientCertificate returns an attribute KeyValue conforming to the
-// "tls.client.certificate" semantic conventions. It represents the PEM-encoded
-// stand-alone certificate offered by the client. This is usually
-// mutually-exclusive of `client.certificate_chain` since this value also exists
-// in that list.
-func TLSClientCertificate(val string) attribute.KeyValue {
-	return TLSClientCertificateKey.String(val)
-}
-
-// TLSClientCertificateChain returns an attribute KeyValue conforming to the
-// "tls.client.certificate_chain" semantic conventions. It represents the array
-// of PEM-encoded certificates that make up the certificate chain offered by the
-// client. This is usually mutually-exclusive of `client.certificate` since that
-// value should be the first certificate in the chain.
-func TLSClientCertificateChain(val ...string) attribute.KeyValue {
-	return TLSClientCertificateChainKey.StringSlice(val)
-}
-
-// TLSClientHashMd5 returns an attribute KeyValue conforming to the
-// "tls.client.hash.md5" semantic conventions. It represents the certificate
-// fingerprint using the MD5 digest of DER-encoded version of certificate offered
-// by the client. For consistency with other hash values, this value should be
-// formatted as an uppercase hash.
-func TLSClientHashMd5(val string) attribute.KeyValue {
-	return TLSClientHashMd5Key.String(val)
-}
-
-// TLSClientHashSha1 returns an attribute KeyValue conforming to the
-// "tls.client.hash.sha1" semantic conventions. It represents the certificate
-// fingerprint using the SHA1 digest of DER-encoded version of certificate
-// offered by the client. For consistency with other hash values, this value
-// should be formatted as an uppercase hash.
-func TLSClientHashSha1(val string) attribute.KeyValue {
-	return TLSClientHashSha1Key.String(val)
-}
-
-// TLSClientHashSha256 returns an attribute KeyValue conforming to the
-// "tls.client.hash.sha256" semantic conventions. It represents the certificate
-// fingerprint using the SHA256 digest of DER-encoded version of certificate
-// offered by the client. For consistency with other hash values, this value
-// should be formatted as an uppercase hash.
-func TLSClientHashSha256(val string) attribute.KeyValue {
-	return TLSClientHashSha256Key.String(val)
-}
-
-// TLSClientIssuer returns an attribute KeyValue conforming to the
-// "tls.client.issuer" semantic conventions. It represents the distinguished name
-// of [subject] of the issuer of the x.509 certificate presented by the client.
-//
-// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
-func TLSClientIssuer(val string) attribute.KeyValue {
-	return TLSClientIssuerKey.String(val)
-}
-
-// TLSClientJa3 returns an attribute KeyValue conforming to the "tls.client.ja3"
-// semantic conventions. It represents a hash that identifies clients based on
-// how they perform an SSL/TLS handshake.
-func TLSClientJa3(val string) attribute.KeyValue {
-	return TLSClientJa3Key.String(val)
-}
-
-// TLSClientNotAfter returns an attribute KeyValue conforming to the
-// "tls.client.not_after" semantic conventions. It represents the date/Time
-// indicating when client certificate is no longer considered valid.
-func TLSClientNotAfter(val string) attribute.KeyValue {
-	return TLSClientNotAfterKey.String(val)
-}
-
-// TLSClientNotBefore returns an attribute KeyValue conforming to the
-// "tls.client.not_before" semantic conventions. It represents the date/Time
-// indicating when client certificate is first considered valid.
-func TLSClientNotBefore(val string) attribute.KeyValue {
-	return TLSClientNotBeforeKey.String(val)
-}
-
-// TLSClientSubject returns an attribute KeyValue conforming to the
-// "tls.client.subject" semantic conventions. It represents the distinguished
-// name of subject of the x.509 certificate presented by the client.
-func TLSClientSubject(val string) attribute.KeyValue {
-	return TLSClientSubjectKey.String(val)
-}
-
-// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the
-// "tls.client.supported_ciphers" semantic conventions. It represents the array
-// of ciphers offered by the client during the client hello.
-func TLSClientSupportedCiphers(val ...string) attribute.KeyValue {
-	return TLSClientSupportedCiphersKey.StringSlice(val)
-}
-
-// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" semantic
-// conventions. It represents the string indicating the curve used for the given
-// cipher, when applicable.
-func TLSCurve(val string) attribute.KeyValue {
-	return TLSCurveKey.String(val)
-}
-
-// TLSEstablished returns an attribute KeyValue conforming to the
-// "tls.established" semantic conventions. It represents the boolean flag
-// indicating if the TLS negotiation was successful and transitioned to an
-// encrypted tunnel.
-func TLSEstablished(val bool) attribute.KeyValue {
-	return TLSEstablishedKey.Bool(val)
-}
-
-// TLSNextProtocol returns an attribute KeyValue conforming to the
-// "tls.next_protocol" semantic conventions. It represents the string indicating
-// the protocol being tunneled. Per the values in the [IANA registry], this
-// string should be lower case.
-//
-// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids
-func TLSNextProtocol(val string) attribute.KeyValue {
-	return TLSNextProtocolKey.String(val)
-}
-
-// TLSProtocolVersion returns an attribute KeyValue conforming to the
-// "tls.protocol.version" semantic conventions. It represents the numeric part of
-// the version parsed from the original string of the negotiated
-// [SSL/TLS protocol version].
-//
-// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values
-func TLSProtocolVersion(val string) attribute.KeyValue {
-	return TLSProtocolVersionKey.String(val)
-}
-
-// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed"
-// semantic conventions. It represents the boolean flag indicating if this TLS
-// connection was resumed from an existing TLS negotiation.
-func TLSResumed(val bool) attribute.KeyValue {
-	return TLSResumedKey.Bool(val)
-}
-
-// TLSServerCertificate returns an attribute KeyValue conforming to the
-// "tls.server.certificate" semantic conventions. It represents the PEM-encoded
-// stand-alone certificate offered by the server. This is usually
-// mutually-exclusive of `server.certificate_chain` since this value also exists
-// in that list.
-func TLSServerCertificate(val string) attribute.KeyValue {
-	return TLSServerCertificateKey.String(val)
-}
-
-// TLSServerCertificateChain returns an attribute KeyValue conforming to the
-// "tls.server.certificate_chain" semantic conventions. It represents the array
-// of PEM-encoded certificates that make up the certificate chain offered by the
-// server. This is usually mutually-exclusive of `server.certificate` since that
-// value should be the first certificate in the chain.
-func TLSServerCertificateChain(val ...string) attribute.KeyValue {
-	return TLSServerCertificateChainKey.StringSlice(val)
-}
-
-// TLSServerHashMd5 returns an attribute KeyValue conforming to the
-// "tls.server.hash.md5" semantic conventions. It represents the certificate
-// fingerprint using the MD5 digest of DER-encoded version of certificate offered
-// by the server. For consistency with other hash values, this value should be
-// formatted as an uppercase hash.
-func TLSServerHashMd5(val string) attribute.KeyValue {
-	return TLSServerHashMd5Key.String(val)
-}
-
-// TLSServerHashSha1 returns an attribute KeyValue conforming to the
-// "tls.server.hash.sha1" semantic conventions. It represents the certificate
-// fingerprint using the SHA1 digest of DER-encoded version of certificate
-// offered by the server. For consistency with other hash values, this value
-// should be formatted as an uppercase hash.
-func TLSServerHashSha1(val string) attribute.KeyValue {
-	return TLSServerHashSha1Key.String(val)
-}
-
-// TLSServerHashSha256 returns an attribute KeyValue conforming to the
-// "tls.server.hash.sha256" semantic conventions. It represents the certificate
-// fingerprint using the SHA256 digest of DER-encoded version of certificate
-// offered by the server. For consistency with other hash values, this value
-// should be formatted as an uppercase hash.
-func TLSServerHashSha256(val string) attribute.KeyValue {
-	return TLSServerHashSha256Key.String(val)
-}
-
-// TLSServerIssuer returns an attribute KeyValue conforming to the
-// "tls.server.issuer" semantic conventions. It represents the distinguished name
-// of [subject] of the issuer of the x.509 certificate presented by the client.
-//
-// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
-func TLSServerIssuer(val string) attribute.KeyValue {
-	return TLSServerIssuerKey.String(val)
-}
-
-// TLSServerJa3s returns an attribute KeyValue conforming to the
-// "tls.server.ja3s" semantic conventions. It represents a hash that identifies
-// servers based on how they perform an SSL/TLS handshake.
-func TLSServerJa3s(val string) attribute.KeyValue {
-	return TLSServerJa3sKey.String(val)
-}
-
-// TLSServerNotAfter returns an attribute KeyValue conforming to the
-// "tls.server.not_after" semantic conventions. It represents the date/Time
-// indicating when server certificate is no longer considered valid.
-func TLSServerNotAfter(val string) attribute.KeyValue {
-	return TLSServerNotAfterKey.String(val)
-}
-
-// TLSServerNotBefore returns an attribute KeyValue conforming to the
-// "tls.server.not_before" semantic conventions. It represents the date/Time
-// indicating when server certificate is first considered valid.
-func TLSServerNotBefore(val string) attribute.KeyValue {
-	return TLSServerNotBeforeKey.String(val)
-}
-
-// TLSServerSubject returns an attribute KeyValue conforming to the
-// "tls.server.subject" semantic conventions. It represents the distinguished
-// name of subject of the x.509 certificate presented by the server.
-func TLSServerSubject(val string) attribute.KeyValue {
-	return TLSServerSubjectKey.String(val)
-}
-
-// Enum values for tls.protocol.name
-var (
-	// ssl
-	// Stability: development
-	TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl")
-	// tls
-	// Stability: development
-	TLSProtocolNameTLS = TLSProtocolNameKey.String("tls")
-)
-
-// Namespace: url
-const (
-	// URLDomainKey is the attribute Key conforming to the "url.domain" semantic
-	// conventions. It represents the domain extracted from the `url.full`, such as
-	// "opentelemetry.io".
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "www.foo.bar", "opentelemetry.io", "3.12.167.2",
-	// "[1080:0:0:0:8:800:200C:417A]"
-	// Note: In some cases a URL may refer to an IP and/or port directly, without a
-	// domain name. In this case, the IP address would go to the domain field. If
-	// the URL contains a [literal IPv6 address] enclosed by `[` and `]`, the `[`
-	// and `]` characters should also be captured in the domain field.
-	//
-	// [literal IPv6 address]: https://www.rfc-editor.org/rfc/rfc2732#section-2
-	URLDomainKey = attribute.Key("url.domain")
-
-	// URLExtensionKey is the attribute Key conforming to the "url.extension"
-	// semantic conventions. It represents the file extension extracted from the
-	// `url.full`, excluding the leading dot.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "png", "gz"
-	// Note: The file extension is only set if it exists, as not every url has a
-	// file extension. When the file name has multiple extensions `example.tar.gz`,
-	// only the last one should be captured `gz`, not `tar.gz`.
-	URLExtensionKey = attribute.Key("url.extension")
-
-	// URLFragmentKey is the attribute Key conforming to the "url.fragment" semantic
-	// conventions. It represents the [URI fragment] component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "SemConv"
-	//
-	// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5
-	URLFragmentKey = attribute.Key("url.fragment")
-
-	// URLFullKey is the attribute Key conforming to the "url.full" semantic
-	// conventions. It represents the absolute URL describing a network resource
-	// according to [RFC3986].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", "//localhost"
-	// Note: For network calls, URL usually has
-	// `scheme://host[:port][path][?query][#fragment]` format, where the fragment
-	// is not transmitted over HTTP, but if it is known, it SHOULD be included
-	// nevertheless.
-	//
-	// `url.full` MUST NOT contain credentials passed via URL in form of
-	// `https://username:password@www.example.com/`.
-	// In such case username and password SHOULD be redacted and attribute's value
-	// SHOULD be `https://REDACTED:REDACTED@www.example.com/`.
-	//
-	// `url.full` SHOULD capture the absolute URL when it is available (or can be
-	// reconstructed).
-	//
-	// Sensitive content provided in `url.full` SHOULD be scrubbed when
-	// instrumentations can identify it.
-	//
-	//
-	// Query string values for the following keys SHOULD be redacted by default and
-	// replaced by the
-	// value `REDACTED`:
-	//
-	//   - [`AWSAccessKeyId`]
-	//   - [`Signature`]
-	//   - [`sig`]
-	//   - [`X-Goog-Signature`]
-	//
-	// This list is subject to change over time.
-	//
-	// When a query string value is redacted, the query string key SHOULD still be
-	// preserved, e.g.
-	// `https://www.example.com/path?color=blue&sig=REDACTED`.
-	//
-	// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986
-	// [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
-	// [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
-	// [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token
-	// [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls
-	URLFullKey = attribute.Key("url.full")
-
-	// URLOriginalKey is the attribute Key conforming to the "url.original" semantic
-	// conventions. It represents the unmodified original URL as seen in the event
-	// source.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv",
-	// "search?q=OpenTelemetry"
-	// Note: In network monitoring, the observed URL may be a full URL, whereas in
-	// access logs, the URL is often just represented as a path. This field is meant
-	// to represent the URL as it was observed, complete or not.
-	// `url.original` might contain credentials passed via URL in form of
-	// `https://username:password@www.example.com/`. In such case password and
-	// username SHOULD NOT be redacted and attribute's value SHOULD remain the same.
-	URLOriginalKey = attribute.Key("url.original")
-
-	// URLPathKey is the attribute Key conforming to the "url.path" semantic
-	// conventions. It represents the [URI path] component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "/search"
-	// Note: Sensitive content provided in `url.path` SHOULD be scrubbed when
-	// instrumentations can identify it.
-	//
-	// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3
-	URLPathKey = attribute.Key("url.path")
-
-	// URLPortKey is the attribute Key conforming to the "url.port" semantic
-	// conventions. It represents the port extracted from the `url.full`.
-	//
-	// Type: int
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: 443
-	URLPortKey = attribute.Key("url.port")
-
-	// URLQueryKey is the attribute Key conforming to the "url.query" semantic
-	// conventions. It represents the [URI query] component.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "q=OpenTelemetry"
-	// Note: Sensitive content provided in `url.query` SHOULD be scrubbed when
-	// instrumentations can identify it.
-	//
-	//
-	// Query string values for the following keys SHOULD be redacted by default and
-	// replaced by the value `REDACTED`:
-	//
-	//   - [`AWSAccessKeyId`]
-	//   - [`Signature`]
-	//   - [`sig`]
-	//   - [`X-Goog-Signature`]
-	//
-	// This list is subject to change over time.
-	//
-	// When a query string value is redacted, the query string key SHOULD still be
-	// preserved, e.g.
-	// `q=OpenTelemetry&sig=REDACTED`.
-	//
-	// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4
-	// [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
-	// [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
-	// [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token
-	// [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls
-	URLQueryKey = attribute.Key("url.query")
-
-	// URLRegisteredDomainKey is the attribute Key conforming to the
-	// "url.registered_domain" semantic conventions. It represents the highest
-	// registered url domain, stripped of the subdomain.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "example.com", "foo.co.uk"
-	// Note: This value can be determined precisely with the [public suffix list].
-	// For example, the registered domain for `foo.example.com` is `example.com`.
-	// Trying to approximate this by simply taking the last two labels will not work
-	// well for TLDs such as `co.uk`.
-	//
-	// [public suffix list]: https://publicsuffix.org/
-	URLRegisteredDomainKey = attribute.Key("url.registered_domain")
-
-	// URLSchemeKey is the attribute Key conforming to the "url.scheme" semantic
-	// conventions. It represents the [URI scheme] component identifying the used
-	// protocol.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "https", "ftp", "telnet"
-	//
-	// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1
-	URLSchemeKey = attribute.Key("url.scheme")
-
-	// URLSubdomainKey is the attribute Key conforming to the "url.subdomain"
-	// semantic conventions. It represents the subdomain portion of a fully
-	// qualified domain name includes all of the names except the host name under
-	// the registered_domain. In a partially qualified domain, or if the
-	// qualification level of the full name cannot be determined, subdomain contains
-	// all of the names below the registered domain.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "east", "sub2.sub1"
-	// Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If the
-	// domain has multiple levels of subdomain, such as `sub2.sub1.example.com`, the
-	// subdomain field should contain `sub2.sub1`, with no trailing period.
-	URLSubdomainKey = attribute.Key("url.subdomain")
-
-	// URLTemplateKey is the attribute Key conforming to the "url.template" semantic
-	// conventions. It represents the low-cardinality template of an
-	// [absolute path reference].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "/users/{id}", "/users/:id", "/users?id={id}"
-	//
-	// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2
-	URLTemplateKey = attribute.Key("url.template")
-
-	// URLTopLevelDomainKey is the attribute Key conforming to the
-	// "url.top_level_domain" semantic conventions. It represents the effective top
-	// level domain (eTLD), also known as the domain suffix, is the last part of the
-	// domain name. For example, the top level domain for example.com is `com`.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "com", "co.uk"
-	// Note: This value can be determined precisely with the [public suffix list].
-	//
-	// [public suffix list]: https://publicsuffix.org/
-	URLTopLevelDomainKey = attribute.Key("url.top_level_domain")
-)
-
-// URLDomain returns an attribute KeyValue conforming to the "url.domain"
-// semantic conventions. It represents the domain extracted from the `url.full`,
-// such as "opentelemetry.io".
-func URLDomain(val string) attribute.KeyValue {
-	return URLDomainKey.String(val)
-}
-
-// URLExtension returns an attribute KeyValue conforming to the "url.extension"
-// semantic conventions. It represents the file extension extracted from the
-// `url.full`, excluding the leading dot.
-func URLExtension(val string) attribute.KeyValue {
-	return URLExtensionKey.String(val)
-}
-
-// URLFragment returns an attribute KeyValue conforming to the "url.fragment"
-// semantic conventions. It represents the [URI fragment] component.
-//
-// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5
-func URLFragment(val string) attribute.KeyValue {
-	return URLFragmentKey.String(val)
-}
-
-// URLFull returns an attribute KeyValue conforming to the "url.full" semantic
-// conventions. It represents the absolute URL describing a network resource
-// according to [RFC3986].
-//
-// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986
-func URLFull(val string) attribute.KeyValue {
-	return URLFullKey.String(val)
-}
-
-// URLOriginal returns an attribute KeyValue conforming to the "url.original"
-// semantic conventions. It represents the unmodified original URL as seen in the
-// event source.
-func URLOriginal(val string) attribute.KeyValue {
-	return URLOriginalKey.String(val)
-}
-
-// URLPath returns an attribute KeyValue conforming to the "url.path" semantic
-// conventions. It represents the [URI path] component.
-//
-// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3
-func URLPath(val string) attribute.KeyValue {
-	return URLPathKey.String(val)
-}
-
-// URLPort returns an attribute KeyValue conforming to the "url.port" semantic
-// conventions. It represents the port extracted from the `url.full`.
-func URLPort(val int) attribute.KeyValue {
-	return URLPortKey.Int(val)
-}
-
-// URLQuery returns an attribute KeyValue conforming to the "url.query" semantic
-// conventions. It represents the [URI query] component.
-//
-// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4
-func URLQuery(val string) attribute.KeyValue {
-	return URLQueryKey.String(val)
-}
-
-// URLRegisteredDomain returns an attribute KeyValue conforming to the
-// "url.registered_domain" semantic conventions. It represents the highest
-// registered url domain, stripped of the subdomain.
-func URLRegisteredDomain(val string) attribute.KeyValue {
-	return URLRegisteredDomainKey.String(val)
-}
-
-// URLScheme returns an attribute KeyValue conforming to the "url.scheme"
-// semantic conventions. It represents the [URI scheme] component identifying the
-// used protocol.
-//
-// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1
-func URLScheme(val string) attribute.KeyValue {
-	return URLSchemeKey.String(val)
-}
-
-// URLSubdomain returns an attribute KeyValue conforming to the "url.subdomain"
-// semantic conventions. It represents the subdomain portion of a fully qualified
-// domain name includes all of the names except the host name under the
-// registered_domain. In a partially qualified domain, or if the qualification
-// level of the full name cannot be determined, subdomain contains all of the
-// names below the registered domain.
-func URLSubdomain(val string) attribute.KeyValue {
-	return URLSubdomainKey.String(val)
-}
-
-// URLTemplate returns an attribute KeyValue conforming to the "url.template"
-// semantic conventions. It represents the low-cardinality template of an
-// [absolute path reference].
-//
-// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2
-func URLTemplate(val string) attribute.KeyValue {
-	return URLTemplateKey.String(val)
-}
-
-// URLTopLevelDomain returns an attribute KeyValue conforming to the
-// "url.top_level_domain" semantic conventions. It represents the effective top
-// level domain (eTLD), also known as the domain suffix, is the last part of the
-// domain name. For example, the top level domain for example.com is `com`.
-func URLTopLevelDomain(val string) attribute.KeyValue {
-	return URLTopLevelDomainKey.String(val)
-}
-
-// Namespace: user
-const (
-	// UserEmailKey is the attribute Key conforming to the "user.email" semantic
-	// conventions. It represents the user email address.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "a.einstein@example.com"
-	UserEmailKey = attribute.Key("user.email")
-
-	// UserFullNameKey is the attribute Key conforming to the "user.full_name"
-	// semantic conventions. It represents the user's full name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Albert Einstein"
-	UserFullNameKey = attribute.Key("user.full_name")
-
-	// UserHashKey is the attribute Key conforming to the "user.hash" semantic
-	// conventions. It represents the unique user hash to correlate information for
-	// a user in anonymized form.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "364fc68eaf4c8acec74a4e52d7d1feaa"
-	// Note: Useful if `user.id` or `user.name` contain confidential information and
-	// cannot be used.
-	UserHashKey = attribute.Key("user.hash")
-
-	// UserIDKey is the attribute Key conforming to the "user.id" semantic
-	// conventions. It represents the unique identifier of the user.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "S-1-5-21-202424912787-2692429404-2351956786-1000"
-	UserIDKey = attribute.Key("user.id")
-
-	// UserNameKey is the attribute Key conforming to the "user.name" semantic
-	// conventions. It represents the short name or login/username of the user.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "a.einstein"
-	UserNameKey = attribute.Key("user.name")
-
-	// UserRolesKey is the attribute Key conforming to the "user.roles" semantic
-	// conventions. It represents the array of user roles at the time of the event.
-	//
-	// Type: string[]
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "admin", "reporting_user"
-	UserRolesKey = attribute.Key("user.roles")
-)
-
-// UserEmail returns an attribute KeyValue conforming to the "user.email"
-// semantic conventions. It represents the user email address.
-func UserEmail(val string) attribute.KeyValue {
-	return UserEmailKey.String(val)
-}
-
-// UserFullName returns an attribute KeyValue conforming to the "user.full_name"
-// semantic conventions. It represents the user's full name.
-func UserFullName(val string) attribute.KeyValue {
-	return UserFullNameKey.String(val)
-}
-
-// UserHash returns an attribute KeyValue conforming to the "user.hash" semantic
-// conventions. It represents the unique user hash to correlate information for a
-// user in anonymized form.
-func UserHash(val string) attribute.KeyValue {
-	return UserHashKey.String(val)
-}
-
-// UserID returns an attribute KeyValue conforming to the "user.id" semantic
-// conventions. It represents the unique identifier of the user.
-func UserID(val string) attribute.KeyValue {
-	return UserIDKey.String(val)
-}
-
-// UserName returns an attribute KeyValue conforming to the "user.name" semantic
-// conventions. It represents the short name or login/username of the user.
-func UserName(val string) attribute.KeyValue {
-	return UserNameKey.String(val)
-}
-
-// UserRoles returns an attribute KeyValue conforming to the "user.roles"
-// semantic conventions. It represents the array of user roles at the time of the
-// event.
-func UserRoles(val ...string) attribute.KeyValue {
-	return UserRolesKey.StringSlice(val)
-}
-
-// Namespace: user_agent
-const (
-	// UserAgentNameKey is the attribute Key conforming to the "user_agent.name"
-	// semantic conventions. It represents the name of the user-agent extracted from
-	// original. Usually refers to the browser's name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Safari", "YourApp"
-	// Note: [Example] of extracting browser's name from original string. In the
-	// case of using a user-agent for non-browser products, such as microservices
-	// with multiple names/versions inside the `user_agent.original`, the most
-	// significant name SHOULD be selected. In such a scenario it should align with
-	// `user_agent.version`
-	//
-	// [Example]: https://uaparser.dev/#demo
-	UserAgentNameKey = attribute.Key("user_agent.name")
-
-	// UserAgentOriginalKey is the attribute Key conforming to the
-	// "user_agent.original" semantic conventions. It represents the value of the
-	// [HTTP User-Agent] header sent by the client.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Stable
-	//
-	// Examples: "CERN-LineMode/2.15 libwww/2.17b3", "Mozilla/5.0 (iPhone; CPU
-	// iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko)
-	// Version/14.1.2 Mobile/15E148 Safari/604.1", "YourApp/1.0.0
-	// grpc-java-okhttp/1.27.2"
-	//
-	// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent
-	UserAgentOriginalKey = attribute.Key("user_agent.original")
-
-	// UserAgentOSNameKey is the attribute Key conforming to the
-	// "user_agent.os.name" semantic conventions. It represents the human readable
-	// operating system name.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "iOS", "Android", "Ubuntu"
-	// Note: For mapping user agent strings to OS names, libraries such as
-	// [ua-parser] can be utilized.
-	//
-	// [ua-parser]: https://github.com/ua-parser
-	UserAgentOSNameKey = attribute.Key("user_agent.os.name")
-
-	// UserAgentOSVersionKey is the attribute Key conforming to the
-	// "user_agent.os.version" semantic conventions. It represents the version
-	// string of the operating system as defined in [Version Attributes].
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "14.2.1", "18.04.1"
-	// Note: For mapping user agent strings to OS versions, libraries such as
-	// [ua-parser] can be utilized.
-	//
-	// [Version Attributes]: /docs/resource/README.md#version-attributes
-	// [ua-parser]: https://github.com/ua-parser
-	UserAgentOSVersionKey = attribute.Key("user_agent.os.version")
-
-	// UserAgentSyntheticTypeKey is the attribute Key conforming to the
-	// "user_agent.synthetic.type" semantic conventions. It represents the specifies
-	// the category of synthetic traffic, such as tests or bots.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// Note: This attribute MAY be derived from the contents of the
-	// `user_agent.original` attribute. Components that populate the attribute are
-	// responsible for determining what they consider to be synthetic bot or test
-	// traffic. This attribute can either be set for self-identification purposes,
-	// or on telemetry detected to be generated as a result of a synthetic request.
-	// This attribute is useful for distinguishing between genuine client traffic
-	// and synthetic traffic generated by bots or tests.
-	UserAgentSyntheticTypeKey = attribute.Key("user_agent.synthetic.type")
-
-	// UserAgentVersionKey is the attribute Key conforming to the
-	// "user_agent.version" semantic conventions. It represents the version of the
-	// user-agent extracted from original. Usually refers to the browser's version.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "14.1.2", "1.0.0"
-	// Note: [Example] of extracting browser's version from original string. In the
-	// case of using a user-agent for non-browser products, such as microservices
-	// with multiple names/versions inside the `user_agent.original`, the most
-	// significant version SHOULD be selected. In such a scenario it should align
-	// with `user_agent.name`
-	//
-	// [Example]: https://uaparser.dev/#demo
-	UserAgentVersionKey = attribute.Key("user_agent.version")
-)
-
-// UserAgentName returns an attribute KeyValue conforming to the
-// "user_agent.name" semantic conventions. It represents the name of the
-// user-agent extracted from original. Usually refers to the browser's name.
-func UserAgentName(val string) attribute.KeyValue {
-	return UserAgentNameKey.String(val)
-}
-
-// UserAgentOriginal returns an attribute KeyValue conforming to the
-// "user_agent.original" semantic conventions. It represents the value of the
-// [HTTP User-Agent] header sent by the client.
-//
-// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent
-func UserAgentOriginal(val string) attribute.KeyValue {
-	return UserAgentOriginalKey.String(val)
-}
-
-// UserAgentOSName returns an attribute KeyValue conforming to the
-// "user_agent.os.name" semantic conventions. It represents the human readable
-// operating system name.
-func UserAgentOSName(val string) attribute.KeyValue {
-	return UserAgentOSNameKey.String(val)
-}
-
-// UserAgentOSVersion returns an attribute KeyValue conforming to the
-// "user_agent.os.version" semantic conventions. It represents the version string
-// of the operating system as defined in [Version Attributes].
-//
-// [Version Attributes]: /docs/resource/README.md#version-attributes
-func UserAgentOSVersion(val string) attribute.KeyValue {
-	return UserAgentOSVersionKey.String(val)
-}
-
-// UserAgentVersion returns an attribute KeyValue conforming to the
-// "user_agent.version" semantic conventions. It represents the version of the
-// user-agent extracted from original. Usually refers to the browser's version.
-func UserAgentVersion(val string) attribute.KeyValue {
-	return UserAgentVersionKey.String(val)
-}
-
-// Enum values for user_agent.synthetic.type
-var (
-	// Bot source.
-	// Stability: development
-	UserAgentSyntheticTypeBot = UserAgentSyntheticTypeKey.String("bot")
-	// Synthetic test source.
-	// Stability: development
-	UserAgentSyntheticTypeTest = UserAgentSyntheticTypeKey.String("test")
-)
-
-// Namespace: vcs
-const (
-	// VCSChangeIDKey is the attribute Key conforming to the "vcs.change.id"
-	// semantic conventions. It represents the ID of the change (pull request/merge
-	// request/changelist) if applicable. This is usually a unique (within
-	// repository) identifier generated by the VCS system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "123"
-	VCSChangeIDKey = attribute.Key("vcs.change.id")
-
-	// VCSChangeStateKey is the attribute Key conforming to the "vcs.change.state"
-	// semantic conventions. It represents the state of the change (pull
-	// request/merge request/changelist).
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "open", "closed", "merged"
-	VCSChangeStateKey = attribute.Key("vcs.change.state")
-
-	// VCSChangeTitleKey is the attribute Key conforming to the "vcs.change.title"
-	// semantic conventions. It represents the human readable title of the change
-	// (pull request/merge request/changelist). This title is often a brief summary
-	// of the change and may get merged in to a ref as the commit summary.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "Fixes broken thing", "feat: add my new feature", "[chore] update
-	// dependency"
-	VCSChangeTitleKey = attribute.Key("vcs.change.title")
-
-	// VCSLineChangeTypeKey is the attribute Key conforming to the
-	// "vcs.line_change.type" semantic conventions. It represents the type of line
-	// change being measured on a branch or change.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "added", "removed"
-	VCSLineChangeTypeKey = attribute.Key("vcs.line_change.type")
-
-	// VCSOwnerNameKey is the attribute Key conforming to the "vcs.owner.name"
-	// semantic conventions. It represents the group owner within the version
-	// control system.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-org", "myteam", "business-unit"
-	VCSOwnerNameKey = attribute.Key("vcs.owner.name")
-
-	// VCSProviderNameKey is the attribute Key conforming to the "vcs.provider.name"
-	// semantic conventions. It represents the name of the version control system
-	// provider.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "github", "gitlab", "gitea", "bitbucket"
-	VCSProviderNameKey = attribute.Key("vcs.provider.name")
-
-	// VCSRefBaseNameKey is the attribute Key conforming to the "vcs.ref.base.name"
-	// semantic conventions. It represents the name of the [reference] such as
-	// **branch** or **tag** in the repository.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-feature-branch", "tag-1-test"
-	// Note: `base` refers to the starting point of a change. For example, `main`
-	// would be the base reference of type branch if you've created a new
-	// reference of type branch from it and created new commits.
-	//
-	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-	VCSRefBaseNameKey = attribute.Key("vcs.ref.base.name")
-
-	// VCSRefBaseRevisionKey is the attribute Key conforming to the
-	// "vcs.ref.base.revision" semantic conventions. It represents the revision,
-	// literally [revised version], The revision most often refers to a commit
-	// object in Git, or a revision number in SVN.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc",
-	// "main", "123", "HEAD"
-	// Note: `base` refers to the starting point of a change. For example, `main`
-	// would be the base reference of type branch if you've created a new
-	// reference of type branch from it and created new commits. The
-	// revision can be a full [hash value (see
-	// glossary)],
-	// of the recorded change to a ref within a repository pointing to a
-	// commit [commit] object. It does
-	// not necessarily have to be a hash; it can simply define a [revision
-	// number]
-	// which is an integer that is monotonically increasing. In cases where
-	// it is identical to the `ref.base.name`, it SHOULD still be included.
-	// It is up to the implementer to decide which value to set as the
-	// revision based on the VCS system and situational context.
-	//
-	// [revised version]: https://www.merriam-webster.com/dictionary/revision
-	// [hash value (see
-	// glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
-	// [commit]: https://git-scm.com/docs/git-commit
-	// [revision
-	// number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html
-	VCSRefBaseRevisionKey = attribute.Key("vcs.ref.base.revision")
-
-	// VCSRefBaseTypeKey is the attribute Key conforming to the "vcs.ref.base.type"
-	// semantic conventions. It represents the type of the [reference] in the
-	// repository.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "branch", "tag"
-	// Note: `base` refers to the starting point of a change. For example, `main`
-	// would be the base reference of type branch if you've created a new
-	// reference of type branch from it and created new commits.
-	//
-	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-	VCSRefBaseTypeKey = attribute.Key("vcs.ref.base.type")
-
-	// VCSRefHeadNameKey is the attribute Key conforming to the "vcs.ref.head.name"
-	// semantic conventions. It represents the name of the [reference] such as
-	// **branch** or **tag** in the repository.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "my-feature-branch", "tag-1-test"
-	// Note: `head` refers to where you are right now; the current reference at a
-	// given time.
-	//
-	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-	VCSRefHeadNameKey = attribute.Key("vcs.ref.head.name")
-
-	// VCSRefHeadRevisionKey is the attribute Key conforming to the
-	// "vcs.ref.head.revision" semantic conventions. It represents the revision,
-	// literally [revised version], The revision most often refers to a commit
-	// object in Git, or a revision number in SVN.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc",
-	// "main", "123", "HEAD"
-	// Note: `head` refers to where you are right now; the current reference at a
-	// given time.The revision can be a full [hash value (see
-	// glossary)],
-	// of the recorded change to a ref within a repository pointing to a
-	// commit [commit] object. It does
-	// not necessarily have to be a hash; it can simply define a [revision
-	// number]
-	// which is an integer that is monotonically increasing. In cases where
-	// it is identical to the `ref.head.name`, it SHOULD still be included.
-	// It is up to the implementer to decide which value to set as the
-	// revision based on the VCS system and situational context.
-	//
-	// [revised version]: https://www.merriam-webster.com/dictionary/revision
-	// [hash value (see
-	// glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
-	// [commit]: https://git-scm.com/docs/git-commit
-	// [revision
-	// number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html
-	VCSRefHeadRevisionKey = attribute.Key("vcs.ref.head.revision")
-
-	// VCSRefHeadTypeKey is the attribute Key conforming to the "vcs.ref.head.type"
-	// semantic conventions. It represents the type of the [reference] in the
-	// repository.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "branch", "tag"
-	// Note: `head` refers to where you are right now; the current reference at a
-	// given time.
-	//
-	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-	VCSRefHeadTypeKey = attribute.Key("vcs.ref.head.type")
-
-	// VCSRefTypeKey is the attribute Key conforming to the "vcs.ref.type" semantic
-	// conventions. It represents the type of the [reference] in the repository.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "branch", "tag"
-	//
-	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-	VCSRefTypeKey = attribute.Key("vcs.ref.type")
-
-	// VCSRepositoryNameKey is the attribute Key conforming to the
-	// "vcs.repository.name" semantic conventions. It represents the human readable
-	// name of the repository. It SHOULD NOT include any additional identifier like
-	// Group/SubGroup in GitLab or organization in GitHub.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "semantic-conventions", "my-cool-repo"
-	// Note: Due to it only being the name, it can clash with forks of the same
-	// repository if collecting telemetry across multiple orgs or groups in
-	// the same backends.
-	VCSRepositoryNameKey = attribute.Key("vcs.repository.name")
-
-	// VCSRepositoryURLFullKey is the attribute Key conforming to the
-	// "vcs.repository.url.full" semantic conventions. It represents the
-	// [canonical URL] of the repository providing the complete HTTP(S) address in
-	// order to locate and identify the repository through a browser.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples:
-	// "https://github.com/opentelemetry/open-telemetry-collector-contrib",
-	// "https://gitlab.com/my-org/my-project/my-projects-project/repo"
-	// Note: In Git Version Control Systems, the canonical URL SHOULD NOT include
-	// the `.git` extension.
-	//
-	// [canonical URL]: https://support.google.com/webmasters/answer/10347851
-	VCSRepositoryURLFullKey = attribute.Key("vcs.repository.url.full")
-
-	// VCSRevisionDeltaDirectionKey is the attribute Key conforming to the
-	// "vcs.revision_delta.direction" semantic conventions. It represents the type
-	// of revision comparison.
-	//
-	// Type: Enum
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "ahead", "behind"
-	VCSRevisionDeltaDirectionKey = attribute.Key("vcs.revision_delta.direction")
-)
-
-// VCSChangeID returns an attribute KeyValue conforming to the "vcs.change.id"
-// semantic conventions. It represents the ID of the change (pull request/merge
-// request/changelist) if applicable. This is usually a unique (within
-// repository) identifier generated by the VCS system.
-func VCSChangeID(val string) attribute.KeyValue {
-	return VCSChangeIDKey.String(val)
-}
-
-// VCSChangeTitle returns an attribute KeyValue conforming to the
-// "vcs.change.title" semantic conventions. It represents the human readable
-// title of the change (pull request/merge request/changelist). This title is
-// often a brief summary of the change and may get merged in to a ref as the
-// commit summary.
-func VCSChangeTitle(val string) attribute.KeyValue {
-	return VCSChangeTitleKey.String(val)
-}
-
-// VCSOwnerName returns an attribute KeyValue conforming to the "vcs.owner.name"
-// semantic conventions. It represents the group owner within the version control
-// system.
-func VCSOwnerName(val string) attribute.KeyValue {
-	return VCSOwnerNameKey.String(val)
-}
-
-// VCSRefBaseName returns an attribute KeyValue conforming to the
-// "vcs.ref.base.name" semantic conventions. It represents the name of the
-// [reference] such as **branch** or **tag** in the repository.
-//
-// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-func VCSRefBaseName(val string) attribute.KeyValue {
-	return VCSRefBaseNameKey.String(val)
-}
-
-// VCSRefBaseRevision returns an attribute KeyValue conforming to the
-// "vcs.ref.base.revision" semantic conventions. It represents the revision,
-// literally [revised version], The revision most often refers to a commit object
-// in Git, or a revision number in SVN.
-//
-// [revised version]: https://www.merriam-webster.com/dictionary/revision
-func VCSRefBaseRevision(val string) attribute.KeyValue {
-	return VCSRefBaseRevisionKey.String(val)
-}
-
-// VCSRefHeadName returns an attribute KeyValue conforming to the
-// "vcs.ref.head.name" semantic conventions. It represents the name of the
-// [reference] such as **branch** or **tag** in the repository.
-//
-// [reference]: https://git-scm.com/docs/gitglossary#def_ref
-func VCSRefHeadName(val string) attribute.KeyValue {
-	return VCSRefHeadNameKey.String(val)
-}
-
-// VCSRefHeadRevision returns an attribute KeyValue conforming to the
-// "vcs.ref.head.revision" semantic conventions. It represents the revision,
-// literally [revised version], The revision most often refers to a commit object
-// in Git, or a revision number in SVN.
-//
-// [revised version]: https://www.merriam-webster.com/dictionary/revision
-func VCSRefHeadRevision(val string) attribute.KeyValue {
-	return VCSRefHeadRevisionKey.String(val)
-}
-
-// VCSRepositoryName returns an attribute KeyValue conforming to the
-// "vcs.repository.name" semantic conventions. It represents the human readable
-// name of the repository. It SHOULD NOT include any additional identifier like
-// Group/SubGroup in GitLab or organization in GitHub.
-func VCSRepositoryName(val string) attribute.KeyValue {
-	return VCSRepositoryNameKey.String(val)
-}
-
-// VCSRepositoryURLFull returns an attribute KeyValue conforming to the
-// "vcs.repository.url.full" semantic conventions. It represents the
-// [canonical URL] of the repository providing the complete HTTP(S) address in
-// order to locate and identify the repository through a browser.
-//
-// [canonical URL]: https://support.google.com/webmasters/answer/10347851
-func VCSRepositoryURLFull(val string) attribute.KeyValue {
-	return VCSRepositoryURLFullKey.String(val)
-}
-
-// Enum values for vcs.change.state
-var (
-	// Open means the change is currently active and under review. It hasn't been
-	// merged into the target branch yet, and it's still possible to make changes or
-	// add comments.
-	// Stability: development
-	VCSChangeStateOpen = VCSChangeStateKey.String("open")
-	// WIP (work-in-progress, draft) means the change is still in progress and not
-	// yet ready for a full review. It might still undergo significant changes.
-	// Stability: development
-	VCSChangeStateWip = VCSChangeStateKey.String("wip")
-	// Closed means the merge request has been closed without merging. This can
-	// happen for various reasons, such as the changes being deemed unnecessary, the
-	// issue being resolved in another way, or the author deciding to withdraw the
-	// request.
-	// Stability: development
-	VCSChangeStateClosed = VCSChangeStateKey.String("closed")
-	// Merged indicates that the change has been successfully integrated into the
-	// target codebase.
-	// Stability: development
-	VCSChangeStateMerged = VCSChangeStateKey.String("merged")
-)
-
-// Enum values for vcs.line_change.type
-var (
-	// How many lines were added.
-	// Stability: development
-	VCSLineChangeTypeAdded = VCSLineChangeTypeKey.String("added")
-	// How many lines were removed.
-	// Stability: development
-	VCSLineChangeTypeRemoved = VCSLineChangeTypeKey.String("removed")
-)
-
-// Enum values for vcs.provider.name
-var (
-	// [GitHub]
-	// Stability: development
-	//
-	// [GitHub]: https://github.com
-	VCSProviderNameGithub = VCSProviderNameKey.String("github")
-	// [GitLab]
-	// Stability: development
-	//
-	// [GitLab]: https://gitlab.com
-	VCSProviderNameGitlab = VCSProviderNameKey.String("gitlab")
-	// [Gitea]
-	// Stability: development
-	//
-	// [Gitea]: https://gitea.io
-	VCSProviderNameGitea = VCSProviderNameKey.String("gitea")
-	// [Bitbucket]
-	// Stability: development
-	//
-	// [Bitbucket]: https://bitbucket.org
-	VCSProviderNameBitbucket = VCSProviderNameKey.String("bitbucket")
-)
-
-// Enum values for vcs.ref.base.type
-var (
-	// [branch]
-	// Stability: development
-	//
-	// [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch
-	VCSRefBaseTypeBranch = VCSRefBaseTypeKey.String("branch")
-	// [tag]
-	// Stability: development
-	//
-	// [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag
-	VCSRefBaseTypeTag = VCSRefBaseTypeKey.String("tag")
-)
-
-// Enum values for vcs.ref.head.type
-var (
-	// [branch]
-	// Stability: development
-	//
-	// [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch
-	VCSRefHeadTypeBranch = VCSRefHeadTypeKey.String("branch")
-	// [tag]
-	// Stability: development
-	//
-	// [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag
-	VCSRefHeadTypeTag = VCSRefHeadTypeKey.String("tag")
-)
-
-// Enum values for vcs.ref.type
-var (
-	// [branch]
-	// Stability: development
-	//
-	// [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch
-	VCSRefTypeBranch = VCSRefTypeKey.String("branch")
-	// [tag]
-	// Stability: development
-	//
-	// [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag
-	VCSRefTypeTag = VCSRefTypeKey.String("tag")
-)
-
-// Enum values for vcs.revision_delta.direction
-var (
-	// How many revisions the change is behind the target ref.
-	// Stability: development
-	VCSRevisionDeltaDirectionBehind = VCSRevisionDeltaDirectionKey.String("behind")
-	// How many revisions the change is ahead of the target ref.
-	// Stability: development
-	VCSRevisionDeltaDirectionAhead = VCSRevisionDeltaDirectionKey.String("ahead")
-)
-
-// Namespace: webengine
-const (
-	// WebEngineDescriptionKey is the attribute Key conforming to the
-	// "webengine.description" semantic conventions. It represents the additional
-	// description of the web engine (e.g. detailed version and edition
-	// information).
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) -
-	// 2.2.2.Final"
-	WebEngineDescriptionKey = attribute.Key("webengine.description")
-
-	// WebEngineNameKey is the attribute Key conforming to the "webengine.name"
-	// semantic conventions. It represents the name of the web engine.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "WildFly"
-	WebEngineNameKey = attribute.Key("webengine.name")
-
-	// WebEngineVersionKey is the attribute Key conforming to the
-	// "webengine.version" semantic conventions. It represents the version of the
-	// web engine.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "21.0.0"
-	WebEngineVersionKey = attribute.Key("webengine.version")
-)
-
-// WebEngineDescription returns an attribute KeyValue conforming to the
-// "webengine.description" semantic conventions. It represents the additional
-// description of the web engine (e.g. detailed version and edition information).
-func WebEngineDescription(val string) attribute.KeyValue {
-	return WebEngineDescriptionKey.String(val)
-}
-
-// WebEngineName returns an attribute KeyValue conforming to the "webengine.name"
-// semantic conventions. It represents the name of the web engine.
-func WebEngineName(val string) attribute.KeyValue {
-	return WebEngineNameKey.String(val)
-}
-
-// WebEngineVersion returns an attribute KeyValue conforming to the
-// "webengine.version" semantic conventions. It represents the version of the web
-// engine.
-func WebEngineVersion(val string) attribute.KeyValue {
-	return WebEngineVersionKey.String(val)
-}
-
-// Namespace: zos
-const (
-	// ZOSSmfIDKey is the attribute Key conforming to the "zos.smf.id" semantic
-	// conventions. It represents the System Management Facility (SMF) Identifier
-	// uniquely identified a z/OS system within a SYSPLEX or mainframe environment
-	// and is used for system and performance analysis.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "SYS1"
-	ZOSSmfIDKey = attribute.Key("zos.smf.id")
-
-	// ZOSSysplexNameKey is the attribute Key conforming to the "zos.sysplex.name"
-	// semantic conventions. It represents the name of the SYSPLEX to which the z/OS
-	// system belongs too.
-	//
-	// Type: string
-	// RequirementLevel: Recommended
-	// Stability: Development
-	//
-	// Examples: "SYSPLEX1"
-	ZOSSysplexNameKey = attribute.Key("zos.sysplex.name")
-)
-
-// ZOSSmfID returns an attribute KeyValue conforming to the "zos.smf.id" semantic
-// conventions. It represents the System Management Facility (SMF) Identifier
-// uniquely identified a z/OS system within a SYSPLEX or mainframe environment
-// and is used for system and performance analysis.
-func ZOSSmfID(val string) attribute.KeyValue {
-	return ZOSSmfIDKey.String(val)
-}
-
-// ZOSSysplexName returns an attribute KeyValue conforming to the
-// "zos.sysplex.name" semantic conventions. It represents the name of the SYSPLEX
-// to which the z/OS system belongs too.
-func ZOSSysplexName(val string) attribute.KeyValue {
-	return ZOSSysplexNameKey.String(val)
-}
\ No newline at end of file
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/doc.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,9 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-// Package semconv implements OpenTelemetry semantic conventions.
-//
-// OpenTelemetry semantic conventions are agreed standardized naming
-// patterns for OpenTelemetry things. This package represents the v1.39.0
-// version of the OpenTelemetry semantic conventions.
-package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0"
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/error_type.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,56 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0"
-
-import (
-	"reflect"
-
-	"go.opentelemetry.io/otel/attribute"
-)
-
-// ErrorType returns an [attribute.KeyValue] identifying the error type of err.
-//
-// If err is nil, the returned attribute has the default value
-// [ErrorTypeOther].
-//
-// If err's type has the method
-//
-//	ErrorType() string
-//
-// then the returned attribute has the value of err.ErrorType(). Otherwise, the
-// returned attribute has a value derived from the concrete type of err.
-//
-// The key of the returned attribute is [ErrorTypeKey].
-func ErrorType(err error) attribute.KeyValue {
-	if err == nil {
-		return ErrorTypeOther
-	}
-
-	return ErrorTypeKey.String(errorType(err))
-}
-
-func errorType(err error) string {
-	var s string
-	if et, ok := err.(interface{ ErrorType() string }); ok {
-		// Prioritize the ErrorType method if available.
-		s = et.ErrorType()
-	}
-	if s == "" {
-		// Fallback to reflection if the ErrorType method is not supported or
-		// returns an empty value.
-
-		t := reflect.TypeOf(err)
-		pkg, name := t.PkgPath(), t.Name()
-		if pkg != "" && name != "" {
-			s = pkg + "." + name
-		} else {
-			// The type has no package path or name (predeclared, not-defined,
-			// or alias for a not-defined type).
-			//
-			// This is not guaranteed to be unique, but is a best effort.
-			s = t.String()
-		}
-	}
-	return s
-}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/exception.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,9 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0"
-
-const (
-	// ExceptionEventName is the name of the Span event representing an exception.
-	ExceptionEventName = "exception"
-)
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.39.0/schema.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,9 +0,0 @@
-// Copyright The OpenTelemetry Authors
-// SPDX-License-Identifier: Apache-2.0
-
-package semconv // import "go.opentelemetry.io/otel/semconv/v1.39.0"
-
-// SchemaURL is the schema URL that matches the version of the semantic conventions
-// that this package defines. Semconv packages starting from v1.4.0 must declare
-// non-empty schema URL in the form https://opentelemetry.io/schemas/<version>
-const SchemaURL = "https://opentelemetry.io/schemas/1.39.0"
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/MIGRATION.md	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,27 @@
+<!-- Generated. DO NOT MODIFY. -->
+# Migration from v1.39.0 to v1.40.0
+
+The `go.opentelemetry.io/otel/semconv/v1.40.0` package should be a drop-in replacement for `go.opentelemetry.io/otel/semconv/v1.39.0` with the following exceptions.
+
+## Removed
+
+The following declarations have been removed.
+Refer to the [OpenTelemetry Semantic Conventions documentation] for deprecation instructions.
+
+If the type is not listed in the documentation as deprecated, it has been removed in this version due to lack of applicability or use.
+If you use any of these non-deprecated declarations in your Go application, please [open an issue] describing your use-case.
+
+- `ErrorMessage`
+- `ErrorMessageKey`
+- `RPCMessageCompressedSize`
+- `RPCMessageCompressedSizeKey`
+- `RPCMessageID`
+- `RPCMessageIDKey`
+- `RPCMessageTypeKey`
+- `RPCMessageTypeReceived`
+- `RPCMessageTypeSent`
+- `RPCMessageUncompressedSize`
+- `RPCMessageUncompressedSizeKey`
+
+[OpenTelemetry Semantic Conventions documentation]: https://github.com/open-telemetry/semantic-conventions
+[open an issue]: https://github.com/open-telemetry/opentelemetry-go/issues/new?template=Blank+issue
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/README.md	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,3 @@
+# Semconv v1.40.0
+
+[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.40.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.40.0)
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/attribute_group.go	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,16861 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+// Code generated from semantic convention specification. DO NOT EDIT.
+
+package semconv // import "go.opentelemetry.io/otel/semconv/v1.40.0"
+
+import "go.opentelemetry.io/otel/attribute"
+
+// Namespace: android
+const (
+	// AndroidAppStateKey is the attribute Key conforming to the "android.app.state"
+	// semantic conventions. It represents the this attribute represents the state
+	// of the application.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "created"
+	// Note: The Android lifecycle states are defined in
+	// [Activity lifecycle callbacks], and from which the `OS identifiers` are
+	// derived.
+	//
+	// [Activity lifecycle callbacks]: https://developer.android.com/guide/components/activities/activity-lifecycle#lc
+	AndroidAppStateKey = attribute.Key("android.app.state")
+
+	// AndroidOSAPILevelKey is the attribute Key conforming to the
+	// "android.os.api_level" semantic conventions. It represents the uniquely
+	// identifies the framework API revision offered by a version (`os.version`) of
+	// the android operating system. More information can be found in the
+	// [Android API levels documentation].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "33", "32"
+	//
+	// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels
+	AndroidOSAPILevelKey = attribute.Key("android.os.api_level")
+)
+
+// AndroidOSAPILevel returns an attribute KeyValue conforming to the
+// "android.os.api_level" semantic conventions. It represents the uniquely
+// identifies the framework API revision offered by a version (`os.version`) of
+// the android operating system. More information can be found in the
+// [Android API levels documentation].
+//
+// [Android API levels documentation]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels
+func AndroidOSAPILevel(val string) attribute.KeyValue {
+	return AndroidOSAPILevelKey.String(val)
+}
+
+// Enum values for android.app.state
+var (
+	// Any time before Activity.onResume() or, if the app has no Activity,
+	// Context.startService() has been called in the app for the first time.
+	//
+	// Stability: development
+	AndroidAppStateCreated = AndroidAppStateKey.String("created")
+	// Any time after Activity.onPause() or, if the app has no Activity,
+	// Context.stopService() has been called when the app was in the foreground
+	// state.
+	//
+	// Stability: development
+	AndroidAppStateBackground = AndroidAppStateKey.String("background")
+	// Any time after Activity.onResume() or, if the app has no Activity,
+	// Context.startService() has been called when the app was in either the created
+	// or background states.
+	//
+	// Stability: development
+	AndroidAppStateForeground = AndroidAppStateKey.String("foreground")
+)
+
+// Namespace: app
+const (
+	// AppBuildIDKey is the attribute Key conforming to the "app.build_id" semantic
+	// conventions. It represents the unique identifier for a particular build or
+	// compilation of the application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "6cff0a7e-cefc-4668-96f5-1273d8b334d0",
+	// "9f2b833506aa6973a92fde9733e6271f", "my-app-1.0.0-code-123"
+	AppBuildIDKey = attribute.Key("app.build_id")
+
+	// AppInstallationIDKey is the attribute Key conforming to the
+	// "app.installation.id" semantic conventions. It represents a unique identifier
+	// representing the installation of an application on a specific device.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2ab2916d-a51f-4ac8-80ee-45ac31a28092"
+	// Note: Its value SHOULD persist across launches of the same application
+	// installation, including through application upgrades.
+	// It SHOULD change if the application is uninstalled or if all applications of
+	// the vendor are uninstalled.
+	// Additionally, users might be able to reset this value (e.g. by clearing
+	// application data).
+	// If an app is installed multiple times on the same device (e.g. in different
+	// accounts on Android), each `app.installation.id` SHOULD have a different
+	// value.
+	// If multiple OpenTelemetry SDKs are used within the same application, they
+	// SHOULD use the same value for `app.installation.id`.
+	// Hardware IDs (e.g. serial number, IMEI, MAC address) MUST NOT be used as the
+	// `app.installation.id`.
+	//
+	// For iOS, this value SHOULD be equal to the [vendor identifier].
+	//
+	// For Android, examples of `app.installation.id` implementations include:
+	//
+	//   - [Firebase Installation ID].
+	//   - A globally unique UUID which is persisted across sessions in your
+	//     application.
+	//   - [App set ID].
+	//   - [`Settings.getString(Settings.Secure.ANDROID_ID)`].
+	//
+	// More information about Android identifier best practices can be found in the
+	// [Android user data IDs guide].
+	//
+	// [vendor identifier]: https://developer.apple.com/documentation/uikit/uidevice/identifierforvendor
+	// [Firebase Installation ID]: https://firebase.google.com/docs/projects/manage-installations
+	// [App set ID]: https://developer.android.com/identity/app-set-id
+	// [`Settings.getString(Settings.Secure.ANDROID_ID)`]: https://developer.android.com/reference/android/provider/Settings.Secure#ANDROID_ID
+	// [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids
+	AppInstallationIDKey = attribute.Key("app.installation.id")
+
+	// AppJankFrameCountKey is the attribute Key conforming to the
+	// "app.jank.frame_count" semantic conventions. It represents a number of frame
+	// renders that experienced jank.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 9, 42
+	// Note: Depending on platform limitations, the value provided MAY be
+	// approximation.
+	AppJankFrameCountKey = attribute.Key("app.jank.frame_count")
+
+	// AppJankPeriodKey is the attribute Key conforming to the "app.jank.period"
+	// semantic conventions. It represents the time period, in seconds, for which
+	// this jank is being reported.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0, 5.0, 10.24
+	AppJankPeriodKey = attribute.Key("app.jank.period")
+
+	// AppJankThresholdKey is the attribute Key conforming to the
+	// "app.jank.threshold" semantic conventions. It represents the minimum
+	// rendering threshold for this jank, in seconds.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0.016, 0.7, 1.024
+	AppJankThresholdKey = attribute.Key("app.jank.threshold")
+
+	// AppScreenCoordinateXKey is the attribute Key conforming to the
+	// "app.screen.coordinate.x" semantic conventions. It represents the x
+	// (horizontal) coordinate of a screen coordinate, in screen pixels.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0, 131
+	AppScreenCoordinateXKey = attribute.Key("app.screen.coordinate.x")
+
+	// AppScreenCoordinateYKey is the attribute Key conforming to the
+	// "app.screen.coordinate.y" semantic conventions. It represents the y
+	// (vertical) component of a screen coordinate, in screen pixels.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 12, 99
+	AppScreenCoordinateYKey = attribute.Key("app.screen.coordinate.y")
+
+	// AppScreenIDKey is the attribute Key conforming to the "app.screen.id"
+	// semantic conventions. It represents an identifier that uniquely
+	// differentiates this screen from other screens in the same application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3",
+	// "com.example.app.MainActivity", "com.example.shop.ProductDetailFragment",
+	// "MyApp.ProfileView", "MyApp.ProfileViewController"
+	// Note: A screen represents only the part of the device display drawn by the
+	// app. It typically contains multiple widgets or UI components and is larger in
+	// scope than individual widgets. Multiple screens can coexist on the same
+	// display simultaneously (e.g., split view on tablets).
+	AppScreenIDKey = attribute.Key("app.screen.id")
+
+	// AppScreenNameKey is the attribute Key conforming to the "app.screen.name"
+	// semantic conventions. It represents the name of an application screen.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "MainActivity", "ProductDetailFragment", "ProfileView",
+	// "ProfileViewController"
+	// Note: A screen represents only the part of the device display drawn by the
+	// app. It typically contains multiple widgets or UI components and is larger in
+	// scope than individual widgets. Multiple screens can coexist on the same
+	// display simultaneously (e.g., split view on tablets).
+	AppScreenNameKey = attribute.Key("app.screen.name")
+
+	// AppWidgetIDKey is the attribute Key conforming to the "app.widget.id"
+	// semantic conventions. It represents an identifier that uniquely
+	// differentiates this widget from other widgets in the same application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", "submit_order_1829"
+	// Note: A widget is an application component, typically an on-screen visual GUI
+	// element.
+	AppWidgetIDKey = attribute.Key("app.widget.id")
+
+	// AppWidgetNameKey is the attribute Key conforming to the "app.widget.name"
+	// semantic conventions. It represents the name of an application widget.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "submit", "attack", "Clear Cart"
+	// Note: A widget is an application component, typically an on-screen visual GUI
+	// element.
+	AppWidgetNameKey = attribute.Key("app.widget.name")
+)
+
+// AppBuildID returns an attribute KeyValue conforming to the "app.build_id"
+// semantic conventions. It represents the unique identifier for a particular
+// build or compilation of the application.
+func AppBuildID(val string) attribute.KeyValue {
+	return AppBuildIDKey.String(val)
+}
+
+// AppInstallationID returns an attribute KeyValue conforming to the
+// "app.installation.id" semantic conventions. It represents a unique identifier
+// representing the installation of an application on a specific device.
+func AppInstallationID(val string) attribute.KeyValue {
+	return AppInstallationIDKey.String(val)
+}
+
+// AppJankFrameCount returns an attribute KeyValue conforming to the
+// "app.jank.frame_count" semantic conventions. It represents a number of frame
+// renders that experienced jank.
+func AppJankFrameCount(val int) attribute.KeyValue {
+	return AppJankFrameCountKey.Int(val)
+}
+
+// AppJankPeriod returns an attribute KeyValue conforming to the
+// "app.jank.period" semantic conventions. It represents the time period, in
+// seconds, for which this jank is being reported.
+func AppJankPeriod(val float64) attribute.KeyValue {
+	return AppJankPeriodKey.Float64(val)
+}
+
+// AppJankThreshold returns an attribute KeyValue conforming to the
+// "app.jank.threshold" semantic conventions. It represents the minimum rendering
+// threshold for this jank, in seconds.
+func AppJankThreshold(val float64) attribute.KeyValue {
+	return AppJankThresholdKey.Float64(val)
+}
+
+// AppScreenCoordinateX returns an attribute KeyValue conforming to the
+// "app.screen.coordinate.x" semantic conventions. It represents the x
+// (horizontal) coordinate of a screen coordinate, in screen pixels.
+func AppScreenCoordinateX(val int) attribute.KeyValue {
+	return AppScreenCoordinateXKey.Int(val)
+}
+
+// AppScreenCoordinateY returns an attribute KeyValue conforming to the
+// "app.screen.coordinate.y" semantic conventions. It represents the y (vertical)
+// component of a screen coordinate, in screen pixels.
+func AppScreenCoordinateY(val int) attribute.KeyValue {
+	return AppScreenCoordinateYKey.Int(val)
+}
+
+// AppScreenID returns an attribute KeyValue conforming to the "app.screen.id"
+// semantic conventions. It represents an identifier that uniquely differentiates
+// this screen from other screens in the same application.
+func AppScreenID(val string) attribute.KeyValue {
+	return AppScreenIDKey.String(val)
+}
+
+// AppScreenName returns an attribute KeyValue conforming to the
+// "app.screen.name" semantic conventions. It represents the name of an
+// application screen.
+func AppScreenName(val string) attribute.KeyValue {
+	return AppScreenNameKey.String(val)
+}
+
+// AppWidgetID returns an attribute KeyValue conforming to the "app.widget.id"
+// semantic conventions. It represents an identifier that uniquely differentiates
+// this widget from other widgets in the same application.
+func AppWidgetID(val string) attribute.KeyValue {
+	return AppWidgetIDKey.String(val)
+}
+
+// AppWidgetName returns an attribute KeyValue conforming to the
+// "app.widget.name" semantic conventions. It represents the name of an
+// application widget.
+func AppWidgetName(val string) attribute.KeyValue {
+	return AppWidgetNameKey.String(val)
+}
+
+// Namespace: artifact
+const (
+	// ArtifactAttestationFilenameKey is the attribute Key conforming to the
+	// "artifact.attestation.filename" semantic conventions. It represents the
+	// provenance filename of the built attestation which directly relates to the
+	// build artifact filename. This filename SHOULD accompany the artifact at
+	// publish time. See the [SLSA Relationship] specification for more information.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "golang-binary-amd64-v0.1.0.attestation",
+	// "docker-image-amd64-v0.1.0.intoto.json1", "release-1.tar.gz.attestation",
+	// "file-name-package.tar.gz.intoto.json1"
+	//
+	// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations
+	ArtifactAttestationFilenameKey = attribute.Key("artifact.attestation.filename")
+
+	// ArtifactAttestationHashKey is the attribute Key conforming to the
+	// "artifact.attestation.hash" semantic conventions. It represents the full
+	// [hash value (see glossary)], of the built attestation. Some envelopes in the
+	// [software attestation space] also refer to this as the **digest**.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1b31dfcd5b7f9267bf2ff47651df1cfb9147b9e4df1f335accf65b4cda498408"
+	//
+	// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
+	// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec
+	ArtifactAttestationHashKey = attribute.Key("artifact.attestation.hash")
+
+	// ArtifactAttestationIDKey is the attribute Key conforming to the
+	// "artifact.attestation.id" semantic conventions. It represents the id of the
+	// build [software attestation].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "123"
+	//
+	// [software attestation]: https://slsa.dev/attestation-model
+	ArtifactAttestationIDKey = attribute.Key("artifact.attestation.id")
+
+	// ArtifactFilenameKey is the attribute Key conforming to the
+	// "artifact.filename" semantic conventions. It represents the human readable
+	// file name of the artifact, typically generated during build and release
+	// processes. Often includes the package name and version in the file name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "golang-binary-amd64-v0.1.0", "docker-image-amd64-v0.1.0",
+	// "release-1.tar.gz", "file-name-package.tar.gz"
+	// Note: This file name can also act as the [Package Name]
+	// in cases where the package ecosystem maps accordingly.
+	// Additionally, the artifact [can be published]
+	// for others, but that is not a guarantee.
+	//
+	// [Package Name]: https://slsa.dev/spec/v1.0/terminology#package-model
+	// [can be published]: https://slsa.dev/spec/v1.0/terminology#software-supply-chain
+	ArtifactFilenameKey = attribute.Key("artifact.filename")
+
+	// ArtifactHashKey is the attribute Key conforming to the "artifact.hash"
+	// semantic conventions. It represents the full [hash value (see glossary)],
+	// often found in checksum.txt on a release of the artifact and used to verify
+	// package integrity.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "9ff4c52759e2c4ac70b7d517bc7fcdc1cda631ca0045271ddd1b192544f8a3e9"
+	// Note: The specific algorithm used to create the cryptographic hash value is
+	// not defined. In situations where an artifact has multiple
+	// cryptographic hashes, it is up to the implementer to choose which
+	// hash value to set here; this should be the most secure hash algorithm
+	// that is suitable for the situation and consistent with the
+	// corresponding attestation. The implementer can then provide the other
+	// hash values through an additional set of attribute extensions as they
+	// deem necessary.
+	//
+	// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
+	ArtifactHashKey = attribute.Key("artifact.hash")
+
+	// ArtifactPurlKey is the attribute Key conforming to the "artifact.purl"
+	// semantic conventions. It represents the [Package URL] of the
+	// [package artifact] provides a standard way to identify and locate the
+	// packaged artifact.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "pkg:github/package-url/purl-spec@1209109710924",
+	// "pkg:npm/foo@12.12.3"
+	//
+	// [Package URL]: https://github.com/package-url/purl-spec
+	// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model
+	ArtifactPurlKey = attribute.Key("artifact.purl")
+
+	// ArtifactVersionKey is the attribute Key conforming to the "artifact.version"
+	// semantic conventions. It represents the version of the artifact.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "v0.1.0", "1.2.1", "122691-build"
+	ArtifactVersionKey = attribute.Key("artifact.version")
+)
+
+// ArtifactAttestationFilename returns an attribute KeyValue conforming to the
+// "artifact.attestation.filename" semantic conventions. It represents the
+// provenance filename of the built attestation which directly relates to the
+// build artifact filename. This filename SHOULD accompany the artifact at
+// publish time. See the [SLSA Relationship] specification for more information.
+//
+// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations
+func ArtifactAttestationFilename(val string) attribute.KeyValue {
+	return ArtifactAttestationFilenameKey.String(val)
+}
+
+// ArtifactAttestationHash returns an attribute KeyValue conforming to the
+// "artifact.attestation.hash" semantic conventions. It represents the full
+// [hash value (see glossary)], of the built attestation. Some envelopes in the
+// [software attestation space] also refer to this as the **digest**.
+//
+// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
+// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec
+func ArtifactAttestationHash(val string) attribute.KeyValue {
+	return ArtifactAttestationHashKey.String(val)
+}
+
+// ArtifactAttestationID returns an attribute KeyValue conforming to the
+// "artifact.attestation.id" semantic conventions. It represents the id of the
+// build [software attestation].
+//
+// [software attestation]: https://slsa.dev/attestation-model
+func ArtifactAttestationID(val string) attribute.KeyValue {
+	return ArtifactAttestationIDKey.String(val)
+}
+
+// ArtifactFilename returns an attribute KeyValue conforming to the
+// "artifact.filename" semantic conventions. It represents the human readable
+// file name of the artifact, typically generated during build and release
+// processes. Often includes the package name and version in the file name.
+func ArtifactFilename(val string) attribute.KeyValue {
+	return ArtifactFilenameKey.String(val)
+}
+
+// ArtifactHash returns an attribute KeyValue conforming to the "artifact.hash"
+// semantic conventions. It represents the full [hash value (see glossary)],
+// often found in checksum.txt on a release of the artifact and used to verify
+// package integrity.
+//
+// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
+func ArtifactHash(val string) attribute.KeyValue {
+	return ArtifactHashKey.String(val)
+}
+
+// ArtifactPurl returns an attribute KeyValue conforming to the "artifact.purl"
+// semantic conventions. It represents the [Package URL] of the
+// [package artifact] provides a standard way to identify and locate the packaged
+// artifact.
+//
+// [Package URL]: https://github.com/package-url/purl-spec
+// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model
+func ArtifactPurl(val string) attribute.KeyValue {
+	return ArtifactPurlKey.String(val)
+}
+
+// ArtifactVersion returns an attribute KeyValue conforming to the
+// "artifact.version" semantic conventions. It represents the version of the
+// artifact.
+func ArtifactVersion(val string) attribute.KeyValue {
+	return ArtifactVersionKey.String(val)
+}
+
+// Namespace: aws
+const (
+	// AWSBedrockGuardrailIDKey is the attribute Key conforming to the
+	// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique
+	// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and
+	// prevent unwanted behavior from model responses or user messages.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "sgi5gkybzqak"
+	//
+	// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html
+	AWSBedrockGuardrailIDKey = attribute.Key("aws.bedrock.guardrail.id")
+
+	// AWSBedrockKnowledgeBaseIDKey is the attribute Key conforming to the
+	// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the
+	// unique identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a
+	// bank of information that can be queried by models to generate more relevant
+	// responses and augment prompts.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "XFWUPB9PAW"
+	//
+	// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html
+	AWSBedrockKnowledgeBaseIDKey = attribute.Key("aws.bedrock.knowledge_base.id")
+
+	// AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to the
+	// "aws.dynamodb.attribute_definitions" semantic conventions. It represents the
+	// JSON-serialized value of each item in the `AttributeDefinitions` request
+	// field.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{ "AttributeName": "string", "AttributeType": "string" }"
+	AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions")
+
+	// AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the
+	// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the
+	// value of the `AttributesToGet` request parameter.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "lives", "id"
+	AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get")
+
+	// AWSDynamoDBConsistentReadKey is the attribute Key conforming to the
+	// "aws.dynamodb.consistent_read" semantic conventions. It represents the value
+	// of the `ConsistentRead` request parameter.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read")
+
+	// AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the
+	// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the
+	// JSON-serialized value of each item in the `ConsumedCapacity` response field.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{ "CapacityUnits": number, "GlobalSecondaryIndexes": { "string" :
+	// { "CapacityUnits": number, "ReadCapacityUnits": number, "WriteCapacityUnits":
+	// number } }, "LocalSecondaryIndexes": { "string" : { "CapacityUnits": number,
+	// "ReadCapacityUnits": number, "WriteCapacityUnits": number } },
+	// "ReadCapacityUnits": number, "Table": { "CapacityUnits": number,
+	// "ReadCapacityUnits": number, "WriteCapacityUnits": number }, "TableName":
+	// "string", "WriteCapacityUnits": number }"
+	AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity")
+
+	// AWSDynamoDBCountKey is the attribute Key conforming to the
+	// "aws.dynamodb.count" semantic conventions. It represents the value of the
+	// `Count` response parameter.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 10
+	AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count")
+
+	// AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the
+	// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the
+	// value of the `ExclusiveStartTableName` request parameter.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Users", "CatsTable"
+	AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table")
+
+	// AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key conforming to
+	// the "aws.dynamodb.global_secondary_index_updates" semantic conventions. It
+	// represents the JSON-serialized value of each item in the
+	// `GlobalSecondaryIndexUpdates` request field.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{ "Create": { "IndexName": "string", "KeySchema": [ {
+	// "AttributeName": "string", "KeyType": "string" } ], "Projection": {
+	// "NonKeyAttributes": [ "string" ], "ProjectionType": "string" },
+	// "ProvisionedThroughput": { "ReadCapacityUnits": number, "WriteCapacityUnits":
+	// number } }"
+	AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates")
+
+	// AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to the
+	// "aws.dynamodb.global_secondary_indexes" semantic conventions. It represents
+	// the JSON-serialized value of each item of the `GlobalSecondaryIndexes`
+	// request field.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{ "IndexName": "string", "KeySchema": [ { "AttributeName":
+	// "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [
+	// "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": {
+	// "ReadCapacityUnits": number, "WriteCapacityUnits": number } }"
+	AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes")
+
+	// AWSDynamoDBIndexNameKey is the attribute Key conforming to the
+	// "aws.dynamodb.index_name" semantic conventions. It represents the value of
+	// the `IndexName` request parameter.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "name_to_group"
+	AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name")
+
+	// AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to the
+	// "aws.dynamodb.item_collection_metrics" semantic conventions. It represents
+	// the JSON-serialized value of the `ItemCollectionMetrics` response field.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{ "string" : [ { "ItemCollectionKey": { "string" : { "B": blob,
+	// "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { "string" :
+	// "AttributeValue" }, "N": "string", "NS": [ "string" ], "NULL": boolean, "S":
+	// "string", "SS": [ "string" ] } }, "SizeEstimateRangeGB": [ number ] } ] }"
+	AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics")
+
+	// AWSDynamoDBLimitKey is the attribute Key conforming to the
+	// "aws.dynamodb.limit" semantic conventions. It represents the value of the
+	// `Limit` request parameter.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 10
+	AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit")
+
+	// AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to the
+	// "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents
+	// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request
+	// field.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{ "IndexArn": "string", "IndexName": "string", "IndexSizeBytes":
+	// number, "ItemCount": number, "KeySchema": [ { "AttributeName": "string",
+	// "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ "string" ],
+	// "ProjectionType": "string" } }"
+	AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes")
+
+	// AWSDynamoDBProjectionKey is the attribute Key conforming to the
+	// "aws.dynamodb.projection" semantic conventions. It represents the value of
+	// the `ProjectionExpression` request parameter.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Title", "Title, Price, Color", "Title, Description, RelatedItems,
+	// ProductReviews"
+	AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection")
+
+	// AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to the
+	// "aws.dynamodb.provisioned_read_capacity" semantic conventions. It represents
+	// the value of the `ProvisionedThroughput.ReadCapacityUnits` request parameter.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0, 2.0
+	AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity")
+
+	// AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming to the
+	// "aws.dynamodb.provisioned_write_capacity" semantic conventions. It represents
+	// the value of the `ProvisionedThroughput.WriteCapacityUnits` request
+	// parameter.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0, 2.0
+	AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity")
+
+	// AWSDynamoDBScanForwardKey is the attribute Key conforming to the
+	// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of
+	// the `ScanIndexForward` request parameter.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward")
+
+	// AWSDynamoDBScannedCountKey is the attribute Key conforming to the
+	// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of
+	// the `ScannedCount` response parameter.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 50
+	AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count")
+
+	// AWSDynamoDBSegmentKey is the attribute Key conforming to the
+	// "aws.dynamodb.segment" semantic conventions. It represents the value of the
+	// `Segment` request parameter.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 10
+	AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment")
+
+	// AWSDynamoDBSelectKey is the attribute Key conforming to the
+	// "aws.dynamodb.select" semantic conventions. It represents the value of the
+	// `Select` request parameter.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ALL_ATTRIBUTES", "COUNT"
+	AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select")
+
+	// AWSDynamoDBTableCountKey is the attribute Key conforming to the
+	// "aws.dynamodb.table_count" semantic conventions. It represents the number of
+	// items in the `TableNames` response parameter.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 20
+	AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count")
+
+	// AWSDynamoDBTableNamesKey is the attribute Key conforming to the
+	// "aws.dynamodb.table_names" semantic conventions. It represents the keys in
+	// the `RequestItems` object field.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Users", "Cats"
+	AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names")
+
+	// AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the
+	// "aws.dynamodb.total_segments" semantic conventions. It represents the value
+	// of the `TotalSegments` request parameter.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 100
+	AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments")
+
+	// AWSECSClusterARNKey is the attribute Key conforming to the
+	// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an
+	// [ECS cluster].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster"
+	//
+	// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html
+	AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn")
+
+	// AWSECSContainerARNKey is the attribute Key conforming to the
+	// "aws.ecs.container.arn" semantic conventions. It represents the Amazon
+	// Resource Name (ARN) of an [ECS container instance].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9"
+	//
+	// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html
+	AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn")
+
+	// AWSECSLaunchtypeKey is the attribute Key conforming to the
+	// "aws.ecs.launchtype" semantic conventions. It represents the [launch type]
+	// for an ECS task.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [launch type]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html
+	AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype")
+
+	// AWSECSTaskARNKey is the attribute Key conforming to the "aws.ecs.task.arn"
+	// semantic conventions. It represents the ARN of a running [ECS task].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b",
+	// "arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd"
+	//
+	// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids
+	AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn")
+
+	// AWSECSTaskFamilyKey is the attribute Key conforming to the
+	// "aws.ecs.task.family" semantic conventions. It represents the family name of
+	// the [ECS task definition] used to create the ECS task.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry-family"
+	//
+	// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html
+	AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family")
+
+	// AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id"
+	// semantic conventions. It represents the ID of a running ECS task. The ID MUST
+	// be extracted from `task.arn`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "10838bed-421f-43ef-870a-f43feacbbb5b",
+	// "23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd"
+	AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id")
+
+	// AWSECSTaskRevisionKey is the attribute Key conforming to the
+	// "aws.ecs.task.revision" semantic conventions. It represents the revision for
+	// the task definition used to create the ECS task.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "8", "26"
+	AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision")
+
+	// AWSEKSClusterARNKey is the attribute Key conforming to the
+	// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS
+	// cluster.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster"
+	AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn")
+
+	// AWSExtendedRequestIDKey is the attribute Key conforming to the
+	// "aws.extended_request_id" semantic conventions. It represents the AWS
+	// extended request ID as returned in the response header `x-amz-id-2`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "wzHcyEWfmOGDIE5QOhTAqFDoDWP3y8IUvpNINCwL9N4TEHbUw0/gZJ+VZTmCNCWR7fezEN3eCiQ="
+	AWSExtendedRequestIDKey = attribute.Key("aws.extended_request_id")
+
+	// AWSKinesisStreamNameKey is the attribute Key conforming to the
+	// "aws.kinesis.stream_name" semantic conventions. It represents the name of the
+	// AWS Kinesis [stream] the request refers to. Corresponds to the
+	// `--stream-name` parameter of the Kinesis [describe-stream] operation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "some-stream-name"
+	//
+	// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html
+	// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html
+	AWSKinesisStreamNameKey = attribute.Key("aws.kinesis.stream_name")
+
+	// AWSLambdaInvokedARNKey is the attribute Key conforming to the
+	// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked
+	// ARN as provided on the `Context` passed to the function (
+	// `Lambda-Runtime-Invoked-Function-Arn` header on the
+	// `/runtime/invocation/next` applicable).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:lambda:us-east-1:123456:function:myfunction:myalias"
+	// Note: This may be different from `cloud.resource_id` if an alias is involved.
+	AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn")
+
+	// AWSLambdaResourceMappingIDKey is the attribute Key conforming to the
+	// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID
+	// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda
+	// function. It's contents are read by Lambda and used to trigger a function.
+	// This isn't available in the lambda execution context or the lambda runtime
+	// environtment. This is going to be populated by the AWS SDK for each language
+	// when that UUID is present. Some of these operations are
+	// Create/Delete/Get/List/Update EventSourceMapping.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "587ad24b-03b9-4413-8202-bbd56b36e5b7"
+	//
+	// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html
+	AWSLambdaResourceMappingIDKey = attribute.Key("aws.lambda.resource_mapping.id")
+
+	// AWSLogGroupARNsKey is the attribute Key conforming to the
+	// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource
+	// Name(s) (ARN) of the AWS log group(s).
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*"
+	// Note: See the [log group ARN format documentation].
+	//
+	// [log group ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format
+	AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns")
+
+	// AWSLogGroupNamesKey is the attribute Key conforming to the
+	// "aws.log.group.names" semantic conventions. It represents the name(s) of the
+	// AWS log group(s) an application is writing to.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/aws/lambda/my-function", "opentelemetry-service"
+	// Note: Multiple log groups must be supported for cases like multi-container
+	// applications, where a single application has sidecar containers, and each
+	// write to their own log group.
+	AWSLogGroupNamesKey = attribute.Key("aws.log.group.names")
+
+	// AWSLogStreamARNsKey is the attribute Key conforming to the
+	// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the
+	// AWS log stream(s).
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b"
+	// Note: See the [log stream ARN format documentation]. One log group can
+	// contain several log streams, so these ARNs necessarily identify both a log
+	// group and a log stream.
+	//
+	// [log stream ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format
+	AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns")
+
+	// AWSLogStreamNamesKey is the attribute Key conforming to the
+	// "aws.log.stream.names" semantic conventions. It represents the name(s) of the
+	// AWS log stream(s) an application is writing to.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "logs/main/10838bed-421f-43ef-870a-f43feacbbb5b"
+	AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names")
+
+	// AWSRequestIDKey is the attribute Key conforming to the "aws.request_id"
+	// semantic conventions. It represents the AWS request ID as returned in the
+	// response headers `x-amzn-requestid`, `x-amzn-request-id` or
+	// `x-amz-request-id`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "79b9da39-b7ae-508a-a6bc-864b2829c622", "C9ER4AJX75574TDJ"
+	AWSRequestIDKey = attribute.Key("aws.request_id")
+
+	// AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket"
+	// semantic conventions. It represents the S3 bucket name the request refers to.
+	// Corresponds to the `--bucket` parameter of the [S3 API] operations.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "some-bucket-name"
+	// Note: The `bucket` attribute is applicable to all S3 operations that
+	// reference a bucket, i.e. that require the bucket name as a mandatory
+	// parameter.
+	// This applies to almost all S3 operations except `list-buckets`.
+	//
+	// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
+	AWSS3BucketKey = attribute.Key("aws.s3.bucket")
+
+	// AWSS3CopySourceKey is the attribute Key conforming to the
+	// "aws.s3.copy_source" semantic conventions. It represents the source object
+	// (in the form `bucket`/`key`) for the copy operation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "someFile.yml"
+	// Note: The `copy_source` attribute applies to S3 copy operations and
+	// corresponds to the `--copy-source` parameter
+	// of the [copy-object operation within the S3 API].
+	// This applies in particular to the following operations:
+	//
+	//   - [copy-object]
+	//   - [upload-part-copy]
+	//
+	//
+	// [copy-object operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html
+	// [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html
+	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
+	AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source")
+
+	// AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete"
+	// semantic conventions. It represents the delete request container that
+	// specifies the objects to be deleted.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "Objects=[{Key=string,VersionId=string},{Key=string,VersionId=string}],Quiet=boolean"
+	// Note: The `delete` attribute is only applicable to the [delete-object]
+	// operation.
+	// The `delete` attribute corresponds to the `--delete` parameter of the
+	// [delete-objects operation within the S3 API].
+	//
+	// [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html
+	// [delete-objects operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html
+	AWSS3DeleteKey = attribute.Key("aws.s3.delete")
+
+	// AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic
+	// conventions. It represents the S3 object key the request refers to.
+	// Corresponds to the `--key` parameter of the [S3 API] operations.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "someFile.yml"
+	// Note: The `key` attribute is applicable to all object-related S3 operations,
+	// i.e. that require the object key as a mandatory parameter.
+	// This applies in particular to the following operations:
+	//
+	//   - [copy-object]
+	//   - [delete-object]
+	//   - [get-object]
+	//   - [head-object]
+	//   - [put-object]
+	//   - [restore-object]
+	//   - [select-object-content]
+	//   - [abort-multipart-upload]
+	//   - [complete-multipart-upload]
+	//   - [create-multipart-upload]
+	//   - [list-parts]
+	//   - [upload-part]
+	//   - [upload-part-copy]
+	//
+	//
+	// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
+	// [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html
+	// [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html
+	// [get-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html
+	// [head-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html
+	// [put-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html
+	// [restore-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html
+	// [select-object-content]: https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html
+	// [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html
+	// [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html
+	// [create-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html
+	// [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html
+	// [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
+	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
+	AWSS3KeyKey = attribute.Key("aws.s3.key")
+
+	// AWSS3PartNumberKey is the attribute Key conforming to the
+	// "aws.s3.part_number" semantic conventions. It represents the part number of
+	// the part being uploaded in a multipart-upload operation. This is a positive
+	// integer between 1 and 10,000.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 3456
+	// Note: The `part_number` attribute is only applicable to the [upload-part]
+	// and [upload-part-copy] operations.
+	// The `part_number` attribute corresponds to the `--part-number` parameter of
+	// the
+	// [upload-part operation within the S3 API].
+	//
+	// [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
+	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
+	// [upload-part operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
+	AWSS3PartNumberKey = attribute.Key("aws.s3.part_number")
+
+	// AWSS3UploadIDKey is the attribute Key conforming to the "aws.s3.upload_id"
+	// semantic conventions. It represents the upload ID that identifies the
+	// multipart upload.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ"
+	// Note: The `upload_id` attribute applies to S3 multipart-upload operations and
+	// corresponds to the `--upload-id` parameter
+	// of the [S3 API] multipart operations.
+	// This applies in particular to the following operations:
+	//
+	//   - [abort-multipart-upload]
+	//   - [complete-multipart-upload]
+	//   - [list-parts]
+	//   - [upload-part]
+	//   - [upload-part-copy]
+	//
+	//
+	// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
+	// [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html
+	// [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html
+	// [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html
+	// [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html
+	// [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html
+	AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id")
+
+	// AWSSecretsmanagerSecretARNKey is the attribute Key conforming to the
+	// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN
+	// of the Secret stored in the Secrets Mangger.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "arn:aws:secretsmanager:us-east-1:123456789012:secret:SecretName-6RandomCharacters"
+	AWSSecretsmanagerSecretARNKey = attribute.Key("aws.secretsmanager.secret.arn")
+
+	// AWSSNSTopicARNKey is the attribute Key conforming to the "aws.sns.topic.arn"
+	// semantic conventions. It represents the ARN of the AWS SNS Topic. An Amazon
+	// SNS [topic] is a logical access point that acts as a communication channel.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:sns:us-east-1:123456789012:mystack-mytopic-NZJ5JSMVGFIE"
+	//
+	// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html
+	AWSSNSTopicARNKey = attribute.Key("aws.sns.topic.arn")
+
+	// AWSSQSQueueURLKey is the attribute Key conforming to the "aws.sqs.queue.url"
+	// semantic conventions. It represents the URL of the AWS SQS Queue. It's a
+	// unique identifier for a queue in Amazon Simple Queue Service (SQS) and is
+	// used to access the queue and perform actions on it.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "https://sqs.us-east-1.amazonaws.com/123456789012/MyQueue"
+	AWSSQSQueueURLKey = attribute.Key("aws.sqs.queue.url")
+
+	// AWSStepFunctionsActivityARNKey is the attribute Key conforming to the
+	// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN
+	// of the AWS Step Functions Activity.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:states:us-east-1:123456789012:activity:get-greeting"
+	AWSStepFunctionsActivityARNKey = attribute.Key("aws.step_functions.activity.arn")
+
+	// AWSStepFunctionsStateMachineARNKey is the attribute Key conforming to the
+	// "aws.step_functions.state_machine.arn" semantic conventions. It represents
+	// the ARN of the AWS Step Functions State Machine.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "arn:aws:states:us-east-1:123456789012:stateMachine:myStateMachine:1"
+	AWSStepFunctionsStateMachineARNKey = attribute.Key("aws.step_functions.state_machine.arn")
+)
+
+// AWSBedrockGuardrailID returns an attribute KeyValue conforming to the
+// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique
+// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and
+// prevent unwanted behavior from model responses or user messages.
+//
+// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html
+func AWSBedrockGuardrailID(val string) attribute.KeyValue {
+	return AWSBedrockGuardrailIDKey.String(val)
+}
+
+// AWSBedrockKnowledgeBaseID returns an attribute KeyValue conforming to the
+// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the unique
+// identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a bank of
+// information that can be queried by models to generate more relevant responses
+// and augment prompts.
+//
+// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html
+func AWSBedrockKnowledgeBaseID(val string) attribute.KeyValue {
+	return AWSBedrockKnowledgeBaseIDKey.String(val)
+}
+
+// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming to
+// the "aws.dynamodb.attribute_definitions" semantic conventions. It represents
+// the JSON-serialized value of each item in the `AttributeDefinitions` request
+// field.
+func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue {
+	return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val)
+}
+
+// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to the
+// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the value
+// of the `AttributesToGet` request parameter.
+func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue {
+	return AWSDynamoDBAttributesToGetKey.StringSlice(val)
+}
+
+// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the
+// "aws.dynamodb.consistent_read" semantic conventions. It represents the value
+// of the `ConsistentRead` request parameter.
+func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue {
+	return AWSDynamoDBConsistentReadKey.Bool(val)
+}
+
+// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to the
+// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the
+// JSON-serialized value of each item in the `ConsumedCapacity` response field.
+func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue {
+	return AWSDynamoDBConsumedCapacityKey.StringSlice(val)
+}
+
+// AWSDynamoDBCount returns an attribute KeyValue conforming to the
+// "aws.dynamodb.count" semantic conventions. It represents the value of the
+// `Count` response parameter.
+func AWSDynamoDBCount(val int) attribute.KeyValue {
+	return AWSDynamoDBCountKey.Int(val)
+}
+
+// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming to the
+// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the
+// value of the `ExclusiveStartTableName` request parameter.
+func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue {
+	return AWSDynamoDBExclusiveStartTableKey.String(val)
+}
+
+// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue
+// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic
+// conventions. It represents the JSON-serialized value of each item in the
+// `GlobalSecondaryIndexUpdates` request field.
+func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue {
+	return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val)
+}
+
+// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue conforming to
+// the "aws.dynamodb.global_secondary_indexes" semantic conventions. It
+// represents the JSON-serialized value of each item of the
+// `GlobalSecondaryIndexes` request field.
+func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue {
+	return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val)
+}
+
+// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the
+// "aws.dynamodb.index_name" semantic conventions. It represents the value of the
+// `IndexName` request parameter.
+func AWSDynamoDBIndexName(val string) attribute.KeyValue {
+	return AWSDynamoDBIndexNameKey.String(val)
+}
+
+// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming to
+// the "aws.dynamodb.item_collection_metrics" semantic conventions. It represents
+// the JSON-serialized value of the `ItemCollectionMetrics` response field.
+func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue {
+	return AWSDynamoDBItemCollectionMetricsKey.String(val)
+}
+
+// AWSDynamoDBLimit returns an attribute KeyValue conforming to the
+// "aws.dynamodb.limit" semantic conventions. It represents the value of the
+// `Limit` request parameter.
+func AWSDynamoDBLimit(val int) attribute.KeyValue {
+	return AWSDynamoDBLimitKey.Int(val)
+}
+
+// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming to
+// the "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents
+// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request
+// field.
+func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue {
+	return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val)
+}
+
+// AWSDynamoDBProjection returns an attribute KeyValue conforming to the
+// "aws.dynamodb.projection" semantic conventions. It represents the value of the
+// `ProjectionExpression` request parameter.
+func AWSDynamoDBProjection(val string) attribute.KeyValue {
+	return AWSDynamoDBProjectionKey.String(val)
+}
+
+// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue conforming to
+// the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It
+// represents the value of the `ProvisionedThroughput.ReadCapacityUnits` request
+// parameter.
+func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue {
+	return AWSDynamoDBProvisionedReadCapacityKey.Float64(val)
+}
+
+// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue conforming
+// to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. It
+// represents the value of the `ProvisionedThroughput.WriteCapacityUnits` request
+// parameter.
+func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue {
+	return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val)
+}
+
+// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the
+// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of
+// the `ScanIndexForward` request parameter.
+func AWSDynamoDBScanForward(val bool) attribute.KeyValue {
+	return AWSDynamoDBScanForwardKey.Bool(val)
+}
+
+// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the
+// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of
+// the `ScannedCount` response parameter.
+func AWSDynamoDBScannedCount(val int) attribute.KeyValue {
+	return AWSDynamoDBScannedCountKey.Int(val)
+}
+
+// AWSDynamoDBSegment returns an attribute KeyValue conforming to the
+// "aws.dynamodb.segment" semantic conventions. It represents the value of the
+// `Segment` request parameter.
+func AWSDynamoDBSegment(val int) attribute.KeyValue {
+	return AWSDynamoDBSegmentKey.Int(val)
+}
+
+// AWSDynamoDBSelect returns an attribute KeyValue conforming to the
+// "aws.dynamodb.select" semantic conventions. It represents the value of the
+// `Select` request parameter.
+func AWSDynamoDBSelect(val string) attribute.KeyValue {
+	return AWSDynamoDBSelectKey.String(val)
+}
+
+// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the
+// "aws.dynamodb.table_count" semantic conventions. It represents the number of
+// items in the `TableNames` response parameter.
+func AWSDynamoDBTableCount(val int) attribute.KeyValue {
+	return AWSDynamoDBTableCountKey.Int(val)
+}
+
+// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the
+// "aws.dynamodb.table_names" semantic conventions. It represents the keys in the
+// `RequestItems` object field.
+func AWSDynamoDBTableNames(val ...string) attribute.KeyValue {
+	return AWSDynamoDBTableNamesKey.StringSlice(val)
+}
+
+// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the
+// "aws.dynamodb.total_segments" semantic conventions. It represents the value of
+// the `TotalSegments` request parameter.
+func AWSDynamoDBTotalSegments(val int) attribute.KeyValue {
+	return AWSDynamoDBTotalSegmentsKey.Int(val)
+}
+
+// AWSECSClusterARN returns an attribute KeyValue conforming to the
+// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an
+// [ECS cluster].
+//
+// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html
+func AWSECSClusterARN(val string) attribute.KeyValue {
+	return AWSECSClusterARNKey.String(val)
+}
+
+// AWSECSContainerARN returns an attribute KeyValue conforming to the
+// "aws.ecs.container.arn" semantic conventions. It represents the Amazon
+// Resource Name (ARN) of an [ECS container instance].
+//
+// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html
+func AWSECSContainerARN(val string) attribute.KeyValue {
+	return AWSECSContainerARNKey.String(val)
+}
+
+// AWSECSTaskARN returns an attribute KeyValue conforming to the
+// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running
+// [ECS task].
+//
+// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids
+func AWSECSTaskARN(val string) attribute.KeyValue {
+	return AWSECSTaskARNKey.String(val)
+}
+
+// AWSECSTaskFamily returns an attribute KeyValue conforming to the
+// "aws.ecs.task.family" semantic conventions. It represents the family name of
+// the [ECS task definition] used to create the ECS task.
+//
+// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html
+func AWSECSTaskFamily(val string) attribute.KeyValue {
+	return AWSECSTaskFamilyKey.String(val)
+}
+
+// AWSECSTaskID returns an attribute KeyValue conforming to the "aws.ecs.task.id"
+// semantic conventions. It represents the ID of a running ECS task. The ID MUST
+// be extracted from `task.arn`.
+func AWSECSTaskID(val string) attribute.KeyValue {
+	return AWSECSTaskIDKey.String(val)
+}
+
+// AWSECSTaskRevision returns an attribute KeyValue conforming to the
+// "aws.ecs.task.revision" semantic conventions. It represents the revision for
+// the task definition used to create the ECS task.
+func AWSECSTaskRevision(val string) attribute.KeyValue {
+	return AWSECSTaskRevisionKey.String(val)
+}
+
+// AWSEKSClusterARN returns an attribute KeyValue conforming to the
+// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS
+// cluster.
+func AWSEKSClusterARN(val string) attribute.KeyValue {
+	return AWSEKSClusterARNKey.String(val)
+}
+
+// AWSExtendedRequestID returns an attribute KeyValue conforming to the
+// "aws.extended_request_id" semantic conventions. It represents the AWS extended
+// request ID as returned in the response header `x-amz-id-2`.
+func AWSExtendedRequestID(val string) attribute.KeyValue {
+	return AWSExtendedRequestIDKey.String(val)
+}
+
+// AWSKinesisStreamName returns an attribute KeyValue conforming to the
+// "aws.kinesis.stream_name" semantic conventions. It represents the name of the
+// AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name`
+//  parameter of the Kinesis [describe-stream] operation.
+//
+// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html
+// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html
+func AWSKinesisStreamName(val string) attribute.KeyValue {
+	return AWSKinesisStreamNameKey.String(val)
+}
+
+// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the
+// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked
+// ARN as provided on the `Context` passed to the function (
+// `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next`
+//  applicable).
+func AWSLambdaInvokedARN(val string) attribute.KeyValue {
+	return AWSLambdaInvokedARNKey.String(val)
+}
+
+// AWSLambdaResourceMappingID returns an attribute KeyValue conforming to the
+// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID
+// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda
+// function. It's contents are read by Lambda and used to trigger a function.
+// This isn't available in the lambda execution context or the lambda runtime
+// environtment. This is going to be populated by the AWS SDK for each language
+// when that UUID is present. Some of these operations are
+// Create/Delete/Get/List/Update EventSourceMapping.
+//
+// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html
+func AWSLambdaResourceMappingID(val string) attribute.KeyValue {
+	return AWSLambdaResourceMappingIDKey.String(val)
+}
+
+// AWSLogGroupARNs returns an attribute KeyValue conforming to the
+// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource
+// Name(s) (ARN) of the AWS log group(s).
+func AWSLogGroupARNs(val ...string) attribute.KeyValue {
+	return AWSLogGroupARNsKey.StringSlice(val)
+}
+
+// AWSLogGroupNames returns an attribute KeyValue conforming to the
+// "aws.log.group.names" semantic conventions. It represents the name(s) of the
+// AWS log group(s) an application is writing to.
+func AWSLogGroupNames(val ...string) attribute.KeyValue {
+	return AWSLogGroupNamesKey.StringSlice(val)
+}
+
+// AWSLogStreamARNs returns an attribute KeyValue conforming to the
+// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the
+// AWS log stream(s).
+func AWSLogStreamARNs(val ...string) attribute.KeyValue {
+	return AWSLogStreamARNsKey.StringSlice(val)
+}
+
+// AWSLogStreamNames returns an attribute KeyValue conforming to the
+// "aws.log.stream.names" semantic conventions. It represents the name(s) of the
+// AWS log stream(s) an application is writing to.
+func AWSLogStreamNames(val ...string) attribute.KeyValue {
+	return AWSLogStreamNamesKey.StringSlice(val)
+}
+
+// AWSRequestID returns an attribute KeyValue conforming to the "aws.request_id"
+// semantic conventions. It represents the AWS request ID as returned in the
+// response headers `x-amzn-requestid`, `x-amzn-request-id` or `x-amz-request-id`
+// .
+func AWSRequestID(val string) attribute.KeyValue {
+	return AWSRequestIDKey.String(val)
+}
+
+// AWSS3Bucket returns an attribute KeyValue conforming to the "aws.s3.bucket"
+// semantic conventions. It represents the S3 bucket name the request refers to.
+// Corresponds to the `--bucket` parameter of the [S3 API] operations.
+//
+// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
+func AWSS3Bucket(val string) attribute.KeyValue {
+	return AWSS3BucketKey.String(val)
+}
+
+// AWSS3CopySource returns an attribute KeyValue conforming to the
+// "aws.s3.copy_source" semantic conventions. It represents the source object (in
+// the form `bucket`/`key`) for the copy operation.
+func AWSS3CopySource(val string) attribute.KeyValue {
+	return AWSS3CopySourceKey.String(val)
+}
+
+// AWSS3Delete returns an attribute KeyValue conforming to the "aws.s3.delete"
+// semantic conventions. It represents the delete request container that
+// specifies the objects to be deleted.
+func AWSS3Delete(val string) attribute.KeyValue {
+	return AWSS3DeleteKey.String(val)
+}
+
+// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" semantic
+// conventions. It represents the S3 object key the request refers to.
+// Corresponds to the `--key` parameter of the [S3 API] operations.
+//
+// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html
+func AWSS3Key(val string) attribute.KeyValue {
+	return AWSS3KeyKey.String(val)
+}
+
+// AWSS3PartNumber returns an attribute KeyValue conforming to the
+// "aws.s3.part_number" semantic conventions. It represents the part number of
+// the part being uploaded in a multipart-upload operation. This is a positive
+// integer between 1 and 10,000.
+func AWSS3PartNumber(val int) attribute.KeyValue {
+	return AWSS3PartNumberKey.Int(val)
+}
+
+// AWSS3UploadID returns an attribute KeyValue conforming to the
+// "aws.s3.upload_id" semantic conventions. It represents the upload ID that
+// identifies the multipart upload.
+func AWSS3UploadID(val string) attribute.KeyValue {
+	return AWSS3UploadIDKey.String(val)
+}
+
+// AWSSecretsmanagerSecretARN returns an attribute KeyValue conforming to the
+// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN of
+// the Secret stored in the Secrets Mangger.
+func AWSSecretsmanagerSecretARN(val string) attribute.KeyValue {
+	return AWSSecretsmanagerSecretARNKey.String(val)
+}
+
+// AWSSNSTopicARN returns an attribute KeyValue conforming to the
+// "aws.sns.topic.arn" semantic conventions. It represents the ARN of the AWS SNS
+// Topic. An Amazon SNS [topic] is a logical access point that acts as a
+// communication channel.
+//
+// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html
+func AWSSNSTopicARN(val string) attribute.KeyValue {
+	return AWSSNSTopicARNKey.String(val)
+}
+
+// AWSSQSQueueURL returns an attribute KeyValue conforming to the
+// "aws.sqs.queue.url" semantic conventions. It represents the URL of the AWS SQS
+// Queue. It's a unique identifier for a queue in Amazon Simple Queue Service
+// (SQS) and is used to access the queue and perform actions on it.
+func AWSSQSQueueURL(val string) attribute.KeyValue {
+	return AWSSQSQueueURLKey.String(val)
+}
+
+// AWSStepFunctionsActivityARN returns an attribute KeyValue conforming to the
+// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN
+// of the AWS Step Functions Activity.
+func AWSStepFunctionsActivityARN(val string) attribute.KeyValue {
+	return AWSStepFunctionsActivityARNKey.String(val)
+}
+
+// AWSStepFunctionsStateMachineARN returns an attribute KeyValue conforming to
+// the "aws.step_functions.state_machine.arn" semantic conventions. It represents
+// the ARN of the AWS Step Functions State Machine.
+func AWSStepFunctionsStateMachineARN(val string) attribute.KeyValue {
+	return AWSStepFunctionsStateMachineARNKey.String(val)
+}
+
+// Enum values for aws.ecs.launchtype
+var (
+	// Amazon EC2
+	// Stability: development
+	AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2")
+	// Amazon Fargate
+	// Stability: development
+	AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate")
+)
+
+// Namespace: azure
+const (
+	// AzureClientIDKey is the attribute Key conforming to the "azure.client.id"
+	// semantic conventions. It represents the unique identifier of the client
+	// instance.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "3ba4827d-4422-483f-b59f-85b74211c11d", "storage-client-1"
+	AzureClientIDKey = attribute.Key("azure.client.id")
+
+	// AzureCosmosDBConnectionModeKey is the attribute Key conforming to the
+	// "azure.cosmosdb.connection.mode" semantic conventions. It represents the
+	// cosmos client connection mode.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	AzureCosmosDBConnectionModeKey = attribute.Key("azure.cosmosdb.connection.mode")
+
+	// AzureCosmosDBConsistencyLevelKey is the attribute Key conforming to the
+	// "azure.cosmosdb.consistency.level" semantic conventions. It represents the
+	// account or request [consistency level].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Eventual", "ConsistentPrefix", "BoundedStaleness", "Strong",
+	// "Session"
+	//
+	// [consistency level]: https://learn.microsoft.com/azure/cosmos-db/consistency-levels
+	AzureCosmosDBConsistencyLevelKey = attribute.Key("azure.cosmosdb.consistency.level")
+
+	// AzureCosmosDBOperationContactedRegionsKey is the attribute Key conforming to
+	// the "azure.cosmosdb.operation.contacted_regions" semantic conventions. It
+	// represents the list of regions contacted during operation in the order that
+	// they were contacted. If there is more than one region listed, it indicates
+	// that the operation was performed on multiple regions i.e. cross-regional
+	// call.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "North Central US", "Australia East", "Australia Southeast"
+	// Note: Region name matches the format of `displayName` in [Azure Location API]
+	//
+	// [Azure Location API]: https://learn.microsoft.com/rest/api/resources/subscriptions/list-locations
+	AzureCosmosDBOperationContactedRegionsKey = attribute.Key("azure.cosmosdb.operation.contacted_regions")
+
+	// AzureCosmosDBOperationRequestChargeKey is the attribute Key conforming to the
+	// "azure.cosmosdb.operation.request_charge" semantic conventions. It represents
+	// the number of request units consumed by the operation.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 46.18, 1.0
+	AzureCosmosDBOperationRequestChargeKey = attribute.Key("azure.cosmosdb.operation.request_charge")
+
+	// AzureCosmosDBRequestBodySizeKey is the attribute Key conforming to the
+	// "azure.cosmosdb.request.body.size" semantic conventions. It represents the
+	// request payload size in bytes.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	AzureCosmosDBRequestBodySizeKey = attribute.Key("azure.cosmosdb.request.body.size")
+
+	// AzureCosmosDBResponseSubStatusCodeKey is the attribute Key conforming to the
+	// "azure.cosmosdb.response.sub_status_code" semantic conventions. It represents
+	// the cosmos DB sub status code.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1000, 1002
+	AzureCosmosDBResponseSubStatusCodeKey = attribute.Key("azure.cosmosdb.response.sub_status_code")
+
+	// AzureResourceProviderNamespaceKey is the attribute Key conforming to the
+	// "azure.resource_provider.namespace" semantic conventions. It represents the
+	// [Azure Resource Provider Namespace] as recognized by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Microsoft.Storage", "Microsoft.KeyVault", "Microsoft.ServiceBus"
+	//
+	// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers
+	AzureResourceProviderNamespaceKey = attribute.Key("azure.resource_provider.namespace")
+
+	// AzureServiceRequestIDKey is the attribute Key conforming to the
+	// "azure.service.request.id" semantic conventions. It represents the unique
+	// identifier of the service request. It's generated by the Azure service and
+	// returned with the response.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "00000000-0000-0000-0000-000000000000"
+	AzureServiceRequestIDKey = attribute.Key("azure.service.request.id")
+)
+
+// AzureClientID returns an attribute KeyValue conforming to the
+// "azure.client.id" semantic conventions. It represents the unique identifier of
+// the client instance.
+func AzureClientID(val string) attribute.KeyValue {
+	return AzureClientIDKey.String(val)
+}
+
+// AzureCosmosDBOperationContactedRegions returns an attribute KeyValue
+// conforming to the "azure.cosmosdb.operation.contacted_regions" semantic
+// conventions. It represents the list of regions contacted during operation in
+// the order that they were contacted. If there is more than one region listed,
+// it indicates that the operation was performed on multiple regions i.e.
+// cross-regional call.
+func AzureCosmosDBOperationContactedRegions(val ...string) attribute.KeyValue {
+	return AzureCosmosDBOperationContactedRegionsKey.StringSlice(val)
+}
+
+// AzureCosmosDBOperationRequestCharge returns an attribute KeyValue conforming
+// to the "azure.cosmosdb.operation.request_charge" semantic conventions. It
+// represents the number of request units consumed by the operation.
+func AzureCosmosDBOperationRequestCharge(val float64) attribute.KeyValue {
+	return AzureCosmosDBOperationRequestChargeKey.Float64(val)
+}
+
+// AzureCosmosDBRequestBodySize returns an attribute KeyValue conforming to the
+// "azure.cosmosdb.request.body.size" semantic conventions. It represents the
+// request payload size in bytes.
+func AzureCosmosDBRequestBodySize(val int) attribute.KeyValue {
+	return AzureCosmosDBRequestBodySizeKey.Int(val)
+}
+
+// AzureCosmosDBResponseSubStatusCode returns an attribute KeyValue conforming to
+// the "azure.cosmosdb.response.sub_status_code" semantic conventions. It
+// represents the cosmos DB sub status code.
+func AzureCosmosDBResponseSubStatusCode(val int) attribute.KeyValue {
+	return AzureCosmosDBResponseSubStatusCodeKey.Int(val)
+}
+
+// AzureResourceProviderNamespace returns an attribute KeyValue conforming to the
+// "azure.resource_provider.namespace" semantic conventions. It represents the
+// [Azure Resource Provider Namespace] as recognized by the client.
+//
+// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers
+func AzureResourceProviderNamespace(val string) attribute.KeyValue {
+	return AzureResourceProviderNamespaceKey.String(val)
+}
+
+// AzureServiceRequestID returns an attribute KeyValue conforming to the
+// "azure.service.request.id" semantic conventions. It represents the unique
+// identifier of the service request. It's generated by the Azure service and
+// returned with the response.
+func AzureServiceRequestID(val string) attribute.KeyValue {
+	return AzureServiceRequestIDKey.String(val)
+}
+
+// Enum values for azure.cosmosdb.connection.mode
+var (
+	// Gateway (HTTP) connection.
+	// Stability: development
+	AzureCosmosDBConnectionModeGateway = AzureCosmosDBConnectionModeKey.String("gateway")
+	// Direct connection.
+	// Stability: development
+	AzureCosmosDBConnectionModeDirect = AzureCosmosDBConnectionModeKey.String("direct")
+)
+
+// Enum values for azure.cosmosdb.consistency.level
+var (
+	// Strong
+	// Stability: development
+	AzureCosmosDBConsistencyLevelStrong = AzureCosmosDBConsistencyLevelKey.String("Strong")
+	// Bounded Staleness
+	// Stability: development
+	AzureCosmosDBConsistencyLevelBoundedStaleness = AzureCosmosDBConsistencyLevelKey.String("BoundedStaleness")
+	// Session
+	// Stability: development
+	AzureCosmosDBConsistencyLevelSession = AzureCosmosDBConsistencyLevelKey.String("Session")
+	// Eventual
+	// Stability: development
+	AzureCosmosDBConsistencyLevelEventual = AzureCosmosDBConsistencyLevelKey.String("Eventual")
+	// Consistent Prefix
+	// Stability: development
+	AzureCosmosDBConsistencyLevelConsistentPrefix = AzureCosmosDBConsistencyLevelKey.String("ConsistentPrefix")
+)
+
+// Namespace: browser
+const (
+	// BrowserBrandsKey is the attribute Key conforming to the "browser.brands"
+	// semantic conventions. It represents the array of brand name and version
+	// separated by a space.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: " Not A;Brand 99", "Chromium 99", "Chrome 99"
+	// Note: This value is intended to be taken from the [UA client hints API] (
+	// `navigator.userAgentData.brands`).
+	//
+	// [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface
+	BrowserBrandsKey = attribute.Key("browser.brands")
+
+	// BrowserLanguageKey is the attribute Key conforming to the "browser.language"
+	// semantic conventions. It represents the preferred language of the user using
+	// the browser.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "en", "en-US", "fr", "fr-FR"
+	// Note: This value is intended to be taken from the Navigator API
+	// `navigator.language`.
+	BrowserLanguageKey = attribute.Key("browser.language")
+
+	// BrowserMobileKey is the attribute Key conforming to the "browser.mobile"
+	// semantic conventions. It represents a boolean that is true if the browser is
+	// running on a mobile device.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: This value is intended to be taken from the [UA client hints API] (
+	// `navigator.userAgentData.mobile`). If unavailable, this attribute SHOULD be
+	// left unset.
+	//
+	// [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface
+	BrowserMobileKey = attribute.Key("browser.mobile")
+
+	// BrowserPlatformKey is the attribute Key conforming to the "browser.platform"
+	// semantic conventions. It represents the platform on which the browser is
+	// running.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Windows", "macOS", "Android"
+	// Note: This value is intended to be taken from the [UA client hints API] (
+	// `navigator.userAgentData.platform`). If unavailable, the legacy
+	// `navigator.platform` API SHOULD NOT be used instead and this attribute SHOULD
+	// be left unset in order for the values to be consistent.
+	// The list of possible values is defined in the
+	// [W3C User-Agent Client Hints specification]. Note that some (but not all) of
+	// these values can overlap with values in the
+	// [`os.type` and `os.name` attributes]. However, for consistency, the values in
+	// the `browser.platform` attribute should capture the exact value that the user
+	// agent provides.
+	//
+	// [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface
+	// [W3C User-Agent Client Hints specification]: https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform
+	// [`os.type` and `os.name` attributes]: ./os.md
+	BrowserPlatformKey = attribute.Key("browser.platform")
+)
+
+// BrowserBrands returns an attribute KeyValue conforming to the "browser.brands"
+// semantic conventions. It represents the array of brand name and version
+// separated by a space.
+func BrowserBrands(val ...string) attribute.KeyValue {
+	return BrowserBrandsKey.StringSlice(val)
+}
+
+// BrowserLanguage returns an attribute KeyValue conforming to the
+// "browser.language" semantic conventions. It represents the preferred language
+// of the user using the browser.
+func BrowserLanguage(val string) attribute.KeyValue {
+	return BrowserLanguageKey.String(val)
+}
+
+// BrowserMobile returns an attribute KeyValue conforming to the "browser.mobile"
+// semantic conventions. It represents a boolean that is true if the browser is
+// running on a mobile device.
+func BrowserMobile(val bool) attribute.KeyValue {
+	return BrowserMobileKey.Bool(val)
+}
+
+// BrowserPlatform returns an attribute KeyValue conforming to the
+// "browser.platform" semantic conventions. It represents the platform on which
+// the browser is running.
+func BrowserPlatform(val string) attribute.KeyValue {
+	return BrowserPlatformKey.String(val)
+}
+
+// Namespace: cassandra
+const (
+	// CassandraConsistencyLevelKey is the attribute Key conforming to the
+	// "cassandra.consistency.level" semantic conventions. It represents the
+	// consistency level of the query. Based on consistency values from [CQL].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [CQL]: https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html
+	CassandraConsistencyLevelKey = attribute.Key("cassandra.consistency.level")
+
+	// CassandraCoordinatorDCKey is the attribute Key conforming to the
+	// "cassandra.coordinator.dc" semantic conventions. It represents the data
+	// center of the coordinating node for a query.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: us-west-2
+	CassandraCoordinatorDCKey = attribute.Key("cassandra.coordinator.dc")
+
+	// CassandraCoordinatorIDKey is the attribute Key conforming to the
+	// "cassandra.coordinator.id" semantic conventions. It represents the ID of the
+	// coordinating node for a query.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: be13faa2-8574-4d71-926d-27f16cf8a7af
+	CassandraCoordinatorIDKey = attribute.Key("cassandra.coordinator.id")
+
+	// CassandraPageSizeKey is the attribute Key conforming to the
+	// "cassandra.page.size" semantic conventions. It represents the fetch size used
+	// for paging, i.e. how many rows will be returned at once.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 5000
+	CassandraPageSizeKey = attribute.Key("cassandra.page.size")
+
+	// CassandraQueryIdempotentKey is the attribute Key conforming to the
+	// "cassandra.query.idempotent" semantic conventions. It represents the whether
+	// or not the query is idempotent.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	CassandraQueryIdempotentKey = attribute.Key("cassandra.query.idempotent")
+
+	// CassandraSpeculativeExecutionCountKey is the attribute Key conforming to the
+	// "cassandra.speculative_execution.count" semantic conventions. It represents
+	// the number of times a query was speculatively executed. Not set or `0` if the
+	// query was not executed speculatively.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0, 2
+	CassandraSpeculativeExecutionCountKey = attribute.Key("cassandra.speculative_execution.count")
+)
+
+// CassandraCoordinatorDC returns an attribute KeyValue conforming to the
+// "cassandra.coordinator.dc" semantic conventions. It represents the data center
+// of the coordinating node for a query.
+func CassandraCoordinatorDC(val string) attribute.KeyValue {
+	return CassandraCoordinatorDCKey.String(val)
+}
+
+// CassandraCoordinatorID returns an attribute KeyValue conforming to the
+// "cassandra.coordinator.id" semantic conventions. It represents the ID of the
+// coordinating node for a query.
+func CassandraCoordinatorID(val string) attribute.KeyValue {
+	return CassandraCoordinatorIDKey.String(val)
+}
+
+// CassandraPageSize returns an attribute KeyValue conforming to the
+// "cassandra.page.size" semantic conventions. It represents the fetch size used
+// for paging, i.e. how many rows will be returned at once.
+func CassandraPageSize(val int) attribute.KeyValue {
+	return CassandraPageSizeKey.Int(val)
+}
+
+// CassandraQueryIdempotent returns an attribute KeyValue conforming to the
+// "cassandra.query.idempotent" semantic conventions. It represents the whether
+// or not the query is idempotent.
+func CassandraQueryIdempotent(val bool) attribute.KeyValue {
+	return CassandraQueryIdempotentKey.Bool(val)
+}
+
+// CassandraSpeculativeExecutionCount returns an attribute KeyValue conforming to
+// the "cassandra.speculative_execution.count" semantic conventions. It
+// represents the number of times a query was speculatively executed. Not set or
+// `0` if the query was not executed speculatively.
+func CassandraSpeculativeExecutionCount(val int) attribute.KeyValue {
+	return CassandraSpeculativeExecutionCountKey.Int(val)
+}
+
+// Enum values for cassandra.consistency.level
+var (
+	// All
+	// Stability: development
+	CassandraConsistencyLevelAll = CassandraConsistencyLevelKey.String("all")
+	// Each Quorum
+	// Stability: development
+	CassandraConsistencyLevelEachQuorum = CassandraConsistencyLevelKey.String("each_quorum")
+	// Quorum
+	// Stability: development
+	CassandraConsistencyLevelQuorum = CassandraConsistencyLevelKey.String("quorum")
+	// Local Quorum
+	// Stability: development
+	CassandraConsistencyLevelLocalQuorum = CassandraConsistencyLevelKey.String("local_quorum")
+	// One
+	// Stability: development
+	CassandraConsistencyLevelOne = CassandraConsistencyLevelKey.String("one")
+	// Two
+	// Stability: development
+	CassandraConsistencyLevelTwo = CassandraConsistencyLevelKey.String("two")
+	// Three
+	// Stability: development
+	CassandraConsistencyLevelThree = CassandraConsistencyLevelKey.String("three")
+	// Local One
+	// Stability: development
+	CassandraConsistencyLevelLocalOne = CassandraConsistencyLevelKey.String("local_one")
+	// Any
+	// Stability: development
+	CassandraConsistencyLevelAny = CassandraConsistencyLevelKey.String("any")
+	// Serial
+	// Stability: development
+	CassandraConsistencyLevelSerial = CassandraConsistencyLevelKey.String("serial")
+	// Local Serial
+	// Stability: development
+	CassandraConsistencyLevelLocalSerial = CassandraConsistencyLevelKey.String("local_serial")
+)
+
+// Namespace: cicd
+const (
+	// CICDPipelineActionNameKey is the attribute Key conforming to the
+	// "cicd.pipeline.action.name" semantic conventions. It represents the kind of
+	// action a pipeline run is performing.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "BUILD", "RUN", "SYNC"
+	CICDPipelineActionNameKey = attribute.Key("cicd.pipeline.action.name")
+
+	// CICDPipelineNameKey is the attribute Key conforming to the
+	// "cicd.pipeline.name" semantic conventions. It represents the human readable
+	// name of the pipeline within a CI/CD system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Build and Test", "Lint", "Deploy Go Project",
+	// "deploy_to_environment"
+	CICDPipelineNameKey = attribute.Key("cicd.pipeline.name")
+
+	// CICDPipelineResultKey is the attribute Key conforming to the
+	// "cicd.pipeline.result" semantic conventions. It represents the result of a
+	// pipeline run.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "success", "failure", "timeout", "skipped"
+	CICDPipelineResultKey = attribute.Key("cicd.pipeline.result")
+
+	// CICDPipelineRunIDKey is the attribute Key conforming to the
+	// "cicd.pipeline.run.id" semantic conventions. It represents the unique
+	// identifier of a pipeline run within a CI/CD system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "120912"
+	CICDPipelineRunIDKey = attribute.Key("cicd.pipeline.run.id")
+
+	// CICDPipelineRunStateKey is the attribute Key conforming to the
+	// "cicd.pipeline.run.state" semantic conventions. It represents the pipeline
+	// run goes through these states during its lifecycle.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "pending", "executing", "finalizing"
+	CICDPipelineRunStateKey = attribute.Key("cicd.pipeline.run.state")
+
+	// CICDPipelineRunURLFullKey is the attribute Key conforming to the
+	// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of
+	// the pipeline run, providing the complete address in order to locate and
+	// identify the pipeline run.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763?pr=1075"
+	//
+	// [URL]: https://wikipedia.org/wiki/URL
+	CICDPipelineRunURLFullKey = attribute.Key("cicd.pipeline.run.url.full")
+
+	// CICDPipelineTaskNameKey is the attribute Key conforming to the
+	// "cicd.pipeline.task.name" semantic conventions. It represents the human
+	// readable name of a task within a pipeline. Task here most closely aligns with
+	// a [computing process] in a pipeline. Other terms for tasks include commands,
+	// steps, and procedures.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Run GoLang Linter", "Go Build", "go-test", "deploy_binary"
+	//
+	// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing)
+	CICDPipelineTaskNameKey = attribute.Key("cicd.pipeline.task.name")
+
+	// CICDPipelineTaskRunIDKey is the attribute Key conforming to the
+	// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique
+	// identifier of a task run within a pipeline.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "12097"
+	CICDPipelineTaskRunIDKey = attribute.Key("cicd.pipeline.task.run.id")
+
+	// CICDPipelineTaskRunResultKey is the attribute Key conforming to the
+	// "cicd.pipeline.task.run.result" semantic conventions. It represents the
+	// result of a task run.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "success", "failure", "timeout", "skipped"
+	CICDPipelineTaskRunResultKey = attribute.Key("cicd.pipeline.task.run.result")
+
+	// CICDPipelineTaskRunURLFullKey is the attribute Key conforming to the
+	// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the
+	// [URL] of the pipeline task run, providing the complete address in order to
+	// locate and identify the pipeline task run.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763/job/26920038674?pr=1075"
+	//
+	// [URL]: https://wikipedia.org/wiki/URL
+	CICDPipelineTaskRunURLFullKey = attribute.Key("cicd.pipeline.task.run.url.full")
+
+	// CICDPipelineTaskTypeKey is the attribute Key conforming to the
+	// "cicd.pipeline.task.type" semantic conventions. It represents the type of the
+	// task within a pipeline.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "build", "test", "deploy"
+	CICDPipelineTaskTypeKey = attribute.Key("cicd.pipeline.task.type")
+
+	// CICDSystemComponentKey is the attribute Key conforming to the
+	// "cicd.system.component" semantic conventions. It represents the name of a
+	// component of the CICD system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "controller", "scheduler", "agent"
+	CICDSystemComponentKey = attribute.Key("cicd.system.component")
+
+	// CICDWorkerIDKey is the attribute Key conforming to the "cicd.worker.id"
+	// semantic conventions. It represents the unique identifier of a worker within
+	// a CICD system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "abc123", "10.0.1.2", "controller"
+	CICDWorkerIDKey = attribute.Key("cicd.worker.id")
+
+	// CICDWorkerNameKey is the attribute Key conforming to the "cicd.worker.name"
+	// semantic conventions. It represents the name of a worker within a CICD
+	// system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "agent-abc", "controller", "Ubuntu LTS"
+	CICDWorkerNameKey = attribute.Key("cicd.worker.name")
+
+	// CICDWorkerStateKey is the attribute Key conforming to the "cicd.worker.state"
+	// semantic conventions. It represents the state of a CICD worker / agent.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "idle", "busy", "down"
+	CICDWorkerStateKey = attribute.Key("cicd.worker.state")
+
+	// CICDWorkerURLFullKey is the attribute Key conforming to the
+	// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the
+	// worker, providing the complete address in order to locate and identify the
+	// worker.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "https://cicd.example.org/worker/abc123"
+	//
+	// [URL]: https://wikipedia.org/wiki/URL
+	CICDWorkerURLFullKey = attribute.Key("cicd.worker.url.full")
+)
+
+// CICDPipelineName returns an attribute KeyValue conforming to the
+// "cicd.pipeline.name" semantic conventions. It represents the human readable
+// name of the pipeline within a CI/CD system.
+func CICDPipelineName(val string) attribute.KeyValue {
+	return CICDPipelineNameKey.String(val)
+}
+
+// CICDPipelineRunID returns an attribute KeyValue conforming to the
+// "cicd.pipeline.run.id" semantic conventions. It represents the unique
+// identifier of a pipeline run within a CI/CD system.
+func CICDPipelineRunID(val string) attribute.KeyValue {
+	return CICDPipelineRunIDKey.String(val)
+}
+
+// CICDPipelineRunURLFull returns an attribute KeyValue conforming to the
+// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of
+// the pipeline run, providing the complete address in order to locate and
+// identify the pipeline run.
+//
+// [URL]: https://wikipedia.org/wiki/URL
+func CICDPipelineRunURLFull(val string) attribute.KeyValue {
+	return CICDPipelineRunURLFullKey.String(val)
+}
+
+// CICDPipelineTaskName returns an attribute KeyValue conforming to the
+// "cicd.pipeline.task.name" semantic conventions. It represents the human
+// readable name of a task within a pipeline. Task here most closely aligns with
+// a [computing process] in a pipeline. Other terms for tasks include commands,
+// steps, and procedures.
+//
+// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing)
+func CICDPipelineTaskName(val string) attribute.KeyValue {
+	return CICDPipelineTaskNameKey.String(val)
+}
+
+// CICDPipelineTaskRunID returns an attribute KeyValue conforming to the
+// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique
+// identifier of a task run within a pipeline.
+func CICDPipelineTaskRunID(val string) attribute.KeyValue {
+	return CICDPipelineTaskRunIDKey.String(val)
+}
+
+// CICDPipelineTaskRunURLFull returns an attribute KeyValue conforming to the
+// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the
+// [URL] of the pipeline task run, providing the complete address in order to
+// locate and identify the pipeline task run.
+//
+// [URL]: https://wikipedia.org/wiki/URL
+func CICDPipelineTaskRunURLFull(val string) attribute.KeyValue {
+	return CICDPipelineTaskRunURLFullKey.String(val)
+}
+
+// CICDSystemComponent returns an attribute KeyValue conforming to the
+// "cicd.system.component" semantic conventions. It represents the name of a
+// component of the CICD system.
+func CICDSystemComponent(val string) attribute.KeyValue {
+	return CICDSystemComponentKey.String(val)
+}
+
+// CICDWorkerID returns an attribute KeyValue conforming to the "cicd.worker.id"
+// semantic conventions. It represents the unique identifier of a worker within a
+// CICD system.
+func CICDWorkerID(val string) attribute.KeyValue {
+	return CICDWorkerIDKey.String(val)
+}
+
+// CICDWorkerName returns an attribute KeyValue conforming to the
+// "cicd.worker.name" semantic conventions. It represents the name of a worker
+// within a CICD system.
+func CICDWorkerName(val string) attribute.KeyValue {
+	return CICDWorkerNameKey.String(val)
+}
+
+// CICDWorkerURLFull returns an attribute KeyValue conforming to the
+// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the
+// worker, providing the complete address in order to locate and identify the
+// worker.
+//
+// [URL]: https://wikipedia.org/wiki/URL
+func CICDWorkerURLFull(val string) attribute.KeyValue {
+	return CICDWorkerURLFullKey.String(val)
+}
+
+// Enum values for cicd.pipeline.action.name
+var (
+	// The pipeline run is executing a build.
+	// Stability: development
+	CICDPipelineActionNameBuild = CICDPipelineActionNameKey.String("BUILD")
+	// The pipeline run is executing.
+	// Stability: development
+	CICDPipelineActionNameRun = CICDPipelineActionNameKey.String("RUN")
+	// The pipeline run is executing a sync.
+	// Stability: development
+	CICDPipelineActionNameSync = CICDPipelineActionNameKey.String("SYNC")
+)
+
+// Enum values for cicd.pipeline.result
+var (
+	// The pipeline run finished successfully.
+	// Stability: development
+	CICDPipelineResultSuccess = CICDPipelineResultKey.String("success")
+	// The pipeline run did not finish successfully, eg. due to a compile error or a
+	// failing test. Such failures are usually detected by non-zero exit codes of
+	// the tools executed in the pipeline run.
+	// Stability: development
+	CICDPipelineResultFailure = CICDPipelineResultKey.String("failure")
+	// The pipeline run failed due to an error in the CICD system, eg. due to the
+	// worker being killed.
+	// Stability: development
+	CICDPipelineResultError = CICDPipelineResultKey.String("error")
+	// A timeout caused the pipeline run to be interrupted.
+	// Stability: development
+	CICDPipelineResultTimeout = CICDPipelineResultKey.String("timeout")
+	// The pipeline run was cancelled, eg. by a user manually cancelling the
+	// pipeline run.
+	// Stability: development
+	CICDPipelineResultCancellation = CICDPipelineResultKey.String("cancellation")
+	// The pipeline run was skipped, eg. due to a precondition not being met.
+	// Stability: development
+	CICDPipelineResultSkip = CICDPipelineResultKey.String("skip")
+)
+
+// Enum values for cicd.pipeline.run.state
+var (
+	// The run pending state spans from the event triggering the pipeline run until
+	// the execution of the run starts (eg. time spent in a queue, provisioning
+	// agents, creating run resources).
+	//
+	// Stability: development
+	CICDPipelineRunStatePending = CICDPipelineRunStateKey.String("pending")
+	// The executing state spans the execution of any run tasks (eg. build, test).
+	// Stability: development
+	CICDPipelineRunStateExecuting = CICDPipelineRunStateKey.String("executing")
+	// The finalizing state spans from when the run has finished executing (eg.
+	// cleanup of run resources).
+	// Stability: development
+	CICDPipelineRunStateFinalizing = CICDPipelineRunStateKey.String("finalizing")
+)
+
+// Enum values for cicd.pipeline.task.run.result
+var (
+	// The task run finished successfully.
+	// Stability: development
+	CICDPipelineTaskRunResultSuccess = CICDPipelineTaskRunResultKey.String("success")
+	// The task run did not finish successfully, eg. due to a compile error or a
+	// failing test. Such failures are usually detected by non-zero exit codes of
+	// the tools executed in the task run.
+	// Stability: development
+	CICDPipelineTaskRunResultFailure = CICDPipelineTaskRunResultKey.String("failure")
+	// The task run failed due to an error in the CICD system, eg. due to the worker
+	// being killed.
+	// Stability: development
+	CICDPipelineTaskRunResultError = CICDPipelineTaskRunResultKey.String("error")
+	// A timeout caused the task run to be interrupted.
+	// Stability: development
+	CICDPipelineTaskRunResultTimeout = CICDPipelineTaskRunResultKey.String("timeout")
+	// The task run was cancelled, eg. by a user manually cancelling the task run.
+	// Stability: development
+	CICDPipelineTaskRunResultCancellation = CICDPipelineTaskRunResultKey.String("cancellation")
+	// The task run was skipped, eg. due to a precondition not being met.
+	// Stability: development
+	CICDPipelineTaskRunResultSkip = CICDPipelineTaskRunResultKey.String("skip")
+)
+
+// Enum values for cicd.pipeline.task.type
+var (
+	// build
+	// Stability: development
+	CICDPipelineTaskTypeBuild = CICDPipelineTaskTypeKey.String("build")
+	// test
+	// Stability: development
+	CICDPipelineTaskTypeTest = CICDPipelineTaskTypeKey.String("test")
+	// deploy
+	// Stability: development
+	CICDPipelineTaskTypeDeploy = CICDPipelineTaskTypeKey.String("deploy")
+)
+
+// Enum values for cicd.worker.state
+var (
+	// The worker is not performing work for the CICD system. It is available to the
+	// CICD system to perform work on (online / idle).
+	// Stability: development
+	CICDWorkerStateAvailable = CICDWorkerStateKey.String("available")
+	// The worker is performing work for the CICD system.
+	// Stability: development
+	CICDWorkerStateBusy = CICDWorkerStateKey.String("busy")
+	// The worker is not available to the CICD system (disconnected / down).
+	// Stability: development
+	CICDWorkerStateOffline = CICDWorkerStateKey.String("offline")
+)
+
+// Namespace: client
+const (
+	// ClientAddressKey is the attribute Key conforming to the "client.address"
+	// semantic conventions. It represents the client address - domain name if
+	// available without reverse DNS lookup; otherwise, IP address or Unix domain
+	// socket name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "client.example.com", "10.1.2.80", "/tmp/my.sock"
+	// Note: When observed from the server side, and when communicating through an
+	// intermediary, `client.address` SHOULD represent the client address behind any
+	// intermediaries, for example proxies, if it's available.
+	ClientAddressKey = attribute.Key("client.address")
+
+	// ClientPortKey is the attribute Key conforming to the "client.port" semantic
+	// conventions. It represents the client port number.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: 65123
+	// Note: When observed from the server side, and when communicating through an
+	// intermediary, `client.port` SHOULD represent the client port behind any
+	// intermediaries, for example proxies, if it's available.
+	ClientPortKey = attribute.Key("client.port")
+)
+
+// ClientAddress returns an attribute KeyValue conforming to the "client.address"
+// semantic conventions. It represents the client address - domain name if
+// available without reverse DNS lookup; otherwise, IP address or Unix domain
+// socket name.
+func ClientAddress(val string) attribute.KeyValue {
+	return ClientAddressKey.String(val)
+}
+
+// ClientPort returns an attribute KeyValue conforming to the "client.port"
+// semantic conventions. It represents the client port number.
+func ClientPort(val int) attribute.KeyValue {
+	return ClientPortKey.Int(val)
+}
+
+// Namespace: cloud
+const (
+	// CloudAccountIDKey is the attribute Key conforming to the "cloud.account.id"
+	// semantic conventions. It represents the cloud account ID the resource is
+	// assigned to.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "111111111111", "opentelemetry"
+	CloudAccountIDKey = attribute.Key("cloud.account.id")
+
+	// CloudAvailabilityZoneKey is the attribute Key conforming to the
+	// "cloud.availability_zone" semantic conventions. It represents the cloud
+	// regions often have multiple, isolated locations known as zones to increase
+	// availability. Availability zone represents the zone where the resource is
+	// running.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-east-1c"
+	// Note: Availability zones are called "zones" on Alibaba Cloud and Google
+	// Cloud.
+	CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone")
+
+	// CloudPlatformKey is the attribute Key conforming to the "cloud.platform"
+	// semantic conventions. It represents the cloud platform in use.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: The prefix of the service SHOULD match the one specified in
+	// `cloud.provider`.
+	CloudPlatformKey = attribute.Key("cloud.platform")
+
+	// CloudProviderKey is the attribute Key conforming to the "cloud.provider"
+	// semantic conventions. It represents the name of the cloud provider.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	CloudProviderKey = attribute.Key("cloud.provider")
+
+	// CloudRegionKey is the attribute Key conforming to the "cloud.region" semantic
+	// conventions. It represents the geographical region within a cloud provider.
+	// When associated with a resource, this attribute specifies the region where
+	// the resource operates. When calling services or APIs deployed on a cloud,
+	// this attribute identifies the region where the called destination is
+	// deployed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-central1", "us-east-1"
+	// Note: Refer to your provider's docs to see the available regions, for example
+	// [Alibaba Cloud regions], [AWS regions], [Azure regions],
+	// [Google Cloud regions], or [Tencent Cloud regions].
+	//
+	// [Alibaba Cloud regions]: https://www.alibabacloud.com/help/doc-detail/40654.htm
+	// [AWS regions]: https://aws.amazon.com/about-aws/global-infrastructure/regions_az/
+	// [Azure regions]: https://azure.microsoft.com/global-infrastructure/geographies/
+	// [Google Cloud regions]: https://cloud.google.com/about/locations
+	// [Tencent Cloud regions]: https://www.tencentcloud.com/document/product/213/6091
+	CloudRegionKey = attribute.Key("cloud.region")
+
+	// CloudResourceIDKey is the attribute Key conforming to the "cloud.resource_id"
+	// semantic conventions. It represents the cloud provider-specific native
+	// identifier of the monitored cloud resource (e.g. an [ARN] on AWS, a
+	// [fully qualified resource ID] on Azure, a [full resource name] on GCP).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function",
+	// "//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID",
+	// "/subscriptions/<SUBSCRIPTION_GUID>/resourceGroups/<RG>
+	// /providers/Microsoft.Web/sites/<FUNCAPP>/functions/<FUNC>"
+	// Note: On some cloud providers, it may not be possible to determine the full
+	// ID at startup,
+	// so it may be necessary to set `cloud.resource_id` as a span attribute
+	// instead.
+	//
+	// The exact value to use for `cloud.resource_id` depends on the cloud provider.
+	// The following well-known definitions MUST be used if you set this attribute
+	// and they apply:
+	//
+	//   - **AWS Lambda:** The function [ARN].
+	//     Take care not to use the "invoked ARN" directly but replace any
+	//     [alias suffix]
+	//     with the resolved function version, as the same runtime instance may be
+	//     invocable with
+	//     multiple different aliases.
+	//   - **GCP:** The [URI of the resource]
+	//   - **Azure:** The [Fully Qualified Resource ID] of the invoked function,
+	//     *not* the function app, having the form
+	//
+	//     `/subscriptions/<SUBSCRIPTION_GUID>/resourceGroups/<RG>/providers/Microsoft.Web/sites/<FUNCAPP>/functions/<FUNC>`
+	//     .
+	//     This means that a span attribute MUST be used, as an Azure function app
+	//     can host multiple functions that would usually share
+	//     a TracerProvider.
+	//
+	//
+	// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html
+	// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id
+	// [full resource name]: https://google.aip.dev/122#full-resource-names
+	// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html
+	// [alias suffix]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html
+	// [URI of the resource]: https://cloud.google.com/iam/docs/full-resource-names
+	// [Fully Qualified Resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id
+	CloudResourceIDKey = attribute.Key("cloud.resource_id")
+)
+
+// CloudAccountID returns an attribute KeyValue conforming to the
+// "cloud.account.id" semantic conventions. It represents the cloud account ID
+// the resource is assigned to.
+func CloudAccountID(val string) attribute.KeyValue {
+	return CloudAccountIDKey.String(val)
+}
+
+// CloudAvailabilityZone returns an attribute KeyValue conforming to the
+// "cloud.availability_zone" semantic conventions. It represents the cloud
+// regions often have multiple, isolated locations known as zones to increase
+// availability. Availability zone represents the zone where the resource is
+// running.
+func CloudAvailabilityZone(val string) attribute.KeyValue {
+	return CloudAvailabilityZoneKey.String(val)
+}
+
+// CloudRegion returns an attribute KeyValue conforming to the "cloud.region"
+// semantic conventions. It represents the geographical region within a cloud
+// provider. When associated with a resource, this attribute specifies the region
+// where the resource operates. When calling services or APIs deployed on a
+// cloud, this attribute identifies the region where the called destination is
+// deployed.
+func CloudRegion(val string) attribute.KeyValue {
+	return CloudRegionKey.String(val)
+}
+
+// CloudResourceID returns an attribute KeyValue conforming to the
+// "cloud.resource_id" semantic conventions. It represents the cloud
+// provider-specific native identifier of the monitored cloud resource (e.g. an
+// [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name]
+//  on GCP).
+//
+// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html
+// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id
+// [full resource name]: https://google.aip.dev/122#full-resource-names
+func CloudResourceID(val string) attribute.KeyValue {
+	return CloudResourceIDKey.String(val)
+}
+
+// Enum values for cloud.platform
+var (
+	// Akamai Cloud Compute
+	// Stability: development
+	CloudPlatformAkamaiCloudCompute = CloudPlatformKey.String("akamai_cloud.compute")
+	// Alibaba Cloud Elastic Compute Service
+	// Stability: development
+	CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs")
+	// Alibaba Cloud Function Compute
+	// Stability: development
+	CloudPlatformAlibabaCloudFC = CloudPlatformKey.String("alibaba_cloud_fc")
+	// Red Hat OpenShift on Alibaba Cloud
+	// Stability: development
+	CloudPlatformAlibabaCloudOpenShift = CloudPlatformKey.String("alibaba_cloud_openshift")
+	// AWS Elastic Compute Cloud
+	// Stability: development
+	CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2")
+	// AWS Elastic Container Service
+	// Stability: development
+	CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs")
+	// AWS Elastic Kubernetes Service
+	// Stability: development
+	CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks")
+	// AWS Lambda
+	// Stability: development
+	CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda")
+	// AWS Elastic Beanstalk
+	// Stability: development
+	CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk")
+	// AWS App Runner
+	// Stability: development
+	CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner")
+	// Red Hat OpenShift on AWS (ROSA)
+	// Stability: development
+	CloudPlatformAWSOpenShift = CloudPlatformKey.String("aws_openshift")
+	// Azure Virtual Machines
+	// Stability: development
+	CloudPlatformAzureVM = CloudPlatformKey.String("azure.vm")
+	// Azure Container Apps
+	// Stability: development
+	CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure.container_apps")
+	// Azure Container Instances
+	// Stability: development
+	CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure.container_instances")
+	// Azure Kubernetes Service
+	// Stability: development
+	CloudPlatformAzureAKS = CloudPlatformKey.String("azure.aks")
+	// Azure Functions
+	// Stability: development
+	CloudPlatformAzureFunctions = CloudPlatformKey.String("azure.functions")
+	// Azure App Service
+	// Stability: development
+	CloudPlatformAzureAppService = CloudPlatformKey.String("azure.app_service")
+	// Azure Red Hat OpenShift
+	// Stability: development
+	CloudPlatformAzureOpenShift = CloudPlatformKey.String("azure.openshift")
+	// Google Vertex AI Agent Engine
+	// Stability: development
+	CloudPlatformGCPAgentEngine = CloudPlatformKey.String("gcp.agent_engine")
+	// Google Bare Metal Solution (BMS)
+	// Stability: development
+	CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution")
+	// Google Cloud Compute Engine (GCE)
+	// Stability: development
+	CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine")
+	// Google Cloud Run
+	// Stability: development
+	CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run")
+	// Google Cloud Kubernetes Engine (GKE)
+	// Stability: development
+	CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine")
+	// Google Cloud Functions (GCF)
+	// Stability: development
+	CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions")
+	// Google Cloud App Engine (GAE)
+	// Stability: development
+	CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine")
+	// Red Hat OpenShift on Google Cloud
+	// Stability: development
+	CloudPlatformGCPOpenShift = CloudPlatformKey.String("gcp_openshift")
+	// Server on Hetzner Cloud
+	// Stability: development
+	CloudPlatformHetznerCloudServer = CloudPlatformKey.String("hetzner.cloud_server")
+	// Red Hat OpenShift on IBM Cloud
+	// Stability: development
+	CloudPlatformIBMCloudOpenShift = CloudPlatformKey.String("ibm_cloud_openshift")
+	// Compute on Oracle Cloud Infrastructure (OCI)
+	// Stability: development
+	CloudPlatformOracleCloudCompute = CloudPlatformKey.String("oracle_cloud_compute")
+	// Kubernetes Engine (OKE) on Oracle Cloud Infrastructure (OCI)
+	// Stability: development
+	CloudPlatformOracleCloudOKE = CloudPlatformKey.String("oracle_cloud_oke")
+	// Tencent Cloud Cloud Virtual Machine (CVM)
+	// Stability: development
+	CloudPlatformTencentCloudCVM = CloudPlatformKey.String("tencent_cloud_cvm")
+	// Tencent Cloud Elastic Kubernetes Service (EKS)
+	// Stability: development
+	CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks")
+	// Tencent Cloud Serverless Cloud Function (SCF)
+	// Stability: development
+	CloudPlatformTencentCloudSCF = CloudPlatformKey.String("tencent_cloud_scf")
+	// Vultr Cloud Compute
+	// Stability: development
+	CloudPlatformVultrCloudCompute = CloudPlatformKey.String("vultr.cloud_compute")
+)
+
+// Enum values for cloud.provider
+var (
+	// Akamai Cloud
+	// Stability: development
+	CloudProviderAkamaiCloud = CloudProviderKey.String("akamai_cloud")
+	// Alibaba Cloud
+	// Stability: development
+	CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud")
+	// Amazon Web Services
+	// Stability: development
+	CloudProviderAWS = CloudProviderKey.String("aws")
+	// Microsoft Azure
+	// Stability: development
+	CloudProviderAzure = CloudProviderKey.String("azure")
+	// Google Cloud Platform
+	// Stability: development
+	CloudProviderGCP = CloudProviderKey.String("gcp")
+	// Heroku Platform as a Service
+	// Stability: development
+	CloudProviderHeroku = CloudProviderKey.String("heroku")
+	// Hetzner
+	// Stability: development
+	CloudProviderHetzner = CloudProviderKey.String("hetzner")
+	// IBM Cloud
+	// Stability: development
+	CloudProviderIBMCloud = CloudProviderKey.String("ibm_cloud")
+	// Oracle Cloud Infrastructure (OCI)
+	// Stability: development
+	CloudProviderOracleCloud = CloudProviderKey.String("oracle_cloud")
+	// Tencent Cloud
+	// Stability: development
+	CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud")
+	// Vultr
+	// Stability: development
+	CloudProviderVultr = CloudProviderKey.String("vultr")
+)
+
+// Namespace: cloudevents
+const (
+	// CloudEventsEventIDKey is the attribute Key conforming to the
+	// "cloudevents.event_id" semantic conventions. It represents the [event_id]
+	// uniquely identifies the event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "123e4567-e89b-12d3-a456-426614174000", "0001"
+	//
+	// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id
+	CloudEventsEventIDKey = attribute.Key("cloudevents.event_id")
+
+	// CloudEventsEventSourceKey is the attribute Key conforming to the
+	// "cloudevents.event_source" semantic conventions. It represents the [source]
+	// identifies the context in which an event happened.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "https://github.com/cloudevents", "/cloudevents/spec/pull/123",
+	// "my-service"
+	//
+	// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1
+	CloudEventsEventSourceKey = attribute.Key("cloudevents.event_source")
+
+	// CloudEventsEventSpecVersionKey is the attribute Key conforming to the
+	// "cloudevents.event_spec_version" semantic conventions. It represents the
+	// [version of the CloudEvents specification] which the event uses.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0
+	//
+	// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion
+	CloudEventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version")
+
+	// CloudEventsEventSubjectKey is the attribute Key conforming to the
+	// "cloudevents.event_subject" semantic conventions. It represents the [subject]
+	//  of the event in the context of the event producer (identified by source).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: mynewfile.jpg
+	//
+	// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject
+	CloudEventsEventSubjectKey = attribute.Key("cloudevents.event_subject")
+
+	// CloudEventsEventTypeKey is the attribute Key conforming to the
+	// "cloudevents.event_type" semantic conventions. It represents the [event_type]
+	//  contains a value describing the type of event related to the originating
+	// occurrence.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "com.github.pull_request.opened", "com.example.object.deleted.v2"
+	//
+	// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type
+	CloudEventsEventTypeKey = attribute.Key("cloudevents.event_type")
+)
+
+// CloudEventsEventID returns an attribute KeyValue conforming to the
+// "cloudevents.event_id" semantic conventions. It represents the [event_id]
+// uniquely identifies the event.
+//
+// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id
+func CloudEventsEventID(val string) attribute.KeyValue {
+	return CloudEventsEventIDKey.String(val)
+}
+
+// CloudEventsEventSource returns an attribute KeyValue conforming to the
+// "cloudevents.event_source" semantic conventions. It represents the [source]
+// identifies the context in which an event happened.
+//
+// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1
+func CloudEventsEventSource(val string) attribute.KeyValue {
+	return CloudEventsEventSourceKey.String(val)
+}
+
+// CloudEventsEventSpecVersion returns an attribute KeyValue conforming to the
+// "cloudevents.event_spec_version" semantic conventions. It represents the
+// [version of the CloudEvents specification] which the event uses.
+//
+// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion
+func CloudEventsEventSpecVersion(val string) attribute.KeyValue {
+	return CloudEventsEventSpecVersionKey.String(val)
+}
+
+// CloudEventsEventSubject returns an attribute KeyValue conforming to the
+// "cloudevents.event_subject" semantic conventions. It represents the [subject]
+// of the event in the context of the event producer (identified by source).
+//
+// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject
+func CloudEventsEventSubject(val string) attribute.KeyValue {
+	return CloudEventsEventSubjectKey.String(val)
+}
+
+// CloudEventsEventType returns an attribute KeyValue conforming to the
+// "cloudevents.event_type" semantic conventions. It represents the [event_type]
+// contains a value describing the type of event related to the originating
+// occurrence.
+//
+// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type
+func CloudEventsEventType(val string) attribute.KeyValue {
+	return CloudEventsEventTypeKey.String(val)
+}
+
+// Namespace: cloudfoundry
+const (
+	// CloudFoundryAppIDKey is the attribute Key conforming to the
+	// "cloudfoundry.app.id" semantic conventions. It represents the guid of the
+	// application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.application_id`. This is the same value as
+	// reported by `cf app <app-name> --guid`.
+	CloudFoundryAppIDKey = attribute.Key("cloudfoundry.app.id")
+
+	// CloudFoundryAppInstanceIDKey is the attribute Key conforming to the
+	// "cloudfoundry.app.instance.id" semantic conventions. It represents the index
+	// of the application instance. 0 when just one instance is active.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0", "1"
+	// Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope]
+	// .
+	// It is used for logs and metrics emitted by CloudFoundry. It is
+	// supposed to contain the application instance index for applications
+	// deployed on the runtime.
+	//
+	// Application instrumentation should use the value from environment
+	// variable `CF_INSTANCE_INDEX`.
+	//
+	// [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope
+	CloudFoundryAppInstanceIDKey = attribute.Key("cloudfoundry.app.instance.id")
+
+	// CloudFoundryAppNameKey is the attribute Key conforming to the
+	// "cloudfoundry.app.name" semantic conventions. It represents the name of the
+	// application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-app-name"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.application_name`. This is the same value
+	// as reported by `cf apps`.
+	CloudFoundryAppNameKey = attribute.Key("cloudfoundry.app.name")
+
+	// CloudFoundryOrgIDKey is the attribute Key conforming to the
+	// "cloudfoundry.org.id" semantic conventions. It represents the guid of the
+	// CloudFoundry org the application is running in.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.org_id`. This is the same value as
+	// reported by `cf org <org-name> --guid`.
+	CloudFoundryOrgIDKey = attribute.Key("cloudfoundry.org.id")
+
+	// CloudFoundryOrgNameKey is the attribute Key conforming to the
+	// "cloudfoundry.org.name" semantic conventions. It represents the name of the
+	// CloudFoundry organization the app is running in.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-org-name"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.org_name`. This is the same value as
+	// reported by `cf orgs`.
+	CloudFoundryOrgNameKey = attribute.Key("cloudfoundry.org.name")
+
+	// CloudFoundryProcessIDKey is the attribute Key conforming to the
+	// "cloudfoundry.process.id" semantic conventions. It represents the UID
+	// identifying the process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.process_id`. It is supposed to be equal to
+	// `VCAP_APPLICATION.app_id` for applications deployed to the runtime.
+	// For system components, this could be the actual PID.
+	CloudFoundryProcessIDKey = attribute.Key("cloudfoundry.process.id")
+
+	// CloudFoundryProcessTypeKey is the attribute Key conforming to the
+	// "cloudfoundry.process.type" semantic conventions. It represents the type of
+	// process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "web"
+	// Note: CloudFoundry applications can consist of multiple jobs. Usually the
+	// main process will be of type `web`. There can be additional background
+	// tasks or side-cars with different process types.
+	CloudFoundryProcessTypeKey = attribute.Key("cloudfoundry.process.type")
+
+	// CloudFoundrySpaceIDKey is the attribute Key conforming to the
+	// "cloudfoundry.space.id" semantic conventions. It represents the guid of the
+	// CloudFoundry space the application is running in.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.space_id`. This is the same value as
+	// reported by `cf space <space-name> --guid`.
+	CloudFoundrySpaceIDKey = attribute.Key("cloudfoundry.space.id")
+
+	// CloudFoundrySpaceNameKey is the attribute Key conforming to the
+	// "cloudfoundry.space.name" semantic conventions. It represents the name of the
+	// CloudFoundry space the application is running in.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-space-name"
+	// Note: Application instrumentation should use the value from environment
+	// variable `VCAP_APPLICATION.space_name`. This is the same value as
+	// reported by `cf spaces`.
+	CloudFoundrySpaceNameKey = attribute.Key("cloudfoundry.space.name")
+
+	// CloudFoundrySystemIDKey is the attribute Key conforming to the
+	// "cloudfoundry.system.id" semantic conventions. It represents a guid or
+	// another name describing the event source.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cf/gorouter"
+	// Note: CloudFoundry defines the `source_id` in the [Loggregator v2 envelope].
+	// It is used for logs and metrics emitted by CloudFoundry. It is
+	// supposed to contain the component name, e.g. "gorouter", for
+	// CloudFoundry components.
+	//
+	// When system components are instrumented, values from the
+	// [Bosh spec]
+	// should be used. The `system.id` should be set to
+	// `spec.deployment/spec.name`.
+	//
+	// [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope
+	// [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec
+	CloudFoundrySystemIDKey = attribute.Key("cloudfoundry.system.id")
+
+	// CloudFoundrySystemInstanceIDKey is the attribute Key conforming to the
+	// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid
+	// describing the concrete instance of the event source.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
+	// Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope]
+	// .
+	// It is used for logs and metrics emitted by CloudFoundry. It is
+	// supposed to contain the vm id for CloudFoundry components.
+	//
+	// When system components are instrumented, values from the
+	// [Bosh spec]
+	// should be used. The `system.instance.id` should be set to `spec.id`.
+	//
+	// [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope
+	// [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec
+	CloudFoundrySystemInstanceIDKey = attribute.Key("cloudfoundry.system.instance.id")
+)
+
+// CloudFoundryAppID returns an attribute KeyValue conforming to the
+// "cloudfoundry.app.id" semantic conventions. It represents the guid of the
+// application.
+func CloudFoundryAppID(val string) attribute.KeyValue {
+	return CloudFoundryAppIDKey.String(val)
+}
+
+// CloudFoundryAppInstanceID returns an attribute KeyValue conforming to the
+// "cloudfoundry.app.instance.id" semantic conventions. It represents the index
+// of the application instance. 0 when just one instance is active.
+func CloudFoundryAppInstanceID(val string) attribute.KeyValue {
+	return CloudFoundryAppInstanceIDKey.String(val)
+}
+
+// CloudFoundryAppName returns an attribute KeyValue conforming to the
+// "cloudfoundry.app.name" semantic conventions. It represents the name of the
+// application.
+func CloudFoundryAppName(val string) attribute.KeyValue {
+	return CloudFoundryAppNameKey.String(val)
+}
+
+// CloudFoundryOrgID returns an attribute KeyValue conforming to the
+// "cloudfoundry.org.id" semantic conventions. It represents the guid of the
+// CloudFoundry org the application is running in.
+func CloudFoundryOrgID(val string) attribute.KeyValue {
+	return CloudFoundryOrgIDKey.String(val)
+}
+
+// CloudFoundryOrgName returns an attribute KeyValue conforming to the
+// "cloudfoundry.org.name" semantic conventions. It represents the name of the
+// CloudFoundry organization the app is running in.
+func CloudFoundryOrgName(val string) attribute.KeyValue {
+	return CloudFoundryOrgNameKey.String(val)
+}
+
+// CloudFoundryProcessID returns an attribute KeyValue conforming to the
+// "cloudfoundry.process.id" semantic conventions. It represents the UID
+// identifying the process.
+func CloudFoundryProcessID(val string) attribute.KeyValue {
+	return CloudFoundryProcessIDKey.String(val)
+}
+
+// CloudFoundryProcessType returns an attribute KeyValue conforming to the
+// "cloudfoundry.process.type" semantic conventions. It represents the type of
+// process.
+func CloudFoundryProcessType(val string) attribute.KeyValue {
+	return CloudFoundryProcessTypeKey.String(val)
+}
+
+// CloudFoundrySpaceID returns an attribute KeyValue conforming to the
+// "cloudfoundry.space.id" semantic conventions. It represents the guid of the
+// CloudFoundry space the application is running in.
+func CloudFoundrySpaceID(val string) attribute.KeyValue {
+	return CloudFoundrySpaceIDKey.String(val)
+}
+
+// CloudFoundrySpaceName returns an attribute KeyValue conforming to the
+// "cloudfoundry.space.name" semantic conventions. It represents the name of the
+// CloudFoundry space the application is running in.
+func CloudFoundrySpaceName(val string) attribute.KeyValue {
+	return CloudFoundrySpaceNameKey.String(val)
+}
+
+// CloudFoundrySystemID returns an attribute KeyValue conforming to the
+// "cloudfoundry.system.id" semantic conventions. It represents a guid or another
+// name describing the event source.
+func CloudFoundrySystemID(val string) attribute.KeyValue {
+	return CloudFoundrySystemIDKey.String(val)
+}
+
+// CloudFoundrySystemInstanceID returns an attribute KeyValue conforming to the
+// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid
+// describing the concrete instance of the event source.
+func CloudFoundrySystemInstanceID(val string) attribute.KeyValue {
+	return CloudFoundrySystemInstanceIDKey.String(val)
+}
+
+// Namespace: code
+const (
+	// CodeColumnNumberKey is the attribute Key conforming to the
+	// "code.column.number" semantic conventions. It represents the column number in
+	// `code.file.path` best representing the operation. It SHOULD point within the
+	// code unit named in `code.function.name`. This attribute MUST NOT be used on
+	// the Profile signal since the data is already captured in 'message Line'. This
+	// constraint is imposed to prevent redundancy and maintain data integrity.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	CodeColumnNumberKey = attribute.Key("code.column.number")
+
+	// CodeFilePathKey is the attribute Key conforming to the "code.file.path"
+	// semantic conventions. It represents the source code file name that identifies
+	// the code unit as uniquely as possible (preferably an absolute file path).
+	// This attribute MUST NOT be used on the Profile signal since the data is
+	// already captured in 'message Function'. This constraint is imposed to prevent
+	// redundancy and maintain data integrity.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: /usr/local/MyApplication/content_root/app/index.php
+	CodeFilePathKey = attribute.Key("code.file.path")
+
+	// CodeFunctionNameKey is the attribute Key conforming to the
+	// "code.function.name" semantic conventions. It represents the method or
+	// function fully-qualified name without arguments. The value should fit the
+	// natural representation of the language runtime, which is also likely the same
+	// used within `code.stacktrace` attribute value. This attribute MUST NOT be
+	// used on the Profile signal since the data is already captured in 'message
+	// Function'. This constraint is imposed to prevent redundancy and maintain data
+	// integrity.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "com.example.MyHttpService.serveRequest",
+	// "GuzzleHttp\Client::transfer", "fopen"
+	// Note: Values and format depends on each language runtime, thus it is
+	// impossible to provide an exhaustive list of examples.
+	// The values are usually the same (or prefixes of) the ones found in native
+	// stack trace representation stored in
+	// `code.stacktrace` without information on arguments.
+	//
+	// Examples:
+	//
+	//   - Java method: `com.example.MyHttpService.serveRequest`
+	//   - Java anonymous class method: `com.mycompany.Main$1.myMethod`
+	//   - Java lambda method:
+	//     `com.mycompany.Main$$Lambda/0x0000748ae4149c00.myMethod`
+	//   - PHP function: `GuzzleHttp\Client::transfer`
+	//   - Go function: `github.com/my/repo/pkg.foo.func5`
+	//   - Elixir: `OpenTelemetry.Ctx.new`
+	//   - Erlang: `opentelemetry_ctx:new`
+	//   - Rust: `playground::my_module::my_cool_func`
+	//   - C function: `fopen`
+	CodeFunctionNameKey = attribute.Key("code.function.name")
+
+	// CodeLineNumberKey is the attribute Key conforming to the "code.line.number"
+	// semantic conventions. It represents the line number in `code.file.path` best
+	// representing the operation. It SHOULD point within the code unit named in
+	// `code.function.name`. This attribute MUST NOT be used on the Profile signal
+	// since the data is already captured in 'message Line'. This constraint is
+	// imposed to prevent redundancy and maintain data integrity.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	CodeLineNumberKey = attribute.Key("code.line.number")
+
+	// CodeStacktraceKey is the attribute Key conforming to the "code.stacktrace"
+	// semantic conventions. It represents a stacktrace as a string in the natural
+	// representation for the language runtime. The representation is identical to
+	// [`exception.stacktrace`]. This attribute MUST NOT be used on the Profile
+	// signal since the data is already captured in 'message Location'. This
+	// constraint is imposed to prevent redundancy and maintain data integrity.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at
+	// com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at
+	// com.example.GenerateTrace.main(GenerateTrace.java:5)
+	//
+	// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation
+	CodeStacktraceKey = attribute.Key("code.stacktrace")
+)
+
+// CodeColumnNumber returns an attribute KeyValue conforming to the
+// "code.column.number" semantic conventions. It represents the column number in
+// `code.file.path` best representing the operation. It SHOULD point within the
+// code unit named in `code.function.name`. This attribute MUST NOT be used on
+// the Profile signal since the data is already captured in 'message Line'. This
+// constraint is imposed to prevent redundancy and maintain data integrity.
+func CodeColumnNumber(val int) attribute.KeyValue {
+	return CodeColumnNumberKey.Int(val)
+}
+
+// CodeFilePath returns an attribute KeyValue conforming to the "code.file.path"
+// semantic conventions. It represents the source code file name that identifies
+// the code unit as uniquely as possible (preferably an absolute file path). This
+// attribute MUST NOT be used on the Profile signal since the data is already
+// captured in 'message Function'. This constraint is imposed to prevent
+// redundancy and maintain data integrity.
+func CodeFilePath(val string) attribute.KeyValue {
+	return CodeFilePathKey.String(val)
+}
+
+// CodeFunctionName returns an attribute KeyValue conforming to the
+// "code.function.name" semantic conventions. It represents the method or
+// function fully-qualified name without arguments. The value should fit the
+// natural representation of the language runtime, which is also likely the same
+// used within `code.stacktrace` attribute value. This attribute MUST NOT be used
+// on the Profile signal since the data is already captured in 'message
+// Function'. This constraint is imposed to prevent redundancy and maintain data
+// integrity.
+func CodeFunctionName(val string) attribute.KeyValue {
+	return CodeFunctionNameKey.String(val)
+}
+
+// CodeLineNumber returns an attribute KeyValue conforming to the
+// "code.line.number" semantic conventions. It represents the line number in
+// `code.file.path` best representing the operation. It SHOULD point within the
+// code unit named in `code.function.name`. This attribute MUST NOT be used on
+// the Profile signal since the data is already captured in 'message Line'. This
+// constraint is imposed to prevent redundancy and maintain data integrity.
+func CodeLineNumber(val int) attribute.KeyValue {
+	return CodeLineNumberKey.Int(val)
+}
+
+// CodeStacktrace returns an attribute KeyValue conforming to the
+// "code.stacktrace" semantic conventions. It represents a stacktrace as a string
+// in the natural representation for the language runtime. The representation is
+// identical to [`exception.stacktrace`]. This attribute MUST NOT be used on the
+// Profile signal since the data is already captured in 'message Location'. This
+// constraint is imposed to prevent redundancy and maintain data integrity.
+//
+// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation
+func CodeStacktrace(val string) attribute.KeyValue {
+	return CodeStacktraceKey.String(val)
+}
+
+// Namespace: container
+const (
+	// ContainerCommandKey is the attribute Key conforming to the
+	// "container.command" semantic conventions. It represents the command used to
+	// run the container (i.e. the command name).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "otelcontribcol"
+	// Note: If using embedded credentials or sensitive data, it is recommended to
+	// remove them to prevent potential leakage.
+	ContainerCommandKey = attribute.Key("container.command")
+
+	// ContainerCommandArgsKey is the attribute Key conforming to the
+	// "container.command_args" semantic conventions. It represents the all the
+	// command arguments (including the command/executable itself) run by the
+	// container.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "otelcontribcol", "--config", "config.yaml"
+	ContainerCommandArgsKey = attribute.Key("container.command_args")
+
+	// ContainerCommandLineKey is the attribute Key conforming to the
+	// "container.command_line" semantic conventions. It represents the full command
+	// run by the container as a single string representing the full command.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "otelcontribcol --config config.yaml"
+	ContainerCommandLineKey = attribute.Key("container.command_line")
+
+	// ContainerCSIPluginNameKey is the attribute Key conforming to the
+	// "container.csi.plugin.name" semantic conventions. It represents the name of
+	// the CSI ([Container Storage Interface]) plugin used by the volume.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "pd.csi.storage.gke.io"
+	// Note: This can sometimes be referred to as a "driver" in CSI implementations.
+	// This should represent the `name` field of the GetPluginInfo RPC.
+	//
+	// [Container Storage Interface]: https://github.com/container-storage-interface/spec
+	ContainerCSIPluginNameKey = attribute.Key("container.csi.plugin.name")
+
+	// ContainerCSIVolumeIDKey is the attribute Key conforming to the
+	// "container.csi.volume.id" semantic conventions. It represents the unique
+	// volume ID returned by the CSI ([Container Storage Interface]) plugin.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "projects/my-gcp-project/zones/my-gcp-zone/disks/my-gcp-disk"
+	// Note: This can sometimes be referred to as a "volume handle" in CSI
+	// implementations. This should represent the `Volume.volume_id` field in CSI
+	// spec.
+	//
+	// [Container Storage Interface]: https://github.com/container-storage-interface/spec
+	ContainerCSIVolumeIDKey = attribute.Key("container.csi.volume.id")
+
+	// ContainerIDKey is the attribute Key conforming to the "container.id" semantic
+	// conventions. It represents the container ID. Usually a UUID, as for example
+	// used to [identify Docker containers]. The UUID might be abbreviated.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "a3bf90e006b2"
+	//
+	// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification
+	ContainerIDKey = attribute.Key("container.id")
+
+	// ContainerImageIDKey is the attribute Key conforming to the
+	// "container.image.id" semantic conventions. It represents the runtime specific
+	// image identifier. Usually a hash algorithm followed by a UUID.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f"
+	// Note: Docker defines a sha256 of the image id; `container.image.id`
+	// corresponds to the `Image` field from the Docker container inspect [API]
+	// endpoint.
+	// K8s defines a link to the container registry repository with digest
+	// `"imageID": "registry.azurecr.io /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"`
+	// .
+	// The ID is assigned by the container runtime and can vary in different
+	// environments. Consider using `oci.manifest.digest` if it is important to
+	// identify the same image in different environments/runtimes.
+	//
+	// [API]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Container/operation/ContainerInspect
+	ContainerImageIDKey = attribute.Key("container.image.id")
+
+	// ContainerImageNameKey is the attribute Key conforming to the
+	// "container.image.name" semantic conventions. It represents the name of the
+	// image the container was built on.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "gcr.io/opentelemetry/operator"
+	ContainerImageNameKey = attribute.Key("container.image.name")
+
+	// ContainerImageRepoDigestsKey is the attribute Key conforming to the
+	// "container.image.repo_digests" semantic conventions. It represents the repo
+	// digests of the container image as provided by the container runtime.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples:
+	// "example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb",
+	// "internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578"
+	// Note: [Docker] and [CRI] report those under the `RepoDigests` field.
+	//
+	// [Docker]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect
+	// [CRI]: https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238
+	ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests")
+
+	// ContainerImageTagsKey is the attribute Key conforming to the
+	// "container.image.tags" semantic conventions. It represents the container
+	// image tags. An example can be found in [Docker Image Inspect]. Should be only
+	// the `<tag>` section of the full name for example from
+	// `registry.example.com/my-org/my-image:<tag>`.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "v1.27.1", "3.5.7-0"
+	//
+	// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect
+	ContainerImageTagsKey = attribute.Key("container.image.tags")
+
+	// ContainerNameKey is the attribute Key conforming to the "container.name"
+	// semantic conventions. It represents the container name used by container
+	// runtime.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry-autoconf"
+	ContainerNameKey = attribute.Key("container.name")
+
+	// ContainerRuntimeDescriptionKey is the attribute Key conforming to the
+	// "container.runtime.description" semantic conventions. It represents a
+	// description about the runtime which could include, for example details about
+	// the CRI/API version being used or other customisations.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "docker://19.3.1 - CRI: 1.22.0"
+	ContainerRuntimeDescriptionKey = attribute.Key("container.runtime.description")
+
+	// ContainerRuntimeNameKey is the attribute Key conforming to the
+	// "container.runtime.name" semantic conventions. It represents the container
+	// runtime managing this container.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "docker", "containerd", "rkt"
+	ContainerRuntimeNameKey = attribute.Key("container.runtime.name")
+
+	// ContainerRuntimeVersionKey is the attribute Key conforming to the
+	// "container.runtime.version" semantic conventions. It represents the version
+	// of the runtime of this process, as returned by the runtime without
+	// modification.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0.0
+	ContainerRuntimeVersionKey = attribute.Key("container.runtime.version")
+)
+
+// ContainerCommand returns an attribute KeyValue conforming to the
+// "container.command" semantic conventions. It represents the command used to
+// run the container (i.e. the command name).
+func ContainerCommand(val string) attribute.KeyValue {
+	return ContainerCommandKey.String(val)
+}
+
+// ContainerCommandArgs returns an attribute KeyValue conforming to the
+// "container.command_args" semantic conventions. It represents the all the
+// command arguments (including the command/executable itself) run by the
+// container.
+func ContainerCommandArgs(val ...string) attribute.KeyValue {
+	return ContainerCommandArgsKey.StringSlice(val)
+}
+
+// ContainerCommandLine returns an attribute KeyValue conforming to the
+// "container.command_line" semantic conventions. It represents the full command
+// run by the container as a single string representing the full command.
+func ContainerCommandLine(val string) attribute.KeyValue {
+	return ContainerCommandLineKey.String(val)
+}
+
+// ContainerCSIPluginName returns an attribute KeyValue conforming to the
+// "container.csi.plugin.name" semantic conventions. It represents the name of
+// the CSI ([Container Storage Interface]) plugin used by the volume.
+//
+// [Container Storage Interface]: https://github.com/container-storage-interface/spec
+func ContainerCSIPluginName(val string) attribute.KeyValue {
+	return ContainerCSIPluginNameKey.String(val)
+}
+
+// ContainerCSIVolumeID returns an attribute KeyValue conforming to the
+// "container.csi.volume.id" semantic conventions. It represents the unique
+// volume ID returned by the CSI ([Container Storage Interface]) plugin.
+//
+// [Container Storage Interface]: https://github.com/container-storage-interface/spec
+func ContainerCSIVolumeID(val string) attribute.KeyValue {
+	return ContainerCSIVolumeIDKey.String(val)
+}
+
+// ContainerID returns an attribute KeyValue conforming to the "container.id"
+// semantic conventions. It represents the container ID. Usually a UUID, as for
+// example used to [identify Docker containers]. The UUID might be abbreviated.
+//
+// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification
+func ContainerID(val string) attribute.KeyValue {
+	return ContainerIDKey.String(val)
+}
+
+// ContainerImageID returns an attribute KeyValue conforming to the
+// "container.image.id" semantic conventions. It represents the runtime specific
+// image identifier. Usually a hash algorithm followed by a UUID.
+func ContainerImageID(val string) attribute.KeyValue {
+	return ContainerImageIDKey.String(val)
+}
+
+// ContainerImageName returns an attribute KeyValue conforming to the
+// "container.image.name" semantic conventions. It represents the name of the
+// image the container was built on.
+func ContainerImageName(val string) attribute.KeyValue {
+	return ContainerImageNameKey.String(val)
+}
+
+// ContainerImageRepoDigests returns an attribute KeyValue conforming to the
+// "container.image.repo_digests" semantic conventions. It represents the repo
+// digests of the container image as provided by the container runtime.
+func ContainerImageRepoDigests(val ...string) attribute.KeyValue {
+	return ContainerImageRepoDigestsKey.StringSlice(val)
+}
+
+// ContainerImageTags returns an attribute KeyValue conforming to the
+// "container.image.tags" semantic conventions. It represents the container image
+// tags. An example can be found in [Docker Image Inspect]. Should be only the
+// `<tag>` section of the full name for example from
+// `registry.example.com/my-org/my-image:<tag>`.
+//
+// [Docker Image Inspect]: https://docs.docker.com/reference/api/engine/version/v1.52/#tag/Image/operation/ImageInspect
+func ContainerImageTags(val ...string) attribute.KeyValue {
+	return ContainerImageTagsKey.StringSlice(val)
+}
+
+// ContainerLabel returns an attribute KeyValue conforming to the
+// "container.label" semantic conventions. It represents the container labels,
+// `<key>` being the label name, the value being the label value.
+func ContainerLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("container.label."+key, val)
+}
+
+// ContainerName returns an attribute KeyValue conforming to the "container.name"
+// semantic conventions. It represents the container name used by container
+// runtime.
+func ContainerName(val string) attribute.KeyValue {
+	return ContainerNameKey.String(val)
+}
+
+// ContainerRuntimeDescription returns an attribute KeyValue conforming to the
+// "container.runtime.description" semantic conventions. It represents a
+// description about the runtime which could include, for example details about
+// the CRI/API version being used or other customisations.
+func ContainerRuntimeDescription(val string) attribute.KeyValue {
+	return ContainerRuntimeDescriptionKey.String(val)
+}
+
+// ContainerRuntimeName returns an attribute KeyValue conforming to the
+// "container.runtime.name" semantic conventions. It represents the container
+// runtime managing this container.
+func ContainerRuntimeName(val string) attribute.KeyValue {
+	return ContainerRuntimeNameKey.String(val)
+}
+
+// ContainerRuntimeVersion returns an attribute KeyValue conforming to the
+// "container.runtime.version" semantic conventions. It represents the version of
+// the runtime of this process, as returned by the runtime without modification.
+func ContainerRuntimeVersion(val string) attribute.KeyValue {
+	return ContainerRuntimeVersionKey.String(val)
+}
+
+// Namespace: cpu
+const (
+	// CPULogicalNumberKey is the attribute Key conforming to the
+	// "cpu.logical_number" semantic conventions. It represents the logical CPU
+	// number [0..n-1].
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1
+	CPULogicalNumberKey = attribute.Key("cpu.logical_number")
+
+	// CPUModeKey is the attribute Key conforming to the "cpu.mode" semantic
+	// conventions. It represents the mode of the CPU.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "user", "system"
+	CPUModeKey = attribute.Key("cpu.mode")
+)
+
+// CPULogicalNumber returns an attribute KeyValue conforming to the
+// "cpu.logical_number" semantic conventions. It represents the logical CPU
+// number [0..n-1].
+func CPULogicalNumber(val int) attribute.KeyValue {
+	return CPULogicalNumberKey.Int(val)
+}
+
+// Enum values for cpu.mode
+var (
+	// User
+	// Stability: development
+	CPUModeUser = CPUModeKey.String("user")
+	// System
+	// Stability: development
+	CPUModeSystem = CPUModeKey.String("system")
+	// Nice
+	// Stability: development
+	CPUModeNice = CPUModeKey.String("nice")
+	// Idle
+	// Stability: development
+	CPUModeIdle = CPUModeKey.String("idle")
+	// IO Wait
+	// Stability: development
+	CPUModeIOWait = CPUModeKey.String("iowait")
+	// Interrupt
+	// Stability: development
+	CPUModeInterrupt = CPUModeKey.String("interrupt")
+	// Steal
+	// Stability: development
+	CPUModeSteal = CPUModeKey.String("steal")
+	// Kernel
+	// Stability: development
+	CPUModeKernel = CPUModeKey.String("kernel")
+)
+
+// Namespace: db
+const (
+	// DBClientConnectionPoolNameKey is the attribute Key conforming to the
+	// "db.client.connection.pool.name" semantic conventions. It represents the name
+	// of the connection pool; unique within the instrumented application. In case
+	// the connection pool implementation doesn't provide a name, instrumentation
+	// SHOULD use a combination of parameters that would make the name unique, for
+	// example, combining attributes `server.address`, `server.port`, and
+	// `db.namespace`, formatted as `server.address:server.port/db.namespace`.
+	// Instrumentations that generate connection pool name following different
+	// patterns SHOULD document it.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "myDataSource"
+	DBClientConnectionPoolNameKey = attribute.Key("db.client.connection.pool.name")
+
+	// DBClientConnectionStateKey is the attribute Key conforming to the
+	// "db.client.connection.state" semantic conventions. It represents the state of
+	// a connection in the pool.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "idle"
+	DBClientConnectionStateKey = attribute.Key("db.client.connection.state")
+
+	// DBCollectionNameKey is the attribute Key conforming to the
+	// "db.collection.name" semantic conventions. It represents the name of a
+	// collection (table, container) within the database.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "public.users", "customers"
+	// Note: It is RECOMMENDED to capture the value as provided by the application
+	// without attempting to do any case normalization.
+	//
+	// The collection name SHOULD NOT be extracted from `db.query.text`,
+	// when the database system supports query text with multiple collections
+	// in non-batch operations.
+	//
+	// For batch operations, if the individual operations are known to have the same
+	// collection name then that collection name SHOULD be used.
+	DBCollectionNameKey = attribute.Key("db.collection.name")
+
+	// DBNamespaceKey is the attribute Key conforming to the "db.namespace" semantic
+	// conventions. It represents the name of the database, fully qualified within
+	// the server address and port.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "customers", "test.users"
+	// Note: If a database system has multiple namespace components, they SHOULD be
+	// concatenated from the most general to the most specific namespace component,
+	// using `|` as a separator between the components. Any missing components (and
+	// their associated separators) SHOULD be omitted.
+	// Semantic conventions for individual database systems SHOULD document what
+	// `db.namespace` means in the context of that system.
+	// It is RECOMMENDED to capture the value as provided by the application without
+	// attempting to do any case normalization.
+	DBNamespaceKey = attribute.Key("db.namespace")
+
+	// DBOperationBatchSizeKey is the attribute Key conforming to the
+	// "db.operation.batch.size" semantic conventions. It represents the number of
+	// queries included in a batch operation.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: 2, 3, 4
+	// Note: Operations are only considered batches when they contain two or more
+	// operations, and so `db.operation.batch.size` SHOULD never be `1`.
+	DBOperationBatchSizeKey = attribute.Key("db.operation.batch.size")
+
+	// DBOperationNameKey is the attribute Key conforming to the "db.operation.name"
+	// semantic conventions. It represents the name of the operation or command
+	// being executed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "findAndModify", "HMSET", "SELECT"
+	// Note: It is RECOMMENDED to capture the value as provided by the application
+	// without attempting to do any case normalization.
+	//
+	// The operation name SHOULD NOT be extracted from `db.query.text`,
+	// when the database system supports query text with multiple operations
+	// in non-batch operations.
+	//
+	// If spaces can occur in the operation name, multiple consecutive spaces
+	// SHOULD be normalized to a single space.
+	//
+	// For batch operations, if the individual operations are known to have the same
+	// operation name
+	// then that operation name SHOULD be used prepended by `BATCH `,
+	// otherwise `db.operation.name` SHOULD be `BATCH` or some other database
+	// system specific term if more applicable.
+	DBOperationNameKey = attribute.Key("db.operation.name")
+
+	// DBQuerySummaryKey is the attribute Key conforming to the "db.query.summary"
+	// semantic conventions. It represents the low cardinality summary of a database
+	// query.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "SELECT wuser_table", "INSERT shipping_details SELECT orders", "get
+	// user by id"
+	// Note: The query summary describes a class of database queries and is useful
+	// as a grouping key, especially when analyzing telemetry for database
+	// calls involving complex queries.
+	//
+	// Summary may be available to the instrumentation through
+	// instrumentation hooks or other means. If it is not available,
+	// instrumentations
+	// that support query parsing SHOULD generate a summary following
+	// [Generating query summary]
+	// section.
+	//
+	// For batch operations, if the individual operations are known to have the same
+	// query summary
+	// then that query summary SHOULD be used prepended by `BATCH `,
+	// otherwise `db.query.summary` SHOULD be `BATCH` or some other database
+	// system specific term if more applicable.
+	//
+	// [Generating query summary]: /docs/db/database-spans.md#generating-a-summary-of-the-query
+	DBQuerySummaryKey = attribute.Key("db.query.summary")
+
+	// DBQueryTextKey is the attribute Key conforming to the "db.query.text"
+	// semantic conventions. It represents the database query being executed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "SELECT * FROM wuser_table where username = ?", "SET mykey ?"
+	// Note: For sanitization see [Sanitization of `db.query.text`].
+	// For batch operations, if the individual operations are known to have the same
+	// query text then that query text SHOULD be used, otherwise all of the
+	// individual query texts SHOULD be concatenated with separator `; ` or some
+	// other database system specific separator if more applicable.
+	// Parameterized query text SHOULD NOT be sanitized. Even though parameterized
+	// query text can potentially have sensitive data, by using a parameterized
+	// query the user is giving a strong signal that any sensitive data will be
+	// passed as parameter values, and the benefit to observability of capturing the
+	// static part of the query text by default outweighs the risk.
+	//
+	// [Sanitization of `db.query.text`]: /docs/db/database-spans.md#sanitization-of-dbquerytext
+	DBQueryTextKey = attribute.Key("db.query.text")
+
+	// DBResponseReturnedRowsKey is the attribute Key conforming to the
+	// "db.response.returned_rows" semantic conventions. It represents the number of
+	// rows returned by the operation.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 10, 30, 1000
+	DBResponseReturnedRowsKey = attribute.Key("db.response.returned_rows")
+
+	// DBResponseStatusCodeKey is the attribute Key conforming to the
+	// "db.response.status_code" semantic conventions. It represents the database
+	// response status code.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "102", "ORA-17002", "08P01", "404"
+	// Note: The status code returned by the database. Usually it represents an
+	// error code, but may also represent partial success, warning, or differentiate
+	// between various types of successful outcomes.
+	// Semantic conventions for individual database systems SHOULD document what
+	// `db.response.status_code` means in the context of that system.
+	DBResponseStatusCodeKey = attribute.Key("db.response.status_code")
+
+	// DBStoredProcedureNameKey is the attribute Key conforming to the
+	// "db.stored_procedure.name" semantic conventions. It represents the name of a
+	// stored procedure within the database.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "GetCustomer"
+	// Note: It is RECOMMENDED to capture the value as provided by the application
+	// without attempting to do any case normalization.
+	//
+	// For batch operations, if the individual operations are known to have the same
+	// stored procedure name then that stored procedure name SHOULD be used.
+	DBStoredProcedureNameKey = attribute.Key("db.stored_procedure.name")
+
+	// DBSystemNameKey is the attribute Key conforming to the "db.system.name"
+	// semantic conventions. It represents the database management system (DBMS)
+	// product as identified by the client instrumentation.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples:
+	// Note: The actual DBMS may differ from the one identified by the client. For
+	// example, when using PostgreSQL client libraries to connect to a CockroachDB,
+	// the `db.system.name` is set to `postgresql` based on the instrumentation's
+	// best knowledge.
+	DBSystemNameKey = attribute.Key("db.system.name")
+)
+
+// DBClientConnectionPoolName returns an attribute KeyValue conforming to the
+// "db.client.connection.pool.name" semantic conventions. It represents the name
+// of the connection pool; unique within the instrumented application. In case
+// the connection pool implementation doesn't provide a name, instrumentation
+// SHOULD use a combination of parameters that would make the name unique, for
+// example, combining attributes `server.address`, `server.port`, and
+// `db.namespace`, formatted as `server.address:server.port/db.namespace`.
+// Instrumentations that generate connection pool name following different
+// patterns SHOULD document it.
+func DBClientConnectionPoolName(val string) attribute.KeyValue {
+	return DBClientConnectionPoolNameKey.String(val)
+}
+
+// DBCollectionName returns an attribute KeyValue conforming to the
+// "db.collection.name" semantic conventions. It represents the name of a
+// collection (table, container) within the database.
+func DBCollectionName(val string) attribute.KeyValue {
+	return DBCollectionNameKey.String(val)
+}
+
+// DBNamespace returns an attribute KeyValue conforming to the "db.namespace"
+// semantic conventions. It represents the name of the database, fully qualified
+// within the server address and port.
+func DBNamespace(val string) attribute.KeyValue {
+	return DBNamespaceKey.String(val)
+}
+
+// DBOperationBatchSize returns an attribute KeyValue conforming to the
+// "db.operation.batch.size" semantic conventions. It represents the number of
+// queries included in a batch operation.
+func DBOperationBatchSize(val int) attribute.KeyValue {
+	return DBOperationBatchSizeKey.Int(val)
+}
+
+// DBOperationName returns an attribute KeyValue conforming to the
+// "db.operation.name" semantic conventions. It represents the name of the
+// operation or command being executed.
+func DBOperationName(val string) attribute.KeyValue {
+	return DBOperationNameKey.String(val)
+}
+
+// DBOperationParameter returns an attribute KeyValue conforming to the
+// "db.operation.parameter" semantic conventions. It represents a database
+// operation parameter, with `<key>` being the parameter name, and the attribute
+// value being a string representation of the parameter value.
+func DBOperationParameter(key string, val string) attribute.KeyValue {
+	return attribute.String("db.operation.parameter."+key, val)
+}
+
+// DBQueryParameter returns an attribute KeyValue conforming to the
+// "db.query.parameter" semantic conventions. It represents a database query
+// parameter, with `<key>` being the parameter name, and the attribute value
+// being a string representation of the parameter value.
+func DBQueryParameter(key string, val string) attribute.KeyValue {
+	return attribute.String("db.query.parameter."+key, val)
+}
+
+// DBQuerySummary returns an attribute KeyValue conforming to the
+// "db.query.summary" semantic conventions. It represents the low cardinality
+// summary of a database query.
+func DBQuerySummary(val string) attribute.KeyValue {
+	return DBQuerySummaryKey.String(val)
+}
+
+// DBQueryText returns an attribute KeyValue conforming to the "db.query.text"
+// semantic conventions. It represents the database query being executed.
+func DBQueryText(val string) attribute.KeyValue {
+	return DBQueryTextKey.String(val)
+}
+
+// DBResponseReturnedRows returns an attribute KeyValue conforming to the
+// "db.response.returned_rows" semantic conventions. It represents the number of
+// rows returned by the operation.
+func DBResponseReturnedRows(val int) attribute.KeyValue {
+	return DBResponseReturnedRowsKey.Int(val)
+}
+
+// DBResponseStatusCode returns an attribute KeyValue conforming to the
+// "db.response.status_code" semantic conventions. It represents the database
+// response status code.
+func DBResponseStatusCode(val string) attribute.KeyValue {
+	return DBResponseStatusCodeKey.String(val)
+}
+
+// DBStoredProcedureName returns an attribute KeyValue conforming to the
+// "db.stored_procedure.name" semantic conventions. It represents the name of a
+// stored procedure within the database.
+func DBStoredProcedureName(val string) attribute.KeyValue {
+	return DBStoredProcedureNameKey.String(val)
+}
+
+// Enum values for db.client.connection.state
+var (
+	// idle
+	// Stability: development
+	DBClientConnectionStateIdle = DBClientConnectionStateKey.String("idle")
+	// used
+	// Stability: development
+	DBClientConnectionStateUsed = DBClientConnectionStateKey.String("used")
+)
+
+// Enum values for db.system.name
+var (
+	// Some other SQL database. Fallback only.
+	// Stability: development
+	DBSystemNameOtherSQL = DBSystemNameKey.String("other_sql")
+	// [Adabas (Adaptable Database System)]
+	// Stability: development
+	//
+	// [Adabas (Adaptable Database System)]: https://documentation.softwareag.com/?pf=adabas
+	DBSystemNameSoftwareagAdabas = DBSystemNameKey.String("softwareag.adabas")
+	// [Actian Ingres]
+	// Stability: development
+	//
+	// [Actian Ingres]: https://www.actian.com/databases/ingres/
+	DBSystemNameActianIngres = DBSystemNameKey.String("actian.ingres")
+	// [Amazon DynamoDB]
+	// Stability: development
+	//
+	// [Amazon DynamoDB]: https://aws.amazon.com/pm/dynamodb/
+	DBSystemNameAWSDynamoDB = DBSystemNameKey.String("aws.dynamodb")
+	// [Amazon Redshift]
+	// Stability: development
+	//
+	// [Amazon Redshift]: https://aws.amazon.com/redshift/
+	DBSystemNameAWSRedshift = DBSystemNameKey.String("aws.redshift")
+	// [Azure Cosmos DB]
+	// Stability: development
+	//
+	// [Azure Cosmos DB]: https://learn.microsoft.com/azure/cosmos-db
+	DBSystemNameAzureCosmosDB = DBSystemNameKey.String("azure.cosmosdb")
+	// [InterSystems Caché]
+	// Stability: development
+	//
+	// [InterSystems Caché]: https://www.intersystems.com/products/cache/
+	DBSystemNameIntersystemsCache = DBSystemNameKey.String("intersystems.cache")
+	// [Apache Cassandra]
+	// Stability: development
+	//
+	// [Apache Cassandra]: https://cassandra.apache.org/
+	DBSystemNameCassandra = DBSystemNameKey.String("cassandra")
+	// [ClickHouse]
+	// Stability: development
+	//
+	// [ClickHouse]: https://clickhouse.com/
+	DBSystemNameClickHouse = DBSystemNameKey.String("clickhouse")
+	// [CockroachDB]
+	// Stability: development
+	//
+	// [CockroachDB]: https://www.cockroachlabs.com/
+	DBSystemNameCockroachDB = DBSystemNameKey.String("cockroachdb")
+	// [Couchbase]
+	// Stability: development
+	//
+	// [Couchbase]: https://www.couchbase.com/
+	DBSystemNameCouchbase = DBSystemNameKey.String("couchbase")
+	// [Apache CouchDB]
+	// Stability: development
+	//
+	// [Apache CouchDB]: https://couchdb.apache.org/
+	DBSystemNameCouchDB = DBSystemNameKey.String("couchdb")
+	// [Apache Derby]
+	// Stability: development
+	//
+	// [Apache Derby]: https://db.apache.org/derby/
+	DBSystemNameDerby = DBSystemNameKey.String("derby")
+	// [Elasticsearch]
+	// Stability: development
+	//
+	// [Elasticsearch]: https://www.elastic.co/elasticsearch
+	DBSystemNameElasticsearch = DBSystemNameKey.String("elasticsearch")
+	// [Firebird]
+	// Stability: development
+	//
+	// [Firebird]: https://www.firebirdsql.org/
+	DBSystemNameFirebirdSQL = DBSystemNameKey.String("firebirdsql")
+	// [Google Cloud Spanner]
+	// Stability: development
+	//
+	// [Google Cloud Spanner]: https://cloud.google.com/spanner
+	DBSystemNameGCPSpanner = DBSystemNameKey.String("gcp.spanner")
+	// [Apache Geode]
+	// Stability: development
+	//
+	// [Apache Geode]: https://geode.apache.org/
+	DBSystemNameGeode = DBSystemNameKey.String("geode")
+	// [H2 Database]
+	// Stability: development
+	//
+	// [H2 Database]: https://h2database.com/
+	DBSystemNameH2database = DBSystemNameKey.String("h2database")
+	// [Apache HBase]
+	// Stability: development
+	//
+	// [Apache HBase]: https://hbase.apache.org/
+	DBSystemNameHBase = DBSystemNameKey.String("hbase")
+	// [Apache Hive]
+	// Stability: development
+	//
+	// [Apache Hive]: https://hive.apache.org/
+	DBSystemNameHive = DBSystemNameKey.String("hive")
+	// [HyperSQL Database]
+	// Stability: development
+	//
+	// [HyperSQL Database]: https://hsqldb.org/
+	DBSystemNameHSQLDB = DBSystemNameKey.String("hsqldb")
+	// [IBM Db2]
+	// Stability: development
+	//
+	// [IBM Db2]: https://www.ibm.com/db2
+	DBSystemNameIBMDB2 = DBSystemNameKey.String("ibm.db2")
+	// [IBM Informix]
+	// Stability: development
+	//
+	// [IBM Informix]: https://www.ibm.com/products/informix
+	DBSystemNameIBMInformix = DBSystemNameKey.String("ibm.informix")
+	// [IBM Netezza]
+	// Stability: development
+	//
+	// [IBM Netezza]: https://www.ibm.com/products/netezza
+	DBSystemNameIBMNetezza = DBSystemNameKey.String("ibm.netezza")
+	// [InfluxDB]
+	// Stability: development
+	//
+	// [InfluxDB]: https://www.influxdata.com/
+	DBSystemNameInfluxDB = DBSystemNameKey.String("influxdb")
+	// [Instant]
+	// Stability: development
+	//
+	// [Instant]: https://www.instantdb.com/
+	DBSystemNameInstantDB = DBSystemNameKey.String("instantdb")
+	// [MariaDB]
+	// Stability: stable
+	//
+	// [MariaDB]: https://mariadb.org/
+	DBSystemNameMariaDB = DBSystemNameKey.String("mariadb")
+	// [Memcached]
+	// Stability: development
+	//
+	// [Memcached]: https://memcached.org/
+	DBSystemNameMemcached = DBSystemNameKey.String("memcached")
+	// [MongoDB]
+	// Stability: development
+	//
+	// [MongoDB]: https://www.mongodb.com/
+	DBSystemNameMongoDB = DBSystemNameKey.String("mongodb")
+	// [Microsoft SQL Server]
+	// Stability: stable
+	//
+	// [Microsoft SQL Server]: https://www.microsoft.com/sql-server
+	DBSystemNameMicrosoftSQLServer = DBSystemNameKey.String("microsoft.sql_server")
+	// [MySQL]
+	// Stability: stable
+	//
+	// [MySQL]: https://www.mysql.com/
+	DBSystemNameMySQL = DBSystemNameKey.String("mysql")
+	// [Neo4j]
+	// Stability: development
+	//
+	// [Neo4j]: https://neo4j.com/
+	DBSystemNameNeo4j = DBSystemNameKey.String("neo4j")
+	// [OpenSearch]
+	// Stability: development
+	//
+	// [OpenSearch]: https://opensearch.org/
+	DBSystemNameOpenSearch = DBSystemNameKey.String("opensearch")
+	// [Oracle Database]
+	// Stability: development
+	//
+	// [Oracle Database]: https://www.oracle.com/database/
+	DBSystemNameOracleDB = DBSystemNameKey.String("oracle.db")
+	// [PostgreSQL]
+	// Stability: stable
+	//
+	// [PostgreSQL]: https://www.postgresql.org/
+	DBSystemNamePostgreSQL = DBSystemNameKey.String("postgresql")
+	// [Redis]
+	// Stability: development
+	//
+	// [Redis]: https://redis.io/
+	DBSystemNameRedis = DBSystemNameKey.String("redis")
+	// [SAP HANA]
+	// Stability: development
+	//
+	// [SAP HANA]: https://www.sap.com/products/technology-platform/hana/what-is-sap-hana.html
+	DBSystemNameSAPHANA = DBSystemNameKey.String("sap.hana")
+	// [SAP MaxDB]
+	// Stability: development
+	//
+	// [SAP MaxDB]: https://maxdb.sap.com/
+	DBSystemNameSAPMaxDB = DBSystemNameKey.String("sap.maxdb")
+	// [SQLite]
+	// Stability: development
+	//
+	// [SQLite]: https://www.sqlite.org/
+	DBSystemNameSQLite = DBSystemNameKey.String("sqlite")
+	// [Teradata]
+	// Stability: development
+	//
+	// [Teradata]: https://www.teradata.com/
+	DBSystemNameTeradata = DBSystemNameKey.String("teradata")
+	// [Trino]
+	// Stability: development
+	//
+	// [Trino]: https://trino.io/
+	DBSystemNameTrino = DBSystemNameKey.String("trino")
+)
+
+// Namespace: deployment
+const (
+	// DeploymentEnvironmentNameKey is the attribute Key conforming to the
+	// "deployment.environment.name" semantic conventions. It represents the name of
+	// the [deployment environment] (aka deployment tier).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "staging", "production"
+	// Note: `deployment.environment.name` does not affect the uniqueness
+	// constraints defined through
+	// the `service.namespace`, `service.name` and `service.instance.id` resource
+	// attributes.
+	// This implies that resources carrying the following attribute combinations
+	// MUST be
+	// considered to be identifying the same service:
+	//
+	//   - `service.name=frontend`, `deployment.environment.name=production`
+	//   - `service.name=frontend`, `deployment.environment.name=staging`.
+	//
+	//
+	// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment
+	DeploymentEnvironmentNameKey = attribute.Key("deployment.environment.name")
+
+	// DeploymentIDKey is the attribute Key conforming to the "deployment.id"
+	// semantic conventions. It represents the id of the deployment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1208"
+	DeploymentIDKey = attribute.Key("deployment.id")
+
+	// DeploymentNameKey is the attribute Key conforming to the "deployment.name"
+	// semantic conventions. It represents the name of the deployment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "deploy my app", "deploy-frontend"
+	DeploymentNameKey = attribute.Key("deployment.name")
+
+	// DeploymentStatusKey is the attribute Key conforming to the
+	// "deployment.status" semantic conventions. It represents the status of the
+	// deployment.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	DeploymentStatusKey = attribute.Key("deployment.status")
+)
+
+// DeploymentEnvironmentName returns an attribute KeyValue conforming to the
+// "deployment.environment.name" semantic conventions. It represents the name of
+// the [deployment environment] (aka deployment tier).
+//
+// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment
+func DeploymentEnvironmentName(val string) attribute.KeyValue {
+	return DeploymentEnvironmentNameKey.String(val)
+}
+
+// DeploymentID returns an attribute KeyValue conforming to the "deployment.id"
+// semantic conventions. It represents the id of the deployment.
+func DeploymentID(val string) attribute.KeyValue {
+	return DeploymentIDKey.String(val)
+}
+
+// DeploymentName returns an attribute KeyValue conforming to the
+// "deployment.name" semantic conventions. It represents the name of the
+// deployment.
+func DeploymentName(val string) attribute.KeyValue {
+	return DeploymentNameKey.String(val)
+}
+
+// Enum values for deployment.status
+var (
+	// failed
+	// Stability: development
+	DeploymentStatusFailed = DeploymentStatusKey.String("failed")
+	// succeeded
+	// Stability: development
+	DeploymentStatusSucceeded = DeploymentStatusKey.String("succeeded")
+)
+
+// Namespace: destination
+const (
+	// DestinationAddressKey is the attribute Key conforming to the
+	// "destination.address" semantic conventions. It represents the destination
+	// address - domain name if available without reverse DNS lookup; otherwise, IP
+	// address or Unix domain socket name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "destination.example.com", "10.1.2.80", "/tmp/my.sock"
+	// Note: When observed from the source side, and when communicating through an
+	// intermediary, `destination.address` SHOULD represent the destination address
+	// behind any intermediaries, for example proxies, if it's available.
+	DestinationAddressKey = attribute.Key("destination.address")
+
+	// DestinationPortKey is the attribute Key conforming to the "destination.port"
+	// semantic conventions. It represents the destination port number.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 3389, 2888
+	DestinationPortKey = attribute.Key("destination.port")
+)
+
+// DestinationAddress returns an attribute KeyValue conforming to the
+// "destination.address" semantic conventions. It represents the destination
+// address - domain name if available without reverse DNS lookup; otherwise, IP
+// address or Unix domain socket name.
+func DestinationAddress(val string) attribute.KeyValue {
+	return DestinationAddressKey.String(val)
+}
+
+// DestinationPort returns an attribute KeyValue conforming to the
+// "destination.port" semantic conventions. It represents the destination port
+// number.
+func DestinationPort(val int) attribute.KeyValue {
+	return DestinationPortKey.Int(val)
+}
+
+// Namespace: device
+const (
+	// DeviceIDKey is the attribute Key conforming to the "device.id" semantic
+	// conventions. It represents a unique identifier representing the device.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "123456789012345", "01:23:45:67:89:AB"
+	// Note: Its value SHOULD be identical for all apps on a device and it SHOULD
+	// NOT change if an app is uninstalled and re-installed.
+	// However, it might be resettable by the user for all apps on a device.
+	// Hardware IDs (e.g. vendor-specific serial number, IMEI or MAC address) MAY be
+	// used as values.
+	//
+	// More information about Android identifier best practices can be found in the
+	// [Android user data IDs guide].
+	//
+	// > [!WARNING]> This attribute may contain sensitive (PII) information. Caution
+	// > should be taken when storing personal data or anything which can identify a
+	// > user. GDPR and data protection laws may apply,
+	// > ensure you do your own due diligence.> Due to these reasons, this
+	// > identifier is not recommended for consumer applications and will likely
+	// > result in rejection from both Google Play and App Store.
+	// > However, it may be appropriate for specific enterprise scenarios, such as
+	// > kiosk devices or enterprise-managed devices, with appropriate compliance
+	// > clearance.
+	// > Any instrumentation providing this identifier MUST implement it as an
+	// > opt-in feature.> See [`app.installation.id`]>  for a more
+	// > privacy-preserving alternative.
+	//
+	// [Android user data IDs guide]: https://developer.android.com/training/articles/user-data-ids
+	// [`app.installation.id`]: /docs/registry/attributes/app.md#app-installation-id
+	DeviceIDKey = attribute.Key("device.id")
+
+	// DeviceManufacturerKey is the attribute Key conforming to the
+	// "device.manufacturer" semantic conventions. It represents the name of the
+	// device manufacturer.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Apple", "Samsung"
+	// Note: The Android OS provides this field via [Build]. iOS apps SHOULD
+	// hardcode the value `Apple`.
+	//
+	// [Build]: https://developer.android.com/reference/android/os/Build#MANUFACTURER
+	DeviceManufacturerKey = attribute.Key("device.manufacturer")
+
+	// DeviceModelIdentifierKey is the attribute Key conforming to the
+	// "device.model.identifier" semantic conventions. It represents the model
+	// identifier for the device.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "iPhone3,4", "SM-G920F"
+	// Note: It's recommended this value represents a machine-readable version of
+	// the model identifier rather than the market or consumer-friendly name of the
+	// device.
+	DeviceModelIdentifierKey = attribute.Key("device.model.identifier")
+
+	// DeviceModelNameKey is the attribute Key conforming to the "device.model.name"
+	// semantic conventions. It represents the marketing name for the device model.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "iPhone 6s Plus", "Samsung Galaxy S6"
+	// Note: It's recommended this value represents a human-readable version of the
+	// device model rather than a machine-readable alternative.
+	DeviceModelNameKey = attribute.Key("device.model.name")
+)
+
+// DeviceID returns an attribute KeyValue conforming to the "device.id" semantic
+// conventions. It represents a unique identifier representing the device.
+func DeviceID(val string) attribute.KeyValue {
+	return DeviceIDKey.String(val)
+}
+
+// DeviceManufacturer returns an attribute KeyValue conforming to the
+// "device.manufacturer" semantic conventions. It represents the name of the
+// device manufacturer.
+func DeviceManufacturer(val string) attribute.KeyValue {
+	return DeviceManufacturerKey.String(val)
+}
+
+// DeviceModelIdentifier returns an attribute KeyValue conforming to the
+// "device.model.identifier" semantic conventions. It represents the model
+// identifier for the device.
+func DeviceModelIdentifier(val string) attribute.KeyValue {
+	return DeviceModelIdentifierKey.String(val)
+}
+
+// DeviceModelName returns an attribute KeyValue conforming to the
+// "device.model.name" semantic conventions. It represents the marketing name for
+// the device model.
+func DeviceModelName(val string) attribute.KeyValue {
+	return DeviceModelNameKey.String(val)
+}
+
+// Namespace: disk
+const (
+	// DiskIODirectionKey is the attribute Key conforming to the "disk.io.direction"
+	// semantic conventions. It represents the disk IO operation direction.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "read"
+	DiskIODirectionKey = attribute.Key("disk.io.direction")
+)
+
+// Enum values for disk.io.direction
+var (
+	// read
+	// Stability: development
+	DiskIODirectionRead = DiskIODirectionKey.String("read")
+	// write
+	// Stability: development
+	DiskIODirectionWrite = DiskIODirectionKey.String("write")
+)
+
+// Namespace: dns
+const (
+	// DNSAnswersKey is the attribute Key conforming to the "dns.answers" semantic
+	// conventions. It represents the list of IPv4 or IPv6 addresses resolved during
+	// DNS lookup.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "10.0.0.1", "2001:0db8:85a3:0000:0000:8a2e:0370:7334"
+	DNSAnswersKey = attribute.Key("dns.answers")
+
+	// DNSQuestionNameKey is the attribute Key conforming to the "dns.question.name"
+	// semantic conventions. It represents the name being queried.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "www.example.com", "opentelemetry.io"
+	// Note: The name represents the queried domain name as it appears in the DNS
+	// query without any additional normalization.
+	DNSQuestionNameKey = attribute.Key("dns.question.name")
+)
+
+// DNSAnswers returns an attribute KeyValue conforming to the "dns.answers"
+// semantic conventions. It represents the list of IPv4 or IPv6 addresses
+// resolved during DNS lookup.
+func DNSAnswers(val ...string) attribute.KeyValue {
+	return DNSAnswersKey.StringSlice(val)
+}
+
+// DNSQuestionName returns an attribute KeyValue conforming to the
+// "dns.question.name" semantic conventions. It represents the name being
+// queried.
+func DNSQuestionName(val string) attribute.KeyValue {
+	return DNSQuestionNameKey.String(val)
+}
+
+// Namespace: elasticsearch
+const (
+	// ElasticsearchNodeNameKey is the attribute Key conforming to the
+	// "elasticsearch.node.name" semantic conventions. It represents the represents
+	// the human-readable identifier of the node/instance to which a request was
+	// routed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "instance-0000000001"
+	ElasticsearchNodeNameKey = attribute.Key("elasticsearch.node.name")
+)
+
+// ElasticsearchNodeName returns an attribute KeyValue conforming to the
+// "elasticsearch.node.name" semantic conventions. It represents the represents
+// the human-readable identifier of the node/instance to which a request was
+// routed.
+func ElasticsearchNodeName(val string) attribute.KeyValue {
+	return ElasticsearchNodeNameKey.String(val)
+}
+
+// Namespace: enduser
+const (
+	// EnduserIDKey is the attribute Key conforming to the "enduser.id" semantic
+	// conventions. It represents the unique identifier of an end user in the
+	// system. It maybe a username, email address, or other identifier.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "username"
+	// Note: Unique identifier of an end user in the system.
+	//
+	// > [!Warning]
+	// > This field contains sensitive (PII) information.
+	EnduserIDKey = attribute.Key("enduser.id")
+
+	// EnduserPseudoIDKey is the attribute Key conforming to the "enduser.pseudo.id"
+	// semantic conventions. It represents the pseudonymous identifier of an end
+	// user. This identifier should be a random value that is not directly linked or
+	// associated with the end user's actual identity.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "QdH5CAWJgqVT4rOr0qtumf"
+	// Note: Pseudonymous identifier of an end user.
+	//
+	// > [!Warning]
+	// > This field contains sensitive (linkable PII) information.
+	EnduserPseudoIDKey = attribute.Key("enduser.pseudo.id")
+)
+
+// EnduserID returns an attribute KeyValue conforming to the "enduser.id"
+// semantic conventions. It represents the unique identifier of an end user in
+// the system. It maybe a username, email address, or other identifier.
+func EnduserID(val string) attribute.KeyValue {
+	return EnduserIDKey.String(val)
+}
+
+// EnduserPseudoID returns an attribute KeyValue conforming to the
+// "enduser.pseudo.id" semantic conventions. It represents the pseudonymous
+// identifier of an end user. This identifier should be a random value that is
+// not directly linked or associated with the end user's actual identity.
+func EnduserPseudoID(val string) attribute.KeyValue {
+	return EnduserPseudoIDKey.String(val)
+}
+
+// Namespace: error
+const (
+	// ErrorTypeKey is the attribute Key conforming to the "error.type" semantic
+	// conventions. It represents the describes a class of error the operation ended
+	// with.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "timeout", "java.net.UnknownHostException",
+	// "server_certificate_invalid", "500"
+	// Note: The `error.type` SHOULD be predictable, and SHOULD have low
+	// cardinality.
+	//
+	// When `error.type` is set to a type (e.g., an exception type), its
+	// canonical class name identifying the type within the artifact SHOULD be used.
+	//
+	// Instrumentations SHOULD document the list of errors they report.
+	//
+	// The cardinality of `error.type` within one instrumentation library SHOULD be
+	// low.
+	// Telemetry consumers that aggregate data from multiple instrumentation
+	// libraries and applications
+	// should be prepared for `error.type` to have high cardinality at query time
+	// when no
+	// additional filters are applied.
+	//
+	// If the operation has completed successfully, instrumentations SHOULD NOT set
+	// `error.type`.
+	//
+	// If a specific domain defines its own set of error identifiers (such as HTTP
+	// or RPC status codes),
+	// it's RECOMMENDED to:
+	//
+	//   - Use a domain-specific attribute
+	//   - Set `error.type` to capture all errors, regardless of whether they are
+	//     defined within the domain-specific set or not.
+	ErrorTypeKey = attribute.Key("error.type")
+)
+
+// Enum values for error.type
+var (
+	// A fallback error value to be used when the instrumentation doesn't define a
+	// custom value.
+	//
+	// Stability: stable
+	ErrorTypeOther = ErrorTypeKey.String("_OTHER")
+)
+
+// Namespace: exception
+const (
+	// ExceptionMessageKey is the attribute Key conforming to the
+	// "exception.message" semantic conventions. It represents the exception
+	// message.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "Division by zero", "Can't convert 'int' object to str implicitly"
+	// Note: > [!WARNING]
+	//
+	// > This attribute may contain sensitive information.
+	ExceptionMessageKey = attribute.Key("exception.message")
+
+	// ExceptionStacktraceKey is the attribute Key conforming to the
+	// "exception.stacktrace" semantic conventions. It represents a stacktrace as a
+	// string in the natural representation for the language runtime. The
+	// representation is to be determined and documented by each language SIG.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: Exception in thread "main" java.lang.RuntimeException: Test
+	// exception\n at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at
+	// com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at
+	// com.example.GenerateTrace.main(GenerateTrace.java:5)
+	ExceptionStacktraceKey = attribute.Key("exception.stacktrace")
+
+	// ExceptionTypeKey is the attribute Key conforming to the "exception.type"
+	// semantic conventions. It represents the type of the exception (its
+	// fully-qualified class name, if applicable). The dynamic type of the exception
+	// should be preferred over the static type in languages that support it.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "java.net.ConnectException", "OSError"
+	ExceptionTypeKey = attribute.Key("exception.type")
+)
+
+// ExceptionMessage returns an attribute KeyValue conforming to the
+// "exception.message" semantic conventions. It represents the exception message.
+func ExceptionMessage(val string) attribute.KeyValue {
+	return ExceptionMessageKey.String(val)
+}
+
+// ExceptionStacktrace returns an attribute KeyValue conforming to the
+// "exception.stacktrace" semantic conventions. It represents a stacktrace as a
+// string in the natural representation for the language runtime. The
+// representation is to be determined and documented by each language SIG.
+func ExceptionStacktrace(val string) attribute.KeyValue {
+	return ExceptionStacktraceKey.String(val)
+}
+
+// ExceptionType returns an attribute KeyValue conforming to the "exception.type"
+// semantic conventions. It represents the type of the exception (its
+// fully-qualified class name, if applicable). The dynamic type of the exception
+// should be preferred over the static type in languages that support it.
+func ExceptionType(val string) attribute.KeyValue {
+	return ExceptionTypeKey.String(val)
+}
+
+// Namespace: faas
+const (
+	// FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart"
+	// semantic conventions. It represents a boolean that is true if the serverless
+	// function is executed for the first time (aka cold-start).
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	FaaSColdstartKey = attribute.Key("faas.coldstart")
+
+	// FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic
+	// conventions. It represents a string containing the schedule period as
+	// [Cron Expression].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0/5 * * * ? *
+	//
+	// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm
+	FaaSCronKey = attribute.Key("faas.cron")
+
+	// FaaSDocumentCollectionKey is the attribute Key conforming to the
+	// "faas.document.collection" semantic conventions. It represents the name of
+	// the source on which the triggering operation was performed. For example, in
+	// Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the
+	// database name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "myBucketName", "myDbName"
+	FaaSDocumentCollectionKey = attribute.Key("faas.document.collection")
+
+	// FaaSDocumentNameKey is the attribute Key conforming to the
+	// "faas.document.name" semantic conventions. It represents the document
+	// name/table subjected to the operation. For example, in Cloud Storage or S3 is
+	// the name of the file, and in Cosmos DB the table name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "myFile.txt", "myTableName"
+	FaaSDocumentNameKey = attribute.Key("faas.document.name")
+
+	// FaaSDocumentOperationKey is the attribute Key conforming to the
+	// "faas.document.operation" semantic conventions. It represents the describes
+	// the type of the operation that was performed on the data.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	FaaSDocumentOperationKey = attribute.Key("faas.document.operation")
+
+	// FaaSDocumentTimeKey is the attribute Key conforming to the
+	// "faas.document.time" semantic conventions. It represents a string containing
+	// the time when the data was accessed in the [ISO 8601] format expressed in
+	// [UTC].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 2020-01-23T13:47:06Z
+	//
+	// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
+	// [UTC]: https://www.w3.org/TR/NOTE-datetime
+	FaaSDocumentTimeKey = attribute.Key("faas.document.time")
+
+	// FaaSInstanceKey is the attribute Key conforming to the "faas.instance"
+	// semantic conventions. It represents the execution environment ID as a string,
+	// that will be potentially reused for other invocations to the same
+	// function/function version.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de"
+	// Note: - **AWS Lambda:** Use the (full) log stream name.
+	FaaSInstanceKey = attribute.Key("faas.instance")
+
+	// FaaSInvocationIDKey is the attribute Key conforming to the
+	// "faas.invocation_id" semantic conventions. It represents the invocation ID of
+	// the current function invocation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: af9d5aa4-a685-4c5f-a22b-444f80b3cc28
+	FaaSInvocationIDKey = attribute.Key("faas.invocation_id")
+
+	// FaaSInvokedNameKey is the attribute Key conforming to the "faas.invoked_name"
+	// semantic conventions. It represents the name of the invoked function.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: my-function
+	// Note: SHOULD be equal to the `faas.name` resource attribute of the invoked
+	// function.
+	FaaSInvokedNameKey = attribute.Key("faas.invoked_name")
+
+	// FaaSInvokedProviderKey is the attribute Key conforming to the
+	// "faas.invoked_provider" semantic conventions. It represents the cloud
+	// provider of the invoked function.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: SHOULD be equal to the `cloud.provider` resource attribute of the
+	// invoked function.
+	FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider")
+
+	// FaaSInvokedRegionKey is the attribute Key conforming to the
+	// "faas.invoked_region" semantic conventions. It represents the cloud region of
+	// the invoked function.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: eu-central-1
+	// Note: SHOULD be equal to the `cloud.region` resource attribute of the invoked
+	// function.
+	FaaSInvokedRegionKey = attribute.Key("faas.invoked_region")
+
+	// FaaSMaxMemoryKey is the attribute Key conforming to the "faas.max_memory"
+	// semantic conventions. It represents the amount of memory available to the
+	// serverless function converted to Bytes.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Note: It's recommended to set this attribute since e.g. too little memory can
+	// easily stop a Java AWS Lambda function from working correctly. On AWS Lambda,
+	// the environment variable `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this
+	// information (which must be multiplied by 1,048,576).
+	FaaSMaxMemoryKey = attribute.Key("faas.max_memory")
+
+	// FaaSNameKey is the attribute Key conforming to the "faas.name" semantic
+	// conventions. It represents the name of the single function that this runtime
+	// instance executes.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-function", "myazurefunctionapp/some-function-name"
+	// Note: This is the name of the function as configured/deployed on the FaaS
+	// platform and is usually different from the name of the callback
+	// function (which may be stored in the
+	// [`code.namespace`/`code.function.name`]
+	// span attributes).
+	//
+	// For some cloud providers, the above definition is ambiguous. The following
+	// definition of function name MUST be used for this attribute
+	// (and consequently the span name) for the listed cloud providers/products:
+	//
+	//   - **Azure:** The full name `<FUNCAPP>/<FUNC>`, i.e., function app name
+	//     followed by a forward slash followed by the function name (this form
+	//     can also be seen in the resource JSON for the function).
+	//     This means that a span attribute MUST be used, as an Azure function
+	//     app can host multiple functions that would usually share
+	//     a TracerProvider (see also the `cloud.resource_id` attribute).
+	//
+	//
+	// [`code.namespace`/`code.function.name`]: /docs/general/attributes.md#source-code-attributes
+	FaaSNameKey = attribute.Key("faas.name")
+
+	// FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic
+	// conventions. It represents a string containing the function invocation time
+	// in the [ISO 8601] format expressed in [UTC].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 2020-01-23T13:47:06Z
+	//
+	// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
+	// [UTC]: https://www.w3.org/TR/NOTE-datetime
+	FaaSTimeKey = attribute.Key("faas.time")
+
+	// FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" semantic
+	// conventions. It represents the type of the trigger which caused this function
+	// invocation.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	FaaSTriggerKey = attribute.Key("faas.trigger")
+
+	// FaaSVersionKey is the attribute Key conforming to the "faas.version" semantic
+	// conventions. It represents the immutable version of the function being
+	// executed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "26", "pinkfroid-00002"
+	// Note: Depending on the cloud provider and platform, use:
+	//
+	//   - **AWS Lambda:** The [function version]
+	//     (an integer represented as a decimal string).
+	//   - **Google Cloud Run (Services):** The [revision]
+	//     (i.e., the function name plus the revision suffix).
+	//   - **Google Cloud Functions:** The value of the
+	//     [`K_REVISION` environment variable].
+	//   - **Azure Functions:** Not applicable. Do not set this attribute.
+	//
+	//
+	// [function version]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html
+	// [revision]: https://cloud.google.com/run/docs/managing/revisions
+	// [`K_REVISION` environment variable]: https://cloud.google.com/run/docs/container-contract#services-env-vars
+	FaaSVersionKey = attribute.Key("faas.version")
+)
+
+// FaaSColdstart returns an attribute KeyValue conforming to the "faas.coldstart"
+// semantic conventions. It represents a boolean that is true if the serverless
+// function is executed for the first time (aka cold-start).
+func FaaSColdstart(val bool) attribute.KeyValue {
+	return FaaSColdstartKey.Bool(val)
+}
+
+// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" semantic
+// conventions. It represents a string containing the schedule period as
+// [Cron Expression].
+//
+// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm
+func FaaSCron(val string) attribute.KeyValue {
+	return FaaSCronKey.String(val)
+}
+
+// FaaSDocumentCollection returns an attribute KeyValue conforming to the
+// "faas.document.collection" semantic conventions. It represents the name of the
+// source on which the triggering operation was performed. For example, in Cloud
+// Storage or S3 corresponds to the bucket name, and in Cosmos DB to the database
+// name.
+func FaaSDocumentCollection(val string) attribute.KeyValue {
+	return FaaSDocumentCollectionKey.String(val)
+}
+
+// FaaSDocumentName returns an attribute KeyValue conforming to the
+// "faas.document.name" semantic conventions. It represents the document
