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package remotewrite
import (
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"bytes"
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"fmt"
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"io/ioutil"
"net/http"
"net/url"
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"strings"
"sync"
"time"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/awsapi"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/flagutil"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
"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"
)
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 " +
"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. " +
"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. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
tlsKeyFile = flagutil . NewArray ( "remoteWrite.tlsKeyFile" , "Optional path to client-side TLS certificate key to use when connecting to -remoteWrite.url. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
tlsCAFile = flagutil . NewArray ( "remoteWrite.tlsCAFile" , "Optional path to TLS CA file to use for verifying connections to -remoteWrite.url. " +
"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. " +
"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. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
basicAuthPassword = flagutil . NewArray ( "remoteWrite.basicAuth.password" , "Optional basic auth password to use for -remoteWrite.url. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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basicAuthPasswordFile = flagutil . NewArray ( "remoteWrite.basicAuth.passwordFile" , "Optional path to basic auth password to use for -remoteWrite.url. " +
"The file is re-read every second. " +
"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. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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bearerTokenFile = flagutil . NewArray ( "remoteWrite.bearerTokenFile" , "Optional path to bearer token file to use for -remoteWrite.url. " +
"The token is re-read from the file every second. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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oauth2ClientID = flagutil . NewArray ( "remoteWrite.oauth2.clientID" , "Optional OAuth2 clientID 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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oauth2ClientSecret = flagutil . NewArray ( "remoteWrite.oauth2.clientSecret" , "Optional OAuth2 clientSecret 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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oauth2ClientSecretFile = flagutil . NewArray ( "remoteWrite.oauth2.clientSecretFile" , "Optional OAuth2 clientSecretFile 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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oauth2TokenURL = flagutil . NewArray ( "remoteWrite.oauth2.tokenUrl" , "Optional OAuth2 tokenURL 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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oauth2Scopes = flagutil . NewArray ( "remoteWrite.oauth2.scopes" , "Optional OAuth2 scopes to use for -remoteWrite.url. Scopes must be delimited by ';'. " +
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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awsUseSigv4 = flagutil . NewArrayBool ( "remoteWrite.aws.useSigv4" , "Enables SigV4 request signing for -remoteWrite.url. " +
"It is expected that other -remoteWrite.aws.* command-line flags are set if sigv4 request signing is enabled. " +
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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awsRegion = flagutil . NewArray ( "remoteWrite.aws.region" , "Optional AWS region to use for -remoteWrite.url if -remoteWrite.aws.useSigv4 is set. " +
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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awsRoleARN = flagutil . NewArray ( "remoteWrite.aws.roleARN" , "Optional AWS roleARN to use for -remoteWrite.url if -remoteWrite.aws.useSigv4 is set. " +
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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awsAccessKey = flagutil . NewArray ( "remoteWrite.aws.accessKey" , "Optional AWS AccessKey to use for -remoteWrite.url if -remoteWrite.aws.useSigv4 is set. " +
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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awsService = flagutil . NewArray ( "remoteWrite.aws.serice" , "Optional AWS Service to use for -remoteWrite.url if -remoteWrite.aws.useSigv4 is set. " +
"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url. Defaults to \"aps\"." )
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awsSecretKey = flagutil . NewArray ( "remoteWrite.aws.secretKey" , "Optional AWS SecretKey to use for -remoteWrite.url if -remoteWrite.aws.useSigv4 is set. " +
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"If multiple args are set, then they are applied independently for the corresponding -remoteWrite.url" )
