| Index: LayoutTests/webaudio/audionode-disconnect.html
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| diff --git a/LayoutTests/webaudio/audionode-disconnect.html b/LayoutTests/webaudio/audionode-disconnect.html
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| new file mode 100644
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| index 0000000000000000000000000000000000000000..867ecf35d3c358dec4a34e89a53053201fbe1c49
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| --- /dev/null
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| +++ b/LayoutTests/webaudio/audionode-disconnect.html
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| @@ -0,0 +1,284 @@
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| +<!DOCTYPE html>
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| +<html>
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| +
|
| +<head>
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| + <script src="../resources/js-test.js"></script>
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| + <script src="resources/compatibility.js"></script>
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| + <script src="resources/audio-testing.js"></script>
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| +</head>
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| +
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| +<body>
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| + <script>
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| + description('Test disconnect() method on AudioNode destination.');
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| + window.jsTestIsAsync = true;
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| +
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| + var audit = Audit.createTaskRunner();
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| +
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| + // Task 1: test disconnect() method.
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| + audit.defineTask('disconnect()', function (done) {
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| +
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| + // Connect a source to multiple gain nodes, each connected to the
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| + // destination. Then disconnect the source. The expected output should be
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| + // all zeros since the source was disconnected.
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| + var context = new OfflineAudioContext(1, 128, 44100);
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| + var source = context.createBufferSource();
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| + var buffer1ch = createTestingAudioBuffer(context, 1, 128);
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| + var gain1 = context.createGain();
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| + var gain2 = context.createGain();
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| + var gain3 = context.createGain();
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| +
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| + source.buffer = buffer1ch;
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| +
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| + source.connect(gain1);
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| + source.connect(gain2);
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| + source.connect(gain3);
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| + gain1.connect(context.destination);
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| + gain2.connect(context.destination);
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| + gain3.connect(context.destination);
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| + source.start();
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| +
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| + // This disconnects everything.
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| + source.disconnect();
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| +
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| + context.startRendering().then(function (buffer) {
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| + var channelData = buffer.getChannelData(0);
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| +
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| + // With everything disconnected, the result should be zero.
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| + Should.haveValueInChannel(0, channelData);
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| +
|
| + }).then(done);
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| + });
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| +
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| + // Task 2: test disconnect(output) method.
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| + audit.defineTask('disconnect(output)', function (done) {
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| +
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| + // Create multiple connections from each output of a ChannelSplitter
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| + // to a gain node. Then test if disconnecting a single output of splitter
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| + // is actually disconnected.
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| + var context = new OfflineAudioContext(1, 128, 44100);
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| + var source = context.createBufferSource();
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| + var buffer3ch = createTestingAudioBuffer(context, 3, 128);
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| + var splitter = context.createChannelSplitter(3);
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| + var sum = context.createGain();
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| +
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| + source.buffer = buffer3ch;
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| +
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| + source.connect(splitter);
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| + splitter.connect(sum, 0);
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| + splitter.connect(sum, 1);
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| + splitter.connect(sum, 2);
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| + sum.connect(context.destination);
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| + source.start();
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| +
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| + // This disconnects the second output.
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| + splitter.disconnect(1);
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| +
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| + context.startRendering().then(function (buffer) {
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| + var channelData = buffer.getChannelData(0);
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| +
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| + // The rendered channel should contain 4. (= 1 + 0 + 3)
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| + Should.haveValueInChannel(4, channelData);
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| +
|
| + }).then(done);
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| + });
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| +
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| + // Task 3: test disconnect(AudioNode) method.
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| + audit.defineTask('disconnect(AudioNode)', function (done) {
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| +
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| + // Connect a source to multiple gain nodes. Then test if disconnecting a
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| + // single destination selectively works correctly.
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| + var context = new OfflineAudioContext(1, 128, 44100);
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| + var source = context.createBufferSource();
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| + var buffer1ch = createTestingAudioBuffer(context, 1, 128);
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| + var gain1 = context.createGain();
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| + var gain2 = context.createGain();
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| + var gain3 = context.createGain();
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| + var orphan = context.createGain();
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| +
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| + source.buffer = buffer1ch;
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| +
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| + source.connect(gain1);
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| + source.connect(gain2);
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| + source.connect(gain3);
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| + gain1.connect(context.destination);
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| + gain2.connect(context.destination);
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| + gain3.connect(context.destination);
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| + source.start();
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| +
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| + source.disconnect(gain2);
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| +
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| + context.startRendering().then(function (buffer) {
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| + var channelData = buffer.getChannelData(0);
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| +
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| + // The |sum| gain node should produce value 2. (1 + 0 + 1 = 2)
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| + Should.haveValueInChannel(2, channelData);
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| +
|
| + }).then(done);
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| + });
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| +
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| + // Task 4: test disconnect(AudioNode, output) method.
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| + audit.defineTask('disconnect(AudioNode, output)', function (done) {
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| +
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| + // Connect a buffer with 2 channels with each containing 1 and 2
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| + // respectively to a ChannelSplitter, then connect the splitter to 2 gain
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| + // nodes as shown below:
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| + // (1) splitter#0 => gain1
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| + // (2) splitter#0 => gain2
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| + // (3) splitter#1 => gain2
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| + // Then disconnect (2) and verify if the selective disconnection on a
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| + // specified output of the destination node works correctly.
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| + var context = new OfflineAudioContext(1, 128, 44100);
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| + var source = context.createBufferSource();
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| + var buffer2ch = createTestingAudioBuffer(context, 2, 128);
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| + var splitter = context.createChannelSplitter(2);
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| + var gain1 = context.createGain();
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| + var gain2 = context.createGain();
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| +
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| + source.buffer = buffer2ch;
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| +
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| + source.connect(splitter);
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| + splitter.connect(gain1, 0); // gain1 gets channel 0.