+// name/table subjected to the operation. For example, in Cloud Storage or S3 is
+// the name of the file, and in Cosmos DB the table name.
+func FaaSDocumentName(val string) attribute.KeyValue {
+	return FaaSDocumentNameKey.String(val)
+}
+
+// FaaSDocumentTime returns an attribute KeyValue conforming to the
+// "faas.document.time" semantic conventions. It represents a string containing
+// the time when the data was accessed in the [ISO 8601] format expressed in
+// [UTC].
+//
+// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
+// [UTC]: https://www.w3.org/TR/NOTE-datetime
+func FaaSDocumentTime(val string) attribute.KeyValue {
+	return FaaSDocumentTimeKey.String(val)
+}
+
+// FaaSInstance returns an attribute KeyValue conforming to the "faas.instance"
+// semantic conventions. It represents the execution environment ID as a string,
+// that will be potentially reused for other invocations to the same
+// function/function version.
+func FaaSInstance(val string) attribute.KeyValue {
+	return FaaSInstanceKey.String(val)
+}
+
+// FaaSInvocationID returns an attribute KeyValue conforming to the
+// "faas.invocation_id" semantic conventions. It represents the invocation ID of
+// the current function invocation.
+func FaaSInvocationID(val string) attribute.KeyValue {
+	return FaaSInvocationIDKey.String(val)
+}
+
+// FaaSInvokedName returns an attribute KeyValue conforming to the
+// "faas.invoked_name" semantic conventions. It represents the name of the
+// invoked function.
+func FaaSInvokedName(val string) attribute.KeyValue {
+	return FaaSInvokedNameKey.String(val)
+}
+
+// FaaSInvokedRegion returns an attribute KeyValue conforming to the
+// "faas.invoked_region" semantic conventions. It represents the cloud region of
+// the invoked function.
+func FaaSInvokedRegion(val string) attribute.KeyValue {
+	return FaaSInvokedRegionKey.String(val)
+}
+
+// FaaSMaxMemory returns an attribute KeyValue conforming to the
+// "faas.max_memory" semantic conventions. It represents the amount of memory
+// available to the serverless function converted to Bytes.
+func FaaSMaxMemory(val int) attribute.KeyValue {
+	return FaaSMaxMemoryKey.Int(val)
+}
+
+// FaaSName returns an attribute KeyValue conforming to the "faas.name" semantic
+// conventions. It represents the name of the single function that this runtime
+// instance executes.
+func FaaSName(val string) attribute.KeyValue {
+	return FaaSNameKey.String(val)
+}
+
+// FaaSTime returns an attribute KeyValue conforming to the "faas.time" semantic
+// conventions. It represents a string containing the function invocation time in
+// the [ISO 8601] format expressed in [UTC].
+//
+// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html
+// [UTC]: https://www.w3.org/TR/NOTE-datetime
+func FaaSTime(val string) attribute.KeyValue {
+	return FaaSTimeKey.String(val)
+}
+
+// FaaSVersion returns an attribute KeyValue conforming to the "faas.version"
+// semantic conventions. It represents the immutable version of the function
+// being executed.
+func FaaSVersion(val string) attribute.KeyValue {
+	return FaaSVersionKey.String(val)
+}
+
+// Enum values for faas.document.operation
+var (
+	// When a new object is created.
+	// Stability: development
+	FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert")
+	// When an object is modified.
+	// Stability: development
+	FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit")
+	// When an object is deleted.
+	// Stability: development
+	FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete")
+)
+
+// Enum values for faas.invoked_provider
+var (
+	// Alibaba Cloud
+	// Stability: development
+	FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud")
+	// Amazon Web Services
+	// Stability: development
+	FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws")
+	// Microsoft Azure
+	// Stability: development
+	FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure")
+	// Google Cloud Platform
+	// Stability: development
+	FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp")
+	// Tencent Cloud
+	// Stability: development
+	FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud")
+)
+
+// Enum values for faas.trigger
+var (
+	// A response to some data source operation such as a database or filesystem
+	// read/write
+	// Stability: development
+	FaaSTriggerDatasource = FaaSTriggerKey.String("datasource")
+	// To provide an answer to an inbound HTTP request
+	// Stability: development
+	FaaSTriggerHTTP = FaaSTriggerKey.String("http")
+	// A function is set to be executed when messages are sent to a messaging system
+	// Stability: development
+	FaaSTriggerPubSub = FaaSTriggerKey.String("pubsub")
+	// A function is scheduled to be executed regularly
+	// Stability: development
+	FaaSTriggerTimer = FaaSTriggerKey.String("timer")
+	// If none of the others apply
+	// Stability: development
+	FaaSTriggerOther = FaaSTriggerKey.String("other")
+)
+
+// Namespace: feature_flag
+const (
+	// FeatureFlagContextIDKey is the attribute Key conforming to the
+	// "feature_flag.context.id" semantic conventions. It represents the unique
+	// identifier for the flag evaluation context. For example, the targeting key.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "5157782b-2203-4c80-a857-dbbd5e7761db"
+	FeatureFlagContextIDKey = attribute.Key("feature_flag.context.id")
+
+	// FeatureFlagErrorMessageKey is the attribute Key conforming to the
+	// "feature_flag.error.message" semantic conventions. It represents a message
+	// providing more detail about an error that occurred during feature flag
+	// evaluation in human-readable form.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "Unexpected input type: string", "The user has exceeded their
+	// storage quota"
+	FeatureFlagErrorMessageKey = attribute.Key("feature_flag.error.message")
+
+	// FeatureFlagKeyKey is the attribute Key conforming to the "feature_flag.key"
+	// semantic conventions. It represents the lookup key of the feature flag.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "logo-color"
+	FeatureFlagKeyKey = attribute.Key("feature_flag.key")
+
+	// FeatureFlagProviderNameKey is the attribute Key conforming to the
+	// "feature_flag.provider.name" semantic conventions. It represents the
+	// identifies the feature flag provider.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "Flag Manager"
+	FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider.name")
+
+	// FeatureFlagResultReasonKey is the attribute Key conforming to the
+	// "feature_flag.result.reason" semantic conventions. It represents the reason
+	// code which shows how a feature flag value was determined.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "static", "targeting_match", "error", "default"
+	FeatureFlagResultReasonKey = attribute.Key("feature_flag.result.reason")
+
+	// FeatureFlagResultValueKey is the attribute Key conforming to the
+	// "feature_flag.result.value" semantic conventions. It represents the evaluated
+	// value of the feature flag.
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "#ff0000", true, 3
+	// Note: With some feature flag providers, feature flag results can be quite
+	// large or contain private or sensitive details.
+	// Because of this, `feature_flag.result.variant` is often the preferred
+	// attribute if it is available.
+	//
+	// It may be desirable to redact or otherwise limit the size and scope of
+	// `feature_flag.result.value` if possible.
+	// Because the evaluated flag value is unstructured and may be any type, it is
+	// left to the instrumentation author to determine how best to achieve this.
+	FeatureFlagResultValueKey = attribute.Key("feature_flag.result.value")
+
+	// FeatureFlagResultVariantKey is the attribute Key conforming to the
+	// "feature_flag.result.variant" semantic conventions. It represents a semantic
+	// identifier for an evaluated flag value.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "red", "true", "on"
+	// Note: A semantic identifier, commonly referred to as a variant, provides a
+	// means
+	// for referring to a value without including the value itself. This can
+	// provide additional context for understanding the meaning behind a value.
+	// For example, the variant `red` maybe be used for the value `#c05543`.
+	FeatureFlagResultVariantKey = attribute.Key("feature_flag.result.variant")
+
+	// FeatureFlagSetIDKey is the attribute Key conforming to the
+	// "feature_flag.set.id" semantic conventions. It represents the identifier of
+	// the [flag set] to which the feature flag belongs.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "proj-1", "ab98sgs", "service1/dev"
+	//
+	// [flag set]: https://openfeature.dev/specification/glossary/#flag-set
+	FeatureFlagSetIDKey = attribute.Key("feature_flag.set.id")
+
+	// FeatureFlagVersionKey is the attribute Key conforming to the
+	// "feature_flag.version" semantic conventions. It represents the version of the
+	// ruleset used during the evaluation. This may be any stable value which
+	// uniquely identifies the ruleset.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "1", "01ABCDEF"
+	FeatureFlagVersionKey = attribute.Key("feature_flag.version")
+)
+
+// FeatureFlagContextID returns an attribute KeyValue conforming to the
+// "feature_flag.context.id" semantic conventions. It represents the unique
+// identifier for the flag evaluation context. For example, the targeting key.
+func FeatureFlagContextID(val string) attribute.KeyValue {
+	return FeatureFlagContextIDKey.String(val)
+}
+
+// FeatureFlagErrorMessage returns an attribute KeyValue conforming to the
+// "feature_flag.error.message" semantic conventions. It represents a message
+// providing more detail about an error that occurred during feature flag
+// evaluation in human-readable form.
+func FeatureFlagErrorMessage(val string) attribute.KeyValue {
+	return FeatureFlagErrorMessageKey.String(val)
+}
+
+// FeatureFlagKey returns an attribute KeyValue conforming to the
+// "feature_flag.key" semantic conventions. It represents the lookup key of the
+// feature flag.
+func FeatureFlagKey(val string) attribute.KeyValue {
+	return FeatureFlagKeyKey.String(val)
+}
+
+// FeatureFlagProviderName returns an attribute KeyValue conforming to the
+// "feature_flag.provider.name" semantic conventions. It represents the
+// identifies the feature flag provider.
+func FeatureFlagProviderName(val string) attribute.KeyValue {
+	return FeatureFlagProviderNameKey.String(val)
+}
+
+// FeatureFlagResultVariant returns an attribute KeyValue conforming to the
+// "feature_flag.result.variant" semantic conventions. It represents a semantic
+// identifier for an evaluated flag value.
+func FeatureFlagResultVariant(val string) attribute.KeyValue {
+	return FeatureFlagResultVariantKey.String(val)
+}
+
+// FeatureFlagSetID returns an attribute KeyValue conforming to the
+// "feature_flag.set.id" semantic conventions. It represents the identifier of
+// the [flag set] to which the feature flag belongs.
+//
+// [flag set]: https://openfeature.dev/specification/glossary/#flag-set
+func FeatureFlagSetID(val string) attribute.KeyValue {
+	return FeatureFlagSetIDKey.String(val)
+}
+
+// FeatureFlagVersion returns an attribute KeyValue conforming to the
+// "feature_flag.version" semantic conventions. It represents the version of the
+// ruleset used during the evaluation. This may be any stable value which
+// uniquely identifies the ruleset.
+func FeatureFlagVersion(val string) attribute.KeyValue {
+	return FeatureFlagVersionKey.String(val)
+}
+
+// Enum values for feature_flag.result.reason
+var (
+	// The resolved value is static (no dynamic evaluation).
+	// Stability: release_candidate
+	FeatureFlagResultReasonStatic = FeatureFlagResultReasonKey.String("static")
+	// The resolved value fell back to a pre-configured value (no dynamic evaluation
+	// occurred or dynamic evaluation yielded no result).
+	// Stability: release_candidate
+	FeatureFlagResultReasonDefault = FeatureFlagResultReasonKey.String("default")
+	// The resolved value was the result of a dynamic evaluation, such as a rule or
+	// specific user-targeting.
+	// Stability: release_candidate
+	FeatureFlagResultReasonTargetingMatch = FeatureFlagResultReasonKey.String("targeting_match")
+	// The resolved value was the result of pseudorandom assignment.
+	// Stability: release_candidate
+	FeatureFlagResultReasonSplit = FeatureFlagResultReasonKey.String("split")
+	// The resolved value was retrieved from cache.
+	// Stability: release_candidate
+	FeatureFlagResultReasonCached = FeatureFlagResultReasonKey.String("cached")
+	// The resolved value was the result of the flag being disabled in the
+	// management system.
+	// Stability: release_candidate
+	FeatureFlagResultReasonDisabled = FeatureFlagResultReasonKey.String("disabled")
+	// The reason for the resolved value could not be determined.
+	// Stability: release_candidate
+	FeatureFlagResultReasonUnknown = FeatureFlagResultReasonKey.String("unknown")
+	// The resolved value is non-authoritative or possibly out of date
+	// Stability: release_candidate
+	FeatureFlagResultReasonStale = FeatureFlagResultReasonKey.String("stale")
+	// The resolved value was the result of an error.
+	// Stability: release_candidate
+	FeatureFlagResultReasonError = FeatureFlagResultReasonKey.String("error")
+)
+
+// Namespace: file
+const (
+	// FileAccessedKey is the attribute Key conforming to the "file.accessed"
+	// semantic conventions. It represents the time when the file was last accessed,
+	// in ISO 8601 format.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021-01-01T12:00:00Z"
+	// Note: This attribute might not be supported by some file systems — NFS,
+	// FAT32, in embedded OS, etc.
+	FileAccessedKey = attribute.Key("file.accessed")
+
+	// FileAttributesKey is the attribute Key conforming to the "file.attributes"
+	// semantic conventions. It represents the array of file attributes.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "readonly", "hidden"
+	// Note: Attributes names depend on the OS or file system. Here’s a
+	// non-exhaustive list of values expected for this attribute: `archive`,
+	// `compressed`, `directory`, `encrypted`, `execute`, `hidden`, `immutable`,
+	// `journaled`, `read`, `readonly`, `symbolic link`, `system`, `temporary`,
+	// `write`.
+	FileAttributesKey = attribute.Key("file.attributes")
+
+	// FileChangedKey is the attribute Key conforming to the "file.changed" semantic
+	// conventions. It represents the time when the file attributes or metadata was
+	// last changed, in ISO 8601 format.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021-01-01T12:00:00Z"
+	// Note: `file.changed` captures the time when any of the file's properties or
+	// attributes (including the content) are changed, while `file.modified`
+	// captures the timestamp when the file content is modified.
+	FileChangedKey = attribute.Key("file.changed")
+
+	// FileCreatedKey is the attribute Key conforming to the "file.created" semantic
+	// conventions. It represents the time when the file was created, in ISO 8601
+	// format.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021-01-01T12:00:00Z"
+	// Note: This attribute might not be supported by some file systems — NFS,
+	// FAT32, in embedded OS, etc.
+	FileCreatedKey = attribute.Key("file.created")
+
+	// FileDirectoryKey is the attribute Key conforming to the "file.directory"
+	// semantic conventions. It represents the directory where the file is located.
+	// It should include the drive letter, when appropriate.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/home/user", "C:\Program Files\MyApp"
+	FileDirectoryKey = attribute.Key("file.directory")
+
+	// FileExtensionKey is the attribute Key conforming to the "file.extension"
+	// semantic conventions. It represents the file extension, excluding the leading
+	// dot.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "png", "gz"
+	// Note: When the file name has multiple extensions (example.tar.gz), only the
+	// last one should be captured ("gz", not "tar.gz").
+	FileExtensionKey = attribute.Key("file.extension")
+
+	// FileForkNameKey is the attribute Key conforming to the "file.fork_name"
+	// semantic conventions. It represents the name of the fork. A fork is
+	// additional data associated with a filesystem object.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Zone.Identifier"
+	// Note: On Linux, a resource fork is used to store additional data with a
+	// filesystem object. A file always has at least one fork for the data portion,
+	// and additional forks may exist.
+	// On NTFS, this is analogous to an Alternate Data Stream (ADS), and the default
+	// data stream for a file is just called $DATA. Zone.Identifier is commonly used
+	// by Windows to track contents downloaded from the Internet. An ADS is
+	// typically of the form: C:\path\to\filename.extension:some_fork_name, and
+	// some_fork_name is the value that should populate `fork_name`.
+	// `filename.extension` should populate `file.name`, and `extension` should
+	// populate `file.extension`. The full path, `file.path`, will include the fork
+	// name.
+	FileForkNameKey = attribute.Key("file.fork_name")
+
+	// FileGroupIDKey is the attribute Key conforming to the "file.group.id"
+	// semantic conventions. It represents the primary Group ID (GID) of the file.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1000"
+	FileGroupIDKey = attribute.Key("file.group.id")
+
+	// FileGroupNameKey is the attribute Key conforming to the "file.group.name"
+	// semantic conventions. It represents the primary group name of the file.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "users"
+	FileGroupNameKey = attribute.Key("file.group.name")
+
+	// FileInodeKey is the attribute Key conforming to the "file.inode" semantic
+	// conventions. It represents the inode representing the file in the filesystem.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "256383"
+	FileInodeKey = attribute.Key("file.inode")
+
+	// FileModeKey is the attribute Key conforming to the "file.mode" semantic
+	// conventions. It represents the mode of the file in octal representation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0640"
+	FileModeKey = attribute.Key("file.mode")
+
+	// FileModifiedKey is the attribute Key conforming to the "file.modified"
+	// semantic conventions. It represents the time when the file content was last
+	// modified, in ISO 8601 format.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021-01-01T12:00:00Z"
+	FileModifiedKey = attribute.Key("file.modified")
+
+	// FileNameKey is the attribute Key conforming to the "file.name" semantic
+	// conventions. It represents the name of the file including the extension,
+	// without the directory.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "example.png"
+	FileNameKey = attribute.Key("file.name")
+
+	// FileOwnerIDKey is the attribute Key conforming to the "file.owner.id"
+	// semantic conventions. It represents the user ID (UID) or security identifier
+	// (SID) of the file owner.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1000"
+	FileOwnerIDKey = attribute.Key("file.owner.id")
+
+	// FileOwnerNameKey is the attribute Key conforming to the "file.owner.name"
+	// semantic conventions. It represents the username of the file owner.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "root"
+	FileOwnerNameKey = attribute.Key("file.owner.name")
+
+	// FilePathKey is the attribute Key conforming to the "file.path" semantic
+	// conventions. It represents the full path to the file, including the file
+	// name. It should include the drive letter, when appropriate.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/home/alice/example.png", "C:\Program Files\MyApp\myapp.exe"
+	FilePathKey = attribute.Key("file.path")
+
+	// FileSizeKey is the attribute Key conforming to the "file.size" semantic
+	// conventions. It represents the file size in bytes.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	FileSizeKey = attribute.Key("file.size")
+
+	// FileSymbolicLinkTargetPathKey is the attribute Key conforming to the
+	// "file.symbolic_link.target_path" semantic conventions. It represents the path
+	// to the target of a symbolic link.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/usr/bin/python3"
+	// Note: This attribute is only applicable to symbolic links.
+	FileSymbolicLinkTargetPathKey = attribute.Key("file.symbolic_link.target_path")
+)
+
+// FileAccessed returns an attribute KeyValue conforming to the "file.accessed"
+// semantic conventions. It represents the time when the file was last accessed,
+// in ISO 8601 format.
+func FileAccessed(val string) attribute.KeyValue {
+	return FileAccessedKey.String(val)
+}
+
+// FileAttributes returns an attribute KeyValue conforming to the
+// "file.attributes" semantic conventions. It represents the array of file
+// attributes.
+func FileAttributes(val ...string) attribute.KeyValue {
+	return FileAttributesKey.StringSlice(val)
+}
+
+// FileChanged returns an attribute KeyValue conforming to the "file.changed"
+// semantic conventions. It represents the time when the file attributes or
+// metadata was last changed, in ISO 8601 format.
+func FileChanged(val string) attribute.KeyValue {
+	return FileChangedKey.String(val)
+}
+
+// FileCreated returns an attribute KeyValue conforming to the "file.created"
+// semantic conventions. It represents the time when the file was created, in ISO
+// 8601 format.
+func FileCreated(val string) attribute.KeyValue {
+	return FileCreatedKey.String(val)
+}
+
+// FileDirectory returns an attribute KeyValue conforming to the "file.directory"
+// semantic conventions. It represents the directory where the file is located.
+// It should include the drive letter, when appropriate.
+func FileDirectory(val string) attribute.KeyValue {
+	return FileDirectoryKey.String(val)
+}
+
+// FileExtension returns an attribute KeyValue conforming to the "file.extension"
+// semantic conventions. It represents the file extension, excluding the leading
+// dot.
+func FileExtension(val string) attribute.KeyValue {
+	return FileExtensionKey.String(val)
+}
+
+// FileForkName returns an attribute KeyValue conforming to the "file.fork_name"
+// semantic conventions. It represents the name of the fork. A fork is additional
+// data associated with a filesystem object.
+func FileForkName(val string) attribute.KeyValue {
+	return FileForkNameKey.String(val)
+}
+
+// FileGroupID returns an attribute KeyValue conforming to the "file.group.id"
+// semantic conventions. It represents the primary Group ID (GID) of the file.
+func FileGroupID(val string) attribute.KeyValue {
+	return FileGroupIDKey.String(val)
+}
+
+// FileGroupName returns an attribute KeyValue conforming to the
+// "file.group.name" semantic conventions. It represents the primary group name
+// of the file.
+func FileGroupName(val string) attribute.KeyValue {
+	return FileGroupNameKey.String(val)
+}
+
+// FileInode returns an attribute KeyValue conforming to the "file.inode"
+// semantic conventions. It represents the inode representing the file in the
+// filesystem.
+func FileInode(val string) attribute.KeyValue {
+	return FileInodeKey.String(val)
+}
+
+// FileMode returns an attribute KeyValue conforming to the "file.mode" semantic
+// conventions. It represents the mode of the file in octal representation.
+func FileMode(val string) attribute.KeyValue {
+	return FileModeKey.String(val)
+}
+
+// FileModified returns an attribute KeyValue conforming to the "file.modified"
+// semantic conventions. It represents the time when the file content was last
+// modified, in ISO 8601 format.
+func FileModified(val string) attribute.KeyValue {
+	return FileModifiedKey.String(val)
+}
+
+// FileName returns an attribute KeyValue conforming to the "file.name" semantic
+// conventions. It represents the name of the file including the extension,
+// without the directory.
+func FileName(val string) attribute.KeyValue {
+	return FileNameKey.String(val)
+}
+
+// FileOwnerID returns an attribute KeyValue conforming to the "file.owner.id"
+// semantic conventions. It represents the user ID (UID) or security identifier
+// (SID) of the file owner.
+func FileOwnerID(val string) attribute.KeyValue {
+	return FileOwnerIDKey.String(val)
+}
+
+// FileOwnerName returns an attribute KeyValue conforming to the
+// "file.owner.name" semantic conventions. It represents the username of the file
+// owner.
+func FileOwnerName(val string) attribute.KeyValue {
+	return FileOwnerNameKey.String(val)
+}
+
+// FilePath returns an attribute KeyValue conforming to the "file.path" semantic
+// conventions. It represents the full path to the file, including the file name.
+// It should include the drive letter, when appropriate.
+func FilePath(val string) attribute.KeyValue {
+	return FilePathKey.String(val)
+}
+
+// FileSize returns an attribute KeyValue conforming to the "file.size" semantic
+// conventions. It represents the file size in bytes.
+func FileSize(val int) attribute.KeyValue {
+	return FileSizeKey.Int(val)
+}
+
+// FileSymbolicLinkTargetPath returns an attribute KeyValue conforming to the
+// "file.symbolic_link.target_path" semantic conventions. It represents the path
+// to the target of a symbolic link.
+func FileSymbolicLinkTargetPath(val string) attribute.KeyValue {
+	return FileSymbolicLinkTargetPathKey.String(val)
+}
+
+// Namespace: gcp
+const (
+	// GCPAppHubApplicationContainerKey is the attribute Key conforming to the
+	// "gcp.apphub.application.container" semantic conventions. It represents the
+	// container within GCP where the AppHub application is defined.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "projects/my-container-project"
+	GCPAppHubApplicationContainerKey = attribute.Key("gcp.apphub.application.container")
+
+	// GCPAppHubApplicationIDKey is the attribute Key conforming to the
+	// "gcp.apphub.application.id" semantic conventions. It represents the name of
+	// the application as configured in AppHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-application"
+	GCPAppHubApplicationIDKey = attribute.Key("gcp.apphub.application.id")
+
+	// GCPAppHubApplicationLocationKey is the attribute Key conforming to the
+	// "gcp.apphub.application.location" semantic conventions. It represents the GCP
+	// zone or region where the application is defined.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-central1"
+	GCPAppHubApplicationLocationKey = attribute.Key("gcp.apphub.application.location")
+
+	// GCPAppHubServiceCriticalityTypeKey is the attribute Key conforming to the
+	// "gcp.apphub.service.criticality_type" semantic conventions. It represents the
+	// criticality of a service indicates its importance to the business.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: [See AppHub type enum]
+	//
+	// [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
+	GCPAppHubServiceCriticalityTypeKey = attribute.Key("gcp.apphub.service.criticality_type")
+
+	// GCPAppHubServiceEnvironmentTypeKey is the attribute Key conforming to the
+	// "gcp.apphub.service.environment_type" semantic conventions. It represents the
+	// environment of a service is the stage of a software lifecycle.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: [See AppHub environment type]
+	//
+	// [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
+	GCPAppHubServiceEnvironmentTypeKey = attribute.Key("gcp.apphub.service.environment_type")
+
+	// GCPAppHubServiceIDKey is the attribute Key conforming to the
+	// "gcp.apphub.service.id" semantic conventions. It represents the name of the
+	// service as configured in AppHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-service"
+	GCPAppHubServiceIDKey = attribute.Key("gcp.apphub.service.id")
+
+	// GCPAppHubWorkloadCriticalityTypeKey is the attribute Key conforming to the
+	// "gcp.apphub.workload.criticality_type" semantic conventions. It represents
+	// the criticality of a workload indicates its importance to the business.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: [See AppHub type enum]
+	//
+	// [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
+	GCPAppHubWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub.workload.criticality_type")
+
+	// GCPAppHubWorkloadEnvironmentTypeKey is the attribute Key conforming to the
+	// "gcp.apphub.workload.environment_type" semantic conventions. It represents
+	// the environment of a workload is the stage of a software lifecycle.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: [See AppHub environment type]
+	//
+	// [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
+	GCPAppHubWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub.workload.environment_type")
+
+	// GCPAppHubWorkloadIDKey is the attribute Key conforming to the
+	// "gcp.apphub.workload.id" semantic conventions. It represents the name of the
+	// workload as configured in AppHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-workload"
+	GCPAppHubWorkloadIDKey = attribute.Key("gcp.apphub.workload.id")
+
+	// GCPAppHubDestinationApplicationContainerKey is the attribute Key conforming
+	// to the "gcp.apphub_destination.application.container" semantic conventions.
+	// It represents the container within GCP where the AppHub destination
+	// application is defined.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "projects/my-container-project"
+	GCPAppHubDestinationApplicationContainerKey = attribute.Key("gcp.apphub_destination.application.container")
+
+	// GCPAppHubDestinationApplicationIDKey is the attribute Key conforming to the
+	// "gcp.apphub_destination.application.id" semantic conventions. It represents
+	// the name of the destination application as configured in AppHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-application"
+	GCPAppHubDestinationApplicationIDKey = attribute.Key("gcp.apphub_destination.application.id")
+
+	// GCPAppHubDestinationApplicationLocationKey is the attribute Key conforming to
+	// the "gcp.apphub_destination.application.location" semantic conventions. It
+	// represents the GCP zone or region where the destination application is
+	// defined.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-central1"
+	GCPAppHubDestinationApplicationLocationKey = attribute.Key("gcp.apphub_destination.application.location")
+
+	// GCPAppHubDestinationServiceCriticalityTypeKey is the attribute Key conforming
+	// to the "gcp.apphub_destination.service.criticality_type" semantic
+	// conventions. It represents the criticality of a destination workload
+	// indicates its importance to the business as specified in [AppHub type enum].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
+	GCPAppHubDestinationServiceCriticalityTypeKey = attribute.Key("gcp.apphub_destination.service.criticality_type")
+
+	// GCPAppHubDestinationServiceEnvironmentTypeKey is the attribute Key conforming
+	// to the "gcp.apphub_destination.service.environment_type" semantic
+	// conventions. It represents the software lifecycle stage of a destination
+	// service as defined [AppHub environment type].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
+	GCPAppHubDestinationServiceEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.service.environment_type")
+
+	// GCPAppHubDestinationServiceIDKey is the attribute Key conforming to the
+	// "gcp.apphub_destination.service.id" semantic conventions. It represents the
+	// name of the destination service as configured in AppHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-service"
+	GCPAppHubDestinationServiceIDKey = attribute.Key("gcp.apphub_destination.service.id")
+
+	// GCPAppHubDestinationWorkloadCriticalityTypeKey is the attribute Key
+	// conforming to the "gcp.apphub_destination.workload.criticality_type" semantic
+	// conventions. It represents the criticality of a destination workload
+	// indicates its importance to the business as specified in [AppHub type enum].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type
+	GCPAppHubDestinationWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub_destination.workload.criticality_type")
+
+	// GCPAppHubDestinationWorkloadEnvironmentTypeKey is the attribute Key
+	// conforming to the "gcp.apphub_destination.workload.environment_type" semantic
+	// conventions. It represents the environment of a destination workload is the
+	// stage of a software lifecycle as provided in the [AppHub environment type].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1
+	GCPAppHubDestinationWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub_destination.workload.environment_type")
+
+	// GCPAppHubDestinationWorkloadIDKey is the attribute Key conforming to the
+	// "gcp.apphub_destination.workload.id" semantic conventions. It represents the
+	// name of the destination workload as configured in AppHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-workload"
+	GCPAppHubDestinationWorkloadIDKey = attribute.Key("gcp.apphub_destination.workload.id")
+
+	// GCPClientServiceKey is the attribute Key conforming to the
+	// "gcp.client.service" semantic conventions. It represents the identifies the
+	// Google Cloud service for which the official client library is intended.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "appengine", "run", "firestore", "alloydb", "spanner"
+	// Note: Intended to be a stable identifier for Google Cloud client libraries
+	// that is uniform across implementation languages. The value should be derived
+	// from the canonical service domain for the service; for example,
+	// 'foo.googleapis.com' should result in a value of 'foo'.
+	GCPClientServiceKey = attribute.Key("gcp.client.service")
+
+	// GCPCloudRunJobExecutionKey is the attribute Key conforming to the
+	// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of
+	// the Cloud Run [execution] being run for the Job, as set by the
+	// [`CLOUD_RUN_EXECUTION`] environment variable.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "job-name-xxxx", "sample-job-mdw84"
+	//
+	// [execution]: https://cloud.google.com/run/docs/managing/job-executions
+	// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
+	GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution")
+
+	// GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the
+	// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index
+	// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`]
+	// environment variable.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0, 1
+	//
+	// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
+	GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index")
+
+	// GCPGCEInstanceHostnameKey is the attribute Key conforming to the
+	// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname
+	// of a GCE instance. This is the full value of the default or [custom hostname]
+	// .
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-host1234.example.com",
+	// "sample-vm.us-west1-b.c.my-project.internal"
+	//
+	// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm
+	GCPGCEInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname")
+
+	// GCPGCEInstanceNameKey is the attribute Key conforming to the
+	// "gcp.gce.instance.name" semantic conventions. It represents the instance name
+	// of a GCE instance. This is the value provided by `host.name`, the visible
+	// name of the instance in the Cloud Console UI, and the prefix for the default
+	// hostname of the instance as defined by the [default internal DNS name].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "instance-1", "my-vm-name"
+	//
+	// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names
+	GCPGCEInstanceNameKey = attribute.Key("gcp.gce.instance.name")
+
+	// GCPGCEInstanceGroupManagerNameKey is the attribute Key conforming to the
+	// "gcp.gce.instance_group_manager.name" semantic conventions. It represents the
+	// name of the Instance Group Manager (IGM) that manages this VM, if any.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "web-igm", "my-managed-group"
+	GCPGCEInstanceGroupManagerNameKey = attribute.Key("gcp.gce.instance_group_manager.name")
+
+	// GCPGCEInstanceGroupManagerRegionKey is the attribute Key conforming to the
+	// "gcp.gce.instance_group_manager.region" semantic conventions. It represents
+	// the region of a **regional** Instance Group Manager (e.g., `us-central1`).
+	// Set this **only** when the IGM is regional.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-central1", "europe-west1"
+	GCPGCEInstanceGroupManagerRegionKey = attribute.Key("gcp.gce.instance_group_manager.region")
+
+	// GCPGCEInstanceGroupManagerZoneKey is the attribute Key conforming to the
+	// "gcp.gce.instance_group_manager.zone" semantic conventions. It represents the
+	// zone of a **zonal** Instance Group Manager (e.g., `us-central1-a`). Set this
+	// **only** when the IGM is zonal.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-central1-a", "europe-west1-b"
+	GCPGCEInstanceGroupManagerZoneKey = attribute.Key("gcp.gce.instance_group_manager.zone")
+)
+
+// GCPAppHubApplicationContainer returns an attribute KeyValue conforming to the
+// "gcp.apphub.application.container" semantic conventions. It represents the
+// container within GCP where the AppHub application is defined.
+func GCPAppHubApplicationContainer(val string) attribute.KeyValue {
+	return GCPAppHubApplicationContainerKey.String(val)
+}
+
+// GCPAppHubApplicationID returns an attribute KeyValue conforming to the
+// "gcp.apphub.application.id" semantic conventions. It represents the name of
+// the application as configured in AppHub.
+func GCPAppHubApplicationID(val string) attribute.KeyValue {
+	return GCPAppHubApplicationIDKey.String(val)
+}
+
+// GCPAppHubApplicationLocation returns an attribute KeyValue conforming to the
+// "gcp.apphub.application.location" semantic conventions. It represents the GCP
+// zone or region where the application is defined.
+func GCPAppHubApplicationLocation(val string) attribute.KeyValue {
+	return GCPAppHubApplicationLocationKey.String(val)
+}
+
+// GCPAppHubServiceID returns an attribute KeyValue conforming to the
+// "gcp.apphub.service.id" semantic conventions. It represents the name of the
+// service as configured in AppHub.
+func GCPAppHubServiceID(val string) attribute.KeyValue {
+	return GCPAppHubServiceIDKey.String(val)
+}
+
+// GCPAppHubWorkloadID returns an attribute KeyValue conforming to the
+// "gcp.apphub.workload.id" semantic conventions. It represents the name of the
+// workload as configured in AppHub.
+func GCPAppHubWorkloadID(val string) attribute.KeyValue {
+	return GCPAppHubWorkloadIDKey.String(val)
+}
+
+// GCPAppHubDestinationApplicationContainer returns an attribute KeyValue
+// conforming to the "gcp.apphub_destination.application.container" semantic
+// conventions. It represents the container within GCP where the AppHub
+// destination application is defined.
+func GCPAppHubDestinationApplicationContainer(val string) attribute.KeyValue {
+	return GCPAppHubDestinationApplicationContainerKey.String(val)
+}
+
+// GCPAppHubDestinationApplicationID returns an attribute KeyValue conforming to
+// the "gcp.apphub_destination.application.id" semantic conventions. It
+// represents the name of the destination application as configured in AppHub.
+func GCPAppHubDestinationApplicationID(val string) attribute.KeyValue {
+	return GCPAppHubDestinationApplicationIDKey.String(val)
+}
+
+// GCPAppHubDestinationApplicationLocation returns an attribute KeyValue
+// conforming to the "gcp.apphub_destination.application.location" semantic
+// conventions. It represents the GCP zone or region where the destination
+// application is defined.
+func GCPAppHubDestinationApplicationLocation(val string) attribute.KeyValue {
+	return GCPAppHubDestinationApplicationLocationKey.String(val)
+}
+
+// GCPAppHubDestinationServiceID returns an attribute KeyValue conforming to the
+// "gcp.apphub_destination.service.id" semantic conventions. It represents the
+// name of the destination service as configured in AppHub.
+func GCPAppHubDestinationServiceID(val string) attribute.KeyValue {
+	return GCPAppHubDestinationServiceIDKey.String(val)
+}
+
+// GCPAppHubDestinationWorkloadID returns an attribute KeyValue conforming to the
+// "gcp.apphub_destination.workload.id" semantic conventions. It represents the
+// name of the destination workload as configured in AppHub.
+func GCPAppHubDestinationWorkloadID(val string) attribute.KeyValue {
+	return GCPAppHubDestinationWorkloadIDKey.String(val)
+}
+
+// GCPClientService returns an attribute KeyValue conforming to the
+// "gcp.client.service" semantic conventions. It represents the identifies the
+// Google Cloud service for which the official client library is intended.
+func GCPClientService(val string) attribute.KeyValue {
+	return GCPClientServiceKey.String(val)
+}
+
+// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the
+// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of
+// the Cloud Run [execution] being run for the Job, as set by the
+// [`CLOUD_RUN_EXECUTION`] environment variable.
+//
+// [execution]: https://cloud.google.com/run/docs/managing/job-executions
+// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
+func GCPCloudRunJobExecution(val string) attribute.KeyValue {
+	return GCPCloudRunJobExecutionKey.String(val)
+}
+
+// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the
+// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index
+// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`]
+// environment variable.
+//
+// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars
+func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue {
+	return GCPCloudRunJobTaskIndexKey.Int(val)
+}
+
+// GCPGCEInstanceHostname returns an attribute KeyValue conforming to the
+// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname
+// of a GCE instance. This is the full value of the default or [custom hostname]
+// .
+//
+// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm
+func GCPGCEInstanceHostname(val string) attribute.KeyValue {
+	return GCPGCEInstanceHostnameKey.String(val)
+}
+
+// GCPGCEInstanceName returns an attribute KeyValue conforming to the
+// "gcp.gce.instance.name" semantic conventions. It represents the instance name
+// of a GCE instance. This is the value provided by `host.name`, the visible name
+// of the instance in the Cloud Console UI, and the prefix for the default
+// hostname of the instance as defined by the [default internal DNS name].
+//
+// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names
+func GCPGCEInstanceName(val string) attribute.KeyValue {
+	return GCPGCEInstanceNameKey.String(val)
+}
+
+// GCPGCEInstanceGroupManagerName returns an attribute KeyValue conforming to the
+// "gcp.gce.instance_group_manager.name" semantic conventions. It represents the
+// name of the Instance Group Manager (IGM) that manages this VM, if any.
+func GCPGCEInstanceGroupManagerName(val string) attribute.KeyValue {
+	return GCPGCEInstanceGroupManagerNameKey.String(val)
+}
+
+// GCPGCEInstanceGroupManagerRegion returns an attribute KeyValue conforming to
+// the "gcp.gce.instance_group_manager.region" semantic conventions. It
+// represents the region of a **regional** Instance Group Manager (e.g.,
+// `us-central1`). Set this **only** when the IGM is regional.
+func GCPGCEInstanceGroupManagerRegion(val string) attribute.KeyValue {
+	return GCPGCEInstanceGroupManagerRegionKey.String(val)
+}
+
+// GCPGCEInstanceGroupManagerZone returns an attribute KeyValue conforming to the
+// "gcp.gce.instance_group_manager.zone" semantic conventions. It represents the
+// zone of a **zonal** Instance Group Manager (e.g., `us-central1-a`). Set this
+// **only** when the IGM is zonal.
+func GCPGCEInstanceGroupManagerZone(val string) attribute.KeyValue {
+	return GCPGCEInstanceGroupManagerZoneKey.String(val)
+}
+
+// Enum values for gcp.apphub.service.criticality_type
+var (
+	// Mission critical service.
+	// Stability: development
+	GCPAppHubServiceCriticalityTypeMissionCritical = GCPAppHubServiceCriticalityTypeKey.String("MISSION_CRITICAL")
+	// High impact.
+	// Stability: development
+	GCPAppHubServiceCriticalityTypeHigh = GCPAppHubServiceCriticalityTypeKey.String("HIGH")
+	// Medium impact.
+	// Stability: development
+	GCPAppHubServiceCriticalityTypeMedium = GCPAppHubServiceCriticalityTypeKey.String("MEDIUM")
+	// Low impact.
+	// Stability: development
+	GCPAppHubServiceCriticalityTypeLow = GCPAppHubServiceCriticalityTypeKey.String("LOW")
+)
+
+// Enum values for gcp.apphub.service.environment_type
+var (
+	// Production environment.
+	// Stability: development
+	GCPAppHubServiceEnvironmentTypeProduction = GCPAppHubServiceEnvironmentTypeKey.String("PRODUCTION")
+	// Staging environment.
+	// Stability: development
+	GCPAppHubServiceEnvironmentTypeStaging = GCPAppHubServiceEnvironmentTypeKey.String("STAGING")
+	// Test environment.
+	// Stability: development
+	GCPAppHubServiceEnvironmentTypeTest = GCPAppHubServiceEnvironmentTypeKey.String("TEST")
+	// Development environment.
+	// Stability: development
+	GCPAppHubServiceEnvironmentTypeDevelopment = GCPAppHubServiceEnvironmentTypeKey.String("DEVELOPMENT")
+)
+
+// Enum values for gcp.apphub.workload.criticality_type
+var (
+	// Mission critical service.
+	// Stability: development
+	GCPAppHubWorkloadCriticalityTypeMissionCritical = GCPAppHubWorkloadCriticalityTypeKey.String("MISSION_CRITICAL")
+	// High impact.
+	// Stability: development
+	GCPAppHubWorkloadCriticalityTypeHigh = GCPAppHubWorkloadCriticalityTypeKey.String("HIGH")
+	// Medium impact.
+	// Stability: development
+	GCPAppHubWorkloadCriticalityTypeMedium = GCPAppHubWorkloadCriticalityTypeKey.String("MEDIUM")
+	// Low impact.
+	// Stability: development
+	GCPAppHubWorkloadCriticalityTypeLow = GCPAppHubWorkloadCriticalityTypeKey.String("LOW")
+)
+
+// Enum values for gcp.apphub.workload.environment_type
+var (
+	// Production environment.
+	// Stability: development
+	GCPAppHubWorkloadEnvironmentTypeProduction = GCPAppHubWorkloadEnvironmentTypeKey.String("PRODUCTION")
+	// Staging environment.
+	// Stability: development
+	GCPAppHubWorkloadEnvironmentTypeStaging = GCPAppHubWorkloadEnvironmentTypeKey.String("STAGING")
+	// Test environment.
+	// Stability: development
+	GCPAppHubWorkloadEnvironmentTypeTest = GCPAppHubWorkloadEnvironmentTypeKey.String("TEST")
+	// Development environment.
+	// Stability: development
+	GCPAppHubWorkloadEnvironmentTypeDevelopment = GCPAppHubWorkloadEnvironmentTypeKey.String("DEVELOPMENT")
+)
+
+// Enum values for gcp.apphub_destination.service.criticality_type
+var (
+	// Mission critical service.
+	// Stability: development
+	GCPAppHubDestinationServiceCriticalityTypeMissionCritical = GCPAppHubDestinationServiceCriticalityTypeKey.String("MISSION_CRITICAL")
+	// High impact.
+	// Stability: development
+	GCPAppHubDestinationServiceCriticalityTypeHigh = GCPAppHubDestinationServiceCriticalityTypeKey.String("HIGH")
+	// Medium impact.
+	// Stability: development
+	GCPAppHubDestinationServiceCriticalityTypeMedium = GCPAppHubDestinationServiceCriticalityTypeKey.String("MEDIUM")
+	// Low impact.
+	// Stability: development
+	GCPAppHubDestinationServiceCriticalityTypeLow = GCPAppHubDestinationServiceCriticalityTypeKey.String("LOW")
+)
+
+// Enum values for gcp.apphub_destination.service.environment_type
+var (
+	// Production environment.
+	// Stability: development
+	GCPAppHubDestinationServiceEnvironmentTypeProduction = GCPAppHubDestinationServiceEnvironmentTypeKey.String("PRODUCTION")
+	// Staging environment.
+	// Stability: development
+	GCPAppHubDestinationServiceEnvironmentTypeStaging = GCPAppHubDestinationServiceEnvironmentTypeKey.String("STAGING")
+	// Test environment.
+	// Stability: development
+	GCPAppHubDestinationServiceEnvironmentTypeTest = GCPAppHubDestinationServiceEnvironmentTypeKey.String("TEST")
+	// Development environment.
+	// Stability: development
+	GCPAppHubDestinationServiceEnvironmentTypeDevelopment = GCPAppHubDestinationServiceEnvironmentTypeKey.String("DEVELOPMENT")
+)
+
+// Enum values for gcp.apphub_destination.workload.criticality_type
+var (
+	// Mission critical service.
+	// Stability: development
+	GCPAppHubDestinationWorkloadCriticalityTypeMissionCritical = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MISSION_CRITICAL")
+	// High impact.
+	// Stability: development
+	GCPAppHubDestinationWorkloadCriticalityTypeHigh = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("HIGH")
+	// Medium impact.
+	// Stability: development
+	GCPAppHubDestinationWorkloadCriticalityTypeMedium = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("MEDIUM")
+	// Low impact.
+	// Stability: development
+	GCPAppHubDestinationWorkloadCriticalityTypeLow = GCPAppHubDestinationWorkloadCriticalityTypeKey.String("LOW")
+)
+
+// Enum values for gcp.apphub_destination.workload.environment_type
+var (
+	// Production environment.
+	// Stability: development
+	GCPAppHubDestinationWorkloadEnvironmentTypeProduction = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("PRODUCTION")
+	// Staging environment.
+	// Stability: development
+	GCPAppHubDestinationWorkloadEnvironmentTypeStaging = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("STAGING")
+	// Test environment.
+	// Stability: development
+	GCPAppHubDestinationWorkloadEnvironmentTypeTest = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("TEST")
+	// Development environment.
+	// Stability: development
+	GCPAppHubDestinationWorkloadEnvironmentTypeDevelopment = GCPAppHubDestinationWorkloadEnvironmentTypeKey.String("DEVELOPMENT")
+)
+
+// Namespace: gen_ai
+const (
+	// GenAIAgentDescriptionKey is the attribute Key conforming to the
+	// "gen_ai.agent.description" semantic conventions. It represents the free-form
+	// description of the GenAI agent provided by the application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Helps with math problems", "Generates fiction stories"
+	GenAIAgentDescriptionKey = attribute.Key("gen_ai.agent.description")
+
+	// GenAIAgentIDKey is the attribute Key conforming to the "gen_ai.agent.id"
+	// semantic conventions. It represents the unique identifier of the GenAI agent.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "asst_5j66UpCpwteGg4YSxUnt7lPY"
+	GenAIAgentIDKey = attribute.Key("gen_ai.agent.id")
+
+	// GenAIAgentNameKey is the attribute Key conforming to the "gen_ai.agent.name"
+	// semantic conventions. It represents the human-readable name of the GenAI
+	// agent provided by the application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Math Tutor", "Fiction Writer"
+	GenAIAgentNameKey = attribute.Key("gen_ai.agent.name")
+
+	// GenAIAgentVersionKey is the attribute Key conforming to the
+	// "gen_ai.agent.version" semantic conventions. It represents the version of the
+	// GenAI agent.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1.0.0", "2025-05-01"
+	GenAIAgentVersionKey = attribute.Key("gen_ai.agent.version")
+
+	// GenAIConversationIDKey is the attribute Key conforming to the
+	// "gen_ai.conversation.id" semantic conventions. It represents the unique
+	// identifier for a conversation (session, thread), used to store and correlate
+	// messages within this conversation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "conv_5j66UpCpwteGg4YSxUnt7lPY"
+	GenAIConversationIDKey = attribute.Key("gen_ai.conversation.id")
+
+	// GenAIDataSourceIDKey is the attribute Key conforming to the
+	// "gen_ai.data_source.id" semantic conventions. It represents the data source
+	// identifier.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "H7STPQYOND"
+	// Note: Data sources are used by AI agents and RAG applications to store
+	// grounding data. A data source may be an external database, object store,
+	// document collection, website, or any other storage system used by the GenAI
+	// agent or application. The `gen_ai.data_source.id` SHOULD match the identifier
+	// used by the GenAI system rather than a name specific to the external storage,
+	// such as a database or object store. Semantic conventions referencing
+	// `gen_ai.data_source.id` MAY also leverage additional attributes, such as
+	// `db.*`, to further identify and describe the data source.
+	GenAIDataSourceIDKey = attribute.Key("gen_ai.data_source.id")
+
+	// GenAIEmbeddingsDimensionCountKey is the attribute Key conforming to the
+	// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the
+	// number of dimensions the resulting output embeddings should have.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 512, 1024
+	GenAIEmbeddingsDimensionCountKey = attribute.Key("gen_ai.embeddings.dimension.count")
+
+	// GenAIEvaluationExplanationKey is the attribute Key conforming to the
+	// "gen_ai.evaluation.explanation" semantic conventions. It represents a
+	// free-form explanation for the assigned score provided by the evaluator.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "The response is factually accurate but lacks sufficient detail to
+	// fully address the question."
+	GenAIEvaluationExplanationKey = attribute.Key("gen_ai.evaluation.explanation")
+
+	// GenAIEvaluationNameKey is the attribute Key conforming to the
+	// "gen_ai.evaluation.name" semantic conventions. It represents the name of the
+	// evaluation metric used for the GenAI response.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Relevance", "IntentResolution"
+	GenAIEvaluationNameKey = attribute.Key("gen_ai.evaluation.name")
+
+	// GenAIEvaluationScoreLabelKey is the attribute Key conforming to the
+	// "gen_ai.evaluation.score.label" semantic conventions. It represents the human
+	// readable label for evaluation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "relevant", "not_relevant", "correct", "incorrect", "pass", "fail"
+	// Note: This attribute provides a human-readable interpretation of the
+	// evaluation score produced by an evaluator. For example, a score value of 1
+	// could mean "relevant" in one evaluation system and "not relevant" in another,
+	// depending on the scoring range and evaluator. The label SHOULD have low
+	// cardinality. Possible values depend on the evaluation metric and evaluator
+	// used; implementations SHOULD document the possible values.
+	GenAIEvaluationScoreLabelKey = attribute.Key("gen_ai.evaluation.score.label")
+
+	// GenAIEvaluationScoreValueKey is the attribute Key conforming to the
+	// "gen_ai.evaluation.score.value" semantic conventions. It represents the
+	// evaluation score returned by the evaluator.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 4.0
+	GenAIEvaluationScoreValueKey = attribute.Key("gen_ai.evaluation.score.value")
+
+	// GenAIInputMessagesKey is the attribute Key conforming to the
+	// "gen_ai.input.messages" semantic conventions. It represents the chat history
+	// provided to the model as an input.
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "[\n {\n "role": "user",\n "parts": [\n {\n "type": "text",\n
+	// "content": "Weather in Paris?"\n }\n ]\n },\n {\n "role": "assistant",\n
+	// "parts": [\n {\n "type": "tool_call",\n "id":
+	// "call_VSPygqKTWdrhaFErNvMV18Yl",\n "name": "get_weather",\n "arguments": {\n
+	// "location": "Paris"\n }\n }\n ]\n },\n {\n "role": "tool",\n "parts": [\n {\n
+	// "type": "tool_call_response",\n "id": " call_VSPygqKTWdrhaFErNvMV18Yl",\n
+	// "result": "rainy, 57°F"\n }\n ]\n }\n]\n"
+	// Note: Instrumentations MUST follow [Input messages JSON schema].
+	// When the attribute is recorded on events, it MUST be recorded in structured
+	// form. When recorded on spans, it MAY be recorded as a JSON string if
+	// structured
+	// format is not supported and SHOULD be recorded in structured form otherwise.
+	//
+	// Messages MUST be provided in the order they were sent to the model.
+	// Instrumentations MAY provide a way for users to filter or truncate
+	// input messages.
+	//
+	// > [!Warning]
+	// > This attribute is likely to contain sensitive information including
+	// > user/PII data.
+	//
+	// See [Recording content on attributes]
+	// section for more details.
+	//
+	// [Input messages JSON schema]: /docs/gen-ai/gen-ai-input-messages.json
+	// [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes
+	GenAIInputMessagesKey = attribute.Key("gen_ai.input.messages")
+
+	// GenAIOperationNameKey is the attribute Key conforming to the
+	// "gen_ai.operation.name" semantic conventions. It represents the name of the
+	// operation being performed.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: If one of the predefined values applies, but specific system uses a
+	// different name it's RECOMMENDED to document it in the semantic conventions
+	// for specific GenAI system and use system-specific name in the
+	// instrumentation. If a different name is not documented, instrumentation
+	// libraries SHOULD use applicable predefined value.
+	GenAIOperationNameKey = attribute.Key("gen_ai.operation.name")
+
+	// GenAIOutputMessagesKey is the attribute Key conforming to the
+	// "gen_ai.output.messages" semantic conventions. It represents the messages
+	// returned by the model where each message represents a specific model response
+	// (choice, candidate).
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "[\n {\n "role": "assistant",\n "parts": [\n {\n "type": "text",\n
+	// "content": "The weather in Paris is currently rainy with a temperature of
+	// 57°F."\n }\n ],\n "finish_reason": "stop"\n }\n]\n"
+	// Note: Instrumentations MUST follow [Output messages JSON schema]
+	//
+	// Each message represents a single output choice/candidate generated by
+	// the model. Each message corresponds to exactly one generation
+	// (choice/candidate) and vice versa - one choice cannot be split across
+	// multiple messages or one message cannot contain parts from multiple choices.
+	//
+	// When the attribute is recorded on events, it MUST be recorded in structured
+	// form. When recorded on spans, it MAY be recorded as a JSON string if
+	// structured
+	// format is not supported and SHOULD be recorded in structured form otherwise.
+	//
+	// Instrumentations MAY provide a way for users to filter or truncate
+	// output messages.
+	//
+	// > [!Warning]
+	// > This attribute is likely to contain sensitive information including
+	// > user/PII data.
+	//
+	// See [Recording content on attributes]
+	// section for more details.
+	//
+	// [Output messages JSON schema]: /docs/gen-ai/gen-ai-output-messages.json
+	// [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes
+	GenAIOutputMessagesKey = attribute.Key("gen_ai.output.messages")
+
+	// GenAIOutputTypeKey is the attribute Key conforming to the
+	// "gen_ai.output.type" semantic conventions. It represents the represents the
+	// content type requested by the client.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: This attribute SHOULD be used when the client requests output of a
+	// specific type. The model may return zero or more outputs of this type.
+	// This attribute specifies the output modality and not the actual output
+	// format. For example, if an image is requested, the actual output could be a
+	// URL pointing to an image file.
+	// Additional output format details may be recorded in the future in the
+	// `gen_ai.output.{type}.*` attributes.
+	GenAIOutputTypeKey = attribute.Key("gen_ai.output.type")
+
+	// GenAIPromptNameKey is the attribute Key conforming to the
+	// "gen_ai.prompt.name" semantic conventions. It represents the name of the
+	// prompt that uniquely identifies it.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "analyze-code"
+	GenAIPromptNameKey = attribute.Key("gen_ai.prompt.name")
+
+	// GenAIProviderNameKey is the attribute Key conforming to the
+	// "gen_ai.provider.name" semantic conventions. It represents the Generative AI
+	// provider as identified by the client or server instrumentation.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: The attribute SHOULD be set based on the instrumentation's best
+	// knowledge and may differ from the actual model provider.
+	//
+	// Multiple providers, including Azure OpenAI, Gemini, and AI hosting platforms
+	// are accessible using the OpenAI REST API and corresponding client libraries,
+	// but may proxy or host models from different providers.
+	//
+	// The `gen_ai.request.model`, `gen_ai.response.model`, and `server.address`
+	// attributes may help identify the actual system in use.
+	//
+	// The `gen_ai.provider.name` attribute acts as a discriminator that
+	// identifies the GenAI telemetry format flavor specific to that provider
+	// within GenAI semantic conventions.
+	// It SHOULD be set consistently with provider-specific attributes and signals.
+	// For example, GenAI spans, metrics, and events related to AWS Bedrock
+	// should have the `gen_ai.provider.name` set to `aws.bedrock` and include
+	// applicable `aws.bedrock.*` attributes and are not expected to include
+	// `openai.*` attributes.
+	GenAIProviderNameKey = attribute.Key("gen_ai.provider.name")
+
+	// GenAIRequestChoiceCountKey is the attribute Key conforming to the
+	// "gen_ai.request.choice.count" semantic conventions. It represents the target
+	// number of candidate completions to return.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 3
+	GenAIRequestChoiceCountKey = attribute.Key("gen_ai.request.choice.count")
+
+	// GenAIRequestEncodingFormatsKey is the attribute Key conforming to the
+	// "gen_ai.request.encoding_formats" semantic conventions. It represents the
+	// encoding formats requested in an embeddings operation, if specified.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "base64"], ["float", "binary"
+	// Note: In some GenAI systems the encoding formats are called embedding types.
+	// Also, some GenAI systems only accept a single format per request.
+	GenAIRequestEncodingFormatsKey = attribute.Key("gen_ai.request.encoding_formats")
+
+	// GenAIRequestFrequencyPenaltyKey is the attribute Key conforming to the
+	// "gen_ai.request.frequency_penalty" semantic conventions. It represents the
+	// frequency penalty setting for the GenAI request.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0.1
+	GenAIRequestFrequencyPenaltyKey = attribute.Key("gen_ai.request.frequency_penalty")
+
+	// GenAIRequestMaxTokensKey is the attribute Key conforming to the
+	// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum
+	// number of tokens the model generates for a request.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 100
+	GenAIRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens")
+
+	// GenAIRequestModelKey is the attribute Key conforming to the
+	// "gen_ai.request.model" semantic conventions. It represents the name of the
+	// GenAI model a request is being made to.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: gpt-4
+	GenAIRequestModelKey = attribute.Key("gen_ai.request.model")
+
+	// GenAIRequestPresencePenaltyKey is the attribute Key conforming to the
+	// "gen_ai.request.presence_penalty" semantic conventions. It represents the
+	// presence penalty setting for the GenAI request.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0.1
+	GenAIRequestPresencePenaltyKey = attribute.Key("gen_ai.request.presence_penalty")
+
+	// GenAIRequestSeedKey is the attribute Key conforming to the
+	// "gen_ai.request.seed" semantic conventions. It represents the requests with
+	// same seed value more likely to return same result.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 100
+	GenAIRequestSeedKey = attribute.Key("gen_ai.request.seed")
+
+	// GenAIRequestStopSequencesKey is the attribute Key conforming to the
+	// "gen_ai.request.stop_sequences" semantic conventions. It represents the list
+	// of sequences that the model will use to stop generating further tokens.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "forest", "lived"
+	GenAIRequestStopSequencesKey = attribute.Key("gen_ai.request.stop_sequences")
+
+	// GenAIRequestTemperatureKey is the attribute Key conforming to the
+	// "gen_ai.request.temperature" semantic conventions. It represents the
+	// temperature setting for the GenAI request.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0.0
+	GenAIRequestTemperatureKey = attribute.Key("gen_ai.request.temperature")
+
+	// GenAIRequestTopKKey is the attribute Key conforming to the
+	// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling
+	// setting for the GenAI request.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0
+	GenAIRequestTopKKey = attribute.Key("gen_ai.request.top_k")
+
+	// GenAIRequestTopPKey is the attribute Key conforming to the
+	// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling
+	// setting for the GenAI request.
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1.0
+	GenAIRequestTopPKey = attribute.Key("gen_ai.request.top_p")
+
+	// GenAIResponseFinishReasonsKey is the attribute Key conforming to the
+	// "gen_ai.response.finish_reasons" semantic conventions. It represents the
+	// array of reasons the model stopped generating tokens, corresponding to each
+	// generation received.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "stop"], ["stop", "length"
+	GenAIResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons")
+
+	// GenAIResponseIDKey is the attribute Key conforming to the
+	// "gen_ai.response.id" semantic conventions. It represents the unique
+	// identifier for the completion.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "chatcmpl-123"
+	GenAIResponseIDKey = attribute.Key("gen_ai.response.id")
+
+	// GenAIResponseModelKey is the attribute Key conforming to the
+	// "gen_ai.response.model" semantic conventions. It represents the name of the
+	// model that generated the response.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "gpt-4-0613"
+	GenAIResponseModelKey = attribute.Key("gen_ai.response.model")
+
+	// GenAIRetrievalDocumentsKey is the attribute Key conforming to the
+	// "gen_ai.retrieval.documents" semantic conventions. It represents the
+	// documents retrieved.
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "[\n {\n "id": "doc_123",\n "score": 0.95\n },\n {\n "id":
+	// "doc_456",\n "score": 0.87\n },\n {\n "id": "doc_789",\n "score": 0.82\n
+	// }\n]\n"
+	// Note: Instrumentations MUST follow [Retrieval documents JSON schema].
+	// When the attribute is recorded on events, it MUST be recorded in structured
+	// form. When recorded on spans, it MAY be recorded as a JSON string if
+	// structured
+	// format is not supported and SHOULD be recorded in structured form otherwise.
+	//
+	// Each document object SHOULD contain at least the following properties:
+	// `id` (string): A unique identifier for the document, `score` (double): The
+	// relevance score of the document
+	//
+	// [Retrieval documents JSON schema]: /docs/gen-ai/gen-ai-retrieval-documents.json
+	GenAIRetrievalDocumentsKey = attribute.Key("gen_ai.retrieval.documents")
+
+	// GenAIRetrievalQueryTextKey is the attribute Key conforming to the
+	// "gen_ai.retrieval.query.text" semantic conventions. It represents the query
+	// text used for retrieval.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "What is the capital of France?", "weather in Paris"
+	// Note: > [!Warning]
+	//
+	// > This attribute may contain sensitive information.
+	GenAIRetrievalQueryTextKey = attribute.Key("gen_ai.retrieval.query.text")
+
+	// GenAISystemInstructionsKey is the attribute Key conforming to the
+	// "gen_ai.system_instructions" semantic conventions. It represents the system
+	// message or instructions provided to the GenAI model separately from the chat
+	// history.
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "[\n {\n "type": "text",\n "content": "You are an Agent that greet
+	// users, always use greetings tool to respond"\n }\n]\n", "[\n {\n "type":
+	// "text",\n "content": "You are a language translator."\n },\n {\n "type":
+	// "text",\n "content": "Your mission is to translate text in English to
+	// French."\n }\n]\n"
+	// Note: This attribute SHOULD be used when the corresponding provider or API
+	// allows to provide system instructions or messages separately from the
+	// chat history.
+	//
+	// Instructions that are part of the chat history SHOULD be recorded in
+	// `gen_ai.input.messages` attribute instead.
+	//
+	// Instrumentations MUST follow [System instructions JSON schema].
+	//
+	// When recorded on spans, it MAY be recorded as a JSON string if structured
+	// format is not supported and SHOULD be recorded in structured form otherwise.
+	//
+	// Instrumentations MAY provide a way for users to filter or truncate
+	// system instructions.
+	//
+	// > [!Warning]
+	// > This attribute may contain sensitive information.
+	//
+	// See [Recording content on attributes]
+	// section for more details.
+	//
+	// [System instructions JSON schema]: /docs/gen-ai/gen-ai-system-instructions.json
+	// [Recording content on attributes]: /docs/gen-ai/gen-ai-spans.md#recording-content-on-attributes
+	GenAISystemInstructionsKey = attribute.Key("gen_ai.system_instructions")
+
+	// GenAITokenTypeKey is the attribute Key conforming to the "gen_ai.token.type"
+	// semantic conventions. It represents the type of token being counted.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "input", "output"
+	GenAITokenTypeKey = attribute.Key("gen_ai.token.type")
+
+	// GenAIToolCallArgumentsKey is the attribute Key conforming to the
+	// "gen_ai.tool.call.arguments" semantic conventions. It represents the
+	// parameters passed to the tool call.
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{\n "location": "San Francisco?",\n "date": "2025-10-01"\n}\n"
+	// Note: > [!WARNING]
+	//
+	// > This attribute may contain sensitive information.
+	//
+	// It's expected to be an object - in case a serialized string is available
+	// to the instrumentation, the instrumentation SHOULD do the best effort to
+	// deserialize it to an object. When recorded on spans, it MAY be recorded as a
+	// JSON string if structured format is not supported and SHOULD be recorded in
+	// structured form otherwise.
+	GenAIToolCallArgumentsKey = attribute.Key("gen_ai.tool.call.arguments")
+
+	// GenAIToolCallIDKey is the attribute Key conforming to the
+	// "gen_ai.tool.call.id" semantic conventions. It represents the tool call
+	// identifier.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "call_mszuSIzqtI65i1wAUOE8w5H4"
+	GenAIToolCallIDKey = attribute.Key("gen_ai.tool.call.id")
+
+	// GenAIToolCallResultKey is the attribute Key conforming to the
+	// "gen_ai.tool.call.result" semantic conventions. It represents the result
+	// returned by the tool call (if any and if execution was successful).
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "{\n "temperature_range": {\n "high": 75,\n "low": 60\n },\n
+	// "conditions": "sunny"\n}\n"
+	// Note: > [!WARNING]
+	//
+	// > This attribute may contain sensitive information.
+	//
+	// It's expected to be an object - in case a serialized string is available
+	// to the instrumentation, the instrumentation SHOULD do the best effort to
+	// deserialize it to an object. When recorded on spans, it MAY be recorded as a
+	// JSON string if structured format is not supported and SHOULD be recorded in
+	// structured form otherwise.
+	GenAIToolCallResultKey = attribute.Key("gen_ai.tool.call.result")
+
+	// GenAIToolDefinitionsKey is the attribute Key conforming to the
+	// "gen_ai.tool.definitions" semantic conventions. It represents the list of
+	// source system tool definitions available to the GenAI agent or model.
+	//
+	// Type: any
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "[\n {\n "type": "function",\n "name": "get_current_weather",\n
+	// "description": "Get the current weather in a given location",\n "parameters":
+	// {\n "type": "object",\n "properties": {\n "location": {\n "type": "string",\n
+	// "description": "The city and state, e.g. San Francisco, CA"\n },\n "unit":
+	// {\n "type": "string",\n "enum": [\n "celsius",\n "fahrenheit"\n ]\n }\n },\n
+	// "required": [\n "location",\n "unit"\n ]\n }\n }\n]\n"
+	// Note: The value of this attribute matches source system tool definition
+	// format.
+	//
+	// It's expected to be an array of objects where each object represents a tool
+	// definition. In case a serialized string is available
+	// to the instrumentation, the instrumentation SHOULD do the best effort to
+	// deserialize it to an array. When recorded on spans, it MAY be recorded as a
+	// JSON string if structured format is not supported and SHOULD be recorded in
+	// structured form otherwise.
+	//
+	// Since this attribute could be large, it's NOT RECOMMENDED to populate
+	// it by default. Instrumentations MAY provide a way to enable
+	// populating this attribute.
+	GenAIToolDefinitionsKey = attribute.Key("gen_ai.tool.definitions")
+
+	// GenAIToolDescriptionKey is the attribute Key conforming to the
+	// "gen_ai.tool.description" semantic conventions. It represents the tool
+	// description.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Multiply two numbers"
+	GenAIToolDescriptionKey = attribute.Key("gen_ai.tool.description")
+
+	// GenAIToolNameKey is the attribute Key conforming to the "gen_ai.tool.name"
+	// semantic conventions. It represents the name of the tool utilized by the
+	// agent.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Flights"
+	GenAIToolNameKey = attribute.Key("gen_ai.tool.name")
+
+	// GenAIToolTypeKey is the attribute Key conforming to the "gen_ai.tool.type"
+	// semantic conventions. It represents the type of the tool utilized by the
+	// agent.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "function", "extension", "datastore"
+	// Note: Extension: A tool executed on the agent-side to directly call external
+	// APIs, bridging the gap between the agent and real-world systems.
+	// Agent-side operations involve actions that are performed by the agent on the
+	// server or within the agent's controlled environment.
+	// Function: A tool executed on the client-side, where the agent generates
+	// parameters for a predefined function, and the client executes the logic.
+	// Client-side operations are actions taken on the user's end or within the
+	// client application.
+	// Datastore: A tool used by the agent to access and query structured or
+	// unstructured external data for retrieval-augmented tasks or knowledge
+	// updates.
+	GenAIToolTypeKey = attribute.Key("gen_ai.tool.type")
+
+	// GenAIUsageCacheCreationInputTokensKey is the attribute Key conforming to the
+	// "gen_ai.usage.cache_creation.input_tokens" semantic conventions. It
+	// represents the number of input tokens written to a provider-managed cache.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 25
+	// Note: The value SHOULD be included in `gen_ai.usage.input_tokens`.
+	GenAIUsageCacheCreationInputTokensKey = attribute.Key("gen_ai.usage.cache_creation.input_tokens")
+
+	// GenAIUsageCacheReadInputTokensKey is the attribute Key conforming to the
+	// "gen_ai.usage.cache_read.input_tokens" semantic conventions. It represents
+	// the number of input tokens served from a provider-managed cache.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 50
+	// Note: The value SHOULD be included in `gen_ai.usage.input_tokens`.
+	GenAIUsageCacheReadInputTokensKey = attribute.Key("gen_ai.usage.cache_read.input_tokens")
+
+	// GenAIUsageInputTokensKey is the attribute Key conforming to the
+	// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of
+	// tokens used in the GenAI input (prompt).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 100
+	// Note: This value SHOULD include all types of input tokens, including cached
+	// tokens.
+	// Instrumentations SHOULD make a best effort to populate this value, using a
+	// total
+	// provided by the provider when available or, depending on the provider API,
+	// by summing different token types parsed from the provider output.
+	GenAIUsageInputTokensKey = attribute.Key("gen_ai.usage.input_tokens")
+
+	// GenAIUsageOutputTokensKey is the attribute Key conforming to the
+	// "gen_ai.usage.output_tokens" semantic conventions. It represents the number
+	// of tokens used in the GenAI response (completion).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 180
+	GenAIUsageOutputTokensKey = attribute.Key("gen_ai.usage.output_tokens")
+)
+
+// GenAIAgentDescription returns an attribute KeyValue conforming to the
+// "gen_ai.agent.description" semantic conventions. It represents the free-form
+// description of the GenAI agent provided by the application.
+func GenAIAgentDescription(val string) attribute.KeyValue {
+	return GenAIAgentDescriptionKey.String(val)
+}
+
+// GenAIAgentID returns an attribute KeyValue conforming to the "gen_ai.agent.id"
+// semantic conventions. It represents the unique identifier of the GenAI agent.
+func GenAIAgentID(val string) attribute.KeyValue {
+	return GenAIAgentIDKey.String(val)
+}
+
+// GenAIAgentName returns an attribute KeyValue conforming to the
+// "gen_ai.agent.name" semantic conventions. It represents the human-readable
+// name of the GenAI agent provided by the application.
+func GenAIAgentName(val string) attribute.KeyValue {
+	return GenAIAgentNameKey.String(val)
+}
+
+// GenAIAgentVersion returns an attribute KeyValue conforming to the
+// "gen_ai.agent.version" semantic conventions. It represents the version of the
+// GenAI agent.
+func GenAIAgentVersion(val string) attribute.KeyValue {
+	return GenAIAgentVersionKey.String(val)
+}
+
+// GenAIConversationID returns an attribute KeyValue conforming to the
+// "gen_ai.conversation.id" semantic conventions. It represents the unique
+// identifier for a conversation (session, thread), used to store and correlate
+// messages within this conversation.
+func GenAIConversationID(val string) attribute.KeyValue {
+	return GenAIConversationIDKey.String(val)
+}
+
+// GenAIDataSourceID returns an attribute KeyValue conforming to the
+// "gen_ai.data_source.id" semantic conventions. It represents the data source
+// identifier.
+func GenAIDataSourceID(val string) attribute.KeyValue {
+	return GenAIDataSourceIDKey.String(val)
+}
+
+// GenAIEmbeddingsDimensionCount returns an attribute KeyValue conforming to the
+// "gen_ai.embeddings.dimension.count" semantic conventions. It represents the
+// number of dimensions the resulting output embeddings should have.
+func GenAIEmbeddingsDimensionCount(val int) attribute.KeyValue {
+	return GenAIEmbeddingsDimensionCountKey.Int(val)
+}
+
+// GenAIEvaluationExplanation returns an attribute KeyValue conforming to the
+// "gen_ai.evaluation.explanation" semantic conventions. It represents a
+// free-form explanation for the assigned score provided by the evaluator.
+func GenAIEvaluationExplanation(val string) attribute.KeyValue {
+	return GenAIEvaluationExplanationKey.String(val)
+}
+
+// GenAIEvaluationName returns an attribute KeyValue conforming to the
+// "gen_ai.evaluation.name" semantic conventions. It represents the name of the
+// evaluation metric used for the GenAI response.
+func GenAIEvaluationName(val string) attribute.KeyValue {
+	return GenAIEvaluationNameKey.String(val)
+}
+
+// GenAIEvaluationScoreLabel returns an attribute KeyValue conforming to the
+// "gen_ai.evaluation.score.label" semantic conventions. It represents the human
+// readable label for evaluation.
+func GenAIEvaluationScoreLabel(val string) attribute.KeyValue {
+	return GenAIEvaluationScoreLabelKey.String(val)
+}
+
+// GenAIEvaluationScoreValue returns an attribute KeyValue conforming to the
+// "gen_ai.evaluation.score.value" semantic conventions. It represents the
+// evaluation score returned by the evaluator.
+func GenAIEvaluationScoreValue(val float64) attribute.KeyValue {
+	return GenAIEvaluationScoreValueKey.Float64(val)
+}
+
+// GenAIPromptName returns an attribute KeyValue conforming to the
+// "gen_ai.prompt.name" semantic conventions. It represents the name of the
+// prompt that uniquely identifies it.
+func GenAIPromptName(val string) attribute.KeyValue {
+	return GenAIPromptNameKey.String(val)
+}
+
+// GenAIRequestChoiceCount returns an attribute KeyValue conforming to the
+// "gen_ai.request.choice.count" semantic conventions. It represents the target
+// number of candidate completions to return.
+func GenAIRequestChoiceCount(val int) attribute.KeyValue {
+	return GenAIRequestChoiceCountKey.Int(val)
+}
+
+// GenAIRequestEncodingFormats returns an attribute KeyValue conforming to the
+// "gen_ai.request.encoding_formats" semantic conventions. It represents the
+// encoding formats requested in an embeddings operation, if specified.
+func GenAIRequestEncodingFormats(val ...string) attribute.KeyValue {
+	return GenAIRequestEncodingFormatsKey.StringSlice(val)
+}
+
+// GenAIRequestFrequencyPenalty returns an attribute KeyValue conforming to the
+// "gen_ai.request.frequency_penalty" semantic conventions. It represents the
+// frequency penalty setting for the GenAI request.
+func GenAIRequestFrequencyPenalty(val float64) attribute.KeyValue {
+	return GenAIRequestFrequencyPenaltyKey.Float64(val)
+}
+
+// GenAIRequestMaxTokens returns an attribute KeyValue conforming to the
+// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum
+// number of tokens the model generates for a request.
+func GenAIRequestMaxTokens(val int) attribute.KeyValue {
+	return GenAIRequestMaxTokensKey.Int(val)
+}
+
+// GenAIRequestModel returns an attribute KeyValue conforming to the
+// "gen_ai.request.model" semantic conventions. It represents the name of the
+// GenAI model a request is being made to.
+func GenAIRequestModel(val string) attribute.KeyValue {
+	return GenAIRequestModelKey.String(val)
+}
+
+// GenAIRequestPresencePenalty returns an attribute KeyValue conforming to the
+// "gen_ai.request.presence_penalty" semantic conventions. It represents the
+// presence penalty setting for the GenAI request.
+func GenAIRequestPresencePenalty(val float64) attribute.KeyValue {
+	return GenAIRequestPresencePenaltyKey.Float64(val)
+}
+
+// GenAIRequestSeed returns an attribute KeyValue conforming to the
+// "gen_ai.request.seed" semantic conventions. It represents the requests with
+// same seed value more likely to return same result.
+func GenAIRequestSeed(val int) attribute.KeyValue {
+	return GenAIRequestSeedKey.Int(val)
+}
+
+// GenAIRequestStopSequences returns an attribute KeyValue conforming to the
+// "gen_ai.request.stop_sequences" semantic conventions. It represents the list
+// of sequences that the model will use to stop generating further tokens.
+func GenAIRequestStopSequences(val ...string) attribute.KeyValue {
+	return GenAIRequestStopSequencesKey.StringSlice(val)
+}
+
+// GenAIRequestTemperature returns an attribute KeyValue conforming to the
+// "gen_ai.request.temperature" semantic conventions. It represents the
+// temperature setting for the GenAI request.
+func GenAIRequestTemperature(val float64) attribute.KeyValue {
+	return GenAIRequestTemperatureKey.Float64(val)
+}
+
+// GenAIRequestTopK returns an attribute KeyValue conforming to the
+// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling
+// setting for the GenAI request.
+func GenAIRequestTopK(val float64) attribute.KeyValue {
+	return GenAIRequestTopKKey.Float64(val)
+}
+
+// GenAIRequestTopP returns an attribute KeyValue conforming to the
+// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling
+// setting for the GenAI request.
+func GenAIRequestTopP(val float64) attribute.KeyValue {
+	return GenAIRequestTopPKey.Float64(val)
+}
+
+// GenAIResponseFinishReasons returns an attribute KeyValue conforming to the
+// "gen_ai.response.finish_reasons" semantic conventions. It represents the array
+// of reasons the model stopped generating tokens, corresponding to each
+// generation received.
+func GenAIResponseFinishReasons(val ...string) attribute.KeyValue {
+	return GenAIResponseFinishReasonsKey.StringSlice(val)
+}
+
+// GenAIResponseID returns an attribute KeyValue conforming to the
+// "gen_ai.response.id" semantic conventions. It represents the unique identifier
+// for the completion.
+func GenAIResponseID(val string) attribute.KeyValue {
+	return GenAIResponseIDKey.String(val)
+}
+
+// GenAIResponseModel returns an attribute KeyValue conforming to the
+// "gen_ai.response.model" semantic conventions. It represents the name of the
+// model that generated the response.
+func GenAIResponseModel(val string) attribute.KeyValue {
+	return GenAIResponseModelKey.String(val)
+}
+
+// GenAIRetrievalQueryText returns an attribute KeyValue conforming to the
+// "gen_ai.retrieval.query.text" semantic conventions. It represents the query
+// text used for retrieval.
+func GenAIRetrievalQueryText(val string) attribute.KeyValue {
+	return GenAIRetrievalQueryTextKey.String(val)
+}
+
+// GenAIToolCallID returns an attribute KeyValue conforming to the
+// "gen_ai.tool.call.id" semantic conventions. It represents the tool call
+// identifier.
+func GenAIToolCallID(val string) attribute.KeyValue {
+	return GenAIToolCallIDKey.String(val)
+}
+
+// GenAIToolDescription returns an attribute KeyValue conforming to the
+// "gen_ai.tool.description" semantic conventions. It represents the tool
+// description.
+func GenAIToolDescription(val string) attribute.KeyValue {
+	return GenAIToolDescriptionKey.String(val)
+}
+
+// GenAIToolName returns an attribute KeyValue conforming to the
+// "gen_ai.tool.name" semantic conventions. It represents the name of the tool
+// utilized by the agent.
+func GenAIToolName(val string) attribute.KeyValue {
+	return GenAIToolNameKey.String(val)
+}
+
+// GenAIToolType returns an attribute KeyValue conforming to the
+// "gen_ai.tool.type" semantic conventions. It represents the type of the tool
+// utilized by the agent.
+func GenAIToolType(val string) attribute.KeyValue {
+	return GenAIToolTypeKey.String(val)
+}
+
+// GenAIUsageCacheCreationInputTokens returns an attribute KeyValue conforming to
+// the "gen_ai.usage.cache_creation.input_tokens" semantic conventions. It
+// represents the number of input tokens written to a provider-managed cache.
+func GenAIUsageCacheCreationInputTokens(val int) attribute.KeyValue {
+	return GenAIUsageCacheCreationInputTokensKey.Int(val)
+}
+
+// GenAIUsageCacheReadInputTokens returns an attribute KeyValue conforming to the
+// "gen_ai.usage.cache_read.input_tokens" semantic conventions. It represents the
+// number of input tokens served from a provider-managed cache.
+func GenAIUsageCacheReadInputTokens(val int) attribute.KeyValue {
+	return GenAIUsageCacheReadInputTokensKey.Int(val)
+}
+
+// GenAIUsageInputTokens returns an attribute KeyValue conforming to the
+// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of
+// tokens used in the GenAI input (prompt).
+func GenAIUsageInputTokens(val int) attribute.KeyValue {
+	return GenAIUsageInputTokensKey.Int(val)
+}
+
+// GenAIUsageOutputTokens returns an attribute KeyValue conforming to the
+// "gen_ai.usage.output_tokens" semantic conventions. It represents the number of
+// tokens used in the GenAI response (completion).
+func GenAIUsageOutputTokens(val int) attribute.KeyValue {
+	return GenAIUsageOutputTokensKey.Int(val)
+}
+
+// Enum values for gen_ai.operation.name
+var (
+	// Chat completion operation such as [OpenAI Chat API]
+	// Stability: development
+	//
+	// [OpenAI Chat API]: https://platform.openai.com/docs/api-reference/chat
+	GenAIOperationNameChat = GenAIOperationNameKey.String("chat")
+	// Multimodal content generation operation such as [Gemini Generate Content]
+	// Stability: development
+	//
+	// [Gemini Generate Content]: https://ai.google.dev/api/generate-content
+	GenAIOperationNameGenerateContent = GenAIOperationNameKey.String("generate_content")
+	// Text completions operation such as [OpenAI Completions API (Legacy)]
+	// Stability: development
+	//
+	// [OpenAI Completions API (Legacy)]: https://platform.openai.com/docs/api-reference/completions
+	GenAIOperationNameTextCompletion = GenAIOperationNameKey.String("text_completion")
+	// Embeddings operation such as [OpenAI Create embeddings API]
+	// Stability: development
+	//
+	// [OpenAI Create embeddings API]: https://platform.openai.com/docs/api-reference/embeddings/create
+	GenAIOperationNameEmbeddings = GenAIOperationNameKey.String("embeddings")
+	// Retrieval operation such as [OpenAI Search Vector Store API]
+	// Stability: development
+	//
+	// [OpenAI Search Vector Store API]: https://platform.openai.com/docs/api-reference/vector-stores/search
+	GenAIOperationNameRetrieval = GenAIOperationNameKey.String("retrieval")
+	// Create GenAI agent
+	// Stability: development
+	GenAIOperationNameCreateAgent = GenAIOperationNameKey.String("create_agent")
+	// Invoke GenAI agent
+	// Stability: development
+	GenAIOperationNameInvokeAgent = GenAIOperationNameKey.String("invoke_agent")
+	// Execute a tool
+	// Stability: development
+	GenAIOperationNameExecuteTool = GenAIOperationNameKey.String("execute_tool")
+)
+
+// Enum values for gen_ai.output.type
+var (
+	// Plain text
+	// Stability: development
+	GenAIOutputTypeText = GenAIOutputTypeKey.String("text")
+	// JSON object with known or unknown schema
+	// Stability: development
+	GenAIOutputTypeJSON = GenAIOutputTypeKey.String("json")
+	// Image
+	// Stability: development
+	GenAIOutputTypeImage = GenAIOutputTypeKey.String("image")
+	// Speech
+	// Stability: development
+	GenAIOutputTypeSpeech = GenAIOutputTypeKey.String("speech")
+)
+
+// Enum values for gen_ai.provider.name
+var (
+	// [OpenAI]
+	// Stability: development
+	//
+	// [OpenAI]: https://openai.com/
+	GenAIProviderNameOpenAI = GenAIProviderNameKey.String("openai")
+	// Any Google generative AI endpoint
+	// Stability: development
+	GenAIProviderNameGCPGenAI = GenAIProviderNameKey.String("gcp.gen_ai")
+	// [Vertex AI]
+	// Stability: development
+	//
+	// [Vertex AI]: https://cloud.google.com/vertex-ai
+	GenAIProviderNameGCPVertexAI = GenAIProviderNameKey.String("gcp.vertex_ai")
+	// [Gemini]
+	// Stability: development
+	//
+	// [Gemini]: https://cloud.google.com/products/gemini
+	GenAIProviderNameGCPGemini = GenAIProviderNameKey.String("gcp.gemini")
+	// [Anthropic]
+	// Stability: development
+	//
+	// [Anthropic]: https://www.anthropic.com/
+	GenAIProviderNameAnthropic = GenAIProviderNameKey.String("anthropic")
+	// [Cohere]
+	// Stability: development
+	//
+	// [Cohere]: https://cohere.com/
+	GenAIProviderNameCohere = GenAIProviderNameKey.String("cohere")
+	// Azure AI Inference
+	// Stability: development
+	GenAIProviderNameAzureAIInference = GenAIProviderNameKey.String("azure.ai.inference")
+	// [Azure OpenAI]
+	// Stability: development
+	//
+	// [Azure OpenAI]: https://azure.microsoft.com/products/ai-services/openai-service/
+	GenAIProviderNameAzureAIOpenAI = GenAIProviderNameKey.String("azure.ai.openai")
+	// [IBM Watsonx AI]
+	// Stability: development
+	//
+	// [IBM Watsonx AI]: https://www.ibm.com/products/watsonx-ai
+	GenAIProviderNameIBMWatsonxAI = GenAIProviderNameKey.String("ibm.watsonx.ai")
+	// [AWS Bedrock]
+	// Stability: development
+	//
+	// [AWS Bedrock]: https://aws.amazon.com/bedrock
+	GenAIProviderNameAWSBedrock = GenAIProviderNameKey.String("aws.bedrock")
+	// [Perplexity]
+	// Stability: development
+	//
+	// [Perplexity]: https://www.perplexity.ai/
+	GenAIProviderNamePerplexity = GenAIProviderNameKey.String("perplexity")
+	// [xAI]
+	// Stability: development
+	//
+	// [xAI]: https://x.ai/
+	GenAIProviderNameXAI = GenAIProviderNameKey.String("x_ai")
+	// [DeepSeek]
+	// Stability: development
+	//
+	// [DeepSeek]: https://www.deepseek.com/
+	GenAIProviderNameDeepseek = GenAIProviderNameKey.String("deepseek")
+	// [Groq]
+	// Stability: development
+	//
+	// [Groq]: https://groq.com/
+	GenAIProviderNameGroq = GenAIProviderNameKey.String("groq")
+	// [Mistral AI]
+	// Stability: development
+	//
+	// [Mistral AI]: https://mistral.ai/
+	GenAIProviderNameMistralAI = GenAIProviderNameKey.String("mistral_ai")
+)
+
+// Enum values for gen_ai.token.type
+var (
+	// Input tokens (prompt, input, etc.)
+	// Stability: development
+	GenAITokenTypeInput = GenAITokenTypeKey.String("input")
+	// Output tokens (completion, response, etc.)
+	// Stability: development
+	GenAITokenTypeOutput = GenAITokenTypeKey.String("output")
+)
+
+// Namespace: geo
+const (
+	// GeoContinentCodeKey is the attribute Key conforming to the
+	// "geo.continent.code" semantic conventions. It represents the two-letter code
+	// representing continent’s name.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	GeoContinentCodeKey = attribute.Key("geo.continent.code")
+
+	// GeoCountryISOCodeKey is the attribute Key conforming to the
+	// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO
+	// Country Code ([ISO 3166-1 alpha2]).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CA"
+	//
+	// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes
+	GeoCountryISOCodeKey = attribute.Key("geo.country.iso_code")
+
+	// GeoLocalityNameKey is the attribute Key conforming to the "geo.locality.name"
+	// semantic conventions. It represents the locality name. Represents the name of
+	// a city, town, village, or similar populated place.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Montreal", "Berlin"
+	GeoLocalityNameKey = attribute.Key("geo.locality.name")
+
+	// GeoLocationLatKey is the attribute Key conforming to the "geo.location.lat"
+	// semantic conventions. It represents the latitude of the geo location in
+	// [WGS84].
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 45.505918
+	//
+	// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
+	GeoLocationLatKey = attribute.Key("geo.location.lat")
+
+	// GeoLocationLonKey is the attribute Key conforming to the "geo.location.lon"
+	// semantic conventions. It represents the longitude of the geo location in
+	// [WGS84].
+	//
+	// Type: double
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: -73.61483
+	//
+	// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
+	GeoLocationLonKey = attribute.Key("geo.location.lon")
+
+	// GeoPostalCodeKey is the attribute Key conforming to the "geo.postal_code"
+	// semantic conventions. It represents the postal code associated with the
+	// location. Values appropriate for this field may also be known as a postcode
+	// or ZIP code and will vary widely from country to country.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "94040"
+	GeoPostalCodeKey = attribute.Key("geo.postal_code")
+
+	// GeoRegionISOCodeKey is the attribute Key conforming to the
+	// "geo.region.iso_code" semantic conventions. It represents the region ISO code
+	// ([ISO 3166-2]).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CA-QC"
+	//
+	// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2
+	GeoRegionISOCodeKey = attribute.Key("geo.region.iso_code")
+)
+
+// GeoCountryISOCode returns an attribute KeyValue conforming to the
+// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO
+// Country Code ([ISO 3166-1 alpha2]).
+//
+// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes
+func GeoCountryISOCode(val string) attribute.KeyValue {
+	return GeoCountryISOCodeKey.String(val)
+}
+
+// GeoLocalityName returns an attribute KeyValue conforming to the
+// "geo.locality.name" semantic conventions. It represents the locality name.
+// Represents the name of a city, town, village, or similar populated place.
+func GeoLocalityName(val string) attribute.KeyValue {
+	return GeoLocalityNameKey.String(val)
+}
+
+// GeoLocationLat returns an attribute KeyValue conforming to the
+// "geo.location.lat" semantic conventions. It represents the latitude of the geo
+// location in [WGS84].
+//
+// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
+func GeoLocationLat(val float64) attribute.KeyValue {
+	return GeoLocationLatKey.Float64(val)
+}
+
+// GeoLocationLon returns an attribute KeyValue conforming to the
+// "geo.location.lon" semantic conventions. It represents the longitude of the
+// geo location in [WGS84].
+//
+// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84
+func GeoLocationLon(val float64) attribute.KeyValue {
+	return GeoLocationLonKey.Float64(val)
+}
+
+// GeoPostalCode returns an attribute KeyValue conforming to the
+// "geo.postal_code" semantic conventions. It represents the postal code
+// associated with the location. Values appropriate for this field may also be
+// known as a postcode or ZIP code and will vary widely from country to country.
+func GeoPostalCode(val string) attribute.KeyValue {
+	return GeoPostalCodeKey.String(val)
+}
+
+// GeoRegionISOCode returns an attribute KeyValue conforming to the
+// "geo.region.iso_code" semantic conventions. It represents the region ISO code
+// ([ISO 3166-2]).
+//
+// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2
+func GeoRegionISOCode(val string) attribute.KeyValue {
+	return GeoRegionISOCodeKey.String(val)
+}
+
+// Enum values for geo.continent.code
+var (
+	// Africa
+	// Stability: development
+	GeoContinentCodeAf = GeoContinentCodeKey.String("AF")
+	// Antarctica
+	// Stability: development
+	GeoContinentCodeAn = GeoContinentCodeKey.String("AN")
+	// Asia
+	// Stability: development
+	GeoContinentCodeAs = GeoContinentCodeKey.String("AS")
+	// Europe
+	// Stability: development
+	GeoContinentCodeEu = GeoContinentCodeKey.String("EU")
+	// North America
+	// Stability: development
+	GeoContinentCodeNa = GeoContinentCodeKey.String("NA")
+	// Oceania
+	// Stability: development
+	GeoContinentCodeOc = GeoContinentCodeKey.String("OC")
+	// South America
+	// Stability: development
+	GeoContinentCodeSa = GeoContinentCodeKey.String("SA")
+)
+
+// Namespace: go
+const (
+	// GoMemoryTypeKey is the attribute Key conforming to the "go.memory.type"
+	// semantic conventions. It represents the type of memory.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "other", "stack"
+	GoMemoryTypeKey = attribute.Key("go.memory.type")
+)
+
+// Enum values for go.memory.type
+var (
+	// Memory allocated from the heap that is reserved for stack space, whether or
+	// not it is currently in-use.
+	// Stability: development
+	GoMemoryTypeStack = GoMemoryTypeKey.String("stack")
+	// Memory used by the Go runtime, excluding other categories of memory usage
+	// described in this enumeration.
+	// Stability: development
+	GoMemoryTypeOther = GoMemoryTypeKey.String("other")
+)
+
+// Namespace: graphql
+const (
+	// GraphQLDocumentKey is the attribute Key conforming to the "graphql.document"
+	// semantic conventions. It represents the GraphQL document being executed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: query findBookById { bookById(id: ?) { name } }
+	// Note: The value may be sanitized to exclude sensitive information.
+	GraphQLDocumentKey = attribute.Key("graphql.document")
+
+	// GraphQLOperationNameKey is the attribute Key conforming to the
+	// "graphql.operation.name" semantic conventions. It represents the name of the
+	// operation being executed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: findBookById
+	GraphQLOperationNameKey = attribute.Key("graphql.operation.name")
+
+	// GraphQLOperationTypeKey is the attribute Key conforming to the
+	// "graphql.operation.type" semantic conventions. It represents the type of the
+	// operation being executed.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "query", "mutation", "subscription"
+	GraphQLOperationTypeKey = attribute.Key("graphql.operation.type")
+)
+
+// GraphQLDocument returns an attribute KeyValue conforming to the
+// "graphql.document" semantic conventions. It represents the GraphQL document
+// being executed.
+func GraphQLDocument(val string) attribute.KeyValue {
+	return GraphQLDocumentKey.String(val)
+}
+
+// GraphQLOperationName returns an attribute KeyValue conforming to the
+// "graphql.operation.name" semantic conventions. It represents the name of the
+// operation being executed.
+func GraphQLOperationName(val string) attribute.KeyValue {
+	return GraphQLOperationNameKey.String(val)
+}
+
+// Enum values for graphql.operation.type
+var (
+	// GraphQL query
+	// Stability: development
+	GraphQLOperationTypeQuery = GraphQLOperationTypeKey.String("query")
+	// GraphQL mutation
+	// Stability: development
+	GraphQLOperationTypeMutation = GraphQLOperationTypeKey.String("mutation")
+	// GraphQL subscription
+	// Stability: development
+	GraphQLOperationTypeSubscription = GraphQLOperationTypeKey.String("subscription")
+)
+
+// Namespace: heroku
+const (
+	// HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id"
+	// semantic conventions. It represents the unique identifier for the
+	// application.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2daa2797-e42b-4624-9322-ec3f968df4da"
+	HerokuAppIDKey = attribute.Key("heroku.app.id")
+
+	// HerokuReleaseCommitKey is the attribute Key conforming to the
+	// "heroku.release.commit" semantic conventions. It represents the commit hash
+	// for the current release.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "e6134959463efd8966b20e75b913cafe3f5ec"
+	HerokuReleaseCommitKey = attribute.Key("heroku.release.commit")
+
+	// HerokuReleaseCreationTimestampKey is the attribute Key conforming to the
+	// "heroku.release.creation_timestamp" semantic conventions. It represents the
+	// time and date the release was created.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2022-10-23T18:00:42Z"
+	HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp")
+)
+
+// HerokuAppID returns an attribute KeyValue conforming to the "heroku.app.id"
+// semantic conventions. It represents the unique identifier for the application.
+func HerokuAppID(val string) attribute.KeyValue {
+	return HerokuAppIDKey.String(val)
+}
+
+// HerokuReleaseCommit returns an attribute KeyValue conforming to the
+// "heroku.release.commit" semantic conventions. It represents the commit hash
+// for the current release.
+func HerokuReleaseCommit(val string) attribute.KeyValue {
+	return HerokuReleaseCommitKey.String(val)
+}
+
+// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming to the
+// "heroku.release.creation_timestamp" semantic conventions. It represents the
+// time and date the release was created.
+func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue {
+	return HerokuReleaseCreationTimestampKey.String(val)
+}
+
+// Namespace: host
+const (
+	// HostArchKey is the attribute Key conforming to the "host.arch" semantic
+	// conventions. It represents the CPU architecture the host system is running
+	// on.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HostArchKey = attribute.Key("host.arch")
+
+	// HostCPUCacheL2SizeKey is the attribute Key conforming to the
+	// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of
+	// level 2 memory cache available to the processor (in Bytes).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 12288000
+	HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size")
+
+	// HostCPUFamilyKey is the attribute Key conforming to the "host.cpu.family"
+	// semantic conventions. It represents the family or generation of the CPU.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "6", "PA-RISC 1.1e"
+	HostCPUFamilyKey = attribute.Key("host.cpu.family")
+
+	// HostCPUModelIDKey is the attribute Key conforming to the "host.cpu.model.id"
+	// semantic conventions. It represents the model identifier. It provides more
+	// granular information about the CPU, distinguishing it from other CPUs within
+	// the same family.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "6", "9000/778/B180L"
+	HostCPUModelIDKey = attribute.Key("host.cpu.model.id")
+
+	// HostCPUModelNameKey is the attribute Key conforming to the
+	// "host.cpu.model.name" semantic conventions. It represents the model
+	// designation of the processor.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz"
+	HostCPUModelNameKey = attribute.Key("host.cpu.model.name")
+
+	// HostCPUSteppingKey is the attribute Key conforming to the "host.cpu.stepping"
+	// semantic conventions. It represents the stepping or core revisions.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1", "r1p1"
+	HostCPUSteppingKey = attribute.Key("host.cpu.stepping")
+
+	// HostCPUVendorIDKey is the attribute Key conforming to the
+	// "host.cpu.vendor.id" semantic conventions. It represents the processor
+	// manufacturer identifier. A maximum 12-character string.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "GenuineIntel"
+	// Note: [CPUID] command returns the vendor ID string in EBX, EDX and ECX
+	// registers. Writing these to memory in this order results in a 12-character
+	// string.
+	//
+	// [CPUID]: https://wiki.osdev.org/CPUID
+	HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id")
+
+	// HostIDKey is the attribute Key conforming to the "host.id" semantic
+	// conventions. It represents the unique host ID. For Cloud, this must be the
+	// instance_id assigned by the cloud provider. For non-containerized systems,
+	// this should be the `machine-id`. See the table below for the sources to use
+	// to determine the `machine-id` based on operating system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "fdbf79e8af94cb7f9e8df36789187052"
+	HostIDKey = attribute.Key("host.id")
+
+	// HostImageIDKey is the attribute Key conforming to the "host.image.id"
+	// semantic conventions. It represents the VM image ID or host OS image ID. For
+	// Cloud, this value is from the provider.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ami-07b06b442921831e5"
+	HostImageIDKey = attribute.Key("host.image.id")
+
+	// HostImageNameKey is the attribute Key conforming to the "host.image.name"
+	// semantic conventions. It represents the name of the VM image or OS install
+	// the host was instantiated from.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "infra-ami-eks-worker-node-7d4ec78312", "CentOS-8-x86_64-1905"
+	HostImageNameKey = attribute.Key("host.image.name")
+
+	// HostImageVersionKey is the attribute Key conforming to the
+	// "host.image.version" semantic conventions. It represents the version string
+	// of the VM image or host OS as defined in [Version Attributes].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0.1"
+	//
+	// [Version Attributes]: /docs/resource/README.md#version-attributes
+	HostImageVersionKey = attribute.Key("host.image.version")
+
+	// HostIPKey is the attribute Key conforming to the "host.ip" semantic
+	// conventions. It represents the available IP addresses of the host, excluding
+	// loopback interfaces.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "192.168.1.140", "fe80::abc2:4a28:737a:609e"
+	// Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6
+	// addresses MUST be specified in the [RFC 5952] format.
+	//
+	// [RFC 5952]: https://www.rfc-editor.org/rfc/rfc5952.html
+	HostIPKey = attribute.Key("host.ip")
+
+	// HostMacKey is the attribute Key conforming to the "host.mac" semantic
+	// conventions. It represents the available MAC addresses of the host, excluding
+	// loopback interfaces.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "AC-DE-48-23-45-67", "AC-DE-48-23-45-67-01-9F"
+	// Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal form]: as
+	// hyphen-separated octets in uppercase hexadecimal form from most to least
+	// significant.
+	//
+	// [IEEE RA hexadecimal form]: https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf
+	HostMacKey = attribute.Key("host.mac")
+
+	// HostNameKey is the attribute Key conforming to the "host.name" semantic
+	// conventions. It represents the name of the host. On Unix systems, it may
+	// contain what the hostname command returns, or the fully qualified hostname,
+	// or another name specified by the user.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry-test"
+	HostNameKey = attribute.Key("host.name")
+
+	// HostTypeKey is the attribute Key conforming to the "host.type" semantic
+	// conventions. It represents the type of host. For Cloud, this must be the
+	// machine type.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "n1-standard-1"
+	HostTypeKey = attribute.Key("host.type")
+)
+
+// HostCPUCacheL2Size returns an attribute KeyValue conforming to the
+// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of
+// level 2 memory cache available to the processor (in Bytes).
+func HostCPUCacheL2Size(val int) attribute.KeyValue {
+	return HostCPUCacheL2SizeKey.Int(val)
+}
+
+// HostCPUFamily returns an attribute KeyValue conforming to the
+// "host.cpu.family" semantic conventions. It represents the family or generation
+// of the CPU.
+func HostCPUFamily(val string) attribute.KeyValue {
+	return HostCPUFamilyKey.String(val)
+}
+
+// HostCPUModelID returns an attribute KeyValue conforming to the
+// "host.cpu.model.id" semantic conventions. It represents the model identifier.
+// It provides more granular information about the CPU, distinguishing it from
+// other CPUs within the same family.
+func HostCPUModelID(val string) attribute.KeyValue {
+	return HostCPUModelIDKey.String(val)
+}
+
+// HostCPUModelName returns an attribute KeyValue conforming to the
+// "host.cpu.model.name" semantic conventions. It represents the model
+// designation of the processor.
+func HostCPUModelName(val string) attribute.KeyValue {
+	return HostCPUModelNameKey.String(val)
+}
+
+// HostCPUStepping returns an attribute KeyValue conforming to the
+// "host.cpu.stepping" semantic conventions. It represents the stepping or core
+// revisions.
+func HostCPUStepping(val string) attribute.KeyValue {
+	return HostCPUSteppingKey.String(val)
+}
+
+// HostCPUVendorID returns an attribute KeyValue conforming to the
+// "host.cpu.vendor.id" semantic conventions. It represents the processor
+// manufacturer identifier. A maximum 12-character string.
+func HostCPUVendorID(val string) attribute.KeyValue {
+	return HostCPUVendorIDKey.String(val)
+}
+
+// HostID returns an attribute KeyValue conforming to the "host.id" semantic
+// conventions. It represents the unique host ID. For Cloud, this must be the
+// instance_id assigned by the cloud provider. For non-containerized systems,
+// this should be the `machine-id`. See the table below for the sources to use to
+// determine the `machine-id` based on operating system.
+func HostID(val string) attribute.KeyValue {
+	return HostIDKey.String(val)
+}
+
+// HostImageID returns an attribute KeyValue conforming to the "host.image.id"
+// semantic conventions. It represents the VM image ID or host OS image ID. For
+// Cloud, this value is from the provider.
+func HostImageID(val string) attribute.KeyValue {
+	return HostImageIDKey.String(val)
+}
+
+// HostImageName returns an attribute KeyValue conforming to the
+// "host.image.name" semantic conventions. It represents the name of the VM image
+// or OS install the host was instantiated from.
+func HostImageName(val string) attribute.KeyValue {
+	return HostImageNameKey.String(val)
+}
+
+// HostImageVersion returns an attribute KeyValue conforming to the
+// "host.image.version" semantic conventions. It represents the version string of
+// the VM image or host OS as defined in [Version Attributes].
+//
+// [Version Attributes]: /docs/resource/README.md#version-attributes
+func HostImageVersion(val string) attribute.KeyValue {
+	return HostImageVersionKey.String(val)
+}
+
+// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic
+// conventions. It represents the available IP addresses of the host, excluding
+// loopback interfaces.
+func HostIP(val ...string) attribute.KeyValue {
+	return HostIPKey.StringSlice(val)
+}
+
+// HostMac returns an attribute KeyValue conforming to the "host.mac" semantic
+// conventions. It represents the available MAC addresses of the host, excluding
+// loopback interfaces.
+func HostMac(val ...string) attribute.KeyValue {
+	return HostMacKey.StringSlice(val)
+}
+
+// HostName returns an attribute KeyValue conforming to the "host.name" semantic
+// conventions. It represents the name of the host. On Unix systems, it may
+// contain what the hostname command returns, or the fully qualified hostname, or
+// another name specified by the user.
+func HostName(val string) attribute.KeyValue {
+	return HostNameKey.String(val)
+}
+
+// HostType returns an attribute KeyValue conforming to the "host.type" semantic
+// conventions. It represents the type of host. For Cloud, this must be the
+// machine type.
+func HostType(val string) attribute.KeyValue {
+	return HostTypeKey.String(val)
+}
+
+// Enum values for host.arch
+var (
+	// AMD64
+	// Stability: development
+	HostArchAMD64 = HostArchKey.String("amd64")
+	// ARM32
+	// Stability: development
+	HostArchARM32 = HostArchKey.String("arm32")
+	// ARM64
+	// Stability: development
+	HostArchARM64 = HostArchKey.String("arm64")
+	// Itanium
+	// Stability: development
+	HostArchIA64 = HostArchKey.String("ia64")
+	// 32-bit PowerPC
+	// Stability: development
+	HostArchPPC32 = HostArchKey.String("ppc32")
+	// 64-bit PowerPC
+	// Stability: development
+	HostArchPPC64 = HostArchKey.String("ppc64")
+	// IBM z/Architecture
+	// Stability: development
+	HostArchS390x = HostArchKey.String("s390x")
+	// 32-bit x86
+	// Stability: development
+	HostArchX86 = HostArchKey.String("x86")
+)
+
+// Namespace: http
+const (
+	// HTTPConnectionStateKey is the attribute Key conforming to the
+	// "http.connection.state" semantic conventions. It represents the state of the
+	// HTTP connection in the HTTP connection pool.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "active", "idle"
+	HTTPConnectionStateKey = attribute.Key("http.connection.state")
+
+	// HTTPRequestBodySizeKey is the attribute Key conforming to the
+	// "http.request.body.size" semantic conventions. It represents the size of the
+	// request payload body in bytes. This is the number of bytes transferred
+	// excluding headers and is often, but not always, present as the
+	// [Content-Length] header. For requests using transport encoding, this should
+	// be the compressed size.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
+	HTTPRequestBodySizeKey = attribute.Key("http.request.body.size")
+
+	// HTTPRequestMethodKey is the attribute Key conforming to the
+	// "http.request.method" semantic conventions. It represents the HTTP request
+	// method.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "GET", "POST", "HEAD"
+	// Note: HTTP request method value SHOULD be "known" to the instrumentation.
+	// By default, this convention defines "known" methods as the ones listed in
+	// [RFC9110],
+	// the PATCH method defined in [RFC5789]
+	// and the QUERY method defined in [httpbis-safe-method-w-body].
+	//
+	// If the HTTP request method is not known to instrumentation, it MUST set the
+	// `http.request.method` attribute to `_OTHER`.
+	//
+	// If the HTTP instrumentation could end up converting valid HTTP request
+	// methods to `_OTHER`, then it MUST provide a way to override
+	// the list of known HTTP methods. If this override is done via environment
+	// variable, then the environment variable MUST be named
+	// OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated list of
+	// case-sensitive known HTTP methods.
+	//
+	//
+	// If this override is done via declarative configuration, then the list MUST be
+	// configurable via the `known_methods` property
+	// (an array of case-sensitive strings with minimum items 0) under
+	// `.instrumentation/development.general.http.client` and/or
+	// `.instrumentation/development.general.http.server`.
+	//
+	// In either case, this list MUST be a full override of the default known
+	// methods,
+	// it is not a list of known methods in addition to the defaults.
+	//
+	// HTTP method names are case-sensitive and `http.request.method` attribute
+	// value MUST match a known HTTP method name exactly.
+	// Instrumentations for specific web frameworks that consider HTTP methods to be
+	// case insensitive, SHOULD populate a canonical equivalent.
+	// Tracing instrumentations that do so, MUST also set
+	// `http.request.method_original` to the original value.
+	//
+	// [RFC9110]: https://www.rfc-editor.org/rfc/rfc9110.html#name-methods
+	// [RFC5789]: https://www.rfc-editor.org/rfc/rfc5789.html
+	// [httpbis-safe-method-w-body]: https://datatracker.ietf.org/doc/draft-ietf-httpbis-safe-method-w-body/?include_text=1
+	HTTPRequestMethodKey = attribute.Key("http.request.method")
+
+	// HTTPRequestMethodOriginalKey is the attribute Key conforming to the
+	// "http.request.method_original" semantic conventions. It represents the
+	// original HTTP method sent by the client in the request line.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "GeT", "ACL", "foo"
+	HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original")
+
+	// HTTPRequestResendCountKey is the attribute Key conforming to the
+	// "http.request.resend_count" semantic conventions. It represents the ordinal
+	// number of request resending attempt (for any reason, including redirects).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Note: The resend count SHOULD be updated each time an HTTP request gets
+	// resent by the client, regardless of what was the cause of the resending (e.g.
+	// redirection, authorization failure, 503 Server Unavailable, network issues,
+	// or any other).
+	HTTPRequestResendCountKey = attribute.Key("http.request.resend_count")
+
+	// HTTPRequestSizeKey is the attribute Key conforming to the "http.request.size"
+	// semantic conventions. It represents the total size of the request in bytes.
+	// This should be the total number of bytes sent over the wire, including the
+	// request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, and request
+	// body if any.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	HTTPRequestSizeKey = attribute.Key("http.request.size")
+
+	// HTTPResponseBodySizeKey is the attribute Key conforming to the
+	// "http.response.body.size" semantic conventions. It represents the size of the
+	// response payload body in bytes. This is the number of bytes transferred
+	// excluding headers and is often, but not always, present as the
+	// [Content-Length] header. For requests using transport encoding, this should
+	// be the compressed size.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
+	HTTPResponseBodySizeKey = attribute.Key("http.response.body.size")
+
+	// HTTPResponseSizeKey is the attribute Key conforming to the
+	// "http.response.size" semantic conventions. It represents the total size of
+	// the response in bytes. This should be the total number of bytes sent over the
+	// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3),
+	// headers, and response body and trailers if any.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	HTTPResponseSizeKey = attribute.Key("http.response.size")
+
+	// HTTPResponseStatusCodeKey is the attribute Key conforming to the
+	// "http.response.status_code" semantic conventions. It represents the
+	// [HTTP response status code].
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: 200
+	//
+	// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6
+	HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code")
+
+	// HTTPRouteKey is the attribute Key conforming to the "http.route" semantic
+	// conventions. It represents the matched route template for the request. This
+	// MUST be low-cardinality and include all static path segments, with dynamic
+	// path segments represented with placeholders.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "/users/:userID?", "my-controller/my-action/{id?}"
+	// Note: MUST NOT be populated when this is not supported by the HTTP server
+	// framework as the route attribute should have low-cardinality and the URI path
+	// can NOT substitute it.
+	// SHOULD include the [application root] if there is one.
+	//
+	// A static path segment is a part of the route template with a fixed,
+	// low-cardinality value. This includes literal strings like `/users/` and
+	// placeholders that
+	// are constrained to a finite, predefined set of values, e.g. `{controller}` or
+	// `{action}`.
+	//
+	// A dynamic path segment is a placeholder for a value that can have high
+	// cardinality and is not constrained to a predefined list like static path
+	// segments.
+	//
+	// Instrumentations SHOULD use routing information provided by the corresponding
+	// web framework. They SHOULD pick the most precise source of routing
+	// information and MAY
+	// support custom route formatting. Instrumentations SHOULD document the format
+	// and the API used to obtain the route string.
+	//
+	// [application root]: /docs/http/http-spans.md#http-server-definitions
+	HTTPRouteKey = attribute.Key("http.route")
+)
+
+// HTTPRequestBodySize returns an attribute KeyValue conforming to the
+// "http.request.body.size" semantic conventions. It represents the size of the
+// request payload body in bytes. This is the number of bytes transferred
+// excluding headers and is often, but not always, present as the
+// [Content-Length] header. For requests using transport encoding, this should be
+// the compressed size.
+//
+// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
+func HTTPRequestBodySize(val int) attribute.KeyValue {
+	return HTTPRequestBodySizeKey.Int(val)
+}
+
+// HTTPRequestHeader returns an attribute KeyValue conforming to the
+// "http.request.header" semantic conventions. It represents the HTTP request
+// headers, `<key>` being the normalized HTTP Header name (lowercase), the value
+// being the header values.
+func HTTPRequestHeader(key string, val ...string) attribute.KeyValue {
+	return attribute.StringSlice("http.request.header."+key, val)
+}
+
+// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the
+// "http.request.method_original" semantic conventions. It represents the
+// original HTTP method sent by the client in the request line.
+func HTTPRequestMethodOriginal(val string) attribute.KeyValue {
+	return HTTPRequestMethodOriginalKey.String(val)
+}
+
+// HTTPRequestResendCount returns an attribute KeyValue conforming to the
+// "http.request.resend_count" semantic conventions. It represents the ordinal
+// number of request resending attempt (for any reason, including redirects).
+func HTTPRequestResendCount(val int) attribute.KeyValue {
+	return HTTPRequestResendCountKey.Int(val)
+}
+
+// HTTPRequestSize returns an attribute KeyValue conforming to the
+// "http.request.size" semantic conventions. It represents the total size of the
+// request in bytes. This should be the total number of bytes sent over the wire,
+// including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers,
+// and request body if any.
+func HTTPRequestSize(val int) attribute.KeyValue {
+	return HTTPRequestSizeKey.Int(val)
+}
+
+// HTTPResponseBodySize returns an attribute KeyValue conforming to the
+// "http.response.body.size" semantic conventions. It represents the size of the
+// response payload body in bytes. This is the number of bytes transferred
+// excluding headers and is often, but not always, present as the
+// [Content-Length] header. For requests using transport encoding, this should be
+// the compressed size.
+//
+// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length
+func HTTPResponseBodySize(val int) attribute.KeyValue {
+	return HTTPResponseBodySizeKey.Int(val)
+}
+
+// HTTPResponseHeader returns an attribute KeyValue conforming to the
+// "http.response.header" semantic conventions. It represents the HTTP response
+// headers, `<key>` being the normalized HTTP Header name (lowercase), the value
+// being the header values.
+func HTTPResponseHeader(key string, val ...string) attribute.KeyValue {
+	return attribute.StringSlice("http.response.header."+key, val)
+}
+
+// HTTPResponseSize returns an attribute KeyValue conforming to the
+// "http.response.size" semantic conventions. It represents the total size of the
+// response in bytes. This should be the total number of bytes sent over the
+// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3),
+// headers, and response body and trailers if any.
+func HTTPResponseSize(val int) attribute.KeyValue {
+	return HTTPResponseSizeKey.Int(val)
+}
+
+// HTTPResponseStatusCode returns an attribute KeyValue conforming to the
+// "http.response.status_code" semantic conventions. It represents the
+// [HTTP response status code].
+//
+// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6
+func HTTPResponseStatusCode(val int) attribute.KeyValue {
+	return HTTPResponseStatusCodeKey.Int(val)
+}
+
+// HTTPRoute returns an attribute KeyValue conforming to the "http.route"
+// semantic conventions. It represents the matched route template for the
+// request. This MUST be low-cardinality and include all static path segments,
+// with dynamic path segments represented with placeholders.
+func HTTPRoute(val string) attribute.KeyValue {
+	return HTTPRouteKey.String(val)
+}
+
+// Enum values for http.connection.state
+var (
+	// active state.
+	// Stability: development
+	HTTPConnectionStateActive = HTTPConnectionStateKey.String("active")
+	// idle state.
+	// Stability: development
+	HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle")
+)
+
+// Enum values for http.request.method
+var (
+	// CONNECT method.
+	// Stability: stable
+	HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT")
+	// DELETE method.
+	// Stability: stable
+	HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE")
+	// GET method.
+	// Stability: stable
+	HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET")
+	// HEAD method.
+	// Stability: stable
+	HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD")
+	// OPTIONS method.
+	// Stability: stable
+	HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS")
+	// PATCH method.
+	// Stability: stable
+	HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH")
+	// POST method.
+	// Stability: stable
+	HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST")
+	// PUT method.
+	// Stability: stable
+	HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT")
+	// TRACE method.
+	// Stability: stable
+	HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE")
+	// QUERY method.
+	// Stability: development
+	HTTPRequestMethodQuery = HTTPRequestMethodKey.String("QUERY")
+	// Any HTTP method that the instrumentation has no prior knowledge of.
+	// Stability: stable
+	HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER")
+)
+
+// Namespace: hw
+const (
+	// HwBatteryCapacityKey is the attribute Key conforming to the
+	// "hw.battery.capacity" semantic conventions. It represents the design capacity
+	// in Watts-hours or Amper-hours.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "9.3Ah", "50Wh"
+	HwBatteryCapacityKey = attribute.Key("hw.battery.capacity")
+
+	// HwBatteryChemistryKey is the attribute Key conforming to the
+	// "hw.battery.chemistry" semantic conventions. It represents the battery
+	// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Li-ion", "NiMH"
+	//
+	// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html
+	HwBatteryChemistryKey = attribute.Key("hw.battery.chemistry")
+
+	// HwBatteryStateKey is the attribute Key conforming to the "hw.battery.state"
+	// semantic conventions. It represents the current state of the battery.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwBatteryStateKey = attribute.Key("hw.battery.state")
+
+	// HwBiosVersionKey is the attribute Key conforming to the "hw.bios_version"
+	// semantic conventions. It represents the BIOS version of the hardware
+	// component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1.2.3"
+	HwBiosVersionKey = attribute.Key("hw.bios_version")
+
+	// HwDriverVersionKey is the attribute Key conforming to the "hw.driver_version"
+	// semantic conventions. It represents the driver version for the hardware
+	// component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "10.2.1-3"
+	HwDriverVersionKey = attribute.Key("hw.driver_version")
+
+	// HwEnclosureTypeKey is the attribute Key conforming to the "hw.enclosure.type"
+	// semantic conventions. It represents the type of the enclosure (useful for
+	// modular systems).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Computer", "Storage", "Switch"
+	HwEnclosureTypeKey = attribute.Key("hw.enclosure.type")
+
+	// HwFirmwareVersionKey is the attribute Key conforming to the
+	// "hw.firmware_version" semantic conventions. It represents the firmware
+	// version of the hardware component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2.0.1"
+	HwFirmwareVersionKey = attribute.Key("hw.firmware_version")
+
+	// HwGpuTaskKey is the attribute Key conforming to the "hw.gpu.task" semantic
+	// conventions. It represents the type of task the GPU is performing.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwGpuTaskKey = attribute.Key("hw.gpu.task")
+
+	// HwIDKey is the attribute Key conforming to the "hw.id" semantic conventions.
+	// It represents an identifier for the hardware component, unique within the
+	// monitored host.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "win32battery_battery_testsysa33_1"
+	HwIDKey = attribute.Key("hw.id")
+
+	// HwLimitTypeKey is the attribute Key conforming to the "hw.limit_type"
+	// semantic conventions. It represents the type of limit for hardware
+	// components.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwLimitTypeKey = attribute.Key("hw.limit_type")
+
+	// HwLogicalDiskRaidLevelKey is the attribute Key conforming to the
+	// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID
+	// Level of the logical disk.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "RAID0+1", "RAID5", "RAID10"
+	HwLogicalDiskRaidLevelKey = attribute.Key("hw.logical_disk.raid_level")
+
+	// HwLogicalDiskStateKey is the attribute Key conforming to the
+	// "hw.logical_disk.state" semantic conventions. It represents the state of the
+	// logical disk space usage.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwLogicalDiskStateKey = attribute.Key("hw.logical_disk.state")
+
+	// HwMemoryTypeKey is the attribute Key conforming to the "hw.memory.type"
+	// semantic conventions. It represents the type of the memory module.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "DDR4", "DDR5", "LPDDR5"
+	HwMemoryTypeKey = attribute.Key("hw.memory.type")
+
+	// HwModelKey is the attribute Key conforming to the "hw.model" semantic
+	// conventions. It represents the descriptive model name of the hardware
+	// component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "PERC H740P", "Intel(R) Core(TM) i7-10700K", "Dell XPS 15 Battery"
+	HwModelKey = attribute.Key("hw.model")
+
+	// HwNameKey is the attribute Key conforming to the "hw.name" semantic
+	// conventions. It represents an easily-recognizable name for the hardware
+	// component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "eth0"
+	HwNameKey = attribute.Key("hw.name")
+
+	// HwNetworkLogicalAddressesKey is the attribute Key conforming to the
+	// "hw.network.logical_addresses" semantic conventions. It represents the
+	// logical addresses of the adapter (e.g. IP address, or WWPN).
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "172.16.8.21", "57.11.193.42"
+	HwNetworkLogicalAddressesKey = attribute.Key("hw.network.logical_addresses")
+
+	// HwNetworkPhysicalAddressKey is the attribute Key conforming to the
+	// "hw.network.physical_address" semantic conventions. It represents the
+	// physical address of the adapter (e.g. MAC address, or WWNN).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "00-90-F5-E9-7B-36"
+	HwNetworkPhysicalAddressKey = attribute.Key("hw.network.physical_address")
+
+	// HwParentKey is the attribute Key conforming to the "hw.parent" semantic
+	// conventions. It represents the unique identifier of the parent component
+	// (typically the `hw.id` attribute of the enclosure, or disk controller).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "dellStorage_perc_0"
+	HwParentKey = attribute.Key("hw.parent")
+
+	// HwPhysicalDiskSmartAttributeKey is the attribute Key conforming to the
+	// "hw.physical_disk.smart_attribute" semantic conventions. It represents the
+	// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute
+	// of the physical disk.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Spin Retry Count", "Seek Error Rate", "Raw Read Error Rate"
+	//
+	// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T.
+	HwPhysicalDiskSmartAttributeKey = attribute.Key("hw.physical_disk.smart_attribute")
+
+	// HwPhysicalDiskStateKey is the attribute Key conforming to the
+	// "hw.physical_disk.state" semantic conventions. It represents the state of the
+	// physical disk endurance utilization.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwPhysicalDiskStateKey = attribute.Key("hw.physical_disk.state")
+
+	// HwPhysicalDiskTypeKey is the attribute Key conforming to the
+	// "hw.physical_disk.type" semantic conventions. It represents the type of the
+	// physical disk.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "HDD", "SSD", "10K"
+	HwPhysicalDiskTypeKey = attribute.Key("hw.physical_disk.type")
+
+	// HwSensorLocationKey is the attribute Key conforming to the
+	// "hw.sensor_location" semantic conventions. It represents the location of the
+	// sensor.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cpu0", "ps1", "INLET", "CPU0_DIE", "AMBIENT", "MOTHERBOARD", "PS0
+	// V3_3", "MAIN_12V", "CPU_VCORE"
+	HwSensorLocationKey = attribute.Key("hw.sensor_location")
+
+	// HwSerialNumberKey is the attribute Key conforming to the "hw.serial_number"
+	// semantic conventions. It represents the serial number of the hardware
+	// component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CNFCP0123456789"
+	HwSerialNumberKey = attribute.Key("hw.serial_number")
+
+	// HwStateKey is the attribute Key conforming to the "hw.state" semantic
+	// conventions. It represents the current state of the component.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwStateKey = attribute.Key("hw.state")
+
+	// HwTapeDriveOperationTypeKey is the attribute Key conforming to the
+	// "hw.tape_drive.operation_type" semantic conventions. It represents the type
+	// of tape drive operation.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	HwTapeDriveOperationTypeKey = attribute.Key("hw.tape_drive.operation_type")
+
+	// HwTypeKey is the attribute Key conforming to the "hw.type" semantic
+	// conventions. It represents the type of the component.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: Describes the category of the hardware component for which `hw.state`
+	// is being reported. For example, `hw.type=temperature` along with
+	// `hw.state=degraded` would indicate that the temperature of the hardware
+	// component has been reported as `degraded`.
+	HwTypeKey = attribute.Key("hw.type")
+
+	// HwVendorKey is the attribute Key conforming to the "hw.vendor" semantic
+	// conventions. It represents the vendor name of the hardware component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Dell", "HP", "Intel", "AMD", "LSI", "Lenovo"
+	HwVendorKey = attribute.Key("hw.vendor")
+)
+
+// HwBatteryCapacity returns an attribute KeyValue conforming to the
+// "hw.battery.capacity" semantic conventions. It represents the design capacity
+// in Watts-hours or Amper-hours.
+func HwBatteryCapacity(val string) attribute.KeyValue {
+	return HwBatteryCapacityKey.String(val)
+}
+
+// HwBatteryChemistry returns an attribute KeyValue conforming to the
+// "hw.battery.chemistry" semantic conventions. It represents the battery
+// [chemistry], e.g. Lithium-Ion, Nickel-Cadmium, etc.
+//
+// [chemistry]: https://schemas.dmtf.org/wbem/cim-html/2.31.0/CIM_Battery.html
+func HwBatteryChemistry(val string) attribute.KeyValue {
+	return HwBatteryChemistryKey.String(val)
+}
+
+// HwBiosVersion returns an attribute KeyValue conforming to the
+// "hw.bios_version" semantic conventions. It represents the BIOS version of the
+// hardware component.
+func HwBiosVersion(val string) attribute.KeyValue {
+	return HwBiosVersionKey.String(val)
+}
+
+// HwDriverVersion returns an attribute KeyValue conforming to the
+// "hw.driver_version" semantic conventions. It represents the driver version for
+// the hardware component.
+func HwDriverVersion(val string) attribute.KeyValue {
+	return HwDriverVersionKey.String(val)
+}
+
+// HwEnclosureType returns an attribute KeyValue conforming to the
+// "hw.enclosure.type" semantic conventions. It represents the type of the
+// enclosure (useful for modular systems).
+func HwEnclosureType(val string) attribute.KeyValue {
+	return HwEnclosureTypeKey.String(val)
+}
+
+// HwFirmwareVersion returns an attribute KeyValue conforming to the
+// "hw.firmware_version" semantic conventions. It represents the firmware version
+// of the hardware component.
+func HwFirmwareVersion(val string) attribute.KeyValue {
+	return HwFirmwareVersionKey.String(val)
+}
+
+// HwID returns an attribute KeyValue conforming to the "hw.id" semantic
+// conventions. It represents an identifier for the hardware component, unique
+// within the monitored host.
+func HwID(val string) attribute.KeyValue {
+	return HwIDKey.String(val)
+}
+
+// HwLogicalDiskRaidLevel returns an attribute KeyValue conforming to the
+// "hw.logical_disk.raid_level" semantic conventions. It represents the RAID
+// Level of the logical disk.
+func HwLogicalDiskRaidLevel(val string) attribute.KeyValue {
+	return HwLogicalDiskRaidLevelKey.String(val)
+}
+
+// HwMemoryType returns an attribute KeyValue conforming to the "hw.memory.type"
+// semantic conventions. It represents the type of the memory module.
+func HwMemoryType(val string) attribute.KeyValue {
+	return HwMemoryTypeKey.String(val)
+}
+
+// HwModel returns an attribute KeyValue conforming to the "hw.model" semantic
+// conventions. It represents the descriptive model name of the hardware
+// component.
+func HwModel(val string) attribute.KeyValue {
+	return HwModelKey.String(val)
+}
+
+// HwName returns an attribute KeyValue conforming to the "hw.name" semantic
+// conventions. It represents an easily-recognizable name for the hardware
+// component.
+func HwName(val string) attribute.KeyValue {
+	return HwNameKey.String(val)
+}
+
+// HwNetworkLogicalAddresses returns an attribute KeyValue conforming to the
+// "hw.network.logical_addresses" semantic conventions. It represents the logical
+// addresses of the adapter (e.g. IP address, or WWPN).
+func HwNetworkLogicalAddresses(val ...string) attribute.KeyValue {
+	return HwNetworkLogicalAddressesKey.StringSlice(val)
+}
+
+// HwNetworkPhysicalAddress returns an attribute KeyValue conforming to the
+// "hw.network.physical_address" semantic conventions. It represents the physical
+// address of the adapter (e.g. MAC address, or WWNN).
+func HwNetworkPhysicalAddress(val string) attribute.KeyValue {
+	return HwNetworkPhysicalAddressKey.String(val)
+}
+
+// HwParent returns an attribute KeyValue conforming to the "hw.parent" semantic
+// conventions. It represents the unique identifier of the parent component
+// (typically the `hw.id` attribute of the enclosure, or disk controller).
+func HwParent(val string) attribute.KeyValue {
+	return HwParentKey.String(val)
+}
+
+// HwPhysicalDiskSmartAttribute returns an attribute KeyValue conforming to the
+// "hw.physical_disk.smart_attribute" semantic conventions. It represents the
+// [S.M.A.R.T.] (Self-Monitoring, Analysis, and Reporting Technology) attribute
+// of the physical disk.
+//
+// [S.M.A.R.T.]: https://wikipedia.org/wiki/S.M.A.R.T.
+func HwPhysicalDiskSmartAttribute(val string) attribute.KeyValue {
+	return HwPhysicalDiskSmartAttributeKey.String(val)
+}
+
+// HwPhysicalDiskType returns an attribute KeyValue conforming to the
+// "hw.physical_disk.type" semantic conventions. It represents the type of the
+// physical disk.
+func HwPhysicalDiskType(val string) attribute.KeyValue {
+	return HwPhysicalDiskTypeKey.String(val)
+}
+
+// HwSensorLocation returns an attribute KeyValue conforming to the
+// "hw.sensor_location" semantic conventions. It represents the location of the
+// sensor.
+func HwSensorLocation(val string) attribute.KeyValue {
+	return HwSensorLocationKey.String(val)
+}
+
+// HwSerialNumber returns an attribute KeyValue conforming to the
+// "hw.serial_number" semantic conventions. It represents the serial number of
+// the hardware component.
+func HwSerialNumber(val string) attribute.KeyValue {
+	return HwSerialNumberKey.String(val)
+}
+
+// HwVendor returns an attribute KeyValue conforming to the "hw.vendor" semantic
+// conventions. It represents the vendor name of the hardware component.
+func HwVendor(val string) attribute.KeyValue {
+	return HwVendorKey.String(val)
+}
+
+// Enum values for hw.battery.state
+var (
+	// Charging
+	// Stability: development
+	HwBatteryStateCharging = HwBatteryStateKey.String("charging")
+	// Discharging
+	// Stability: development
+	HwBatteryStateDischarging = HwBatteryStateKey.String("discharging")
+)
+
+// Enum values for hw.gpu.task
+var (
+	// Decoder
+	// Stability: development
+	HwGpuTaskDecoder = HwGpuTaskKey.String("decoder")
+	// Encoder
+	// Stability: development
+	HwGpuTaskEncoder = HwGpuTaskKey.String("encoder")
+	// General
+	// Stability: development
+	HwGpuTaskGeneral = HwGpuTaskKey.String("general")
+)
+
+// Enum values for hw.limit_type
+var (
+	// Critical
+	// Stability: development
+	HwLimitTypeCritical = HwLimitTypeKey.String("critical")
+	// Degraded
+	// Stability: development
+	HwLimitTypeDegraded = HwLimitTypeKey.String("degraded")
+	// High Critical
+	// Stability: development
+	HwLimitTypeHighCritical = HwLimitTypeKey.String("high.critical")
+	// High Degraded
+	// Stability: development
+	HwLimitTypeHighDegraded = HwLimitTypeKey.String("high.degraded")
+	// Low Critical
+	// Stability: development
+	HwLimitTypeLowCritical = HwLimitTypeKey.String("low.critical")
+	// Low Degraded
+	// Stability: development
+	HwLimitTypeLowDegraded = HwLimitTypeKey.String("low.degraded")
+	// Maximum
+	// Stability: development
+	HwLimitTypeMax = HwLimitTypeKey.String("max")
+	// Throttled
+	// Stability: development
+	HwLimitTypeThrottled = HwLimitTypeKey.String("throttled")
+	// Turbo
+	// Stability: development
+	HwLimitTypeTurbo = HwLimitTypeKey.String("turbo")
+)
+
+// Enum values for hw.logical_disk.state
+var (
+	// Used
+	// Stability: development
+	HwLogicalDiskStateUsed = HwLogicalDiskStateKey.String("used")
+	// Free
+	// Stability: development
+	HwLogicalDiskStateFree = HwLogicalDiskStateKey.String("free")
+)
+
+// Enum values for hw.physical_disk.state
+var (
+	// Remaining
+	// Stability: development
+	HwPhysicalDiskStateRemaining = HwPhysicalDiskStateKey.String("remaining")
+)
+
+// Enum values for hw.state
+var (
+	// Degraded
+	// Stability: development
+	HwStateDegraded = HwStateKey.String("degraded")
+	// Failed
+	// Stability: development
+	HwStateFailed = HwStateKey.String("failed")
+	// Needs Cleaning
+	// Stability: development
+	HwStateNeedsCleaning = HwStateKey.String("needs_cleaning")
+	// OK
+	// Stability: development
+	HwStateOk = HwStateKey.String("ok")
+	// Predicted Failure
+	// Stability: development
+	HwStatePredictedFailure = HwStateKey.String("predicted_failure")
+)
+
+// Enum values for hw.tape_drive.operation_type
+var (
+	// Mount
+	// Stability: development
+	HwTapeDriveOperationTypeMount = HwTapeDriveOperationTypeKey.String("mount")
+	// Unmount
+	// Stability: development
+	HwTapeDriveOperationTypeUnmount = HwTapeDriveOperationTypeKey.String("unmount")
+	// Clean
+	// Stability: development
+	HwTapeDriveOperationTypeClean = HwTapeDriveOperationTypeKey.String("clean")
+)
+
+// Enum values for hw.type
+var (
+	// Battery
+	// Stability: development
+	HwTypeBattery = HwTypeKey.String("battery")
+	// CPU
+	// Stability: development
+	HwTypeCPU = HwTypeKey.String("cpu")
+	// Disk controller
+	// Stability: development
+	HwTypeDiskController = HwTypeKey.String("disk_controller")
+	// Enclosure
+	// Stability: development
+	HwTypeEnclosure = HwTypeKey.String("enclosure")
+	// Fan
+	// Stability: development
+	HwTypeFan = HwTypeKey.String("fan")
+	// GPU
+	// Stability: development
+	HwTypeGpu = HwTypeKey.String("gpu")
+	// Logical disk
+	// Stability: development
+	HwTypeLogicalDisk = HwTypeKey.String("logical_disk")
+	// Memory
+	// Stability: development
+	HwTypeMemory = HwTypeKey.String("memory")
+	// Network
+	// Stability: development
+	HwTypeNetwork = HwTypeKey.String("network")
+	// Physical disk
+	// Stability: development
+	HwTypePhysicalDisk = HwTypeKey.String("physical_disk")
+	// Power supply
+	// Stability: development
+	HwTypePowerSupply = HwTypeKey.String("power_supply")
+	// Tape drive
+	// Stability: development
+	HwTypeTapeDrive = HwTypeKey.String("tape_drive")
+	// Temperature
+	// Stability: development
+	HwTypeTemperature = HwTypeKey.String("temperature")
+	// Voltage
+	// Stability: development
+	HwTypeVoltage = HwTypeKey.String("voltage")
+)
+
+// Namespace: ios
+const (
+	// IOSAppStateKey is the attribute Key conforming to the "ios.app.state"
+	// semantic conventions. It represents the this attribute represents the state
+	// of the application.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: The iOS lifecycle states are defined in the
+	// [UIApplicationDelegate documentation], and from which the `OS terminology`
+	// column values are derived.
+	//
+	// [UIApplicationDelegate documentation]: https://developer.apple.com/documentation/uikit/uiapplicationdelegate
+	IOSAppStateKey = attribute.Key("ios.app.state")
+)
+
+// Enum values for ios.app.state
+var (
+	// The app has become `active`. Associated with UIKit notification
+	// `applicationDidBecomeActive`.
+	//
+	// Stability: development
+	IOSAppStateActive = IOSAppStateKey.String("active")
+	// The app is now `inactive`. Associated with UIKit notification
+	// `applicationWillResignActive`.
+	//
+	// Stability: development
+	IOSAppStateInactive = IOSAppStateKey.String("inactive")
+	// The app is now in the background. This value is associated with UIKit
+	// notification `applicationDidEnterBackground`.
+	//
+	// Stability: development
+	IOSAppStateBackground = IOSAppStateKey.String("background")
+	// The app is now in the foreground. This value is associated with UIKit
+	// notification `applicationWillEnterForeground`.
+	//
+	// Stability: development
+	IOSAppStateForeground = IOSAppStateKey.String("foreground")
+	// The app is about to terminate. Associated with UIKit notification
+	// `applicationWillTerminate`.
+	//
+	// Stability: development
+	IOSAppStateTerminate = IOSAppStateKey.String("terminate")
+)
+
+// Namespace: jsonrpc
+const (
+	// JSONRPCProtocolVersionKey is the attribute Key conforming to the
+	// "jsonrpc.protocol.version" semantic conventions. It represents the protocol
+	// version, as specified in the `jsonrpc` property of the request and its
+	// corresponding response.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2.0", "1.0"
+	JSONRPCProtocolVersionKey = attribute.Key("jsonrpc.protocol.version")
+
+	// JSONRPCRequestIDKey is the attribute Key conforming to the
+	// "jsonrpc.request.id" semantic conventions. It represents a string
+	// representation of the `id` property of the request and its corresponding
+	// response.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "10", "request-7"
+	// Note: Under the [JSON-RPC specification], the `id` property may be a string,
+	// number, null, or omitted entirely. When omitted, the request is treated as a
+	// notification. Using `null` is not equivalent to omitting the `id`, but it is
+	// discouraged.
+	// Instrumentations SHOULD NOT capture this attribute when the `id` is `null` or
+	// omitted.
+	//
+	// [JSON-RPC specification]: https://www.jsonrpc.org/specification
+	JSONRPCRequestIDKey = attribute.Key("jsonrpc.request.id")
+)
+
+// JSONRPCProtocolVersion returns an attribute KeyValue conforming to the
+// "jsonrpc.protocol.version" semantic conventions. It represents the protocol
+// version, as specified in the `jsonrpc` property of the request and its
+// corresponding response.
+func JSONRPCProtocolVersion(val string) attribute.KeyValue {
+	return JSONRPCProtocolVersionKey.String(val)
+}
+
+// JSONRPCRequestID returns an attribute KeyValue conforming to the
+// "jsonrpc.request.id" semantic conventions. It represents a string
+// representation of the `id` property of the request and its corresponding
+// response.
+func JSONRPCRequestID(val string) attribute.KeyValue {
+	return JSONRPCRequestIDKey.String(val)
+}
+
+// Namespace: k8s
+const (
+	// K8SClusterNameKey is the attribute Key conforming to the "k8s.cluster.name"
+	// semantic conventions. It represents the name of the cluster.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry-cluster"
+	K8SClusterNameKey = attribute.Key("k8s.cluster.name")
+
+	// K8SClusterUIDKey is the attribute Key conforming to the "k8s.cluster.uid"
+	// semantic conventions. It represents a pseudo-ID for the cluster, set to the
+	// UID of the `kube-system` namespace.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d"
+	// Note: K8s doesn't have support for obtaining a cluster ID. If this is ever
+	// added, we will recommend collecting the `k8s.cluster.uid` through the
+	// official APIs. In the meantime, we are able to use the `uid` of the
+	// `kube-system` namespace as a proxy for cluster ID. Read on for the
+	// rationale.
+	//
+	// Every object created in a K8s cluster is assigned a distinct UID. The
+	// `kube-system` namespace is used by Kubernetes itself and will exist
+	// for the lifetime of the cluster. Using the `uid` of the `kube-system`
+	// namespace is a reasonable proxy for the K8s ClusterID as it will only
+	// change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are
+	// UUIDs as standardized by
+	// [ISO/IEC 9834-8 and ITU-T X.667].
+	// Which states:
+	//
+	// > If generated according to one of the mechanisms defined in Rec.
+	// > ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be
+	// > different from all other UUIDs generated before 3603 A.D., or is
+	// > extremely likely to be different (depending on the mechanism chosen).
+	//
+	// Therefore, UIDs between clusters should be extremely unlikely to
+	// conflict.
+	//
+	// [ISO/IEC 9834-8 and ITU-T X.667]: https://www.itu.int/ITU-T/studygroups/com17/oid.html
+	K8SClusterUIDKey = attribute.Key("k8s.cluster.uid")
+
+	// K8SContainerNameKey is the attribute Key conforming to the
+	// "k8s.container.name" semantic conventions. It represents the name of the
+	// Container from Pod specification, must be unique within a Pod. Container
+	// runtime usually uses different globally unique name (`container.name`).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "redis"
+	K8SContainerNameKey = attribute.Key("k8s.container.name")
+
+	// K8SContainerRestartCountKey is the attribute Key conforming to the
+	// "k8s.container.restart_count" semantic conventions. It represents the number
+	// of times the container was restarted. This attribute can be used to identify
+	// a particular container (running or stopped) within a container spec.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples:
+	K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count")
+
+	// K8SContainerStatusLastTerminatedReasonKey is the attribute Key conforming to
+	// the "k8s.container.status.last_terminated_reason" semantic conventions. It
+	// represents the last terminated reason of the Container.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Evicted", "Error"
+	K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason")
+
+	// K8SContainerStatusReasonKey is the attribute Key conforming to the
+	// "k8s.container.status.reason" semantic conventions. It represents the reason
+	// for the container state. Corresponds to the `reason` field of the:
+	// [K8s ContainerStateWaiting] or [K8s ContainerStateTerminated].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ContainerCreating", "CrashLoopBackOff",
+	// "CreateContainerConfigError", "ErrImagePull", "ImagePullBackOff",
+	// "OOMKilled", "Completed", "Error", "ContainerCannotRun"
+	//
+	// [K8s ContainerStateWaiting]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstatewaiting-v1-core
+	// [K8s ContainerStateTerminated]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstateterminated-v1-core
+	K8SContainerStatusReasonKey = attribute.Key("k8s.container.status.reason")
+
+	// K8SContainerStatusStateKey is the attribute Key conforming to the
+	// "k8s.container.status.state" semantic conventions. It represents the state of
+	// the container. [K8s ContainerState].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "terminated", "running", "waiting"
+	//
+	// [K8s ContainerState]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#containerstate-v1-core
+	K8SContainerStatusStateKey = attribute.Key("k8s.container.status.state")
+
+	// K8SCronJobNameKey is the attribute Key conforming to the "k8s.cronjob.name"
+	// semantic conventions. It represents the name of the CronJob.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry"
+	K8SCronJobNameKey = attribute.Key("k8s.cronjob.name")
+
+	// K8SCronJobUIDKey is the attribute Key conforming to the "k8s.cronjob.uid"
+	// semantic conventions. It represents the UID of the CronJob.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid")
+
+	// K8SDaemonSetNameKey is the attribute Key conforming to the
+	// "k8s.daemonset.name" semantic conventions. It represents the name of the
+	// DaemonSet.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry"
+	K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name")
+
+	// K8SDaemonSetUIDKey is the attribute Key conforming to the "k8s.daemonset.uid"
+	// semantic conventions. It represents the UID of the DaemonSet.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid")
+
+	// K8SDeploymentNameKey is the attribute Key conforming to the
+	// "k8s.deployment.name" semantic conventions. It represents the name of the
+	// Deployment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry"
+	K8SDeploymentNameKey = attribute.Key("k8s.deployment.name")
+
+	// K8SDeploymentUIDKey is the attribute Key conforming to the
+	// "k8s.deployment.uid" semantic conventions. It represents the UID of the
+	// Deployment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid")
+
+	// K8SHPAMetricTypeKey is the attribute Key conforming to the
+	// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric
+	// source for the horizontal pod autoscaler.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Resource", "ContainerResource"
+	// Note: This attribute reflects the `type` field of spec.metrics[] in the HPA.
+	K8SHPAMetricTypeKey = attribute.Key("k8s.hpa.metric.type")
+
+	// K8SHPANameKey is the attribute Key conforming to the "k8s.hpa.name" semantic
+	// conventions. It represents the name of the horizontal pod autoscaler.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry"
+	K8SHPANameKey = attribute.Key("k8s.hpa.name")
+
+	// K8SHPAScaletargetrefAPIVersionKey is the attribute Key conforming to the
+	// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the
+	// API version of the target resource to scale for the HorizontalPodAutoscaler.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "apps/v1", "autoscaling/v2"
+	// Note: This maps to the `apiVersion` field in the `scaleTargetRef` of the HPA
+	// spec.
+	K8SHPAScaletargetrefAPIVersionKey = attribute.Key("k8s.hpa.scaletargetref.api_version")
+
+	// K8SHPAScaletargetrefKindKey is the attribute Key conforming to the
+	// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of
+	// the target resource to scale for the HorizontalPodAutoscaler.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Deployment", "StatefulSet"
+	// Note: This maps to the `kind` field in the `scaleTargetRef` of the HPA spec.
+	K8SHPAScaletargetrefKindKey = attribute.Key("k8s.hpa.scaletargetref.kind")
+
+	// K8SHPAScaletargetrefNameKey is the attribute Key conforming to the
+	// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of
+	// the target resource to scale for the HorizontalPodAutoscaler.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-deployment", "my-statefulset"
+	// Note: This maps to the `name` field in the `scaleTargetRef` of the HPA spec.
+	K8SHPAScaletargetrefNameKey = attribute.Key("k8s.hpa.scaletargetref.name")
+
+	// K8SHPAUIDKey is the attribute Key conforming to the "k8s.hpa.uid" semantic
+	// conventions. It represents the UID of the horizontal pod autoscaler.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SHPAUIDKey = attribute.Key("k8s.hpa.uid")
+
+	// K8SHugepageSizeKey is the attribute Key conforming to the "k8s.hugepage.size"
+	// semantic conventions. It represents the size (identifier) of the K8s huge
+	// page.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2Mi"
+	K8SHugepageSizeKey = attribute.Key("k8s.hugepage.size")
+
+	// K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" semantic
+	// conventions. It represents the name of the Job.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry"
+	K8SJobNameKey = attribute.Key("k8s.job.name")
+
+	// K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" semantic
+	// conventions. It represents the UID of the Job.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SJobUIDKey = attribute.Key("k8s.job.uid")
+
+	// K8SNamespaceNameKey is the attribute Key conforming to the
+	// "k8s.namespace.name" semantic conventions. It represents the name of the
+	// namespace that the pod is running in.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "default"
+	K8SNamespaceNameKey = attribute.Key("k8s.namespace.name")
+
+	// K8SNamespacePhaseKey is the attribute Key conforming to the
+	// "k8s.namespace.phase" semantic conventions. It represents the phase of the
+	// K8s namespace.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "active", "terminating"
+	// Note: This attribute aligns with the `phase` field of the
+	// [K8s NamespaceStatus]
+	//
+	// [K8s NamespaceStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#namespacestatus-v1-core
+	K8SNamespacePhaseKey = attribute.Key("k8s.namespace.phase")
+
+	// K8SNodeConditionStatusKey is the attribute Key conforming to the
+	// "k8s.node.condition.status" semantic conventions. It represents the status of
+	// the condition, one of True, False, Unknown.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "true", "false", "unknown"
+	// Note: This attribute aligns with the `status` field of the
+	// [NodeCondition]
+	//
+	// [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core
+	K8SNodeConditionStatusKey = attribute.Key("k8s.node.condition.status")
+
+	// K8SNodeConditionTypeKey is the attribute Key conforming to the
+	// "k8s.node.condition.type" semantic conventions. It represents the condition
+	// type of a K8s Node.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Ready", "DiskPressure"
+	// Note: K8s Node conditions as described
+	// by [K8s documentation].
+	//
+	// This attribute aligns with the `type` field of the
+	// [NodeCondition]
+	//
+	// The set of possible values is not limited to those listed here. Managed
+	// Kubernetes environments,
+	// or custom controllers MAY introduce additional node condition types.
+	// When this occurs, the exact value as reported by the Kubernetes API SHOULD be
+	// used.
+	//
+	// [K8s documentation]: https://v1-32.docs.kubernetes.io/docs/reference/node/node-status/#condition
+	// [NodeCondition]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#nodecondition-v1-core
+	K8SNodeConditionTypeKey = attribute.Key("k8s.node.condition.type")
+
+	// K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name"
+	// semantic conventions. It represents the name of the Node.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "node-1"
+	K8SNodeNameKey = attribute.Key("k8s.node.name")
+
+	// K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" semantic
+	// conventions. It represents the UID of the Node.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2"
+	K8SNodeUIDKey = attribute.Key("k8s.node.uid")
+
+	// K8SPodHostnameKey is the attribute Key conforming to the "k8s.pod.hostname"
+	// semantic conventions. It represents the specifies the hostname of the Pod.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "collector-gateway"
+	// Note: The K8s Pod spec has an optional hostname field, which can be used to
+	// specify a hostname.
+	// Refer to [K8s docs]
+	// for more information about this field.
+	//
+	// This attribute aligns with the `hostname` field of the
+	// [K8s PodSpec].
+	//
+	// [K8s docs]: https://kubernetes.io/docs/concepts/services-networking/dns-pod-service/#pod-hostname-and-subdomain-field
+	// [K8s PodSpec]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podspec-v1-core
+	K8SPodHostnameKey = attribute.Key("k8s.pod.hostname")
+
+	// K8SPodIPKey is the attribute Key conforming to the "k8s.pod.ip" semantic
+	// conventions. It represents the IP address allocated to the Pod.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "172.18.0.2"
+	// Note: This attribute aligns with the `podIP` field of the
+	// [K8s PodStatus].
+	//
+	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core
+	K8SPodIPKey = attribute.Key("k8s.pod.ip")
+
+	// K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" semantic
+	// conventions. It represents the name of the Pod.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry-pod-autoconf"
+	K8SPodNameKey = attribute.Key("k8s.pod.name")
+
+	// K8SPodStartTimeKey is the attribute Key conforming to the
+	// "k8s.pod.start_time" semantic conventions. It represents the start timestamp
+	// of the Pod.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "2025-12-04T08:41:03Z"
+	// Note: Date and time at which the object was acknowledged by the Kubelet.
+	// This is before the Kubelet pulled the container image(s) for the pod.
+	//
+	// This attribute aligns with the `startTime` field of the
+	// [K8s PodStatus],
+	// in ISO 8601 (RFC 3339 compatible) format.
+	//
+	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.34/#podstatus-v1-core
+	K8SPodStartTimeKey = attribute.Key("k8s.pod.start_time")
+
+	// K8SPodStatusPhaseKey is the attribute Key conforming to the
+	// "k8s.pod.status.phase" semantic conventions. It represents the phase for the
+	// pod. Corresponds to the `phase` field of the: [K8s PodStatus].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Pending", "Running"
+	//
+	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core
+	K8SPodStatusPhaseKey = attribute.Key("k8s.pod.status.phase")
+
+	// K8SPodStatusReasonKey is the attribute Key conforming to the
+	// "k8s.pod.status.reason" semantic conventions. It represents the reason for
+	// the pod state. Corresponds to the `reason` field of the: [K8s PodStatus].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Evicted", "NodeAffinity"
+	//
+	// [K8s PodStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.33/#podstatus-v1-core
+	K8SPodStatusReasonKey = attribute.Key("k8s.pod.status.reason")
+
+	// K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" semantic
+	// conventions. It represents the UID of the Pod.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SPodUIDKey = attribute.Key("k8s.pod.uid")
+
+	// K8SReplicaSetNameKey is the attribute Key conforming to the
+	// "k8s.replicaset.name" semantic conventions. It represents the name of the
+	// ReplicaSet.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry"
+	K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name")
+
+	// K8SReplicaSetUIDKey is the attribute Key conforming to the
+	// "k8s.replicaset.uid" semantic conventions. It represents the UID of the
+	// ReplicaSet.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid")
+
+	// K8SReplicationControllerNameKey is the attribute Key conforming to the
+	// "k8s.replicationcontroller.name" semantic conventions. It represents the name
+	// of the replication controller.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry"
+	K8SReplicationControllerNameKey = attribute.Key("k8s.replicationcontroller.name")
+
+	// K8SReplicationControllerUIDKey is the attribute Key conforming to the
+	// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID
+	// of the replication controller.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SReplicationControllerUIDKey = attribute.Key("k8s.replicationcontroller.uid")
+
+	// K8SResourceQuotaNameKey is the attribute Key conforming to the
+	// "k8s.resourcequota.name" semantic conventions. It represents the name of the
+	// resource quota.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry"
+	K8SResourceQuotaNameKey = attribute.Key("k8s.resourcequota.name")
+
+	// K8SResourceQuotaResourceNameKey is the attribute Key conforming to the
+	// "k8s.resourcequota.resource_name" semantic conventions. It represents the
+	// name of the K8s resource a resource quota defines.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "count/replicationcontrollers"
+	// Note: The value for this attribute can be either the full
+	// `count/<resource>[.<group>]` string (e.g., count/deployments.apps,
+	// count/pods), or, for certain core Kubernetes resources, just the resource
+	// name (e.g., pods, services, configmaps). Both forms are supported by
+	// Kubernetes for object count quotas. See
+	// [Kubernetes Resource Quotas documentation] for more details.
+	//
+	// [Kubernetes Resource Quotas documentation]: https://kubernetes.io/docs/concepts/policy/resource-quotas/#quota-on-object-count
+	K8SResourceQuotaResourceNameKey = attribute.Key("k8s.resourcequota.resource_name")
+
+	// K8SResourceQuotaUIDKey is the attribute Key conforming to the
+	// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the
+	// resource quota.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SResourceQuotaUIDKey = attribute.Key("k8s.resourcequota.uid")
+
+	// K8SServiceEndpointAddressTypeKey is the attribute Key conforming to the
+	// "k8s.service.endpoint.address_type" semantic conventions. It represents the
+	// address type of the service endpoint.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "IPv4", "IPv6"
+	// Note: The network address family or type of the endpoint.
+	// This attribute aligns with the `addressType` field of the
+	// [K8s EndpointSlice].
+	// It is used to differentiate metrics when a Service is backed by multiple
+	// address types
+	// (e.g., in dual-stack clusters).
+	//
+	// [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/
+	K8SServiceEndpointAddressTypeKey = attribute.Key("k8s.service.endpoint.address_type")
+
+	// K8SServiceEndpointConditionKey is the attribute Key conforming to the
+	// "k8s.service.endpoint.condition" semantic conventions. It represents the
+	// condition of the service endpoint.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ready", "serving", "terminating"
+	// Note: The current operational condition of the service endpoint.
+	// An endpoint can have multiple conditions set at once (e.g., both `serving`
+	// and `terminating` during rollout).
+	// This attribute aligns with the condition fields in the [K8s EndpointSlice].
+	//
+	// [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/
+	K8SServiceEndpointConditionKey = attribute.Key("k8s.service.endpoint.condition")
+
+	// K8SServiceEndpointZoneKey is the attribute Key conforming to the
+	// "k8s.service.endpoint.zone" semantic conventions. It represents the zone of
+	// the service endpoint.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "us-east-1a", "us-west-2b", "zone-a", ""
+	// Note: The zone where the endpoint is located, typically corresponding to a
+	// failure domain.
+	// This attribute aligns with the `zone` field of endpoints in the
+	// [K8s EndpointSlice].
+	// It enables zone-aware monitoring of service endpoint distribution and
+	// supports
+	// features like [Topology Aware Routing].
+	//
+	// If the zone is not populated (e.g., nodes without the
+	// `topology.kubernetes.io/zone` label),
+	// the attribute value will be an empty string.
+	//
+	// [K8s EndpointSlice]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/endpoint-slice-v1/
+	// [Topology Aware Routing]: https://kubernetes.io/docs/concepts/services-networking/topology-aware-routing/
+	K8SServiceEndpointZoneKey = attribute.Key("k8s.service.endpoint.zone")
+
+	// K8SServiceNameKey is the attribute Key conforming to the "k8s.service.name"
+	// semantic conventions. It represents the name of the Service.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-service"
+	K8SServiceNameKey = attribute.Key("k8s.service.name")
+
+	// K8SServicePublishNotReadyAddressesKey is the attribute Key conforming to the
+	// "k8s.service.publish_not_ready_addresses" semantic conventions. It represents
+	// the whether the Service publishes not-ready endpoints.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: true, false
+	// Note: Whether the Service is configured to publish endpoints before the pods
+	// are ready.
+	// This attribute is typically used to indicate that a Service (such as a
+	// headless
+	// Service for a StatefulSet) allows peer discovery before pods pass their
+	// readiness probes.
+	// It aligns with the `publishNotReadyAddresses` field of the
+	// [K8s ServiceSpec].
+	//
+	// [K8s ServiceSpec]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/service-v1/#ServiceSpec
+	K8SServicePublishNotReadyAddressesKey = attribute.Key("k8s.service.publish_not_ready_addresses")
+
+	// K8SServiceTrafficDistributionKey is the attribute Key conforming to the
+	// "k8s.service.traffic_distribution" semantic conventions. It represents the
+	// traffic distribution policy for the Service.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "PreferSameZone", "PreferSameNode"
+	// Note: Specifies how traffic is distributed to endpoints for this Service.
+	// This attribute aligns with the `trafficDistribution` field of the
+	// [K8s ServiceSpec].
+	// Known values include `PreferSameZone` (prefer endpoints in the same zone as
+	// the client) and
+	// `PreferSameNode` (prefer endpoints on the same node, fallback to same zone,
+	// then cluster-wide).
+	// If this field is not set on the Service, the attribute SHOULD NOT be emitted.
+	// When not set, Kubernetes distributes traffic evenly across all endpoints
+	// cluster-wide.
+	//
+	// [K8s ServiceSpec]: https://kubernetes.io/docs/reference/networking/virtual-ips/#traffic-distribution
+	K8SServiceTrafficDistributionKey = attribute.Key("k8s.service.traffic_distribution")
+
+	// K8SServiceTypeKey is the attribute Key conforming to the "k8s.service.type"
+	// semantic conventions. It represents the type of the Kubernetes Service.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ClusterIP", "NodePort", "LoadBalancer"
+	// Note: This attribute aligns with the `type` field of the
+	// [K8s ServiceSpec].
+	//
+	// [K8s ServiceSpec]: https://kubernetes.io/docs/reference/kubernetes-api/service-resources/service-v1/#ServiceSpec
+	K8SServiceTypeKey = attribute.Key("k8s.service.type")
+
+	// K8SServiceUIDKey is the attribute Key conforming to the "k8s.service.uid"
+	// semantic conventions. It represents the UID of the Service.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SServiceUIDKey = attribute.Key("k8s.service.uid")
+
+	// K8SStatefulSetNameKey is the attribute Key conforming to the
+	// "k8s.statefulset.name" semantic conventions. It represents the name of the
+	// StatefulSet.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "opentelemetry"
+	K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name")
+
+	// K8SStatefulSetUIDKey is the attribute Key conforming to the
+	// "k8s.statefulset.uid" semantic conventions. It represents the UID of the
+	// StatefulSet.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Beta
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid")
+
+	// K8SStorageclassNameKey is the attribute Key conforming to the
+	// "k8s.storageclass.name" semantic conventions. It represents the name of K8s
+	// [StorageClass] object.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "gold.storageclass.storage.k8s.io"
+	//
+	// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io
+	K8SStorageclassNameKey = attribute.Key("k8s.storageclass.name")
+
+	// K8SVolumeNameKey is the attribute Key conforming to the "k8s.volume.name"
+	// semantic conventions. It represents the name of the K8s volume.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "volume0"
+	K8SVolumeNameKey = attribute.Key("k8s.volume.name")
+
+	// K8SVolumeTypeKey is the attribute Key conforming to the "k8s.volume.type"
+	// semantic conventions. It represents the type of the K8s volume.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "emptyDir", "persistentVolumeClaim"
+	K8SVolumeTypeKey = attribute.Key("k8s.volume.type")
+)
+
+// K8SClusterName returns an attribute KeyValue conforming to the
+// "k8s.cluster.name" semantic conventions. It represents the name of the
+// cluster.
+func K8SClusterName(val string) attribute.KeyValue {
+	return K8SClusterNameKey.String(val)
+}
+
+// K8SClusterUID returns an attribute KeyValue conforming to the
+// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the
+// cluster, set to the UID of the `kube-system` namespace.
+func K8SClusterUID(val string) attribute.KeyValue {
+	return K8SClusterUIDKey.String(val)
+}
+
+// K8SContainerName returns an attribute KeyValue conforming to the
+// "k8s.container.name" semantic conventions. It represents the name of the
+// Container from Pod specification, must be unique within a Pod. Container
+// runtime usually uses different globally unique name (`container.name`).
+func K8SContainerName(val string) attribute.KeyValue {
+	return K8SContainerNameKey.String(val)
+}
+
+// K8SContainerRestartCount returns an attribute KeyValue conforming to the
+// "k8s.container.restart_count" semantic conventions. It represents the number
+// of times the container was restarted. This attribute can be used to identify a
+// particular container (running or stopped) within a container spec.
+func K8SContainerRestartCount(val int) attribute.KeyValue {
+	return K8SContainerRestartCountKey.Int(val)
+}
+
+// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue
+// conforming to the "k8s.container.status.last_terminated_reason" semantic
+// conventions. It represents the last terminated reason of the Container.
+func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue {
+	return K8SContainerStatusLastTerminatedReasonKey.String(val)
+}
+
+// K8SCronJobAnnotation returns an attribute KeyValue conforming to the
+// "k8s.cronjob.annotation" semantic conventions. It represents the cronjob
+// annotation placed on the CronJob, the `<key>` being the annotation name, the
+// value being the annotation value.
+func K8SCronJobAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.cronjob.annotation."+key, val)
+}
+
+// K8SCronJobLabel returns an attribute KeyValue conforming to the
+// "k8s.cronjob.label" semantic conventions. It represents the label placed on
+// the CronJob, the `<key>` being the label name, the value being the label
+// value.
+func K8SCronJobLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.cronjob.label."+key, val)
+}
+
+// K8SCronJobName returns an attribute KeyValue conforming to the
+// "k8s.cronjob.name" semantic conventions. It represents the name of the
+// CronJob.
+func K8SCronJobName(val string) attribute.KeyValue {
+	return K8SCronJobNameKey.String(val)
+}
+
+// K8SCronJobUID returns an attribute KeyValue conforming to the
+// "k8s.cronjob.uid" semantic conventions. It represents the UID of the CronJob.
+func K8SCronJobUID(val string) attribute.KeyValue {
+	return K8SCronJobUIDKey.String(val)
+}
+
+// K8SDaemonSetAnnotation returns an attribute KeyValue conforming to the
+// "k8s.daemonset.annotation" semantic conventions. It represents the annotation
+// placed on the DaemonSet, the `<key>` being the annotation name, the value
+// being the annotation value, even if the value is empty.
+func K8SDaemonSetAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.daemonset.annotation."+key, val)
+}
+
+// K8SDaemonSetLabel returns an attribute KeyValue conforming to the
+// "k8s.daemonset.label" semantic conventions. It represents the label placed on
+// the DaemonSet, the `<key>` being the label name, the value being the label
+// value, even if the value is empty.
+func K8SDaemonSetLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.daemonset.label."+key, val)
+}
+
+// K8SDaemonSetName returns an attribute KeyValue conforming to the
+// "k8s.daemonset.name" semantic conventions. It represents the name of the
+// DaemonSet.
+func K8SDaemonSetName(val string) attribute.KeyValue {
+	return K8SDaemonSetNameKey.String(val)
+}
+
+// K8SDaemonSetUID returns an attribute KeyValue conforming to the
+// "k8s.daemonset.uid" semantic conventions. It represents the UID of the
+// DaemonSet.
+func K8SDaemonSetUID(val string) attribute.KeyValue {
+	return K8SDaemonSetUIDKey.String(val)
+}
+
+// K8SDeploymentAnnotation returns an attribute KeyValue conforming to the
+// "k8s.deployment.annotation" semantic conventions. It represents the annotation
+// placed on the Deployment, the `<key>` being the annotation name, the value
+// being the annotation value, even if the value is empty.
+func K8SDeploymentAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.deployment.annotation."+key, val)
+}
+
+// K8SDeploymentLabel returns an attribute KeyValue conforming to the
+// "k8s.deployment.label" semantic conventions. It represents the label placed on
+// the Deployment, the `<key>` being the label name, the value being the label
+// value, even if the value is empty.
+func K8SDeploymentLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.deployment.label."+key, val)
+}
+
+// K8SDeploymentName returns an attribute KeyValue conforming to the
+// "k8s.deployment.name" semantic conventions. It represents the name of the
+// Deployment.
+func K8SDeploymentName(val string) attribute.KeyValue {
+	return K8SDeploymentNameKey.String(val)
+}
+
+// K8SDeploymentUID returns an attribute KeyValue conforming to the
+// "k8s.deployment.uid" semantic conventions. It represents the UID of the
+// Deployment.
+func K8SDeploymentUID(val string) attribute.KeyValue {
+	return K8SDeploymentUIDKey.String(val)
+}
+
+// K8SHPAMetricType returns an attribute KeyValue conforming to the
+// "k8s.hpa.metric.type" semantic conventions. It represents the type of metric
+// source for the horizontal pod autoscaler.
+func K8SHPAMetricType(val string) attribute.KeyValue {
+	return K8SHPAMetricTypeKey.String(val)
+}
+
+// K8SHPAName returns an attribute KeyValue conforming to the "k8s.hpa.name"
+// semantic conventions. It represents the name of the horizontal pod autoscaler.
+func K8SHPAName(val string) attribute.KeyValue {
+	return K8SHPANameKey.String(val)
+}
+
+// K8SHPAScaletargetrefAPIVersion returns an attribute KeyValue conforming to the
+// "k8s.hpa.scaletargetref.api_version" semantic conventions. It represents the
+// API version of the target resource to scale for the HorizontalPodAutoscaler.
+func K8SHPAScaletargetrefAPIVersion(val string) attribute.KeyValue {
+	return K8SHPAScaletargetrefAPIVersionKey.String(val)
+}
+
+// K8SHPAScaletargetrefKind returns an attribute KeyValue conforming to the
+// "k8s.hpa.scaletargetref.kind" semantic conventions. It represents the kind of
+// the target resource to scale for the HorizontalPodAutoscaler.
+func K8SHPAScaletargetrefKind(val string) attribute.KeyValue {
+	return K8SHPAScaletargetrefKindKey.String(val)
+}
+
+// K8SHPAScaletargetrefName returns an attribute KeyValue conforming to the
+// "k8s.hpa.scaletargetref.name" semantic conventions. It represents the name of
+// the target resource to scale for the HorizontalPodAutoscaler.
+func K8SHPAScaletargetrefName(val string) attribute.KeyValue {
+	return K8SHPAScaletargetrefNameKey.String(val)
+}
+
+// K8SHPAUID returns an attribute KeyValue conforming to the "k8s.hpa.uid"
+// semantic conventions. It represents the UID of the horizontal pod autoscaler.
+func K8SHPAUID(val string) attribute.KeyValue {
+	return K8SHPAUIDKey.String(val)
+}
+
+// K8SHugepageSize returns an attribute KeyValue conforming to the
+// "k8s.hugepage.size" semantic conventions. It represents the size (identifier)
+// of the K8s huge page.
+func K8SHugepageSize(val string) attribute.KeyValue {
+	return K8SHugepageSizeKey.String(val)
+}
+
+// K8SJobAnnotation returns an attribute KeyValue conforming to the
+// "k8s.job.annotation" semantic conventions. It represents the annotation placed
+// on the Job, the `<key>` being the annotation name, the value being the
+// annotation value, even if the value is empty.
+func K8SJobAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.job.annotation."+key, val)
+}
+
+// K8SJobLabel returns an attribute KeyValue conforming to the "k8s.job.label"
+// semantic conventions. It represents the label placed on the Job, the `<key>`
+// being the label name, the value being the label value, even if the value is
+// empty.
+func K8SJobLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.job.label."+key, val)
+}
+
+// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name"
+// semantic conventions. It represents the name of the Job.
+func K8SJobName(val string) attribute.KeyValue {
+	return K8SJobNameKey.String(val)
+}
+
+// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid"
+// semantic conventions. It represents the UID of the Job.
+func K8SJobUID(val string) attribute.KeyValue {
+	return K8SJobUIDKey.String(val)
+}
+
+// K8SNamespaceAnnotation returns an attribute KeyValue conforming to the
+// "k8s.namespace.annotation" semantic conventions. It represents the annotation
+// placed on the Namespace, the `<key>` being the annotation name, the value
+// being the annotation value, even if the value is empty.
+func K8SNamespaceAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.namespace.annotation."+key, val)
+}
+
+// K8SNamespaceLabel returns an attribute KeyValue conforming to the
+// "k8s.namespace.label" semantic conventions. It represents the label placed on
+// the Namespace, the `<key>` being the label name, the value being the label
+// value, even if the value is empty.
+func K8SNamespaceLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.namespace.label."+key, val)
+}
+
+// K8SNamespaceName returns an attribute KeyValue conforming to the
+// "k8s.namespace.name" semantic conventions. It represents the name of the
+// namespace that the pod is running in.
+func K8SNamespaceName(val string) attribute.KeyValue {
+	return K8SNamespaceNameKey.String(val)
+}
+
+// K8SNodeAnnotation returns an attribute KeyValue conforming to the
+// "k8s.node.annotation" semantic conventions. It represents the annotation
+// placed on the Node, the `<key>` being the annotation name, the value being the
+// annotation value, even if the value is empty.
+func K8SNodeAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.node.annotation."+key, val)
+}
+
+// K8SNodeLabel returns an attribute KeyValue conforming to the "k8s.node.label"
+// semantic conventions. It represents the label placed on the Node, the `<key>`
+// being the label name, the value being the label value, even if the value is
+// empty.
+func K8SNodeLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.node.label."+key, val)
+}
+
+// K8SNodeName returns an attribute KeyValue conforming to the "k8s.node.name"
+// semantic conventions. It represents the name of the Node.
+func K8SNodeName(val string) attribute.KeyValue {
+	return K8SNodeNameKey.String(val)
+}
+
+// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid"
+// semantic conventions. It represents the UID of the Node.
+func K8SNodeUID(val string) attribute.KeyValue {
+	return K8SNodeUIDKey.String(val)
+}
+
+// K8SPodAnnotation returns an attribute KeyValue conforming to the
+// "k8s.pod.annotation" semantic conventions. It represents the annotation placed
+// on the Pod, the `<key>` being the annotation name, the value being the
+// annotation value.
+func K8SPodAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.pod.annotation."+key, val)
+}
+
+// K8SPodHostname returns an attribute KeyValue conforming to the
+// "k8s.pod.hostname" semantic conventions. It represents the specifies the
+// hostname of the Pod.
+func K8SPodHostname(val string) attribute.KeyValue {
+	return K8SPodHostnameKey.String(val)
+}
+
+// K8SPodIP returns an attribute KeyValue conforming to the "k8s.pod.ip" semantic
+// conventions. It represents the IP address allocated to the Pod.
+func K8SPodIP(val string) attribute.KeyValue {
+	return K8SPodIPKey.String(val)
+}
+
+// K8SPodLabel returns an attribute KeyValue conforming to the "k8s.pod.label"
+// semantic conventions. It represents the label placed on the Pod, the `<key>`
+// being the label name, the value being the label value.
+func K8SPodLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.pod.label."+key, val)
+}
+
+// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name"
+// semantic conventions. It represents the name of the Pod.
+func K8SPodName(val string) attribute.KeyValue {
+	return K8SPodNameKey.String(val)
+}
+
+// K8SPodStartTime returns an attribute KeyValue conforming to the
+// "k8s.pod.start_time" semantic conventions. It represents the start timestamp
+// of the Pod.
+func K8SPodStartTime(val string) attribute.KeyValue {
+	return K8SPodStartTimeKey.String(val)
+}
+
+// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid"
+// semantic conventions. It represents the UID of the Pod.
+func K8SPodUID(val string) attribute.KeyValue {
+	return K8SPodUIDKey.String(val)
+}
+
+// K8SReplicaSetAnnotation returns an attribute KeyValue conforming to the
+// "k8s.replicaset.annotation" semantic conventions. It represents the annotation
+// placed on the ReplicaSet, the `<key>` being the annotation name, the value
+// being the annotation value, even if the value is empty.
+func K8SReplicaSetAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.replicaset.annotation."+key, val)
+}
+
+// K8SReplicaSetLabel returns an attribute KeyValue conforming to the
+// "k8s.replicaset.label" semantic conventions. It represents the label placed on
+// the ReplicaSet, the `<key>` being the label name, the value being the label
+// value, even if the value is empty.
+func K8SReplicaSetLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.replicaset.label."+key, val)
+}
+
+// K8SReplicaSetName returns an attribute KeyValue conforming to the
+// "k8s.replicaset.name" semantic conventions. It represents the name of the
+// ReplicaSet.
+func K8SReplicaSetName(val string) attribute.KeyValue {
+	return K8SReplicaSetNameKey.String(val)
+}
+
+// K8SReplicaSetUID returns an attribute KeyValue conforming to the
+// "k8s.replicaset.uid" semantic conventions. It represents the UID of the
+// ReplicaSet.
+func K8SReplicaSetUID(val string) attribute.KeyValue {
+	return K8SReplicaSetUIDKey.String(val)
+}
+
+// K8SReplicationControllerName returns an attribute KeyValue conforming to the
+// "k8s.replicationcontroller.name" semantic conventions. It represents the name
+// of the replication controller.
+func K8SReplicationControllerName(val string) attribute.KeyValue {
+	return K8SReplicationControllerNameKey.String(val)
+}
+
+// K8SReplicationControllerUID returns an attribute KeyValue conforming to the
+// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID of
+// the replication controller.
+func K8SReplicationControllerUID(val string) attribute.KeyValue {
+	return K8SReplicationControllerUIDKey.String(val)
+}
+
+// K8SResourceQuotaName returns an attribute KeyValue conforming to the
+// "k8s.resourcequota.name" semantic conventions. It represents the name of the
+// resource quota.
+func K8SResourceQuotaName(val string) attribute.KeyValue {
+	return K8SResourceQuotaNameKey.String(val)
+}
+
+// K8SResourceQuotaResourceName returns an attribute KeyValue conforming to the
+// "k8s.resourcequota.resource_name" semantic conventions. It represents the name
+// of the K8s resource a resource quota defines.
+func K8SResourceQuotaResourceName(val string) attribute.KeyValue {
+	return K8SResourceQuotaResourceNameKey.String(val)
+}
+
+// K8SResourceQuotaUID returns an attribute KeyValue conforming to the
+// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the
+// resource quota.
+func K8SResourceQuotaUID(val string) attribute.KeyValue {
+	return K8SResourceQuotaUIDKey.String(val)
+}
+
+// K8SServiceAnnotation returns an attribute KeyValue conforming to the
+// "k8s.service.annotation" semantic conventions. It represents the annotation
+// placed on the Service, the `<key>` being the annotation name, the value being
+// the annotation value, even if the value is empty.
+func K8SServiceAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.service.annotation."+key, val)
+}
+
+// K8SServiceEndpointZone returns an attribute KeyValue conforming to the
+// "k8s.service.endpoint.zone" semantic conventions. It represents the zone of
+// the service endpoint.
+func K8SServiceEndpointZone(val string) attribute.KeyValue {
+	return K8SServiceEndpointZoneKey.String(val)
+}
+
+// K8SServiceLabel returns an attribute KeyValue conforming to the
+// "k8s.service.label" semantic conventions. It represents the label placed on
+// the Service, the `<key>` being the label name, the value being the label
+// value, even if the value is empty.
+func K8SServiceLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.service.label."+key, val)
+}
+
+// K8SServiceName returns an attribute KeyValue conforming to the
+// "k8s.service.name" semantic conventions. It represents the name of the
+// Service.
+func K8SServiceName(val string) attribute.KeyValue {
+	return K8SServiceNameKey.String(val)
+}
+
+// K8SServicePublishNotReadyAddresses returns an attribute KeyValue conforming to
+// the "k8s.service.publish_not_ready_addresses" semantic conventions. It
+// represents the whether the Service publishes not-ready endpoints.
+func K8SServicePublishNotReadyAddresses(val bool) attribute.KeyValue {
+	return K8SServicePublishNotReadyAddressesKey.Bool(val)
+}
+
+// K8SServiceSelector returns an attribute KeyValue conforming to the
+// "k8s.service.selector" semantic conventions. It represents the selector
+// key-value pair placed on the Service, the `<key>` being the selector key, the
+// value being the selector value.
+func K8SServiceSelector(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.service.selector."+key, val)
+}
+
+// K8SServiceTrafficDistribution returns an attribute KeyValue conforming to the
+// "k8s.service.traffic_distribution" semantic conventions. It represents the
+// traffic distribution policy for the Service.
+func K8SServiceTrafficDistribution(val string) attribute.KeyValue {
+	return K8SServiceTrafficDistributionKey.String(val)
+}
+
+// K8SServiceUID returns an attribute KeyValue conforming to the
+// "k8s.service.uid" semantic conventions. It represents the UID of the Service.
+func K8SServiceUID(val string) attribute.KeyValue {
+	return K8SServiceUIDKey.String(val)
+}
+
+// K8SStatefulSetAnnotation returns an attribute KeyValue conforming to the
+// "k8s.statefulset.annotation" semantic conventions. It represents the
+// annotation placed on the StatefulSet, the `<key>` being the annotation name,
+// the value being the annotation value, even if the value is empty.
+func K8SStatefulSetAnnotation(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.statefulset.annotation."+key, val)
+}
+
+// K8SStatefulSetLabel returns an attribute KeyValue conforming to the
+// "k8s.statefulset.label" semantic conventions. It represents the label placed
+// on the StatefulSet, the `<key>` being the label name, the value being the
+// label value, even if the value is empty.
+func K8SStatefulSetLabel(key string, val string) attribute.KeyValue {
+	return attribute.String("k8s.statefulset.label."+key, val)
+}
+
+// K8SStatefulSetName returns an attribute KeyValue conforming to the
+// "k8s.statefulset.name" semantic conventions. It represents the name of the
+// StatefulSet.
+func K8SStatefulSetName(val string) attribute.KeyValue {
+	return K8SStatefulSetNameKey.String(val)
+}
+
+// K8SStatefulSetUID returns an attribute KeyValue conforming to the
+// "k8s.statefulset.uid" semantic conventions. It represents the UID of the
+// StatefulSet.
+func K8SStatefulSetUID(val string) attribute.KeyValue {
+	return K8SStatefulSetUIDKey.String(val)
+}
+
+// K8SStorageclassName returns an attribute KeyValue conforming to the
+// "k8s.storageclass.name" semantic conventions. It represents the name of K8s
+// [StorageClass] object.
+//
+// [StorageClass]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#storageclass-v1-storage-k8s-io
+func K8SStorageclassName(val string) attribute.KeyValue {
+	return K8SStorageclassNameKey.String(val)
+}
+
+// K8SVolumeName returns an attribute KeyValue conforming to the
+// "k8s.volume.name" semantic conventions. It represents the name of the K8s
+// volume.
+func K8SVolumeName(val string) attribute.KeyValue {
+	return K8SVolumeNameKey.String(val)
+}
+
+// Enum values for k8s.container.status.reason
+var (
+	// The container is being created.
+	// Stability: development
+	K8SContainerStatusReasonContainerCreating = K8SContainerStatusReasonKey.String("ContainerCreating")
+	// The container is in a crash loop back off state.
+	// Stability: development
+	K8SContainerStatusReasonCrashLoopBackOff = K8SContainerStatusReasonKey.String("CrashLoopBackOff")
+	// There was an error creating the container configuration.
+	// Stability: development
+	K8SContainerStatusReasonCreateContainerConfigError = K8SContainerStatusReasonKey.String("CreateContainerConfigError")
+	// There was an error pulling the container image.
+	// Stability: development
+	K8SContainerStatusReasonErrImagePull = K8SContainerStatusReasonKey.String("ErrImagePull")
+	// The container image pull is in back off state.
+	// Stability: development
+	K8SContainerStatusReasonImagePullBackOff = K8SContainerStatusReasonKey.String("ImagePullBackOff")
+	// The container was killed due to out of memory.
+	// Stability: development
+	K8SContainerStatusReasonOomKilled = K8SContainerStatusReasonKey.String("OOMKilled")
+	// The container has completed execution.
+	// Stability: development
+	K8SContainerStatusReasonCompleted = K8SContainerStatusReasonKey.String("Completed")
+	// There was an error with the container.
+	// Stability: development
+	K8SContainerStatusReasonError = K8SContainerStatusReasonKey.String("Error")
+	// The container cannot run.
+	// Stability: development
+	K8SContainerStatusReasonContainerCannotRun = K8SContainerStatusReasonKey.String("ContainerCannotRun")
+)
+
+// Enum values for k8s.container.status.state
+var (
+	// The container has terminated.
+	// Stability: development
+	K8SContainerStatusStateTerminated = K8SContainerStatusStateKey.String("terminated")
+	// The container is running.
+	// Stability: development
+	K8SContainerStatusStateRunning = K8SContainerStatusStateKey.String("running")
+	// The container is waiting.
+	// Stability: development
+	K8SContainerStatusStateWaiting = K8SContainerStatusStateKey.String("waiting")
+)
+
+// Enum values for k8s.namespace.phase
+var (
+	// Active namespace phase as described by [K8s API]
+	// Stability: development
+	//
+	// [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase
+	K8SNamespacePhaseActive = K8SNamespacePhaseKey.String("active")
+	// Terminating namespace phase as described by [K8s API]
+	// Stability: development
+	//
+	// [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase
+	K8SNamespacePhaseTerminating = K8SNamespacePhaseKey.String("terminating")
+)
+
+// Enum values for k8s.node.condition.status
+var (
+	// condition_true
+	// Stability: development
+	K8SNodeConditionStatusConditionTrue = K8SNodeConditionStatusKey.String("true")
+	// condition_false
+	// Stability: development
+	K8SNodeConditionStatusConditionFalse = K8SNodeConditionStatusKey.String("false")
+	// condition_unknown
+	// Stability: development
+	K8SNodeConditionStatusConditionUnknown = K8SNodeConditionStatusKey.String("unknown")
+)
+
+// Enum values for k8s.node.condition.type
+var (
+	// The node is healthy and ready to accept pods
+	// Stability: development
+	K8SNodeConditionTypeReady = K8SNodeConditionTypeKey.String("Ready")
+	// Pressure exists on the disk size—that is, if the disk capacity is low
+	// Stability: development
+	K8SNodeConditionTypeDiskPressure = K8SNodeConditionTypeKey.String("DiskPressure")
+	// Pressure exists on the node memory—that is, if the node memory is low
+	// Stability: development
+	K8SNodeConditionTypeMemoryPressure = K8SNodeConditionTypeKey.String("MemoryPressure")
+	// Pressure exists on the processes—that is, if there are too many processes
+	// on the node
+	// Stability: development
+	K8SNodeConditionTypePIDPressure = K8SNodeConditionTypeKey.String("PIDPressure")
+	// The network for the node is not correctly configured
+	// Stability: development
+	K8SNodeConditionTypeNetworkUnavailable = K8SNodeConditionTypeKey.String("NetworkUnavailable")
+)
+
+// Enum values for k8s.pod.status.phase
+var (
+	// The pod has been accepted by the system, but one or more of the containers
+	// has not been started. This includes time before being bound to a node, as
+	// well as time spent pulling images onto the host.
+	//
+	// Stability: development
+	K8SPodStatusPhasePending = K8SPodStatusPhaseKey.String("Pending")
+	// The pod has been bound to a node and all of the containers have been started.
+	// At least one container is still running or is in the process of being
+	// restarted.
+	//
+	// Stability: development
+	K8SPodStatusPhaseRunning = K8SPodStatusPhaseKey.String("Running")
+	// All containers in the pod have voluntarily terminated with a container exit
+	// code of 0, and the system is not going to restart any of these containers.
+	//
+	// Stability: development
+	K8SPodStatusPhaseSucceeded = K8SPodStatusPhaseKey.String("Succeeded")
+	// All containers in the pod have terminated, and at least one container has
+	// terminated in a failure (exited with a non-zero exit code or was stopped by
+	// the system).
+	//
+	// Stability: development
+	K8SPodStatusPhaseFailed = K8SPodStatusPhaseKey.String("Failed")
+	// For some reason the state of the pod could not be obtained, typically due to
+	// an error in communicating with the host of the pod.
+	//
+	// Stability: development
+	K8SPodStatusPhaseUnknown = K8SPodStatusPhaseKey.String("Unknown")
+)
+
+// Enum values for k8s.pod.status.reason
+var (
+	// The pod is evicted.
+	// Stability: development
+	K8SPodStatusReasonEvicted = K8SPodStatusReasonKey.String("Evicted")
+	// The pod is in a status because of its node affinity
+	// Stability: development
+	K8SPodStatusReasonNodeAffinity = K8SPodStatusReasonKey.String("NodeAffinity")
+	// The reason on a pod when its state cannot be confirmed as kubelet is
+	// unresponsive on the node it is (was) running.
+	//
+	// Stability: development
+	K8SPodStatusReasonNodeLost = K8SPodStatusReasonKey.String("NodeLost")
+	// The node is shutdown
+	// Stability: development
+	K8SPodStatusReasonShutdown = K8SPodStatusReasonKey.String("Shutdown")
+	// The pod was rejected admission to the node because of an error during
+	// admission that could not be categorized.
+	//
+	// Stability: development
+	K8SPodStatusReasonUnexpectedAdmissionError = K8SPodStatusReasonKey.String("UnexpectedAdmissionError")
+)
+
+// Enum values for k8s.service.endpoint.address_type
+var (
+	// IPv4 address type
+	// Stability: development
+	K8SServiceEndpointAddressTypeIPv4 = K8SServiceEndpointAddressTypeKey.String("IPv4")
+	// IPv6 address type
+	// Stability: development
+	K8SServiceEndpointAddressTypeIPv6 = K8SServiceEndpointAddressTypeKey.String("IPv6")
+	// FQDN address type
+	// Stability: development
+	K8SServiceEndpointAddressTypeFqdn = K8SServiceEndpointAddressTypeKey.String("FQDN")
+)
+
+// Enum values for k8s.service.endpoint.condition
+var (
+	// The endpoint is ready to receive new connections.
+	// Stability: development
+	K8SServiceEndpointConditionReady = K8SServiceEndpointConditionKey.String("ready")
+	// The endpoint is currently handling traffic.
+	// Stability: development
+	K8SServiceEndpointConditionServing = K8SServiceEndpointConditionKey.String("serving")
+	// The endpoint is in the process of shutting down.
+	// Stability: development
+	K8SServiceEndpointConditionTerminating = K8SServiceEndpointConditionKey.String("terminating")
+)
+
+// Enum values for k8s.service.type
+var (
+	// ClusterIP service type
+	// Stability: development
+	K8SServiceTypeClusterIP = K8SServiceTypeKey.String("ClusterIP")
+	// NodePort service type
+	// Stability: development
+	K8SServiceTypeNodePort = K8SServiceTypeKey.String("NodePort")
+	// LoadBalancer service type
+	// Stability: development
+	K8SServiceTypeLoadBalancer = K8SServiceTypeKey.String("LoadBalancer")
+	// ExternalName service type
+	// Stability: development
+	K8SServiceTypeExternalName = K8SServiceTypeKey.String("ExternalName")
+)
+
+// Enum values for k8s.volume.type
+var (
+	// A [persistentVolumeClaim] volume
+	// Stability: development
+	//
+	// [persistentVolumeClaim]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#persistentvolumeclaim
+	K8SVolumeTypePersistentVolumeClaim = K8SVolumeTypeKey.String("persistentVolumeClaim")
+	// A [configMap] volume
+	// Stability: development
+	//
+	// [configMap]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#configmap
+	K8SVolumeTypeConfigMap = K8SVolumeTypeKey.String("configMap")
+	// A [downwardAPI] volume
+	// Stability: development
+	//
+	// [downwardAPI]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#downwardapi
+	K8SVolumeTypeDownwardAPI = K8SVolumeTypeKey.String("downwardAPI")
+	// An [emptyDir] volume
+	// Stability: development
+	//
+	// [emptyDir]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#emptydir
+	K8SVolumeTypeEmptyDir = K8SVolumeTypeKey.String("emptyDir")
+	// A [secret] volume
+	// Stability: development
+	//
+	// [secret]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#secret
+	K8SVolumeTypeSecret = K8SVolumeTypeKey.String("secret")
+	// A [local] volume
+	// Stability: development
+	//
+	// [local]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#local
+	K8SVolumeTypeLocal = K8SVolumeTypeKey.String("local")
+)
+
+// Namespace: log
+const (
+	// LogFileNameKey is the attribute Key conforming to the "log.file.name"
+	// semantic conventions. It represents the basename of the file.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "audit.log"
+	LogFileNameKey = attribute.Key("log.file.name")
+
+	// LogFileNameResolvedKey is the attribute Key conforming to the
+	// "log.file.name_resolved" semantic conventions. It represents the basename of
+	// the file, with symlinks resolved.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "uuid.log"
+	LogFileNameResolvedKey = attribute.Key("log.file.name_resolved")
+
+	// LogFilePathKey is the attribute Key conforming to the "log.file.path"
+	// semantic conventions. It represents the full path to the file.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/var/log/mysql/audit.log"
+	LogFilePathKey = attribute.Key("log.file.path")
+
+	// LogFilePathResolvedKey is the attribute Key conforming to the
+	// "log.file.path_resolved" semantic conventions. It represents the full path to
+	// the file, with symlinks resolved.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/var/lib/docker/uuid.log"
+	LogFilePathResolvedKey = attribute.Key("log.file.path_resolved")
+
+	// LogIostreamKey is the attribute Key conforming to the "log.iostream" semantic
+	// conventions. It represents the stream associated with the log. See below for
+	// a list of well-known values.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	LogIostreamKey = attribute.Key("log.iostream")
+
+	// LogRecordOriginalKey is the attribute Key conforming to the
+	// "log.record.original" semantic conventions. It represents the complete
+	// original Log Record.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "77 <86>1 2015-08-06T21:58:59.694Z 192.168.2.133 inactive - - -
+	// Something happened", "[INFO] 8/3/24 12:34:56 Something happened"
+	// Note: This value MAY be added when processing a Log Record which was
+	// originally transmitted as a string or equivalent data type AND the Body field
+	// of the Log Record does not contain the same value. (e.g. a syslog or a log
+	// record read from a file.)
+	LogRecordOriginalKey = attribute.Key("log.record.original")
+
+	// LogRecordUIDKey is the attribute Key conforming to the "log.record.uid"
+	// semantic conventions. It represents a unique identifier for the Log Record.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "01ARZ3NDEKTSV4RRFFQ69G5FAV"
+	// Note: If an id is provided, other log records with the same id will be
+	// considered duplicates and can be removed safely. This means, that two
+	// distinguishable log records MUST have different values.
+	// The id MAY be an
+	// [Universally Unique Lexicographically Sortable Identifier (ULID)], but other
+	// identifiers (e.g. UUID) may be used as needed.
+	//
+	// [Universally Unique Lexicographically Sortable Identifier (ULID)]: https://github.com/ulid/spec
+	LogRecordUIDKey = attribute.Key("log.record.uid")
+)
+
+// LogFileName returns an attribute KeyValue conforming to the "log.file.name"
+// semantic conventions. It represents the basename of the file.
+func LogFileName(val string) attribute.KeyValue {
+	return LogFileNameKey.String(val)
+}
+
+// LogFileNameResolved returns an attribute KeyValue conforming to the
+// "log.file.name_resolved" semantic conventions. It represents the basename of
+// the file, with symlinks resolved.
+func LogFileNameResolved(val string) attribute.KeyValue {
+	return LogFileNameResolvedKey.String(val)
+}
+
+// LogFilePath returns an attribute KeyValue conforming to the "log.file.path"
+// semantic conventions. It represents the full path to the file.
+func LogFilePath(val string) attribute.KeyValue {
+	return LogFilePathKey.String(val)
+}
+
+// LogFilePathResolved returns an attribute KeyValue conforming to the
+// "log.file.path_resolved" semantic conventions. It represents the full path to
+// the file, with symlinks resolved.
+func LogFilePathResolved(val string) attribute.KeyValue {
+	return LogFilePathResolvedKey.String(val)
+}
+
+// LogRecordOriginal returns an attribute KeyValue conforming to the
+// "log.record.original" semantic conventions. It represents the complete
+// original Log Record.
+func LogRecordOriginal(val string) attribute.KeyValue {
+	return LogRecordOriginalKey.String(val)
+}
+
+// LogRecordUID returns an attribute KeyValue conforming to the "log.record.uid"
+// semantic conventions. It represents a unique identifier for the Log Record.
+func LogRecordUID(val string) attribute.KeyValue {
+	return LogRecordUIDKey.String(val)
+}
+
+// Enum values for log.iostream
+var (
+	// Logs from stdout stream
+	// Stability: development
+	LogIostreamStdout = LogIostreamKey.String("stdout")
+	// Events from stderr stream
+	// Stability: development
+	LogIostreamStderr = LogIostreamKey.String("stderr")
+)
+
+// Namespace: mainframe
+const (
+	// MainframeLparNameKey is the attribute Key conforming to the
+	// "mainframe.lpar.name" semantic conventions. It represents the name of the
+	// logical partition that hosts a systems with a mainframe operating system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "LPAR01"
+	MainframeLparNameKey = attribute.Key("mainframe.lpar.name")
+)
+
+// MainframeLparName returns an attribute KeyValue conforming to the
+// "mainframe.lpar.name" semantic conventions. It represents the name of the
+// logical partition that hosts a systems with a mainframe operating system.
+func MainframeLparName(val string) attribute.KeyValue {
+	return MainframeLparNameKey.String(val)
+}
+
+// Namespace: mcp
+const (
+	// McpMethodNameKey is the attribute Key conforming to the "mcp.method.name"
+	// semantic conventions. It represents the name of the request or notification
+	// method.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	McpMethodNameKey = attribute.Key("mcp.method.name")
+
+	// McpProtocolVersionKey is the attribute Key conforming to the
+	// "mcp.protocol.version" semantic conventions. It represents the [version] of
+	// the Model Context Protocol used.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2025-06-18"
+	//
+	// [version]: https://modelcontextprotocol.io/specification/versioning
+	McpProtocolVersionKey = attribute.Key("mcp.protocol.version")
+
+	// McpResourceURIKey is the attribute Key conforming to the "mcp.resource.uri"
+	// semantic conventions. It represents the value of the resource uri.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "postgres://database/customers/schema",
+	// "file:///home/user/documents/report.pdf"
+	// Note: This is a URI of the resource provided in the following requests or
+	// notifications: `resources/read`, `resources/subscribe`,
+	// `resources/unsubscribe`, or `notifications/resources/updated`.
+	McpResourceURIKey = attribute.Key("mcp.resource.uri")
+
+	// McpSessionIDKey is the attribute Key conforming to the "mcp.session.id"
+	// semantic conventions. It represents the identifies [MCP session].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "191c4850af6c49e08843a3f6c80e5046"
+	//
+	// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management
+	McpSessionIDKey = attribute.Key("mcp.session.id")
+)
+
+// McpProtocolVersion returns an attribute KeyValue conforming to the
+// "mcp.protocol.version" semantic conventions. It represents the [version] of
+// the Model Context Protocol used.
+//
+// [version]: https://modelcontextprotocol.io/specification/versioning
+func McpProtocolVersion(val string) attribute.KeyValue {
+	return McpProtocolVersionKey.String(val)
+}
+
+// McpResourceURI returns an attribute KeyValue conforming to the
+// "mcp.resource.uri" semantic conventions. It represents the value of the
+// resource uri.
+func McpResourceURI(val string) attribute.KeyValue {
+	return McpResourceURIKey.String(val)
+}
+
+// McpSessionID returns an attribute KeyValue conforming to the "mcp.session.id"
+// semantic conventions. It represents the identifies [MCP session].
+//
+// [MCP session]: https://modelcontextprotocol.io/specification/2025-06-18/basic/transports#session-management
+func McpSessionID(val string) attribute.KeyValue {
+	return McpSessionIDKey.String(val)
+}
+
+// Enum values for mcp.method.name
+var (
+	// Notification cancelling a previously-issued request.
+	//
+	// Stability: development
+	McpMethodNameNotificationsCancelled = McpMethodNameKey.String("notifications/cancelled")
+	// Request to initialize the MCP client.
+	//
+	// Stability: development
+	McpMethodNameInitialize = McpMethodNameKey.String("initialize")
+	// Notification indicating that the MCP client has been initialized.
+	//
+	// Stability: development
+	McpMethodNameNotificationsInitialized = McpMethodNameKey.String("notifications/initialized")
+	// Notification indicating the progress for a long-running operation.
+	//
+	// Stability: development
+	McpMethodNameNotificationsProgress = McpMethodNameKey.String("notifications/progress")
+	// Request to check that the other party is still alive.
+	//
+	// Stability: development
+	McpMethodNamePing = McpMethodNameKey.String("ping")
+	// Request to list resources available on server.
+	//
+	// Stability: development
+	McpMethodNameResourcesList = McpMethodNameKey.String("resources/list")
+	// Request to list resource templates available on server.
+	//
+	// Stability: development
+	McpMethodNameResourcesTemplatesList = McpMethodNameKey.String("resources/templates/list")
+	// Request to read a resource.
+	//
+	// Stability: development
+	McpMethodNameResourcesRead = McpMethodNameKey.String("resources/read")
+	// Notification indicating that the list of resources has changed.
+	//
+	// Stability: development
+	McpMethodNameNotificationsResourcesListChanged = McpMethodNameKey.String("notifications/resources/list_changed")
+	// Request to subscribe to a resource.
+	//
+	// Stability: development
+	McpMethodNameResourcesSubscribe = McpMethodNameKey.String("resources/subscribe")
+	// Request to unsubscribe from resource updates.
+	//
+	// Stability: development
+	McpMethodNameResourcesUnsubscribe = McpMethodNameKey.String("resources/unsubscribe")
+	// Notification indicating that a resource has been updated.
+	//
+	// Stability: development
+	McpMethodNameNotificationsResourcesUpdated = McpMethodNameKey.String("notifications/resources/updated")
+	// Request to list prompts available on server.
+	//
+	// Stability: development
+	McpMethodNamePromptsList = McpMethodNameKey.String("prompts/list")
+	// Request to get a prompt.
+	//
+	// Stability: development
+	McpMethodNamePromptsGet = McpMethodNameKey.String("prompts/get")
+	// Notification indicating that the list of prompts has changed.
+	//
+	// Stability: development
+	McpMethodNameNotificationsPromptsListChanged = McpMethodNameKey.String("notifications/prompts/list_changed")
+	// Request to list tools available on server.
+	//
+	// Stability: development
+	McpMethodNameToolsList = McpMethodNameKey.String("tools/list")
+	// Request to call a tool.
+	//
+	// Stability: development
+	McpMethodNameToolsCall = McpMethodNameKey.String("tools/call")
+	// Notification indicating that the list of tools has changed.
+	//
+	// Stability: development
+	McpMethodNameNotificationsToolsListChanged = McpMethodNameKey.String("notifications/tools/list_changed")
+	// Request to set the logging level.
+	//
+	// Stability: development
+	McpMethodNameLoggingSetLevel = McpMethodNameKey.String("logging/setLevel")
+	// Notification indicating that a message has been received.
+	//
+	// Stability: development
+	McpMethodNameNotificationsMessage = McpMethodNameKey.String("notifications/message")
+	// Request to create a sampling message.
+	//
+	// Stability: development
+	McpMethodNameSamplingCreateMessage = McpMethodNameKey.String("sampling/createMessage")
+	// Request to complete a prompt.
+	//
+	// Stability: development
+	McpMethodNameCompletionComplete = McpMethodNameKey.String("completion/complete")
+	// Request to list roots available on server.
+	//
+	// Stability: development
+	McpMethodNameRootsList = McpMethodNameKey.String("roots/list")
+	// Notification indicating that the list of roots has changed.
+	//
+	// Stability: development
+	McpMethodNameNotificationsRootsListChanged = McpMethodNameKey.String("notifications/roots/list_changed")
+	// Request from the server to elicit additional information from the user via
+	// the client
+	//
+	// Stability: development
+	McpMethodNameElicitationCreate = McpMethodNameKey.String("elicitation/create")
+)
+
+// Namespace: messaging
+const (
+	// MessagingBatchMessageCountKey is the attribute Key conforming to the
+	// "messaging.batch.message_count" semantic conventions. It represents the
+	// number of messages sent, received, or processed in the scope of the batching
+	// operation.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 0, 1, 2
+	// Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on
+	// spans that operate with a single message. When a messaging client library
+	// supports both batch and single-message API for the same operation,
+	// instrumentations SHOULD use `messaging.batch.message_count` for batching APIs
+	// and SHOULD NOT use it for single-message APIs.
+	MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count")
+
+	// MessagingClientIDKey is the attribute Key conforming to the
+	// "messaging.client.id" semantic conventions. It represents a unique identifier
+	// for the client that consumes or produces a message.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "client-5", "myhost@8742@s8083jm"
+	MessagingClientIDKey = attribute.Key("messaging.client.id")
+
+	// MessagingConsumerGroupNameKey is the attribute Key conforming to the
+	// "messaging.consumer.group.name" semantic conventions. It represents the name
+	// of the consumer group with which a consumer is associated.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-group", "indexer"
+	// Note: Semantic conventions for individual messaging systems SHOULD document
+	// whether `messaging.consumer.group.name` is applicable and what it means in
+	// the context of that system.
+	MessagingConsumerGroupNameKey = attribute.Key("messaging.consumer.group.name")
+
+	// MessagingDestinationAnonymousKey is the attribute Key conforming to the
+	// "messaging.destination.anonymous" semantic conventions. It represents a
+	// boolean that is true if the message destination is anonymous (could be
+	// unnamed or have auto-generated name).
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous")
+
+	// MessagingDestinationNameKey is the attribute Key conforming to the
+	// "messaging.destination.name" semantic conventions. It represents the message
+	// destination name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "MyQueue", "MyTopic"
+	// Note: Destination name SHOULD uniquely identify a specific queue, topic or
+	// other entity within the broker. If
+	// the broker doesn't have such notion, the destination name SHOULD uniquely
+	// identify the broker.
+	MessagingDestinationNameKey = attribute.Key("messaging.destination.name")
+
+	// MessagingDestinationPartitionIDKey is the attribute Key conforming to the
+	// "messaging.destination.partition.id" semantic conventions. It represents the
+	// identifier of the partition messages are sent to or received from, unique
+	// within the `messaging.destination.name`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1
+	MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id")
+
+	// MessagingDestinationSubscriptionNameKey is the attribute Key conforming to
+	// the "messaging.destination.subscription.name" semantic conventions. It
+	// represents the name of the destination subscription from which a message is
+	// consumed.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "subscription-a"
+	// Note: Semantic conventions for individual messaging systems SHOULD document
+	// whether `messaging.destination.subscription.name` is applicable and what it
+	// means in the context of that system.
+	MessagingDestinationSubscriptionNameKey = attribute.Key("messaging.destination.subscription.name")
+
+	// MessagingDestinationTemplateKey is the attribute Key conforming to the
+	// "messaging.destination.template" semantic conventions. It represents the low
+	// cardinality representation of the messaging destination name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/customers/{customerId}"
+	// Note: Destination names could be constructed from templates. An example would
+	// be a destination name involving a user name or product id. Although the
+	// destination name in this case is of high cardinality, the underlying template
+	// is of low cardinality and can be effectively used for grouping and
+	// aggregation.
+	MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template")
+
+	// MessagingDestinationTemporaryKey is the attribute Key conforming to the
+	// "messaging.destination.temporary" semantic conventions. It represents a
+	// boolean that is true if the message destination is temporary and might not
+	// exist anymore after messages are processed.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary")
+
+	// MessagingEventHubsMessageEnqueuedTimeKey is the attribute Key conforming to
+	// the "messaging.eventhubs.message.enqueued_time" semantic conventions. It
+	// represents the UTC epoch seconds at which the message has been accepted and
+	// stored in the entity.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingEventHubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time")
+
+	// MessagingGCPPubSubMessageAckDeadlineKey is the attribute Key conforming to
+	// the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It
+	// represents the ack deadline in seconds set for the modify ack deadline
+	// request.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingGCPPubSubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline")
+
+	// MessagingGCPPubSubMessageAckIDKey is the attribute Key conforming to the
+	// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the
+	// ack id for a given message.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: ack_id
+	MessagingGCPPubSubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id")
+
+	// MessagingGCPPubSubMessageDeliveryAttemptKey is the attribute Key conforming
+	// to the "messaging.gcp_pubsub.message.delivery_attempt" semantic conventions.
+	// It represents the delivery attempt for a given message.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingGCPPubSubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt")
+
+	// MessagingGCPPubSubMessageOrderingKeyKey is the attribute Key conforming to
+	// the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It
+	// represents the ordering key for a given message. If the attribute is not
+	// present, the message does not have an ordering key.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: ordering_key
+	MessagingGCPPubSubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key")
+
+	// MessagingKafkaMessageKeyKey is the attribute Key conforming to the
+	// "messaging.kafka.message.key" semantic conventions. It represents the message
+	// keys in Kafka are used for grouping alike messages to ensure they're
+	// processed on the same partition. They differ from `messaging.message.id` in
+	// that they're not unique. If the key is `null`, the attribute MUST NOT be set.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: myKey
+	// Note: If the key type is not string, it's string representation has to be
+	// supplied for the attribute. If the key has no unambiguous, canonical string
+	// form, don't include its value.
+	MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key")
+
+	// MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the
+	// "messaging.kafka.message.tombstone" semantic conventions. It represents a
+	// boolean that is true if the message is a tombstone.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone")
+
+	// MessagingKafkaOffsetKey is the attribute Key conforming to the
+	// "messaging.kafka.offset" semantic conventions. It represents the offset of a
+	// record in the corresponding Kafka partition.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingKafkaOffsetKey = attribute.Key("messaging.kafka.offset")
+
+	// MessagingMessageBodySizeKey is the attribute Key conforming to the
+	// "messaging.message.body.size" semantic conventions. It represents the size of
+	// the message body in bytes.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Note: This can refer to both the compressed or uncompressed body size. If
+	// both sizes are known, the uncompressed
+	// body size should be used.
+	MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size")
+
+	// MessagingMessageConversationIDKey is the attribute Key conforming to the
+	// "messaging.message.conversation_id" semantic conventions. It represents the
+	// conversation ID identifying the conversation to which the message belongs,
+	// represented as a string. Sometimes called "Correlation ID".
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: MyConversationId
+	MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id")
+
+	// MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the
+	// "messaging.message.envelope.size" semantic conventions. It represents the
+	// size of the message body and metadata in bytes.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Note: This can refer to both the compressed or uncompressed size. If both
+	// sizes are known, the uncompressed
+	// size should be used.
+	MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size")
+
+	// MessagingMessageIDKey is the attribute Key conforming to the
+	// "messaging.message.id" semantic conventions. It represents a value used by
+	// the messaging system as an identifier for the message, represented as a
+	// string.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 452a7c7c7c7048c2f887f61572b18fc2
+	MessagingMessageIDKey = attribute.Key("messaging.message.id")
+
+	// MessagingOperationNameKey is the attribute Key conforming to the
+	// "messaging.operation.name" semantic conventions. It represents the
+	// system-specific name of the messaging operation.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ack", "nack", "send"
+	MessagingOperationNameKey = attribute.Key("messaging.operation.name")
+
+	// MessagingOperationTypeKey is the attribute Key conforming to the
+	// "messaging.operation.type" semantic conventions. It represents a string
+	// identifying the type of the messaging operation.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: If a custom value is used, it MUST be of low cardinality.
+	MessagingOperationTypeKey = attribute.Key("messaging.operation.type")
+
+	// MessagingRabbitMQDestinationRoutingKeyKey is the attribute Key conforming to
+	// the "messaging.rabbitmq.destination.routing_key" semantic conventions. It
+	// represents the rabbitMQ message routing key.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: myKey
+	MessagingRabbitMQDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key")
+
+	// MessagingRabbitMQMessageDeliveryTagKey is the attribute Key conforming to the
+	// "messaging.rabbitmq.message.delivery_tag" semantic conventions. It represents
+	// the rabbitMQ message delivery tag.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingRabbitMQMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag")
+
+	// MessagingRocketMQConsumptionModelKey is the attribute Key conforming to the
+	// "messaging.rocketmq.consumption_model" semantic conventions. It represents
+	// the model of message consumption. This only applies to consumer spans.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	MessagingRocketMQConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model")
+
+	// MessagingRocketMQMessageDelayTimeLevelKey is the attribute Key conforming to
+	// the "messaging.rocketmq.message.delay_time_level" semantic conventions. It
+	// represents the delay time level for delay message, which determines the
+	// message delay time.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingRocketMQMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level")
+
+	// MessagingRocketMQMessageDeliveryTimestampKey is the attribute Key conforming
+	// to the "messaging.rocketmq.message.delivery_timestamp" semantic conventions.
+	// It represents the timestamp in milliseconds that the delay message is
+	// expected to be delivered to consumer.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingRocketMQMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp")
+
+	// MessagingRocketMQMessageGroupKey is the attribute Key conforming to the
+	// "messaging.rocketmq.message.group" semantic conventions. It represents the it
+	// is essential for FIFO message. Messages that belong to the same message group
+	// are always processed one by one within the same consumer group.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: myMessageGroup
+	MessagingRocketMQMessageGroupKey = attribute.Key("messaging.rocketmq.message.group")
+
+	// MessagingRocketMQMessageKeysKey is the attribute Key conforming to the
+	// "messaging.rocketmq.message.keys" semantic conventions. It represents the
+	// key(s) of message, another way to mark message besides message id.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "keyA", "keyB"
+	MessagingRocketMQMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys")
+
+	// MessagingRocketMQMessageTagKey is the attribute Key conforming to the
+	// "messaging.rocketmq.message.tag" semantic conventions. It represents the
+	// secondary classifier of message besides topic.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: tagA
+	MessagingRocketMQMessageTagKey = attribute.Key("messaging.rocketmq.message.tag")
+
+	// MessagingRocketMQMessageTypeKey is the attribute Key conforming to the
+	// "messaging.rocketmq.message.type" semantic conventions. It represents the
+	// type of message.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	MessagingRocketMQMessageTypeKey = attribute.Key("messaging.rocketmq.message.type")
+
+	// MessagingRocketMQNamespaceKey is the attribute Key conforming to the
+	// "messaging.rocketmq.namespace" semantic conventions. It represents the
+	// namespace of RocketMQ resources, resources in different namespaces are
+	// individual.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: myNamespace
+	MessagingRocketMQNamespaceKey = attribute.Key("messaging.rocketmq.namespace")
+
+	// MessagingServiceBusDispositionStatusKey is the attribute Key conforming to
+	// the "messaging.servicebus.disposition_status" semantic conventions. It
+	// represents the describes the [settlement type].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [settlement type]: https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock
+	MessagingServiceBusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status")
+
+	// MessagingServiceBusMessageDeliveryCountKey is the attribute Key conforming to
+	// the "messaging.servicebus.message.delivery_count" semantic conventions. It
+	// represents the number of deliveries that have been attempted for this
+	// message.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingServiceBusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count")
+
+	// MessagingServiceBusMessageEnqueuedTimeKey is the attribute Key conforming to
+	// the "messaging.servicebus.message.enqueued_time" semantic conventions. It
+	// represents the UTC epoch seconds at which the message has been accepted and
+	// stored in the entity.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	MessagingServiceBusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time")
+
+	// MessagingSystemKey is the attribute Key conforming to the "messaging.system"
+	// semantic conventions. It represents the messaging system as identified by the
+	// client instrumentation.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: The actual messaging system may differ from the one known by the
+	// client. For example, when using Kafka client libraries to communicate with
+	// Azure Event Hubs, the `messaging.system` is set to `kafka` based on the
+	// instrumentation's best knowledge.
+	MessagingSystemKey = attribute.Key("messaging.system")
+)
+
+// MessagingBatchMessageCount returns an attribute KeyValue conforming to the
+// "messaging.batch.message_count" semantic conventions. It represents the number
+// of messages sent, received, or processed in the scope of the batching
+// operation.
+func MessagingBatchMessageCount(val int) attribute.KeyValue {
+	return MessagingBatchMessageCountKey.Int(val)
+}
+
+// MessagingClientID returns an attribute KeyValue conforming to the
+// "messaging.client.id" semantic conventions. It represents a unique identifier
+// for the client that consumes or produces a message.
+func MessagingClientID(val string) attribute.KeyValue {
+	return MessagingClientIDKey.String(val)
+}
+
+// MessagingConsumerGroupName returns an attribute KeyValue conforming to the
+// "messaging.consumer.group.name" semantic conventions. It represents the name
+// of the consumer group with which a consumer is associated.
+func MessagingConsumerGroupName(val string) attribute.KeyValue {
+	return MessagingConsumerGroupNameKey.String(val)
+}
+
+// MessagingDestinationAnonymous returns an attribute KeyValue conforming to the
+// "messaging.destination.anonymous" semantic conventions. It represents a
+// boolean that is true if the message destination is anonymous (could be unnamed
+// or have auto-generated name).
+func MessagingDestinationAnonymous(val bool) attribute.KeyValue {
+	return MessagingDestinationAnonymousKey.Bool(val)
+}
+
+// MessagingDestinationName returns an attribute KeyValue conforming to the
+// "messaging.destination.name" semantic conventions. It represents the message
+// destination name.
+func MessagingDestinationName(val string) attribute.KeyValue {
+	return MessagingDestinationNameKey.String(val)
+}
+
+// MessagingDestinationPartitionID returns an attribute KeyValue conforming to
+// the "messaging.destination.partition.id" semantic conventions. It represents
+// the identifier of the partition messages are sent to or received from, unique
+// within the `messaging.destination.name`.
+func MessagingDestinationPartitionID(val string) attribute.KeyValue {
+	return MessagingDestinationPartitionIDKey.String(val)
+}
+
+// MessagingDestinationSubscriptionName returns an attribute KeyValue conforming
+// to the "messaging.destination.subscription.name" semantic conventions. It
+// represents the name of the destination subscription from which a message is
+// consumed.
+func MessagingDestinationSubscriptionName(val string) attribute.KeyValue {
+	return MessagingDestinationSubscriptionNameKey.String(val)
+}
+
+// MessagingDestinationTemplate returns an attribute KeyValue conforming to the
+// "messaging.destination.template" semantic conventions. It represents the low
+// cardinality representation of the messaging destination name.
+func MessagingDestinationTemplate(val string) attribute.KeyValue {
+	return MessagingDestinationTemplateKey.String(val)
+}
+
+// MessagingDestinationTemporary returns an attribute KeyValue conforming to the
+// "messaging.destination.temporary" semantic conventions. It represents a
+// boolean that is true if the message destination is temporary and might not
+// exist anymore after messages are processed.
+func MessagingDestinationTemporary(val bool) attribute.KeyValue {
+	return MessagingDestinationTemporaryKey.Bool(val)
+}
+
+// MessagingEventHubsMessageEnqueuedTime returns an attribute KeyValue conforming
+// to the "messaging.eventhubs.message.enqueued_time" semantic conventions. It
+// represents the UTC epoch seconds at which the message has been accepted and
+// stored in the entity.
+func MessagingEventHubsMessageEnqueuedTime(val int) attribute.KeyValue {
+	return MessagingEventHubsMessageEnqueuedTimeKey.Int(val)
+}
+
+// MessagingGCPPubSubMessageAckDeadline returns an attribute KeyValue conforming
+// to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It
+// represents the ack deadline in seconds set for the modify ack deadline
+// request.
+func MessagingGCPPubSubMessageAckDeadline(val int) attribute.KeyValue {
+	return MessagingGCPPubSubMessageAckDeadlineKey.Int(val)
+}
+
+// MessagingGCPPubSubMessageAckID returns an attribute KeyValue conforming to the
+// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the
+// ack id for a given message.
+func MessagingGCPPubSubMessageAckID(val string) attribute.KeyValue {
+	return MessagingGCPPubSubMessageAckIDKey.String(val)
+}
+
+// MessagingGCPPubSubMessageDeliveryAttempt returns an attribute KeyValue
+// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic
+// conventions. It represents the delivery attempt for a given message.
+func MessagingGCPPubSubMessageDeliveryAttempt(val int) attribute.KeyValue {
+	return MessagingGCPPubSubMessageDeliveryAttemptKey.Int(val)
+}
+
+// MessagingGCPPubSubMessageOrderingKey returns an attribute KeyValue conforming
+// to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It
+// represents the ordering key for a given message. If the attribute is not
+// present, the message does not have an ordering key.
+func MessagingGCPPubSubMessageOrderingKey(val string) attribute.KeyValue {
+	return MessagingGCPPubSubMessageOrderingKeyKey.String(val)
+}
+
+// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the
+// "messaging.kafka.message.key" semantic conventions. It represents the message
+// keys in Kafka are used for grouping alike messages to ensure they're processed
+// on the same partition. They differ from `messaging.message.id` in that they're
+// not unique. If the key is `null`, the attribute MUST NOT be set.
+func MessagingKafkaMessageKey(val string) attribute.KeyValue {
+	return MessagingKafkaMessageKeyKey.String(val)
+}
+
+// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming to the
+// "messaging.kafka.message.tombstone" semantic conventions. It represents a
+// boolean that is true if the message is a tombstone.
+func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue {
+	return MessagingKafkaMessageTombstoneKey.Bool(val)
+}
+
+// MessagingKafkaOffset returns an attribute KeyValue conforming to the
+// "messaging.kafka.offset" semantic conventions. It represents the offset of a
+// record in the corresponding Kafka partition.
+func MessagingKafkaOffset(val int) attribute.KeyValue {
+	return MessagingKafkaOffsetKey.Int(val)
+}
+
+// MessagingMessageBodySize returns an attribute KeyValue conforming to the
+// "messaging.message.body.size" semantic conventions. It represents the size of
+// the message body in bytes.
+func MessagingMessageBodySize(val int) attribute.KeyValue {
+	return MessagingMessageBodySizeKey.Int(val)
+}
+
+// MessagingMessageConversationID returns an attribute KeyValue conforming to the
+// "messaging.message.conversation_id" semantic conventions. It represents the
+// conversation ID identifying the conversation to which the message belongs,
+// represented as a string. Sometimes called "Correlation ID".
+func MessagingMessageConversationID(val string) attribute.KeyValue {
+	return MessagingMessageConversationIDKey.String(val)
+}
+
+// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to the
+// "messaging.message.envelope.size" semantic conventions. It represents the size
+// of the message body and metadata in bytes.
+func MessagingMessageEnvelopeSize(val int) attribute.KeyValue {
+	return MessagingMessageEnvelopeSizeKey.Int(val)
+}
+
+// MessagingMessageID returns an attribute KeyValue conforming to the
+// "messaging.message.id" semantic conventions. It represents a value used by the
+// messaging system as an identifier for the message, represented as a string.
+func MessagingMessageID(val string) attribute.KeyValue {
+	return MessagingMessageIDKey.String(val)
+}
+
+// MessagingOperationName returns an attribute KeyValue conforming to the
+// "messaging.operation.name" semantic conventions. It represents the
+// system-specific name of the messaging operation.
+func MessagingOperationName(val string) attribute.KeyValue {
+	return MessagingOperationNameKey.String(val)
+}
+
+// MessagingRabbitMQDestinationRoutingKey returns an attribute KeyValue
+// conforming to the "messaging.rabbitmq.destination.routing_key" semantic
+// conventions. It represents the rabbitMQ message routing key.
+func MessagingRabbitMQDestinationRoutingKey(val string) attribute.KeyValue {
+	return MessagingRabbitMQDestinationRoutingKeyKey.String(val)
+}
+
+// MessagingRabbitMQMessageDeliveryTag returns an attribute KeyValue conforming
+// to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. It
+// represents the rabbitMQ message delivery tag.
+func MessagingRabbitMQMessageDeliveryTag(val int) attribute.KeyValue {
+	return MessagingRabbitMQMessageDeliveryTagKey.Int(val)
+}
+
+// MessagingRocketMQMessageDelayTimeLevel returns an attribute KeyValue
+// conforming to the "messaging.rocketmq.message.delay_time_level" semantic
+// conventions. It represents the delay time level for delay message, which
+// determines the message delay time.
+func MessagingRocketMQMessageDelayTimeLevel(val int) attribute.KeyValue {
+	return MessagingRocketMQMessageDelayTimeLevelKey.Int(val)
+}
+
+// MessagingRocketMQMessageDeliveryTimestamp returns an attribute KeyValue
+// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic
+// conventions. It represents the timestamp in milliseconds that the delay
+// message is expected to be delivered to consumer.
+func MessagingRocketMQMessageDeliveryTimestamp(val int) attribute.KeyValue {
+	return MessagingRocketMQMessageDeliveryTimestampKey.Int(val)
+}
+
+// MessagingRocketMQMessageGroup returns an attribute KeyValue conforming to the
+// "messaging.rocketmq.message.group" semantic conventions. It represents the it
+// is essential for FIFO message. Messages that belong to the same message group
+// are always processed one by one within the same consumer group.
+func MessagingRocketMQMessageGroup(val string) attribute.KeyValue {
+	return MessagingRocketMQMessageGroupKey.String(val)
+}
+
+// MessagingRocketMQMessageKeys returns an attribute KeyValue conforming to the
+// "messaging.rocketmq.message.keys" semantic conventions. It represents the
+// key(s) of message, another way to mark message besides message id.
+func MessagingRocketMQMessageKeys(val ...string) attribute.KeyValue {
+	return MessagingRocketMQMessageKeysKey.StringSlice(val)
+}
+
+// MessagingRocketMQMessageTag returns an attribute KeyValue conforming to the
+// "messaging.rocketmq.message.tag" semantic conventions. It represents the
+// secondary classifier of message besides topic.
+func MessagingRocketMQMessageTag(val string) attribute.KeyValue {
+	return MessagingRocketMQMessageTagKey.String(val)
+}
+
+// MessagingRocketMQNamespace returns an attribute KeyValue conforming to the
+// "messaging.rocketmq.namespace" semantic conventions. It represents the
+// namespace of RocketMQ resources, resources in different namespaces are
+// individual.
+func MessagingRocketMQNamespace(val string) attribute.KeyValue {
+	return MessagingRocketMQNamespaceKey.String(val)
+}
+
+// MessagingServiceBusMessageDeliveryCount returns an attribute KeyValue
+// conforming to the "messaging.servicebus.message.delivery_count" semantic
+// conventions. It represents the number of deliveries that have been attempted
+// for this message.
+func MessagingServiceBusMessageDeliveryCount(val int) attribute.KeyValue {
+	return MessagingServiceBusMessageDeliveryCountKey.Int(val)
+}
+
+// MessagingServiceBusMessageEnqueuedTime returns an attribute KeyValue
+// conforming to the "messaging.servicebus.message.enqueued_time" semantic
+// conventions. It represents the UTC epoch seconds at which the message has been
+// accepted and stored in the entity.
+func MessagingServiceBusMessageEnqueuedTime(val int) attribute.KeyValue {
+	return MessagingServiceBusMessageEnqueuedTimeKey.Int(val)
+}
+
+// Enum values for messaging.operation.type
+var (
+	// A message is created. "Create" spans always refer to a single message and are
+	// used to provide a unique creation context for messages in batch sending
+	// scenarios.
+	//
+	// Stability: development
+	MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create")
+	// One or more messages are provided for sending to an intermediary. If a single
+	// message is sent, the context of the "Send" span can be used as the creation
+	// context and no "Create" span needs to be created.
+	//
+	// Stability: development
+	MessagingOperationTypeSend = MessagingOperationTypeKey.String("send")
+	// One or more messages are requested by a consumer. This operation refers to
+	// pull-based scenarios, where consumers explicitly call methods of messaging
+	// SDKs to receive messages.
+	//
+	// Stability: development
+	MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive")
+	// One or more messages are processed by a consumer.
+	//
+	// Stability: development
+	MessagingOperationTypeProcess = MessagingOperationTypeKey.String("process")
+	// One or more messages are settled.
+	//
+	// Stability: development
+	MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle")
+)
+
+// Enum values for messaging.rocketmq.consumption_model
+var (
+	// Clustering consumption model
+	// Stability: development
+	MessagingRocketMQConsumptionModelClustering = MessagingRocketMQConsumptionModelKey.String("clustering")
+	// Broadcasting consumption model
+	// Stability: development
+	MessagingRocketMQConsumptionModelBroadcasting = MessagingRocketMQConsumptionModelKey.String("broadcasting")
+)
+
+// Enum values for messaging.rocketmq.message.type
+var (
+	// Normal message
+	// Stability: development
+	MessagingRocketMQMessageTypeNormal = MessagingRocketMQMessageTypeKey.String("normal")
+	// FIFO message
+	// Stability: development
+	MessagingRocketMQMessageTypeFifo = MessagingRocketMQMessageTypeKey.String("fifo")
+	// Delay message
+	// Stability: development
+	MessagingRocketMQMessageTypeDelay = MessagingRocketMQMessageTypeKey.String("delay")
+	// Transaction message
+	// Stability: development
+	MessagingRocketMQMessageTypeTransaction = MessagingRocketMQMessageTypeKey.String("transaction")
+)
+
+// Enum values for messaging.servicebus.disposition_status
+var (
+	// Message is completed
+	// Stability: development
+	MessagingServiceBusDispositionStatusComplete = MessagingServiceBusDispositionStatusKey.String("complete")
+	// Message is abandoned
+	// Stability: development
+	MessagingServiceBusDispositionStatusAbandon = MessagingServiceBusDispositionStatusKey.String("abandon")
+	// Message is sent to dead letter queue
+	// Stability: development
+	MessagingServiceBusDispositionStatusDeadLetter = MessagingServiceBusDispositionStatusKey.String("dead_letter")
+	// Message is deferred
+	// Stability: development
+	MessagingServiceBusDispositionStatusDefer = MessagingServiceBusDispositionStatusKey.String("defer")
+)
+
+// Enum values for messaging.system
+var (
+	// Apache ActiveMQ
+	// Stability: development
+	MessagingSystemActiveMQ = MessagingSystemKey.String("activemq")
+	// Amazon Simple Notification Service (SNS)
+	// Stability: development
+	MessagingSystemAWSSNS = MessagingSystemKey.String("aws.sns")
+	// Amazon Simple Queue Service (SQS)
+	// Stability: development
+	MessagingSystemAWSSQS = MessagingSystemKey.String("aws_sqs")
+	// Azure Event Grid
+	// Stability: development
+	MessagingSystemEventGrid = MessagingSystemKey.String("eventgrid")
+	// Azure Event Hubs
+	// Stability: development
+	MessagingSystemEventHubs = MessagingSystemKey.String("eventhubs")
+	// Azure Service Bus
+	// Stability: development
+	MessagingSystemServiceBus = MessagingSystemKey.String("servicebus")
+	// Google Cloud Pub/Sub
+	// Stability: development
+	MessagingSystemGCPPubSub = MessagingSystemKey.String("gcp_pubsub")
+	// Java Message Service
+	// Stability: development
+	MessagingSystemJMS = MessagingSystemKey.String("jms")
+	// Apache Kafka
+	// Stability: development
+	MessagingSystemKafka = MessagingSystemKey.String("kafka")
+	// RabbitMQ
+	// Stability: development
+	MessagingSystemRabbitMQ = MessagingSystemKey.String("rabbitmq")
+	// Apache RocketMQ
+	// Stability: development
+	MessagingSystemRocketMQ = MessagingSystemKey.String("rocketmq")
+	// Apache Pulsar
+	// Stability: development
+	MessagingSystemPulsar = MessagingSystemKey.String("pulsar")
+)
+
+// Namespace: network
+const (
+	// NetworkCarrierICCKey is the attribute Key conforming to the
+	// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1
+	// alpha-2 2-character country code associated with the mobile carrier network.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: DE
+	NetworkCarrierICCKey = attribute.Key("network.carrier.icc")
+
+	// NetworkCarrierMCCKey is the attribute Key conforming to the
+	// "network.carrier.mcc" semantic conventions. It represents the mobile carrier
