mirror of
https://github.com/ceph/ceph-csi.git
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326 lines
9.7 KiB
Go
326 lines
9.7 KiB
Go
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/*
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Copyright 2014 The Kubernetes Authors.
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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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http://www.apache.org/licenses/LICENSE-2.0
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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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*/
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package httplog
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import (
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"bufio"
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"context"
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"fmt"
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"net"
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"net/http"
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"runtime"
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"strings"
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"sync"
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"time"
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"k8s.io/apiserver/pkg/audit"
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"k8s.io/apiserver/pkg/endpoints/metrics"
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"k8s.io/apiserver/pkg/endpoints/request"
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"k8s.io/apiserver/pkg/endpoints/responsewriter"
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"k8s.io/klog/v2"
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)
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// StacktracePred returns true if a stacktrace should be logged for this status.
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type StacktracePred func(httpStatus int) (logStacktrace bool)
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// ShouldLogRequestPred returns true if logging should be enabled for this request
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type ShouldLogRequestPred func() bool
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type logger interface {
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Addf(format string, data ...interface{})
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}
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type respLoggerContextKeyType int
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// respLoggerContextKey is used to store the respLogger pointer in the request context.
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const respLoggerContextKey respLoggerContextKeyType = iota
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// Add a layer on top of ResponseWriter, so we can track latency and error
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// message sources.
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//
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// TODO now that we're using go-restful, we shouldn't need to be wrapping
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// the http.ResponseWriter. We can recover panics from go-restful, and
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// the logging value is questionable.
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type respLogger struct {
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hijacked bool
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statusRecorded bool
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status int
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statusStack string
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// mutex is used when accessing addedInfo, addedKeyValuePairs and logStacktracePred.
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// They can be modified by other goroutine when logging happens (in case of request timeout)
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mutex sync.Mutex
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addedInfo strings.Builder
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addedKeyValuePairs []interface{}
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startTime time.Time
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captureErrorOutput bool
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req *http.Request
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userAgent string
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w http.ResponseWriter
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logStacktracePred StacktracePred
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}
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var _ http.ResponseWriter = &respLogger{}
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var _ responsewriter.UserProvidedDecorator = &respLogger{}
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func (rl *respLogger) Unwrap() http.ResponseWriter {
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return rl.w
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}
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// Simple logger that logs immediately when Addf is called
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type passthroughLogger struct{}
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// Addf logs info immediately.
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func (passthroughLogger) Addf(format string, data ...interface{}) {
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klog.V(2).Info(fmt.Sprintf(format, data...))
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}
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// DefaultStacktracePred is the default implementation of StacktracePred.
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func DefaultStacktracePred(status int) bool {
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return (status < http.StatusOK || status >= http.StatusInternalServerError) && status != http.StatusSwitchingProtocols
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}
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const withLoggingLevel = 3
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// WithLogging wraps the handler with logging.
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func WithLogging(handler http.Handler, pred StacktracePred) http.Handler {
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return withLogging(handler, pred, func() bool {
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return klog.V(withLoggingLevel).Enabled()
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})
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}
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func withLogging(handler http.Handler, stackTracePred StacktracePred, shouldLogRequest ShouldLogRequestPred) http.Handler {
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return http.HandlerFunc(func(w http.ResponseWriter, req *http.Request) {
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if !shouldLogRequest() {
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handler.ServeHTTP(w, req)
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return
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}
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ctx := req.Context()
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if old := respLoggerFromRequest(req); old != nil {
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panic("multiple WithLogging calls!")
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}
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startTime := time.Now()
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if receivedTimestamp, ok := request.ReceivedTimestampFrom(ctx); ok {
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startTime = receivedTimestamp
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}
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rl := newLoggedWithStartTime(req, w, startTime)
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rl.StacktraceWhen(stackTracePred)
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req = req.WithContext(context.WithValue(ctx, respLoggerContextKey, rl))
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defer rl.Log()
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w = responsewriter.WrapForHTTP1Or2(rl)
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handler.ServeHTTP(w, req)
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})
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}
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// respLoggerFromContext returns the respLogger or nil.
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func respLoggerFromContext(ctx context.Context) *respLogger {
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val := ctx.Value(respLoggerContextKey)
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if rl, ok := val.(*respLogger); ok {
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return rl
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}
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return nil
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}
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func respLoggerFromRequest(req *http.Request) *respLogger {
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return respLoggerFromContext(req.Context())
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}
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func newLoggedWithStartTime(req *http.Request, w http.ResponseWriter, startTime time.Time) *respLogger {
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logger := &respLogger{
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startTime: startTime,
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req: req,
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userAgent: req.UserAgent(),
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w: w,
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logStacktracePred: DefaultStacktracePred,
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}
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return logger
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}
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// newLogged turns a normal response writer into a logged response writer.
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func newLogged(req *http.Request, w http.ResponseWriter) *respLogger {
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return newLoggedWithStartTime(req, w, time.Now())
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}
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// LogOf returns the logger hiding in w. If there is not an existing logger
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// then a passthroughLogger will be created which will log to stdout immediately
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// when Addf is called.
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func LogOf(req *http.Request, w http.ResponseWriter) logger {
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if rl := respLoggerFromRequest(req); rl != nil {
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return rl
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}
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return &passthroughLogger{}
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}
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// Unlogged returns the original ResponseWriter, or w if it is not our inserted logger.