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| + splitter.connect(gain2, 0); // gain2 sums channel 0 and 1.
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| + splitter.connect(gain2, 1);
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| + gain1.connect(context.destination);
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| + gain2.connect(context.destination);
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| + source.start();
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| +
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| + splitter.disconnect(gain2, 0); // Now gain2 gets [2]
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| +
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| + context.startRendering().then(function (buffer) {
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| + var channelData0 = buffer.getChannelData(0);
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| +
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| + // The sum of gain1 and gain2 should produce value 3. (= 1 + 2)
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| + Should.haveValueInChannel(3, channelData0);
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| +
|
| + }).then(done);
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| + });
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| +
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| + // Task 5: test disconnect(AudioNode, output, input) method.
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| + audit.defineTask('disconnect(AudioNode, output, input)', function (done) {
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| +
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| + // Create a 3-channel buffer with [1, 2, 3] in each channel and then pass
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| + // it through a splitter and a merger. Each input/output of the splitter
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| + // and the merger is connected in a sequential order as shown below.
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| + // (1) splitter#0 => merger#0
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| + // (2) splitter#1 => merger#1
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| + // (3) splitter#2 => merger#2
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| + // Then disconnect (3) and verify if each channel contains [1] and [2]
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| + // respectively.
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| + var context = new OfflineAudioContext(3, 128, 44100);
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| + var source = context.createBufferSource();
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| + var buffer3ch = createTestingAudioBuffer(context, 3, 128);
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| + var splitter = context.createChannelSplitter(3);
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| + var merger = context.createChannelMerger(3);
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| +
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| + source.buffer = buffer3ch;
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| +
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| + source.connect(splitter);
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| + splitter.connect(merger, 0, 0);
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| + splitter.connect(merger, 1, 1);
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| + splitter.connect(merger, 2, 2);
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| + merger.connect(context.destination);
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| + source.start();
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| +
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| + splitter.disconnect(merger, 2, 2);
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| +
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| + context.startRendering().then(function (buffer) {
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| + var channelData0 = buffer.getChannelData(0);
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| + var channelData1 = buffer.getChannelData(1);
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| + var channelData2 = buffer.getChannelData(2);
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| +
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| + // Each channel should have 1, 2, and 0 respectively.
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| + Should.haveValueInChannel(1, channelData0);
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| + Should.haveValueInChannel(2, channelData1);
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| + Should.haveValueInChannel(0, channelData2);
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| +
|
| + }).then(done);
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| + });
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| +
|
| + // Task 6: exception checks.
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| + audit.defineTask('exceptions', function (done) {
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| + var context = new OfflineAudioContext(2, 128, 44100);
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| + var gain1 = context.createGain();
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| + var splitter = context.createChannelSplitter(2);
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| + var merger = context.createChannelMerger(2);
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| + var gain2 = context.createGain();
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| + var gain3 = context.createGain();
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| +
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| + // Connect a splitter to gain nodes and merger so we can test the possible
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| + // ways of disconnecting the nodes to verify that appropriate exceptions
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| + // are thrown.
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| + gain1.connect(splitter);
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| + splitter.connect(gain2, 0);
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| + splitter.connect(gain3, 1);
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| + splitter.connect(merger, 0, 0);
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| + splitter.connect(merger, 1, 1);
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| + gain2.connect(gain3);
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| + gain3.connect(context.destination);
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| + merger.connect(context.destination);
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| +
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| + // There is no output #2. An exception should be thrown.
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| + Should.throwWithType('IndexSizeError', function () {
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| + splitter.disconnect(2);
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| + });
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| +
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| + // Disconnecting the output already disconnected should not throw.
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| + Should.notThrow(function () {
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| + splitter.disconnect(1);
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| + splitter.disconnect(1);
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| + });
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| +
|
| + // gain1 is not connected gain2. An exception should be thrown.
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| + Should.throwWithType('InvalidAccessError', function () {
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| + gain1.disconnect(gain2);
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| + });
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| +
|
| + // gain1 and gain3 are not connected. An exception should be thrown.
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| + Should.throwWithType('InvalidAccessError', function () {
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| + gain1.disconnect(gain3);
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| + });
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| +
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| + // There is no output #2 in the splitter. An exception should be thrown.
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| + Should.throwWithType('IndexSizeError', function () {
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| + splitter.disconnect(gain2, 2);
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| + });
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| +
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| + // The splitter and gain1 are not connected. An exception should be thrown.
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| + Should.throwWithType('InvalidAccessError', function () {
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| + splitter.disconnect(gain1, 0);
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| + });
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| +
|
| + // The splitter output #0 and the gain3 output #0 are not connected. An
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| + // exception should be thrown.
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| + Should.throwWithType('InvalidAccessError', function () {
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| + splitter.disconnect(gain3, 0, 0);
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| + });
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| +
|
| + // The output index is out of bound. An exception should be thrown.
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| + Should.throwWithType('IndexSizeError', function () {
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| + splitter.disconnect(merger, 3, 0);
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| + });
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| +
|
| + done();
|
| + });
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| +
|
| + audit.defineTask('finish', function (done) {
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| + finishJSTest();
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| + done();
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| + });
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| +
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| + audit.runTasks(
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| + 'disconnect()',
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| + 'disconnect(output)',
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| + 'disconnect(AudioNode)',
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| + 'disconnect(AudioNode, output)',
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| + 'disconnect(AudioNode, output, input)',
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| + 'exceptions',
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| + 'finish'
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| + );
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| +
|
| + successfullyParsed = true;
|
| + </script>
|
| +</body>
|
| +
|
| +</html>
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|
|