+	// country code.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 310
+	NetworkCarrierMCCKey = attribute.Key("network.carrier.mcc")
+
+	// NetworkCarrierMNCKey is the attribute Key conforming to the
+	// "network.carrier.mnc" semantic conventions. It represents the mobile carrier
+	// network code.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 001
+	NetworkCarrierMNCKey = attribute.Key("network.carrier.mnc")
+
+	// NetworkCarrierNameKey is the attribute Key conforming to the
+	// "network.carrier.name" semantic conventions. It represents the name of the
+	// mobile carrier.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: sprint
+	NetworkCarrierNameKey = attribute.Key("network.carrier.name")
+
+	// NetworkConnectionStateKey is the attribute Key conforming to the
+	// "network.connection.state" semantic conventions. It represents the state of
+	// network connection.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "close_wait"
+	// Note: Connection states are defined as part of the [rfc9293]
+	//
+	// [rfc9293]: https://datatracker.ietf.org/doc/html/rfc9293#section-3.3.2
+	NetworkConnectionStateKey = attribute.Key("network.connection.state")
+
+	// NetworkConnectionSubtypeKey is the attribute Key conforming to the
+	// "network.connection.subtype" semantic conventions. It represents the this
+	// describes more details regarding the connection.type. It may be the type of
+	// cell technology connection, but it could be used for describing details about
+	// a wifi connection.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: LTE
+	NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype")
+
+	// NetworkConnectionTypeKey is the attribute Key conforming to the
+	// "network.connection.type" semantic conventions. It represents the internet
+	// connection type.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: wifi
+	NetworkConnectionTypeKey = attribute.Key("network.connection.type")
+
+	// NetworkInterfaceNameKey is the attribute Key conforming to the
+	// "network.interface.name" semantic conventions. It represents the network
+	// interface name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "lo", "eth0"
+	NetworkInterfaceNameKey = attribute.Key("network.interface.name")
+
+	// NetworkIODirectionKey is the attribute Key conforming to the
+	// "network.io.direction" semantic conventions. It represents the network IO
+	// operation direction.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "transmit"
+	NetworkIODirectionKey = attribute.Key("network.io.direction")
+
+	// NetworkLocalAddressKey is the attribute Key conforming to the
+	// "network.local.address" semantic conventions. It represents the local address
+	// of the network connection - IP address or Unix domain socket name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "10.1.2.80", "/tmp/my.sock"
+	NetworkLocalAddressKey = attribute.Key("network.local.address")
+
+	// NetworkLocalPortKey is the attribute Key conforming to the
+	// "network.local.port" semantic conventions. It represents the local port
+	// number of the network connection.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: 65123
+	NetworkLocalPortKey = attribute.Key("network.local.port")
+
+	// NetworkPeerAddressKey is the attribute Key conforming to the
+	// "network.peer.address" semantic conventions. It represents the peer address
+	// of the network connection - IP address or Unix domain socket name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "10.1.2.80", "/tmp/my.sock"
+	NetworkPeerAddressKey = attribute.Key("network.peer.address")
+
+	// NetworkPeerPortKey is the attribute Key conforming to the "network.peer.port"
+	// semantic conventions. It represents the peer port number of the network
+	// connection.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: 65123
+	NetworkPeerPortKey = attribute.Key("network.peer.port")
+
+	// NetworkProtocolNameKey is the attribute Key conforming to the
+	// "network.protocol.name" semantic conventions. It represents the
+	// [OSI application layer] or non-OSI equivalent.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "amqp", "http", "mqtt"
+	// Note: The value SHOULD be normalized to lowercase.
+	//
+	// [OSI application layer]: https://wikipedia.org/wiki/Application_layer
+	NetworkProtocolNameKey = attribute.Key("network.protocol.name")
+
+	// NetworkProtocolVersionKey is the attribute Key conforming to the
+	// "network.protocol.version" semantic conventions. It represents the actual
+	// version of the protocol used for network communication.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "1.1", "2"
+	// Note: If protocol version is subject to negotiation (for example using [ALPN]
+	// ), this attribute SHOULD be set to the negotiated version. If the actual
+	// protocol version is not known, this attribute SHOULD NOT be set.
+	//
+	// [ALPN]: https://www.rfc-editor.org/rfc/rfc7301.html
+	NetworkProtocolVersionKey = attribute.Key("network.protocol.version")
+
+	// NetworkTransportKey is the attribute Key conforming to the
+	// "network.transport" semantic conventions. It represents the
+	// [OSI transport layer] or [inter-process communication method].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "tcp", "udp"
+	// Note: The value SHOULD be normalized to lowercase.
+	//
+	// Consider always setting the transport when setting a port number, since
+	// a port number is ambiguous without knowing the transport. For example
+	// different processes could be listening on TCP port 12345 and UDP port 12345.
+	//
+	// [OSI transport layer]: https://wikipedia.org/wiki/Transport_layer
+	// [inter-process communication method]: https://wikipedia.org/wiki/Inter-process_communication
+	NetworkTransportKey = attribute.Key("network.transport")
+
+	// NetworkTypeKey is the attribute Key conforming to the "network.type" semantic
+	// conventions. It represents the [OSI network layer] or non-OSI equivalent.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "ipv4", "ipv6"
+	// Note: The value SHOULD be normalized to lowercase.
+	//
+	// [OSI network layer]: https://wikipedia.org/wiki/Network_layer
+	NetworkTypeKey = attribute.Key("network.type")
+)
+
+// NetworkCarrierICC returns an attribute KeyValue conforming to the
+// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1
+// alpha-2 2-character country code associated with the mobile carrier network.
+func NetworkCarrierICC(val string) attribute.KeyValue {
+	return NetworkCarrierICCKey.String(val)
+}
+
+// NetworkCarrierMCC returns an attribute KeyValue conforming to the
+// "network.carrier.mcc" semantic conventions. It represents the mobile carrier
+// country code.
+func NetworkCarrierMCC(val string) attribute.KeyValue {
+	return NetworkCarrierMCCKey.String(val)
+}
+
+// NetworkCarrierMNC returns an attribute KeyValue conforming to the
+// "network.carrier.mnc" semantic conventions. It represents the mobile carrier
+// network code.
+func NetworkCarrierMNC(val string) attribute.KeyValue {
+	return NetworkCarrierMNCKey.String(val)
+}
+
+// NetworkCarrierName returns an attribute KeyValue conforming to the
+// "network.carrier.name" semantic conventions. It represents the name of the
+// mobile carrier.
+func NetworkCarrierName(val string) attribute.KeyValue {
+	return NetworkCarrierNameKey.String(val)
+}
+
+// NetworkInterfaceName returns an attribute KeyValue conforming to the
+// "network.interface.name" semantic conventions. It represents the network
+// interface name.
+func NetworkInterfaceName(val string) attribute.KeyValue {
+	return NetworkInterfaceNameKey.String(val)
+}
+
+// NetworkLocalAddress returns an attribute KeyValue conforming to the
+// "network.local.address" semantic conventions. It represents the local address
+// of the network connection - IP address or Unix domain socket name.
+func NetworkLocalAddress(val string) attribute.KeyValue {
+	return NetworkLocalAddressKey.String(val)
+}
+
+// NetworkLocalPort returns an attribute KeyValue conforming to the
+// "network.local.port" semantic conventions. It represents the local port number
+// of the network connection.
+func NetworkLocalPort(val int) attribute.KeyValue {
+	return NetworkLocalPortKey.Int(val)
+}
+
+// NetworkPeerAddress returns an attribute KeyValue conforming to the
+// "network.peer.address" semantic conventions. It represents the peer address of
+// the network connection - IP address or Unix domain socket name.
+func NetworkPeerAddress(val string) attribute.KeyValue {
+	return NetworkPeerAddressKey.String(val)
+}
+
+// NetworkPeerPort returns an attribute KeyValue conforming to the
+// "network.peer.port" semantic conventions. It represents the peer port number
+// of the network connection.
+func NetworkPeerPort(val int) attribute.KeyValue {
+	return NetworkPeerPortKey.Int(val)
+}
+
+// NetworkProtocolName returns an attribute KeyValue conforming to the
+// "network.protocol.name" semantic conventions. It represents the
+// [OSI application layer] or non-OSI equivalent.
+//
+// [OSI application layer]: https://wikipedia.org/wiki/Application_layer
+func NetworkProtocolName(val string) attribute.KeyValue {
+	return NetworkProtocolNameKey.String(val)
+}
+
+// NetworkProtocolVersion returns an attribute KeyValue conforming to the
+// "network.protocol.version" semantic conventions. It represents the actual
+// version of the protocol used for network communication.
+func NetworkProtocolVersion(val string) attribute.KeyValue {
+	return NetworkProtocolVersionKey.String(val)
+}
+
+// Enum values for network.connection.state
+var (
+	// closed
+	// Stability: development
+	NetworkConnectionStateClosed = NetworkConnectionStateKey.String("closed")
+	// close_wait
+	// Stability: development
+	NetworkConnectionStateCloseWait = NetworkConnectionStateKey.String("close_wait")
+	// closing
+	// Stability: development
+	NetworkConnectionStateClosing = NetworkConnectionStateKey.String("closing")
+	// established
+	// Stability: development
+	NetworkConnectionStateEstablished = NetworkConnectionStateKey.String("established")
+	// fin_wait_1
+	// Stability: development
+	NetworkConnectionStateFinWait1 = NetworkConnectionStateKey.String("fin_wait_1")
+	// fin_wait_2
+	// Stability: development
+	NetworkConnectionStateFinWait2 = NetworkConnectionStateKey.String("fin_wait_2")
+	// last_ack
+	// Stability: development
+	NetworkConnectionStateLastAck = NetworkConnectionStateKey.String("last_ack")
+	// listen
+	// Stability: development
+	NetworkConnectionStateListen = NetworkConnectionStateKey.String("listen")
+	// syn_received
+	// Stability: development
+	NetworkConnectionStateSynReceived = NetworkConnectionStateKey.String("syn_received")
+	// syn_sent
+	// Stability: development
+	NetworkConnectionStateSynSent = NetworkConnectionStateKey.String("syn_sent")
+	// time_wait
+	// Stability: development
+	NetworkConnectionStateTimeWait = NetworkConnectionStateKey.String("time_wait")
+)
+
+// Enum values for network.connection.subtype
+var (
+	// GPRS
+	// Stability: development
+	NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs")
+	// EDGE
+	// Stability: development
+	NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge")
+	// UMTS
+	// Stability: development
+	NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts")
+	// CDMA
+	// Stability: development
+	NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma")
+	// EVDO Rel. 0
+	// Stability: development
+	NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0")
+	// EVDO Rev. A
+	// Stability: development
+	NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a")
+	// CDMA2000 1XRTT
+	// Stability: development
+	NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt")
+	// HSDPA
+	// Stability: development
+	NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa")
+	// HSUPA
+	// Stability: development
+	NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa")
+	// HSPA
+	// Stability: development
+	NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa")
+	// IDEN
+	// Stability: development
+	NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden")
+	// EVDO Rev. B
+	// Stability: development
+	NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b")
+	// LTE
+	// Stability: development
+	NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte")
+	// EHRPD
+	// Stability: development
+	NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd")
+	// HSPAP
+	// Stability: development
+	NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap")
+	// GSM
+	// Stability: development
+	NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm")
+	// TD-SCDMA
+	// Stability: development
+	NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma")
+	// IWLAN
+	// Stability: development
+	NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan")
+	// 5G NR (New Radio)
+	// Stability: development
+	NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr")
+	// 5G NRNSA (New Radio Non-Standalone)
+	// Stability: development
+	NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa")
+	// LTE CA
+	// Stability: development
+	NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca")
+)
+
+// Enum values for network.connection.type
+var (
+	// wifi
+	// Stability: development
+	NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi")
+	// wired
+	// Stability: development
+	NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired")
+	// cell
+	// Stability: development
+	NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell")
+	// unavailable
+	// Stability: development
+	NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable")
+	// unknown
+	// Stability: development
+	NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown")
+)
+
+// Enum values for network.io.direction
+var (
+	// transmit
+	// Stability: development
+	NetworkIODirectionTransmit = NetworkIODirectionKey.String("transmit")
+	// receive
+	// Stability: development
+	NetworkIODirectionReceive = NetworkIODirectionKey.String("receive")
+)
+
+// Enum values for network.transport
+var (
+	// TCP
+	// Stability: stable
+	NetworkTransportTCP = NetworkTransportKey.String("tcp")
+	// UDP
+	// Stability: stable
+	NetworkTransportUDP = NetworkTransportKey.String("udp")
+	// Named or anonymous pipe.
+	// Stability: stable
+	NetworkTransportPipe = NetworkTransportKey.String("pipe")
+	// Unix domain socket
+	// Stability: stable
+	NetworkTransportUnix = NetworkTransportKey.String("unix")
+	// QUIC
+	// Stability: stable
+	NetworkTransportQUIC = NetworkTransportKey.String("quic")
+)
+
+// Enum values for network.type
+var (
+	// IPv4
+	// Stability: stable
+	NetworkTypeIPv4 = NetworkTypeKey.String("ipv4")
+	// IPv6
+	// Stability: stable
+	NetworkTypeIPv6 = NetworkTypeKey.String("ipv6")
+)
+
+// Namespace: nfs
+const (
+	// NfsOperationNameKey is the attribute Key conforming to the
+	// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation
+	// name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "OPEN", "READ", "GETATTR"
+	NfsOperationNameKey = attribute.Key("nfs.operation.name")
+
+	// NfsServerRepcacheStatusKey is the attribute Key conforming to the
+	// "nfs.server.repcache.status" semantic conventions. It represents the linux:
+	// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or
+	// "nocache" (NFSD_STATS_RC_NOCACHE -- uncacheable).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: hit
+	NfsServerRepcacheStatusKey = attribute.Key("nfs.server.repcache.status")
+)
+
+// NfsOperationName returns an attribute KeyValue conforming to the
+// "nfs.operation.name" semantic conventions. It represents the NFSv4+ operation
+// name.
+func NfsOperationName(val string) attribute.KeyValue {
+	return NfsOperationNameKey.String(val)
+}
+
+// NfsServerRepcacheStatus returns an attribute KeyValue conforming to the
+// "nfs.server.repcache.status" semantic conventions. It represents the linux:
+// one of "hit" (NFSD_STATS_RC_HITS), "miss" (NFSD_STATS_RC_MISSES), or "nocache"
+// (NFSD_STATS_RC_NOCACHE -- uncacheable).
+func NfsServerRepcacheStatus(val string) attribute.KeyValue {
+	return NfsServerRepcacheStatusKey.String(val)
+}
+
+// Namespace: oci
+const (
+	// OCIManifestDigestKey is the attribute Key conforming to the
+	// "oci.manifest.digest" semantic conventions. It represents the digest of the
+	// OCI image manifest. For container images specifically is the digest by which
+	// the container image is known.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4"
+	// Note: Follows [OCI Image Manifest Specification], and specifically the
+	// [Digest property].
+	// An example can be found in [Example Image Manifest].
+	//
+	// [OCI Image Manifest Specification]: https://github.com/opencontainers/image-spec/blob/main/manifest.md
+	// [Digest property]: https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests
+	// [Example Image Manifest]: https://github.com/opencontainers/image-spec/blob/main/manifest.md#example-image-manifest
+	OCIManifestDigestKey = attribute.Key("oci.manifest.digest")
+)
+
+// OCIManifestDigest returns an attribute KeyValue conforming to the
+// "oci.manifest.digest" semantic conventions. It represents the digest of the
+// OCI image manifest. For container images specifically is the digest by which
+// the container image is known.
+func OCIManifestDigest(val string) attribute.KeyValue {
+	return OCIManifestDigestKey.String(val)
+}
+
+// Namespace: onc_rpc
+const (
+	// OncRPCProcedureNameKey is the attribute Key conforming to the
+	// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC
+	// procedure name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "OPEN", "READ", "GETATTR"
+	OncRPCProcedureNameKey = attribute.Key("onc_rpc.procedure.name")
+
+	// OncRPCProcedureNumberKey is the attribute Key conforming to the
+	// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun
+	// RPC procedure number.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	OncRPCProcedureNumberKey = attribute.Key("onc_rpc.procedure.number")
+
+	// OncRPCProgramNameKey is the attribute Key conforming to the
+	// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC
+	// program name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "portmapper", "nfs"
+	OncRPCProgramNameKey = attribute.Key("onc_rpc.program.name")
+
+	// OncRPCVersionKey is the attribute Key conforming to the "onc_rpc.version"
+	// semantic conventions. It represents the ONC/Sun RPC program version.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	OncRPCVersionKey = attribute.Key("onc_rpc.version")
+)
+
+// OncRPCProcedureName returns an attribute KeyValue conforming to the
+// "onc_rpc.procedure.name" semantic conventions. It represents the ONC/Sun RPC
+// procedure name.
+func OncRPCProcedureName(val string) attribute.KeyValue {
+	return OncRPCProcedureNameKey.String(val)
+}
+
+// OncRPCProcedureNumber returns an attribute KeyValue conforming to the
+// "onc_rpc.procedure.number" semantic conventions. It represents the ONC/Sun RPC
+// procedure number.
+func OncRPCProcedureNumber(val int) attribute.KeyValue {
+	return OncRPCProcedureNumberKey.Int(val)
+}
+
+// OncRPCProgramName returns an attribute KeyValue conforming to the
+// "onc_rpc.program.name" semantic conventions. It represents the ONC/Sun RPC
+// program name.
+func OncRPCProgramName(val string) attribute.KeyValue {
+	return OncRPCProgramNameKey.String(val)
+}
+
+// OncRPCVersion returns an attribute KeyValue conforming to the
+// "onc_rpc.version" semantic conventions. It represents the ONC/Sun RPC program
+// version.
+func OncRPCVersion(val int) attribute.KeyValue {
+	return OncRPCVersionKey.Int(val)
+}
+
+// Namespace: openai
+const (
+	// OpenAIAPITypeKey is the attribute Key conforming to the "openai.api.type"
+	// semantic conventions. It represents the type of OpenAI API being used.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	OpenAIAPITypeKey = attribute.Key("openai.api.type")
+
+	// OpenAIRequestServiceTierKey is the attribute Key conforming to the
+	// "openai.request.service_tier" semantic conventions. It represents the service
+	// tier requested. May be a specific tier, default, or auto.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "auto", "default"
+	OpenAIRequestServiceTierKey = attribute.Key("openai.request.service_tier")
+
+	// OpenAIResponseServiceTierKey is the attribute Key conforming to the
+	// "openai.response.service_tier" semantic conventions. It represents the
+	// service tier used for the response.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "scale", "default"
+	OpenAIResponseServiceTierKey = attribute.Key("openai.response.service_tier")
+
+	// OpenAIResponseSystemFingerprintKey is the attribute Key conforming to the
+	// "openai.response.system_fingerprint" semantic conventions. It represents a
+	// fingerprint to track any eventual change in the Generative AI environment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "fp_44709d6fcb"
+	OpenAIResponseSystemFingerprintKey = attribute.Key("openai.response.system_fingerprint")
+)
+
+// OpenAIResponseServiceTier returns an attribute KeyValue conforming to the
+// "openai.response.service_tier" semantic conventions. It represents the service
+// tier used for the response.
+func OpenAIResponseServiceTier(val string) attribute.KeyValue {
+	return OpenAIResponseServiceTierKey.String(val)
+}
+
+// OpenAIResponseSystemFingerprint returns an attribute KeyValue conforming to
+// the "openai.response.system_fingerprint" semantic conventions. It represents a
+// fingerprint to track any eventual change in the Generative AI environment.
+func OpenAIResponseSystemFingerprint(val string) attribute.KeyValue {
+	return OpenAIResponseSystemFingerprintKey.String(val)
+}
+
+// Enum values for openai.api.type
+var (
+	// The OpenAI [Chat Completions API].
+	// Stability: development
+	//
+	// [Chat Completions API]: https://developers.openai.com/api/reference/chat-completions/overview
+	OpenAIAPITypeChatCompletions = OpenAIAPITypeKey.String("chat_completions")
+	// The OpenAI [Responses API].
+	// Stability: development
+	//
+	// [Responses API]: https://developers.openai.com/api/reference/responses/overview
+	OpenAIAPITypeResponses = OpenAIAPITypeKey.String("responses")
+)
+
+// Enum values for openai.request.service_tier
+var (
+	// The system will utilize scale tier credits until they are exhausted.
+	// Stability: development
+	OpenAIRequestServiceTierAuto = OpenAIRequestServiceTierKey.String("auto")
+	// The system will utilize the default scale tier.
+	// Stability: development
+	OpenAIRequestServiceTierDefault = OpenAIRequestServiceTierKey.String("default")
+)
+
+// Namespace: openshift
+const (
+	// OpenShiftClusterquotaNameKey is the attribute Key conforming to the
+	// "openshift.clusterquota.name" semantic conventions. It represents the name of
+	// the cluster quota.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "opentelemetry"
+	OpenShiftClusterquotaNameKey = attribute.Key("openshift.clusterquota.name")
+
+	// OpenShiftClusterquotaUIDKey is the attribute Key conforming to the
+	// "openshift.clusterquota.uid" semantic conventions. It represents the UID of
+	// the cluster quota.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff"
+	OpenShiftClusterquotaUIDKey = attribute.Key("openshift.clusterquota.uid")
+)
+
+// OpenShiftClusterquotaName returns an attribute KeyValue conforming to the
+// "openshift.clusterquota.name" semantic conventions. It represents the name of
+// the cluster quota.
+func OpenShiftClusterquotaName(val string) attribute.KeyValue {
+	return OpenShiftClusterquotaNameKey.String(val)
+}
+
+// OpenShiftClusterquotaUID returns an attribute KeyValue conforming to the
+// "openshift.clusterquota.uid" semantic conventions. It represents the UID of
+// the cluster quota.
+func OpenShiftClusterquotaUID(val string) attribute.KeyValue {
+	return OpenShiftClusterquotaUIDKey.String(val)
+}
+
+// Namespace: opentracing
+const (
+	// OpenTracingRefTypeKey is the attribute Key conforming to the
+	// "opentracing.ref_type" semantic conventions. It represents the parent-child
+	// Reference type.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: The causal relationship between a child Span and a parent Span.
+	OpenTracingRefTypeKey = attribute.Key("opentracing.ref_type")
+)
+
+// Enum values for opentracing.ref_type
+var (
+	// The parent Span depends on the child Span in some capacity
+	// Stability: development
+	OpenTracingRefTypeChildOf = OpenTracingRefTypeKey.String("child_of")
+	// The parent Span doesn't depend in any way on the result of the child Span
+	// Stability: development
+	OpenTracingRefTypeFollowsFrom = OpenTracingRefTypeKey.String("follows_from")
+)
+
+// Namespace: oracle
+const (
+	// OracleDBDomainKey is the attribute Key conforming to the "oracle.db.domain"
+	// semantic conventions. It represents the database domain associated with the
+	// connection.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "example.com", "corp.internal", "prod.db.local"
+	// Note: This attribute SHOULD be set to the value of the `DB_DOMAIN`
+	// initialization parameter,
+	// as exposed in `v$parameter`. `DB_DOMAIN` defines the domain portion of the
+	// global
+	// database name and SHOULD be configured when a database is, or may become,
+	// part of a
+	// distributed environment. Its value consists of one or more valid identifiers
+	// (alphanumeric ASCII characters) separated by periods.
+	OracleDBDomainKey = attribute.Key("oracle.db.domain")
+
+	// OracleDBInstanceNameKey is the attribute Key conforming to the
+	// "oracle.db.instance.name" semantic conventions. It represents the instance
+	// name associated with the connection in an Oracle Real Application Clusters
+	// environment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ORCL1", "ORCL2", "ORCL3"
+	// Note: There can be multiple instances associated with a single database
+	// service. It indicates the
+	// unique instance name to which the connection is currently bound. For non-RAC
+	// databases, this value
+	// defaults to the `oracle.db.name`.
+	OracleDBInstanceNameKey = attribute.Key("oracle.db.instance.name")
+
+	// OracleDBNameKey is the attribute Key conforming to the "oracle.db.name"
+	// semantic conventions. It represents the database name associated with the
+	// connection.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ORCL1", "FREE"
+	// Note: This attribute SHOULD be set to the value of the parameter `DB_NAME`
+	// exposed in `v$parameter`.
+	OracleDBNameKey = attribute.Key("oracle.db.name")
+
+	// OracleDBPdbKey is the attribute Key conforming to the "oracle.db.pdb"
+	// semantic conventions. It represents the pluggable database (PDB) name
+	// associated with the connection.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "PDB1", "FREEPDB"
+	// Note: This attribute SHOULD reflect the PDB that the session is currently
+	// connected to.
+	// If instrumentation cannot reliably obtain the active PDB name for each
+	// operation
+	// without issuing an additional query (such as `SELECT SYS_CONTEXT`), it is
+	// RECOMMENDED to fall back to the PDB name specified at connection
+	// establishment.
+	OracleDBPdbKey = attribute.Key("oracle.db.pdb")
+
+	// OracleDBServiceKey is the attribute Key conforming to the "oracle.db.service"
+	// semantic conventions. It represents the service name currently associated
+	// with the database connection.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "order-processing-service", "db_low.adb.oraclecloud.com",
+	// "db_high.adb.oraclecloud.com"
+	// Note: The effective service name for a connection can change during its
+	// lifetime,
+	// for example after executing sql, `ALTER SESSION`. If an instrumentation
+	// cannot reliably
+	// obtain the current service name for each operation without issuing an
+	// additional
+	// query (such as `SELECT SYS_CONTEXT`), it is RECOMMENDED to fall back to the
+	// service name originally provided at connection establishment.
+	OracleDBServiceKey = attribute.Key("oracle.db.service")
+)
+
+// OracleDBDomain returns an attribute KeyValue conforming to the
+// "oracle.db.domain" semantic conventions. It represents the database domain
+// associated with the connection.
+func OracleDBDomain(val string) attribute.KeyValue {
+	return OracleDBDomainKey.String(val)
+}
+
+// OracleDBInstanceName returns an attribute KeyValue conforming to the
+// "oracle.db.instance.name" semantic conventions. It represents the instance
+// name associated with the connection in an Oracle Real Application Clusters
+// environment.
+func OracleDBInstanceName(val string) attribute.KeyValue {
+	return OracleDBInstanceNameKey.String(val)
+}
+
+// OracleDBName returns an attribute KeyValue conforming to the "oracle.db.name"
+// semantic conventions. It represents the database name associated with the
+// connection.
+func OracleDBName(val string) attribute.KeyValue {
+	return OracleDBNameKey.String(val)
+}
+
+// OracleDBPdb returns an attribute KeyValue conforming to the "oracle.db.pdb"
+// semantic conventions. It represents the pluggable database (PDB) name
+// associated with the connection.
+func OracleDBPdb(val string) attribute.KeyValue {
+	return OracleDBPdbKey.String(val)
+}
+
+// OracleDBService returns an attribute KeyValue conforming to the
+// "oracle.db.service" semantic conventions. It represents the service name
+// currently associated with the database connection.
+func OracleDBService(val string) attribute.KeyValue {
+	return OracleDBServiceKey.String(val)
+}
+
+// Namespace: oracle_cloud
+const (
+	// OracleCloudRealmKey is the attribute Key conforming to the
+	// "oracle_cloud.realm" semantic conventions. It represents the OCI realm
+	// identifier that indicates the isolated partition in which the tenancy and its
+	// resources reside.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "oc1", "oc2"
+	// Note: See [OCI documentation on realms]
+	//
+	// [OCI documentation on realms]: https://docs.oracle.com/iaas/Content/General/Concepts/regions.htm
+	OracleCloudRealmKey = attribute.Key("oracle_cloud.realm")
+)
+
+// OracleCloudRealm returns an attribute KeyValue conforming to the
+// "oracle_cloud.realm" semantic conventions. It represents the OCI realm
+// identifier that indicates the isolated partition in which the tenancy and its
+// resources reside.
+func OracleCloudRealm(val string) attribute.KeyValue {
+	return OracleCloudRealmKey.String(val)
+}
+
+// Namespace: os
+const (
+	// OSBuildIDKey is the attribute Key conforming to the "os.build_id" semantic
+	// conventions. It represents the unique identifier for a particular build or
+	// compilation of the operating system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "TQ3C.230805.001.B2", "20E247", "22621"
+	OSBuildIDKey = attribute.Key("os.build_id")
+
+	// OSDescriptionKey is the attribute Key conforming to the "os.description"
+	// semantic conventions. It represents the human readable (not intended to be
+	// parsed) OS version information, like e.g. reported by `ver` or
+	// `lsb_release -a` commands.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Microsoft Windows [Version 10.0.18363.778]", "Ubuntu 18.04.1 LTS"
+	OSDescriptionKey = attribute.Key("os.description")
+
+	// OSNameKey is the attribute Key conforming to the "os.name" semantic
+	// conventions. It represents the human readable operating system name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "iOS", "Android", "Ubuntu"
+	OSNameKey = attribute.Key("os.name")
+
+	// OSTypeKey is the attribute Key conforming to the "os.type" semantic
+	// conventions. It represents the operating system type.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	OSTypeKey = attribute.Key("os.type")
+
+	// OSVersionKey is the attribute Key conforming to the "os.version" semantic
+	// conventions. It represents the version string of the operating system as
+	// defined in [Version Attributes].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "14.2.1", "18.04.1"
+	//
+	// [Version Attributes]: /docs/resource/README.md#version-attributes
+	OSVersionKey = attribute.Key("os.version")
+)
+
+// OSBuildID returns an attribute KeyValue conforming to the "os.build_id"
+// semantic conventions. It represents the unique identifier for a particular
+// build or compilation of the operating system.
+func OSBuildID(val string) attribute.KeyValue {
+	return OSBuildIDKey.String(val)
+}
+
+// OSDescription returns an attribute KeyValue conforming to the "os.description"
+// semantic conventions. It represents the human readable (not intended to be
+// parsed) OS version information, like e.g. reported by `ver` or
+// `lsb_release -a` commands.
+func OSDescription(val string) attribute.KeyValue {
+	return OSDescriptionKey.String(val)
+}
+
+// OSName returns an attribute KeyValue conforming to the "os.name" semantic
+// conventions. It represents the human readable operating system name.
+func OSName(val string) attribute.KeyValue {
+	return OSNameKey.String(val)
+}
+
+// OSVersion returns an attribute KeyValue conforming to the "os.version"
+// semantic conventions. It represents the version string of the operating system
+// as defined in [Version Attributes].
+//
+// [Version Attributes]: /docs/resource/README.md#version-attributes
+func OSVersion(val string) attribute.KeyValue {
+	return OSVersionKey.String(val)
+}
+
+// Enum values for os.type
+var (
+	// Microsoft Windows
+	// Stability: development
+	OSTypeWindows = OSTypeKey.String("windows")
+	// Linux
+	// Stability: development
+	OSTypeLinux = OSTypeKey.String("linux")
+	// Apple Darwin
+	// Stability: development
+	OSTypeDarwin = OSTypeKey.String("darwin")
+	// FreeBSD
+	// Stability: development
+	OSTypeFreeBSD = OSTypeKey.String("freebsd")
+	// NetBSD
+	// Stability: development
+	OSTypeNetBSD = OSTypeKey.String("netbsd")
+	// OpenBSD
+	// Stability: development
+	OSTypeOpenBSD = OSTypeKey.String("openbsd")
+	// DragonFly BSD
+	// Stability: development
+	OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd")
+	// HP-UX (Hewlett Packard Unix)
+	// Stability: development
+	OSTypeHPUX = OSTypeKey.String("hpux")
+	// AIX (Advanced Interactive eXecutive)
+	// Stability: development
+	OSTypeAIX = OSTypeKey.String("aix")
+	// SunOS, Oracle Solaris
+	// Stability: development
+	OSTypeSolaris = OSTypeKey.String("solaris")
+	// IBM z/OS
+	// Stability: development
+	OSTypeZOS = OSTypeKey.String("zos")
+)
+
+// Namespace: otel
+const (
+	// OTelComponentNameKey is the attribute Key conforming to the
+	// "otel.component.name" semantic conventions. It represents a name uniquely
+	// identifying the instance of the OpenTelemetry component within its containing
+	// SDK instance.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "otlp_grpc_span_exporter/0", "custom-name"
+	// Note: Implementations SHOULD ensure a low cardinality for this attribute,
+	// even across application or SDK restarts.
+	// E.g. implementations MUST NOT use UUIDs as values for this attribute.
+	//
+	// Implementations MAY achieve these goals by following a
+	// `<otel.component.type>/<instance-counter>` pattern, e.g.
+	// `batching_span_processor/0`.
+	// Hereby `otel.component.type` refers to the corresponding attribute value of
+	// the component.
+	//
+	// The value of `instance-counter` MAY be automatically assigned by the
+	// component and uniqueness within the enclosing SDK instance MUST be
+	// guaranteed.
+	// For example, `<instance-counter>` MAY be implemented by using a monotonically
+	// increasing counter (starting with `0`), which is incremented every time an
+	// instance of the given component type is started.
+	//
+	// With this implementation, for example the first Batching Span Processor would
+	// have `batching_span_processor/0`
+	// as `otel.component.name`, the second one `batching_span_processor/1` and so
+	// on.
+	// These values will therefore be reused in the case of an application restart.
+	OTelComponentNameKey = attribute.Key("otel.component.name")
+
+	// OTelComponentTypeKey is the attribute Key conforming to the
+	// "otel.component.type" semantic conventions. It represents a name identifying
+	// the type of the OpenTelemetry component.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "batching_span_processor", "com.example.MySpanExporter"
+	// Note: If none of the standardized values apply, implementations SHOULD use
+	// the language-defined name of the type.
+	// E.g. for Java the fully qualified classname SHOULD be used in this case.
+	OTelComponentTypeKey = attribute.Key("otel.component.type")
+
+	// OTelEventNameKey is the attribute Key conforming to the "otel.event.name"
+	// semantic conventions. It represents the identifies the class / type of event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "browser.mouse.click", "device.app.lifecycle"
+	// Note: This attribute SHOULD be used by non-OTLP exporters when destination
+	// does not support `EventName` or equivalent field. This attribute MAY be used
+	// by applications using existing logging libraries so that it can be used to
+	// set the `EventName` field by Collector or SDK components.
+	OTelEventNameKey = attribute.Key("otel.event.name")
+
+	// OTelScopeNameKey is the attribute Key conforming to the "otel.scope.name"
+	// semantic conventions. It represents the name of the instrumentation scope - (
+	// `InstrumentationScope.Name` in OTLP).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "io.opentelemetry.contrib.mongodb"
+	OTelScopeNameKey = attribute.Key("otel.scope.name")
+
+	// OTelScopeSchemaURLKey is the attribute Key conforming to the
+	// "otel.scope.schema_url" semantic conventions. It represents the schema URL of
+	// the instrumentation scope.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "https://opentelemetry.io/schemas/1.31.0"
+	OTelScopeSchemaURLKey = attribute.Key("otel.scope.schema_url")
+
+	// OTelScopeVersionKey is the attribute Key conforming to the
+	// "otel.scope.version" semantic conventions. It represents the version of the
+	// instrumentation scope - (`InstrumentationScope.Version` in OTLP).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "1.0.0"
+	OTelScopeVersionKey = attribute.Key("otel.scope.version")
+
+	// OTelSpanParentOriginKey is the attribute Key conforming to the
+	// "otel.span.parent.origin" semantic conventions. It represents the determines
+	// whether the span has a parent span, and if so,
+	// [whether it is a remote parent].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+	OTelSpanParentOriginKey = attribute.Key("otel.span.parent.origin")
+
+	// OTelSpanSamplingResultKey is the attribute Key conforming to the
+	// "otel.span.sampling_result" semantic conventions. It represents the result
+	// value of the sampler for this span.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	OTelSpanSamplingResultKey = attribute.Key("otel.span.sampling_result")
+
+	// OTelStatusCodeKey is the attribute Key conforming to the "otel.status_code"
+	// semantic conventions. It represents the name of the code, either "OK" or
+	// "ERROR". MUST NOT be set if the status code is UNSET.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples:
+	OTelStatusCodeKey = attribute.Key("otel.status_code")
+
+	// OTelStatusDescriptionKey is the attribute Key conforming to the
+	// "otel.status_description" semantic conventions. It represents the description
+	// of the Status if it has a value, otherwise not set.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "resource not found"
+	OTelStatusDescriptionKey = attribute.Key("otel.status_description")
+)
+
+// OTelComponentName returns an attribute KeyValue conforming to the
+// "otel.component.name" semantic conventions. It represents a name uniquely
+// identifying the instance of the OpenTelemetry component within its containing
+// SDK instance.
+func OTelComponentName(val string) attribute.KeyValue {
+	return OTelComponentNameKey.String(val)
+}
+
+// OTelEventName returns an attribute KeyValue conforming to the
+// "otel.event.name" semantic conventions. It represents the identifies the class
+// / type of event.
+func OTelEventName(val string) attribute.KeyValue {
+	return OTelEventNameKey.String(val)
+}
+
+// OTelScopeName returns an attribute KeyValue conforming to the
+// "otel.scope.name" semantic conventions. It represents the name of the
+// instrumentation scope - (`InstrumentationScope.Name` in OTLP).
+func OTelScopeName(val string) attribute.KeyValue {
+	return OTelScopeNameKey.String(val)
+}
+
+// OTelScopeSchemaURL returns an attribute KeyValue conforming to the
+// "otel.scope.schema_url" semantic conventions. It represents the schema URL of
+// the instrumentation scope.
+func OTelScopeSchemaURL(val string) attribute.KeyValue {
+	return OTelScopeSchemaURLKey.String(val)
+}
+
+// OTelScopeVersion returns an attribute KeyValue conforming to the
+// "otel.scope.version" semantic conventions. It represents the version of the
+// instrumentation scope - (`InstrumentationScope.Version` in OTLP).
+func OTelScopeVersion(val string) attribute.KeyValue {
+	return OTelScopeVersionKey.String(val)
+}
+
+// OTelStatusDescription returns an attribute KeyValue conforming to the
+// "otel.status_description" semantic conventions. It represents the description
+// of the Status if it has a value, otherwise not set.
+func OTelStatusDescription(val string) attribute.KeyValue {
+	return OTelStatusDescriptionKey.String(val)
+}
+
+// Enum values for otel.component.type
+var (
+	// The builtin SDK batching span processor
+	//
+	// Stability: development
+	OTelComponentTypeBatchingSpanProcessor = OTelComponentTypeKey.String("batching_span_processor")
+	// The builtin SDK simple span processor
+	//
+	// Stability: development
+	OTelComponentTypeSimpleSpanProcessor = OTelComponentTypeKey.String("simple_span_processor")
+	// The builtin SDK batching log record processor
+	//
+	// Stability: development
+	OTelComponentTypeBatchingLogProcessor = OTelComponentTypeKey.String("batching_log_processor")
+	// The builtin SDK simple log record processor
+	//
+	// Stability: development
+	OTelComponentTypeSimpleLogProcessor = OTelComponentTypeKey.String("simple_log_processor")
+	// OTLP span exporter over gRPC with protobuf serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpGRPCSpanExporter = OTelComponentTypeKey.String("otlp_grpc_span_exporter")
+	// OTLP span exporter over HTTP with protobuf serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpHTTPSpanExporter = OTelComponentTypeKey.String("otlp_http_span_exporter")
+	// OTLP span exporter over HTTP with JSON serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpHTTPJSONSpanExporter = OTelComponentTypeKey.String("otlp_http_json_span_exporter")
+	// Zipkin span exporter over HTTP
+	//
+	// Stability: development
+	OTelComponentTypeZipkinHTTPSpanExporter = OTelComponentTypeKey.String("zipkin_http_span_exporter")
+	// OTLP log record exporter over gRPC with protobuf serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpGRPCLogExporter = OTelComponentTypeKey.String("otlp_grpc_log_exporter")
+	// OTLP log record exporter over HTTP with protobuf serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpHTTPLogExporter = OTelComponentTypeKey.String("otlp_http_log_exporter")
+	// OTLP log record exporter over HTTP with JSON serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpHTTPJSONLogExporter = OTelComponentTypeKey.String("otlp_http_json_log_exporter")
+	// The builtin SDK periodically exporting metric reader
+	//
+	// Stability: development
+	OTelComponentTypePeriodicMetricReader = OTelComponentTypeKey.String("periodic_metric_reader")
+	// OTLP metric exporter over gRPC with protobuf serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpGRPCMetricExporter = OTelComponentTypeKey.String("otlp_grpc_metric_exporter")
+	// OTLP metric exporter over HTTP with protobuf serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpHTTPMetricExporter = OTelComponentTypeKey.String("otlp_http_metric_exporter")
+	// OTLP metric exporter over HTTP with JSON serialization
+	//
+	// Stability: development
+	OTelComponentTypeOtlpHTTPJSONMetricExporter = OTelComponentTypeKey.String("otlp_http_json_metric_exporter")
+	// Prometheus metric exporter over HTTP with the default text-based format
+	//
+	// Stability: development
+	OTelComponentTypePrometheusHTTPTextMetricExporter = OTelComponentTypeKey.String("prometheus_http_text_metric_exporter")
+)
+
+// Enum values for otel.span.parent.origin
+var (
+	// The span does not have a parent, it is a root span
+	// Stability: development
+	OTelSpanParentOriginNone = OTelSpanParentOriginKey.String("none")
+	// The span has a parent and the parent's span context [isRemote()] is false
+	// Stability: development
+	//
+	// [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+	OTelSpanParentOriginLocal = OTelSpanParentOriginKey.String("local")
+	// The span has a parent and the parent's span context [isRemote()] is true
+	// Stability: development
+	//
+	// [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+	OTelSpanParentOriginRemote = OTelSpanParentOriginKey.String("remote")
+)
+
+// Enum values for otel.span.sampling_result
+var (
+	// The span is not sampled and not recording
+	// Stability: development
+	OTelSpanSamplingResultDrop = OTelSpanSamplingResultKey.String("DROP")
+	// The span is not sampled, but recording
+	// Stability: development
+	OTelSpanSamplingResultRecordOnly = OTelSpanSamplingResultKey.String("RECORD_ONLY")
+	// The span is sampled and recording
+	// Stability: development
+	OTelSpanSamplingResultRecordAndSample = OTelSpanSamplingResultKey.String("RECORD_AND_SAMPLE")
+)
+
+// Enum values for otel.status_code
+var (
+	// The operation has been validated by an Application developer or Operator to
+	// have completed successfully.
+	// Stability: stable
+	OTelStatusCodeOk = OTelStatusCodeKey.String("OK")
+	// The operation contains an error.
+	// Stability: stable
+	OTelStatusCodeError = OTelStatusCodeKey.String("ERROR")
+)
+
+// Namespace: pprof
+const (
+	// PprofLocationIsFoldedKey is the attribute Key conforming to the
+	// "pprof.location.is_folded" semantic conventions. It represents the provides
+	// an indication that multiple symbols map to this location's address, for
+	// example due to identical code folding by the linker. In that case the line
+	// information represents one of the multiple symbols. This field must be
+	// recomputed when the symbolization state of the profile changes.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	PprofLocationIsFoldedKey = attribute.Key("pprof.location.is_folded")
+
+	// PprofMappingHasFilenamesKey is the attribute Key conforming to the
+	// "pprof.mapping.has_filenames" semantic conventions. It represents the
+	// indicates that there are filenames related to this mapping.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	PprofMappingHasFilenamesKey = attribute.Key("pprof.mapping.has_filenames")
+
+	// PprofMappingHasFunctionsKey is the attribute Key conforming to the
+	// "pprof.mapping.has_functions" semantic conventions. It represents the
+	// indicates that there are functions related to this mapping.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	PprofMappingHasFunctionsKey = attribute.Key("pprof.mapping.has_functions")
+
+	// PprofMappingHasInlineFramesKey is the attribute Key conforming to the
+	// "pprof.mapping.has_inline_frames" semantic conventions. It represents the
+	// indicates that there are inline frames related to this mapping.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	PprofMappingHasInlineFramesKey = attribute.Key("pprof.mapping.has_inline_frames")
+
+	// PprofMappingHasLineNumbersKey is the attribute Key conforming to the
+	// "pprof.mapping.has_line_numbers" semantic conventions. It represents the
+	// indicates that there are line numbers related to this mapping.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	PprofMappingHasLineNumbersKey = attribute.Key("pprof.mapping.has_line_numbers")
+
+	// PprofProfileCommentKey is the attribute Key conforming to the
+	// "pprof.profile.comment" semantic conventions. It represents the free-form
+	// text associated with the profile. This field should not be used to store any
+	// machine-readable information, it is only for human-friendly content.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "hello world", "bazinga"
+	PprofProfileCommentKey = attribute.Key("pprof.profile.comment")
+
+	// PprofProfileDocURLKey is the attribute Key conforming to the
+	// "pprof.profile.doc_url" semantic conventions. It represents the documentation
+	// link for this profile type.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "http://pprof.example.com/cpu-profile.html"
+	// Note: The URL must be absolute and may be missing if the profile was
+	// generated by code that did not supply a link
+	PprofProfileDocURLKey = attribute.Key("pprof.profile.doc_url")
+
+	// PprofProfileDropFramesKey is the attribute Key conforming to the
+	// "pprof.profile.drop_frames" semantic conventions. It represents the frames
+	// with Function.function_name fully matching the regexp will be dropped from
+	// the samples, along with their successors.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/foobar/"
+	PprofProfileDropFramesKey = attribute.Key("pprof.profile.drop_frames")
+
+	// PprofProfileKeepFramesKey is the attribute Key conforming to the
+	// "pprof.profile.keep_frames" semantic conventions. It represents the frames
+	// with Function.function_name fully matching the regexp will be kept, even if
+	// it matches drop_frames.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/bazinga/"
+	PprofProfileKeepFramesKey = attribute.Key("pprof.profile.keep_frames")
+
+	// PprofScopeDefaultSampleTypeKey is the attribute Key conforming to the
+	// "pprof.scope.default_sample_type" semantic conventions. It represents the
+	// records the pprof's default_sample_type in the original profile. Not set if
+	// the default sample type was missing.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cpu"
+	// Note: This attribute, if present, MUST be set at the scope level
+	// (resource_profiles[].scope_profiles[].scope.attributes[]).
+	PprofScopeDefaultSampleTypeKey = attribute.Key("pprof.scope.default_sample_type")
+
+	// PprofScopeSampleTypeOrderKey is the attribute Key conforming to the
+	// "pprof.scope.sample_type_order" semantic conventions. It represents the
+	// records the indexes of the sample types in the original profile.
+	//
+	// Type: int[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 3, 0, 1, 2
+	// Note: This attribute, if present, MUST be set at the scope level
+	// (resource_profiles[].scope_profiles[].scope.attributes[]).
+	PprofScopeSampleTypeOrderKey = attribute.Key("pprof.scope.sample_type_order")
+)
+
+// PprofLocationIsFolded returns an attribute KeyValue conforming to the
+// "pprof.location.is_folded" semantic conventions. It represents the provides an
+// indication that multiple symbols map to this location's address, for example
+// due to identical code folding by the linker. In that case the line information
+// represents one of the multiple symbols. This field must be recomputed when the
+// symbolization state of the profile changes.
+func PprofLocationIsFolded(val bool) attribute.KeyValue {
+	return PprofLocationIsFoldedKey.Bool(val)
+}
+
+// PprofMappingHasFilenames returns an attribute KeyValue conforming to the
+// "pprof.mapping.has_filenames" semantic conventions. It represents the
+// indicates that there are filenames related to this mapping.
+func PprofMappingHasFilenames(val bool) attribute.KeyValue {
+	return PprofMappingHasFilenamesKey.Bool(val)
+}
+
+// PprofMappingHasFunctions returns an attribute KeyValue conforming to the
+// "pprof.mapping.has_functions" semantic conventions. It represents the
+// indicates that there are functions related to this mapping.
+func PprofMappingHasFunctions(val bool) attribute.KeyValue {
+	return PprofMappingHasFunctionsKey.Bool(val)
+}
+
+// PprofMappingHasInlineFrames returns an attribute KeyValue conforming to the
+// "pprof.mapping.has_inline_frames" semantic conventions. It represents the
+// indicates that there are inline frames related to this mapping.
+func PprofMappingHasInlineFrames(val bool) attribute.KeyValue {
+	return PprofMappingHasInlineFramesKey.Bool(val)
+}
+
+// PprofMappingHasLineNumbers returns an attribute KeyValue conforming to the
+// "pprof.mapping.has_line_numbers" semantic conventions. It represents the
+// indicates that there are line numbers related to this mapping.
+func PprofMappingHasLineNumbers(val bool) attribute.KeyValue {
+	return PprofMappingHasLineNumbersKey.Bool(val)
+}
+
+// PprofProfileComment returns an attribute KeyValue conforming to the
+// "pprof.profile.comment" semantic conventions. It represents the free-form text
+// associated with the profile. This field should not be used to store any
+// machine-readable information, it is only for human-friendly content.
+func PprofProfileComment(val ...string) attribute.KeyValue {
+	return PprofProfileCommentKey.StringSlice(val)
+}
+
+// PprofProfileDocURL returns an attribute KeyValue conforming to the
+// "pprof.profile.doc_url" semantic conventions. It represents the documentation
+// link for this profile type.
+func PprofProfileDocURL(val string) attribute.KeyValue {
+	return PprofProfileDocURLKey.String(val)
+}
+
+// PprofProfileDropFrames returns an attribute KeyValue conforming to the
+// "pprof.profile.drop_frames" semantic conventions. It represents the frames
+// with Function.function_name fully matching the regexp will be dropped from the
+// samples, along with their successors.
+func PprofProfileDropFrames(val string) attribute.KeyValue {
+	return PprofProfileDropFramesKey.String(val)
+}
+
+// PprofProfileKeepFrames returns an attribute KeyValue conforming to the
+// "pprof.profile.keep_frames" semantic conventions. It represents the frames
+// with Function.function_name fully matching the regexp will be kept, even if it
+// matches drop_frames.
+func PprofProfileKeepFrames(val string) attribute.KeyValue {
+	return PprofProfileKeepFramesKey.String(val)
+}
+
+// PprofScopeDefaultSampleType returns an attribute KeyValue conforming to the
+// "pprof.scope.default_sample_type" semantic conventions. It represents the
+// records the pprof's default_sample_type in the original profile. Not set if
+// the default sample type was missing.
+func PprofScopeDefaultSampleType(val string) attribute.KeyValue {
+	return PprofScopeDefaultSampleTypeKey.String(val)
+}
+
+// PprofScopeSampleTypeOrder returns an attribute KeyValue conforming to the
+// "pprof.scope.sample_type_order" semantic conventions. It represents the
+// records the indexes of the sample types in the original profile.
+func PprofScopeSampleTypeOrder(val ...int) attribute.KeyValue {
+	return PprofScopeSampleTypeOrderKey.IntSlice(val)
+}
+
+// Namespace: process
+const (
+	// ProcessArgsCountKey is the attribute Key conforming to the
+	// "process.args_count" semantic conventions. It represents the length of the
+	// process.command_args array.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 4
+	// Note: This field can be useful for querying or performing bucket analysis on
+	// how many arguments were provided to start a process. More arguments may be an
+	// indication of suspicious activity.
+	ProcessArgsCountKey = attribute.Key("process.args_count")
+
+	// ProcessCommandKey is the attribute Key conforming to the "process.command"
+	// semantic conventions. It represents the command used to launch the process
+	// (i.e. the command name). On Linux based systems, can be set to the zeroth
+	// string in `proc/[pid]/cmdline`. On Windows, can be set to the first parameter
+	// extracted from `GetCommandLineW`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cmd/otelcol"
+	ProcessCommandKey = attribute.Key("process.command")
+
+	// ProcessCommandArgsKey is the attribute Key conforming to the
+	// "process.command_args" semantic conventions. It represents the all the
+	// command arguments (including the command/executable itself) as received by
+	// the process. On Linux-based systems (and some other Unixoid systems
+	// supporting procfs), can be set according to the list of null-delimited
+	// strings extracted from `proc/[pid]/cmdline`. For libc-based executables, this
+	// would be the full argv vector passed to `main`. SHOULD NOT be collected by
+	// default unless there is sanitization that excludes sensitive data.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cmd/otecol", "--config=config.yaml"
+	ProcessCommandArgsKey = attribute.Key("process.command_args")
+
+	// ProcessCommandLineKey is the attribute Key conforming to the
+	// "process.command_line" semantic conventions. It represents the full command
+	// used to launch the process as a single string representing the full command.
+	// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if
+	// you have to assemble it just for monitoring; use `process.command_args`
+	// instead. SHOULD NOT be collected by default unless there is sanitization that
+	// excludes sensitive data.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "C:\cmd\otecol --config="my directory\config.yaml""
+	ProcessCommandLineKey = attribute.Key("process.command_line")
+
+	// ProcessContextSwitchTypeKey is the attribute Key conforming to the
+	// "process.context_switch.type" semantic conventions. It represents the
+	// specifies whether the context switches for this data point were voluntary or
+	// involuntary.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	ProcessContextSwitchTypeKey = attribute.Key("process.context_switch.type")
+
+	// ProcessCreationTimeKey is the attribute Key conforming to the
+	// "process.creation.time" semantic conventions. It represents the date and time
+	// the process was created, in ISO 8601 format.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2023-11-21T09:25:34.853Z"
+	ProcessCreationTimeKey = attribute.Key("process.creation.time")
+
+	// ProcessExecutableBuildIDGNUKey is the attribute Key conforming to the
+	// "process.executable.build_id.gnu" semantic conventions. It represents the GNU
+	// build ID as found in the `.note.gnu.build-id` ELF section (hex string).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "c89b11207f6479603b0d49bf291c092c2b719293"
+	ProcessExecutableBuildIDGNUKey = attribute.Key("process.executable.build_id.gnu")
+
+	// ProcessExecutableBuildIDGoKey is the attribute Key conforming to the
+	// "process.executable.build_id.go" semantic conventions. It represents the Go
+	// build ID as retrieved by `go tool buildid <go executable>`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "foh3mEXu7BLZjsN9pOwG/kATcXlYVCDEFouRMQed_/WwRFB1hPo9LBkekthSPG/x8hMC8emW2cCjXD0_1aY"
+	ProcessExecutableBuildIDGoKey = attribute.Key("process.executable.build_id.go")
+
+	// ProcessExecutableBuildIDHtlhashKey is the attribute Key conforming to the
+	// "process.executable.build_id.htlhash" semantic conventions. It represents the
+	// profiling specific build ID for executables. See the OTel specification for
+	// Profiles for more information.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "600DCAFE4A110000F2BF38C493F5FB92"
+	ProcessExecutableBuildIDHtlhashKey = attribute.Key("process.executable.build_id.htlhash")
+
+	// ProcessExecutableNameKey is the attribute Key conforming to the
+	// "process.executable.name" semantic conventions. It represents the name of the
+	// process executable. On Linux based systems, this SHOULD be set to the base
+	// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to
+	// the base name of `GetProcessImageFileNameW`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "otelcol"
+	ProcessExecutableNameKey = attribute.Key("process.executable.name")
+
+	// ProcessExecutablePathKey is the attribute Key conforming to the
+	// "process.executable.path" semantic conventions. It represents the full path
+	// to the process executable. On Linux based systems, can be set to the target
+	// of `proc/[pid]/exe`. On Windows, can be set to the result of
+	// `GetProcessImageFileNameW`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/usr/bin/cmd/otelcol"
+	ProcessExecutablePathKey = attribute.Key("process.executable.path")
+
+	// ProcessExitCodeKey is the attribute Key conforming to the "process.exit.code"
+	// semantic conventions. It represents the exit code of the process.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 127
+	ProcessExitCodeKey = attribute.Key("process.exit.code")
+
+	// ProcessExitTimeKey is the attribute Key conforming to the "process.exit.time"
+	// semantic conventions. It represents the date and time the process exited, in
+	// ISO 8601 format.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2023-11-21T09:26:12.315Z"
+	ProcessExitTimeKey = attribute.Key("process.exit.time")
+
+	// ProcessGroupLeaderPIDKey is the attribute Key conforming to the
+	// "process.group_leader.pid" semantic conventions. It represents the PID of the
+	// process's group leader. This is also the process group ID (PGID) of the
+	// process.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 23
+	ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid")
+
+	// ProcessInteractiveKey is the attribute Key conforming to the
+	// "process.interactive" semantic conventions. It represents the whether the
+	// process is connected to an interactive shell.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	ProcessInteractiveKey = attribute.Key("process.interactive")
+
+	// ProcessLinuxCgroupKey is the attribute Key conforming to the
+	// "process.linux.cgroup" semantic conventions. It represents the control group
+	// associated with the process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1:name=systemd:/user.slice/user-1000.slice/session-3.scope",
+	// "0::/user.slice/user-1000.slice/user@1000.service/tmux-spawn-0267755b-4639-4a27-90ed-f19f88e53748.scope"
+	// Note: Control groups (cgroups) are a kernel feature used to organize and
+	// manage process resources. This attribute provides the path(s) to the
+	// cgroup(s) associated with the process, which should match the contents of the
+	// [/proc/[PID]/cgroup] file.
+	//
+	// [/proc/[PID]/cgroup]: https://man7.org/linux/man-pages/man7/cgroups.7.html
+	ProcessLinuxCgroupKey = attribute.Key("process.linux.cgroup")
+
+	// ProcessOwnerKey is the attribute Key conforming to the "process.owner"
+	// semantic conventions. It represents the username of the user that owns the
+	// process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "root"
+	ProcessOwnerKey = attribute.Key("process.owner")
+
+	// ProcessParentPIDKey is the attribute Key conforming to the
+	// "process.parent_pid" semantic conventions. It represents the parent Process
+	// identifier (PPID).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 111
+	ProcessParentPIDKey = attribute.Key("process.parent_pid")
+
+	// ProcessPIDKey is the attribute Key conforming to the "process.pid" semantic
+	// conventions. It represents the process identifier (PID).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1234
+	ProcessPIDKey = attribute.Key("process.pid")
+
+	// ProcessRealUserIDKey is the attribute Key conforming to the
+	// "process.real_user.id" semantic conventions. It represents the real user ID
+	// (RUID) of the process.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1000
+	ProcessRealUserIDKey = attribute.Key("process.real_user.id")
+
+	// ProcessRealUserNameKey is the attribute Key conforming to the
+	// "process.real_user.name" semantic conventions. It represents the username of
+	// the real user of the process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "operator"
+	ProcessRealUserNameKey = attribute.Key("process.real_user.name")
+
+	// ProcessRuntimeDescriptionKey is the attribute Key conforming to the
+	// "process.runtime.description" semantic conventions. It represents an
+	// additional description about the runtime of the process, for example a
+	// specific vendor customization of the runtime environment.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0
+	ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description")
+
+	// ProcessRuntimeNameKey is the attribute Key conforming to the
+	// "process.runtime.name" semantic conventions. It represents the name of the
+	// runtime of this process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "OpenJDK Runtime Environment"
+	ProcessRuntimeNameKey = attribute.Key("process.runtime.name")
+
+	// ProcessRuntimeVersionKey is the attribute Key conforming to the
+	// "process.runtime.version" semantic conventions. It represents the version of
+	// the runtime of this process, as returned by the runtime without modification.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 14.0.2
+	ProcessRuntimeVersionKey = attribute.Key("process.runtime.version")
+
+	// ProcessSavedUserIDKey is the attribute Key conforming to the
+	// "process.saved_user.id" semantic conventions. It represents the saved user ID
+	// (SUID) of the process.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1002
+	ProcessSavedUserIDKey = attribute.Key("process.saved_user.id")
+
+	// ProcessSavedUserNameKey is the attribute Key conforming to the
+	// "process.saved_user.name" semantic conventions. It represents the username of
+	// the saved user.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "operator"
+	ProcessSavedUserNameKey = attribute.Key("process.saved_user.name")
+
+	// ProcessSessionLeaderPIDKey is the attribute Key conforming to the
+	// "process.session_leader.pid" semantic conventions. It represents the PID of
+	// the process's session leader. This is also the session ID (SID) of the
+	// process.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 14
+	ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid")
+
+	// ProcessStateKey is the attribute Key conforming to the "process.state"
+	// semantic conventions. It represents the process state, e.g.,
+	// [Linux Process State Codes].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "running"
+	//
+	// [Linux Process State Codes]: https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES
+	ProcessStateKey = attribute.Key("process.state")
+
+	// ProcessTitleKey is the attribute Key conforming to the "process.title"
+	// semantic conventions. It represents the process title (proctitle).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cat /etc/hostname", "xfce4-session", "bash"
+	// Note: In many Unix-like systems, process title (proctitle), is the string
+	// that represents the name or command line of a running process, displayed by
+	// system monitoring tools like ps, top, and htop.
+	ProcessTitleKey = attribute.Key("process.title")
+
+	// ProcessUserIDKey is the attribute Key conforming to the "process.user.id"
+	// semantic conventions. It represents the effective user ID (EUID) of the
+	// process.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 1001
+	ProcessUserIDKey = attribute.Key("process.user.id")
+
+	// ProcessUserNameKey is the attribute Key conforming to the "process.user.name"
+	// semantic conventions. It represents the username of the effective user of the
+	// process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "root"
+	ProcessUserNameKey = attribute.Key("process.user.name")
+
+	// ProcessVpidKey is the attribute Key conforming to the "process.vpid" semantic
+	// conventions. It represents the virtual process identifier.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 12
+	// Note: The process ID within a PID namespace. This is not necessarily unique
+	// across all processes on the host but it is unique within the process
+	// namespace that the process exists within.
+	ProcessVpidKey = attribute.Key("process.vpid")
+
+	// ProcessWorkingDirectoryKey is the attribute Key conforming to the
+	// "process.working_directory" semantic conventions. It represents the working
+	// directory of the process.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/root"
+	ProcessWorkingDirectoryKey = attribute.Key("process.working_directory")
+)
+
+// ProcessArgsCount returns an attribute KeyValue conforming to the
+// "process.args_count" semantic conventions. It represents the length of the
+// process.command_args array.
+func ProcessArgsCount(val int) attribute.KeyValue {
+	return ProcessArgsCountKey.Int(val)
+}
+
+// ProcessCommand returns an attribute KeyValue conforming to the
+// "process.command" semantic conventions. It represents the command used to
+// launch the process (i.e. the command name). On Linux based systems, can be set
+// to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to the
+// first parameter extracted from `GetCommandLineW`.
+func ProcessCommand(val string) attribute.KeyValue {
+	return ProcessCommandKey.String(val)
+}
+
+// ProcessCommandArgs returns an attribute KeyValue conforming to the
+// "process.command_args" semantic conventions. It represents the all the command
+// arguments (including the command/executable itself) as received by the
+// process. On Linux-based systems (and some other Unixoid systems supporting
+// procfs), can be set according to the list of null-delimited strings extracted
+// from `proc/[pid]/cmdline`. For libc-based executables, this would be the full
+// argv vector passed to `main`. SHOULD NOT be collected by default unless there
+// is sanitization that excludes sensitive data.
+func ProcessCommandArgs(val ...string) attribute.KeyValue {
+	return ProcessCommandArgsKey.StringSlice(val)
+}
+
+// ProcessCommandLine returns an attribute KeyValue conforming to the
+// "process.command_line" semantic conventions. It represents the full command
+// used to launch the process as a single string representing the full command.
+// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if
+// you have to assemble it just for monitoring; use `process.command_args`
+// instead. SHOULD NOT be collected by default unless there is sanitization that
+// excludes sensitive data.
+func ProcessCommandLine(val string) attribute.KeyValue {
+	return ProcessCommandLineKey.String(val)
+}
+
+// ProcessCreationTime returns an attribute KeyValue conforming to the
+// "process.creation.time" semantic conventions. It represents the date and time
+// the process was created, in ISO 8601 format.
+func ProcessCreationTime(val string) attribute.KeyValue {
+	return ProcessCreationTimeKey.String(val)
+}
+
+// ProcessEnvironmentVariable returns an attribute KeyValue conforming to the
+// "process.environment_variable" semantic conventions. It represents the process
+// environment variables, `<key>` being the environment variable name, the value
+// being the environment variable value.
+func ProcessEnvironmentVariable(key string, val string) attribute.KeyValue {
+	return attribute.String("process.environment_variable."+key, val)
+}
+
+// ProcessExecutableBuildIDGNU returns an attribute KeyValue conforming to the
+// "process.executable.build_id.gnu" semantic conventions. It represents the GNU
+// build ID as found in the `.note.gnu.build-id` ELF section (hex string).
+func ProcessExecutableBuildIDGNU(val string) attribute.KeyValue {
+	return ProcessExecutableBuildIDGNUKey.String(val)
+}
+
+// ProcessExecutableBuildIDGo returns an attribute KeyValue conforming to the
+// "process.executable.build_id.go" semantic conventions. It represents the Go
+// build ID as retrieved by `go tool buildid <go executable>`.
+func ProcessExecutableBuildIDGo(val string) attribute.KeyValue {
+	return ProcessExecutableBuildIDGoKey.String(val)
+}
+
+// ProcessExecutableBuildIDHtlhash returns an attribute KeyValue conforming to
+// the "process.executable.build_id.htlhash" semantic conventions. It represents
+// the profiling specific build ID for executables. See the OTel specification
+// for Profiles for more information.
+func ProcessExecutableBuildIDHtlhash(val string) attribute.KeyValue {
+	return ProcessExecutableBuildIDHtlhashKey.String(val)
+}
+
+// ProcessExecutableName returns an attribute KeyValue conforming to the
+// "process.executable.name" semantic conventions. It represents the name of the
+// process executable. On Linux based systems, this SHOULD be set to the base
+// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to the
+// base name of `GetProcessImageFileNameW`.
+func ProcessExecutableName(val string) attribute.KeyValue {
+	return ProcessExecutableNameKey.String(val)
+}
+
+// ProcessExecutablePath returns an attribute KeyValue conforming to the
+// "process.executable.path" semantic conventions. It represents the full path to
+// the process executable. On Linux based systems, can be set to the target of
+// `proc/[pid]/exe`. On Windows, can be set to the result of
+// `GetProcessImageFileNameW`.
+func ProcessExecutablePath(val string) attribute.KeyValue {
+	return ProcessExecutablePathKey.String(val)
+}
+
+// ProcessExitCode returns an attribute KeyValue conforming to the
+// "process.exit.code" semantic conventions. It represents the exit code of the
+// process.
+func ProcessExitCode(val int) attribute.KeyValue {
+	return ProcessExitCodeKey.Int(val)
+}
+
+// ProcessExitTime returns an attribute KeyValue conforming to the
+// "process.exit.time" semantic conventions. It represents the date and time the
+// process exited, in ISO 8601 format.
+func ProcessExitTime(val string) attribute.KeyValue {
+	return ProcessExitTimeKey.String(val)
+}
+
+// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the
+// "process.group_leader.pid" semantic conventions. It represents the PID of the
+// process's group leader. This is also the process group ID (PGID) of the
+// process.
+func ProcessGroupLeaderPID(val int) attribute.KeyValue {
+	return ProcessGroupLeaderPIDKey.Int(val)
+}
+
+// ProcessInteractive returns an attribute KeyValue conforming to the
+// "process.interactive" semantic conventions. It represents the whether the
+// process is connected to an interactive shell.
+func ProcessInteractive(val bool) attribute.KeyValue {
+	return ProcessInteractiveKey.Bool(val)
+}
+
+// ProcessLinuxCgroup returns an attribute KeyValue conforming to the
+// "process.linux.cgroup" semantic conventions. It represents the control group
+// associated with the process.
+func ProcessLinuxCgroup(val string) attribute.KeyValue {
+	return ProcessLinuxCgroupKey.String(val)
+}
+
+// ProcessOwner returns an attribute KeyValue conforming to the "process.owner"
+// semantic conventions. It represents the username of the user that owns the
+// process.
+func ProcessOwner(val string) attribute.KeyValue {
+	return ProcessOwnerKey.String(val)
+}
+
+// ProcessParentPID returns an attribute KeyValue conforming to the
+// "process.parent_pid" semantic conventions. It represents the parent Process
+// identifier (PPID).
+func ProcessParentPID(val int) attribute.KeyValue {
+	return ProcessParentPIDKey.Int(val)
+}
+
+// ProcessPID returns an attribute KeyValue conforming to the "process.pid"
+// semantic conventions. It represents the process identifier (PID).
+func ProcessPID(val int) attribute.KeyValue {
+	return ProcessPIDKey.Int(val)
+}
+
+// ProcessRealUserID returns an attribute KeyValue conforming to the
+// "process.real_user.id" semantic conventions. It represents the real user ID
+// (RUID) of the process.
+func ProcessRealUserID(val int) attribute.KeyValue {
+	return ProcessRealUserIDKey.Int(val)
+}
+
+// ProcessRealUserName returns an attribute KeyValue conforming to the
+// "process.real_user.name" semantic conventions. It represents the username of
+// the real user of the process.
+func ProcessRealUserName(val string) attribute.KeyValue {
+	return ProcessRealUserNameKey.String(val)
+}
+
+// ProcessRuntimeDescription returns an attribute KeyValue conforming to the
+// "process.runtime.description" semantic conventions. It represents an
+// additional description about the runtime of the process, for example a
+// specific vendor customization of the runtime environment.
+func ProcessRuntimeDescription(val string) attribute.KeyValue {
+	return ProcessRuntimeDescriptionKey.String(val)
+}
+
+// ProcessRuntimeName returns an attribute KeyValue conforming to the
+// "process.runtime.name" semantic conventions. It represents the name of the
+// runtime of this process.
+func ProcessRuntimeName(val string) attribute.KeyValue {
+	return ProcessRuntimeNameKey.String(val)
+}
+
+// ProcessRuntimeVersion returns an attribute KeyValue conforming to the
+// "process.runtime.version" semantic conventions. It represents the version of
+// the runtime of this process, as returned by the runtime without modification.
+func ProcessRuntimeVersion(val string) attribute.KeyValue {
+	return ProcessRuntimeVersionKey.String(val)
+}
+
+// ProcessSavedUserID returns an attribute KeyValue conforming to the
+// "process.saved_user.id" semantic conventions. It represents the saved user ID
+// (SUID) of the process.
+func ProcessSavedUserID(val int) attribute.KeyValue {
+	return ProcessSavedUserIDKey.Int(val)
+}
+
+// ProcessSavedUserName returns an attribute KeyValue conforming to the
+// "process.saved_user.name" semantic conventions. It represents the username of
+// the saved user.
+func ProcessSavedUserName(val string) attribute.KeyValue {
+	return ProcessSavedUserNameKey.String(val)
+}
+
+// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the
+// "process.session_leader.pid" semantic conventions. It represents the PID of
+// the process's session leader. This is also the session ID (SID) of the
+// process.
+func ProcessSessionLeaderPID(val int) attribute.KeyValue {
+	return ProcessSessionLeaderPIDKey.Int(val)
+}
+
+// ProcessTitle returns an attribute KeyValue conforming to the "process.title"
+// semantic conventions. It represents the process title (proctitle).
+func ProcessTitle(val string) attribute.KeyValue {
+	return ProcessTitleKey.String(val)
+}
+
+// ProcessUserID returns an attribute KeyValue conforming to the
+// "process.user.id" semantic conventions. It represents the effective user ID
+// (EUID) of the process.
+func ProcessUserID(val int) attribute.KeyValue {
+	return ProcessUserIDKey.Int(val)
+}
+
+// ProcessUserName returns an attribute KeyValue conforming to the
+// "process.user.name" semantic conventions. It represents the username of the
+// effective user of the process.
+func ProcessUserName(val string) attribute.KeyValue {
+	return ProcessUserNameKey.String(val)
+}
+
+// ProcessVpid returns an attribute KeyValue conforming to the "process.vpid"
+// semantic conventions. It represents the virtual process identifier.
+func ProcessVpid(val int) attribute.KeyValue {
+	return ProcessVpidKey.Int(val)
+}
+
+// ProcessWorkingDirectory returns an attribute KeyValue conforming to the
+// "process.working_directory" semantic conventions. It represents the working
+// directory of the process.
+func ProcessWorkingDirectory(val string) attribute.KeyValue {
+	return ProcessWorkingDirectoryKey.String(val)
+}
+
+// Enum values for process.context_switch.type
+var (
+	// voluntary
+	// Stability: development
+	ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary")
+	// involuntary
+	// Stability: development
+	ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary")
+)
+
+// Enum values for process.state
+var (
+	// running
+	// Stability: development
+	ProcessStateRunning = ProcessStateKey.String("running")
+	// sleeping
+	// Stability: development
+	ProcessStateSleeping = ProcessStateKey.String("sleeping")
+	// stopped
+	// Stability: development
+	ProcessStateStopped = ProcessStateKey.String("stopped")
+	// defunct
+	// Stability: development
+	ProcessStateDefunct = ProcessStateKey.String("defunct")
+)
+
+// Namespace: profile
+const (
+	// ProfileFrameTypeKey is the attribute Key conforming to the
+	// "profile.frame.type" semantic conventions. It represents the describes the
+	// interpreter or compiler of a single frame.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "cpython"
+	ProfileFrameTypeKey = attribute.Key("profile.frame.type")
+)
+
+// Enum values for profile.frame.type
+var (
+	// [.NET]
+	//
+	// Stability: development
+	//
+	// [.NET]: https://wikipedia.org/wiki/.NET
+	ProfileFrameTypeDotnet = ProfileFrameTypeKey.String("dotnet")
+	// [JVM]
+	//
+	// Stability: development
+	//
+	// [JVM]: https://wikipedia.org/wiki/Java_virtual_machine
+	ProfileFrameTypeJVM = ProfileFrameTypeKey.String("jvm")
+	// [Kernel]
+	//
+	// Stability: development
+	//
+	// [Kernel]: https://wikipedia.org/wiki/Kernel_(operating_system)
+	ProfileFrameTypeKernel = ProfileFrameTypeKey.String("kernel")
+	// Can be one of but not limited to [C], [C++], [Go] or [Rust]. If possible, a
+	// more precise value MUST be used.
+	//
+	// Stability: development
+	//
+	// [C]: https://wikipedia.org/wiki/C_(programming_language)
+	// [C++]: https://wikipedia.org/wiki/C%2B%2B
+	// [Go]: https://wikipedia.org/wiki/Go_(programming_language)
+	// [Rust]: https://wikipedia.org/wiki/Rust_(programming_language)
+	ProfileFrameTypeNative = ProfileFrameTypeKey.String("native")
+	// [Perl]
+	//
+	// Stability: development
+	//
+	// [Perl]: https://wikipedia.org/wiki/Perl
+	ProfileFrameTypePerl = ProfileFrameTypeKey.String("perl")
+	// [PHP]
+	//
+	// Stability: development
+	//
+	// [PHP]: https://wikipedia.org/wiki/PHP
+	ProfileFrameTypePHP = ProfileFrameTypeKey.String("php")
+	// [Python]
+	//
+	// Stability: development
+	//
+	// [Python]: https://wikipedia.org/wiki/Python_(programming_language)
+	ProfileFrameTypeCpython = ProfileFrameTypeKey.String("cpython")
+	// [Ruby]
+	//
+	// Stability: development
+	//
+	// [Ruby]: https://wikipedia.org/wiki/Ruby_(programming_language)
+	ProfileFrameTypeRuby = ProfileFrameTypeKey.String("ruby")
+	// [V8JS]
+	//
+	// Stability: development
+	//
+	// [V8JS]: https://wikipedia.org/wiki/V8_(JavaScript_engine)
+	ProfileFrameTypeV8JS = ProfileFrameTypeKey.String("v8js")
+	// [Erlang]
+	//
+	// Stability: development
+	//
+	// [Erlang]: https://en.wikipedia.org/wiki/BEAM_(Erlang_virtual_machine)
+	ProfileFrameTypeBeam = ProfileFrameTypeKey.String("beam")
+	// [Go],
+	//
+	// Stability: development
+	//
+	// [Go]: https://wikipedia.org/wiki/Go_(programming_language)
+	ProfileFrameTypeGo = ProfileFrameTypeKey.String("go")
+	// [Rust]
+	//
+	// Stability: development
+	//
+	// [Rust]: https://wikipedia.org/wiki/Rust_(programming_language)
+	ProfileFrameTypeRust = ProfileFrameTypeKey.String("rust")
+)
+
+// Namespace: rpc
+const (
+	// RPCMethodKey is the attribute Key conforming to the "rpc.method" semantic
+	// conventions. It represents the fully-qualified logical name of the method
+	// from the RPC interface perspective.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "com.example.ExampleService/exampleMethod", "EchoService/Echo",
+	// "_OTHER"
+	// Note: The method name MAY have unbounded cardinality in edge or error cases.
+	//
+	// Some RPC frameworks or libraries provide a fixed set of recognized methods
+	// for client stubs and server implementations. Instrumentations for such
+	// frameworks MUST set this attribute to the original method name only
+	// when the method is recognized by the framework or library.
+	//
+	// When the method is not recognized, for example, when the server receives
+	// a request for a method that is not predefined on the server, or when
+	// instrumentation is not able to reliably detect if the method is predefined,
+	// the attribute MUST be set to `_OTHER`. In such cases, tracing
+	// instrumentations MUST also set `rpc.method_original` attribute to
+	// the original method value.
+	//
+	// If the RPC instrumentation could end up converting valid RPC methods to
+	// `_OTHER`, then it SHOULD provide a way to configure the list of recognized
+	// RPC methods.
+	//
+	// The `rpc.method` can be different from the name of any implementing
+	// method/function.
+	// The `code.function.name` attribute may be used to record the fully-qualified
+	// method actually executing the call on the server side, or the
+	// RPC client stub method on the client side.
+	RPCMethodKey = attribute.Key("rpc.method")
+
+	// RPCMethodOriginalKey is the attribute Key conforming to the
+	// "rpc.method_original" semantic conventions. It represents the original name
+	// of the method used by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "com.myservice.EchoService/catchAll",
+	// "com.myservice.EchoService/unknownMethod", "InvalidMethod"
+	RPCMethodOriginalKey = attribute.Key("rpc.method_original")
+
+	// RPCResponseStatusCodeKey is the attribute Key conforming to the
+	// "rpc.response.status_code" semantic conventions. It represents the status
+	// code of the RPC returned by the RPC server or generated by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples: "OK", "DEADLINE_EXCEEDED", "-32602"
+	// Note: Usually it represents an error code, but may also represent partial
+	// success, warning, or differentiate between various types of successful
+	// outcomes.
+	// Semantic conventions for individual RPC frameworks SHOULD document what
+	// `rpc.response.status_code` means in the context of that system and which
+	// values are considered to represent errors.
+	RPCResponseStatusCodeKey = attribute.Key("rpc.response.status_code")
+
+	// RPCSystemNameKey is the attribute Key conforming to the "rpc.system.name"
+	// semantic conventions. It represents the Remote Procedure Call (RPC) system.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Release_Candidate
+	//
+	// Examples:
+	// Note: The client and server RPC systems may differ for the same RPC
+	// interaction. For example, a client may use Apache Dubbo or Connect RPC to
+	// communicate with a server that uses gRPC since both protocols provide
+	// compatibility with gRPC.
+	RPCSystemNameKey = attribute.Key("rpc.system.name")
+)
+
+// RPCMethod returns an attribute KeyValue conforming to the "rpc.method"
+// semantic conventions. It represents the fully-qualified logical name of the
+// method from the RPC interface perspective.
+func RPCMethod(val string) attribute.KeyValue {
+	return RPCMethodKey.String(val)
+}
+
+// RPCMethodOriginal returns an attribute KeyValue conforming to the
+// "rpc.method_original" semantic conventions. It represents the original name of
+// the method used by the client.
+func RPCMethodOriginal(val string) attribute.KeyValue {
+	return RPCMethodOriginalKey.String(val)
+}
+
+// RPCRequestMetadata returns an attribute KeyValue conforming to the
+// "rpc.request.metadata" semantic conventions. It represents the RPC request
+// metadata, `<key>` being the normalized RPC metadata key (lowercase), the value
+// being the metadata values.
+func RPCRequestMetadata(key string, val ...string) attribute.KeyValue {
+	return attribute.StringSlice("rpc.request.metadata."+key, val)
+}
+
+// RPCResponseMetadata returns an attribute KeyValue conforming to the
+// "rpc.response.metadata" semantic conventions. It represents the RPC response
+// metadata, `<key>` being the normalized RPC metadata key (lowercase), the value
+// being the metadata values.
+func RPCResponseMetadata(key string, val ...string) attribute.KeyValue {
+	return attribute.StringSlice("rpc.response.metadata."+key, val)
+}
+
+// RPCResponseStatusCode returns an attribute KeyValue conforming to the
+// "rpc.response.status_code" semantic conventions. It represents the status code
+// of the RPC returned by the RPC server or generated by the client.
+func RPCResponseStatusCode(val string) attribute.KeyValue {
+	return RPCResponseStatusCodeKey.String(val)
+}
+
+// Enum values for rpc.system.name
+var (
+	// [gRPC]
+	// Stability: release_candidate
+	//
+	// [gRPC]: https://grpc.io/
+	RPCSystemNameGRPC = RPCSystemNameKey.String("grpc")
+	// [Apache Dubbo]
+	// Stability: release_candidate
+	//
+	// [Apache Dubbo]: https://dubbo.apache.org/
+	RPCSystemNameDubbo = RPCSystemNameKey.String("dubbo")
+	// [Connect RPC]
+	// Stability: development
+	//
+	// [Connect RPC]: https://connectrpc.com/
+	RPCSystemNameConnectrpc = RPCSystemNameKey.String("connectrpc")
+	// [JSON-RPC]
+	// Stability: development
+	//
+	// [JSON-RPC]: https://www.jsonrpc.org/
+	RPCSystemNameJSONRPC = RPCSystemNameKey.String("jsonrpc")
+)
+
+// Namespace: security_rule
+const (
+	// SecurityRuleCategoryKey is the attribute Key conforming to the
+	// "security_rule.category" semantic conventions. It represents a categorization
+	// value keyword used by the entity using the rule for detection of this event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Attempted Information Leak"
+	SecurityRuleCategoryKey = attribute.Key("security_rule.category")
+
+	// SecurityRuleDescriptionKey is the attribute Key conforming to the
+	// "security_rule.description" semantic conventions. It represents the
+	// description of the rule generating the event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Block requests to public DNS over HTTPS / TLS protocols"
+	SecurityRuleDescriptionKey = attribute.Key("security_rule.description")
+
+	// SecurityRuleLicenseKey is the attribute Key conforming to the
+	// "security_rule.license" semantic conventions. It represents the name of the
+	// license under which the rule used to generate this event is made available.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Apache 2.0"
+	SecurityRuleLicenseKey = attribute.Key("security_rule.license")
+
+	// SecurityRuleNameKey is the attribute Key conforming to the
+	// "security_rule.name" semantic conventions. It represents the name of the rule
+	// or signature generating the event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "BLOCK_DNS_over_TLS"
+	SecurityRuleNameKey = attribute.Key("security_rule.name")
+
+	// SecurityRuleReferenceKey is the attribute Key conforming to the
+	// "security_rule.reference" semantic conventions. It represents the reference
+	// URL to additional information about the rule used to generate this event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "https://en.wikipedia.org/wiki/DNS_over_TLS"
+	// Note: The URL can point to the vendor’s documentation about the rule. If
+	// that’s not available, it can also be a link to a more general page
+	// describing this type of alert.
+	SecurityRuleReferenceKey = attribute.Key("security_rule.reference")
+
+	// SecurityRuleRulesetNameKey is the attribute Key conforming to the
+	// "security_rule.ruleset.name" semantic conventions. It represents the name of
+	// the ruleset, policy, group, or parent category in which the rule used to
+	// generate this event is a member.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Standard_Protocol_Filters"
+	SecurityRuleRulesetNameKey = attribute.Key("security_rule.ruleset.name")
+
+	// SecurityRuleUUIDKey is the attribute Key conforming to the
+	// "security_rule.uuid" semantic conventions. It represents a rule ID that is
+	// unique within the scope of a set or group of agents, observers, or other
+	// entities using the rule for detection of this event.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "550e8400-e29b-41d4-a716-446655440000", "1100110011"
+	SecurityRuleUUIDKey = attribute.Key("security_rule.uuid")
+
+	// SecurityRuleVersionKey is the attribute Key conforming to the
+	// "security_rule.version" semantic conventions. It represents the version /
+	// revision of the rule being used for analysis.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1.0.0"
+	SecurityRuleVersionKey = attribute.Key("security_rule.version")
+)
+
+// SecurityRuleCategory returns an attribute KeyValue conforming to the
+// "security_rule.category" semantic conventions. It represents a categorization
+// value keyword used by the entity using the rule for detection of this event.
+func SecurityRuleCategory(val string) attribute.KeyValue {
+	return SecurityRuleCategoryKey.String(val)
+}
+
+// SecurityRuleDescription returns an attribute KeyValue conforming to the
+// "security_rule.description" semantic conventions. It represents the
+// description of the rule generating the event.
+func SecurityRuleDescription(val string) attribute.KeyValue {
+	return SecurityRuleDescriptionKey.String(val)
+}
+
+// SecurityRuleLicense returns an attribute KeyValue conforming to the
+// "security_rule.license" semantic conventions. It represents the name of the
+// license under which the rule used to generate this event is made available.
+func SecurityRuleLicense(val string) attribute.KeyValue {
+	return SecurityRuleLicenseKey.String(val)
+}
+
+// SecurityRuleName returns an attribute KeyValue conforming to the
+// "security_rule.name" semantic conventions. It represents the name of the rule
+// or signature generating the event.
+func SecurityRuleName(val string) attribute.KeyValue {
+	return SecurityRuleNameKey.String(val)
+}
+
+// SecurityRuleReference returns an attribute KeyValue conforming to the
+// "security_rule.reference" semantic conventions. It represents the reference
+// URL to additional information about the rule used to generate this event.
+func SecurityRuleReference(val string) attribute.KeyValue {
+	return SecurityRuleReferenceKey.String(val)
+}
+
+// SecurityRuleRulesetName returns an attribute KeyValue conforming to the
+// "security_rule.ruleset.name" semantic conventions. It represents the name of
+// the ruleset, policy, group, or parent category in which the rule used to
+// generate this event is a member.
+func SecurityRuleRulesetName(val string) attribute.KeyValue {
+	return SecurityRuleRulesetNameKey.String(val)
+}
+
+// SecurityRuleUUID returns an attribute KeyValue conforming to the
+// "security_rule.uuid" semantic conventions. It represents a rule ID that is
+// unique within the scope of a set or group of agents, observers, or other
+// entities using the rule for detection of this event.
+func SecurityRuleUUID(val string) attribute.KeyValue {
+	return SecurityRuleUUIDKey.String(val)
+}
+
+// SecurityRuleVersion returns an attribute KeyValue conforming to the
+// "security_rule.version" semantic conventions. It represents the version /
+// revision of the rule being used for analysis.
+func SecurityRuleVersion(val string) attribute.KeyValue {
+	return SecurityRuleVersionKey.String(val)
+}
+
+// Namespace: server
+const (
+	// ServerAddressKey is the attribute Key conforming to the "server.address"
+	// semantic conventions. It represents the server domain name if available
+	// without reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "example.com", "10.1.2.80", "/tmp/my.sock"
+	// Note: When observed from the client side, and when communicating through an
+	// intermediary, `server.address` SHOULD represent the server address behind any
+	// intermediaries, for example proxies, if it's available.
+	ServerAddressKey = attribute.Key("server.address")
+
+	// ServerPortKey is the attribute Key conforming to the "server.port" semantic
+	// conventions. It represents the server port number.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: 80, 8080, 443
+	// Note: When observed from the client side, and when communicating through an
+	// intermediary, `server.port` SHOULD represent the server port behind any
+	// intermediaries, for example proxies, if it's available.
+	ServerPortKey = attribute.Key("server.port")
+)
+
+// ServerAddress returns an attribute KeyValue conforming to the "server.address"
+// semantic conventions. It represents the server domain name if available
+// without reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func ServerAddress(val string) attribute.KeyValue {
+	return ServerAddressKey.String(val)
+}
+
+// ServerPort returns an attribute KeyValue conforming to the "server.port"
+// semantic conventions. It represents the server port number.
+func ServerPort(val int) attribute.KeyValue {
+	return ServerPortKey.Int(val)
+}
+
+// Namespace: service
+const (
+	// ServiceCriticalityKey is the attribute Key conforming to the
+	// "service.criticality" semantic conventions. It represents the operational
+	// criticality of the service.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "critical", "high", "medium", "low"
+	// Note: Application developers are encouraged to set `service.criticality` to
+	// express the operational importance of their services. Telemetry consumers MAY
+	// use this attribute to optimize telemetry collection or improve user
+	// experience.
+	ServiceCriticalityKey = attribute.Key("service.criticality")
+
+	// ServiceInstanceIDKey is the attribute Key conforming to the
+	// "service.instance.id" semantic conventions. It represents the string ID of
+	// the service instance.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "627cc493-f310-47de-96bd-71410b7dec09"
+	// Note: MUST be unique for each instance of the same
+	// `service.namespace,service.name` pair (in other words
+	// `service.namespace,service.name,service.instance.id` triplet MUST be globally
+	// unique). The ID helps to
+	// distinguish instances of the same service that exist at the same time (e.g.
+	// instances of a horizontally scaled
+	// service).
+	//
+	// Implementations, such as SDKs, are recommended to generate a random Version 1
+	// or Version 4 [RFC
+	// 4122] UUID, but are free to use an inherent unique ID as
+	// the source of
+	// this value if stability is desirable. In that case, the ID SHOULD be used as
+	// source of a UUID Version 5 and
+	// SHOULD use the following UUID as the namespace:
+	// `4d63009a-8d0f-11ee-aad7-4c796ed8e320`.
+	//
+	// UUIDs are typically recommended, as only an opaque value for the purposes of
+	// identifying a service instance is
+	// needed. Similar to what can be seen in the man page for the
+	// [`/etc/machine-id`] file, the underlying
+	// data, such as pod name and namespace should be treated as confidential, being
+	// the user's choice to expose it
+	// or not via another resource attribute.
+	//
+	// For applications running behind an application server (like unicorn), we do
+	// not recommend using one identifier
+	// for all processes participating in the application. Instead, it's recommended
+	// each division (e.g. a worker
+	// thread in unicorn) to have its own instance.id.
+	//
+	// It's not recommended for a Collector to set `service.instance.id` if it can't
+	// unambiguously determine the
+	// service instance that is generating that telemetry. For instance, creating an
+	// UUID based on `pod.name` will
+	// likely be wrong, as the Collector might not know from which container within
+	// that pod the telemetry originated.
+	// However, Collectors can set the `service.instance.id` if they can
+	// unambiguously determine the service instance
+	// for that telemetry. This is typically the case for scraping receivers, as
+	// they know the target address and
+	// port.
+	//
+	// [RFC
+	// 4122]: https://www.ietf.org/rfc/rfc4122.txt
+	// [`/etc/machine-id`]: https://www.freedesktop.org/software/systemd/man/latest/machine-id.html
+	ServiceInstanceIDKey = attribute.Key("service.instance.id")
+
+	// ServiceNameKey is the attribute Key conforming to the "service.name" semantic
+	// conventions. It represents the logical name of the service.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "shoppingcart"
+	// Note: MUST be the same for all instances of horizontally scaled services. If
+	// the value was not specified, SDKs MUST fallback to `unknown_service:`
+	// concatenated with [`process.executable.name`], e.g. `unknown_service:bash`.
+	// If `process.executable.name` is not available, the value MUST be set to
+	// `unknown_service`.
+	//
+	// [`process.executable.name`]: process.md
+	ServiceNameKey = attribute.Key("service.name")
+
+	// ServiceNamespaceKey is the attribute Key conforming to the
+	// "service.namespace" semantic conventions. It represents a namespace for
+	// `service.name`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "Shop"
+	// Note: A string value having a meaning that helps to distinguish a group of
+	// services, for example the team name that owns a group of services.
+	// `service.name` is expected to be unique within the same namespace. If
+	// `service.namespace` is not specified in the Resource then `service.name` is
+	// expected to be unique for all services that have no explicit namespace
+	// defined (so the empty/unspecified namespace is simply one more valid
+	// namespace). Zero-length namespace string is assumed equal to unspecified
+	// namespace.
+	ServiceNamespaceKey = attribute.Key("service.namespace")
+
+	// ServicePeerNameKey is the attribute Key conforming to the "service.peer.name"
+	// semantic conventions. It represents the logical name of the service on the
+	// other side of the connection. SHOULD be equal to the actual [`service.name`]
+	// resource attribute of the remote service if any.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "shoppingcart"
+	//
+	// [`service.name`]: /docs/resource/README.md#service
+	ServicePeerNameKey = attribute.Key("service.peer.name")
+
+	// ServicePeerNamespaceKey is the attribute Key conforming to the
+	// "service.peer.namespace" semantic conventions. It represents the logical
+	// namespace of the service on the other side of the connection. SHOULD be equal
+	// to the actual [`service.namespace`] resource attribute of the remote service
+	// if any.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Shop"
+	//
+	// [`service.namespace`]: /docs/resource/README.md#service
+	ServicePeerNamespaceKey = attribute.Key("service.peer.namespace")
+
+	// ServiceVersionKey is the attribute Key conforming to the "service.version"
+	// semantic conventions. It represents the version string of the service
+	// component. The format is not defined by these conventions.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "2.0.0", "a01dbef8a"
+	ServiceVersionKey = attribute.Key("service.version")
+)
+
+// ServiceInstanceID returns an attribute KeyValue conforming to the
+// "service.instance.id" semantic conventions. It represents the string ID of the
+// service instance.
+func ServiceInstanceID(val string) attribute.KeyValue {
+	return ServiceInstanceIDKey.String(val)
+}
+
+// ServiceName returns an attribute KeyValue conforming to the "service.name"
+// semantic conventions. It represents the logical name of the service.
+func ServiceName(val string) attribute.KeyValue {
+	return ServiceNameKey.String(val)
+}
+
+// ServiceNamespace returns an attribute KeyValue conforming to the
+// "service.namespace" semantic conventions. It represents a namespace for
+// `service.name`.
+func ServiceNamespace(val string) attribute.KeyValue {
+	return ServiceNamespaceKey.String(val)
+}
+
+// ServicePeerName returns an attribute KeyValue conforming to the
+// "service.peer.name" semantic conventions. It represents the logical name of
+// the service on the other side of the connection. SHOULD be equal to the actual
+// [`service.name`] resource attribute of the remote service if any.
+//
+// [`service.name`]: /docs/resource/README.md#service
+func ServicePeerName(val string) attribute.KeyValue {
+	return ServicePeerNameKey.String(val)
+}
+
+// ServicePeerNamespace returns an attribute KeyValue conforming to the
+// "service.peer.namespace" semantic conventions. It represents the logical
+// namespace of the service on the other side of the connection. SHOULD be equal
+// to the actual [`service.namespace`] resource attribute of the remote service
+// if any.
+//
+// [`service.namespace`]: /docs/resource/README.md#service
+func ServicePeerNamespace(val string) attribute.KeyValue {
+	return ServicePeerNamespaceKey.String(val)
+}
+
+// ServiceVersion returns an attribute KeyValue conforming to the
+// "service.version" semantic conventions. It represents the version string of
+// the service component. The format is not defined by these conventions.
+func ServiceVersion(val string) attribute.KeyValue {
+	return ServiceVersionKey.String(val)
+}
+
+// Enum values for service.criticality
+var (
+	// Service is business-critical; downtime directly impacts revenue, user
+	// experience, or core functionality.
+	//
+	// Stability: development
+	ServiceCriticalityCritical = ServiceCriticalityKey.String("critical")
+	// Service is important but has degradation tolerance or fallback mechanisms.
+	//
+	// Stability: development
+	ServiceCriticalityHigh = ServiceCriticalityKey.String("high")
+	// Service provides supplementary functionality; degradation has limited user
+	// impact.
+	//
+	// Stability: development
+	ServiceCriticalityMedium = ServiceCriticalityKey.String("medium")
+	// Service is non-essential to core operations; used for background tasks or
+	// internal tools.
+	//
+	// Stability: development
+	ServiceCriticalityLow = ServiceCriticalityKey.String("low")
+)
+
+// Namespace: session
+const (
+	// SessionIDKey is the attribute Key conforming to the "session.id" semantic
+	// conventions. It represents a unique id to identify a session.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 00112233-4455-6677-8899-aabbccddeeff
+	SessionIDKey = attribute.Key("session.id")
+
+	// SessionPreviousIDKey is the attribute Key conforming to the
+	// "session.previous_id" semantic conventions. It represents the previous
+	// `session.id` for this user, when known.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 00112233-4455-6677-8899-aabbccddeeff
+	SessionPreviousIDKey = attribute.Key("session.previous_id")
+)
+
+// SessionID returns an attribute KeyValue conforming to the "session.id"
+// semantic conventions. It represents a unique id to identify a session.
+func SessionID(val string) attribute.KeyValue {
+	return SessionIDKey.String(val)
+}
+
+// SessionPreviousID returns an attribute KeyValue conforming to the
+// "session.previous_id" semantic conventions. It represents the previous
+// `session.id` for this user, when known.
+func SessionPreviousID(val string) attribute.KeyValue {
+	return SessionPreviousIDKey.String(val)
+}
+
+// Namespace: signalr
+const (
+	// SignalRConnectionStatusKey is the attribute Key conforming to the
+	// "signalr.connection.status" semantic conventions. It represents the signalR
+	// HTTP connection closure status.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "app_shutdown", "timeout"
+	SignalRConnectionStatusKey = attribute.Key("signalr.connection.status")
+
+	// SignalRTransportKey is the attribute Key conforming to the
+	// "signalr.transport" semantic conventions. It represents the
+	// [SignalR transport type].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "web_sockets", "long_polling"
+	//
+	// [SignalR transport type]: https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md
+	SignalRTransportKey = attribute.Key("signalr.transport")
+)
+
+// Enum values for signalr.connection.status
+var (
+	// The connection was closed normally.
+	// Stability: stable
+	SignalRConnectionStatusNormalClosure = SignalRConnectionStatusKey.String("normal_closure")
+	// The connection was closed due to a timeout.
+	// Stability: stable
+	SignalRConnectionStatusTimeout = SignalRConnectionStatusKey.String("timeout")
+	// The connection was closed because the app is shutting down.
+	// Stability: stable
+	SignalRConnectionStatusAppShutdown = SignalRConnectionStatusKey.String("app_shutdown")
+)
+
+// Enum values for signalr.transport
+var (
+	// ServerSentEvents protocol
+	// Stability: stable
+	SignalRTransportServerSentEvents = SignalRTransportKey.String("server_sent_events")
+	// LongPolling protocol
+	// Stability: stable
+	SignalRTransportLongPolling = SignalRTransportKey.String("long_polling")
+	// WebSockets protocol
+	// Stability: stable
+	SignalRTransportWebSockets = SignalRTransportKey.String("web_sockets")
+)
+
+// Namespace: source
+const (
+	// SourceAddressKey is the attribute Key conforming to the "source.address"
+	// semantic conventions. It represents the source address - domain name if
+	// available without reverse DNS lookup; otherwise, IP address or Unix domain
+	// socket name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "source.example.com", "10.1.2.80", "/tmp/my.sock"
+	// Note: When observed from the destination side, and when communicating through
+	// an intermediary, `source.address` SHOULD represent the source address behind
+	// any intermediaries, for example proxies, if it's available.
+	SourceAddressKey = attribute.Key("source.address")
+
+	// SourcePortKey is the attribute Key conforming to the "source.port" semantic
+	// conventions. It represents the source port number.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 3389, 2888
+	SourcePortKey = attribute.Key("source.port")
+)
+
+// SourceAddress returns an attribute KeyValue conforming to the "source.address"
+// semantic conventions. It represents the source address - domain name if
+// available without reverse DNS lookup; otherwise, IP address or Unix domain
+// socket name.
+func SourceAddress(val string) attribute.KeyValue {
+	return SourceAddressKey.String(val)
+}
+
+// SourcePort returns an attribute KeyValue conforming to the "source.port"
+// semantic conventions. It represents the source port number.
+func SourcePort(val int) attribute.KeyValue {
+	return SourcePortKey.Int(val)
+}
+
+// Namespace: system
+const (
+	// SystemDeviceKey is the attribute Key conforming to the "system.device"
+	// semantic conventions. It represents the device identifier.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "(identifier)"
+	SystemDeviceKey = attribute.Key("system.device")
+
+	// SystemFilesystemModeKey is the attribute Key conforming to the
+	// "system.filesystem.mode" semantic conventions. It represents the filesystem
+	// mode.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "rw, ro"
+	SystemFilesystemModeKey = attribute.Key("system.filesystem.mode")
+
+	// SystemFilesystemMountpointKey is the attribute Key conforming to the
+	// "system.filesystem.mountpoint" semantic conventions. It represents the
+	// filesystem mount path.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/mnt/data"
+	SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint")
+
+	// SystemFilesystemStateKey is the attribute Key conforming to the
+	// "system.filesystem.state" semantic conventions. It represents the filesystem
+	// state.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "used"
+	SystemFilesystemStateKey = attribute.Key("system.filesystem.state")
+
+	// SystemFilesystemTypeKey is the attribute Key conforming to the
+	// "system.filesystem.type" semantic conventions. It represents the filesystem
+	// type.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ext4"
+	SystemFilesystemTypeKey = attribute.Key("system.filesystem.type")
+
+	// SystemMemoryLinuxSlabStateKey is the attribute Key conforming to the
+	// "system.memory.linux.slab.state" semantic conventions. It represents the
+	// Linux Slab memory state.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "reclaimable", "unreclaimable"
+	SystemMemoryLinuxSlabStateKey = attribute.Key("system.memory.linux.slab.state")
+
+	// SystemMemoryStateKey is the attribute Key conforming to the
+	// "system.memory.state" semantic conventions. It represents the memory state.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "free", "cached"
+	SystemMemoryStateKey = attribute.Key("system.memory.state")
+
+	// SystemPagingDirectionKey is the attribute Key conforming to the
+	// "system.paging.direction" semantic conventions. It represents the paging
+	// access direction.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "in"
+	SystemPagingDirectionKey = attribute.Key("system.paging.direction")
+
+	// SystemPagingFaultTypeKey is the attribute Key conforming to the
+	// "system.paging.fault.type" semantic conventions. It represents the paging
+	// fault type.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "minor"
+	SystemPagingFaultTypeKey = attribute.Key("system.paging.fault.type")
+
+	// SystemPagingStateKey is the attribute Key conforming to the
+	// "system.paging.state" semantic conventions. It represents the memory paging
+	// state.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "free"
+	SystemPagingStateKey = attribute.Key("system.paging.state")
+)
+
+// SystemDevice returns an attribute KeyValue conforming to the "system.device"
+// semantic conventions. It represents the device identifier.
+func SystemDevice(val string) attribute.KeyValue {
+	return SystemDeviceKey.String(val)
+}
+
+// SystemFilesystemMode returns an attribute KeyValue conforming to the
+// "system.filesystem.mode" semantic conventions. It represents the filesystem
+// mode.
+func SystemFilesystemMode(val string) attribute.KeyValue {
+	return SystemFilesystemModeKey.String(val)
+}
+
+// SystemFilesystemMountpoint returns an attribute KeyValue conforming to the
+// "system.filesystem.mountpoint" semantic conventions. It represents the
+// filesystem mount path.
+func SystemFilesystemMountpoint(val string) attribute.KeyValue {
+	return SystemFilesystemMountpointKey.String(val)
+}
+
+// Enum values for system.filesystem.state
+var (
+	// used
+	// Stability: development
+	SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used")
+	// free
+	// Stability: development
+	SystemFilesystemStateFree = SystemFilesystemStateKey.String("free")
+	// reserved
+	// Stability: development
+	SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved")
+)
+
+// Enum values for system.filesystem.type
+var (
+	// fat32
+	// Stability: development
+	SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32")
+	// exfat
+	// Stability: development
+	SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat")
+	// ntfs
+	// Stability: development
+	SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs")
+	// refs
+	// Stability: development
+	SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs")
+	// hfsplus
+	// Stability: development
+	SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus")
+	// ext4
+	// Stability: development
+	SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4")
+)
+
+// Enum values for system.memory.linux.slab.state
+var (
+	// reclaimable
+	// Stability: development
+	SystemMemoryLinuxSlabStateReclaimable = SystemMemoryLinuxSlabStateKey.String("reclaimable")
+	// unreclaimable
+	// Stability: development
+	SystemMemoryLinuxSlabStateUnreclaimable = SystemMemoryLinuxSlabStateKey.String("unreclaimable")
+)
+
+// Enum values for system.memory.state
+var (
+	// Actual used virtual memory in bytes.
+	// Stability: development
+	SystemMemoryStateUsed = SystemMemoryStateKey.String("used")
+	// free
+	// Stability: development
+	SystemMemoryStateFree = SystemMemoryStateKey.String("free")
+	// buffers
+	// Stability: development
+	SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers")
+	// cached
+	// Stability: development
+	SystemMemoryStateCached = SystemMemoryStateKey.String("cached")
+)
+
+// Enum values for system.paging.direction
+var (
+	// in
+	// Stability: development
+	SystemPagingDirectionIn = SystemPagingDirectionKey.String("in")
+	// out
+	// Stability: development
+	SystemPagingDirectionOut = SystemPagingDirectionKey.String("out")
+)
+
+// Enum values for system.paging.fault.type
+var (
+	// major
+	// Stability: development
+	SystemPagingFaultTypeMajor = SystemPagingFaultTypeKey.String("major")
+	// minor
+	// Stability: development
+	SystemPagingFaultTypeMinor = SystemPagingFaultTypeKey.String("minor")
+)
+
+// Enum values for system.paging.state
+var (
+	// used
+	// Stability: development
+	SystemPagingStateUsed = SystemPagingStateKey.String("used")
+	// free
+	// Stability: development
+	SystemPagingStateFree = SystemPagingStateKey.String("free")
+)
+
+// Namespace: telemetry
+const (
+	// TelemetryDistroNameKey is the attribute Key conforming to the
+	// "telemetry.distro.name" semantic conventions. It represents the name of the
+	// auto instrumentation agent or distribution, if used.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "parts-unlimited-java"
+	// Note: Official auto instrumentation agents and distributions SHOULD set the
+	// `telemetry.distro.name` attribute to
+	// a string starting with `opentelemetry-`, e.g.
+	// `opentelemetry-java-instrumentation`.
+	TelemetryDistroNameKey = attribute.Key("telemetry.distro.name")
+
+	// TelemetryDistroVersionKey is the attribute Key conforming to the
+	// "telemetry.distro.version" semantic conventions. It represents the version
+	// string of the auto instrumentation agent or distribution, if used.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1.2.3"
+	TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version")
+
+	// TelemetrySDKLanguageKey is the attribute Key conforming to the
+	// "telemetry.sdk.language" semantic conventions. It represents the language of
+	// the telemetry SDK.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples:
+	TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language")
+
+	// TelemetrySDKNameKey is the attribute Key conforming to the
+	// "telemetry.sdk.name" semantic conventions. It represents the name of the
+	// telemetry SDK as defined above.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "opentelemetry"
+	// Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute to
+	// `opentelemetry`.
+	// If another SDK, like a fork or a vendor-provided implementation, is used,
+	// this SDK MUST set the
+	// `telemetry.sdk.name` attribute to the fully-qualified class or module name of
+	// this SDK's main entry point
+	// or another suitable identifier depending on the language.
+	// The identifier `opentelemetry` is reserved and MUST NOT be used in this case.
+	// All custom identifiers SHOULD be stable across different versions of an
+	// implementation.
+	TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name")
+
+	// TelemetrySDKVersionKey is the attribute Key conforming to the
+	// "telemetry.sdk.version" semantic conventions. It represents the version
+	// string of the telemetry SDK.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "1.2.3"
+	TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version")
+)
+
+// TelemetryDistroName returns an attribute KeyValue conforming to the
+// "telemetry.distro.name" semantic conventions. It represents the name of the
+// auto instrumentation agent or distribution, if used.
+func TelemetryDistroName(val string) attribute.KeyValue {
+	return TelemetryDistroNameKey.String(val)
+}
+
+// TelemetryDistroVersion returns an attribute KeyValue conforming to the
+// "telemetry.distro.version" semantic conventions. It represents the version
+// string of the auto instrumentation agent or distribution, if used.
+func TelemetryDistroVersion(val string) attribute.KeyValue {
+	return TelemetryDistroVersionKey.String(val)
+}
+
+// TelemetrySDKName returns an attribute KeyValue conforming to the
+// "telemetry.sdk.name" semantic conventions. It represents the name of the
+// telemetry SDK as defined above.
+func TelemetrySDKName(val string) attribute.KeyValue {
+	return TelemetrySDKNameKey.String(val)
+}
+
+// TelemetrySDKVersion returns an attribute KeyValue conforming to the
+// "telemetry.sdk.version" semantic conventions. It represents the version string
+// of the telemetry SDK.
+func TelemetrySDKVersion(val string) attribute.KeyValue {
+	return TelemetrySDKVersionKey.String(val)
+}
+
+// Enum values for telemetry.sdk.language
+var (
+	// cpp
+	// Stability: stable
+	TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp")
+	// dotnet
+	// Stability: stable
+	TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet")
+	// erlang
+	// Stability: stable
+	TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang")
+	// go
+	// Stability: stable
+	TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go")
+	// java
+	// Stability: stable
+	TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java")
+	// nodejs
+	// Stability: stable
+	TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs")
+	// php
+	// Stability: stable
+	TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php")
+	// python
+	// Stability: stable
+	TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python")
+	// ruby
+	// Stability: stable
+	TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby")
+	// rust
+	// Stability: stable
+	TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust")
+	// swift
+	// Stability: stable
+	TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift")
+	// webjs
+	// Stability: stable
+	TelemetrySDKLanguageWebJS = TelemetrySDKLanguageKey.String("webjs")
+)
+
+// Namespace: test
+const (
+	// TestCaseNameKey is the attribute Key conforming to the "test.case.name"
+	// semantic conventions. It represents the fully qualified human readable name
+	// of the [test case].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "org.example.TestCase1.test1", "example/tests/TestCase1.test1",
+	// "ExampleTestCase1_test1"
+	//
+	// [test case]: https://wikipedia.org/wiki/Test_case
+	TestCaseNameKey = attribute.Key("test.case.name")
+
+	// TestCaseResultStatusKey is the attribute Key conforming to the
+	// "test.case.result.status" semantic conventions. It represents the status of
+	// the actual test case result from test execution.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "pass", "fail"
+	TestCaseResultStatusKey = attribute.Key("test.case.result.status")
+
+	// TestSuiteNameKey is the attribute Key conforming to the "test.suite.name"
+	// semantic conventions. It represents the human readable name of a [test suite]
+	// .
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "TestSuite1"
+	//
+	// [test suite]: https://wikipedia.org/wiki/Test_suite
+	TestSuiteNameKey = attribute.Key("test.suite.name")
+
+	// TestSuiteRunStatusKey is the attribute Key conforming to the
+	// "test.suite.run.status" semantic conventions. It represents the status of the
+	// test suite run.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "success", "failure", "skipped", "aborted", "timed_out",
+	// "in_progress"
+	TestSuiteRunStatusKey = attribute.Key("test.suite.run.status")
+)
+
+// TestCaseName returns an attribute KeyValue conforming to the "test.case.name"
+// semantic conventions. It represents the fully qualified human readable name of
+// the [test case].
+//
+// [test case]: https://wikipedia.org/wiki/Test_case
+func TestCaseName(val string) attribute.KeyValue {
+	return TestCaseNameKey.String(val)
+}
+
+// TestSuiteName returns an attribute KeyValue conforming to the
+// "test.suite.name" semantic conventions. It represents the human readable name
+// of a [test suite].
+//
+// [test suite]: https://wikipedia.org/wiki/Test_suite
+func TestSuiteName(val string) attribute.KeyValue {
+	return TestSuiteNameKey.String(val)
+}
+
+// Enum values for test.case.result.status
+var (
+	// pass
+	// Stability: development
+	TestCaseResultStatusPass = TestCaseResultStatusKey.String("pass")
+	// fail
+	// Stability: development
+	TestCaseResultStatusFail = TestCaseResultStatusKey.String("fail")
+)
+
+// Enum values for test.suite.run.status
+var (
+	// success
+	// Stability: development
+	TestSuiteRunStatusSuccess = TestSuiteRunStatusKey.String("success")
+	// failure
+	// Stability: development
+	TestSuiteRunStatusFailure = TestSuiteRunStatusKey.String("failure")
+	// skipped
+	// Stability: development
+	TestSuiteRunStatusSkipped = TestSuiteRunStatusKey.String("skipped")
+	// aborted
+	// Stability: development
+	TestSuiteRunStatusAborted = TestSuiteRunStatusKey.String("aborted")
+	// timed_out
+	// Stability: development
+	TestSuiteRunStatusTimedOut = TestSuiteRunStatusKey.String("timed_out")
+	// in_progress
+	// Stability: development
+	TestSuiteRunStatusInProgress = TestSuiteRunStatusKey.String("in_progress")
+)
+
+// Namespace: thread
+const (
+	// ThreadIDKey is the attribute Key conforming to the "thread.id" semantic
+	// conventions. It represents the current "managed" thread ID (as opposed to OS
+	// thread ID).
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Note:
+	// Examples of where the value can be extracted from:
+	//
+	// | Language or platform | Source |
+	// | --- | --- |
+	// | JVM | `Thread.currentThread().threadId()` |
+	// | .NET | `Thread.CurrentThread.ManagedThreadId` |
+	// | Python | `threading.current_thread().ident` |
+	// | Ruby | `Thread.current.object_id` |
+	// | C++ | `std::this_thread::get_id()` |
+	// | Erlang | `erlang:self()` |
+	ThreadIDKey = attribute.Key("thread.id")
+
+	// ThreadNameKey is the attribute Key conforming to the "thread.name" semantic
+	// conventions. It represents the current thread name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: main
+	// Note:
+	// Examples of where the value can be extracted from:
+	//
+	// | Language or platform | Source |
+	// | --- | --- |
+	// | JVM | `Thread.currentThread().getName()` |
+	// | .NET | `Thread.CurrentThread.Name` |
+	// | Python | `threading.current_thread().name` |
+	// | Ruby | `Thread.current.name` |
+	// | Erlang | `erlang:process_info(self(), registered_name)` |
+	ThreadNameKey = attribute.Key("thread.name")
+)
+
+// ThreadID returns an attribute KeyValue conforming to the "thread.id" semantic
+// conventions. It represents the current "managed" thread ID (as opposed to OS
+// thread ID).
+func ThreadID(val int) attribute.KeyValue {
+	return ThreadIDKey.Int(val)
+}
+
+// ThreadName returns an attribute KeyValue conforming to the "thread.name"
+// semantic conventions. It represents the current thread name.
+func ThreadName(val string) attribute.KeyValue {
+	return ThreadNameKey.String(val)
+}
+
+// Namespace: tls
+const (
+	// TLSCipherKey is the attribute Key conforming to the "tls.cipher" semantic
+	// conventions. It represents the string indicating the [cipher] used during the
+	// current connection.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "TLS_RSA_WITH_3DES_EDE_CBC_SHA",
+	// "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256"
+	// Note: The values allowed for `tls.cipher` MUST be one of the `Descriptions`
+	// of the [registered TLS Cipher Suits].
+	//
+	// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5
+	// [registered TLS Cipher Suits]: https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4
+	TLSCipherKey = attribute.Key("tls.cipher")
+
+	// TLSClientCertificateKey is the attribute Key conforming to the
+	// "tls.client.certificate" semantic conventions. It represents the PEM-encoded
+	// stand-alone certificate offered by the client. This is usually
+	// mutually-exclusive of `client.certificate_chain` since this value also exists
+	// in that list.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "MII..."
+	TLSClientCertificateKey = attribute.Key("tls.client.certificate")
+
+	// TLSClientCertificateChainKey is the attribute Key conforming to the
+	// "tls.client.certificate_chain" semantic conventions. It represents the array
+	// of PEM-encoded certificates that make up the certificate chain offered by the
+	// client. This is usually mutually-exclusive of `client.certificate` since that
+	// value should be the first certificate in the chain.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "MII...", "MI..."
+	TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain")
+
+	// TLSClientHashMd5Key is the attribute Key conforming to the
+	// "tls.client.hash.md5" semantic conventions. It represents the certificate
+	// fingerprint using the MD5 digest of DER-encoded version of certificate
+	// offered by the client. For consistency with other hash values, this value
+	// should be formatted as an uppercase hash.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC"
+	TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5")
+
+	// TLSClientHashSha1Key is the attribute Key conforming to the
+	// "tls.client.hash.sha1" semantic conventions. It represents the certificate
+	// fingerprint using the SHA1 digest of DER-encoded version of certificate
+	// offered by the client. For consistency with other hash values, this value
+	// should be formatted as an uppercase hash.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A"
+	TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1")
+
+	// TLSClientHashSha256Key is the attribute Key conforming to the
+	// "tls.client.hash.sha256" semantic conventions. It represents the certificate
+	// fingerprint using the SHA256 digest of DER-encoded version of certificate
+	// offered by the client. For consistency with other hash values, this value
+	// should be formatted as an uppercase hash.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0"
+	TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256")
+
+	// TLSClientIssuerKey is the attribute Key conforming to the "tls.client.issuer"
+	// semantic conventions. It represents the distinguished name of [subject] of
+	// the issuer of the x.509 certificate presented by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com"
+	//
+	// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
+	TLSClientIssuerKey = attribute.Key("tls.client.issuer")
+
+	// TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3"
+	// semantic conventions. It represents a hash that identifies clients based on
+	// how they perform an SSL/TLS handshake.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "d4e5b18d6b55c71272893221c96ba240"
+	TLSClientJa3Key = attribute.Key("tls.client.ja3")
+
+	// TLSClientNotAfterKey is the attribute Key conforming to the
+	// "tls.client.not_after" semantic conventions. It represents the date/Time
+	// indicating when client certificate is no longer considered valid.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021-01-01T00:00:00.000Z"
+	TLSClientNotAfterKey = attribute.Key("tls.client.not_after")
+
+	// TLSClientNotBeforeKey is the attribute Key conforming to the
+	// "tls.client.not_before" semantic conventions. It represents the date/Time
+	// indicating when client certificate is first considered valid.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1970-01-01T00:00:00.000Z"
+	TLSClientNotBeforeKey = attribute.Key("tls.client.not_before")
+
+	// TLSClientSubjectKey is the attribute Key conforming to the
+	// "tls.client.subject" semantic conventions. It represents the distinguished
+	// name of subject of the x.509 certificate presented by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CN=myclient, OU=Documentation Team, DC=example, DC=com"
+	TLSClientSubjectKey = attribute.Key("tls.client.subject")
+
+	// TLSClientSupportedCiphersKey is the attribute Key conforming to the
+	// "tls.client.supported_ciphers" semantic conventions. It represents the array
+	// of ciphers offered by the client during the client hello.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384",
+	// "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384"
+	TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers")
+
+	// TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic
+	// conventions. It represents the string indicating the curve used for the given
+	// cipher, when applicable.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "secp256r1"
+	TLSCurveKey = attribute.Key("tls.curve")
+
+	// TLSEstablishedKey is the attribute Key conforming to the "tls.established"
+	// semantic conventions. It represents the boolean flag indicating if the TLS
+	// negotiation was successful and transitioned to an encrypted tunnel.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: true
+	TLSEstablishedKey = attribute.Key("tls.established")
+
+	// TLSNextProtocolKey is the attribute Key conforming to the "tls.next_protocol"
+	// semantic conventions. It represents the string indicating the protocol being
+	// tunneled. Per the values in the [IANA registry], this string should be lower
+	// case.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "http/1.1"
+	//
+	// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids
+	TLSNextProtocolKey = attribute.Key("tls.next_protocol")
+
+	// TLSProtocolNameKey is the attribute Key conforming to the "tls.protocol.name"
+	// semantic conventions. It represents the normalized lowercase protocol name
+	// parsed from original string of the negotiated [SSL/TLS protocol version].
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	//
+	// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values
+	TLSProtocolNameKey = attribute.Key("tls.protocol.name")
+
+	// TLSProtocolVersionKey is the attribute Key conforming to the
+	// "tls.protocol.version" semantic conventions. It represents the numeric part
+	// of the version parsed from the original string of the negotiated
+	// [SSL/TLS protocol version].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1.2", "3"
+	//
+	// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values
+	TLSProtocolVersionKey = attribute.Key("tls.protocol.version")
+
+	// TLSResumedKey is the attribute Key conforming to the "tls.resumed" semantic
+	// conventions. It represents the boolean flag indicating if this TLS connection
+	// was resumed from an existing TLS negotiation.
+	//
+	// Type: boolean
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: true
+	TLSResumedKey = attribute.Key("tls.resumed")
+
+	// TLSServerCertificateKey is the attribute Key conforming to the
+	// "tls.server.certificate" semantic conventions. It represents the PEM-encoded
+	// stand-alone certificate offered by the server. This is usually
+	// mutually-exclusive of `server.certificate_chain` since this value also exists
+	// in that list.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "MII..."
+	TLSServerCertificateKey = attribute.Key("tls.server.certificate")
+
+	// TLSServerCertificateChainKey is the attribute Key conforming to the
+	// "tls.server.certificate_chain" semantic conventions. It represents the array
+	// of PEM-encoded certificates that make up the certificate chain offered by the
+	// server. This is usually mutually-exclusive of `server.certificate` since that
+	// value should be the first certificate in the chain.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "MII...", "MI..."
+	TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain")
+
+	// TLSServerHashMd5Key is the attribute Key conforming to the
+	// "tls.server.hash.md5" semantic conventions. It represents the certificate
+	// fingerprint using the MD5 digest of DER-encoded version of certificate
+	// offered by the server. For consistency with other hash values, this value
+	// should be formatted as an uppercase hash.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC"
+	TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5")
+
+	// TLSServerHashSha1Key is the attribute Key conforming to the
+	// "tls.server.hash.sha1" semantic conventions. It represents the certificate
+	// fingerprint using the SHA1 digest of DER-encoded version of certificate
+	// offered by the server. For consistency with other hash values, this value
+	// should be formatted as an uppercase hash.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A"
+	TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1")
+
+	// TLSServerHashSha256Key is the attribute Key conforming to the
+	// "tls.server.hash.sha256" semantic conventions. It represents the certificate
+	// fingerprint using the SHA256 digest of DER-encoded version of certificate
+	// offered by the server. For consistency with other hash values, this value
+	// should be formatted as an uppercase hash.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0"
+	TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256")
+
+	// TLSServerIssuerKey is the attribute Key conforming to the "tls.server.issuer"
+	// semantic conventions. It represents the distinguished name of [subject] of
+	// the issuer of the x.509 certificate presented by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com"
+	//
+	// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
+	TLSServerIssuerKey = attribute.Key("tls.server.issuer")
+
+	// TLSServerJa3sKey is the attribute Key conforming to the "tls.server.ja3s"
+	// semantic conventions. It represents a hash that identifies servers based on
+	// how they perform an SSL/TLS handshake.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "d4e5b18d6b55c71272893221c96ba240"
+	TLSServerJa3sKey = attribute.Key("tls.server.ja3s")
+
+	// TLSServerNotAfterKey is the attribute Key conforming to the
+	// "tls.server.not_after" semantic conventions. It represents the date/Time
+	// indicating when server certificate is no longer considered valid.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "2021-01-01T00:00:00.000Z"
+	TLSServerNotAfterKey = attribute.Key("tls.server.not_after")
+
+	// TLSServerNotBeforeKey is the attribute Key conforming to the
+	// "tls.server.not_before" semantic conventions. It represents the date/Time
+	// indicating when server certificate is first considered valid.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "1970-01-01T00:00:00.000Z"
+	TLSServerNotBeforeKey = attribute.Key("tls.server.not_before")
+
+	// TLSServerSubjectKey is the attribute Key conforming to the
+	// "tls.server.subject" semantic conventions. It represents the distinguished
+	// name of subject of the x.509 certificate presented by the server.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "CN=myserver, OU=Documentation Team, DC=example, DC=com"
+	TLSServerSubjectKey = attribute.Key("tls.server.subject")
+)
+
+// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher"
+// semantic conventions. It represents the string indicating the [cipher] used
+// during the current connection.
+//
+// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5
+func TLSCipher(val string) attribute.KeyValue {
+	return TLSCipherKey.String(val)
+}
+
+// TLSClientCertificate returns an attribute KeyValue conforming to the
+// "tls.client.certificate" semantic conventions. It represents the PEM-encoded
+// stand-alone certificate offered by the client. This is usually
+// mutually-exclusive of `client.certificate_chain` since this value also exists
+// in that list.
+func TLSClientCertificate(val string) attribute.KeyValue {
+	return TLSClientCertificateKey.String(val)
+}
+
+// TLSClientCertificateChain returns an attribute KeyValue conforming to the
+// "tls.client.certificate_chain" semantic conventions. It represents the array
+// of PEM-encoded certificates that make up the certificate chain offered by the
+// client. This is usually mutually-exclusive of `client.certificate` since that
+// value should be the first certificate in the chain.
+func TLSClientCertificateChain(val ...string) attribute.KeyValue {
+	return TLSClientCertificateChainKey.StringSlice(val)
+}
+
+// TLSClientHashMd5 returns an attribute KeyValue conforming to the
+// "tls.client.hash.md5" semantic conventions. It represents the certificate
+// fingerprint using the MD5 digest of DER-encoded version of certificate offered
+// by the client. For consistency with other hash values, this value should be
+// formatted as an uppercase hash.
+func TLSClientHashMd5(val string) attribute.KeyValue {
+	return TLSClientHashMd5Key.String(val)
+}
+
+// TLSClientHashSha1 returns an attribute KeyValue conforming to the
+// "tls.client.hash.sha1" semantic conventions. It represents the certificate
+// fingerprint using the SHA1 digest of DER-encoded version of certificate
+// offered by the client. For consistency with other hash values, this value
+// should be formatted as an uppercase hash.
+func TLSClientHashSha1(val string) attribute.KeyValue {
+	return TLSClientHashSha1Key.String(val)
+}
+
+// TLSClientHashSha256 returns an attribute KeyValue conforming to the
+// "tls.client.hash.sha256" semantic conventions. It represents the certificate
+// fingerprint using the SHA256 digest of DER-encoded version of certificate
+// offered by the client. For consistency with other hash values, this value
+// should be formatted as an uppercase hash.
+func TLSClientHashSha256(val string) attribute.KeyValue {
+	return TLSClientHashSha256Key.String(val)
+}
+
+// TLSClientIssuer returns an attribute KeyValue conforming to the
+// "tls.client.issuer" semantic conventions. It represents the distinguished name
+// of [subject] of the issuer of the x.509 certificate presented by the client.
+//
+// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
+func TLSClientIssuer(val string) attribute.KeyValue {
+	return TLSClientIssuerKey.String(val)
+}
+
+// TLSClientJa3 returns an attribute KeyValue conforming to the "tls.client.ja3"
+// semantic conventions. It represents a hash that identifies clients based on
+// how they perform an SSL/TLS handshake.
+func TLSClientJa3(val string) attribute.KeyValue {
+	return TLSClientJa3Key.String(val)
+}
+
+// TLSClientNotAfter returns an attribute KeyValue conforming to the
+// "tls.client.not_after" semantic conventions. It represents the date/Time
+// indicating when client certificate is no longer considered valid.
+func TLSClientNotAfter(val string) attribute.KeyValue {
+	return TLSClientNotAfterKey.String(val)
+}
+
+// TLSClientNotBefore returns an attribute KeyValue conforming to the
+// "tls.client.not_before" semantic conventions. It represents the date/Time
+// indicating when client certificate is first considered valid.
+func TLSClientNotBefore(val string) attribute.KeyValue {
+	return TLSClientNotBeforeKey.String(val)
+}
+
+// TLSClientSubject returns an attribute KeyValue conforming to the
+// "tls.client.subject" semantic conventions. It represents the distinguished
+// name of subject of the x.509 certificate presented by the client.
+func TLSClientSubject(val string) attribute.KeyValue {
+	return TLSClientSubjectKey.String(val)
+}
+
+// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the
+// "tls.client.supported_ciphers" semantic conventions. It represents the array
+// of ciphers offered by the client during the client hello.
+func TLSClientSupportedCiphers(val ...string) attribute.KeyValue {
+	return TLSClientSupportedCiphersKey.StringSlice(val)
+}
+
+// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" semantic
+// conventions. It represents the string indicating the curve used for the given
+// cipher, when applicable.
+func TLSCurve(val string) attribute.KeyValue {
+	return TLSCurveKey.String(val)
+}
+
+// TLSEstablished returns an attribute KeyValue conforming to the
+// "tls.established" semantic conventions. It represents the boolean flag
+// indicating if the TLS negotiation was successful and transitioned to an
+// encrypted tunnel.
+func TLSEstablished(val bool) attribute.KeyValue {
+	return TLSEstablishedKey.Bool(val)
+}
+
+// TLSNextProtocol returns an attribute KeyValue conforming to the
+// "tls.next_protocol" semantic conventions. It represents the string indicating
+// the protocol being tunneled. Per the values in the [IANA registry], this
+// string should be lower case.
+//
+// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids
+func TLSNextProtocol(val string) attribute.KeyValue {
+	return TLSNextProtocolKey.String(val)
+}
+
+// TLSProtocolVersion returns an attribute KeyValue conforming to the
+// "tls.protocol.version" semantic conventions. It represents the numeric part of
+// the version parsed from the original string of the negotiated
+// [SSL/TLS protocol version].
+//
+// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values
+func TLSProtocolVersion(val string) attribute.KeyValue {
+	return TLSProtocolVersionKey.String(val)
+}
+
+// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed"
+// semantic conventions. It represents the boolean flag indicating if this TLS
+// connection was resumed from an existing TLS negotiation.
+func TLSResumed(val bool) attribute.KeyValue {
+	return TLSResumedKey.Bool(val)
+}
+
+// TLSServerCertificate returns an attribute KeyValue conforming to the
+// "tls.server.certificate" semantic conventions. It represents the PEM-encoded
+// stand-alone certificate offered by the server. This is usually
+// mutually-exclusive of `server.certificate_chain` since this value also exists
+// in that list.
+func TLSServerCertificate(val string) attribute.KeyValue {
+	return TLSServerCertificateKey.String(val)
+}
+
+// TLSServerCertificateChain returns an attribute KeyValue conforming to the
+// "tls.server.certificate_chain" semantic conventions. It represents the array
+// of PEM-encoded certificates that make up the certificate chain offered by the
+// server. This is usually mutually-exclusive of `server.certificate` since that
+// value should be the first certificate in the chain.
+func TLSServerCertificateChain(val ...string) attribute.KeyValue {
+	return TLSServerCertificateChainKey.StringSlice(val)
+}
+
+// TLSServerHashMd5 returns an attribute KeyValue conforming to the
+// "tls.server.hash.md5" semantic conventions. It represents the certificate
+// fingerprint using the MD5 digest of DER-encoded version of certificate offered
+// by the server. For consistency with other hash values, this value should be
+// formatted as an uppercase hash.
+func TLSServerHashMd5(val string) attribute.KeyValue {
+	return TLSServerHashMd5Key.String(val)
+}
+
+// TLSServerHashSha1 returns an attribute KeyValue conforming to the
+// "tls.server.hash.sha1" semantic conventions. It represents the certificate
+// fingerprint using the SHA1 digest of DER-encoded version of certificate
+// offered by the server. For consistency with other hash values, this value
+// should be formatted as an uppercase hash.
+func TLSServerHashSha1(val string) attribute.KeyValue {
+	return TLSServerHashSha1Key.String(val)
+}
+
+// TLSServerHashSha256 returns an attribute KeyValue conforming to the
+// "tls.server.hash.sha256" semantic conventions. It represents the certificate
+// fingerprint using the SHA256 digest of DER-encoded version of certificate
+// offered by the server. For consistency with other hash values, this value
+// should be formatted as an uppercase hash.
+func TLSServerHashSha256(val string) attribute.KeyValue {
+	return TLSServerHashSha256Key.String(val)
+}
+
+// TLSServerIssuer returns an attribute KeyValue conforming to the
+// "tls.server.issuer" semantic conventions. It represents the distinguished name
+// of [subject] of the issuer of the x.509 certificate presented by the client.
+//
+// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6
+func TLSServerIssuer(val string) attribute.KeyValue {
+	return TLSServerIssuerKey.String(val)
+}
+
+// TLSServerJa3s returns an attribute KeyValue conforming to the
+// "tls.server.ja3s" semantic conventions. It represents a hash that identifies
+// servers based on how they perform an SSL/TLS handshake.
+func TLSServerJa3s(val string) attribute.KeyValue {
+	return TLSServerJa3sKey.String(val)
+}
+
+// TLSServerNotAfter returns an attribute KeyValue conforming to the
+// "tls.server.not_after" semantic conventions. It represents the date/Time
+// indicating when server certificate is no longer considered valid.
+func TLSServerNotAfter(val string) attribute.KeyValue {
+	return TLSServerNotAfterKey.String(val)
+}
+
+// TLSServerNotBefore returns an attribute KeyValue conforming to the
+// "tls.server.not_before" semantic conventions. It represents the date/Time
+// indicating when server certificate is first considered valid.
+func TLSServerNotBefore(val string) attribute.KeyValue {
+	return TLSServerNotBeforeKey.String(val)
+}
+
+// TLSServerSubject returns an attribute KeyValue conforming to the
+// "tls.server.subject" semantic conventions. It represents the distinguished
+// name of subject of the x.509 certificate presented by the server.
+func TLSServerSubject(val string) attribute.KeyValue {
+	return TLSServerSubjectKey.String(val)
+}
+
+// Enum values for tls.protocol.name
+var (
+	// ssl
+	// Stability: development
+	TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl")
+	// tls
+	// Stability: development
+	TLSProtocolNameTLS = TLSProtocolNameKey.String("tls")
+)
+
+// Namespace: url
+const (
+	// URLDomainKey is the attribute Key conforming to the "url.domain" semantic
+	// conventions. It represents the domain extracted from the `url.full`, such as
+	// "opentelemetry.io".
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "www.foo.bar", "opentelemetry.io", "3.12.167.2",
+	// "[1080:0:0:0:8:800:200C:417A]"
+	// Note: In some cases a URL may refer to an IP and/or port directly, without a
+	// domain name. In this case, the IP address would go to the domain field. If
+	// the URL contains a [literal IPv6 address] enclosed by `[` and `]`, the `[`
+	// and `]` characters should also be captured in the domain field.
+	//
+	// [literal IPv6 address]: https://www.rfc-editor.org/rfc/rfc2732#section-2
+	URLDomainKey = attribute.Key("url.domain")
+
+	// URLExtensionKey is the attribute Key conforming to the "url.extension"
+	// semantic conventions. It represents the file extension extracted from the
+	// `url.full`, excluding the leading dot.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "png", "gz"
+	// Note: The file extension is only set if it exists, as not every url has a
+	// file extension. When the file name has multiple extensions `example.tar.gz`,
+	// only the last one should be captured `gz`, not `tar.gz`.
+	URLExtensionKey = attribute.Key("url.extension")
+
+	// URLFragmentKey is the attribute Key conforming to the "url.fragment" semantic
+	// conventions. It represents the [URI fragment] component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "SemConv"
+	//
+	// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5
+	URLFragmentKey = attribute.Key("url.fragment")
+
+	// URLFullKey is the attribute Key conforming to the "url.full" semantic
+	// conventions. It represents the absolute URL describing a network resource
+	// according to [RFC3986].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", "//localhost"
+	// Note: For network calls, URL usually has
+	// `scheme://host[:port][path][?query][#fragment]` format, where the fragment
+	// is not transmitted over HTTP, but if it is known, it SHOULD be included
+	// nevertheless.
+	//
+	// `url.full` MUST NOT contain credentials passed via URL in form of
+	// `https://username:password@www.example.com/`.
+	// In such case username and password SHOULD be redacted and attribute's value
+	// SHOULD be `https://REDACTED:REDACTED@www.example.com/`.
+	//
+	// `url.full` SHOULD capture the absolute URL when it is available (or can be
+	// reconstructed).
+	//
+	// Sensitive content provided in `url.full` SHOULD be scrubbed when
+	// instrumentations can identify it.
+	//
+	//
+	// Query string values for the following keys SHOULD be redacted by default and
+	// replaced by the
+	// value `REDACTED`:
+	//
+	//   - [`AWSAccessKeyId`]
+	//   - [`Signature`]
+	//   - [`sig`]
+	//   - [`X-Goog-Signature`]
+	//
+	// This list is subject to change over time.
+	//
+	// Matching of query parameter keys against the sensitive list SHOULD be
+	// case-sensitive.
+	//
+	//
+	// Instrumentation MAY provide a way to override this list via declarative
+	// configuration.
+	// If so, it SHOULD use the `sensitive_query_parameters` property
+	// (an array of case-sensitive strings with minimum items 0) under
+	// `.instrumentation/development.general.sanitization.url`.
+	// This list is a full override of the default sensitive query parameter keys,
+	// it is not a list of keys in addition to the defaults.
+	//
+	// When a query string value is redacted, the query string key SHOULD still be
+	// preserved, e.g.
+	// `https://www.example.com/path?color=blue&sig=REDACTED`.
+	//
+	// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986
+	// [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
+	// [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
+	// [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token
+	// [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls
+	URLFullKey = attribute.Key("url.full")
+
+	// URLOriginalKey is the attribute Key conforming to the "url.original" semantic
+	// conventions. It represents the unmodified original URL as seen in the event
+	// source.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv",
+	// "search?q=OpenTelemetry"
+	// Note: In network monitoring, the observed URL may be a full URL, whereas in
+	// access logs, the URL is often just represented as a path. This field is meant
+	// to represent the URL as it was observed, complete or not.
+	// `url.original` might contain credentials passed via URL in form of
+	// `https://username:password@www.example.com/`. In such case password and
+	// username SHOULD NOT be redacted and attribute's value SHOULD remain the same.
+	URLOriginalKey = attribute.Key("url.original")
+
+	// URLPathKey is the attribute Key conforming to the "url.path" semantic
+	// conventions. It represents the [URI path] component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "/search"
+	// Note: Sensitive content provided in `url.path` SHOULD be scrubbed when
+	// instrumentations can identify it.
+	//
+	// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3
+	URLPathKey = attribute.Key("url.path")
+
+	// URLPortKey is the attribute Key conforming to the "url.port" semantic
+	// conventions. It represents the port extracted from the `url.full`.
+	//
+	// Type: int
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: 443
+	URLPortKey = attribute.Key("url.port")
+
+	// URLQueryKey is the attribute Key conforming to the "url.query" semantic
+	// conventions. It represents the [URI query] component.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "q=OpenTelemetry"
+	// Note: Sensitive content provided in `url.query` SHOULD be scrubbed when
+	// instrumentations can identify it.
+	//
+	//
+	// Query string values for the following keys SHOULD be redacted by default and
+	// replaced by the value `REDACTED`:
+	//
+	//   - [`AWSAccessKeyId`]
+	//   - [`Signature`]
+	//   - [`sig`]
+	//   - [`X-Goog-Signature`]
+	//
+	// This list is subject to change over time.
+	//
+	// Matching of query parameter keys against the sensitive list SHOULD be
+	// case-sensitive.
+	//
+	// Instrumentation MAY provide a way to override this list via declarative
+	// configuration.
+	// If so, it SHOULD use the `sensitive_query_parameters` property
+	// (an array of case-sensitive strings with minimum items 0) under
+	// `.instrumentation/development.general.sanitization.url`.
+	// This list is a full override of the default sensitive query parameter keys,
+	// it is not a list of keys in addition to the defaults.
+	//
+	// When a query string value is redacted, the query string key SHOULD still be
+	// preserved, e.g.
+	// `q=OpenTelemetry&sig=REDACTED`.
+	//
+	// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4
+	// [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
+	// [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth
+	// [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token
+	// [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls
+	URLQueryKey = attribute.Key("url.query")
+
+	// URLRegisteredDomainKey is the attribute Key conforming to the
+	// "url.registered_domain" semantic conventions. It represents the highest
+	// registered url domain, stripped of the subdomain.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "example.com", "foo.co.uk"
+	// Note: This value can be determined precisely with the [public suffix list].
+	// For example, the registered domain for `foo.example.com` is `example.com`.
+	// Trying to approximate this by simply taking the last two labels will not work
+	// well for TLDs such as `co.uk`.
+	//
+	// [public suffix list]: https://publicsuffix.org/
+	URLRegisteredDomainKey = attribute.Key("url.registered_domain")
+
+	// URLSchemeKey is the attribute Key conforming to the "url.scheme" semantic
+	// conventions. It represents the [URI scheme] component identifying the used
+	// protocol.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "https", "ftp", "telnet"
+	//
+	// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1
+	URLSchemeKey = attribute.Key("url.scheme")
+
+	// URLSubdomainKey is the attribute Key conforming to the "url.subdomain"
+	// semantic conventions. It represents the subdomain portion of a fully
+	// qualified domain name includes all of the names except the host name under
+	// the registered_domain. In a partially qualified domain, or if the
+	// qualification level of the full name cannot be determined, subdomain contains
+	// all of the names below the registered domain.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "east", "sub2.sub1"
+	// Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If the
+	// domain has multiple levels of subdomain, such as `sub2.sub1.example.com`, the
+	// subdomain field should contain `sub2.sub1`, with no trailing period.
+	URLSubdomainKey = attribute.Key("url.subdomain")
+
+	// URLTemplateKey is the attribute Key conforming to the "url.template" semantic
+	// conventions. It represents the low-cardinality template of an
+	// [absolute path reference].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "/users/{id}", "/users/:id", "/users?id={id}"
+	//
+	// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2
+	URLTemplateKey = attribute.Key("url.template")
+
+	// URLTopLevelDomainKey is the attribute Key conforming to the
+	// "url.top_level_domain" semantic conventions. It represents the effective top
+	// level domain (eTLD), also known as the domain suffix, is the last part of the
+	// domain name. For example, the top level domain for example.com is `com`.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "com", "co.uk"
+	// Note: This value can be determined precisely with the [public suffix list].
+	//
+	// [public suffix list]: https://publicsuffix.org/
+	URLTopLevelDomainKey = attribute.Key("url.top_level_domain")
+)
+
+// URLDomain returns an attribute KeyValue conforming to the "url.domain"
+// semantic conventions. It represents the domain extracted from the `url.full`,
+// such as "opentelemetry.io".
+func URLDomain(val string) attribute.KeyValue {
+	return URLDomainKey.String(val)
+}
+
+// URLExtension returns an attribute KeyValue conforming to the "url.extension"
+// semantic conventions. It represents the file extension extracted from the
+// `url.full`, excluding the leading dot.
+func URLExtension(val string) attribute.KeyValue {
+	return URLExtensionKey.String(val)
+}
+
+// URLFragment returns an attribute KeyValue conforming to the "url.fragment"
+// semantic conventions. It represents the [URI fragment] component.
+//
+// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5
+func URLFragment(val string) attribute.KeyValue {
+	return URLFragmentKey.String(val)
+}
+
+// URLFull returns an attribute KeyValue conforming to the "url.full" semantic
+// conventions. It represents the absolute URL describing a network resource
+// according to [RFC3986].
+//
+// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986
+func URLFull(val string) attribute.KeyValue {
+	return URLFullKey.String(val)
+}
+
+// URLOriginal returns an attribute KeyValue conforming to the "url.original"
+// semantic conventions. It represents the unmodified original URL as seen in the
+// event source.
+func URLOriginal(val string) attribute.KeyValue {
+	return URLOriginalKey.String(val)
+}
+
+// URLPath returns an attribute KeyValue conforming to the "url.path" semantic
+// conventions. It represents the [URI path] component.
+//
+// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3
+func URLPath(val string) attribute.KeyValue {
+	return URLPathKey.String(val)
+}
+
+// URLPort returns an attribute KeyValue conforming to the "url.port" semantic
+// conventions. It represents the port extracted from the `url.full`.
+func URLPort(val int) attribute.KeyValue {
+	return URLPortKey.Int(val)
+}
+
+// URLQuery returns an attribute KeyValue conforming to the "url.query" semantic
+// conventions. It represents the [URI query] component.
+//
+// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4
+func URLQuery(val string) attribute.KeyValue {
+	return URLQueryKey.String(val)
+}
+
+// URLRegisteredDomain returns an attribute KeyValue conforming to the
+// "url.registered_domain" semantic conventions. It represents the highest
+// registered url domain, stripped of the subdomain.
+func URLRegisteredDomain(val string) attribute.KeyValue {
+	return URLRegisteredDomainKey.String(val)
+}
+
+// URLScheme returns an attribute KeyValue conforming to the "url.scheme"
+// semantic conventions. It represents the [URI scheme] component identifying the
+// used protocol.
+//
+// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1
+func URLScheme(val string) attribute.KeyValue {
+	return URLSchemeKey.String(val)
+}
+
+// URLSubdomain returns an attribute KeyValue conforming to the "url.subdomain"
+// semantic conventions. It represents the subdomain portion of a fully qualified
+// domain name includes all of the names except the host name under the
+// registered_domain. In a partially qualified domain, or if the qualification
+// level of the full name cannot be determined, subdomain contains all of the
+// names below the registered domain.
+func URLSubdomain(val string) attribute.KeyValue {
+	return URLSubdomainKey.String(val)
+}
+
+// URLTemplate returns an attribute KeyValue conforming to the "url.template"
+// semantic conventions. It represents the low-cardinality template of an
+// [absolute path reference].
+//
+// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2
+func URLTemplate(val string) attribute.KeyValue {
+	return URLTemplateKey.String(val)
+}
+
+// URLTopLevelDomain returns an attribute KeyValue conforming to the
+// "url.top_level_domain" semantic conventions. It represents the effective top
+// level domain (eTLD), also known as the domain suffix, is the last part of the
+// domain name. For example, the top level domain for example.com is `com`.
+func URLTopLevelDomain(val string) attribute.KeyValue {
+	return URLTopLevelDomainKey.String(val)
+}
+
+// Namespace: user
+const (
+	// UserEmailKey is the attribute Key conforming to the "user.email" semantic
+	// conventions. It represents the user email address.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "a.einstein@example.com"
+	UserEmailKey = attribute.Key("user.email")
+
+	// UserFullNameKey is the attribute Key conforming to the "user.full_name"
+	// semantic conventions. It represents the user's full name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Albert Einstein"
+	UserFullNameKey = attribute.Key("user.full_name")
+
+	// UserHashKey is the attribute Key conforming to the "user.hash" semantic
+	// conventions. It represents the unique user hash to correlate information for
+	// a user in anonymized form.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "364fc68eaf4c8acec74a4e52d7d1feaa"
+	// Note: Useful if `user.id` or `user.name` contain confidential information and
+	// cannot be used.
+	UserHashKey = attribute.Key("user.hash")
+
+	// UserIDKey is the attribute Key conforming to the "user.id" semantic
+	// conventions. It represents the unique identifier of the user.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "S-1-5-21-202424912787-2692429404-2351956786-1000"
+	UserIDKey = attribute.Key("user.id")
+
+	// UserNameKey is the attribute Key conforming to the "user.name" semantic
+	// conventions. It represents the short name or login/username of the user.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "a.einstein"
+	UserNameKey = attribute.Key("user.name")
+
+	// UserRolesKey is the attribute Key conforming to the "user.roles" semantic
+	// conventions. It represents the array of user roles at the time of the event.
+	//
+	// Type: string[]
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "admin", "reporting_user"
+	UserRolesKey = attribute.Key("user.roles")
+)
+
+// UserEmail returns an attribute KeyValue conforming to the "user.email"
+// semantic conventions. It represents the user email address.
+func UserEmail(val string) attribute.KeyValue {
+	return UserEmailKey.String(val)
+}
+
+// UserFullName returns an attribute KeyValue conforming to the "user.full_name"
+// semantic conventions. It represents the user's full name.
+func UserFullName(val string) attribute.KeyValue {
+	return UserFullNameKey.String(val)
+}
+
+// UserHash returns an attribute KeyValue conforming to the "user.hash" semantic
+// conventions. It represents the unique user hash to correlate information for a
+// user in anonymized form.
+func UserHash(val string) attribute.KeyValue {
+	return UserHashKey.String(val)
+}
+
+// UserID returns an attribute KeyValue conforming to the "user.id" semantic
+// conventions. It represents the unique identifier of the user.
+func UserID(val string) attribute.KeyValue {
+	return UserIDKey.String(val)
+}
+
+// UserName returns an attribute KeyValue conforming to the "user.name" semantic
+// conventions. It represents the short name or login/username of the user.
+func UserName(val string) attribute.KeyValue {
+	return UserNameKey.String(val)
+}
+
+// UserRoles returns an attribute KeyValue conforming to the "user.roles"
+// semantic conventions. It represents the array of user roles at the time of the
+// event.
+func UserRoles(val ...string) attribute.KeyValue {
+	return UserRolesKey.StringSlice(val)
+}
+
+// Namespace: user_agent
+const (
+	// UserAgentNameKey is the attribute Key conforming to the "user_agent.name"
+	// semantic conventions. It represents the name of the user-agent extracted from
+	// original. Usually refers to the browser's name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Safari", "YourApp"
+	// Note: [Example] of extracting browser's name from original string. In the
+	// case of using a user-agent for non-browser products, such as microservices
+	// with multiple names/versions inside the `user_agent.original`, the most
+	// significant name SHOULD be selected. In such a scenario it should align with
+	// `user_agent.version`
+	//
+	// [Example]: https://uaparser.dev/#demo
+	UserAgentNameKey = attribute.Key("user_agent.name")
+
+	// UserAgentOriginalKey is the attribute Key conforming to the
+	// "user_agent.original" semantic conventions. It represents the value of the
+	// [HTTP User-Agent] header sent by the client.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Stable
+	//
+	// Examples: "CERN-LineMode/2.15 libwww/2.17b3", "Mozilla/5.0 (iPhone; CPU
+	// iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko)
+	// Version/14.1.2 Mobile/15E148 Safari/604.1", "YourApp/1.0.0
+	// grpc-java-okhttp/1.27.2"
+	//
+	// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent
+	UserAgentOriginalKey = attribute.Key("user_agent.original")
+
+	// UserAgentOSNameKey is the attribute Key conforming to the
+	// "user_agent.os.name" semantic conventions. It represents the human readable
+	// operating system name.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "iOS", "Android", "Ubuntu"
+	// Note: For mapping user agent strings to OS names, libraries such as
+	// [ua-parser] can be utilized.
+	//
+	// [ua-parser]: https://github.com/ua-parser
+	UserAgentOSNameKey = attribute.Key("user_agent.os.name")
+
+	// UserAgentOSVersionKey is the attribute Key conforming to the
+	// "user_agent.os.version" semantic conventions. It represents the version
+	// string of the operating system as defined in [Version Attributes].
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "14.2.1", "18.04.1"
+	// Note: For mapping user agent strings to OS versions, libraries such as
+	// [ua-parser] can be utilized.
+	//
+	// [Version Attributes]: /docs/resource/README.md#version-attributes
+	// [ua-parser]: https://github.com/ua-parser
+	UserAgentOSVersionKey = attribute.Key("user_agent.os.version")
+
+	// UserAgentSyntheticTypeKey is the attribute Key conforming to the
+	// "user_agent.synthetic.type" semantic conventions. It represents the specifies
+	// the category of synthetic traffic, such as tests or bots.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// Note: This attribute MAY be derived from the contents of the
+	// `user_agent.original` attribute. Components that populate the attribute are
+	// responsible for determining what they consider to be synthetic bot or test
+	// traffic. This attribute can either be set for self-identification purposes,
+	// or on telemetry detected to be generated as a result of a synthetic request.
+	// This attribute is useful for distinguishing between genuine client traffic
+	// and synthetic traffic generated by bots or tests.
+	UserAgentSyntheticTypeKey = attribute.Key("user_agent.synthetic.type")
+
+	// UserAgentVersionKey is the attribute Key conforming to the
+	// "user_agent.version" semantic conventions. It represents the version of the
+	// user-agent extracted from original. Usually refers to the browser's version.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "14.1.2", "1.0.0"
+	// Note: [Example] of extracting browser's version from original string. In the
+	// case of using a user-agent for non-browser products, such as microservices
+	// with multiple names/versions inside the `user_agent.original`, the most
+	// significant version SHOULD be selected. In such a scenario it should align
+	// with `user_agent.name`
+	//
+	// [Example]: https://uaparser.dev/#demo
+	UserAgentVersionKey = attribute.Key("user_agent.version")
+)
+
+// UserAgentName returns an attribute KeyValue conforming to the
+// "user_agent.name" semantic conventions. It represents the name of the
+// user-agent extracted from original. Usually refers to the browser's name.
+func UserAgentName(val string) attribute.KeyValue {
+	return UserAgentNameKey.String(val)
+}
+
+// UserAgentOriginal returns an attribute KeyValue conforming to the
+// "user_agent.original" semantic conventions. It represents the value of the
+// [HTTP User-Agent] header sent by the client.
+//
+// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent
+func UserAgentOriginal(val string) attribute.KeyValue {
+	return UserAgentOriginalKey.String(val)
+}
+
+// UserAgentOSName returns an attribute KeyValue conforming to the
+// "user_agent.os.name" semantic conventions. It represents the human readable
+// operating system name.
+func UserAgentOSName(val string) attribute.KeyValue {
+	return UserAgentOSNameKey.String(val)
+}
+
+// UserAgentOSVersion returns an attribute KeyValue conforming to the
+// "user_agent.os.version" semantic conventions. It represents the version string
+// of the operating system as defined in [Version Attributes].
+//
+// [Version Attributes]: /docs/resource/README.md#version-attributes
+func UserAgentOSVersion(val string) attribute.KeyValue {
+	return UserAgentOSVersionKey.String(val)
+}
+
+// UserAgentVersion returns an attribute KeyValue conforming to the
+// "user_agent.version" semantic conventions. It represents the version of the
+// user-agent extracted from original. Usually refers to the browser's version.
+func UserAgentVersion(val string) attribute.KeyValue {
+	return UserAgentVersionKey.String(val)
+}
+
+// Enum values for user_agent.synthetic.type
+var (
+	// Bot source.
+	// Stability: development
+	UserAgentSyntheticTypeBot = UserAgentSyntheticTypeKey.String("bot")
+	// Synthetic test source.
+	// Stability: development
+	UserAgentSyntheticTypeTest = UserAgentSyntheticTypeKey.String("test")
+)
+
+// Namespace: vcs
+const (
+	// VCSChangeIDKey is the attribute Key conforming to the "vcs.change.id"
+	// semantic conventions. It represents the ID of the change (pull request/merge
+	// request/changelist) if applicable. This is usually a unique (within
+	// repository) identifier generated by the VCS system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "123"
+	VCSChangeIDKey = attribute.Key("vcs.change.id")
+
+	// VCSChangeStateKey is the attribute Key conforming to the "vcs.change.state"
+	// semantic conventions. It represents the state of the change (pull
+	// request/merge request/changelist).
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "open", "closed", "merged"
+	VCSChangeStateKey = attribute.Key("vcs.change.state")
+
+	// VCSChangeTitleKey is the attribute Key conforming to the "vcs.change.title"
+	// semantic conventions. It represents the human readable title of the change
+	// (pull request/merge request/changelist). This title is often a brief summary
+	// of the change and may get merged in to a ref as the commit summary.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "Fixes broken thing", "feat: add my new feature", "[chore] update
+	// dependency"
+	VCSChangeTitleKey = attribute.Key("vcs.change.title")
+
+	// VCSLineChangeTypeKey is the attribute Key conforming to the
+	// "vcs.line_change.type" semantic conventions. It represents the type of line
+	// change being measured on a branch or change.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "added", "removed"
+	VCSLineChangeTypeKey = attribute.Key("vcs.line_change.type")
+
+	// VCSOwnerNameKey is the attribute Key conforming to the "vcs.owner.name"
+	// semantic conventions. It represents the group owner within the version
+	// control system.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-org", "myteam", "business-unit"
+	VCSOwnerNameKey = attribute.Key("vcs.owner.name")
+
+	// VCSProviderNameKey is the attribute Key conforming to the "vcs.provider.name"
+	// semantic conventions. It represents the name of the version control system
+	// provider.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "github", "gitlab", "gitea", "bitbucket"
+	VCSProviderNameKey = attribute.Key("vcs.provider.name")
+
+	// VCSRefBaseNameKey is the attribute Key conforming to the "vcs.ref.base.name"
+	// semantic conventions. It represents the name of the [reference] such as
+	// **branch** or **tag** in the repository.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-feature-branch", "tag-1-test"
+	// Note: `base` refers to the starting point of a change. For example, `main`
+	// would be the base reference of type branch if you've created a new
+	// reference of type branch from it and created new commits.
+	//
+	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+	VCSRefBaseNameKey = attribute.Key("vcs.ref.base.name")
+
+	// VCSRefBaseRevisionKey is the attribute Key conforming to the
+	// "vcs.ref.base.revision" semantic conventions. It represents the revision,
+	// literally [revised version], The revision most often refers to a commit
+	// object in Git, or a revision number in SVN.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc",
+	// "main", "123", "HEAD"
+	// Note: `base` refers to the starting point of a change. For example, `main`
+	// would be the base reference of type branch if you've created a new
+	// reference of type branch from it and created new commits. The
+	// revision can be a full [hash value (see
+	// glossary)],
+	// of the recorded change to a ref within a repository pointing to a
+	// commit [commit] object. It does
+	// not necessarily have to be a hash; it can simply define a [revision
+	// number]
+	// which is an integer that is monotonically increasing. In cases where
+	// it is identical to the `ref.base.name`, it SHOULD still be included.
+	// It is up to the implementer to decide which value to set as the
+	// revision based on the VCS system and situational context.
+	//
+	// [revised version]: https://www.merriam-webster.com/dictionary/revision
+	// [hash value (see
+	// glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
+	// [commit]: https://git-scm.com/docs/git-commit
+	// [revision
+	// number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html
+	VCSRefBaseRevisionKey = attribute.Key("vcs.ref.base.revision")
+
+	// VCSRefBaseTypeKey is the attribute Key conforming to the "vcs.ref.base.type"
+	// semantic conventions. It represents the type of the [reference] in the
+	// repository.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "branch", "tag"
+	// Note: `base` refers to the starting point of a change. For example, `main`
+	// would be the base reference of type branch if you've created a new
+	// reference of type branch from it and created new commits.
+	//
+	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+	VCSRefBaseTypeKey = attribute.Key("vcs.ref.base.type")
+
+	// VCSRefHeadNameKey is the attribute Key conforming to the "vcs.ref.head.name"
+	// semantic conventions. It represents the name of the [reference] such as
+	// **branch** or **tag** in the repository.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "my-feature-branch", "tag-1-test"
+	// Note: `head` refers to where you are right now; the current reference at a
+	// given time.
+	//
+	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+	VCSRefHeadNameKey = attribute.Key("vcs.ref.head.name")
+
+	// VCSRefHeadRevisionKey is the attribute Key conforming to the
+	// "vcs.ref.head.revision" semantic conventions. It represents the revision,
+	// literally [revised version], The revision most often refers to a commit
+	// object in Git, or a revision number in SVN.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc",
+	// "main", "123", "HEAD"
+	// Note: `head` refers to where you are right now; the current reference at a
+	// given time.The revision can be a full [hash value (see
+	// glossary)],
+	// of the recorded change to a ref within a repository pointing to a
+	// commit [commit] object. It does
+	// not necessarily have to be a hash; it can simply define a [revision
+	// number]
+	// which is an integer that is monotonically increasing. In cases where
+	// it is identical to the `ref.head.name`, it SHOULD still be included.
+	// It is up to the implementer to decide which value to set as the
+	// revision based on the VCS system and situational context.
+	//
+	// [revised version]: https://www.merriam-webster.com/dictionary/revision
+	// [hash value (see
+	// glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf
+	// [commit]: https://git-scm.com/docs/git-commit
+	// [revision
+	// number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html
+	VCSRefHeadRevisionKey = attribute.Key("vcs.ref.head.revision")
+
+	// VCSRefHeadTypeKey is the attribute Key conforming to the "vcs.ref.head.type"
+	// semantic conventions. It represents the type of the [reference] in the
+	// repository.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "branch", "tag"
+	// Note: `head` refers to where you are right now; the current reference at a
+	// given time.
+	//
+	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+	VCSRefHeadTypeKey = attribute.Key("vcs.ref.head.type")
+
+	// VCSRefTypeKey is the attribute Key conforming to the "vcs.ref.type" semantic
+	// conventions. It represents the type of the [reference] in the repository.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "branch", "tag"
+	//
+	// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+	VCSRefTypeKey = attribute.Key("vcs.ref.type")
+
+	// VCSRepositoryNameKey is the attribute Key conforming to the
+	// "vcs.repository.name" semantic conventions. It represents the human readable
+	// name of the repository. It SHOULD NOT include any additional identifier like
+	// Group/SubGroup in GitLab or organization in GitHub.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "semantic-conventions", "my-cool-repo"
+	// Note: Due to it only being the name, it can clash with forks of the same
+	// repository if collecting telemetry across multiple orgs or groups in
+	// the same backends.
+	VCSRepositoryNameKey = attribute.Key("vcs.repository.name")
+
+	// VCSRepositoryURLFullKey is the attribute Key conforming to the
+	// "vcs.repository.url.full" semantic conventions. It represents the
+	// [canonical URL] of the repository providing the complete HTTP(S) address in
+	// order to locate and identify the repository through a browser.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples:
+	// "https://github.com/opentelemetry/open-telemetry-collector-contrib",
+	// "https://gitlab.com/my-org/my-project/my-projects-project/repo"
+	// Note: In Git Version Control Systems, the canonical URL SHOULD NOT include
+	// the `.git` extension.
+	//
+	// [canonical URL]: https://support.google.com/webmasters/answer/10347851
+	VCSRepositoryURLFullKey = attribute.Key("vcs.repository.url.full")
+
+	// VCSRevisionDeltaDirectionKey is the attribute Key conforming to the
+	// "vcs.revision_delta.direction" semantic conventions. It represents the type
+	// of revision comparison.
+	//
+	// Type: Enum
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "ahead", "behind"
+	VCSRevisionDeltaDirectionKey = attribute.Key("vcs.revision_delta.direction")
+)
+
+// VCSChangeID returns an attribute KeyValue conforming to the "vcs.change.id"
+// semantic conventions. It represents the ID of the change (pull request/merge
+// request/changelist) if applicable. This is usually a unique (within
+// repository) identifier generated by the VCS system.
+func VCSChangeID(val string) attribute.KeyValue {
+	return VCSChangeIDKey.String(val)
+}
+
+// VCSChangeTitle returns an attribute KeyValue conforming to the
+// "vcs.change.title" semantic conventions. It represents the human readable
+// title of the change (pull request/merge request/changelist). This title is
+// often a brief summary of the change and may get merged in to a ref as the
+// commit summary.
+func VCSChangeTitle(val string) attribute.KeyValue {
+	return VCSChangeTitleKey.String(val)
+}
+
+// VCSOwnerName returns an attribute KeyValue conforming to the "vcs.owner.name"
+// semantic conventions. It represents the group owner within the version control
+// system.
+func VCSOwnerName(val string) attribute.KeyValue {
+	return VCSOwnerNameKey.String(val)
+}
+
+// VCSRefBaseName returns an attribute KeyValue conforming to the
+// "vcs.ref.base.name" semantic conventions. It represents the name of the
+// [reference] such as **branch** or **tag** in the repository.
+//
+// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+func VCSRefBaseName(val string) attribute.KeyValue {
+	return VCSRefBaseNameKey.String(val)
+}
+
+// VCSRefBaseRevision returns an attribute KeyValue conforming to the
+// "vcs.ref.base.revision" semantic conventions. It represents the revision,
+// literally [revised version], The revision most often refers to a commit object
+// in Git, or a revision number in SVN.
+//
+// [revised version]: https://www.merriam-webster.com/dictionary/revision
+func VCSRefBaseRevision(val string) attribute.KeyValue {
+	return VCSRefBaseRevisionKey.String(val)
+}
+
+// VCSRefHeadName returns an attribute KeyValue conforming to the
+// "vcs.ref.head.name" semantic conventions. It represents the name of the
+// [reference] such as **branch** or **tag** in the repository.
+//
+// [reference]: https://git-scm.com/docs/gitglossary#def_ref
+func VCSRefHeadName(val string) attribute.KeyValue {
+	return VCSRefHeadNameKey.String(val)
+}
+
+// VCSRefHeadRevision returns an attribute KeyValue conforming to the
+// "vcs.ref.head.revision" semantic conventions. It represents the revision,
+// literally [revised version], The revision most often refers to a commit object
+// in Git, or a revision number in SVN.
+//
+// [revised version]: https://www.merriam-webster.com/dictionary/revision
+func VCSRefHeadRevision(val string) attribute.KeyValue {
+	return VCSRefHeadRevisionKey.String(val)
+}
+
+// VCSRepositoryName returns an attribute KeyValue conforming to the
+// "vcs.repository.name" semantic conventions. It represents the human readable
+// name of the repository. It SHOULD NOT include any additional identifier like
+// Group/SubGroup in GitLab or organization in GitHub.
+func VCSRepositoryName(val string) attribute.KeyValue {
+	return VCSRepositoryNameKey.String(val)
+}
+
+// VCSRepositoryURLFull returns an attribute KeyValue conforming to the
+// "vcs.repository.url.full" semantic conventions. It represents the
+// [canonical URL] of the repository providing the complete HTTP(S) address in
+// order to locate and identify the repository through a browser.
+//
+// [canonical URL]: https://support.google.com/webmasters/answer/10347851
+func VCSRepositoryURLFull(val string) attribute.KeyValue {
+	return VCSRepositoryURLFullKey.String(val)
+}
+
+// Enum values for vcs.change.state
+var (
+	// Open means the change is currently active and under review. It hasn't been
+	// merged into the target branch yet, and it's still possible to make changes or
+	// add comments.
+	// Stability: development
+	VCSChangeStateOpen = VCSChangeStateKey.String("open")
+	// WIP (work-in-progress, draft) means the change is still in progress and not
+	// yet ready for a full review. It might still undergo significant changes.
+	// Stability: development
+	VCSChangeStateWip = VCSChangeStateKey.String("wip")
+	// Closed means the merge request has been closed without merging. This can
+	// happen for various reasons, such as the changes being deemed unnecessary, the
+	// issue being resolved in another way, or the author deciding to withdraw the
+	// request.
+	// Stability: development
+	VCSChangeStateClosed = VCSChangeStateKey.String("closed")
+	// Merged indicates that the change has been successfully integrated into the
+	// target codebase.
+	// Stability: development
+	VCSChangeStateMerged = VCSChangeStateKey.String("merged")
+)
+
+// Enum values for vcs.line_change.type
+var (
+	// How many lines were added.
+	// Stability: development
+	VCSLineChangeTypeAdded = VCSLineChangeTypeKey.String("added")
+	// How many lines were removed.
+	// Stability: development
+	VCSLineChangeTypeRemoved = VCSLineChangeTypeKey.String("removed")
+)
+
+// Enum values for vcs.provider.name
+var (
+	// [GitHub]
+	// Stability: development
+	//
+	// [GitHub]: https://github.com
+	VCSProviderNameGithub = VCSProviderNameKey.String("github")
+	// [GitLab]
+	// Stability: development
+	//
+	// [GitLab]: https://gitlab.com
+	VCSProviderNameGitlab = VCSProviderNameKey.String("gitlab")
+	// [Gitea]
+	// Stability: development
+	//
+	// [Gitea]: https://gitea.io
+	VCSProviderNameGitea = VCSProviderNameKey.String("gitea")
+	// [Bitbucket]
+	// Stability: development
+	//
+	// [Bitbucket]: https://bitbucket.org
+	VCSProviderNameBitbucket = VCSProviderNameKey.String("bitbucket")
+)
+
+// Enum values for vcs.ref.base.type
+var (
+	// [branch]
+	// Stability: development
+	//
+	// [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch
+	VCSRefBaseTypeBranch = VCSRefBaseTypeKey.String("branch")
+	// [tag]
+	// Stability: development
+	//
+	// [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag
+	VCSRefBaseTypeTag = VCSRefBaseTypeKey.String("tag")
+)
+
+// Enum values for vcs.ref.head.type
+var (
+	// [branch]
+	// Stability: development
+	//
+	// [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch
+	VCSRefHeadTypeBranch = VCSRefHeadTypeKey.String("branch")
+	// [tag]
+	// Stability: development
+	//
+	// [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag
+	VCSRefHeadTypeTag = VCSRefHeadTypeKey.String("tag")
+)
+
+// Enum values for vcs.ref.type
+var (
+	// [branch]
+	// Stability: development
+	//
+	// [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch
+	VCSRefTypeBranch = VCSRefTypeKey.String("branch")
+	// [tag]
+	// Stability: development
+	//
+	// [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag
+	VCSRefTypeTag = VCSRefTypeKey.String("tag")
+)
+
+// Enum values for vcs.revision_delta.direction
+var (
+	// How many revisions the change is behind the target ref.
+	// Stability: development
+	VCSRevisionDeltaDirectionBehind = VCSRevisionDeltaDirectionKey.String("behind")
+	// How many revisions the change is ahead of the target ref.
+	// Stability: development
+	VCSRevisionDeltaDirectionAhead = VCSRevisionDeltaDirectionKey.String("ahead")
+)
+
+// Namespace: webengine
+const (
+	// WebEngineDescriptionKey is the attribute Key conforming to the
+	// "webengine.description" semantic conventions. It represents the additional
+	// description of the web engine (e.g. detailed version and edition
+	// information).
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) -
+	// 2.2.2.Final"
+	WebEngineDescriptionKey = attribute.Key("webengine.description")
+
+	// WebEngineNameKey is the attribute Key conforming to the "webengine.name"
+	// semantic conventions. It represents the name of the web engine.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "WildFly"
+	WebEngineNameKey = attribute.Key("webengine.name")
+
+	// WebEngineVersionKey is the attribute Key conforming to the
+	// "webengine.version" semantic conventions. It represents the version of the
+	// web engine.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "21.0.0"
+	WebEngineVersionKey = attribute.Key("webengine.version")
+)
+
+// WebEngineDescription returns an attribute KeyValue conforming to the
+// "webengine.description" semantic conventions. It represents the additional
+// description of the web engine (e.g. detailed version and edition information).
+func WebEngineDescription(val string) attribute.KeyValue {
+	return WebEngineDescriptionKey.String(val)
+}
+
+// WebEngineName returns an attribute KeyValue conforming to the "webengine.name"
+// semantic conventions. It represents the name of the web engine.
+func WebEngineName(val string) attribute.KeyValue {
+	return WebEngineNameKey.String(val)
+}
+
+// WebEngineVersion returns an attribute KeyValue conforming to the
+// "webengine.version" semantic conventions. It represents the version of the web
+// engine.
+func WebEngineVersion(val string) attribute.KeyValue {
+	return WebEngineVersionKey.String(val)
+}
+
+// Namespace: zos
+const (
+	// ZOSSmfIDKey is the attribute Key conforming to the "zos.smf.id" semantic
+	// conventions. It represents the System Management Facility (SMF) Identifier
+	// uniquely identified a z/OS system within a SYSPLEX or mainframe environment
+	// and is used for system and performance analysis.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "SYS1"
+	ZOSSmfIDKey = attribute.Key("zos.smf.id")
+
+	// ZOSSysplexNameKey is the attribute Key conforming to the "zos.sysplex.name"
+	// semantic conventions. It represents the name of the SYSPLEX to which the z/OS
+	// system belongs too.
+	//
+	// Type: string
+	// RequirementLevel: Recommended
+	// Stability: Development
+	//
+	// Examples: "SYSPLEX1"
+	ZOSSysplexNameKey = attribute.Key("zos.sysplex.name")
+)
+
+// ZOSSmfID returns an attribute KeyValue conforming to the "zos.smf.id" semantic
+// conventions. It represents the System Management Facility (SMF) Identifier
+// uniquely identified a z/OS system within a SYSPLEX or mainframe environment
+// and is used for system and performance analysis.
+func ZOSSmfID(val string) attribute.KeyValue {
+	return ZOSSmfIDKey.String(val)
+}
+
+// ZOSSysplexName returns an attribute KeyValue conforming to the
+// "zos.sysplex.name" semantic conventions. It represents the name of the SYSPLEX
+// to which the z/OS system belongs too.
+func ZOSSysplexName(val string) attribute.KeyValue {
+	return ZOSSysplexNameKey.String(val)
+}
\ No newline at end of file
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/doc.go	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,9 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+// Package semconv implements OpenTelemetry semantic conventions.
+//
+// OpenTelemetry semantic conventions are agreed standardized naming
+// patterns for OpenTelemetry things. This package represents the v1.40.0
+// version of the OpenTelemetry semantic conventions.
+package semconv // import "go.opentelemetry.io/otel/semconv/v1.40.0"
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/error_type.go	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,66 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+package semconv // import "go.opentelemetry.io/otel/semconv/v1.40.0"
+
+import (
+	"errors"
+	"reflect"
+
+	"go.opentelemetry.io/otel/attribute"
+)
+
+// ErrorType returns an [attribute.KeyValue] identifying the error type of err.
+//
+// If err is nil, the returned attribute has the default value
+// [ErrorTypeOther].
+//
+// If err or one of the errors in its chain has the method
+//
+//	ErrorType() string
+//
+// the returned attribute has that method's return value. If multiple errors in
+// the chain implement this method, the value from the first match found by
+// [errors.As] is used. Otherwise, the returned attribute has a value derived
+// from the concrete type of err.
+//
+// The key of the returned attribute is [ErrorTypeKey].
+func ErrorType(err error) attribute.KeyValue {
+	if err == nil {
+		return ErrorTypeOther
+	}
+
+	return ErrorTypeKey.String(errorType(err))
+}
+
+func errorType(err error) string {
+	var s string
+	if et, ok := err.(interface{ ErrorType() string }); ok {
+		// Fast path: check the top-level error first.
+		s = et.ErrorType()
+	} else {
+		// Fallback: search the error chain for an ErrorType method.
+		var et interface{ ErrorType() string }
+		if errors.As(err, &et) {
+			// Prioritize the ErrorType method if available.
+			s = et.ErrorType()
+		}
+	}
+	if s == "" {
+		// Fallback to reflection if the ErrorType method is not supported or
+		// returns an empty value.
+
+		t := reflect.TypeOf(err)
+		pkg, name := t.PkgPath(), t.Name()
+		if pkg != "" && name != "" {
+			s = pkg + "." + name
+		} else {
+			// The type has no package path or name (predeclared, not-defined,
+			// or alias for a not-defined type).
+			//
+			// This is not guaranteed to be unique, but is a best effort.
+			s = t.String()
+		}
+	}
+	return s
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/exception.go	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,9 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+package semconv // import "go.opentelemetry.io/otel/semconv/v1.40.0"
+
+const (
+	// ExceptionEventName is the name of the Span event representing an exception.
+	ExceptionEventName = "exception"
+)
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/otelconv/metric.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/otelconv/metric.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/otelconv/metric.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/otelconv/metric.go	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,2222 @@
+// Code generated from semantic convention specification. DO NOT EDIT.
+
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+// Package otelconv provides types and functionality for OpenTelemetry semantic
+// conventions in the "otel" namespace.
+package otelconv
+
+import (
+	"context"
+	"sync"
+
+	"go.opentelemetry.io/otel/attribute"
+	"go.opentelemetry.io/otel/metric"
+	"go.opentelemetry.io/otel/metric/noop"
+)
+
+var (
+	addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }}
+	recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }}
+)
+
+// ErrorTypeAttr is an attribute conforming to the error.type semantic
+// conventions. It represents the describes a class of error the operation ended
+// with.
+type ErrorTypeAttr string
+
+var (
+	// ErrorTypeOther is a fallback error value to be used when the instrumentation
+	// doesn't define a custom value.
+	ErrorTypeOther ErrorTypeAttr = "_OTHER"
+)
+
+// ComponentTypeAttr is an attribute conforming to the otel.component.type
+// semantic conventions. It represents a name identifying the type of the
+// OpenTelemetry component.
+type ComponentTypeAttr string
+
+var (
+	// ComponentTypeBatchingSpanProcessor is the builtin SDK batching span
+	// processor.
+	ComponentTypeBatchingSpanProcessor ComponentTypeAttr = "batching_span_processor"
+	// ComponentTypeSimpleSpanProcessor is the builtin SDK simple span processor.
+	ComponentTypeSimpleSpanProcessor ComponentTypeAttr = "simple_span_processor"
+	// ComponentTypeBatchingLogProcessor is the builtin SDK batching log record
+	// processor.
+	ComponentTypeBatchingLogProcessor ComponentTypeAttr = "batching_log_processor"
+	// ComponentTypeSimpleLogProcessor is the builtin SDK simple log record
+	// processor.
+	ComponentTypeSimpleLogProcessor ComponentTypeAttr = "simple_log_processor"
+	// ComponentTypeOtlpGRPCSpanExporter is the OTLP span exporter over gRPC with
+	// protobuf serialization.
+	ComponentTypeOtlpGRPCSpanExporter ComponentTypeAttr = "otlp_grpc_span_exporter"
+	// ComponentTypeOtlpHTTPSpanExporter is the OTLP span exporter over HTTP with
+	// protobuf serialization.
+	ComponentTypeOtlpHTTPSpanExporter ComponentTypeAttr = "otlp_http_span_exporter"
+	// ComponentTypeOtlpHTTPJSONSpanExporter is the OTLP span exporter over HTTP
+	// with JSON serialization.
+	ComponentTypeOtlpHTTPJSONSpanExporter ComponentTypeAttr = "otlp_http_json_span_exporter"
+	// ComponentTypeZipkinHTTPSpanExporter is the zipkin span exporter over HTTP.
+	ComponentTypeZipkinHTTPSpanExporter ComponentTypeAttr = "zipkin_http_span_exporter"
+	// ComponentTypeOtlpGRPCLogExporter is the OTLP log record exporter over gRPC
+	// with protobuf serialization.
+	ComponentTypeOtlpGRPCLogExporter ComponentTypeAttr = "otlp_grpc_log_exporter"
+	// ComponentTypeOtlpHTTPLogExporter is the OTLP log record exporter over HTTP
+	// with protobuf serialization.
+	ComponentTypeOtlpHTTPLogExporter ComponentTypeAttr = "otlp_http_log_exporter"
+	// ComponentTypeOtlpHTTPJSONLogExporter is the OTLP log record exporter over
+	// HTTP with JSON serialization.
+	ComponentTypeOtlpHTTPJSONLogExporter ComponentTypeAttr = "otlp_http_json_log_exporter"
+	// ComponentTypePeriodicMetricReader is the builtin SDK periodically exporting
+	// metric reader.
+	ComponentTypePeriodicMetricReader ComponentTypeAttr = "periodic_metric_reader"
+	// ComponentTypeOtlpGRPCMetricExporter is the OTLP metric exporter over gRPC
+	// with protobuf serialization.
+	ComponentTypeOtlpGRPCMetricExporter ComponentTypeAttr = "otlp_grpc_metric_exporter"
+	// ComponentTypeOtlpHTTPMetricExporter is the OTLP metric exporter over HTTP
+	// with protobuf serialization.
+	ComponentTypeOtlpHTTPMetricExporter ComponentTypeAttr = "otlp_http_metric_exporter"
+	// ComponentTypeOtlpHTTPJSONMetricExporter is the OTLP metric exporter over HTTP
+	// with JSON serialization.
+	ComponentTypeOtlpHTTPJSONMetricExporter ComponentTypeAttr = "otlp_http_json_metric_exporter"
+	// ComponentTypePrometheusHTTPTextMetricExporter is the prometheus metric
+	// exporter over HTTP with the default text-based format.
+	ComponentTypePrometheusHTTPTextMetricExporter ComponentTypeAttr = "prometheus_http_text_metric_exporter"
+)
+
+// SpanParentOriginAttr is an attribute conforming to the otel.span.parent.origin
+// semantic conventions. It represents the determines whether the span has a
+// parent span, and if so, [whether it is a remote parent].
+//
+// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+type SpanParentOriginAttr string
+
+var (
+	// SpanParentOriginNone is the span does not have a parent, it is a root span.
+	SpanParentOriginNone SpanParentOriginAttr = "none"
+	// SpanParentOriginLocal is the span has a parent and the parent's span context
+	// [isRemote()] is false.
+	//
+	// [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+	SpanParentOriginLocal SpanParentOriginAttr = "local"
+	// SpanParentOriginRemote is the span has a parent and the parent's span context
+	// [isRemote()] is true.
+	//
+	// [isRemote()]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+	SpanParentOriginRemote SpanParentOriginAttr = "remote"
+)
+
+// SpanSamplingResultAttr is an attribute conforming to the
+// otel.span.sampling_result semantic conventions. It represents the result value
+// of the sampler for this span.
+type SpanSamplingResultAttr string
+
+var (
+	// SpanSamplingResultDrop is the span is not sampled and not recording.
+	SpanSamplingResultDrop SpanSamplingResultAttr = "DROP"
+	// SpanSamplingResultRecordOnly is the span is not sampled, but recording.
+	SpanSamplingResultRecordOnly SpanSamplingResultAttr = "RECORD_ONLY"
+	// SpanSamplingResultRecordAndSample is the span is sampled and recording.
+	SpanSamplingResultRecordAndSample SpanSamplingResultAttr = "RECORD_AND_SAMPLE"
+)
+
+// SDKExporterLogExported is an instrument used to record metric values
+// conforming to the "otel.sdk.exporter.log.exported" semantic conventions. It
+// represents the number of log records for which the export has finished, either
+// successful or failed.
+type SDKExporterLogExported struct {
+	metric.Int64Counter
+}
+
+var newSDKExporterLogExportedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of log records for which the export has finished, either successful or failed."),
+	metric.WithUnit("{log_record}"),
+}
+
+// NewSDKExporterLogExported returns a new SDKExporterLogExported instrument.
+func NewSDKExporterLogExported(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKExporterLogExported, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterLogExported{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterLogExportedOpts
+	} else {
+		opt = append(opt, newSDKExporterLogExportedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.exporter.log.exported",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterLogExported{noop.Int64Counter{}}, err
+	}
+	return SDKExporterLogExported{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterLogExported) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterLogExported) Name() string {
+	return "otel.sdk.exporter.log.exported"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterLogExported) Unit() string {
+	return "{log_record}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterLogExported) Description() string {
+	return "The number of log records for which the export has finished, either successful or failed."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+// For exporters with partial success semantics (e.g. OTLP with
+// `rejected_log_records`), rejected log records MUST count as failed and only
+// non-rejected log records count as success.
+// If no rejection reason is available, `rejected` SHOULD be used as value for
+// `error.type`.
+func (m SDKExporterLogExported) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+// For exporters with partial success semantics (e.g. OTLP with
+// `rejected_log_records`), rejected log records MUST count as failed and only
+// non-rejected log records count as success.
+// If no rejection reason is available, `rejected` SHOULD be used as value for
+// `error.type`.
+func (m SDKExporterLogExported) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents the describes a class of error the operation ended
+// with.
+func (SDKExporterLogExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterLogExported) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterLogExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterLogExported) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterLogExported) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKExporterLogInflight is an instrument used to record metric values
+// conforming to the "otel.sdk.exporter.log.inflight" semantic conventions. It
+// represents the number of log records which were passed to the exporter, but
+// that have not been exported yet (neither successful, nor failed).
+type SDKExporterLogInflight struct {
+	metric.Int64UpDownCounter
+}
+
+var newSDKExporterLogInflightOpts = []metric.Int64UpDownCounterOption{
+	metric.WithDescription("The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."),
+	metric.WithUnit("{log_record}"),
+}
+
+// NewSDKExporterLogInflight returns a new SDKExporterLogInflight instrument.
+func NewSDKExporterLogInflight(
+	m metric.Meter,
+	opt ...metric.Int64UpDownCounterOption,
+) (SDKExporterLogInflight, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterLogInflightOpts
+	} else {
+		opt = append(opt, newSDKExporterLogInflightOpts...)
+	}
+
+	i, err := m.Int64UpDownCounter(
+		"otel.sdk.exporter.log.inflight",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterLogInflight{noop.Int64UpDownCounter{}}, err
+	}
+	return SDKExporterLogInflight{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterLogInflight) Inst() metric.Int64UpDownCounter {
+	return m.Int64UpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterLogInflight) Name() string {
+	return "otel.sdk.exporter.log.inflight"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterLogInflight) Unit() string {
+	return "{log_record}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterLogInflight) Description() string {
+	return "The number of log records which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+func (m SDKExporterLogInflight) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+func (m SDKExporterLogInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterLogInflight) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterLogInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterLogInflight) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterLogInflight) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKExporterMetricDataPointExported is an instrument used to record metric
+// values conforming to the "otel.sdk.exporter.metric_data_point.exported"
+// semantic conventions. It represents the number of metric data points for which
+// the export has finished, either successful or failed.
+type SDKExporterMetricDataPointExported struct {
+	metric.Int64Counter
+}
+
+var newSDKExporterMetricDataPointExportedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of metric data points for which the export has finished, either successful or failed."),
+	metric.WithUnit("{data_point}"),
+}
+
+// NewSDKExporterMetricDataPointExported returns a new
+// SDKExporterMetricDataPointExported instrument.
+func NewSDKExporterMetricDataPointExported(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKExporterMetricDataPointExported, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterMetricDataPointExportedOpts
+	} else {
+		opt = append(opt, newSDKExporterMetricDataPointExportedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.exporter.metric_data_point.exported",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterMetricDataPointExported{noop.Int64Counter{}}, err
+	}
+	return SDKExporterMetricDataPointExported{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterMetricDataPointExported) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterMetricDataPointExported) Name() string {
+	return "otel.sdk.exporter.metric_data_point.exported"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterMetricDataPointExported) Unit() string {
+	return "{data_point}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterMetricDataPointExported) Description() string {
+	return "The number of metric data points for which the export has finished, either successful or failed."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+// For exporters with partial success semantics (e.g. OTLP with
+// `rejected_data_points`), rejected data points MUST count as failed and only
+// non-rejected data points count as success.
+// If no rejection reason is available, `rejected` SHOULD be used as value for
+// `error.type`.
+func (m SDKExporterMetricDataPointExported) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+// For exporters with partial success semantics (e.g. OTLP with
+// `rejected_data_points`), rejected data points MUST count as failed and only
+// non-rejected data points count as success.
+// If no rejection reason is available, `rejected` SHOULD be used as value for
+// `error.type`.
+func (m SDKExporterMetricDataPointExported) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents the describes a class of error the operation ended
+// with.
+func (SDKExporterMetricDataPointExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterMetricDataPointExported) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterMetricDataPointExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterMetricDataPointExported) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterMetricDataPointExported) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKExporterMetricDataPointInflight is an instrument used to record metric
+// values conforming to the "otel.sdk.exporter.metric_data_point.inflight"
+// semantic conventions. It represents the number of metric data points which
+// were passed to the exporter, but that have not been exported yet (neither
+// successful, nor failed).
+type SDKExporterMetricDataPointInflight struct {
+	metric.Int64UpDownCounter
+}
+
+var newSDKExporterMetricDataPointInflightOpts = []metric.Int64UpDownCounterOption{
+	metric.WithDescription("The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."),
+	metric.WithUnit("{data_point}"),
+}
+
+// NewSDKExporterMetricDataPointInflight returns a new
+// SDKExporterMetricDataPointInflight instrument.
+func NewSDKExporterMetricDataPointInflight(
+	m metric.Meter,
+	opt ...metric.Int64UpDownCounterOption,
+) (SDKExporterMetricDataPointInflight, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterMetricDataPointInflightOpts
+	} else {
+		opt = append(opt, newSDKExporterMetricDataPointInflightOpts...)
+	}
+
+	i, err := m.Int64UpDownCounter(
+		"otel.sdk.exporter.metric_data_point.inflight",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterMetricDataPointInflight{noop.Int64UpDownCounter{}}, err
+	}
+	return SDKExporterMetricDataPointInflight{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterMetricDataPointInflight) Inst() metric.Int64UpDownCounter {
+	return m.Int64UpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterMetricDataPointInflight) Name() string {
+	return "otel.sdk.exporter.metric_data_point.inflight"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterMetricDataPointInflight) Unit() string {
+	return "{data_point}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterMetricDataPointInflight) Description() string {
+	return "The number of metric data points which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+func (m SDKExporterMetricDataPointInflight) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+func (m SDKExporterMetricDataPointInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterMetricDataPointInflight) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterMetricDataPointInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterMetricDataPointInflight) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterMetricDataPointInflight) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKExporterOperationDuration is an instrument used to record metric values
+// conforming to the "otel.sdk.exporter.operation.duration" semantic conventions.
+// It represents the duration of exporting a batch of telemetry records.
+type SDKExporterOperationDuration struct {
+	metric.Float64Histogram
+}
+
+var newSDKExporterOperationDurationOpts = []metric.Float64HistogramOption{
+	metric.WithDescription("The duration of exporting a batch of telemetry records."),
+	metric.WithUnit("s"),
+}
+
+// NewSDKExporterOperationDuration returns a new SDKExporterOperationDuration
+// instrument.
+func NewSDKExporterOperationDuration(
+	m metric.Meter,
+	opt ...metric.Float64HistogramOption,
+) (SDKExporterOperationDuration, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterOperationDuration{noop.Float64Histogram{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterOperationDurationOpts
+	} else {
+		opt = append(opt, newSDKExporterOperationDurationOpts...)
+	}
+
+	i, err := m.Float64Histogram(
+		"otel.sdk.exporter.operation.duration",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterOperationDuration{noop.Float64Histogram{}}, err
+	}
+	return SDKExporterOperationDuration{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterOperationDuration) Inst() metric.Float64Histogram {
+	return m.Float64Histogram
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterOperationDuration) Name() string {
+	return "otel.sdk.exporter.operation.duration"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterOperationDuration) Unit() string {
+	return "s"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterOperationDuration) Description() string {
+	return "The duration of exporting a batch of telemetry records."
+}
+
+// Record records val to the current distribution for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// This metric defines successful operations using the full success definitions
+// for [http]
+// and [grpc]. Anything else is defined as an unsuccessful operation. For
+// successful
+// operations, `error.type` MUST NOT be set. For unsuccessful export operations,
+// `error.type` MUST contain a relevant failure cause.
+//
+// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1
+// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success
+func (m SDKExporterOperationDuration) Record(
+	ctx context.Context,
+	val float64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Float64Histogram.Record(ctx, val)
+		return
+	}
+
+	o := recOptPool.Get().(*[]metric.RecordOption)
+	defer func() {
+		*o = (*o)[:0]
+		recOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Float64Histogram.Record(ctx, val, *o...)
+}
+
+// RecordSet records val to the current distribution for set.
+//
+// This metric defines successful operations using the full success definitions
+// for [http]
+// and [grpc]. Anything else is defined as an unsuccessful operation. For
+// successful
+// operations, `error.type` MUST NOT be set. For unsuccessful export operations,
+// `error.type` MUST contain a relevant failure cause.
+//
+// [http]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success-1
+// [grpc]: https://github.com/open-telemetry/opentelemetry-proto/blob/v1.5.0/docs/specification.md#full-success
+func (m SDKExporterOperationDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Float64Histogram.Record(ctx, val)
+		return
+	}
+
+	o := recOptPool.Get().(*[]metric.RecordOption)
+	defer func() {
+		*o = (*o)[:0]
+		recOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Float64Histogram.Record(ctx, val, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents the describes a class of error the operation ended
+// with.
+func (SDKExporterOperationDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrHTTPResponseStatusCode returns an optional attribute for the
+// "http.response.status_code" semantic convention. It represents the HTTP status
+// code of the last HTTP request performed in scope of this export call.
+func (SDKExporterOperationDuration) AttrHTTPResponseStatusCode(val int) attribute.KeyValue {
+	return attribute.Int("http.response.status_code", val)
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterOperationDuration) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterOperationDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrRPCResponseStatusCode returns an optional attribute for the
+// "rpc.response.status_code" semantic convention. It represents the gRPC status
+// code of the last gRPC request performed in scope of this export call.
+func (SDKExporterOperationDuration) AttrRPCResponseStatusCode(val string) attribute.KeyValue {
+	return attribute.String("rpc.response.status_code", val)
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterOperationDuration) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterOperationDuration) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKExporterSpanExported is an instrument used to record metric values
+// conforming to the "otel.sdk.exporter.span.exported" semantic conventions. It
+// represents the number of spans for which the export has finished, either
+// successful or failed.
+type SDKExporterSpanExported struct {
+	metric.Int64Counter
+}
+
+var newSDKExporterSpanExportedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of spans for which the export has finished, either successful or failed."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKExporterSpanExported returns a new SDKExporterSpanExported instrument.
+func NewSDKExporterSpanExported(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKExporterSpanExported, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterSpanExported{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterSpanExportedOpts
+	} else {
+		opt = append(opt, newSDKExporterSpanExportedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.exporter.span.exported",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterSpanExported{noop.Int64Counter{}}, err
+	}
+	return SDKExporterSpanExported{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterSpanExported) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterSpanExported) Name() string {
+	return "otel.sdk.exporter.span.exported"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterSpanExported) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterSpanExported) Description() string {
+	return "The number of spans for which the export has finished, either successful or failed."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+// For exporters with partial success semantics (e.g. OTLP with `rejected_spans`
+// ), rejected spans MUST count as failed and only non-rejected spans count as
+// success.
+// If no rejection reason is available, `rejected` SHOULD be used as value for
+// `error.type`.
+func (m SDKExporterSpanExported) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+// For exporters with partial success semantics (e.g. OTLP with `rejected_spans`
+// ), rejected spans MUST count as failed and only non-rejected spans count as
+// success.
+// If no rejection reason is available, `rejected` SHOULD be used as value for
+// `error.type`.
+func (m SDKExporterSpanExported) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents the describes a class of error the operation ended
+// with.
+func (SDKExporterSpanExported) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterSpanExported) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterSpanExported) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterSpanExported) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterSpanExported) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKExporterSpanInflight is an instrument used to record metric values
+// conforming to the "otel.sdk.exporter.span.inflight" semantic conventions. It
+// represents the number of spans which were passed to the exporter, but that
+// have not been exported yet (neither successful, nor failed).
+type SDKExporterSpanInflight struct {
+	metric.Int64UpDownCounter
+}
+
+var newSDKExporterSpanInflightOpts = []metric.Int64UpDownCounterOption{
+	metric.WithDescription("The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKExporterSpanInflight returns a new SDKExporterSpanInflight instrument.
+func NewSDKExporterSpanInflight(
+	m metric.Meter,
+	opt ...metric.Int64UpDownCounterOption,
+) (SDKExporterSpanInflight, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKExporterSpanInflightOpts
+	} else {
+		opt = append(opt, newSDKExporterSpanInflightOpts...)
+	}
+
+	i, err := m.Int64UpDownCounter(
+		"otel.sdk.exporter.span.inflight",
+		opt...,
+	)
+	if err != nil {
+		return SDKExporterSpanInflight{noop.Int64UpDownCounter{}}, err
+	}
+	return SDKExporterSpanInflight{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKExporterSpanInflight) Inst() metric.Int64UpDownCounter {
+	return m.Int64UpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKExporterSpanInflight) Name() string {
+	return "otel.sdk.exporter.span.inflight"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKExporterSpanInflight) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKExporterSpanInflight) Description() string {
+	return "The number of spans which were passed to the exporter, but that have not been exported yet (neither successful, nor failed)."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+func (m SDKExporterSpanInflight) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful exports, `error.type` MUST NOT be set. For failed exports,
+// `error.type` MUST contain the failure cause.
+func (m SDKExporterSpanInflight) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKExporterSpanInflight) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKExporterSpanInflight) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// AttrServerAddress returns an optional attribute for the "server.address"
+// semantic convention. It represents the server domain name if available without
+// reverse DNS lookup; otherwise, IP address or Unix domain socket name.
+func (SDKExporterSpanInflight) AttrServerAddress(val string) attribute.KeyValue {
+	return attribute.String("server.address", val)
+}
+
+// AttrServerPort returns an optional attribute for the "server.port" semantic
+// convention. It represents the server port number.
+func (SDKExporterSpanInflight) AttrServerPort(val int) attribute.KeyValue {
+	return attribute.Int("server.port", val)
+}
+
+// SDKLogCreated is an instrument used to record metric values conforming to the
+// "otel.sdk.log.created" semantic conventions. It represents the number of logs
+// submitted to enabled SDK Loggers.
+type SDKLogCreated struct {
+	metric.Int64Counter
+}
+
+var newSDKLogCreatedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of logs submitted to enabled SDK Loggers."),
+	metric.WithUnit("{log_record}"),
+}
+
+// NewSDKLogCreated returns a new SDKLogCreated instrument.
+func NewSDKLogCreated(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKLogCreated, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKLogCreated{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKLogCreatedOpts
+	} else {
+		opt = append(opt, newSDKLogCreatedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.log.created",
+		opt...,
+	)
+	if err != nil {
+		return SDKLogCreated{noop.Int64Counter{}}, err
+	}
+	return SDKLogCreated{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKLogCreated) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKLogCreated) Name() string {
+	return "otel.sdk.log.created"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKLogCreated) Unit() string {
+	return "{log_record}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKLogCreated) Description() string {
+	return "The number of logs submitted to enabled SDK Loggers."
+}
+
+// Add adds incr to the existing count for attrs.
+func (m SDKLogCreated) Add(ctx context.Context, incr int64, attrs ...attribute.KeyValue) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributes(attrs...))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+func (m SDKLogCreated) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// SDKMetricReaderCollectionDuration is an instrument used to record metric
+// values conforming to the "otel.sdk.metric_reader.collection.duration" semantic
+// conventions. It represents the duration of the collect operation of the metric
+// reader.
+type SDKMetricReaderCollectionDuration struct {
+	metric.Float64Histogram
+}
+
+var newSDKMetricReaderCollectionDurationOpts = []metric.Float64HistogramOption{
+	metric.WithDescription("The duration of the collect operation of the metric reader."),
+	metric.WithUnit("s"),
+}
+
+// NewSDKMetricReaderCollectionDuration returns a new
+// SDKMetricReaderCollectionDuration instrument.
+func NewSDKMetricReaderCollectionDuration(
+	m metric.Meter,
+	opt ...metric.Float64HistogramOption,
+) (SDKMetricReaderCollectionDuration, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKMetricReaderCollectionDurationOpts
+	} else {
+		opt = append(opt, newSDKMetricReaderCollectionDurationOpts...)
+	}
+
+	i, err := m.Float64Histogram(
+		"otel.sdk.metric_reader.collection.duration",
+		opt...,
+	)
+	if err != nil {
+		return SDKMetricReaderCollectionDuration{noop.Float64Histogram{}}, err
+	}
+	return SDKMetricReaderCollectionDuration{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKMetricReaderCollectionDuration) Inst() metric.Float64Histogram {
+	return m.Float64Histogram
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKMetricReaderCollectionDuration) Name() string {
+	return "otel.sdk.metric_reader.collection.duration"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKMetricReaderCollectionDuration) Unit() string {
+	return "s"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKMetricReaderCollectionDuration) Description() string {
+	return "The duration of the collect operation of the metric reader."
+}
+
+// Record records val to the current distribution for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful collections, `error.type` MUST NOT be set. For failed
+// collections, `error.type` SHOULD contain the failure cause.
+// It can happen that metrics collection is successful for some MetricProducers,
+// while others fail. In that case `error.type` SHOULD be set to any of the
+// failure causes.
+func (m SDKMetricReaderCollectionDuration) Record(
+	ctx context.Context,
+	val float64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Float64Histogram.Record(ctx, val)
+		return
+	}
+
+	o := recOptPool.Get().(*[]metric.RecordOption)
+	defer func() {
+		*o = (*o)[:0]
+		recOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Float64Histogram.Record(ctx, val, *o...)
+}
+
+// RecordSet records val to the current distribution for set.
+//
+// For successful collections, `error.type` MUST NOT be set. For failed
+// collections, `error.type` SHOULD contain the failure cause.
+// It can happen that metrics collection is successful for some MetricProducers,
+// while others fail. In that case `error.type` SHOULD be set to any of the
+// failure causes.
+func (m SDKMetricReaderCollectionDuration) RecordSet(ctx context.Context, val float64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Float64Histogram.Record(ctx, val)
+		return
+	}
+
+	o := recOptPool.Get().(*[]metric.RecordOption)
+	defer func() {
+		*o = (*o)[:0]
+		recOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Float64Histogram.Record(ctx, val, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents the describes a class of error the operation ended
+// with.
+func (SDKMetricReaderCollectionDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKMetricReaderCollectionDuration) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKMetricReaderCollectionDuration) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKProcessorLogProcessed is an instrument used to record metric values
+// conforming to the "otel.sdk.processor.log.processed" semantic conventions. It
+// represents the number of log records for which the processing has finished,
+// either successful or failed.
+type SDKProcessorLogProcessed struct {
+	metric.Int64Counter
+}
+
+var newSDKProcessorLogProcessedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of log records for which the processing has finished, either successful or failed."),
+	metric.WithUnit("{log_record}"),
+}
+
+// NewSDKProcessorLogProcessed returns a new SDKProcessorLogProcessed instrument.
+func NewSDKProcessorLogProcessed(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKProcessorLogProcessed, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKProcessorLogProcessed{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKProcessorLogProcessedOpts
+	} else {
+		opt = append(opt, newSDKProcessorLogProcessedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.processor.log.processed",
+		opt...,
+	)
+	if err != nil {
+		return SDKProcessorLogProcessed{noop.Int64Counter{}}, err
+	}
+	return SDKProcessorLogProcessed{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKProcessorLogProcessed) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKProcessorLogProcessed) Name() string {
+	return "otel.sdk.processor.log.processed"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKProcessorLogProcessed) Unit() string {
+	return "{log_record}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKProcessorLogProcessed) Description() string {
+	return "The number of log records for which the processing has finished, either successful or failed."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful processing, `error.type` MUST NOT be set. For failed
+// processing, `error.type` MUST contain the failure cause.
+// For the SDK Simple and Batching Log Record Processor a log record is
+// considered to be processed already when it has been submitted to the exporter,
+// not when the corresponding export call has finished.
+func (m SDKProcessorLogProcessed) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful processing, `error.type` MUST NOT be set. For failed
+// processing, `error.type` MUST contain the failure cause.
+// For the SDK Simple and Batching Log Record Processor a log record is
+// considered to be processed already when it has been submitted to the exporter,
+// not when the corresponding export call has finished.
+func (m SDKProcessorLogProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents a low-cardinality description of the failure reason.
+// SDK Batching Log Record Processors MUST use `queue_full` for log records
+// dropped due to a full queue.
+func (SDKProcessorLogProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKProcessorLogProcessed) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKProcessorLogProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKProcessorLogQueueCapacity is an instrument used to record metric values
+// conforming to the "otel.sdk.processor.log.queue.capacity" semantic
+// conventions. It represents the maximum number of log records the queue of a
+// given instance of an SDK Log Record processor can hold.
+type SDKProcessorLogQueueCapacity struct {
+	metric.Int64ObservableUpDownCounter
+}
+
+var newSDKProcessorLogQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{
+	metric.WithDescription("The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold."),
+	metric.WithUnit("{log_record}"),
+}
+
+// NewSDKProcessorLogQueueCapacity returns a new SDKProcessorLogQueueCapacity
+// instrument.
+func NewSDKProcessorLogQueueCapacity(
+	m metric.Meter,
+	opt ...metric.Int64ObservableUpDownCounterOption,
+) (SDKProcessorLogQueueCapacity, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKProcessorLogQueueCapacityOpts
+	} else {
+		opt = append(opt, newSDKProcessorLogQueueCapacityOpts...)
+	}
+
+	i, err := m.Int64ObservableUpDownCounter(
+		"otel.sdk.processor.log.queue.capacity",
+		opt...,
+	)
+	if err != nil {
+		return SDKProcessorLogQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err
+	}
+	return SDKProcessorLogQueueCapacity{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKProcessorLogQueueCapacity) Inst() metric.Int64ObservableUpDownCounter {
+	return m.Int64ObservableUpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKProcessorLogQueueCapacity) Name() string {
+	return "otel.sdk.processor.log.queue.capacity"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKProcessorLogQueueCapacity) Unit() string {
+	return "{log_record}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKProcessorLogQueueCapacity) Description() string {
+	return "The maximum number of log records the queue of a given instance of an SDK Log Record processor can hold."
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKProcessorLogQueueCapacity) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKProcessorLogQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKProcessorLogQueueSize is an instrument used to record metric values
+// conforming to the "otel.sdk.processor.log.queue.size" semantic conventions. It
+// represents the number of log records in the queue of a given instance of an
+// SDK log processor.
+type SDKProcessorLogQueueSize struct {
+	metric.Int64ObservableUpDownCounter
+}
+
+var newSDKProcessorLogQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{
+	metric.WithDescription("The number of log records in the queue of a given instance of an SDK log processor."),
+	metric.WithUnit("{log_record}"),
+}
+
+// NewSDKProcessorLogQueueSize returns a new SDKProcessorLogQueueSize instrument.
+func NewSDKProcessorLogQueueSize(
+	m metric.Meter,
+	opt ...metric.Int64ObservableUpDownCounterOption,
+) (SDKProcessorLogQueueSize, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKProcessorLogQueueSizeOpts
+	} else {
+		opt = append(opt, newSDKProcessorLogQueueSizeOpts...)
+	}
+
+	i, err := m.Int64ObservableUpDownCounter(
+		"otel.sdk.processor.log.queue.size",
+		opt...,
+	)
+	if err != nil {
+		return SDKProcessorLogQueueSize{noop.Int64ObservableUpDownCounter{}}, err
+	}
+	return SDKProcessorLogQueueSize{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKProcessorLogQueueSize) Inst() metric.Int64ObservableUpDownCounter {
+	return m.Int64ObservableUpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKProcessorLogQueueSize) Name() string {
+	return "otel.sdk.processor.log.queue.size"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKProcessorLogQueueSize) Unit() string {
+	return "{log_record}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKProcessorLogQueueSize) Description() string {
+	return "The number of log records in the queue of a given instance of an SDK log processor."
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKProcessorLogQueueSize) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKProcessorLogQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKProcessorSpanProcessed is an instrument used to record metric values
+// conforming to the "otel.sdk.processor.span.processed" semantic conventions. It
+// represents the number of spans for which the processing has finished, either
+// successful or failed.
+type SDKProcessorSpanProcessed struct {
+	metric.Int64Counter
+}
+
+var newSDKProcessorSpanProcessedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of spans for which the processing has finished, either successful or failed."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKProcessorSpanProcessed returns a new SDKProcessorSpanProcessed
+// instrument.
+func NewSDKProcessorSpanProcessed(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKProcessorSpanProcessed, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKProcessorSpanProcessed{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKProcessorSpanProcessedOpts
+	} else {
+		opt = append(opt, newSDKProcessorSpanProcessedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.processor.span.processed",
+		opt...,
+	)
+	if err != nil {
+		return SDKProcessorSpanProcessed{noop.Int64Counter{}}, err
+	}
+	return SDKProcessorSpanProcessed{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKProcessorSpanProcessed) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKProcessorSpanProcessed) Name() string {
+	return "otel.sdk.processor.span.processed"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKProcessorSpanProcessed) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKProcessorSpanProcessed) Description() string {
+	return "The number of spans for which the processing has finished, either successful or failed."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// For successful processing, `error.type` MUST NOT be set. For failed
+// processing, `error.type` MUST contain the failure cause.
+// For the SDK Simple and Batching Span Processor a span is considered to be
+// processed already when it has been submitted to the exporter, not when the
+// corresponding export call has finished.
+func (m SDKProcessorSpanProcessed) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// For successful processing, `error.type` MUST NOT be set. For failed
+// processing, `error.type` MUST contain the failure cause.
+// For the SDK Simple and Batching Span Processor a span is considered to be
+// processed already when it has been submitted to the exporter, not when the
+// corresponding export call has finished.
+func (m SDKProcessorSpanProcessed) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AttrErrorType returns an optional attribute for the "error.type" semantic
+// convention. It represents a low-cardinality description of the failure reason.
+// SDK Batching Span Processors MUST use `queue_full` for spans dropped due to a
+// full queue.
+func (SDKProcessorSpanProcessed) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue {
+	return attribute.String("error.type", string(val))
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKProcessorSpanProcessed) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKProcessorSpanProcessed) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKProcessorSpanQueueCapacity is an instrument used to record metric values
+// conforming to the "otel.sdk.processor.span.queue.capacity" semantic
+// conventions. It represents the maximum number of spans the queue of a given
+// instance of an SDK span processor can hold.
+type SDKProcessorSpanQueueCapacity struct {
+	metric.Int64ObservableUpDownCounter
+}
+
+var newSDKProcessorSpanQueueCapacityOpts = []metric.Int64ObservableUpDownCounterOption{
+	metric.WithDescription("The maximum number of spans the queue of a given instance of an SDK span processor can hold."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKProcessorSpanQueueCapacity returns a new SDKProcessorSpanQueueCapacity
+// instrument.
+func NewSDKProcessorSpanQueueCapacity(
+	m metric.Meter,
+	opt ...metric.Int64ObservableUpDownCounterOption,
+) (SDKProcessorSpanQueueCapacity, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKProcessorSpanQueueCapacityOpts
+	} else {
+		opt = append(opt, newSDKProcessorSpanQueueCapacityOpts...)
+	}
+
+	i, err := m.Int64ObservableUpDownCounter(
+		"otel.sdk.processor.span.queue.capacity",
+		opt...,
+	)
+	if err != nil {
+		return SDKProcessorSpanQueueCapacity{noop.Int64ObservableUpDownCounter{}}, err
+	}
+	return SDKProcessorSpanQueueCapacity{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKProcessorSpanQueueCapacity) Inst() metric.Int64ObservableUpDownCounter {
+	return m.Int64ObservableUpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKProcessorSpanQueueCapacity) Name() string {
+	return "otel.sdk.processor.span.queue.capacity"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKProcessorSpanQueueCapacity) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKProcessorSpanQueueCapacity) Description() string {
+	return "The maximum number of spans the queue of a given instance of an SDK span processor can hold."
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKProcessorSpanQueueCapacity) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKProcessorSpanQueueCapacity) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKProcessorSpanQueueSize is an instrument used to record metric values
+// conforming to the "otel.sdk.processor.span.queue.size" semantic conventions.
+// It represents the number of spans in the queue of a given instance of an SDK
+// span processor.
+type SDKProcessorSpanQueueSize struct {
+	metric.Int64ObservableUpDownCounter
+}
+
+var newSDKProcessorSpanQueueSizeOpts = []metric.Int64ObservableUpDownCounterOption{
+	metric.WithDescription("The number of spans in the queue of a given instance of an SDK span processor."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKProcessorSpanQueueSize returns a new SDKProcessorSpanQueueSize
+// instrument.
+func NewSDKProcessorSpanQueueSize(
+	m metric.Meter,
+	opt ...metric.Int64ObservableUpDownCounterOption,
+) (SDKProcessorSpanQueueSize, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKProcessorSpanQueueSizeOpts
+	} else {
+		opt = append(opt, newSDKProcessorSpanQueueSizeOpts...)
+	}
+
+	i, err := m.Int64ObservableUpDownCounter(
+		"otel.sdk.processor.span.queue.size",
+		opt...,
+	)
+	if err != nil {
+		return SDKProcessorSpanQueueSize{noop.Int64ObservableUpDownCounter{}}, err
+	}
+	return SDKProcessorSpanQueueSize{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKProcessorSpanQueueSize) Inst() metric.Int64ObservableUpDownCounter {
+	return m.Int64ObservableUpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKProcessorSpanQueueSize) Name() string {
+	return "otel.sdk.processor.span.queue.size"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKProcessorSpanQueueSize) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKProcessorSpanQueueSize) Description() string {
+	return "The number of spans in the queue of a given instance of an SDK span processor."
+}
+
+// AttrComponentName returns an optional attribute for the "otel.component.name"
+// semantic convention. It represents a name uniquely identifying the instance of
+// the OpenTelemetry component within its containing SDK instance.
+func (SDKProcessorSpanQueueSize) AttrComponentName(val string) attribute.KeyValue {
+	return attribute.String("otel.component.name", val)
+}
+
+// AttrComponentType returns an optional attribute for the "otel.component.type"
+// semantic convention. It represents a name identifying the type of the
+// OpenTelemetry component.
+func (SDKProcessorSpanQueueSize) AttrComponentType(val ComponentTypeAttr) attribute.KeyValue {
+	return attribute.String("otel.component.type", string(val))
+}
+
+// SDKSpanLive is an instrument used to record metric values conforming to the
+// "otel.sdk.span.live" semantic conventions. It represents the number of created
+// spans with `recording=true` for which the end operation has not been called
+// yet.
+type SDKSpanLive struct {
+	metric.Int64UpDownCounter
+}
+
+var newSDKSpanLiveOpts = []metric.Int64UpDownCounterOption{
+	metric.WithDescription("The number of created spans with `recording=true` for which the end operation has not been called yet."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKSpanLive returns a new SDKSpanLive instrument.
+func NewSDKSpanLive(
+	m metric.Meter,
+	opt ...metric.Int64UpDownCounterOption,
+) (SDKSpanLive, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKSpanLive{noop.Int64UpDownCounter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKSpanLiveOpts
+	} else {
+		opt = append(opt, newSDKSpanLiveOpts...)
+	}
+
+	i, err := m.Int64UpDownCounter(
+		"otel.sdk.span.live",
+		opt...,
+	)
+	if err != nil {
+		return SDKSpanLive{noop.Int64UpDownCounter{}}, err
+	}
+	return SDKSpanLive{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKSpanLive) Inst() metric.Int64UpDownCounter {
+	return m.Int64UpDownCounter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKSpanLive) Name() string {
+	return "otel.sdk.span.live"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKSpanLive) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKSpanLive) Description() string {
+	return "The number of created spans with `recording=true` for which the end operation has not been called yet."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+func (m SDKSpanLive) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+func (m SDKSpanLive) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64UpDownCounter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64UpDownCounter.Add(ctx, incr, *o...)
+}
+
+// AttrSpanSamplingResult returns an optional attribute for the
+// "otel.span.sampling_result" semantic convention. It represents the result
+// value of the sampler for this span.
+func (SDKSpanLive) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue {
+	return attribute.String("otel.span.sampling_result", string(val))
+}
+
+// SDKSpanStarted is an instrument used to record metric values conforming to the
+// "otel.sdk.span.started" semantic conventions. It represents the number of
+// created spans.
+type SDKSpanStarted struct {
+	metric.Int64Counter
+}
+
+var newSDKSpanStartedOpts = []metric.Int64CounterOption{
+	metric.WithDescription("The number of created spans."),
+	metric.WithUnit("{span}"),
+}
+
+// NewSDKSpanStarted returns a new SDKSpanStarted instrument.
+func NewSDKSpanStarted(
+	m metric.Meter,
+	opt ...metric.Int64CounterOption,
+) (SDKSpanStarted, error) {
+	// Check if the meter is nil.
+	if m == nil {
+		return SDKSpanStarted{noop.Int64Counter{}}, nil
+	}
+
+	if len(opt) == 0 {
+		opt = newSDKSpanStartedOpts
+	} else {
+		opt = append(opt, newSDKSpanStartedOpts...)
+	}
+
+	i, err := m.Int64Counter(
+		"otel.sdk.span.started",
+		opt...,
+	)
+	if err != nil {
+		return SDKSpanStarted{noop.Int64Counter{}}, err
+	}
+	return SDKSpanStarted{i}, nil
+}
+
+// Inst returns the underlying metric instrument.
+func (m SDKSpanStarted) Inst() metric.Int64Counter {
+	return m.Int64Counter
+}
+
+// Name returns the semantic convention name of the instrument.
+func (SDKSpanStarted) Name() string {
+	return "otel.sdk.span.started"
+}
+
+// Unit returns the semantic convention unit of the instrument
+func (SDKSpanStarted) Unit() string {
+	return "{span}"
+}
+
+// Description returns the semantic convention description of the instrument
+func (SDKSpanStarted) Description() string {
+	return "The number of created spans."
+}
+
+// Add adds incr to the existing count for attrs.
+//
+// All additional attrs passed are included in the recorded value.
+//
+// Implementations MUST record this metric for all spans, even for non-recording
+// ones.
+func (m SDKSpanStarted) Add(
+	ctx context.Context,
+	incr int64,
+	attrs ...attribute.KeyValue,
+) {
+	if len(attrs) == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(
+		*o,
+		metric.WithAttributes(
+			attrs...,
+		),
+	)
+
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AddSet adds incr to the existing count for set.
+//
+// Implementations MUST record this metric for all spans, even for non-recording
+// ones.
+func (m SDKSpanStarted) AddSet(ctx context.Context, incr int64, set attribute.Set) {
+	if set.Len() == 0 {
+		m.Int64Counter.Add(ctx, incr)
+		return
+	}
+
+	o := addOptPool.Get().(*[]metric.AddOption)
+	defer func() {
+		*o = (*o)[:0]
+		addOptPool.Put(o)
+	}()
+
+	*o = append(*o, metric.WithAttributeSet(set))
+	m.Int64Counter.Add(ctx, incr, *o...)
+}
+
+// AttrSpanParentOrigin returns an optional attribute for the
+// "otel.span.parent.origin" semantic convention. It represents the determines
+// whether the span has a parent span, and if so, [whether it is a remote parent]
+// .
+//
+// [whether it is a remote parent]: https://opentelemetry.io/docs/specs/otel/trace/api/#isremote
+func (SDKSpanStarted) AttrSpanParentOrigin(val SpanParentOriginAttr) attribute.KeyValue {
+	return attribute.String("otel.span.parent.origin", string(val))
+}
+
+// AttrSpanSamplingResult returns an optional attribute for the
+// "otel.span.sampling_result" semantic convention. It represents the result
+// value of the sampler for this span.
+func (SDKSpanStarted) AttrSpanSamplingResult(val SpanSamplingResultAttr) attribute.KeyValue {
+	return attribute.String("otel.span.sampling_result", string(val))
+}
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go
--- a/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/go.opentelemetry.io/otel/semconv/v1.40.0/schema.go	2026-09-02 10:25:23.441027150 +0000
@@ -0,0 +1,9 @@
+// Copyright The OpenTelemetry Authors
+// SPDX-License-Identifier: Apache-2.0
+
+package semconv // import "go.opentelemetry.io/otel/semconv/v1.40.0"
+
+// SchemaURL is the schema URL that matches the version of the semantic conventions
+// that this package defines. Semconv packages starting from v1.4.0 must declare
+// non-empty schema URL in the form https://opentelemetry.io/schemas/<version>
+const SchemaURL = "https://opentelemetry.io/schemas/1.40.0"
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/trace/auto.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/trace/auto.go
--- a/vendor/go.opentelemetry.io/otel/trace/auto.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/trace/auto.go	2026-09-02 10:25:23.517027255 +0000
@@ -20,7 +20,7 @@
 
