mirror of https://bitbucket.org/ausocean/av.git
device: audio package name changed to alsa
yobert/alsa imports changed to yalsa directory and file names changed to reflect package name change
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@ -1,6 +1,6 @@
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/*
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NAME
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audio.go
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alsa.go
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AUTHOR
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Alan Noble <alan@ausocean.org>
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@ -23,8 +23,8 @@ LICENSE
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If not, see [GNU licenses](http://www.gnu.org/licenses).
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*/
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// Package audio provides access to input from audio devices.
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package audio
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// Package alsa provides access to input from ALSA audio devices.
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package alsa
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import (
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"bytes"
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@ -33,7 +33,7 @@ import (
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"sync"
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"time"
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"github.com/yobert/alsa"
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yalsa "github.com/yobert/alsa"
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"bitbucket.org/ausocean/av/codec/adpcm"
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"bitbucket.org/ausocean/av/codec/codecutil"
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@ -45,7 +45,7 @@ import (
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)
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const (
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pkg = "audio: "
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pkg = "alsa: "
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rbTimeout = 100 * time.Millisecond
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rbNextTimeout = 100 * time.Millisecond
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rbLen = 200
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@ -63,15 +63,15 @@ const (
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// An ALSA device holds everything we need to know about the audio input stream and implements io.Reader and device.AVDevice.
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type ALSA struct {
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l Logger // Logger for device's routines to log to.
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mode uint8 // Operating mode, either running, paused, or stopped.
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mu sync.Mutex // Provides synchronisation when changing modes concurrently.
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title string // Name of audio title, or empty for the default title.
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dev *alsa.Device // ALSA device's Audio input device.
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ab alsa.Buffer // ALSA device's buffer.
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rb *ring.Buffer // Our buffer.
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chunkSize int // This is the number of bytes that will be stored in rb at a time.
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Config // Configuration parameters for this device.
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l Logger // Logger for device's routines to log to.
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mode uint8 // Operating mode, either running, paused, or stopped.
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mu sync.Mutex // Provides synchronisation when changing modes concurrently.
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title string // Name of audio title, or empty for the default title.
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dev *yalsa.Device // ALSA device's Audio input device.
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ab yalsa.Buffer // ALSA device's buffer.
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rb *ring.Buffer // Our buffer.
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chunkSize int // This is the number of bytes that will be stored in rb at a time.
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Config // Configuration parameters for this device.
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}
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// Config provides parameters used by the ALSA device.
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@ -228,11 +228,11 @@ func (d *ALSA) open() error {
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// Open sound card and open recording device.
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d.l.Log(logger.Debug, pkg+"opening sound card")
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cards, err := alsa.OpenCards()
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cards, err := yalsa.OpenCards()
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if err != nil {
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return OpenError(err)
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}
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defer alsa.CloseCards(cards)
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defer yalsa.CloseCards(cards)
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d.l.Log(logger.Debug, pkg+"finding audio device")
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for _, card := range cards {
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@ -241,7 +241,7 @@ func (d *ALSA) open() error {
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continue
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}
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for _, dev := range devices {
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if dev.Type != alsa.PCM || !dev.Record {
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if dev.Type != yalsa.PCM || !dev.Record {
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continue
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}
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if dev.Title == d.title || d.title == "" {
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@ -251,10 +251,10 @@ func (d *ALSA) open() error {
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}
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}
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if d.dev == nil {
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return OpenError(errors.New("no audio device found"))
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return OpenError(errors.New("no ALSA device found"))
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}
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d.l.Log(logger.Debug, pkg+"opening audio device", "title", d.dev.Title)
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d.l.Log(logger.Debug, pkg+"opening ALSA device", "title", d.dev.Title)
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err = d.dev.Open()
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if err != nil {
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return OpenError(err)
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@ -302,12 +302,12 @@ func (d *ALSA) open() error {
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d.l.Log(logger.Debug, pkg+"alsa device sample rate set", "rate", rate)
