mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-12-22 21:10:22 +00:00
298 lines
8.5 KiB
Go
298 lines
8.5 KiB
Go
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// Copyright The OpenTelemetry Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package semconv // import "go.opentelemetry.io/otel/semconv"
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import (
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"fmt"
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"net"
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"net/http"
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"strconv"
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"strings"
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"go.opentelemetry.io/otel/attribute"
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"go.opentelemetry.io/otel/codes"
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)
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// NetAttributesFromHTTPRequest generates attributes of the net
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// namespace as specified by the OpenTelemetry specification for a
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// span. The network parameter is a string that net.Dial function
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// from standard library can understand.
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func NetAttributesFromHTTPRequest(network string, request *http.Request) []attribute.KeyValue {
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attrs := []attribute.KeyValue{}
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switch network {
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case "tcp", "tcp4", "tcp6":
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attrs = append(attrs, NetTransportTCP)
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case "udp", "udp4", "udp6":
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attrs = append(attrs, NetTransportUDP)
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case "ip", "ip4", "ip6":
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attrs = append(attrs, NetTransportIP)
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case "unix", "unixgram", "unixpacket":
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attrs = append(attrs, NetTransportUnix)
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default:
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attrs = append(attrs, NetTransportOther)
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}
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peerName, peerIP, peerPort := "", "", 0
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{
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hostPart := request.RemoteAddr
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portPart := ""
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if idx := strings.LastIndex(hostPart, ":"); idx >= 0 {
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hostPart = request.RemoteAddr[:idx]
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portPart = request.RemoteAddr[idx+1:]
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}
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if hostPart != "" {
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if ip := net.ParseIP(hostPart); ip != nil {
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peerIP = ip.String()
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} else {
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peerName = hostPart
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}
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if portPart != "" {
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numPort, err := strconv.ParseUint(portPart, 10, 16)
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if err == nil {
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peerPort = (int)(numPort)
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} else {
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peerName, peerIP = "", ""
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}
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}
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}
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}
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if peerName != "" {
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attrs = append(attrs, NetPeerNameKey.String(peerName))
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}
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if peerIP != "" {
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attrs = append(attrs, NetPeerIPKey.String(peerIP))
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}
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if peerPort != 0 {
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attrs = append(attrs, NetPeerPortKey.Int(peerPort))
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}
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hostIP, hostName, hostPort := "", "", 0
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for _, someHost := range []string{request.Host, request.Header.Get("Host"), request.URL.Host} {
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hostPart := ""
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if idx := strings.LastIndex(someHost, ":"); idx >= 0 {
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strPort := someHost[idx+1:]
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numPort, err := strconv.ParseUint(strPort, 10, 16)
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if err == nil {
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hostPort = (int)(numPort)
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}
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hostPart = someHost[:idx]
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} else {
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hostPart = someHost
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}
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if hostPart != "" {
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ip := net.ParseIP(hostPart)
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if ip != nil {
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hostIP = ip.String()
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} else {
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hostName = hostPart
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}
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break
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} else {
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hostPort = 0
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}
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}
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if hostIP != "" {
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attrs = append(attrs, NetHostIPKey.String(hostIP))
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}
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if hostName != "" {
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attrs = append(attrs, NetHostNameKey.String(hostName))
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}
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if hostPort != 0 {
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attrs = append(attrs, NetHostPortKey.Int(hostPort))
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}
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return attrs
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}
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// EndUserAttributesFromHTTPRequest generates attributes of the
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// enduser namespace as specified by the OpenTelemetry specification
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// for a span.
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func EndUserAttributesFromHTTPRequest(request *http.Request) []attribute.KeyValue {
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if username, _, ok := request.BasicAuth(); ok {
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return []attribute.KeyValue{EnduserIDKey.String(username)}
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}
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return nil
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}
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// HTTPClientAttributesFromHTTPRequest generates attributes of the
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// http namespace as specified by the OpenTelemetry specification for
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// a span on the client side.
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func HTTPClientAttributesFromHTTPRequest(request *http.Request) []attribute.KeyValue {
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attrs := []attribute.KeyValue{}
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if request.Method != "" {
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attrs = append(attrs, HTTPMethodKey.String(request.Method))
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} else {
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attrs = append(attrs, HTTPMethodKey.String(http.MethodGet))
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}
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attrs = append(attrs, HTTPURLKey.String(request.URL.String()))
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return append(attrs, httpCommonAttributesFromHTTPRequest(request)...)
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}
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func httpCommonAttributesFromHTTPRequest(request *http.Request) []attribute.KeyValue {
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attrs := []attribute.KeyValue{}
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if ua := request.UserAgent(); ua != "" {
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attrs = append(attrs, HTTPUserAgentKey.String(ua))
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}
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if request.ContentLength > 0 {
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attrs = append(attrs, HTTPRequestContentLengthKey.Int64(request.ContentLength))
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}
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return append(attrs, httpBasicAttributesFromHTTPRequest(request)...)