 	"go.opentelemetry.io/otel/attribute"
 	"go.opentelemetry.io/otel/codes"
-	semconv "go.opentelemetry.io/otel/semconv/v1.39.0"
+	semconv "go.opentelemetry.io/otel/semconv/v1.40.0"
 	"go.opentelemetry.io/otel/trace/embedded"
 	"go.opentelemetry.io/otel/trace/internal/telemetry"
 )
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/trace/trace.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/trace/trace.go
--- a/vendor/go.opentelemetry.io/otel/trace/trace.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/trace/trace.go	2026-09-02 10:25:23.517027255 +0000
@@ -12,6 +12,11 @@
 	// with the sampling bit set means the span is sampled.
 	FlagsSampled = TraceFlags(0x01)
 
+	// FlagsRandom is a bitmask with the random trace ID flag set. When
+	// set, it signals that the trace ID was generated randomly with at
+	// least 56 bits of randomness (W3C Trace Context Level 2).
+	FlagsRandom = TraceFlags(0x02)
+
 	errInvalidHexID errorConst = "trace-id and span-id can only contain [0-9a-f] characters, all lowercase"
 
 	errInvalidTraceIDLength errorConst = "hex encoded trace-id must have length equals to 32"
@@ -191,6 +196,20 @@
 	return tf &^ FlagsSampled
 }
 
+// IsRandom reports whether the random bit is set in the TraceFlags.
+func (tf TraceFlags) IsRandom() bool {
+	return tf&FlagsRandom == FlagsRandom
+}
+
+// WithRandom sets the random bit in a new copy of the TraceFlags.
+func (tf TraceFlags) WithRandom(random bool) TraceFlags { // nolint:revive  // random is not a control flag.
+	if random {
+		return tf | FlagsRandom
+	}
+
+	return tf &^ FlagsRandom
+}
+
 // MarshalJSON implements a custom marshal function to encode TraceFlags
 // as a hex string.
 func (tf TraceFlags) MarshalJSON() ([]byte, error) {
@@ -317,6 +336,11 @@
 	return sc.traceFlags.IsSampled()
 }
 
+// IsRandom reports whether the random bit is set in the SpanContext's TraceFlags.
+func (sc SpanContext) IsRandom() bool {
+	return sc.traceFlags.IsRandom()
+}
+
 // WithTraceFlags returns a new SpanContext with the TraceFlags replaced.
 func (sc SpanContext) WithTraceFlags(flags TraceFlags) SpanContext {
 	return SpanContext{
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/trace/tracestate.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/trace/tracestate.go
--- a/vendor/go.opentelemetry.io/otel/trace/tracestate.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/trace/tracestate.go	2026-09-02 10:25:23.517027255 +0000
@@ -64,7 +64,7 @@
 		if v > 127 {
 			return false
 		}
-		if isAlphaNum(byte(v)) {
+		if isAlphaNumASCII(v) {
 			continue
 		}
 		switch v {
@@ -92,7 +92,7 @@
 	return ret && checkKeyRemain(key[1:])
 }
 
-func isAlphaNum(c byte) bool {
+func isAlphaNumASCII[T rune | byte](c T) bool {
 	if c >= 'a' && c <= 'z' {
 		return true
 	}
@@ -108,7 +108,7 @@
 	if key == "" {
 		return false
 	}
-	return isAlphaNum(key[0]) && len(key[1:]) <= n && checkKeyRemain(key[1:])
+	return isAlphaNumASCII(key[0]) && len(key[1:]) <= n && checkKeyRemain(key[1:])
 }
 
 // based on the W3C Trace Context specification
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/version.go /work/src/kubernetes/vendor/go.opentelemetry.io/otel/version.go
--- a/vendor/go.opentelemetry.io/otel/version.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/version.go	2026-09-02 10:25:23.433027139 +0000
@@ -5,5 +5,5 @@
 
 // Version is the current release version of OpenTelemetry in use.
 func Version() string {
-	return "1.41.0"
+	return "1.43.0"
 }
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/otel/versions.yaml /work/src/kubernetes/vendor/go.opentelemetry.io/otel/versions.yaml
--- a/vendor/go.opentelemetry.io/otel/versions.yaml	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/otel/versions.yaml	2026-09-02 10:25:23.433027139 +0000
@@ -3,7 +3,7 @@
 
 module-sets:
   stable-v1:
-    version: v1.41.0
+    version: v1.43.0
     modules:
       - go.opentelemetry.io/otel
       - go.opentelemetry.io/otel/bridge/opencensus
@@ -22,11 +22,11 @@
       - go.opentelemetry.io/otel/sdk/metric
       - go.opentelemetry.io/otel/trace
   experimental-metrics:
-    version: v0.63.0
+    version: v0.65.0
     modules:
       - go.opentelemetry.io/otel/exporters/prometheus
   experimental-logs:
-    version: v0.17.0
+    version: v0.19.0
     modules:
       - go.opentelemetry.io/otel/log
       - go.opentelemetry.io/otel/log/logtest
@@ -36,7 +36,7 @@
       - go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp
       - go.opentelemetry.io/otel/exporters/stdout/stdoutlog
   experimental-schema:
-    version: v0.0.15
+    version: v0.0.16
     modules:
       - go.opentelemetry.io/otel/schema
 excluded-modules:
@@ -64,3 +64,6 @@
   go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp:
     version-refs:
       - ./internal/version.go
+  go.opentelemetry.io/otel/exporters/stdout/stdoutlog:
+    version-refs:
+      - ./internal/version.go
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go /work/src/kubernetes/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go
--- a/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go	2026-09-02 10:25:23.533027276 +0000
@@ -22,8 +22,6 @@
 //
 // For semantics around ctx use and closing/ending streaming RPCs, please refer to https://pkg.go.dev/google.golang.org/grpc/?tab=doc#ClientConn.NewStream.
 type TraceServiceClient interface {
-	// For performance reasons, it is recommended to keep this RPC
-	// alive for the entire life of the application.
 	Export(ctx context.Context, in *ExportTraceServiceRequest, opts ...grpc.CallOption) (*ExportTraceServiceResponse, error)
 }
 
@@ -48,8 +46,6 @@
 // All implementations must embed UnimplementedTraceServiceServer
 // for forward compatibility
 type TraceServiceServer interface {
-	// For performance reasons, it is recommended to keep this RPC
-	// alive for the entire life of the application.
 	Export(context.Context, *ExportTraceServiceRequest) (*ExportTraceServiceResponse, error)
 	mustEmbedUnimplementedTraceServiceServer()
 }
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go /work/src/kubernetes/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go
--- a/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go	2026-09-02 10:25:23.533027276 +0000
@@ -34,7 +34,7 @@
 	_ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20)
 )
 
-// AnyValue is used to represent any type of attribute value. AnyValue may contain a
+// Represents any type of attribute value. AnyValue may contain a
 // primitive value such as a string or integer or it may contain an arbitrary nested
 // object containing arrays, key-value lists and primitives.
 type AnyValue struct {
@@ -252,8 +252,10 @@
 
 	// A collection of key/value pairs of key-value pairs. The list may be empty (may
 	// contain 0 elements).
+	//
 	// The keys MUST be unique (it is not allowed to have more than one
 	// value with the same key).
+	// The behavior of software that receives duplicated keys can be unpredictable.
 	Values []*KeyValue `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"`
 }
 
@@ -296,14 +298,16 @@
 	return nil
 }
 
-// KeyValue is a key-value pair that is used to store Span attributes, Link
+// Represents a key-value pair that is used to store Span attributes, Link
 // attributes, etc.
 type KeyValue struct {
 	state         protoimpl.MessageState
 	sizeCache     protoimpl.SizeCache
 	unknownFields protoimpl.UnknownFields
 
-	Key   string    `protobuf:"bytes,1,opt,name=key,proto3" json:"key,omitempty"`
+	// The key name of the pair.
+	Key string `protobuf:"bytes,1,opt,name=key,proto3" json:"key,omitempty"`
+	// The value of the pair.
 	Value *AnyValue `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"`
 }
 
@@ -360,14 +364,21 @@
 	sizeCache     protoimpl.SizeCache
 	unknownFields protoimpl.UnknownFields
 
+	// A name denoting the Instrumentation scope.
 	// An empty instrumentation scope name means the name is unknown.
-	Name    string `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
+	Name string `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"`
+	// Defines the version of the instrumentation scope.
+	// An empty instrumentation scope version means the version is unknown.
 	Version string `protobuf:"bytes,2,opt,name=version,proto3" json:"version,omitempty"`
 	// Additional attributes that describe the scope. [Optional].
 	// Attribute keys MUST be unique (it is not allowed to have more than one
 	// attribute with the same key).
-	Attributes             []*KeyValue `protobuf:"bytes,3,rep,name=attributes,proto3" json:"attributes,omitempty"`
-	DroppedAttributesCount uint32      `protobuf:"varint,4,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"`
+	// The behavior of software that receives duplicated keys can be unpredictable.
+	Attributes []*KeyValue `protobuf:"bytes,3,rep,name=attributes,proto3" json:"attributes,omitempty"`
+	// The number of attributes that were discarded. Attributes
+	// can be discarded because their keys are too long or because there are too many
+	// attributes. If this value is 0, then no attributes were dropped.
+	DroppedAttributesCount uint32 `protobuf:"varint,4,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"`
 }
 
 func (x *InstrumentationScope) Reset() {
@@ -430,6 +441,101 @@
 	return 0
 }
 
+// A reference to an Entity.
+// Entity represents an object of interest associated with produced telemetry: e.g spans, metrics, profiles, or logs.
+//
+// Status: [Development]
+type EntityRef struct {
+	state         protoimpl.MessageState
+	sizeCache     protoimpl.SizeCache
+	unknownFields protoimpl.UnknownFields
+
+	// The Schema URL, if known. This is the identifier of the Schema that the entity data
+	// is recorded in. To learn more about Schema URL see
+	// https://opentelemetry.io/docs/specs/otel/schemas/#schema-url
+	//
+	// This schema_url applies to the data in this message and to the Resource attributes
+	// referenced by id_keys and description_keys.
+	// TODO: discuss if we are happy with this somewhat complicated definition of what
+	// the schema_url applies to.
+	//
+	// This field obsoletes the schema_url field in ResourceMetrics/ResourceSpans/ResourceLogs.
+	SchemaUrl string `protobuf:"bytes,1,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"`
+	// Defines the type of the entity. MUST not change during the lifetime of the entity.
+	// For example: "service" or "host". This field is required and MUST not be empty
+	// for valid entities.
+	Type string `protobuf:"bytes,2,opt,name=type,proto3" json:"type,omitempty"`
+	// Attribute Keys that identify the entity.
+	// MUST not change during the lifetime of the entity. The Id must contain at least one attribute.
+	// These keys MUST exist in the containing {message}.attributes.
+	IdKeys []string `protobuf:"bytes,3,rep,name=id_keys,json=idKeys,proto3" json:"id_keys,omitempty"`
+	// Descriptive (non-identifying) attribute keys of the entity.
+	// MAY change over the lifetime of the entity. MAY be empty.
+	// These attribute keys are not part of entity's identity.
+	// These keys MUST exist in the containing {message}.attributes.
+	DescriptionKeys []string `protobuf:"bytes,4,rep,name=description_keys,json=descriptionKeys,proto3" json:"description_keys,omitempty"`
+}
+
+func (x *EntityRef) Reset() {
+	*x = EntityRef{}
+	if protoimpl.UnsafeEnabled {
+		mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[5]
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		ms.StoreMessageInfo(mi)
+	}
+}
+
+func (x *EntityRef) String() string {
+	return protoimpl.X.MessageStringOf(x)
+}
+
+func (*EntityRef) ProtoMessage() {}
+
+func (x *EntityRef) ProtoReflect() protoreflect.Message {
+	mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[5]
+	if protoimpl.UnsafeEnabled && x != nil {
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		if ms.LoadMessageInfo() == nil {
+			ms.StoreMessageInfo(mi)
+		}
+		return ms
+	}
+	return mi.MessageOf(x)
+}
+
+// Deprecated: Use EntityRef.ProtoReflect.Descriptor instead.
+func (*EntityRef) Descriptor() ([]byte, []int) {
+	return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{5}
+}
+
+func (x *EntityRef) GetSchemaUrl() string {
+	if x != nil {
+		return x.SchemaUrl
+	}
+	return ""
+}
+
+func (x *EntityRef) GetType() string {
+	if x != nil {
+		return x.Type
+	}
+	return ""
+}
+
+func (x *EntityRef) GetIdKeys() []string {
+	if x != nil {
+		return x.IdKeys
+	}
+	return nil
+}
+
+func (x *EntityRef) GetDescriptionKeys() []string {
+	if x != nil {
+		return x.DescriptionKeys
+	}
+	return nil
+}
+
 var File_opentelemetry_proto_common_v1_common_proto protoreflect.FileDescriptor
 
 var file_opentelemetry_proto_common_v1_common_proto_rawDesc = []byte{
@@ -488,15 +594,23 @@
 	0x72, 0x6f, 0x70, 0x70, 0x65, 0x64, 0x5f, 0x61, 0x74, 0x74, 0x72, 0x69, 0x62, 0x75, 0x74, 0x65,
 	0x73, 0x5f, 0x63, 0x6f, 0x75, 0x6e, 0x74, 0x18, 0x04, 0x20, 0x01, 0x28, 0x0d, 0x52, 0x16, 0x64,
 	0x72, 0x6f, 0x70, 0x70, 0x65, 0x64, 0x41, 0x74, 0x74, 0x72, 0x69, 0x62, 0x75, 0x74, 0x65, 0x73,
-	0x43, 0x6f, 0x75, 0x6e, 0x74, 0x42, 0x7b, 0x0a, 0x20, 0x69, 0x6f, 0x2e, 0x6f, 0x70, 0x65, 0x6e,
-	0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2e,
-	0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2e, 0x76, 0x31, 0x42, 0x0b, 0x43, 0x6f, 0x6d, 0x6d, 0x6f,
-	0x6e, 0x50, 0x72, 0x6f, 0x74, 0x6f, 0x50, 0x01, 0x5a, 0x28, 0x67, 0x6f, 0x2e, 0x6f, 0x70, 0x65,
-	0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2e, 0x69, 0x6f, 0x2f, 0x70, 0x72,
-	0x6f, 0x74, 0x6f, 0x2f, 0x6f, 0x74, 0x6c, 0x70, 0x2f, 0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2f,
-	0x76, 0x31, 0xaa, 0x02, 0x1d, 0x4f, 0x70, 0x65, 0x6e, 0x54, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74,
-	0x72, 0x79, 0x2e, 0x50, 0x72, 0x6f, 0x74, 0x6f, 0x2e, 0x43, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2e,
-	0x56, 0x31, 0x62, 0x06, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x33,
+	0x43, 0x6f, 0x75, 0x6e, 0x74, 0x22, 0x82, 0x01, 0x0a, 0x09, 0x45, 0x6e, 0x74, 0x69, 0x74, 0x79,
+	0x52, 0x65, 0x66, 0x12, 0x1d, 0x0a, 0x0a, 0x73, 0x63, 0x68, 0x65, 0x6d, 0x61, 0x5f, 0x75, 0x72,
+	0x6c, 0x18, 0x01, 0x20, 0x01, 0x28, 0x09, 0x52, 0x09, 0x73, 0x63, 0x68, 0x65, 0x6d, 0x61, 0x55,
+	0x72, 0x6c, 0x12, 0x12, 0x0a, 0x04, 0x74, 0x79, 0x70, 0x65, 0x18, 0x02, 0x20, 0x01, 0x28, 0x09,
+	0x52, 0x04, 0x74, 0x79, 0x70, 0x65, 0x12, 0x17, 0x0a, 0x07, 0x69, 0x64, 0x5f, 0x6b, 0x65, 0x79,
+	0x73, 0x18, 0x03, 0x20, 0x03, 0x28, 0x09, 0x52, 0x06, 0x69, 0x64, 0x4b, 0x65, 0x79, 0x73, 0x12,
+	0x29, 0x0a, 0x10, 0x64, 0x65, 0x73, 0x63, 0x72, 0x69, 0x70, 0x74, 0x69, 0x6f, 0x6e, 0x5f, 0x6b,
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 }
 
 var (
@@ -511,13 +625,14 @@
 	return file_opentelemetry_proto_common_v1_common_proto_rawDescData
 }
 
-var file_opentelemetry_proto_common_v1_common_proto_msgTypes = make([]protoimpl.MessageInfo, 5)
+var file_opentelemetry_proto_common_v1_common_proto_msgTypes = make([]protoimpl.MessageInfo, 6)
 var file_opentelemetry_proto_common_v1_common_proto_goTypes = []interface{}{
 	(*AnyValue)(nil),             // 0: opentelemetry.proto.common.v1.AnyValue
 	(*ArrayValue)(nil),           // 1: opentelemetry.proto.common.v1.ArrayValue
 	(*KeyValueList)(nil),         // 2: opentelemetry.proto.common.v1.KeyValueList
 	(*KeyValue)(nil),             // 3: opentelemetry.proto.common.v1.KeyValue
 	(*InstrumentationScope)(nil), // 4: opentelemetry.proto.common.v1.InstrumentationScope
+	(*EntityRef)(nil),            // 5: opentelemetry.proto.common.v1.EntityRef
 }
 var file_opentelemetry_proto_common_v1_common_proto_depIdxs = []int32{
 	1, // 0: opentelemetry.proto.common.v1.AnyValue.array_value:type_name -> opentelemetry.proto.common.v1.ArrayValue
@@ -599,6 +714,18 @@
 				return nil
 			}
 		}
+		file_opentelemetry_proto_common_v1_common_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} {
+			switch v := v.(*EntityRef); i {
+			case 0:
+				return &v.state
+			case 1:
+				return &v.sizeCache
+			case 2:
+				return &v.unknownFields
+			default:
+				return nil
+			}
+		}
 	}
 	file_opentelemetry_proto_common_v1_common_proto_msgTypes[0].OneofWrappers = []interface{}{
 		(*AnyValue_StringValue)(nil),
@@ -615,7 +742,7 @@
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
 			RawDescriptor: file_opentelemetry_proto_common_v1_common_proto_rawDesc,
 			NumEnums:      0,
-			NumMessages:   5,
+			NumMessages:   6,
 			NumExtensions: 0,
 			NumServices:   0,
 		},
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go /work/src/kubernetes/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go
--- a/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go	2026-09-02 10:25:23.533027276 +0000
@@ -44,10 +44,17 @@
 	// Set of attributes that describe the resource.
 	// Attribute keys MUST be unique (it is not allowed to have more than one
 	// attribute with the same key).
+	// The behavior of software that receives duplicated keys can be unpredictable.
 	Attributes []*v1.KeyValue `protobuf:"bytes,1,rep,name=attributes,proto3" json:"attributes,omitempty"`
-	// dropped_attributes_count is the number of dropped attributes. If the value is 0, then
+	// The number of dropped attributes. If the value is 0, then
 	// no attributes were dropped.
 	DroppedAttributesCount uint32 `protobuf:"varint,2,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"`
+	// Set of entities that participate in this Resource.
+	//
+	// Note: keys in the references MUST exist in attributes of this message.
+	//
+	// Status: [Development]
+	EntityRefs []*v1.EntityRef `protobuf:"bytes,3,rep,name=entity_refs,json=entityRefs,proto3" json:"entity_refs,omitempty"`
 }
 
 func (x *Resource) Reset() {
@@ -96,6 +103,13 @@
 	return 0
 }
 
+func (x *Resource) GetEntityRefs() []*v1.EntityRef {
+	if x != nil {
+		return x.EntityRefs
+	}
+	return nil
+}
+
 var File_opentelemetry_proto_resource_v1_resource_proto protoreflect.FileDescriptor
 
 var file_opentelemetry_proto_resource_v1_resource_proto_rawDesc = []byte{
@@ -106,7 +120,7 @@
 	0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2e, 0x72, 0x65, 0x73, 0x6f, 0x75, 0x72, 0x63, 0x65, 0x2e, 0x76,
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 	0x2f, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2f, 0x76, 0x31,
-	0x2f, 0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x22, 0x8d, 0x01,
+	0x2f, 0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x22, 0xd8, 0x01,
 	0x0a, 0x08, 0x52, 0x65, 0x73, 0x6f, 0x75, 0x72, 0x63, 0x65, 0x12, 0x47, 0x0a, 0x0a, 0x61, 0x74,
 	0x74, 0x72, 0x69, 0x62, 0x75, 0x74, 0x65, 0x73, 0x18, 0x01, 0x20, 0x03, 0x28, 0x0b, 0x32, 0x27,
 	0x2e, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2e, 0x70,
@@ -115,16 +129,21 @@
 	0x74, 0x65, 0x73, 0x12, 0x38, 0x0a, 0x18, 0x64, 0x72, 0x6f, 0x70, 0x70, 0x65, 0x64, 0x5f, 0x61,
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+	0x70, 0x72, 0x6f, 0x74, 0x6f, 0x33,
 }
 
 var (
@@ -141,16 +160,18 @@
 
 var file_opentelemetry_proto_resource_v1_resource_proto_msgTypes = make([]protoimpl.MessageInfo, 1)
 var file_opentelemetry_proto_resource_v1_resource_proto_goTypes = []interface{}{
-	(*Resource)(nil),    // 0: opentelemetry.proto.resource.v1.Resource
-	(*v1.KeyValue)(nil), // 1: opentelemetry.proto.common.v1.KeyValue
+	(*Resource)(nil),     // 0: opentelemetry.proto.resource.v1.Resource
+	(*v1.KeyValue)(nil),  // 1: opentelemetry.proto.common.v1.KeyValue
+	(*v1.EntityRef)(nil), // 2: opentelemetry.proto.common.v1.EntityRef
 }
 var file_opentelemetry_proto_resource_v1_resource_proto_depIdxs = []int32{
 	1, // 0: opentelemetry.proto.resource.v1.Resource.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue
-	1, // [1:1] is the sub-list for method output_type
-	1, // [1:1] is the sub-list for method input_type
-	1, // [1:1] is the sub-list for extension type_name
-	1, // [1:1] is the sub-list for extension extendee
-	0, // [0:1] is the sub-list for field type_name
+	2, // 1: opentelemetry.proto.resource.v1.Resource.entity_refs:type_name -> opentelemetry.proto.common.v1.EntityRef
+	2, // [2:2] is the sub-list for method output_type
+	2, // [2:2] is the sub-list for method input_type
+	2, // [2:2] is the sub-list for extension type_name
+	2, // [2:2] is the sub-list for extension extendee
+	0, // [0:2] is the sub-list for field type_name
 }
 
 func init() { file_opentelemetry_proto_resource_v1_resource_proto_init() }
diff -Nur /work/src-orig/kubernetes/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go /work/src/kubernetes/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go
--- a/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go	2026-09-02 10:24:54.948997517 +0000
+++ b/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go	2026-09-02 10:25:23.533027276 +0000
@@ -388,7 +388,8 @@
 	// is recorded in. Notably, the last part of the URL path is the version number of the
 	// schema: http[s]://server[:port]/path/<version>. To learn more about Schema URL see
 	// https://opentelemetry.io/docs/specs/otel/schemas/#schema-url
-	// This schema_url applies to all spans and span events in the "spans" field.
+	// This schema_url applies to the data in the "scope" field and all spans and span
+	// events in the "spans" field.
 	SchemaUrl string `protobuf:"bytes,3,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"`
 }
 
@@ -512,21 +513,21 @@
 	// two spans with the same name may be distinguished using `CLIENT` (caller)
 	// and `SERVER` (callee) to identify queueing latency associated with the span.
 	Kind Span_SpanKind `protobuf:"varint,6,opt,name=kind,proto3,enum=opentelemetry.proto.trace.v1.Span_SpanKind" json:"kind,omitempty"`
-	// start_time_unix_nano is the start time of the span. On the client side, this is the time
+	// The start time of the span. On the client side, this is the time
 	// kept by the local machine where the span execution starts. On the server side, this
 	// is the time when the server's application handler starts running.
 	// Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970.
 	//
 	// This field is semantically required and it is expected that end_time >= start_time.
 	StartTimeUnixNano uint64 `protobuf:"fixed64,7,opt,name=start_time_unix_nano,json=startTimeUnixNano,proto3" json:"start_time_unix_nano,omitempty"`
-	// end_time_unix_nano is the end time of the span. On the client side, this is the time
+	// The end time of the span. On the client side, this is the time
 	// kept by the local machine where the span execution ends. On the server side, this
 	// is the time when the server application handler stops running.
 	// Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970.
 	//
 	// This field is semantically required and it is expected that end_time >= start_time.
 	EndTimeUnixNano uint64 `protobuf:"fixed64,8,opt,name=end_time_unix_nano,json=endTimeUnixNano,proto3" json:"end_time_unix_nano,omitempty"`
-	// attributes is a collection of key/value pairs. Note, global attributes
+	// A collection of key/value pairs. Note, global attributes
 	// like server name can be set using the resource API. Examples of attributes:
 	//
 	//     "/http/user_agent": "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_14_2) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/71.0.3578.98 Safari/537.36"
@@ -534,24 +535,23 @@
 	//     "example.com/myattribute": true
 	//     "example.com/score": 10.239
 	//
-	// The OpenTelemetry API specification further restricts the allowed value types:
-	// https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/common/README.md#attribute
 	// Attribute keys MUST be unique (it is not allowed to have more than one
 	// attribute with the same key).
+	// The behavior of software that receives duplicated keys can be unpredictable.
 	Attributes []*v11.KeyValue `protobuf:"bytes,9,rep,name=attributes,proto3" json:"attributes,omitempty"`
-	// dropped_attributes_count is the number of attributes that were discarded. Attributes
+	// The number of attributes that were discarded. Attributes
 	// can be discarded because their keys are too long or because there are too many
 	// attributes. If this value is 0, then no attributes were dropped.
 	DroppedAttributesCount uint32 `protobuf:"varint,10,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"`
-	// events is a collection of Event items.
+	// A collection of Event items.
 	Events []*Span_Event `protobuf:"bytes,11,rep,name=events,proto3" json:"events,omitempty"`
-	// dropped_events_count is the number of dropped events. If the value is 0, then no
+	// The number of dropped events. If the value is 0, then no
 	// events were dropped.
 	DroppedEventsCount uint32 `protobuf:"varint,12,opt,name=dropped_events_count,json=droppedEventsCount,proto3" json:"dropped_events_count,omitempty"`
-	// links is a collection of Links, which are references from this span to a span
+	// A collection of Links, which are references from this span to a span
 	// in the same or different trace.
 	Links []*Span_Link `protobuf:"bytes,13,rep,name=links,proto3" json:"links,omitempty"`
-	// dropped_links_count is the number of dropped links after the maximum size was
+	// The number of dropped links after the maximum size was
 	// enforced. If this value is 0, then no links were dropped.
 	DroppedLinksCount uint32 `protobuf:"varint,14,opt,name=dropped_links_count,json=droppedLinksCount,proto3" json:"dropped_links_count,omitempty"`
 	// An optional final status for this span. Semantically when Status isn't set, it means
@@ -769,16 +769,17 @@
 	sizeCache     protoimpl.SizeCache
 	unknownFields protoimpl.UnknownFields
 
-	// time_unix_nano is the time the event occurred.
+	// The time the event occurred.
 	TimeUnixNano uint64 `protobuf:"fixed64,1,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"`
-	// name of the event.
+	// The name of the event.
 	// This field is semantically required to be set to non-empty string.
 	Name string `protobuf:"bytes,2,opt,name=name,proto3" json:"name,omitempty"`
-	// attributes is a collection of attribute key/value pairs on the event.
+	// A collection of attribute key/value pairs on the event.
 	// Attribute keys MUST be unique (it is not allowed to have more than one
 	// attribute with the same key).
+	// The behavior of software that receives duplicated keys can be unpredictable.
 	Attributes []*v11.KeyValue `protobuf:"bytes,3,rep,name=attributes,proto3" json:"attributes,omitempty"`
-	// dropped_attributes_count is the number of dropped attributes. If the value is 0,
+	// The number of dropped attributes. If the value is 0,
 	// then no attributes were dropped.
 	DroppedAttributesCount uint32 `protobuf:"varint,4,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"`
 }
@@ -859,11 +860,12 @@
 	SpanId []byte `protobuf:"bytes,2,opt,name=span_id,json=spanId,proto3" json:"span_id,omitempty"`
 	// The trace_state associated with the link.
 	TraceState string `protobuf:"bytes,3,opt,name=trace_state,json=traceState,proto3" json:"trace_state,omitempty"`
-	// attributes is a collection of attribute key/value pairs on the link.
+	// A collection of attribute key/value pairs on the link.
 	// Attribute keys MUST be unique (it is not allowed to have more than one
 	// attribute with the same key).
+	// The behavior of software that receives duplicated keys can be unpredictable.
 	Attributes []*v11.KeyValue `protobuf:"bytes,4,rep,name=attributes,proto3" json:"attributes,omitempty"`
-	// dropped_attributes_count is the number of dropped attributes. If the value is 0,
+	// The number of dropped attributes. If the value is 0,
 	// then no attributes were dropped.
 	DroppedAttributesCount uint32 `protobuf:"varint,5,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"`
 	// Flags, a bit field.
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/internal/poly1305/mac_noasm.go /work/src/kubernetes/vendor/golang.org/x/crypto/internal/poly1305/mac_noasm.go
--- a/vendor/golang.org/x/crypto/internal/poly1305/mac_noasm.go	2026-09-02 10:24:54.956997529 +0000
+++ b/vendor/golang.org/x/crypto/internal/poly1305/mac_noasm.go	2026-09-02 10:25:23.625027402 +0000
@@ -2,7 +2,7 @@
 // Use of this source code is governed by a BSD-style
 // license that can be found in the LICENSE file.
 
