mirror of https://bitbucket.org/ausocean/av.git
revid: gave AudioDevice a logger
This commit is contained in:
parent
dd66c58f40
commit
5225896924
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@ -55,12 +55,11 @@ const (
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// Rates contains the audio sample rates used by revid.
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var Rates = [8]int{8000, 16000, 32000, 44100, 48000, 88200, 96000, 192000}
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var log *logger.Logger
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// AudioDevice holds everything we need to know about the audio input stream.
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// Note: At 44100 Hz sample rate, 2 channels and 16-bit samples, a period of 5 seconds
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// results in PCM data chunks of 882000 bytes. A longer period exceeds datastore's 1MB blob limit.
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type AudioDevice struct {
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l Logger
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mu sync.Mutex
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source string // Name of audio source, or empty for the default source.
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mode uint8 // Operating mode, either running, paused, or stopped.
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@ -84,6 +83,9 @@ type AudioConfig struct {
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// NewAudioDevice initializes and returns an AudioDevice struct which can be started, read from, and stopped.
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func NewAudioDevice(cfg *AudioConfig) *AudioDevice {
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a := &AudioDevice{}
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a.AudioConfig = cfg
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// Initialize logger.
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logLevel := int(logger.Debug)
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validLogLevel := true
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@ -92,26 +94,23 @@ func NewAudioDevice(cfg *AudioConfig) *AudioDevice {
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validLogLevel = false
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}
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logSender := smartlogger.New(logPath)
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log = logger.New(int8(logLevel), &logSender.LogRoller)
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log.Log(logger.Info, "log-netsender: Logger Initialized")
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a.l = logger.New(int8(logLevel), &logSender.LogRoller)
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a.l.Log(logger.Info, "log-netsender: Logger Initialized")
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if !validLogLevel {
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log.Log(logger.Error, "Invalid log level was defaulted to Info")
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a.l.Log(logger.Error, "Invalid log level was defaulted to Info")
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}
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a := &AudioDevice{}
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a.AudioConfig = cfg
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// Open the requested audio device.
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err := a.open()
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if err != nil {
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log.Log(logger.Fatal, "alsa.open failed", "error", err.Error())
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a.l.Log(logger.Fatal, "alsa.open failed", "error", err.Error())
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}
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// Setup ring buffer to capture audio in periods of a.RecPeriod seconds, and buffer rbDuration seconds in total.
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a.ab = a.dev.NewBufferDuration(time.Duration(a.RecPeriod * float64(time.Second)))
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cs := (float64((len(a.ab.Data)/a.dev.BufferFormat().Channels)*a.Channels) / float64(a.dev.BufferFormat().Rate)) * float64(a.SampleRate)
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if cs < 1 {
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log.Log(logger.Fatal, "given AudioConfig parameters are too small")
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a.l.Log(logger.Fatal, "given AudioConfig parameters are too small")
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}
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a.chunkSize = int(cs)
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a.rb = ring.NewBuffer(rbLen, a.chunkSize, rbTimeout)
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@ -140,7 +139,7 @@ func (a *AudioDevice) Start() {
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// Open the audio device and start recording.
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err := a.open()
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if err != nil {
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log.Log(logger.Fatal, "alsa.open failed", "error", err.Error())
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a.l.Log(logger.Fatal, "alsa.open failed", "error", err.Error())
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}
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go a.input()
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a.mode = running
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@ -156,7 +155,7 @@ func (a *AudioDevice) Stop() {
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fmt.Println("stop lock")
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a.mu.Lock()
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if a.dev != nil {
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log.Log(logger.Debug, "Closing", "source", a.source)
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a.l.Log(logger.Debug, "Closing", "source", a.source)
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a.dev.Close()
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a.dev = nil
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}
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@ -175,11 +174,11 @@ func (a *AudioDevice) ChunkSize() int {
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// If name is empty, the first recording device is used.
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func (a *AudioDevice) open() error {
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if a.dev != nil {
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log.Log(logger.Debug, "Closing", "source", a.source)
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a.l.Log(logger.Debug, "Closing", "source", a.source)
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a.dev.Close()
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a.dev = nil
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}
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log.Log(logger.Debug, "Opening", "source", a.source)
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a.l.Log(logger.Debug, "Opening", "source", a.source)
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cards, err := alsa.OpenCards()
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if err != nil {
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@ -206,14 +205,14 @@ func (a *AudioDevice) open() error {
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if a.dev == nil {
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return errors.New("No audio source found")
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}
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log.Log(logger.Debug, "Found audio source", "source", a.dev.Title)
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a.l.Log(logger.Debug, "Found audio source", "source", a.dev.Title)
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// ToDo: time out if Open takes too long.
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err = a.dev.Open()
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if err != nil {
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return err
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}
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log.Log(logger.Debug, "Opened audio source")
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a.l.Log(logger.Debug, "Opened audio source")
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// 2 channels is what most devices need to record in. If mono is requested,
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// the recording will be converted in formatBuffer().
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@ -236,19 +235,19 @@ func (a *AudioDevice) open() error {
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_, err = a.dev.NegotiateRate(Rates[i])
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if err == nil {
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foundRate = true
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log.Log(logger.Debug, "Sample rate set", "rate", Rates[i])
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a.l.Log(logger.Debug, "Sample rate set", "rate", Rates[i])
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}
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}
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}
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// If no easily divisible rate is found, then use the default rate.