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}
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func httpBasicAttributesFromHTTPRequest(request *http.Request) []attribute.KeyValue {
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// as these attributes are used by HTTPServerMetricAttributesFromHTTPRequest, they should be low-cardinality
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attrs := []attribute.KeyValue{}
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if request.TLS != nil {
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attrs = append(attrs, HTTPSchemeHTTPS)
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} else {
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attrs = append(attrs, HTTPSchemeHTTP)
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}
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if request.Host != "" {
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attrs = append(attrs, HTTPHostKey.String(request.Host))
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}
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flavor := ""
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if request.ProtoMajor == 1 {
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flavor = fmt.Sprintf("1.%d", request.ProtoMinor)
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} else if request.ProtoMajor == 2 {
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flavor = "2"
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}
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if flavor != "" {
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attrs = append(attrs, HTTPFlavorKey.String(flavor))
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}
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return attrs
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}
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// HTTPServerMetricAttributesFromHTTPRequest generates low-cardinality attributes
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// to be used with server-side HTTP metrics.
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func HTTPServerMetricAttributesFromHTTPRequest(serverName string, request *http.Request) []attribute.KeyValue {
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attrs := []attribute.KeyValue{}
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if serverName != "" {
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attrs = append(attrs, HTTPServerNameKey.String(serverName))
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}
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return append(attrs, httpBasicAttributesFromHTTPRequest(request)...)
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}
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// HTTPServerAttributesFromHTTPRequest generates attributes of the
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// http namespace as specified by the OpenTelemetry specification for
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// a span on the server side. Currently, only basic authentication is
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// supported.
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func HTTPServerAttributesFromHTTPRequest(serverName, route string, request *http.Request) []attribute.KeyValue {
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attrs := []attribute.KeyValue{
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HTTPMethodKey.String(request.Method),
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HTTPTargetKey.String(request.RequestURI),
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}
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if serverName != "" {
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attrs = append(attrs, HTTPServerNameKey.String(serverName))
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}
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if route != "" {
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attrs = append(attrs, HTTPRouteKey.String(route))
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}
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if values, ok := request.Header["X-Forwarded-For"]; ok && len(values) > 0 {
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attrs = append(attrs, HTTPClientIPKey.String(values[0]))
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}
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return append(attrs, httpCommonAttributesFromHTTPRequest(request)...)
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}
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// HTTPAttributesFromHTTPStatusCode generates attributes of the http
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// namespace as specified by the OpenTelemetry specification for a
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// span.
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func HTTPAttributesFromHTTPStatusCode(code int) []attribute.KeyValue {
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attrs := []attribute.KeyValue{
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HTTPStatusCodeKey.Int(code),
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}
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return attrs
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}
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type codeRange struct {
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fromInclusive int
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toInclusive int
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}
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func (r codeRange) contains(code int) bool {
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return r.fromInclusive <= code && code <= r.toInclusive
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}
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var validRangesPerCategory = map[int][]codeRange{
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1: {
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{http.StatusContinue, http.StatusEarlyHints},
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},
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2: {
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{http.StatusOK, http.StatusAlreadyReported},
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{http.StatusIMUsed, http.StatusIMUsed},
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},
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3: {
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{http.StatusMultipleChoices, http.StatusUseProxy},
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{http.StatusTemporaryRedirect, http.StatusPermanentRedirect},
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},
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4: {
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{http.StatusBadRequest, http.StatusTeapot}, // yes, teapot is so useful…
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{http.StatusMisdirectedRequest, http.StatusUpgradeRequired},
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{http.StatusPreconditionRequired, http.StatusTooManyRequests},
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{http.StatusRequestHeaderFieldsTooLarge, http.StatusRequestHeaderFieldsTooLarge},
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{http.StatusUnavailableForLegalReasons, http.StatusUnavailableForLegalReasons},
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},
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5: {
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{http.StatusInternalServerError, http.StatusLoopDetected},
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{http.StatusNotExtended, http.StatusNetworkAuthenticationRequired},
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},
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}
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// SpanStatusFromHTTPStatusCode generates a status code and a message
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// as specified by the OpenTelemetry specification for a span.
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func SpanStatusFromHTTPStatusCode(code int) (codes.Code, string) {
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spanCode, valid := validateHTTPStatusCode(code)
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if !valid {
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return spanCode, fmt.Sprintf("Invalid HTTP status code %d", code)
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}
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return spanCode, ""
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}
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// Validates the HTTP status code and returns corresponding span status code.
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// If the `code` is not a valid HTTP status code, returns span status Error
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// and false.
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func validateHTTPStatusCode(code int) (codes.Code, bool) {
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category := code / 100
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ranges, ok := validRangesPerCategory[category]
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if !ok {
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return codes.Error, false
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}
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ok = false
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for _, crange := range ranges {
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ok = crange.contains(code)
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if ok {
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break
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}
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}
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if !ok {
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return codes.Error, false
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}
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if category > 0 && category < 4 {
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return codes.Unset, true
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}
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return codes.Error, true
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}
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