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func Unlogged(req *http.Request, w http.ResponseWriter) http.ResponseWriter {
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if rl := respLoggerFromRequest(req); rl != nil {
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return rl.w
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}
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return w
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}
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// StacktraceWhen sets the stacktrace logging predicate, which decides when to log a stacktrace.
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// There's a default, so you don't need to call this unless you don't like the default.
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func (rl *respLogger) StacktraceWhen(pred StacktracePred) *respLogger {
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rl.mutex.Lock()
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defer rl.mutex.Unlock()
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rl.logStacktracePred = pred
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return rl
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}
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// StatusIsNot returns a StacktracePred which will cause stacktraces to be logged
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// for any status *not* in the given list.
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func StatusIsNot(statuses ...int) StacktracePred {
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statusesNoTrace := map[int]bool{}
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for _, s := range statuses {
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statusesNoTrace[s] = true
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}
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return func(status int) bool {
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_, ok := statusesNoTrace[status]
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return !ok
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}
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}
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// Addf adds additional data to be logged with this request.
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func (rl *respLogger) Addf(format string, data ...interface{}) {
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rl.mutex.Lock()
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defer rl.mutex.Unlock()
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rl.addedInfo.WriteString(fmt.Sprintf(format, data...))
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}
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func AddInfof(ctx context.Context, format string, data ...interface{}) {
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if rl := respLoggerFromContext(ctx); rl != nil {
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rl.Addf(format, data...)
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}
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}
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func (rl *respLogger) AddKeyValue(key string, value interface{}) {
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rl.mutex.Lock()
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defer rl.mutex.Unlock()
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rl.addedKeyValuePairs = append(rl.addedKeyValuePairs, key, value)
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}
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// AddKeyValue adds a (key, value) pair to the httplog associated
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// with the request.
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// Use this function if you want your data to show up in httplog
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// in a more structured and readable way.
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func AddKeyValue(ctx context.Context, key string, value interface{}) {
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if rl := respLoggerFromContext(ctx); rl != nil {
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rl.AddKeyValue(key, value)
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}
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}
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// SetStacktracePredicate sets a custom stacktrace predicate for the
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// logger associated with the given request context.
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func SetStacktracePredicate(ctx context.Context, pred StacktracePred) {
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if rl := respLoggerFromContext(ctx); rl != nil {
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rl.StacktraceWhen(pred)
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}
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}
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// Log is intended to be called once at the end of your request handler, via defer
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func (rl *respLogger) Log() {
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latency := time.Since(rl.startTime)
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auditID := audit.GetAuditIDTruncated(rl.req.Context())
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verb := metrics.NormalizedVerb(rl.req)
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keysAndValues := []interface{}{
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"verb", verb,
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"URI", rl.req.RequestURI,
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"latency", latency,
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// We can't get UserAgent from rl.req.UserAgent() here as it accesses headers map,
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// which can be modified in another goroutine when apiserver request times out.
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// For example authentication filter modifies request's headers,
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// This can cause apiserver to crash with unrecoverable fatal error.
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// More info about concurrent read and write for maps: https://golang.org/doc/go1.6#runtime
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"userAgent", rl.userAgent,
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"audit-ID", auditID,
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"srcIP", rl.req.RemoteAddr,
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}
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// Lock for accessing addedKeyValuePairs and addedInfo
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rl.mutex.Lock()
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defer rl.mutex.Unlock()
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keysAndValues = append(keysAndValues, rl.addedKeyValuePairs...)
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if rl.hijacked {
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keysAndValues = append(keysAndValues, "hijacked", true)
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} else {
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keysAndValues = append(keysAndValues, "resp", rl.status)
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if len(rl.statusStack) > 0 {
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keysAndValues = append(keysAndValues, "statusStack", rl.statusStack)
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}
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info := rl.addedInfo.String()
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if len(info) > 0 {
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keysAndValues = append(keysAndValues, "addedInfo", info)
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}
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}
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klog.V(withLoggingLevel).InfoSDepth(1, "HTTP", keysAndValues...)
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}
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// Header implements http.ResponseWriter.
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func (rl *respLogger) Header() http.Header {
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return rl.w.Header()
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}
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// Write implements http.ResponseWriter.
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func (rl *respLogger) Write(b []byte) (int, error) {
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if !rl.statusRecorded {
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rl.recordStatus(http.StatusOK) // Default if WriteHeader hasn't been called
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}
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if rl.captureErrorOutput {
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rl.Addf("logging error output: %q\n", string(b))
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}
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return rl.w.Write(b)
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}
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// WriteHeader implements http.ResponseWriter.
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func (rl *respLogger) WriteHeader(status int) {
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rl.recordStatus(status)
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rl.w.WriteHeader(status)
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}
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func (rl *respLogger) Hijack() (net.Conn, *bufio.ReadWriter, error) {
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rl.hijacked = true
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// the outer ResponseWriter object returned by WrapForHTTP1Or2 implements
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// http.Hijacker if the inner object (rl.w) implements http.Hijacker.
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return rl.w.(http.Hijacker).Hijack()
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}
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func (rl *respLogger) recordStatus(status int) {
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rl.mutex.Lock()
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defer rl.mutex.Unlock()
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rl.status = status
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rl.statusRecorded = true
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if rl.logStacktracePred(status) {
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// Only log stacks for errors
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stack := make([]byte, 50*1024)
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stack = stack[:runtime.Stack(stack, false)]
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rl.statusStack = "\n" + string(stack)
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rl.captureErrorOutput = true
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} else {
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rl.statusStack = ""
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}
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}
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