-//go:build (!amd64 && !loong64 && !ppc64le && !ppc64 && !s390x) || !gc || purego
+//go:build (!amd64 && !loong64 && !ppc64le && !ppc64 && !riscv64 && !s390x) || !gc || purego
 
 package poly1305
 
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/internal/poly1305/sum_asm.go /work/src/kubernetes/vendor/golang.org/x/crypto/internal/poly1305/sum_asm.go
--- a/vendor/golang.org/x/crypto/internal/poly1305/sum_asm.go	2026-09-02 10:24:54.956997529 +0000
+++ b/vendor/golang.org/x/crypto/internal/poly1305/sum_asm.go	2026-09-02 10:25:23.625027402 +0000
@@ -2,7 +2,7 @@
 // Use of this source code is governed by a BSD-style
 // license that can be found in the LICENSE file.
 
-//go:build gc && !purego && (amd64 || loong64 || ppc64 || ppc64le)
+//go:build gc && !purego && (amd64 || loong64 || ppc64 || ppc64le || riscv64)
 
 package poly1305
 
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/internal/poly1305/sum_riscv64.s /work/src/kubernetes/vendor/golang.org/x/crypto/internal/poly1305/sum_riscv64.s
--- a/vendor/golang.org/x/crypto/internal/poly1305/sum_riscv64.s	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/golang.org/x/crypto/internal/poly1305/sum_riscv64.s	2026-09-02 10:25:23.625027402 +0000
@@ -0,0 +1,158 @@
+// Copyright 2026 The Go Authors. All rights reserved.
+// Use of this source code is governed by a BSD-style
+// license that can be found in the LICENSE file.
+
+//go:build gc && !purego
+
+#define LOAD64U(base, offset, t0, t1, t2, t3, dst) \
+	MOVBU	(offset+0*1)(base), t0; \
+	MOVBU	(offset+1*1)(base), t1; \
+	MOVBU	(offset+2*1)(base), t2; \
+	MOVBU	(offset+3*1)(base), t3; \
+	SLL	$8, t1; \
+	SLL	$16, t2; \
+	SLL	$24, t3; \
+	OR	t1, t0; \
+	OR	t3, t2; \
+	OR	t2, t0, dst; \
+	MOVBU	(offset+4*1)(base), t0; \
+	MOVBU	(offset+5*1)(base), t1; \
+	MOVBU	(offset+6*1)(base), t2; \
+	MOVBU	(offset+7*1)(base), t3; \
+	SLL	$32, t0; \
+	SLL	$40, t1; \
+	SLL	$48, t2; \
+	SLL	$56, t3; \
+	OR	t1, t0; \
+	OR	t3, t2; \
+	OR	t2, t0; \
+	OR	t0, dst
+
+// func update(state *macState, msg []byte)
+TEXT ·update(SB), $0-32
+	MOV	state+0(FP), X5
+	MOV	msg_base+8(FP), X6
+	MOV	msg_len+16(FP), X7
+
+	MOV	$16, X8
+
+	AND	$7, X6, X28
+
+	MOV	(0*8)(X5), X9		// h0
+	MOV	(1*8)(X5), X10		// h1
+	MOV	(2*8)(X5), X11		// h2
+	MOV	(3*8)(X5), X12		// r0
+	MOV	(4*8)(X5), X13		// r1
+
+	BLT	X7, X8, tail
+
+loop:
+	BEQZ	X28, aligned_load
+
+	LOAD64U(X6, 0*8, X16, X18, X19, X20, X15)	// msg[0:8]
+	LOAD64U(X6, 1*8, X16, X18, X19, X20, X17)	// msg[8:16]
+	JMP	block
+
+aligned_load:
+	MOV	(0*8)(X6), X15		// msg[0:8]
+	MOV	(1*8)(X6), X17		// msg[8:16]
+
+block:
+	ADD	X15, X9		// h0 (x1 + y1 = z1', if z1' < x1 then z1' overflow)
+	SLTU	X15, X9, X19	// h0.carry
+	ADD	X17, X10, X22
+	SLTU	X17, X22, X23
+	ADD	X22, X19, X10	// h1
+	SLTU	X22, X10, X19
+	OR	X23, X19	// h1.carry
+	ADD	$1, X19
+	ADD	X19, X11	// h2
+
+	ADD	$16, X6		// msg = msg[16:]
+
+multiply:
+	MULHU	X9, X12, X16	// h0r0.hi
+	MUL	X9, X12, X15	// h0r0.lo
+	MULHU	X10, X12, X17	// h1r0.hi
+	MUL	X10, X12, X14	// h1r0.lo
+	ADD	X14, X16
+	SLTU	X14, X16, X19
+	ADD	X19, X17
+	MUL	X11, X12, X20
+	ADD	X17, X20
+	MULHU	X9, X13, X17	// h0r1.hi
+	MUL	X9, X13, X14	// h0r1.lo
+	ADD	X14, X16
+	SLTU	X14, X16, X19
+	ADD	X19, X17
+	MOV	X17, X9
+	MUL	X11, X13, X21	// h2r1
+	MULHU	X10, X13, X17	// h1r1.hi
+	MUL	X10, X13, X14	// h1r1.lo
+	ADD	X14, X20
+	ADD	X17, X21, X22
+	SLTU	X14, X20, X19
+	ADD	X22, X19, X21
+	ADD	X9, X20
+	SLTU	X9, X20, X19
+	ADD	X19, X21
+	AND	$3, X20, X11
+	AND	$-4, X20, X18
+	ADD	X18, X15, X9
+	ADD	X21, X16, X22
+	SLTU	X18, X9, X19
+	SLTU	X21, X22, X23
+	ADD	X22, X19, X10
+	SLTU	X22, X10, X19
+	OR	X19, X23, X19
+	ADD	X19, X11
+	SLL	$62, X21, X22
+	SRL	$2, X20, X23
+	SRL	$2, X21, X21
+	OR	X22, X23, X20
+	ADD	X20, X9, X9
+	ADD	X21, X10, X22
+	SLTU	X20, X9, X19
+	SLTU	X21, X22, X23
+	ADD	X22, X19, X10
+	SLTU	X22, X10, X19
+	OR	X19, X23, X19
+	ADD	X19, X11, X11
+
+	SUB	$16, X7, X7
+	BGE	X7, X8, loop
+
+tail:
+	BEQ	X7, X0, done
+	MOV	$1, X15
+	MOV $0, X16
+	ADD	X7, X6, X6
+
+flush_buffer:
+	MOVBU	-1(X6), X20
+	SRL	$56, X15, X19
+	SLL	$8, X16, X23
+	SLL	$8, X15, X15
+	OR	X19, X23, X16
+	XOR	X20, X15
+	SUB	$1, X7, X7
+	SUB	$1, X6, X6
+	BNE	X7, X0, flush_buffer
+
+	ADD	X15, X9
+	SLTU	X15, X9, X19
+	ADD	X16, X10, X22
+	SLTU	X16, X22, X23
+	ADD	X22, X19, X10
+	SLTU	X22, X10, X19
+	OR	X23, X19
+	ADD	X19, X11
+
+	MOV	$16, X7
+	JMP	multiply
+
+done:
+	MOV	X9, (0*8)(X5)	// h0
+	MOV	X10, (1*8)(X5)
+	MOV	X11, (2*8)(X5)
+	RET
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/certs.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/certs.go
--- a/vendor/golang.org/x/crypto/ssh/certs.go	2026-09-02 10:24:54.956997529 +0000
+++ b/vendor/golang.org/x/crypto/ssh/certs.go	2026-09-02 10:25:23.625027402 +0000
@@ -229,15 +229,20 @@
 		return nil, err
 	}
 	c.Reserved = g.Reserved
+	// Reject a certificate whose signature key is itself a certificate before
+	// parsing it. Certificates signed by certificates are not supported (see
+	// PROTOCOL.certkeys), and rejecting after ParsePublicKey returns would allow
+	// a chain of nested certificates to recurse once per level, exhausting the
+	// goroutine stack.
+	if sigAlgo, _, ok := parseString(g.SignatureKey); !ok {
+		return nil, errShortRead
+	} else if _, ok := certKeyAlgoNames[string(sigAlgo)]; ok {
+		return nil, fmt.Errorf("ssh: the signature key type %q is invalid for certificates", sigAlgo)
+	}
 	k, err := ParsePublicKey(g.SignatureKey)
 	if err != nil {
 		return nil, err
 	}
-	// The Type() function is intended to return only certificate key types, but
-	// we use certKeyAlgoNames anyway for safety, to match [Certificate.Type].
-	if _, ok := certKeyAlgoNames[k.Type()]; ok {
-		return nil, fmt.Errorf("ssh: the signature key type %q is invalid for certificates", k.Type())
-	}
 	c.SignatureKey = k
 	c.Signature, rest, ok = parseSignatureBody(g.Signature)
 	if !ok || len(rest) > 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/channel.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/channel.go
--- a/vendor/golang.org/x/crypto/ssh/channel.go	2026-09-02 10:24:54.956997529 +0000
+++ b/vendor/golang.org/x/crypto/ssh/channel.go	2026-09-02 10:25:23.625027402 +0000
@@ -216,6 +216,10 @@
 	// packetPool has a buffer for each extended channel ID to
 	// save allocations during writes.
 	packetPool map[uint32][]byte
+
+	// closeOnce guards close so it is idempotent: closing the internal Go
+	// channels (msg, incomingRequests) more than once would panic.
+	closeOnce sync.Once
 }
 
 // writePacket sends a packet. If the packet is a channel close, it updates
@@ -340,7 +344,18 @@
 	if extended == 1 {
 		ch.extPending.write(data)
 	} else if extended > 0 {
-		// discard other extended data.
+		// RFC 4254, Section 5.2 defines no extended data types other
+		// than stderr (type 1, handled above) and this package provides
+		// no API to read them, so the data is discarded. Credit its
+		// window back immediately: it can never be read, so the
+		// deduction above would otherwise shrink the window permanently.
+		// adjustWindow returns io.EOF if the local side has already
+		// sent a channel close; ignore it like ReadExtended does, since
+		// an error returned here would terminate the mux read loop and
+		// tear down the whole connection.
+		if err := ch.adjustWindow(length); err != nil && err != io.EOF {
+			return err
+		}
 	} else {
 		ch.pending.write(data)
 	}
@@ -393,17 +408,19 @@
 }
 
 func (c *channel) close() {
-	c.pending.eof()
-	c.extPending.eof()
-	close(c.msg)
-	close(c.incomingRequests)
-	c.writeMu.Lock()
-	// This is not necessary for a normal channel teardown, but if
-	// there was another error, it is.
-	c.sentClose = true
-	c.writeMu.Unlock()
-	// Unblock writers.
-	c.remoteWin.close()
+	c.closeOnce.Do(func() {
+		c.pending.eof()
+		c.extPending.eof()
+		close(c.msg)
+		close(c.incomingRequests)
+		c.writeMu.Lock()
+		// This is not necessary for a normal channel teardown, but if
+		// there was another error, it is.
+		c.sentClose = true
+		c.writeMu.Unlock()
+		// Unblock writers.
+		c.remoteWin.close()
+	})
 }
 
 // responseMessageReceived is called when a success or failure message is
@@ -493,19 +510,20 @@
 
 func (m *mux) newChannel(chanType string, direction channelDirection, extraData []byte) *channel {
 	ch := &channel{
-		remoteWin:        window{Cond: newCond()},
-		myWindow:         channelWindowSize,
-		pending:          newBuffer(),
-		extPending:       newBuffer(),
-		direction:        direction,
-		incomingRequests: make(chan *Request, chanSize),
-		msg:              make(chan interface{}, chanSize),
-		chanType:         chanType,
-		extraData:        extraData,
-		mux:              m,
-		packetPool:       make(map[uint32][]byte),
+		remoteWin:          window{Cond: newCond()},
+		myWindow:           channelWindowSize,
+		maxIncomingPayload: channelMaxPacket,
+		pending:            newBuffer(),
+		extPending:         newBuffer(),
+		direction:          direction,
+		incomingRequests:   make(chan *Request, chanSize),
+		msg:                make(chan interface{}, chanSize),
+		chanType:           chanType,
+		extraData:          extraData,
+		mux:                m,
+		packetPool:         make(map[uint32][]byte),
 	}
-	ch.localId = m.chanList.add(ch)
+	m.chanList.add(ch)
 	return ch
 }
 
@@ -529,7 +547,6 @@
 	if ch.decided {
 		return nil, nil, errDecidedAlready
 	}
-	ch.maxIncomingPayload = channelMaxPacket
 	confirm := channelOpenConfirmMsg{
 		PeersID:       ch.remoteId,
 		MyID:          ch.localId,
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/client_auth.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/client_auth.go
--- a/vendor/golang.org/x/crypto/ssh/client_auth.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/client_auth.go	2026-09-02 10:25:23.625027402 +0000
@@ -798,7 +798,7 @@
 			return authFailure, nil, fmt.Errorf("GSS-API Error:\n"+
 				"Major Status: %d\n"+
 				"Minor Status: %d\n"+
-				"Error Message: %s\n", userAuthGSSAPIErrorResp.MajorStatus, userAuthGSSAPIErrorResp.MinorStatus,
+				"Error Message: %q\n", userAuthGSSAPIErrorResp.MajorStatus, userAuthGSSAPIErrorResp.MinorStatus,
 				userAuthGSSAPIErrorResp.Message)
 		case msgUserAuthGSSAPIToken:
 			userAuthGSSAPITokenReq := &userAuthGSSAPIToken{}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/common.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/common.go
--- a/vendor/golang.org/x/crypto/ssh/common.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/common.go	2026-09-02 10:25:23.625027402 +0000
@@ -419,7 +419,7 @@
 }
 
 func (a *AlgorithmNegotiationError) Error() string {
-	return fmt.Sprintf("ssh: no common algorithm for %s; we offered: %v, peer offered: %v",
+	return fmt.Sprintf("ssh: no common algorithm for %s; we offered: %q, peer offered: %q",
 		a.What, a.SupportedAlgorithms, a.RequestedAlgorithms)
 }
 
@@ -544,7 +544,7 @@
 	if c.Rand == nil {
 		c.Rand = rand.Reader
 	}
-	if c.Ciphers == nil {
+	if len(c.Ciphers) == 0 {
 		c.Ciphers = defaultCiphers
 	}
 	var ciphers []string
@@ -556,7 +556,7 @@
 	}
 	c.Ciphers = ciphers
 
-	if c.KeyExchanges == nil {
+	if len(c.KeyExchanges) == 0 {
 		c.KeyExchanges = defaultKexAlgos
 	}
 	var kexs []string
@@ -571,7 +571,7 @@
 	}
 	c.KeyExchanges = kexs
 
-	if c.MACs == nil {
+	if len(c.MACs) == 0 {
 		c.MACs = defaultMACs
 	}
 	var macs []string
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/connection.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/connection.go
--- a/vendor/golang.org/x/crypto/ssh/connection.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/connection.go	2026-09-02 10:25:23.625027402 +0000
@@ -17,7 +17,7 @@
 }
 
 func (e *OpenChannelError) Error() string {
-	return fmt.Sprintf("ssh: rejected: %s (%s)", e.Reason, e.Message)
+	return fmt.Sprintf("ssh: rejected: %s (%q)", e.Reason, e.Message)
 }
 
 // ConnMetadata holds metadata for the connection.
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/handshake.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/handshake.go
--- a/vendor/golang.org/x/crypto/ssh/handshake.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/handshake.go	2026-09-02 10:25:23.625027402 +0000
@@ -162,7 +162,7 @@
 	t.remoteAddr = addr
 	t.hostKeyCallback = config.HostKeyCallback
 	t.bannerCallback = config.BannerCallback
-	if config.HostKeyAlgorithms != nil {
+	if len(config.HostKeyAlgorithms) > 0 {
 		t.hostKeyAlgorithms = config.HostKeyAlgorithms
 	} else {
 		t.hostKeyAlgorithms = defaultHostKeyAlgos
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/keys.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/keys.go
--- a/vendor/golang.org/x/crypto/ssh/keys.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/keys.go	2026-09-02 10:25:23.629027408 +0000
@@ -182,14 +182,19 @@
 		}
 
 		hosts := string(keyFields[0])
-		// keyFields[1] contains the key type (e.g. “ssh-rsa”).
-		// However, that information is duplicated inside the
-		// base64-encoded key and so is ignored here.
+		// keyFields[1] contains the key type (e.g. "ssh-rsa"). This information
+		// is duplicated within the base64-encoded key blob. As OpenSSH's
+		// sshkey_read does, we verify that the declared key type matches the
+		// type embedded in the key blob.
+		wantType := string(keyFields[1])
 
 		key := bytes.Join(keyFields[2:], []byte(" "))
 		if pubKey, comment, err = parseAuthorizedKey(key); err != nil {
 			return "", nil, nil, "", nil, err
 		}
+		if pubKey.Type() != wantType {
+			return "", nil, nil, "", nil, fmt.Errorf("ssh: known hosts key type mismatch: human-readable type %q, encoded type %q", wantType, pubKey.Type())
+		}
 
 		return marker, strings.Split(hosts, ","), pubKey, comment, rest, nil
 	}
@@ -228,10 +233,17 @@
 		}
 
 		if out, comment, err = parseAuthorizedKey(in[i:]); err == nil {
-			return out, comment, options, rest, nil
-		} else {
-			lastErr = err
+			// The first field contains the declared key type. As OpenSSH's
+			// sshkey_read does, we verify that it matches the type embedded in
+			// the key blob. Without this check, a single-token option (e.g.
+			// "restrict") appearing in the key type position could be silently
+			// discarded along with its intended effect.
+			if string(in[:i]) == out.Type() {
+				return out, comment, options, rest, nil
+			}
+			err = fmt.Errorf("ssh: authorized keys key type mismatch: human-readable type %q, encoded type %q", in[:i], out.Type())
 		}
+		lastErr = err
 
 		// No key type recognised. Maybe there's an options field at
 		// the beginning.
@@ -271,11 +283,15 @@
 		}
 
 		if out, comment, err = parseAuthorizedKey(in[i:]); err == nil {
-			options = candidateOptions
-			return out, comment, options, rest, nil
-		} else {
-			lastErr = err
+			// As above, the declared key type (here following the options
+			// field) must match the type embedded in the key blob.
+			if string(in[:i]) == out.Type() {
+				options = candidateOptions
+				return out, comment, options, rest, nil
+			}
+			err = fmt.Errorf("ssh: authorized keys key type mismatch: human-readable type %q, encoded type %q", in[:i], out.Type())
 		}
+		lastErr = err
 
 		in = rest
 		continue
@@ -469,10 +485,11 @@
 		return nil, nil, err
 	}
 
-	// 8192 bits is also the maximum RSA key size accepted by crypto/tls for
-	// signature verification:
-	// https://github.com/golang/go/blob/69801b25/src/crypto/tls/handshake_client.go#L1096
-	if w.N.BitLen() > 8192 {
+	// 16384 bits is the largest RSA key OpenSSH will generate (ssh-keygen
+	// caps -b at 16384), so it is the practical upper bound for keys seen on
+	// the wire. Rejecting anything larger bounds the CPU spent verifying an
+	// attacker-supplied key and signature, mitigating a denial of service.
+	if w.N.BitLen() > 16384 {
 		return nil, nil, errors.New("ssh: rsa modulus too large")
 	}
 	if w.E.BitLen() > 24 {
@@ -1653,13 +1670,13 @@
 		}
 
 		// Mirror the validation done in parseRSA for public keys: cap the
-		// modulus at the same limit enforced by crypto/tls, reject oversized
-		// or invalid exponents, and additionally bound the prime factors to
+		// modulus at the OpenSSH-generated maximum, reject oversized or
+		// invalid exponents, and additionally bound the prime factors to
 		// avoid the expensive CRT coefficient recomputation in pk.Precompute.
-		if key.N.BitLen() > 8192 {
+		if key.N.BitLen() > 16384 {
 			return nil, errors.New("ssh: rsa modulus too large")
 		}
-		if key.P.BitLen() > 4096 || key.Q.BitLen() > 4096 {
+		if key.P.BitLen() > 8192 || key.Q.BitLen() > 8192 {
 			return nil, errors.New("ssh: rsa prime too large")
 		}
 		if key.E.BitLen() > 24 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/messages.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/messages.go
--- a/vendor/golang.org/x/crypto/ssh/messages.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/messages.go	2026-09-02 10:25:23.629027408 +0000
@@ -44,7 +44,7 @@
 }
 
 func (d *disconnectMsg) Error() string {
-	return fmt.Sprintf("ssh: disconnect, reason %d: %s", d.Reason, d.Message)
+	return fmt.Sprintf("ssh: disconnect, reason %d: %q", d.Reason, d.Message)
 }
 
 // See RFC 4253, section 7.1.
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/mux.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/mux.go
--- a/vendor/golang.org/x/crypto/ssh/mux.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/mux.go	2026-09-02 10:25:23.629027408 +0000
@@ -32,18 +32,21 @@
 	offset uint32
 }
 
-// Assigns a channel ID to the given channel.
-func (c *chanList) add(ch *channel) uint32 {
+// add stores the given channel and assigns its localId while holding the
+// lock, so that getChan can never return a channel whose localId is not yet
+// initialized.
+func (c *chanList) add(ch *channel) {
 	c.Lock()
 	defer c.Unlock()
 	for i := range c.chans {
 		if c.chans[i] == nil {
 			c.chans[i] = ch
-			return uint32(i) + c.offset
+			ch.localId = uint32(i) + c.offset
+			return
 		}
 	}
 	c.chans = append(c.chans, ch)
-	return uint32(len(c.chans)-1) + c.offset
+	ch.localId = uint32(len(c.chans)-1) + c.offset
 }
 
 // getChan returns the channel for the given ID.
@@ -343,8 +346,6 @@
 func (m *mux) openChannel(chanType string, extra []byte) (*channel, error) {
 	ch := m.newChannel(chanType, channelOutbound, extra)
 
-	ch.maxIncomingPayload = channelMaxPacket
-
 	open := channelOpenMsg{
 		ChanType:         chanType,
 		PeersWindow:      ch.myWindow,
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/server.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/server.go
--- a/vendor/golang.org/x/crypto/ssh/server.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/server.go	2026-09-02 10:25:23.629027408 +0000
@@ -26,10 +26,16 @@
 	// defines "force-command" (only allow the given command to
 	// execute) and "source-address" (only allow connections from
 	// the given address). The SSH package currently only enforces
-	// the "source-address" critical option. It is up to server
-	// implementations to enforce other critical options, such as
-	// "force-command", by checking them after the SSH handshake
-	// is successful. In general, SSH servers should reject
+	// the "source-address" critical option: it is validated against
+	// the client's remote address whenever it is present in the
+	// Permissions returned by any authentication callback. Its value
+	// is a comma-separated list of IP addresses and CIDR blocks;
+	// consistently with OpenSSH, a connection whose remote address is
+	// not an IP address, such as a Unix domain socket, never matches
+	// the list and is rejected when the option is present. It is up
+	// to server implementations to enforce other critical options,
+	// such as "force-command", by checking them after the SSH
+	// handshake is successful. In general, SSH servers should reject
 	// connections that specify critical options that are unknown
 	// or not supported.
 	CriticalOptions map[string]string
@@ -223,7 +229,9 @@
 	// Permissions object can be the same object, optionally modified, or a
 	// completely new object. If VerifiedPublicKeyCallback is non-nil,
 	// PublicKeyCallback is not allowed to return a PartialSuccessError, which
-	// can instead be returned by VerifiedPublicKeyCallback.
+	// can instead be returned by VerifiedPublicKeyCallback. The
+	// signatureAlgorithm argument is the format of the signature that was
+	// successfully verified.
 	//
 	// VerifiedPublicKeyCallback does not affect which authentication methods
 	// are included in the list of methods that can be attempted by the client.
@@ -442,6 +450,10 @@
 	return perms, err
 }
 
+// checkSourceAddress matches addr against sourceAddrs, a comma-separated list
+// of IP addresses and CIDR blocks. Consistently with OpenSSH, a remote address
+// that is not IP-based, such as a Unix domain socket, never matches the list
+// and is rejected.
 func checkSourceAddress(addr net.Addr, sourceAddrs string) error {
 	if addr == nil {
 		return errors.New("ssh: no address known for client, but source-address match required")
@@ -449,7 +461,7 @@
 
 	tcpAddr, ok := addr.(*net.TCPAddr)
 	if !ok {
-		return fmt.Errorf("ssh: remote address %v is not an TCP address when checking source-address match", addr)
+		return fmt.Errorf("ssh: remote address %v is not a TCP address when checking source-address match", addr)
 	}
 
 	for _, sourceAddr := range strings.Split(sourceAddrs, ",") {
@@ -472,6 +484,21 @@
 	return fmt.Errorf("ssh: remote address %v is not allowed because of source-address restriction", addr)
 }
 
+// checkSourceAddressCriticalOption enforces the source-address critical
+// option, if present in perms, as documented in Permissions.CriticalOptions.
+// A present but empty value matches no address, so it denies authentication,
+// consistently with OpenSSH, rather than being treated as absent.
+func checkSourceAddressCriticalOption(addr net.Addr, perms *Permissions) error {
+	if perms == nil {
+		return nil
+	}
+	saco, ok := perms.CriticalOptions[sourceAddressCriticalOption]
+	if !ok {
+		return nil
+	}
+	return checkSourceAddress(addr, saco)
+}
+
 func gssExchangeToken(gssapiConfig *GSSAPIWithMICConfig, token []byte, s *connection,
 	sessionID []byte, userAuthReq userAuthRequestMsg) (authErr error, perms *Permissions, err error) {
 	gssAPIServer := gssapiConfig.Server
@@ -685,7 +712,7 @@
 		}
 
 		if userAuthReq.Service != serviceSSH {
-			return nil, errors.New("ssh: client attempted to negotiate for unknown service: " + userAuthReq.Service)
+			return nil, fmt.Errorf("ssh: client attempted to negotiate for unknown service: %q", userAuthReq.Service)
 		}
 
 		if s.user != userAuthReq.User && partialSuccessReturned {
@@ -771,7 +798,8 @@
 
 			pubKey, err := ParsePublicKey(pubKeyData)
 			if err != nil {
-				return nil, err
+				authErr = err
+				break
 			}
 
 			candidate, ok := cache.get(s.user, pubKeyData)
@@ -784,13 +812,14 @@
 					return nil, errors.New("ssh: invalid library usage: PublicKeyCallback must not return partial success when VerifiedPublicKeyCallback is defined")
 				}
 
-				if (candidate.result == nil || isPartialSuccessError) &&
-					candidate.perms != nil &&
-					candidate.perms.CriticalOptions != nil &&
-					candidate.perms.CriticalOptions[sourceAddressCriticalOption] != "" {
-					if err := checkSourceAddress(
-						s.RemoteAddr(),
-						candidate.perms.CriticalOptions[sourceAddressCriticalOption]); err != nil {
+				// This check is authoritative for the Permissions returned by
+				// PublicKeyCallback: the check at the end of the auth loop sees
+				// the final Permissions, which VerifiedPublicKeyCallback may
+				// have replaced, and is skipped on partial success. It also
+				// makes public key queries fail before the client signs when
+				// PublicKeyCallback supplies the restriction.
+				if candidate.result == nil || isPartialSuccessError {
+					if err := checkSourceAddressCriticalOption(s.RemoteAddr(), candidate.perms); err != nil {
 						candidate.result = err
 					}
 				}
@@ -864,14 +893,7 @@
 					// Only call VerifiedPublicKeyCallback after the key has been accepted
 					// and successfully verified. If authErr is non-nil, the key is not
 					// considered verified and the callback must not run.
-					perms, authErr = config.VerifiedPublicKeyCallback(s, pubKey, perms, algo)
-				}
-				if authErr == nil && perms != nil && perms.CriticalOptions != nil {
-					if saco := perms.CriticalOptions[sourceAddressCriticalOption]; saco != "" {
-						if err := checkSourceAddress(s.RemoteAddr(), saco); err != nil {
-							authErr = err
-						}
-					}
+					perms, authErr = config.VerifiedPublicKeyCallback(s, pubKey, perms, sig.Format)
 				}
 			}
 		case "gssapi-with-mic":
@@ -925,6 +947,17 @@
 			authErr = fmt.Errorf("ssh: unknown method %q", userAuthReq.Method)
 		}
 
+		// The source-address critical option is enforced on the Permissions
+		// returned by any authentication callback. Permissions returned
+		// together with a PartialSuccessError skip this check: that is safe
+		// because they are required to be nil, as enforced in the partial
+		// success handling below.
+		if authErr == nil {
+			if err := checkSourceAddressCriticalOption(s.RemoteAddr(), perms); err != nil {
+				authErr = err
+			}
+		}
+
 		authErrs = append(authErrs, authErr)
 
 		if config.AuthLogCallback != nil {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/ssh_gss.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/ssh_gss.go
--- a/vendor/golang.org/x/crypto/ssh/ssh_gss.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/ssh_gss.go	2026-09-02 10:25:23.629027408 +0000
@@ -118,24 +118,28 @@
 		OIDS: make([]asn1.ObjectIdentifier, n),
 	}
 	for i := 0; i < int(n); i++ {
-		var (
-			desiredMech []byte
-			err         error
-		)
+		var desiredMech []byte
 		desiredMech, rest, ok = parseString(rest)
 		if !ok {
 			return nil, errors.New("parse string failed")
 		}
-		if rest, err = asn1.Unmarshal(desiredMech, &s.OIDS[i]); err != nil {
+		trailing, err := asn1.Unmarshal(desiredMech, &s.OIDS[i])
+		if err != nil {
 			return nil, err
 		}
+		if len(trailing) != 0 {
+			return nil, errors.New("trailing bytes after OID")
+		}
+	}
+	if len(rest) != 0 {
+		return nil, errors.New("trailing bytes after mechanisms")
 	}
 	return s, nil
 }
 
 // See RFC 4462 section 3.6.
 func buildMIC(sessionID string, username string, service string, authMethod string) []byte {
-	out := make([]byte, 0, 0)
+	out := make([]byte, 0)
 	out = appendString(out, sessionID)
 	out = append(out, msgUserAuthRequest)
 	out = appendString(out, username)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/streamlocal.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/streamlocal.go
--- a/vendor/golang.org/x/crypto/ssh/streamlocal.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/streamlocal.go	2026-09-02 10:25:23.629027408 +0000
@@ -58,6 +58,7 @@
 		return nil, err
 	}
 	go DiscardRequests(in)
+	go io.Copy(io.Discard, ch.Stderr())
 	return ch, err
 }
 
@@ -79,6 +80,7 @@
 		return nil, err
 	}
 	go DiscardRequests(incoming)
+	go io.Copy(io.Discard, ch.Stderr())
 
 	return &chanConn{
 		Channel: ch,
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/crypto/ssh/tcpip.go /work/src/kubernetes/vendor/golang.org/x/crypto/ssh/tcpip.go
--- a/vendor/golang.org/x/crypto/ssh/tcpip.go	2026-09-02 10:24:54.960997534 +0000
+++ b/vendor/golang.org/x/crypto/ssh/tcpip.go	2026-09-02 10:25:23.629027408 +0000
@@ -332,6 +332,7 @@
 		return nil, err
 	}
 	go DiscardRequests(incoming)
+	go io.Copy(io.Discard, ch.Stderr())
 
 	return &chanConn{
 		Channel: ch,
@@ -495,6 +496,7 @@
 		return nil, err
 	}
 	go DiscardRequests(in)
+	go io.Copy(io.Discard, ch.Stderr())
 	return ch, nil
 }
 
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/net/http2/transport_wrap.go /work/src/kubernetes/vendor/golang.org/x/net/http2/transport_wrap.go
--- a/vendor/golang.org/x/net/http2/transport_wrap.go	2026-09-02 10:24:54.964997540 +0000
+++ b/vendor/golang.org/x/net/http2/transport_wrap.go	2026-09-02 10:25:23.669027463 +0000
@@ -55,7 +55,7 @@
 // Registered is called by net/http.Transport.RegisterProtocol,
 // to let us know that it understands the registration mechanism we're using.
 func (t transportConfig) Registered(t1 *http.Transport) {
-	t.t.t1 = t1
+	t.t.lazyt1 = t1
 }
 
 func (t transportConfig) DisableCompression() bool {
@@ -145,29 +145,30 @@
 
 type transportInternal struct {
 	initOnce sync.Once
-	t1       *http.Transport
+	lazyt1   *http.Transport
 }
 
-func (t *Transport) init() {
+func (t *Transport) init() *http.Transport {
 	t.initOnce.Do(func() {
-		if t.t1 != nil {
+		if t.lazyt1 != nil {
 			return
 		}
 		t1 := &http.Transport{}
 		t.configure(t1)
 	})
+	return t.lazyt1
 }
 
 func (t *Transport) configure(t1 *http.Transport) {
 	t1.RegisterProtocol("http/2", transportConfig{t})
-	// tr2.t1 is set by transportConfig.Registered.
-	if t.t1 != t1 {
+	// tr2.lazyt1 is set by transportConfig.Registered.
+	if t.lazyt1 != t1 {
 		panic("http2: net/http does not support this version of x/net/http2")
 	}
 }
 
 func (t *Transport) roundTripOpt(req *http.Request, opt RoundTripOpt) (*http.Response, error) {
-	t.init()
+	t1 := t.init()
 
 	if req.URL.Scheme == "http" && !t.AllowHTTP {
 		return nil, errors.New("http2: unencrypted HTTP/2 not enabled")
@@ -188,22 +189,23 @@
 	ctx := context.WithValue(req.Context(), http2TransportContextKey{}, t)
 	req = req.WithContext(ctx)
 
-	return t.t1.RoundTrip(req)
+	return t1.RoundTrip(req)
 }
 
 func (t *Transport) closeIdleConnections() {
-	t.init()
-	t.t1.CloseIdleConnections()
+	t1 := t.init()
+	t1.CloseIdleConnections()
 }
 
 func (t *Transport) newUserClientConn(c net.Conn) (*ClientConn, error) {
+	t1 := t.init()
 	// http.Transport's NewClientConn doesn't provide a supported way to create
 	// a connection from a net.Conn. (This might be useful to add in the future?)
 	// We're going to craftily sneak one in via the context key, with the
 	// scheme of "http/2" telling NewClientConn to look for it.
 	ctx := context.WithValue(context.Background(), netConnContextKey{}, c)
 
-	nhcc, err := t.t1.NewClientConn(ctx, "http/2", "")
+	nhcc, err := t1.NewClientConn(ctx, "http/2", "")
 	if err != nil {
 		return nil, err
 	}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/net/idna/idna.go /work/src/kubernetes/vendor/golang.org/x/net/idna/idna.go
--- a/vendor/golang.org/x/net/idna/idna.go	2026-09-02 10:24:54.964997540 +0000
+++ b/vendor/golang.org/x/net/idna/idna.go	2026-09-02 10:25:23.669027463 +0000
@@ -400,7 +400,11 @@
 				// Spec says keep the old label.
 				continue
 			}
-			if unicode16 && err == nil && len(u) > 0 && isASCII(u) {
+			if err == nil && len(u) > 0 && isASCII(u) {
+				// UTS 43 pre-revision 33 doesn't classify a xn-- label
+				// which contains only ASCII characters as an error,
+				// but that's a specification bug and a security issue.
+				// Always return an error in this case.
 				err = punyError(enc)
 			}
 			isBidi = isBidi || bidirule.DirectionString(u) != bidi.LeftToRight
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/oauth2/deviceauth.go /work/src/kubernetes/vendor/golang.org/x/oauth2/deviceauth.go
--- a/vendor/golang.org/x/oauth2/deviceauth.go	2026-09-02 10:24:54.968997545 +0000
+++ b/vendor/golang.org/x/oauth2/deviceauth.go	2026-09-02 10:25:23.685027485 +0000
@@ -6,6 +6,7 @@
 	"errors"
 	"fmt"
 	"io"
+	"mime"
 	"net/http"
 	"net/url"
 	"strings"
@@ -116,10 +117,38 @@
 		return nil, fmt.Errorf("oauth2: cannot auth device: %v", err)
 	}
 	if code := r.StatusCode; code < 200 || code > 299 {
-		return nil, &RetrieveError{
+		retrieveError := &RetrieveError{
 			Response: r,
 			Body:     body,
 		}
+
+		content, _, _ := mime.ParseMediaType(r.Header.Get("Content-Type"))
+		switch content {
+		case "application/x-www-form-urlencoded", "text/plain":
+			// some endpoints return a query string
+			vals, err := url.ParseQuery(string(body))
+			if err != nil {
+				return nil, retrieveError
+			}
+			retrieveError.ErrorCode = vals.Get("error")
+			retrieveError.ErrorDescription = vals.Get("error_description")
+			retrieveError.ErrorURI = vals.Get("error_uri")
+		default:
+			var tj struct {
+				// https://datatracker.ietf.org/doc/html/rfc6749#section-5.2
+				ErrorCode        string `json:"error"`
+				ErrorDescription string `json:"error_description"`
+				ErrorURI         string `json:"error_uri"`
+			}
+			if json.Unmarshal(body, &tj) != nil {
+				return nil, retrieveError
+			}
+			retrieveError.ErrorCode = tj.ErrorCode
+			retrieveError.ErrorDescription = tj.ErrorDescription
+			retrieveError.ErrorURI = tj.ErrorURI
+		}
+
+		return nil, retrieveError
 	}
 
 	da := &DeviceAuthResponse{}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/oauth2/oauth2.go /work/src/kubernetes/vendor/golang.org/x/oauth2/oauth2.go
--- a/vendor/golang.org/x/oauth2/oauth2.go	2026-09-02 10:24:54.968997545 +0000
+++ b/vendor/golang.org/x/oauth2/oauth2.go	2026-09-02 10:25:23.685027485 +0000
@@ -9,7 +9,6 @@
 package oauth2 // import "golang.org/x/oauth2"
 
 import (
-	"bytes"
 	"context"
 	"errors"
 	"net/http"
@@ -99,7 +98,7 @@
 	// in the POST body as application/x-www-form-urlencoded parameters.
 	AuthStyleInParams AuthStyle = 1
 
-	// AuthStyleInHeader sends the client_id and client_password
+	// AuthStyleInHeader sends the client_id and client_secret
 	// using HTTP Basic Authorization. This is an optional style
 	// described in the OAuth2 RFC 6749 section 2.3.1.
 	AuthStyleInHeader AuthStyle = 2
@@ -158,7 +157,7 @@
 // PKCE), https://www.oauth.com/oauth2-servers/pkce/ and
 // https://www.ietf.org/archive/id/draft-ietf-oauth-v2-1-09.html#name-cross-site-request-forgery (describing both approaches)
 func (c *Config) AuthCodeURL(state string, opts ...AuthCodeOption) string {
-	var buf bytes.Buffer
+	var buf strings.Builder
 	buf.WriteString(c.Endpoint.AuthURL)
 	v := url.Values{
 		"response_type": {"code"},
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/oauth2/pkce.go /work/src/kubernetes/vendor/golang.org/x/oauth2/pkce.go
--- a/vendor/golang.org/x/oauth2/pkce.go	2026-09-02 10:24:54.968997545 +0000
+++ b/vendor/golang.org/x/oauth2/pkce.go	2026-09-02 10:25:23.685027485 +0000
@@ -51,7 +51,7 @@
 	return base64.RawURLEncoding.EncodeToString(sha[:])
 }
 
-// S256ChallengeOption derives a PKCE code challenge derived from verifier with
+// S256ChallengeOption derives a PKCE code challenge from the verifier with
 // method S256. It should be passed to [Config.AuthCodeURL] or [Config.DeviceAuth]
 // only.
 func S256ChallengeOption(verifier string) AuthCodeOption {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/oauth2/token.go /work/src/kubernetes/vendor/golang.org/x/oauth2/token.go
--- a/vendor/golang.org/x/oauth2/token.go	2026-09-02 10:24:54.968997545 +0000
+++ b/vendor/golang.org/x/oauth2/token.go	2026-09-02 10:25:23.685027485 +0000
@@ -103,7 +103,7 @@
 }
 
 // Extra returns an extra field.
-// Extra fields are key-value pairs returned by the server as a
+// Extra fields are key-value pairs returned by the server as
 // part of the token retrieval response.
 func (t *Token) Extra(key string) any {
 	if raw, ok := t.raw.(map[string]any); ok {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/oauth2/transport.go /work/src/kubernetes/vendor/golang.org/x/oauth2/transport.go
--- a/vendor/golang.org/x/oauth2/transport.go	2026-09-02 10:24:54.968997545 +0000
+++ b/vendor/golang.org/x/oauth2/transport.go	2026-09-02 10:25:23.685027485 +0000
@@ -58,7 +58,7 @@
 var cancelOnce sync.Once
 
 // CancelRequest does nothing. It used to be a legacy cancellation mechanism
-// but now only it only logs on first use to warn that it's deprecated.
+// but now only logs on first use to warn that it's deprecated.
 //
 // Deprecated: use contexts for cancellation instead.
 func (t *Transport) CancelRequest(req *http.Request) {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/cpu/parse.go /work/src/kubernetes/vendor/golang.org/x/sys/cpu/parse.go
--- a/vendor/golang.org/x/sys/cpu/parse.go	2026-09-02 10:24:54.968997545 +0000
+++ b/vendor/golang.org/x/sys/cpu/parse.go	2026-09-02 10:25:23.713027523 +0000
@@ -6,38 +6,50 @@
 
 import "strconv"
 
-// parseRelease parses a dot-separated version number. It follows the semver
-// syntax, but allows the minor and patch versions to be elided.
+// parseRelease parses a dot-separated version number from the prefix
+// of rel. It returns ok=true only if at least the major and minor
+// components were successfully parsed; the patch component is
+// best-effort. Trailing vendor or build suffixes such as
+// "-generic", "+", "_hi3535", or "-rc1" are ignored.
 //
 // This is a copy of the Go runtime's parseRelease from
-// https://golang.org/cl/209597.
+// https://golang.org/cl/209597, updated in https://golang.org/cl/781800.
 func parseRelease(rel string) (major, minor, patch int, ok bool) {
-	// Strip anything after a dash or plus.
-	for i := range len(rel) {
-		if rel[i] == '-' || rel[i] == '+' {
-			rel = rel[:i]
-			break
+	// next consumes a run of decimal digits from the front of rel,
+	// returning the parsed value. If the digits are followed by a
+	// '.', it is consumed and more is set so the caller knows to
+	// parse another component; otherwise scanning terminates and
+	// the rest of rel is discarded.
+	next := func() (n int, more, ok bool) {
+		i := 0
+		for i < len(rel) && rel[i] >= '0' && rel[i] <= '9' {
+			i++
 		}
-	}
-
-	next := func() (int, bool) {
-		for i := range len(rel) {
-			if rel[i] == '.' {
-				ver, err := strconv.Atoi(rel[:i])
-				rel = rel[i+1:]
-				return ver, err == nil
-			}
+		if i == 0 {
+			return 0, false, false
+		}
+		n, err := strconv.Atoi(rel[:i])
+		if err != nil {
+			return 0, false, false
+		}
+		if i < len(rel) && rel[i] == '.' {
+			rel = rel[i+1:]
+			return n, true, true
 		}
-		ver, err := strconv.Atoi(rel)
 		rel = ""
-		return ver, err == nil
+		return n, false, true
+	}
+
+	var more bool
+	if major, more, ok = next(); !ok || !more {
+		return 0, 0, 0, false
 	}
-	if major, ok = next(); !ok || rel == "" {
-		return
+	if minor, more, ok = next(); !ok {
+		return 0, 0, 0, false
 	}
-	if minor, ok = next(); !ok || rel == "" {
-		return
+	if !more {
+		return major, minor, 0, true
 	}
-	patch, ok = next()
-	return
+	patch, _, _ = next()
+	return major, minor, patch, true
 }
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux.go	2026-09-02 10:25:23.721027534 +0000
@@ -1874,6 +1874,7 @@
 //sys	Dup3(oldfd int, newfd int, flags int) (err error)
 //sysnb	EpollCreate1(flag int) (fd int, err error)
 //sysnb	EpollCtl(epfd int, op int, fd int, event *EpollEvent) (err error)
+//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) = SYS_EPOLL_PWAIT
 //sys	Eventfd(initval uint, flags int) (fd int, err error) = SYS_EVENTFD2
 //sys	Exit(code int) = SYS_EXIT_GROUP
 //sys	Fallocate(fd int, mode uint32, off int64, len int64) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_386.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_386.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_386.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_386.go	2026-09-02 10:25:23.721027534 +0000
@@ -20,7 +20,6 @@
 
 // 64-bit file system and 32-bit uid calls
 // (386 default is 32-bit file system and 16-bit uid).
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64_64
 //sys	Fchown(fd int, uid int, gid int) (err error) = SYS_FCHOWN32
 //sys	Fstat(fd int, stat *Stat_t) (err error) = SYS_FSTAT64
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_amd64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_amd64.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_amd64.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_amd64.go	2026-09-02 10:25:23.725027539 +0000
@@ -6,7 +6,6 @@
 
 package unix
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_arm.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_arm.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_arm.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_arm.go	2026-09-02 10:25:23.725027539 +0000
@@ -44,7 +44,6 @@
 
 // 64-bit file system and 32-bit uid calls
 // (16-bit uid calls are not always supported in newer kernels)
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fchown(fd int, uid int, gid int) (err error) = SYS_FCHOWN32
 //sys	Fstat(fd int, stat *Stat_t) (err error) = SYS_FSTAT64
 //sys	Fstatat(dirfd int, path string, stat *Stat_t, flags int) (err error) = SYS_FSTATAT64
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_arm64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_arm64.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_arm64.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_arm64.go	2026-09-02 10:25:23.725027539 +0000
@@ -8,7 +8,6 @@
 
 import "unsafe"
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) = SYS_EPOLL_PWAIT
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_loong64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_loong64.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_loong64.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_loong64.go	2026-09-02 10:25:23.725027539 +0000
@@ -8,7 +8,6 @@
 
 import "unsafe"
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) = SYS_EPOLL_PWAIT
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstatfs(fd int, buf *Statfs_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_mips64x.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_mips64x.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_mips64x.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_mips64x.go	2026-09-02 10:25:23.725027539 +0000
@@ -6,7 +6,6 @@
 
 package unix
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstatfs(fd int, buf *Statfs_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_mipsx.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_mipsx.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_mipsx.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_mipsx.go	2026-09-02 10:25:23.725027539 +0000
@@ -13,7 +13,6 @@
 
 func Syscall9(trap, a1, a2, a3, a4, a5, a6, a7, a8, a9 uintptr) (r1, r2 uintptr, err syscall.Errno)
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Ftruncate(fd int, length int64) (err error) = SYS_FTRUNCATE64
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_ppc.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_ppc.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_ppc.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_ppc.go	2026-09-02 10:25:23.725027539 +0000
@@ -11,7 +11,6 @@
 	"unsafe"
 )
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error) = SYS_FSTAT64
 //sys	Fstatat(dirfd int, path string, stat *Stat_t, flags int) (err error) = SYS_FSTATAT64
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_ppc64x.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_ppc64x.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_ppc64x.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_ppc64x.go	2026-09-02 10:25:23.725027539 +0000
@@ -6,7 +6,6 @@
 
 package unix
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_riscv64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_riscv64.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_riscv64.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_riscv64.go	2026-09-02 10:25:23.725027539 +0000
@@ -8,7 +8,6 @@
 
 import "unsafe"
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) = SYS_EPOLL_PWAIT
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_s390x.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_s390x.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_s390x.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_s390x.go	2026-09-02 10:25:23.725027539 +0000
@@ -10,7 +10,6 @@
 	"unsafe"
 )
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_sparc64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/syscall_linux_sparc64.go
--- a/vendor/golang.org/x/sys/unix/syscall_linux_sparc64.go	2026-09-02 10:24:54.976997557 +0000
+++ b/vendor/golang.org/x/sys/unix/syscall_linux_sparc64.go	2026-09-02 10:25:23.725027539 +0000
@@ -6,7 +6,6 @@
 
 package unix
 
-//sys	EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error)
 //sys	Fadvise(fd int, offset int64, length int64, advice int) (err error) = SYS_FADVISE64
 //sys	Fchown(fd int, uid int, gid int) (err error)
 //sys	Fstat(fd int, stat *Stat_t) (err error)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zerrors_linux.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zerrors_linux.go
--- a/vendor/golang.org/x/sys/unix/zerrors_linux.go	2026-09-02 10:24:54.980997562 +0000
+++ b/vendor/golang.org/x/sys/unix/zerrors_linux.go	2026-09-02 10:25:23.725027539 +0000
@@ -1359,6 +1359,7 @@
 	FAN_UNLIMITED_MARKS                         = 0x20
 	FAN_UNLIMITED_QUEUE                         = 0x10
 	FD_CLOEXEC                                  = 0x1
+	FD_PIDFS_ROOT                               = -0x2712
 	FD_SETSIZE                                  = 0x400
 	FF0                                         = 0x0
 	FIB_RULE_DEV_DETACHED                       = 0x8
@@ -1970,6 +1971,8 @@
 	MADV_DONTNEED                               = 0x4
 	MADV_DONTNEED_LOCKED                        = 0x18
 	MADV_FREE                                   = 0x8
+	MADV_GUARD_INSTALL                          = 0x66
+	MADV_GUARD_REMOVE                           = 0x67
 	MADV_HUGEPAGE                               = 0xe
 	MADV_HWPOISON                               = 0x64
 	MADV_KEEPONFORK                             = 0x13
@@ -2114,7 +2117,7 @@
 	MS_NOSEC                                    = 0x10000000
 	MS_NOSUID                                   = 0x2
 	MS_NOSYMFOLLOW                              = 0x100
-	MS_NOUSER                                   = -0x80000000
+	MS_NOUSER                                   = 0x80000000
 	MS_POSIXACL                                 = 0x10000
 	MS_PRIVATE                                  = 0x40000
 	MS_RDONLY                                   = 0x1
@@ -3786,6 +3789,9 @@
 	TCPOPT_TIMESTAMP                            = 0x8
 	TCPOPT_TSTAMP_HDR                           = 0x101080a
 	TCPOPT_WINDOW                               = 0x3
+	TCP_AO_KEYF_EXCLUDE_OPT                     = 0x2
+	TCP_AO_KEYF_IFINDEX                         = 0x1
+	TCP_AO_MAXKEYLEN                            = 0x50
 	TCP_CC_INFO                                 = 0x1a
 	TCP_CM_INQ                                  = 0x24
 	TCP_CONGESTION                              = 0xd
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux.go	2026-09-02 10:25:23.729027545 +0000
@@ -700,6 +700,23 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
+func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
+	var _p0 unsafe.Pointer
+	if len(events) > 0 {
+		_p0 = unsafe.Pointer(&events[0])
+	} else {
+		_p0 = unsafe.Pointer(&_zero)
+	}
+	r0, _, e1 := Syscall6(SYS_EPOLL_PWAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
+	n = int(r0)
+	if e1 != 0 {
+		err = errnoErr(e1)
+	}
+	return
+}
+
+// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
+
 func Eventfd(initval uint, flags int) (fd int, err error) {
 	r0, _, e1 := Syscall(SYS_EVENTFD2, uintptr(initval), uintptr(flags), 0)
 	fd = int(r0)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_386.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_386.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_386.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_386.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64_64, uintptr(fd), uintptr(offset), uintptr(offset>>32), uintptr(length), uintptr(length>>32), uintptr(advice))
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_amd64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_amd64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_amd64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_amd64.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_arm.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_arm.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_arm.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_arm.go	2026-09-02 10:25:23.729027545 +0000
@@ -213,23 +213,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fchown(fd int, uid int, gid int) (err error) {
 	_, _, e1 := Syscall(SYS_FCHOWN32, uintptr(fd), uintptr(uid), uintptr(gid))
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_arm64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_arm64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_arm64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_arm64.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_PWAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_loong64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_loong64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_loong64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_loong64.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_PWAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mips.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mips.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_mips.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_mips.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall9(SYS_FADVISE64, uintptr(fd), 0, uintptr(offset>>32), uintptr(offset), uintptr(length>>32), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64le.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64le.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64le.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_mips64le.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mipsle.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_mipsle.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_mipsle.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_mipsle.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall9(SYS_FADVISE64, uintptr(fd), 0, uintptr(offset), uintptr(offset>>32), uintptr(length), uintptr(length>>32), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fchown(fd int, uid int, gid int) (err error) {
 	_, _, e1 := Syscall(SYS_FCHOWN, uintptr(fd), uintptr(uid), uintptr(gid))
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64le.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64le.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64le.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_ppc64le.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_riscv64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_riscv64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_riscv64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_riscv64.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_PWAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_s390x.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_s390x.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_s390x.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_s390x.go	2026-09-02 10:25:23.729027545 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_sparc64.go /work/src/kubernetes/vendor/golang.org/x/sys/unix/zsyscall_linux_sparc64.go
--- a/vendor/golang.org/x/sys/unix/zsyscall_linux_sparc64.go	2026-09-02 10:24:54.984997567 +0000
+++ b/vendor/golang.org/x/sys/unix/zsyscall_linux_sparc64.go	2026-09-02 10:25:23.733027550 +0000
@@ -45,23 +45,6 @@
 
 // THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
 
-func EpollWait(epfd int, events []EpollEvent, msec int) (n int, err error) {
-	var _p0 unsafe.Pointer
-	if len(events) > 0 {
-		_p0 = unsafe.Pointer(&events[0])
-	} else {
-		_p0 = unsafe.Pointer(&_zero)
-	}
-	r0, _, e1 := Syscall6(SYS_EPOLL_WAIT, uintptr(epfd), uintptr(_p0), uintptr(len(events)), uintptr(msec), 0, 0)
-	n = int(r0)
-	if e1 != 0 {
-		err = errnoErr(e1)
-	}
-	return
-}
-
-// THIS FILE IS GENERATED BY THE COMMAND AT THE TOP; DO NOT EDIT
-
 func Fadvise(fd int, offset int64, length int64, advice int) (err error) {
 	_, _, e1 := Syscall6(SYS_FADVISE64, uintptr(fd), uintptr(offset), uintptr(length), uintptr(advice), 0, 0)
 	if e1 != 0 {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/windows/security_windows.go /work/src/kubernetes/vendor/golang.org/x/sys/windows/security_windows.go
--- a/vendor/golang.org/x/sys/windows/security_windows.go	2026-09-02 10:24:54.992997579 +0000
+++ b/vendor/golang.org/x/sys/windows/security_windows.go	2026-09-02 10:25:23.745027567 +0000
@@ -1109,17 +1109,53 @@
 )
 
 // This type is the union inside of TRUSTEE and must be created using one of the TrusteeValueFrom* functions.
+//
+// Go pointers stored in a TrusteeValue must be pinned using [runtime.Pinner]
+// for the lifetime of the TrusteeValue.
 type TrusteeValue uintptr
 
+// TrusteeValueFromString is unsafe and should not be used.
+//
+// It returns a uintptr containing a reference to newly-allocated memory
+// which will be freed by the garbage collector.
+// There is no way for the caller to safely reference this memory.
+//
+// To create a [TrusteeValue] from a string, use:
+//
+//	p, err := windows.UTF16PtrFromString(s)
+//	if err != nil {
+//		// handle error
+//	}
+//
+//	// Pin the string for as long as it is used.
+//	var pinner runtime.Pinner
+//	pinner.Pin(p)
+//	defer pinner.Unpin()
+//
+//	tv := TrusteeValue(unsafe.Pointer(p))
+//
+// Deprecated: TrusteeValueFromString is unsafe and should not be used.
 func TrusteeValueFromString(str string) TrusteeValue {
 	return TrusteeValue(unsafe.Pointer(StringToUTF16Ptr(str)))
 }
+
+// TrusteeValueFromSID returns a [TrusteeValue] referencing sid.
+//
+// The caller must pin sid using a [runtime.Pinner] for the lifetime of the TrusteeValue.
 func TrusteeValueFromSID(sid *SID) TrusteeValue {
 	return TrusteeValue(unsafe.Pointer(sid))
 }
+
+// TrusteeValueFromObjectsAndSid returns a [TrusteeValue] referencing objectsAndSid.
+//
+// The caller must pin objectsAndSid using a [runtime.Pinner] for the lifetime of the TrusteeValue.
 func TrusteeValueFromObjectsAndSid(objectsAndSid *OBJECTS_AND_SID) TrusteeValue {
 	return TrusteeValue(unsafe.Pointer(objectsAndSid))
 }
+
+// TrusteeValueFromObjectsAndName returns a [TrusteeValue] referencing objectsAndName.
+//
+// The caller must pin objectsAndName using a [runtime.Pinner] for the lifetime of the TrusteeValue.
 func TrusteeValueFromObjectsAndName(objectsAndName *OBJECTS_AND_NAME) TrusteeValue {
 	return TrusteeValue(unsafe.Pointer(objectsAndName))
 }
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/windows/syscall_windows.go /work/src/kubernetes/vendor/golang.org/x/sys/windows/syscall_windows.go
--- a/vendor/golang.org/x/sys/windows/syscall_windows.go	2026-09-02 10:24:54.992997579 +0000
+++ b/vendor/golang.org/x/sys/windows/syscall_windows.go	2026-09-02 10:25:23.745027567 +0000
@@ -1728,11 +1728,15 @@
 // the more common *uint16 string type.
 func NewNTString(s string) (*NTString, error) {
 	var nts NTString
-	s8, err := BytePtrFromString(s)
+	s8, err := ByteSliceFromString(s)
 	if err != nil {
 		return nil, err
 	}
-	RtlInitString(&nts, s8)
+	// The source string plus its terminating NUL must fit within MAX_USHORT.
+	if len(s8) > MAX_USHORT {
+		return nil, syscall.EINVAL
+	}
+	RtlInitString(&nts, &s8[0])
 	return &nts, nil
 }
 
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/sys/windows/types_windows.go /work/src/kubernetes/vendor/golang.org/x/sys/windows/types_windows.go
--- a/vendor/golang.org/x/sys/windows/types_windows.go	2026-09-02 10:24:54.996997584 +0000
+++ b/vendor/golang.org/x/sys/windows/types_windows.go	2026-09-02 10:25:23.749027572 +0000
@@ -169,6 +169,7 @@
 	FORMAT_MESSAGE_ARGUMENT_ARRAY  = 8192
 	FORMAT_MESSAGE_MAX_WIDTH_MASK  = 255
 
+	MAX_USHORT    = 0xffff
 	MAX_PATH      = 260
 	MAX_LONG_PATH = 32768
 
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go /work/src/kubernetes/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go
--- a/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go	2026-09-02 10:24:55.020997618 +0000
+++ b/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go	2026-09-02 10:25:23.817027665 +0000
@@ -30,6 +30,7 @@
 	"slices"
 	"strconv"
 	"strings"
+	"sync"
 
 	"golang.org/x/tools/internal/typesinternal"
 )
@@ -126,7 +127,8 @@
 // An Encoder amortizes the cost of encoding the paths of multiple objects.
 // The zero value of an Encoder is ready to use.
 type Encoder struct {
-	pkgIndex map[*types.Package]*pkgIndex
+	pkgIndexMu sync.Mutex
+	pkgIndex   map[*types.Package]*pkgIndex
 }
 
 // A traversal encapsulates the state of a single traversal of the object/type graph.
@@ -191,6 +193,8 @@
 // For returns the path to an object relative to its package,
 // or an error if the object is not accessible from the package's Scope.
 //
+// For is safe for concurrent use.
+//
 // The For function guarantees to return a path only for the following objects:
 // - package-level types
 // - exported package-level non-types
@@ -320,6 +324,9 @@
 		panic(obj)
 	}
 
+	enc.pkgIndexMu.Lock()
+	defer enc.pkgIndexMu.Unlock()
+
 	// 4. Search the object/type graph for the path to
 	//    the var (field/param/result) or method.
 	ix, ok := enc.pkgIndex[pkg]
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/imports/fix.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/imports/fix.go
--- a/vendor/golang.org/x/tools/internal/imports/fix.go	2026-09-02 10:24:55.020997618 +0000
+++ b/vendor/golang.org/x/tools/internal/imports/fix.go	2026-09-02 10:25:23.821027671 +0000
@@ -32,6 +32,7 @@
 	"golang.org/x/tools/internal/event"
 	"golang.org/x/tools/internal/gocommand"
 	"golang.org/x/tools/internal/gopathwalk"
+	"golang.org/x/tools/internal/modindex"
 	"golang.org/x/tools/internal/stdlib"
 )
 
@@ -320,6 +321,7 @@
 // load reads in everything necessary to run a pass, and reports whether the
 // file already has all the imports it needs. It fills in p.missingRefs with the
 // file's missing symbols, if any, or removes unused imports if not.
+// This is called 3(!) times: self, otherFiles, loadRealPackageNames
 func (p *pass) load(ctx context.Context) ([]*ImportFix, bool) {
 	p.knownPackages = map[string]*PackageInfo{}
 	p.missingRefs = References{}
@@ -577,6 +579,17 @@
 }
 
 func getFixesWithSource(ctx context.Context, fset *token.FileSet, f *ast.File, filename string, goroot string, logf func(string, ...any), source Source) ([]*ImportFix, error) {
+	// If there is an Index for the GOMODCACHE, remember that, and later make it so that the
+	// directory walk doesn't go into the module cache, since we already have all the information
+	var ix *modindex.Index
+	src, ok := source.(*ProcessEnvSource)
+	if ok {
+		var err error
+		if ix, err = modindex.Read(src.env.Env["GOMODCACHE"]); err != nil {
+			ix = nil // don't use it if there was an error
+		}
+	}
+
 	// This logic is defensively duplicated from getFixes.
 	abs, err := filepath.Abs(filename)
 	if err != nil {
@@ -635,6 +648,20 @@
 	}
 	p.loadRealPackageNames = true
 	p.otherFiles = otherFiles
+	if ix != nil {
+		src, ok := p.source.(*ProcessEnvSource)
+		if ok {
+			// For safety, clone the env so that we don't modify the caller's env.
+			env := *src.env
+			env.Env = maps.Clone(src.env.Env)
+			src.env = &env
+			// avoid looking in the module cache, as we have the index instead:
+			// This makes a later call to newModuleresolver (from
+			// LoadPackageNames) produce a resolver that will not look
+			// in the module cache
+			src.env.Env["GOMODCACHE"] = ""
+		}
+	}
 	if fixes, done := p.load(ctx); done {
 		return fixes, nil
 	}
@@ -649,7 +676,7 @@
 
 	// Go look for candidates in $GOPATH, etc. We don't necessarily load
 	// the real exports of sibling imports, so keep assuming their contents.
-	if err := addExternalCandidates(ctx, p, p.missingRefs, filename); err != nil {
+	if err := addExternalCandidates(ctx, p, p.missingRefs, filename, ix); err != nil {
 		return nil, err
 	}
 
@@ -1184,7 +1211,7 @@
 	exportsLoaded func(pkg *pkg, exports []stdlib.Symbol)
 }
 
-func addExternalCandidates(ctx context.Context, pass *pass, refs References, filename string) error {
+func addExternalCandidates(ctx context.Context, pass *pass, refs References, filename string, ix *modindex.Index) error {
 	ctx, done := event.Start(ctx, "imports.addExternalCandidates")
 	defer done()
 
@@ -1193,6 +1220,24 @@
 		return err
 	}
 
+	// Add candidates from the module cache.
+	if ix != nil {
+		for k, v := range refs {
+			for n := range v {
+				cands := ix.Lookup(k, n, false)
+				for _, cand := range cands {
+					x := &Result{
+						&ImportInfo{ImportPath: cand.ImportPath},
+						&PackageInfo{Name: cand.PkgName,
+							Exports: map[string]bool{cand.Name: true},
+						},
+					}
+					results = append(results, x)
+				}
+			}
+		}
+	}
+
 	for _, result := range results {
 		if result == nil {
 			continue
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/imports/mod.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/imports/mod.go
--- a/vendor/golang.org/x/tools/internal/imports/mod.go	2026-09-02 10:24:55.020997618 +0000
+++ b/vendor/golang.org/x/tools/internal/imports/mod.go	2026-09-02 10:25:23.821027671 +0000
@@ -166,10 +166,7 @@
 		}
 	}
 
-	r.moduleCacheDir = gomodcacheForEnv(goenv)
-	if r.moduleCacheDir == "" {
-		return nil, fmt.Errorf("cannot resolve GOMODCACHE")
-	}
+	r.moduleCacheDir = goenv["GOMODCACHE"]
 
 	sort.Slice(r.modsByModPath, func(i, j int) bool {
 		count := func(x int) int {
@@ -238,26 +235,6 @@
 	return r, nil
 }
 
-// gomodcacheForEnv returns the GOMODCACHE value to use based on the given env
-// map, which must have GOMODCACHE and GOPATH populated.
-//
-// TODO(rfindley): this is defensive refactoring.
-//  1. Is this even relevant anymore? Can't we just read GOMODCACHE.
-//  2. Use this to separate module cache scanning from other scanning.
-func gomodcacheForEnv(goenv map[string]string) string {
-	if gmc := goenv["GOMODCACHE"]; gmc != "" {
-		// golang/go#67156: ensure that the module cache is clean, since it is
-		// assumed as a prefix to directories scanned by gopathwalk, which are
-		// themselves clean.
-		return filepath.Clean(gmc)
-	}
-	gopaths := filepath.SplitList(goenv["GOPATH"])
-	if len(gopaths) == 0 {
-		return ""
-	}
-	return filepath.Join(gopaths[0], "/pkg/mod")
-}
-
 func (r *ModuleResolver) initAllMods() error {
 	stdout, err := r.env.invokeGo(context.TODO(), "list", "-m", "-e", "-json", "...")
 	if err != nil {
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/imports/source_env.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/imports/source_env.go
--- a/vendor/golang.org/x/tools/internal/imports/source_env.go	2026-09-02 10:24:55.020997618 +0000
+++ b/vendor/golang.org/x/tools/internal/imports/source_env.go	2026-09-02 10:25:23.821027671 +0000
@@ -53,7 +53,7 @@
 	found := make(map[string][]pkgDistance)
 	callback := &scanCallback{
 		rootFound: func(gopathwalk.Root) bool {
-			return true // We want everything.
+			return true
 		},
 		dirFound: func(pkg *pkg) bool {
 			return pkgIsCandidate(filename, refs, pkg)
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/modindex/directories.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/modindex/directories.go
--- a/vendor/golang.org/x/tools/internal/modindex/directories.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/golang.org/x/tools/internal/modindex/directories.go	2026-09-02 10:25:23.821027671 +0000
@@ -0,0 +1,131 @@
+// Copyright 2024 The Go Authors. All rights reserved.
+// Use of this source code is governed by a BSD-style
+// license that can be found in the LICENSE file.
+
+package modindex
+
+import (
+	"fmt"
+	"log"
+	"os"
+	"path/filepath"
+	"regexp"
+	"strings"
+	"sync"
+	"time"
+
+	"golang.org/x/mod/semver"
+	"golang.org/x/tools/internal/gopathwalk"
+)
+
+type directory struct {
+	path       string // relative to GOMODCACHE
+	importPath string
+	version    string // semantic version
+}
+
+// bestDirByImportPath returns the best directory for each import
+// path, where "best" means most recent semantic version. These import
+// paths are inferred from the GOMODCACHE-relative dir names in dirs.
+func bestDirByImportPath(dirs []string) (map[string]directory, error) {
+	dirsByPath := make(map[string]directory)
+	for _, dir := range dirs {
+		importPath, version, err := dirToImportPathVersion(dir)
+		if err != nil {
+			return nil, err
+		}
+		new := directory{
+			path:       dir,
+			importPath: importPath,
+			version:    version,
+		}
+		if old, ok := dirsByPath[importPath]; !ok || compareDirectory(new, old) < 0 {
+			dirsByPath[importPath] = new
+		}
+	}
+	return dirsByPath, nil
+}
+
+// compareDirectory defines an ordering of path@version directories,
+// by descending version, then by ascending path.
+func compareDirectory(x, y directory) int {
+	if sign := -semver.Compare(x.version, y.version); sign != 0 {
+		return sign // latest first
+	}
+	return strings.Compare(string(x.path), string(y.path))
+}
+
+// modCacheRegexp splits a relpathpath into module, module version, and package.
+var modCacheRegexp = regexp.MustCompile(`(.*)@([^/\\]*)(.*)`)
+
+// dirToImportPathVersion computes import path and semantic version
+// from a GOMODCACHE-relative directory name.
+func dirToImportPathVersion(dir string) (string, string, error) {
+	m := modCacheRegexp.FindStringSubmatch(string(dir))
+	// m[1] is the module path
+	// m[2] is the version major.minor.patch(-<pre release identifier)
+	// m[3] is the rest of the package path
+	if len(m) != 4 {
+		return "", "", fmt.Errorf("bad dir %s", dir)
+	}
+	if !semver.IsValid(m[2]) {
+		return "", "", fmt.Errorf("bad semantic version %s", m[2])
+	}
+	// ToSlash is required to convert Windows file paths
+	// into Go package import paths.
+	return filepath.ToSlash(m[1] + m[3]), m[2], nil
+}
+
+// findDirs returns an unordered list of relevant package directories,
+// relative to the specified module cache root. The result includes only
+// module dirs whose mtime is within (start, end).
+func findDirs(root string, start, end time.Time) []string {
+	var (
+		resMu sync.Mutex
+		res   []string
+	)
+
+	addDir := func(root gopathwalk.Root, dir string) {
+		// TODO(pjw): do we need to check times?
+		resMu.Lock()
+		defer resMu.Unlock()
+		res = append(res, relative(root.Path, dir))
+	}
+
+	skipDir := func(_ gopathwalk.Root, dir string) bool {
+		// The cache directory is already ignored in gopathwalk.
+		if filepath.Base(dir) == "internal" {
+			return true
+		}
+
+		// Skip toolchains.
+		if strings.Contains(dir, "toolchain@") {
+			return true
+		}
+
+		// Don't look inside @ directories that are too old/new.
+		if strings.Contains(filepath.Base(dir), "@") {
+			st, err := os.Stat(dir)
+			if err != nil {
+				log.Printf("can't stat dir %s %v", dir, err)
+				return true
+			}
+			mtime := st.ModTime()
+			return mtime.Before(start) || mtime.After(end)
+		}
+
+		return false
+	}
+
+	// TODO(adonovan): parallelize this. Even with a hot buffer cache,
+	//   find $(go env GOMODCACHE) -type d
+	// can easily take up a minute.
+	roots := []gopathwalk.Root{{Path: root, Type: gopathwalk.RootModuleCache}}
+	gopathwalk.WalkSkip(roots, addDir, skipDir, gopathwalk.Options{
+		ModulesEnabled: true,
+		Concurrency:    1, // TODO(pjw): adjust concurrency
+		// Logf: log.Printf,
+	})
+
+	return res
+}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/modindex/index.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/modindex/index.go
--- a/vendor/golang.org/x/tools/internal/modindex/index.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/golang.org/x/tools/internal/modindex/index.go	2026-09-02 10:25:23.821027671 +0000
@@ -0,0 +1,295 @@
+// Copyright 2024 The Go Authors. All rights reserved.
+// Use of this source code is governed by a BSD-style
+// license that can be found in the LICENSE file.
+
+package modindex
+
+import (
+	"bufio"
+	"crypto/sha256"
+	"encoding/csv"
+	"fmt"
+	"io"
+	"os"
+	"path/filepath"
+	"strconv"
+	"strings"
+	"testing"
+	"time"
+)
+
+/*
+The on-disk index ("payload") is a text file.
+The first 3 lines are header information containing CurrentVersion,
+the value of GOMODCACHE, and the validity date of the index.
+(This is when the code started building the index.)
+Following the header are sections of lines, one section for each
+import path. These sections are sorted by package name.
+The first line of each section, marked by a leading :, contains
+the package name, the import path, the name of the directory relative
+to GOMODCACHE, and its semantic version.
+The rest of each section consists of one line per exported symbol.
+The lines are sorted by the symbol's name and contain the name,
+an indication of its lexical type (C, T, V, F), and if it is the
+name of a function, information about the signature.
+
+The fields in the section header lines are separated by commas, and
+in the unlikely event this would be confusing, the csv package is used
+to write (and read) them.
+
+In the lines containing exported names, C=const, V=var, T=type, F=func.
+If it is a func, the next field is the number of returned values,
+followed by pairs consisting of formal parameter names and types.
+All these fields are separated by spaces. Any spaces in a type
+(e.g., chan struct{}) are replaced by $s on the disk. The $s are
+turned back into spaces when read.
+
+Here is an index header (the comments are not part of the index):
+0                                      // version (of the index format)
+/usr/local/google/home/pjw/go/pkg/mod  // GOMODCACHE
+2024-09-11 18:55:09                    // validity date of the index
+
+Here is an index section:
+:yaml,gopkg.in/yaml.v1,gopkg.in/yaml.v1@v1.0.0-20140924161607-9f9df34309c0,v1.0.0-20140924161607-9f9df34309c0
+Getter T
+Marshal F 2 in interface{}
+Setter T
+Unmarshal F 1 in []byte out interface{}
+
+The package name is yaml, the import path is gopkg.in/yaml.v1.
+Getter and Setter are types, and Marshal and Unmarshal are functions.
+The latter returns one value and has two arguments, 'in' and 'out'
+whose types are []byte and interface{}.
+*/
+
+// CurrentVersion tells readers about the format of the index.
+const CurrentVersion int = 0
+
+// Index is returned by [Read].
+type Index struct {
+	Version    int
+	GOMODCACHE string    // absolute path of Go module cache dir
+	ValidAt    time.Time // moment at which the index was up to date
+	Entries    []Entry
+}
+
+func (ix *Index) String() string {
+	return fmt.Sprintf("Index(%s v%d has %d entries at %v)",
+		ix.GOMODCACHE, ix.Version, len(ix.Entries), ix.ValidAt)
+}
+
+// An Entry contains information for an import path.
+type Entry struct {
+	Dir        string // package directory relative to GOMODCACHE; uses OS path separator
+	ImportPath string
+	PkgName    string
+	Version    string
+	Names      []string // exported names and information
+}
+
+// IndexDir is where the module index is stored.
+// Each logical index entry consists of a pair of files:
+//
+//   - the "payload" (index-VERSION-XXX), whose name is
+//     randomized, holds the actual index; and
+//   - the "link" (index-name-VERSION-HASH),
+//     whose name is predictable, contains the
+//     name of the payload file.
+//
+// Since the link file is small (<512B),
+// reads and writes to it may be assumed atomic.
+var IndexDir string = func() string {
+	var dir string
+	if testing.Testing() {
+		dir = os.TempDir()
+	} else {
+		var err error
+		dir, err = os.UserCacheDir()
+		// shouldn't happen, but TempDir is better than
+		// creating ./goimports
+		if err != nil {
+			dir = os.TempDir()
+		}
+	}
+	dir = filepath.Join(dir, "goimports")
+	if err := os.MkdirAll(dir, 0777); err != nil {
+		dir = "" // #75505, people complain about the error message
+	}
+	return dir
+}()
+
+// Read reads the latest version of the on-disk index
+// for the specified Go module cache directory.
+// If there is no index, it returns a nil Index and an fs.ErrNotExist error.
+func Read(gomodcache string) (*Index, error) {
+	gomodcache, err := filepath.Abs(gomodcache)
+	if err != nil {
+		return nil, err
+	}
+	if IndexDir == "" {
+		return nil, os.ErrNotExist
+	}
+
+	// Read the "link" file for the specified gomodcache directory.
+	// It names the payload file.
+	content, err := os.ReadFile(filepath.Join(IndexDir, linkFileBasename(gomodcache)))
+	if err != nil {
+		return nil, err
+	}
+	payloadFile := filepath.Join(IndexDir, string(content))
+
+	// Read the index out of the payload file.
+	f, err := os.Open(payloadFile)
+	if err != nil {
+		return nil, err
+	}
+	defer f.Close()
+	return readIndexFrom(gomodcache, bufio.NewReader(f))
+}
+
+func readIndexFrom(gomodcache string, r io.Reader) (*Index, error) {
+	scan := bufio.NewScanner(r)
+
+	// version
+	if !scan.Scan() {
+		return nil, fmt.Errorf("unexpected scan error: %v", scan.Err())
+	}
+	version, err := strconv.Atoi(scan.Text())
+	if err != nil {
+		return nil, err
+	}
+	if version != CurrentVersion {
+		return nil, fmt.Errorf("got version %d, expected %d", version, CurrentVersion)
+	}
+
+	// gomodcache
+	if !scan.Scan() {
+		return nil, fmt.Errorf("scanner error reading module cache dir: %v", scan.Err())
+	}
+	// TODO(pjw): need to check that this is the expected cache dir
+	// so the tag should be passed in to this function
+	if dir := string(scan.Text()); dir != gomodcache {
+		return nil, fmt.Errorf("index file GOMODCACHE mismatch: got %q, want %q", dir, gomodcache)
+	}
+
+	// changed
+	if !scan.Scan() {
+		return nil, fmt.Errorf("scanner error reading index creation time: %v", scan.Err())
+	}
+	changed, err := time.ParseInLocation(time.DateTime, scan.Text(), time.Local)
+	if err != nil {
+		return nil, err
+	}
+
+	// entries
+	var (
+		curEntry *Entry
+		entries  []Entry
+	)
+	for scan.Scan() {
+		v := scan.Text()
+		if len(v) < 2 {
+			return nil, fmt.Errorf("malformed line: %q, %d entries", v, len(entries))
+		}
+		if v[0] == ':' {
+			if curEntry != nil {
+				entries = append(entries, *curEntry)
+			}
+			// as directories may contain commas and quotes, they need to be read as csv.
+			rdr := strings.NewReader(v[1:])
+			cs := csv.NewReader(rdr)
+			flds, err := cs.Read()
+			if err != nil {
+				return nil, err
+			}
+			if len(flds) != 4 {
+				return nil, fmt.Errorf("header contains %d fields, not 4: %q", len(v), v)
+			}
+			curEntry = &Entry{
+				PkgName:    flds[0],
+				ImportPath: flds[1],
+				Dir:        relative(gomodcache, flds[2]),
+				Version:    flds[3],
+			}
+			continue
+		}
+		curEntry.Names = append(curEntry.Names, v)
+	}
+	if err := scan.Err(); err != nil {
+		return nil, fmt.Errorf("scanner failed while reading modindex entry: %v", err)
+	}
+	if curEntry != nil {
+		entries = append(entries, *curEntry)
+	}
+
+	return &Index{
+		Version:    version,
+		GOMODCACHE: gomodcache,
+		ValidAt:    changed,
+		Entries:    entries,
+	}, nil
+}
+
+// write writes the index file and updates the index directory to refer to it.
+func write(gomodcache string, ix *Index) error {
+	if IndexDir == "" {
+		return os.ErrNotExist
+	}
+	// Write the index into a payload file with a fresh name.
+	f, err := os.CreateTemp(IndexDir, fmt.Sprintf("index-%d-*", CurrentVersion))
+	if err != nil {
+		return err // e.g. disk full, or index dir deleted
+	}
+	if err := writeIndexToFile(ix, bufio.NewWriter(f)); err != nil {
+		_ = f.Close() // ignore error
+		return err
+	}
+	if err := f.Close(); err != nil {
+		return err
+	}
+
+	// Write the name of the payload file into a link file.
+	indexDirFile := filepath.Join(IndexDir, linkFileBasename(gomodcache))
+	content := []byte(filepath.Base(f.Name()))
+	return os.WriteFile(indexDirFile, content, 0666)
+}
+
+func writeIndexToFile(x *Index, w *bufio.Writer) error {
+	fmt.Fprintf(w, "%d\n", x.Version)
+	fmt.Fprintf(w, "%s\n", x.GOMODCACHE)
+	tm := x.ValidAt.Truncate(time.Second) // round the time down
+	fmt.Fprintf(w, "%s\n", tm.Format(time.DateTime))
+	for _, e := range x.Entries {
+		if e.ImportPath == "" {
+			continue // shouldn't happen
+		}
+		// PJW: maybe always write these headers as csv?
+		if strings.ContainsAny(string(e.Dir), ",\"") {
+			cw := csv.NewWriter(w)
+			cw.Write([]string{":" + e.PkgName, e.ImportPath, string(e.Dir), e.Version})
+			cw.Flush()
+		} else {
+			fmt.Fprintf(w, ":%s,%s,%s,%s\n", e.PkgName, e.ImportPath, e.Dir, e.Version)
+		}
+		for _, x := range e.Names {
+			fmt.Fprintf(w, "%s\n", x)
+		}
+	}
+	return w.Flush()
+}
+
+// linkFileBasename returns the base name of the link file in the
+// index directory that holds the name of the payload file for the
+// specified (absolute) Go module cache dir.
+func linkFileBasename(gomodcache string) string {
+	// Note: coupled to logic in ./gomodindex/cmd.go. TODO: factor.
+	h := sha256.Sum256([]byte(gomodcache)) // collision-resistant hash
+	return fmt.Sprintf("index-name-%d-%032x", CurrentVersion, h)
+}
+
+func relative(base, file string) string {
+	if rel, err := filepath.Rel(base, file); err == nil {
+		return rel
+	}
+	return file
+}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/modindex/lookup.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/modindex/lookup.go
--- a/vendor/golang.org/x/tools/internal/modindex/lookup.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/golang.org/x/tools/internal/modindex/lookup.go	2026-09-02 10:25:23.821027671 +0000
@@ -0,0 +1,184 @@
+// Copyright 2024 The Go Authors. All rights reserved.
+// Use of this source code is governed by a BSD-style
+// license that can be found in the LICENSE file.
+
+package modindex
+
+import (
+	"slices"
+	"strconv"
+	"strings"
+
+	"golang.org/x/mod/module"
+)
+
+type Candidate struct {
+	PkgName    string
+	Name       string
+	Dir        string
+	ImportPath string
+	Type       LexType
+	Deprecated bool
+	// information for Funcs
+	Results int16   // how many results
+	Sig     []Field // arg names and types
+}
+
+type Field struct {
+	Arg, Type string
+}
+
+type LexType int8
+
+const (
+	Const LexType = iota
+	Var
+	Type
+	Func
+)
+
+// LookupAll only returns those Candidates whose import path
+// finds all the names.
+func (ix *Index) LookupAll(pkgName string, names ...string) map[string][]Candidate {
+	// this can be made faster when benchmarks show that it needs to be
+	names = uniquify(names)
+	byImpPath := make(map[string][]Candidate)
+	for _, nm := range names {
+		cands := ix.Lookup(pkgName, nm, false)
+		for _, c := range cands {
+			byImpPath[c.ImportPath] = append(byImpPath[c.ImportPath], c)
+		}
+	}
+	for k, v := range byImpPath {
+		if len(v) != len(names) {
+			delete(byImpPath, k)
+		}
+	}
+	return byImpPath
+}
+
+// remove duplicates
+func uniquify(in []string) []string {
+	if len(in) == 0 {
+		return in
+	}
+	in = slices.Clone(in)
+	slices.Sort(in)
+	return slices.Compact(in)
+}
+
+// Lookup finds all the symbols in the index with the given PkgName and name.
+// If prefix is true, it finds all of these with name as a prefix.
+func (ix *Index) Lookup(pkgName, name string, prefix bool) []Candidate {
+	loc, ok := slices.BinarySearchFunc(ix.Entries, pkgName, func(e Entry, pkg string) int {
+		return strings.Compare(e.PkgName, pkgName)
+	})
+	if !ok {
+		return nil // didn't find the package
+	}
+	var ans []Candidate
+	// loc is the first entry for this package name, but there may be several
+	for i := loc; i < len(ix.Entries); i++ {
+		e := ix.Entries[i]
+		if e.PkgName != pkgName {
+			break // end of sorted package names
+		}
+		nloc, ok := slices.BinarySearchFunc(e.Names, name, func(s string, name string) int {
+			if strings.HasPrefix(s, name) {
+				return 0
+			}
+			if s < name {
+				return -1
+			}
+			return 1
+		})
+		if !ok {
+			continue // didn't find the name, nor any symbols with name as a prefix
+		}
+		for j := nloc; j < len(e.Names); j++ {
+			nstr := e.Names[j]
+			// benchmarks show this makes a difference when there are a lot of Possibilities
+			flds := fastSplit(nstr)
+			if !(flds[0] == name || prefix && strings.HasPrefix(flds[0], name)) {
+				// past range of matching Names
+				break
+			}
+			if len(flds) < 2 {
+				continue // should never happen
+			}
+			impPath, err := module.UnescapePath(e.ImportPath)
+			if err != nil {
+				continue
+			}
+			px := Candidate{
+				PkgName:    pkgName,
+				Name:       flds[0],
+				Dir:        string(e.Dir),
+				ImportPath: impPath,
+				Type:       asLexType(flds[1][0]),
+				Deprecated: len(flds[1]) > 1 && flds[1][1] == 'D',
+			}
+			if px.Type == Func {
+				n, err := strconv.Atoi(flds[2])
+				if err != nil {
+					continue // should never happen
+				}
+				px.Results = int16(n)
+				if len(flds) >= 4 {
+					sig := strings.Split(flds[3], " ")
+					for i := range sig {
+						// $ cannot otherwise occur. removing the spaces
+						// almost works, but for chan struct{}, e.g.
+						sig[i] = strings.Replace(sig[i], "$", " ", -1)
+					}
+					px.Sig = toFields(sig)
+				}
+			}
+			ans = append(ans, px)
+		}
+	}
+	return ans
+}
+
+func toFields(sig []string) []Field {
+	ans := make([]Field, len(sig)/2)
+	for i := range ans {
+		ans[i] = Field{Arg: sig[2*i], Type: sig[2*i+1]}
+	}
+	return ans
+}
+
+// benchmarks show this is measurably better than strings.Split
+// split into first 4 fields separated by single space
+func fastSplit(x string) []string {
+	ans := make([]string, 0, 4)
+	nxt := 0
+	start := 0
+	for i := 0; i < len(x); i++ {
+		if x[i] != ' ' {
+			continue
+		}
+		ans = append(ans, x[start:i])
+		nxt++
+		start = i + 1
+		if nxt >= 3 {
+			break
+		}
+	}
+	ans = append(ans, x[start:])
+	return ans
+}
+
+func asLexType(c byte) LexType {
+	switch c {
+	case 'C':
+		return Const
+	case 'V':
+		return Var
+	case 'T':
+		return Type
+	case 'F':
+		return Func
+	}
+	return -1
+}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/modindex/modindex.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/modindex/modindex.go
--- a/vendor/golang.org/x/tools/internal/modindex/modindex.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/golang.org/x/tools/internal/modindex/modindex.go	2026-09-02 10:25:23.821027671 +0000
@@ -0,0 +1,121 @@
+// Copyright 2024 The Go Authors. All rights reserved.
+// Use of this source code is governed by a BSD-style
+// license that can be found in the LICENSE file.
+
+// Package modindex contains code for building and searching an
+// [Index] of the Go module cache.
+package modindex
+
+// The directory containing the index, returned by
+// [IndexDir], contains a file index-name-<ver> that contains the name
+// of the current index. We believe writing that short file is atomic.
+// [Read] reads that file to get the file name of the index.
+// WriteIndex writes an index with a unique name and then
+// writes that name into a new version of index-name-<ver>.
+// (<ver> stands for the CurrentVersion of the index format.)
+
+import (
+	"maps"
+	"os"
+	"path/filepath"
+	"slices"
+	"strings"
+	"time"
+
+	"golang.org/x/mod/semver"
+)
+
+// Update updates the index for the specified Go
+// module cache directory, creating it as needed.
+// On success it returns the current index.
+func Update(gomodcache string) (*Index, error) {
+	prev, err := Read(gomodcache)
+	if err != nil {
+		if !os.IsNotExist(err) {
+			return nil, err
+		}
+		prev = nil
+	}
+	return update(gomodcache, prev)
+}
+
+// update builds, writes, and returns the current index.
+//
+// If old is nil, the new index is built from all of GOMODCACHE;
+// otherwise it is built from the old index plus cache updates
+// since the previous index's time.
+func update(gomodcache string, old *Index) (*Index, error) {
+	gomodcache, err := filepath.Abs(gomodcache)
+	if err != nil {
+		return nil, err
+	}
+	new, changed, err := build(gomodcache, old)
+	if err != nil {
+		return nil, err
+	}
+	if old == nil || changed {
+		if err := write(gomodcache, new); err != nil {
+			return nil, err
+		}
+	}
+	return new, nil
+}
+
+// build returns a new index for the specified Go module cache (an
+// absolute path).
+//
+// If an old index is provided, only directories more recent than it
+// that it are scanned; older directories are provided by the old
+// Index.
+//
+// The boolean result indicates whether new entries were found.
+func build(gomodcache string, old *Index) (*Index, bool, error) {
+	// Set the time window.
+	var start time.Time // = dawn of time
+	if old != nil {
+		// -1s to accommodate skew between (fine-grained) time.Now
+		// and (coarse) file system's mtime clock.
+		start = old.ValidAt.Add(-1 * time.Second)
+	}
+	now := time.Now()
+	end := now.Add(24 * time.Hour) // safely in the future
+
+	// Enumerate GOMODCACHE package directories.
+	// Choose the best (latest) package for each import path.
+	pkgDirs := findDirs(gomodcache, start, end)
+	dirByPath, err := bestDirByImportPath(pkgDirs)
+	if err != nil {
+		return nil, false, err
+	}
+
+	// For each import path it might occur only in
+	// dirByPath, only in old, or in both.
+	// If both, use the semantically later one.
+	var entries []Entry
+	if old != nil {
+		for _, entry := range old.Entries {
+			dir, ok := dirByPath[entry.ImportPath]
+			if !ok || semver.Compare(dir.version, entry.Version) <= 0 {
+				// New dir is missing or not more recent; use old entry.
+				entries = append(entries, entry)
+				delete(dirByPath, entry.ImportPath)
+			}
+		}
+	}
+
+	// Extract symbol information for all the new directories.
+	newEntries := extractSymbols(gomodcache, maps.Values(dirByPath))
+	entries = append(entries, newEntries...)
+	slices.SortFunc(entries, func(x, y Entry) int {
+		if n := strings.Compare(x.PkgName, y.PkgName); n != 0 {
+			return n
+		}
+		return strings.Compare(x.ImportPath, y.ImportPath)
+	})
+
+	return &Index{
+		GOMODCACHE: gomodcache,
+		ValidAt:    now, // time before the directories were scanned
+		Entries:    entries,
+	}, len(newEntries) > 0, nil
+}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/modindex/symbols.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/modindex/symbols.go
--- a/vendor/golang.org/x/tools/internal/modindex/symbols.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/golang.org/x/tools/internal/modindex/symbols.go	2026-09-02 10:25:23.821027671 +0000
@@ -0,0 +1,244 @@
+// Copyright 2024 The Go Authors. All rights reserved.
+// Use of this source code is governed by a BSD-style
+// license that can be found in the LICENSE file.
+
+package modindex
+
+import (
+	"fmt"
+	"go/ast"
+	"go/parser"
+	"go/token"
+	"go/types"
+	"iter"
+	"os"
+	"path/filepath"
+	"runtime"
+	"slices"
+	"strings"
+	"sync"
+
+	"golang.org/x/sync/errgroup"
+)
+
+// The name of a symbol contains information about the symbol:
+// <name> T for types, TD if the type is deprecated
+// <name> C for consts, CD if the const is deprecated
+// <name> V for vars, VD if the var is deprecated
+// and for funcs: <name> F <num of return values> (<arg-name> <arg-type>)*
+// any spaces in <arg-type> are replaced by $s so that the fields
+// of the name are space separated. F is replaced by FD if the func
+// is deprecated.
+type symbol struct {
+	pkg  string // name of the symbols's package
+	name string // declared name
+	kind string // T, C, V, or F, followed by D if deprecated
+	sig  string // signature information, for F
+}
+
+// extractSymbols returns a (new, unordered) array of Entries, one for
+// each provided package directory, describing its exported symbols.
+func extractSymbols(cwd string, dirs iter.Seq[directory]) []Entry {
+	var (
+		mu      sync.Mutex
+		entries []Entry
+	)
+
+	var g errgroup.Group
+	g.SetLimit(max(2, runtime.GOMAXPROCS(0)/2))
+	for dir := range dirs {
+		g.Go(func() error {
+			thedir := filepath.Join(cwd, string(dir.path))
+			mode := parser.SkipObjectResolution | parser.ParseComments
+
+			// Parse all Go files in dir and extract symbols.
+			dirents, err := os.ReadDir(thedir)
+			if err != nil {
+				return nil // log this someday?
+			}
+			var syms []symbol
+			for _, dirent := range dirents {
+				if !strings.HasSuffix(dirent.Name(), ".go") ||
+					strings.HasSuffix(dirent.Name(), "_test.go") {
+					continue
+				}
+				fname := filepath.Join(thedir, dirent.Name())
+				tr, err := parser.ParseFile(token.NewFileSet(), fname, nil, mode)
+				if err != nil {
+					continue // ignore errors, someday log them?
+				}
+				syms = append(syms, getFileExports(tr)...)
+			}
+
+			// Create an entry for the package.
+			pkg, names := processSyms(syms)
+			if pkg != "" {
+				mu.Lock()
+				defer mu.Unlock()
+				entries = append(entries, Entry{
+					PkgName:    pkg,
+					Dir:        dir.path,
+					ImportPath: dir.importPath,
+					Version:    dir.version,
+					Names:      names,
+				})
+			}
+
+			return nil
+		})
+	}
+	g.Wait() // ignore error
+
+	return entries
+}
+
+func getFileExports(f *ast.File) []symbol {
+	pkg := f.Name.Name
+	if pkg == "main" || pkg == "" {
+		return nil
+	}
+	var ans []symbol
+	// should we look for //go:build ignore?
+	for _, decl := range f.Decls {
+		switch decl := decl.(type) {
+		case *ast.FuncDecl:
+			if decl.Recv != nil {
+				// ignore methods, as we are completing package selections
+				continue
+			}
+			name := decl.Name.Name
+			dtype := decl.Type
+			// not looking at dtype.TypeParams. That is, treating
+			// generic functions just like non-generic ones.
+			sig := dtype.Params
+			kind := "F"
+			if isDeprecated(decl.Doc) {
+				kind += "D"
+			}
+			result := []string{fmt.Sprintf("%d", dtype.Results.NumFields())}
+			for _, x := range sig.List {
+				// This code creates a string representing the type.
+				// TODO(pjw): it may be fragile:
+				// 1. x.Type could be nil, perhaps in ill-formed code
+				// 2. ExprString might someday change incompatibly to
+				//    include struct tags, which can be arbitrary strings
+				if x.Type == nil {
+					// Can this happen without a parse error? (Files with parse
+					// errors are ignored in getSymbols)
+					continue // maybe report this someday
+				}
+				tp := types.ExprString(x.Type)
+				if len(tp) == 0 {
+					// Can this happen?
+					continue // maybe report this someday
+				}
+				// This is only safe if ExprString never returns anything with a $
+				// The only place a $ can occur seems to be in a struct tag, which
+				// can be an arbitrary string literal, and ExprString does not presently
+				// print struct tags. So for this to happen the type of a formal parameter
+				// has to be a explicit struct, e.g. foo(x struct{a int "$"}) and ExprString
+				// would have to show the struct tag. Even testing for this case seems
+				// a waste of effort, but let's remember the possibility
+				if strings.Contains(tp, "$") {
+					continue
+				}
+				tp = strings.Replace(tp, " ", "$", -1)
+				if len(x.Names) == 0 {
+					result = append(result, "_")
+					result = append(result, tp)
+				} else {
+					for _, y := range x.Names {
+						result = append(result, y.Name)
+						result = append(result, tp)
+					}
+				}
+			}
+			sigs := strings.Join(result, " ")
+			if s := newsym(pkg, name, kind, sigs); s != nil {
+				ans = append(ans, *s)
+			}
+		case *ast.GenDecl:
+			depr := isDeprecated(decl.Doc)
+			switch decl.Tok {
+			case token.CONST, token.VAR:
+				tp := "V"
+				if decl.Tok == token.CONST {
+					tp = "C"
+				}
+				if depr {
+					tp += "D"
+				}
+				for _, sp := range decl.Specs {
+					for _, x := range sp.(*ast.ValueSpec).Names {
+						if s := newsym(pkg, x.Name, tp, ""); s != nil {
+							ans = append(ans, *s)
+						}
+					}
+				}
+			case token.TYPE:
+				tp := "T"
+				if depr {
+					tp += "D"
+				}
+				for _, sp := range decl.Specs {
+					if s := newsym(pkg, sp.(*ast.TypeSpec).Name.Name, tp, ""); s != nil {
+						ans = append(ans, *s)
+					}
+				}
+			}
+		}
+	}
+	return ans
+}
+
+func newsym(pkg, name, kind, sig string) *symbol {
+	if len(name) == 0 || !ast.IsExported(name) {
+		return nil
+	}
+	sym := symbol{pkg: pkg, name: name, kind: kind, sig: sig}
+	return &sym
+}
+
+func isDeprecated(doc *ast.CommentGroup) bool {
+	if doc == nil {
+		return false
+	}
+	// go.dev/wiki/Deprecated Paragraph starting 'Deprecated:'
+	// This code fails for /* Deprecated: */, but it's the code from
+	// gopls/internal/analysis/deprecated
+	for line := range strings.SplitSeq(doc.Text(), "\n\n") {
+		if strings.HasPrefix(line, "Deprecated:") {
+			return true
+		}
+	}
+	return false
+}
+
+// return the package name and the value for the symbols.
+// if there are multiple packages, choose one arbitrarily
+// the returned slice is sorted lexicographically
+func processSyms(syms []symbol) (string, []string) {
+	if len(syms) == 0 {
+		return "", nil
+	}
+	slices.SortFunc(syms, func(l, r symbol) int {
+		return strings.Compare(l.name, r.name)
+	})
+	pkg := syms[0].pkg
+	var names []string
+	for _, s := range syms {
+		if s.pkg != pkg {
+			// Symbols came from two files in same dir
+			// with different package declarations.
+			continue
+		}
+		var nx string
+		if s.sig != "" {
+			nx = fmt.Sprintf("%s %s %s", s.name, s.kind, s.sig)
+		} else {
+			nx = fmt.Sprintf("%s %s", s.name, s.kind)
+		}
+		names = append(names, nx)
+	}
+	return pkg, names
+}
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/stdlib/deps.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/stdlib/deps.go
--- a/vendor/golang.org/x/tools/internal/stdlib/deps.go	2026-09-02 10:24:55.020997618 +0000
+++ b/vendor/golang.org/x/tools/internal/stdlib/deps.go	2026-09-02 10:25:23.825027676 +0000
@@ -12,386 +12,387 @@
 }
 
 var deps = [...]pkginfo{
-	{"archive/tar", "\x03{\x03F>\x01\n\x01&\x01\x01\x02\x05\b\x02\x01\x02\x02\r"},
-	{"archive/zip", "\x02\x04j\x0e\x03\x12\x022>\x01-\x05\x01\x0f\x03\x02\x0f\x04"},
-	{"bufio", "\x03{\x87\x01F\x15"},
-	{"bytes", "~*]\x03\fJ\x02\x02"},
+	{"archive/tar", "\x03|\x03F>\x01\n\x01&\x01\x01\x02\x05\b\x02\x01\x02\x02\r"},
+	{"archive/zip", "\x02\x04k\x0e\x03\x12\x022>\x01-\x05\x01\x0f\x03\x02\x0f\x04"},
+	{"bufio", "\x03|\x87\x01F\x15"},
+	{"bytes", "\x7f*]\x03\fJ\x02\x02"},
 	{"cmp", ""},
-	{"compress/bzip2", "\x02\x02\x81\x02C"},
-	{"compress/flate", "\x02|\x03\x84\x01\f\x034\x02\x03"},
-	{"compress/gzip", "\x02\x04j\x0e\x03\x14pW"},
-	{"compress/lzw", "\x02|\x03\x84\x01"},
-	{"compress/zlib", "\x02\x04j\x0e\x03\x12\x01q"},
-	{"container/heap", "\xc9\x02"},
+	{"compress/bzip2", "\x02\x02\x82\x02C"},
+	{"compress/flate", "\x02}\x03\x84\x01\f\x034\x02\x03"},
+	{"compress/gzip", "\x02\x04k\x0e\x03\x14pW"},
+	{"compress/lzw", "\x02}\x03\x84\x01"},
+	{"compress/zlib", "\x02\x04k\x0e\x03\x12\x01q"},
+	{"container/heap", "\xca\x02"},
 	{"container/list", ""},
 	{"container/ring", ""},
-	{"context", "~]r\x01\x0e"},
-	{"crypto", "\x93\x01rE"},
-	{"crypto/aes", "\x10\v\n\xa5\x02"},
-	{"crypto/cipher", "\x03\"\x01\x01 \x13$+\\"},
-	{"crypto/des", "\x10\x17 7+\xa1\x01\x03"},
-	{"crypto/dsa", "G\x034\x87\x01\r"},
-	{"crypto/ecdh", "\x03\v\r\x11\x04\x17\x03\x10$\x87\x01"},
-	{"crypto/ecdsa", "\x0e\x05\x03\x05\x01\x11\b\v\x06\x01\x03\x0f\x01$\x87\x01\r\x05O\x01"},
-	{"crypto/ed25519", "\x0e \x12\a\x03\t\a$I>E"},
-	{"crypto/elliptic", "5I\x87\x01\r;"},
-	{"crypto/fips140", "$\x05\x9e\x01\x9b\x01"},
-	{"crypto/hkdf", "1\x15\x017\x15"},
-	{"crypto/hmac", "\x1b\x17\x14\x01\x139"},
-	{"crypto/hpke", "\x03\v\x02\x03\x04\x01\r\x01\x05\x1f\x06\a\x01\x01%\x03\x12\x16\x9f\x01\x1d"},
-	{"crypto/internal/boring", "\x0e\x02\x0eu"},
-	{"crypto/internal/boring/bbig", "\x1b\xf7\x01P"},
-	{"crypto/internal/boring/bcache", "\xce\x02\x14"},
+	{"context", "\x7f]r\x01\x0e"},
+	{"crypto", "\x94\x01rE"},
+	{"crypto/aes", "\x10\v\v\xa5\x02"},
+	{"crypto/cipher", "\x03#\x01\x01 \x13$+\\"},
+	{"crypto/des", "\x10\x18 7+\xa1\x01\x03"},
+	{"crypto/dsa", "H\x034\x87\x01\r"},
+	{"crypto/ecdh", "\x03\v\r\x12\x04\x17\x03\x10$\x87\x01"},
+	{"crypto/ecdsa", "\x0e\x05\x03\x05\x01\x12\b\v\x06\x01\x03\x0f\x01$\x87\x01\r\x05O\x01"},
+	{"crypto/ed25519", "\x0e!\x12\a\x03\t\a$I>E"},
+	{"crypto/elliptic", "6I\x87\x01\r;"},
+	{"crypto/fips140", "%\x05\x9e\x01\x9b\x01"},
+	{"crypto/hkdf", "2\x15\x017\x15"},
+	{"crypto/hmac", "\x1b\x18\x14\x01\x139"},
+	{"crypto/hpke", "\x03\v\x02\x03\x04\x01\x0e\x01\x05\x1f\x06\a\x01\x01%\x03\x12\x16\x9f\x01\x1d"},
+	{"crypto/internal/boring", "\x0e\x02\x0ev"},
+	{"crypto/internal/boring/bbig", "\x1b\xf8\x01P"},
+	{"crypto/internal/boring/bcache", "\xcf\x02\x14"},
 	{"crypto/internal/boring/sig", ""},
 	{"crypto/internal/constanttime", ""},
-	{"crypto/internal/cryptotest", "\x03\r\v\t%\x11\x1a\r\x12\x12!\x04\x06\n\x19\x01\x11\x11\x1d\x01\a\x03\x02\b\x02\x01\x05\f"},
-	{"crypto/internal/cryptotest/wycheproof", "\x0e\x12S\x01\f\x01r@\x05\x03\x15\x10"},
-	{"crypto/internal/entropy", "L"},
-	{"crypto/internal/entropy/v1.0.0", "E9\x96\x01:\x14"},
-	{"crypto/internal/fips140", "D:\xc2\x01\v\x17"},
-	{"crypto/internal/fips140/aes", "\x03!\x03\x02\x14\x05\x01\x01\x055\x96\x016"},
-	{"crypto/internal/fips140/aes/gcm", "$\x01\x02\x02\x02\x12\x05\x01\x065\x93\x01"},
-	{"crypto/internal/fips140/alias", "\xe2\x02"},
-	{"crypto/internal/fips140/bigmod", ")\x19\x01\x065\x96\x01"},
-	{"crypto/internal/fips140/check", "$\x0e\a\t\x02\xc1\x01]"},
-	{"crypto/internal/fips140/check/checktest", ")\x97\x02\""},
-	{"crypto/internal/fips140/drbg", "\x03 \x01\x01\x04\x14\x05\n2\x87\x01\x0f9\x01"},
-	{"crypto/internal/fips140/ecdh", "\x03!\x05\x02\n\r<\x87\x01\x0f9"},
-	{"crypto/internal/fips140/ecdsa", "\x03!\x04\x01\x02\a\x03\x06C\x15r\x0f9"},
-	{"crypto/internal/fips140/ed25519", "\x03!\x05\x02\x04\fC\xcc\x01\x03"},
-	{"crypto/internal/fips140/edwards25519", "\x1f\n\a\x12<\x96\x019"},
-	{"crypto/internal/fips140/edwards25519/field", ")\x14\x05<\x96\x01"},
-	{"crypto/internal/fips140/hkdf", "\x03!\x05\t\aE\x15"},
-	{"crypto/internal/fips140/hmac", "\x03!\x15\x01\x01C\x15"},
-	{"crypto/internal/fips140/mldsa", "\x03\x1c\x05\x05\x02\x0e\x01\x03\x05<\x96\x019"},
-	{"crypto/internal/fips140/mlkem", "\x03!\x05\x02\x0f\x03\x05<\xcf\x01"},
-	{"crypto/internal/fips140/nistec", "\x1f\n\r\f<\x96\x01,\r\x15"},
-	{"crypto/internal/fips140/nistec/fiat", ")\x14A\x96\x01"},
-	{"crypto/internal/fips140/pbkdf2", "\x03!\x05\t\aE\x15"},
-	{"crypto/internal/fips140/rsa", "\x03\x1c\x05\x04\x01\x02\x0e\x01\x01\x02A\x15rH"},
-	{"crypto/internal/fips140/sha256", "\x03!\x1e\x01\x065\x15\x81\x01"},
-	{"crypto/internal/fips140/sha3", "\x03!\x19\x05\x01;\x96\x01N"},
-	{"crypto/internal/fips140/sha512", "\x03!\x1e\x01\x065\x15\x81\x01"},
-	{"crypto/internal/fips140/ssh", ")j"},
-	{"crypto/internal/fips140/subtle", "\x1f\b\x1b\xd2\x01"},
-	{"crypto/internal/fips140/tls12", "\x03!\x05\t\a\x02C\x15"},
-	{"crypto/internal/fips140/tls13", "\x03!\x05\b\b\t<\x15"},
-	{"crypto/internal/fips140cache", "\xc0\x02\r."},
+	{"crypto/internal/cryptotest", "\x03\r\v\n%\x11\x1a\r\x12\x12!\x04\x06\n\x19\x01\x11\x11\x1d\x01\a\x03\x02\b\x02\x01\x05\f"},
+	{"crypto/internal/cryptotest/wycheproof", "\x0e\x12T\x01\f\x01r@\x05\x03\x15\x10"},
+	{"crypto/internal/cryptotest/x509limbo", "u\n\x03\xba\x01\x03\x1e"},
+	{"crypto/internal/entropy", "M"},
+	{"crypto/internal/entropy/v1.0.0", "F9\x96\x01:\x14"},
+	{"crypto/internal/fips140", "E:\xc2\x01\v\x17"},
+	{"crypto/internal/fips140/aes", "\x03\"\x03\x02\x14\x05\x01\x01\x055\x96\x016"},
+	{"crypto/internal/fips140/aes/gcm", "%\x01\x02\x02\x02\x12\x05\x01\x065\x93\x01"},
+	{"crypto/internal/fips140/alias", "\xe3\x02"},
+	{"crypto/internal/fips140/bigmod", "*\x19\x01\x065\x96\x01"},
+	{"crypto/internal/fips140/check", "%\x0e\a\t\x02\xc1\x01]"},
+	{"crypto/internal/fips140/check/checktest", "*\x97\x02\""},
+	{"crypto/internal/fips140/drbg", "\x03!\x01\x01\x04\x14\x05\n2\x87\x01\x0f9\x01"},
+	{"crypto/internal/fips140/ecdh", "\x03\"\x05\x02\n\r<\x87\x01\x0f9"},
+	{"crypto/internal/fips140/ecdsa", "\x03\"\x04\x01\x02\a\x03\x06C\x15r\x0f9"},
+	{"crypto/internal/fips140/ed25519", "\x03\"\x05\x02\x04\fC\xcc\x01\x03"},
+	{"crypto/internal/fips140/edwards25519", "\x1f\v\a\x12<\x96\x019"},
+	{"crypto/internal/fips140/edwards25519/field", "*\x14\x05<\x96\x01"},
+	{"crypto/internal/fips140/hkdf", "\x03\"\x05\t\aE\x15"},
+	{"crypto/internal/fips140/hmac", "\x03\"\x15\x01\x01C\x15"},
+	{"crypto/internal/fips140/mldsa", "\x03\x1c\x06\x05\x02\x0e\x01\x03\x05<\x96\x019"},
+	{"crypto/internal/fips140/mlkem", "\x03\"\x05\x02\x0f\x03\x05<\xcf\x01"},
+	{"crypto/internal/fips140/nistec", "\x1f\v\r\f<\x96\x01,\r\x15"},
+	{"crypto/internal/fips140/nistec/fiat", "*\x14A\x96\x01"},
+	{"crypto/internal/fips140/pbkdf2", "\x03\"\x05\t\aE\x15"},
+	{"crypto/internal/fips140/rsa", "\x03\x1c\x06\x04\x01\x02\x0e\x01\x01\x02A\x15rH"},
+	{"crypto/internal/fips140/sha256", "\x03\"\x1e\x01\x065\x15\x81\x01"},
+	{"crypto/internal/fips140/sha3", "\x03\"\x19\x05\x01;\x96\x01N"},
+	{"crypto/internal/fips140/sha512", "\x03\"\x1e\x01\x065\x15\x81\x01"},
+	{"crypto/internal/fips140/ssh", "*j"},
+	{"crypto/internal/fips140/subtle", "\x1f\t\x1b\xd2\x01"},
+	{"crypto/internal/fips140/tls12", "\x03\"\x05\t\a\x02C\x15"},
+	{"crypto/internal/fips140/tls13", "\x03\"\x05\b\b\t<\x15"},
+	{"crypto/internal/fips140cache", "\xc1\x02\r."},
 	{"crypto/internal/fips140deps", ""},
-	{"crypto/internal/fips140deps/byteorder", "\xa9\x01"},
-	{"crypto/internal/fips140deps/cpu", "\xbe\x01\b"},
-	{"crypto/internal/fips140deps/godebug", "\xc7\x01"},
-	{"crypto/internal/fips140deps/time", "\xe2\x02"},
-	{"crypto/internal/fips140hash", ":\x1e;\xcf\x01"},
-	{"crypto/internal/fips140only", "\x17\x14\x0e\x01\x01Xr"},
+	{"crypto/internal/fips140deps/byteorder", "\xaa\x01"},
+	{"crypto/internal/fips140deps/cpu", "\xbf\x01\b"},
+	{"crypto/internal/fips140deps/godebug", "\xc8\x01"},
+	{"crypto/internal/fips140deps/time", "\xe3\x02"},
+	{"crypto/internal/fips140hash", ";\x1e;\xcf\x01"},
+	{"crypto/internal/fips140only", "\x17\x15\x0e\x01\x01Xr"},
 	{"crypto/internal/fips140test", ""},
-	{"crypto/internal/impl", "\xcb\x02"},
-	{"crypto/internal/rand", "\x1b\x10 |>]"},
-	{"crypto/internal/randutil", "\x85\x02\x12"},
-	{"crypto/internal/sysrand", "~r!\"\r\r\x01\x01\r\x06"},
-	{"crypto/internal/sysrand/internal/seccomp", "~"},
-	{"crypto/md5", "\x0e97\x15\x16k"},
-	{"crypto/mldsa", "\x0e%K\x87\x01"},
-	{"crypto/mlkem", "\x0e&"},
-	{"crypto/mlkem/mlkemtest", "4\x13\t."},
-	{"crypto/pbkdf2", "7\x0f\x017\x15"},
-	{"crypto/rand", "\x1b\x10\x1c\x034\x87\x01\rP"},
-	{"crypto/rc4", "' 7\xcc\x01"},
-	{"crypto/rsa", "\x0e\r\x01\f\x10\x0e\x01\x03\t\a$\x03\x124>\f\x01"},
-	{"crypto/sha1", "\x0e\r,\x025\x15\x16\x15V"},
-	{"crypto/sha256", "\x0e\r\x1eZ"},
-	{"crypto/sha3", "\x0e,Y\xcf\x01"},
-	{"crypto/sha512", "\x0e\r X"},
-	{"crypto/subtle", "\x1f\x1e\xa9\x01|"},
-	{"crypto/tls", "\x03\b\x02\x01\x01\x01\x01\x02\x01\x01\x01\x01\x01\x01\x01\x01\n\x01\x18\x01\x0f\x01\x01\x03\x01\x01\x01\x01\x02\x01\x02\x01\x1f\x02\x03\x12\x16\x15\t>\x16\x18\r\b\x01\x01\x01\x02\x01\x0e\x06\x03\x01\x15"},
-	{"crypto/tls/internal/fips140tls", "\x17\xb7\x02"},
-	{"crypto/x509", "\x03\v\x01\x01\x01\x01\x01\x01\x01\x01\x017\x01\x06\x01\x01\x02\x05\x0f\x06\t\x02\x03F\x03;\x01\x02\b\x01\x01\x02\a\x12\x05\x01\x06\a\b\x02\x01\x02\x0f\x02\x01\x01\x02\x04\x01"},
-	{"crypto/x509/pkix", "m\x06\x0e\x91\x019\x11"},
-	{"database/sql", "\x03\nS\x01\x1d\x03\x84\x01\v\a$\x05\b\x02\x03\x01\x0e\x02\x02\x02\x01"},
-	{"database/sql/driver", "\rT\x1d\x03\xba\x01\x0f\x12\a"},
+	{"crypto/internal/impl", "\xcc\x02"},
+	{"crypto/internal/rand", "\x1b\x11 |>]"},
+	{"crypto/internal/randutil", "\x86\x02\x12"},
+	{"crypto/internal/sysrand", "\x7fr!\"\r\r\x01\x01\r\x06"},
+	{"crypto/internal/sysrand/internal/seccomp", "\x7f"},
+	{"crypto/md5", "\x0e:7\x15\x16k"},
+	{"crypto/mldsa", "\x0e&K\x87\x01"},
+	{"crypto/mlkem", "\x0e'"},
+	{"crypto/mlkem/mlkemtest", "5\x13\t."},
+	{"crypto/pbkdf2", "8\x0f\x017\x15"},
+	{"crypto/rand", "\x1b\x11\x1c\x034\x87\x01\rP"},
+	{"crypto/rc4", "( 7\xcc\x01"},
+	{"crypto/rsa", "\x0e\r\x01\r\x10\x0e\x01\x03\t\a$\x03\x124>\f\x01"},
+	{"crypto/sha1", "\x0e\r-\x025\x15\x16\x15V"},
+	{"crypto/sha256", "\x0e\r\x1fZ"},
+	{"crypto/sha3", "\x0e-Y\xcf\x01"},
+	{"crypto/sha512", "\x0e\r!X"},
+	{"crypto/subtle", "\x1f\x1f\xa9\x01|"},
+	{"crypto/tls", "\x03\b\x02\x01\x01\x01\x01\x02\x01\x01\x01\x01\x01\x01\x01\x01\v\x01\x18\x01\x0f\x01\x01\x03\x01\x01\x01\x01\x02\x01\x02\x01\x1f\x02\x03\x12\x16\x15\t>\x16\x18\r\b\x01\x01\x01\x02\x01\x0e\x06\x03\x01\x15"},
+	{"crypto/tls/internal/fips140tls", "\x17\xb8\x02"},
+	{"crypto/x509", "\x03\v\x01\x01\x01\x01\x01\x01\x01\x01\x018\x01\x06\x01\x01\x02\x05\x0f\x06\t\x02\x03F\x03;\x01\x02\b\x01\x01\x02\a\x12\x05\x01\x06\a\b\x02\x01\x02\x0f\x02\x01\x01\x02\x04\x01"},
+	{"crypto/x509/pkix", "n\x06\x0e\x91\x019\x11"},
+	{"database/sql", "\x03\nT\x01\x1d\x03\x84\x01\v\a$\x05\b\x02\x03\x01\x0e\x02\x02\x02\x01"},
+	{"database/sql/driver", "\rU\x1d\x03\xba\x01\x0f\x12\a"},
 	{"database/sql/internal", ""},
-	{"debug/buildinfo", "\x03a\x02\x01\x01\b\x0e\x03h\x1a\x02\x01-\x0f "},
-	{"debug/dwarf", "\x03m\x0e\x03\x84\x013\x11\x01\x01"},
-	{"debug/elf", "\x03\x06Z\r\x0e\x03h\x1b\x01\f\"\x17\x01\x17"},
-	{"debug/gosym", "\x03m\x11#\xa5\x01\x01\x01\x02"},
-	{"debug/macho", "\x03\x06Z\r\x11h\x1c.\x17\x01"},
-	{"debug/pe", "\x03\x06Z\r\x0e\x03h\x1c.\x17\x01\x17"},
-	{"debug/plan9obj", "p\x0e\x03h\x1c."},
-	{"embed", "~*D\x19\x01V"},
+	{"debug/buildinfo", "\x03b\x02\x01\x01\b\x0e\x03h\x1a\x02\x01-\x0f "},
+	{"debug/dwarf", "\x03n\x0e\x03\x84\x013\x11\x01\x01"},
+	{"debug/elf", "\x03\x06[\r\x0e\x03h\x1b\x01\f\"\x17\x01\x17"},
+	{"debug/gosym", "\x03n\x11#\xa5\x01\x01\x01\x02"},
+	{"debug/macho", "\x03\x06[\r\x11h\x1c.\x17\x01"},
+	{"debug/pe", "\x03\x06[\r\x0e\x03h\x1c.\x17\x01\x17"},
+	{"debug/plan9obj", "q\x0e\x03h\x1c."},
+	{"embed", "\x7f*D\x19\x01V"},
 	{"embed/internal/embedtest", ""},
 	{"encoding", ""},
-	{"encoding/ascii85", "\x85\x02E"},
-	{"encoding/asn1", "\x03{\x03h(\x01)\r\x02\x01\x11\x03\x01"},
-	{"encoding/base32", "\x85\x02C\x02"},
-	{"encoding/base64", "\xa9\x01\\C\x02"},
-	{"encoding/binary", "~\x87\x01\f*\r\x05"},
-	{"encoding/csv", "\x02\x01{\x03\x84\x01F\x13\x02"},
-	{"encoding/gob", "\x02i\x05\x0e\x03h\x1c\v\x01\x03\x1f\b\x12\x01\x10\x02"},
-	{"encoding/hex", "~\x03\x84\x01C\x03"},
-	{"encoding/json", "\x03\x01g\n\x01\x01\x02\x01\x01\x03\x03\x84\x016\x0f\x01"},
-	{"encoding/json/internal", "~"},
-	{"encoding/json/internal/jsonflags", "u"},
-	{"encoding/json/internal/jsonopts", "u\x01"},
-	{"encoding/json/internal/jsontest", "\x03f\x15\x03\x83\x01\x01\x012\b\b\x03\x02\x0f"},
-	{"encoding/json/internal/jsonwire", "\x04r\b\x87\x01\f7\x02\x01\x13\x01\x01"},
-	{"encoding/json/jsontext", "\x03r\x01\x01\x02\x05\x87\x01\x03\t\x034\x02\x01\x02\x13"},
-	{"encoding/json/v2", "\x03\x01g\x03\x01\x01\x03\x02\x01\x01\x02\x01\x04\x03\x84\x01\f\x03'\r\x02\x01\x02\x0f\x02\x02"},
-	{"encoding/pem", "\x03l\x0f\x87\x01C\x03"},
-	{"encoding/xml", "\x02\x01h\x13\x03\x84\x016\x05\n\x01\x02\x11\x02"},
-	{"errors", "\xdb\x01\x87\x01"},
-	{"expvar", "tSB\b\v\x17\r\b\x02\x03\x01\x12"},
-	{"flag", "k\x13\x03\x84\x01.\b\x05\b\x02\x01\x11"},
-	{"fmt", "~E)\x19\f\"\b\r\x02\x03\x13"},
-	{"go/ast", "\x03\x01}\x0e\x01u\x03+\b\r\x02\x01\x13\x02"},
-	{"go/build", "\x02\x01{\x03\x01\x02\x02\a\x02\x01\x17 \x04\x02\t\x1c\x13\x01-\x01\x04\x01\a\b\x02\x01\x13\x02\x02"},
-	{"go/build/constraint", "~\xcc\x01\x01\x13\x02"},
-	{"go/constant", "\x81\x01\x0f\x81\x01\x01\x026\x01\x02\x13"},
-	{"go/doc", "\x04}\x01\x05\t>73\x10\x02\x01\x13\x02"},
-	{"go/doc/comment", "\x03~\xc7\x01\x01\x01\x01\x13\x02"},
-	{"go/format", "\x03~\x01\v\x01\x02uF"},
-	{"go/importer", "\x83\x01\a\x01\x01\x04\x01t;"},
-	{"go/internal/gccgoimporter", "\x02\x01a\x1a\x03\x04\v\x01r\x02.\x01\x05\x11\x01\r\b"},
-	{"go/internal/gcimporter", "\x02\x7f\x0f\x010\x140.\x15\x03\x02"},
-	{"go/internal/srcimporter", "\x81\x01\x01\x01\n\x03\x01t.\x01\x05\x12\x02\x15"},
-	{"go/parser", "\x03{\x03\x01\x02\v\x01u\x01-\x06\x12"},
-	{"go/printer", "\x81\x01\x01\x02\x03\tu\f\"\x15\x02\x01\x02\f\x05\x02"},
-	{"go/scanner", "\x03~\x0fu4\x10\x01\x14\x02"},
-	{"go/token", "\x04}\x87\x01@\x02\x03\x01\x10\x02"},
-	{"go/types", "\x03\x01\x06t\x03\x01\x03\b\x03\x02\x0654\x04\x03\t\"\x06\a\b\x01\x01\x01\x02\x01\x10\x02\x02"},
-	{"go/version", "\xcc\x01\x7f"},
-	{"hash", "\x85\x02"},
-	{"hash/adler32", "~\x15\x16"},
-	{"hash/crc32", "~\x15\x16\x15\x8f\x01\x01\x14"},
-	{"hash/crc64", "~\x15\x16\xa4\x01"},
-	{"hash/fnv", "~\x15\x16k"},
-	{"hash/maphash", "\x93\x01\x11>\x80\x01"},
-	{"html", "\xcb\x02\x02\x13"},
-	{"html/template", "\x03q\r\x18.>\x01\n#\x05\x01\x02\x03\n\x02\x01\x02\r\x01\x03\x02"},
-	{"image", "\x02|\x1ei\x0f6\x03\x01"},
+	{"encoding/ascii85", "\x86\x02E"},
+	{"encoding/asn1", "\x03|\x03h(\x01)\r\x02\x01\x11\x03\x01"},
+	{"encoding/base32", "\x86\x02C\x02"},
+	{"encoding/base64", "\xaa\x01\\C\x02"},
+	{"encoding/binary", "\x7f\x87\x01\f*\r\x05"},
+	{"encoding/csv", "\x02\x01|\x03\x84\x01F\x13\x02"},
+	{"encoding/gob", "\x02j\x05\x0e\x03h\x1c\v\x01\x03\x1f\b\x12\x01\x10\x02"},
+	{"encoding/hex", "\x7f\x03\x84\x01C\x03"},
+	{"encoding/json", "\x03\x01h\n\x01\x01\x02\x01\x01\x03\x03\x84\x016\x0f\x01"},
+	{"encoding/json/internal", "\x7f"},
+	{"encoding/json/internal/jsonflags", "v"},
+	{"encoding/json/internal/jsonopts", "v\x01"},
+	{"encoding/json/internal/jsontest", "\x03g\x15\x03\x83\x01\x01\x012\b\b\x03\x02\x0f"},
+	{"encoding/json/internal/jsonwire", "\x04s\b\x87\x01\f7\x02\x01\x13\x01\x01"},
+	{"encoding/json/jsontext", "\x03s\x01\x01\x02\x05\x87\x01\x03\t\x034\x02\x01\x02\x13"},
+	{"encoding/json/v2", "\x03\x01h\x03\x01\x01\x03\x02\x01\x01\x02\x01\x04\x03\x84\x01\f\x03'\r\x02\x01\x02\x0f\x02\x02"},
+	{"encoding/pem", "\x03m\x0f\x87\x01C\x03"},
+	{"encoding/xml", "\x02\x01i\x13\x03\x84\x016\x05\n\x01\x02\x11\x02"},
+	{"errors", "\xdc\x01\x87\x01"},
+	{"expvar", "uSB\b\v\x17\r\b\x02\x03\x01\x12"},
+	{"flag", "l\x13\x03\x84\x01.\b\x05\b\x02\x01\x11"},
+	{"fmt", "\x7fE)\x19\f\"\b\r\x02\x03\x13"},
+	{"go/ast", "\x03\x01~\x0e\x01u\x03+\b\r\x02\x01\x13\x02"},
+	{"go/build", "\x02\x01|\x03\x01\x02\x02\a\x02\x01\x17 \x04\x02\t\x1c\x13\x01-\x01\x04\x01\a\b\x02\x01\x13\x02\x02"},
+	{"go/build/constraint", "\x7f\xcc\x01\x01\x13\x02"},
+	{"go/constant", "\x82\x01\x0f\x81\x01\x01\x026\x01\x02\x13"},
+	{"go/doc", "\x04~\x01\x05\t>73\x10\x02\x01\x13\x02"},
+	{"go/doc/comment", "\x03\x7f\xc7\x01\x01\x01\x01\x13\x02"},
+	{"go/format", "\x03\x7f\x01\v\x01\x02uF"},
+	{"go/importer", "\x84\x01\a\x01\x01\x04\x01t;"},
+	{"go/internal/gccgoimporter", "\x02\x01b\x1a\x03\x04\v\x01r\x02.\x01\x05\x11\x01\r\b"},
+	{"go/internal/gcimporter", "\x02\x80\x01\x0f\x010\x140.\x15\x03\x02"},
+	{"go/internal/srcimporter", "\x82\x01\x01\x01\n\x03\x01t.\x01\x05\x12\x02\x15"},
+	{"go/parser", "\x03|\x03\x01\x02\v\x01u\x01-\x06\x12"},
+	{"go/printer", "\x82\x01\x01\x02\x03\tu\f\"\x15\x02\x01\x02\f\x05\x02"},
+	{"go/scanner", "\x03\x7f\x0fu4\x10\x01\x14\x02"},
+	{"go/token", "\x04~\x87\x01@\x02\x03\x01\x10\x02"},
+	{"go/types", "\x03\x01\x06u\x03\x01\x03\b\x03\x02\x0654\x04\x03\t\"\x06\a\b\x01\x01\x01\x02\x01\x10\x02\x02"},
+	{"go/version", "\xcd\x01\x7f"},
+	{"hash", "\x86\x02"},
+	{"hash/adler32", "\x7f\x15\x16"},
+	{"hash/crc32", "\x7f\x15\x16\x15\x8f\x01\x01\x14"},
+	{"hash/crc64", "\x7f\x15\x16\xa4\x01"},
+	{"hash/fnv", "\x7f\x15\x16k"},
+	{"hash/maphash", "\x94\x01\x11>\x80\x01"},
+	{"html", "\xcc\x02\x02\x13"},
+	{"html/template", "\x03r\r\x18.>\x01\n#\x05\x01\x02\x03\n\x02\x01\x02\r\x01\x03\x02"},
+	{"image", "\x02}\x1ei\x0f6\x03\x01"},
 	{"image/color", ""},
-	{"image/color/palette", "\x9c\x01"},
-	{"image/draw", "\x9b\x01\x01\x04"},
-	{"image/gif", "\x02\x01\x05v\x03\x1a\x01\x01\x01\v\\\x0f"},
-	{"image/internal/imageutil", "\x9b\x01"},
-	{"image/jpeg", "\x02|\x1d\x01\x04e"},
-	{"image/png", "\x02\ag\x11\x12\x02\x06\x01iE"},
-	{"index/suffixarray", "\x03m\x0e\x87\x01\f-\n\x01"},
-	{"internal/abi", "\xc6\x01\x9c\x01"},
-	{"internal/asan", "\xe2\x02"},
-	{"internal/bisect", "\xc0\x02\r\x01"},
-	{"internal/buildcfg", "\x81\x01Hj\x06\x02\x05\n\x01"},
-	{"internal/bytealg", "\xbe\x01\xa4\x01"},
+	{"image/color/palette", "\x9d\x01"},
+	{"image/draw", "\x9c\x01\x01\x04"},
+	{"image/gif", "\x02\x01\x05w\x03\x1a\x01\x01\x01\v\\\x0f"},
+	{"image/internal/imageutil", "\x9c\x01"},
+	{"image/jpeg", "\x02}\x1d\x01\x04e"},
+	{"image/png", "\x02\ah\x11\x12\x02\x06\x01iE"},
+	{"index/suffixarray", "\x03n\x0e\x87\x01\f-\n\x01"},
+	{"internal/abi", "\xc7\x01\x9c\x01"},
+	{"internal/asan", "\xe3\x02"},
+	{"internal/bisect", "\xc1\x02\r\x01"},
+	{"internal/buildcfg", "\x82\x01Hj\x06\x02\x05\n\x01"},
+	{"internal/bytealg", "\xbf\x01\xa4\x01"},
 	{"internal/byteorder", ""},
 	{"internal/cfg", ""},
-	{"internal/cgrouptest", "\x81\x01\\V\x06\x0f\x02\x01\x04\x01"},
-	{"internal/chacha8rand", "\xa9\x01\x15\b\x9c\x01"},
+	{"internal/cgrouptest", "\x82\x01\\V\x06\x0f\x02\x01\x04\x01"},
+	{"internal/chacha8rand", "\xaa\x01\x15\b\x9c\x01"},
 	{"internal/copyright", ""},
 	{"internal/coverage", ""},
 	{"internal/coverage/calloc", ""},
-	{"internal/coverage/cfile", "t\r\x16\x17\x01\x02\x01\x01\x01\x01\x01\x01\x01$\x02'.\x06\a\n\x01\x03\x0e\x06"},
-	{"internal/coverage/cformat", "\x04}-\x04S\v8\x01\x02\x0e"},
-	{"internal/coverage/cmerge", "\x81\x01-c"},
-	{"internal/coverage/decodecounter", "p\x11-\v\x02J.\x17\x18"},
-	{"internal/coverage/decodemeta", "\x02n\x11\x16\x17\v\x02J."},
-	{"internal/coverage/encodecounter", "\x02n\x11-\f\x01\x02H\v#\x15"},
-	{"internal/coverage/encodemeta", "\x02\x01m\x11\x12\x04\x17\r\x02H./"},
-	{"internal/coverage/pods", "\x04}-\x85\x01\x06\x05\n\x02\x01"},
-	{"internal/coverage/rtcov", "\xe2\x02"},
-	{"internal/coverage/slicereader", "p\x11\x84\x01]"},
-	{"internal/coverage/slicewriter", "\x81\x01\x84\x01"},
-	{"internal/coverage/stringtab", "\x81\x018\x04H"},
+	{"internal/coverage/cfile", "u\r\x16\x17\x01\x02\x01\x01\x01\x01\x01\x01\x01$\x02'.\x06\a\n\x01\x03\x0e\x06"},
+	{"internal/coverage/cformat", "\x04~-\x04S\v8\x01\x02\x0e"},
+	{"internal/coverage/cmerge", "\x82\x01-c"},
+	{"internal/coverage/decodecounter", "q\x11-\v\x02J.\x17\x18"},
+	{"internal/coverage/decodemeta", "\x02o\x11\x16\x17\v\x02J."},
+	{"internal/coverage/encodecounter", "\x02o\x11-\f\x01\x02H\v#\x15"},
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+	{"internal/coverage/slicereader", "q\x11\x84\x01]"},
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+	{"internal/coverage/stringtab", "\x82\x018\x04H"},
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+	{"internal/exportdata", "\x02\x01|\x03\x02f\x1c.\x01\x05\x11\x01\x02"},
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-	{"internal/nettest", "\x03\nqG@\f\n\x12\x06\x15\x05\x0f"},
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+	{"internal/runtime/syscall/linux", "\xc7\x01\x9c\x01"},
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-	{"internal/sysinfo", "\x02\x01\xbb\x01G.\x18\x02"},
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-	{"net/http/pprof", "\x02\x01\nt\x18.\x11-\x04\x13\x16\x01\r\x04\x03\x01\x02\x01\x11"},
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+	{"mime/quotedprintable", "\x02\x01\x7f\x84\x01"},
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+	{"net/http/httptrace", "\rOwI\x16+"},
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+	{"net/http/internal", "\x02\x01n\x0e\x03\x84\x01"},
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+	{"net/http/internal/httpcommon", "\rr\x03\xa0\x01\x10\x01\x17\x01\x01\x02\x1f\x02"},
+	{"net/http/internal/httpsfv", "\xc9\x02\x02\x01\x11\x04"},
+	{"net/http/internal/testcert", "\xcc\x02"},
+	{"net/http/pprof", "\x02\x01\nu\x18.\x11-\x04\x13\x16\x01\r\x04\x03\x01\x02\x01\x11"},
 	{"net/internal/cgotest", ""},
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-	{"reflect", "~&\x04\x1e\x03\x11\b\x04\x05\x17\x06\t/\n\x03\x11\x02\x02"},
+	{"net/internal/socktest", "\x82\x01\xcc\x01\x02"},
+	{"net/mail", "\x02}\x03\x84\x01\x04\x0f\x03\x16\x1a\x02\x0f\x04"},
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+	{"net/textproto", "\x02\x01|\x03\x84\x01\f\n/\x01\x02\x15"},
+	{"net/url", "\x7f\x03Ff\v\x10\x02\x01\x17"},
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+	{"os/exec/internal/fdtest", "\xd0\x02"},
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+	{"os/user", "\x02\x01|\x03\x84\x01.\r\n\x01\x02"},
+	{"path", "\x7f*\xb8\x01"},
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-	{"runtime/debug", "\x81\x01V\\\r\b\x02\x01\x11\x06"},
-	{"runtime/metrics", "\xc8\x01I/\""},
-	{"runtime/pprof", "\x02\x01\x01\x03\x06c\x0e\x03#5\v!\f\"\r\b\x01\x01\x01\x02\x02\n\x03\x06"},
-	{"runtime/race", "\xc6\x02"},
+	{"regexp", "\x03\x83\x02\x037\t\x02\x01\x02\x11\x02"},
+	{"regexp/syntax", "\xc9\x02\x01\x01\x01\x02\x11\x02"},
+	{"runtime", "\xa5\x01\x04\x01\x03\f\x06\b\x02\x01\x01\x0f\x03\x01\x01\x01\x02\x01\x01\x01\x02\x01\x04\x01\x10\x18N"},
+	{"runtime/coverage", "\xb1\x01U"},
+	{"runtime/debug", "\x82\x01V\\\r\b\x02\x01\x11\x06"},
+	{"runtime/metrics", "\xc9\x01I/\""},
+	{"runtime/pprof", "\x02\x01\x01\x03\x06d\x0e\x03#5\v!\f\"\r\b\x01\x01\x01\x02\x02\n\x03\x06"},
+	{"runtime/race", "\xc7\x02"},
 	{"runtime/race/internal/amd64v1", ""},
-	{"runtime/trace", "\rq\x03{\t;\b\x05\x01\x0e\x06"},
-	{"slices", "\x04\x84\x02\fN"},
-	{"sort", "\xdb\x0194"},
-	{"strconv", "~*C\x01t"},
-	{"strings", "~&\x04D\x19\x03\f9\x11\x02\x02"},
+	{"runtime/trace", "\rr\x03{\t;\b\x05\x01\x0e\x06"},
+	{"slices", "\x04\x85\x02\fN"},
+	{"sort", "\xdc\x0194"},
+	{"strconv", "\x7f*C\x01t"},
+	{"strings", "\x7f&\x04D\x19\x03\f9\x11\x02\x02"},
 	{"structs", ""},
-	{"sync", "\xda\x01\x02\x11\x01R\x0e\x14"},
-	{"sync/atomic", "\xe2\x02"},
-	{"syscall", "~'\x03\x01\x1d\n\x04\x06\r\x04U\b\x05\x01\x14"},
-	{"testing", "\x03\nq\x02\x01Y\x17\x14\f\x05\x1d\x06\x02\x05\x02\x05\x01\x02\x01\x02\x01\x0e\x02\x04"},
-	{"testing/cryptotest", "SV\\\x126\x03\x12"},
-	{"testing/fstest", "~\x03\x84\x01\x01\n(\x10\x03\t\b"},
-	{"testing/internal/testdeps", "\x02\v\xb7\x011\x10.\x03\x05\x03\x06\a\x02\x0f"},
-	{"testing/iotest", "\x03{\x03\x84\x01\x04"},
-	{"testing/quick", "\x80\x01\x01\x90\x01\x05%\x10\x11"},
-	{"testing/slogtest", "\rq\x03\x8a\x010\x05\x10\f"},
-	{"testing/synctest", "\xee\x01b\f\x06"},
-	{"text/scanner", "\x03~\x84\x01.+\x02"},
-	{"text/tabwriter", "\x81\x01\x84\x01["},
-	{"text/template", "~\x03BB\x01\n\"\x01\x05\x01\x02\x05\v\x02\x0e\x03\x02"},
-	{"text/template/parse", "\x03~\xbf\x01\n\x01\x13\x02"},
-	{"time", "~*D(,\r\x02\x13"},
-	{"time/tzdata", "~\xd1\x01\x13"},
+	{"sync", "\xdb\x01\x02\x11\x01R\x0e\x14"},
+	{"sync/atomic", "\xe3\x02"},
+	{"syscall", "\x7f'\x03\x01\x1d\n\x04\x06\r\x04U\b\x05\x01\x14"},
+	{"testing", "\x03\nr\x02\x01Y\x17\x14\f\x05\x1d\x06\x02\x05\x02\x05\x01\x02\x01\x02\x01\x0e\x02\x04"},
+	{"testing/cryptotest", "TV\\\x126\x03\x12"},
+	{"testing/fstest", "\x7f\x03\x84\x01\x01\n(\x10\x03\t\b"},
+	{"testing/internal/testdeps", "\x02\v\xb8\x011\x10.\x03\x05\x03\x06\a\x02\x0f"},
+	{"testing/iotest", "\x03|\x03\x84\x01\x04"},
+	{"testing/quick", "\x81\x01\x01\x90\x01\x05%\x10\x11"},
+	{"testing/slogtest", "\rr\x03\x8a\x010\x05\x10\f"},
+	{"testing/synctest", "\xef\x01b\f\x06"},
+	{"text/scanner", "\x03\x7f\x84\x01.+\x02"},
+	{"text/tabwriter", "\x82\x01\x84\x01["},
+	{"text/template", "\x7f\x03BB\x01\n\"\x01\x05\x01\x02\x05\v\x02\x0e\x03\x02"},
+	{"text/template/parse", "\x03\x7f\xbf\x01\n\x01\x13\x02"},
+	{"time", "\x7f*D(,\r\x02\x13"},
+	{"time/tzdata", "\x7f\xd1\x01\x13"},
 	{"unicode", ""},
 	{"unicode/utf16", ""},
 	{"unicode/utf8", ""},
-	{"unique", "\xa4\x01\"&\x01S\r\x01\x14\x19"},
+	{"unique", "\xa5\x01\"&\x01S\r\x01\x14\x19"},
 	{"unsafe", ""},
-	{"uuid", "\x03\x01O\x1d\x03\v\xcf\x01\x0f"},
-	{"vendor/golang.org/x/crypto/chacha20", "\x10`\x0e\x96\x01,)"},
-	{"vendor/golang.org/x/crypto/chacha20poly1305", "\x10\aY\x0e\xe6\x01\x05\x01\f"},
-	{"vendor/golang.org/x/crypto/cryptobyte", "m\x11\x03\x91\x01)!\v"},
+	{"uuid", "\x03\x01P\x1d\x03\v\xcf\x01\x0f"},
+	{"vendor/golang.org/x/crypto/chacha20", "\x10a\x0e\x96\x01,)"},
+	{"vendor/golang.org/x/crypto/chacha20poly1305", "\x10\aZ\x0e\xe6\x01\x05\x01\f"},
+	{"vendor/golang.org/x/crypto/cryptobyte", "n\x11\x03\x91\x01)!\v"},
 	{"vendor/golang.org/x/crypto/cryptobyte/asn1", ""},
-	{"vendor/golang.org/x/crypto/hkdf", "\x18\x01e\x15r"},
-	{"vendor/golang.org/x/crypto/internal/alias", "\xe2\x02"},
-	{"vendor/golang.org/x/crypto/internal/poly1305", "Z\x16\xa4\x01"},
-	{"vendor/golang.org/x/net/dns/dnsmessage", "~\xca\x01"},
-	{"vendor/golang.org/x/net/http/httpguts", "\x9b\x02\x16\x1a\x15\x10"},
-	{"vendor/golang.org/x/net/http/httpproxy", "~\x03\x9a\x01\x12\x05\x01\x18\x15\x10"},
-	{"vendor/golang.org/x/net/http2/hpack", "\x03{\x03\x84\x01H"},
-	{"vendor/golang.org/x/net/http3", "\x9c\x02@\x06\x0f\x04"},
-	{"vendor/golang.org/x/net/idna", "\x81\x01\x90\x01:\x13\x02\x17\x02\x01"},
-	{"vendor/golang.org/x/net/internal/http3", "\rN#\x03\x84\x01\v\x04\a\x01\x05\x10\x01\x16\x02\x01\x02\x0f\x10\x02\x04\x03"},
-	{"vendor/golang.org/x/net/internal/httpcommon", "\rq\x03\xa0\x01\x10\x01\x17\x01\x01\x02\x1f\x02"},
-	{"vendor/golang.org/x/net/internal/quic/quicwire", "p"},
-	{"vendor/golang.org/x/net/nettest", "\x03m\x0e\x03\x84\x01\x11\x05\x18\x01\f\n\x01\x02\x02\x01\f"},
-	{"vendor/golang.org/x/net/quic", "\x03\n\x01\x01\x01\t:\x04\x04\x15\x03\v\x03\x12r\x06\x06\x06\x04\x12\x06\x15\x02\x01\x02\x01\x01\r\x06\x02\x01\x01\x02\v"},
-	{"vendor/golang.org/x/sys/cpu", "\xb3\x02\r\n\x01\x17"},
-	{"vendor/golang.org/x/text/secure/bidirule", "~\xe2\x01\x18\x01"},
-	{"vendor/golang.org/x/text/transform", "\x03{\x87\x01["},
-	{"vendor/golang.org/x/text/unicode/bidi", "\x03\bv\x88\x01@\x17"},
-	{"vendor/golang.org/x/text/unicode/norm", "p\x11\x84\x01H\x13\x18"},
-	{"weak", "\xa4\x01\x9c\x01\""},
+	{"vendor/golang.org/x/crypto/hkdf", "\x18\x01f\x15r"},
+	{"vendor/golang.org/x/crypto/internal/alias", "\xe3\x02"},
+	{"vendor/golang.org/x/crypto/internal/poly1305", "[\x16\xa4\x01"},
+	{"vendor/golang.org/x/net/dns/dnsmessage", "\x7f\xca\x01"},
+	{"vendor/golang.org/x/net/http/httpguts", "\x9c\x02\x16\x1a\x15\x10"},
+	{"vendor/golang.org/x/net/http/httpproxy", "\x7f\x03\x9a\x01\x12\x05\x01\x18\x15\x10"},
+	{"vendor/golang.org/x/net/http2/hpack", "\x03|\x03\x84\x01H"},
+	{"vendor/golang.org/x/net/http3", "\x9d\x02@\x06\x0f\x04"},
+	{"vendor/golang.org/x/net/idna", "\x82\x01\x90\x01:\x13\x02\x17\x02\x01"},
+	{"vendor/golang.org/x/net/internal/http3", "\rO#\x03\x84\x01\v\x04\a\x01\x05\x10\x01\x16\x02\x01\x02\x0f\x10\x02\x04\x03"},
+	{"vendor/golang.org/x/net/internal/httpcommon", "\rr\x03\xa0\x01\x10\x01\x17\x01\x01\x02\x1f\x02"},
+	{"vendor/golang.org/x/net/internal/quic/quicwire", "q"},
+	{"vendor/golang.org/x/net/nettest", "\x03n\x0e\x03\x84\x01\x11\x05\x18\x01\f\n\x01\x02\x02\x01\f"},
+	{"vendor/golang.org/x/net/quic", "\x03\n\x01\x01\x01\t;\x04\x04\x15\x03\v\x03\x12r\x06\x06\x06\x04\x12\x06\x15\x02\x01\x02\x01\x01\r\x06\x02\x01\x01\x02\v"},
+	{"vendor/golang.org/x/sys/cpu", "\xb4\x02\r\n\x01\x17"},
+	{"vendor/golang.org/x/text/secure/bidirule", "\x7f\xe2\x01\x18\x01"},
+	{"vendor/golang.org/x/text/transform", "\x03|\x87\x01["},
+	{"vendor/golang.org/x/text/unicode/bidi", "\x03\bw\x88\x01@\x17"},
+	{"vendor/golang.org/x/text/unicode/norm", "q\x11\x84\x01H\x13\x18"},
+	{"weak", "\xa5\x01\x9c\x01\""},
 }
 
 // bootstrap is the list of bootstrap packages extracted from cmd/dist.
diff -Nur /work/src-orig/kubernetes/vendor/golang.org/x/tools/internal/stdlib/manifest.go /work/src/kubernetes/vendor/golang.org/x/tools/internal/stdlib/manifest.go
--- a/vendor/golang.org/x/tools/internal/stdlib/manifest.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/golang.org/x/tools/internal/stdlib/manifest.go	2026-09-02 10:25:23.825027676 +0000
@@ -9153,6 +9153,7 @@
 		{"CrossOriginProtection", Type, 25, ""},
 		{"DefaultClient", Var, 0, ""},
 		{"DefaultMaxHeaderBytes", Const, 0, ""},
+		{"DefaultMaxHeaderValueCount", Const, 27, ""},
 		{"DefaultMaxIdleConnsPerHost", Const, 0, ""},
 		{"DefaultServeMux", Var, 0, ""},
 		{"DefaultTransport", Var, 0, ""},
@@ -9317,6 +9318,7 @@
 		{"Server.Handler", Field, 0, ""},
 		{"Server.IdleTimeout", Field, 8, ""},
 		{"Server.MaxHeaderBytes", Field, 0, ""},
+		{"Server.MaxHeaderValueCount", Field, 27, ""},
 		{"Server.Protocols", Field, 24, ""},
 		{"Server.ReadHeaderTimeout", Field, 8, ""},
 		{"Server.ReadTimeout", Field, 0, ""},
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/annotations.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/annotations.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/annotations.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/annotations.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2025 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/client.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/client.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/client.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/client.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
@@ -167,6 +167,63 @@
 	return file_google_api_client_proto_rawDescGZIP(), []int{1}
 }
 
+// The behavior to take when the flow control limit is exceeded.
+type FlowControlLimitExceededBehaviorProto int32
+
+const (
+	// Default behavior, system-defined.
+	FlowControlLimitExceededBehaviorProto_UNSET_BEHAVIOR FlowControlLimitExceededBehaviorProto = 0
+	// Stop operation, raise error.
+	FlowControlLimitExceededBehaviorProto_THROW_EXCEPTION FlowControlLimitExceededBehaviorProto = 1
+	// Pause operation until limit clears.
+	FlowControlLimitExceededBehaviorProto_BLOCK FlowControlLimitExceededBehaviorProto = 2
+	// Continue operation, disregard limit.
+	FlowControlLimitExceededBehaviorProto_IGNORE FlowControlLimitExceededBehaviorProto = 3
+)
+
+// Enum value maps for FlowControlLimitExceededBehaviorProto.
+var (
+	FlowControlLimitExceededBehaviorProto_name = map[int32]string{
+		0: "UNSET_BEHAVIOR",
+		1: "THROW_EXCEPTION",
+		2: "BLOCK",
+		3: "IGNORE",
+	}
+	FlowControlLimitExceededBehaviorProto_value = map[string]int32{
+		"UNSET_BEHAVIOR":  0,
+		"THROW_EXCEPTION": 1,
+		"BLOCK":           2,
+		"IGNORE":          3,
+	}
+)
+
+func (x FlowControlLimitExceededBehaviorProto) Enum() *FlowControlLimitExceededBehaviorProto {
+	p := new(FlowControlLimitExceededBehaviorProto)
+	*p = x
+	return p
+}
+
+func (x FlowControlLimitExceededBehaviorProto) String() string {
+	return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x))
+}
+
+func (FlowControlLimitExceededBehaviorProto) Descriptor() protoreflect.EnumDescriptor {
+	return file_google_api_client_proto_enumTypes[2].Descriptor()
+}
+
+func (FlowControlLimitExceededBehaviorProto) Type() protoreflect.EnumType {
+	return &file_google_api_client_proto_enumTypes[2]
+}
+
+func (x FlowControlLimitExceededBehaviorProto) Number() protoreflect.EnumNumber {
+	return protoreflect.EnumNumber(x)
+}
+
+// Deprecated: Use FlowControlLimitExceededBehaviorProto.Descriptor instead.
+func (FlowControlLimitExceededBehaviorProto) EnumDescriptor() ([]byte, []int) {
+	return file_google_api_client_proto_rawDescGZIP(), []int{2}
+}
+
 // Required information for every language.
 type CommonLanguageSettings struct {
 	state         protoimpl.MessageState
@@ -181,6 +238,8 @@
 	// The destination where API teams want this client library to be published.
 	Destinations []ClientLibraryDestination `protobuf:"varint,2,rep,packed,name=destinations,proto3,enum=google.api.ClientLibraryDestination" json:"destinations,omitempty"`
 	// Configuration for which RPCs should be generated in the GAPIC client.
+	//
+	// Note: This field should not be used in most cases.
 	SelectiveGapicGeneration *SelectiveGapicGeneration `protobuf:"bytes,3,opt,name=selective_gapic_generation,json=selectiveGapicGeneration,proto3" json:"selective_gapic_generation,omitempty"`
 }
 
@@ -547,8 +606,9 @@
 	// Example of a YAML configuration::
 	//
 	//	publishing:
-	//	  java_settings:
-	//	    library_package: com.google.cloud.pubsub.v1
+	//	  library_settings:
+	//	    java_settings:
+	//	      library_package: com.google.cloud.pubsub.v1
 	LibraryPackage string `protobuf:"bytes,1,opt,name=library_package,json=libraryPackage,proto3" json:"library_package,omitempty"`
 	// Configure the Java class name to use instead of the service's for its
 	// corresponding generated GAPIC client. Keys are fully-qualified
@@ -679,6 +739,19 @@
 
 	// Some settings.
 	Common *CommonLanguageSettings `protobuf:"bytes,1,opt,name=common,proto3" json:"common,omitempty"`
+	// The package name to use in Php. Clobbers the php_namespace option
+	// set in the protobuf. This should be used **only** by APIs
+	// who have already set the language_settings.php.package_name" field
+	// in gapic.yaml. API teams should use the protobuf php_namespace option
+	// where possible.
+	//
+	// Example of a YAML configuration::
+	//
+	//	publishing:
+	//	  library_settings:
+	//	    php_settings:
+	//	      library_package: Google\Cloud\PubSub\V1
+	LibraryPackage string `protobuf:"bytes,2,opt,name=library_package,json=libraryPackage,proto3" json:"library_package,omitempty"`
 }
 
 func (x *PhpSettings) Reset() {
@@ -720,6 +793,13 @@
 	return nil
 }
 
+func (x *PhpSettings) GetLibraryPackage() string {
+	if x != nil {
+		return x.LibraryPackage
+	}
+	return ""
+}
+
 // Settings for Python client libraries.
 type PythonSettings struct {
 	state         protoimpl.MessageState
@@ -997,11 +1077,12 @@
 	// service names and values are the name to be used for the service client
 	// and call options.
 	//
-	// publishing:
+	// Example:
 	//
-	//	go_settings:
-	//	  renamed_services:
-	//	    Publisher: TopicAdmin
+	//	publishing:
+	//	  go_settings:
+	//	    renamed_services:
+	//	      Publisher: TopicAdmin
 	RenamedServices map[string]string `protobuf:"bytes,2,rep,name=renamed_services,json=renamedServices,proto3" json:"renamed_services,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"`
 }
 
@@ -1094,6 +1175,18 @@
 	//	    auto_populated_fields:
 	//	    - request_id
 	AutoPopulatedFields []string `protobuf:"bytes,3,rep,name=auto_populated_fields,json=autoPopulatedFields,proto3" json:"auto_populated_fields,omitempty"`
+	// Batching configuration for an API method in client libraries.
+	//
+	// Example of a YAML configuration:
+	//
+	//	publishing:
+	//	  method_settings:
+	//	  - selector: google.example.v1.ExampleService.BatchCreateExample
+	//	    batching:
+	//	      element_count_threshold: 1000
+	//	      request_byte_threshold: 100000000
+	//	      delay_threshold_millis: 10
+	Batching *BatchingConfigProto `protobuf:"bytes,4,opt,name=batching,proto3" json:"batching,omitempty"`
 }
 
 func (x *MethodSettings) Reset() {
@@ -1149,8 +1242,17 @@
 	return nil
 }
 
+func (x *MethodSettings) GetBatching() *BatchingConfigProto {
+	if x != nil {
+		return x.Batching
+	}
+	return nil
+}
+
 // This message is used to configure the generation of a subset of the RPCs in
 // a service for client libraries.
+//
+// Note: This feature should not be used in most cases.
 type SelectiveGapicGeneration struct {
 	state         protoimpl.MessageState
 	sizeCache     protoimpl.SizeCache
@@ -1214,6 +1316,257 @@
 	return false
 }
 
