mirror of
https://github.com/VictoriaMetrics/VictoriaMetrics.git
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9c4b0334f2
The %q formatter may result in incorrectly formatted JSON string if the original string
contains special chars such as \x1b . They must be encoded as \u001b , otherwise the resulting JSON string
cannot be parsed by JSON parsers.
This is a follow-up for c0caa69939
See https://github.com/VictoriaMetrics/victorialogs-datasource/issues/24
345 lines
12 KiB
Go
345 lines
12 KiB
Go
package main
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import (
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"bufio"
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"flag"
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"fmt"
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"io"
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"math"
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"math/rand"
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"net/http"
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"net/url"
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"os"
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"strconv"
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"sync"
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"sync/atomic"
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"time"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/buildinfo"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/envflag"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/logger"
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"github.com/VictoriaMetrics/VictoriaMetrics/lib/promutils"
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)
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var (
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addr = flag.String("addr", "stdout", "HTTP address to push the generated logs to; if it is set to stdout, then logs are generated to stdout")
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workers = flag.Int("workers", 1, "The number of workers to use to push logs to -addr")
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start = newTimeFlag("start", "-1d", "Generated logs start from this time; see https://docs.victoriametrics.com/#timestamp-formats")
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end = newTimeFlag("end", "0s", "Generated logs end at this time; see https://docs.victoriametrics.com/#timestamp-formats")
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activeStreams = flag.Int("activeStreams", 100, "The number of active log streams to generate; see https://docs.victoriametrics.com/victorialogs/keyconcepts/#stream-fields")
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totalStreams = flag.Int("totalStreams", 0, "The number of total log streams; if -totalStreams > -activeStreams, then some active streams are substituted with new streams "+
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"during data generation")
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logsPerStream = flag.Int64("logsPerStream", 1_000, "The number of log entries to generate per each log stream. Log entries are evenly distributed between -start and -end")
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constFieldsPerLog = flag.Int("constFieldsPerLog", 3, "The number of fields with constaint values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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varFieldsPerLog = flag.Int("varFieldsPerLog", 1, "The number of fields with variable values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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dictFieldsPerLog = flag.Int("dictFieldsPerLog", 2, "The number of fields with up to 8 different values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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u8FieldsPerLog = flag.Int("u8FieldsPerLog", 1, "The number of fields with uint8 values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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u16FieldsPerLog = flag.Int("u16FieldsPerLog", 1, "The number of fields with uint16 values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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u32FieldsPerLog = flag.Int("u32FieldsPerLog", 1, "The number of fields with uint32 values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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u64FieldsPerLog = flag.Int("u64FieldsPerLog", 1, "The number of fields with uint64 values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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floatFieldsPerLog = flag.Int("floatFieldsPerLog", 1, "The number of fields with float64 values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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ipFieldsPerLog = flag.Int("ipFieldsPerLog", 1, "The number of fields with IPv4 values to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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timestampFieldsPerLog = flag.Int("timestampFieldsPerLog", 1, "The number of fields with ISO8601 timestamps per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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jsonFieldsPerLog = flag.Int("jsonFieldsPerLog", 1, "The number of JSON fields to generate per each log entry; "+
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"see https://docs.victoriametrics.com/victorialogs/keyconcepts/#data-model")
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statInterval = flag.Duration("statInterval", 10*time.Second, "The interval between publishing the stats")
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)
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func main() {
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// Write flags and help message to stdout, since it is easier to grep or pipe.
