mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
synced 2024-12-15 08:23:34 +01:00
340 lines
12 KiB
Go
340 lines
12 KiB
Go
package remotewrite
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import (
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"bytes"
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"crypto/tls"
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"encoding/base64"
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"fmt"
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"io/ioutil"
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"net/http"
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"net/url"
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"strings"
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"sync"
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"time"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/flagutil"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/persistentqueue"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/promauth"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/timerpool"
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"github.com/VictoriaMetrics/metrics"
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)
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var (
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rateLimit = flagutil.NewArrayInt("remoteWrite.rateLimit", "Optional rate limit in bytes per second for data sent to -remoteWrite.url. "+
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"By default the rate limit is disabled. It can be useful for limiting load on remote storage when big amounts of buffered data "+
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"is sent after temporary unavailability of the remote storage")
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sendTimeout = flagutil.NewArrayDuration("remoteWrite.sendTimeout", "Timeout for sending a single block of data to -remoteWrite.url")
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proxyURL = flagutil.NewArray("remoteWrite.proxyURL", "Optional proxy URL for writing data to -remoteWrite.url. Supported proxies: http, https, socks5. "+
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"Example: -remoteWrite.proxyURL=socks5://proxy:1234")
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tlsInsecureSkipVerify = flagutil.NewArrayBool("remoteWrite.tlsInsecureSkipVerify", "Whether to skip tls verification when connecting to -remoteWrite.url")
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tlsCertFile = flagutil.NewArray("remoteWrite.tlsCertFile", "Optional path to client-side TLS certificate file to use when connecting to -remoteWrite.url. "+
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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tlsKeyFile = flagutil.NewArray("remoteWrite.tlsKeyFile", "Optional path to client-side TLS certificate key to use when connecting to -remoteWrite.url. "+
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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tlsCAFile = flagutil.NewArray("remoteWrite.tlsCAFile", "Optional path to TLS CA file to use for verifying connections to -remoteWrite.url. "+
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"By default system CA is used. If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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tlsServerName = flagutil.NewArray("remoteWrite.tlsServerName", "Optional TLS server name to use for connections to -remoteWrite.url. "+
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"By default the server name from -remoteWrite.url is used. If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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basicAuthUsername = flagutil.NewArray("remoteWrite.basicAuth.username", "Optional basic auth username to use for -remoteWrite.url. "+
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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basicAuthPassword = flagutil.NewArray("remoteWrite.basicAuth.password", "Optional basic auth password to use for -remoteWrite.url. "+
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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bearerToken = flagutil.NewArray("remoteWrite.bearerToken", "Optional bearer auth token to use for -remoteWrite.url. "+
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url")
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)
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type client struct {
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sanitizedURL string
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remoteWriteURL string
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authHeader string
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fq *persistentqueue.FastQueue
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hc *http.Client
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rl rateLimiter
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bytesSent *metrics.Counter
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blocksSent *metrics.Counter
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requestDuration *metrics.Histogram
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requestsOKCount *metrics.Counter
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errorsCount *metrics.Counter
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packetsDropped *metrics.Counter
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retriesCount *metrics.Counter
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wg sync.WaitGroup
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stopCh chan struct{}
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}
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func newClient(argIdx int, remoteWriteURL, sanitizedURL string, fq *persistentqueue.FastQueue, concurrency int) *client {
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tlsCfg, err := getTLSConfig(argIdx)
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if err != nil {
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logger.Panicf("FATAL: cannot initialize TLS config: %s", err)
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}
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tr := &http.Transport{
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Dial: statDial,
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TLSClientConfig: tlsCfg,
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TLSHandshakeTimeout: 5 * time.Second,
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MaxConnsPerHost: 2 * concurrency,
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MaxIdleConnsPerHost: 2 * concurrency,
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IdleConnTimeout: time.Minute,
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WriteBufferSize: 64 * 1024,
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}
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pURL := proxyURL.GetOptionalArg(argIdx)
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if len(pURL) > 0 {
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if !strings.Contains(pURL, "://") {
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logger.Fatalf("cannot parse -remoteWrite.proxyURL=%q: it must start with `http://`, `https://` or `socks5://`", pURL)
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}
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urlProxy, err := url.Parse(pURL)
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if err != nil {
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logger.Fatalf("cannot parse -remoteWrite.proxyURL=%q: %s", pURL, err)
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}
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tr.Proxy = http.ProxyURL(urlProxy)
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}
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authHeader := ""
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username := basicAuthUsername.GetOptionalArg(argIdx)
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password := basicAuthPassword.GetOptionalArg(argIdx)
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if len(username) > 0 || len(password) > 0 {
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// See https://en.wikipedia.org/wiki/Basic_access_authentication
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token := username + ":" + password