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)
type client struct {
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sanitizedURL string
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remoteWriteURL string
fq * persistentqueue . FastQueue
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hc * http . Client
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sendBlock func ( block [ ] byte ) bool
authCfg * promauth . Config
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awsCfg * awsapi . Config
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rl rateLimiter
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bytesSent * metrics . Counter
blocksSent * metrics . Counter
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requestDuration * metrics . Histogram
requestsOKCount * metrics . Counter
errorsCount * metrics . Counter
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packetsDropped * metrics . Counter
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rateLimit * metrics . Gauge
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retriesCount * metrics . Counter
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sendDuration * metrics . FloatCounter
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wg sync . WaitGroup
stopCh chan struct { }
}
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func newHTTPClient ( argIdx int , remoteWriteURL , sanitizedURL string , fq * persistentqueue . FastQueue , concurrency int ) * client {
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authCfg , err := getAuthConfig ( argIdx )
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if err != nil {
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logger . Panicf ( "FATAL: cannot initialize auth config for remoteWrite.url=%q: %s" , remoteWriteURL , err )
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}
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tlsCfg := authCfg . NewTLSConfig ( )
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awsCfg , err := getAWSAPIConfig ( argIdx )
if err != nil {
logger . Fatalf ( "FATAL: cannot initialize AWS Config for remoteWrite.url=%q: %s" , remoteWriteURL , err )
}
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tr := & http . Transport {
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DialContext : statDial ,
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TLSClientConfig : tlsCfg ,
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TLSHandshakeTimeout : 10 * time . Second ,
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MaxConnsPerHost : 2 * concurrency ,
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MaxIdleConnsPerHost : 2 * concurrency ,
IdleConnTimeout : time . Minute ,
WriteBufferSize : 64 * 1024 ,
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}
pURL := proxyURL . GetOptionalArg ( argIdx )
if len ( pURL ) > 0 {
if ! strings . Contains ( pURL , "://" ) {
logger . Fatalf ( "cannot parse -remoteWrite.proxyURL=%q: it must start with `http://`, `https://` or `socks5://`" , pURL )
}
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pu , err := url . Parse ( pURL )
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if err != nil {
logger . Fatalf ( "cannot parse -remoteWrite.proxyURL=%q: %s" , pURL , err )
}
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tr . Proxy = http . ProxyURL ( pu )
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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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authCfg : authCfg ,
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awsCfg : awsCfg ,
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fq : fq ,
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hc : & http . Client {
Transport : tr ,
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Timeout : sendTimeout . GetOptionalArgOrDefault ( argIdx , time . Minute ) ,
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} ,
stopCh : make ( chan struct { } ) ,
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}
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c . sendBlock = c . sendBlockHTTP
return c
}
func ( c * client ) init ( argIdx , concurrency int , sanitizedURL string ) {
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if bytesPerSec := rateLimit . GetOptionalArgOrDefault ( argIdx , 0 ) ; bytesPerSec > 0 {
logger . Infof ( "applying %d bytes per second rate limit for -remoteWrite.url=%q" , bytesPerSec , sanitizedURL )
c . rl . perSecondLimit = int64 ( bytesPerSec )
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}
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c . rl . limitReached = metrics . GetOrCreateCounter ( fmt . Sprintf ( ` vmagent_remotewrite_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 ) )
c . blocksSent = metrics . GetOrCreateCounter ( fmt . Sprintf ( ` vmagent_remotewrite_blocks_sent_total { url=%q} ` , c . sanitizedURL ) )
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c . rateLimit = metrics . GetOrCreateGauge ( fmt . Sprintf ( ` vmagent_remotewrite_rate_limit { url=%q} ` , c . sanitizedURL ) , func ( ) float64 {
