mirror of
https://github.com/m1k1o/neko.git
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245 lines
6.0 KiB
Go
245 lines
6.0 KiB
Go
package capture
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import (
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"sync"
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"github.com/kataras/go-events"
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"github.com/rs/zerolog"
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"github.com/rs/zerolog/log"
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"demodesk/neko/internal/types"
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"demodesk/neko/internal/types/codec"
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"demodesk/neko/internal/config"
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"demodesk/neko/internal/capture/gst"
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)
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type CaptureManagerCtx struct {
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logger zerolog.Logger
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mu sync.Mutex
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video *gst.Pipeline
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audio *gst.Pipeline
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config *config.Capture
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emit_update chan bool
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emit_stop chan bool
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video_sample chan types.Sample
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audio_sample chan types.Sample
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emmiter events.EventEmmiter
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streaming bool
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desktop types.DesktopManager
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broadcast *BroacastManagerCtx
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screencast *ScreencastManagerCtx
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}
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func New(desktop types.DesktopManager, config *config.Capture) *CaptureManagerCtx {
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return &CaptureManagerCtx{
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logger: log.With().Str("module", "capture").Logger(),
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mu: sync.Mutex{},
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emit_update: make(chan bool),
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emit_stop: make(chan bool),
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emmiter: events.New(),
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config: config,
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streaming: false,
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desktop: desktop,
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broadcast: broadcastNew(config),
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screencast: screencastNew(config),
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}
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}
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func (manager *CaptureManagerCtx) Start() {
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if manager.broadcast.Enabled() {
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if err := manager.broadcast.createPipeline(); err != nil {
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manager.logger.Panic().Err(err).Msg("unable to create broadcast pipeline")
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}
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}
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manager.desktop.OnBeforeScreenSizeChange(func() {
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if manager.Streaming() {
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manager.destroyVideoPipeline()
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}
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if manager.broadcast.Enabled() {
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manager.broadcast.destroyPipeline()
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}
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if manager.screencast.Started() {
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manager.screencast.destroyPipeline()
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}
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})
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manager.desktop.OnAfterScreenSizeChange(func() {
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if manager.Streaming() {
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manager.createVideoPipeline()
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}
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if manager.broadcast.Enabled() {
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if err := manager.broadcast.createPipeline(); err != nil {
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manager.logger.Panic().Err(err).Msg("unable to recreate broadcast pipeline")
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}
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}
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if manager.screencast.Started() {
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if err := manager.screencast.createPipeline(); err != nil {
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manager.logger.Panic().Err(err).Msg("unable to recreate screencast pipeline")
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}
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}
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})
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go func() {
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manager.logger.Debug().Msg("started emitting samples")
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for {
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select {
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case <-manager.emit_stop:
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manager.logger.Debug().Msg("stopped emitting samples")
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return
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case <-manager.emit_update:
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manager.logger.Debug().Msg("update emitting samples")
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case sample := <-manager.video_sample:
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manager.emmiter.Emit("video", sample)
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case sample := <-manager.audio_sample:
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manager.emmiter.Emit("audio", sample)
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}
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}
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}()
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}
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func (manager *CaptureManagerCtx) Shutdown() error {
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manager.logger.Info().Msgf("capture shutting down")
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if manager.Streaming() {
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manager.StopStream()
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}
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manager.broadcast.destroyPipeline()
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manager.screencast.destroyPipeline()
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manager.emit_stop <- true
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manager.screencast.shutdown <- true
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return nil
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}
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func (manager *CaptureManagerCtx) Broadcast() types.BroadcastManager {
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return manager.broadcast
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}
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func (manager *CaptureManagerCtx) Screencast() types.ScreencastManager {
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return manager.screencast
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}
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func (manager *CaptureManagerCtx) VideoCodec() codec.RTPCodec {
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return manager.config.VideoCodec
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}
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func (manager *CaptureManagerCtx) AudioCodec() codec.RTPCodec {
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return manager.config.AudioCodec
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}
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func (manager *CaptureManagerCtx) OnVideoFrame(listener func(sample types.Sample)) {
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manager.emmiter.On("video", func(payload ...interface{}) {
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listener(payload[0].(types.Sample))
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})
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}
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func (manager *CaptureManagerCtx) OnAudioFrame(listener func(sample types.Sample)) {
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manager.emmiter.On("audio", func(payload ...interface{}) {
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listener(payload[0].(types.Sample))
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})
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}
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func (manager *CaptureManagerCtx) StartStream() {
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manager.mu.Lock()
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defer manager.mu.Unlock()
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manager.logger.Info().Msgf("starting pipelines")
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manager.createVideoPipeline()
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manager.createAudioPipeline()
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manager.streaming = true
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}
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func (manager *CaptureManagerCtx) StopStream() {
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manager.mu.Lock()
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defer manager.mu.Unlock()
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manager.logger.Info().Msgf("stopping pipelines")
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manager.destroyVideoPipeline()
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manager.destroyAudioPipeline()
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manager.streaming = false
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}
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func (manager *CaptureManagerCtx) Streaming() bool {
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manager.mu.Lock()
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defer manager.mu.Unlock()
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return manager.streaming
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}
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func (manager *CaptureManagerCtx) createVideoPipeline() {
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var err error
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manager.logger.Info().
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Str("video_codec", manager.config.VideoCodec.Name).
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Str("video_display", manager.config.Display).
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Str("video_params", manager.config.VideoParams).
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Msgf("creating video pipeline")
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manager.video, err = gst.CreateAppPipeline(
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manager.config.VideoCodec,
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manager.config.Display,
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manager.config.VideoParams,
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)
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if err != nil {
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manager.logger.Panic().Err(err).Msg("unable to create video pipeline")
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}
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manager.logger.Info().
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Str("src", manager.video.Src).
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Msgf("starting video pipeline")
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manager.video.Start()
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manager.video_sample = manager.video.Sample
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manager.emit_update <-true
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}
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func (manager *CaptureManagerCtx) destroyVideoPipeline() {
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manager.logger.Info().Msgf("stopping video pipeline")
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manager.video.Stop()
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}
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func (manager *CaptureManagerCtx) createAudioPipeline() {
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var err error
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manager.logger.Info().
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Str("audio_codec", manager.config.AudioCodec.Name).
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Str("audio_display", manager.config.Device).
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Str("audio_params", manager.config.AudioParams).
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Msgf("creating audio pipeline")
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manager.audio, err = gst.CreateAppPipeline(
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manager.config.AudioCodec,
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manager.config.Device,
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manager.config.AudioParams,
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)
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if err != nil {
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manager.logger.Panic().Err(err).Msg("unable to create audio pipeline")
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}
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manager.logger.Info().
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Str("src", manager.audio.Src).
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Msgf("starting audio pipeline")
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manager.audio.Start()
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manager.audio_sample = manager.audio.Sample
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manager.emit_update <-true
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}
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func (manager *CaptureManagerCtx) destroyAudioPipeline() {
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manager.logger.Info().Msgf("stopping audio pipeline")
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manager.audio.Stop()
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}
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