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token64 := base64.StdEncoding.EncodeToString([]byte(token))
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authHeader = "Basic " + token64
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}
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token := bearerToken.GetOptionalArg(argIdx)
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if len(token) > 0 {
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if authHeader != "" {
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logger.Fatalf("`-remoteWrite.bearerToken`=%q cannot be set when `-remoteWrite.basicAuth.*` flags are set", token)
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}
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authHeader = "Bearer " + token
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}
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c := &client{
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sanitizedURL: sanitizedURL,
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remoteWriteURL: remoteWriteURL,
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authHeader: authHeader,
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fq: fq,
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hc: &http.Client{
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Transport: tr,
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Timeout: sendTimeout.GetOptionalArgOrDefault(argIdx, time.Minute),
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},
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stopCh: make(chan struct{}),
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}
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if bytesPerSec := rateLimit.GetOptionalArgOrDefault(argIdx, 0); bytesPerSec > 0 {
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logger.Infof("applying %d bytes per second rate limit for -remoteWrite.url=%q", bytesPerSec, sanitizedURL)
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c.rl.perSecondLimit = int64(bytesPerSec)
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}
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c.rl.limitReached = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remote_write_rate_limit_reached_total{url=%q}`, c.sanitizedURL))
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c.bytesSent = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_bytes_sent_total{url=%q}`, c.sanitizedURL))
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c.blocksSent = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_blocks_sent_total{url=%q}`, c.sanitizedURL))
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c.requestDuration = metrics.GetOrCreateHistogram(fmt.Sprintf(`vmagent_remotewrite_duration_seconds{url=%q}`, c.sanitizedURL))
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c.requestsOKCount = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_requests_total{url=%q, status_code="2XX"}`, c.sanitizedURL))
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c.errorsCount = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_errors_total{url=%q}`, c.sanitizedURL))
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c.packetsDropped = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_packets_dropped_total{url=%q}`, c.sanitizedURL))
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c.retriesCount = metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_retries_count_total{url=%q}`, c.sanitizedURL))
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for i := 0; i < concurrency; i++ {
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c.wg.Add(1)
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go func() {
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defer c.wg.Done()
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c.runWorker()
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}()
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}
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logger.Infof("initialized client for -remoteWrite.url=%q", c.sanitizedURL)
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return c
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}
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func (c *client) MustStop() {
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close(c.stopCh)
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c.wg.Wait()
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logger.Infof("stopped client for -remoteWrite.url=%q", c.sanitizedURL)
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}
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func getTLSConfig(argIdx int) (*tls.Config, error) {
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c := &promauth.TLSConfig{
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CAFile: tlsCAFile.GetOptionalArg(argIdx),
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CertFile: tlsCertFile.GetOptionalArg(argIdx),
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KeyFile: tlsKeyFile.GetOptionalArg(argIdx),
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ServerName: tlsServerName.GetOptionalArg(argIdx),
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InsecureSkipVerify: tlsInsecureSkipVerify.GetOptionalArg(argIdx),
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}
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if c.CAFile == "" && c.CertFile == "" && c.KeyFile == "" && c.ServerName == "" && !c.InsecureSkipVerify {
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return nil, nil
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}
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cfg, err := promauth.NewConfig(".", nil, nil, "", "", c)
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if err != nil {
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return nil, fmt.Errorf("cannot populate TLS config: %w", err)
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}
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tlsCfg := cfg.NewTLSConfig()
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return tlsCfg, nil
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}
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func (c *client) runWorker() {
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var ok bool
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var block []byte
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ch := make(chan bool, 1)
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for {
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block, ok = c.fq.MustReadBlock(block[:0])
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if !ok {
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return
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}
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go func() {
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ch <- c.sendBlock(block)
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}()
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select {
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case ok := <-ch:
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if ok {
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// The block has been sent successfully
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continue
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}
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// Return unsent block to the queue.
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c.fq.MustWriteBlock(block)
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return
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case <-c.stopCh:
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// c must be stopped. Wait for a while in the hope the block will be sent.
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graceDuration := 5 * time.Second
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select {
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case ok := <-ch:
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if !ok {
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// Return unsent block to the queue.
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c.fq.MustWriteBlock(block)
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}
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case <-time.After(graceDuration):
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// Return unsent block to the queue.