return float64 ( rateLimit . GetOptionalArgOrDefault ( argIdx , 0 ) )
} )
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c . requestDuration = metrics . GetOrCreateHistogram ( fmt . Sprintf ( ` vmagent_remotewrite_duration_seconds { url=%q} ` , c . sanitizedURL ) )
c . requestsOKCount = metrics . GetOrCreateCounter ( fmt . Sprintf ( ` vmagent_remotewrite_requests_total { url=%q, status_code="2XX"} ` , c . sanitizedURL ) )
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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c . sendDuration = metrics . GetOrCreateFloatCounter ( fmt . Sprintf ( ` vmagent_remotewrite_send_duration_seconds_total { url=%q} ` , c . sanitizedURL ) )
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for i := 0 ; i < concurrency ; i ++ {
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c . wg . Add ( 1 )
go func ( ) {
defer c . wg . Done ( )
c . runWorker ( )
} ( )
}
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logger . Infof ( "initialized client for -remoteWrite.url=%q" , c . sanitizedURL )
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}
func ( c * client ) MustStop ( ) {
close ( c . stopCh )
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 getAuthConfig ( argIdx int ) ( * promauth . Config , error ) {
username := basicAuthUsername . GetOptionalArg ( argIdx )
password := basicAuthPassword . GetOptionalArg ( argIdx )
passwordFile := basicAuthPasswordFile . GetOptionalArg ( argIdx )
var basicAuthCfg * promauth . BasicAuthConfig
if username != "" || password != "" || passwordFile != "" {
basicAuthCfg = & promauth . BasicAuthConfig {
Username : username ,
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Password : promauth . NewSecret ( password ) ,
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PasswordFile : passwordFile ,
}
}
token := bearerToken . GetOptionalArg ( argIdx )
tokenFile := bearerTokenFile . GetOptionalArg ( argIdx )
var oauth2Cfg * promauth . OAuth2Config
clientSecret := oauth2ClientSecret . GetOptionalArg ( argIdx )
clientSecretFile := oauth2ClientSecretFile . GetOptionalArg ( argIdx )
if clientSecretFile != "" || clientSecret != "" {
oauth2Cfg = & promauth . OAuth2Config {
ClientID : oauth2ClientID . GetOptionalArg ( argIdx ) ,
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ClientSecret : promauth . NewSecret ( clientSecret ) ,
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ClientSecretFile : clientSecretFile ,
TokenURL : oauth2TokenURL . GetOptionalArg ( argIdx ) ,
Scopes : strings . Split ( oauth2Scopes . GetOptionalArg ( argIdx ) , ";" ) ,
}
}
tlsCfg := & promauth . TLSConfig {
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CAFile : tlsCAFile . GetOptionalArg ( argIdx ) ,
CertFile : tlsCertFile . GetOptionalArg ( argIdx ) ,
KeyFile : tlsKeyFile . GetOptionalArg ( argIdx ) ,
ServerName : tlsServerName . GetOptionalArg ( argIdx ) ,
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InsecureSkipVerify : tlsInsecureSkipVerify . GetOptionalArg ( argIdx ) ,
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}
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authCfg , err := promauth . NewConfig ( "." , nil , basicAuthCfg , token , tokenFile , oauth2Cfg , tlsCfg , nil )
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if err != nil {
return nil , fmt . Errorf ( "cannot populate OAuth2 config for remoteWrite idx: %d, err: %w" , argIdx , err )
}
return authCfg , nil
}
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func getAWSAPIConfig ( argIdx int ) ( * awsapi . Config , error ) {
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if ! awsUseSigv4 . GetOptionalArg ( argIdx ) {
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return nil , nil
}
region := awsRegion . GetOptionalArg ( argIdx )
roleARN := awsRoleARN . GetOptionalArg ( argIdx )
accessKey := awsAccessKey . GetOptionalArg ( argIdx )
secretKey := awsSecretKey . GetOptionalArg ( argIdx )
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service := awsService . GetOptionalArg ( argIdx )
cfg , err := awsapi . NewConfig ( region , roleARN , accessKey , secretKey , service )
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if err != nil {
return nil , err
}
return cfg , nil
}
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func ( c * client ) runWorker ( ) {
var ok bool
var block [ ] byte
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ch := make ( chan bool , 1 )
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for {
block , ok = c . fq . MustReadBlock ( block [ : 0 ] )
if ! ok {
return
}
go func ( ) {
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startTime := time . Now ( )
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ch <- c . sendBlock ( block )
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c . sendDuration . Add ( time . Since ( startTime ) . Seconds ( ) )
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} ( )
select {
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case ok := <- ch :
if ok {
// The block has been sent successfully
continue
}
// Return unsent block to the queue.
