mirror of
https://github.com/m1k1o/neko.git
synced 2024-07-24 14:40:50 +12:00
269 lines
6.0 KiB
Go
269 lines
6.0 KiB
Go
package capture
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import (
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"errors"
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"reflect"
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"sync"
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"github.com/rs/zerolog"
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"github.com/rs/zerolog/log"
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"demodesk/neko/internal/capture/gst"
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"demodesk/neko/internal/types"
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"demodesk/neko/internal/types/codec"
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)
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var moveSinkListenerMu = sync.Mutex{}
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type StreamSinkManagerCtx struct {
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logger zerolog.Logger
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mu sync.Mutex
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wg sync.WaitGroup
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codec codec.RTPCodec
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pipeline *gst.Pipeline
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pipelineMu sync.Mutex
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pipelineStr func() string
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sample chan types.Sample
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sampleStop chan struct{}
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sampleUpdate chan struct{}
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listeners map[uintptr]*func(sample types.Sample)
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listenersMu sync.Mutex
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}
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func streamSinkNew(codec codec.RTPCodec, pipelineStr func() string, video_id string) *StreamSinkManagerCtx {
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logger := log.With().
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Str("module", "capture").
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Str("submodule", "stream-sink").
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Str("video_id", video_id).Logger()
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manager := &StreamSinkManagerCtx{
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logger: logger,
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codec: codec,
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pipelineStr: pipelineStr,
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sampleStop: make(chan struct{}),
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sampleUpdate: make(chan struct{}),
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listeners: map[uintptr]*func(sample types.Sample){},
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}
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manager.wg.Add(1)
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go func() {
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manager.logger.Debug().Msg("started emitting samples")
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defer manager.wg.Done()
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for {
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select {
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case <-manager.sampleStop:
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manager.logger.Debug().Msg("stopped emitting samples")
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return
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case <-manager.sampleUpdate:
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manager.logger.Debug().Msg("update emitting samples")
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case sample := <-manager.sample:
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manager.listenersMu.Lock()
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for _, emit := range manager.listeners {
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(*emit)(sample)
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}
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manager.listenersMu.Unlock()
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}
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}
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}()
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return manager
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}
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func (manager *StreamSinkManagerCtx) shutdown() {
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manager.logger.Info().Msgf("shutdown")
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manager.listenersMu.Lock()
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for key := range manager.listeners {
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delete(manager.listeners, key)
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}
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manager.listenersMu.Unlock()
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manager.destroyPipeline()
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close(manager.sampleStop)
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manager.wg.Wait()
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}
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func (manager *StreamSinkManagerCtx) Codec() codec.RTPCodec {
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return manager.codec
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}
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func (manager *StreamSinkManagerCtx) start() error {
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if len(manager.listeners) == 0 {
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err := manager.createPipeline()
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if err != nil && !errors.Is(err, types.ErrCapturePipelineAlreadyExists) {
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return err
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}
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manager.logger.Info().Msgf("first listener, starting")
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}
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return nil
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}
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func (manager *StreamSinkManagerCtx) stop() {
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if len(manager.listeners) == 0 {
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manager.destroyPipeline()
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manager.logger.Info().Msgf("last listener, stopping")
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}
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}
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func (manager *StreamSinkManagerCtx) addListener(listener *func(sample types.Sample)) {
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ptr := reflect.ValueOf(listener).Pointer()
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manager.listenersMu.Lock()
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manager.listeners[ptr] = listener
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manager.listenersMu.Unlock()
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manager.logger.Debug().Interface("ptr", ptr).Msgf("adding listener")
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}
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func (manager *StreamSinkManagerCtx) removeListener(listener *func(sample types.Sample)) {
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ptr := reflect.ValueOf(listener).Pointer()
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manager.listenersMu.Lock()
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delete(manager.listeners, ptr)
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manager.listenersMu.Unlock()
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manager.logger.Debug().Interface("ptr", ptr).Msgf("removing listener")
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}
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func (manager *StreamSinkManagerCtx) AddListener(listener *func(sample types.Sample)) error {
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manager.mu.Lock()
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defer manager.mu.Unlock()
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if listener == nil {
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return errors.New("listener cannot be nil")
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}
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// start if stopped
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if err := manager.start(); err != nil {
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return err
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}
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// add listener
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manager.addListener(listener)
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return nil
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}
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func (manager *StreamSinkManagerCtx) RemoveListener(listener *func(sample types.Sample)) error {
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manager.mu.Lock()
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defer manager.mu.Unlock()
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if listener == nil {
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return errors.New("listener cannot be nil")
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}
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// remove listener
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manager.removeListener(listener)
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// stop if started
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manager.stop()
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return nil
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}
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// moving listeners between streams ensures, that target pipeline is running
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// before listener is added, and stops source pipeline if there are 0 listeners
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func (manager *StreamSinkManagerCtx) MoveListenerTo(listener *func(sample types.Sample), stream types.StreamSinkManager) error {
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if listener == nil {
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return errors.New("listener cannot be nil")
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}
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targetStream, ok := stream.(*StreamSinkManagerCtx)
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if !ok {
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return errors.New("target stream manager does not support moving listeners")
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}
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// we need to acquire both mutextes, from source stream and from target stream
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// in order to do that safely (without possibility of deadlock) we need third
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// global mutex, that ensures atomic locking
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// lock global mutex
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moveSinkListenerMu.Lock()
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// lock source stream
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manager.mu.Lock()
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defer manager.mu.Unlock()
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// lock target stream
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targetStream.mu.Lock()
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defer targetStream.mu.Unlock()
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// unlock global mutex
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moveSinkListenerMu.Unlock()
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// start if stopped
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if err := targetStream.start(); err != nil {
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return err
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}
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// swap listeners
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manager.removeListener(listener)
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targetStream.addListener(listener)
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// stop if started
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manager.stop()
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return nil
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}
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func (manager *StreamSinkManagerCtx) ListenersCount() int {
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manager.listenersMu.Lock()
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defer manager.listenersMu.Unlock()
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return len(manager.listeners)
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}
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func (manager *StreamSinkManagerCtx) Started() bool {
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return manager.ListenersCount() > 0
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}
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func (manager *StreamSinkManagerCtx) createPipeline() error {
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manager.pipelineMu.Lock()
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defer manager.pipelineMu.Unlock()
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if manager.pipeline != nil {
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return types.ErrCapturePipelineAlreadyExists
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}
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var err error
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pipelineStr := manager.pipelineStr()
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manager.logger.Info().
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Str("codec", manager.codec.Name).
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Str("src", pipelineStr).
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Msgf("creating pipeline")
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manager.pipeline, err = gst.CreatePipeline(pipelineStr)
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if err != nil {
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return err
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}
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manager.pipeline.AttachAppsink("appsink")
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manager.pipeline.Play()
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manager.sample = manager.pipeline.Sample
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manager.sampleUpdate <- struct{}{}
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return nil
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}
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func (manager *StreamSinkManagerCtx) destroyPipeline() {
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manager.pipelineMu.Lock()
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defer manager.pipelineMu.Unlock()
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if manager.pipeline == nil {
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return
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}
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manager.pipeline.Stop()
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manager.logger.Info().Msgf("destroying pipeline")
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manager.pipeline = nil
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}
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