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Side by Side Diff: Source/modules/webaudio/AnalyserNode.h

Issue 19724003: Revert "Transition modules/** to use ExceptionState" (Closed) Base URL: svn://svn.chromium.org/blink/trunk
Patch Set: Created 7 years, 5 months ago
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1 /* 1 /*
2 * Copyright (C) 2010, Google Inc. All rights reserved. 2 * Copyright (C) 2010, Google Inc. All rights reserved.
3 * 3 *
4 * Redistribution and use in source and binary forms, with or without 4 * Redistribution and use in source and binary forms, with or without
5 * modification, are permitted provided that the following conditions 5 * modification, are permitted provided that the following conditions
6 * are met: 6 * are met:
7 * 1. Redistributions of source code must retain the above copyright 7 * 1. Redistributions of source code must retain the above copyright
8 * notice, this list of conditions and the following disclaimer. 8 * notice, this list of conditions and the following disclaimer.
9 * 2. Redistributions in binary form must reproduce the above copyright 9 * 2. Redistributions in binary form must reproduce the above copyright
10 * notice, this list of conditions and the following disclaimer in the 10 * notice, this list of conditions and the following disclaimer in the
(...skipping 13 matching lines...) Expand all
24 24
25 #ifndef AnalyserNode_h 25 #ifndef AnalyserNode_h
26 #define AnalyserNode_h 26 #define AnalyserNode_h
27 27
28 #include "modules/webaudio/AudioBasicInspectorNode.h" 28 #include "modules/webaudio/AudioBasicInspectorNode.h"
29 #include "modules/webaudio/RealtimeAnalyser.h" 29 #include "modules/webaudio/RealtimeAnalyser.h"
30 #include "wtf/Forward.h" 30 #include "wtf/Forward.h"
31 31
32 namespace WebCore { 32 namespace WebCore {
33 33
34 class ExceptionState;
35
36 class AnalyserNode : public AudioBasicInspectorNode { 34 class AnalyserNode : public AudioBasicInspectorNode {
37 public: 35 public:
38 static PassRefPtr<AnalyserNode> create(AudioContext* context, float sampleRa te) 36 static PassRefPtr<AnalyserNode> create(AudioContext* context, float sampleRa te)
39 { 37 {
40 return adoptRef(new AnalyserNode(context, sampleRate)); 38 return adoptRef(new AnalyserNode(context, sampleRate));
41 } 39 }
42 40
43 virtual ~AnalyserNode(); 41 virtual ~AnalyserNode();
44 42
45 // AudioNode 43 // AudioNode
46 virtual void process(size_t framesToProcess); 44 virtual void process(size_t framesToProcess);
47 virtual void reset(); 45 virtual void reset();
48 46
49 // Javascript bindings 47 // Javascript bindings
50 unsigned fftSize() const { return m_analyser.fftSize(); } 48 unsigned fftSize() const { return m_analyser.fftSize(); }
51 void setFftSize(unsigned size, ExceptionState&); 49 void setFftSize(unsigned size, ExceptionCode&);
52 50
53 unsigned frequencyBinCount() const { return m_analyser.frequencyBinCount(); } 51 unsigned frequencyBinCount() const { return m_analyser.frequencyBinCount(); }
54 52
55 void setMinDecibels(float k) { m_analyser.setMinDecibels(k); } 53 void setMinDecibels(float k) { m_analyser.setMinDecibels(k); }
56 float minDecibels() const { return m_analyser.minDecibels(); } 54 float minDecibels() const { return m_analyser.minDecibels(); }
57 55
58 void setMaxDecibels(float k) { m_analyser.setMaxDecibels(k); } 56 void setMaxDecibels(float k) { m_analyser.setMaxDecibels(k); }
59 float maxDecibels() const { return m_analyser.maxDecibels(); } 57 float maxDecibels() const { return m_analyser.maxDecibels(); }
60 58
61 void setSmoothingTimeConstant(float k) { m_analyser.setSmoothingTimeConstant (k); } 59 void setSmoothingTimeConstant(float k) { m_analyser.setSmoothingTimeConstant (k); }
62 float smoothingTimeConstant() const { return m_analyser.smoothingTimeConstan t(); } 60 float smoothingTimeConstant() const { return m_analyser.smoothingTimeConstan t(); }
63 61
64 void getFloatFrequencyData(Float32Array* array) { m_analyser.getFloatFrequen cyData(array); } 62 void getFloatFrequencyData(Float32Array* array) { m_analyser.getFloatFrequen cyData(array); }
65 void getByteFrequencyData(Uint8Array* array) { m_analyser.getByteFrequencyDa ta(array); } 63 void getByteFrequencyData(Uint8Array* array) { m_analyser.getByteFrequencyDa ta(array); }
66 void getByteTimeDomainData(Uint8Array* array) { m_analyser.getByteTimeDomain Data(array); } 64 void getByteTimeDomainData(Uint8Array* array) { m_analyser.getByteTimeDomain Data(array); }
67 65
68 private: 66 private:
69 virtual double tailTime() const OVERRIDE { return 0; } 67 virtual double tailTime() const OVERRIDE { return 0; }
70 virtual double latencyTime() const OVERRIDE { return 0; } 68 virtual double latencyTime() const OVERRIDE { return 0; }
71 69
72 AnalyserNode(AudioContext*, float sampleRate); 70 AnalyserNode(AudioContext*, float sampleRate);
73 71
74 RealtimeAnalyser m_analyser; 72 RealtimeAnalyser m_analyser;
75 }; 73 };
76 74
77 } // namespace WebCore 75 } // namespace WebCore
78 76
79 #endif // AnalyserNode_h 77 #endif // AnalyserNode_h
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