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c.fq.MustWriteBlock(block)
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}
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return
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}
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}
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}
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// sendBlock returns false only if c.stopCh is closed.
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// Otherwise it tries sending the block to remote storage indefinitely.
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func (c *client) sendBlock(block []byte) bool {
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c.rl.register(len(block), c.stopCh)
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retryDuration := time.Second
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retriesCount := 0
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c.bytesSent.Add(len(block))
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c.blocksSent.Inc()
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again:
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req, err := http.NewRequest("POST", c.remoteWriteURL, bytes.NewBuffer(block))
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if err != nil {
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logger.Panicf("BUG: unexected error from http.NewRequest(%q): %s", c.sanitizedURL, err)
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}
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h := req.Header
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h.Set("User-Agent", "vmagent")
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h.Set("Content-Type", "application/x-protobuf")
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h.Set("Content-Encoding", "snappy")
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h.Set("X-Prometheus-Remote-Write-Version", "0.1.0")
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if c.authHeader != "" {
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req.Header.Set("Authorization", c.authHeader)
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}
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startTime := time.Now()
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resp, err := c.hc.Do(req)
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c.requestDuration.UpdateDuration(startTime)
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if err != nil {
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c.errorsCount.Inc()
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retryDuration *= 2
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if retryDuration > time.Minute {
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retryDuration = time.Minute
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}
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logger.Errorf("couldn't send a block with size %d bytes to %q: %s; re-sending the block in %.3f seconds",
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len(block), c.sanitizedURL, err, retryDuration.Seconds())
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t := timerpool.Get(retryDuration)
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select {
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case <-c.stopCh:
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timerpool.Put(t)
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return false
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case <-t.C:
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timerpool.Put(t)
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}
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c.retriesCount.Inc()
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goto again
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}
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statusCode := resp.StatusCode
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if statusCode/100 == 2 {
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_ = resp.Body.Close()
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c.requestsOKCount.Inc()
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return true
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}
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metrics.GetOrCreateCounter(fmt.Sprintf(`vmagent_remotewrite_requests_total{url=%q, status_code="%d"}`, c.sanitizedURL, statusCode)).Inc()
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if statusCode == 409 || statusCode == 400 {
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// Just drop block on 409 status code like Prometheus does.
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// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/873
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// drop block on 400 status code,
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// not expected that remote server will be able to handle it on retry
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// should fix https://github.com/VictoriaMetrics/VictoriaMetrics/issues/1149
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_ = resp.Body.Close()
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c.packetsDropped.Inc()
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return true
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}
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// Unexpected status code returned
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retriesCount++
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retryDuration *= 2
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if retryDuration > time.Minute {
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retryDuration = time.Minute
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}
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body, err := ioutil.ReadAll(resp.Body)
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_ = resp.Body.Close()
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if err != nil {
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logger.Errorf("cannot read response body from %q during retry #%d: %s", c.sanitizedURL, retriesCount, err)
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} else {
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logger.Errorf("unexpected status code received after sending a block with size %d bytes to %q during retry #%d: %d; response body=%q; "+
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"re-sending the block in %.3f seconds", len(block), c.sanitizedURL, retriesCount, statusCode, body, retryDuration.Seconds())
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}
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t := timerpool.Get(retryDuration)
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select {
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case <-c.stopCh:
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timerpool.Put(t)
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return false
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case <-t.C:
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timerpool.Put(t)
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}
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c.retriesCount.Inc()
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goto again
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}
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type rateLimiter struct {
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perSecondLimit int64
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// mu protects budget and deadline from concurrent access.
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mu sync.Mutex
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// The current budget. It is increased by perSecondLimit every second.
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budget int64
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// The next deadline for increasing the budget by perSecondLimit
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deadline time.Time
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limitReached *metrics.Counter
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}
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func (rl *rateLimiter) register(dataLen int, stopCh <-chan struct{}) {
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limit := rl.perSecondLimit
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if limit <= 0 {
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return
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}
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rl.mu.Lock()
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defer rl.mu.Unlock()
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for rl.budget <= 0 {
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if d := time.Until(rl.deadline); d > 0 {
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rl.limitReached.Inc()
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t := timerpool.Get(d)
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select {
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case <-stopCh:
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timerpool.Put(t)
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return
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case <-t.C:
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timerpool.Put(t)
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}
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}
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rl.budget += limit
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rl.deadline = time.Now().Add(time.Second)
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}
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rl.budget -= int64(dataLen)
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}
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