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	* DVR: Support mp4 blackbox test based on hooks. * HEVC: Support DASH HEVC stream * Refine blackbox test. v6.0.14 Co-authored-by: pengfei.ma <pengfei.ma@ctechm.com> Co-authored-by: winlin <winlin@vip.126.com>
		
			
				
	
	
		
			252 lines
		
	
	
	
		
			7.4 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			252 lines
		
	
	
	
		
			7.4 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// The MIT License (MIT)
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//
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// # Copyright (c) 2023 Winlin
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy of
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// this software and associated documentation files (the "Software"), to deal in
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// the Software without restriction, including without limitation the rights to
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// use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of
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// the Software, and to permit persons to whom the Software is furnished to do so,
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// subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in all
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// copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS
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// FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR
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// COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER
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// IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
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// CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
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package blackbox
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import (
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	"context"
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	"fmt"
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	"github.com/ossrs/go-oryx-lib/errors"
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	"github.com/ossrs/go-oryx-lib/logger"
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	"math/rand"
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	"os"
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	"path"
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	"sync"
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	"testing"
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	"time"
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)
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func TestFast_RtmpPublish_DvrFlv_Basic(t *testing.T) {
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	// This case is run in parallel.
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	t.Parallel()
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	// Setup the max timeout for this case.
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	ctx, cancel := context.WithTimeout(logger.WithContext(context.Background()), time.Duration(*srsTimeout)*time.Millisecond)
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	defer cancel()
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	// Check a set of errors.
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	var r0, r1, r2, r3, r4, r5, r6 error
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	defer func(ctx context.Context) {
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		if err := filterTestError(ctx.Err(), r0, r1, r2, r3, r4, r5, r6); err != nil {
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			t.Errorf("Fail for err %+v", err)
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		} else {
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			logger.Tf(ctx, "test done with err %+v", err)
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		}
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	}(ctx)
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	var wg sync.WaitGroup
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	defer wg.Wait()
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	// Start hooks service.
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	hooks := NewHooksService()
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		r6 = hooks.Run(ctx, cancel)
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	}()
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	// Start SRS server and wait for it to be ready.
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	svr := NewSRSServer(func(v *srsServer) {
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		v.envs = []string{
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			"SRS_VHOST_DVR_ENABLED=on",
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			"SRS_VHOST_DVR_DVR_PLAN=session",
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			"SRS_VHOST_DVR_DVR_PATH=./objs/nginx/html/[app]/[stream].[timestamp].flv",
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			fmt.Sprintf("SRS_VHOST_DVR_DVR_DURATION=%v", *srsFFprobeDuration),
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			"SRS_VHOST_HTTP_HOOKS_ENABLED=on",
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			fmt.Sprintf("SRS_VHOST_HTTP_HOOKS_ON_DVR=http://localhost:%v/api/v1/dvrs", hooks.HooksAPI()),
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		}
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	})
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		<-hooks.ReadyCtx().Done()
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		r0 = svr.Run(ctx, cancel)
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	}()
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	// Start FFmpeg to publish stream.
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	duration := time.Duration(*srsFFprobeDuration) * time.Millisecond
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	streamID := fmt.Sprintf("stream-%v-%v", os.Getpid(), rand.Int())
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	streamURL := fmt.Sprintf("rtmp://localhost:%v/live/%v", svr.RTMPPort(), streamID)
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	ffmpeg := NewFFmpeg(func(v *ffmpegClient) {
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		// When process quit, still keep case to run.
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		v.cancelCaseWhenQuit, v.ffmpegDuration = false, duration
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		v.args = []string{
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			"-stream_loop", "-1", "-re", "-i", *srsPublishAvatar, "-c", "copy", "-f", "flv", streamURL,
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		}
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	})
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		<-svr.ReadyCtx().Done()
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		r1 = ffmpeg.Run(ctx, cancel)
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	}()
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	// Start FFprobe to detect and verify stream.
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	ffprobe := NewFFprobe(func(v *ffprobeClient) {
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		v.dvrByFFmpeg, v.streamURL = false, streamURL
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		v.duration, v.timeout = duration, time.Duration(*srsFFprobeTimeout)*time.Millisecond
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		wg.Add(1)
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		go func() {
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			defer wg.Done()
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			for evt := range hooks.HooksEvents() {
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				if onDvrEvt, ok := evt.(*HooksEventOnDvr); ok {
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					fp := path.Join(svr.WorkDir(), onDvrEvt.File)
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					logger.Tf(ctx, "FFprobe: Set the dvrFile=%v from callback", fp)
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					v.dvrFile = fp
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				}
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			}
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		}()
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	})
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		<-svr.ReadyCtx().Done()
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		r2 = ffprobe.Run(ctx, cancel)
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	}()
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	// Fast quit for probe done.
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	select {
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	case <-ctx.Done():
