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b=938450 use an OfflineAudioContext to test decodeAudioData at different sample rates f=padenot
--HG-- extra : transplant_source : %CF.%22r%F8%BB%D7%21%17%E9%96%19y1%5B%D0%E6%F0%D1%18
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@ -107,8 +107,6 @@ function createWaveFileData(audioBuffer) {
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SimpleTest.waitForExplicitFinish();
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var cx = new AudioContext();
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// fuzzTolerance and fuzzToleranceMobile are used to determine fuzziness
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// thresholds. They're needed to make sure that we can deal with neglibible
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// differences in the binary buffer caused as a result of resampling the
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@ -191,9 +189,9 @@ var files = [
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// // A wave file
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// //{ url: "24bit-44khz.wav", valid: true, expectedUrl: "24bit-44khz-expected.wav" },
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// A non-audio file
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{ url: "invalid.txt", valid: false },
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{ url: "invalid.txt", valid: false, sampleRate: 44100 },
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// A webm file with no audio
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{ url: "noaudio.webm", valid: false },
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{ url: "noaudio.webm", valid: false, sampleRate: 48000 },
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// A video ogg file with audio
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{
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url: "audio.ogv",
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@ -237,9 +235,9 @@ function checkAudioBuffer(buffer, test) {
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if (Math.abs(buffer.duration - test.duration) >= 1e-3) {
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ok(false, "got: " + buffer.duration + ", expected: " + test.duration);
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}
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is(buffer.sampleRate, cx.sampleRate, "Correct sample rate");
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is(buffer.sampleRate, test.sampleRate, "Correct sample rate");
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// Take into account the resampling when checking the size
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var expectedLength = test.frames * cx.sampleRate / test.sampleRate;
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var expectedLength = test.frames * buffer.sampleRate / test.sampleRate;
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ok(Math.abs(buffer.length - expectedLength) < 1.0, "Correct length", "got " + buffer.length + ", expected about " + expectedLength);
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var wave = createWaveFileData(buffer);
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@ -248,6 +246,7 @@ function checkAudioBuffer(buffer, test) {
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function runTest(test, response, callback) {
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var expectCallback = false;
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var cx = new OfflineAudioContext(1, 1, test.sampleRate);
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cx.decodeAudioData(response, function onSuccess(asyncResult) {
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ok(expectCallback, "Success callback should fire asynchronously");
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ok(test.valid, "Did expect success for test " + test.url);
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@ -293,29 +292,27 @@ function loadNextTest() {
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function callbackShouldNeverRun() {
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ok(false, "callback should not fire");
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}
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expectTypeError(function() {
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cx.decodeAudioData(null, callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData(undefined, callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData(123, callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData("buffer", callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData(new Uint8Array(100), callbackShouldNeverRun, callbackShouldNeverRun);
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});
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(function() {
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var cx = new AudioContext();
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expectTypeError(function() {
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cx.decodeAudioData(null, callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData(undefined, callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData(123, callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData("buffer", callbackShouldNeverRun, callbackShouldNeverRun);
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});
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expectTypeError(function() {
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cx.decodeAudioData(new Uint8Array(100), callbackShouldNeverRun, callbackShouldNeverRun);
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});
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})();
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if (cx.sampleRate >= 44100) {
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// Now, let's get real!
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loadNextTest();
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} else {
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todo(false, "Decoded data tests disabled; context sampleRate " + cx.sampleRate + " not supported");
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SimpleTest.finish();
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}
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// Now, let's get real!
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loadNextTest();
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</script>
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</pre>
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