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1 var sampleRate = 44100.0; | 1 var sampleRate = 44100.0; |
2 | 2 |
3 var numberOfChannels = 1; | 3 var numberOfChannels = 1; |
4 | 4 |
5 // Time step when each panner node starts. | 5 // Time step when each panner node starts. |
6 var timeStep = 0.001; | 6 var timeStep = 0.001; |
7 | 7 |
8 // Length of the impulse signal. | 8 // Length of the impulse signal. |
9 var pulseLengthFrames = Math.round(timeStep * sampleRate); | 9 var pulseLengthFrames = Math.round(timeStep * sampleRate); |
10 | 10 |
11 // How many panner nodes to create for the test | 11 // How many panner nodes to create for the test |
12 var nodesToCreate = 100; | 12 var nodesToCreate = 100; |
13 | 13 |
14 // Be sure we render long enough for all of our nodes. | 14 // Be sure we render long enough for all of our nodes. |
15 var renderLengthSeconds = timeStep * (nodesToCreate + 1); | 15 var renderLengthSeconds = timeStep * (nodesToCreate + 1); |
16 | 16 |
17 // These are global mostly for debugging. | 17 // These are global mostly for debugging. |
18 var context; | 18 var context; |
19 var impulse; | 19 var impulse; |
20 var bufferSource; | 20 var bufferSource; |
21 var panner; | 21 var panner; |
22 var position; | 22 var position; |
23 var time; | 23 var time; |
24 | 24 |
25 var renderedBuffer; | 25 var renderedBuffer; |
26 var renderedLeft; | 26 var renderedLeft; |
27 var renderedRight; | 27 var renderedRight; |
28 | 28 |
29 function createGraph(context, nodeCount) { | 29 function createGraph(context, nodeCount) { |
30 bufferSource = new Array(nodeCount); | 30 bufferSource = new Array(nodeCount); |
31 panner = new Array(nodeCount); | 31 panner = new Array(nodeCount); |
32 position = new Array(nodeCount); | 32 position = new Array(nodeCount); |
33 time = new Array(nodeCount); | 33 time = new Array(nodeCount); |
34 // Angle between panner locations. (nodeCount - 1 because we want | 34 // Angle between panner locations. (nodeCount - 1 because we want |
35 // to include both 0 and 180 deg. | 35 // to include both 0 and 180 deg. |
36 var angleStep = Math.PI / (nodeCount - 1); | 36 var angleStep = Math.PI / (nodeCount - 1); |
37 | 37 |
38 if (numberOfChannels == 2) { | 38 if (numberOfChannels == 2) { |
39 impulse = createStereoImpulseBuffer(context, pulseLengthFrames); | 39 impulse = createStereoImpulseBuffer(context, pulseLengthFrames); |
40 } | 40 } |
41 else | 41 else |
42 impulse = createImpulseBuffer(context, pulseLengthFrames); | 42 impulse = createImpulseBuffer(context, pulseLengthFrames); |
43 | 43 |
44 for (var k = 0; k < nodeCount; ++k) { | 44 for (var k = 0; k < nodeCount; ++k) { |
45 bufferSource[k] = context.createBufferSource(); | 45 bufferSource[k] = context.createBufferSource(); |
46 bufferSource[k].buffer = impulse; | 46 bufferSource[k].buffer = impulse; |
47 | 47 |
48 panner[k] = context.createPanner(); | 48 panner[k] = context.createPanner(); |
49 // Equalpower is default now. May not be necessary. | |
50 // https://code.google.com/p/chromium/issues/detail?id=424356 | |
49 panner[k].panningModel = "equalpower"; | 51 panner[k].panningModel = "equalpower"; |
Raymond Toy
2014/10/17 17:39:30
I would just remove the comment and the assignment
hongchan
2014/10/17 18:13:41
Done.
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50 panner[k].distanceModel = "linear"; | 52 panner[k].distanceModel = "linear"; |
51 | 53 |
52 var angle = angleStep * k; | 54 var angle = angleStep * k; |
53 position[k] = {angle : angle, x : Math.cos(angle), z : Math.sin(angle)}; | 55 position[k] = {angle : angle, x : Math.cos(angle), z : Math.sin(angle)}; |
54 panner[k].setPosition(position[k].x, 0, position[k].z); | 56 panner[k].setPosition(position[k].x, 0, position[k].z); |
55 | 57 |
56 bufferSource[k].connect(panner[k]); | 58 bufferSource[k].connect(panner[k]); |
57 panner[k].connect(context.destination); | 59 panner[k].connect(context.destination); |
58 | 60 |
59 // Start the source | 61 // Start the source |
(...skipping 25 matching lines...) Expand all Loading... | |
85 if (numberOfChannels == 1) { | 87 if (numberOfChannels == 1) { |
86 var panPosition = (azimuth + 90) / 180; | 88 var panPosition = (azimuth + 90) / 180; |
87 | 89 |
88 var gainL = Math.cos(0.5 * Math.PI * panPosition); | 90 var gainL = Math.cos(0.5 * Math.PI * panPosition); |
89 var gainR = Math.sin(0.5 * Math.PI * panPosition); | 91 var gainR = Math.sin(0.5 * Math.PI * panPosition); |
90 | 92 |
91 return { left : gainL, right : gainR }; | 93 return { left : gainL, right : gainR }; |
92 } else { | 94 } else { |
93 if (azimuth <= 0) { | 95 if (azimuth <= 0) { |
94 var panPosition = (azimuth + 90) / 90; | 96 var panPosition = (azimuth + 90) / 90; |
95 | 97 |
Raymond Toy
2014/10/17 17:39:30
Removing more blank lines?