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flag.CommandLine.SetOutput(os.Stdout)
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envflag.Parse()
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buildinfo.Init()
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logger.Init()
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var remoteWriteURL *url.URL
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if *addr != "stdout" {
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urlParsed, err := url.Parse(*addr)
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if err != nil {
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logger.Fatalf("cannot parse -addr=%q: %s", *addr, err)
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}
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qs, err := url.ParseQuery(urlParsed.RawQuery)
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if err != nil {
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logger.Fatalf("cannot parse query string in -addr=%q: %w", *addr, err)
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}
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qs.Set("_stream_fields", "host,worker_id")
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urlParsed.RawQuery = qs.Encode()
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remoteWriteURL = urlParsed
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}
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if start.nsec >= end.nsec {
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logger.Fatalf("-start=%s must be smaller than -end=%s", start, end)
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}
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if *activeStreams <= 0 {
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logger.Fatalf("-activeStreams must be bigger than 0; got %d", *activeStreams)
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}
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if *logsPerStream <= 0 {
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logger.Fatalf("-logsPerStream must be bigger than 0; got %d", *logsPerStream)
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}
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if *totalStreams < *activeStreams {
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*totalStreams = *activeStreams
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}
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cfg := &workerConfig{
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url: remoteWriteURL,
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activeStreams: *activeStreams,
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totalStreams: *totalStreams,
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}
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// divide total and active streams among workers
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if *workers <= 0 {
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logger.Fatalf("-workers must be bigger than 0; got %d", *workers)
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}
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if *workers > *activeStreams {
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logger.Fatalf("-workers=%d cannot exceed -activeStreams=%d", *workers, *activeStreams)
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}
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cfg.activeStreams /= *workers
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cfg.totalStreams /= *workers
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logger.Infof("start -workers=%d workers for ingesting -logsPerStream=%d log entries per each -totalStreams=%d (-activeStreams=%d) on a time range -start=%s, -end=%s to -addr=%s",
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*workers, *logsPerStream, *totalStreams, *activeStreams, toRFC3339(start.nsec), toRFC3339(end.nsec), *addr)
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startTime := time.Now()
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var wg sync.WaitGroup
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for i := 0; i < *workers; i++ {
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wg.Add(1)
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go func(workerID int) {
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defer wg.Done()
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generateAndPushLogs(cfg, workerID)
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}(i)
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}
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go func() {
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prevEntries := uint64(0)
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prevBytes := uint64(0)
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ticker := time.NewTicker(*statInterval)
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for range ticker.C {
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currEntries := logEntriesCount.Load()
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deltaEntries := currEntries - prevEntries
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rateEntries := float64(deltaEntries) / statInterval.Seconds()
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currBytes := bytesGenerated.Load()
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deltaBytes := currBytes - prevBytes
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rateBytes := float64(deltaBytes) / statInterval.Seconds()
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logger.Infof("generated %dK log entries (%dK total) at %.0fK entries/sec, %dMB (%dMB total) at %.0fMB/sec",
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deltaEntries/1e3, currEntries/1e3, rateEntries/1e3, deltaBytes/1e6, currBytes/1e6, rateBytes/1e6)
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prevEntries = currEntries
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prevBytes = currBytes
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}
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}()
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wg.Wait()
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dSecs := time.Since(startTime).Seconds()
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currEntries := logEntriesCount.Load()
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currBytes := bytesGenerated.Load()
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rateEntries := float64(currEntries) / dSecs
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rateBytes := float64(currBytes) / dSecs
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logger.Infof("ingested %dK log entries (%dMB) in %.3f seconds; avg ingestion rate: %.0fK entries/sec, %.0fMB/sec", currEntries/1e3, currBytes/1e6, dSecs, rateEntries/1e3, rateBytes/1e6)
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}
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var logEntriesCount atomic.Uint64
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var bytesGenerated atomic.Uint64
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type workerConfig struct {
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url *url.URL
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activeStreams int
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totalStreams int
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}
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type statWriter struct {
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w io.Writer
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}
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func (sw *statWriter) Write(p []byte) (int, error) {
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bytesGenerated.Add(uint64(len(p)))
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return sw.w.Write(p)
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}
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func generateAndPushLogs(cfg *workerConfig, workerID int) {
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pr, pw := io.Pipe()
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sw := &statWriter{
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w: pw,
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}
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bw := bufio.NewWriter(sw)
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doneCh := make(chan struct{})
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go func() {
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generateLogs(bw, workerID, cfg.activeStreams, cfg.totalStreams)
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_ = bw.Flush()
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_ = pw.Close()
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close(doneCh)
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}()
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if cfg.url == nil {
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_, err := io.Copy(os.Stdout, pr)
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if err != nil {
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logger.Fatalf("unexpected error when writing logs to stdout: %s", err)
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}
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return
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}
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req, err := http.NewRequest("POST", cfg.url.String(), pr)
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if err != nil {
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logger.Fatalf("cannot create request to %q: %s", cfg.url, err)
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}
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resp, err := http.DefaultClient.Do(req)
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if err != nil {
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logger.Fatalf("cannot perform request to %q: %s", cfg.url, err)
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}
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if resp.StatusCode/100 != 2 {
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logger.Fatalf("unexpected status code got from %q: %d; want 2xx", cfg.url, err)
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}
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// Wait until all the generateLogs goroutine is finished.