+// `BatchingConfigProto` defines the batching configuration for an API method.
+type BatchingConfigProto struct {
+	state         protoimpl.MessageState
+	sizeCache     protoimpl.SizeCache
+	unknownFields protoimpl.UnknownFields
+
+	// The thresholds which trigger a batched request to be sent.
+	Thresholds *BatchingSettingsProto `protobuf:"bytes,1,opt,name=thresholds,proto3" json:"thresholds,omitempty"`
+	// The request and response fields used in batching.
+	BatchDescriptor *BatchingDescriptorProto `protobuf:"bytes,2,opt,name=batch_descriptor,json=batchDescriptor,proto3" json:"batch_descriptor,omitempty"`
+}
+
+func (x *BatchingConfigProto) Reset() {
+	*x = BatchingConfigProto{}
+	if protoimpl.UnsafeEnabled {
+		mi := &file_google_api_client_proto_msgTypes[13]
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		ms.StoreMessageInfo(mi)
+	}
+}
+
+func (x *BatchingConfigProto) String() string {
+	return protoimpl.X.MessageStringOf(x)
+}
+
+func (*BatchingConfigProto) ProtoMessage() {}
+
+func (x *BatchingConfigProto) ProtoReflect() protoreflect.Message {
+	mi := &file_google_api_client_proto_msgTypes[13]
+	if protoimpl.UnsafeEnabled && x != nil {
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		if ms.LoadMessageInfo() == nil {
+			ms.StoreMessageInfo(mi)
+		}
+		return ms
+	}
+	return mi.MessageOf(x)
+}
+
+// Deprecated: Use BatchingConfigProto.ProtoReflect.Descriptor instead.
+func (*BatchingConfigProto) Descriptor() ([]byte, []int) {
+	return file_google_api_client_proto_rawDescGZIP(), []int{13}
+}
+
+func (x *BatchingConfigProto) GetThresholds() *BatchingSettingsProto {
+	if x != nil {
+		return x.Thresholds
+	}
+	return nil
+}
+
+func (x *BatchingConfigProto) GetBatchDescriptor() *BatchingDescriptorProto {
+	if x != nil {
+		return x.BatchDescriptor
+	}
+	return nil
+}
+
+// `BatchingSettingsProto` specifies a set of batching thresholds, each of
+// which acts as a trigger to send a batch of messages as a request. At least
+// one threshold must be positive nonzero.
+type BatchingSettingsProto struct {
+	state         protoimpl.MessageState
+	sizeCache     protoimpl.SizeCache
+	unknownFields protoimpl.UnknownFields
+
+	// The number of elements of a field collected into a batch which, if
+	// exceeded, causes the batch to be sent.
+	ElementCountThreshold int32 `protobuf:"varint,1,opt,name=element_count_threshold,json=elementCountThreshold,proto3" json:"element_count_threshold,omitempty"`
+	// The aggregated size of the batched field which, if exceeded, causes the
+	// batch to be sent. This size is computed by aggregating the sizes of the
+	// request field to be batched, not of the entire request message.
+	RequestByteThreshold int64 `protobuf:"varint,2,opt,name=request_byte_threshold,json=requestByteThreshold,proto3" json:"request_byte_threshold,omitempty"`
+	// The duration after which a batch should be sent, starting from the addition
+	// of the first message to that batch.
+	DelayThreshold *durationpb.Duration `protobuf:"bytes,3,opt,name=delay_threshold,json=delayThreshold,proto3" json:"delay_threshold,omitempty"`
+	// The maximum number of elements collected in a batch that could be accepted
+	// by server.
+	ElementCountLimit int32 `protobuf:"varint,4,opt,name=element_count_limit,json=elementCountLimit,proto3" json:"element_count_limit,omitempty"`
+	// The maximum size of the request that could be accepted by server.
+	RequestByteLimit int32 `protobuf:"varint,5,opt,name=request_byte_limit,json=requestByteLimit,proto3" json:"request_byte_limit,omitempty"`
+	// The maximum number of elements allowed by flow control.
+	FlowControlElementLimit int32 `protobuf:"varint,6,opt,name=flow_control_element_limit,json=flowControlElementLimit,proto3" json:"flow_control_element_limit,omitempty"`
+	// The maximum size of data allowed by flow control.
+	FlowControlByteLimit int32 `protobuf:"varint,7,opt,name=flow_control_byte_limit,json=flowControlByteLimit,proto3" json:"flow_control_byte_limit,omitempty"`
+	// The behavior to take when the flow control limit is exceeded.
+	FlowControlLimitExceededBehavior FlowControlLimitExceededBehaviorProto `protobuf:"varint,8,opt,name=flow_control_limit_exceeded_behavior,json=flowControlLimitExceededBehavior,proto3,enum=google.api.FlowControlLimitExceededBehaviorProto" json:"flow_control_limit_exceeded_behavior,omitempty"`
+}
+
+func (x *BatchingSettingsProto) Reset() {
+	*x = BatchingSettingsProto{}
+	if protoimpl.UnsafeEnabled {
+		mi := &file_google_api_client_proto_msgTypes[14]
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		ms.StoreMessageInfo(mi)
+	}
+}
+
+func (x *BatchingSettingsProto) String() string {
+	return protoimpl.X.MessageStringOf(x)
+}
+
+func (*BatchingSettingsProto) ProtoMessage() {}
+
+func (x *BatchingSettingsProto) ProtoReflect() protoreflect.Message {
+	mi := &file_google_api_client_proto_msgTypes[14]
+	if protoimpl.UnsafeEnabled && x != nil {
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		if ms.LoadMessageInfo() == nil {
+			ms.StoreMessageInfo(mi)
+		}
+		return ms
+	}
+	return mi.MessageOf(x)
+}
+
+// Deprecated: Use BatchingSettingsProto.ProtoReflect.Descriptor instead.
+func (*BatchingSettingsProto) Descriptor() ([]byte, []int) {
+	return file_google_api_client_proto_rawDescGZIP(), []int{14}
+}
+
+func (x *BatchingSettingsProto) GetElementCountThreshold() int32 {
+	if x != nil {
+		return x.ElementCountThreshold
+	}
+	return 0
+}
+
+func (x *BatchingSettingsProto) GetRequestByteThreshold() int64 {
+	if x != nil {
+		return x.RequestByteThreshold
+	}
+	return 0
+}
+
+func (x *BatchingSettingsProto) GetDelayThreshold() *durationpb.Duration {
+	if x != nil {
+		return x.DelayThreshold
+	}
+	return nil
+}
+
+func (x *BatchingSettingsProto) GetElementCountLimit() int32 {
+	if x != nil {
+		return x.ElementCountLimit
+	}
+	return 0
+}
+
+func (x *BatchingSettingsProto) GetRequestByteLimit() int32 {
+	if x != nil {
+		return x.RequestByteLimit
+	}
+	return 0
+}
+
+func (x *BatchingSettingsProto) GetFlowControlElementLimit() int32 {
+	if x != nil {
+		return x.FlowControlElementLimit
+	}
+	return 0
+}
+
+func (x *BatchingSettingsProto) GetFlowControlByteLimit() int32 {
+	if x != nil {
+		return x.FlowControlByteLimit
+	}
+	return 0
+}
+
+func (x *BatchingSettingsProto) GetFlowControlLimitExceededBehavior() FlowControlLimitExceededBehaviorProto {
+	if x != nil {
+		return x.FlowControlLimitExceededBehavior
+	}
+	return FlowControlLimitExceededBehaviorProto_UNSET_BEHAVIOR
+}
+
+// `BatchingDescriptorProto` specifies the fields of the request message to be
+// used for batching, and, optionally, the fields of the response message to be
+// used for demultiplexing.
+type BatchingDescriptorProto struct {
+	state         protoimpl.MessageState
+	sizeCache     protoimpl.SizeCache
+	unknownFields protoimpl.UnknownFields
+
+	// The repeated field in the request message to be aggregated by batching.
+	BatchedField string `protobuf:"bytes,1,opt,name=batched_field,json=batchedField,proto3" json:"batched_field,omitempty"`
+	// A list of the fields in the request message. Two requests will be batched
+	// together only if the values of every field specified in
+	// `request_discriminator_fields` is equal between the two requests.
+	DiscriminatorFields []string `protobuf:"bytes,2,rep,name=discriminator_fields,json=discriminatorFields,proto3" json:"discriminator_fields,omitempty"`
+	// Optional. When present, indicates the field in the response message to be
+	// used to demultiplex the response into multiple response messages, in
+	// correspondence with the multiple request messages originally batched
+	// together.
+	SubresponseField string `protobuf:"bytes,3,opt,name=subresponse_field,json=subresponseField,proto3" json:"subresponse_field,omitempty"`
+}
+
+func (x *BatchingDescriptorProto) Reset() {
+	*x = BatchingDescriptorProto{}
+	if protoimpl.UnsafeEnabled {
+		mi := &file_google_api_client_proto_msgTypes[15]
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		ms.StoreMessageInfo(mi)
+	}
+}
+
+func (x *BatchingDescriptorProto) String() string {
+	return protoimpl.X.MessageStringOf(x)
+}
+
+func (*BatchingDescriptorProto) ProtoMessage() {}
+
+func (x *BatchingDescriptorProto) ProtoReflect() protoreflect.Message {
+	mi := &file_google_api_client_proto_msgTypes[15]
+	if protoimpl.UnsafeEnabled && x != nil {
+		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
+		if ms.LoadMessageInfo() == nil {
+			ms.StoreMessageInfo(mi)
+		}
+		return ms
+	}
+	return mi.MessageOf(x)
+}
+
+// Deprecated: Use BatchingDescriptorProto.ProtoReflect.Descriptor instead.
+func (*BatchingDescriptorProto) Descriptor() ([]byte, []int) {
+	return file_google_api_client_proto_rawDescGZIP(), []int{15}
+}
+
+func (x *BatchingDescriptorProto) GetBatchedField() string {
+	if x != nil {
+		return x.BatchedField
+	}
+	return ""
+}
+
+func (x *BatchingDescriptorProto) GetDiscriminatorFields() []string {
+	if x != nil {
+		return x.DiscriminatorFields
+	}
+	return nil
+}
+
+func (x *BatchingDescriptorProto) GetSubresponseField() string {
+	if x != nil {
+		return x.SubresponseField
+	}
+	return ""
+}
+
 // Experimental features to be included during client library generation.
 // These fields will be deprecated once the feature graduates and is enabled
 // by default.
@@ -1242,7 +1595,7 @@
 func (x *PythonSettings_ExperimentalFeatures) Reset() {
 	*x = PythonSettings_ExperimentalFeatures{}
 	if protoimpl.UnsafeEnabled {
-		mi := &file_google_api_client_proto_msgTypes[14]
+		mi := &file_google_api_client_proto_msgTypes[17]
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		ms.StoreMessageInfo(mi)
 	}
@@ -1255,7 +1608,7 @@
 func (*PythonSettings_ExperimentalFeatures) ProtoMessage() {}
 
 func (x *PythonSettings_ExperimentalFeatures) ProtoReflect() protoreflect.Message {
-	mi := &file_google_api_client_proto_msgTypes[14]
+	mi := &file_google_api_client_proto_msgTypes[17]
 	if protoimpl.UnsafeEnabled && x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
@@ -1320,7 +1673,7 @@
 func (x *MethodSettings_LongRunning) Reset() {
 	*x = MethodSettings_LongRunning{}
 	if protoimpl.UnsafeEnabled {
-		mi := &file_google_api_client_proto_msgTypes[18]
+		mi := &file_google_api_client_proto_msgTypes[21]
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		ms.StoreMessageInfo(mi)
 	}
@@ -1333,7 +1686,7 @@
 func (*MethodSettings_LongRunning) ProtoMessage() {}
 
 func (x *MethodSettings_LongRunning) ProtoReflect() protoreflect.Message {
-	mi := &file_google_api_client_proto_msgTypes[18]
+	mi := &file_google_api_client_proto_msgTypes[21]
 	if protoimpl.UnsafeEnabled && x != nil {
 		ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x))
 		if ms.LoadMessageInfo() == nil {
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 }
 
 var (
@@ -1821,76 +2242,85 @@
 	return file_google_api_client_proto_rawDescData
 }
 
-var file_google_api_client_proto_enumTypes = make([]protoimpl.EnumInfo, 2)
-var file_google_api_client_proto_msgTypes = make([]protoimpl.MessageInfo, 19)
+var file_google_api_client_proto_enumTypes = make([]protoimpl.EnumInfo, 3)
+var file_google_api_client_proto_msgTypes = make([]protoimpl.MessageInfo, 22)
 var file_google_api_client_proto_goTypes = []interface{}{
 	(ClientLibraryOrganization)(0),              // 0: google.api.ClientLibraryOrganization
 	(ClientLibraryDestination)(0),               // 1: google.api.ClientLibraryDestination
-	(*CommonLanguageSettings)(nil),              // 2: google.api.CommonLanguageSettings
-	(*ClientLibrarySettings)(nil),               // 3: google.api.ClientLibrarySettings
-	(*Publishing)(nil),                          // 4: google.api.Publishing
-	(*JavaSettings)(nil),                        // 5: google.api.JavaSettings
-	(*CppSettings)(nil),                         // 6: google.api.CppSettings
-	(*PhpSettings)(nil),                         // 7: google.api.PhpSettings
-	(*PythonSettings)(nil),                      // 8: google.api.PythonSettings
-	(*NodeSettings)(nil),                        // 9: google.api.NodeSettings
-	(*DotnetSettings)(nil),                      // 10: google.api.DotnetSettings
-	(*RubySettings)(nil),                        // 11: google.api.RubySettings
-	(*GoSettings)(nil),                          // 12: google.api.GoSettings
-	(*MethodSettings)(nil),                      // 13: google.api.MethodSettings
-	(*SelectiveGapicGeneration)(nil),            // 14: google.api.SelectiveGapicGeneration
-	nil,                                         // 15: google.api.JavaSettings.ServiceClassNamesEntry
-	(*PythonSettings_ExperimentalFeatures)(nil), // 16: google.api.PythonSettings.ExperimentalFeatures
-	nil,                                 // 17: google.api.DotnetSettings.RenamedServicesEntry
-	nil,                                 // 18: google.api.DotnetSettings.RenamedResourcesEntry
-	nil,                                 // 19: google.api.GoSettings.RenamedServicesEntry
-	(*MethodSettings_LongRunning)(nil),  // 20: google.api.MethodSettings.LongRunning
-	(api.LaunchStage)(0),                // 21: google.api.LaunchStage
-	(*durationpb.Duration)(nil),         // 22: google.protobuf.Duration
-	(*descriptorpb.MethodOptions)(nil),  // 23: google.protobuf.MethodOptions
-	(*descriptorpb.ServiceOptions)(nil), // 24: google.protobuf.ServiceOptions
+	(FlowControlLimitExceededBehaviorProto)(0),  // 2: google.api.FlowControlLimitExceededBehaviorProto
+	(*CommonLanguageSettings)(nil),              // 3: google.api.CommonLanguageSettings
+	(*ClientLibrarySettings)(nil),               // 4: google.api.ClientLibrarySettings
+	(*Publishing)(nil),                          // 5: google.api.Publishing
+	(*JavaSettings)(nil),                        // 6: google.api.JavaSettings
+	(*CppSettings)(nil),                         // 7: google.api.CppSettings
+	(*PhpSettings)(nil),                         // 8: google.api.PhpSettings
+	(*PythonSettings)(nil),                      // 9: google.api.PythonSettings
+	(*NodeSettings)(nil),                        // 10: google.api.NodeSettings
+	(*DotnetSettings)(nil),                      // 11: google.api.DotnetSettings
+	(*RubySettings)(nil),                        // 12: google.api.RubySettings
+	(*GoSettings)(nil),                          // 13: google.api.GoSettings
+	(*MethodSettings)(nil),                      // 14: google.api.MethodSettings
+	(*SelectiveGapicGeneration)(nil),            // 15: google.api.SelectiveGapicGeneration
+	(*BatchingConfigProto)(nil),                 // 16: google.api.BatchingConfigProto
+	(*BatchingSettingsProto)(nil),               // 17: google.api.BatchingSettingsProto
+	(*BatchingDescriptorProto)(nil),             // 18: google.api.BatchingDescriptorProto
+	nil,                                         // 19: google.api.JavaSettings.ServiceClassNamesEntry
+	(*PythonSettings_ExperimentalFeatures)(nil), // 20: google.api.PythonSettings.ExperimentalFeatures
+	nil,                                 // 21: google.api.DotnetSettings.RenamedServicesEntry
+	nil,                                 // 22: google.api.DotnetSettings.RenamedResourcesEntry
+	nil,                                 // 23: google.api.GoSettings.RenamedServicesEntry
+	(*MethodSettings_LongRunning)(nil),  // 24: google.api.MethodSettings.LongRunning
+	(api.LaunchStage)(0),                // 25: google.api.LaunchStage
+	(*durationpb.Duration)(nil),         // 26: google.protobuf.Duration
+	(*descriptorpb.MethodOptions)(nil),  // 27: google.protobuf.MethodOptions
+	(*descriptorpb.ServiceOptions)(nil), // 28: google.protobuf.ServiceOptions
 }
 var file_google_api_client_proto_depIdxs = []int32{
 	1,  // 0: google.api.CommonLanguageSettings.destinations:type_name -> google.api.ClientLibraryDestination
-	14, // 1: google.api.CommonLanguageSettings.selective_gapic_generation:type_name -> google.api.SelectiveGapicGeneration
-	21, // 2: google.api.ClientLibrarySettings.launch_stage:type_name -> google.api.LaunchStage
-	5,  // 3: google.api.ClientLibrarySettings.java_settings:type_name -> google.api.JavaSettings
-	6,  // 4: google.api.ClientLibrarySettings.cpp_settings:type_name -> google.api.CppSettings
-	7,  // 5: google.api.ClientLibrarySettings.php_settings:type_name -> google.api.PhpSettings
-	8,  // 6: google.api.ClientLibrarySettings.python_settings:type_name -> google.api.PythonSettings
-	9,  // 7: google.api.ClientLibrarySettings.node_settings:type_name -> google.api.NodeSettings
-	10, // 8: google.api.ClientLibrarySettings.dotnet_settings:type_name -> google.api.DotnetSettings
-	11, // 9: google.api.ClientLibrarySettings.ruby_settings:type_name -> google.api.RubySettings
-	12, // 10: google.api.ClientLibrarySettings.go_settings:type_name -> google.api.GoSettings
-	13, // 11: google.api.Publishing.method_settings:type_name -> google.api.MethodSettings
+	15, // 1: google.api.CommonLanguageSettings.selective_gapic_generation:type_name -> google.api.SelectiveGapicGeneration
+	25, // 2: google.api.ClientLibrarySettings.launch_stage:type_name -> google.api.LaunchStage
+	6,  // 3: google.api.ClientLibrarySettings.java_settings:type_name -> google.api.JavaSettings
+	7,  // 4: google.api.ClientLibrarySettings.cpp_settings:type_name -> google.api.CppSettings
+	8,  // 5: google.api.ClientLibrarySettings.php_settings:type_name -> google.api.PhpSettings
+	9,  // 6: google.api.ClientLibrarySettings.python_settings:type_name -> google.api.PythonSettings
+	10, // 7: google.api.ClientLibrarySettings.node_settings:type_name -> google.api.NodeSettings
+	11, // 8: google.api.ClientLibrarySettings.dotnet_settings:type_name -> google.api.DotnetSettings
+	12, // 9: google.api.ClientLibrarySettings.ruby_settings:type_name -> google.api.RubySettings
+	13, // 10: google.api.ClientLibrarySettings.go_settings:type_name -> google.api.GoSettings
+	14, // 11: google.api.Publishing.method_settings:type_name -> google.api.MethodSettings
 	0,  // 12: google.api.Publishing.organization:type_name -> google.api.ClientLibraryOrganization
-	3,  // 13: google.api.Publishing.library_settings:type_name -> google.api.ClientLibrarySettings
-	15, // 14: google.api.JavaSettings.service_class_names:type_name -> google.api.JavaSettings.ServiceClassNamesEntry
-	2,  // 15: google.api.JavaSettings.common:type_name -> google.api.CommonLanguageSettings
-	2,  // 16: google.api.CppSettings.common:type_name -> google.api.CommonLanguageSettings
-	2,  // 17: google.api.PhpSettings.common:type_name -> google.api.CommonLanguageSettings
-	2,  // 18: google.api.PythonSettings.common:type_name -> google.api.CommonLanguageSettings
-	16, // 19: google.api.PythonSettings.experimental_features:type_name -> google.api.PythonSettings.ExperimentalFeatures
-	2,  // 20: google.api.NodeSettings.common:type_name -> google.api.CommonLanguageSettings
-	2,  // 21: google.api.DotnetSettings.common:type_name -> google.api.CommonLanguageSettings
-	17, // 22: google.api.DotnetSettings.renamed_services:type_name -> google.api.DotnetSettings.RenamedServicesEntry
-	18, // 23: google.api.DotnetSettings.renamed_resources:type_name -> google.api.DotnetSettings.RenamedResourcesEntry
-	2,  // 24: google.api.RubySettings.common:type_name -> google.api.CommonLanguageSettings
-	2,  // 25: google.api.GoSettings.common:type_name -> google.api.CommonLanguageSettings
-	19, // 26: google.api.GoSettings.renamed_services:type_name -> google.api.GoSettings.RenamedServicesEntry
-	20, // 27: google.api.MethodSettings.long_running:type_name -> google.api.MethodSettings.LongRunning
-	22, // 28: google.api.MethodSettings.LongRunning.initial_poll_delay:type_name -> google.protobuf.Duration
-	22, // 29: google.api.MethodSettings.LongRunning.max_poll_delay:type_name -> google.protobuf.Duration
-	22, // 30: google.api.MethodSettings.LongRunning.total_poll_timeout:type_name -> google.protobuf.Duration
-	23, // 31: google.api.method_signature:extendee -> google.protobuf.MethodOptions
-	24, // 32: google.api.default_host:extendee -> google.protobuf.ServiceOptions
-	24, // 33: google.api.oauth_scopes:extendee -> google.protobuf.ServiceOptions
-	24, // 34: google.api.api_version:extendee -> google.protobuf.ServiceOptions
-	35, // [35:35] is the sub-list for method output_type
-	35, // [35:35] is the sub-list for method input_type
-	35, // [35:35] is the sub-list for extension type_name
-	31, // [31:35] is the sub-list for extension extendee
-	0,  // [0:31] is the sub-list for field type_name
+	4,  // 13: google.api.Publishing.library_settings:type_name -> google.api.ClientLibrarySettings
+	19, // 14: google.api.JavaSettings.service_class_names:type_name -> google.api.JavaSettings.ServiceClassNamesEntry
+	3,  // 15: google.api.JavaSettings.common:type_name -> google.api.CommonLanguageSettings
+	3,  // 16: google.api.CppSettings.common:type_name -> google.api.CommonLanguageSettings
+	3,  // 17: google.api.PhpSettings.common:type_name -> google.api.CommonLanguageSettings
+	3,  // 18: google.api.PythonSettings.common:type_name -> google.api.CommonLanguageSettings
+	20, // 19: google.api.PythonSettings.experimental_features:type_name -> google.api.PythonSettings.ExperimentalFeatures
+	3,  // 20: google.api.NodeSettings.common:type_name -> google.api.CommonLanguageSettings
+	3,  // 21: google.api.DotnetSettings.common:type_name -> google.api.CommonLanguageSettings
+	21, // 22: google.api.DotnetSettings.renamed_services:type_name -> google.api.DotnetSettings.RenamedServicesEntry
+	22, // 23: google.api.DotnetSettings.renamed_resources:type_name -> google.api.DotnetSettings.RenamedResourcesEntry
+	3,  // 24: google.api.RubySettings.common:type_name -> google.api.CommonLanguageSettings
+	3,  // 25: google.api.GoSettings.common:type_name -> google.api.CommonLanguageSettings
+	23, // 26: google.api.GoSettings.renamed_services:type_name -> google.api.GoSettings.RenamedServicesEntry
+	24, // 27: google.api.MethodSettings.long_running:type_name -> google.api.MethodSettings.LongRunning
+	16, // 28: google.api.MethodSettings.batching:type_name -> google.api.BatchingConfigProto
+	17, // 29: google.api.BatchingConfigProto.thresholds:type_name -> google.api.BatchingSettingsProto
+	18, // 30: google.api.BatchingConfigProto.batch_descriptor:type_name -> google.api.BatchingDescriptorProto
+	26, // 31: google.api.BatchingSettingsProto.delay_threshold:type_name -> google.protobuf.Duration
+	2,  // 32: google.api.BatchingSettingsProto.flow_control_limit_exceeded_behavior:type_name -> google.api.FlowControlLimitExceededBehaviorProto
+	26, // 33: google.api.MethodSettings.LongRunning.initial_poll_delay:type_name -> google.protobuf.Duration
+	26, // 34: google.api.MethodSettings.LongRunning.max_poll_delay:type_name -> google.protobuf.Duration
+	26, // 35: google.api.MethodSettings.LongRunning.total_poll_timeout:type_name -> google.protobuf.Duration
+	27, // 36: google.api.method_signature:extendee -> google.protobuf.MethodOptions
+	28, // 37: google.api.default_host:extendee -> google.protobuf.ServiceOptions
+	28, // 38: google.api.oauth_scopes:extendee -> google.protobuf.ServiceOptions
+	28, // 39: google.api.api_version:extendee -> google.protobuf.ServiceOptions
+	40, // [40:40] is the sub-list for method output_type
+	40, // [40:40] is the sub-list for method input_type
+	40, // [40:40] is the sub-list for extension type_name
+	36, // [36:40] is the sub-list for extension extendee
+	0,  // [0:36] is the sub-list for field type_name
 }
 
 func init() { file_google_api_client_proto_init() }
@@ -2055,7 +2485,43 @@
 				return nil
 			}
 		}
+		file_google_api_client_proto_msgTypes[13].Exporter = func(v interface{}, i int) interface{} {
+			switch v := v.(*BatchingConfigProto); i {
+			case 0:
+				return &v.state
+			case 1:
+				return &v.sizeCache
+			case 2:
+				return &v.unknownFields
+			default:
+				return nil
+			}
+		}
 		file_google_api_client_proto_msgTypes[14].Exporter = func(v interface{}, i int) interface{} {
+			switch v := v.(*BatchingSettingsProto); i {
+			case 0:
+				return &v.state
+			case 1:
+				return &v.sizeCache
+			case 2:
+				return &v.unknownFields
+			default:
+				return nil
+			}
+		}
+		file_google_api_client_proto_msgTypes[15].Exporter = func(v interface{}, i int) interface{} {
+			switch v := v.(*BatchingDescriptorProto); i {
+			case 0:
+				return &v.state
+			case 1:
+				return &v.sizeCache
+			case 2:
+				return &v.unknownFields
+			default:
+				return nil
+			}
+		}
+		file_google_api_client_proto_msgTypes[17].Exporter = func(v interface{}, i int) interface{} {
 			switch v := v.(*PythonSettings_ExperimentalFeatures); i {
 			case 0:
 				return &v.state
@@ -2067,7 +2533,7 @@
 				return nil
 			}
 		}
-		file_google_api_client_proto_msgTypes[18].Exporter = func(v interface{}, i int) interface{} {
+		file_google_api_client_proto_msgTypes[21].Exporter = func(v interface{}, i int) interface{} {
 			switch v := v.(*MethodSettings_LongRunning); i {
 			case 0:
 				return &v.state
@@ -2085,8 +2551,8 @@
 		File: protoimpl.DescBuilder{
 			GoPackagePath: reflect.TypeOf(x{}).PkgPath(),
 			RawDescriptor: file_google_api_client_proto_rawDesc,
-			NumEnums:      2,
-			NumMessages:   19,
+			NumEnums:      3,
+			NumMessages:   22,
 			NumExtensions: 4,
 			NumServices:   0,
 		},
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/field_behavior.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/field_behavior.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/field_behavior.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/field_behavior.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/field_info.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/field_info.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/field_info.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/field_info.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/http.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/http.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/http.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/http.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/resource.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/resource.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/resource.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/resource.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/routing.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/annotations/routing.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/annotations/routing.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/annotations/routing.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
@@ -66,9 +66,13 @@
 //	  app_profile_id: profiles/prof_qux
 //	}
 //
-// The routing header consists of one or multiple key-value pairs. Every key
-// and value must be percent-encoded, and joined together in the format of
-// `key1=value1&key2=value2`.
+// The routing header consists of one or multiple key-value pairs. The order of
+// the key-value pairs is undefined, the order of the `routing_parameters` in
+// the `RoutingRule` only matters for the evaluation order of the path
+// templates when `field` is the same. See the examples below for more details.
+//
+// Every key and value in the routing header must be percent-encoded,
+// and joined together in the following format: `key1=value1&key2=value2`.
 // The examples below skip the percent-encoding for readability.
 //
 // # Example 1
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/checked.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/checked.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/checked.pb.go	2026-09-02 10:24:55.024997623 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/checked.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2025 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/eval.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/eval.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/eval.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/eval.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2025 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/explain.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/explain.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/explain.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/explain.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2025 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/syntax.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/syntax.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/syntax.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/syntax.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2025 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/value.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/value.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/value.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/expr/v1alpha1/value.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2025 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/api/launch_stage.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/api/launch_stage.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/api/launch_stage.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/api/launch_stage.pb.go	2026-09-02 10:25:23.849027709 +0000
@@ -1,4 +1,4 @@
-// Copyright 2024 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go	2026-09-02 10:25:23.861027726 +0000
@@ -1,4 +1,4 @@
-// Copyright 2025 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
@@ -957,17 +957,17 @@
 	// In this example, in proto `field` could take one of the following values:
 	//
 	//   - `full_name` for a violation in the `full_name` value
-	//   - `email_addresses[1].email` for a violation in the `email` field of the
+	//   - `email_addresses[0].email` for a violation in the `email` field of the
 	//     first `email_addresses` message
-	//   - `email_addresses[3].type[2]` for a violation in the second `type`
+	//   - `email_addresses[2].type[1]` for a violation in the second `type`
 	//     value in the third `email_addresses` message.
 	//
 	// In JSON, the same values are represented as:
 	//
 	//   - `fullName` for a violation in the `fullName` value
-	//   - `emailAddresses[1].email` for a violation in the `email` field of the
+	//   - `emailAddresses[0].email` for a violation in the `email` field of the
 	//     first `emailAddresses` message
-	//   - `emailAddresses[3].type[2]` for a violation in the second `type`
+	//   - `emailAddresses[2].type[1]` for a violation in the second `type`
 	//     value in the third `emailAddresses` message.
 	Field string `protobuf:"bytes,1,opt,name=field,proto3" json:"field,omitempty"`
 	// A description of why the request element is bad.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go /work/src/kubernetes/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go
--- a/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go	2026-09-02 10:25:23.861027726 +0000
@@ -1,4 +1,4 @@
-// Copyright 2025 Google LLC
+// Copyright 2026 Google LLC
 //
 // Licensed under the Apache License, Version 2.0 (the "License");
 // you may not use this file except in compliance with the License.
@@ -127,14 +127,13 @@
 	0x07, 0x6d, 0x65, 0x73, 0x73, 0x61, 0x67, 0x65, 0x12, 0x2e, 0x0a, 0x07, 0x64, 0x65, 0x74, 0x61,
 	0x69, 0x6c, 0x73, 0x18, 0x03, 0x20, 0x03, 0x28, 0x0b, 0x32, 0x14, 0x2e, 0x67, 0x6f, 0x6f, 0x67,
 	0x6c, 0x65, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x62, 0x75, 0x66, 0x2e, 0x41, 0x6e, 0x79, 0x52,
-	0x07, 0x64, 0x65, 0x74, 0x61, 0x69, 0x6c, 0x73, 0x42, 0x61, 0x0a, 0x0e, 0x63, 0x6f, 0x6d, 0x2e,
+	0x07, 0x64, 0x65, 0x74, 0x61, 0x69, 0x6c, 0x73, 0x42, 0x5e, 0x0a, 0x0e, 0x63, 0x6f, 0x6d, 0x2e,
 	0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2e, 0x72, 0x70, 0x63, 0x42, 0x0b, 0x53, 0x74, 0x61, 0x74,
 	0x75, 0x73, 0x50, 0x72, 0x6f, 0x74, 0x6f, 0x50, 0x01, 0x5a, 0x37, 0x67, 0x6f, 0x6f, 0x67, 0x6c,
 	0x65, 0x2e, 0x67, 0x6f, 0x6c, 0x61, 0x6e, 0x67, 0x2e, 0x6f, 0x72, 0x67, 0x2f, 0x67, 0x65, 0x6e,
 	0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x61, 0x70, 0x69, 0x73,
 	0x2f, 0x72, 0x70, 0x63, 0x2f, 0x73, 0x74, 0x61, 0x74, 0x75, 0x73, 0x3b, 0x73, 0x74, 0x61, 0x74,
-	0x75, 0x73, 0xf8, 0x01, 0x01, 0xa2, 0x02, 0x03, 0x52, 0x50, 0x43, 0x62, 0x06, 0x70, 0x72, 0x6f,
-	0x74, 0x6f, 0x33,
+	0x75, 0x73, 0xa2, 0x02, 0x03, 0x52, 0x50, 0x43, 0x62, 0x06, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x33,
 }
 
 var (
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/CONTRIBUTING.md /work/src/kubernetes/vendor/google.golang.org/grpc/CONTRIBUTING.md
--- a/vendor/google.golang.org/grpc/CONTRIBUTING.md	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/CONTRIBUTING.md	2026-09-02 10:25:23.873027742 +0000
@@ -1,73 +1,159 @@
 # How to contribute
 
-We definitely welcome your patches and contributions to gRPC! Please read the gRPC
-organization's [governance rules](https://github.com/grpc/grpc-community/blob/master/governance.md)
-and [contribution guidelines](https://github.com/grpc/grpc-community/blob/master/CONTRIBUTING.md) before proceeding.
+We welcome your patches and contributions to gRPC! Please read the gRPC
+organization's [governance
+rules](https://github.com/grpc/grpc-community/blob/master/governance.md) before
+proceeding.
 
 If you are new to GitHub, please start by reading [Pull Request howto](https://help.github.com/articles/about-pull-requests/)
 
 ## Legal requirements
 
 In order to protect both you and ourselves, you will need to sign the
-[Contributor License Agreement](https://identity.linuxfoundation.org/projects/cncf).
+[Contributor License
+Agreement](https://identity.linuxfoundation.org/projects/cncf). When you create
+your first PR, a link will be added as a comment that contains the steps needed
+to complete this process.
+
+## Getting Started
+
+A great way to start is by searching through our open issues. [Unassigned issues
+labeled as "help
+wanted"](https://github.com/grpc/grpc-go/issues?q=sort%3Aupdated-desc%20is%3Aissue%20is%3Aopen%20label%3A%22Status%3A%20Help%20Wanted%22%20no%3Aassignee)
+are especially nice for first-time contributors, as they should be well-defined
+problems that already have agreed-upon solutions.
+
+## Code Style
+
+We follow [Google's published Go style
+guide](https://google.github.io/styleguide/go/). Note that there are three
+primary documents that make up this style guide; please follow them as closely
+as possible. If a reviewer recommends something that contradicts those
+guidelines, there may be valid reasons to do so, but it should be rare.
 
 ## Guidelines for Pull Requests
-How to get your contributions merged smoothly and quickly.
+
+Please read the following carefully to ensure your contributions can be merged
+smoothly and quickly.
+
+### PR Contents
 
 - Create **small PRs** that are narrowly focused on **addressing a single
-  concern**. We often times receive PRs that are trying to fix several things at
-  a time, but only one fix is considered acceptable, nothing gets merged and
-  both author's & review's time is wasted. Create more PRs to address different
-  concerns and everyone will be happy.
-
-- If you are searching for features to work on, issues labeled [Status: Help
-  Wanted](https://github.com/grpc/grpc-go/issues?q=is%3Aissue+is%3Aopen+sort%3Aupdated-desc+label%3A%22Status%3A+Help+Wanted%22)
-  is a great place to start. These issues are well-documented and usually can be
-  resolved with a single pull request.
-
-- If you are adding a new file, make sure it has the copyright message template
-  at the top as a comment. You can copy over the message from an existing file
-  and update the year.
+  concern**. We often receive PRs that attempt to fix several things at the same
+  time, and if one part of the PR has a problem, that will hold up the entire
+  PR.
+
+- If your change does not address an **open issue** with an **agreed
+  resolution**, consider opening an issue and discussing it first. If you are
+  suggesting a behavioral or API change, consider starting with a [gRFC
+  proposal](https://github.com/grpc/proposal). Many new features that are not
+  bug fixes will require cross-language agreement.
+
+- If you want to fix **formatting or style**, consider whether your changes are
+  an obvious improvement or might be considered a personal preference. If a
+  style change is based on preference, it likely will not be accepted. If it
+  corrects widely agreed-upon anti-patterns, then please do create a PR and
+  explain the benefits of the change.
+
+- For correcting **misspellings**, please be aware that we use some terms that
+  are sometimes flagged by spell checkers. As an example, "if an only if" is
+  often written as "iff". Please do not make spelling correction changes unless
+  you are certain they are misspellings.
+
+- **All tests need to be passing** before your change can be merged. We
+  recommend you run tests locally before creating your PR to catch breakages
+  early on:
+
+  - `./scripts/vet.sh` to catch vet errors.
+  - `go test -cpu 1,4 -timeout 7m ./...` to run the tests.
+  - `go test -race -cpu 1,4 -timeout 7m ./...` to run tests in race mode.
+
+  Note that we have a multi-module repo, so `go test` commands may need to be
+  run from the root of each module in order to cause all tests to run.
+
+  *Alternatively*, you may find it easier to push your changes to your fork on
+  GitHub, which will trigger a GitHub Actions run that you can use to verify
+  everything is passing.
+
+- Note that there are two GitHub actions checks that need not be green:
+
+  1. We test the freshness of the generated proto code we maintain via the
+     `vet-proto` check. If the source proto files are updated, but our repo is
+     not updated, an optional checker will fail. This will be fixed by our team
+     in a separate PR and will not prevent the merge of your PR.
+
+  2. We run a checker that will fail if there is any change in dependencies of
+     an exported package via the `dependencies` check. If new dependencies are
+     added that are not appropriate, we may not accept your PR (see below).
+
+- If you are adding a **new file**, make sure it has the **copyright message**
+  template at the top as a comment. You can copy the message from an existing
+  file and update the year.
 
 - The grpc package should only depend on standard Go packages and a small number
-  of exceptions. If your contribution introduces new dependencies which are NOT
-  in the [list](https://godoc.org/google.golang.org/grpc?imports), you need a
-  discussion with gRPC-Go authors and consultants.
-
-- For speculative changes, consider opening an issue and discussing it first. If
-  you are suggesting a behavioral or API change, consider starting with a [gRFC
-  proposal](https://github.com/grpc/proposal).
-
-- Provide a good **PR description** as a record of **what** change is being made
-  and **why** it was made. Link to a GitHub issue if it exists.
-
-- If you want to fix formatting or style, consider whether your changes are an
-  obvious improvement or might be considered a personal preference. If a style
-  change is based on preference, it likely will not be accepted. If it corrects
-  widely agreed-upon anti-patterns, then please do create a PR and explain the
-  benefits of the change.
+  of exceptions. **If your contribution introduces new dependencies**, you will
+  need a discussion with gRPC-Go maintainers.
 
-- Unless your PR is trivial, you should expect there will be reviewer comments
-  that you'll need to address before merging. We'll mark it as `Status: Requires
-  Reporter Clarification` if we expect you to respond to these comments in a
-  timely manner. If the PR remains inactive for 6 days, it will be marked as
-  `stale` and automatically close 7 days after that if we don't hear back from
-  you.
+### PR Descriptions
 
-- Maintain **clean commit history** and use **meaningful commit messages**. PRs
-  with messy commit history are difficult to review and won't be merged. Use
-  `rebase -i upstream/master` to curate your commit history and/or to bring in
-  latest changes from master (but avoid rebasing in the middle of a code
-  review).
+- **PR titles** should start with the name of the component being addressed, or
+  the type of change. Examples: transport, client, server, round_robin, xds,
+  cleanup, deps.
 
-- Keep your PR up to date with upstream/master (if there are merge conflicts, we
-  can't really merge your change).
+- Read and follow the **guidelines for PR titles and descriptions** here:
+  https://google.github.io/eng-practices/review/developer/cl-descriptions.html
 
-- **All tests need to be passing** before your change can be merged. We
-  recommend you **run tests locally** before creating your PR to catch breakages
-  early on.
-  - `./scripts/vet.sh` to catch vet errors
-  - `go test -cpu 1,4 -timeout 7m ./...` to run the tests
-  - `go test -race -cpu 1,4 -timeout 7m ./...` to run tests in race mode
+  *particularly* the sections "First Line" and "Body is Informative".
+
+  Note: your PR description will be used as the git commit message in a
+  squash-and-merge if your PR is approved. We may make changes to this as
+  necessary.
+
+- **Does this PR relate to an open issue?** On the first line, please use the
+  tag `Fixes #<issue>` to ensure the issue is closed when the PR is merged. Or
+  use `Updates #<issue>` if the PR is related to an open issue, but does not fix
+  it. Consider filing an issue if one does not already exist.
+
+- PR descriptions *must* conclude with **release notes** as follows:
+
+  ```
+  RELEASE NOTES:
+  * <component>: <summary>
+  ```
 
-- Exceptions to the rules can be made if there's a compelling reason for doing so.
+  This need not match the PR title.
+
+  The summary must:
+
+  * be something that gRPC users will understand.
+
+  * clearly explain the feature being added, the issue being fixed, or the
+    behavior being changed, etc. If fixing a bug, be clear about how the bug
+    can be triggered by an end-user.
+
+  * begin with a capital letter and use complete sentences.
+
+  * be as short as possible to describe the change being made.
+
+  If a PR is *not* end-user visible -- e.g. a cleanup, testing change, or
+  GitHub-related, use `RELEASE NOTES: n/a`.
+
+### PR Process
+
+- Please **self-review** your code changes before sending your PR. This will
+  prevent simple, obvious errors from causing delays.
+
+- Maintain a **clean commit history** and use **meaningful commit messages**.
+  PRs with messy commit histories are difficult to review and won't be merged.
+  Before sending your PR, ensure your changes are based on top of the latest
+  `upstream/master` commits, and avoid rebasing in the middle of a code review.
+  You should **never use `git push -f`** unless absolutely necessary during a
+  review, as it can interfere with GitHub's tracking of comments.
+
+- Unless your PR is trivial, you should **expect reviewer comments** that you
+  will need to address before merging. We'll label the PR as `Status: Requires
+  Reporter Clarification` if we expect you to respond to these comments in a
+  timely manner. If the PR remains inactive for 6 days, it will be marked as
+  `stale`, and we will automatically close it after 7 days if we don't hear back
+  from you. Please feel free to ping issues or bugs if you do not get a response
+  within a week.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/MAINTAINERS.md /work/src/kubernetes/vendor/google.golang.org/grpc/MAINTAINERS.md
--- a/vendor/google.golang.org/grpc/MAINTAINERS.md	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/MAINTAINERS.md	2026-09-02 10:25:23.873027742 +0000
@@ -9,21 +9,19 @@
 
 ## Maintainers (in alphabetical order)
 
-- [aranjans](https://github.com/aranjans), Google LLC
 - [arjan-bal](https://github.com/arjan-bal), Google LLC
 - [arvindbr8](https://github.com/arvindbr8), Google LLC
 - [atollena](https://github.com/atollena), Datadog, Inc.
 - [dfawley](https://github.com/dfawley), Google LLC
 - [easwars](https://github.com/easwars), Google LLC
-- [erm-g](https://github.com/erm-g), Google LLC
 - [gtcooke94](https://github.com/gtcooke94), Google LLC
-- [purnesh42h](https://github.com/purnesh42h), Google LLC
-- [zasweq](https://github.com/zasweq), Google LLC
 
 ## Emeritus Maintainers (in alphabetical order)
 - [adelez](https://github.com/adelez)
+- [aranjans](https://github.com/aranjans)
 - [canguler](https://github.com/canguler)
 - [cesarghali](https://github.com/cesarghali)
+- [erm-g](https://github.com/erm-g)
 - [iamqizhao](https://github.com/iamqizhao)
 - [jeanbza](https://github.com/jeanbza)
 - [jtattermusch](https://github.com/jtattermusch)
@@ -32,5 +30,7 @@
 - [matt-kwong](https://github.com/matt-kwong)
 - [menghanl](https://github.com/menghanl)
 - [nicolasnoble](https://github.com/nicolasnoble)
+- [purnesh42h](https://github.com/purnesh42h)
 - [srini100](https://github.com/srini100)
 - [yongni](https://github.com/yongni)
+- [zasweq](https://github.com/zasweq)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/README.md /work/src/kubernetes/vendor/google.golang.org/grpc/README.md
--- a/vendor/google.golang.org/grpc/README.md	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/README.md	2026-09-02 10:25:23.873027742 +0000
@@ -32,6 +32,7 @@
 - [Low-level technical docs](Documentation) from this repository
 - [Performance benchmark][]
 - [Examples](examples)
+- [Contribution guidelines](CONTRIBUTING.md)
 
 ## FAQ
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/attributes/attributes.go /work/src/kubernetes/vendor/google.golang.org/grpc/attributes/attributes.go
--- a/vendor/google.golang.org/grpc/attributes/attributes.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/attributes/attributes.go	2026-09-02 10:25:23.877027748 +0000
@@ -27,6 +27,8 @@
 
 import (
 	"fmt"
+	"iter"
+	"maps"
 	"strings"
 )
 
@@ -37,37 +39,46 @@
 // any) bool', it will be called by (*Attributes).Equal to determine whether
 // two values with the same key should be considered equal.
 type Attributes struct {
-	m map[any]any
+	parent     *Attributes
+	key, value any
 }
 
 // New returns a new Attributes containing the key/value pair.
 func New(key, value any) *Attributes {
-	return &Attributes{m: map[any]any{key: value}}
+	return &Attributes{
+		key:   key,
+		value: value,
+	}
 }
 
 // WithValue returns a new Attributes containing the previous keys and values
 // and the new key/value pair.  If the same key appears multiple times, the
-// last value overwrites all previous values for that key.  To remove an
-// existing key, use a nil value.  value should not be modified later.
+// last value overwrites all previous values for that key.  value should not be
+// modified later.
+//
+// Note that Attributes do not support deletion. Avoid using untyped nil values.
+// Since the Value method returns an untyped nil when a key is absent, it is
+// impossible to distinguish between a missing key and a key explicitly set to
+// an untyped nil. If you need to represent a value being unset, consider
+// storing a specific sentinel type or a wrapper struct with a boolean field
+// indicating presence.
 func (a *Attributes) WithValue(key, value any) *Attributes {
-	if a == nil {
-		return New(key, value)
+	return &Attributes{
+		parent: a,
+		key:    key,
+		value:  value,
 	}
-	n := &Attributes{m: make(map[any]any, len(a.m)+1)}
-	for k, v := range a.m {
-		n.m[k] = v
-	}
-	n.m[key] = value
-	return n
 }
 
 // Value returns the value associated with these attributes for key, or nil if
 // no value is associated with key.  The returned value should not be modified.
 func (a *Attributes) Value(key any) any {
-	if a == nil {
-		return nil
+	for cur := a; cur != nil; cur = cur.parent {
+		if cur.key == key {
+			return cur.value
+		}
 	}
-	return a.m[key]
+	return nil
 }
 
 // Equal returns whether a and o are equivalent.  If 'Equal(o any) bool' is
@@ -83,11 +94,15 @@
 	if a == nil || o == nil {
 		return false
 	}
-	if len(a.m) != len(o.m) {
-		return false
+	if a == o {
+		return true
 	}
-	for k, v := range a.m {
-		ov, ok := o.m[k]
+	m := maps.Collect(o.all())
+	lenA := 0
+
+	for k, v := range a.all() {
+		lenA++
+		ov, ok := m[k]
 		if !ok {
 			// o missing element of a
 			return false
@@ -101,7 +116,7 @@
 			return false
 		}
 	}
-	return true
+	return lenA == len(m)
 }
 
 // String prints the attribute map. If any key or values throughout the map
@@ -110,11 +125,11 @@
 	var sb strings.Builder
 	sb.WriteString("{")
 	first := true
-	for k, v := range a.m {
+	for k, v := range a.all() {
 		if !first {
 			sb.WriteString(", ")
 		}
-		sb.WriteString(fmt.Sprintf("%q: %q ", str(k), str(v)))
+		fmt.Fprintf(&sb, "%q: %q ", str(k), str(v))
 		first = false
 	}
 	sb.WriteString("}")
@@ -139,3 +154,21 @@
 func (a *Attributes) MarshalJSON() ([]byte, error) {
 	return []byte(a.String()), nil
 }
+
+// all returns an iterator that yields all key-value pairs in the Attributes
+// chain. If a key appears multiple times, only the most recently added value
+// is yielded.
+func (a *Attributes) all() iter.Seq2[any, any] {
+	return func(yield func(any, any) bool) {
+		seen := map[any]bool{}
+		for cur := a; cur != nil; cur = cur.parent {
+			if seen[cur.key] {
+				continue
+			}
+			if !yield(cur.key, cur.value) {
+				return
+			}
+			seen[cur.key] = true
+		}
+	}
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/balancer.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/balancer.go
--- a/vendor/google.golang.org/grpc/balancer/balancer.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/balancer.go	2026-09-02 10:25:23.877027748 +0000
@@ -33,6 +33,7 @@
 	estats "google.golang.org/grpc/experimental/stats"
 	"google.golang.org/grpc/grpclog"
 	"google.golang.org/grpc/internal"
+	"google.golang.org/grpc/internal/envconfig"
 	"google.golang.org/grpc/metadata"
 	"google.golang.org/grpc/resolver"
 	"google.golang.org/grpc/serviceconfig"
@@ -46,8 +47,8 @@
 )
 
 // Register registers the balancer builder to the balancer map. b.Name
-// (lowercased) will be used as the name registered with this builder.  If the
-// Builder implements ConfigParser, ParseConfig will be called when new service
+// will be used as the name registered with this builder. If the Builder
+// implements ConfigParser, ParseConfig will be called when new service
 // configs are received by the resolver, and the result will be provided to the
 // Balancer in UpdateClientConnState.
 //
@@ -55,12 +56,12 @@
 // an init() function), and is not thread-safe. If multiple Balancers are
 // registered with the same name, the one registered last will take effect.
 func Register(b Builder) {
-	name := strings.ToLower(b.Name())
-	if name != b.Name() {
-		// TODO: Skip the use of strings.ToLower() to index the map after v1.59
-		// is released to switch to case sensitive balancer registry. Also,
-		// remove this warning and update the docstrings for Register and Get.
-		logger.Warningf("Balancer registered with name %q. grpc-go will be switching to case sensitive balancer registries soon", b.Name())
+	name := b.Name()
+	if !envconfig.CaseSensitiveBalancerRegistries {
+		name = strings.ToLower(name)
+		if name != b.Name() {
+			logger.Warningf("Balancer registered with name %q. grpc-go has switched to case sensitive balancer registries. GRPC_GO_EXPERIMENTAL_CASE_SENSITIVE_BALANCER_REGISTRIES env variable will be removed in release v1.82.0", b.Name())
+		}
 	}
 	m[name] = b
 }
@@ -75,21 +76,20 @@
 
 func init() {
 	internal.BalancerUnregister = unregisterForTesting
-	internal.ConnectedAddress = connectedAddress
-	internal.SetConnectedAddress = setConnectedAddress
 }
 
 // Get returns the resolver builder registered with the given name.
-// Note that the compare is done in a case-insensitive fashion.
+// Note that the compare is done in a case-sensitive fashion.
 // If no builder is register with the name, nil will be returned.
 func Get(name string) Builder {
-	if strings.ToLower(name) != name {
-		// TODO: Skip the use of strings.ToLower() to index the map after v1.59
-		// is released to switch to case sensitive balancer registry. Also,
-		// remove this warning and update the docstrings for Register and Get.
-		logger.Warningf("Balancer retrieved for name %q. grpc-go will be switching to case sensitive balancer registries soon", name)
+	if !envconfig.CaseSensitiveBalancerRegistries {
+		lowerName := strings.ToLower(name)
+		if lowerName != name {
+			logger.Warningf("Balancer retrieved for name %q. grpc-go has switched to case sensitive balancer registries. GRPC_GO_EXPERIMENTAL_CASE_SENSITIVE_BALANCER_REGISTRIES env variable will be removed in release v1.82.0", name)
+		}
+		name = lowerName
 	}
-	if b, ok := m[strings.ToLower(name)]; ok {
+	if b, ok := m[name]; ok {
 		return b
 	}
 	return nil
@@ -360,6 +360,10 @@
 	// call SubConn.Shutdown for its existing SubConns; however, this will be
 	// required in a future release, so it is recommended.
 	Close()
+	// ExitIdle instructs the LB policy to reconnect to backends / exit the
+	// IDLE state, if appropriate and possible.  Note that SubConns that enter
+	// the IDLE state will not reconnect until SubConn.Connect is called.
+	ExitIdle()
 }
 
 // ExitIdler is an optional interface for balancers to implement.  If
@@ -367,8 +371,8 @@
 // the ClientConn is idle.  If unimplemented, ClientConn.Connect will cause
 // all SubConns to connect.
 //
-// Notice: it will be required for all balancers to implement this in a future
-// release.
+// Deprecated: All balancers must implement this interface. This interface will
+// be removed in a future release.
 type ExitIdler interface {
 	// ExitIdle instructs the LB policy to reconnect to backends / exit the
 	// IDLE state, if appropriate and possible.  Note that SubConns that enter
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/base/balancer.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/base/balancer.go
--- a/vendor/google.golang.org/grpc/balancer/base/balancer.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/base/balancer.go	2026-09-02 10:25:23.877027748 +0000
@@ -121,8 +121,7 @@
 			sc.Connect()
 		}
 	}
-	for _, a := range b.subConns.Keys() {
-		sc, _ := b.subConns.Get(a)
+	for a, sc := range b.subConns.All() {
 		// a was removed by resolver.
 		if _, ok := addrsSet.Get(a); !ok {
 			sc.Shutdown()
@@ -171,8 +170,7 @@
 	readySCs := make(map[balancer.SubConn]SubConnInfo)
 
 	// Filter out all ready SCs from full subConn map.
-	for _, addr := range b.subConns.Keys() {
-		sc, _ := b.subConns.Get(addr)
+	for addr, sc := range b.subConns.All() {
 		if st, ok := b.scStates[sc]; ok && st == connectivity.Ready {
 			readySCs[sc] = SubConnInfo{Address: addr}
 		}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/endpointsharding/endpointsharding.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/endpointsharding/endpointsharding.go
--- a/vendor/google.golang.org/grpc/balancer/endpointsharding/endpointsharding.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/endpointsharding/endpointsharding.go	2026-09-02 10:25:23.877027748 +0000
@@ -37,6 +37,8 @@
 	"google.golang.org/grpc/resolver"
 )
 
+var randIntN = rand.IntN
+
 // ChildState is the balancer state of a child along with the endpoint which
 // identifies the child balancer.
 type ChildState struct {
@@ -45,7 +47,15 @@
 
 	// Balancer exposes only the ExitIdler interface of the child LB policy.
 	// Other methods of the child policy are called only by endpointsharding.
-	Balancer balancer.ExitIdler
+	Balancer ExitIdler
+}
+
+// ExitIdler provides access to only the ExitIdle method of the child balancer.
+type ExitIdler interface {
+	// ExitIdle instructs the LB policy to reconnect to backends / exit the
+	// IDLE state, if appropriate and possible.  Note that SubConns that enter
+	// the IDLE state will not reconnect until SubConn.Connect is called.
+	ExitIdle()
 }
 
 // Options are the options to configure the behaviour of the
@@ -104,6 +114,21 @@
 	mu sync.Mutex
 }
 
+// rotateEndpoints returns a slice of all the input endpoints rotated a random
+// amount.
+func rotateEndpoints(es []resolver.Endpoint) []resolver.Endpoint {
+	les := len(es)
+	if les == 0 {
+		return es
+	}
+	r := randIntN(les)
+	// Make a copy to avoid mutating data beyond the end of es.
+	ret := make([]resolver.Endpoint, les)
+	copy(ret, es[r:])
+	copy(ret[les-r:], es[:r])
+	return ret
+}
+
 // UpdateClientConnState creates a child for new endpoints and deletes children
 // for endpoints that are no longer present. It also updates all the children,
 // and sends a single synchronous update of the childrens' aggregated state at
@@ -125,7 +150,7 @@
 	newChildren := resolver.NewEndpointMap[*balancerWrapper]()
 
 	// Update/Create new children.
-	for _, endpoint := range state.ResolverState.Endpoints {
+	for _, endpoint := range rotateEndpoints(state.ResolverState.Endpoints) {
 		if _, ok := newChildren.Get(endpoint); ok {
 			// Endpoint child was already created, continue to avoid duplicate
 			// update.
@@ -162,8 +187,7 @@
 		}
 	}
 	// Delete old children that are no longer present.
-	for _, e := range children.Keys() {
-		child, _ := children.Get(e)
+	for e, child := range children.All() {
 		if _, ok := newChildren.Get(e); !ok {
 			child.closeLocked()
 		}
@@ -187,7 +211,7 @@
 		es.updateState()
 	}()
 	children := es.children.Load()
-	for _, child := range children.Values() {
+	for _, child := range children.All() {
 		child.resolverErrorLocked(err)
 	}
 }
@@ -200,11 +224,21 @@
 	es.childMu.Lock()
 	defer es.childMu.Unlock()
 	children := es.children.Load()
-	for _, child := range children.Values() {
+	for _, child := range children.All() {
 		child.closeLocked()
 	}
 }
 
+func (es *endpointSharding) ExitIdle() {
+	es.childMu.Lock()
+	defer es.childMu.Unlock()
+	for _, bw := range es.children.Load().All() {
+		if !bw.isClosed {
+			bw.child.ExitIdle()
+		}
+	}
+}
+
 // updateState updates this component's state. It sends the aggregated state,
 // and a picker with round robin behavior with all the child states present if
 // needed.
@@ -220,7 +254,7 @@
 	children := es.children.Load()
 	childStates := make([]ChildState, 0, children.Len())
 
-	for _, child := range children.Values() {
+	for _, child := range children.All() {
 		childState := child.childState
 		childStates = append(childStates, childState)
 		childPicker := childState.State.Picker
@@ -261,7 +295,7 @@
 	p := &pickerWithChildStates{
 		pickers:     pickers,
 		childStates: childStates,
-		next:        uint32(rand.IntN(len(pickers))),
+		next:        uint32(randIntN(len(pickers))),
 	}
 	es.cc.UpdateState(balancer.State{
 		ConnectivityState: aggState,
@@ -326,15 +360,13 @@
 // ExitIdle pings an IDLE child balancer to exit idle in a new goroutine to
 // avoid deadlocks due to synchronous balancer state updates.
 func (bw *balancerWrapper) ExitIdle() {
-	if ei, ok := bw.child.(balancer.ExitIdler); ok {
-		go func() {
-			bw.es.childMu.Lock()
-			if !bw.isClosed {
-				ei.ExitIdle()
-			}
-			bw.es.childMu.Unlock()
-		}()
-	}
+	go func() {
+		bw.es.childMu.Lock()
+		if !bw.isClosed {
+			bw.child.ExitIdle()
+		}
+		bw.es.childMu.Unlock()
+	}()
 }
 
 // updateClientConnStateLocked delivers the ClientConnState to the child
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/pickfirst/internal/internal.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/pickfirst/internal/internal.go
--- a/vendor/google.golang.org/grpc/balancer/pickfirst/internal/internal.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/pickfirst/internal/internal.go	2026-09-02 10:25:23.877027748 +0000
@@ -26,6 +26,8 @@
 var (
 	// RandShuffle pseudo-randomizes the order of addresses.
 	RandShuffle = rand.Shuffle
+	// RandFloat64 returns, as a float64, a pseudo-random number in [0.0,1.0).
+	RandFloat64 = rand.Float64
 	// TimeAfterFunc allows mocking the timer for testing connection delay
 	// related functionality.
 	TimeAfterFunc = func(d time.Duration, f func()) func() {
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirst.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirst.go
--- a/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirst.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirst.go	2026-09-02 10:25:23.877027748 +0000
@@ -16,55 +16,129 @@
  *
  */
 
-// Package pickfirst contains the pick_first load balancing policy.
+// Package pickfirst contains the pick_first load balancing policy which
+// is the universal leaf policy.
 package pickfirst
 
 import (
+	"cmp"
 	"encoding/json"
 	"errors"
 	"fmt"
-	rand "math/rand/v2"
+	"math"
+	"net"
+	"net/netip"
+	"slices"
+	"sync"
+	"time"
 
 	"google.golang.org/grpc/balancer"
 	"google.golang.org/grpc/balancer/pickfirst/internal"
 	"google.golang.org/grpc/connectivity"
+	"google.golang.org/grpc/experimental/balancer/weight"
+	expstats "google.golang.org/grpc/experimental/stats"
 	"google.golang.org/grpc/grpclog"
 	"google.golang.org/grpc/internal/envconfig"
 	internalgrpclog "google.golang.org/grpc/internal/grpclog"
 	"google.golang.org/grpc/internal/pretty"
 	"google.golang.org/grpc/resolver"
 	"google.golang.org/grpc/serviceconfig"
-
-	_ "google.golang.org/grpc/balancer/pickfirst/pickfirstleaf" // For automatically registering the new pickfirst if required.
 )
 
 func init() {
-	if envconfig.NewPickFirstEnabled {
-		return
-	}
 	balancer.Register(pickfirstBuilder{})
 }
 
-var logger = grpclog.Component("pick-first-lb")
+// Name is the name of the pick_first balancer.
+const Name = "pick_first"
+
+// enableHealthListenerKeyType is a unique key type used in resolver
+// attributes to indicate whether the health listener usage is enabled.
+type enableHealthListenerKeyType struct{}
+
+var (
+	logger               = grpclog.Component("pick-first-leaf-lb")
+	disconnectionsMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
+		Name:        "grpc.lb.pick_first.disconnections",
+		Description: "EXPERIMENTAL. Number of times the selected subchannel becomes disconnected.",
+		Unit:        "{disconnection}",
+		Labels:      []string{"grpc.target"},
+		Default:     false,
+	})
+	connectionAttemptsSucceededMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
+		Name:        "grpc.lb.pick_first.connection_attempts_succeeded",
+		Description: "EXPERIMENTAL. Number of successful connection attempts.",
+		Unit:        "{attempt}",
+		Labels:      []string{"grpc.target"},
+		Default:     false,
+	})
+	connectionAttemptsFailedMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
+		Name:        "grpc.lb.pick_first.connection_attempts_failed",
+		Description: "EXPERIMENTAL. Number of failed connection attempts.",
+		Unit:        "{attempt}",
+		Labels:      []string{"grpc.target"},
+		Default:     false,
+	})
+)
+
+const (
+	// TODO: change to pick-first when this becomes the default pick_first policy.
+	logPrefix = "[pick-first-leaf-lb %p] "
+	// connectionDelayInterval is the time to wait for during the happy eyeballs
+	// pass before starting the next connection attempt.
+	connectionDelayInterval = 250 * time.Millisecond
+)
+
+type ipAddrFamily int
 
 const (
-	// Name is the name of the pick_first balancer.
-	Name      = "pick_first"
-	logPrefix = "[pick-first-lb %p] "
+	// ipAddrFamilyUnknown represents strings that can't be parsed as an IP
+	// address.
+	ipAddrFamilyUnknown ipAddrFamily = iota
+	ipAddrFamilyV4
+	ipAddrFamilyV6
 )
 
 type pickfirstBuilder struct{}
 
-func (pickfirstBuilder) Build(cc balancer.ClientConn, _ balancer.BuildOptions) balancer.Balancer {
-	b := &pickfirstBalancer{cc: cc}
+func (pickfirstBuilder) Build(cc balancer.ClientConn, bo balancer.BuildOptions) balancer.Balancer {
+	b := &pickfirstBalancer{
+		cc:              cc,
+		target:          bo.Target.String(),
+		metricsRecorder: cc.MetricsRecorder(),
+
+		subConns:              resolver.NewAddressMapV2[*scData](),
+		state:                 connectivity.Connecting,
+		cancelConnectionTimer: func() {},
+	}
 	b.logger = internalgrpclog.NewPrefixLogger(logger, fmt.Sprintf(logPrefix, b))
 	return b
 }
 
-func (pickfirstBuilder) Name() string {
+func (b pickfirstBuilder) Name() string {
 	return Name
 }
 
+func (pickfirstBuilder) ParseConfig(js json.RawMessage) (serviceconfig.LoadBalancingConfig, error) {
+	var cfg pfConfig
+	if err := json.Unmarshal(js, &cfg); err != nil {
+		return nil, fmt.Errorf("pickfirst: unable to unmarshal LB policy config: %s, error: %v", string(js), err)
+	}
+	return cfg, nil
+}
+
+// EnableHealthListener updates the state to configure pickfirst for using a
+// generic health listener.
+//
+// # Experimental
+//
+// Notice: This API is EXPERIMENTAL and may be changed or removed in a later
+// release.
+func EnableHealthListener(state resolver.State) resolver.State {
+	state.Attributes = state.Attributes.WithValue(enableHealthListenerKeyType{}, true)
+	return state
+}
+
 type pfConfig struct {
 	serviceconfig.LoadBalancingConfig `json:"-"`
 
@@ -74,90 +148,163 @@
 	ShuffleAddressList bool `json:"shuffleAddressList"`
 }
 
-func (pickfirstBuilder) ParseConfig(js json.RawMessage) (serviceconfig.LoadBalancingConfig, error) {
-	var cfg pfConfig
-	if err := json.Unmarshal(js, &cfg); err != nil {
-		return nil, fmt.Errorf("pickfirst: unable to unmarshal LB policy config: %s, error: %v", string(js), err)
+// scData keeps track of the current state of the subConn.
+// It is not safe for concurrent access.
+type scData struct {
+	// The following fields are initialized at build time and read-only after
+	// that.
+	subConn balancer.SubConn
+	addr    resolver.Address
+
+	rawConnectivityState connectivity.State
+	// The effective connectivity state based on raw connectivity, health state
+	// and after following sticky TransientFailure behaviour defined in A62.
+	effectiveState              connectivity.State
+	lastErr                     error
+	connectionFailedInFirstPass bool
+}
+
+func (b *pickfirstBalancer) newSCData(addr resolver.Address) (*scData, error) {
+	sd := &scData{
+		rawConnectivityState: connectivity.Idle,
+		effectiveState:       connectivity.Idle,
+		addr:                 addr,
 	}
-	return cfg, nil
+	sc, err := b.cc.NewSubConn([]resolver.Address{addr}, balancer.NewSubConnOptions{
+		StateListener: func(state balancer.SubConnState) {
+			b.updateSubConnState(sd, state)
+		},
+	})
+	if err != nil {
+		return nil, err
+	}
+	sd.subConn = sc
+	return sd, nil
 }
 
 type pickfirstBalancer struct {
-	logger  *internalgrpclog.PrefixLogger
-	state   connectivity.State
-	cc      balancer.ClientConn
-	subConn balancer.SubConn
+	// The following fields are initialized at build time and read-only after
+	// that and therefore do not need to be guarded by a mutex.
+	logger          *internalgrpclog.PrefixLogger
+	cc              balancer.ClientConn
+	target          string
+	metricsRecorder expstats.MetricsRecorder // guaranteed to be non nil
+
+	// The mutex is used to ensure synchronization of updates triggered
+	// from the idle picker and the already serialized resolver,
+	// SubConn state updates.
+	mu sync.Mutex
+	// State reported to the channel based on SubConn states and resolver
+	// updates.
+	state connectivity.State
+	// scData for active subonns mapped by address.
+	subConns              *resolver.AddressMapV2[*scData]
+	addressList           addressList
+	firstPass             bool
+	numTF                 int
+	cancelConnectionTimer func()
+	healthCheckingEnabled bool
 }
 
+// ResolverError is called by the ClientConn when the name resolver produces
+// an error or when pickfirst determined the resolver update to be invalid.
 func (b *pickfirstBalancer) ResolverError(err error) {
+	b.mu.Lock()
+	defer b.mu.Unlock()
+	b.resolverErrorLocked(err)
+}
+
+func (b *pickfirstBalancer) resolverErrorLocked(err error) {
 	if b.logger.V(2) {
 		b.logger.Infof("Received error from the name resolver: %v", err)
 	}
-	if b.subConn == nil {
-		b.state = connectivity.TransientFailure
-	}
 
-	if b.state != connectivity.TransientFailure {
-		// The picker will not change since the balancer does not currently
-		// report an error.
+	// The picker will not change since the balancer does not currently
+	// report an error. If the balancer hasn't received a single good resolver
+	// update yet, transition to TRANSIENT_FAILURE.
+	if b.state != connectivity.TransientFailure && b.addressList.size() > 0 {
+		if b.logger.V(2) {
+			b.logger.Infof("Ignoring resolver error because balancer is using a previous good update.")
+		}
 		return
 	}
-	b.cc.UpdateState(balancer.State{
+
+	b.updateBalancerState(balancer.State{
 		ConnectivityState: connectivity.TransientFailure,
 		Picker:            &picker{err: fmt.Errorf("name resolver error: %v", err)},
 	})
 }
 
-// Shuffler is an interface for shuffling an address list.
-type Shuffler interface {
-	ShuffleAddressListForTesting(n int, swap func(i, j int))
-}
-
-// ShuffleAddressListForTesting pseudo-randomizes the order of addresses.  n
-// is the number of elements.  swap swaps the elements with indexes i and j.
-func ShuffleAddressListForTesting(n int, swap func(i, j int)) { rand.Shuffle(n, swap) }
-
 func (b *pickfirstBalancer) UpdateClientConnState(state balancer.ClientConnState) error {
+	b.mu.Lock()
+	defer b.mu.Unlock()
+	b.cancelConnectionTimer()
 	if len(state.ResolverState.Addresses) == 0 && len(state.ResolverState.Endpoints) == 0 {
-		// The resolver reported an empty address list. Treat it like an error by
-		// calling b.ResolverError.
-		if b.subConn != nil {
-			// Shut down the old subConn. All addresses were removed, so it is
-			// no longer valid.
-			b.subConn.Shutdown()
-			b.subConn = nil
-		}
-		b.ResolverError(errors.New("produced zero addresses"))
+		// Cleanup state pertaining to the previous resolver state.
+		// Treat an empty address list like an error by calling b.ResolverError.
+		b.closeSubConnsLocked()
+		b.addressList.updateAddrs(nil)
+		b.resolverErrorLocked(errors.New("produced zero addresses"))
 		return balancer.ErrBadResolverState
 	}
-	// We don't have to guard this block with the env var because ParseConfig
-	// already does so.
+	b.healthCheckingEnabled = state.ResolverState.Attributes.Value(enableHealthListenerKeyType{}) != nil
 	cfg, ok := state.BalancerConfig.(pfConfig)
 	if state.BalancerConfig != nil && !ok {
-		return fmt.Errorf("pickfirst: received illegal BalancerConfig (type %T): %v", state.BalancerConfig, state.BalancerConfig)
+		return fmt.Errorf("pickfirst: received illegal BalancerConfig (type %T): %v: %w", state.BalancerConfig, state.BalancerConfig, balancer.ErrBadResolverState)
 	}
 
 	if b.logger.V(2) {
 		b.logger.Infof("Received new config %s, resolver state %s", pretty.ToJSON(cfg), pretty.ToJSON(state.ResolverState))
 	}
 
-	var addrs []resolver.Address
+	var newAddrs []resolver.Address
 	if endpoints := state.ResolverState.Endpoints; len(endpoints) != 0 {
-		// Perform the optional shuffling described in gRFC A62. The shuffling will
-		// change the order of endpoints but not touch the order of the addresses
-		// within each endpoint. - A61
+		// Perform the optional shuffling described in gRFC A62. The shuffling
+		// will change the order of endpoints but not touch the order of the
+		// addresses within each endpoint. - A61
 		if cfg.ShuffleAddressList {
-			endpoints = append([]resolver.Endpoint{}, endpoints...)
-			internal.RandShuffle(len(endpoints), func(i, j int) { endpoints[i], endpoints[j] = endpoints[j], endpoints[i] })
+			if envconfig.PickFirstWeightedShuffling {
+				type weightedEndpoint struct {
+					endpoint resolver.Endpoint
+					weight   float64
+				}
+
+				// For each endpoint, compute a key as described in A113 and
+				// https://utopia.duth.gr/~pefraimi/research/data/2007EncOfAlg.pdf:
+				var weightedEndpoints []weightedEndpoint
+				for _, endpoint := range endpoints {
+					u := internal.RandFloat64() // Random number in [0.0, 1.0)
+					weight := weightAttribute(endpoint)
+					weightedEndpoints = append(weightedEndpoints, weightedEndpoint{
+						endpoint: endpoint,
+						weight:   math.Pow(u, 1.0/float64(weight)),
+					})
+				}
+				// Sort endpoints by key in descending order and reconstruct the
+				// endpoints slice.
+				slices.SortFunc(weightedEndpoints, func(a, b weightedEndpoint) int {
+					return cmp.Compare(b.weight, a.weight)
+				})
+
+				// Here, and in the "else" block below, we clone the endpoints
+				// slice to avoid mutating the resolver state. Doing the latter
+				// would lead to data races if the caller is accessing the same
+				// slice concurrently.
+				sortedEndpoints := make([]resolver.Endpoint, len(endpoints))
+				for i, we := range weightedEndpoints {
+					sortedEndpoints[i] = we.endpoint
+				}
+				endpoints = sortedEndpoints
+			} else {
+				endpoints = slices.Clone(endpoints)
+				internal.RandShuffle(len(endpoints), func(i, j int) { endpoints[i], endpoints[j] = endpoints[j], endpoints[i] })
+			}
 		}
 
-		// "Flatten the list by concatenating the ordered list of addresses for each
-		// of the endpoints, in order." - A61
+		// "Flatten the list by concatenating the ordered list of addresses for
+		// each of the endpoints, in order." - A61
 		for _, endpoint := range endpoints {
-			// "In the flattened list, interleave addresses from the two address
-			// families, as per RFC-8304 section 4." - A61
-			// TODO: support the above language.
-			addrs = append(addrs, endpoint.Addresses...)
+			newAddrs = append(newAddrs, endpoint.Addresses...)
 		}
 	} else {
 		// Endpoints not set, process addresses until we migrate resolver
@@ -166,42 +313,53 @@
 		// target do not forward the corresponding correct endpoints down/split
 		// endpoints properly. Once all balancers correctly forward endpoints
 		// down, can delete this else conditional.
-		addrs = state.ResolverState.Addresses
+		newAddrs = state.ResolverState.Addresses
 		if cfg.ShuffleAddressList {
-			addrs = append([]resolver.Address{}, addrs...)
-			rand.Shuffle(len(addrs), func(i, j int) { addrs[i], addrs[j] = addrs[j], addrs[i] })
+			newAddrs = append([]resolver.Address{}, newAddrs...)
+			internal.RandShuffle(len(newAddrs), func(i, j int) { newAddrs[i], newAddrs[j] = newAddrs[j], newAddrs[i] })
 		}
 	}
 
-	if b.subConn != nil {
-		b.cc.UpdateAddresses(b.subConn, addrs)
+	// If an address appears in multiple endpoints or in the same endpoint
+	// multiple times, we keep it only once. We will create only one SubConn
+	// for the address because an AddressMap is used to store SubConns.
+	// Not de-duplicating would result in attempting to connect to the same
+	// SubConn multiple times in the same pass. We don't want this.
+	newAddrs = deDupAddresses(newAddrs)
+	newAddrs = interleaveAddresses(newAddrs)
+
+	prevAddr := b.addressList.currentAddress()
+	prevSCData, found := b.subConns.Get(prevAddr)
+	prevAddrsCount := b.addressList.size()
+	isPrevRawConnectivityStateReady := found && prevSCData.rawConnectivityState == connectivity.Ready
+	b.addressList.updateAddrs(newAddrs)
+
+	// If the previous ready SubConn exists in new address list,
+	// keep this connection and don't create new SubConns.
+	if isPrevRawConnectivityStateReady && b.addressList.seekTo(prevAddr) {
 		return nil
 	}
 
-	var subConn balancer.SubConn
-	subConn, err := b.cc.NewSubConn(addrs, balancer.NewSubConnOptions{
-		StateListener: func(state balancer.SubConnState) {
-			b.updateSubConnState(subConn, state)
-		},
-	})
-	if err != nil {
-		if b.logger.V(2) {
-			b.logger.Infof("Failed to create new SubConn: %v", err)
-		}
-		b.state = connectivity.TransientFailure
-		b.cc.UpdateState(balancer.State{
-			ConnectivityState: connectivity.TransientFailure,
-			Picker:            &picker{err: fmt.Errorf("error creating connection: %v", err)},
+	b.reconcileSubConnsLocked(newAddrs)
+	// If it's the first resolver update or the balancer was already READY
+	// (but the new address list does not contain the ready SubConn) or
+	// CONNECTING, enter CONNECTING.
+	// We may be in TRANSIENT_FAILURE due to a previous empty address list,
+	// we should still enter CONNECTING because the sticky TF behaviour
+	//  mentioned in A62 applies only when the TRANSIENT_FAILURE is reported
+	// due to connectivity failures.
+	if isPrevRawConnectivityStateReady || b.state == connectivity.Connecting || prevAddrsCount == 0 {
+		// Start connection attempt at first address.
+		b.forceUpdateConcludedStateLocked(balancer.State{
+			ConnectivityState: connectivity.Connecting,
+			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
 		})
-		return balancer.ErrBadResolverState
+		b.startFirstPassLocked()
+	} else if b.state == connectivity.TransientFailure {
+		// If we're in TRANSIENT_FAILURE, we stay in TRANSIENT_FAILURE until
+		// we're READY. See A62.
+		b.startFirstPassLocked()
 	}
-	b.subConn = subConn
-	b.state = connectivity.Idle
-	b.cc.UpdateState(balancer.State{
-		ConnectivityState: connectivity.Connecting,
-		Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
-	})
-	b.subConn.Connect()
 	return nil
 }
 
@@ -211,63 +369,484 @@
 	b.logger.Errorf("UpdateSubConnState(%v, %+v) called unexpectedly", subConn, state)
 }
 
-func (b *pickfirstBalancer) updateSubConnState(subConn balancer.SubConn, state balancer.SubConnState) {
-	if b.logger.V(2) {
-		b.logger.Infof("Received SubConn state update: %p, %+v", subConn, state)
+func (b *pickfirstBalancer) Close() {
+	b.mu.Lock()
+	defer b.mu.Unlock()
+	b.closeSubConnsLocked()
+	b.cancelConnectionTimer()
+	b.state = connectivity.Shutdown
+}
+
+// ExitIdle moves the balancer out of idle state. It can be called concurrently
+// by the idlePicker and clientConn so access to variables should be
+// synchronized.
+func (b *pickfirstBalancer) ExitIdle() {
+	b.mu.Lock()
+	defer b.mu.Unlock()
+	if b.state == connectivity.Idle {
+		// Move the balancer into CONNECTING state immediately. This is done to
+		// avoid staying in IDLE if a resolver update arrives before the first
+		// SubConn reports CONNECTING.
+		b.updateBalancerState(balancer.State{
+			ConnectivityState: connectivity.Connecting,
+			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
+		})
+		b.startFirstPassLocked()
+	}
+}
+
+func (b *pickfirstBalancer) startFirstPassLocked() {
+	b.firstPass = true
+	b.numTF = 0
+	// Reset the connection attempt record for existing SubConns.
+	for _, sd := range b.subConns.All() {
+		sd.connectionFailedInFirstPass = false
+	}
+	b.requestConnectionLocked()
+}
+
+func (b *pickfirstBalancer) closeSubConnsLocked() {
+	for _, sd := range b.subConns.All() {
+		sd.subConn.Shutdown()
+	}
+	b.subConns = resolver.NewAddressMapV2[*scData]()
+}
+
+// deDupAddresses ensures that each address appears only once in the slice.
+func deDupAddresses(addrs []resolver.Address) []resolver.Address {
+	seenAddrs := resolver.NewAddressMapV2[bool]()
+	retAddrs := []resolver.Address{}
+
+	for _, addr := range addrs {
+		if _, ok := seenAddrs.Get(addr); ok {
+			continue
+		}
+		seenAddrs.Set(addr, true)
+		retAddrs = append(retAddrs, addr)
+	}
+	return retAddrs
+}
+
+// interleaveAddresses interleaves addresses of both families (IPv4 and IPv6)
+// as per RFC-8305 section 4.
+// Whichever address family is first in the list is followed by an address of
+// the other address family; that is, if the first address in the list is IPv6,
+// then the first IPv4 address should be moved up in the list to be second in
+// the list. It doesn't support configuring "First Address Family Count", i.e.
+// there will always be a single member of the first address family at the
+// beginning of the interleaved list.
+// Addresses that are neither IPv4 nor IPv6 are treated as part of a third
+// "unknown" family for interleaving.
+// See: https://datatracker.ietf.org/doc/html/rfc8305#autoid-6
+func interleaveAddresses(addrs []resolver.Address) []resolver.Address {
+	familyAddrsMap := map[ipAddrFamily][]resolver.Address{}
+	interleavingOrder := []ipAddrFamily{}
+	for _, addr := range addrs {
+		family := addressFamily(addr.Addr)
+		if _, found := familyAddrsMap[family]; !found {
+			interleavingOrder = append(interleavingOrder, family)
+		}
+		familyAddrsMap[family] = append(familyAddrsMap[family], addr)
+	}
+
+	interleavedAddrs := make([]resolver.Address, 0, len(addrs))
+
+	for curFamilyIdx := 0; len(interleavedAddrs) < len(addrs); curFamilyIdx = (curFamilyIdx + 1) % len(interleavingOrder) {
+		// Some IP types may have fewer addresses than others, so we look for
+		// the next type that has a remaining member to add to the interleaved
+		// list.
+		family := interleavingOrder[curFamilyIdx]
+		remainingMembers := familyAddrsMap[family]
+		if len(remainingMembers) > 0 {
+			interleavedAddrs = append(interleavedAddrs, remainingMembers[0])
+			familyAddrsMap[family] = remainingMembers[1:]
+		}
+	}
+
+	return interleavedAddrs
+}
+
+// addressFamily returns the ipAddrFamily after parsing the address string.
+// If the address isn't of the format "ip-address:port", it returns
+// ipAddrFamilyUnknown. The address may be valid even if it's not an IP when
+// using a resolver like passthrough where the address may be a hostname in
+// some format that the dialer can resolve.
+func addressFamily(address string) ipAddrFamily {
+	// Parse the IP after removing the port.
+	host, _, err := net.SplitHostPort(address)
+	if err != nil {
+		return ipAddrFamilyUnknown
+	}
+	ip, err := netip.ParseAddr(host)
+	if err != nil {
+		return ipAddrFamilyUnknown
+	}
+	switch {
+	case ip.Is4() || ip.Is4In6():
+		return ipAddrFamilyV4
+	case ip.Is6():
+		return ipAddrFamilyV6
+	default:
+		return ipAddrFamilyUnknown
+	}
+}
+
+// reconcileSubConnsLocked updates the active subchannels based on a new address
+// list from the resolver. It does this by:
+//   - closing subchannels: any existing subchannels associated with addresses
+//     that are no longer in the updated list are shut down.
+//   - removing subchannels: entries for these closed subchannels are removed
+//     from the subchannel map.
+//
+// This ensures that the subchannel map accurately reflects the current set of
+// addresses received from the name resolver.
+func (b *pickfirstBalancer) reconcileSubConnsLocked(newAddrs []resolver.Address) {
+	newAddrsMap := resolver.NewAddressMapV2[bool]()
+	for _, addr := range newAddrs {
+		newAddrsMap.Set(addr, true)
+	}
+
+	for oldAddr := range b.subConns.All() {
+		if _, ok := newAddrsMap.Get(oldAddr); ok {
+			continue
+		}
+		val, _ := b.subConns.Get(oldAddr)
+		val.subConn.Shutdown()
+		b.subConns.Delete(oldAddr)
+	}
+}
+
+// shutdownRemainingLocked shuts down remaining subConns. Called when a subConn
+// becomes ready, which means that all other subConn must be shutdown.
+func (b *pickfirstBalancer) shutdownRemainingLocked(selected *scData) {
+	b.cancelConnectionTimer()
+	for _, sd := range b.subConns.All() {
+		if sd.subConn != selected.subConn {
+			sd.subConn.Shutdown()
+		}
+	}
+	b.subConns = resolver.NewAddressMapV2[*scData]()
+	b.subConns.Set(selected.addr, selected)
+}
+
+// requestConnectionLocked starts connecting on the subchannel corresponding to
+// the current address. If no subchannel exists, one is created. If the current
+// subchannel is in TransientFailure, a connection to the next address is
+// attempted until a subchannel is found.
+func (b *pickfirstBalancer) requestConnectionLocked() {
+	if !b.addressList.isValid() {
+		return
 	}
-	if b.subConn != subConn {
+	var lastErr error
+	for valid := true; valid; valid = b.addressList.increment() {
+		curAddr := b.addressList.currentAddress()
+		sd, ok := b.subConns.Get(curAddr)
+		if !ok {
+			var err error
+			// We want to assign the new scData to sd from the outer scope,
+			// hence we can't use := below.
+			sd, err = b.newSCData(curAddr)
+			if err != nil {
+				// This should never happen, unless the clientConn is being shut
+				// down.
+				if b.logger.V(2) {
+					b.logger.Infof("Failed to create a subConn for address %v: %v", curAddr.String(), err)
+				}
+				// Do nothing, the LB policy will be closed soon.
+				return
+			}
+			b.subConns.Set(curAddr, sd)
+		}
+
+		switch sd.rawConnectivityState {
+		case connectivity.Idle:
+			sd.subConn.Connect()
+			b.scheduleNextConnectionLocked()
+			return
+		case connectivity.TransientFailure:
+			// The SubConn is being re-used and failed during a previous pass
+			// over the addressList. It has not completed backoff yet.
+			// Mark it as having failed and try the next address.
+			sd.connectionFailedInFirstPass = true
+			lastErr = sd.lastErr
+			continue
+		case connectivity.Connecting:
+			// Wait for the connection attempt to complete or the timer to fire
+			// before attempting the next address.
+			b.scheduleNextConnectionLocked()
+			return
+		default:
+			b.logger.Errorf("SubConn with unexpected state %v present in SubConns map.", sd.rawConnectivityState)
+			return
+
+		}
+	}
+
+	// All the remaining addresses in the list are in TRANSIENT_FAILURE, end the
+	// first pass if possible.
+	b.endFirstPassIfPossibleLocked(lastErr)
+}
+
+func (b *pickfirstBalancer) scheduleNextConnectionLocked() {
+	b.cancelConnectionTimer()
+	if !b.addressList.hasNext() {
+		return
+	}
+	curAddr := b.addressList.currentAddress()
+	cancelled := false // Access to this is protected by the balancer's mutex.
+	closeFn := internal.TimeAfterFunc(connectionDelayInterval, func() {
+		b.mu.Lock()
+		defer b.mu.Unlock()
+		// If the scheduled task is cancelled while acquiring the mutex, return.
+		if cancelled {
+			return
+		}
 		if b.logger.V(2) {
-			b.logger.Infof("Ignored state change because subConn is not recognized")
+			b.logger.Infof("Happy Eyeballs timer expired while waiting for connection to %q.", curAddr.Addr)
+		}
+		if b.addressList.increment() {
+			b.requestConnectionLocked()
 		}
+	})
+	// Access to the cancellation callback held by the balancer is guarded by
+	// the balancer's mutex, so it's safe to set the boolean from the callback.
+	b.cancelConnectionTimer = sync.OnceFunc(func() {
+		cancelled = true
+		closeFn()
+	})
+}
+
+func (b *pickfirstBalancer) updateSubConnState(sd *scData, newState balancer.SubConnState) {
+	b.mu.Lock()
+	defer b.mu.Unlock()
+	oldState := sd.rawConnectivityState
+	sd.rawConnectivityState = newState.ConnectivityState
+	// Previously relevant SubConns can still callback with state updates.
+	// To prevent pickers from returning these obsolete SubConns, this logic
+	// is included to check if the current list of active SubConns includes this
+	// SubConn.
+	if !b.isActiveSCData(sd) {
 		return
 	}
-	if state.ConnectivityState == connectivity.Shutdown {
-		b.subConn = nil
+	if newState.ConnectivityState == connectivity.Shutdown {
+		sd.effectiveState = connectivity.Shutdown
 		return
 	}
 
-	switch state.ConnectivityState {
-	case connectivity.Ready:
-		b.cc.UpdateState(balancer.State{
-			ConnectivityState: state.ConnectivityState,
-			Picker:            &picker{result: balancer.PickResult{SubConn: subConn}},
-		})
-	case connectivity.Connecting:
-		if b.state == connectivity.TransientFailure {
-			// We stay in TransientFailure until we are Ready. See A62.
+	// Record a connection attempt when exiting CONNECTING.
+	if newState.ConnectivityState == connectivity.TransientFailure {
+		sd.connectionFailedInFirstPass = true
+		connectionAttemptsFailedMetric.Record(b.metricsRecorder, 1, b.target)
+	}
+
+	if newState.ConnectivityState == connectivity.Ready {
+		connectionAttemptsSucceededMetric.Record(b.metricsRecorder, 1, b.target)
+		b.shutdownRemainingLocked(sd)
+		if !b.addressList.seekTo(sd.addr) {
+			// This should not fail as we should have only one SubConn after
+			// entering READY. The SubConn should be present in the addressList.
+			b.logger.Errorf("Address %q not found address list in %v", sd.addr, b.addressList.addresses)
 			return
 		}
-		b.cc.UpdateState(balancer.State{
-			ConnectivityState: state.ConnectivityState,
+		if !b.healthCheckingEnabled {
+			if b.logger.V(2) {
+				b.logger.Infof("SubConn %p reported connectivity state READY and the health listener is disabled. Transitioning SubConn to READY.", sd.subConn)
+			}
+
+			sd.effectiveState = connectivity.Ready
+			b.updateBalancerState(balancer.State{
+				ConnectivityState: connectivity.Ready,
+				Picker:            &picker{result: balancer.PickResult{SubConn: sd.subConn}},
+			})
+			return
+		}
+		if b.logger.V(2) {
+			b.logger.Infof("SubConn %p reported connectivity state READY. Registering health listener.", sd.subConn)
+		}
+		// Send a CONNECTING update to take the SubConn out of sticky-TF if
+		// required.
+		sd.effectiveState = connectivity.Connecting
+		b.updateBalancerState(balancer.State{
+			ConnectivityState: connectivity.Connecting,
 			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
 		})
+		sd.subConn.RegisterHealthListener(func(scs balancer.SubConnState) {
+			b.updateSubConnHealthState(sd, scs)
+		})
+		return
+	}
+
+	// If the LB policy is READY, and it receives a subchannel state change,
+	// it means that the READY subchannel has failed.
+	// A SubConn can also transition from CONNECTING directly to IDLE when
+	// a transport is successfully created, but the connection fails
+	// before the SubConn can send the notification for READY. We treat
+	// this as a successful connection and transition to IDLE.
+	// TODO: https://github.com/grpc/grpc-go/issues/7862 - Remove the second
+	// part of the if condition below once the issue is fixed.
+	if oldState == connectivity.Ready || (oldState == connectivity.Connecting && newState.ConnectivityState == connectivity.Idle) {
+		// Once a transport fails, the balancer enters IDLE and starts from
+		// the first address when the picker is used.
+		b.shutdownRemainingLocked(sd)
+		sd.effectiveState = newState.ConnectivityState
+		// READY SubConn interspliced in between CONNECTING and IDLE, need to
+		// account for that.
+		if oldState == connectivity.Connecting {
+			// A known issue (https://github.com/grpc/grpc-go/issues/7862)
+			// causes a race that prevents the READY state change notification.
+			// This works around it.
+			connectionAttemptsSucceededMetric.Record(b.metricsRecorder, 1, b.target)
+		}
+		disconnectionsMetric.Record(b.metricsRecorder, 1, b.target)
+		b.addressList.reset()
+		b.updateBalancerState(balancer.State{
+			ConnectivityState: connectivity.Idle,
+			Picker:            &idlePicker{exitIdle: sync.OnceFunc(b.ExitIdle)},
+		})
+		return
+	}
+
+	if b.firstPass {
+		switch newState.ConnectivityState {
+		case connectivity.Connecting:
+			// The effective state can be in either IDLE, CONNECTING or
+			// TRANSIENT_FAILURE. If it's  TRANSIENT_FAILURE, stay in
+			// TRANSIENT_FAILURE until it's READY. See A62.
+			if sd.effectiveState != connectivity.TransientFailure {
+				sd.effectiveState = connectivity.Connecting
+				b.updateBalancerState(balancer.State{
+					ConnectivityState: connectivity.Connecting,
+					Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
+				})
+			}
+		case connectivity.TransientFailure:
+			sd.lastErr = newState.ConnectionError
+			sd.effectiveState = connectivity.TransientFailure
+			// Since we're re-using common SubConns while handling resolver
+			// updates, we could receive an out of turn TRANSIENT_FAILURE from
+			// a pass over the previous address list. Happy Eyeballs will also
+			// cause out of order updates to arrive.
+
+			if curAddr := b.addressList.currentAddress(); equalAddressIgnoringBalAttributes(&curAddr, &sd.addr) {
+				b.cancelConnectionTimer()
+				if b.addressList.increment() {
+					b.requestConnectionLocked()
+					return
+				}
+			}
+
+			// End the first pass if we've seen a TRANSIENT_FAILURE from all
+			// SubConns once.
+			b.endFirstPassIfPossibleLocked(newState.ConnectionError)
+		}
+		return
+	}
+
+	// We have finished the first pass, keep re-connecting failing SubConns.
+	switch newState.ConnectivityState {
+	case connectivity.TransientFailure:
+		b.numTF = (b.numTF + 1) % b.subConns.Len()
+		sd.lastErr = newState.ConnectionError
+		if b.numTF%b.subConns.Len() == 0 {
+			b.updateBalancerState(balancer.State{
+				ConnectivityState: connectivity.TransientFailure,
+				Picker:            &picker{err: newState.ConnectionError},
+			})
+		}
+		// We don't need to request re-resolution since the SubConn already
+		// does that before reporting TRANSIENT_FAILURE.
+		// TODO: #7534 - Move re-resolution requests from SubConn into
+		// pick_first.
 	case connectivity.Idle:
-		if b.state == connectivity.TransientFailure {
-			// We stay in TransientFailure until we are Ready. Also kick the
-			// subConn out of Idle into Connecting. See A62.
-			b.subConn.Connect()
+		sd.subConn.Connect()
+	}
+}
+
+// endFirstPassIfPossibleLocked ends the first happy-eyeballs pass if all the
+// addresses are tried and their SubConns have reported a failure.
+func (b *pickfirstBalancer) endFirstPassIfPossibleLocked(lastErr error) {
+	// An optimization to avoid iterating over the entire SubConn map.
+	if b.addressList.isValid() {
+		return
+	}
+	// Connect() has been called on all the SubConns. The first pass can be
+	// ended if all the SubConns have reported a failure.
+	for _, sd := range b.subConns.All() {
+		if !sd.connectionFailedInFirstPass {
 			return
 		}
-		b.cc.UpdateState(balancer.State{
-			ConnectivityState: state.ConnectivityState,
-			Picker:            &idlePicker{subConn: subConn},
+	}
+	b.firstPass = false
+	b.updateBalancerState(balancer.State{
+		ConnectivityState: connectivity.TransientFailure,
+		Picker:            &picker{err: lastErr},
+	})
+	// Start re-connecting all the SubConns that are already in IDLE.
+	for _, sd := range b.subConns.All() {
+		if sd.rawConnectivityState == connectivity.Idle {
+			sd.subConn.Connect()
+		}
+	}
+}
+
+func (b *pickfirstBalancer) isActiveSCData(sd *scData) bool {
+	activeSD, found := b.subConns.Get(sd.addr)
+	return found && activeSD == sd
+}
+
+func (b *pickfirstBalancer) updateSubConnHealthState(sd *scData, state balancer.SubConnState) {
+	b.mu.Lock()
+	defer b.mu.Unlock()
+	// Previously relevant SubConns can still callback with state updates.
+	// To prevent pickers from returning these obsolete SubConns, this logic
+	// is included to check if the current list of active SubConns includes
+	// this SubConn.
+	if !b.isActiveSCData(sd) {
+		return
+	}
+	sd.effectiveState = state.ConnectivityState
+	switch state.ConnectivityState {
+	case connectivity.Ready:
+		b.updateBalancerState(balancer.State{
+			ConnectivityState: connectivity.Ready,
+			Picker:            &picker{result: balancer.PickResult{SubConn: sd.subConn}},
 		})
 	case connectivity.TransientFailure:
-		b.cc.UpdateState(balancer.State{
-			ConnectivityState: state.ConnectivityState,
-			Picker:            &picker{err: state.ConnectionError},
+		b.updateBalancerState(balancer.State{
+			ConnectivityState: connectivity.TransientFailure,
+			Picker:            &picker{err: fmt.Errorf("pickfirst: health check failure: %v", state.ConnectionError)},
+		})
+	case connectivity.Connecting:
+		b.updateBalancerState(balancer.State{
+			ConnectivityState: connectivity.Connecting,
+			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
 		})
+	default:
+		b.logger.Errorf("Got unexpected health update for SubConn %p: %v", state)
 	}
-	b.state = state.ConnectivityState
 }
 
-func (b *pickfirstBalancer) Close() {
+// updateBalancerState stores the state reported to the channel and calls
+// ClientConn.UpdateState(). As an optimization, it avoids sending duplicate
+// updates to the channel.
+func (b *pickfirstBalancer) updateBalancerState(newState balancer.State) {
+	// In case of TransientFailures allow the picker to be updated to update
+	// the connectivity error, in all other cases don't send duplicate state
+	// updates.
+	if newState.ConnectivityState == b.state && b.state != connectivity.TransientFailure {
+		return
+	}
+	b.forceUpdateConcludedStateLocked(newState)
 }
 
-func (b *pickfirstBalancer) ExitIdle() {
-	if b.subConn != nil && b.state == connectivity.Idle {
-		b.subConn.Connect()
-	}
+// forceUpdateConcludedStateLocked stores the state reported to the channel and
+// calls ClientConn.UpdateState().
+// A separate function is defined to force update the ClientConn state since the
+// channel doesn't correctly assume that LB policies start in CONNECTING and
+// relies on LB policy to send an initial CONNECTING update.
+func (b *pickfirstBalancer) forceUpdateConcludedStateLocked(newState balancer.State) {
+	b.state = newState.ConnectivityState
+	b.cc.UpdateState(newState)
 }
 
 type picker struct {
@@ -282,10 +861,101 @@
 // idlePicker is used when the SubConn is IDLE and kicks the SubConn into
 // CONNECTING when Pick is called.
 type idlePicker struct {
-	subConn balancer.SubConn
+	exitIdle func()
 }
 
 func (i *idlePicker) Pick(balancer.PickInfo) (balancer.PickResult, error) {
-	i.subConn.Connect()
+	i.exitIdle()
 	return balancer.PickResult{}, balancer.ErrNoSubConnAvailable
 }
+
+// addressList manages sequentially iterating over addresses present in a list
+// of endpoints. It provides a 1 dimensional view of the addresses present in
+// the endpoints.
+// This type is not safe for concurrent access.
+type addressList struct {
+	addresses []resolver.Address
+	idx       int
+}
+
+func (al *addressList) isValid() bool {
+	return al.idx < len(al.addresses)
+}
+
+func (al *addressList) size() int {
+	return len(al.addresses)
+}
+
+// increment moves to the next index in the address list.
+// This method returns false if it went off the list, true otherwise.
+func (al *addressList) increment() bool {
+	if !al.isValid() {
+		return false
+	}
+	al.idx++
+	return al.idx < len(al.addresses)
+}
+
+// currentAddress returns the current address pointed to in the addressList.
+// If the list is in an invalid state, it returns an empty address instead.
+func (al *addressList) currentAddress() resolver.Address {
+	if !al.isValid() {
+		return resolver.Address{}
+	}
+	return al.addresses[al.idx]
+}
+
+func (al *addressList) reset() {
+	al.idx = 0
+}
+
+func (al *addressList) updateAddrs(addrs []resolver.Address) {
+	al.addresses = addrs
+	al.reset()
+}
+
+// seekTo returns false if the needle was not found and the current index was
+// left unchanged.
+func (al *addressList) seekTo(needle resolver.Address) bool {
+	for ai, addr := range al.addresses {
+		if !equalAddressIgnoringBalAttributes(&addr, &needle) {
+			continue
+		}
+		al.idx = ai
+		return true
+	}
+	return false
+}
+
+// hasNext returns whether incrementing the addressList will result in moving
+// past the end of the list. If the list has already moved past the end, it
+// returns false.
+func (al *addressList) hasNext() bool {
+	if !al.isValid() {
+		return false
+	}
+	return al.idx+1 < len(al.addresses)
+}
+
+// equalAddressIgnoringBalAttributes returns true is a and b are considered
+// equal. This is different from the Equal method on the resolver.Address type
+// which considers all fields to determine equality. Here, we only consider
+// fields that are meaningful to the SubConn.
+func equalAddressIgnoringBalAttributes(a, b *resolver.Address) bool {
+	return a.Addr == b.Addr && a.ServerName == b.ServerName &&
+		a.Attributes.Equal(b.Attributes)
+}
+
+// weightAttribute is a convenience function which returns the value of the
+// weight endpoint Attribute.
+//
+// When used in the xDS context, the weight attribute is guaranteed to be
+// non-zero. But, when used in a non-xDS context, the weight attribute could be
+// unset. A Default of 1 is used in the latter case.
+func weightAttribute(e resolver.Endpoint) uint32 {
+	w := weight.FromEndpoint(e).Weight
+	if w == 0 {
+		return 1
+	}
+	return w
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirstleaf/pickfirstleaf.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirstleaf/pickfirstleaf.go
--- a/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirstleaf/pickfirstleaf.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/pickfirst/pickfirstleaf/pickfirstleaf.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,927 +0,0 @@
-/*
- *
- * Copyright 2024 gRPC authors.
- *
- * Licensed under the Apache License, Version 2.0 (the "License");
- * you may not use this file except in compliance with the License.
- * You may obtain a copy of the License at
- *
- *     http://www.apache.org/licenses/LICENSE-2.0
- *
- * Unless required by applicable law or agreed to in writing, software
- * distributed under the License is distributed on an "AS IS" BASIS,
- * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
- * See the License for the specific language governing permissions and
- * limitations under the License.
- *
- */
-
-// Package pickfirstleaf contains the pick_first load balancing policy which
-// will be the universal leaf policy after dualstack changes are implemented.
-//
-// # Experimental
-//
-// Notice: This package is EXPERIMENTAL and may be changed or removed in a
-// later release.
-package pickfirstleaf
-
-import (
-	"encoding/json"
-	"errors"
-	"fmt"
-	"net"
-	"net/netip"
-	"sync"
-	"time"
-
-	"google.golang.org/grpc/balancer"
-	"google.golang.org/grpc/balancer/pickfirst/internal"
-	"google.golang.org/grpc/connectivity"
-	expstats "google.golang.org/grpc/experimental/stats"
-	"google.golang.org/grpc/grpclog"
-	"google.golang.org/grpc/internal/envconfig"
-	internalgrpclog "google.golang.org/grpc/internal/grpclog"
-	"google.golang.org/grpc/internal/pretty"
-	"google.golang.org/grpc/resolver"
-	"google.golang.org/grpc/serviceconfig"
-)
-
-func init() {
-	if envconfig.NewPickFirstEnabled {
-		// Register as the default pick_first balancer.
-		Name = "pick_first"
-	}
-	balancer.Register(pickfirstBuilder{})
-}
-
-type (
-	// enableHealthListenerKeyType is a unique key type used in resolver
-	// attributes to indicate whether the health listener usage is enabled.
-	enableHealthListenerKeyType struct{}
-	// managedByPickfirstKeyType is an attribute key type to inform Outlier
-	// Detection that the generic health listener is being used.
-	// TODO: https://github.com/grpc/grpc-go/issues/7915 - Remove this when
-	// implementing the dualstack design. This is a hack. Once Dualstack is
-	// completed, outlier detection will stop sending ejection updates through
-	// the connectivity listener.
-	managedByPickfirstKeyType struct{}
-)
-
-var (
-	logger = grpclog.Component("pick-first-leaf-lb")
-	// Name is the name of the pick_first_leaf balancer.
-	// It is changed to "pick_first" in init() if this balancer is to be
-	// registered as the default pickfirst.
-	Name                 = "pick_first_leaf"
-	disconnectionsMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
-		Name:        "grpc.lb.pick_first.disconnections",
-		Description: "EXPERIMENTAL. Number of times the selected subchannel becomes disconnected.",
-		Unit:        "disconnection",
-		Labels:      []string{"grpc.target"},
-		Default:     false,
-	})
-	connectionAttemptsSucceededMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
-		Name:        "grpc.lb.pick_first.connection_attempts_succeeded",
-		Description: "EXPERIMENTAL. Number of successful connection attempts.",
-		Unit:        "attempt",
-		Labels:      []string{"grpc.target"},
-		Default:     false,
-	})
-	connectionAttemptsFailedMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
-		Name:        "grpc.lb.pick_first.connection_attempts_failed",
-		Description: "EXPERIMENTAL. Number of failed connection attempts.",
-		Unit:        "attempt",
-		Labels:      []string{"grpc.target"},
-		Default:     false,
-	})
-)
-
-const (
-	// TODO: change to pick-first when this becomes the default pick_first policy.
-	logPrefix = "[pick-first-leaf-lb %p] "
-	// connectionDelayInterval is the time to wait for during the happy eyeballs
-	// pass before starting the next connection attempt.
-	connectionDelayInterval = 250 * time.Millisecond
-)
-
-type ipAddrFamily int
-
-const (
-	// ipAddrFamilyUnknown represents strings that can't be parsed as an IP
-	// address.
-	ipAddrFamilyUnknown ipAddrFamily = iota
-	ipAddrFamilyV4
-	ipAddrFamilyV6
-)
-
-type pickfirstBuilder struct{}
-
-func (pickfirstBuilder) Build(cc balancer.ClientConn, bo balancer.BuildOptions) balancer.Balancer {
-	b := &pickfirstBalancer{
-		cc:              cc,
-		target:          bo.Target.String(),
-		metricsRecorder: cc.MetricsRecorder(),
-
-		subConns:              resolver.NewAddressMapV2[*scData](),
-		state:                 connectivity.Connecting,
-		cancelConnectionTimer: func() {},
-	}
-	b.logger = internalgrpclog.NewPrefixLogger(logger, fmt.Sprintf(logPrefix, b))
-	return b
-}
-
-func (b pickfirstBuilder) Name() string {
-	return Name
-}
-
-func (pickfirstBuilder) ParseConfig(js json.RawMessage) (serviceconfig.LoadBalancingConfig, error) {
-	var cfg pfConfig
-	if err := json.Unmarshal(js, &cfg); err != nil {
-		return nil, fmt.Errorf("pickfirst: unable to unmarshal LB policy config: %s, error: %v", string(js), err)
-	}
-	return cfg, nil
-}
-
-// EnableHealthListener updates the state to configure pickfirst for using a
-// generic health listener.
-func EnableHealthListener(state resolver.State) resolver.State {
-	state.Attributes = state.Attributes.WithValue(enableHealthListenerKeyType{}, true)
-	return state
-}
-
-// IsManagedByPickfirst returns whether an address belongs to a SubConn
-// managed by the pickfirst LB policy.
-// TODO: https://github.com/grpc/grpc-go/issues/7915 - This is a hack to disable
-// outlier_detection via the with connectivity listener when using pick_first.
-// Once Dualstack changes are complete, all SubConns will be created by
-// pick_first and outlier detection will only use the health listener for
-// ejection. This hack can then be removed.
-func IsManagedByPickfirst(addr resolver.Address) bool {
-	return addr.BalancerAttributes.Value(managedByPickfirstKeyType{}) != nil
-}
-
-type pfConfig struct {
-	serviceconfig.LoadBalancingConfig `json:"-"`
-
-	// If set to true, instructs the LB policy to shuffle the order of the list
-	// of endpoints received from the name resolver before attempting to
-	// connect to them.
-	ShuffleAddressList bool `json:"shuffleAddressList"`
-}
-
-// scData keeps track of the current state of the subConn.
-// It is not safe for concurrent access.
-type scData struct {
-	// The following fields are initialized at build time and read-only after
-	// that.
-	subConn balancer.SubConn
-	addr    resolver.Address
-
-	rawConnectivityState connectivity.State
-	// The effective connectivity state based on raw connectivity, health state
-	// and after following sticky TransientFailure behaviour defined in A62.
-	effectiveState              connectivity.State
-	lastErr                     error
-	connectionFailedInFirstPass bool
-}
-
-func (b *pickfirstBalancer) newSCData(addr resolver.Address) (*scData, error) {
-	addr.BalancerAttributes = addr.BalancerAttributes.WithValue(managedByPickfirstKeyType{}, true)
-	sd := &scData{
-		rawConnectivityState: connectivity.Idle,
-		effectiveState:       connectivity.Idle,
-		addr:                 addr,
-	}
-	sc, err := b.cc.NewSubConn([]resolver.Address{addr}, balancer.NewSubConnOptions{
-		StateListener: func(state balancer.SubConnState) {
-			b.updateSubConnState(sd, state)
-		},
-	})
-	if err != nil {
-		return nil, err
-	}
-	sd.subConn = sc
-	return sd, nil
-}
-
-type pickfirstBalancer struct {
-	// The following fields are initialized at build time and read-only after
-	// that and therefore do not need to be guarded by a mutex.
-	logger          *internalgrpclog.PrefixLogger
-	cc              balancer.ClientConn
-	target          string
-	metricsRecorder expstats.MetricsRecorder // guaranteed to be non nil
-
-	// The mutex is used to ensure synchronization of updates triggered
-	// from the idle picker and the already serialized resolver,
-	// SubConn state updates.
-	mu sync.Mutex
-	// State reported to the channel based on SubConn states and resolver
-	// updates.
-	state connectivity.State
-	// scData for active subonns mapped by address.
-	subConns              *resolver.AddressMapV2[*scData]
-	addressList           addressList
-	firstPass             bool
-	numTF                 int
-	cancelConnectionTimer func()
-	healthCheckingEnabled bool
-}
-
-// ResolverError is called by the ClientConn when the name resolver produces
-// an error or when pickfirst determined the resolver update to be invalid.
-func (b *pickfirstBalancer) ResolverError(err error) {
-	b.mu.Lock()
-	defer b.mu.Unlock()
-	b.resolverErrorLocked(err)
-}
-
-func (b *pickfirstBalancer) resolverErrorLocked(err error) {
-	if b.logger.V(2) {
-		b.logger.Infof("Received error from the name resolver: %v", err)
-	}
-
-	// The picker will not change since the balancer does not currently
-	// report an error. If the balancer hasn't received a single good resolver
-	// update yet, transition to TRANSIENT_FAILURE.
-	if b.state != connectivity.TransientFailure && b.addressList.size() > 0 {
-		if b.logger.V(2) {
-			b.logger.Infof("Ignoring resolver error because balancer is using a previous good update.")
-		}
-		return
-	}
-
-	b.updateBalancerState(balancer.State{
-		ConnectivityState: connectivity.TransientFailure,
-		Picker:            &picker{err: fmt.Errorf("name resolver error: %v", err)},
-	})
-}
-
-func (b *pickfirstBalancer) UpdateClientConnState(state balancer.ClientConnState) error {
-	b.mu.Lock()
-	defer b.mu.Unlock()
-	b.cancelConnectionTimer()
-	if len(state.ResolverState.Addresses) == 0 && len(state.ResolverState.Endpoints) == 0 {
-		// Cleanup state pertaining to the previous resolver state.
-		// Treat an empty address list like an error by calling b.ResolverError.
-		b.closeSubConnsLocked()
-		b.addressList.updateAddrs(nil)
-		b.resolverErrorLocked(errors.New("produced zero addresses"))
-		return balancer.ErrBadResolverState
-	}
-	b.healthCheckingEnabled = state.ResolverState.Attributes.Value(enableHealthListenerKeyType{}) != nil
-	cfg, ok := state.BalancerConfig.(pfConfig)
-	if state.BalancerConfig != nil && !ok {
-		return fmt.Errorf("pickfirst: received illegal BalancerConfig (type %T): %v: %w", state.BalancerConfig, state.BalancerConfig, balancer.ErrBadResolverState)
-	}
-
-	if b.logger.V(2) {
-		b.logger.Infof("Received new config %s, resolver state %s", pretty.ToJSON(cfg), pretty.ToJSON(state.ResolverState))
-	}
-
-	var newAddrs []resolver.Address
-	if endpoints := state.ResolverState.Endpoints; len(endpoints) != 0 {
-		// Perform the optional shuffling described in gRFC A62. The shuffling
-		// will change the order of endpoints but not touch the order of the
-		// addresses within each endpoint. - A61
-		if cfg.ShuffleAddressList {
-			endpoints = append([]resolver.Endpoint{}, endpoints...)
-			internal.RandShuffle(len(endpoints), func(i, j int) { endpoints[i], endpoints[j] = endpoints[j], endpoints[i] })
-		}
-
-		// "Flatten the list by concatenating the ordered list of addresses for
-		// each of the endpoints, in order." - A61
-		for _, endpoint := range endpoints {
-			newAddrs = append(newAddrs, endpoint.Addresses...)
-		}
-	} else {
-		// Endpoints not set, process addresses until we migrate resolver
-		// emissions fully to Endpoints. The top channel does wrap emitted
-		// addresses with endpoints, however some balancers such as weighted
-		// target do not forward the corresponding correct endpoints down/split
-		// endpoints properly. Once all balancers correctly forward endpoints
-		// down, can delete this else conditional.
-		newAddrs = state.ResolverState.Addresses
-		if cfg.ShuffleAddressList {
-			newAddrs = append([]resolver.Address{}, newAddrs...)
-			internal.RandShuffle(len(endpoints), func(i, j int) { endpoints[i], endpoints[j] = endpoints[j], endpoints[i] })
-		}
-	}
-
-	// If an address appears in multiple endpoints or in the same endpoint
-	// multiple times, we keep it only once. We will create only one SubConn
-	// for the address because an AddressMap is used to store SubConns.
-	// Not de-duplicating would result in attempting to connect to the same
-	// SubConn multiple times in the same pass. We don't want this.
-	newAddrs = deDupAddresses(newAddrs)
-	newAddrs = interleaveAddresses(newAddrs)
-
-	prevAddr := b.addressList.currentAddress()
-	prevSCData, found := b.subConns.Get(prevAddr)
-	prevAddrsCount := b.addressList.size()
-	isPrevRawConnectivityStateReady := found && prevSCData.rawConnectivityState == connectivity.Ready
-	b.addressList.updateAddrs(newAddrs)
-
-	// If the previous ready SubConn exists in new address list,
-	// keep this connection and don't create new SubConns.
-	if isPrevRawConnectivityStateReady && b.addressList.seekTo(prevAddr) {
-		return nil
-	}
-
-	b.reconcileSubConnsLocked(newAddrs)
-	// If it's the first resolver update or the balancer was already READY
-	// (but the new address list does not contain the ready SubConn) or
-	// CONNECTING, enter CONNECTING.
-	// We may be in TRANSIENT_FAILURE due to a previous empty address list,
-	// we should still enter CONNECTING because the sticky TF behaviour
-	//  mentioned in A62 applies only when the TRANSIENT_FAILURE is reported
-	// due to connectivity failures.
-	if isPrevRawConnectivityStateReady || b.state == connectivity.Connecting || prevAddrsCount == 0 {
-		// Start connection attempt at first address.
-		b.forceUpdateConcludedStateLocked(balancer.State{
-			ConnectivityState: connectivity.Connecting,
-			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
-		})
-		b.startFirstPassLocked()
-	} else if b.state == connectivity.TransientFailure {
-		// If we're in TRANSIENT_FAILURE, we stay in TRANSIENT_FAILURE until
-		// we're READY. See A62.
-		b.startFirstPassLocked()
-	}
-	return nil
-}
-
-// UpdateSubConnState is unused as a StateListener is always registered when
-// creating SubConns.
-func (b *pickfirstBalancer) UpdateSubConnState(subConn balancer.SubConn, state balancer.SubConnState) {
-	b.logger.Errorf("UpdateSubConnState(%v, %+v) called unexpectedly", subConn, state)
-}
-
-func (b *pickfirstBalancer) Close() {
-	b.mu.Lock()
-	defer b.mu.Unlock()
-	b.closeSubConnsLocked()
-	b.cancelConnectionTimer()
-	b.state = connectivity.Shutdown
-}
-
-// ExitIdle moves the balancer out of idle state. It can be called concurrently
-// by the idlePicker and clientConn so access to variables should be
-// synchronized.
-func (b *pickfirstBalancer) ExitIdle() {
-	b.mu.Lock()
-	defer b.mu.Unlock()
-	if b.state == connectivity.Idle {
-		b.startFirstPassLocked()
-	}
-}
-
-func (b *pickfirstBalancer) startFirstPassLocked() {
-	b.firstPass = true
-	b.numTF = 0
-	// Reset the connection attempt record for existing SubConns.
-	for _, sd := range b.subConns.Values() {
-		sd.connectionFailedInFirstPass = false
-	}
-	b.requestConnectionLocked()
-}
-
-func (b *pickfirstBalancer) closeSubConnsLocked() {
-	for _, sd := range b.subConns.Values() {
-		sd.subConn.Shutdown()
-	}
-	b.subConns = resolver.NewAddressMapV2[*scData]()
-}
-
-// deDupAddresses ensures that each address appears only once in the slice.
-func deDupAddresses(addrs []resolver.Address) []resolver.Address {
-	seenAddrs := resolver.NewAddressMapV2[*scData]()
-	retAddrs := []resolver.Address{}
-
-	for _, addr := range addrs {
-		if _, ok := seenAddrs.Get(addr); ok {
-			continue
-		}
-		retAddrs = append(retAddrs, addr)
-	}
-	return retAddrs
-}
-
-// interleaveAddresses interleaves addresses of both families (IPv4 and IPv6)
-// as per RFC-8305 section 4.
-// Whichever address family is first in the list is followed by an address of
-// the other address family; that is, if the first address in the list is IPv6,
-// then the first IPv4 address should be moved up in the list to be second in
-// the list. It doesn't support configuring "First Address Family Count", i.e.
-// there will always be a single member of the first address family at the
-// beginning of the interleaved list.
-// Addresses that are neither IPv4 nor IPv6 are treated as part of a third
-// "unknown" family for interleaving.
-// See: https://datatracker.ietf.org/doc/html/rfc8305#autoid-6
-func interleaveAddresses(addrs []resolver.Address) []resolver.Address {
-	familyAddrsMap := map[ipAddrFamily][]resolver.Address{}
-	interleavingOrder := []ipAddrFamily{}
-	for _, addr := range addrs {
-		family := addressFamily(addr.Addr)
-		if _, found := familyAddrsMap[family]; !found {
-			interleavingOrder = append(interleavingOrder, family)
-		}
-		familyAddrsMap[family] = append(familyAddrsMap[family], addr)
-	}
-
-	interleavedAddrs := make([]resolver.Address, 0, len(addrs))
-
-	for curFamilyIdx := 0; len(interleavedAddrs) < len(addrs); curFamilyIdx = (curFamilyIdx + 1) % len(interleavingOrder) {
-		// Some IP types may have fewer addresses than others, so we look for
-		// the next type that has a remaining member to add to the interleaved
-		// list.
-		family := interleavingOrder[curFamilyIdx]
-		remainingMembers := familyAddrsMap[family]
-		if len(remainingMembers) > 0 {
-			interleavedAddrs = append(interleavedAddrs, remainingMembers[0])
-			familyAddrsMap[family] = remainingMembers[1:]
-		}
-	}
-
-	return interleavedAddrs
-}
-
-// addressFamily returns the ipAddrFamily after parsing the address string.
-// If the address isn't of the format "ip-address:port", it returns
-// ipAddrFamilyUnknown. The address may be valid even if it's not an IP when
-// using a resolver like passthrough where the address may be a hostname in
-// some format that the dialer can resolve.
-func addressFamily(address string) ipAddrFamily {
-	// Parse the IP after removing the port.
-	host, _, err := net.SplitHostPort(address)
-	if err != nil {
-		return ipAddrFamilyUnknown
-	}
-	ip, err := netip.ParseAddr(host)
-	if err != nil {
-		return ipAddrFamilyUnknown
-	}
-	switch {
-	case ip.Is4() || ip.Is4In6():
-		return ipAddrFamilyV4
-	case ip.Is6():
-		return ipAddrFamilyV6
-	default:
-		return ipAddrFamilyUnknown
-	}
-}
-
-// reconcileSubConnsLocked updates the active subchannels based on a new address
-// list from the resolver. It does this by:
-//   - closing subchannels: any existing subchannels associated with addresses
-//     that are no longer in the updated list are shut down.
-//   - removing subchannels: entries for these closed subchannels are removed
-//     from the subchannel map.
-//
-// This ensures that the subchannel map accurately reflects the current set of
-// addresses received from the name resolver.
-func (b *pickfirstBalancer) reconcileSubConnsLocked(newAddrs []resolver.Address) {
-	newAddrsMap := resolver.NewAddressMapV2[bool]()
-	for _, addr := range newAddrs {
-		newAddrsMap.Set(addr, true)
-	}
-
-	for _, oldAddr := range b.subConns.Keys() {
-		if _, ok := newAddrsMap.Get(oldAddr); ok {
-			continue
-		}
-		val, _ := b.subConns.Get(oldAddr)
-		val.subConn.Shutdown()
-		b.subConns.Delete(oldAddr)
-	}
-}
-
-// shutdownRemainingLocked shuts down remaining subConns. Called when a subConn
-// becomes ready, which means that all other subConn must be shutdown.
-func (b *pickfirstBalancer) shutdownRemainingLocked(selected *scData) {
-	b.cancelConnectionTimer()
-	for _, sd := range b.subConns.Values() {
-		if sd.subConn != selected.subConn {
-			sd.subConn.Shutdown()
-		}
-	}
-	b.subConns = resolver.NewAddressMapV2[*scData]()
-	b.subConns.Set(selected.addr, selected)
-}
-
-// requestConnectionLocked starts connecting on the subchannel corresponding to
-// the current address. If no subchannel exists, one is created. If the current
-// subchannel is in TransientFailure, a connection to the next address is
-// attempted until a subchannel is found.
-func (b *pickfirstBalancer) requestConnectionLocked() {
-	if !b.addressList.isValid() {
-		return
-	}
-	var lastErr error
-	for valid := true; valid; valid = b.addressList.increment() {
-		curAddr := b.addressList.currentAddress()
-		sd, ok := b.subConns.Get(curAddr)
-		if !ok {
-			var err error
-			// We want to assign the new scData to sd from the outer scope,
-			// hence we can't use := below.
-			sd, err = b.newSCData(curAddr)
-			if err != nil {
-				// This should never happen, unless the clientConn is being shut
-				// down.
-				if b.logger.V(2) {
-					b.logger.Infof("Failed to create a subConn for address %v: %v", curAddr.String(), err)
-				}
-				// Do nothing, the LB policy will be closed soon.
-				return
-			}
-			b.subConns.Set(curAddr, sd)
-		}
-
-		switch sd.rawConnectivityState {
-		case connectivity.Idle:
-			sd.subConn.Connect()
-			b.scheduleNextConnectionLocked()
-			return
-		case connectivity.TransientFailure:
-			// The SubConn is being re-used and failed during a previous pass
-			// over the addressList. It has not completed backoff yet.
-			// Mark it as having failed and try the next address.
-			sd.connectionFailedInFirstPass = true
-			lastErr = sd.lastErr
-			continue
-		case connectivity.Connecting:
-			// Wait for the connection attempt to complete or the timer to fire
-			// before attempting the next address.
-			b.scheduleNextConnectionLocked()
-			return
-		default:
-			b.logger.Errorf("SubConn with unexpected state %v present in SubConns map.", sd.rawConnectivityState)
-			return
-
-		}
-	}
-
-	// All the remaining addresses in the list are in TRANSIENT_FAILURE, end the
-	// first pass if possible.
-	b.endFirstPassIfPossibleLocked(lastErr)
-}
-
-func (b *pickfirstBalancer) scheduleNextConnectionLocked() {
-	b.cancelConnectionTimer()
-	if !b.addressList.hasNext() {
-		return
-	}
-	curAddr := b.addressList.currentAddress()
-	cancelled := false // Access to this is protected by the balancer's mutex.
-	closeFn := internal.TimeAfterFunc(connectionDelayInterval, func() {
-		b.mu.Lock()
-		defer b.mu.Unlock()
-		// If the scheduled task is cancelled while acquiring the mutex, return.
-		if cancelled {
-			return
-		}
-		if b.logger.V(2) {
-			b.logger.Infof("Happy Eyeballs timer expired while waiting for connection to %q.", curAddr.Addr)
-		}
-		if b.addressList.increment() {
-			b.requestConnectionLocked()
-		}
-	})
-	// Access to the cancellation callback held by the balancer is guarded by
-	// the balancer's mutex, so it's safe to set the boolean from the callback.
-	b.cancelConnectionTimer = sync.OnceFunc(func() {
-		cancelled = true
-		closeFn()
-	})
-}
-
-func (b *pickfirstBalancer) updateSubConnState(sd *scData, newState balancer.SubConnState) {
-	b.mu.Lock()
-	defer b.mu.Unlock()
-	oldState := sd.rawConnectivityState
-	sd.rawConnectivityState = newState.ConnectivityState
-	// Previously relevant SubConns can still callback with state updates.
-	// To prevent pickers from returning these obsolete SubConns, this logic
-	// is included to check if the current list of active SubConns includes this
-	// SubConn.
-	if !b.isActiveSCData(sd) {
-		return
-	}
-	if newState.ConnectivityState == connectivity.Shutdown {
-		sd.effectiveState = connectivity.Shutdown
-		return
-	}
-
-	// Record a connection attempt when exiting CONNECTING.
-	if newState.ConnectivityState == connectivity.TransientFailure {
-		sd.connectionFailedInFirstPass = true
-		connectionAttemptsFailedMetric.Record(b.metricsRecorder, 1, b.target)
-	}
-
-	if newState.ConnectivityState == connectivity.Ready {
-		connectionAttemptsSucceededMetric.Record(b.metricsRecorder, 1, b.target)
-		b.shutdownRemainingLocked(sd)
-		if !b.addressList.seekTo(sd.addr) {
-			// This should not fail as we should have only one SubConn after
-			// entering READY. The SubConn should be present in the addressList.
-			b.logger.Errorf("Address %q not found address list in  %v", sd.addr, b.addressList.addresses)
-			return
-		}
-		if !b.healthCheckingEnabled {
-			if b.logger.V(2) {
-				b.logger.Infof("SubConn %p reported connectivity state READY and the health listener is disabled. Transitioning SubConn to READY.", sd.subConn)
-			}
-
-			sd.effectiveState = connectivity.Ready
-			b.updateBalancerState(balancer.State{
-				ConnectivityState: connectivity.Ready,
-				Picker:            &picker{result: balancer.PickResult{SubConn: sd.subConn}},
-			})
-			return
-		}
-		if b.logger.V(2) {
-			b.logger.Infof("SubConn %p reported connectivity state READY. Registering health listener.", sd.subConn)
-		}
-		// Send a CONNECTING update to take the SubConn out of sticky-TF if
-		// required.
-		sd.effectiveState = connectivity.Connecting
-		b.updateBalancerState(balancer.State{
-			ConnectivityState: connectivity.Connecting,
-			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
-		})
-		sd.subConn.RegisterHealthListener(func(scs balancer.SubConnState) {
-			b.updateSubConnHealthState(sd, scs)
-		})
-		return
-	}
-
-	// If the LB policy is READY, and it receives a subchannel state change,
-	// it means that the READY subchannel has failed.
-	// A SubConn can also transition from CONNECTING directly to IDLE when
-	// a transport is successfully created, but the connection fails
-	// before the SubConn can send the notification for READY. We treat
-	// this as a successful connection and transition to IDLE.
-	// TODO: https://github.com/grpc/grpc-go/issues/7862 - Remove the second
-	// part of the if condition below once the issue is fixed.
-	if oldState == connectivity.Ready || (oldState == connectivity.Connecting && newState.ConnectivityState == connectivity.Idle) {
-		// Once a transport fails, the balancer enters IDLE and starts from
-		// the first address when the picker is used.
-		b.shutdownRemainingLocked(sd)
-		sd.effectiveState = newState.ConnectivityState
-		// READY SubConn interspliced in between CONNECTING and IDLE, need to
-		// account for that.
-		if oldState == connectivity.Connecting {
-			// A known issue (https://github.com/grpc/grpc-go/issues/7862)
-			// causes a race that prevents the READY state change notification.
-			// This works around it.
-			connectionAttemptsSucceededMetric.Record(b.metricsRecorder, 1, b.target)
-		}
-		disconnectionsMetric.Record(b.metricsRecorder, 1, b.target)
-		b.addressList.reset()
-		b.updateBalancerState(balancer.State{
-			ConnectivityState: connectivity.Idle,
-			Picker:            &idlePicker{exitIdle: sync.OnceFunc(b.ExitIdle)},
-		})
-		return
-	}
-
-	if b.firstPass {
-		switch newState.ConnectivityState {
-		case connectivity.Connecting:
-			// The effective state can be in either IDLE, CONNECTING or
-			// TRANSIENT_FAILURE. If it's  TRANSIENT_FAILURE, stay in
-			// TRANSIENT_FAILURE until it's READY. See A62.
-			if sd.effectiveState != connectivity.TransientFailure {
-				sd.effectiveState = connectivity.Connecting
-				b.updateBalancerState(balancer.State{
-					ConnectivityState: connectivity.Connecting,
-					Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
-				})
-			}
-		case connectivity.TransientFailure:
-			sd.lastErr = newState.ConnectionError
-			sd.effectiveState = connectivity.TransientFailure
-			// Since we're re-using common SubConns while handling resolver
-			// updates, we could receive an out of turn TRANSIENT_FAILURE from
-			// a pass over the previous address list. Happy Eyeballs will also
-			// cause out of order updates to arrive.
-
-			if curAddr := b.addressList.currentAddress(); equalAddressIgnoringBalAttributes(&curAddr, &sd.addr) {
-				b.cancelConnectionTimer()
-				if b.addressList.increment() {
-					b.requestConnectionLocked()
-					return
-				}
-			}
-
-			// End the first pass if we've seen a TRANSIENT_FAILURE from all
-			// SubConns once.
-			b.endFirstPassIfPossibleLocked(newState.ConnectionError)
-		}
-		return
-	}
-
-	// We have finished the first pass, keep re-connecting failing SubConns.
-	switch newState.ConnectivityState {
-	case connectivity.TransientFailure:
-		b.numTF = (b.numTF + 1) % b.subConns.Len()
-		sd.lastErr = newState.ConnectionError
-		if b.numTF%b.subConns.Len() == 0 {
-			b.updateBalancerState(balancer.State{
-				ConnectivityState: connectivity.TransientFailure,
-				Picker:            &picker{err: newState.ConnectionError},
-			})
-		}
-		// We don't need to request re-resolution since the SubConn already
-		// does that before reporting TRANSIENT_FAILURE.
-		// TODO: #7534 - Move re-resolution requests from SubConn into
-		// pick_first.
-	case connectivity.Idle:
-		sd.subConn.Connect()
-	}
-}
-
-// endFirstPassIfPossibleLocked ends the first happy-eyeballs pass if all the
-// addresses are tried and their SubConns have reported a failure.
-func (b *pickfirstBalancer) endFirstPassIfPossibleLocked(lastErr error) {
-	// An optimization to avoid iterating over the entire SubConn map.
-	if b.addressList.isValid() {
-		return
-	}
-	// Connect() has been called on all the SubConns. The first pass can be
-	// ended if all the SubConns have reported a failure.
-	for _, sd := range b.subConns.Values() {
-		if !sd.connectionFailedInFirstPass {
-			return
-		}
-	}
-	b.firstPass = false
-	b.updateBalancerState(balancer.State{
-		ConnectivityState: connectivity.TransientFailure,
-		Picker:            &picker{err: lastErr},
-	})
-	// Start re-connecting all the SubConns that are already in IDLE.
-	for _, sd := range b.subConns.Values() {
-		if sd.rawConnectivityState == connectivity.Idle {
-			sd.subConn.Connect()
-		}
-	}
-}
-
-func (b *pickfirstBalancer) isActiveSCData(sd *scData) bool {
-	activeSD, found := b.subConns.Get(sd.addr)
-	return found && activeSD == sd
-}
-
-func (b *pickfirstBalancer) updateSubConnHealthState(sd *scData, state balancer.SubConnState) {
-	b.mu.Lock()
-	defer b.mu.Unlock()
-	// Previously relevant SubConns can still callback with state updates.
-	// To prevent pickers from returning these obsolete SubConns, this logic
-	// is included to check if the current list of active SubConns includes
-	// this SubConn.
-	if !b.isActiveSCData(sd) {
-		return
-	}
-	sd.effectiveState = state.ConnectivityState
-	switch state.ConnectivityState {
-	case connectivity.Ready:
-		b.updateBalancerState(balancer.State{
-			ConnectivityState: connectivity.Ready,
-			Picker:            &picker{result: balancer.PickResult{SubConn: sd.subConn}},
-		})
-	case connectivity.TransientFailure:
-		b.updateBalancerState(balancer.State{
-			ConnectivityState: connectivity.TransientFailure,
-			Picker:            &picker{err: fmt.Errorf("pickfirst: health check failure: %v", state.ConnectionError)},
-		})
-	case connectivity.Connecting:
-		b.updateBalancerState(balancer.State{
-			ConnectivityState: connectivity.Connecting,
-			Picker:            &picker{err: balancer.ErrNoSubConnAvailable},
-		})
-	default:
-		b.logger.Errorf("Got unexpected health update for SubConn %p: %v", state)
-	}
-}
-
-// updateBalancerState stores the state reported to the channel and calls
-// ClientConn.UpdateState(). As an optimization, it avoids sending duplicate
-// updates to the channel.
-func (b *pickfirstBalancer) updateBalancerState(newState balancer.State) {
-	// In case of TransientFailures allow the picker to be updated to update
-	// the connectivity error, in all other cases don't send duplicate state
-	// updates.
-	if newState.ConnectivityState == b.state && b.state != connectivity.TransientFailure {
-		return
-	}
-	b.forceUpdateConcludedStateLocked(newState)
-}
-
-// forceUpdateConcludedStateLocked stores the state reported to the channel and
-// calls ClientConn.UpdateState().
-// A separate function is defined to force update the ClientConn state since the
-// channel doesn't correctly assume that LB policies start in CONNECTING and
-// relies on LB policy to send an initial CONNECTING update.
-func (b *pickfirstBalancer) forceUpdateConcludedStateLocked(newState balancer.State) {
-	b.state = newState.ConnectivityState
-	b.cc.UpdateState(newState)
-}
-
-type picker struct {
-	result balancer.PickResult
-	err    error
-}
-
-func (p *picker) Pick(balancer.PickInfo) (balancer.PickResult, error) {
-	return p.result, p.err
-}
-
-// idlePicker is used when the SubConn is IDLE and kicks the SubConn into
-// CONNECTING when Pick is called.
-type idlePicker struct {
-	exitIdle func()
-}
-
-func (i *idlePicker) Pick(balancer.PickInfo) (balancer.PickResult, error) {
-	i.exitIdle()
-	return balancer.PickResult{}, balancer.ErrNoSubConnAvailable
-}
-
-// addressList manages sequentially iterating over addresses present in a list
-// of endpoints. It provides a 1 dimensional view of the addresses present in
-// the endpoints.
-// This type is not safe for concurrent access.
-type addressList struct {
-	addresses []resolver.Address
-	idx       int
-}
-
-func (al *addressList) isValid() bool {
-	return al.idx < len(al.addresses)
-}
-
-func (al *addressList) size() int {
-	return len(al.addresses)
-}
-
-// increment moves to the next index in the address list.
-// This method returns false if it went off the list, true otherwise.
-func (al *addressList) increment() bool {
-	if !al.isValid() {
-		return false
-	}
-	al.idx++
-	return al.idx < len(al.addresses)
-}
-
-// currentAddress returns the current address pointed to in the addressList.
-// If the list is in an invalid state, it returns an empty address instead.
-func (al *addressList) currentAddress() resolver.Address {
-	if !al.isValid() {
-		return resolver.Address{}
-	}
-	return al.addresses[al.idx]
-}
-
-func (al *addressList) reset() {
-	al.idx = 0
-}
-
-func (al *addressList) updateAddrs(addrs []resolver.Address) {
-	al.addresses = addrs
-	al.reset()
-}
-
-// seekTo returns false if the needle was not found and the current index was
-// left unchanged.
-func (al *addressList) seekTo(needle resolver.Address) bool {
-	for ai, addr := range al.addresses {
-		if !equalAddressIgnoringBalAttributes(&addr, &needle) {
-			continue
-		}
-		al.idx = ai
-		return true
-	}
-	return false
-}
-
-// hasNext returns whether incrementing the addressList will result in moving
-// past the end of the list. If the list has already moved past the end, it
-// returns false.
-func (al *addressList) hasNext() bool {
-	if !al.isValid() {
-		return false
-	}
-	return al.idx+1 < len(al.addresses)
-}
-
-// equalAddressIgnoringBalAttributes returns true is a and b are considered
-// equal. This is different from the Equal method on the resolver.Address type
-// which considers all fields to determine equality. Here, we only consider
-// fields that are meaningful to the SubConn.
-func equalAddressIgnoringBalAttributes(a, b *resolver.Address) bool {
-	return a.Addr == b.Addr && a.ServerName == b.ServerName &&
-		a.Attributes.Equal(b.Attributes)
-}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/roundrobin/roundrobin.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/roundrobin/roundrobin.go
--- a/vendor/google.golang.org/grpc/balancer/roundrobin/roundrobin.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/roundrobin/roundrobin.go	2026-09-02 10:25:23.877027748 +0000
@@ -26,7 +26,7 @@
 
 	"google.golang.org/grpc/balancer"
 	"google.golang.org/grpc/balancer/endpointsharding"
-	"google.golang.org/grpc/balancer/pickfirst/pickfirstleaf"
+	"google.golang.org/grpc/balancer/pickfirst"
 	"google.golang.org/grpc/grpclog"
 	internalgrpclog "google.golang.org/grpc/internal/grpclog"
 )
@@ -47,7 +47,7 @@
 }
 
 func (bb builder) Build(cc balancer.ClientConn, opts balancer.BuildOptions) balancer.Balancer {
-	childBuilder := balancer.Get(pickfirstleaf.Name).Build
+	childBuilder := balancer.Get(pickfirst.Name).Build
 	bal := &rrBalancer{
 		cc:       cc,
 		Balancer: endpointsharding.NewBalancer(cc, opts, childBuilder, endpointsharding.Options{}),
@@ -67,13 +67,6 @@
 	return b.Balancer.UpdateClientConnState(balancer.ClientConnState{
 		// Enable the health listener in pickfirst children for client side health
 		// checks and outlier detection, if configured.
-		ResolverState: pickfirstleaf.EnableHealthListener(ccs.ResolverState),
+		ResolverState: pickfirst.EnableHealthListener(ccs.ResolverState),
 	})
 }
-
-func (b *rrBalancer) ExitIdle() {
-	// Should always be ok, as child is endpoint sharding.
-	if ei, ok := b.Balancer.(balancer.ExitIdler); ok {
-		ei.ExitIdle()
-	}
-}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer/subconn.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer/subconn.go
--- a/vendor/google.golang.org/grpc/balancer/subconn.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer/subconn.go	2026-09-02 10:25:23.877027748 +0000
@@ -111,20 +111,6 @@
 	// ConnectionError is set if the ConnectivityState is TransientFailure,
 	// describing the reason the SubConn failed.  Otherwise, it is nil.
 	ConnectionError error
-	// connectedAddr contains the connected address when ConnectivityState is
-	// Ready. Otherwise, it is indeterminate.
-	connectedAddress resolver.Address
-}
-
-// connectedAddress returns the connected address for a SubConnState. The
-// address is only valid if the state is READY.
-func connectedAddress(scs SubConnState) resolver.Address {
-	return scs.connectedAddress
-}
-
-// setConnectedAddress sets the connected address for a SubConnState.
-func setConnectedAddress(scs *SubConnState, addr resolver.Address) {
-	scs.connectedAddress = addr
 }
 
 // A Producer is a type shared among potentially many consumers.  It is
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/balancer_wrapper.go /work/src/kubernetes/vendor/google.golang.org/grpc/balancer_wrapper.go
--- a/vendor/google.golang.org/grpc/balancer_wrapper.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/balancer_wrapper.go	2026-09-02 10:25:23.873027742 +0000
@@ -36,7 +36,6 @@
 )
 
 var (
-	setConnectedAddress = internal.SetConnectedAddress.(func(*balancer.SubConnState, resolver.Address))
 	// noOpRegisterHealthListenerFn is used when client side health checking is
 	// disabled. It sends a single READY update on the registered listener.
 	noOpRegisterHealthListenerFn = func(_ context.Context, listener func(balancer.SubConnState)) func() {
@@ -305,7 +304,7 @@
 
 // updateState is invoked by grpc to push a subConn state update to the
 // underlying balancer.
-func (acbw *acBalancerWrapper) updateState(s connectivity.State, curAddr resolver.Address, err error) {
+func (acbw *acBalancerWrapper) updateState(s connectivity.State, err error) {
 	acbw.ccb.serializer.TrySchedule(func(ctx context.Context) {
 		if ctx.Err() != nil || acbw.ccb.balancer == nil {
 			return
@@ -317,9 +316,6 @@
 		// opts.StateListener is set, so this cannot ever be nil.
 		// TODO: delete this comment when UpdateSubConnState is removed.
 		scs := balancer.SubConnState{ConnectivityState: s, ConnectionError: err}
-		if s == connectivity.Ready {
-			setConnectedAddress(&scs, curAddr)
-		}
 		// Invalidate the health listener by updating the healthData.
 		acbw.healthMu.Lock()
 		// A race may occur if a health listener is registered soon after the
@@ -450,13 +446,14 @@
 	if acbw.ccb.cc.dopts.disableHealthCheck {
 		return noOpRegisterHealthListenerFn
 	}
+	cfg := acbw.ac.cc.healthCheckConfig()
+	if cfg == nil {
+		return noOpRegisterHealthListenerFn
+	}
 	regHealthLisFn := internal.RegisterClientHealthCheckListener
 	if regHealthLisFn == nil {
 		// The health package is not imported.
-		return noOpRegisterHealthListenerFn
-	}
-	cfg := acbw.ac.cc.healthCheckConfig()
-	if cfg == nil {
+		channelz.Error(logger, acbw.ac.channelz, "Health check is requested but health package is not imported.")
 		return noOpRegisterHealthListenerFn
 	}
 	return func(ctx context.Context, listener func(balancer.SubConnState)) func() {
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go
--- a/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go	2026-09-02 10:25:23.877027748 +0000
@@ -18,7 +18,7 @@
 
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.36.5
+// 	protoc-gen-go v1.36.11
 // 	protoc        v5.27.1
 // source: grpc/binlog/v1/binarylog.proto
 
@@ -858,133 +858,68 @@
 
 var File_grpc_binlog_v1_binarylog_proto protoreflect.FileDescriptor
 
-var file_grpc_binlog_v1_binarylog_proto_rawDesc = string([]byte{
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+const file_grpc_binlog_v1_binarylog_proto_rawDesc = "" +
+	"\n" +
+	"\x1egrpc/binlog/v1/binarylog.proto\x12\x11grpc.binarylog.v1\x1a\x1egoogle/protobuf/duration.proto\x1a\x1fgoogle/protobuf/timestamp.proto\"\xbb\a\n" +
+	"\fGrpcLogEntry\x128\n" +
+	"\ttimestamp\x18\x01 \x01(\v2\x1a.google.protobuf.TimestampR\ttimestamp\x12\x17\n" +
+	"\acall_id\x18\x02 \x01(\x04R\x06callId\x125\n" +
+	"\x17sequence_id_within_call\x18\x03 \x01(\x04R\x14sequenceIdWithinCall\x12=\n" +
+	"\x04type\x18\x04 \x01(\x0e2).grpc.binarylog.v1.GrpcLogEntry.EventTypeR\x04type\x12>\n" +
+	"\x06logger\x18\x05 \x01(\x0e2&.grpc.binarylog.v1.GrpcLogEntry.LoggerR\x06logger\x12F\n" +
+	"\rclient_header\x18\x06 \x01(\v2\x1f.grpc.binarylog.v1.ClientHeaderH\x00R\fclientHeader\x12F\n" +
+	"\rserver_header\x18\a \x01(\v2\x1f.grpc.binarylog.v1.ServerHeaderH\x00R\fserverHeader\x126\n" +
+	"\amessage\x18\b \x01(\v2\x1a.grpc.binarylog.v1.MessageH\x00R\amessage\x126\n" +
+	"\atrailer\x18\t \x01(\v2\x1a.grpc.binarylog.v1.TrailerH\x00R\atrailer\x12+\n" +
+	"\x11payload_truncated\x18\n" +
+	" \x01(\bR\x10payloadTruncated\x12.\n" +
+	"\x04peer\x18\v \x01(\v2\x1a.grpc.binarylog.v1.AddressR\x04peer\"\xf5\x01\n" +
+	"\tEventType\x12\x16\n" +
+	"\x12EVENT_TYPE_UNKNOWN\x10\x00\x12\x1c\n" +
+	"\x18EVENT_TYPE_CLIENT_HEADER\x10\x01\x12\x1c\n" +
+	"\x18EVENT_TYPE_SERVER_HEADER\x10\x02\x12\x1d\n" +
+	"\x19EVENT_TYPE_CLIENT_MESSAGE\x10\x03\x12\x1d\n" +
+	"\x19EVENT_TYPE_SERVER_MESSAGE\x10\x04\x12 \n" +
+	"\x1cEVENT_TYPE_CLIENT_HALF_CLOSE\x10\x05\x12\x1d\n" +
+	"\x19EVENT_TYPE_SERVER_TRAILER\x10\x06\x12\x15\n" +
+	"\x11EVENT_TYPE_CANCEL\x10\a\"B\n" +
+	"\x06Logger\x12\x12\n" +
+	"\x0eLOGGER_UNKNOWN\x10\x00\x12\x11\n" +
+	"\rLOGGER_CLIENT\x10\x01\x12\x11\n" +
+	"\rLOGGER_SERVER\x10\x02B\t\n" +
+	"\apayload\"\xbb\x01\n" +
+	"\fClientHeader\x127\n" +
+	"\bmetadata\x18\x01 \x01(\v2\x1b.grpc.binarylog.v1.MetadataR\bmetadata\x12\x1f\n" +
+	"\vmethod_name\x18\x02 \x01(\tR\n" +
+	"methodName\x12\x1c\n" +
+	"\tauthority\x18\x03 \x01(\tR\tauthority\x123\n" +
+	"\atimeout\x18\x04 \x01(\v2\x19.google.protobuf.DurationR\atimeout\"G\n" +
+	"\fServerHeader\x127\n" +
+	"\bmetadata\x18\x01 \x01(\v2\x1b.grpc.binarylog.v1.MetadataR\bmetadata\"\xb1\x01\n" +
+	"\aTrailer\x127\n" +
+	"\bmetadata\x18\x01 \x01(\v2\x1b.grpc.binarylog.v1.MetadataR\bmetadata\x12\x1f\n" +
+	"\vstatus_code\x18\x02 \x01(\rR\n" +
+	"statusCode\x12%\n" +
+	"\x0estatus_message\x18\x03 \x01(\tR\rstatusMessage\x12%\n" +
+	"\x0estatus_details\x18\x04 \x01(\fR\rstatusDetails\"5\n" +
+	"\aMessage\x12\x16\n" +
+	"\x06length\x18\x01 \x01(\rR\x06length\x12\x12\n" +
+	"\x04data\x18\x02 \x01(\fR\x04data\"B\n" +
+	"\bMetadata\x126\n" +
+	"\x05entry\x18\x01 \x03(\v2 .grpc.binarylog.v1.MetadataEntryR\x05entry\"7\n" +
+	"\rMetadataEntry\x12\x10\n" +
+	"\x03key\x18\x01 \x01(\tR\x03key\x12\x14\n" +
+	"\x05value\x18\x02 \x01(\fR\x05value\"\xb8\x01\n" +
+	"\aAddress\x123\n" +
+	"\x04type\x18\x01 \x01(\x0e2\x1f.grpc.binarylog.v1.Address.TypeR\x04type\x12\x18\n" +
+	"\aaddress\x18\x02 \x01(\tR\aaddress\x12\x17\n" +
+	"\aip_port\x18\x03 \x01(\rR\x06ipPort\"E\n" +
+	"\x04Type\x12\x10\n" +
+	"\fTYPE_UNKNOWN\x10\x00\x12\r\n" +
+	"\tTYPE_IPV4\x10\x01\x12\r\n" +
+	"\tTYPE_IPV6\x10\x02\x12\r\n" +
+	"\tTYPE_UNIX\x10\x03B\\\n" +
+	"\x14io.grpc.binarylog.v1B\x0eBinaryLogProtoP\x01Z2google.golang.org/grpc/binarylog/grpc_binarylog_v1b\x06proto3"
 
 var (
 	file_grpc_binlog_v1_binarylog_proto_rawDescOnce sync.Once
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/clientconn.go /work/src/kubernetes/vendor/google.golang.org/grpc/clientconn.go
--- a/vendor/google.golang.org/grpc/clientconn.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/clientconn.go	2026-09-02 10:25:23.873027742 +0000
@@ -24,10 +24,12 @@
 	"fmt"
 	"math"
 	"net/url"
+	"os"
 	"slices"
 	"strings"
 	"sync"
 	"sync/atomic"
+	"syscall"
 	"time"
 
 	"google.golang.org/grpc/balancer"
@@ -35,16 +37,19 @@
 	"google.golang.org/grpc/balancer/pickfirst"
 	"google.golang.org/grpc/codes"
 	"google.golang.org/grpc/connectivity"
+	"google.golang.org/grpc/credentials"
+	expstats "google.golang.org/grpc/experimental/stats"
 	"google.golang.org/grpc/internal"
 	"google.golang.org/grpc/internal/channelz"
 	"google.golang.org/grpc/internal/grpcsync"
 	"google.golang.org/grpc/internal/idle"
 	iresolver "google.golang.org/grpc/internal/resolver"
-	"google.golang.org/grpc/internal/stats"
+	istats "google.golang.org/grpc/internal/stats"
 	"google.golang.org/grpc/internal/transport"
 	"google.golang.org/grpc/keepalive"
 	"google.golang.org/grpc/resolver"
 	"google.golang.org/grpc/serviceconfig"
+	"google.golang.org/grpc/stats"
 	"google.golang.org/grpc/status"
 
 	_ "google.golang.org/grpc/balancer/roundrobin"           // To register roundrobin.
@@ -97,6 +102,41 @@
 	errTransportCredentialsMissing = errors.New("grpc: the credentials require transport level security (use grpc.WithTransportCredentials() to set)")
 )
 
+var (
+	disconnectionsMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
+		Name:           "grpc.subchannel.disconnections",
+		Description:    "EXPERIMENTAL. Number of times the selected subchannel becomes disconnected.",
+		Unit:           "{disconnection}",
+		Labels:         []string{"grpc.target"},
+		OptionalLabels: []string{"grpc.lb.backend_service", "grpc.lb.locality", "grpc.disconnect_error"},
+		Default:        false,
+	})
+	connectionAttemptsSucceededMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
+		Name:           "grpc.subchannel.connection_attempts_succeeded",
+		Description:    "EXPERIMENTAL. Number of successful connection attempts.",
+		Unit:           "{attempt}",
+		Labels:         []string{"grpc.target"},
+		OptionalLabels: []string{"grpc.lb.backend_service", "grpc.lb.locality"},
+		Default:        false,
+	})
+	connectionAttemptsFailedMetric = expstats.RegisterInt64Count(expstats.MetricDescriptor{
+		Name:           "grpc.subchannel.connection_attempts_failed",
+		Description:    "EXPERIMENTAL. Number of failed connection attempts.",
+		Unit:           "{attempt}",
+		Labels:         []string{"grpc.target"},
+		OptionalLabels: []string{"grpc.lb.backend_service", "grpc.lb.locality"},
+		Default:        false,
+	})
+	openConnectionsMetric = expstats.RegisterInt64UpDownCount(expstats.MetricDescriptor{
+		Name:           "grpc.subchannel.open_connections",
+		Description:    "EXPERIMENTAL. Number of open connections.",
+		Unit:           "{attempt}",
+		Labels:         []string{"grpc.target"},
+		OptionalLabels: []string{"grpc.lb.backend_service", "grpc.security_level", "grpc.lb.locality"},
+		Default:        false,
+	})
+)
+
 const (
 	defaultClientMaxReceiveMessageSize = 1024 * 1024 * 4
 	defaultClientMaxSendMessageSize    = math.MaxInt32
@@ -208,9 +248,10 @@
 	channelz.Infof(logger, cc.channelz, "Channel authority set to %q", cc.authority)
 
 	cc.csMgr = newConnectivityStateManager(cc.ctx, cc.channelz)
-	cc.pickerWrapper = newPickerWrapper(cc.dopts.copts.StatsHandlers)
+	cc.pickerWrapper = newPickerWrapper()
 
-	cc.metricsRecorderList = stats.NewMetricsRecorderList(cc.dopts.copts.StatsHandlers)
+	cc.metricsRecorderList = istats.NewMetricsRecorderList(cc.dopts.copts.StatsHandlers)
+	cc.statsHandler = istats.NewCombinedHandler(cc.dopts.copts.StatsHandlers...)
 
 	cc.initIdleStateLocked() // Safe to call without the lock, since nothing else has a reference to cc.
 	cc.idlenessMgr = idle.NewManager((*idler)(cc), cc.dopts.idleTimeout)
@@ -260,9 +301,10 @@
 	}()
 
 	// This creates the name resolver, load balancer, etc.
-	if err := cc.idlenessMgr.ExitIdleMode(); err != nil {
-		return nil, err
+	if err := cc.exitIdleMode(); err != nil {
+		return nil, fmt.Errorf("failed to exit idle mode: %w", err)
 	}
+	cc.idlenessMgr.UnsafeSetNotIdle()
 
 	// Return now for non-blocking dials.
 	if !cc.dopts.block {
@@ -330,7 +372,7 @@
 			Severity: channelz.CtInfo,
 		}
 	}
-	channelz.AddTraceEvent(logger, cc.channelz, 0, ted)
+	channelz.AddTraceEvent(logger, cc.channelz, 1, ted)
 }
 
 type idler ClientConn
@@ -339,14 +381,17 @@
 	(*ClientConn)(i).enterIdleMode()
 }
 
-func (i *idler) ExitIdleMode() error {
-	return (*ClientConn)(i).exitIdleMode()
+func (i *idler) ExitIdleMode() {
+	// Ignore the error returned from this method, because from the perspective
+	// of the caller (idleness manager), the channel would have always moved out
+	// of IDLE by the time this method returns.
+	(*ClientConn)(i).exitIdleMode()
 }
 
 // exitIdleMode moves the channel out of idle mode by recreating the name
 // resolver and load balancer.  This should never be called directly; use
 // cc.idlenessMgr.ExitIdleMode instead.
-func (cc *ClientConn) exitIdleMode() (err error) {
+func (cc *ClientConn) exitIdleMode() error {
 	cc.mu.Lock()
 	if cc.conns == nil {
 		cc.mu.Unlock()
@@ -354,11 +399,23 @@
 	}
 	cc.mu.Unlock()
 
+	// Set state to CONNECTING before building the name resolver
+	// so the channel does not remain in IDLE.
+	cc.csMgr.updateState(connectivity.Connecting)
+
 	// This needs to be called without cc.mu because this builds a new resolver
 	// which might update state or report error inline, which would then need to
 	// acquire cc.mu.
 	if err := cc.resolverWrapper.start(); err != nil {
-		return err
+		// If resolver creation fails, treat it like an error reported by the
+		// resolver before any valid updates. Set channel's state to
+		// TransientFailure, and set an erroring picker with the resolver build
+		// error, which will returned as part of any subsequent RPCs.
+		logger.Warningf("Failed to start resolver: %v", err)
+		cc.csMgr.updateState(connectivity.TransientFailure)
+		cc.mu.Lock()
+		cc.updateResolverStateAndUnlock(resolver.State{}, err)
+		return fmt.Errorf("failed to start resolver: %w", err)
 	}
 
 	cc.addTraceEvent("exiting idle mode")
@@ -456,7 +513,7 @@
 func (cc *ClientConn) channelzRegistration(target string) {
 	parentChannel, _ := cc.dopts.channelzParent.(*channelz.Channel)
 	cc.channelz = channelz.RegisterChannel(parentChannel, target)
-	cc.addTraceEvent("created")
+	cc.addTraceEvent(fmt.Sprintf("created for target %q", target))
 }
 
 // chainUnaryClientInterceptors chains all unary client interceptors into one.
@@ -621,7 +678,8 @@
 	channelz            *channelz.Channel // Channelz object.
 	resolverBuilder     resolver.Builder  // See initParsedTargetAndResolverBuilder().
 	idlenessMgr         *idle.Manager
-	metricsRecorderList *stats.MetricsRecorderList
+	metricsRecorderList *istats.MetricsRecorderList
+	statsHandler        stats.Handler
 
 	// The following provide their own synchronization, and therefore don't
 	// require cc.mu to be held to access them.
@@ -678,10 +736,8 @@
 // Notice: This API is EXPERIMENTAL and may be changed or removed in a later
 // release.
 func (cc *ClientConn) Connect() {
-	if err := cc.idlenessMgr.ExitIdleMode(); err != nil {
-		cc.addTraceEvent(err.Error())
-		return
-	}
+	cc.idlenessMgr.ExitIdleMode()
+
 	// If the ClientConn was not in idle mode, we need to call ExitIdle on the
 	// LB policy so that connections can be created.
 	cc.mu.Lock()
@@ -689,22 +745,31 @@
 	cc.mu.Unlock()
 }
 
-// waitForResolvedAddrs blocks until the resolver has provided addresses or the
-// context expires.  Returns nil unless the context expires first; otherwise
-// returns a status error based on the context.
-func (cc *ClientConn) waitForResolvedAddrs(ctx context.Context) error {
+// waitForResolvedAddrs blocks until the resolver provides addresses or the
+// context expires, whichever happens first.
+//
+// Error is nil unless the context expires first; otherwise returns a status
+// error based on the context.
+//
+// The returned boolean indicates whether it did block or not. If the
+// resolution has already happened once before, it returns false without
+// blocking. Otherwise, it wait for the resolution and return true if
+// resolution has succeeded or return false along with error if resolution has
+// failed.
+func (cc *ClientConn) waitForResolvedAddrs(ctx context.Context) (bool, error) {
 	// This is on the RPC path, so we use a fast path to avoid the
 	// more-expensive "select" below after the resolver has returned once.
 	if cc.firstResolveEvent.HasFired() {
-		return nil
+		return false, nil
 	}
+	internal.NewStreamWaitingForResolver()
 	select {
 	case <-cc.firstResolveEvent.Done():
-		return nil
+		return true, nil
 	case <-ctx.Done():
-		return status.FromContextError(ctx.Err()).Err()
+		return false, status.FromContextError(ctx.Err()).Err()
 	case <-cc.ctx.Done():
-		return ErrClientConnClosing
+		return false, ErrClientConnClosing
 	}
 }
 
@@ -723,8 +788,8 @@
 	internal.EnterIdleModeForTesting = func(cc *ClientConn) {
 		cc.idlenessMgr.EnterIdleModeForTesting()
 	}
-	internal.ExitIdleModeForTesting = func(cc *ClientConn) error {
-		return cc.idlenessMgr.ExitIdleMode()
+	internal.ExitIdleModeForTesting = func(cc *ClientConn) {
+		cc.idlenessMgr.ExitIdleMode()
 	}
 }
 
@@ -849,6 +914,7 @@
 		channelz:     channelz.RegisterSubChannel(cc.channelz, ""),
 		resetBackoff: make(chan struct{}),
 	}
+	ac.updateTelemetryLabelsLocked()
 	ac.ctx, ac.cancel = context.WithCancel(cc.ctx)
 	// Start with our address set to the first address; this may be updated if
 	// we connect to different addresses.
@@ -913,25 +979,24 @@
 // connect starts creating a transport.
 // It does nothing if the ac is not IDLE.
 // TODO(bar) Move this to the addrConn section.
-func (ac *addrConn) connect() error {
+func (ac *addrConn) connect() {
 	ac.mu.Lock()
 	if ac.state == connectivity.Shutdown {
 		if logger.V(2) {
 			logger.Infof("connect called on shutdown addrConn; ignoring.")
 		}
 		ac.mu.Unlock()
-		return errConnClosing
+		return
 	}
 	if ac.state != connectivity.Idle {
 		if logger.V(2) {
 			logger.Infof("connect called on addrConn in non-idle state (%v); ignoring.", ac.state)
 		}
 		ac.mu.Unlock()
-		return nil
+		return
 	}
 
 	ac.resetTransportAndUnlock()
-	return nil
 }
 
 // equalAddressIgnoringBalAttributes returns true is a and b are considered equal.
@@ -965,7 +1030,7 @@
 	}
 
 	ac.addrs = addrs
-
+	ac.updateTelemetryLabelsLocked()
 	if ac.state == connectivity.Shutdown ||
 		ac.state == connectivity.TransientFailure ||
 		ac.state == connectivity.Idle {
@@ -1067,13 +1132,6 @@
 	return cc.sc.healthCheckConfig
 }
 
-func (cc *ClientConn) getTransport(ctx context.Context, failfast bool, method string) (transport.ClientTransport, balancer.PickResult, error) {
-	return cc.pickerWrapper.pick(ctx, failfast, balancer.PickInfo{
-		Ctx:            ctx,
-		FullMethodName: method,
-	})
-}
-
 func (cc *ClientConn) applyServiceConfigAndBalancer(sc *ServiceConfig, configSelector iresolver.ConfigSelector) {
 	if sc == nil {
 		// should never reach here.
@@ -1211,6 +1269,10 @@
 	resetBackoff chan struct{}
 
 	channelz *channelz.SubChannel
+
+	localityLabel        string
+	backendServiceLabel  string
+	disconnectErrorLabel string
 }
 
 // Note: this requires a lock on ac.mu.
@@ -1218,6 +1280,23 @@
 	if ac.state == s {
 		return
 	}
+
+	// If we are transitioning out of Ready, it means there is a disconnection.
+	// A SubConn can also transition from CONNECTING directly to IDLE when
+	// a transport is successfully created, but the connection fails
+	// before the SubConn can send the notification for READY. We treat
+	// this as a successful connection and transition to IDLE.
+	// TODO: https://github.com/grpc/grpc-go/issues/7862 - Remove the second
+	// part of the if condition below once the issue is fixed.
+	if ac.state == connectivity.Ready || (ac.state == connectivity.Connecting && s == connectivity.Idle) {
+		disconnectError := ac.disconnectErrorLabel
+		if disconnectError == "" {
+			disconnectError = "unknown"
+		}
+		disconnectionsMetric.Record(ac.cc.metricsRecorderList, 1, ac.cc.target, ac.backendServiceLabel, ac.localityLabel, disconnectError)
+		openConnectionsMetric.Record(ac.cc.metricsRecorderList, -1, ac.cc.target, ac.backendServiceLabel, ac.securityLevelLocked(), ac.localityLabel)
+	}
+	ac.disconnectErrorLabel = "" // Reset for next time
 	ac.state = s
 	ac.channelz.ChannelMetrics.State.Store(&s)
 	if lastErr == nil {
@@ -1225,7 +1304,7 @@
 	} else {
 		channelz.Infof(logger, ac.channelz, "Subchannel Connectivity change to %v, last error: %s", s, lastErr)
 	}
-	ac.acbw.updateState(s, ac.curAddr, lastErr)
+	ac.acbw.updateState(s, lastErr)
 }
 
 // adjustParams updates parameters used to create transports upon
@@ -1275,6 +1354,15 @@
 	ac.mu.Unlock()
 
 	if err := ac.tryAllAddrs(acCtx, addrs, connectDeadline); err != nil {
+		if !errors.Is(err, context.Canceled) {
+			connectionAttemptsFailedMetric.Record(ac.cc.metricsRecorderList, 1, ac.cc.target, ac.backendServiceLabel, ac.localityLabel)
+		} else {
+			if logger.V(2) {
+				// This records cancelled connection attempts which can be later
+				// replaced by a metric.
+				logger.Infof("Context cancellation detected; not recording this as a failed connection attempt.")
+			}
+		}
 		// TODO: #7534 - Move re-resolution requests into the pick_first LB policy
 		// to ensure one resolution request per pass instead of per subconn failure.
 		ac.cc.resolveNow(resolver.ResolveNowOptions{})
@@ -1314,10 +1402,50 @@
 	}
 	// Success; reset backoff.
 	ac.mu.Lock()
+	connectionAttemptsSucceededMetric.Record(ac.cc.metricsRecorderList, 1, ac.cc.target, ac.backendServiceLabel, ac.localityLabel)
+	openConnectionsMetric.Record(ac.cc.metricsRecorderList, 1, ac.cc.target, ac.backendServiceLabel, ac.securityLevelLocked(), ac.localityLabel)
 	ac.backoffIdx = 0
 	ac.mu.Unlock()
 }
 
+// updateTelemetryLabelsLocked calculates and caches the telemetry labels based on the
+// first address in addrConn.
+func (ac *addrConn) updateTelemetryLabelsLocked() {
+	labelsFunc, ok := internal.AddressToTelemetryLabels.(func(resolver.Address) map[string]string)
+	if !ok || len(ac.addrs) == 0 {
+		// Reset defaults
+		ac.localityLabel = ""
+		ac.backendServiceLabel = ""
+		return
+	}
+	labels := labelsFunc(ac.addrs[0])
+	ac.localityLabel = labels["grpc.lb.locality"]
+	ac.backendServiceLabel = labels["grpc.lb.backend_service"]
+}
+
+type securityLevelKey struct{}
+
+func (ac *addrConn) securityLevelLocked() string {
+	var secLevel string
+	// During disconnection, ac.transport is nil. Fall back to the security level
+	// stored in the current address during connection.
+	if ac.transport == nil {
+		secLevel, _ = ac.curAddr.Attributes.Value(securityLevelKey{}).(string)
+		return secLevel
+	}
+	authInfo := ac.transport.Peer().AuthInfo
+	if ci, ok := authInfo.(interface {
+		GetCommonAuthInfo() credentials.CommonAuthInfo
+	}); ok {
+		secLevel = ci.GetCommonAuthInfo().SecurityLevel.String()
+		// Store the security level in the current address' attributes so
+		// that it remains available for disconnection metrics after the
+		// transport is closed.
+		ac.curAddr.Attributes = ac.curAddr.Attributes.WithValue(securityLevelKey{}, secLevel)
+	}
+	return secLevel
+}
+
 // tryAllAddrs tries to create a connection to the addresses, and stop when at
 // the first successful one. It returns an error if no address was successfully
 // connected, or updates ac appropriately with the new transport.
@@ -1363,11 +1491,11 @@
 	addr.ServerName = ac.cc.getServerName(addr)
 	hctx, hcancel := context.WithCancel(ctx)
 
-	onClose := func(r transport.GoAwayReason) {
+	onClose := func(info transport.GoAwayInfo) {
 		ac.mu.Lock()
 		defer ac.mu.Unlock()
 		// adjust params based on GoAwayReason
-		ac.adjustParams(r)
+		ac.adjustParams(info.Reason)
 		if ctx.Err() != nil {
 			// Already shut down or connection attempt canceled.  tearDown() or
 			// updateAddrs() already cleared the transport and canceled hctx
@@ -1384,6 +1512,7 @@
 			return
 		}
 		ac.transport = nil
+		ac.disconnectErrorLabel = disconnectErrorString(info)
 		// Refresh the name resolver on any connection loss.
 		ac.cc.resolveNow(resolver.ResolveNowOptions{})
 		// Always go idle and wait for the LB policy to initiate a new
@@ -1407,25 +1536,26 @@
 	}
 
 	ac.mu.Lock()
-	defer ac.mu.Unlock()
 	if ctx.Err() != nil {
 		// This can happen if the subConn was removed while in `Connecting`
 		// state. tearDown() would have set the state to `Shutdown`, but
 		// would not have closed the transport since ac.transport would not
 		// have been set at that point.
-		//
-		// We run this in a goroutine because newTr.Close() calls onClose()
+
+		// We unlock ac.mu because newTr.Close() calls onClose()
 		// inline, which requires locking ac.mu.
-		//
+		ac.mu.Unlock()
+
 		// The error we pass to Close() is immaterial since there are no open
 		// streams at this point, so no trailers with error details will be sent
 		// out. We just need to pass a non-nil error.
 		//
 		// This can also happen when updateAddrs is called during a connection
 		// attempt.
-		go newTr.Close(transport.ErrConnClosing)
+		newTr.Close(transport.ErrConnClosing)
 		return nil
 	}
+	defer ac.mu.Unlock()
 	if hctx.Err() != nil {
 		// onClose was already called for this connection, but the connection
 		// was successfully established first.  Consider it a success and set
@@ -1439,6 +1569,32 @@
 	return nil
 }
 
+// disconnectErrorString returns the grpc.disconnect_error metric label corresponding
+// to the provided transport.GoAwayInfo, as specified by gRFC A94:
+// https://github.com/grpc/proposal/blob/master/A94-grpc-subchannel-disconnections-metrics.md
+func disconnectErrorString(info transport.GoAwayInfo) string {
+	err := info.Err
+	var sysErr syscall.Errno
+	switch {
+	case info.Reason != transport.GoAwayInvalid:
+		return fmt.Sprintf("GOAWAY %s", info.GoAwayCode.String())
+	case err == nil:
+		return "unknown"
+	case errors.Is(err, context.Canceled):
+		return "subchannel shutdown"
+	case errors.Is(err, syscall.ECONNRESET):
+		return "connection reset"
+	case errors.Is(err, syscall.ETIMEDOUT), errors.Is(err, context.DeadlineExceeded), errors.Is(err, os.ErrDeadlineExceeded):
+		return "connection timed out"
+	case errors.Is(err, syscall.ECONNABORTED):
+		return "connection aborted"
+	case errors.As(err, &sysErr):
+		return "socket error"
+	default:
+		return "unknown"
+	}
+}
+
 // startHealthCheck starts the health checking stream (RPC) to watch the health
 // stats of this connection if health checking is requested and configured.
 //
@@ -1542,6 +1698,9 @@
 	}
 	curTr := ac.transport
 	ac.transport = nil
+	if ac.disconnectErrorLabel == "" {
+		ac.disconnectErrorLabel = "subchannel shutdown"
+	}
 	// We have to set the state to Shutdown before anything else to prevent races
 	// between setting the state and logic that waits on context cancellation / etc.
 	ac.updateConnectivityState(connectivity.Shutdown, nil)
@@ -1822,7 +1981,7 @@
 	} else if auth, ok := cc.resolverBuilder.(resolver.AuthorityOverrider); ok {
 		cc.authority = auth.OverrideAuthority(cc.parsedTarget)
 	} else if strings.HasPrefix(endpoint, ":") {
-		cc.authority = "localhost" + endpoint
+		cc.authority = "localhost" + encodeAuthority(endpoint)
 	} else {
 		cc.authority = encodeAuthority(endpoint)
 	}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/credentials/credentials.go /work/src/kubernetes/vendor/google.golang.org/grpc/credentials/credentials.go
--- a/vendor/google.golang.org/grpc/credentials/credentials.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/credentials/credentials.go	2026-09-02 10:25:23.877027748 +0000
@@ -44,8 +44,7 @@
 	// A54). uri is the URI of the entry point for the request.  When supported
 	// by the underlying implementation, ctx can be used for timeout and
 	// cancellation. Additionally, RequestInfo data will be available via ctx
-	// to this call.  TODO(zhaoq): Define the set of the qualified keys instead
-	// of leaving it as an arbitrary string.
+	// to this call.
 	GetRequestMetadata(ctx context.Context, uri ...string) (map[string]string, error)
 	// RequireTransportSecurity indicates whether the credentials requires
 	// transport security.
@@ -96,10 +95,11 @@
 	return c
 }
 