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	case <-ffprobe.ProbeDoneCtx().Done():
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		defer cancel()
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		str, m := ffprobe.Result()
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		if len(m.Streams) != 2 {
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			r3 = errors.Errorf("invalid streams=%v, %v, %v", len(m.Streams), m.String(), str)
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		}
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		if ts := 90; m.Format.ProbeScore < ts {
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			r4 = errors.Errorf("low score=%v < %v, %v, %v", m.Format.ProbeScore, ts, m.String(), str)
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		}
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		if dv := m.Duration(); dv < duration/2 {
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			r5 = errors.Errorf("short duration=%v < %v, %v, %v", dv, duration/2, m.String(), str)
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		}
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	}
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}
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func TestFast_RtmpPublish_DvrMp4_Basic(t *testing.T) {
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	// This case is run in parallel.
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	t.Parallel()
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	// Setup the max timeout for this case.
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	ctx, cancel := context.WithTimeout(logger.WithContext(context.Background()), time.Duration(*srsTimeout)*time.Millisecond)
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	defer cancel()
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	// Check a set of errors.
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	var r0, r1, r2, r3, r4, r5, r6 error
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	defer func(ctx context.Context) {
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		if err := filterTestError(ctx.Err(), r0, r1, r2, r3, r4, r5, r6); err != nil {
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			t.Errorf("Fail for err %+v", err)
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		} else {
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			logger.Tf(ctx, "test done with err %+v", err)
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		}
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	}(ctx)
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	var wg sync.WaitGroup
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	defer wg.Wait()
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	// Start hooks service.
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	hooks := NewHooksService()
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		r6 = hooks.Run(ctx, cancel)
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	}()
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	// Start SRS server and wait for it to be ready.
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	svr := NewSRSServer(func(v *srsServer) {
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		v.envs = []string{
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			"SRS_VHOST_DVR_ENABLED=on",
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			"SRS_VHOST_DVR_DVR_PLAN=session",
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			"SRS_VHOST_DVR_DVR_PATH=./objs/nginx/html/[app]/[stream].[timestamp].mp4",
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			fmt.Sprintf("SRS_VHOST_DVR_DVR_DURATION=%v", *srsFFprobeDuration),
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			"SRS_VHOST_HTTP_HOOKS_ENABLED=on",
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			fmt.Sprintf("SRS_VHOST_HTTP_HOOKS_ON_DVR=http://localhost:%v/api/v1/dvrs", hooks.HooksAPI()),
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		}
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	})
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		<-hooks.ReadyCtx().Done()
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		r0 = svr.Run(ctx, cancel)
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	}()
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	// Start FFmpeg to publish stream.
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	duration := time.Duration(*srsFFprobeDuration) * time.Millisecond
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	streamID := fmt.Sprintf("stream-%v-%v", os.Getpid(), rand.Int())
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	streamURL := fmt.Sprintf("rtmp://localhost:%v/live/%v", svr.RTMPPort(), streamID)
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	ffmpeg := NewFFmpeg(func(v *ffmpegClient) {
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		// When process quit, still keep case to run.
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		v.cancelCaseWhenQuit, v.ffmpegDuration = false, duration
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		v.args = []string{
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			"-stream_loop", "-1", "-re", "-i", *srsPublishAvatar, "-c", "copy", "-f", "flv", streamURL,
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		}
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	})
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		<-svr.ReadyCtx().Done()
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		r1 = ffmpeg.Run(ctx, cancel)
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	}()
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	// Start FFprobe to detect and verify stream.
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	ffprobe := NewFFprobe(func(v *ffprobeClient) {
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		v.dvrByFFmpeg, v.streamURL = false, streamURL
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		v.duration, v.timeout = duration, time.Duration(*srsFFprobeTimeout)*time.Millisecond
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		wg.Add(1)
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		go func() {
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			defer wg.Done()
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			for evt := range hooks.HooksEvents() {
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				if onDvrEvt, ok := evt.(*HooksEventOnDvr); ok {
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					fp := path.Join(svr.WorkDir(), onDvrEvt.File)
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					logger.Tf(ctx, "FFprobe: Set the dvrFile=%v from callback", fp)
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					v.dvrFile = fp
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				}
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			}
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		}()
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	})
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	wg.Add(1)
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	go func() {
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		defer wg.Done()
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		<-svr.ReadyCtx().Done()
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		r2 = ffprobe.Run(ctx, cancel)
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	}()
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	// Fast quit for probe done.
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	select {
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	case <-ctx.Done():
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	case <-ffprobe.ProbeDoneCtx().Done():
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		defer cancel()
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		str, m := ffprobe.Result()
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		if len(m.Streams) != 2 {
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			r3 = errors.Errorf("invalid streams=%v, %v, %v", len(m.Streams), m.String(), str)
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		}
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		if ts := 90; m.Format.ProbeScore < ts {
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			r4 = errors.Errorf("low score=%v < %v, %v, %v", m.Format.ProbeScore, ts, m.String(), str)
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		}
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		if dv := m.Duration(); dv < duration/2 {
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			r5 = errors.Errorf("short duration=%v < %v, %v, %v", dv, duration/2, m.String(), str)
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		}
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	}
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}
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