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}
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var aFmt alsa.FormatType
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var aFmt yalsa.FormatType
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switch d.BitDepth {
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case 16:
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aFmt = alsa.S16_LE
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aFmt = yalsa.S16_LE
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case 32:
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aFmt = alsa.S32_LE
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aFmt = yalsa.S32_LE
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default:
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return OpenError(fmt.Errorf("unsupported sample bits %v", d.BitDepth))
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}
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@ -317,9 +317,9 @@ func (d *ALSA) open() error {
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}
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var bitdepth int
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switch devFmt {
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case alsa.S16_LE:
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case yalsa.S16_LE:
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bitdepth = 16
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case alsa.S32_LE:
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case yalsa.S32_LE:
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bitdepth = 32
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default:
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return OpenError(fmt.Errorf("unsupported sample bits %v", d.BitDepth))
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@ -363,7 +363,7 @@ func (d *ALSA) input() {
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continue
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case stopped:
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if d.dev != nil {
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d.l.Log(logger.Debug, pkg+"closing audio device", "title", d.title)
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d.l.Log(logger.Debug, pkg+"closing ALSA device", "title", d.title)
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d.dev.Close()
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d.dev = nil
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}
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@ -414,14 +414,14 @@ func (d *ALSA) Read(p []byte) (int, error) {
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}
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// formatBuffer returns audio that has been converted to the desired format.
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func (d *ALSA) formatBuffer() alsa.Buffer {
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func (d *ALSA) formatBuffer() yalsa.Buffer {
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var err error
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// If nothing needs to be changed, return the original.
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if d.ab.Format.Channels == d.Channels && d.ab.Format.Rate == d.SampleRate {
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return d.ab
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}
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var formatted alsa.Buffer
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var formatted yalsa.Buffer
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if d.ab.Format.Channels != d.Channels {
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// Convert channels.
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// TODO(Trek): Make this work for conversions other than stereo to mono.
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@ -1,6 +1,6 @@
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/*
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NAME
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audio_test.go
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alsa_test.go
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AUTHOR
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Trek Hopton <trek@ausocean.org>
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@ -22,7 +22,7 @@ LICENSE
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If not, see [GNU licenses](http://www.gnu.org/licenses).
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*/
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package audio
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package alsa
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import (
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"io/ioutil"
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@ -21,28 +21,28 @@ package revid
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import (
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"time"
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"bitbucket.org/ausocean/av/device/audio"
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"bitbucket.org/ausocean/av/device/alsa"
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"bitbucket.org/ausocean/utils/logger"
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)
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// startAudioDevice is used to start capturing audio from an audio device and processing it.
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// startAudioDevice is used to start capturing audio from an ALSA audio device and processing it.
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// It returns a function that can be used to stop the device and any errors that occur.
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func (r *Revid) startAudioDevice() (func() error, error) {
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// Create audio device.
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ai := audio.NewALSA(r.cfg.Logger)
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ai := alsa.NewALSA(r.cfg.Logger)
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err := ai.Set(r.cfg)
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if err != nil {
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r.cfg.Logger.Log(logger.Fatal, pkg+"failed to setup audio device", "error", err.Error())
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r.cfg.Logger.Log(logger.Fatal, pkg+"failed to setup ALSA device", "error", err.Error())
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}
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// Start audio device
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// Start ALSA audio device
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err = ai.Start()
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if err != nil {
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r.cfg.Logger.Log(logger.Fatal, pkg+"failed to start audio device", "error", err.Error())
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r.cfg.Logger.Log(logger.Fatal, pkg+"failed to start ALSA device", "error", err.Error())
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}
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// Process output from audio device.
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// Process output from ALSA audio device.
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r.cfg.ChunkSize = ai.ChunkSize()
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r.wg.Add(1)
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go r.processFrom(ai, time.Duration(float64(time.Second)/r.cfg.WriteRate))
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