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if !foundRate {
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log.Log(logger.Warning, "Unable to sample at requested rate, default used.", "rateRequested", a.SampleRate)
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a.l.Log(logger.Warning, "Unable to sample at requested rate, default used.", "rateRequested", a.SampleRate)
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_, err = a.dev.NegotiateRate(defaultSampleRate)
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if err != nil {
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return err
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}
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log.Log(logger.Debug, "Sample rate set", "rate", defaultSampleRate)
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a.l.Log(logger.Debug, "Sample rate set", "rate", defaultSampleRate)
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}
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var aFmt alsa.FormatType
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@ -274,7 +273,7 @@ func (a *AudioDevice) open() error {
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if err = a.dev.Prepare(); err != nil {
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return err
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}
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log.Log(logger.Debug, "Successfully negotiated ALSA params")
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a.l.Log(logger.Debug, "Successfully negotiated ALSA params")
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return nil
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}
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@ -305,17 +304,17 @@ func (a *AudioDevice) input() {
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fmt.Println("input unlock")
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return
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}
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log.Log(logger.Debug, "Recording audio for period", "seconds", a.RecPeriod)
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a.l.Log(logger.Debug, "Recording audio for period", "seconds", a.RecPeriod)
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fmt.Println("LEN:", len(a.ab.Data))
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err := a.dev.Read(a.ab.Data)
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fmt.Println("input read")
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if err != nil {
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log.Log(logger.Debug, "Device.Read failed", "error", err.Error())
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a.l.Log(logger.Debug, "Device.Read failed", "error", err.Error())
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err = a.open() // re-open
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if err != nil {
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a.mu.Unlock()
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fmt.Println("input unlock")
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log.Log(logger.Fatal, "alsa.open failed", "error", err.Error())
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a.l.Log(logger.Fatal, "alsa.open failed", "error", err.Error())
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}
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a.mu.Unlock()
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fmt.Println("input unlock")
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@ -325,20 +324,20 @@ func (a *AudioDevice) input() {
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toWrite := a.formatBuffer()
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fmt.Println("input point")
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log.Log(logger.Debug, "Audio format conversion has been performed where needed")
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a.l.Log(logger.Debug, "Audio format conversion has been performed where needed")
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var n int
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n, err = a.rb.Write(toWrite.Data)
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fmt.Println("input write")
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switch err {
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case nil:
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log.Log(logger.Debug, "Wrote audio to ringbuffer", "length", n)
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a.l.Log(logger.Debug, "Wrote audio to ringbuffer", "length", n)
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case ring.ErrDropped:
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log.Log(logger.Warning, "Dropped audio")
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a.l.Log(logger.Warning, "Dropped audio")
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default:
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a.mu.Unlock()
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fmt.Println("input unlock")
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log.Log(logger.Error, "Unexpected ringbuffer error", "error", err.Error())
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a.l.Log(logger.Error, "Unexpected ringbuffer error", "error", err.Error())
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return
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}
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a.mu.Unlock()
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@ -369,18 +368,18 @@ func (a *AudioDevice) Read(p []byte) (n int, err error) {
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case ring.ErrTimeout:
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return 0, nil
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case io.EOF:
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log.Log(logger.Error, "Unexpected EOF from ring.Next")
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a.l.Log(logger.Error, "Unexpected EOF from ring.Next")
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return 0, io.ErrUnexpectedEOF
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default:
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log.Log(logger.Error, "Unexpected error from ring.Next", "error", err.Error())
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a.l.Log(logger.Error, "Unexpected error from ring.Next", "error", err.Error())
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return 0, err
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}
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n, err = io.ReadFull(a.rb, p[:chunk.Len()])
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if err != nil {
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log.Log(logger.Error, "Unexpected error from ring.Read", "error", err.Error())
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a.l.Log(logger.Error, "Unexpected error from ring.Read", "error", err.Error())
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return n, err
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}
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log.Log(logger.Debug, "Read audio from ringbuffer", "length", n)
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a.l.Log(logger.Debug, "Read audio from ringbuffer", "length", n)
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a.mu.Unlock()
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fmt.Println("read unlock")
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return n, nil
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@ -405,7 +404,7 @@ func (a *AudioDevice) formatBuffer() alsa.Buffer {
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// Convert channels.
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if a.ab.Format.Channels == 2 && wantChannels == 1 {
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if formatted.Data, err = pcm.StereoToMono(a.ab); err != nil {
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log.Log(logger.Warning, "Channel conversion failed, audio has remained stereo", "error", err.Error())
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a.l.Log(logger.Warning, "Channel conversion failed, audio has remained stereo", "error", err.Error())
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} else {
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formatted.Format.Channels = 1
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}
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@ -422,7 +421,7 @@ func (a *AudioDevice) formatBuffer() alsa.Buffer {
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formatted.Data, err = pcm.Resample(a.ab, wantRate)
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}
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if err != nil {
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log.Log(logger.Warning, "Rate conversion failed, audio has remained original rate", "error", err.Error())
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a.l.Log(logger.Warning, "Rate conversion failed, audio has remained original rate", "error", err.Error())
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} else {
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formatted.Format.Rate = wantRate
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}
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@ -106,8 +106,8 @@ func TestAudio(t *testing.T) {
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ai := NewAudioDevice(ac)
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dst := bytes.NewBuffer(make([]byte, 0))
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ai.Start()
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num := 3 // How many 'ac.RecPeriod's to record.
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go lex.ADPCM(dst, ai, time.Duration(ac.RecPeriod*float64(time.Second)), ai.ChunkSize())
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time.Sleep(time.Millisecond * 30)
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time.Sleep(time.Millisecond * 100 * time.Duration(num))
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ai.Stop()
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}
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@ -41,7 +41,7 @@ import (
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const raspividPath = "/usr/local/bin/raspivid"
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// Suppress all test logging, except for t.Errorf output.
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var silent bool
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var silent bool = true
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// TestRaspivid tests that raspivid starts correctly.
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// It is intended to be run on a Raspberry Pi.
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