use webcodecs api (breaking other things)
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@ -32,7 +32,7 @@ class ClientAudioChain(Chain):
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super().__init__(workers)
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def _buildConverter(self):
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return Converter(self.format, self.inputRate, self.clientRate)
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return Converter(self.format, self.inputRate, 12000)
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def _updateConverter(self):
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converter = self._buildConverter()
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@ -21,9 +21,13 @@ function AudioEngine(maxBufferLength, audioReporter) {
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me._start();
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}
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var onAudio = function(audioData) {
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me.playbackAudio(audioData);
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}
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this.audioCodecs = {
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"adpcm": new ImaAdpcmCodec(),
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"opus": new OpusCodec(this.audioContext)
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"adpcm": new ImaAdpcmCodec(onAudio),
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"opus": new OpusCodec(onAudio)
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};
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this.compression = 'none';
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@ -281,32 +285,28 @@ AudioEngine.prototype.getSampleRate = function() {
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};
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AudioEngine.prototype.processAudio = function(data, resampler) {
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var me = this;
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if (!this.audioNode) return;
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this.audioBytes.add(data.byteLength);
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var audioDataCallback = function(buffer) {
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buffer = resampler.process(buffer);
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if (me.audioNode.port) {
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// AudioWorklets supported
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me.audioNode.port.postMessage(buffer);
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} else {
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// silently drop excess samples
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if (this.getBuffersize() + buffer.length <= this.maxBufferSize) {
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this.audioBuffers.push(buffer);
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}
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if (this.compression !== "none") {
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this.audioCodecs[this.compression].decodeAsync(new Uint8Array(data));
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} else {
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this.playbackAudio(new Int16Array(data));
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}
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}
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AudioEngine.prototype.playbackAudio = function(audioData) {
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//var buffer = this.resampler.process(audioData);
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if (this.audioNode.port) {
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// AudioWorklets supported
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this.audioNode.port.postMessage(audioData);
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} else {
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// silently drop excess samples
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if (this.getBuffersize() + buffer.length <= this.maxBufferSize) {
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this.audioBuffers.push(buffer);
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}
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}
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if (this.compression !== "none") {
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//resampling & ADPCM
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this.audioCodecs[this.compression].decodeAsync(new Uint8Array(data), audioDataCallback);
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} else {
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audioDataCallback(new Int16Array(data))
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}
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}
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};
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AudioEngine.prototype.pushAudio = function(data) {
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this.processAudio(data, this.resampler);
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@ -330,8 +330,9 @@ AudioEngine.prototype.getBuffersize = function() {
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return this.audioBuffers.map(function(b){ return b.length; }).reduce(function(a, b){ return a + b; }, 0);
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};
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function ImaAdpcmCodec() {
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function ImaAdpcmCodec(callback) {
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this.reset();
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this.callback = callback;
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}
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ImaAdpcmCodec.prototype.reset = function() {
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@ -401,7 +402,7 @@ ImaAdpcmCodec.prototype.decodeAsync = function(data, callback) {
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}
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}
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this.skip = index - data.length;
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callback(output.slice(0, oi));
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this.callback(output.slice(0, oi));
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};
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ImaAdpcmCodec.prototype.decodeNibble = function(nibble) {
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@ -422,12 +423,30 @@ ImaAdpcmCodec.prototype.decodeNibble = function(nibble) {
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return this.predictor;
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};
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function OpusCodec(context) {
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this.context = context;
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function OpusCodec(callback) {
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this.decoder = new AudioDecoder({
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output: function(audioData) {
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var buffer = new Float32Array(audioData.numberOfFrames * audioData.numberOfChannels);
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audioData.copyTo(buffer, {planeIndex: 0});
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callback(buffer);
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},
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error: function(e) {
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console.error(e);
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}
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});
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this.decoder.configure({
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codec: "opus",
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sampleRate: 12000,
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numberOfChannels: 1
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});
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}
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OpusCodec.prototype.decodeAsync = function(data, callback) {
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this.context.decodeAudioData(new ArrayBuffer(data)).then(callback);
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OpusCodec.prototype.decodeAsync = function(data) {
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this.decoder.decode(new EncodedAudioChunk({
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type: "key",
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data: data,
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timestamp: 0
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}));
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};
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function Interpolator(factor) {
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