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<-doneCh
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}
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func generateLogs(bw *bufio.Writer, workerID, activeStreams, totalStreams int) {
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streamLifetime := int64(float64(end.nsec-start.nsec) * (float64(activeStreams) / float64(totalStreams)))
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streamStep := int64(float64(end.nsec-start.nsec) / float64(totalStreams-activeStreams+1))
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step := streamLifetime / (*logsPerStream - 1)
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currNsec := start.nsec
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for currNsec < end.nsec {
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firstStreamID := int((currNsec - start.nsec) / streamStep)
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generateLogsAtTimestamp(bw, workerID, currNsec, firstStreamID, activeStreams)
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currNsec += step
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}
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}
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var runID = toUUID(rand.Uint64(), rand.Uint64())
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func generateLogsAtTimestamp(bw *bufio.Writer, workerID int, ts int64, firstStreamID, activeStreams int) {
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streamID := firstStreamID
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timeStr := toRFC3339(ts)
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for i := 0; i < activeStreams; i++ {
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ip := toIPv4(rand.Uint32())
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uuid := toUUID(rand.Uint64(), rand.Uint64())
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fmt.Fprintf(bw, `{"_time":"%s","_msg":"message for the stream %d and worker %d; ip=%s; uuid=%s; u64=%d","host":"host_%d","worker_id":"%d"`,
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timeStr, streamID, workerID, ip, uuid, rand.Uint64(), streamID, workerID)
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fmt.Fprintf(bw, `,"run_id":"%s"`, runID)
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for j := 0; j < *constFieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"const_%d":"some value %d %d"`, j, j, streamID)
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}
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for j := 0; j < *varFieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"var_%d":"some value %d %d"`, j, j, rand.Uint64())
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}
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for j := 0; j < *dictFieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"dict_%d":"%s"`, j, dictValues[rand.Intn(len(dictValues))])
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}
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for j := 0; j < *u8FieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"u8_%d":"%d"`, j, uint8(rand.Uint32()))
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}
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for j := 0; j < *u16FieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"u16_%d":"%d"`, j, uint16(rand.Uint32()))
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}
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for j := 0; j < *u32FieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"u32_%d":"%d"`, j, rand.Uint32())
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}
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for j := 0; j < *u64FieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"u64_%d":"%d"`, j, rand.Uint64())
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}
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for j := 0; j < *floatFieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"float_%d":"%v"`, j, math.Round(10_000*rand.Float64())/1000)
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}
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for j := 0; j < *ipFieldsPerLog; j++ {
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ip := toIPv4(rand.Uint32())
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fmt.Fprintf(bw, `,"ip_%d":"%s"`, j, ip)
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}
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for j := 0; j < *timestampFieldsPerLog; j++ {
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timestamp := toISO8601(int64(rand.Uint64()))
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fmt.Fprintf(bw, `,"timestamp_%d":"%s"`, j, timestamp)
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}
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for j := 0; j < *jsonFieldsPerLog; j++ {
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fmt.Fprintf(bw, `,"json_%d":"{\"foo\":\"bar_%d\",\"baz\":{\"a\":[\"x\",\"y\"]},\"f3\":NaN,\"f4\":%d}"`, j, rand.Intn(10), rand.Intn(100))
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}
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fmt.Fprintf(bw, "}\n")
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logEntriesCount.Add(1)
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streamID++
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}
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}
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var dictValues = []string{
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"debug",
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"info",
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"warn",
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"error",
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"fatal",
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"ERROR",
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"FATAL",
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"INFO",
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}
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func newTimeFlag(name, defaultValue, description string) *timeFlag {
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var tf timeFlag
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if err := tf.Set(defaultValue); err != nil {
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logger.Panicf("invalid defaultValue=%q for flag %q: %w", defaultValue, name, err)
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}
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flag.Var(&tf, name, description)
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return &tf
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}
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type timeFlag struct {
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s string
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nsec int64
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}
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func (tf *timeFlag) Set(s string) error {
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msec, err := promutils.ParseTimeMsec(s)
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if err != nil {
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return fmt.Errorf("cannot parse time from %q: %w", s, err)
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}
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tf.s = s
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tf.nsec = msec * 1e6
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return nil
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}
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func (tf *timeFlag) String() string {
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return tf.s
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}
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func toRFC3339(nsec int64) string {
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return time.Unix(0, nsec).UTC().Format(time.RFC3339Nano)
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}
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func toISO8601(nsec int64) string {
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return time.Unix(0, nsec).UTC().Format("2006-01-02T15:04:05.000Z")
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}
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func toIPv4(n uint32) string {
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dst := make([]byte, 0, len("255.255.255.255"))
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dst = marshalUint64(dst, uint64(n>>24))
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dst = append(dst, '.')
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dst = marshalUint64(dst, uint64((n>>16)&0xff))
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dst = append(dst, '.')
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dst = marshalUint64(dst, uint64((n>>8)&0xff))
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dst = append(dst, '.')
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dst = marshalUint64(dst, uint64(n&0xff))
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return string(dst)
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}
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func toUUID(a, b uint64) string {
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return fmt.Sprintf("%08x-%04x-%04x-%04x-%012x", a&(1<<32-1), (a>>32)&(1<<16-1), (a >> 48), b&(1<<16-1), b>>16)
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}
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// marshalUint64 appends string representation of n to dst and returns the result.
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func marshalUint64(dst []byte, n uint64) []byte {
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return strconv.AppendUint(dst, n, 10)
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}
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