-// ProtocolInfo provides information regarding the gRPC wire protocol version,
-// security protocol, security protocol version in use, server name, etc.
+// ProtocolInfo provides static information regarding transport credentials.
 type ProtocolInfo struct {
 	// ProtocolVersion is the gRPC wire protocol version.
+	//
+	// Deprecated: this is unused by gRPC.
 	ProtocolVersion string
 	// SecurityProtocol is the security protocol in use.
 	SecurityProtocol string
@@ -109,7 +109,16 @@
 	//
 	// Deprecated: please use Peer.AuthInfo.
 	SecurityVersion string
-	// ServerName is the user-configured server name.
+	// ServerName is the user-configured server name.  If set, this overrides
+	// the default :authority header used for all RPCs on the channel using the
+	// containing credentials, unless grpc.WithAuthority is set on the channel,
+	// in which case that setting will take precedence.
+	//
+	// This must be a valid `:authority` header according to
+	// [RFC3986](https://datatracker.ietf.org/doc/html/rfc3986#section-3.2).
+	//
+	// Deprecated: Users should use grpc.WithAuthority to override the authority
+	// on a channel instead of configuring the credentials.
 	ServerName string
 }
 
@@ -120,6 +129,20 @@
 	AuthType() string
 }
 
+// AuthorityValidator validates the authority used to override the `:authority`
+// header. This is an optional interface that implementations of AuthInfo can
+// implement if they support per-RPC authority overrides. It is invoked when the
+// application attempts to override the HTTP/2 `:authority` header using the
+// CallAuthority call option.
+type AuthorityValidator interface {
+	// ValidateAuthority checks the authority value used to override the
+	// `:authority` header. The authority parameter is the override value
+	// provided by the application via the CallAuthority option. This value
+	// typically corresponds to the server hostname or endpoint the RPC is
+	// targeting. It returns non-nil error if the validation fails.
+	ValidateAuthority(authority string) error
+}
+
 // ErrConnDispatched indicates that rawConn has been dispatched out of gRPC
 // and the caller should not close rawConn.
 var ErrConnDispatched = errors.New("credentials: rawConn is dispatched out of gRPC")
@@ -159,12 +182,17 @@
 	// Clone makes a copy of this TransportCredentials.
 	Clone() TransportCredentials
 	// OverrideServerName specifies the value used for the following:
+	//
 	// - verifying the hostname on the returned certificates
 	// - as SNI in the client's handshake to support virtual hosting
 	// - as the value for `:authority` header at stream creation time
 	//
-	// Deprecated: use grpc.WithAuthority instead. Will be supported
-	// throughout 1.x.
+	// The provided string should be a valid `:authority` header according to
+	// [RFC3986](https://datatracker.ietf.org/doc/html/rfc3986#section-3.2).
+	//
+	// Deprecated: this method is unused by gRPC.  Users should use
+	// grpc.WithAuthority to override the authority on a channel instead of
+	// configuring the credentials.
 	OverrideServerName(string) error
 }
 
@@ -207,14 +235,32 @@
 	AuthInfo AuthInfo
 }
 
+// requestInfoKey is a struct to be used as the key to store RequestInfo in a
+// context.
+type requestInfoKey struct{}
+
 // RequestInfoFromContext extracts the RequestInfo from the context if it exists.
 //
 // This API is experimental.
 func RequestInfoFromContext(ctx context.Context) (ri RequestInfo, ok bool) {
-	ri, ok = icredentials.RequestInfoFromContext(ctx).(RequestInfo)
+	ri, ok = ctx.Value(requestInfoKey{}).(RequestInfo)
 	return ri, ok
 }
 
+// NewContextWithRequestInfo creates a new context from ctx and attaches ri to it.
+//
+// This RequestInfo will be accessible via RequestInfoFromContext.
+//
+// Intended to be used from tests for PerRPCCredentials implementations (that
+// often need to check connection's SecurityLevel). Should not be used from
+// non-test code: the gRPC client already prepares a context with the correct
+// RequestInfo attached when calling PerRPCCredentials.GetRequestMetadata.
+//
+// This API is experimental.
+func NewContextWithRequestInfo(ctx context.Context, ri RequestInfo) context.Context {
+	return context.WithValue(ctx, requestInfoKey{}, ri)
+}
+
 // ClientHandshakeInfo holds data to be passed to ClientHandshake. This makes
 // it possible to pass arbitrary data to the handshaker from gRPC, resolver,
 // balancer etc. Individual credential implementations control the actual
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/credentials/insecure/insecure.go /work/src/kubernetes/vendor/google.golang.org/grpc/credentials/insecure/insecure.go
--- a/vendor/google.golang.org/grpc/credentials/insecure/insecure.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/credentials/insecure/insecure.go	2026-09-02 10:25:23.881027753 +0000
@@ -30,7 +30,7 @@
 // NewCredentials returns a credentials which disables transport security.
 //
 // Note that using this credentials with per-RPC credentials which require
-// transport security is incompatible and will cause grpc.Dial() to fail.
+// transport security is incompatible and will cause RPCs to fail.
 func NewCredentials() credentials.TransportCredentials {
 	return insecureTC{}
 }
@@ -71,6 +71,12 @@
 	return "insecure"
 }
 
+// ValidateAuthority allows any value to be overridden for the :authority
+// header.
+func (info) ValidateAuthority(string) error {
+	return nil
+}
+
 // insecureBundle implements an insecure bundle.
 // An insecure bundle provides a thin wrapper around insecureTC to support
 // the credentials.Bundle interface.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/credentials/tls.go /work/src/kubernetes/vendor/google.golang.org/grpc/credentials/tls.go
--- a/vendor/google.golang.org/grpc/credentials/tls.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/credentials/tls.go	2026-09-02 10:25:23.877027748 +0000
@@ -50,6 +50,24 @@
 	return "tls"
 }
 
+// ValidateAuthority validates the provided authority being used to override the
+// :authority header by verifying it against the peer certificate. It returns a
+// non-nil error if the validation fails.
+func (t TLSInfo) ValidateAuthority(authority string) error {
+	host, _, err := net.SplitHostPort(authority)
+	if err != nil {
+		host = authority
+	}
+
+	// Verify authority against the leaf certificate.
+	if len(t.State.PeerCertificates) == 0 {
+		// This is not expected to happen as the TLS handshake has already
+		// completed and should have populated PeerCertificates.
+		return fmt.Errorf("credentials: no peer certificates found to verify authority %q", host)
+	}
+	return t.State.PeerCertificates[0].VerifyHostname(host)
+}
+
 // cipherSuiteLookup returns the string version of a TLS cipher suite ID.
 func cipherSuiteLookup(cipherSuiteID uint16) string {
 	for _, s := range tls.CipherSuites() {
@@ -94,14 +112,14 @@
 func (c *tlsCreds) ClientHandshake(ctx context.Context, authority string, rawConn net.Conn) (_ net.Conn, _ AuthInfo, err error) {
 	// use local cfg to avoid clobbering ServerName if using multiple endpoints
 	cfg := credinternal.CloneTLSConfig(c.config)
-	if cfg.ServerName == "" {
-		serverName, _, err := net.SplitHostPort(authority)
-		if err != nil {
-			// If the authority had no host port or if the authority cannot be parsed, use it as-is.
-			serverName = authority
-		}
-		cfg.ServerName = serverName
+
+	serverName, _, err := net.SplitHostPort(authority)
+	if err != nil {
+		// If the authority had no host port or if the authority cannot be parsed, use it as-is.
+		serverName = authority
 	}
+	cfg.ServerName = serverName
+
 	conn := tls.Client(rawConn, cfg)
 	errChannel := make(chan error, 1)
 	go func() {
@@ -243,9 +261,11 @@
 // certificates to establish the identity of the client need to be included in
 // the credentials (eg: for mTLS), use NewTLS instead, where a complete
 // tls.Config can be specified.
-// serverNameOverride is for testing only. If set to a non empty string,
-// it will override the virtual host name of authority (e.g. :authority header
-// field) in requests.
+//
+// serverNameOverride is for testing only. If set to a non empty string, it will
+// override the virtual host name of authority (e.g. :authority header field) in
+// requests.  Users should use grpc.WithAuthority passed to grpc.NewClient to
+// override the authority of the client instead.
 func NewClientTLSFromCert(cp *x509.CertPool, serverNameOverride string) TransportCredentials {
 	return NewTLS(&tls.Config{ServerName: serverNameOverride, RootCAs: cp})
 }
@@ -255,9 +275,11 @@
 // certificates to establish the identity of the client need to be included in
 // the credentials (eg: for mTLS), use NewTLS instead, where a complete
 // tls.Config can be specified.
-// serverNameOverride is for testing only. If set to a non empty string,
-// it will override the virtual host name of authority (e.g. :authority header
-// field) in requests.
+//
+// serverNameOverride is for testing only. If set to a non empty string, it will
+// override the virtual host name of authority (e.g. :authority header field) in
+// requests.  Users should use grpc.WithAuthority passed to grpc.NewClient to
+// override the authority of the client instead.
 func NewClientTLSFromFile(certFile, serverNameOverride string) (TransportCredentials, error) {
 	b, err := os.ReadFile(certFile)
 	if err != nil {
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/dialoptions.go /work/src/kubernetes/vendor/google.golang.org/grpc/dialoptions.go
--- a/vendor/google.golang.org/grpc/dialoptions.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/dialoptions.go	2026-09-02 10:25:23.873027742 +0000
@@ -173,10 +173,8 @@
 // If this option is set to true every connection will release the buffer after
 // flushing the data on the wire.
 //
-// # Experimental
-//
-// Notice: This API is EXPERIMENTAL and may be changed or removed in a
-// later release.
+// Deprecated: shared write buffer is enabled by default. WithSharedWriteBuffer
+// will be removed in a future release.
 func WithSharedWriteBuffer(val bool) DialOption {
 	return newFuncDialOption(func(o *dialOptions) {
 		o.copts.SharedWriteBuffer = val
@@ -213,6 +211,7 @@
 func WithInitialWindowSize(s int32) DialOption {
 	return newFuncDialOption(func(o *dialOptions) {
 		o.copts.InitialWindowSize = s
+		o.copts.StaticWindowSize = true
 	})
 }
 
@@ -222,6 +221,42 @@
 func WithInitialConnWindowSize(s int32) DialOption {
 	return newFuncDialOption(func(o *dialOptions) {
 		o.copts.InitialConnWindowSize = s
+		o.copts.StaticWindowSize = true
+	})
+}
+
+// WithStaticStreamWindowSize returns a DialOption which sets the initial
+// stream window size to the value provided and disables dynamic flow control.
+//
+// Note that this also disables dynamic flow control for the connection,
+// falling back to a default static connection-level window of 64KB. To
+// use a larger connection-level window, you must also use the
+// [WithStaticConnWindowSize] DialOption.
+//
+// Most users should not configure static flow control windows unless
+// operating in a memory-constrained environment.
+func WithStaticStreamWindowSize(s int32) DialOption {
+	return newFuncDialOption(func(o *dialOptions) {
+		o.copts.InitialWindowSize = s
+		o.copts.StaticWindowSize = true
+	})
+}
+
+// WithStaticConnWindowSize returns a DialOption which sets the initial
+// connection window size to the value provided and disables dynamic flow
+// control.
+//
+// Note that this also disables dynamic flow control for individual streams,
+// falling back to a default static connection-level window of 64KB. To
+// explicitly configure the stream-level window size, you must also use the
+// [WithStaticStreamWindowSize] DialOption.
+//
+// Most users should not configure static flow control windows unless
+// operating in a memory-constrained environment.
+func WithStaticConnWindowSize(s int32) DialOption {
+	return newFuncDialOption(func(o *dialOptions) {
+		o.copts.InitialConnWindowSize = s
+		o.copts.StaticWindowSize = true
 	})
 }
 
@@ -360,7 +395,7 @@
 //
 // Note that using this DialOption with per-RPC credentials (through
 // WithCredentialsBundle or WithPerRPCCredentials) which require transport
-// security is incompatible and will cause grpc.Dial() to fail.
+// security is incompatible and will cause RPCs to fail.
 //
 // Deprecated: use WithTransportCredentials and insecure.NewCredentials()
 // instead. Will be supported throughout 1.x.
@@ -587,6 +622,8 @@
 
 // WithAuthority returns a DialOption that specifies the value to be used as the
 // :authority pseudo-header and as the server name in authentication handshake.
+// This overrides all other ways of setting authority on the channel, but can be
+// overridden per-call by using grpc.CallAuthority.
 func WithAuthority(a string) DialOption {
 	return newFuncDialOption(func(o *dialOptions) {
 		o.authority = a
@@ -682,10 +719,11 @@
 func defaultDialOptions() dialOptions {
 	return dialOptions{
 		copts: transport.ConnectOptions{
-			ReadBufferSize:  defaultReadBufSize,
-			WriteBufferSize: defaultWriteBufSize,
-			UserAgent:       grpcUA,
-			BufferPool:      mem.DefaultBufferPool(),
+			ReadBufferSize:    defaultReadBufSize,
+			WriteBufferSize:   defaultWriteBufSize,
+			SharedWriteBuffer: true,
+			UserAgent:         grpcUA,
+			BufferPool:        mem.DefaultBufferPool(),
 		},
 		bs:                       internalbackoff.DefaultExponential,
 		idleTimeout:              30 * time.Minute,
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/encoding/encoding.go /work/src/kubernetes/vendor/google.golang.org/grpc/encoding/encoding.go
--- a/vendor/google.golang.org/grpc/encoding/encoding.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/encoding/encoding.go	2026-09-02 10:25:23.881027753 +0000
@@ -27,8 +27,10 @@
 
 import (
 	"io"
+	"slices"
 	"strings"
 
+	"google.golang.org/grpc/encoding/internal"
 	"google.golang.org/grpc/internal/grpcutil"
 )
 
@@ -36,12 +38,26 @@
 // It is intended for grpc internal use only.
 const Identity = "identity"
 
+func init() {
+	internal.RegisterCompressorForTesting = func(c Compressor) func() {
+		name := c.Name()
+		curCompressor, found := registeredCompressor[name]
+		RegisterCompressor(c)
+		return func() {
+			if found {
+				registeredCompressor[name] = curCompressor
+				return
+			}
+			delete(registeredCompressor, name)
+			grpcutil.RegisteredCompressorNames = slices.DeleteFunc(grpcutil.RegisteredCompressorNames, func(s string) bool {
+				return s == name
+			})
+		}
+	}
+}
+
 // Compressor is used for compressing and decompressing when sending or
 // receiving messages.
-//
-// If a Compressor implements `DecompressedSize(compressedBytes []byte) int`,
-// gRPC will invoke it to determine the size of the buffer allocated for the
-// result of decompression.  A return value of -1 indicates unknown size.
 type Compressor interface {
 	// Compress writes the data written to wc to w after compressing it.  If an
 	// error occurs while initializing the compressor, that error is returned
@@ -50,6 +66,9 @@
 	// Decompress reads data from r, decompresses it, and provides the
 	// uncompressed data via the returned io.Reader.  If an error occurs while
 	// initializing the decompressor, that error is returned instead.
+	//
+	// The returned io.Reader may optionally implement io.ReadCloser, and if it
+	// does, gRPC will call Close() exactly once.
 	Decompress(r io.Reader) (io.Reader, error)
 	// Name is the name of the compression codec and is used to set the content
 	// coding header.  The result must be static; the result cannot change
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/encoding/gzip/gzip.go /work/src/kubernetes/vendor/google.golang.org/grpc/encoding/gzip/gzip.go
--- a/vendor/google.golang.org/grpc/encoding/gzip/gzip.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/encoding/gzip/gzip.go	2026-09-02 10:25:23.881027753 +0000
@@ -27,7 +27,6 @@
 
 import (
 	"compress/gzip"
-	"encoding/binary"
 	"fmt"
 	"io"
 	"sync"
@@ -82,6 +81,8 @@
 	return z.Writer.Close()
 }
 
+var _ io.Closer = &reader{}
+
 type reader struct {
 	*gzip.Reader
 	pool *sync.Pool
@@ -103,23 +104,14 @@
 	return z, nil
 }
 
-func (z *reader) Read(p []byte) (n int, err error) {
-	n, err = z.Reader.Read(p)
-	if err == io.EOF {
-		z.pool.Put(z)
-	}
+func (r *reader) Read(p []byte) (n int, err error) {
+	n, err = r.Reader.Read(p)
 	return n, err
 }
 
-// RFC1952 specifies that the last four bytes "contains the size of
-// the original (uncompressed) input data modulo 2^32."
-// gRPC has a max message size of 2GB so we don't need to worry about wraparound.
-func (c *compressor) DecompressedSize(buf []byte) int {
-	last := len(buf)
-	if last < 4 {
-		return -1
-	}
-	return int(binary.LittleEndian.Uint32(buf[last-4 : last]))
+func (r *reader) Close() error {
+	defer r.pool.Put(r)
+	return r.Reader.Close()
 }
 
 func (c *compressor) Name() string {
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/encoding/internal/internal.go /work/src/kubernetes/vendor/google.golang.org/grpc/encoding/internal/internal.go
--- a/vendor/google.golang.org/grpc/encoding/internal/internal.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/encoding/internal/internal.go	2026-09-02 10:25:23.881027753 +0000
@@ -0,0 +1,28 @@
+/*
+ *
+ * Copyright 2025 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+// Package internal contains code internal to the encoding package.
+package internal
+
+// RegisterCompressorForTesting registers a compressor in the global compressor
+// registry. It returns a cleanup function that should be called at the end
+// of the test to unregister the compressor.
+//
+// This prevents compressors registered in one test from appearing in the
+// encoding headers of subsequent tests.
+var RegisterCompressorForTesting any // func RegisterCompressor(c Compressor) func()
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/encoding/proto/proto.go /work/src/kubernetes/vendor/google.golang.org/grpc/encoding/proto/proto.go
--- a/vendor/google.golang.org/grpc/encoding/proto/proto.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/encoding/proto/proto.go	2026-09-02 10:25:23.881027753 +0000
@@ -46,9 +46,25 @@
 		return nil, fmt.Errorf("proto: failed to marshal, message is %T, want proto.Message", v)
 	}
 
+	// Important: if we remove this Size call then we cannot use
+	// UseCachedSize in MarshalOptions below.
 	size := proto.Size(vv)
+
+	// MarshalOptions with UseCachedSize allows reusing the result from the
+	// previous Size call. This is safe here because:
+	//
+	// 1. We just computed the size.
+	// 2. We assume the message is not being mutated concurrently.
+	//
+	// Important: If the proto.Size call above is removed, using UseCachedSize
+	// becomes unsafe and may lead to incorrect marshaling.
+	//
+	// For more details, see the doc of UseCachedSize:
+	// https://pkg.go.dev/google.golang.org/protobuf/proto#MarshalOptions
+	marshalOptions := proto.MarshalOptions{UseCachedSize: true}
+
 	if mem.IsBelowBufferPoolingThreshold(size) {
-		buf, err := proto.Marshal(vv)
+		buf, err := marshalOptions.Marshal(vv)
 		if err != nil {
 			return nil, err
 		}
@@ -56,7 +72,7 @@
 	} else {
 		pool := mem.DefaultBufferPool()
 		buf := pool.Get(size)
-		if _, err := (proto.MarshalOptions{}).MarshalAppend((*buf)[:0], vv); err != nil {
+		if _, err := marshalOptions.MarshalAppend((*buf)[:0], vv); err != nil {
 			pool.Put(buf)
 			return nil, err
 		}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/experimental/balancer/weight/weight.go /work/src/kubernetes/vendor/google.golang.org/grpc/experimental/balancer/weight/weight.go
--- a/vendor/google.golang.org/grpc/experimental/balancer/weight/weight.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/experimental/balancer/weight/weight.go	2026-09-02 10:25:23.881027753 +0000
@@ -0,0 +1,60 @@
+/*
+ *
+ * Copyright 2025 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+// Package weight contains utilities to manage endpoint weights.
+// Weights may be used by LB policies to distribute load across
+// multiple endpoints.
+//
+// # Experimental
+//
+// Notice: All APIs in this package are EXPERIMENTAL and may be changed
+// or removed in a later release.
+package weight
+
+import "google.golang.org/grpc/resolver"
+
+// attributeKey is the type used as the key to store EndpointInfo in the
+// Attributes field of resolver.Endpoint.
+type attributeKey struct{}
+
+// EndpointInfo will be stored in the Attributes field of Endpoints.
+type EndpointInfo struct {
+	Weight uint32
+}
+
+// Equal allows the values to be compared by Attributes.Equal.
+func (a EndpointInfo) Equal(o any) bool {
+	oa, ok := o.(EndpointInfo)
+	return ok && oa.Weight == a.Weight
+}
+
+// Set returns a copy of endpoint in which the Attributes field is
+// updated with EndpointInfo.
+func Set(endpoint resolver.Endpoint, epInfo EndpointInfo) resolver.Endpoint {
+	endpoint.Attributes = endpoint.Attributes.WithValue(attributeKey{}, epInfo)
+	return endpoint
+}
+
+// FromEndpoint returns the EndpointInfo stored in the Attributes
+// field of an endpoint. It returns an empty EndpointInfo if attribute
+// is not found.
+func FromEndpoint(endpoint resolver.Endpoint) EndpointInfo {
+	v := endpoint.Attributes.Value(attributeKey{})
+	ei, _ := v.(EndpointInfo)
+	return ei
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/experimental/stats/metricregistry.go /work/src/kubernetes/vendor/google.golang.org/grpc/experimental/stats/metricregistry.go
--- a/vendor/google.golang.org/grpc/experimental/stats/metricregistry.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/experimental/stats/metricregistry.go	2026-09-02 10:25:23.881027753 +0000
@@ -75,6 +75,8 @@
 	MetricTypeIntHisto
 	MetricTypeFloatHisto
 	MetricTypeIntGauge
+	MetricTypeIntUpDownCount
+	MetricTypeIntAsyncGauge
 )
 
 // Int64CountHandle is a typed handle for a int count metric. This handle
@@ -93,6 +95,23 @@
 	recorder.RecordInt64Count(h, incr, labels...)
 }
 
+// Int64UpDownCountHandle is a typed handle for an int up-down counter metric.
+// This handle is passed at the recording point in order to know which metric
+// to record on.
+type Int64UpDownCountHandle MetricDescriptor
+
+// Descriptor returns the int64 up-down counter handle typecast to a pointer to a
+// MetricDescriptor.
+func (h *Int64UpDownCountHandle) Descriptor() *MetricDescriptor {
+	return (*MetricDescriptor)(h)
+}
+
+// Record records the int64 up-down counter value on the metrics recorder provided.
+// The value 'v' can be positive to increment or negative to decrement.
+func (h *Int64UpDownCountHandle) Record(recorder MetricsRecorder, v int64, labels ...string) {
+	recorder.RecordInt64UpDownCount(h, v, labels...)
+}
+
 // Float64CountHandle is a typed handle for a float count metric. This handle is
 // passed at the recording point in order to know which metric to record on.
 type Float64CountHandle MetricDescriptor
@@ -154,6 +173,30 @@
 	recorder.RecordInt64Gauge(h, incr, labels...)
 }
 
+// AsyncMetric is a marker interface for asynchronous metric types.
+type AsyncMetric interface {
+	isAsync()
+	Descriptor() *MetricDescriptor
+}
+
+// Int64AsyncGaugeHandle is a typed handle for an int gauge metric. This handle is
+// passed at the recording point in order to know which metric to record on.
+type Int64AsyncGaugeHandle MetricDescriptor
+
+// isAsync implements the AsyncMetric interface.
+func (h *Int64AsyncGaugeHandle) isAsync() {}
+
+// Descriptor returns the int64 gauge handle typecast to a pointer to a
+// MetricDescriptor.
+func (h *Int64AsyncGaugeHandle) Descriptor() *MetricDescriptor {
+	return (*MetricDescriptor)(h)
+}
+
+// Record records the int64 gauge value on the metrics recorder provided.
+func (h *Int64AsyncGaugeHandle) Record(recorder AsyncMetricsRecorder, value int64, labels ...string) {
+	recorder.RecordInt64AsyncGauge(h, value, labels...)
+}
+
 // registeredMetrics are the registered metric descriptor names.
 var registeredMetrics = make(map[string]bool)
 
@@ -249,6 +292,35 @@
 	return (*Int64GaugeHandle)(descPtr)
 }
 
+// RegisterInt64UpDownCount registers the metric description onto the global registry.
+// It returns a typed handle to use for recording data.
+//
+// NOTE: this function must only be called during initialization time (i.e. in
+// an init() function), and is not thread-safe. If multiple metrics are
+// registered with the same name, this function will panic.
+func RegisterInt64UpDownCount(descriptor MetricDescriptor) *Int64UpDownCountHandle {
+	registerMetric(descriptor.Name, descriptor.Default)
+	// Set the specific metric type for the up-down counter
+	descriptor.Type = MetricTypeIntUpDownCount
+	descPtr := &descriptor
+	metricsRegistry[descriptor.Name] = descPtr
+	return (*Int64UpDownCountHandle)(descPtr)
+}
+
+// RegisterInt64AsyncGauge registers the metric description onto the global registry.
+// It returns a typed handle to use for recording data.
+//
+// NOTE: this function must only be called during initialization time (i.e. in
+// an init() function), and is not thread-safe. If multiple metrics are
+// registered with the same name, this function will panic.
+func RegisterInt64AsyncGauge(descriptor MetricDescriptor) *Int64AsyncGaugeHandle {
+	registerMetric(descriptor.Name, descriptor.Default)
+	descriptor.Type = MetricTypeIntAsyncGauge
+	descPtr := &descriptor
+	metricsRegistry[descriptor.Name] = descPtr
+	return (*Int64AsyncGaugeHandle)(descPtr)
+}
+
 // snapshotMetricsRegistryForTesting snapshots the global data of the metrics
 // registry. Returns a cleanup function that sets the metrics registry to its
 // original state.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/experimental/stats/metrics.go /work/src/kubernetes/vendor/google.golang.org/grpc/experimental/stats/metrics.go
--- a/vendor/google.golang.org/grpc/experimental/stats/metrics.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/experimental/stats/metrics.go	2026-09-02 10:25:23.881027753 +0000
@@ -19,9 +19,30 @@
 // Package stats contains experimental metrics/stats API's.
 package stats
 
-import "google.golang.org/grpc/stats"
+import (
+	"context"
+
+	"google.golang.org/grpc/internal"
+	"google.golang.org/grpc/stats"
+)
+
+type customLabelKey struct{}
+
+// NewContextWithCustomLabel returns a new context with the provided custom label
+// attached. The label will be propagated to all metric instruments specified in gRFC A108.
+func NewContextWithCustomLabel(ctx context.Context, label string) context.Context {
+	return context.WithValue(ctx, customLabelKey{}, label)
+}
+
+// CustomLabelFromContext returns the custom label from the context if it exists.
+// If the custom label is not present, it returns an empty string.
+func CustomLabelFromContext(ctx context.Context) string {
+	label, _ := ctx.Value(customLabelKey{}).(string)
+	return label
+}
 
 // MetricsRecorder records on metrics derived from metric registry.
+// Implementors must embed UnimplementedMetricsRecorder.
 type MetricsRecorder interface {
 	// RecordInt64Count records the measurement alongside labels on the int
 	// count associated with the provided handle.
@@ -38,6 +59,49 @@
 	// RecordInt64Gauge records the measurement alongside labels on the int
 	// gauge associated with the provided handle.
 	RecordInt64Gauge(handle *Int64GaugeHandle, incr int64, labels ...string)
+	// RecordInt64UpDownCounter records the measurement alongside labels on the int
+	// count associated with the provided handle.
+	RecordInt64UpDownCount(handle *Int64UpDownCountHandle, incr int64, labels ...string)
+	// RegisterAsyncReporter registers a reporter to produce metric values for
+	// only the listed descriptors. The returned function must be called when
+	// the metrics are no longer needed, which will remove the reporter. The
+	// returned method needs to be idempotent and concurrent safe.
+	RegisterAsyncReporter(reporter AsyncMetricReporter, descriptors ...AsyncMetric) func()
+
+	// EnforceMetricsRecorderEmbedding is included to force implementers to embed
+	// another implementation of this interface, allowing gRPC to add methods
+	// without breaking users.
+	internal.EnforceMetricsRecorderEmbedding
+}
+
+// AsyncMetricReporter is an interface for types that record metrics asynchronously
+// for the set of descriptors they are registered with. The AsyncMetricsRecorder
+// parameter is used to record values for these metrics.
+//
+// Implementations must make unique recordings across all registered
+// AsyncMetricReporters. Meaning, they should not report values for a metric with
+// the same attributes as another AsyncMetricReporter will report.
+//
+// Implementations must be concurrent-safe.
+type AsyncMetricReporter interface {
+	// Report records metric values using the provided recorder.
+	Report(AsyncMetricsRecorder) error
+}
+
+// AsyncMetricReporterFunc is an adapter to allow the use of ordinary functions as
+// AsyncMetricReporters.
+type AsyncMetricReporterFunc func(AsyncMetricsRecorder) error
+
+// Report calls f(r).
+func (f AsyncMetricReporterFunc) Report(r AsyncMetricsRecorder) error {
+	return f(r)
+}
+
+// AsyncMetricsRecorder records on asynchronous metrics derived from metric registry.
+type AsyncMetricsRecorder interface {
+	// RecordInt64AsyncGauge records the measurement alongside labels on the int
+	// count associated with the provided handle asynchronously
+	RecordInt64AsyncGauge(handle *Int64AsyncGaugeHandle, incr int64, labels ...string)
 }
 
 // Metrics is an experimental legacy alias of the now-stable stats.MetricSet.
@@ -52,3 +116,33 @@
 func NewMetrics(metrics ...Metric) *Metrics {
 	return stats.NewMetricSet(metrics...)
 }
+
+// UnimplementedMetricsRecorder must be embedded to have forward compatible implementations.
+type UnimplementedMetricsRecorder struct {
+	internal.EnforceMetricsRecorderEmbedding
+}
+
+// RecordInt64Count provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RecordInt64Count(*Int64CountHandle, int64, ...string) {}
+
+// RecordFloat64Count provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RecordFloat64Count(*Float64CountHandle, float64, ...string) {}
+
+// RecordInt64Histo provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RecordInt64Histo(*Int64HistoHandle, int64, ...string) {}
+
+// RecordFloat64Histo provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RecordFloat64Histo(*Float64HistoHandle, float64, ...string) {}
+
+// RecordInt64Gauge provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RecordInt64Gauge(*Int64GaugeHandle, int64, ...string) {}
+
+// RecordInt64UpDownCount provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RecordInt64UpDownCount(*Int64UpDownCountHandle, int64, ...string) {
+}
+
+// RegisterAsyncReporter provides a no-op implementation.
+func (UnimplementedMetricsRecorder) RegisterAsyncReporter(AsyncMetricReporter, ...AsyncMetric) func() {
+	// No-op: Return an empty function to ensure caller doesn't panic on nil function call
+	return func() {}
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go
--- a/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go	2026-09-02 10:25:23.881027753 +0000
@@ -17,7 +17,7 @@
 
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.36.5
+// 	protoc-gen-go v1.36.11
 // 	protoc        v5.27.1
 // source: grpc/health/v1/health.proto
 
@@ -261,63 +261,29 @@
 
 var File_grpc_health_v1_health_proto protoreflect.FileDescriptor
 
-var file_grpc_health_v1_health_proto_rawDesc = string([]byte{
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-})
+const file_grpc_health_v1_health_proto_rawDesc = "" +
+	"\n" +
+	"\x1bgrpc/health/v1/health.proto\x12\x0egrpc.health.v1\".\n" +
+	"\x12HealthCheckRequest\x12\x18\n" +
+	"\aservice\x18\x01 \x01(\tR\aservice\"\xb1\x01\n" +
+	"\x13HealthCheckResponse\x12I\n" +
+	"\x06status\x18\x01 \x01(\x0e21.grpc.health.v1.HealthCheckResponse.ServingStatusR\x06status\"O\n" +
+	"\rServingStatus\x12\v\n" +
+	"\aUNKNOWN\x10\x00\x12\v\n" +
+	"\aSERVING\x10\x01\x12\x0f\n" +
+	"\vNOT_SERVING\x10\x02\x12\x13\n" +
+	"\x0fSERVICE_UNKNOWN\x10\x03\"\x13\n" +
+	"\x11HealthListRequest\"\xc4\x01\n" +
+	"\x12HealthListResponse\x12L\n" +
+	"\bstatuses\x18\x01 \x03(\v20.grpc.health.v1.HealthListResponse.StatusesEntryR\bstatuses\x1a`\n" +
+	"\rStatusesEntry\x12\x10\n" +
+	"\x03key\x18\x01 \x01(\tR\x03key\x129\n" +
+	"\x05value\x18\x02 \x01(\v2#.grpc.health.v1.HealthCheckResponseR\x05value:\x028\x012\xfd\x01\n" +
+	"\x06Health\x12P\n" +
+	"\x05Check\x12\".grpc.health.v1.HealthCheckRequest\x1a#.grpc.health.v1.HealthCheckResponse\x12M\n" +
+	"\x04List\x12!.grpc.health.v1.HealthListRequest\x1a\".grpc.health.v1.HealthListResponse\x12R\n" +
+	"\x05Watch\x12\".grpc.health.v1.HealthCheckRequest\x1a#.grpc.health.v1.HealthCheckResponse0\x01Bp\n" +
+	"\x11io.grpc.health.v1B\vHealthProtoP\x01Z,google.golang.org/grpc/health/grpc_health_v1\xa2\x02\fGrpcHealthV1\xaa\x02\x0eGrpc.Health.V1b\x06proto3"
 
 var (
 	file_grpc_health_v1_health_proto_rawDescOnce sync.Once
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/health/grpc_health_v1/health_grpc.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/health/grpc_health_v1/health_grpc.pb.go
--- a/vendor/google.golang.org/grpc/health/grpc_health_v1/health_grpc.pb.go	2026-09-02 10:24:55.028997629 +0000
+++ b/vendor/google.golang.org/grpc/health/grpc_health_v1/health_grpc.pb.go	2026-09-02 10:25:23.881027753 +0000
@@ -17,7 +17,7 @@
 
 // Code generated by protoc-gen-go-grpc. DO NOT EDIT.
 // versions:
-// - protoc-gen-go-grpc v1.5.1
+// - protoc-gen-go-grpc v1.6.2
 // - protoc             v5.27.1
 // source: grpc/health/v1/health.proto
 
@@ -188,13 +188,13 @@
 type UnimplementedHealthServer struct{}
 
 func (UnimplementedHealthServer) Check(context.Context, *HealthCheckRequest) (*HealthCheckResponse, error) {
-	return nil, status.Errorf(codes.Unimplemented, "method Check not implemented")
+	return nil, status.Error(codes.Unimplemented, "method Check not implemented")
 }
 func (UnimplementedHealthServer) List(context.Context, *HealthListRequest) (*HealthListResponse, error) {
-	return nil, status.Errorf(codes.Unimplemented, "method List not implemented")
+	return nil, status.Error(codes.Unimplemented, "method List not implemented")
 }
 func (UnimplementedHealthServer) Watch(*HealthCheckRequest, grpc.ServerStreamingServer[HealthCheckResponse]) error {
-	return status.Errorf(codes.Unimplemented, "method Watch not implemented")
+	return status.Error(codes.Unimplemented, "method Watch not implemented")
 }
 func (UnimplementedHealthServer) testEmbeddedByValue() {}
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/health/server.go /work/src/kubernetes/vendor/google.golang.org/grpc/health/server.go
--- a/vendor/google.golang.org/grpc/health/server.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/health/server.go	2026-09-02 10:25:23.881027753 +0000
@@ -30,6 +30,13 @@
 	"google.golang.org/grpc/status"
 )
 
+const (
+	// maxAllowedServices defines the maximum number of resources a List
+	// operation can return. An error is returned if the number of services
+	// exceeds this limit.
+	maxAllowedServices = 100
+)
+
 // Server implements `service Health`.
 type Server struct {
 	healthgrpc.UnimplementedHealthServer
@@ -62,6 +69,23 @@
 	return nil, status.Error(codes.NotFound, "unknown service")
 }
 
+// List implements `service Health`.
+func (s *Server) List(_ context.Context, _ *healthpb.HealthListRequest) (*healthpb.HealthListResponse, error) {
+	s.mu.RLock()
+	defer s.mu.RUnlock()
+
+	if len(s.statusMap) > maxAllowedServices {
+		return nil, status.Errorf(codes.ResourceExhausted, "server health list exceeds maximum capacity: %d", maxAllowedServices)
+	}
+
+	statusMap := make(map[string]*healthpb.HealthCheckResponse, len(s.statusMap))
+	for k, v := range s.statusMap {
+		statusMap[k] = &healthpb.HealthCheckResponse{Status: v}
+	}
+
+	return &healthpb.HealthListResponse{Statuses: statusMap}, nil
+}
+
 // Watch implements `service Health`.
 func (s *Server) Watch(in *healthpb.HealthCheckRequest, stream healthgrpc.Health_WatchServer) error {
 	service := in.Service
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/interceptor.go /work/src/kubernetes/vendor/google.golang.org/grpc/interceptor.go
--- a/vendor/google.golang.org/grpc/interceptor.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/interceptor.go	2026-09-02 10:25:23.873027742 +0000
@@ -97,8 +97,12 @@
 	IsServerStream bool
 }
 
-// StreamServerInterceptor provides a hook to intercept the execution of a streaming RPC on the server.
-// info contains all the information of this RPC the interceptor can operate on. And handler is the
-// service method implementation. It is the responsibility of the interceptor to invoke handler to
-// complete the RPC.
+// StreamServerInterceptor provides a hook to intercept the execution of a
+// streaming RPC on the server.
+//
+// srv is the service implementation on which the RPC was invoked, and needs to
+// be passed to handler, and not used otherwise. ss is the server side of the
+// stream. info contains all the information of this RPC the interceptor can
+// operate on. And handler is the service method implementation. It is the
+// responsibility of the interceptor to invoke handler to complete the RPC.
 type StreamServerInterceptor func(srv any, ss ServerStream, info *StreamServerInfo, handler StreamHandler) error
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/balancer/gracefulswitch/gracefulswitch.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/balancer/gracefulswitch/gracefulswitch.go
--- a/vendor/google.golang.org/grpc/internal/balancer/gracefulswitch/gracefulswitch.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/balancer/gracefulswitch/gracefulswitch.go	2026-09-02 10:25:23.881027753 +0000
@@ -67,6 +67,10 @@
 	// balancerCurrent before the UpdateSubConnState is called on the
 	// balancerCurrent.
 	currentMu sync.Mutex
+
+	// activeGoroutines tracks all the goroutines that this balancer has started
+	// and that should be waited on when the balancer closes.
+	activeGoroutines sync.WaitGroup
 }
 
 // swap swaps out the current lb with the pending lb and updates the ClientConn.
@@ -76,7 +80,9 @@
 	cur := gsb.balancerCurrent
 	gsb.balancerCurrent = gsb.balancerPending
 	gsb.balancerPending = nil
+	gsb.activeGoroutines.Add(1)
 	go func() {
+		defer gsb.activeGoroutines.Done()
 		gsb.currentMu.Lock()
 		defer gsb.currentMu.Unlock()
 		cur.Close()
@@ -223,15 +229,7 @@
 	// There is no need to protect this read with a mutex, as the write to the
 	// Balancer field happens in SwitchTo, which completes before this can be
 	// called.
-	if ei, ok := balToUpdate.Balancer.(balancer.ExitIdler); ok {
-		ei.ExitIdle()
-		return
-	}
-	gsb.mu.Lock()
-	defer gsb.mu.Unlock()
-	for sc := range balToUpdate.subconns {
-		sc.Connect()
-	}
+	balToUpdate.ExitIdle()
 }
 
 // updateSubConnState forwards the update to the appropriate child.
@@ -282,6 +280,7 @@
 
 	currentBalancerToClose.Close()
 	pendingBalancerToClose.Close()
+	gsb.activeGoroutines.Wait()
 }
 
 // balancerWrapper wraps a balancer.Balancer, and overrides some Balancer
@@ -332,7 +331,12 @@
 	defer bw.gsb.mu.Unlock()
 	bw.lastState = state
 
+	// If Close() acquires the mutex before UpdateState(), the balancer
+	// will already have been removed from the current or pending state when
+	// reaching this point.
 	if !bw.gsb.balancerCurrentOrPending(bw) {
+		// Returning here ensures that (*Balancer).swap() is not invoked after
+		// (*Balancer).Close() and therefore prevents "use after close".
 		return
 	}
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/buffer/unbounded.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/buffer/unbounded.go
--- a/vendor/google.golang.org/grpc/internal/buffer/unbounded.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/buffer/unbounded.go	2026-09-02 10:25:23.885027759 +0000
@@ -83,6 +83,7 @@
 		default:
 		}
 	} else if b.closing && !b.closed {
+		b.closed = true
 		close(b.c)
 	}
 }
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/channelz/trace.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/channelz/trace.go
--- a/vendor/google.golang.org/grpc/internal/channelz/trace.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/channelz/trace.go	2026-09-02 10:25:23.885027759 +0000
@@ -194,7 +194,7 @@
 // If channelz is not turned ON, this will simply log the event descriptions.
 func AddTraceEvent(l grpclog.DepthLoggerV2, e Entity, depth int, desc *TraceEvent) {
 	// Log only the trace description associated with the bottom most entity.
-	d := fmt.Sprintf("[%s]%s", e, desc.Desc)
+	d := fmt.Sprintf("[%s] %s", e, desc.Desc)
 	switch desc.Severity {
 	case CtUnknown, CtInfo:
 		l.InfoDepth(depth+1, d)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/credentials/credentials.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/credentials/credentials.go
--- a/vendor/google.golang.org/grpc/internal/credentials/credentials.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/credentials/credentials.go	2026-09-02 10:25:23.885027759 +0000
@@ -20,20 +20,6 @@
 	"context"
 )
 
-// requestInfoKey is a struct to be used as the key to store RequestInfo in a
-// context.
-type requestInfoKey struct{}
-
-// NewRequestInfoContext creates a context with ri.
-func NewRequestInfoContext(ctx context.Context, ri any) context.Context {
-	return context.WithValue(ctx, requestInfoKey{}, ri)
-}
-
-// RequestInfoFromContext extracts the RequestInfo from ctx.
-func RequestInfoFromContext(ctx context.Context) any {
-	return ctx.Value(requestInfoKey{})
-}
-
 // clientHandshakeInfoKey is a struct used as the key to store
 // ClientHandshakeInfo in a context.
 type clientHandshakeInfoKey struct{}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go
--- a/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go	2026-09-02 10:25:23.885027759 +0000
@@ -26,49 +26,132 @@
 )
 
 var (
-	// TXTErrIgnore is set if TXT errors should be ignored ("GRPC_GO_IGNORE_TXT_ERRORS" is not "false").
+	// EnableTXTServiceConfig is set if the DNS resolver should perform TXT
+	// lookups for service config ("GRPC_ENABLE_TXT_SERVICE_CONFIG" is not
+	// "false").
+	EnableTXTServiceConfig = boolFromEnv("GRPC_ENABLE_TXT_SERVICE_CONFIG", true)
+
+	// TXTErrIgnore is set if TXT errors should be ignored
+	// ("GRPC_GO_IGNORE_TXT_ERRORS" is not "false").
 	TXTErrIgnore = boolFromEnv("GRPC_GO_IGNORE_TXT_ERRORS", true)
+
 	// RingHashCap indicates the maximum ring size which defaults to 4096
 	// entries but may be overridden by setting the environment variable
 	// "GRPC_RING_HASH_CAP".  This does not override the default bounds
 	// checking which NACKs configs specifying ring sizes > 8*1024*1024 (~8M).
 	RingHashCap = uint64FromEnv("GRPC_RING_HASH_CAP", 4096, 1, 8*1024*1024)
-	// LeastRequestLB is set if we should support the least_request_experimental
-	// LB policy, which can be enabled by setting the environment variable
-	// "GRPC_EXPERIMENTAL_ENABLE_LEAST_REQUEST" to "true".
-	LeastRequestLB = boolFromEnv("GRPC_EXPERIMENTAL_ENABLE_LEAST_REQUEST", false)
+
 	// ALTSMaxConcurrentHandshakes is the maximum number of concurrent ALTS
 	// handshakes that can be performed.
 	ALTSMaxConcurrentHandshakes = uint64FromEnv("GRPC_ALTS_MAX_CONCURRENT_HANDSHAKES", 100, 1, 100)
+
 	// EnforceALPNEnabled is set if TLS connections to servers with ALPN disabled
 	// should be rejected. The HTTP/2 protocol requires ALPN to be enabled, this
 	// option is present for backward compatibility. This option may be overridden
 	// by setting the environment variable "GRPC_ENFORCE_ALPN_ENABLED" to "true"
 	// or "false".
 	EnforceALPNEnabled = boolFromEnv("GRPC_ENFORCE_ALPN_ENABLED", true)
-	// XDSFallbackSupport is the env variable that controls whether support for
-	// xDS fallback is turned on. If this is unset or is false, only the first
-	// xDS server in the list of server configs will be used.
-	XDSFallbackSupport = boolFromEnv("GRPC_EXPERIMENTAL_XDS_FALLBACK", true)
-	// NewPickFirstEnabled is set if the new pickfirst leaf policy is to be used
-	// instead of the exiting pickfirst implementation. This can be disabled by
-	// setting the environment variable "GRPC_EXPERIMENTAL_ENABLE_NEW_PICK_FIRST"
-	// to "false".
-	NewPickFirstEnabled = boolFromEnv("GRPC_EXPERIMENTAL_ENABLE_NEW_PICK_FIRST", true)
 
 	// XDSEndpointHashKeyBackwardCompat controls the parsing of the endpoint hash
 	// key from EDS LbEndpoint metadata. Endpoint hash keys can be disabled by
-	// setting "GRPC_XDS_ENDPOINT_HASH_KEY_BACKWARD_COMPAT" to "true". When the
-	// implementation of A76 is stable, we will flip the default value to false
-	// in a subsequent release. A final release will remove this environment
-	// variable, enabling the new behavior unconditionally.
-	XDSEndpointHashKeyBackwardCompat = boolFromEnv("GRPC_XDS_ENDPOINT_HASH_KEY_BACKWARD_COMPAT", true)
+	// setting "GRPC_XDS_ENDPOINT_HASH_KEY_BACKWARD_COMPAT" to "true". A future
+	// release will remove this environment variable, enabling the new behavior
+	// unconditionally.
+	XDSEndpointHashKeyBackwardCompat = boolFromEnv("GRPC_XDS_ENDPOINT_HASH_KEY_BACKWARD_COMPAT", false)
+
+	// LabelServerGoroutines controls setting [runtime/pprof.Labels] on the
+	// goroutines spawned by [grpc.Server] type.
+	// For now, this is limited to the goroutines spawned to handle incoming
+	// requests on the server.
+	// Set "GRPC_GO_SERVER_GOROUTINE_LABELS" to "grpc.method=true" to
+	// enable this grpc.method label, or "all" to enable all valid labels.
+	// This variable is a bit-field.
+	LabelServerGoroutines = goroutineLabelsFromEnv("GRPC_GO_SERVER_GOROUTINE_LABELS", 0)
 
 	// RingHashSetRequestHashKey is set if the ring hash balancer can get the
 	// request hash header by setting the "requestHashHeader" field, according
-	// to gRFC A76. It can be enabled by setting the environment variable
-	// "GRPC_EXPERIMENTAL_RING_HASH_SET_REQUEST_HASH_KEY" to "true".
-	RingHashSetRequestHashKey = boolFromEnv("GRPC_EXPERIMENTAL_RING_HASH_SET_REQUEST_HASH_KEY", false)
+	// to gRFC A76. It can be disabled by setting the environment variable
+	// "GRPC_EXPERIMENTAL_RING_HASH_SET_REQUEST_HASH_KEY" to "false".
+	RingHashSetRequestHashKey = boolFromEnv("GRPC_EXPERIMENTAL_RING_HASH_SET_REQUEST_HASH_KEY", true)
+
+	// ALTSHandshakerKeepaliveParams is set if we should add the
+	// KeepaliveParams when dial the ALTS handshaker service.
+	ALTSHandshakerKeepaliveParams = boolFromEnv("GRPC_EXPERIMENTAL_ALTS_HANDSHAKER_KEEPALIVE_PARAMS", false)
+
+	// EnableDefaultPortForProxyTarget controls whether the resolver adds a default port 443
+	// to a target address that lacks one. This flag only has an effect when all of
+	// the following conditions are met:
+	//   - A connect proxy is being used.
+	//   - Target resolution is disabled.
+	//   - The DNS resolver is being used.
+	EnableDefaultPortForProxyTarget = boolFromEnv("GRPC_EXPERIMENTAL_ENABLE_DEFAULT_PORT_FOR_PROXY_TARGET", true)
+
+	// CaseSensitiveBalancerRegistries is set if the balancer registry should be
+	// case-sensitive. This is enabled by default, but can be disabled by setting
+	// the env variable "GRPC_GO_EXPERIMENTAL_CASE_SENSITIVE_BALANCER_REGISTRIES"
+	// to "false".
+	//
+	// This env varible will be removed in release v1.82.0.
+	CaseSensitiveBalancerRegistries = boolFromEnv("GRPC_GO_EXPERIMENTAL_CASE_SENSITIVE_BALANCER_REGISTRIES", true)
+
+	// XDSAuthorityRewrite indicates whether xDS authority rewriting is enabled.
+	// This feature is defined in gRFC A81 and is enabled by setting the
+	// environment variable GRPC_EXPERIMENTAL_XDS_AUTHORITY_REWRITE to "true".
+	XDSAuthorityRewrite = boolFromEnv("GRPC_EXPERIMENTAL_XDS_AUTHORITY_REWRITE", false)
+
+	// PickFirstWeightedShuffling indicates whether weighted endpoint shuffling
+	// is enabled in the pick_first LB policy, as defined in gRFC A113. This
+	// feature can be disabled by setting the environment variable
+	// GRPC_EXPERIMENTAL_PF_WEIGHTED_SHUFFLING to "false".
+	PickFirstWeightedShuffling = boolFromEnv("GRPC_EXPERIMENTAL_PF_WEIGHTED_SHUFFLING", true)
+
+	// XDSRecoverPanicInResourceParsing indicates whether the xdsclient should
+	// recover from panics while parsing xDS resources.
+	//
+	// This feature can be disabled (e.g. for fuzz testing) by setting the
+	// environment variable "GRPC_GO_EXPERIMENTAL_XDS_RESOURCE_PANIC_RECOVERY"
+	// to "false".
+	XDSRecoverPanicInResourceParsing = boolFromEnv("GRPC_GO_EXPERIMENTAL_XDS_RESOURCE_PANIC_RECOVERY", true)
+
+	// EnablePriorityLBChildPolicyCache controls whether the priority balancer
+	// should cache child balancers that are removed from the LB policy config,
+	// for a period of 15 minutes. This is disabled by default, but can be
+	// enabled by setting the env variable
+	// GRPC_EXPERIMENTAL_ENABLE_PRIORITY_LB_CHILD_POLICY_CACHE to true.
+	EnablePriorityLBChildPolicyCache = boolFromEnv("GRPC_EXPERIMENTAL_ENABLE_PRIORITY_LB_CHILD_POLICY_CACHE", false)
+
+	// Enable8KBDefaultHeaderListSize indicates that default maximum header list
+	// size is restricted to 8KB. This is disabled by default, but can be enabled
+	// by setting the environment variable
+	// "GRPC_GO_EXPERIMENTAL_ENABLE_8KB_DEFAULT_HEADER_LIST_SIZE" to "true".
+	// When disabled, the default maximum header list size of 16MB is used.
+	//
+	// When enabled, RPCs with a total size of headers exceeding 8KB will fail
+	// unless explicitly configured otherwise by the user.
+	//
+	// TODO: In release v1.82.0, env var will be enabled by default.
+	Enable8KBDefaultHeaderListSize = boolFromEnv("GRPC_GO_EXPERIMENTAL_ENABLE_8KB_DEFAULT_HEADER_LIST_SIZE", false)
+
+	// EnableHTTPFramerReadBufferPooling enables the use of the
+	// readyreader.Reader interface to perform non-memory-pinning reads,
+	// provided the underlying net.Conn supports it. This reduces memory usage
+	// when subchannels are idle.
+	//
+	// This environment variable serves as an escape hatch to disable the
+	// feature if unforeseen issues arise, and it will be removed in a future
+	// release.
+	EnableHTTPFramerReadBufferPooling = boolFromEnv("GRPC_GO_EXPERIMENTAL_HTTP_FRAMER_READ_BUFFER_POOLING", true)
+
+	// ControlBufferThrottleLimit is the maximum number of control frames that can
+	// be queued in the control buffer before throttling is applied. The value
+	// must be between 1 and 10,000, and is set to 100 by default.
+	//
+	// This environment variable serves as an escape hatch to increase the
+	// throttling limit if unforeseen issues arise, and it will be removed in a
+	// future release.
+	//
+	// TODO: Remove this env var once v1.83.0 is release.
+	ControlBufferThrottleLimit = uint64FromEnv("GRPC_GO_EXPERIMENTAL_CONTROL_BUFFER_THROTTLE_LIMIT", 100, 1, 10000)
 )
 
 func boolFromEnv(envVar string, def bool) bool {
@@ -93,3 +176,52 @@
 	}
 	return v
 }
+
+// GoroutineLabels is a bitfield indicating which goroutine labels are enabled.
+type GoroutineLabels uint16
+
+func goroutineLabelsFromEnv(envVar string, def GoroutineLabels) GoroutineLabels {
+	val := def
+	v := os.Getenv(envVar)
+	if strings.EqualFold(v, "all") {
+		return AllGoroutineLabels
+	} else if strings.EqualFold(v, "none") {
+		return 0
+	}
+	for s := range strings.SplitSeq(v, ",") {
+		s = strings.TrimSpace(s)
+		if len(s) == 0 {
+			continue
+		}
+		pre, post, ok := strings.Cut(s, "=")
+		if !ok {
+			// no equals sign
+			continue
+		}
+		post = strings.TrimSpace(post)
+		pre = strings.TrimSpace(pre)
+		bitDesignator := GoroutineLabels(0)
+		switch {
+		case strings.EqualFold(pre, "grpc.method"):
+			bitDesignator = GoroutineLabelServerMethod
+		default:
+			continue
+		}
+		if strings.EqualFold(post, "true") {
+			val |= bitDesignator
+		} else if strings.EqualFold(post, "false") {
+			val &^= bitDesignator
+		}
+	}
+	return val
+}
+
+const (
+	// GoroutineLabelServerMethod sets the grpc.method label on new
+	// server-side gRPC streams.
+	GoroutineLabelServerMethod GoroutineLabels = 1 << iota
+)
+
+// AllGoroutineLabels is an or'd together bitfield of all valid GoroutineLabels
+// constant values (above).
+const AllGoroutineLabels = GoroutineLabelServerMethod
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/envconfig/xds.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/envconfig/xds.go
--- a/vendor/google.golang.org/grpc/internal/envconfig/xds.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/envconfig/xds.go	2026-09-02 10:25:23.885027759 +0000
@@ -63,4 +63,40 @@
 	// For more details, see:
 	// https://github.com/grpc/proposal/blob/master/A82-xds-system-root-certs.md.
 	XDSSystemRootCertsEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_SYSTEM_ROOT_CERTS", false)
+
+	// XDSSPIFFEEnabled controls if SPIFFE Bundle Maps can be used as roots of
+	// trust.  For more details, see:
+	// https://github.com/grpc/proposal/blob/master/A87-mtls-spiffe-support.md
+	XDSSPIFFEEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_MTLS_SPIFFE", false)
+
+	// XDSHTTPConnectEnabled is true if gRPC should parse custom Metadata
+	// configuring use of an HTTP CONNECT proxy via xDS from cluster resources.
+	// For more details, see:
+	// https://github.com/grpc/proposal/blob/master/A86-xds-http-connect.md
+	XDSHTTPConnectEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_HTTP_CONNECT", false)
+
+	// XDSBootstrapCallCredsEnabled controls if call credentials can be used in
+	// xDS bootstrap configuration via the `call_creds` field. For more details,
+	// see: https://github.com/grpc/proposal/blob/master/A97-xds-jwt-call-creds.md
+	XDSBootstrapCallCredsEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_BOOTSTRAP_CALL_CREDS", false)
+
+	// XDSSNIEnabled controls if gRPC should send SNI information in xDS
+	// configured TLS handshakes. For more details, see:
+	// https://github.com/grpc/proposal/blob/master/A101-SNI-setting-and-SNI-SAN-validation.md
+	XDSSNIEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_SNI", false)
+
+	// XDSORCAToLRSPropEnabled controls whether ORCA metrics are explicitly
+	// filtered and prefix-propagated to the LRS server. For more details, see:
+	// https://github.com/grpc/proposal/blob/master/A85-lrs-custom-metrics-changes.md
+	XDSORCAToLRSPropEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_ORCA_LRS_PROPAGATION", false)
+
+	// XDSClientExtProcEnabled indicates whether ExtProc filter is enabled on
+	// the client side. For more details, see:
+	// https://github.com/grpc/proposal/blob/master/A93-xds-ext-proc.md
+	XDSClientExtProcEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_EXT_PROC_ON_CLIENT", false)
+
+	// GCPAuthenticationFilterEnabled enables the xDS GCP Authentication
+	// filter. For more details, see:
+	// https://github.com/grpc/proposal/blob/master/A83-xds-gcp-authn-filter.md
+	GCPAuthenticationFilterEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_GCP_AUTHENTICATION_FILTER", false)
 )
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/experimental.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/experimental.go
--- a/vendor/google.golang.org/grpc/internal/experimental.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/experimental.go	2026-09-02 10:25:23.881027753 +0000
@@ -25,4 +25,11 @@
 	// BufferPool is implemented by the grpc package and returns a server
 	// option to configure a shared buffer pool for a grpc.Server.
 	BufferPool any // func (grpc.SharedBufferPool) grpc.ServerOption
+
+	// SetDefaultBufferPool updates the default buffer pool.
+	SetDefaultBufferPool any // func(mem.BufferPool)
+
+	// AcceptCompressors is implemented by the grpc package and returns
+	// a call option that restricts the grpc-accept-encoding header for a call.
+	AcceptCompressors any // func(...string) grpc.CallOption
 )
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/grpcsync/callback_serializer.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/grpcsync/callback_serializer.go
--- a/vendor/google.golang.org/grpc/internal/grpcsync/callback_serializer.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/grpcsync/callback_serializer.go	2026-09-02 10:25:23.885027759 +0000
@@ -80,25 +80,11 @@
 func (cs *CallbackSerializer) run(ctx context.Context) {
 	defer close(cs.done)
 
-	// TODO: when Go 1.21 is the oldest supported version, this loop and Close
-	// can be replaced with:
-	//
-	// context.AfterFunc(ctx, cs.callbacks.Close)
-	for ctx.Err() == nil {
-		select {
-		case <-ctx.Done():
-			// Do nothing here. Next iteration of the for loop will not happen,
-			// since ctx.Err() would be non-nil.
-		case cb := <-cs.callbacks.Get():
-			cs.callbacks.Load()
-			cb.(func(context.Context))(ctx)
-		}
-	}
+	// Close the buffer when the context is canceled
+	// to prevent new callbacks from being added.
+	context.AfterFunc(ctx, cs.callbacks.Close)
 
-	// Close the buffer to prevent new callbacks from being added.
-	cs.callbacks.Close()
-
-	// Run all pending callbacks.
+	// Run all callbacks.
 	for cb := range cs.callbacks.Get() {
 		cs.callbacks.Load()
 		cb.(func(context.Context))(ctx)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/grpcsync/event.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/grpcsync/event.go
--- a/vendor/google.golang.org/grpc/internal/grpcsync/event.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/grpcsync/event.go	2026-09-02 10:25:23.885027759 +0000
@@ -21,28 +21,25 @@
 package grpcsync
 
 import (
-	"sync"
 	"sync/atomic"
 )
 
 // Event represents a one-time event that may occur in the future.
 type Event struct {
-	fired int32
+	fired atomic.Bool
 	c     chan struct{}
-	o     sync.Once
 }
 
 // Fire causes e to complete.  It is safe to call multiple times, and
 // concurrently.  It returns true iff this call to Fire caused the signaling
-// channel returned by Done to close.
+// channel returned by Done to close. If Fire returns false, it is possible
+// the Done channel has not been closed yet.
 func (e *Event) Fire() bool {
-	ret := false
-	e.o.Do(func() {
-		atomic.StoreInt32(&e.fired, 1)
+	if e.fired.CompareAndSwap(false, true) {
 		close(e.c)
-		ret = true
-	})
-	return ret
+		return true
+	}
+	return false
 }
 
 // Done returns a channel that will be closed when Fire is called.
@@ -52,7 +49,7 @@
 
 // HasFired returns true if Fire has been called.
 func (e *Event) HasFired() bool {
-	return atomic.LoadInt32(&e.fired) == 1
+	return e.fired.Load()
 }
 
 // NewEvent returns a new, ready-to-use Event.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/grpcutil/encode_duration.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/grpcutil/encode_duration.go
--- a/vendor/google.golang.org/grpc/internal/grpcutil/encode_duration.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/grpcutil/encode_duration.go	2026-09-02 10:25:23.885027759 +0000
@@ -39,7 +39,6 @@
 //
 // https://github.com/grpc/grpc/blob/master/doc/PROTOCOL-HTTP2.md#requests
 func EncodeDuration(t time.Duration) string {
-	// TODO: This is simplistic and not bandwidth efficient. Improve it.
 	if t <= 0 {
 		return "0n"
 	}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/grpcutil/regex.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/grpcutil/regex.go
--- a/vendor/google.golang.org/grpc/internal/grpcutil/regex.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/grpcutil/regex.go	1970-01-01 00:00:00.000000000 +0000
@@ -1,31 +0,0 @@
-/*
- *
- * Copyright 2021 gRPC authors.
- *
- * Licensed under the Apache License, Version 2.0 (the "License");
- * you may not use this file except in compliance with the License.
- * You may obtain a copy of the License at
- *
- *     http://www.apache.org/licenses/LICENSE-2.0
- *
- * Unless required by applicable law or agreed to in writing, software
- * distributed under the License is distributed on an "AS IS" BASIS,
- * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
- * See the License for the specific language governing permissions and
- * limitations under the License.
- *
- */
-
-package grpcutil
-
-import "regexp"
-
-// FullMatchWithRegex returns whether the full text matches the regex provided.
-func FullMatchWithRegex(re *regexp.Regexp, text string) bool {
-	if len(text) == 0 {
-		return re.MatchString(text)
-	}
-	re.Longest()
-	rem := re.FindString(text)
-	return len(rem) == len(text)
-}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/idle/idle.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/idle/idle.go
--- a/vendor/google.golang.org/grpc/internal/idle/idle.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/idle/idle.go	2026-09-02 10:25:23.885027759 +0000
@@ -21,7 +21,6 @@
 package idle
 
 import (
-	"fmt"
 	"math"
 	"sync"
 	"sync/atomic"
@@ -33,15 +32,15 @@
 	return time.AfterFunc(d, f)
 }
 
-// Enforcer is the functionality provided by grpc.ClientConn to enter
-// and exit from idle mode.
-type Enforcer interface {
-	ExitIdleMode() error
+// ClientConn is the functionality provided by grpc.ClientConn to enter and exit
+// from idle mode.
+type ClientConn interface {
+	ExitIdleMode()
 	EnterIdleMode()
 }
 
-// Manager implements idleness detection and calls the configured Enforcer to
-// enter/exit idle mode when appropriate.  Must be created by NewManager.
+// Manager implements idleness detection and calls the ClientConn to enter/exit
+// idle mode when appropriate. Must be created by NewManager.
 type Manager struct {
 	// State accessed atomically.
 	lastCallEndTime           int64 // Unix timestamp in nanos; time when the most recent RPC completed.
@@ -51,8 +50,8 @@
 
 	// Can be accessed without atomics or mutex since these are set at creation
 	// time and read-only after that.
-	enforcer Enforcer // Functionality provided by grpc.ClientConn.
-	timeout  time.Duration
+	cc      ClientConn // Functionality provided by grpc.ClientConn.
+	timeout time.Duration
 
 	// idleMu is used to guarantee mutual exclusion in two scenarios:
 	// - Opposing intentions:
@@ -72,9 +71,9 @@
 
 // NewManager creates a new idleness manager implementation for the
 // given idle timeout.  It begins in idle mode.
-func NewManager(enforcer Enforcer, timeout time.Duration) *Manager {
+func NewManager(cc ClientConn, timeout time.Duration) *Manager {
 	return &Manager{
-		enforcer:         enforcer,
+		cc:               cc,
 		timeout:          timeout,
 		actuallyIdle:     true,
 		activeCallsCount: -math.MaxInt32,
@@ -127,7 +126,7 @@
 
 	// Now that we've checked that there has been no activity, attempt to enter
 	// idle mode, which is very likely to succeed.
-	if m.tryEnterIdleMode() {
+	if m.tryEnterIdleMode(true) {
 		// Successfully entered idle mode. No timer needed until we exit idle.
 		return
 	}
@@ -142,10 +141,13 @@
 // that, it performs a last minute check to ensure that no new RPC has come in,
 // making the channel active.
 //
+// checkActivity controls if a check for RPC activity, since the last time the
+// idle_timeout fired, is made.
+
 // Return value indicates whether or not the channel moved to idle mode.
 //
 // Holds idleMu which ensures mutual exclusion with exitIdleMode.
-func (m *Manager) tryEnterIdleMode() bool {
+func (m *Manager) tryEnterIdleMode(checkActivity bool) bool {
 	// Setting the activeCallsCount to -math.MaxInt32 indicates to OnCallBegin()
 	// that the channel is either in idle mode or is trying to get there.
 	if !atomic.CompareAndSwapInt32(&m.activeCallsCount, 0, -math.MaxInt32) {
@@ -166,7 +168,7 @@
 		atomic.AddInt32(&m.activeCallsCount, math.MaxInt32)
 		return false
 	}
-	if atomic.LoadInt32(&m.activeSinceLastTimerCheck) == 1 {
+	if checkActivity && atomic.LoadInt32(&m.activeSinceLastTimerCheck) == 1 {
 		// A very short RPC could have come in (and also finished) after we
 		// checked for calls count and activity in handleIdleTimeout(), but
 		// before the CAS operation. So, we need to check for activity again.
@@ -177,44 +179,37 @@
 	// No new RPCs have come in since we set the active calls count value to
 	// -math.MaxInt32. And since we have the lock, it is safe to enter idle mode
 	// unconditionally now.
-	m.enforcer.EnterIdleMode()
+	m.cc.EnterIdleMode()
 	m.actuallyIdle = true
 	return true
 }
 
 // EnterIdleModeForTesting instructs the channel to enter idle mode.
 func (m *Manager) EnterIdleModeForTesting() {
-	m.tryEnterIdleMode()
+	m.tryEnterIdleMode(false)
 }
 
 // OnCallBegin is invoked at the start of every RPC.
-func (m *Manager) OnCallBegin() error {
+func (m *Manager) OnCallBegin() {
 	if m.isClosed() {
-		return nil
+		return
 	}
 
 	if atomic.AddInt32(&m.activeCallsCount, 1) > 0 {
 		// Channel is not idle now. Set the activity bit and allow the call.
 		atomic.StoreInt32(&m.activeSinceLastTimerCheck, 1)
-		return nil
+		return
 	}
 
 	// Channel is either in idle mode or is in the process of moving to idle
 	// mode. Attempt to exit idle mode to allow this RPC.
-	if err := m.ExitIdleMode(); err != nil {
-		// Undo the increment to calls count, and return an error causing the
-		// RPC to fail.
-		atomic.AddInt32(&m.activeCallsCount, -1)
-		return err
-	}
-
+	m.ExitIdleMode()
 	atomic.StoreInt32(&m.activeSinceLastTimerCheck, 1)
-	return nil
 }
 
-// ExitIdleMode instructs m to call the enforcer's ExitIdleMode and update m's
+// ExitIdleMode instructs m to call the ClientConn's ExitIdleMode and update its
 // internal state.
-func (m *Manager) ExitIdleMode() error {
+func (m *Manager) ExitIdleMode() {
 	// Holds idleMu which ensures mutual exclusion with tryEnterIdleMode.
 	m.idleMu.Lock()
 	defer m.idleMu.Unlock()
@@ -231,12 +226,10 @@
 		//   m.ExitIdleMode.
 		//
 		// In any case, there is nothing to do here.
-		return nil
+		return
 	}
 
-	if err := m.enforcer.ExitIdleMode(); err != nil {
-		return fmt.Errorf("failed to exit idle mode: %w", err)
-	}
+	m.cc.ExitIdleMode()
 
 	// Undo the idle entry process. This also respects any new RPC attempts.
 	atomic.AddInt32(&m.activeCallsCount, math.MaxInt32)
@@ -244,7 +237,23 @@
 
 	// Start a new timer to fire after the configured idle timeout.
 	m.resetIdleTimerLocked(m.timeout)
-	return nil
+}
+
+// UnsafeSetNotIdle instructs the Manager to update its internal state to
+// reflect the reality that the channel is no longer in IDLE mode.
+//
+// N.B. This method is intended only for internal use by the gRPC client
+// when it exits IDLE mode **manually** from `Dial`. The callsite must ensure:
+//   - The channel was **actually in IDLE mode** immediately prior to the call.
+//   - There is **no concurrent activity** that could cause the channel to exit
+//     IDLE mode *naturally* at the same time.
+func (m *Manager) UnsafeSetNotIdle() {
+	m.idleMu.Lock()
+	defer m.idleMu.Unlock()
+
+	atomic.AddInt32(&m.activeCallsCount, math.MaxInt32)
+	m.actuallyIdle = false
+	m.resetIdleTimerLocked(m.timeout)
 }
 
 // OnCallEnd is invoked at the end of every RPC.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/internal.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/internal.go
--- a/vendor/google.golang.org/grpc/internal/internal.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/internal.go	2026-09-02 10:25:23.881027753 +0000
@@ -182,35 +182,6 @@
 	// other features, including the CSDS service.
 	NewXDSResolverWithClientForTesting any // func(xdsclient.XDSClient) (resolver.Builder, error)
 
-	// RegisterRLSClusterSpecifierPluginForTesting registers the RLS Cluster
-	// Specifier Plugin for testing purposes, regardless of the XDSRLS environment
-	// variable.
-	//
-	// TODO: Remove this function once the RLS env var is removed.
-	RegisterRLSClusterSpecifierPluginForTesting func()
-
-	// UnregisterRLSClusterSpecifierPluginForTesting unregisters the RLS Cluster
-	// Specifier Plugin for testing purposes. This is needed because there is no way
-	// to unregister the RLS Cluster Specifier Plugin after registering it solely
-	// for testing purposes using RegisterRLSClusterSpecifierPluginForTesting().
-	//
-	// TODO: Remove this function once the RLS env var is removed.
-	UnregisterRLSClusterSpecifierPluginForTesting func()
-
-	// RegisterRBACHTTPFilterForTesting registers the RBAC HTTP Filter for testing
-	// purposes, regardless of the RBAC environment variable.
-	//
-	// TODO: Remove this function once the RBAC env var is removed.
-	RegisterRBACHTTPFilterForTesting func()
-
-	// UnregisterRBACHTTPFilterForTesting unregisters the RBAC HTTP Filter for
-	// testing purposes. This is needed because there is no way to unregister the
-	// HTTP Filter after registering it solely for testing purposes using
-	// RegisterRBACHTTPFilterForTesting().
-	//
-	// TODO: Remove this function once the RBAC env var is removed.
-	UnregisterRBACHTTPFilterForTesting func()
-
 	// ORCAAllowAnyMinReportingInterval is for examples/orca use ONLY.
 	ORCAAllowAnyMinReportingInterval any // func(so *orca.ServiceOptions)
 
@@ -240,22 +211,11 @@
 	// default resolver scheme.
 	UserSetDefaultScheme = false
 
-	// ConnectedAddress returns the connected address for a SubConnState. The
-	// address is only valid if the state is READY.
-	ConnectedAddress any // func (scs SubConnState) resolver.Address
-
-	// SetConnectedAddress sets the connected address for a SubConnState.
-	SetConnectedAddress any // func(scs *SubConnState, addr resolver.Address)
-
 	// SnapshotMetricRegistryForTesting snapshots the global data of the metric
 	// registry. Returns a cleanup function that sets the metric registry to its
 	// original state. Only called in testing functions.
 	SnapshotMetricRegistryForTesting func() func()
 
-	// SetDefaultBufferPoolForTesting updates the default buffer pool, for
-	// testing purposes.
-	SetDefaultBufferPoolForTesting any // func(mem.BufferPool)
-
 	// SetBufferPoolingThresholdForTesting updates the buffer pooling threshold, for
 	// testing purposes.
 	SetBufferPoolingThresholdForTesting any // func(int)
@@ -266,6 +226,25 @@
 	TimeAfterFunc = func(d time.Duration, f func()) Timer {
 		return time.AfterFunc(d, f)
 	}
+
+	// NewStreamWaitingForResolver is a test hook that is triggered when a
+	// new stream blocks while waiting for name resolution. This can be
+	// used in tests to synchronize resolver updates and avoid race conditions.
+	// When set, the function will be called before the stream enters
+	// the blocking state.
+	NewStreamWaitingForResolver = func() {}
+
+	// AddressToTelemetryLabels is an xDS-provided function to extract telemetry
+	// labels from a resolver.Address. Callers must assert its type before calling.
+	AddressToTelemetryLabels any // func(addr resolver.Address) map[string]string
+
+	// AsyncReporterCleanupDelegate is initialized to a pass-through function by
+	// default (production behavior), allowing tests to swap it with an
+	// implementation which tracks registration of async reporter and its
+	// corresponding cleanup.
+	AsyncReporterCleanupDelegate = func(cleanup func()) func() {
+		return cleanup
+	}
 )
 
 // HealthChecker defines the signature of the client-side LB channel health
@@ -313,3 +292,9 @@
 type Timer interface {
 	Stop() bool
 }
+
+// EnforceMetricsRecorderEmbedding is used to enforce proper MetricsRecorder
+// implementation embedding.
+type EnforceMetricsRecorderEmbedding interface {
+	enforceMetricsRecorderEmbedding()
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/mem/buffer_pool.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/mem/buffer_pool.go
--- a/vendor/google.golang.org/grpc/internal/mem/buffer_pool.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/internal/mem/buffer_pool.go	2026-09-02 10:25:23.885027759 +0000
@@ -0,0 +1,349 @@
+/*
+ *
+ * Copyright 2026 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+// Package mem provides utilities that facilitate memory reuse in byte slices
+// that are used as buffers.
+package mem
+
+import (
+	"fmt"
+	"math/bits"
+	"slices"
+	"sort"
+	"sync"
+)
+
+const (
+	goPageSize = 4 * 1024 // 4KiB. N.B. this must be a power of 2.
+)
+
+var uintSize = bits.UintSize // use a variable for mocking during tests.
+
+// bufferPool is a copy of the public bufferPool interface used to avoid
+// circular dependencies.
+type bufferPool interface {
+	// Get returns a buffer with specified length from the pool.
+	Get(length int) *[]byte
+
+	// Put returns a buffer to the pool.
+	//
+	// The provided pointer must hold a prefix of the buffer obtained via
+	// BufferPool.Get to ensure the buffer's entire capacity can be re-used.
+	Put(*[]byte)
+}
+
+// BinaryTieredBufferPool is a buffer pool that uses multiple sub-pools with
+// power-of-two sizes.
+type BinaryTieredBufferPool struct {
+	// exponentToNextLargestPoolMap maps a power-of-two exponent (e.g., 12 for
+	// 4KB) to the index of the next largest sizedBufferPool. This is used by
+	// Get() to find the smallest pool that can satisfy a request for a given
+	// size.
+	exponentToNextLargestPoolMap []int
+	// exponentToPreviousLargestPoolMap maps a power-of-two exponent to the
+	// index of the previous largest sizedBufferPool. This is used by Put()
+	// to return a buffer to the most appropriate pool based on its capacity.
+	exponentToPreviousLargestPoolMap []int
+	sizedPools                       []bufferPool
+	fallbackPool                     bufferPool
+	maxPoolCap                       int // Optimization: Cache max capacity
+}
+
+// NewBinaryTieredBufferPool returns a BufferPool backed by multiple sub-pools.
+// This structure enables O(1) lookup time for Get and Put operations.
+//
+// The arguments provided are the exponents for the buffer capacities (powers
+// of 2), not the raw byte sizes. For example, to create a pool of 16KB buffers
+// (2^14 bytes), pass 14 as the argument.
+func NewBinaryTieredBufferPool(powerOfTwoExponents ...uint8) (*BinaryTieredBufferPool, error) {
+	return newBinaryTiered(func(size int) bufferPool {
+		return newSizedBufferPool(size, true)
+	}, &SimpleBufferPool{shouldZero: true}, powerOfTwoExponents...)
+}
+
+// NewDirtyBinaryTieredBufferPool returns a BufferPool backed by multiple
+// sub-pools. It is similar to NewBinaryTieredBufferPool but it does not
+// initialize the buffers before returning them.
+func NewDirtyBinaryTieredBufferPool(powerOfTwoExponents ...uint8) (*BinaryTieredBufferPool, error) {
+	return newBinaryTiered(func(size int) bufferPool {
+		return newSizedBufferPool(size, false)
+	}, NewDirtySimplePool(), powerOfTwoExponents...)
+}
+
+func newBinaryTiered(sizedPoolFactory func(int) bufferPool, fallbackPool bufferPool, powerOfTwoExponents ...uint8) (*BinaryTieredBufferPool, error) {
+	slices.Sort(powerOfTwoExponents)
+	powerOfTwoExponents = slices.Compact(powerOfTwoExponents)
+
+	// Determine the maximum exponent we need to support. This depends on the
+	// word size (32-bit vs 64-bit).
+	maxExponent := uintSize - 2
+	indexOfNextLargestBit := slices.Repeat([]int{-1}, maxExponent+1)
+	indexOfPreviousLargestBit := slices.Repeat([]int{-1}, maxExponent+1)
+
+	maxTier := 0
+	pools := make([]bufferPool, 0, len(powerOfTwoExponents))
+
+	for i, exp := range powerOfTwoExponents {
+		// Allocating slices of size > 2^maxExponent isn't possible on
+		// maxExponent-bit machines.
+		if int(exp) > maxExponent {
+			return nil, fmt.Errorf("mem: allocating slice of size 2^%d is not possible", exp)
+		}
+		tierSize := 1 << exp
+		pools = append(pools, sizedPoolFactory(tierSize))
+		maxTier = max(maxTier, tierSize)
+
+		// Map the exact power of 2 to this pool index.
+		indexOfNextLargestBit[exp] = i
+		indexOfPreviousLargestBit[exp] = i
+	}
+
+	// Fill gaps for Get() (Next Largest)
+	// We iterate backwards. If current is empty, take the value from the right (larger).
+	for i := maxExponent - 1; i >= 0; i-- {
+		if indexOfNextLargestBit[i] == -1 {
+			indexOfNextLargestBit[i] = indexOfNextLargestBit[i+1]
+		}
+	}
+
+	// Fill gaps for Put() (Previous Largest)
+	// We iterate forwards. If current is empty, take the value from the left (smaller).
+	for i := 1; i <= maxExponent; i++ {
+		if indexOfPreviousLargestBit[i] == -1 {
+			indexOfPreviousLargestBit[i] = indexOfPreviousLargestBit[i-1]
+		}
+	}
+
+	return &BinaryTieredBufferPool{
+		exponentToNextLargestPoolMap:     indexOfNextLargestBit,
+		exponentToPreviousLargestPoolMap: indexOfPreviousLargestBit,
+		sizedPools:                       pools,
+		maxPoolCap:                       maxTier,
+		fallbackPool:                     fallbackPool,
+	}, nil
+}
+
+// Get returns a buffer with specified length from the pool.
+func (b *BinaryTieredBufferPool) Get(size int) *[]byte {
+	return b.poolForGet(size).Get(size)
+}
+
+func (b *BinaryTieredBufferPool) poolForGet(size int) bufferPool {
+	if size == 0 || size > b.maxPoolCap {
+		return b.fallbackPool
+	}
+
+	// Calculate the exponent of the smallest power of 2 >= size.
+	// We subtract 1 from size to handle exact powers of 2 correctly.
+	//
+	// Examples:
+	// size=16 (0b10000) -> size-1=15 (0b01111) -> bits.Len=4 -> Pool for 2^4
+	// size=17 (0b10001) -> size-1=16 (0b10000) -> bits.Len=5 -> Pool for 2^5
+	querySize := uint(size - 1)
+	poolIdx := b.exponentToNextLargestPoolMap[bits.Len(querySize)]
+
+	return b.sizedPools[poolIdx]
+}
+
+// Put returns a buffer to the pool.
+func (b *BinaryTieredBufferPool) Put(buf *[]byte) {
+	// We pass the capacity of the buffer, and not the size of the buffer here.
+	// If we did the latter, all buffers would eventually move to the smallest
+	// pool.
+	b.poolForPut(cap(*buf)).Put(buf)
+}
+
+func (b *BinaryTieredBufferPool) poolForPut(bCap int) bufferPool {
+	if bCap == 0 {
+		return NopBufferPool{}
+	}
+	if bCap > b.maxPoolCap {
+		return b.fallbackPool
+	}
+	// Find the pool with the largest capacity <= bCap.
+	//
+	// We calculate the exponent of the largest power of 2 <= bCap.
+	// bits.Len(x) returns the minimum number of bits required to represent x;
+	// i.e. the number of bits up to and including the most significant bit.
+	// Subtracting 1 gives the 0-based index of the most significant bit,
+	// which is the exponent of the largest power of 2 <= bCap.
+	//
+	// Examples:
+	// cap=16 (0b10000) -> Len=5 -> 5-1=4 -> 2^4
+	// cap=15 (0b01111) -> Len=4 -> 4-1=3 -> 2^3
+	largestPowerOfTwo := bits.Len(uint(bCap)) - 1
+	poolIdx := b.exponentToPreviousLargestPoolMap[largestPowerOfTwo]
+	// The buffer is smaller than the smallest power of 2, discard it.
+	if poolIdx == -1 {
+		// Buffer is smaller than our smallest pool bucket.
+		return NopBufferPool{}
+	}
+	return b.sizedPools[poolIdx]
+}
+
+// NopBufferPool is a buffer pool that returns new buffers without pooling.
+type NopBufferPool struct{}
+
+// Get returns a buffer with specified length from the pool.
+func (NopBufferPool) Get(length int) *[]byte {
+	b := make([]byte, length)
+	return &b
+}
+
+// Put returns a buffer to the pool.
+func (NopBufferPool) Put(*[]byte) {
+}
+
+// sizedBufferPool is a BufferPool implementation that is optimized for specific
+// buffer sizes. For example, HTTP/2 frames within gRPC have a default max size
+// of 16kb and a sizedBufferPool can be configured to only return buffers with a
+// capacity of 16kb. Note that however it does not support returning larger
+// buffers and in fact panics if such a buffer is requested. Because of this,
+// this BufferPool implementation is not meant to be used on its own and rather
+// is intended to be embedded in a TieredBufferPool such that Get is only
+// invoked when the required size is smaller than or equal to defaultSize.
+type sizedBufferPool struct {
+	pool        sync.Pool
+	defaultSize int
+	shouldZero  bool
+}
+
+func (p *sizedBufferPool) Get(size int) *[]byte {
+	buf, ok := p.pool.Get().(*[]byte)
+	if !ok {
+		buf := make([]byte, size, p.defaultSize)
+		return &buf
+	}
+	b := *buf
+	if p.shouldZero {
+		clear(b[:cap(b)])
+	}
+	*buf = b[:size]
+	return buf
+}
+
+func (p *sizedBufferPool) Put(buf *[]byte) {
+	if cap(*buf) < p.defaultSize {
+		// Ignore buffers that are too small to fit in the pool. Otherwise, when
+		// Get is called it will panic as it tries to index outside the bounds
+		// of the buffer.
+		return
+	}
+	p.pool.Put(buf)
+}
+
+func newSizedBufferPool(size int, zero bool) *sizedBufferPool {
+	return &sizedBufferPool{
+		defaultSize: size,
+		shouldZero:  zero,
+	}
+}
+
+// TieredBufferPool implements the BufferPool interface with multiple tiers of
+// buffer pools for different sizes of buffers.
+type TieredBufferPool struct {
+	sizedPools   []*sizedBufferPool
+	fallbackPool SimpleBufferPool
+}
+
+// NewTieredBufferPool returns a BufferPool implementation that uses multiple
+// underlying pools of the given pool sizes.
+func NewTieredBufferPool(poolSizes ...int) *TieredBufferPool {
+	sort.Ints(poolSizes)
+	pools := make([]*sizedBufferPool, len(poolSizes))
+	for i, s := range poolSizes {
+		pools[i] = newSizedBufferPool(s, true)
+	}
+	return &TieredBufferPool{
+		sizedPools:   pools,
+		fallbackPool: SimpleBufferPool{shouldZero: true},
+	}
+}
+
+// Get returns a buffer with specified length from the pool.
+func (p *TieredBufferPool) Get(size int) *[]byte {
+	return p.getPool(size).Get(size)
+}
+
+// Put returns a buffer to the pool.
+func (p *TieredBufferPool) Put(buf *[]byte) {
+	p.getPool(cap(*buf)).Put(buf)
+}
+
+func (p *TieredBufferPool) getPool(size int) bufferPool {
+	poolIdx := sort.Search(len(p.sizedPools), func(i int) bool {
+		return p.sizedPools[i].defaultSize >= size
+	})
+
+	if poolIdx == len(p.sizedPools) {
+		return &p.fallbackPool
+	}
+
+	return p.sizedPools[poolIdx]
+}
+
+// SimpleBufferPool is an implementation of the mem.BufferPool interface that
+// attempts to pool buffers with a sync.Pool. When Get is invoked, it tries to
+// acquire a buffer from the pool but if that buffer is too small, it returns it
+// to the pool and creates a new one.
+type SimpleBufferPool struct {
+	pool       sync.Pool
+	shouldZero bool
+}
+
+// NewDirtySimplePool constructs a [SimpleBufferPool]. It does not initialize
+// the buffers before returning them. Callers must ensure they don't read the
+// buffers before writing data to them.
+func NewDirtySimplePool() *SimpleBufferPool {
+	return &SimpleBufferPool{
+		shouldZero: false,
+	}
+}
+
+// Get returns a buffer with specified length from the pool.
+func (p *SimpleBufferPool) Get(size int) *[]byte {
+	bs, ok := p.pool.Get().(*[]byte)
+	if ok && cap(*bs) >= size {
+		if p.shouldZero {
+			clear((*bs)[:cap(*bs)])
+		}
+		*bs = (*bs)[:size]
+		return bs
+	}
+
+	// A buffer was pulled from the pool, but it is too small. Put it back in
+	// the pool and create one large enough.
+	if ok {
+		p.pool.Put(bs)
+	}
+
+	// If we're going to allocate, round up to the nearest page. This way if
+	// requests frequently arrive with small variation we don't allocate
+	// repeatedly if we get unlucky and they increase over time. By default we
+	// only allocate here if size > 1MiB. Because goPageSize is a power of 2, we
+	// can round up efficiently.
+	allocSize := (size + goPageSize - 1) & ^(goPageSize - 1)
+
+	b := make([]byte, size, allocSize)
+	return &b
+}
+
+// Put returns a buffer to the pool.
+func (p *SimpleBufferPool) Put(buf *[]byte) {
+	p.pool.Put(buf)
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/resolver/config_selector.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/resolver/config_selector.go
--- a/vendor/google.golang.org/grpc/internal/resolver/config_selector.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/resolver/config_selector.go	2026-09-02 10:25:23.889027764 +0000
@@ -106,15 +106,28 @@
 
 // ClientInterceptor is an interceptor for gRPC client streams.
 type ClientInterceptor interface {
-	// NewStream produces a ClientStream for an RPC which may optionally use
-	// the provided function to produce a stream for delegation.  Note:
-	// RPCInfo.Context should not be used (will be nil).
+	// NewStream creates a ClientStream for an RPC.
 	//
-	// done is invoked when the RPC is finished using its connection, or could
-	// not be assigned a connection.  RPC operations may still occur on
-	// ClientStream after done is called, since the interceptor is invoked by
-	// application-layer operations.  done must never be nil when called.
+	// Implementations must delegate stream creation to the provided newStream
+	// function. To intercept or override stream behavior, implementations
+	// may wrap the ClientStream returned by the delegate.
+	//
+	// Note: RPCInfo.Context is currently unused and will be nil.
+	//
+	// The done function is invoked when the RPC has finished using its
+	// underlying connection or if a connection could not be assigned. Because
+	// interceptors operate at the application layer, RPC operations may
+	// continue on the ClientStream even after done has been called. The
+	// caller must ensure done is non-nil.
+	//
+	// To ensure RPC completion notifications propagate through the entire
+	// interceptor chain, implementations must ensure that the done function
+	// passed to the delegate newStream invokes the done function passed to
+	// NewStream.
 	NewStream(ctx context.Context, ri RPCInfo, done func(), newStream func(ctx context.Context, done func()) (ClientStream, error)) (ClientStream, error)
+	// Close closes the interceptor. Once called, no new calls to NewStream are
+	// accepted. Ongoing calls to NewStream are allowed to complete.
+	Close()
 }
 
 // ServerInterceptor is an interceptor for incoming RPC's on gRPC server side.
@@ -123,6 +136,9 @@
 	// information about connection RPC was received on, and HTTP Headers. This
 	// information will be piped into context.
 	AllowRPC(ctx context.Context) error // TODO: Make this a real interceptor for filters such as rate limiting.
+	// Close closes the interceptor. Once called, no new calls to NewStream are
+	// accepted. Ongoing calls to NewStream are allowed to complete.
+	Close()
 }
 
 type csKeyType string
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go
--- a/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go	2026-09-02 10:25:23.889027764 +0000
@@ -22,11 +22,13 @@
 
 import (
 	"fmt"
+	"net"
 	"net/http"
 	"net/url"
 	"sync"
 
 	"google.golang.org/grpc/grpclog"
+	"google.golang.org/grpc/internal/envconfig"
 	"google.golang.org/grpc/internal/proxyattributes"
 	"google.golang.org/grpc/internal/transport"
 	"google.golang.org/grpc/internal/transport/networktype"
@@ -40,6 +42,8 @@
 	HTTPSProxyFromEnvironment = http.ProxyFromEnvironment
 )
 
+const defaultPort = "443"
+
 // delegatingResolver manages both target URI and proxy address resolution by
 // delegating these tasks to separate child resolvers. Essentially, it acts as
 // an intermediary between the gRPC ClientConn and the child resolvers.
@@ -107,10 +111,18 @@
 		targetResolver: nopResolver{},
 	}
 
+	addr := target.Endpoint()
 	var err error
-	r.proxyURL, err = proxyURLForTarget(target.Endpoint())
+	if target.URL.Scheme == "dns" && !targetResolutionEnabled && envconfig.EnableDefaultPortForProxyTarget {
+		addr, err = parseTarget(addr)
+		if err != nil {
+			return nil, fmt.Errorf("delegating_resolver: invalid target address %q: %v", target.Endpoint(), err)
+		}
+	}
+
+	r.proxyURL, err = proxyURLForTarget(addr)
 	if err != nil {
-		return nil, fmt.Errorf("delegating_resolver: failed to determine proxy URL for target %s: %v", target, err)
+		return nil, fmt.Errorf("delegating_resolver: failed to determine proxy URL for target %q: %v", target, err)
 	}
 
 	// proxy is not configured or proxy address excluded using `NO_PROXY` env
@@ -132,8 +144,8 @@
 	// bypass the target resolver and store the unresolved target address.
 	if target.URL.Scheme == "dns" && !targetResolutionEnabled {
 		r.targetResolverState = &resolver.State{
-			Addresses: []resolver.Address{{Addr: target.Endpoint()}},
-			Endpoints: []resolver.Endpoint{{Addresses: []resolver.Address{{Addr: target.Endpoint()}}}},
+			Addresses: []resolver.Address{{Addr: addr}},
+			Endpoints: []resolver.Endpoint{{Addresses: []resolver.Address{{Addr: addr}}}},
 		}
 		r.updateTargetResolverState(*r.targetResolverState)
 		return r, nil
@@ -202,6 +214,44 @@
 	return false
 }
 
+// parseTarget takes a target string and ensures it is a valid "host:port" target.
+//
+// It does the following:
+//  1. If the target already has a port (e.g., "host:port", "[ipv6]:port"),
+//     it is returned as is.
+//  2. If the host part is empty (e.g., ":80"), it defaults to "localhost",
+//     returning "localhost:80".
+//  3. If the target is missing a port (e.g., "host", "ipv6"), the defaultPort
+//     is added.
+//
+// An error is returned for empty targets or targets with a trailing colon
+// but no port (e.g., "host:").
+func parseTarget(target string) (string, error) {
+	if target == "" {
+		return "", fmt.Errorf("missing address")
+	}
+
+	host, port, err := net.SplitHostPort(target)
+	if err != nil {
+		// If SplitHostPort fails, it's likely because the port is missing.
+		// We append the default port and return the result.
+		return net.JoinHostPort(target, defaultPort), nil
+	}
+
+	// If SplitHostPort succeeds, we check for edge cases.
+	if port == "" {
+		// A success with an empty port means the target had a trailing colon,
+		// e.g., "host:", which is an error.
+		return "", fmt.Errorf("missing port after port-separator colon")
+	}
+	if host == "" {
+		// A success with an empty host means the target was like ":80".
+		// We default the host to "localhost".
+		host = "localhost"
+	}
+	return net.JoinHostPort(host, port), nil
+}
+
 func skipProxy(address resolver.Address) bool {
 	// Avoid proxy when network is not tcp.
 	networkType, ok := networktype.Get(address)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/resolver/dns/dns_resolver.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/resolver/dns/dns_resolver.go
--- a/vendor/google.golang.org/grpc/internal/resolver/dns/dns_resolver.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/resolver/dns/dns_resolver.go	2026-09-02 10:25:23.889027764 +0000
@@ -125,20 +125,23 @@
 	// IP address.
 	if ipAddr, err := formatIP(host); err == nil {
 		addr := []resolver.Address{{Addr: ipAddr + ":" + port}}
-		cc.UpdateState(resolver.State{Addresses: addr})
+		cc.UpdateState(resolver.State{
+			Addresses: addr,
+			Endpoints: []resolver.Endpoint{{Addresses: addr}},
+		})
 		return deadResolver{}, nil
 	}
 
 	// DNS address (non-IP).
 	ctx, cancel := context.WithCancel(context.Background())
 	d := &dnsResolver{
-		host:                 host,
-		port:                 port,
-		ctx:                  ctx,
-		cancel:               cancel,
-		cc:                   cc,
-		rn:                   make(chan struct{}, 1),
-		disableServiceConfig: opts.DisableServiceConfig,
+		host:                host,
+		port:                port,
+		ctx:                 ctx,
+		cancel:              cancel,
+		cc:                  cc,
+		rn:                  make(chan struct{}, 1),
+		enableServiceConfig: envconfig.EnableTXTServiceConfig && !opts.DisableServiceConfig,
 	}
 
 	d.resolver, err = internal.NewNetResolver(target.URL.Host)
@@ -181,8 +184,8 @@
 	// finishes, race detector sometimes will warn lookup (READ the lookup
 	// function pointers) inside watcher() goroutine has data race with
 	// replaceNetFunc (WRITE the lookup function pointers).
-	wg                   sync.WaitGroup
-	disableServiceConfig bool
+	wg                  sync.WaitGroup
+	enableServiceConfig bool
 }
 
 // ResolveNow invoke an immediate resolution of the target that this
@@ -342,11 +345,19 @@
 		return nil, hostErr
 	}
 
-	state := resolver.State{Addresses: addrs}
+	eps := make([]resolver.Endpoint, 0, len(addrs))
+	for _, addr := range addrs {
+		eps = append(eps, resolver.Endpoint{Addresses: []resolver.Address{addr}})
+	}
+
+	state := resolver.State{
+		Addresses: addrs,
+		Endpoints: eps,
+	}
 	if len(srv) > 0 {
 		state = grpclbstate.Set(state, &grpclbstate.State{BalancerAddresses: srv})
 	}
-	if !d.disableServiceConfig {
+	if d.enableServiceConfig {
 		state.ServiceConfig = d.lookupTXT(ctx)
 	}
 	return &state, nil
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/stats/labels.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/stats/labels.go
--- a/vendor/google.golang.org/grpc/internal/stats/labels.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/stats/labels.go	2026-09-02 10:25:23.889027764 +0000
@@ -19,24 +19,56 @@
 // Package stats provides internal stats related functionality.
 package stats
 
-import "context"
+import (
+	"context"
+	"maps"
+)
 
-// Labels are the labels for metrics.
-type Labels struct {
-	// TelemetryLabels are the telemetry labels to record.
-	TelemetryLabels map[string]string
+// LabelCallback is a function that is executed when telemetry
+// label keys are updated.
+type LabelCallback func(map[string]string)
+type telemetryLabelCallbackKey struct{}
+
+// UpdateLabels executes registered telemetry callbacks with the update labels. Labels
+// are copied before being processed by any callbacks to ensure mutations are not
+// shared among derived contexts.
+//
+// It is the responsibility of the registrant to handle conflicts or label resets.
+func UpdateLabels(ctx context.Context, update map[string]string) {
+	executeTelemetryLabelCallbacks(ctx, update)
 }
 
-type labelsKey struct{}
+// RegisterTelemetryLabelCallback registers a callback function that is executed whenever
+// telemetry labels are updated.
+func RegisterTelemetryLabelCallback(ctx context.Context, callback LabelCallback) context.Context {
+	if callback == nil {
+		return ctx
+	}
+
+	callbacks, ok := ctx.Value(telemetryLabelCallbackKey{}).([]LabelCallback)
+	if !ok {
+		return context.WithValue(ctx, telemetryLabelCallbackKey{}, []LabelCallback{callback})
+	}
+	return context.WithValue(ctx, telemetryLabelCallbackKey{}, append(append([]LabelCallback(nil), callbacks...), callback))
 
-// GetLabels returns the Labels stored in the context, or nil if there is one.
-func GetLabels(ctx context.Context) *Labels {
-	labels, _ := ctx.Value(labelsKey{}).(*Labels)
-	return labels
 }
 
-// SetLabels sets the Labels in the context.
-func SetLabels(ctx context.Context, labels *Labels) context.Context {
-	// could also append
-	return context.WithValue(ctx, labelsKey{}, labels)
+// executeTelemetryLabelCallback runs the registered callbacks in the order they were
+// registered on the context with the provided labels. If no callbacks are registered
+// it does nothing.
+//
+// To ensure callbacks do not mutate the state of the provided label map it is copied
+// before execution.
+func executeTelemetryLabelCallbacks(ctx context.Context, labels map[string]string) {
+	callbacks, ok := ctx.Value(telemetryLabelCallbackKey{}).([]LabelCallback)
+	if !ok {
+		return
+	}
+
+	labelsCopy := map[string]string{}
+	maps.Copy(labelsCopy, labels)
+	for _, callback := range callbacks {
+		callback(labelsCopy)
+	}
+
 }
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/stats/metrics_recorder_list.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/stats/metrics_recorder_list.go
--- a/vendor/google.golang.org/grpc/internal/stats/metrics_recorder_list.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/stats/metrics_recorder_list.go	2026-09-02 10:25:23.889027764 +0000
@@ -20,6 +20,7 @@
 	"fmt"
 
 	estats "google.golang.org/grpc/experimental/stats"
+	"google.golang.org/grpc/internal"
 	"google.golang.org/grpc/stats"
 )
 
@@ -28,6 +29,7 @@
 // It eats any record calls where the label values provided do not match the
 // number of label keys.
 type MetricsRecorderList struct {
+	internal.EnforceMetricsRecorderEmbedding
 	// metricsRecorders are the metrics recorders this list will forward to.
 	metricsRecorders []estats.MetricsRecorder
 }
@@ -64,6 +66,16 @@
 	}
 }
 
+// RecordInt64UpDownCount records the measurement alongside labels on the int
+// count associated with the provided handle.
+func (l *MetricsRecorderList) RecordInt64UpDownCount(handle *estats.Int64UpDownCountHandle, incr int64, labels ...string) {
+	verifyLabels(handle.Descriptor(), labels...)
+
+	for _, metricRecorder := range l.metricsRecorders {
+		metricRecorder.RecordInt64UpDownCount(handle, incr, labels...)
+	}
+}
+
 // RecordFloat64Count records the measurement alongside labels on the float
 // count associated with the provided handle.
 func (l *MetricsRecorderList) RecordFloat64Count(handle *estats.Float64CountHandle, incr float64, labels ...string) {
@@ -103,3 +115,61 @@
 		metricRecorder.RecordInt64Gauge(handle, incr, labels...)
 	}
 }
+
+// RegisterAsyncReporter forwards the registration to all underlying metrics
+// recorders.
+//
+// It returns a cleanup function that, when called, invokes the cleanup function
+// returned by each underlying recorder, ensuring the reporter is unregistered
+// from all of them.
+func (l *MetricsRecorderList) RegisterAsyncReporter(reporter estats.AsyncMetricReporter, metrics ...estats.AsyncMetric) func() {
+	descriptorsMap := make(map[*estats.MetricDescriptor]bool, len(metrics))
+	for _, m := range metrics {
+		descriptorsMap[m.Descriptor()] = true
+	}
+	unregisterFns := make([]func(), 0, len(l.metricsRecorders))
+	for _, mr := range l.metricsRecorders {
+		// Wrap the AsyncMetricsRecorder to intercept calls to RecordInt64Gauge
+		// and validate the labels.
+		wrappedCallback := func(recorder estats.AsyncMetricsRecorder) error {
+			wrappedRecorder := &asyncRecorderWrapper{
+				delegate:    recorder,
+				descriptors: descriptorsMap,
+			}
+			return reporter.Report(wrappedRecorder)
+		}
+		unregisterFns = append(unregisterFns, mr.RegisterAsyncReporter(estats.AsyncMetricReporterFunc(wrappedCallback), metrics...))
+	}
+
+	// Wrap the cleanup function using the internal delegate.
+	// In production, this returns realCleanup as-is.
+	// In tests, the leak checker can swap this to track the registration lifetime.
+	return internal.AsyncReporterCleanupDelegate(defaultCleanUp(unregisterFns))
+}
+
+func defaultCleanUp(unregisterFns []func()) func() {
+	return func() {
+		for _, unregister := range unregisterFns {
+			unregister()
+		}
+	}
+}
+
+type asyncRecorderWrapper struct {
+	delegate    estats.AsyncMetricsRecorder
+	descriptors map[*estats.MetricDescriptor]bool
+}
+
+// RecordIntAsync64Gauge records the measurement alongside labels on the int
+// gauge associated with the provided handle.
+func (w *asyncRecorderWrapper) RecordInt64AsyncGauge(handle *estats.Int64AsyncGaugeHandle, value int64, labels ...string) {
+	// Ensure only metrics for descriptors passed during callback registration
+	// are emitted.
+	d := handle.Descriptor()
+	if _, ok := w.descriptors[d]; !ok {
+		return
+	}
+	// Validate labels and delegate.
+	verifyLabels(d, labels...)
+	w.delegate.RecordInt64AsyncGauge(handle, value, labels...)
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/stats/stats.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/stats/stats.go
--- a/vendor/google.golang.org/grpc/internal/stats/stats.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/internal/stats/stats.go	2026-09-02 10:25:23.889027764 +0000
@@ -0,0 +1,70 @@
+/*
+ *
+ * Copyright 2025 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+package stats
+
+import (
+	"context"
+
+	"google.golang.org/grpc/stats"
+)
+
+type combinedHandler struct {
+	handlers []stats.Handler
+}
+
+// NewCombinedHandler combines multiple stats.Handlers into a single handler.
+//
+// It returns nil if no handlers are provided. If only one handler is
+// provided, it is returned directly without wrapping.
+func NewCombinedHandler(handlers ...stats.Handler) stats.Handler {
+	switch len(handlers) {
+	case 0:
+		return nil
+	case 1:
+		return handlers[0]
+	default:
+		return &combinedHandler{handlers: handlers}
+	}
+}
+
+func (ch *combinedHandler) TagRPC(ctx context.Context, info *stats.RPCTagInfo) context.Context {
+	for _, h := range ch.handlers {
+		ctx = h.TagRPC(ctx, info)
+	}
+	return ctx
+}
+
+func (ch *combinedHandler) HandleRPC(ctx context.Context, stats stats.RPCStats) {
+	for _, h := range ch.handlers {
+		h.HandleRPC(ctx, stats)
+	}
+}
+
+func (ch *combinedHandler) TagConn(ctx context.Context, info *stats.ConnTagInfo) context.Context {
+	for _, h := range ch.handlers {
+		ctx = h.TagConn(ctx, info)
+	}
+	return ctx
+}
+
+func (ch *combinedHandler) HandleConn(ctx context.Context, stats stats.ConnStats) {
+	for _, h := range ch.handlers {
+		h.HandleConn(ctx, stats)
+	}
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/status/status.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/status/status.go
--- a/vendor/google.golang.org/grpc/internal/status/status.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/status/status.go	2026-09-02 10:25:23.889027764 +0000
@@ -236,3 +236,11 @@
 	}
 	return false
 }
+
+// RawStatusProto returns the internal protobuf message for use by gRPC itself.
+func RawStatusProto(s *Status) *spb.Status {
+	if s == nil {
+		return nil
+	}
+	return s.s
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/client_stream.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/client_stream.go
--- a/vendor/google.golang.org/grpc/internal/transport/client_stream.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/client_stream.go	2026-09-02 10:25:23.889027764 +0000
@@ -19,35 +19,73 @@
 package transport
 
 import (
+	"fmt"
 	"sync/atomic"
 
 	"golang.org/x/net/http2"
 	"google.golang.org/grpc/mem"
 	"google.golang.org/grpc/metadata"
+	"google.golang.org/grpc/stats"
 	"google.golang.org/grpc/status"
 )
 
+// nonGRPCDataMaxLen is the maximum length of nonGRPCDataBuf.
+//
+// NOTE: If changed this value, you MUST update the corresponding test in:
+//   - /test/end2end_test.go:TestHTTPServerSendsNonGRPCHeaderSurfaceFurtherData
+const nonGRPCDataMaxLen = 1024
+
 // ClientStream implements streaming functionality for a gRPC client.
 type ClientStream struct {
-	*Stream // Embed for common stream functionality.
+	Stream // Embed for common stream functionality.
 
 	ct       *http2Client
 	done     chan struct{} // closed at the end of stream to unblock writers.
 	doneFunc func()        // invoked at the end of stream.
 
-	headerChan       chan struct{} // closed to indicate the end of header metadata.
-	headerChanClosed uint32        // set when headerChan is closed. Used to avoid closing headerChan multiple times.
+	headerChan chan struct{} // closed to indicate the end of header metadata.
+	header     metadata.MD   // the received header metadata
+
+	status *status.Status // the status error received from the server
+
+	// Non-pointer fields are at the end to optimize GC allocations.
+
 	// headerValid indicates whether a valid header was received.  Only
 	// meaningful after headerChan is closed (always call waitOnHeader() before
 	// reading its value).
 	headerValid bool
-	header      metadata.MD // the received header metadata
-	noHeaders   bool        // set if the client never received headers (set only after the stream is done).
 
-	bytesReceived atomic.Bool // indicates whether any bytes have been received on this stream
-	unprocessed   atomic.Bool // set if the server sends a refused stream or GOAWAY including this stream
+	nonGRPCStatus  *status.Status // the initial status from the non-gRPC response header, finalized with collected data before closing.
+	nonGRPCDataBuf []byte         // stores the data of a non-gRPC response.
 
-	status *status.Status // the status error received from the server
+	noHeaders        bool          // set if the client never received headers (set only after the stream is done).
+	headerChanClosed uint32        // set when headerChan is closed. Used to avoid closing headerChan multiple times.
+	bytesReceived    atomic.Bool   // indicates whether any bytes have been received on this stream
+	unprocessed      atomic.Bool   // set if the server sends a refused stream or GOAWAY including this stream
+	statsHandler     stats.Handler // nil for internal streams (e.g., health check, ORCA) where telemetry is not supported.
+}
+
+func (s *ClientStream) startNonGRPCDataCollection(st *status.Status) {
+	s.nonGRPCStatus = st
+	s.nonGRPCDataBuf = make([]byte, 0, nonGRPCDataMaxLen)
+}
+
+// finalizeNonGRPCStatus builds the terminal status by appending the collected
+// response body to the original non-gRPC status message.
+func (s *ClientStream) finalizeNonGRPCStatus() *status.Status {
+	msg := fmt.Sprintf("%s\ndata: %q", s.nonGRPCStatus.Message(), s.nonGRPCDataBuf)
+	return status.New(s.nonGRPCStatus.Code(), msg)
+}
+
+// handleNonGRPCData collects non-gRPC body from the given data frame.
+// It returns non-nil value when the stream should be closed with it.
+func (s *ClientStream) handleNonGRPCData(f *parsedDataFrame) *status.Status {
+	n := min(f.data.Len(), nonGRPCDataMaxLen-len(s.nonGRPCDataBuf))
+	s.nonGRPCDataBuf = append(s.nonGRPCDataBuf, f.data.ReadOnlyData()[0:n]...)
+	if len(s.nonGRPCDataBuf) >= nonGRPCDataMaxLen || f.StreamEnded() {
+		return s.finalizeNonGRPCStatus()
+	}
+	return nil
 }
 
 // Read reads an n byte message from the input stream.
@@ -142,3 +180,11 @@
 func (s *ClientStream) Status() *status.Status {
 	return s.status
 }
+
+func (s *ClientStream) requestRead(n int) {
+	s.ct.adjustWindow(s, uint32(n))
+}
+
+func (s *ClientStream) updateWindow(n int) {
+	s.ct.updateWindow(s, uint32(n))
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/controlbuf.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/controlbuf.go
--- a/vendor/google.golang.org/grpc/internal/transport/controlbuf.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/controlbuf.go	2026-09-02 10:25:23.889027764 +0000
@@ -24,22 +24,27 @@
 	"fmt"
 	"net"
 	"runtime"
-	"strconv"
 	"sync"
 	"sync/atomic"
 
 	"golang.org/x/net/http2"
 	"golang.org/x/net/http2/hpack"
+	"google.golang.org/grpc/internal/envconfig"
 	"google.golang.org/grpc/internal/grpclog"
-	"google.golang.org/grpc/internal/grpcutil"
 	"google.golang.org/grpc/mem"
-	"google.golang.org/grpc/status"
 )
 
 var updateHeaderTblSize = func(e *hpack.Encoder, v uint32) {
 	e.SetMaxDynamicTableSizeLimit(v)
 }
 
+// itemNodePool is used to reduce heap allocations.
+var itemNodePool = sync.Pool{
+	New: func() any {
+		return &itemNode{}
+	},
+}
+
 type itemNode struct {
 	it   any
 	next *itemNode
@@ -51,7 +56,9 @@
 }
 
 func (il *itemList) enqueue(i any) {
-	n := &itemNode{it: i}
+	n := itemNodePool.Get().(*itemNode)
+	n.next = nil
+	n.it = i
 	if il.tail == nil {
 		il.head, il.tail = n, n
 		return
@@ -71,7 +78,9 @@
 		return nil
 	}
 	i := il.head.it
+	temp := il.head
 	il.head = il.head.next
+	itemNodePool.Put(temp)
 	if il.head == nil {
 		il.tail = nil
 	}
@@ -88,137 +97,135 @@
 	return il.head == nil
 }
 
-// The following defines various control items which could flow through
-// the control buffer of transport. They represent different aspects of
-// control tasks, e.g., flow control, settings, streaming resetting, etc.
-
-// maxQueuedTransportResponseFrames is the most queued "transport response"
-// frames we will buffer before preventing new reads from occurring on the
-// transport.  These are control frames sent in response to client requests,
-// such as RST_STREAM due to bad headers or settings acks.
-const maxQueuedTransportResponseFrames = 50
+// maxQueuedControlBufferItems is the maximum number of frames (other than
+// HEADERS and DATA) that we will buffer before preventing new reads from
+// occurring on the transport.  These are control frames sent in response to
+// client requests, or frames that result in work being scheduled, such as
+// RST_STREAM due to bad headers or settings acks.
+var maxQueuedControlBufferItems = int(envconfig.ControlBufferThrottleLimit)
 
 type cbItem interface {
-	isTransportResponseFrame() bool
+	isThrottled() bool
 }
 
+// throttledItem represents every item in the controlBuffer to which the overall
+// throttling limit applies, other than outgoing HEADERS and DATA frames.
+type throttledItem struct{}
+
+func (throttledItem) isThrottled() bool { return true }
+
+// The following defines various control items which could flow through
+// the control buffer of transport. They represent different aspects of
+// control tasks, e.g., flow control, settings, streaming resetting, etc.
+
 // registerStream is used to register an incoming stream with loopy writer.
 type registerStream struct {
+	throttledItem
 	streamID uint32
 	wq       *writeQuota
 }
 
-func (*registerStream) isTransportResponseFrame() bool { return false }
-
-// headerFrame is also used to register stream on the client-side.
-type headerFrame struct {
+type clientHeaders struct {
 	streamID   uint32
 	hf         []hpack.HeaderField
-	endStream  bool               // Valid on server side.
-	initStream func(uint32) error // Used only on the client side.
+	initStream func(uint32) error
 	onWrite    func()
-	wq         *writeQuota    // write quota for the stream created.
-	cleanup    *cleanupStream // Valid on the server side.
-	onOrphaned func(error)    // Valid on client-side
+	wq         *writeQuota
+	onOrphaned func(error)
 }
 
-func (h *headerFrame) isTransportResponseFrame() bool {
-	return h.cleanup != nil && h.cleanup.rst // Results in a RST_STREAM
+func (*clientHeaders) isThrottled() bool { return false }
+
+type serverHeaders struct {
+	streamID  uint32
+	hf        []hpack.HeaderField
+	endStream bool
+	onWrite   func()
+	cleanup   *cleanupStream
 }
 
+func (h *serverHeaders) isThrottled() bool { return false }
+
 type cleanupStream struct {
+	throttledItem
 	streamID uint32
 	rst      bool
 	rstCode  http2.ErrCode
 	onWrite  func()
 }
 
-func (c *cleanupStream) isTransportResponseFrame() bool { return c.rst } // Results in a RST_STREAM
-
 type earlyAbortStream struct {
-	httpStatus     uint32
-	streamID       uint32
-	contentSubtype string
-	status         *status.Status
-	rst            bool
+	throttledItem
+	streamID uint32
+	rst      bool
+	hf       []hpack.HeaderField // Pre-built header fields
 }
 
-func (*earlyAbortStream) isTransportResponseFrame() bool { return false }
-
 type dataFrame struct {
-	streamID  uint32
-	endStream bool
-	h         []byte
-	reader    mem.Reader
+	streamID   uint32
+	endStream  bool
+	h          []byte
+	data       mem.BufferSlice
+	processing bool
 	// onEachWrite is called every time
 	// a part of data is written out.
 	onEachWrite func()
 }
 
-func (*dataFrame) isTransportResponseFrame() bool { return false }
+func (*dataFrame) isThrottled() bool { return false }
 
 type incomingWindowUpdate struct {
+	throttledItem
 	streamID  uint32
 	increment uint32
 }
 
-func (*incomingWindowUpdate) isTransportResponseFrame() bool { return false }
-
 type outgoingWindowUpdate struct {
+	throttledItem
 	streamID  uint32
 	increment uint32
 }
 
-func (*outgoingWindowUpdate) isTransportResponseFrame() bool {
-	return false // window updates are throttled by thresholds
-}
-
 type incomingSettings struct {
+	throttledItem
 	ss []http2.Setting
 }
 
-func (*incomingSettings) isTransportResponseFrame() bool { return true } // Results in a settings ACK
-
 type outgoingSettings struct {
+	throttledItem
 	ss []http2.Setting
 }
 
-func (*outgoingSettings) isTransportResponseFrame() bool { return false }
-
 type incomingGoAway struct {
+	throttledItem
 }
 
-func (*incomingGoAway) isTransportResponseFrame() bool { return false }
-
 type goAway struct {
+	throttledItem
 	code      http2.ErrCode
 	debugData []byte
 	headsUp   bool
 	closeConn error // if set, loopyWriter will exit with this error
 }
 
-func (*goAway) isTransportResponseFrame() bool { return false }
-
 type ping struct {
+	throttledItem
 	ack  bool
 	data [8]byte
 }
 
-func (*ping) isTransportResponseFrame() bool { return true }
-
 type outFlowControlSizeRequest struct {
+	throttledItem
 	resp chan uint32
 }
 
-func (*outFlowControlSizeRequest) isTransportResponseFrame() bool { return false }
-
 // closeConnection is an instruction to tell the loopy writer to flush the
 // framer and exit, which will cause the transport's connection to be closed
 // (by the client or server).  The transport itself will close after the reader
 // encounters the EOF caused by the connection closure.
-type closeConnection struct{}
-
-func (closeConnection) isTransportResponseFrame() bool { return false }
+type closeConnection struct {
+	throttledItem
+}
 
 type outStreamState int
 
@@ -234,6 +241,7 @@
 	itl              *itemList
 	bytesOutStanding int
 	wq               *writeQuota
+	reader           mem.Reader
 
 	next *outStream
 	prev *outStream
@@ -371,9 +379,9 @@
 		c.consumerWaiting = false
 	}
 	c.list.enqueue(it)
-	if it.isTransportResponseFrame() {
+	if it.isThrottled() {
 		c.transportResponseFrames++
-		if c.transportResponseFrames == maxQueuedTransportResponseFrames {
+		if c.transportResponseFrames == maxQueuedControlBufferItems {
 			// We are adding the frame that puts us over the threshold; create
 			// a throttling channel.
 			ch := make(chan struct{})
@@ -428,8 +436,8 @@
 		return nil, nil
 	}
 	h := c.list.dequeue().(cbItem)
-	if h.isTransportResponseFrame() {
-		if c.transportResponseFrames == maxQueuedTransportResponseFrames {
+	if h.isThrottled() {
+		if c.transportResponseFrames == maxQueuedControlBufferItems {
 			// We are removing the frame that put us over the
 			// threshold; close and clear the throttling channel.
 			ch := c.trfChan.Swap(nil)
@@ -456,12 +464,12 @@
 	// is still not aware of these yet.
 	for head := c.list.dequeueAll(); head != nil; head = head.next {
 		switch v := head.it.(type) {
-		case *headerFrame:
-			if v.onOrphaned != nil { // It will be nil on the server-side.
-				v.onOrphaned(ErrConnClosing)
-			}
+		case *clientHeaders:
+			v.onOrphaned(ErrConnClosing)
 		case *dataFrame:
-			_ = v.reader.Close()
+			if !v.processing {
+				v.data.Free()
+			}
 		}
 	}
 
@@ -481,6 +489,16 @@
 	serverSide
 )
 
+// maxWriteBufSize is the maximum length (number of elements) the cached
+// writeBuf can grow to. The length depends on the number of buffers
+// contained within the BufferSlice produced by the codec, which is
+// generally small.
+//
+// If a writeBuf larger than this limit is required, it will be allocated
+// and freed after use, rather than being cached. This avoids holding
+// on to large amounts of memory.
+const maxWriteBufSize = 64
+
 // Loopy receives frames from the control buffer.
 // Each frame is handled individually; most of the work done by loopy goes
 // into handling data frames. Loopy maintains a queue of active streams, and each
@@ -515,6 +533,8 @@
 
 	// Side-specific handlers
 	ssGoAwayHandler func(*goAway) (bool, error)
+
+	writeBuf [][]byte // cached slice to avoid heap allocations for calls to mem.Reader.Peek.
 }
 
 func newLoopyWriter(s side, fr *framer, cbuf *controlBuffer, bdpEst *bdpEstimator, conn net.Conn, logger *grpclog.PrefixLogger, goAwayHandler func(*goAway) (bool, error), bufferPool mem.BufferPool) *loopyWriter {
@@ -658,42 +678,38 @@
 	l.estdStreams[h.streamID] = str
 }
 
-func (l *loopyWriter) headerHandler(h *headerFrame) error {
-	if l.side == serverSide {
-		str, ok := l.estdStreams[h.streamID]
-		if !ok {
-			if l.logger.V(logLevel) {
-				l.logger.Infof("Unrecognized streamID %d in loopyWriter", h.streamID)
-			}
-			return nil
-		}
-		// Case 1.A: Server is responding back with headers.
-		if !h.endStream {
-			return l.writeHeader(h.streamID, h.endStream, h.hf, h.onWrite)
+func (l *loopyWriter) serverHeaderHandler(hdr *serverHeaders) error {
+	str, ok := l.estdStreams[hdr.streamID]
+	if !ok {
+		if l.logger.V(logLevel) {
+			l.logger.Infof("Unrecognized streamID %d in loopyWriter", hdr.streamID)
 		}
-		// else:  Case 1.B: Server wants to close stream.
+		return nil
+	}
 
-		if str.state != empty { // either active or waiting on stream quota.
-			// add it str's list of items.
-			str.itl.enqueue(h)
-			return nil
-		}
-		if err := l.writeHeader(h.streamID, h.endStream, h.hf, h.onWrite); err != nil {
-			return err
-		}
-		return l.cleanupStreamHandler(h.cleanup)
+	// Case 1: Server is responding back with headers.
+	if !hdr.endStream {
+		return l.writeHeader(hdr.streamID, hdr.endStream, hdr.hf, hdr.onWrite)
+	}
+
+	// Case 2: Server is closing the stream.
+	if str.state != empty { // either active or waiting on stream quota.
+		str.itl.enqueue(hdr)
+		return nil
+	}
+	if err := l.writeHeader(hdr.streamID, hdr.endStream, hdr.hf, hdr.onWrite); err != nil {
+		return err
 	}
-	// Case 2: Client wants to originate stream.
+	return l.cleanupStreamHandler(hdr.cleanup)
+}
+
+func (l *loopyWriter) clientHeaderHandler(hdr *clientHeaders) error {
 	str := &outStream{
-		id:    h.streamID,
+		id:    hdr.streamID,
 		state: empty,
 		itl:   &itemList{},
-		wq:    h.wq,
+		wq:    hdr.wq,
 	}
-	return l.originateStream(str, h)
-}
-
-func (l *loopyWriter) originateStream(str *outStream, hdr *headerFrame) error {
 	// l.draining is set when handling GoAway. In which case, we want to avoid
 	// creating new streams.
 	if l.draining {
@@ -704,7 +720,7 @@
 	if err := hdr.initStream(str.id); err != nil {
 		return err
 	}
-	if err := l.writeHeader(str.id, hdr.endStream, hdr.hf, hdr.onWrite); err != nil {
+	if err := l.writeHeader(str.id, false, hdr.hf, hdr.onWrite); err != nil {
 		return err
 	}
 	l.estdStreams[str.id] = str
@@ -790,10 +806,13 @@
 		// a RST_STREAM before stream initialization thus the stream might
 		// not be established yet.
 		delete(l.estdStreams, c.streamID)
+		str.reader.Close()
 		str.deleteSelf()
 		for head := str.itl.dequeueAll(); head != nil; head = head.next {
 			if df, ok := head.it.(*dataFrame); ok {
-				_ = df.reader.Close()
+				if !df.processing {
+					df.data.Free()
+				}
 			}
 		}
 	}
@@ -813,18 +832,7 @@
 	if l.side == clientSide {
 		return errors.New("earlyAbortStream not handled on client")
 	}
-	// In case the caller forgets to set the http status, default to 200.
-	if eas.httpStatus == 0 {
-		eas.httpStatus = 200
-	}
-	headerFields := []hpack.HeaderField{
-		{Name: ":status", Value: strconv.Itoa(int(eas.httpStatus))},
-		{Name: "content-type", Value: grpcutil.ContentType(eas.contentSubtype)},
-		{Name: "grpc-status", Value: strconv.Itoa(int(eas.status.Code()))},
-		{Name: "grpc-message", Value: encodeGrpcMessage(eas.status.Message())},
-	}
-
-	if err := l.writeHeader(eas.streamID, true, headerFields, nil); err != nil {
+	if err := l.writeHeader(eas.streamID, true, eas.hf, nil); err != nil {
 		return err
 	}
 	if eas.rst {
@@ -868,8 +876,10 @@
 		return l.incomingSettingsHandler(i)
 	case *outgoingSettings:
 		return l.outgoingSettingsHandler(i)
-	case *headerFrame:
-		return l.headerHandler(i)
+	case *clientHeaders:
+		return l.clientHeaderHandler(i)
+	case *serverHeaders:
+		return l.serverHeaderHandler(i)
 	case *registerStream:
 		l.registerStreamHandler(i)
 	case *cleanupStream:
@@ -928,7 +938,13 @@
 	if str == nil {
 		return true, nil
 	}
+	reader := &str.reader
 	dataItem := str.itl.peek().(*dataFrame) // Peek at the first data item this stream.
+	if !dataItem.processing {
+		dataItem.processing = true
+		reader.Reset(dataItem.data)
+		dataItem.data.Free()
+	}
 	// A data item is represented by a dataFrame, since it later translates into
 	// multiple HTTP2 data frames.
 	// Every dataFrame has two buffers; h that keeps grpc-message header and data
@@ -936,64 +952,36 @@
 	// from data is copied to h to make as big as the maximum possible HTTP2 frame
 	// size.
 
-	if len(dataItem.h) == 0 && dataItem.reader.Remaining() == 0 { // Empty data frame
-		// Client sends out empty data frame with endStream = true
-		if err := l.framer.fr.WriteData(dataItem.streamID, dataItem.endStream, nil); err != nil {
-			return false, err
-		}
-		str.itl.dequeue() // remove the empty data item from stream
-		_ = dataItem.reader.Close()
-		if str.itl.isEmpty() {
-			str.state = empty
-		} else if trailer, ok := str.itl.peek().(*headerFrame); ok { // the next item is trailers.
-			if err := l.writeHeader(trailer.streamID, trailer.endStream, trailer.hf, trailer.onWrite); err != nil {
-				return false, err
-			}
-			if err := l.cleanupStreamHandler(trailer.cleanup); err != nil {
-				return false, err
-			}
-		} else {
-			l.activeStreams.enqueue(str)
-		}
-		return false, nil
-	}
-
+	isEmpty := len(dataItem.h) == 0 && reader.Remaining() == 0
 	// Figure out the maximum size we can send
 	maxSize := http2MaxFrameLen
-	if strQuota := int(l.oiws) - str.bytesOutStanding; strQuota <= 0 { // stream-level flow control.
+	strQuota := int(l.oiws) - str.bytesOutStanding
+	if strQuota <= 0 && !isEmpty { // stream-level flow control.
 		str.state = waitingOnStreamQuota
 		return false, nil
-	} else if maxSize > strQuota {
-		maxSize = strQuota
-	}
-	if maxSize > int(l.sendQuota) { // connection-level flow control.
-		maxSize = int(l.sendQuota)
 	}
+	maxSize = min(maxSize, max(strQuota, 0))
+	maxSize = min(maxSize, int(l.sendQuota)) // connection-level flow control.
 	// Compute how much of the header and data we can send within quota and max frame length
 	hSize := min(maxSize, len(dataItem.h))
-	dSize := min(maxSize-hSize, dataItem.reader.Remaining())
-	remainingBytes := len(dataItem.h) + dataItem.reader.Remaining() - hSize - dSize
+	dSize := min(maxSize-hSize, reader.Remaining())
+	remainingBytes := len(dataItem.h) + reader.Remaining() - hSize - dSize
 	size := hSize + dSize
 
-	var buf *[]byte
-
-	if hSize != 0 && dSize == 0 {
-		buf = &dataItem.h
-	} else {
-		// Note: this is only necessary because the http2.Framer does not support
-		// partially writing a frame, so the sequence must be materialized into a buffer.
-		// TODO: Revisit once https://github.com/golang/go/issues/66655 is addressed.
-		pool := l.bufferPool
-		if pool == nil {
-			// Note that this is only supposed to be nil in tests. Otherwise, stream is
-			// always initialized with a BufferPool.
-			pool = mem.DefaultBufferPool()
+	l.writeBuf = l.writeBuf[:0]
+	if hSize > 0 {
+		l.writeBuf = append(l.writeBuf, dataItem.h[:hSize])
+	}
+	if dSize > 0 {
+		var err error
+		l.writeBuf, err = reader.Peek(dSize, l.writeBuf)
+		if err != nil {
+			// This must never happen since the reader must have at least dSize
+			// bytes.
+			// Log an error to fail tests.
+			l.logger.Errorf("unexpected error while reading Data frame payload: %v", err)
+			return false, err
 		}
-		buf = pool.Get(size)
-		defer pool.Put(buf)
-
-		copy((*buf)[:hSize], dataItem.h)
-		_, _ = dataItem.reader.Read((*buf)[hSize:])
 	}
 
 	// Now that outgoing flow controls are checked we can replenish str's write quota
@@ -1006,7 +994,14 @@
 	if dataItem.onEachWrite != nil {
 		dataItem.onEachWrite()
 	}
-	if err := l.framer.fr.WriteData(dataItem.streamID, endStream, (*buf)[:size]); err != nil {
+	err := l.framer.writeData(dataItem.streamID, endStream, l.writeBuf)
+	reader.Discard(dSize)
+	if cap(l.writeBuf) > maxWriteBufSize {
+		l.writeBuf = nil
+	} else {
+		clear(l.writeBuf)
+	}
+	if err != nil {
 		return false, err
 	}
 	str.bytesOutStanding += size
@@ -1014,22 +1009,26 @@
 	dataItem.h = dataItem.h[hSize:]
 
 	if remainingBytes == 0 { // All the data from that message was written out.
-		_ = dataItem.reader.Close()
+		reader.Close()
 		str.itl.dequeue()
 	}
+	return false, l.updateStreamAfterWrite(str)
+}
+
+func (l *loopyWriter) updateStreamAfterWrite(str *outStream) error {
 	if str.itl.isEmpty() {
 		str.state = empty
-	} else if trailer, ok := str.itl.peek().(*headerFrame); ok { // The next item is trailers.
+	} else if trailer, ok := str.itl.peek().(*serverHeaders); ok { // the next item is trailers.
 		if err := l.writeHeader(trailer.streamID, trailer.endStream, trailer.hf, trailer.onWrite); err != nil {
-			return false, err
+			return err
 		}
 		if err := l.cleanupStreamHandler(trailer.cleanup); err != nil {
-			return false, err
+			return err
 		}
 	} else if int(l.oiws)-str.bytesOutStanding <= 0 { // Ran out of stream quota.
 		str.state = waitingOnStreamQuota
 	} else { // Otherwise add it back to the list of active streams.
 		l.activeStreams.enqueue(str)
 	}
-	return false, nil
+	return nil
 }
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/defaults.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/defaults.go
--- a/vendor/google.golang.org/grpc/internal/transport/defaults.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/defaults.go	2026-09-02 10:25:23.889027764 +0000
@@ -46,6 +46,7 @@
 	defaultWriteQuota              = 64 * 1024
 	defaultClientMaxHeaderListSize = uint32(16 << 20)
 	defaultServerMaxHeaderListSize = uint32(16 << 20)
+	upcomingDefaultHeaderListSize  = uint32(8 << 10)
 )
 
 // MaxStreamID is the upper bound for the stream ID before the current
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/flowcontrol.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/flowcontrol.go
--- a/vendor/google.golang.org/grpc/internal/transport/flowcontrol.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/flowcontrol.go	2026-09-02 10:25:23.889027764 +0000
@@ -28,7 +28,7 @@
 // writeQuota is a soft limit on the amount of data a stream can
 // schedule before some of it is written out.
 type writeQuota struct {
-	quota int32
+	_ noCopy
 	// get waits on read from when quota goes less than or equal to zero.
 	// replenish writes on it when quota goes positive again.
 	ch chan struct{}
@@ -38,16 +38,17 @@
 	// It is implemented as a field so that it can be updated
 	// by tests.
 	replenish func(n int)
+	quota     int32
 }
 
-func newWriteQuota(sz int32, done <-chan struct{}) *writeQuota {
-	w := &writeQuota{
-		quota: sz,
-		ch:    make(chan struct{}, 1),
-		done:  done,
-	}
+// init allows a writeQuota to be initialized in-place, which is useful for
+// resetting a buffer or for avoiding a heap allocation when the buffer is
+// embedded in another struct.
+func (w *writeQuota) init(sz int32, done <-chan struct{}) {
+	w.quota = sz
+	w.ch = make(chan struct{}, 1)
+	w.done = done
 	w.replenish = w.realReplenish
-	return w
 }
 
 func (w *writeQuota) get(sz int32) error {
@@ -67,9 +68,9 @@
 
 func (w *writeQuota) realReplenish(n int) {
 	sz := int32(n)
-	a := atomic.AddInt32(&w.quota, sz)
-	b := a - sz
-	if b <= 0 && a > 0 {
+	newQuota := atomic.AddInt32(&w.quota, sz)
+	previousQuota := newQuota - sz
+	if previousQuota <= 0 && newQuota > 0 {
 		select {
 		case w.ch <- struct{}{}:
 		default:
@@ -114,7 +115,6 @@
 	return atomic.LoadUint32(&f.effectiveWindowSize)
 }
 
-// TODO(mmukhi): Simplify this code.
 // inFlow deals with inbound flow control
 type inFlow struct {
 	mu sync.Mutex
@@ -173,14 +173,14 @@
 // onData is invoked when some data frame is received. It updates pendingData.
 func (f *inFlow) onData(n uint32) error {
 	f.mu.Lock()
+	defer f.mu.Unlock()
+
 	f.pendingData += n
 	if f.pendingData+f.pendingUpdate > f.limit+f.delta {
 		limit := f.limit
 		rcvd := f.pendingData + f.pendingUpdate
-		f.mu.Unlock()
 		return fmt.Errorf("received %d-bytes data exceeding the limit %d bytes", rcvd, limit)
 	}
-	f.mu.Unlock()
 	return nil
 }
 
@@ -188,8 +188,9 @@
 // to be sent to the peer.
 func (f *inFlow) onRead(n uint32) uint32 {
 	f.mu.Lock()
+	defer f.mu.Unlock()
+
 	if f.pendingData == 0 {
-		f.mu.Unlock()
 		return 0
 	}
 	f.pendingData -= n
@@ -204,9 +205,7 @@
 	if f.pendingUpdate >= f.limit/4 {
 		wu := f.pendingUpdate
 		f.pendingUpdate = 0
-		f.mu.Unlock()
 		return wu
 	}
-	f.mu.Unlock()
 	return 0
 }
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/handler_server.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/handler_server.go
--- a/vendor/google.golang.org/grpc/internal/transport/handler_server.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/handler_server.go	2026-09-02 10:25:23.889027764 +0000
@@ -50,7 +50,7 @@
 // NewServerHandlerTransport returns a ServerTransport handling gRPC from
 // inside an http.Handler, or writes an HTTP error to w and returns an error.
 // It requires that the http Server supports HTTP/2.
-func NewServerHandlerTransport(w http.ResponseWriter, r *http.Request, stats []stats.Handler, bufferPool mem.BufferPool) (ServerTransport, error) {
+func NewServerHandlerTransport(w http.ResponseWriter, r *http.Request, stats stats.Handler, bufferPool mem.BufferPool) (ServerTransport, error) {
 	if r.Method != http.MethodPost {
 		w.Header().Set("Allow", http.MethodPost)
 		msg := fmt.Sprintf("invalid gRPC request method %q", r.Method)
@@ -170,7 +170,7 @@
 	// TODO make sure this is consistent across handler_server and http2_server
 	contentSubtype string
 
-	stats  []stats.Handler
+	stats  stats.Handler
 	logger *grpclog.PrefixLogger
 
 	bufferPool mem.BufferPool
@@ -274,14 +274,14 @@
 		}
 	})
 
-	if err == nil { // transport has not been closed
+	if err == nil && ht.stats != nil { // transport has not been closed
 		// Note: The trailer fields are compressed with hpack after this call returns.
 		// No WireLength field is set here.
-		for _, sh := range ht.stats {
-			sh.HandleRPC(s.Context(), &stats.OutTrailer{
-				Trailer: s.trailer.Copy(),
-			})
-		}
+		s.hdrMu.Lock()
+		ht.stats.HandleRPC(s.Context(), &stats.OutTrailer{
+			Trailer: s.trailer.Copy(),
+		})
+		s.hdrMu.Unlock()
 	}
 	ht.Close(errors.New("finished writing status"))
 	return err
@@ -372,19 +372,23 @@
 		ht.rw.(http.Flusher).Flush()
 	})
 
-	if err == nil {
-		for _, sh := range ht.stats {
-			// Note: The header fields are compressed with hpack after this call returns.
-			// No WireLength field is set here.
-			sh.HandleRPC(s.Context(), &stats.OutHeader{
-				Header:      md.Copy(),
-				Compression: s.sendCompress,
-			})
-		}
+	if err == nil && ht.stats != nil {
+		// Note: The header fields are compressed with hpack after this call returns.
+		// No WireLength field is set here.
+		ht.stats.HandleRPC(s.Context(), &stats.OutHeader{
+			Header:      md.Copy(),
+			Compression: s.sendCompress,
+		})
 	}
 	return err
 }
 
+func (ht *serverHandlerTransport) adjustWindow(*ServerStream, uint32) {
+}
+
+func (ht *serverHandlerTransport) updateWindow(*ServerStream, uint32) {
+}
+
 func (ht *serverHandlerTransport) HandleStreams(ctx context.Context, startStream func(*ServerStream)) {
 	// With this transport type there will be exactly 1 stream: this HTTP request.
 	var cancel context.CancelFunc
@@ -409,11 +413,9 @@
 	ctx = metadata.NewIncomingContext(ctx, ht.headerMD)
 	req := ht.req
 	s := &ServerStream{
-		Stream: &Stream{
+		Stream: Stream{
 			id:             0, // irrelevant
 			ctx:            ctx,
-			requestRead:    func(int) {},
-			buf:            newRecvBuffer(),
 			method:         req.URL.Path,
 			recvCompress:   req.Header.Get("grpc-encoding"),
 			contentSubtype: ht.contentSubtype,
@@ -422,9 +424,11 @@
 		st:               ht,
 		headerWireLength: 0, // won't have access to header wire length until golang/go#18997.
 	}
-	s.trReader = &transportReader{
-		reader:        &recvBufferReader{ctx: s.ctx, ctxDone: s.ctx.Done(), recv: s.buf},
-		windowHandler: func(int) {},
+	s.Stream.buf.init()
+	s.readRequester = s
+	s.trReader = transportReader{
+		reader:        recvBufferReader{ctx: s.ctx, ctxDone: s.ctx.Done(), recv: &s.buf},
+		windowHandler: s,
 	}
 
 	// readerDone is closed when the Body.Read-ing goroutine exits.
@@ -475,8 +479,8 @@
 
 func (ht *serverHandlerTransport) incrMsgRecv() {}
 
-func (ht *serverHandlerTransport) Drain(string) {
-	panic("Drain() is not implemented")
+func (ht *serverHandlerTransport) Drain(s string) {
+	ht.Close(errors.New(s))
 }
 
 // mapRecvMsgError returns the non-nil err into the appropriate
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/http2_client.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/http2_client.go
--- a/vendor/google.golang.org/grpc/internal/transport/http2_client.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/http2_client.go	2026-09-02 10:25:23.889027764 +0000
@@ -39,11 +39,13 @@
 	"google.golang.org/grpc/internal"
 	"google.golang.org/grpc/internal/channelz"
 	icredentials "google.golang.org/grpc/internal/credentials"
+	"google.golang.org/grpc/internal/envconfig"
 	"google.golang.org/grpc/internal/grpclog"
 	"google.golang.org/grpc/internal/grpcsync"
 	"google.golang.org/grpc/internal/grpcutil"
 	imetadata "google.golang.org/grpc/internal/metadata"
 	"google.golang.org/grpc/internal/proxyattributes"
+	istats "google.golang.org/grpc/internal/stats"
 	istatus "google.golang.org/grpc/internal/status"
 	isyscall "google.golang.org/grpc/internal/syscall"
 	"google.golang.org/grpc/internal/transport/networktype"
@@ -105,7 +107,7 @@
 	kp               keepalive.ClientParameters
 	keepaliveEnabled bool
 
-	statsHandlers []stats.Handler
+	statsHandler stats.Handler
 
 	initialWindowSize int32
 
@@ -133,6 +135,8 @@
 	// goAwayDebugMessage contains a detailed human readable string about a
 	// GoAway frame, useful for error messages.
 	goAwayDebugMessage string
+	// goAwayCode records the http2.ErrCode received with the GoAway frame.
+	goAwayCode http2.ErrCode
 	// A condition variable used to signal when the keepalive goroutine should
 	// go dormant. The condition for dormancy is based on the number of active
 	// streams and the `PermitWithoutStream` keepalive client parameter. And
@@ -146,7 +150,7 @@
 
 	channelz *channelz.Socket
 
-	onClose func(GoAwayReason)
+	onClose OnCloseFunc
 
 	bufferPool mem.BufferPool
 
@@ -203,7 +207,7 @@
 // NewHTTP2Client constructs a connected ClientTransport to addr based on HTTP2
 // and starts to receive messages on it. Non-nil error returns if construction
 // fails.
-func NewHTTP2Client(connectCtx, ctx context.Context, addr resolver.Address, opts ConnectOptions, onClose func(GoAwayReason)) (_ ClientTransport, err error) {
+func NewHTTP2Client(connectCtx, ctx context.Context, addr resolver.Address, opts ConnectOptions, onClose OnCloseFunc) (_ ClientTransport, err error) {
 	scheme := "http"
 	ctx, cancel := context.WithCancel(ctx)
 	defer func() {
@@ -309,15 +313,19 @@
 			scheme = "https"
 		}
 	}
-	dynamicWindow := true
 	icwz := int32(initialWindowSize)
 	if opts.InitialConnWindowSize >= defaultWindowSize {
 		icwz = opts.InitialConnWindowSize
-		dynamicWindow = false
 	}
 	writeBufSize := opts.WriteBufferSize
 	readBufSize := opts.ReadBufferSize
+	// The default header list size is moving from 16MB to 8KB. The 8KB limit
+	// is only used if Enable8KBDefaultHeaderListSize is true; otherwise, the
+	// old 16MB default is used. User-specified options always take precedence.
 	maxHeaderListSize := defaultClientMaxHeaderListSize
+	if envconfig.Enable8KBDefaultHeaderListSize {
+		maxHeaderListSize = upcomingDefaultHeaderListSize
+	}
 	if opts.MaxHeaderListSize != nil {
 		maxHeaderListSize = *opts.MaxHeaderListSize
 	}
@@ -337,14 +345,14 @@
 		writerDone:            make(chan struct{}),
 		goAway:                make(chan struct{}),
 		keepaliveDone:         make(chan struct{}),
-		framer:                newFramer(conn, writeBufSize, readBufSize, opts.SharedWriteBuffer, maxHeaderListSize),
+		framer:                newFramer(conn, writeBufSize, readBufSize, opts.SharedWriteBuffer, maxHeaderListSize, opts.BufferPool),
 		fc:                    &trInFlow{limit: uint32(icwz)},
 		scheme:                scheme,
 		activeStreams:         make(map[uint32]*ClientStream),
 		isSecure:              isSecure,
 		perRPCCreds:           perRPCCreds,
 		kp:                    kp,
-		statsHandlers:         opts.StatsHandlers,
+		statsHandler:          istats.NewCombinedHandler(opts.StatsHandlers...),
 		initialWindowSize:     initialWindowSize,
 		nextID:                1,
 		maxConcurrentStreams:  defaultMaxStreamsClient,
@@ -371,7 +379,7 @@
 		})
 	t.logger = prefixLoggerForClientTransport(t)
 	// Add peer information to the http2client context.
-	t.ctx = peer.NewContext(t.ctx, t.getPeer())
+	t.ctx = peer.NewContext(t.ctx, t.Peer())
 
 	if md, ok := addr.Metadata.(*metadata.MD); ok {
 		t.md = *md
@@ -381,23 +389,21 @@
 	t.controlBuf = newControlBuffer(t.ctxDone)
 	if opts.InitialWindowSize >= defaultWindowSize {
 		t.initialWindowSize = opts.InitialWindowSize
-		dynamicWindow = false
 	}
-	if dynamicWindow {
+	if !opts.StaticWindowSize {
 		t.bdpEst = &bdpEstimator{
 			bdp:               initialWindowSize,
 			updateFlowControl: t.updateFlowControl,
 		}
 	}
-	for _, sh := range t.statsHandlers {
-		t.ctx = sh.TagConn(t.ctx, &stats.ConnTagInfo{
+	if t.statsHandler != nil {
+		t.ctx = t.statsHandler.TagConn(t.ctx, &stats.ConnTagInfo{
 			RemoteAddr: t.remoteAddr,
 			LocalAddr:  t.localAddr,
 		})
-		connBegin := &stats.ConnBegin{
+		t.statsHandler.HandleConn(t.ctx, &stats.ConnBegin{
 			Client: true,
-		}
-		sh.HandleConn(t.ctx, connBegin)
+		})
 	}
 	if t.keepaliveEnabled {
 		t.kpDormancyCond = sync.NewCond(&t.mu)
@@ -481,45 +487,40 @@
 	return t, nil
 }
 
-func (t *http2Client) newStream(ctx context.Context, callHdr *CallHdr) *ClientStream {
+func (t *http2Client) newStream(ctx context.Context, callHdr *CallHdr, handler stats.Handler) *ClientStream {
 	// TODO(zhaoq): Handle uint32 overflow of Stream.id.
 	s := &ClientStream{
-		Stream: &Stream{
+		Stream: Stream{
 			method:         callHdr.Method,
 			sendCompress:   callHdr.SendCompress,
-			buf:            newRecvBuffer(),
 			contentSubtype: callHdr.ContentSubtype,
 		},
-		ct:         t,
-		done:       make(chan struct{}),
-		headerChan: make(chan struct{}),
-		doneFunc:   callHdr.DoneFunc,
-	}
-	s.wq = newWriteQuota(defaultWriteQuota, s.done)
-	s.requestRead = func(n int) {
-		t.adjustWindow(s, uint32(n))
-	}
+		ct:           t,
+		done:         make(chan struct{}),
+		headerChan:   make(chan struct{}),
+		doneFunc:     callHdr.DoneFunc,
+		statsHandler: handler,
+	}
+	s.Stream.buf.init()
+	s.Stream.wq.init(defaultWriteQuota, s.done)
+	s.readRequester = s
 	// The client side stream context should have exactly the same life cycle with the user provided context.
 	// That means, s.ctx should be read-only. And s.ctx is done iff ctx is done.
 	// So we use the original context here instead of creating a copy.
 	s.ctx = ctx
-	s.trReader = &transportReader{
-		reader: &recvBufferReader{
-			ctx:     s.ctx,
-			ctxDone: s.ctx.Done(),
-			recv:    s.buf,
-			closeStream: func(err error) {
-				s.Close(err)
-			},
-		},
-		windowHandler: func(n int) {
-			t.updateWindow(s, uint32(n))
+	s.trReader = transportReader{
+		reader: recvBufferReader{
+			ctx:          s.ctx,
+			ctxDone:      s.ctx.Done(),
+			recv:         &s.buf,
+			clientStream: s,
 		},
+		windowHandler: s,
 	}
 	return s
 }
 
-func (t *http2Client) getPeer() *peer.Peer {
+func (t *http2Client) Peer() *peer.Peer {
 	return &peer.Peer{
 		Addr:      t.remoteAddr,
 		AuthInfo:  t.authInfo, // Can be nil
@@ -545,7 +546,7 @@
 		Method:   callHdr.Method,
 		AuthInfo: t.authInfo,
 	}
-	ctxWithRequestInfo := icredentials.NewRequestInfoContext(ctx, ri)
+	ctxWithRequestInfo := credentials.NewContextWithRequestInfo(ctx, ri)
 	authData, err := t.getTrAuthData(ctxWithRequestInfo, aud)
 	if err != nil {
 		return nil, err
@@ -559,6 +560,22 @@
 	// Make the slice of certain predictable size to reduce allocations made by append.
 	hfLen := 7 // :method, :scheme, :path, :authority, content-type, user-agent, te
 	hfLen += len(authData) + len(callAuthData)
+	registeredCompressors := t.registeredCompressors
+	if callHdr.AcceptedCompressors != nil {
+		registeredCompressors = *callHdr.AcceptedCompressors
+	}
+	if callHdr.PreviousAttempts > 0 {
+		hfLen++
+	}
+	if callHdr.SendCompress != "" {
+		hfLen++
+	}
+	if registeredCompressors != "" {
+		hfLen++
+	}
+	if _, ok := ctx.Deadline(); ok {
+		hfLen++
+	}
 	headerFields := make([]hpack.HeaderField, 0, hfLen)
 	headerFields = append(headerFields, hpack.HeaderField{Name: ":method", Value: "POST"})
 	headerFields = append(headerFields, hpack.HeaderField{Name: ":scheme", Value: t.scheme})
@@ -571,7 +588,6 @@
 		headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-previous-rpc-attempts", Value: strconv.Itoa(callHdr.PreviousAttempts)})
 	}
 
-	registeredCompressors := t.registeredCompressors
 	if callHdr.SendCompress != "" {
 		headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-encoding", Value: callHdr.SendCompress})
 		// Include the outgoing compressor name when compressor is not registered
@@ -592,6 +608,9 @@
 		// Send out timeout regardless its value. The server can detect timeout context by itself.
 		// TODO(mmukhi): Perhaps this field should be updated when actually writing out to the wire.
 		timeout := time.Until(dl)
+		if timeout <= 0 {
+			return nil, status.Error(codes.DeadlineExceeded, context.DeadlineExceeded.Error())
+		}
 		headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-timeout", Value: grpcutil.EncodeDuration(timeout)})
 	}
 	for k, v := range authData {
@@ -735,8 +754,8 @@
 
 // NewStream creates a stream and registers it into the transport as "active"
 // streams.  All non-nil errors returned will be *NewStreamError.
-func (t *http2Client) NewStream(ctx context.Context, callHdr *CallHdr) (*ClientStream, error) {
-	ctx = peer.NewContext(ctx, t.getPeer())
+func (t *http2Client) NewStream(ctx context.Context, callHdr *CallHdr, handler stats.Handler) (*ClientStream, error) {
+	ctx = peer.NewContext(ctx, t.Peer())
 
 	// ServerName field of the resolver returned address takes precedence over
 	// Host field of CallHdr to determine the :authority header. This is because,
@@ -749,11 +768,30 @@
 		callHdr = &newCallHdr
 	}
 
+	// The authority specified via the `CallAuthority` CallOption takes the
+	// highest precedence when determining the `:authority` header. It overrides
+	// any value present in the Host field of CallHdr. Before applying this
+	// override, the authority string is validated. If the credentials do not
+	// implement the AuthorityValidator interface, or if validation fails, the
+	// RPC is failed with a status code of `UNAVAILABLE`.
+	if callHdr.Authority != "" {
+		auth, ok := t.authInfo.(credentials.AuthorityValidator)
+		if !ok {
+			return nil, &NewStreamError{Err: status.Errorf(codes.Unavailable, "credentials type %q does not implement the AuthorityValidator interface, but authority override specified with CallAuthority call option", t.authInfo.AuthType())}
+		}
+		if err := auth.ValidateAuthority(callHdr.Authority); err != nil {
+			return nil, &NewStreamError{Err: status.Errorf(codes.Unavailable, "failed to validate authority %q : %v", callHdr.Authority, err)}
+		}
+		newCallHdr := *callHdr
+		newCallHdr.Host = callHdr.Authority
+		callHdr = &newCallHdr
+	}
+
 	headerFields, err := t.createHeaderFields(ctx, callHdr)
 	if err != nil {
 		return nil, &NewStreamError{Err: err, AllowTransparentRetry: false}
 	}
-	s := t.newStream(ctx, callHdr)
+	s := t.newStream(ctx, callHdr, handler)
 	cleanup := func(err error) {
 		if s.swapState(streamDone) == streamDone {
 			// If it was already done, return.
@@ -768,9 +806,8 @@
 			close(s.headerChan)
 		}
 	}
-	hdr := &headerFrame{
-		hf:        headerFields,
-		endStream: false,
+	hdr := &clientHeaders{
+		hf: headerFields,
 		initStream: func(uint32) error {
 			t.mu.Lock()
 			// TODO: handle transport closure in loopy instead and remove this
@@ -792,7 +829,7 @@
 			return nil
 		},
 		onOrphaned: cleanup,
-		wq:         s.wq,
+		wq:         &s.wq,
 	}
 	firstTry := true
 	var ch chan struct{}
@@ -823,7 +860,7 @@
 		transportDrainRequired = t.nextID > MaxStreamID
 
 		s.id = hdr.streamID
-		s.fc = &inFlow{limit: uint32(t.initialWindowSize)}
+		s.fc = inFlow{limit: uint32(t.initialWindowSize)}
 		t.activeStreams[s.id] = s
 		t.mu.Unlock()
 
@@ -842,11 +879,15 @@
 		}
 		var sz int64
 		for _, f := range hdr.hf {
-			if sz += int64(f.Size()); sz > int64(*t.maxSendHeaderListSize) {
+			sz += int64(f.Size())
+			if sz > int64(*t.maxSendHeaderListSize) {
 				hdrListSizeErr = status.Errorf(codes.Internal, "header list size to send violates the maximum size (%d bytes) set by server", *t.maxSendHeaderListSize)
 				return false
 			}
 		}
+		if !envconfig.Enable8KBDefaultHeaderListSize && sz > int64(upcomingDefaultHeaderListSize) {
+			t.logger.Warningf("Header list size to send (%d bytes) is larger than the upcoming default limit (%d bytes). In release v1.82.0, GRPC_GO_EXPERIMENTAL_ENABLE_8KB_DEFAULT_HEADER_LIST_SIZE will be enabled by default, enforcing this limit.", sz, upcomingDefaultHeaderListSize)
+		}
 		return true
 	}
 	for {
@@ -874,27 +915,23 @@
 			return nil, &NewStreamError{Err: ErrConnClosing, AllowTransparentRetry: true}
 		}
 	}
-	if len(t.statsHandlers) != 0 {
+	if s.statsHandler != nil {
 		header, ok := metadata.FromOutgoingContext(ctx)
 		if ok {
 			header.Set("user-agent", t.userAgent)
 		} else {
 			header = metadata.Pairs("user-agent", t.userAgent)
 		}
-		for _, sh := range t.statsHandlers {
-			// Note: The header fields are compressed with hpack after this call returns.
-			// No WireLength field is set here.
-			// Note: Creating a new stats object to prevent pollution.
-			outHeader := &stats.OutHeader{
-				Client:      true,
-				FullMethod:  callHdr.Method,
-				RemoteAddr:  t.remoteAddr,
-				LocalAddr:   t.localAddr,
-				Compression: callHdr.SendCompress,
-				Header:      header,
-			}
-			sh.HandleRPC(s.ctx, outHeader)
-		}
+		// Note: The header fields are compressed with hpack after this call returns.
+		// No WireLength field is set here.
+		s.statsHandler.HandleRPC(s.ctx, &stats.OutHeader{
+			Client:      true,
+			FullMethod:  callHdr.Method,
+			RemoteAddr:  t.remoteAddr,
+			LocalAddr:   t.localAddr,
+			Compression: callHdr.SendCompress,
+			Header:      header,
+		})
 	}
 	if transportDrainRequired {
 		if t.logger.V(logLevel) {
@@ -971,6 +1008,9 @@
 // accessed anymore.
 func (t *http2Client) Close(err error) {
 	t.conn.SetWriteDeadline(time.Now().Add(time.Second * 10))
+	// For background on the deadline value chosen here, see
+	// https://github.com/grpc/grpc-go/issues/8425#issuecomment-3057938248 .
+	t.conn.SetReadDeadline(time.Now().Add(time.Second))
 	t.mu.Lock()
 	// Make sure we only close once.
 	if t.state == closing {
@@ -983,7 +1023,7 @@
 	// Call t.onClose ASAP to prevent the client from attempting to create new
 	// streams.
 	if t.state != draining {
-		t.onClose(GoAwayInvalid)
+		t.onClose(GoAwayInfo{Reason: GoAwayInvalid, GoAwayCode: http2.ErrCodeNo, Err: err})
 	}
 	t.state = closing
 	streams := t.activeStreams
@@ -1032,11 +1072,10 @@
 	for _, s := range streams {
 		t.closeStream(s, err, false, http2.ErrCodeNo, st, nil, false)
 	}
-	for _, sh := range t.statsHandlers {
-		connEnd := &stats.ConnEnd{
+	if t.statsHandler != nil {
+		t.statsHandler.HandleConn(t.ctx, &stats.ConnEnd{
 			Client: true,
-		}
-		sh.HandleConn(t.ctx, connEnd)
+		})
 	}
 }
 
@@ -1055,7 +1094,7 @@
 	if t.logger.V(logLevel) {
 		t.logger.Infof("GracefulClose called")
 	}
-	t.onClose(GoAwayInvalid)
+	t.onClose(GoAwayInfo{Reason: GoAwayInvalid, GoAwayCode: http2.ErrCodeNo})
 	t.state = draining
 	active := len(t.activeStreams)
 	t.mu.Unlock()
@@ -1069,32 +1108,29 @@
 // Write formats the data into HTTP2 data frame(s) and sends it out. The caller
 // should proceed only if Write returns nil.
 func (t *http2Client) write(s *ClientStream, hdr []byte, data mem.BufferSlice, opts *WriteOptions) error {
-	reader := data.Reader()
-
 	if opts.Last {
 		// If it's the last message, update stream state.
 		if !s.compareAndSwapState(streamActive, streamWriteDone) {
-			_ = reader.Close()
 			return errStreamDone
 		}
 	} else if s.getState() != streamActive {
-		_ = reader.Close()
 		return errStreamDone
 	}
 	df := &dataFrame{
 		streamID:  s.id,
 		endStream: opts.Last,
 		h:         hdr,
-		reader:    reader,
+		data:      data,
 	}
-	if hdr != nil || df.reader.Remaining() != 0 { // If it's not an empty data frame, check quota.
-		if err := s.wq.get(int32(len(hdr) + df.reader.Remaining())); err != nil {
-			_ = reader.Close()
+	dataLen := data.Len()
+	if hdr != nil || dataLen != 0 { // If it's not an empty data frame, check quota.
+		if err := s.wq.get(int32(len(hdr) + dataLen)); err != nil {
 			return err
 		}
 	}
+	data.Ref()
 	if err := t.controlBuf.put(df); err != nil {
-		_ = reader.Close()
+		data.Free()
 		return err
 	}
 	t.incrMsgSent()
@@ -1150,7 +1186,7 @@
 	})
 }
 
-func (t *http2Client) handleData(f *http2.DataFrame) {
+func (t *http2Client) handleData(f *parsedDataFrame) {
 	size := f.Header().Length
 	var sendBDPPing bool
 	if t.bdpEst != nil {
@@ -1194,28 +1230,44 @@
 			t.closeStream(s, io.EOF, true, http2.ErrCodeFlowControl, status.New(codes.Internal, err.Error()), nil, false)
 			return
 		}
-		if f.Header().Flags.Has(http2.FlagDataPadded) {
-			if w := s.fc.onRead(size - uint32(len(f.Data()))); w > 0 {
-				t.controlBuf.put(&outgoingWindowUpdate{s.id, w})
+
+		if s.nonGRPCStatus != nil {
+			// The frame should be handled as a non-gRPC response body
+			st := s.handleNonGRPCData(f)
+			if st != nil {
+				t.closeStream(s, st.Err(), true, http2.ErrCodeProtocol, st, nil, true)
+				return
+			}
+			if w := s.fc.onRead(size); w > 0 {
+				t.controlBuf.put(&outgoingWindowUpdate{
+					streamID:  s.id,
+					increment: w,
+				})
 			}
+			return
 		}
-		// TODO(bradfitz, zhaoq): A copy is required here because there is no
-		// guarantee f.Data() is consumed before the arrival of next frame.
-		// Can this copy be eliminated?
-		if len(f.Data()) > 0 {
-			pool := t.bufferPool
-			if pool == nil {
-				// Note that this is only supposed to be nil in tests. Otherwise, stream is
-				// always initialized with a BufferPool.
-				pool = mem.DefaultBufferPool()
+
+		dataLen := f.data.Len()
+		if f.Header().Flags.Has(http2.FlagDataPadded) {
+			if w := s.fc.onRead(size - uint32(dataLen)); w > 0 {
+				t.controlBuf.put(&outgoingWindowUpdate{
+					streamID:  s.id,
+					increment: w,
+				})
 			}
-			s.write(recvMsg{buffer: mem.Copy(f.Data(), pool)})
+		}
+		if dataLen > 0 {
+			f.data.Ref()
+			s.write(recvMsg{buffer: f.data})
 		}
 	}
 	// The server has closed the stream without sending trailers.  Record that
 	// the read direction is closed, and set the status appropriately.
 	if f.StreamEnded() {
-		t.closeStream(s, io.EOF, false, http2.ErrCodeNo, status.New(codes.Internal, "server closed the stream without sending trailers"), nil, true)
+		// If client received END_STREAM from server while stream was still
+		// active, send RST_STREAM.
+		rstStream := s.getState() == streamActive
+		t.closeStream(s, io.EOF, rstStream, http2.ErrCodeNo, status.New(codes.Internal, "server closed the stream without sending trailers"), nil, true)
 	}
 }
 
@@ -1351,7 +1403,7 @@
 		// draining, to allow the client to stop attempting to create streams
 		// before disallowing new streams on this connection.
 		if t.state != draining {
-			t.onClose(t.goAwayReason)
+			t.onClose(GoAwayInfo{Reason: t.goAwayReason, GoAwayCode: t.goAwayCode})
 			t.state = draining
 		}
 	}
@@ -1401,6 +1453,7 @@
 	} else {
 		t.goAwayDebugMessage = fmt.Sprintf("code: %s, debug data: %q", f.ErrCode, string(f.DebugData()))
 	}
+	t.goAwayCode = f.ErrCode
 }
 
 func (t *http2Client) GetGoAwayReason() (GoAwayReason, string) {
@@ -1441,6 +1494,17 @@
 		return
 	}
 
+	// If we are collecting non-gRPC response data and receive a trailing
+	// HEADERS frame with END_STREAM, finalize the buffered data and close
+	// the stream.
+	if s.nonGRPCStatus != nil {
+		if endStream {
+			st := s.finalizeNonGRPCStatus()
+			t.closeStream(s, st.Err(), true, http2.ErrCodeProtocol, st, nil, true)
+		}
+		return
+	}
+
 	var (
 		// If a gRPC Response-Headers has already been received, then it means
 		// that the peer is speaking gRPC and we are in gRPC mode.
@@ -1449,17 +1513,14 @@
 		contentTypeErr = "malformed header: missing HTTP content-type"
 		grpcMessage    string
 		recvCompress   string
-		httpStatusCode *int
 		httpStatusErr  string
-		rawStatusCode  = codes.Unknown
+		// the code from the grpc-status header, if present
+		grpcStatusCode = codes.Unknown
 		// headerError is set if an error is encountered while parsing the headers
 		headerError string
+		httpStatus  string
 	)
 
-	if initialHeader {
-		httpStatusErr = "malformed header: missing HTTP status"
-	}
-
 	for _, hf := range frame.Fields {
 		switch hf.Name {
 		case "content-type":
@@ -1475,35 +1536,15 @@
 		case "grpc-status":
 			code, err := strconv.ParseInt(hf.Value, 10, 32)
 			if err != nil {
-				se := status.New(codes.Internal, fmt.Sprintf("transport: malformed grpc-status: %v", err))
+				se := status.New(codes.Unknown, fmt.Sprintf("transport: malformed grpc-status: %v", err))
 				t.closeStream(s, se.Err(), true, http2.ErrCodeProtocol, se, nil, endStream)
 				return
 			}
-			rawStatusCode = codes.Code(uint32(code))
+			grpcStatusCode = codes.Code(uint32(code))
 		case "grpc-message":
 			grpcMessage = decodeGrpcMessage(hf.Value)
 		case ":status":
-			if hf.Value == "200" {
-				httpStatusErr = ""
-				statusCode := 200
-				httpStatusCode = &statusCode
-				break
-			}
-
-			c, err := strconv.ParseInt(hf.Value, 10, 32)
-			if err != nil {
-				se := status.New(codes.Internal, fmt.Sprintf("transport: malformed http-status: %v", err))
-				t.closeStream(s, se.Err(), true, http2.ErrCodeProtocol, se, nil, endStream)
-				return
-			}
-			statusCode := int(c)
-			httpStatusCode = &statusCode
-
-			httpStatusErr = fmt.Sprintf(
-				"unexpected HTTP status code received from server: %d (%s)",
-				statusCode,
-				http.StatusText(statusCode),
-			)
+			httpStatus = hf.Value
 		default:
 			if isReservedHeader(hf.Name) && !isWhitelistedHeader(hf.Name) {
 				break
@@ -1518,26 +1559,58 @@
 		}
 	}
 
-	if !isGRPC || httpStatusErr != "" {
-		var code = codes.Internal // when header does not include HTTP status, return INTERNAL
-
-		if httpStatusCode != nil {
+	// If a non-gRPC response is received, then evaluate the HTTP status to
+	// process the response and close the stream.
+	// In case http status doesn't provide any error information (status : 200),
+	// then evalute response code to be Unknown.
+	if !isGRPC {
+		var grpcErrorCode = codes.Internal
+		if httpStatus == "" {
+			httpStatusErr = "malformed header: missing HTTP status"
+		} else {
+			// Parse the status codes (e.g. "200", 404").
+			statusCode, err := strconv.Atoi(httpStatus)
+			if err != nil {
+				se := status.New(grpcErrorCode, fmt.Sprintf("transport: malformed http-status: %v", err))
+				t.closeStream(s, se.Err(), true, http2.ErrCodeProtocol, se, nil, endStream)
+				return
+			}
+			if statusCode >= 100 && statusCode < 200 {
+				if endStream {
+					se := status.New(codes.Internal, fmt.Sprintf(
+						"protocol error: informational header with status code %d must not have END_STREAM set", statusCode))
+					t.closeStream(s, se.Err(), true, http2.ErrCodeProtocol, se, nil, endStream)
+				}
+				// In case of informational headers, return.
+				return
+			}
+			httpStatusErr = fmt.Sprintf(
+				"unexpected HTTP status code received from server: %d (%s)",
+				statusCode,
+				http.StatusText(statusCode),
+			)
 			var ok bool
-			code, ok = HTTPStatusConvTab[*httpStatusCode]
+			grpcErrorCode, ok = HTTPStatusConvTab[statusCode]
 			if !ok {
-				code = codes.Unknown
+				grpcErrorCode = codes.Unknown
 			}
 		}
 		var errs []string
 		if httpStatusErr != "" {
 			errs = append(errs, httpStatusErr)
 		}
+
 		if contentTypeErr != "" {
 			errs = append(errs, contentTypeErr)
 		}
-		// Verify the HTTP response is a 200.
-		se := status.New(code, strings.Join(errs, "; "))
-		t.closeStream(s, se.Err(), true, http2.ErrCodeProtocol, se, nil, endStream)
+
+		se := status.New(grpcErrorCode, strings.Join(errs, "; "))
+		if endStream {
+			t.closeStream(s, se.Err(), true, http2.ErrCodeProtocol, se, nil, true)
+			return
+		}
+
+		s.startNonGRPCDataCollection(se)
 		return
 	}
 
@@ -1567,22 +1640,20 @@
 		}
 	}
 
-	for _, sh := range t.statsHandlers {
+	if s.statsHandler != nil {
 		if !endStream {
-			inHeader := &stats.InHeader{
+			s.statsHandler.HandleRPC(s.ctx, &stats.InHeader{
 				Client:      true,
 				WireLength:  int(frame.Header().Length),
 				Header:      metadata.MD(mdata).Copy(),
 				Compression: s.recvCompress,
-			}
-			sh.HandleRPC(s.ctx, inHeader)
+			})
 		} else {
-			inTrailer := &stats.InTrailer{
+			s.statsHandler.HandleRPC(s.ctx, &stats.InTrailer{
 				Client:     true,
 				WireLength: int(frame.Header().Length),
 				Trailer:    metadata.MD(mdata).Copy(),
-			}
-			sh.HandleRPC(s.ctx, inTrailer)
+			})
 		}
 	}
 
@@ -1590,7 +1661,7 @@
 		return
 	}
 
-	status := istatus.NewWithProto(rawStatusCode, grpcMessage, mdata[grpcStatusDetailsBinHeader])
+	status := istatus.NewWithProto(grpcStatusCode, grpcMessage, mdata[grpcStatusDetailsBinHeader])
 
 	// If client received END_STREAM from server while stream was still active,
 	// send RST_STREAM.
@@ -1637,7 +1708,7 @@
 	// loop to keep reading incoming messages on this transport.
 	for {
 		t.controlBuf.throttle()
-		frame, err := t.framer.fr.ReadFrame()
+		frame, err := t.framer.readFrame()
 		if t.keepaliveEnabled {
 			atomic.StoreInt64(&t.lastRead, time.Now().UnixNano())
 		}
@@ -1652,7 +1723,7 @@
 				if s != nil {
 					// use error detail to provide better err message
 					code := http2ErrConvTab[se.Code]
-					errorDetail := t.framer.fr.ErrorDetail()
+					errorDetail := t.framer.errorDetail()
 					var msg string
 					if errorDetail != nil {
 						msg = errorDetail.Error()
@@ -1670,8 +1741,9 @@
 		switch frame := frame.(type) {
 		case *http2.MetaHeadersFrame:
 			t.operateHeaders(frame)
-		case *http2.DataFrame:
+		case *parsedDataFrame:
 			t.handleData(frame)
+			frame.data.Free()
 		case *http2.RSTStreamFrame:
 			t.handleRSTStream(frame)
 		case *http2.SettingsFrame:
@@ -1791,8 +1863,6 @@
 	}
 }
 