c . fq . MustWriteBlock ( block )
return
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case <- c . stopCh :
// c must be stopped. Wait for a while in the hope the block will be sent.
graceDuration := 5 * time . Second
select {
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case ok := <- ch :
if ! ok {
// Return unsent block to the queue.
c . fq . MustWriteBlock ( block )
}
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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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}
return
}
}
}
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// sendBlockHTTP 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 ) sendBlockHTTP ( 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 ) )
c . blocksSent . Inc ( )
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sigv4Hash := ""
if c . awsCfg != nil {
sigv4Hash = awsapi . HashHex ( block )
}
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again :
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req , err := http . NewRequest ( "POST" , c . remoteWriteURL , bytes . NewBuffer ( block ) )
if err != nil {
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logger . Panicf ( "BUG: unexpected error from http.NewRequest(%q): %s" , c . sanitizedURL , err )
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}
h := req . Header
h . Set ( "User-Agent" , "vmagent" )
h . Set ( "Content-Type" , "application/x-protobuf" )
h . Set ( "Content-Encoding" , "snappy" )
h . Set ( "X-Prometheus-Remote-Write-Version" , "0.1.0" )
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c . authCfg . SetHeaders ( req , true )
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if c . awsCfg != nil {
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if err := c . awsCfg . SignRequest ( req , sigv4Hash ) ; err != nil {
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// there is no need in retry, request will be rejected by client.Do and retried by code below
logger . Warnf ( "cannot sign remoteWrite request with AWS sigv4: %s" , err )
}
}
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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 )
if err != nil {
c . errorsCount . Inc ( )
retryDuration *= 2
if retryDuration > time . Minute {
retryDuration = time . Minute
}
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logger . Warnf ( "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 {
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 ( )
goto again
}
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statusCode := resp . StatusCode
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if statusCode / 100 == 2 {
_ = resp . Body . Close ( )
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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body , err := ioutil . ReadAll ( resp . Body )
_ = resp . Body . Close ( )
l := logger . WithThrottler ( "remoteWriteRejected" , 5 * time . Second )
if err != nil {
l . Errorf ( "sending a block with size %d bytes to %q was rejected (skipping the block): status code %d; " +
"failed to read response body: %s" ,
len ( block ) , c . sanitizedURL , statusCode , err )
} else {
l . Errorf ( "sending a block with size %d bytes to %q was rejected (skipping the block): status code %d; response body: %s" ,
len ( block ) , c . sanitizedURL , statusCode , string ( body ) )
}
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// Just drop block on 409 and 400 status codes like Prometheus does.
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// See https://github.com/VictoriaMetrics/VictoriaMetrics/issues/873
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// and https://github.com/VictoriaMetrics/VictoriaMetrics/issues/1149
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_ = resp . Body . Close ( )
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
if retryDuration > time . Minute {
retryDuration = time . Minute
}
body , err := ioutil . ReadAll ( resp . Body )
_ = resp . Body . Close ( )
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 {
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 ( )
goto again
2020-04-17 12:51:29 +00:00
}
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type rateLimiter struct {
perSecondLimit int64
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// mu protects budget and deadline from concurrent access.
mu sync . Mutex
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// The current budget. It is increased by perSecondLimit every second.
budget int64
// The next deadline for increasing the budget by perSecondLimit
deadline time . Time
limitReached * metrics . Counter
}
func ( rl * rateLimiter ) register ( dataLen int , stopCh <- chan struct { } ) {
limit := rl . perSecondLimit
if limit <= 0 {
return
}
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rl . mu . Lock ( )
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 {
case <- stopCh :
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timerpool . Put ( t )
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return
case <- t . C :
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timerpool . Put ( t )
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}
}
rl . budget += limit
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rl . deadline = time . Now ( ) . Add ( time . Second )
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}
rl . budget -= int64 ( dataLen )
}