hongchan
2014/10/17 18:13:41
Yes.
| |
96 var gainL = 1 + Math.cos(0.5 * Math.PI * panPosition); | 98 var gainL = 1 + Math.cos(0.5 * Math.PI * panPosition); |
97 var gainR = Math.sin(0.5 * Math.PI * panPosition); | 99 var gainR = Math.sin(0.5 * Math.PI * panPosition); |
98 | 100 |
99 return { left : gainL, right : gainR }; | 101 return { left : gainL, right : gainR }; |
100 } else { | 102 } else { |
101 var panPosition = azimuth / 90; | 103 var panPosition = azimuth / 90; |
102 | 104 |
103 var gainL = Math.cos(0.5 * Math.PI * panPosition); | 105 var gainL = Math.cos(0.5 * Math.PI * panPosition); |
104 var gainR = 1 + Math.sin(0.5 * Math.PI * panPosition); | 106 var gainR = 1 + Math.sin(0.5 * Math.PI * panPosition); |
105 | 107 |
106 return { left : gainL, right : gainR }; | 108 return { left : gainL, right : gainR }; |
107 } | 109 } |
108 } | 110 } |
109 } | 111 } |
110 | 112 |
111 function checkResult(event) { | 113 function checkResult(event) { |
112 renderedBuffer = event.renderedBuffer; | 114 renderedBuffer = event.renderedBuffer; |
113 renderedLeft = renderedBuffer.getChannelData(0); | 115 renderedLeft = renderedBuffer.getChannelData(0); |
114 renderedRight = renderedBuffer.getChannelData(1); | 116 renderedRight = renderedBuffer.getChannelData(1); |
115 | 117 |
116 // The max error we allow between the rendered impulse and the | 118 // The max error we allow between the rendered impulse and the |
117 // expected value. This value is experimentally determined. Set | 119 // expected value. This value is experimentally determined. Set |
118 // to 0 to make the test fail to see what the actual error is. | 120 // to 0 to make the test fail to see what the actual error is. |
119 var maxAllowedError = 1.3e-6; | 121 var maxAllowedError = 1.3e-6; |
120 | 122 |
121 var success = true; | 123 var success = true; |
122 | 124 |
123 // Number of impulses found in the rendered result. | 125 // Number of impulses found in the rendered result. |
124 var impulseCount = 0; | 126 var impulseCount = 0; |
125 | 127 |
126 // Max (relative) error and the index of the maxima for the left | 128 // Max (relative) error and the index of the maxima for the left |
127 // and right channels. | 129 // and right channels. |
128 var maxErrorL = 0; | 130 var maxErrorL = 0; |
129 var maxErrorIndexL = 0; | 131 var maxErrorIndexL = 0; |
130 var maxErrorR = 0; | 132 var maxErrorR = 0; |
(...skipping 53 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... | |
184 } else { | 186 } else { |
185 testPassed("All impulses at expected offsets."); | 187 testPassed("All impulses at expected offsets."); |
186 } | 188 } |
187 | 189 |
188 if (maxErrorL <= maxAllowedError) { | 190 if (maxErrorL <= maxAllowedError) { |
189 testPassed("Left channel gain values are correct."); | 191 testPassed("Left channel gain values are correct."); |
190 } else { | 192 } else { |
191 testFailed("Left channel gain values are incorrect. Max error = " + max ErrorL + " at time " + time[maxErrorIndexL] + " (threshold = " + maxAllowedError + ")"); | 193 testFailed("Left channel gain values are incorrect. Max error = " + max ErrorL + " at time " + time[maxErrorIndexL] + " (threshold = " + maxAllowedError + ")"); |
192 success = false; | 194 success = false; |
193 } | 195 } |
194 | 196 |
195 if (maxErrorR <= maxAllowedError) { | 197 if (maxErrorR <= maxAllowedError) { |
196 testPassed("Right channel gain values are correct."); | 198 testPassed("Right channel gain values are correct."); |
197 } else { | 199 } else { |
198 testFailed("Right channel gain values are incorrect. Max error = " + ma xErrorR + " at time " + time[maxErrorIndexR] + " (threshold = " + maxAllowedErro r + ")"); | 200 testFailed("Right channel gain values are incorrect. Max error = " + ma xErrorR + " at time " + time[maxErrorIndexR] + " (threshold = " + maxAllowedErro r + ")"); |
199 success = false; | 201 success = false; |
200 } | 202 } |
201 | 203 |
202 if (success) { | 204 if (success) { |
203 testPassed("EqualPower panner test passed"); | 205 testPassed("EqualPower panner test passed"); |
204 } else { | 206 } else { |
205 testFailed("EqualPower panner test failed"); | 207 testFailed("EqualPower panner test failed"); |
206 } | 208 } |
207 | 209 |
208 finishJSTest(); | 210 finishJSTest(); |
209 } | 211 } |
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