-func (t *http2Client) RemoteAddr() net.Addr { return t.remoteAddr }
-
 func (t *http2Client) incrMsgSent() {
 	if channelz.IsOn() {
 		t.channelz.SocketMetrics.MessagesSent.Add(1)
@@ -1811,7 +1881,7 @@
 	resp := make(chan uint32, 1)
 	timer := time.NewTimer(time.Second)
 	defer timer.Stop()
-	t.controlBuf.put(&outFlowControlSizeRequest{resp})
+	t.controlBuf.put(&outFlowControlSizeRequest{resp: resp})
 	select {
 	case sz := <-resp:
 		return int64(sz)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/http2_server.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/http2_server.go
--- a/vendor/google.golang.org/grpc/internal/transport/http2_server.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/http2_server.go	2026-09-02 10:25:23.889027764 +0000
@@ -35,13 +35,17 @@
 
 	"golang.org/x/net/http2"
 	"golang.org/x/net/http2/hpack"
+	"google.golang.org/protobuf/proto"
+
 	"google.golang.org/grpc/internal"
+	"google.golang.org/grpc/internal/envconfig"
 	"google.golang.org/grpc/internal/grpclog"
 	"google.golang.org/grpc/internal/grpcutil"
 	"google.golang.org/grpc/internal/pretty"
+	istatus "google.golang.org/grpc/internal/status"
 	"google.golang.org/grpc/internal/syscall"
+	transportinternal "google.golang.org/grpc/internal/transport/internal"
 	"google.golang.org/grpc/mem"
-	"google.golang.org/protobuf/proto"
 
 	"google.golang.org/grpc/codes"
 	"google.golang.org/grpc/credentials"
@@ -85,7 +89,7 @@
 	// updates, reset streams, and various settings) to the controller.
 	controlBuf *controlBuffer
 	fc         *trInFlow
-	stats      []stats.Handler
+	stats      stats.Handler
 	// Keepalive and max-age parameters for the server.
 	kp keepalive.ServerParameters
 	// Keepalive enforcement policy.
@@ -131,6 +135,10 @@
 	maxStreamID uint32 // max stream ID ever seen
 
 	logger *grpclog.PrefixLogger
+	// setResetPingStrikes is stored as a closure instead of making this a
+	// method on http2Server to avoid a heap allocation when converting a method
+	// to a closure for passing to frames objects.
+	setResetPingStrikes func()
 }
 
 // NewServerTransport creates a http2 transport with conn and configuration
@@ -159,11 +167,17 @@
 	}
 	writeBufSize := config.WriteBufferSize
 	readBufSize := config.ReadBufferSize
+	// The default header list size is moving from 16MB to 8KB. The 8KB limit
+	// is only used if Enable8KBDefaultHeaderListSize is true; otherwise, the
+	// old 16MB default is used. User-specified options always take precedence.
 	maxHeaderListSize := defaultServerMaxHeaderListSize
+	if envconfig.Enable8KBDefaultHeaderListSize {
+		maxHeaderListSize = upcomingDefaultHeaderListSize
+	}
 	if config.MaxHeaderListSize != nil {
 		maxHeaderListSize = *config.MaxHeaderListSize
 	}
-	framer := newFramer(conn, writeBufSize, readBufSize, config.SharedWriteBuffer, maxHeaderListSize)
+	framer := newFramer(conn, writeBufSize, readBufSize, config.SharedWriteBuffer, maxHeaderListSize, config.BufferPool)
 	// Send initial settings as connection preface to client.
 	isettings := []http2.Setting{{
 		ID:  http2.SettingMaxFrameSize,
@@ -175,16 +189,13 @@
 			Val: config.MaxStreams,
 		})
 	}
-	dynamicWindow := true
 	iwz := int32(initialWindowSize)
 	if config.InitialWindowSize >= defaultWindowSize {
 		iwz = config.InitialWindowSize
-		dynamicWindow = false
 	}
 	icwz := int32(initialWindowSize)
 	if config.InitialConnWindowSize >= defaultWindowSize {
 		icwz = config.InitialConnWindowSize
-		dynamicWindow = false
 	}
 	if iwz != defaultWindowSize {
 		isettings = append(isettings, http2.Setting{
@@ -258,13 +269,16 @@
 		fc:                &trInFlow{limit: uint32(icwz)},
 		state:             reachable,
 		activeStreams:     make(map[uint32]*ServerStream),
-		stats:             config.StatsHandlers,
+		stats:             config.StatsHandler,
 		kp:                kp,
 		idle:              time.Now(),
 		kep:               kep,
 		initialWindowSize: iwz,
 		bufferPool:        config.BufferPool,
 	}
+	t.setResetPingStrikes = func() {
+		atomic.StoreUint32(&t.resetPingStrikes, 1)
+	}
 	var czSecurity credentials.ChannelzSecurityValue
 	if au, ok := authInfo.(credentials.ChannelzSecurityInfo); ok {
 		czSecurity = au.GetSecurityValue()
@@ -284,7 +298,7 @@
 	t.logger = prefixLoggerForServerTransport(t)
 
 	t.controlBuf = newControlBuffer(t.done)
-	if dynamicWindow {
+	if !config.StaticWindowSize {
 		t.bdpEst = &bdpEstimator{
 			bdp:               initialWindowSize,
 			updateFlowControl: t.updateFlowControl,
@@ -385,16 +399,15 @@
 	}
 	t.maxStreamID = streamID
 
-	buf := newRecvBuffer()
 	s := &ServerStream{
-		Stream: &Stream{
-			id:  streamID,
-			buf: buf,
-			fc:  &inFlow{limit: uint32(t.initialWindowSize)},
+		Stream: Stream{
+			id: streamID,
+			fc: inFlow{limit: uint32(t.initialWindowSize)},
 		},
 		st:               t,
 		headerWireLength: int(frame.Header().Length),
 	}
+	s.Stream.buf.init()
 	var (
 		// if false, content-type was missing or invalid
 		isGRPC      = false
@@ -474,13 +487,7 @@
 		if t.logger.V(logLevel) {
 			t.logger.Infof("Aborting the stream early: %v", errMsg)
 		}
-		t.controlBuf.put(&earlyAbortStream{
-			httpStatus:     http.StatusBadRequest,
-			streamID:       streamID,
-			contentSubtype: s.contentSubtype,
-			status:         status.New(codes.Internal, errMsg),
-			rst:            !frame.StreamEnded(),
-		})
+		t.writeEarlyAbort(streamID, s.contentSubtype, status.New(codes.Internal, errMsg), http.StatusBadRequest, !frame.StreamEnded())
 		return nil
 	}
 
@@ -494,23 +501,11 @@
 		return nil
 	}
 	if !isGRPC {
-		t.controlBuf.put(&earlyAbortStream{
-			httpStatus:     http.StatusUnsupportedMediaType,
-			streamID:       streamID,
-			contentSubtype: s.contentSubtype,
-			status:         status.Newf(codes.InvalidArgument, "invalid gRPC request content-type %q", contentType),
-			rst:            !frame.StreamEnded(),
-		})
+		t.writeEarlyAbort(streamID, s.contentSubtype, status.Newf(codes.InvalidArgument, "invalid gRPC request content-type %q", contentType), http.StatusUnsupportedMediaType, !frame.StreamEnded())
 		return nil
 	}
 	if headerError != nil {
-		t.controlBuf.put(&earlyAbortStream{
-			httpStatus:     http.StatusBadRequest,
-			streamID:       streamID,
-			contentSubtype: s.contentSubtype,
-			status:         headerError,
-			rst:            !frame.StreamEnded(),
-		})
+		t.writeEarlyAbort(streamID, s.contentSubtype, headerError, http.StatusBadRequest, !frame.StreamEnded())
 		return nil
 	}
 
@@ -564,13 +559,7 @@
 		if t.logger.V(logLevel) {
 			t.logger.Infof("Aborting the stream early: %v", errMsg)
 		}
-		t.controlBuf.put(&earlyAbortStream{
-			httpStatus:     http.StatusMethodNotAllowed,
-			streamID:       streamID,
-			contentSubtype: s.contentSubtype,
-			status:         status.New(codes.Internal, errMsg),
-			rst:            !frame.StreamEnded(),
-		})
+		t.writeEarlyAbort(streamID, s.contentSubtype, status.New(codes.Internal, errMsg), http.StatusMethodNotAllowed, !frame.StreamEnded())
 		s.cancel()
 		return nil
 	}
@@ -585,20 +574,24 @@
 			if !ok {
 				stat = status.New(codes.PermissionDenied, err.Error())
 			}
-			t.controlBuf.put(&earlyAbortStream{
-				httpStatus:     http.StatusOK,
-				streamID:       s.id,
-				contentSubtype: s.contentSubtype,
-				status:         stat,
-				rst:            !frame.StreamEnded(),
-			})
+			t.writeEarlyAbort(s.id, s.contentSubtype, stat, http.StatusOK, !frame.StreamEnded())
 			return nil
 		}
 	}
+
+	if s.ctx.Err() != nil {
+		t.mu.Unlock()
+		st := status.New(codes.DeadlineExceeded, context.DeadlineExceeded.Error())
+		// Early abort in case the timeout was zero or so low it already fired.
+		t.writeEarlyAbort(s.id, s.contentSubtype, st, http.StatusOK, !frame.StreamEnded())
+		return nil
+	}
+
 	t.activeStreams[streamID] = s
 	if len(t.activeStreams) == 1 {
 		t.idle = time.Time{}
 	}
+
 	// Start a timer to close the stream on reaching the deadline.
 	if timeoutSet {
 		// We need to wait for s.cancel to be updated before calling
@@ -620,25 +613,21 @@
 		t.channelz.SocketMetrics.StreamsStarted.Add(1)
 		t.channelz.SocketMetrics.LastRemoteStreamCreatedTimestamp.Store(time.Now().UnixNano())
 	}
-	s.requestRead = func(n int) {
-		t.adjustWindow(s, uint32(n))
-	}
+	s.readRequester = s
 	s.ctxDone = s.ctx.Done()
-	s.wq = newWriteQuota(defaultWriteQuota, s.ctxDone)
-	s.trReader = &transportReader{
-		reader: &recvBufferReader{
+	s.Stream.wq.init(defaultWriteQuota, s.ctxDone)
+	s.trReader = transportReader{
+		reader: recvBufferReader{
 			ctx:     s.ctx,
 			ctxDone: s.ctxDone,
-			recv:    s.buf,
-		},
-		windowHandler: func(n int) {
-			t.updateWindow(s, uint32(n))
+			recv:    &s.buf,
 		},
+		windowHandler: s,
 	}
 	// Register the stream with loopy.
 	t.controlBuf.put(&registerStream{
 		streamID: s.id,
-		wq:       s.wq,
+		wq:       &s.wq,
 	})
 	handle(s)
 	return nil
@@ -654,7 +643,7 @@
 	}()
 	for {
 		t.controlBuf.throttle()
-		frame, err := t.framer.fr.ReadFrame()
+		frame, err := t.framer.readFrame()
 		atomic.StoreInt64(&t.lastRead, time.Now().UnixNano())
 		if err != nil {
 			if se, ok := err.(http2.StreamError); ok {
@@ -691,8 +680,9 @@
 				})
 				continue
 			}
-		case *http2.DataFrame:
+		case *parsedDataFrame:
 			t.handleData(frame)
+			frame.data.Free()
 		case *http2.RSTStreamFrame:
 			t.handleRSTStream(frame)
 		case *http2.SettingsFrame:
@@ -772,7 +762,7 @@
 
 }
 
-func (t *http2Server) handleData(f *http2.DataFrame) {
+func (t *http2Server) handleData(f *parsedDataFrame) {
 	size := f.Header().Length
 	var sendBDPPing bool
 	if t.bdpEst != nil {
@@ -817,22 +807,18 @@
 			t.closeStream(s, true, http2.ErrCodeFlowControl, false)
 			return
 		}
+		dataLen := f.data.Len()
 		if f.Header().Flags.Has(http2.FlagDataPadded) {
-			if w := s.fc.onRead(size - uint32(len(f.Data()))); w > 0 {
-				t.controlBuf.put(&outgoingWindowUpdate{s.id, w})
+			if w := s.fc.onRead(size - uint32(dataLen)); w > 0 {
+				t.controlBuf.put(&outgoingWindowUpdate{
+					streamID:  s.id,
+					increment: w,
+				})
 			}
 		}
-		// TODO(bradfitz, zhaoq): A copy is required here because there is no
-		// guarantee f.Data() is consumed before the arrival of next frame.
-		// Can this copy be eliminated?
-		if len(f.Data()) > 0 {
-			pool := t.bufferPool
-			if pool == nil {
-				// Note that this is only supposed to be nil in tests. Otherwise, stream is
-				// always initialized with a BufferPool.
-				pool = mem.DefaultBufferPool()
-			}
-			s.write(recvMsg{buffer: mem.Copy(f.Data(), pool)})
+		if dataLen > 0 {
+			f.data.Ref()
+			s.write(recvMsg{buffer: f.data})
 		}
 	}
 	if f.StreamEnded() {
@@ -959,23 +945,62 @@
 	return headerFields
 }
 
-func (t *http2Server) checkForHeaderListSize(it any) bool {
+func (t *http2Server) checkForHeaderListSize(hf []hpack.HeaderField) bool {
 	if t.maxSendHeaderListSize == nil {
 		return true
 	}
-	hdrFrame := it.(*headerFrame)
 	var sz int64
-	for _, f := range hdrFrame.hf {
-		if sz += int64(f.Size()); sz > int64(*t.maxSendHeaderListSize) {
+	for _, f := range hf {
+		sz += int64(f.Size())
+		if sz > int64(*t.maxSendHeaderListSize) {
 			if t.logger.V(logLevel) {
 				t.logger.Infof("Header list size to send violates the maximum size (%d bytes) set by client", *t.maxSendHeaderListSize)
 			}
 			return false
 		}
 	}
+	if !envconfig.Enable8KBDefaultHeaderListSize && sz > int64(upcomingDefaultHeaderListSize) {
+		t.logger.Warningf("Header list size to send (%d bytes) is larger than the upcoming default limit (%d bytes). In release v1.82.0, GRPC_GO_EXPERIMENTAL_ENABLE_8KB_DEFAULT_HEADER_LIST_SIZE will be enabled by default, enforcing this limit.", sz, upcomingDefaultHeaderListSize)
+	}
 	return true
 }
 
+// writeEarlyAbort sends an early abort response with the given HTTP status and
+// gRPC status. If the header list size exceeds the peer's limit, it sends a
+// RST_STREAM instead.
+func (t *http2Server) writeEarlyAbort(streamID uint32, contentSubtype string, stat *status.Status, httpStatus uint32, rst bool) {
+	hf := []hpack.HeaderField{
+		{Name: ":status", Value: strconv.Itoa(int(httpStatus))},
+		{Name: "content-type", Value: grpcutil.ContentType(contentSubtype)},
+		{Name: "grpc-status", Value: strconv.Itoa(int(stat.Code()))},
+		{Name: "grpc-message", Value: encodeGrpcMessage(stat.Message())},
+	}
+	if p := istatus.RawStatusProto(stat); len(p.GetDetails()) > 0 {
+		stBytes, err := proto.Marshal(p)
+		if err != nil {
+			t.logger.Errorf("Failed to marshal rpc status: %s, error: %v", pretty.ToJSON(p), err)
+		}
+		if err == nil {
+			hf = append(hf, hpack.HeaderField{Name: grpcStatusDetailsBinHeader, Value: encodeBinHeader(stBytes)})
+		}
+	}
+	success, _ := t.controlBuf.executeAndPut(func() bool {
+		return t.checkForHeaderListSize(hf)
+	}, &earlyAbortStream{
+		streamID: streamID,
+		rst:      rst,
+		hf:       hf,
+	})
+	if !success {
+		t.controlBuf.put(&cleanupStream{
+			streamID: streamID,
+			rst:      true,
+			rstCode:  http2.ErrCodeInternal,
+			onWrite:  func() {},
+		})
+	}
+}
+
 func (t *http2Server) streamContextErr(s *ServerStream) error {
 	select {
 	case <-t.done:
@@ -1015,10 +1040,6 @@
 	return nil
 }
 
-func (t *http2Server) setResetPingStrikes() {
-	atomic.StoreUint32(&t.resetPingStrikes, 1)
-}
-
 func (t *http2Server) writeHeaderLocked(s *ServerStream) error {
 	// TODO(mmukhi): Benchmark if the performance gets better if count the metadata and other header fields
 	// first and create a slice of that exact size.
@@ -1029,13 +1050,13 @@
 		headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-encoding", Value: s.sendCompress})
 	}
 	headerFields = appendHeaderFieldsFromMD(headerFields, s.header)
-	hf := &headerFrame{
+	hf := &serverHeaders{
 		streamID:  s.id,
 		hf:        headerFields,
 		endStream: false,
 		onWrite:   t.setResetPingStrikes,
 	}
-	success, err := t.controlBuf.executeAndPut(func() bool { return t.checkForHeaderListSize(hf) }, hf)
+	success, err := t.controlBuf.executeAndPut(func() bool { return t.checkForHeaderListSize(hf.hf) }, hf)
 	if !success {
 		if err != nil {
 			return err
@@ -1043,19 +1064,18 @@
 		t.closeStream(s, true, http2.ErrCodeInternal, false)
 		return ErrHeaderListSizeLimitViolation
 	}
-	for _, sh := range t.stats {
+	if t.stats != nil {
 		// Note: Headers are compressed with hpack after this call returns.
 		// No WireLength field is set here.
-		outHeader := &stats.OutHeader{
+		t.stats.HandleRPC(s.Context(), &stats.OutHeader{
 			Header:      s.header.Copy(),
 			Compression: s.sendCompress,
-		}
-		sh.HandleRPC(s.Context(), outHeader)
+		})
 	}
 	return nil
 }
 
-// WriteStatus sends stream status to the client and terminates the stream.
+// writeStatus sends stream status to the client and terminates the stream.
 // There is no further I/O operations being able to perform on this stream.
 // TODO(zhaoq): Now it indicates the end of entire stream. Revisit if early
 // OK is adopted.
@@ -1083,7 +1103,7 @@
 	headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-status", Value: strconv.Itoa(int(st.Code()))})
 	headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-message", Value: encodeGrpcMessage(st.Message())})
 
-	if p := st.Proto(); p != nil && len(p.Details) > 0 {
+	if p := istatus.RawStatusProto(st); len(p.GetDetails()) > 0 {
 		// Do not use the user's grpc-status-details-bin (if present) if we are
 		// even attempting to set our own.
 		delete(s.trailer, grpcStatusDetailsBinHeader)
@@ -1098,7 +1118,7 @@
 
 	// Attach the trailer metadata.
 	headerFields = appendHeaderFieldsFromMD(headerFields, s.trailer)
-	trailingHeader := &headerFrame{
+	trailingHeader := &serverHeaders{
 		streamID:  s.id,
 		hf:        headerFields,
 		endStream: true,
@@ -1106,7 +1126,7 @@
 	}
 
 	success, err := t.controlBuf.executeAndPut(func() bool {
-		return t.checkForHeaderListSize(trailingHeader)
+		return t.checkForHeaderListSize(trailingHeader.hf)
 	}, nil)
 	if !success {
 		if err != nil {
@@ -1118,10 +1138,10 @@
 	// Send a RST_STREAM after the trailers if the client has not already half-closed.
 	rst := s.getState() == streamActive
 	t.finishStream(s, rst, http2.ErrCodeNo, trailingHeader, true)
-	for _, sh := range t.stats {
+	if t.stats != nil {
 		// Note: The trailer fields are compressed with hpack after this call returns.
 		// No WireLength field is set here.
-		sh.HandleRPC(s.Context(), &stats.OutTrailer{
+		t.stats.HandleRPC(s.Context(), &stats.OutTrailer{
 			Trailer: s.trailer.Copy(),
 		})
 	}
@@ -1131,17 +1151,13 @@
 // Write converts the data into HTTP2 data frame and sends it out. Non-nil error
 // is returns if it fails (e.g., framing error, transport error).
 func (t *http2Server) write(s *ServerStream, hdr []byte, data mem.BufferSlice, _ *WriteOptions) error {
-	reader := data.Reader()
-
 	if !s.isHeaderSent() { // Headers haven't been written yet.
 		if err := t.writeHeader(s, nil); err != nil {
-			_ = reader.Close()
 			return err
 		}
 	} else {
 		// Writing headers checks for this condition.
 		if s.getState() == streamDone {
-			_ = reader.Close()
 			return t.streamContextErr(s)
 		}
 	}
@@ -1149,15 +1165,16 @@
 	df := &dataFrame{
 		streamID:    s.id,
 		h:           hdr,
-		reader:      reader,
+		data:        data,
 		onEachWrite: t.setResetPingStrikes,
 	}
-	if err := s.wq.get(int32(len(hdr) + df.reader.Remaining())); err != nil {
-		_ = reader.Close()
+	dataLen := data.Len()
+	if err := s.wq.get(int32(len(hdr) + dataLen)); err != nil {
 		return t.streamContextErr(s)
 	}
+	data.Ref()
 	if err := t.controlBuf.put(df); err != nil {
-		_ = reader.Close()
+		data.Free()
 		return err
 	}
 	t.incrMsgSent()
@@ -1292,7 +1309,8 @@
 // deleteStream deletes the stream s from transport's active streams.
 func (t *http2Server) deleteStream(s *ServerStream, eosReceived bool) {
 	t.mu.Lock()
-	if _, ok := t.activeStreams[s.id]; ok {
+	_, isActive := t.activeStreams[s.id]
+	if isActive {
 		delete(t.activeStreams, s.id)
 		if len(t.activeStreams) == 0 {
 			t.idle = time.Now()
@@ -1300,7 +1318,7 @@
 	}
 	t.mu.Unlock()
 
-	if channelz.IsOn() {
+	if isActive && channelz.IsOn() {
 		if eosReceived {
 			t.channelz.SocketMetrics.StreamsSucceeded.Add(1)
 		} else {
@@ -1310,7 +1328,7 @@
 }
 
 // finishStream closes the stream and puts the trailing headerFrame into controlbuf.
-func (t *http2Server) finishStream(s *ServerStream, rst bool, rstCode http2.ErrCode, hdr *headerFrame, eosReceived bool) {
+func (t *http2Server) finishStream(s *ServerStream, rst bool, rstCode http2.ErrCode, hdr *serverHeaders, eosReceived bool) {
 	// In case stream sending and receiving are invoked in separate
 	// goroutines (e.g., bi-directional streaming), cancel needs to be
 	// called to interrupt the potential blocking on other goroutines.
@@ -1340,10 +1358,10 @@
 	// called to interrupt the potential blocking on other goroutines.
 	s.cancel()
 
-	oldState := s.swapState(streamDone)
-	if oldState == streamDone {
-		return
-	}
+	// We can't return early even if the stream's state is "done" as the state
+	// might have been set by the `finishStream` method. Deleting the stream via
+	// `finishStream` can get blocked on flow control.
+	s.swapState(streamDone)
 	t.deleteStream(s, eosReceived)
 
 	t.controlBuf.put(&cleanupStream{
@@ -1434,14 +1452,14 @@
 func (t *http2Server) incrMsgSent() {
 	if channelz.IsOn() {
 		t.channelz.SocketMetrics.MessagesSent.Add(1)
-		t.channelz.SocketMetrics.LastMessageSentTimestamp.Add(1)
+		t.channelz.SocketMetrics.LastMessageSentTimestamp.Store(transportinternal.TimeNowFunc())
 	}
 }
 
 func (t *http2Server) incrMsgRecv() {
 	if channelz.IsOn() {
 		t.channelz.SocketMetrics.MessagesReceived.Add(1)
-		t.channelz.SocketMetrics.LastMessageReceivedTimestamp.Add(1)
+		t.channelz.SocketMetrics.LastMessageReceivedTimestamp.Store(transportinternal.TimeNowFunc())
 	}
 }
 
@@ -1449,7 +1467,7 @@
 	resp := make(chan uint32, 1)
 	timer := time.NewTimer(time.Second)
 	defer timer.Stop()
-	t.controlBuf.put(&outFlowControlSizeRequest{resp})
+	t.controlBuf.put(&outFlowControlSizeRequest{resp: resp})
 	select {
 	case sz := <-resp:
 		return int64(sz)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/http_util.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/http_util.go
--- a/vendor/google.golang.org/grpc/internal/transport/http_util.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/http_util.go	2026-09-02 10:25:23.889027764 +0000
@@ -25,7 +25,6 @@
 	"fmt"
 	"io"
 	"math"
-	"net"
 	"net/http"
 	"net/url"
 	"strconv"
@@ -37,6 +36,10 @@
 	"golang.org/x/net/http2"
 	"golang.org/x/net/http2/hpack"
 	"google.golang.org/grpc/codes"
+	"google.golang.org/grpc/internal/envconfig"
+	imem "google.golang.org/grpc/internal/mem"
+	"google.golang.org/grpc/internal/transport/readyreader"
+	"google.golang.org/grpc/mem"
 )
 
 const (
@@ -196,11 +199,11 @@
 	if !ok {
 		return 0, fmt.Errorf("transport: timeout unit is not recognized: %q", s)
 	}
-	t, err := strconv.ParseInt(s[:size-1], 10, 64)
+	t, err := strconv.ParseUint(s[:size-1], 10, 64)
 	if err != nil {
 		return 0, err
 	}
-	const maxHours = math.MaxInt64 / int64(time.Hour)
+	const maxHours = math.MaxInt64 / uint64(time.Hour)
 	if d == time.Hour && t > maxHours {
 		// This timeout would overflow math.MaxInt64; clamp it.
 		return time.Duration(math.MaxInt64), nil
@@ -296,15 +299,15 @@
 }
 
 type bufWriter struct {
-	pool      *sync.Pool
+	pool      *imem.SimpleBufferPool
 	buf       []byte
 	offset    int
 	batchSize int
-	conn      net.Conn
+	conn      io.Writer
 	err       error
 }
 
-func newBufWriter(conn net.Conn, batchSize int, pool *sync.Pool) *bufWriter {
+func newBufWriter(conn io.Writer, batchSize int, pool *imem.SimpleBufferPool) *bufWriter {
 	w := &bufWriter{
 		batchSize: batchSize,
 		conn:      conn,
@@ -326,7 +329,7 @@
 		return n, toIOError(err)
 	}
 	if w.buf == nil {
-		b := w.pool.Get().(*[]byte)
+		b := w.pool.Get(w.batchSize)
 		w.buf = *b
 	}
 	written := 0
@@ -388,30 +391,56 @@
 	return ioError{error: err}
 }
 
-type framer struct {
-	writer *bufWriter
-	fr     *http2.Framer
+type parsedDataFrame struct {
+	http2.FrameHeader
+	data mem.Buffer
 }
 
-var writeBufferPoolMap = make(map[int]*sync.Pool)
-var writeBufferMutex sync.Mutex
+func (df *parsedDataFrame) StreamEnded() bool {
+	return df.FrameHeader.Flags.Has(http2.FlagDataEndStream)
+}
 
-func newFramer(conn net.Conn, writeBufferSize, readBufferSize int, sharedWriteBuffer bool, maxHeaderListSize uint32) *framer {
+type framer struct {
+	writer    *bufWriter
+	fr        *http2.Framer
+	headerBuf []byte // cached slice for framer headers to reduce heap allocs.
+	reader    io.Reader
+	dataFrame parsedDataFrame // Cached data frame to avoid heap allocations.
+	pool      mem.BufferPool
+	errDetail error
+}
+
+var ioBufferPoolMap = make(map[int]*imem.SimpleBufferPool)
+var ioBufferMutex sync.Mutex
+
+func bufferedReader(r io.Reader, bufSize int) io.Reader {
+	if bufSize <= 0 {
+		return r
+	}
+	if envconfig.EnableHTTPFramerReadBufferPooling {
+		if rr := readyreader.NewNonBlocking(r); rr != nil {
+			readPool := ioBufferPool(bufSize)
+			return readyreader.NewBuffered(rr, bufSize, readPool)
+		}
+	}
+	return bufio.NewReaderSize(r, bufSize)
+}
+
+func newFramer(conn io.ReadWriter, writeBufferSize, readBufferSize int, sharedWriteBuffer bool, maxHeaderListSize uint32, memPool mem.BufferPool) *framer {
 	if writeBufferSize < 0 {
 		writeBufferSize = 0
 	}
-	var r io.Reader = conn
-	if readBufferSize > 0 {
-		r = bufio.NewReaderSize(r, readBufferSize)
-	}
-	var pool *sync.Pool
+	r := bufferedReader(conn, readBufferSize)
+	var writePool *imem.SimpleBufferPool
 	if sharedWriteBuffer {
-		pool = getWriteBufferPool(writeBufferSize)
+		writePool = ioBufferPool(writeBufferSize)
 	}
-	w := newBufWriter(conn, writeBufferSize, pool)
+	w := newBufWriter(conn, writeBufferSize, writePool)
 	f := &framer{
 		writer: w,
 		fr:     http2.NewFramer(w, r),
+		reader: r,
+		pool:   memPool,
 	}
 	f.fr.SetMaxReadFrameSize(http2MaxFrameLen)
 	// Opt-in to Frame reuse API on framer to reduce garbage.
@@ -422,20 +451,155 @@
 	return f
 }
 
-func getWriteBufferPool(size int) *sync.Pool {
-	writeBufferMutex.Lock()
-	defer writeBufferMutex.Unlock()
-	pool, ok := writeBufferPoolMap[size]
+// writeData writes a DATA frame.
+//
+// It is the caller's responsibility not to violate the maximum frame size.
+func (f *framer) writeData(streamID uint32, endStream bool, data [][]byte) error {
+	var flags http2.Flags
+	if endStream {
+		flags = http2.FlagDataEndStream
+	}
+	length := uint32(0)
+	for _, d := range data {
+		length += uint32(len(d))
+	}
+	// TODO: Replace the header write with the framer API being added in
+	// https://github.com/golang/go/issues/66655.
+	f.headerBuf = append(f.headerBuf[:0],
+		byte(length>>16),
+		byte(length>>8),
+		byte(length),
+		byte(http2.FrameData),
+		byte(flags),
+		byte(streamID>>24),
+		byte(streamID>>16),
+		byte(streamID>>8),
+		byte(streamID))
+	if _, err := f.writer.Write(f.headerBuf); err != nil {
+		return err
+	}
+	for _, d := range data {
+		if _, err := f.writer.Write(d); err != nil {
+			return err
+		}
+	}
+	return nil
+}
+
+// readFrame reads a single frame. The returned Frame is only valid
+// until the next call to readFrame.
+func (f *framer) readFrame() (any, error) {
+	f.errDetail = nil
+	fh, err := f.fr.ReadFrameHeader()
+	if err != nil {
+		f.errDetail = f.fr.ErrorDetail()
+		return nil, err
+	}
+	// Read the data frame directly from the underlying io.Reader to avoid
+	// copies.
+	if fh.Type == http2.FrameData {
+		err = f.readDataFrame(fh)
+		return &f.dataFrame, err
+	}
+	fr, err := f.fr.ReadFrameForHeader(fh)
+	if err != nil {
+		f.errDetail = f.fr.ErrorDetail()
+		return nil, err
+	}
+	return fr, err
+}
+
+// errorDetail returns a more detailed error of the last error
+// returned by framer.readFrame. For instance, if readFrame
+// returns a StreamError with code PROTOCOL_ERROR, errorDetail
+// will say exactly what was invalid. errorDetail is not guaranteed
+// to return a non-nil value.
+// errorDetail is reset after the next call to readFrame.
+func (f *framer) errorDetail() error {
+	return f.errDetail
+}
+
+func (f *framer) readDataFrame(fh http2.FrameHeader) (err error) {
+	if fh.StreamID == 0 {
+		// DATA frames MUST be associated with a stream. If a
+		// DATA frame is received whose stream identifier
+		// field is 0x0, the recipient MUST respond with a
+		// connection error (Section 5.4.1) of type
+		// PROTOCOL_ERROR.
+		f.errDetail = errors.New("DATA frame with stream ID 0")
+		return http2.ConnectionError(http2.ErrCodeProtocol)
+	}
+	// Converting a *[]byte to a mem.SliceBuffer incurs a heap allocation. This
+	// conversion is performed by mem.NewBuffer. To avoid the extra allocation
+	// a []byte is allocated directly if required and cast to a mem.SliceBuffer.
+	var buf []byte
+	// poolHandle is the pointer returned by the buffer pool (if it's used.).
+	var poolHandle *[]byte
+	useBufferPool := !mem.IsBelowBufferPoolingThreshold(int(fh.Length))
+	if useBufferPool {
+		poolHandle = f.pool.Get(int(fh.Length))
+		buf = *poolHandle
+		defer func() {
+			if err != nil {
+				f.pool.Put(poolHandle)
+			}
+		}()
+	} else {
+		buf = make([]byte, int(fh.Length))
+	}
+	if fh.Flags.Has(http2.FlagDataPadded) {
+		if fh.Length == 0 {
+			return io.ErrUnexpectedEOF
+		}
+		// This initial 1-byte read can be inefficient for unbuffered readers,
+		// but it allows the rest of the payload to be read directly to the
+		// start of the destination slice. This makes it easy to return the
+		// original slice back to the buffer pool.
+		if _, err := io.ReadFull(f.reader, buf[:1]); err != nil {
+			return err
+		}
+		padSize := buf[0]
+		buf = buf[:len(buf)-1]
+		if int(padSize) > len(buf) {
+			// If the length of the padding is greater than the
+			// length of the frame payload, the recipient MUST
+			// treat this as a connection error.
+			// Filed: https://github.com/http2/http2-spec/issues/610
+			f.errDetail = errors.New("pad size larger than data payload")
+			return http2.ConnectionError(http2.ErrCodeProtocol)
+		}
+		if _, err := io.ReadFull(f.reader, buf); err != nil {
+			return err
+		}
+		buf = buf[:len(buf)-int(padSize)]
+	} else if _, err := io.ReadFull(f.reader, buf); err != nil {
+		return err
+	}
+
+	f.dataFrame.FrameHeader = fh
+	if useBufferPool {
+		// Update the handle to point to the (potentially re-sliced) buf.
+		*poolHandle = buf
+		f.dataFrame.data = mem.NewBuffer(poolHandle, f.pool)
+	} else {
+		f.dataFrame.data = mem.SliceBuffer(buf)
+	}
+	return nil
+}
+
+func (df *parsedDataFrame) Header() http2.FrameHeader {
+	return df.FrameHeader
+}
+
+func ioBufferPool(size int) *imem.SimpleBufferPool {
+	ioBufferMutex.Lock()
+	defer ioBufferMutex.Unlock()
+	pool, ok := ioBufferPoolMap[size]
 	if ok {
 		return pool
 	}
-	pool = &sync.Pool{
-		New: func() any {
-			b := make([]byte, size)
-			return &b
-		},
-	}
-	writeBufferPoolMap[size] = pool
+	pool = imem.NewDirtySimplePool()
+	ioBufferPoolMap[size] = pool
 	return pool
 }
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/internal/internal.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/internal/internal.go
--- a/vendor/google.golang.org/grpc/internal/transport/internal/internal.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/internal/internal.go	2026-09-02 10:25:23.893027770 +0000
@@ -0,0 +1,25 @@
+/*
+ *
+ * Copyright 2026 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+// Package internal contains functionality internal to the transport package.
+package internal
+
+// TimeNowFunc is a variable that can be set to override the default behavior of
+// getting the current time in nanoseconds. It is used in transport code to set
+// channelz timestamps, and is exposed here for testing purposes.
+var TimeNowFunc func() int64
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_linux.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_linux.go
--- a/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_linux.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_linux.go	2026-09-02 10:25:23.893027770 +0000
@@ -0,0 +1,39 @@
+/*
+ *
+ * Copyright 2026 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+package readyreader
+
+import "syscall"
+
+func isRawConnSupported() bool {
+	return true
+}
+
+// sysRead uses the standard syscall package rather than the modern unix package
+// to avoid triggering the race detector. Because both packages perform sync
+// operations on a local variable to satisfy the race detector, mixing them
+// for read and write syscalls causes data races. We use syscall here to remain
+// consistent with net.Conn implementations in standard library.
+func sysRead(fd uintptr, p []byte) (int, error) {
+	return syscall.Read(int(fd), p)
+}
+
+// wouldBlock checks standard Unix non-blocking errors.
+func wouldBlock(err error) bool {
+	return err == syscall.EAGAIN || err == syscall.EWOULDBLOCK
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_nonlinux.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_nonlinux.go
--- a/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_nonlinux.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/readyreader/raw_conn_nonlinux.go	2026-09-02 10:25:23.893027770 +0000
@@ -0,0 +1,35 @@
+//go:build !linux
+
+/*
+ *
+ * Copyright 2026 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+package readyreader
+
+func isRawConnSupported() bool {
+	return false
+}
+
+// sysRead is not implemented. Support can be added in the future if necessary.
+func sysRead(uintptr, []byte) (int, error) {
+	panic("RawConn functionality is not implemented for non-unix platforms.")
+}
+
+// wouldBlock is not implemented. Support can be added in the future if necessary.
+func wouldBlock(error) bool {
+	panic("RawConn functionality is not implemented for non-unix platforms.")
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/readyreader/ready_reader.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/readyreader/ready_reader.go
--- a/vendor/google.golang.org/grpc/internal/transport/readyreader/ready_reader.go	1970-01-01 00:00:00.000000000 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/readyreader/ready_reader.go	2026-09-02 10:25:23.893027770 +0000
@@ -0,0 +1,253 @@
+/*
+ *
+ * Copyright 2026 gRPC authors.
+ *
+ * Licensed under the Apache License, Version 2.0 (the "License");
+ * you may not use this file except in compliance with the License.
+ * You may obtain a copy of the License at
+ *
+ *     http://www.apache.org/licenses/LICENSE-2.0
+ *
+ * Unless required by applicable law or agreed to in writing, software
+ * distributed under the License is distributed on an "AS IS" BASIS,
+ * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
+ * See the License for the specific language governing permissions and
+ * limitations under the License.
+ *
+ */
+
+// Package readyreader provides utilities to perform non-memory-pinning reads.
+package readyreader
+
+import (
+	"io"
+	"net"
+	"syscall"
+
+	"google.golang.org/grpc/mem"
+)
+
+// Reader is an optional interface that can be implemented by [net.Conn]
+// implementations to enable gRPC to perform non-memory-pinning reads.
+type Reader interface {
+	// ReadOnReady waits for data to arrive, fetches a buffer, and performs a
+	// read. When the underlying IO is readable, it allocates a buffer of size
+	// bufSize from the pool and reads up to bufSize bytes into the buffer.
+	//
+	// It returns a pointer to the buffer so it can be returned to the pool
+	// later, the number of bytes read, and an error.
+	//
+	// Callers should always process the n > 0 bytes returned before considering
+	// the error. Doing so correctly handles I/O errors that happen after
+	// reading some bytes, as well as both of the allowed EOF behaviors.
+	ReadOnReady(bufSize int, pool mem.BufferPool) (b *[]byte, n int, err error)
+}
+
+// nonBlockingReader is optimized for non-memory-pinning reads using the RawConn
+// interface.
+type nonBlockingReader struct {
+	raw syscall.RawConn
+	// The following fields are stored as field to avoid heap allocations.
+	state  readState
+	doRead func(fd uintptr) bool
+}
+
+type readState struct {
+	// Request params.
+	bufSize int
+	pool    mem.BufferPool
+
+	// Response params.
+	readError error
+	bytesRead int
+	buf       *[]byte
+}
+
+// NewNonBlocking returns a ReadyReader if the passed reader supports
+// non-memory-pinning reads, else nil.
+func NewNonBlocking(r io.Reader) Reader {
+	if rr, ok := r.(Reader); ok {
+		return rr
+	}
+	if !isRawConnSupported() {
+		return nil
+	}
+	// We restrict the types before asserting syscall.Conn. The credentials
+	// package may return a wrapper that implements syscall.Conn by embedding
+	// both the raw connection and the encrypted connection. If the code
+	// attempts to read directly from the raw syscall.RawConn, it would read
+	// encrypted data.
+	switch r.(type) {
+	case *net.TCPConn, *net.UDPConn, *net.UnixConn, *net.IPConn:
+	default:
+		return nil
+	}
+	sysConn, ok := r.(syscall.Conn)
+	if !ok {
+		return nil
+	}
+	raw, err := sysConn.SyscallConn()
+	if err != nil {
+		return nil
+	}
+	rr := &nonBlockingReader{raw: raw}
+	rr.doRead = func(fd uintptr) bool {
+		s := &rr.state
+
+		s.buf = s.pool.Get(s.bufSize)
+		s.bytesRead, s.readError = sysRead(fd, *s.buf)
+
+		if s.readError != nil {
+			s.pool.Put(s.buf)
+			s.buf = nil
+		}
+		return !wouldBlock(s.readError)
+	}
+	return rr
+}
+
+func (c *nonBlockingReader) ReadOnReady(bufSize int, pool mem.BufferPool) (*[]byte, int, error) {
+	c.state = readState{
+		pool:    pool,
+		bufSize: bufSize,
+	}
+	err := c.raw.Read(c.doRead)
+
+	buf := c.state.buf
+	n := c.state.bytesRead
+	readErr := c.state.readError
+	c.state = readState{}
+
+	if err != nil {
+		if buf != nil {
+			pool.Put(buf)
+		}
+		return nil, 0, err
+	}
+	if readErr != nil {
+		// buffer is already released in the callback.
+		return nil, 0, readErr
+	}
+	if n == 0 {
+		// syscall.Read doesn't consider a graceful socket closure to be an
+		// error condition, but Go's io.Reader expects an EOF error.
+		pool.Put(buf)
+		return nil, 0, io.EOF
+	}
+	return buf, n, nil
+}
+
+type blockingReader struct {
+	reader io.Reader
+}
+
+func (c *blockingReader) ReadOnReady(bufSize int, pool mem.BufferPool) (*[]byte, int, error) {
+	buf := pool.Get(bufSize)
+	n, err := c.reader.Read(*buf)
+	if err != nil {
+		pool.Put(buf)
+		return nil, 0, err
+	}
+	return buf, n, nil
+}
+
+// New detects if [syscall.RawConn] is available for non-memory-pinning reads.
+// If [syscall.RawConn] is unavailable, it falls back to using the simpler
+// [io.Reader] interface for reads.
+func New(r io.Reader) Reader {
+	if r := NewNonBlocking(r); r != nil {
+		return r
+	}
+	return &blockingReader{reader: r}
+}
+
+// bufReadyReader implements buffering for a ReadyReader object.
+// A new bufReadyReader is created by calling [NewBuffered].
+type bufReadyReader struct {
+	buf       *[]byte
+	pool      mem.BufferPool
+	bufSize   int
+	rd        Reader // reader provided by the caller
+	r, w      int    // buf read and write positions
+	err       error
+	constPool constBufferPool // stored as a field to avoid heap allocations.
+}
+
+// NewBuffered returns a new [io.Reader] with a buffer of the specified size
+// which is allocated from the provided pool.
+func NewBuffered(rd Reader, size int, pool mem.BufferPool) io.Reader {
+	return &bufReadyReader{
+		rd:      rd,
+		pool:    pool,
+		bufSize: size,
+	}
+}
+
+func (b *bufReadyReader) readErr() error {
+	err := b.err
+	b.err = nil
+	return err
+}
+
+func (b *bufReadyReader) buffered() int { return b.w - b.r }
+
+// Read reads data into p. It returns the number of bytes read into p. The
+// bytes are taken from at most one Read on the underlying [ReadyReader],
+// hence n may be less than len(p). If the underlying [ReadyReader] can return
+// a non-zero count with io.EOF, then this Read method can do so as well; see
+// the [io.Reader] docs.
+func (b *bufReadyReader) Read(p []byte) (n int, err error) {
+	n = len(p)
+	if n == 0 {
+		if b.buffered() > 0 {
+			return 0, nil
+		}
+		return 0, b.readErr()
+	}
+	if b.r == b.w {
+		if b.err != nil {
+			return 0, b.readErr()
+		}
+		if len(p) >= b.bufSize {
+			// Large read, empty buffer.
+			// Read directly into p to avoid copy.
+			b.constPool.buffer = p
+			_, n, b.err = b.rd.ReadOnReady(len(p), &b.constPool)
+			return n, b.readErr()
+		}
+		// One read.
+		b.r = 0
+		b.w = 0
+		b.buf, n, b.err = b.rd.ReadOnReady(b.bufSize, b.pool)
+		if n == 0 {
+			if b.buf != nil {
+				b.pool.Put(b.buf)
+				b.buf = nil
+			}
+			return 0, b.readErr()
+		}
+		b.w += n
+	}
+
+	// copy as much as we can
+	// b.buf must be non-nil since b.r != b.w.
+	buf := *b.buf
+	n = copy(p, buf[b.r:b.w])
+	b.r += n
+	if b.r == b.w {
+		// Consumed entire buffer, release it.
+		b.pool.Put(b.buf)
+		b.buf = nil
+	}
+	return n, nil
+}
+
+type constBufferPool struct {
+	buffer []byte
+}
+
+func (p *constBufferPool) Get(int) *[]byte {
+	return &p.buffer
+}
+
+func (p *constBufferPool) Put(*[]byte) {}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/server_stream.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/server_stream.go
--- a/vendor/google.golang.org/grpc/internal/transport/server_stream.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/server_stream.go	2026-09-02 10:25:23.889027764 +0000
@@ -32,7 +32,7 @@
 
 // ServerStream implements streaming functionality for a gRPC server.
 type ServerStream struct {
-	*Stream // Embed for common stream functionality.
+	Stream // Embed for common stream functionality.
 
 	st      internalServerTransport
 	ctxDone <-chan struct{} // closed at the end of stream.  Cache of ctx.Done() (for performance)
@@ -43,12 +43,13 @@
 	// Holds compressor names passed in grpc-accept-encoding metadata from the
 	// client.
 	clientAdvertisedCompressors string
-	headerWireLength            int
 
 	// hdrMu protects outgoing header and trailer metadata.
 	hdrMu      sync.Mutex
 	header     metadata.MD // the outgoing header metadata.  Updated by WriteHeader.
 	headerSent atomic.Bool // atomically set when the headers are sent out.
+
+	headerWireLength int
 }
 
 // Read reads an n byte message from the input stream.
@@ -178,3 +179,11 @@
 	s.hdrMu.Unlock()
 	return nil
 }
+
+func (s *ServerStream) requestRead(n int) {
+	s.st.adjustWindow(s, uint32(n))
+}
+
+func (s *ServerStream) updateWindow(n int) {
+	s.st.updateWindow(s, uint32(n))
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/internal/transport/transport.go /work/src/kubernetes/vendor/google.golang.org/grpc/internal/transport/transport.go
--- a/vendor/google.golang.org/grpc/internal/transport/transport.go	2026-09-02 10:24:55.032997634 +0000
+++ b/vendor/google.golang.org/grpc/internal/transport/transport.go	2026-09-02 10:25:23.889027764 +0000
@@ -31,9 +31,11 @@
 	"sync/atomic"
 	"time"
 
+	"golang.org/x/net/http2"
 	"google.golang.org/grpc/codes"
 	"google.golang.org/grpc/credentials"
 	"google.golang.org/grpc/internal/channelz"
+	"google.golang.org/grpc/internal/transport/internal"
 	"google.golang.org/grpc/keepalive"
 	"google.golang.org/grpc/mem"
 	"google.golang.org/grpc/metadata"
@@ -45,6 +47,10 @@
 
 const logLevel = 2
 
+func init() {
+	internal.TimeNowFunc = func() int64 { return time.Now().UnixNano() }
+}
+
 // recvMsg represents the received msg from the transport. All transport
 // protocol specific info has been removed.
 type recvMsg struct {
@@ -68,11 +74,11 @@
 	err     error
 }
 
-func newRecvBuffer() *recvBuffer {
-	b := &recvBuffer{
-		c: make(chan recvMsg, 1),
-	}
-	return b
+// init allows a recvBuffer to be initialized in-place, which is useful
+// for resetting a buffer or for avoiding a heap allocation when the buffer
+// is embedded in another struct.
+func (b *recvBuffer) init() {
+	b.c = make(chan recvMsg, 1)
 }
 
 func (b *recvBuffer) put(r recvMsg) {
@@ -123,12 +129,13 @@
 // recvBufferReader implements io.Reader interface to read the data from
 // recvBuffer.
 type recvBufferReader struct {
-	closeStream func(error) // Closes the client transport stream with the given error and nil trailer metadata.
-	ctx         context.Context
-	ctxDone     <-chan struct{} // cache of ctx.Done() (for performance).
-	recv        *recvBuffer
-	last        mem.Buffer // Stores the remaining data in the previous calls.
-	err         error
+	_            noCopy
+	clientStream *ClientStream // The client transport stream is closed with a status representing ctx.Err() and nil trailer metadata.
+	ctx          context.Context
+	ctxDone      <-chan struct{} // cache of ctx.Done() (for performance).
+	recv         *recvBuffer
+	last         mem.Buffer // Stores the remaining data in the previous calls.
+	err          error
 }
 
 func (r *recvBufferReader) ReadMessageHeader(header []byte) (n int, err error) {
@@ -139,7 +146,7 @@
 		n, r.last = mem.ReadUnsafe(header, r.last)
 		return n, nil
 	}
-	if r.closeStream != nil {
+	if r.clientStream != nil {
 		n, r.err = r.readMessageHeaderClient(header)
 	} else {
 		n, r.err = r.readMessageHeader(header)
@@ -164,7 +171,7 @@
 		}
 		return buf, nil
 	}
-	if r.closeStream != nil {
+	if r.clientStream != nil {
 		buf, r.err = r.readClient(n)
 	} else {
 		buf, r.err = r.read(n)
@@ -209,7 +216,7 @@
 		// TODO: delaying ctx error seems like a unnecessary side effect. What
 		// we really want is to mark the stream as done, and return ctx error
 		// faster.
-		r.closeStream(ContextErr(r.ctx.Err()))
+		r.clientStream.Close(ContextErr(r.ctx.Err()))
 		m := <-r.recv.get()
 		return r.readMessageHeaderAdditional(m, header)
 	case m := <-r.recv.get():
@@ -236,7 +243,7 @@
 		// TODO: delaying ctx error seems like a unnecessary side effect. What
 		// we really want is to mark the stream as done, and return ctx error
 		// faster.
-		r.closeStream(ContextErr(r.ctx.Err()))
+		r.clientStream.Close(ContextErr(r.ctx.Err()))
 		m := <-r.recv.get()
 		return r.readAdditional(m, n)
 	case m := <-r.recv.get():
@@ -285,27 +292,32 @@
 
 // Stream represents an RPC in the transport layer.
 type Stream struct {
-	id           uint32
 	ctx          context.Context // the associated context of the stream
 	method       string          // the associated RPC method of the stream
 	recvCompress string
 	sendCompress string
-	buf          *recvBuffer
-	trReader     *transportReader
-	fc           *inFlow
-	wq           *writeQuota
-
-	// Callback to state application's intentions to read data. This
-	// is used to adjust flow control, if needed.
-	requestRead func(int)
 
-	state streamState
+	readRequester readRequester
 
 	// contentSubtype is the content-subtype for requests.
 	// this must be lowercase or the behavior is undefined.
 	contentSubtype string
 
 	trailer metadata.MD // the key-value map of trailer metadata.
+
+	// Non-pointer fields are at the end to optimize GC performance.
+	state    streamState
+	id       uint32
+	buf      recvBuffer
+	trReader transportReader
+	fc       inFlow
+	wq       writeQuota
+}
+
+// readRequester is used to state application's intentions to read data. This
+// is used to adjust flow control, if needed.
+type readRequester interface {
+	requestRead(int)
 }
 
 func (s *Stream) swapState(st streamState) streamState {
@@ -355,7 +367,7 @@
 	if er := s.trReader.er; er != nil {
 		return er
 	}
-	s.requestRead(len(header))
+	s.readRequester.requestRead(len(header))
 	for len(header) != 0 {
 		n, err := s.trReader.ReadMessageHeader(header)
 		header = header[n:]
@@ -372,13 +384,29 @@
 	return nil
 }
 
+// ceil returns the ceil after dividing the numerator and denominator while
+// avoiding integer overflows.
+func ceil(numerator, denominator int) int {
+	if numerator == 0 {
+		return 0
+	}
+	return (numerator-1)/denominator + 1
+}
+
 // Read reads n bytes from the wire for this stream.
 func (s *Stream) read(n int) (data mem.BufferSlice, err error) {
 	// Don't request a read if there was an error earlier
 	if er := s.trReader.er; er != nil {
 		return nil, er
 	}
-	s.requestRead(n)
+	// gRPC Go accepts data frames with a maximum length of 16KB. Larger
+	// messages must be split into multiple frames. We pre-allocate the
+	// buffer to avoid resizing during the read loop, but cap the initial
+	// capacity to 128 frames (2MB) to prevent over-allocation or panics
+	// when reading extremely large streams.
+	allocCap := min(ceil(n, http2MaxFrameLen), 128)
+	data = make(mem.BufferSlice, 0, allocCap)
+	s.readRequester.requestRead(n)
 	for n != 0 {
 		buf, err := s.trReader.Read(n)
 		var bufLen int
@@ -401,16 +429,34 @@
 	return data, nil
 }
 
+// noCopy may be embedded into structs which must not be copied
+// after the first use.
+//
+// See https://golang.org/issues/8005#issuecomment-190753527
+// for details.
+type noCopy struct {
+}
+
+func (*noCopy) Lock()   {}
+func (*noCopy) Unlock() {}
+
 // transportReader reads all the data available for this Stream from the transport and
 // passes them into the decoder, which converts them into a gRPC message stream.
 // The error is io.EOF when the stream is done or another non-nil error if
 // the stream broke.
 type transportReader struct {
-	reader *recvBufferReader
+	_ noCopy
 	// The handler to control the window update procedure for both this
 	// particular stream and the associated transport.
-	windowHandler func(int)
+	windowHandler windowHandler
 	er            error
+	reader        recvBufferReader
+}
+
+// The handler to control the window update procedure for both this
+// particular stream and the associated transport.
+type windowHandler interface {
+	updateWindow(int)
 }
 
 func (t *transportReader) ReadMessageHeader(header []byte) (int, error) {
@@ -419,7 +465,7 @@
 		t.er = err
 		return 0, err
 	}
-	t.windowHandler(n)
+	t.windowHandler.updateWindow(n)
 	return n, nil
 }
 
@@ -429,7 +475,7 @@
 		t.er = err
 		return buf, err
 	}
-	t.windowHandler(buf.Len())
+	t.windowHandler.updateWindow(buf.Len())
 	return buf, nil
 }
 
@@ -454,7 +500,7 @@
 	ConnectionTimeout     time.Duration
 	Credentials           credentials.TransportCredentials
 	InTapHandle           tap.ServerInHandle
-	StatsHandlers         []stats.Handler
+	StatsHandler          stats.Handler
 	KeepaliveParams       keepalive.ServerParameters
 	KeepalivePolicy       keepalive.EnforcementPolicy
 	InitialWindowSize     int32
@@ -466,6 +512,7 @@
 	MaxHeaderListSize     *uint32
 	HeaderTableSize       *uint32
 	BufferPool            mem.BufferPool
+	StaticWindowSize      bool
 }
 
 // ConnectOptions covers all relevant options for communicating with the server.
@@ -504,6 +551,8 @@
 	MaxHeaderListSize *uint32
 	// The mem.BufferPool to use when reading/writing to the wire.
 	BufferPool mem.BufferPool
+	// StaticWindowSize controls whether dynamic window sizing is enabled.
+	StaticWindowSize bool
 }
 
 // WriteOptions provides additional hints and information for message
@@ -526,6 +575,12 @@
 	// outbound message.
 	SendCompress string
 
+	// AcceptedCompressors overrides the grpc-accept-encoding header for this
+	// call. When nil, the transport advertises the default set of registered
+	// compressors. A non-nil pointer overrides that value (including the empty
+	// string to advertise none).
+	AcceptedCompressors *string
+
 	// Creds specifies credentials.PerRPCCredentials for a call.
 	Creds credentials.PerRPCCredentials
 
@@ -540,6 +595,16 @@
 	PreviousAttempts int // value of grpc-previous-rpc-attempts header to set
 
 	DoneFunc func() // called when the stream is finished
+
+	// Authority is used to explicitly override the `:authority` header.
+	//
+	// This value comes from one of two sources:
+	// 1. The `CallAuthority` call option, if specified by the user.
+	// 2. An override provided by the LB picker (e.g. xDS authority rewriting).
+	//
+	// The `CallAuthority` call option always takes precedence over the LB
+	// picker override.
+	Authority string
 }
 
 // ClientTransport is the common interface for all gRPC client-side transport
@@ -558,7 +623,7 @@
 	GracefulClose()
 
 	// NewStream creates a Stream for an RPC.
-	NewStream(ctx context.Context, callHdr *CallHdr) (*ClientStream, error)
+	NewStream(ctx context.Context, callHdr *CallHdr, handler stats.Handler) (*ClientStream, error)
 
 	// Error returns a channel that is closed when some I/O error
 	// happens. Typically the caller should have a goroutine to monitor
@@ -576,8 +641,9 @@
 	// with a human readable string with debug info.
 	GetGoAwayReason() (GoAwayReason, string)
 
-	// RemoteAddr returns the remote network address.
-	RemoteAddr() net.Addr
+	// Peer returns information about the peer associated with the Transport.
+	// The returned information includes authentication and network address details.
+	Peer() *peer.Peer
 }
 
 // ServerTransport is the common interface for all gRPC server-side transport
@@ -607,6 +673,8 @@
 	write(s *ServerStream, hdr []byte, data mem.BufferSlice, opts *WriteOptions) error
 	writeStatus(s *ServerStream, st *status.Status) error
 	incrMsgRecv()
+	adjustWindow(s *ServerStream, n uint32)
+	updateWindow(s *ServerStream, n uint32)
 }
 
 // connectionErrorf creates an ConnectionError with the specified error description.
@@ -680,6 +748,22 @@
 	GoAwayTooManyPings GoAwayReason = 2
 )
 
+// GoAwayInfo contains metadata about why a connection was closed.
+type GoAwayInfo struct {
+	// Reason is the parsed reason for an HTTP/2 GOAWAY frame.
+	Reason GoAwayReason
+	// GoAwayCode is the raw HTTP/2 error code received in a GOAWAY frame.
+	GoAwayCode http2.ErrCode
+	// Err is the underlying error that caused the connection to close. It is
+	// populated if the connection was closed due to a socket error or context
+	// cancellation without receiving a GOAWAY frame. If the connection was
+	// closed due to a GOAWAY frame, this field will be nil.
+	Err error
+}
+
+// OnCloseFunc is a callback invoked when a ClientTransport closes.
+type OnCloseFunc func(GoAwayInfo)
+
 // ContextErr converts the error from context package into a status error.
 func ContextErr(err error) error {
 	switch err {
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/mem/buffer_pool.go /work/src/kubernetes/vendor/google.golang.org/grpc/mem/buffer_pool.go
--- a/vendor/google.golang.org/grpc/mem/buffer_pool.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/mem/buffer_pool.go	2026-09-02 10:25:23.893027770 +0000
@@ -19,10 +19,10 @@
 package mem
 
 import (
-	"sort"
-	"sync"
+	"fmt"
 
 	"google.golang.org/grpc/internal"
+	"google.golang.org/grpc/internal/mem"
 )
 
 // BufferPool is a pool of buffers that can be shared and reused, resulting in
@@ -32,23 +32,31 @@
 	Get(length int) *[]byte
 
 	// Put returns a buffer to the pool.
+	//
+	// The provided pointer must hold a prefix of the buffer obtained via
+	// BufferPool.Get to ensure the buffer's entire capacity can be re-used.
 	Put(*[]byte)
 }
 
-var defaultBufferPoolSizes = []int{
-	256,
-	4 << 10,  // 4KB (go page size)
-	16 << 10, // 16KB (max HTTP/2 frame size used by gRPC)
-	32 << 10, // 32KB (default buffer size for io.Copy)
-	1 << 20,  // 1MB
-}
-
-var defaultBufferPool BufferPool
+var (
+	defaultBufferPoolSizeExponents = []uint8{
+		8,
+		12, // Go page size, 4KB
+		14, // 16KB (max HTTP/2 frame size used by gRPC)
+		15, // 32KB (default buffer size for io.Copy)
+		20, // 1MB
+	}
+	defaultBufferPool BufferPool
+)
 
 func init() {
-	defaultBufferPool = NewTieredBufferPool(defaultBufferPoolSizes...)
+	var err error
+	defaultBufferPool, err = NewBinaryTieredBufferPool(defaultBufferPoolSizeExponents...)
+	if err != nil {
+		panic(fmt.Sprintf("Failed to create default buffer pool: %v", err))
+	}
 
-	internal.SetDefaultBufferPoolForTesting = func(pool BufferPool) {
+	internal.SetDefaultBufferPool = func(pool BufferPool) {
 		defaultBufferPool = pool
 	}
 
@@ -67,128 +75,22 @@
 // NewTieredBufferPool returns a BufferPool implementation that uses multiple
 // underlying pools of the given pool sizes.
 func NewTieredBufferPool(poolSizes ...int) BufferPool {
-	sort.Ints(poolSizes)
-	pools := make([]*sizedBufferPool, len(poolSizes))
-	for i, s := range poolSizes {
-		pools[i] = newSizedBufferPool(s)
-	}
-	return &tieredBufferPool{
-		sizedPools: pools,
-	}
-}
-
-// tieredBufferPool implements the BufferPool interface with multiple tiers of
-// buffer pools for different sizes of buffers.
-type tieredBufferPool struct {
-	sizedPools   []*sizedBufferPool
-	fallbackPool simpleBufferPool
-}
-
-func (p *tieredBufferPool) Get(size int) *[]byte {
-	return p.getPool(size).Get(size)
-}
-
-func (p *tieredBufferPool) Put(buf *[]byte) {
-	p.getPool(cap(*buf)).Put(buf)
-}
-
-func (p *tieredBufferPool) getPool(size int) BufferPool {
-	poolIdx := sort.Search(len(p.sizedPools), func(i int) bool {
-		return p.sizedPools[i].defaultSize >= size
-	})
-
-	if poolIdx == len(p.sizedPools) {
-		return &p.fallbackPool
-	}
-
-	return p.sizedPools[poolIdx]
-}
-
-// sizedBufferPool is a BufferPool implementation that is optimized for specific
-// buffer sizes. For example, HTTP/2 frames within gRPC have a default max size
-// of 16kb and a sizedBufferPool can be configured to only return buffers with a
-// capacity of 16kb. Note that however it does not support returning larger
-// buffers and in fact panics if such a buffer is requested. Because of this,
-// this BufferPool implementation is not meant to be used on its own and rather
-// is intended to be embedded in a tieredBufferPool such that Get is only
-// invoked when the required size is smaller than or equal to defaultSize.
-type sizedBufferPool struct {
-	pool        sync.Pool
-	defaultSize int
-}
-
-func (p *sizedBufferPool) Get(size int) *[]byte {
-	buf := p.pool.Get().(*[]byte)
-	b := *buf
-	clear(b[:cap(b)])
-	*buf = b[:size]
-	return buf
-}
-
-func (p *sizedBufferPool) Put(buf *[]byte) {
-	if cap(*buf) < p.defaultSize {
-		// Ignore buffers that are too small to fit in the pool. Otherwise, when
-		// Get is called it will panic as it tries to index outside the bounds
-		// of the buffer.
-		return
-	}
-	p.pool.Put(buf)
-}
-
-func newSizedBufferPool(size int) *sizedBufferPool {
-	return &sizedBufferPool{
-		pool: sync.Pool{
-			New: func() any {
-				buf := make([]byte, size)
-				return &buf
-			},
-		},
-		defaultSize: size,
-	}
+	return mem.NewTieredBufferPool(poolSizes...)
 }
 
-var _ BufferPool = (*simpleBufferPool)(nil)
-
-// simpleBufferPool is an implementation of the BufferPool interface that
-// attempts to pool buffers with a sync.Pool. When Get is invoked, it tries to
-// acquire a buffer from the pool but if that buffer is too small, it returns it
-// to the pool and creates a new one.
-type simpleBufferPool struct {
-	pool sync.Pool
+// NewBinaryTieredBufferPool returns a BufferPool backed by multiple sub-pools.
+// This structure enables O(1) lookup time for Get and Put operations.
+//
+// The arguments provided are the exponents for the buffer capacities (powers
+// of 2), not the raw byte sizes. For example, to create a pool of 16KB buffers
+// (2^14 bytes), pass 14 as the argument.
+func NewBinaryTieredBufferPool(powerOfTwoExponents ...uint8) (BufferPool, error) {
+	return mem.NewBinaryTieredBufferPool(powerOfTwoExponents...)
 }
 
-func (p *simpleBufferPool) Get(size int) *[]byte {
-	bs, ok := p.pool.Get().(*[]byte)
-	if ok && cap(*bs) >= size {
-		*bs = (*bs)[:size]
-		return bs
-	}
-
-	// A buffer was pulled from the pool, but it is too small. Put it back in
-	// the pool and create one large enough.
-	if ok {
-		p.pool.Put(bs)
-	}
-
-	b := make([]byte, size)
-	return &b
-}
-
-func (p *simpleBufferPool) Put(buf *[]byte) {
-	p.pool.Put(buf)
-}
-
-var _ BufferPool = NopBufferPool{}
-
 // NopBufferPool is a buffer pool that returns new buffers without pooling.
-type NopBufferPool struct{}
-
-// Get returns a buffer with specified length from the pool.
-func (NopBufferPool) Get(length int) *[]byte {
-	b := make([]byte, length)
-	return &b
+type NopBufferPool struct {
+	mem.NopBufferPool
 }
 
-// Put returns a buffer to the pool.
-func (NopBufferPool) Put(*[]byte) {
-}
+var _ BufferPool = NopBufferPool{}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/mem/buffer_slice.go /work/src/kubernetes/vendor/google.golang.org/grpc/mem/buffer_slice.go
--- a/vendor/google.golang.org/grpc/mem/buffer_slice.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/mem/buffer_slice.go	2026-09-02 10:25:23.893027770 +0000
@@ -19,6 +19,7 @@
 package mem
 
 import (
+	"fmt"
 	"io"
 )
 
@@ -117,48 +118,54 @@
 
 // Reader returns a new Reader for the input slice after taking references to
 // each underlying buffer.
-func (s BufferSlice) Reader() Reader {
+func (s BufferSlice) Reader() *Reader {
 	s.Ref()
-	return &sliceReader{
+	return &Reader{
 		data: s,
 		len:  s.Len(),
 	}
 }
 
 // Reader exposes a BufferSlice's data as an io.Reader, allowing it to interface
-// with other parts systems. It also provides an additional convenience method
-// Remaining(), which returns the number of unread bytes remaining in the slice.
+// with other systems.
+//
 // Buffers will be freed as they are read.
-type Reader interface {
-	io.Reader
-	io.ByteReader
-	// Close frees the underlying BufferSlice and never returns an error. Subsequent
-	// calls to Read will return (0, io.EOF).
-	Close() error
-	// Remaining returns the number of unread bytes remaining in the slice.
-	Remaining() int
-}
-
-type sliceReader struct {
+//
+// A Reader can be constructed from a BufferSlice; alternatively the zero value
+// of a Reader may be used after calling Reset on it.
+type Reader struct {
 	data BufferSlice
 	len  int
 	// The index into data[0].ReadOnlyData().
 	bufferIdx int
 }
 
-func (r *sliceReader) Remaining() int {
+// Remaining returns the number of unread bytes remaining in the slice.
+func (r *Reader) Remaining() int {
 	return r.len
 }
 
-func (r *sliceReader) Close() error {
+// Reset frees the currently held buffer slice and starts reading from the
+// provided slice. This allows reusing the reader object.
+func (r *Reader) Reset(s BufferSlice) {
+	r.data.Free()
+	s.Ref()
+	r.data = s
+	r.len = s.Len()
+	r.bufferIdx = 0
+}
+
+// Close frees the underlying BufferSlice and never returns an error. Subsequent
+// calls to Read will return (0, io.EOF).
+func (r *Reader) Close() error {
 	r.data.Free()
 	r.data = nil
 	r.len = 0
 	return nil
 }
 
-func (r *sliceReader) freeFirstBufferIfEmpty() bool {
-	if len(r.data) == 0 || r.bufferIdx != len(r.data[0].ReadOnlyData()) {
+func (r *Reader) freeFirstBufferIfEmpty() bool {
+	if len(r.data) == 0 || r.bufferIdx != r.data[0].Len() {
 		return false
 	}
 
@@ -168,7 +175,7 @@
 	return true
 }
 
-func (r *sliceReader) Read(buf []byte) (n int, _ error) {
+func (r *Reader) Read(buf []byte) (n int, _ error) {
 	if r.len == 0 {
 		return 0, io.EOF
 	}
@@ -191,7 +198,8 @@
 	return n, nil
 }
 
-func (r *sliceReader) ReadByte() (byte, error) {
+// ReadByte reads a single byte.
+func (r *Reader) ReadByte() (byte, error) {
 	if r.len == 0 {
 		return 0, io.EOF
 	}
@@ -279,3 +287,59 @@
 		}
 	}
 }
+
+// Discard skips the next n bytes, returning the number of bytes discarded.
+//
+// It frees buffers as they are fully consumed.
+//
+// If Discard skips fewer than n bytes, it also returns an error.
+func (r *Reader) Discard(n int) (discarded int, err error) {
+	total := n
+	for n > 0 && r.len > 0 {
+		curData := r.data[0].ReadOnlyData()
+		curSize := min(n, len(curData)-r.bufferIdx)
+		n -= curSize
+		r.len -= curSize
+		r.bufferIdx += curSize
+		if r.bufferIdx >= len(curData) {
+			r.data[0].Free()
+			r.data = r.data[1:]
+			r.bufferIdx = 0
+		}
+	}
+	discarded = total - n
+	if n > 0 {
+		return discarded, fmt.Errorf("insufficient bytes in reader")
+	}
+	return discarded, nil
+}
+
+// Peek returns the next n bytes without advancing the reader.
+//
+// Peek appends results to the provided res slice and returns the updated slice.
+// This pattern allows re-using the storage of res if it has sufficient
+// capacity.
+//
+// The returned subslices are views into the underlying buffers and are only
+// valid until the reader is advanced past the corresponding buffer.
+//
+// If Peek returns fewer than n bytes, it also returns an error.
+func (r *Reader) Peek(n int, res [][]byte) ([][]byte, error) {
+	for i := 0; n > 0 && i < len(r.data); i++ {
+		curData := r.data[i].ReadOnlyData()
+		start := 0
+		if i == 0 {
+			start = r.bufferIdx
+		}
+		curSize := min(n, len(curData)-start)
+		if curSize == 0 {
+			continue
+		}
+		res = append(res, curData[start:start+curSize])
+		n -= curSize
+	}
+	if n > 0 {
+		return nil, fmt.Errorf("insufficient bytes in reader")
+	}
+	return res, nil
+}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/mem/buffers.go /work/src/kubernetes/vendor/google.golang.org/grpc/mem/buffers.go
--- a/vendor/google.golang.org/grpc/mem/buffers.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/mem/buffers.go	2026-09-02 10:25:23.893027770 +0000
@@ -53,6 +53,10 @@
 	Free()
 	// Len returns the Buffer's size.
 	Len() int
+	// Slice returns a new Buffer that is a view into this buffer's data
+	// from [start:end). The buffer is not modified. Panics if the buffer
+	// has been freed or if start/end are out of bounds.
+	Slice(start, end int) Buffer
 
 	split(n int) (left, right Buffer)
 	read(buf []byte) (int, Buffer)
@@ -62,7 +66,6 @@
 	bufferPoolingThreshold = 1 << 10
 
 	bufferObjectPool = sync.Pool{New: func() any { return new(buffer) }}
-	refObjectPool    = sync.Pool{New: func() any { return new(atomic.Int32) }}
 )
 
 // IsBelowBufferPoolingThreshold returns true if the given size is less than or
@@ -73,9 +76,19 @@
 }
 
 type buffer struct {
+	refs atomic.Int32
+	data []byte
+
+	// rootBuf is the buffer responsible for returning origData to the pool
+	// once the reference count drops to 0.
+	//
+	// When a buffer is split, the new buffer inherits the rootBuf of the
+	// original and increments the root's reference count. For the
+	// initial buffer (the root), this field points to itself.
+	rootBuf *buffer
+
+	// The following fields are only set for root buffers.
 	origData *[]byte
-	data     []byte
-	refs     *atomic.Int32
 	pool     BufferPool
 }
 
@@ -103,8 +116,8 @@
 	b.origData = data
 	b.data = *data
 	b.pool = pool
-	b.refs = refObjectPool.Get().(*atomic.Int32)
-	b.refs.Add(1)
+	b.rootBuf = b
+	b.refs.Store(1)
 	return b
 }
 
@@ -127,59 +140,85 @@
 }
 
 func (b *buffer) ReadOnlyData() []byte {
-	if b.refs == nil {
+	if b.rootBuf == nil {
 		panic("Cannot read freed buffer")
 	}
 	return b.data
 }
 
 func (b *buffer) Ref() {
-	if b.refs == nil {
+	if b.refs.Add(1) <= 1 {
 		panic("Cannot ref freed buffer")
 	}
-	b.refs.Add(1)
 }
 
 func (b *buffer) Free() {
-	if b.refs == nil {
+	refs := b.refs.Add(-1)
+	if refs < 0 {
 		panic("Cannot free freed buffer")
 	}
-
-	refs := b.refs.Add(-1)
-	switch {
-	case refs > 0:
+	if refs > 0 {
 		return
-	case refs == 0:
+	}
+
+	b.data = nil
+	if b.rootBuf == b {
+		// This buffer is the owner of the data slice and its ref count reached
+		// 0, free the slice.
 		if b.pool != nil {
 			b.pool.Put(b.origData)
+			b.pool = nil
 		}
-
-		refObjectPool.Put(b.refs)
 		b.origData = nil
-		b.data = nil
-		b.refs = nil
-		b.pool = nil
-		bufferObjectPool.Put(b)
-	default:
-		panic("Cannot free freed buffer")
+	} else {
+		// This buffer doesn't own the data slice, decrement a ref on the root
+		// buffer.
+		b.rootBuf.Free()
 	}
+
+	b.rootBuf = nil
+	bufferObjectPool.Put(b)
 }
 
 func (b *buffer) Len() int {
 	return len(b.ReadOnlyData())
 }
 
+func (b *buffer) Slice(start, end int) Buffer {
+	if b.rootBuf == nil {
+		panic("Cannot slice freed buffer")
+	}
+
+	data := b.data[start:end] // access the data to check slice bounds
+
+	if len(data) == 0 {
+		return emptyBuffer{}
+	}
+	if len(data) == len(b.data) {
+		b.Ref()
+		return b
+	}
+	// We are creating a new reference (view) to a portion of the root buffer's
+	// data. Therefore, we must increment the reference count of the root buffer
+	// to ensure the underlying data is not freed while this view is still in
+	// use.
+	b.rootBuf.Ref()
+	s := newBuffer()
+	s.data = data
+	s.rootBuf = b.rootBuf
+	s.refs.Store(1)
+	return s
+}
+
 func (b *buffer) split(n int) (Buffer, Buffer) {
-	if b.refs == nil {
+	if b.rootBuf == nil || b.rootBuf.refs.Add(1) <= 1 {
 		panic("Cannot split freed buffer")
 	}
 
-	b.refs.Add(1)
 	split := newBuffer()
-	split.origData = b.origData
 	split.data = b.data[n:]
-	split.refs = b.refs
-	split.pool = b.pool
+	split.rootBuf = b.rootBuf
+	split.refs.Store(1)
 
 	b.data = b.data[:n]
 
@@ -187,7 +226,7 @@
 }
 
 func (b *buffer) read(buf []byte) (int, Buffer) {
-	if b.refs == nil {
+	if b.rootBuf == nil {
 		panic("Cannot read freed buffer")
 	}
 
@@ -231,6 +270,13 @@
 	return 0
 }
 
+func (e emptyBuffer) Slice(start, end int) Buffer {
+	if start != 0 || end != 0 {
+		panic(fmt.Sprintf("slice bounds out of range [%d:%d] with length 0", start, end))
+	}
+	return e
+}
+
 func (e emptyBuffer) split(int) (left, right Buffer) {
 	return e, e
 }
@@ -255,6 +301,9 @@
 // Len is a noop implementation of Len.
 func (s SliceBuffer) Len() int { return len(s) }
 
+// Slice returns a new SliceBuffer that is a view into the receiver from [start:end).
+func (s SliceBuffer) Slice(start, end int) Buffer { return s[start:end] }
+
 func (s SliceBuffer) split(n int) (left, right Buffer) {
 	return s[:n], s[n:]
 }
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/picker_wrapper.go /work/src/kubernetes/vendor/google.golang.org/grpc/picker_wrapper.go
--- a/vendor/google.golang.org/grpc/picker_wrapper.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/picker_wrapper.go	2026-09-02 10:25:23.873027742 +0000
@@ -29,7 +29,6 @@
 	"google.golang.org/grpc/internal/channelz"
 	istatus "google.golang.org/grpc/internal/status"
 	"google.golang.org/grpc/internal/transport"
-	"google.golang.org/grpc/stats"
 	"google.golang.org/grpc/status"
 )
 
@@ -48,14 +47,11 @@
 // actions and unblock when there's a picker update.
 type pickerWrapper struct {
 	// If pickerGen holds a nil pointer, the pickerWrapper is closed.
-	pickerGen     atomic.Pointer[pickerGeneration]
-	statsHandlers []stats.Handler // to record blocking picker calls
+	pickerGen atomic.Pointer[pickerGeneration]
 }
 
-func newPickerWrapper(statsHandlers []stats.Handler) *pickerWrapper {
-	pw := &pickerWrapper{
-		statsHandlers: statsHandlers,
-	}
+func newPickerWrapper() *pickerWrapper {
+	pw := &pickerWrapper{}
 	pw.pickerGen.Store(&pickerGeneration{
 		blockingCh: make(chan struct{}),
 	})
@@ -93,6 +89,12 @@
 	}
 }
 
+type pick struct {
+	transport transport.ClientTransport // the selected transport
+	result    balancer.PickResult       // the contents of the pick from the LB policy
+	blocked   bool                      // set if a picker call queued for a new picker
+}
+
 // pick returns the transport that will be used for the RPC.
 // It may block in the following cases:
 // - there's no picker
@@ -100,15 +102,16 @@
 // - the current picker returns other errors and failfast is false.
 // - the subConn returned by the current picker is not READY
 // When one of these situations happens, pick blocks until the picker gets updated.
-func (pw *pickerWrapper) pick(ctx context.Context, failfast bool, info balancer.PickInfo) (transport.ClientTransport, balancer.PickResult, error) {
+func (pw *pickerWrapper) pick(ctx context.Context, failfast bool, info balancer.PickInfo) (pick, error) {
 	var ch chan struct{}
 
 	var lastPickErr error
+	pickBlocked := false
 
 	for {
 		pg := pw.pickerGen.Load()
 		if pg == nil {
-			return nil, balancer.PickResult{}, ErrClientConnClosing
+			return pick{}, ErrClientConnClosing
 		}
 		if pg.picker == nil {
 			ch = pg.blockingCh
@@ -127,9 +130,9 @@
 				}
 				switch ctx.Err() {
 				case context.DeadlineExceeded:
-					return nil, balancer.PickResult{}, status.Error(codes.DeadlineExceeded, errStr)
+					return pick{}, status.Error(codes.DeadlineExceeded, errStr)
 				case context.Canceled:
-					return nil, balancer.PickResult{}, status.Error(codes.Canceled, errStr)
+					return pick{}, status.Error(codes.Canceled, errStr)
 				}
 			case <-ch:
 			}
@@ -145,9 +148,7 @@
 		// In the second case, the only way it will get to this conditional is
 		// if there is a new picker.
 		if ch != nil {
-			for _, sh := range pw.statsHandlers {
-				sh.HandleRPC(ctx, &stats.PickerUpdated{})
-			}
+			pickBlocked = true
 		}
 
 		ch = pg.blockingCh
@@ -164,7 +165,7 @@
 				if istatus.IsRestrictedControlPlaneCode(st) {
 					err = status.Errorf(codes.Internal, "received picker error with illegal status: %v", err)
 				}
-				return nil, balancer.PickResult{}, dropError{error: err}
+				return pick{}, dropError{error: err}
 			}
 			// For all other errors, wait for ready RPCs should block and other
 			// RPCs should fail with unavailable.
@@ -172,7 +173,7 @@
 				lastPickErr = err
 				continue
 			}
-			return nil, balancer.PickResult{}, status.Error(codes.Unavailable, err.Error())
+			return pick{}, status.Error(codes.Unavailable, err.Error())
 		}
 
 		acbw, ok := pickResult.SubConn.(*acBalancerWrapper)
@@ -183,16 +184,17 @@
 		if t := acbw.ac.getReadyTransport(); t != nil {
 			if channelz.IsOn() {
 				doneChannelzWrapper(acbw, &pickResult)
-				return t, pickResult, nil
 			}
-			return t, pickResult, nil
+			return pick{transport: t, result: pickResult, blocked: pickBlocked}, nil
 		}
 		if pickResult.Done != nil {
 			// Calling done with nil error, no bytes sent and no bytes received.
 			// DoneInfo with default value works.
 			pickResult.Done(balancer.DoneInfo{})
 		}
-		logger.Infof("blockingPicker: the picked transport is not ready, loop back to repick")
+		if logger.V(2) {
+			logger.Infof("blockingPicker: the picked transport is not ready, loop back to repick")
+		}
 		// If ok == false, ac.state is not READY.
 		// A valid picker always returns READY subConn. This means the state of ac
 		// just changed, and picker will be updated shortly.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/preloader.go /work/src/kubernetes/vendor/google.golang.org/grpc/preloader.go
--- a/vendor/google.golang.org/grpc/preloader.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/preloader.go	2026-09-02 10:25:23.873027742 +0000
@@ -47,9 +47,6 @@
 	}
 
 	// check if the context has the relevant information to prepareMsg
-	if rpcInfo.preloaderInfo == nil {
-		return status.Errorf(codes.Internal, "grpc: rpcInfo.preloaderInfo is nil")
-	}
 	if rpcInfo.preloaderInfo.codec == nil {
 		return status.Errorf(codes.Internal, "grpc: rpcInfo.preloaderInfo.codec is nil")
 	}
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection.pb.go
--- a/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection.pb.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection.pb.go	2026-09-02 10:25:23.893027770 +0000
@@ -21,7 +21,7 @@
 
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.36.5
+// 	protoc-gen-go v1.36.11
 // 	protoc        v5.27.1
 // source: grpc/reflection/v1/reflection.proto
 
@@ -659,117 +659,45 @@
 
 var File_grpc_reflection_v1_reflection_proto protoreflect.FileDescriptor
 
-var file_grpc_reflection_v1_reflection_proto_rawDesc = string([]byte{
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-})
+const file_grpc_reflection_v1_reflection_proto_rawDesc = "" +
+	"\n" +
+	"#grpc/reflection/v1/reflection.proto\x12\x12grpc.reflection.v1\"\xf3\x02\n" +
+	"\x17ServerReflectionRequest\x12\x12\n" +
+	"\x04host\x18\x01 \x01(\tR\x04host\x12*\n" +
+	"\x10file_by_filename\x18\x03 \x01(\tH\x00R\x0efileByFilename\x126\n" +
+	"\x16file_containing_symbol\x18\x04 \x01(\tH\x00R\x14fileContainingSymbol\x12b\n" +
+	"\x19file_containing_extension\x18\x05 \x01(\v2$.grpc.reflection.v1.ExtensionRequestH\x00R\x17fileContainingExtension\x12B\n" +
+	"\x1dall_extension_numbers_of_type\x18\x06 \x01(\tH\x00R\x19allExtensionNumbersOfType\x12%\n" +
+	"\rlist_services\x18\a \x01(\tH\x00R\flistServicesB\x11\n" +
+	"\x0fmessage_request\"f\n" +
+	"\x10ExtensionRequest\x12'\n" +
+	"\x0fcontaining_type\x18\x01 \x01(\tR\x0econtainingType\x12)\n" +
+	"\x10extension_number\x18\x02 \x01(\x05R\x0fextensionNumber\"\xae\x04\n" +
+	"\x18ServerReflectionResponse\x12\x1d\n" +
+	"\n" +
+	"valid_host\x18\x01 \x01(\tR\tvalidHost\x12V\n" +
+	"\x10original_request\x18\x02 \x01(\v2+.grpc.reflection.v1.ServerReflectionRequestR\x0foriginalRequest\x12f\n" +
+	"\x18file_descriptor_response\x18\x04 \x01(\v2*.grpc.reflection.v1.FileDescriptorResponseH\x00R\x16fileDescriptorResponse\x12r\n" +
+	"\x1eall_extension_numbers_response\x18\x05 \x01(\v2+.grpc.reflection.v1.ExtensionNumberResponseH\x00R\x1ballExtensionNumbersResponse\x12_\n" +
+	"\x16list_services_response\x18\x06 \x01(\v2'.grpc.reflection.v1.ListServiceResponseH\x00R\x14listServicesResponse\x12J\n" +
+	"\x0eerror_response\x18\a \x01(\v2!.grpc.reflection.v1.ErrorResponseH\x00R\rerrorResponseB\x12\n" +
+	"\x10message_response\"L\n" +
+	"\x16FileDescriptorResponse\x122\n" +
+	"\x15file_descriptor_proto\x18\x01 \x03(\fR\x13fileDescriptorProto\"j\n" +
+	"\x17ExtensionNumberResponse\x12$\n" +
+	"\x0ebase_type_name\x18\x01 \x01(\tR\fbaseTypeName\x12)\n" +
+	"\x10extension_number\x18\x02 \x03(\x05R\x0fextensionNumber\"T\n" +
+	"\x13ListServiceResponse\x12=\n" +
+	"\aservice\x18\x01 \x03(\v2#.grpc.reflection.v1.ServiceResponseR\aservice\"%\n" +
+	"\x0fServiceResponse\x12\x12\n" +
+	"\x04name\x18\x01 \x01(\tR\x04name\"S\n" +
+	"\rErrorResponse\x12\x1d\n" +
+	"\n" +
+	"error_code\x18\x01 \x01(\x05R\terrorCode\x12#\n" +
+	"\rerror_message\x18\x02 \x01(\tR\ferrorMessage2\x89\x01\n" +
+	"\x10ServerReflection\x12u\n" +
+	"\x14ServerReflectionInfo\x12+.grpc.reflection.v1.ServerReflectionRequest\x1a,.grpc.reflection.v1.ServerReflectionResponse(\x010\x01Bf\n" +
+	"\x15io.grpc.reflection.v1B\x15ServerReflectionProtoP\x01Z4google.golang.org/grpc/reflection/grpc_reflection_v1b\x06proto3"
 
 var (
 	file_grpc_reflection_v1_reflection_proto_rawDescOnce sync.Once
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection_grpc.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection_grpc.pb.go
--- a/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection_grpc.pb.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1/reflection_grpc.pb.go	2026-09-02 10:25:23.893027770 +0000
@@ -21,7 +21,7 @@
 
 // Code generated by protoc-gen-go-grpc. DO NOT EDIT.
 // versions:
-// - protoc-gen-go-grpc v1.5.1
+// - protoc-gen-go-grpc v1.6.2
 // - protoc             v5.27.1
 // source: grpc/reflection/v1/reflection.proto
 
@@ -90,7 +90,7 @@
 type UnimplementedServerReflectionServer struct{}
 
 func (UnimplementedServerReflectionServer) ServerReflectionInfo(grpc.BidiStreamingServer[ServerReflectionRequest, ServerReflectionResponse]) error {
-	return status.Errorf(codes.Unimplemented, "method ServerReflectionInfo not implemented")
+	return status.Error(codes.Unimplemented, "method ServerReflectionInfo not implemented")
 }
 func (UnimplementedServerReflectionServer) testEmbeddedByValue() {}
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection.pb.go
--- a/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection.pb.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection.pb.go	2026-09-02 10:25:23.893027770 +0000
@@ -18,7 +18,7 @@
 
 // Code generated by protoc-gen-go. DO NOT EDIT.
 // versions:
-// 	protoc-gen-go v1.36.5
+// 	protoc-gen-go v1.36.11
 // 	protoc        v5.27.1
 // grpc/reflection/v1alpha/reflection.proto is a deprecated file.
 
@@ -729,122 +729,45 @@
 
 var File_grpc_reflection_v1alpha_reflection_proto protoreflect.FileDescriptor
 
-var file_grpc_reflection_v1alpha_reflection_proto_rawDesc = string([]byte{
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-})
+const file_grpc_reflection_v1alpha_reflection_proto_rawDesc = "" +
+	"\n" +
+	"(grpc/reflection/v1alpha/reflection.proto\x12\x17grpc.reflection.v1alpha\"\xf8\x02\n" +
+	"\x17ServerReflectionRequest\x12\x12\n" +
+	"\x04host\x18\x01 \x01(\tR\x04host\x12*\n" +
+	"\x10file_by_filename\x18\x03 \x01(\tH\x00R\x0efileByFilename\x126\n" +
+	"\x16file_containing_symbol\x18\x04 \x01(\tH\x00R\x14fileContainingSymbol\x12g\n" +
+	"\x19file_containing_extension\x18\x05 \x01(\v2).grpc.reflection.v1alpha.ExtensionRequestH\x00R\x17fileContainingExtension\x12B\n" +
+	"\x1dall_extension_numbers_of_type\x18\x06 \x01(\tH\x00R\x19allExtensionNumbersOfType\x12%\n" +
+	"\rlist_services\x18\a \x01(\tH\x00R\flistServicesB\x11\n" +
+	"\x0fmessage_request\"f\n" +
+	"\x10ExtensionRequest\x12'\n" +
+	"\x0fcontaining_type\x18\x01 \x01(\tR\x0econtainingType\x12)\n" +
+	"\x10extension_number\x18\x02 \x01(\x05R\x0fextensionNumber\"\xc7\x04\n" +
+	"\x18ServerReflectionResponse\x12\x1d\n" +
+	"\n" +
+	"valid_host\x18\x01 \x01(\tR\tvalidHost\x12[\n" +
+	"\x10original_request\x18\x02 \x01(\v20.grpc.reflection.v1alpha.ServerReflectionRequestR\x0foriginalRequest\x12k\n" +
+	"\x18file_descriptor_response\x18\x04 \x01(\v2/.grpc.reflection.v1alpha.FileDescriptorResponseH\x00R\x16fileDescriptorResponse\x12w\n" +
+	"\x1eall_extension_numbers_response\x18\x05 \x01(\v20.grpc.reflection.v1alpha.ExtensionNumberResponseH\x00R\x1ballExtensionNumbersResponse\x12d\n" +
+	"\x16list_services_response\x18\x06 \x01(\v2,.grpc.reflection.v1alpha.ListServiceResponseH\x00R\x14listServicesResponse\x12O\n" +
+	"\x0eerror_response\x18\a \x01(\v2&.grpc.reflection.v1alpha.ErrorResponseH\x00R\rerrorResponseB\x12\n" +
+	"\x10message_response\"L\n" +
+	"\x16FileDescriptorResponse\x122\n" +
+	"\x15file_descriptor_proto\x18\x01 \x03(\fR\x13fileDescriptorProto\"j\n" +
+	"\x17ExtensionNumberResponse\x12$\n" +
+	"\x0ebase_type_name\x18\x01 \x01(\tR\fbaseTypeName\x12)\n" +
+	"\x10extension_number\x18\x02 \x03(\x05R\x0fextensionNumber\"Y\n" +
+	"\x13ListServiceResponse\x12B\n" +
+	"\aservice\x18\x01 \x03(\v2(.grpc.reflection.v1alpha.ServiceResponseR\aservice\"%\n" +
+	"\x0fServiceResponse\x12\x12\n" +
+	"\x04name\x18\x01 \x01(\tR\x04name\"S\n" +
+	"\rErrorResponse\x12\x1d\n" +
+	"\n" +
+	"error_code\x18\x01 \x01(\x05R\terrorCode\x12#\n" +
+	"\rerror_message\x18\x02 \x01(\tR\ferrorMessage2\x93\x01\n" +
+	"\x10ServerReflection\x12\x7f\n" +
+	"\x14ServerReflectionInfo\x120.grpc.reflection.v1alpha.ServerReflectionRequest\x1a1.grpc.reflection.v1alpha.ServerReflectionResponse(\x010\x01Bs\n" +
+	"\x1aio.grpc.reflection.v1alphaB\x15ServerReflectionProtoP\x01Z9google.golang.org/grpc/reflection/grpc_reflection_v1alpha\xb8\x01\x01b\x06proto3"
 
 var (
 	file_grpc_reflection_v1alpha_reflection_proto_rawDescOnce sync.Once
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection_grpc.pb.go /work/src/kubernetes/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection_grpc.pb.go
--- a/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection_grpc.pb.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/reflection/grpc_reflection_v1alpha/reflection_grpc.pb.go	2026-09-02 10:25:23.893027770 +0000
@@ -18,7 +18,7 @@
 
 // Code generated by protoc-gen-go-grpc. DO NOT EDIT.
 // versions:
-// - protoc-gen-go-grpc v1.5.1
+// - protoc-gen-go-grpc v1.6.2
 // - protoc             v5.27.1
 // grpc/reflection/v1alpha/reflection.proto is a deprecated file.
 
@@ -87,7 +87,7 @@
 type UnimplementedServerReflectionServer struct{}
 
 func (UnimplementedServerReflectionServer) ServerReflectionInfo(grpc.BidiStreamingServer[ServerReflectionRequest, ServerReflectionResponse]) error {
-	return status.Errorf(codes.Unimplemented, "method ServerReflectionInfo not implemented")
+	return status.Error(codes.Unimplemented, "method ServerReflectionInfo not implemented")
 }
 func (UnimplementedServerReflectionServer) testEmbeddedByValue() {}
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/resolver/map.go /work/src/kubernetes/vendor/google.golang.org/grpc/resolver/map.go
--- a/vendor/google.golang.org/grpc/resolver/map.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/resolver/map.go	2026-09-02 10:25:23.893027770 +0000
@@ -20,6 +20,7 @@
 
 import (
 	"encoding/base64"
+	"iter"
 	"sort"
 	"strings"
 )
@@ -135,6 +136,7 @@
 }
 
 // Keys returns a slice of all current map keys.
+// Deprecated: Use AddressMapV2.All() instead.
 func (a *AddressMapV2[T]) Keys() []Address {
 	ret := make([]Address, 0, a.Len())
 	for _, entryList := range a.m {
@@ -146,6 +148,7 @@
 }
 
 // Values returns a slice of all current map values.
+// Deprecated: Use AddressMapV2.All() instead.
 func (a *AddressMapV2[T]) Values() []T {
 	ret := make([]T, 0, a.Len())
 	for _, entryList := range a.m {
@@ -156,6 +159,19 @@
 	return ret
 }
 
+// All returns an iterator over all elements.
+func (a *AddressMapV2[T]) All() iter.Seq2[Address, T] {
+	return func(yield func(Address, T) bool) {
+		for _, entryList := range a.m {
+			for _, entry := range entryList {
+				if !yield(entry.addr, entry.value) {
+					return
+				}
+			}
+		}
+	}
+}
+
 type endpointMapKey string
 
 // EndpointMap is a map of endpoints to arbitrary values keyed on only the
@@ -223,6 +239,7 @@
 // the unordered set of addresses. Thus, endpoint information returned is not
 // the full endpoint data (drops duplicated addresses and attributes) but can be
 // used for EndpointMap accesses.
+// Deprecated: Use EndpointMap.All() instead.
 func (em *EndpointMap[T]) Keys() []Endpoint {
 	ret := make([]Endpoint, 0, len(em.endpoints))
 	for _, en := range em.endpoints {
@@ -232,6 +249,7 @@
 }
 
 // Values returns a slice of all current map values.
+// Deprecated: Use EndpointMap.All() instead.
 func (em *EndpointMap[T]) Values() []T {
 	ret := make([]T, 0, len(em.endpoints))
 	for _, val := range em.endpoints {
@@ -240,6 +258,22 @@
 	return ret
 }
 
+// All returns an iterator over all elements.
+// The map keys are endpoints specifying the addresses present in the endpoint
+// map, in which uniqueness is determined by the unordered set of addresses.
+// Thus, endpoint information returned is not the full endpoint data (drops
+// duplicated addresses and attributes) but can be used for EndpointMap
+// accesses.
+func (em *EndpointMap[T]) All() iter.Seq2[Endpoint, T] {
+	return func(yield func(Endpoint, T) bool) {
+		for _, en := range em.endpoints {
+			if !yield(en.decodedKey, en.value) {
+				return
+			}
+		}
+	}
+}
+
 // Delete removes the specified endpoint from the map.
 func (em *EndpointMap[T]) Delete(e Endpoint) {
 	en := encodeEndpoint(e)
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/resolver/resolver.go /work/src/kubernetes/vendor/google.golang.org/grpc/resolver/resolver.go
--- a/vendor/google.golang.org/grpc/resolver/resolver.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/resolver/resolver.go	2026-09-02 10:25:23.893027770 +0000
@@ -182,6 +182,7 @@
 
 // An Endpoint is one network endpoint, or server, which may have multiple
 // addresses with which it can be accessed.
+// TODO(i/8773) : make resolver.Endpoint and resolver.Address immutable
 type Endpoint struct {
 	// Addresses contains a list of addresses used to access this endpoint.
 	Addresses []Address
@@ -332,6 +333,11 @@
 	// OverrideAuthority returns the authority to use for a ClientConn with the
 	// given target. The implementation must generate it without blocking,
 	// typically in line, and must keep it unchanged.
+	//
+	// The returned string must be a valid ":authority" header value, i.e. be
+	// encoded according to
+	// [RFC3986](https://datatracker.ietf.org/doc/html/rfc3986#section-3.2) as
+	// necessary.
 	OverrideAuthority(Target) string
 }
 
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/resolver_wrapper.go /work/src/kubernetes/vendor/google.golang.org/grpc/resolver_wrapper.go
--- a/vendor/google.golang.org/grpc/resolver_wrapper.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/resolver_wrapper.go	2026-09-02 10:25:23.873027742 +0000
@@ -69,6 +69,7 @@
 	errCh := make(chan error)
 	ccr.serializer.TrySchedule(func(ctx context.Context) {
 		if ctx.Err() != nil {
+			errCh <- ctx.Err()
 			return
 		}
 		opts := resolver.BuildOptions{
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/rpc_util.go /work/src/kubernetes/vendor/google.golang.org/grpc/rpc_util.go
--- a/vendor/google.golang.org/grpc/rpc_util.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/rpc_util.go	2026-09-02 10:25:23.873027742 +0000
@@ -33,6 +33,8 @@
 	"google.golang.org/grpc/credentials"
 	"google.golang.org/grpc/encoding"
 	"google.golang.org/grpc/encoding/proto"
+	"google.golang.org/grpc/internal"
+	"google.golang.org/grpc/internal/grpcutil"
 	"google.golang.org/grpc/internal/transport"
 	"google.golang.org/grpc/mem"
 	"google.golang.org/grpc/metadata"
@@ -41,6 +43,10 @@
 	"google.golang.org/grpc/status"
 )
 
+func init() {
+	internal.AcceptCompressors = acceptCompressors
+}
+
 // Compressor defines the interface gRPC uses to compress a message.
 //
 // Deprecated: use package encoding.
@@ -122,6 +128,16 @@
 }
 
 func (d *gzipDecompressor) Do(r io.Reader) ([]byte, error) {
+	return d.doWithMaxSize(r, math.MaxInt64)
+}
+
+// doWithMaxSize behaves like Do but caps the size of the decompressed
+// payload at maxMessageSize+1 bytes. The Decompressor interface does not
+// allow extra parameters, so callers inside the package type-assert to
+// *gzipDecompressor to invoke this method directly. The +1 byte makes it
+// possible for the caller to detect that the limit was exceeded and
+// return ResourceExhausted instead of materializing an unbounded payload.
+func (d *gzipDecompressor) doWithMaxSize(r io.Reader, maxMessageSize int64) ([]byte, error) {
 	var z *gzip.Reader
 	switch maybeZ := d.pool.Get().(type) {
 	case nil:
@@ -142,7 +158,11 @@
 		z.Close()
 		d.pool.Put(z)
 	}()
-	return io.ReadAll(z)
+	var src io.Reader = z
+	if maxMessageSize < math.MaxInt64 {
+		src = io.LimitReader(z, maxMessageSize+1)
+	}
+	return io.ReadAll(src)
 }
 
 func (d *gzipDecompressor) Type() string {
@@ -151,15 +171,32 @@
 
 // callInfo contains all related configuration and information about an RPC.
 type callInfo struct {
-	compressorName        string
-	failFast              bool
-	maxReceiveMessageSize *int
-	maxSendMessageSize    *int
-	creds                 credentials.PerRPCCredentials
-	contentSubtype        string
-	codec                 baseCodec
-	maxRetryRPCBufferSize int
-	onFinish              []func(err error)
+	compressorName              string
+	failFast                    bool
+	maxReceiveMessageSize       *int
+	maxSendMessageSize          *int
+	creds                       credentials.PerRPCCredentials
+	contentSubtype              string
+	codec                       baseCodec
+	maxRetryRPCBufferSize       int
+	onFinish                    []func(err error)
+	authority                   string
+	acceptedResponseCompressors []string
+}
+
+func acceptedCompressorAllows(allowed []string, name string) bool {
+	if allowed == nil {
+		return true
+	}
+	if name == "" || name == encoding.Identity {
+		return true
+	}
+	for _, a := range allowed {
+		if a == name {
+			return true
+		}
+	}
+	return false
 }
 
 func defaultCallInfo() *callInfo {
@@ -169,6 +206,29 @@
 	}
 }
 
+func newAcceptedCompressionConfig(names []string) ([]string, error) {
+	if len(names) == 0 {
+		return nil, nil
+	}
+	var allowed []string
+	seen := make(map[string]struct{}, len(names))
+	for _, name := range names {
+		name = strings.TrimSpace(name)
+		if name == "" || name == encoding.Identity {
+			continue
+		}
+		if !grpcutil.IsCompressorNameRegistered(name) {
+			return nil, status.Errorf(codes.InvalidArgument, "grpc: compressor %q is not registered", name)
+		}
+		if _, dup := seen[name]; dup {
+			continue
+		}
+		seen[name] = struct{}{}
+		allowed = append(allowed, name)
+	}
+	return allowed, nil
+}
+
 // CallOption configures a Call before it starts or extracts information from
 // a Call after it completes.
 type CallOption interface {
@@ -365,6 +425,36 @@
 }
 func (o MaxRecvMsgSizeCallOption) after(*callInfo, *csAttempt) {}
 
+// CallAuthority returns a CallOption that sets the HTTP/2 :authority header of
+// an RPC to the specified value. When using CallAuthority, the credentials in
+// use must implement the AuthorityValidator interface.
+//
+// # Experimental
+//
+// Notice: This API is EXPERIMENTAL and may be changed or removed in a later
+// release.
+func CallAuthority(authority string) CallOption {
+	return AuthorityOverrideCallOption{Authority: authority}
+}
+
+// AuthorityOverrideCallOption is a CallOption that indicates the HTTP/2
+// :authority header value to use for the call.
+//
+// # Experimental
+//
+// Notice: This type is EXPERIMENTAL and may be changed or removed in a later
+// release.
+type AuthorityOverrideCallOption struct {
+	Authority string
+}
+
+func (o AuthorityOverrideCallOption) before(c *callInfo) error {
+	c.authority = o.Authority
+	return nil
+}
+
+func (o AuthorityOverrideCallOption) after(*callInfo, *csAttempt) {}
+
 // MaxCallSendMsgSize returns a CallOption which sets the maximum message size
 // in bytes the client can send. If this is not set, gRPC uses the default
 // `math.MaxInt32`.
@@ -440,6 +530,31 @@
 }
 func (o CompressorCallOption) after(*callInfo, *csAttempt) {}
 
+// acceptCompressors returns a CallOption that limits the compression algorithms
+// advertised in the grpc-accept-encoding header for response messages.
+// Compression algorithms not in the provided list will not be advertised, and
+// responses compressed with non-listed algorithms will be rejected.
+func acceptCompressors(names ...string) CallOption {
+	cp := append([]string(nil), names...)
+	return acceptCompressorsCallOption{names: cp}
+}
+
+// acceptCompressorsCallOption is a CallOption that limits response compression.
+type acceptCompressorsCallOption struct {
+	names []string
+}
+
+func (o acceptCompressorsCallOption) before(c *callInfo) error {
+	allowed, err := newAcceptedCompressionConfig(o.names)
+	if err != nil {
+		return err
+	}
+	c.acceptedResponseCompressors = allowed
+	return nil
+}
+
+func (acceptCompressorsCallOption) after(*callInfo, *csAttempt) {}
+
 // CallContentSubtype returns a CallOption that will set the content-subtype
 // for a call. For example, if content-subtype is "json", the Content-Type over
 // the wire will be "application/grpc+json". The content-subtype is converted
@@ -626,8 +741,20 @@
 	Read(n int) (mem.BufferSlice, error)
 }
 
+// noCopy may be embedded into structs which must not be copied
+// after the first use.
+//
+// See https://golang.org/issues/8005#issuecomment-190753527
+// for details.
+type noCopy struct {
+}
+
+func (*noCopy) Lock()   {}
+func (*noCopy) Unlock() {}
+
 // parser reads complete gRPC messages from the underlying reader.
 type parser struct {
+	_ noCopy
 	// r is the underlying reader.
 	// See the comment on recvMsg for the permissible
 	// error types.
@@ -717,15 +844,15 @@
 	if compressor != nil {
 		z, err := compressor.Compress(w)
 		if err != nil {
-			return nil, 0, wrapErr(err)
+			return nil, compressionNone, wrapErr(err)
 		}
 		for _, b := range in {
 			if _, err := z.Write(b.ReadOnlyData()); err != nil {
-				return nil, 0, wrapErr(err)
+				return nil, compressionNone, wrapErr(err)
 			}
 		}
 		if err := z.Close(); err != nil {
-			return nil, 0, wrapErr(err)
+			return nil, compressionNone, wrapErr(err)
 		}
 	} else {
 		// This is obviously really inefficient since it fully materializes the data, but
@@ -735,7 +862,7 @@
 		buf := in.MaterializeToBuffer(pool)
 		defer buf.Free()
 		if err := cp.Do(w, buf.ReadOnlyData()); err != nil {
-			return nil, 0, wrapErr(err)
+			return nil, compressionNone, wrapErr(err)
 		}
 	}
 	return out, compressionMade, nil
@@ -814,8 +941,7 @@
 // the buffer is no longer needed.
 // TODO: Refactor this function to reduce the number of arguments.
 // See: https://google.github.io/styleguide/go/best-practices.html#function-argument-lists
-func recvAndDecompress(p *parser, s recvCompressor, dc Decompressor, maxReceiveMessageSize int, payInfo *payloadInfo, compressor encoding.Compressor, isServer bool,
-) (out mem.BufferSlice, err error) {
+func recvAndDecompress(p *parser, s recvCompressor, dc Decompressor, maxReceiveMessageSize int, payInfo *payloadInfo, compressor encoding.Compressor, isServer bool) (out mem.BufferSlice, err error) {
 	pf, compressed, err := p.recvMsg(maxReceiveMessageSize)
 	if err != nil {
 		return nil, err
@@ -849,26 +975,50 @@
 	return out, nil
 }
 
-// decompress processes the given data by decompressing it using either a custom decompressor or a standard compressor.
-// If a custom decompressor is provided, it takes precedence. The function validates that the decompressed data
-// does not exceed the specified maximum size and returns an error if this limit is exceeded.
-// On success, it returns the decompressed data. Otherwise, it returns an error if decompression fails or the data exceeds the size limit.
+// decompress processes the given data by decompressing it using either
+// a custom decompressor or a standard compressor. If a custom decompressor
+// is provided, it takes precedence. The function validates that
+// the decompressed data does not exceed the specified maximum size and returns
+// an error if this limit is exceeded. On success, it returns the decompressed
+// data. Otherwise, it returns an error if decompression fails or the data
+// exceeds the size limit.
 func decompress(compressor encoding.Compressor, d mem.BufferSlice, dc Decompressor, maxReceiveMessageSize int, pool mem.BufferPool) (mem.BufferSlice, error) {
 	if dc != nil {
-		uncompressed, err := dc.Do(d.Reader())
+		r := d.Reader()
+		// For the built-in gzip decompressor, bound the decompressed output
+		// at maxReceiveMessageSize+1 so that a small but highly compressed
+		// payload (a "zip bomb") cannot expand to gigabytes in memory before
+		// the post-decompression size check below has a chance to fire. The
+		// Decompressor interface does not accept an extra size parameter,
+		// so we type-assert to invoke a size-aware helper. Third-party
+		// Decompressor implementations keep the original Do behavior.
+		var uncompressed []byte
+		var err error
+		if gd, ok := dc.(*gzipDecompressor); ok {
+			uncompressed, err = gd.doWithMaxSize(r, int64(maxReceiveMessageSize))
+		} else {
+			uncompressed, err = dc.Do(r)
+		}
 		if err != nil {
+			r.Close() // ensure buffers are reused
 			return nil, status.Errorf(codes.Internal, "grpc: failed to decompress the received message: %v", err)
 		}
 		if len(uncompressed) > maxReceiveMessageSize {
+			r.Close() // ensure buffers are reused
 			return nil, status.Errorf(codes.ResourceExhausted, "grpc: message after decompression larger than max (%d vs. %d)", len(uncompressed), maxReceiveMessageSize)
 		}
 		return mem.BufferSlice{mem.SliceBuffer(uncompressed)}, nil
 	}
 	if compressor != nil {
-		dcReader, err := compressor.Decompress(d.Reader())
+		r := d.Reader()
+		dcReader, err := compressor.Decompress(r)
 		if err != nil {
+			r.Close() // ensure buffers are reused
 			return nil, status.Errorf(codes.Internal, "grpc: failed to decompress the message: %v", err)
 		}
+		if closer, ok := dcReader.(io.Closer); ok {
+			defer closer.Close()
+		}
 
 		// Read at most one byte more than the limit from the decompressor.
 		// Unless the limit is MaxInt64, in which case, that's impossible, so
@@ -878,11 +1028,13 @@
 		}
 		out, err := mem.ReadAll(dcReader, pool)
 		if err != nil {
+			r.Close() // ensure buffers are reused
 			out.Free()
 			return nil, status.Errorf(codes.Internal, "grpc: failed to read decompressed data: %v", err)
 		}
 
 		if out.Len() > maxReceiveMessageSize {
+			r.Close() // ensure buffers are reused
 			out.Free()
 			return nil, status.Errorf(codes.ResourceExhausted, "grpc: received message after decompression larger than max %d", maxReceiveMessageSize)
 		}
@@ -918,7 +1070,7 @@
 // Information about RPC
 type rpcInfo struct {
 	failfast      bool
-	preloaderInfo *compressorInfo
+	preloaderInfo compressorInfo
 }
 
 // Information about Preloader
@@ -937,7 +1089,7 @@
 func newContextWithRPCInfo(ctx context.Context, failfast bool, codec baseCodec, cp Compressor, comp encoding.Compressor) context.Context {
 	return context.WithValue(ctx, rpcInfoContextKey{}, &rpcInfo{
 		failfast: failfast,
-		preloaderInfo: &compressorInfo{
+		preloaderInfo: compressorInfo{
 			codec: codec,
 			cp:    cp,
 			comp:  comp,
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/server.go /work/src/kubernetes/vendor/google.golang.org/grpc/server.go
--- a/vendor/google.golang.org/grpc/server.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/server.go	2026-09-02 10:25:23.873027742 +0000
@@ -28,6 +28,7 @@
 	"net/http"
 	"reflect"
 	"runtime"
+	"runtime/pprof"
 	"strings"
 	"sync"
 	"sync/atomic"
@@ -42,6 +43,7 @@
 	"google.golang.org/grpc/internal"
 	"google.golang.org/grpc/internal/binarylog"
 	"google.golang.org/grpc/internal/channelz"
+	"google.golang.org/grpc/internal/envconfig"
 	"google.golang.org/grpc/internal/grpcsync"
 	"google.golang.org/grpc/internal/grpcutil"
 	istats "google.golang.org/grpc/internal/stats"
@@ -124,7 +126,8 @@
 
 // Server is a gRPC server to serve RPC requests.
 type Server struct {
-	opts serverOptions
+	opts         serverOptions
+	statsHandler stats.Handler
 
 	mu  sync.Mutex // guards following
 	lis map[net.Listener]bool
@@ -179,6 +182,7 @@
 	numServerWorkers      uint32
 	bufferPool            mem.BufferPool
 	waitForHandlers       bool
+	staticWindowSize      bool
 }
 
 var defaultServerOptions = serverOptions{
@@ -187,6 +191,7 @@
 	maxSendMessageSize:    defaultServerMaxSendMessageSize,
 	connectionTimeout:     120 * time.Second,
 	writeBufferSize:       defaultWriteBufSize,
+	sharedWriteBuffer:     true,
 	readBufferSize:        defaultReadBufSize,
 	bufferPool:            mem.DefaultBufferPool(),
 }
@@ -244,10 +249,8 @@
 // If this option is set to true every connection will release the buffer after
 // flushing the data on the wire.
 //
-// # Experimental
-//
-// Notice: This API is EXPERIMENTAL and may be changed or removed in a
-// later release.
+// Deprecated: shared write buffer is enabled by default. SharedWriteBuffer
+// will be removed in a future release.
 func SharedWriteBuffer(val bool) ServerOption {
 	return newFuncServerOption(func(o *serverOptions) {
 		o.sharedWriteBuffer = val
@@ -279,6 +282,7 @@
 func InitialWindowSize(s int32) ServerOption {
 	return newFuncServerOption(func(o *serverOptions) {
 		o.initialWindowSize = s
+		o.staticWindowSize = true
 	})
 }
 
@@ -287,6 +291,45 @@
 func InitialConnWindowSize(s int32) ServerOption {
 	return newFuncServerOption(func(o *serverOptions) {
 		o.initialConnWindowSize = s
+		o.staticWindowSize = true
+	})
+}
+
+// StaticStreamWindowSize returns a ServerOption to set the initial stream
+// window size to the value provided and disables dynamic flow control.
+// The lower bound for window size is 64K and any value smaller than that
+// will be ignored.
+//
+// Note that this also disables dynamic flow control for the connection,
+// falling back to a default static connection-level window of 64KB. To
+// use a larger connection-level window, you must also use the
+// [StaticConnWindowSize] ServerOption.
+//
+// Most users should not configure static flow control windows unless
+// operating in a memory-constrained environment.
+func StaticStreamWindowSize(s int32) ServerOption {
+	return newFuncServerOption(func(o *serverOptions) {
+		o.initialWindowSize = s
+		o.staticWindowSize = true
+	})
+}
+
+// StaticConnWindowSize returns a ServerOption to set the initial connection
+// window size to the value provided and disables dynamic flow control.
+// The lower bound for window size is 64K and any value smaller than that
+// will be ignored.
+//
+// Note that this also disables dynamic flow control for individual streams,
+// falling back to a default static connection-level window of 64KB. To
+// explicitly configure the stream-level window size, you must also use the
+// [StaticStreamWindowSize] ServerOption.
+//
+// Most users should not configure static flow control windows unless
+// operating in a memory-constrained environment.
+func StaticConnWindowSize(s int32) ServerOption {
+	return newFuncServerOption(func(o *serverOptions) {
+		o.initialConnWindowSize = s
+		o.staticWindowSize = true
 	})
 }
 
@@ -667,13 +710,14 @@
 		o.apply(&opts)
 	}
 	s := &Server{
-		lis:      make(map[net.Listener]bool),
-		opts:     opts,
-		conns:    make(map[string]map[transport.ServerTransport]bool),
-		services: make(map[string]*serviceInfo),
-		quit:     grpcsync.NewEvent(),
-		done:     grpcsync.NewEvent(),
-		channelz: channelz.RegisterServer(""),
+		lis:          make(map[net.Listener]bool),
+		opts:         opts,
+		statsHandler: istats.NewCombinedHandler(opts.statsHandlers...),
+		conns:        make(map[string]map[transport.ServerTransport]bool),
+		services:     make(map[string]*serviceInfo),
+		quit:         grpcsync.NewEvent(),
+		done:         grpcsync.NewEvent(),
+		channelz:     channelz.RegisterServer(""),
 	}
 	chainUnaryServerInterceptors(s)
 	chainStreamServerInterceptors(s)
@@ -896,9 +940,7 @@
 					tempDelay = 5 * time.Millisecond
 				} else {
 					tempDelay *= 2
-				}
-				if max := 1 * time.Second; tempDelay > max {
-					tempDelay = max
+					tempDelay = min(tempDelay, 1*time.Second)
 				}
 				s.mu.Lock()
 				s.printf("Accept error: %v; retrying in %v", err, tempDelay)
@@ -974,7 +1016,7 @@
 		ConnectionTimeout:     s.opts.connectionTimeout,
 		Credentials:           s.opts.creds,
 		InTapHandle:           s.opts.inTapHandle,
-		StatsHandlers:         s.opts.statsHandlers,
+		StatsHandler:          s.statsHandler,
 		KeepaliveParams:       s.opts.keepaliveParams,
 		KeepalivePolicy:       s.opts.keepalivePolicy,
 		InitialWindowSize:     s.opts.initialWindowSize,
@@ -986,6 +1028,7 @@
 		MaxHeaderListSize:     s.opts.maxHeaderListSize,
 		HeaderTableSize:       s.opts.headerTableSize,
 		BufferPool:            s.opts.bufferPool,
+		StaticWindowSize:      s.opts.staticWindowSize,
 	}
 	st, err := transport.NewServerTransport(c, config)
 	if err != nil {
@@ -1010,18 +1053,18 @@
 func (s *Server) serveStreams(ctx context.Context, st transport.ServerTransport, rawConn net.Conn) {
 	ctx = transport.SetConnection(ctx, rawConn)
 	ctx = peer.NewContext(ctx, st.Peer())
-	for _, sh := range s.opts.statsHandlers {
-		ctx = sh.TagConn(ctx, &stats.ConnTagInfo{
+	if s.statsHandler != nil {
+		ctx = s.statsHandler.TagConn(ctx, &stats.ConnTagInfo{
 			RemoteAddr: st.Peer().Addr,
 			LocalAddr:  st.Peer().LocalAddr,
 		})
-		sh.HandleConn(ctx, &stats.ConnBegin{})
+		s.statsHandler.HandleConn(ctx, &stats.ConnBegin{})
 	}
 
 	defer func() {
 		st.Close(errors.New("finished serving streams for the server transport"))
-		for _, sh := range s.opts.statsHandlers {
-			sh.HandleConn(ctx, &stats.ConnEnd{})
+		if s.statsHandler != nil {
+			s.statsHandler.HandleConn(ctx, &stats.ConnEnd{})
 		}
 	}()
 
@@ -1078,7 +1121,7 @@
 // Notice: This API is EXPERIMENTAL and may be changed or removed in a
 // later release.
 func (s *Server) ServeHTTP(w http.ResponseWriter, r *http.Request) {
-	st, err := transport.NewServerHandlerTransport(w, r, s.opts.statsHandlers, s.opts.bufferPool)
+	st, err := transport.NewServerHandlerTransport(w, r, s.statsHandler, s.opts.bufferPool)
 	if err != nil {
 		// Errors returned from transport.NewServerHandlerTransport have
 		// already been written to w.
@@ -1172,12 +1215,8 @@
 		return status.Errorf(codes.ResourceExhausted, "grpc: trying to send message larger than max (%d vs. %d)", payloadLen, s.opts.maxSendMessageSize)
 	}
 	err = stream.Write(hdr, payload, opts)
-	if err == nil {
-		if len(s.opts.statsHandlers) != 0 {
-			for _, sh := range s.opts.statsHandlers {
-				sh.HandleRPC(ctx, outPayload(false, msg, dataLen, payloadLen, time.Now()))
-			}
-		}
+	if err == nil && s.statsHandler != nil {
+		s.statsHandler.HandleRPC(ctx, outPayload(false, msg, dataLen, payloadLen, time.Now()))
 	}
 	return err
 }
@@ -1219,16 +1258,15 @@
 }
 
 func (s *Server) processUnaryRPC(ctx context.Context, stream *transport.ServerStream, info *serviceInfo, md *MethodDesc, trInfo *traceInfo) (err error) {
-	shs := s.opts.statsHandlers
-	if len(shs) != 0 || trInfo != nil || channelz.IsOn() {
+	sh := s.statsHandler
+	if sh != nil || trInfo != nil || channelz.IsOn() {
 		if channelz.IsOn() {
 			s.incrCallsStarted()
 		}
 		var statsBegin *stats.Begin
-		for _, sh := range shs {
-			beginTime := time.Now()
+		if sh != nil {
 			statsBegin = &stats.Begin{
-				BeginTime:      beginTime,
+				BeginTime:      time.Now(),
 				IsClientStream: false,
 				IsServerStream: false,
 			}
@@ -1256,7 +1294,7 @@
 				trInfo.tr.Finish()
 			}
 
-			for _, sh := range shs {
+			if sh != nil {
 				end := &stats.End{
 					BeginTime: statsBegin.BeginTime,
 					EndTime:   time.Now(),
@@ -1353,7 +1391,7 @@
 	}
 
 	var payInfo *payloadInfo
-	if len(shs) != 0 || len(binlogs) != 0 {
+	if sh != nil || len(binlogs) != 0 {
 		payInfo = &payloadInfo{}
 		defer payInfo.free()
 	}
@@ -1379,7 +1417,7 @@
 			return status.Errorf(codes.Internal, "grpc: error unmarshalling request: %v", err)
 		}
 
-		for _, sh := range shs {
+		if sh != nil {
 			sh.HandleRPC(ctx, &stats.InPayload{
 				RecvTime:         time.Now(),
 				Payload:          v,
@@ -1553,32 +1591,30 @@
 	if channelz.IsOn() {
 		s.incrCallsStarted()
 	}
-	shs := s.opts.statsHandlers
+	sh := s.statsHandler
 	var statsBegin *stats.Begin
-	if len(shs) != 0 {
-		beginTime := time.Now()
+	if sh != nil {
 		statsBegin = &stats.Begin{
-			BeginTime:      beginTime,
+			BeginTime:      time.Now(),
 			IsClientStream: sd.ClientStreams,
 			IsServerStream: sd.ServerStreams,
 		}
-		for _, sh := range shs {
-			sh.HandleRPC(ctx, statsBegin)
-		}
+		sh.HandleRPC(ctx, statsBegin)
 	}
 	ctx = NewContextWithServerTransportStream(ctx, stream)
 	ss := &serverStream{
 		ctx:                   ctx,
 		s:                     stream,
-		p:                     &parser{r: stream, bufferPool: s.opts.bufferPool},
+		p:                     parser{r: stream, bufferPool: s.opts.bufferPool},
 		codec:                 s.getCodec(stream.ContentSubtype()),
+		desc:                  sd,
 		maxReceiveMessageSize: s.opts.maxReceiveMessageSize,
 		maxSendMessageSize:    s.opts.maxSendMessageSize,
 		trInfo:                trInfo,
-		statsHandler:          shs,
+		statsHandler:          sh,
 	}
 
-	if len(shs) != 0 || trInfo != nil || channelz.IsOn() {
+	if sh != nil || trInfo != nil || channelz.IsOn() {
 		// See comment in processUnaryRPC on defers.
 		defer func() {
 			if trInfo != nil {
@@ -1592,7 +1628,7 @@
 				ss.mu.Unlock()
 			}
 
-			if len(shs) != 0 {
+			if sh != nil {
 				end := &stats.End{
 					BeginTime: statsBegin.BeginTime,
 					EndTime:   time.Now(),
@@ -1600,9 +1636,7 @@
 				if err != nil && err != io.EOF {
 					end.Error = toRPCErr(err)
 				}
-				for _, sh := range shs {
-					sh.HandleRPC(ctx, end)
-				}
+				sh.HandleRPC(ctx, end)
 			}
 
 			if channelz.IsOn() {
@@ -1745,9 +1779,33 @@
 	return ss.s.WriteStatus(statusOK)
 }
 
+func (s *Server) handleMalformedMethodName(stream *transport.ServerStream, ti *traceInfo) {
+	if ti != nil {
+		ti.tr.LazyLog(&fmtStringer{"Malformed method name %q", []any{stream.Method()}}, true)
+		ti.tr.SetError()
+	}
+	errDesc := fmt.Sprintf("malformed method name: %q", stream.Method())
+	if err := stream.WriteStatus(status.New(codes.Unimplemented, errDesc)); err != nil {
+		if ti != nil {
+			ti.tr.LazyLog(&fmtStringer{"%v", []any{err}}, true)
+			ti.tr.SetError()
+		}
+		channelz.Warningf(logger, s.channelz, "grpc: Server.handleStream failed to write status: %v", err)
+	}
+	if ti != nil {
+		ti.tr.Finish()
+	}
+}
+
 func (s *Server) handleStream(t transport.ServerTransport, stream *transport.ServerStream) {
 	ctx := stream.Context()
 	ctx = contextWithServer(ctx, s)
+	if envconfig.LabelServerGoroutines&envconfig.GoroutineLabelServerMethod != 0 {
+		// This method always runs in its own goroutine, so we can set a
+		// goroutine label without needing to restore a previous context.
+		ctx = pprof.WithLabels(ctx, pprof.Labels("grpc.method", stream.Method()))
+		pprof.SetGoroutineLabels(ctx)
+	}
 	var ti *traceInfo
 	if EnableTracing {
 		tr := newTrace("grpc.Recv."+methodFamily(stream.Method()), stream.Method())
@@ -1764,46 +1822,31 @@
 		}
 	}
 
-	sm := stream.Method()
-	if sm != "" && sm[0] == '/' {
-		sm = sm[1:]
+	sm, found := strings.CutPrefix(stream.Method(), "/")
+	if !found {
+		s.handleMalformedMethodName(stream, ti)
+		return
 	}
 	pos := strings.LastIndex(sm, "/")
 	if pos == -1 {
-		if ti != nil {
-			ti.tr.LazyLog(&fmtStringer{"Malformed method name %q", []any{sm}}, true)
-			ti.tr.SetError()
-		}
-		errDesc := fmt.Sprintf("malformed method name: %q", stream.Method())
-		if err := stream.WriteStatus(status.New(codes.Unimplemented, errDesc)); err != nil {
-			if ti != nil {
-				ti.tr.LazyLog(&fmtStringer{"%v", []any{err}}, true)
-				ti.tr.SetError()
-			}
-			channelz.Warningf(logger, s.channelz, "grpc: Server.handleStream failed to write status: %v", err)
-		}
-		if ti != nil {
-			ti.tr.Finish()
-		}
+		s.handleMalformedMethodName(stream, ti)
 		return
 	}
 	service := sm[:pos]
 	method := sm[pos+1:]
 
 	// FromIncomingContext is expensive: skip if there are no statsHandlers
-	if len(s.opts.statsHandlers) > 0 {
+	if s.statsHandler != nil {
 		md, _ := metadata.FromIncomingContext(ctx)
-		for _, sh := range s.opts.statsHandlers {
-			ctx = sh.TagRPC(ctx, &stats.RPCTagInfo{FullMethodName: stream.Method()})
-			sh.HandleRPC(ctx, &stats.InHeader{
-				FullMethod:  stream.Method(),
-				RemoteAddr:  t.Peer().Addr,
-				LocalAddr:   t.Peer().LocalAddr,
-				Compression: stream.RecvCompress(),
-				WireLength:  stream.HeaderWireLength(),
-				Header:      md,
-			})
-		}
+		ctx = s.statsHandler.TagRPC(ctx, &stats.RPCTagInfo{FullMethodName: stream.Method()})
+		s.statsHandler.HandleRPC(ctx, &stats.InHeader{
+			FullMethod:  stream.Method(),
+			RemoteAddr:  t.Peer().Addr,
+			LocalAddr:   t.Peer().LocalAddr,
+			Compression: stream.RecvCompress(),
+			WireLength:  stream.HeaderWireLength(),
+			Header:      md,
+		})
 	}
 	// To have calls in stream callouts work. Will delete once all stats handler
 	// calls come from the gRPC layer.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/stats/handlers.go /work/src/kubernetes/vendor/google.golang.org/grpc/stats/handlers.go
--- a/vendor/google.golang.org/grpc/stats/handlers.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/stats/handlers.go	2026-09-02 10:25:23.893027770 +0000
@@ -38,6 +38,15 @@
 	// FailFast indicates if this RPC is failfast.
 	// This field is only valid on client side, it's always false on server side.
 	FailFast bool
+	// NameResolutionDelay indicates if the RPC needed to wait for the
+	// initial name resolver update before it could begin. This should only
+	// happen if the channel is IDLE when the RPC is started.  Note that
+	// all retry or hedging attempts for an RPC that experienced a delay
+	// will have it set.
+	//
+	// This field is only valid on the client side; it is always false on
+	// the server side.
+	NameResolutionDelay bool
 }
 
 // Handler defines the interface for the related stats handling (e.g., RPCs, connections).
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/stats/stats.go /work/src/kubernetes/vendor/google.golang.org/grpc/stats/stats.go
--- a/vendor/google.golang.org/grpc/stats/stats.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/stats/stats.go	2026-09-02 10:25:23.893027770 +0000
@@ -64,15 +64,21 @@
 
 func (s *Begin) isRPCStats() {}
 
-// PickerUpdated indicates that the LB policy provided a new picker while the
-// RPC was waiting for one.
-type PickerUpdated struct{}
-
-// IsClient indicates if the stats information is from client side. Only Client
-// Side interfaces with a Picker, thus always returns true.
-func (*PickerUpdated) IsClient() bool { return true }
+// DelayedPickComplete indicates that the RPC is unblocked following a delay in
+// selecting a connection for the call.
+type DelayedPickComplete struct{}
 
-func (*PickerUpdated) isRPCStats() {}
+// IsClient indicates DelayedPickComplete is available on the client.
+func (*DelayedPickComplete) IsClient() bool { return true }
+
+func (*DelayedPickComplete) isRPCStats() {}
+
+// PickerUpdated indicates that the RPC is unblocked following a delay in
+// selecting a connection for the call.
+//
+// Deprecated: will be removed in a future release; use DelayedPickComplete
+// instead.
+type PickerUpdated = DelayedPickComplete
 
 // InPayload contains stats about an incoming payload.
 type InPayload struct {
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/stream.go /work/src/kubernetes/vendor/google.golang.org/grpc/stream.go
--- a/vendor/google.golang.org/grpc/stream.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/stream.go	2026-09-02 10:25:23.873027742 +0000
@@ -21,10 +21,12 @@
 import (
 	"context"
 	"errors"
+	"fmt"
 	"io"
 	"math"
 	rand "math/rand/v2"
 	"strconv"
+	"strings"
 	"sync"
 	"time"
 
@@ -51,7 +53,8 @@
 var metadataFromOutgoingContextRaw = internal.FromOutgoingContextRaw.(func(context.Context) (metadata.MD, [][]string, bool))
 
 // StreamHandler defines the handler called by gRPC server to complete the
-// execution of a streaming RPC.
+// execution of a streaming RPC. srv is the service implementation on which the
+// RPC was invoked.
 //
 // If a StreamHandler returns an error, it should either be produced by the
 // status package, or be one of the context errors. Otherwise, gRPC will use
@@ -101,9 +104,9 @@
 	// It must only be called after stream.CloseAndRecv has returned, or
 	// stream.Recv has returned a non-nil error (including io.EOF).
 	Trailer() metadata.MD
-	// CloseSend closes the send direction of the stream. It closes the stream
-	// when non-nil error is met. It is also not safe to call CloseSend
-	// concurrently with SendMsg.
+	// CloseSend closes the send direction of the stream. This method always
+	// returns a nil error. The status of the stream may be discovered using
+	// RecvMsg. It is also not safe to call CloseSend concurrently with SendMsg.
 	CloseSend() error
 	// Context returns the context for this stream.
 	//
@@ -177,13 +180,43 @@
 	return cc.NewStream(ctx, desc, method, opts...)
 }
 
+var emptyMethodConfig = serviceconfig.MethodConfig{}
+
+// endOfClientStream performs cleanup actions required for both successful and
+// failed streams. This includes incrementing channelz stats and invoking all
+// registered OnFinish call options.
+func endOfClientStream(cc *ClientConn, err error, opts ...CallOption) {
+	if channelz.IsOn() {
+		if err != nil {
+			cc.incrCallsFailed()
+		} else {
+			cc.incrCallsSucceeded()
+		}
+	}
+
+	for _, o := range opts {
+		if o, ok := o.(OnFinishCallOption); ok {
+			o.OnFinish(err)
+		}
+	}
+}
+
 func newClientStream(ctx context.Context, desc *StreamDesc, cc *ClientConn, method string, opts ...CallOption) (_ ClientStream, err error) {
+	if channelz.IsOn() {
+		cc.incrCallsStarted()
+	}
+	defer func() {
+		if err != nil {
+			// Ensure cleanup when stream creation fails.
+			endOfClientStream(cc, err, opts...)
+		}
+	}()
+
 	// Start tracking the RPC for idleness purposes. This is where a stream is
 	// created for both streaming and unary RPCs, and hence is a good place to
 	// track active RPC count.
-	if err := cc.idlenessMgr.OnCallBegin(); err != nil {
-		return nil, err
-	}
+	cc.idlenessMgr.OnCallBegin()
+
 	// Add a calloption, to decrement the active call count, that gets executed
 	// when the RPC completes.
 	opts = append([]CallOption{OnFinish(func(error) { cc.idlenessMgr.OnCallEnd() })}, opts...)
@@ -202,24 +235,17 @@
 			}
 		}
 	}
-	if channelz.IsOn() {
-		cc.incrCallsStarted()
-		defer func() {
-			if err != nil {
-				cc.incrCallsFailed()
-			}
-		}()
-	}
 	// Provide an opportunity for the first RPC to see the first service config
 	// provided by the resolver.
-	if err := cc.waitForResolvedAddrs(ctx); err != nil {
+	nameResolutionDelayed, err := cc.waitForResolvedAddrs(ctx)
+	if err != nil {
 		return nil, err
 	}
 
-	var mc serviceconfig.MethodConfig
+	mc := &emptyMethodConfig
 	var onCommit func()
 	newStream := func(ctx context.Context, done func()) (iresolver.ClientStream, error) {
-		return newClientStreamWithParams(ctx, desc, cc, method, mc, onCommit, done, opts...)
+		return newClientStreamWithParams(ctx, desc, cc, method, mc, onCommit, done, nameResolutionDelayed, opts...)
 	}
 
 	rpcInfo := iresolver.RPCInfo{Context: ctx, Method: method}
@@ -239,7 +265,7 @@
 		if rpcConfig.Context != nil {
 			ctx = rpcConfig.Context
 		}
-		mc = rpcConfig.MethodConfig
+		mc = &rpcConfig.MethodConfig
 		onCommit = rpcConfig.OnCommitted
 		if rpcConfig.Interceptor != nil {
 			rpcInfo.Context = nil
@@ -257,7 +283,7 @@
 	return newStream(ctx, func() {})
 }
 
-func newClientStreamWithParams(ctx context.Context, desc *StreamDesc, cc *ClientConn, method string, mc serviceconfig.MethodConfig, onCommit, doneFunc func(), opts ...CallOption) (_ iresolver.ClientStream, err error) {
+func newClientStreamWithParams(ctx context.Context, desc *StreamDesc, cc *ClientConn, method string, mc *serviceconfig.MethodConfig, onCommit, doneFunc func(), nameResolutionDelayed bool, opts ...CallOption) (_ iresolver.ClientStream, err error) {
 	callInfo := defaultCallInfo()
 	if mc.WaitForReady != nil {
 		callInfo.failFast = !*mc.WaitForReady
@@ -296,6 +322,11 @@
 		Method:         method,
 		ContentSubtype: callInfo.contentSubtype,
 		DoneFunc:       doneFunc,
+		Authority:      callInfo.authority,
+	}
+	if allowed := callInfo.acceptedResponseCompressors; len(allowed) > 0 {
+		headerValue := strings.Join(allowed, ",")
+		callHdr.AcceptedCompressors = &headerValue
 	}
 
 	// Set our outgoing compression according to the UseCompressor CallOption, if
@@ -321,19 +352,20 @@
 	}
 
 	cs := &clientStream{
-		callHdr:      callHdr,
-		ctx:          ctx,
-		methodConfig: &mc,
-		opts:         opts,
-		callInfo:     callInfo,
-		cc:           cc,
-		desc:         desc,
-		codec:        callInfo.codec,
-		compressorV0: compressorV0,
-		compressorV1: compressorV1,
-		cancel:       cancel,
-		firstAttempt: true,
-		onCommit:     onCommit,
+		callHdr:             callHdr,
+		ctx:                 ctx,
+		methodConfig:        mc,
+		opts:                opts,
+		callInfo:            callInfo,
+		cc:                  cc,
+		desc:                desc,
+		codec:               callInfo.codec,
+		compressorV0:        compressorV0,
+		compressorV1:        compressorV1,
+		cancel:              cancel,
+		firstAttempt:        true,
+		onCommit:            onCommit,
+		nameResolutionDelay: nameResolutionDelayed,
 	}
 	if !cc.dopts.disableRetry {
 		cs.retryThrottler = cc.retryThrottler.Load().(*retryThrottler)
@@ -415,19 +447,21 @@
 	ctx := newContextWithRPCInfo(cs.ctx, cs.callInfo.failFast, cs.callInfo.codec, cs.compressorV0, cs.compressorV1)
 	method := cs.callHdr.Method
 	var beginTime time.Time
-	shs := cs.cc.dopts.copts.StatsHandlers
-	for _, sh := range shs {
-		ctx = sh.TagRPC(ctx, &stats.RPCTagInfo{FullMethodName: method, FailFast: cs.callInfo.failFast})
+	sh := cs.cc.statsHandler
+	if sh != nil {
 		beginTime = time.Now()
-		begin := &stats.Begin{
+		ctx = sh.TagRPC(ctx, &stats.RPCTagInfo{
+			FullMethodName: method, FailFast: cs.callInfo.failFast,
+			NameResolutionDelay: cs.nameResolutionDelay,
+		})
+		sh.HandleRPC(ctx, &stats.Begin{
 			Client:                    true,
 			BeginTime:                 beginTime,
 			FailFast:                  cs.callInfo.failFast,
 			IsClientStream:            cs.desc.ClientStreams,
 			IsServerStream:            cs.desc.ServerStreams,
 			IsTransparentRetryAttempt: isTransparent,
-		}
-		sh.HandleRPC(ctx, begin)
+		})
 	}
 
 	var trInfo *traceInfo
@@ -458,7 +492,7 @@
 		beginTime:      beginTime,
 		cs:             cs,
 		decompressorV0: cs.cc.dopts.dc,
-		statsHandlers:  shs,
+		statsHandler:   sh,
 		trInfo:         trInfo,
 	}, nil
 }
@@ -466,8 +500,9 @@
 func (a *csAttempt) getTransport() error {
 	cs := a.cs
 
-	var err error
-	a.transport, a.pickResult, err = cs.cc.getTransport(a.ctx, cs.callInfo.failFast, cs.callHdr.Method)
+	pickInfo := balancer.PickInfo{Ctx: a.ctx, FullMethodName: cs.callHdr.Method}
+	pick, err := cs.cc.pickerWrapper.pick(a.ctx, cs.callInfo.failFast, pickInfo)
+	a.transport, a.pickResult = pick.transport, pick.result
 	if err != nil {
 		if de, ok := err.(dropError); ok {
 			err = de.error
@@ -476,7 +511,10 @@
 		return err
 	}
 	if a.trInfo != nil {
-		a.trInfo.firstLine.SetRemoteAddr(a.transport.RemoteAddr())
+		a.trInfo.firstLine.SetRemoteAddr(a.transport.Peer().Addr)
+	}
+	if pick.blocked && a.statsHandler != nil {
+		a.statsHandler.HandleRPC(a.ctx, &stats.DelayedPickComplete{})
 	}
 	return nil
 }
@@ -501,9 +539,17 @@
 		md, _ := metadata.FromOutgoingContext(a.ctx)
 		md = metadata.Join(md, a.pickResult.Metadata)
 		a.ctx = metadata.NewOutgoingContext(a.ctx, md)
-	}
 
-	s, err := a.transport.NewStream(a.ctx, cs.callHdr)
+		// If the `CallAuthority` CallOption is not set, check if the LB picker
+		// has provided an authority override in the PickResult metadata and
+		// apply it, as specified in gRFC A81.
+		if cs.callInfo.authority == "" {
+			if authMD := a.pickResult.Metadata.Get(":authority"); len(authMD) > 0 {
+				cs.callHdr.Authority = authMD[0]
+			}
+		}
+	}
+	s, err := a.transport.NewStream(a.ctx, cs.callHdr, a.statsHandler)
 	if err != nil {
 		nse, ok := err.(*transport.NewStreamError)
 		if !ok {
@@ -520,7 +566,7 @@
 	}
 	a.transportStream = s
 	a.ctx = s.Context()
-	a.parser = &parser{r: s, bufferPool: a.cs.cc.dopts.copts.BufferPool}
+	a.parser = parser{r: s, bufferPool: a.cs.cc.dopts.copts.BufferPool}
 	return nil
 }
 
@@ -540,6 +586,8 @@
 
 	sentLast bool // sent an end stream
 
+	receivedFirstMsg bool // set after the first message is received
+
 	methodConfig *MethodConfig
 
 	ctx context.Context // the application's context, wrapped by stats/tracing
@@ -573,6 +621,9 @@
 	onCommit         func()
 	replayBuffer     []replayOp // operations to replay on retry
 	replayBufferSize int        // current size of replayBuffer
+	// nameResolutionDelay indicates if there was a delay in the name resolution.
+	// This field is only valid on client side, it's always false on server side.
+	nameResolutionDelay bool
 }
 
 type replayOp struct {
@@ -587,7 +638,7 @@
 	cs              *clientStream
 	transport       transport.ClientTransport
 	transportStream *transport.ClientStream
-	parser          *parser
+	parser          parser
 	pickResult      balancer.PickResult
 
 	finished        bool
@@ -601,8 +652,8 @@
 	// and cleared when the finish method is called.
 	trInfo *traceInfo
 
-	statsHandlers []stats.Handler
-	beginTime     time.Time
+	statsHandler stats.Handler
+	beginTime    time.Time
 
 	// set for newStream errors that may be transparently retried
 	allowTransparentRetry bool
@@ -699,7 +750,7 @@
 		return false, err
 	}
 	if cs.numRetries+1 >= rp.MaxAttempts {
-		return false, err
+		return false, fmt.Errorf("max retries exhausted: failed after %d attempts: %w", cs.numRetries+1, err)
 	}
 
 	var dur time.Duration
@@ -987,7 +1038,7 @@
 
 func (cs *clientStream) CloseSend() error {
 	if cs.sentLast {
-		// TODO: return an error and finish the stream instead, due to API misuse?
+		// Return a nil error on repeated calls to this method.
 		return nil
 	}
 	cs.sentLast = true
@@ -1008,7 +1059,10 @@
 			binlog.Log(cs.ctx, chc)
 		}
 	}
-	// We never returned an error here for reasons.
+	// We don't return an error here as we expect users to read all messages
+	// from the stream and get the RPC status from RecvMsg().  Note that
+	// SendMsg() must return an error when one occurs so the application
+	// knows to stop sending messages, but that does not apply here.
 	return nil
 }
 
@@ -1023,9 +1077,6 @@
 		return
 	}
 	cs.finished = true
-	for _, onFinish := range cs.callInfo.onFinish {
-		onFinish(err)
-	}
 	cs.commitAttemptLocked()
 	if cs.attempt != nil {
 		cs.attempt.finish(err)
@@ -1065,13 +1116,7 @@
 	if err == nil {
 		cs.retryThrottler.successfulRPC()
 	}
-	if channelz.IsOn() {
-		if err != nil {
-			cs.cc.incrCallsFailed()
-		} else {
-			cs.cc.incrCallsSucceeded()
-		}
-	}
+	endOfClientStream(cs.cc, err, cs.opts...)
 	cs.cancel()
 }
 
@@ -1093,17 +1138,15 @@
 		}
 		return io.EOF
 	}
-	if len(a.statsHandlers) != 0 {
-		for _, sh := range a.statsHandlers {
-			sh.HandleRPC(a.ctx, outPayload(true, m, dataLength, payloadLength, time.Now()))
-		}
+	if a.statsHandler != nil {
+		a.statsHandler.HandleRPC(a.ctx, outPayload(true, m, dataLength, payloadLength, time.Now()))
 	}
 	return nil
 }
 
 func (a *csAttempt) recvMsg(m any, payInfo *payloadInfo) (err error) {
 	cs := a.cs
-	if len(a.statsHandlers) != 0 && payInfo == nil {
+	if a.statsHandler != nil && payInfo == nil {
 		payInfo = &payloadInfo{}
 		defer payInfo.free()
 	}
@@ -1117,6 +1160,10 @@
 				a.decompressorV0 = nil
 				a.decompressorV1 = encoding.GetCompressor(ct)
 			}
+			// Validate that the compression method is acceptable for this call.
+			if !acceptedCompressorAllows(cs.callInfo.acceptedResponseCompressors, ct) {
+				return status.Errorf(codes.Internal, "grpc: peer compressed the response with %q which is not allowed by AcceptCompressors", ct)
+			}
 		} else {
 			// No compression is used; disable our decompressor.
 			a.decompressorV0 = nil
@@ -1124,16 +1171,21 @@
 		// Only initialize this state once per stream.
 		a.decompressorSet = true
 	}
-	if err := recv(a.parser, cs.codec, a.transportStream, a.decompressorV0, m, *cs.callInfo.maxReceiveMessageSize, payInfo, a.decompressorV1, false); err != nil {
+	if err := recv(&a.parser, cs.codec, a.transportStream, a.decompressorV0, m, *cs.callInfo.maxReceiveMessageSize, payInfo, a.decompressorV1, false); err != nil {
 		if err == io.EOF {
 			if statusErr := a.transportStream.Status().Err(); statusErr != nil {
 				return statusErr
 			}
+			// Received no msg and status OK for non-server streaming rpcs.
+			if !cs.desc.ServerStreams && !cs.receivedFirstMsg {
+				return status.Error(codes.Internal, "cardinality violation: received no response message from non-server-streaming RPC")
+			}
 			return io.EOF // indicates successful end of stream.
 		}
 
 		return toRPCErr(err)
 	}
+	cs.receivedFirstMsg = true
 	if a.trInfo != nil {
 		a.mu.Lock()
 		if a.trInfo.tr != nil {
@@ -1141,8 +1193,8 @@
 		}
 		a.mu.Unlock()
 	}
-	for _, sh := range a.statsHandlers {
-		sh.HandleRPC(a.ctx, &stats.InPayload{
+	if a.statsHandler != nil {
+		a.statsHandler.HandleRPC(a.ctx, &stats.InPayload{
 			Client:           true,
 			RecvTime:         time.Now(),
 			Payload:          m,
@@ -1157,12 +1209,12 @@
 	}
 	// Special handling for non-server-stream rpcs.
 	// This recv expects EOF or errors, so we don't collect inPayload.
-	if err := recv(a.parser, cs.codec, a.transportStream, a.decompressorV0, m, *cs.callInfo.maxReceiveMessageSize, nil, a.decompressorV1, false); err == io.EOF {
+	if err := recv(&a.parser, cs.codec, a.transportStream, a.decompressorV0, m, *cs.callInfo.maxReceiveMessageSize, nil, a.decompressorV1, false); err == io.EOF {
 		return a.transportStream.Status().Err() // non-server streaming Recv returns nil on success
 	} else if err != nil {
 		return toRPCErr(err)
 	}
-	return toRPCErr(errors.New("grpc: client streaming protocol violation: get <nil>, want <EOF>"))
+	return status.Error(codes.Internal, "cardinality violation: expected <EOF> for non server-streaming RPCs, but received another message")
 }
 
 func (a *csAttempt) finish(err error) {
@@ -1195,15 +1247,14 @@
 			ServerLoad:    balancerload.Parse(tr),
 		})
 	}
-	for _, sh := range a.statsHandlers {
-		end := &stats.End{
+	if a.statsHandler != nil {
+		a.statsHandler.HandleRPC(a.ctx, &stats.End{
 			Client:    true,
 			BeginTime: a.beginTime,
 			EndTime:   time.Now(),
 			Trailer:   tr,
 			Error:     err,
-		}
-		sh.HandleRPC(a.ctx, end)
+		})
 	}
 	if a.trInfo != nil && a.trInfo.tr != nil {
 		if err == nil {
@@ -1300,16 +1351,18 @@
 		codec:            c.codec,
 		sendCompressorV0: cp,
 		sendCompressorV1: comp,
+		decompressorV0:   ac.cc.dopts.dc,
 		transport:        t,
 	}
 
-	s, err := as.transport.NewStream(as.ctx, as.callHdr)
+	// nil stats handler: internal streams like health and ORCA do not support telemetry.
+	s, err := as.transport.NewStream(as.ctx, as.callHdr, nil)
 	if err != nil {
 		err = toRPCErr(err)
 		return nil, err
 	}
 	as.transportStream = s
-	as.parser = &parser{r: s, bufferPool: ac.dopts.copts.BufferPool}
+	as.parser = parser{r: s, bufferPool: ac.dopts.copts.BufferPool}
 	ac.incrCallsStarted()
 	if desc != unaryStreamDesc {
 		// Listen on stream context to cleanup when the stream context is
@@ -1344,6 +1397,7 @@
 	transport        transport.ClientTransport
 	ctx              context.Context
 	sentLast         bool
+	receivedFirstMsg bool
 	desc             *StreamDesc
 	codec            baseCodec
 	sendCompressorV0 Compressor
@@ -1351,7 +1405,7 @@
 	decompressorSet  bool
 	decompressorV0   Decompressor
 	decompressorV1   encoding.Compressor
-	parser           *parser
+	parser           parser
 
 	// mu guards finished and is held for the entire finish method.
 	mu       sync.Mutex
@@ -1372,7 +1426,7 @@
 
 func (as *addrConnStream) CloseSend() error {
 	if as.sentLast {
-		// TODO: return an error and finish the stream instead, due to API misuse?
+		// Return a nil error on repeated calls to this method.
 		return nil
 	}
 	as.sentLast = true
@@ -1457,6 +1511,10 @@
 				as.decompressorV0 = nil
 				as.decompressorV1 = encoding.GetCompressor(ct)
 			}
+			// Validate that the compression method is acceptable for this call.
+			if !acceptedCompressorAllows(as.callInfo.acceptedResponseCompressors, ct) {
+				return status.Errorf(codes.Internal, "grpc: peer compressed the response with %q which is not allowed by AcceptCompressors", ct)
+			}
 		} else {
 			// No compression is used; disable our decompressor.
 			as.decompressorV0 = nil
@@ -1464,15 +1522,20 @@
 		// Only initialize this state once per stream.
 		as.decompressorSet = true
 	}
-	if err := recv(as.parser, as.codec, as.transportStream, as.decompressorV0, m, *as.callInfo.maxReceiveMessageSize, nil, as.decompressorV1, false); err != nil {
+	if err := recv(&as.parser, as.codec, as.transportStream, as.decompressorV0, m, *as.callInfo.maxReceiveMessageSize, nil, as.decompressorV1, false); err != nil {
 		if err == io.EOF {
 			if statusErr := as.transportStream.Status().Err(); statusErr != nil {
 				return statusErr
 			}
+			// Received no msg and status OK for non-server streaming rpcs.
+			if !as.desc.ServerStreams && !as.receivedFirstMsg {
+				return status.Error(codes.Internal, "cardinality violation: received no response message from non-server-streaming RPC")
+			}
 			return io.EOF // indicates successful end of stream.
 		}
 		return toRPCErr(err)
 	}
+	as.receivedFirstMsg = true
 
 	if as.desc.ServerStreams {
 		// Subsequent messages should be received by subsequent RecvMsg calls.
@@ -1481,12 +1544,12 @@
 
 	// Special handling for non-server-stream rpcs.
 	// This recv expects EOF or errors, so we don't collect inPayload.
-	if err := recv(as.parser, as.codec, as.transportStream, as.decompressorV0, m, *as.callInfo.maxReceiveMessageSize, nil, as.decompressorV1, false); err == io.EOF {
+	if err := recv(&as.parser, as.codec, as.transportStream, as.decompressorV0, m, *as.callInfo.maxReceiveMessageSize, nil, as.decompressorV1, false); err == io.EOF {
 		return as.transportStream.Status().Err() // non-server streaming Recv returns nil on success
 	} else if err != nil {
 		return toRPCErr(err)
 	}
-	return toRPCErr(errors.New("grpc: client streaming protocol violation: get <nil>, want <EOF>"))
+	return status.Error(codes.Internal, "cardinality violation: expected <EOF> for non server-streaming RPCs, but received another message")
 }
 
 func (as *addrConnStream) finish(err error) {
@@ -1569,8 +1632,9 @@
 type serverStream struct {
 	ctx   context.Context
 	s     *transport.ServerStream
-	p     *parser
+	p     parser
 	codec baseCodec
+	desc  *StreamDesc
 
 	compressorV0   Compressor
 	compressorV1   encoding.Compressor
@@ -1579,11 +1643,13 @@
 
 	sendCompressorName string
 
+	recvFirstMsg bool // set after the first message is received
+
 	maxReceiveMessageSize int
 	maxSendMessageSize    int
 	trInfo                *traceInfo
 
-	statsHandler []stats.Handler
+	statsHandler stats.Handler
 
 	binlogs []binarylog.MethodLogger
 	// serverHeaderBinlogged indicates whether server header has been logged. It
@@ -1719,10 +1785,8 @@
 			binlog.Log(ss.ctx, sm)
 		}
 	}
-	if len(ss.statsHandler) != 0 {
-		for _, sh := range ss.statsHandler {
-			sh.HandleRPC(ss.s.Context(), outPayload(false, m, dataLen, payloadLen, time.Now()))
-		}
+	if ss.statsHandler != nil {
+		ss.statsHandler.HandleRPC(ss.s.Context(), outPayload(false, m, dataLen, payloadLen, time.Now()))
 	}
 	return nil
 }
@@ -1753,11 +1817,11 @@
 		}
 	}()
 	var payInfo *payloadInfo
-	if len(ss.statsHandler) != 0 || len(ss.binlogs) != 0 {
+	if ss.statsHandler != nil || len(ss.binlogs) != 0 {
 		payInfo = &payloadInfo{}
 		defer payInfo.free()
 	}
-	if err := recv(ss.p, ss.codec, ss.s, ss.decompressorV0, m, ss.maxReceiveMessageSize, payInfo, ss.decompressorV1, true); err != nil {
+	if err := recv(&ss.p, ss.codec, ss.s, ss.decompressorV0, m, ss.maxReceiveMessageSize, payInfo, ss.decompressorV1, true); err != nil {
 		if err == io.EOF {
 			if len(ss.binlogs) != 0 {
 				chc := &binarylog.ClientHalfClose{}
@@ -1765,6 +1829,10 @@
 					binlog.Log(ss.ctx, chc)
 				}
 			}
+			// Received no request msg for non-client streaming rpcs.
+			if !ss.desc.ClientStreams && !ss.recvFirstMsg {
+				return status.Error(codes.Internal, "cardinality violation: received no request message from non-client-streaming RPC")
+			}
 			return err
 		}
 		if err == io.ErrUnexpectedEOF {
@@ -1772,16 +1840,15 @@
 		}
 		return toRPCErr(err)
 	}
-	if len(ss.statsHandler) != 0 {
-		for _, sh := range ss.statsHandler {
-			sh.HandleRPC(ss.s.Context(), &stats.InPayload{
-				RecvTime:         time.Now(),
-				Payload:          m,
-				Length:           payInfo.uncompressedBytes.Len(),
-				WireLength:       payInfo.compressedLength + headerLen,
-				CompressedLength: payInfo.compressedLength,
-			})
-		}
+	ss.recvFirstMsg = true
+	if ss.statsHandler != nil {
+		ss.statsHandler.HandleRPC(ss.s.Context(), &stats.InPayload{
+			RecvTime:         time.Now(),
+			Payload:          m,
+			Length:           payInfo.uncompressedBytes.Len(),
+			WireLength:       payInfo.compressedLength + headerLen,
+			CompressedLength: payInfo.compressedLength,
+		})
 	}
 	if len(ss.binlogs) != 0 {
 		cm := &binarylog.ClientMessage{
@@ -1791,7 +1858,19 @@
 			binlog.Log(ss.ctx, cm)
 		}
 	}
-	return nil
+
+	if ss.desc.ClientStreams {
+		// Subsequent messages should be received by subsequent RecvMsg calls.
+		return nil
+	}
+	// Special handling for non-client-stream rpcs.
+	// This recv expects EOF or errors, so we don't collect inPayload.
+	if err := recv(&ss.p, ss.codec, ss.s, ss.decompressorV0, m, ss.maxReceiveMessageSize, nil, ss.decompressorV1, true); err == io.EOF {
+		return nil
+	} else if err != nil {
+		return err
+	}
+	return status.Error(codes.Internal, "cardinality violation: received multiple request messages for non-client-streaming RPC")
 }
 
 // MethodFromServerStream returns the method string for the input stream.
diff -Nur /work/src-orig/kubernetes/vendor/google.golang.org/grpc/version.go /work/src/kubernetes/vendor/google.golang.org/grpc/version.go
--- a/vendor/google.golang.org/grpc/version.go	2026-09-02 10:24:55.036997640 +0000
+++ b/vendor/google.golang.org/grpc/version.go	2026-09-02 10:25:23.873027742 +0000
@@ -19,4 +19,4 @@
 package grpc
 
 // Version is the current grpc version.
-const Version = "1.72.2"
+const Version = "1.82.1"
diff -Nur /work/src-orig/kubernetes/vendor/modules.txt /work/src/kubernetes/vendor/modules.txt
--- a/vendor/modules.txt	2026-09-02 10:24:55.064997679 +0000
+++ b/vendor/modules.txt	2026-09-02 10:25:24.245028252 +0000
@@ -3,7 +3,9 @@
 ## explicit; go 1.17
 bitbucket.org/bertimus9/systemstat
 # cel.dev/expr v0.24.0
-## explicit; go 1.22.0
+## explicit; go 1.23.0
+# cel.dev/expr v0.25.1
+## explicit; go 1.23.0
 cel.dev/expr
 # cyphar.com/go-pathrs v0.2.1
 ## explicit; go 1.18
@@ -136,6 +138,7 @@
 github.com/cyphar/filepath-securejoin/pathrs-lite/procfs
 # github.com/davecgh/go-spew v1.1.1
 ## explicit
+# github.com/davecgh/go-spew v1.1.2-0.20180830191138-d8f796af33cc
 github.com/davecgh/go-spew/spew
 # github.com/distribution/reference v0.6.0
 ## explicit; go 1.20
@@ -344,6 +347,8 @@
 github.com/grpc-ecosystem/go-grpc-prometheus
 # github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.3
 ## explicit; go 1.23.0
+# github.com/grpc-ecosystem/grpc-gateway/v2 v2.27.2
+## go 1.23.0
 github.com/grpc-ecosystem/grpc-gateway/v2/internal/httprule
 github.com/grpc-ecosystem/grpc-gateway/v2/protoc-gen-openapiv2/options
 github.com/grpc-ecosystem/grpc-gateway/v2/runtime
@@ -509,6 +514,7 @@
 github.com/peterbourgon/diskv
 # github.com/pmezard/go-difflib v1.0.0
 ## explicit
+# github.com/pmezard/go-difflib v1.0.1-0.20181226105442-5d4384ee4fb2
 github.com/pmezard/go-difflib/difflib
 # github.com/pquerna/cachecontrol v0.1.0
 ## explicit; go 1.16
@@ -717,7 +723,9 @@
 go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv
 go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil
 # go.opentelemetry.io/otel v1.41.0
-## explicit; go 1.24.0
+## explicit; go 1.25.0
+# go.opentelemetry.io/otel v1.43.0
+## explicit; go 1.25.0
 go.opentelemetry.io/otel
 go.opentelemetry.io/otel/attribute
 go.opentelemetry.io/otel/attribute/internal
@@ -734,7 +742,8 @@
 go.opentelemetry.io/otel/semconv/v1.20.0
 go.opentelemetry.io/otel/semconv/v1.26.0
 go.opentelemetry.io/otel/semconv/v1.37.0
-go.opentelemetry.io/otel/semconv/v1.39.0
+go.opentelemetry.io/otel/semconv/v1.40.0
+go.opentelemetry.io/otel/semconv/v1.40.0/otelconv
 # go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.34.0
 ## explicit; go 1.22.0
 go.opentelemetry.io/otel/exporters/otlp/otlptrace
@@ -747,29 +756,38 @@
 go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig
 go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry
 # go.opentelemetry.io/otel/metric v1.41.0
-## explicit; go 1.24.0
+## explicit; go 1.25.0
+# go.opentelemetry.io/otel/metric v1.43.0
+## explicit; go 1.25.0
 go.opentelemetry.io/otel/metric
 go.opentelemetry.io/otel/metric/embedded
 go.opentelemetry.io/otel/metric/noop
-# go.opentelemetry.io/otel/sdk v1.36.0
-## explicit; go 1.23.0
+# go.opentelemetry.io/otel/sdk v1.36.0 => go.opentelemetry.io/otel/sdk v1.43.0
+## explicit; go 1.25.0
+# go.opentelemetry.io/otel/sdk v1.43.0 => go.opentelemetry.io/otel/sdk v1.43.0
+## explicit; go 1.25.0
 go.opentelemetry.io/otel/sdk
 go.opentelemetry.io/otel/sdk/instrumentation
-go.opentelemetry.io/otel/sdk/internal/env
 go.opentelemetry.io/otel/sdk/internal/x
 go.opentelemetry.io/otel/sdk/resource
 go.opentelemetry.io/otel/sdk/trace
+go.opentelemetry.io/otel/sdk/trace/internal/env
+go.opentelemetry.io/otel/sdk/trace/internal/observ
 go.opentelemetry.io/otel/sdk/trace/tracetest
 # go.opentelemetry.io/otel/sdk/metric v1.36.0
-## explicit; go 1.23.0
+## explicit; go 1.25.0
 # go.opentelemetry.io/otel/trace v1.41.0
-## explicit; go 1.24.0
+## explicit; go 1.25.0
+# go.opentelemetry.io/otel/trace v1.43.0
+## explicit; go 1.25.0
 go.opentelemetry.io/otel/trace
 go.opentelemetry.io/otel/trace/embedded
 go.opentelemetry.io/otel/trace/internal/telemetry
 go.opentelemetry.io/otel/trace/noop
 # go.opentelemetry.io/proto/otlp v1.5.0
-## explicit; go 1.22.0
+## explicit; go 1.23.0
+# go.opentelemetry.io/proto/otlp v1.9.0
+## go 1.23.0
 go.opentelemetry.io/proto/otlp/collector/trace/v1
 go.opentelemetry.io/proto/otlp/common/v1
 go.opentelemetry.io/proto/otlp/resource/v1
@@ -801,7 +819,9 @@
 # go.yaml.in/yaml/v3 v3.0.4
 ## explicit; go 1.16
 go.yaml.in/yaml/v3
-# golang.org/x/crypto v0.53.0
+# golang.org/x/crypto v0.53.0 => golang.org/x/crypto v0.55.0
+## explicit; go 1.25.0
+# golang.org/x/crypto v0.54.0 => golang.org/x/crypto v0.55.0
 ## explicit; go 1.25.0
 golang.org/x/crypto/bcrypt
 golang.org/x/crypto/blowfish
@@ -824,11 +844,15 @@
 golang.org/x/exp/slices
 # golang.org/x/mod v0.37.0
 ## explicit; go 1.25.0
+# golang.org/x/mod v0.38.0
+## explicit; go 1.25.0
 golang.org/x/mod/internal/lazyregexp
 golang.org/x/mod/module
 golang.org/x/mod/semver
 # golang.org/x/net v0.56.0
 ## explicit; go 1.25.0
+# golang.org/x/net v0.57.0
+## explicit; go 1.25.0
 golang.org/x/net/context
 golang.org/x/net/dns/dnsmessage
 golang.org/x/net/html
@@ -846,15 +870,21 @@
 golang.org/x/net/trace
 golang.org/x/net/websocket
 # golang.org/x/oauth2 v0.30.0
-## explicit; go 1.23.0
+## explicit; go 1.25.0
+# golang.org/x/oauth2 v0.36.0
+## explicit; go 1.25.0
 golang.org/x/oauth2
 golang.org/x/oauth2/internal
 # golang.org/x/sync v0.21.0
 ## explicit; go 1.25.0
+# golang.org/x/sync v0.22.0
+## explicit; go 1.25.0
 golang.org/x/sync/errgroup
 golang.org/x/sync/singleflight
 # golang.org/x/sys v0.46.0
 ## explicit; go 1.25.0
+# golang.org/x/sys v0.47.0
+## explicit; go 1.25.0
 golang.org/x/sys/cpu
 golang.org/x/sys/plan9
 golang.org/x/sys/unix
@@ -864,9 +894,13 @@
 golang.org/x/sys/windows/svc/mgr
 # golang.org/x/term v0.44.0
 ## explicit; go 1.25.0
+# golang.org/x/term v0.45.0
+## explicit; go 1.25.0
 golang.org/x/term
 # golang.org/x/text v0.39.0
 ## explicit; go 1.25.0
+# golang.org/x/text v0.41.0
+## explicit; go 1.25.0
 golang.org/x/text/cases
 golang.org/x/text/encoding
 golang.org/x/text/encoding/charmap
@@ -901,6 +935,8 @@
 golang.org/x/time/rate
 # golang.org/x/tools v0.47.0
 ## explicit; go 1.25.0
+# golang.org/x/tools v0.48.0
+## explicit; go 1.25.0
 golang.org/x/tools/benchmark/parse
 golang.org/x/tools/container/intsets
 golang.org/x/tools/cover
@@ -921,6 +957,7 @@
 golang.org/x/tools/internal/gocommand
 golang.org/x/tools/internal/gopathwalk
 golang.org/x/tools/internal/imports
+golang.org/x/tools/internal/modindex
 golang.org/x/tools/internal/packagesinternal
 golang.org/x/tools/internal/pkgbits
 golang.org/x/tools/internal/stdlib
@@ -930,17 +967,23 @@
 # golang.org/x/tools/go/expect v0.1.1-deprecated
 ## explicit; go 1.23.0
 # google.golang.org/genproto/googleapis/api v0.0.0-20250303144028-a0af3efb3deb
-## explicit; go 1.23.0
+## explicit; go 1.25.0
+# google.golang.org/genproto/googleapis/api v0.0.0-20260414002931-afd174a4e478
+## explicit; go 1.25.0
 google.golang.org/genproto/googleapis/api
 google.golang.org/genproto/googleapis/api/annotations
 google.golang.org/genproto/googleapis/api/expr/v1alpha1
 google.golang.org/genproto/googleapis/api/httpbody
 # google.golang.org/genproto/googleapis/rpc v0.0.0-20250528174236-200df99c418a
-## explicit; go 1.23.0
+## explicit; go 1.25.0
+# google.golang.org/genproto/googleapis/rpc v0.0.0-20260414002931-afd174a4e478
+## explicit; go 1.25.0
 google.golang.org/genproto/googleapis/rpc/errdetails
 google.golang.org/genproto/googleapis/rpc/status
-# google.golang.org/grpc v1.72.2
-## explicit; go 1.23
+# google.golang.org/grpc v1.72.2 => google.golang.org/grpc v1.82.1
+## explicit; go 1.25.0
+# google.golang.org/grpc v1.79.3 => google.golang.org/grpc v1.82.1
+## explicit; go 1.25.0
 google.golang.org/grpc
 google.golang.org/grpc/attributes
 google.golang.org/grpc/backoff
@@ -950,7 +993,6 @@
 google.golang.org/grpc/balancer/grpclb/state
 google.golang.org/grpc/balancer/pickfirst
 google.golang.org/grpc/balancer/pickfirst/internal
-google.golang.org/grpc/balancer/pickfirst/pickfirstleaf
 google.golang.org/grpc/balancer/roundrobin
 google.golang.org/grpc/binarylog/grpc_binarylog_v1
 google.golang.org/grpc/channelz
@@ -960,7 +1002,9 @@
 google.golang.org/grpc/credentials/insecure
 google.golang.org/grpc/encoding
 google.golang.org/grpc/encoding/gzip
+google.golang.org/grpc/encoding/internal
 google.golang.org/grpc/encoding/proto
+google.golang.org/grpc/experimental/balancer/weight
 google.golang.org/grpc/experimental/stats
 google.golang.org/grpc/grpclog
 google.golang.org/grpc/grpclog/internal
@@ -979,6 +1023,7 @@
 google.golang.org/grpc/internal/grpcsync
 google.golang.org/grpc/internal/grpcutil
 google.golang.org/grpc/internal/idle
+google.golang.org/grpc/internal/mem
 google.golang.org/grpc/internal/metadata
 google.golang.org/grpc/internal/pretty
 google.golang.org/grpc/internal/proxyattributes
@@ -993,7 +1038,9 @@
 google.golang.org/grpc/internal/status
 google.golang.org/grpc/internal/syscall
 google.golang.org/grpc/internal/transport
+google.golang.org/grpc/internal/transport/internal
 google.golang.org/grpc/internal/transport/networktype
+google.golang.org/grpc/internal/transport/readyreader
 google.golang.org/grpc/keepalive
 google.golang.org/grpc/mem
 google.golang.org/grpc/metadata
@@ -1319,3 +1366,6 @@
 ## explicit; go 1.22
 sigs.k8s.io/yaml
 sigs.k8s.io/yaml/kyaml
+# go.opentelemetry.io/otel/sdk => go.opentelemetry.io/otel/sdk v1.43.0
+# golang.org/x/crypto => golang.org/x/crypto v0.55.0
+# google.golang.org/grpc => google.golang.org/grpc v1.82.1
