2012-11-06 02:14:13 +00:00
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/* -*- Mode: C++; tab-width: 2; indent-tabs-mode: nil; c-basic-offset: 2 -*- */
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/* vim:set ts=2 sw=2 sts=2 et cindent: */
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef PannerNode_h_
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#define PannerNode_h_
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#include "AudioNode.h"
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2013-03-11 23:09:27 +00:00
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#include "mozilla/dom/PannerNodeBinding.h"
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#include "ThreeDPoint.h"
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#include "mozilla/WeakPtr.h"
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#include "mozilla/Preferences.h"
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#include "WebAudioUtils.h"
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#include <set>
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namespace mozilla {
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namespace dom {
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class AudioContext;
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class AudioBufferSourceNode;
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class PannerNode : public AudioNode,
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public SupportsWeakPtr<PannerNode>
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{
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public:
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MOZ_DECLARE_REFCOUNTED_TYPENAME(PannerNode)
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explicit PannerNode(AudioContext* aContext);
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virtual ~PannerNode();
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2013-07-16 12:45:41 +00:00
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2014-04-08 22:27:18 +00:00
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virtual JSObject* WrapObject(JSContext* aCx) MOZ_OVERRIDE;
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virtual void DestroyMediaStream() MOZ_OVERRIDE;
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2013-09-04 19:44:35 +00:00
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virtual void SetChannelCount(uint32_t aChannelCount, ErrorResult& aRv) MOZ_OVERRIDE
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{
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if (aChannelCount > 2) {
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aRv.Throw(NS_ERROR_DOM_NOT_SUPPORTED_ERR);
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return;
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}
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AudioNode::SetChannelCount(aChannelCount, aRv);
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}
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virtual void SetChannelCountModeValue(ChannelCountMode aMode, ErrorResult& aRv) MOZ_OVERRIDE
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{
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if (aMode == ChannelCountMode::Max) {
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aRv.Throw(NS_ERROR_DOM_NOT_SUPPORTED_ERR);
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return;
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}
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AudioNode::SetChannelCountModeValue(aMode, aRv);
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}
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NS_DECL_ISUPPORTS_INHERITED
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NS_DECL_CYCLE_COLLECTION_CLASS_INHERITED(PannerNode, AudioNode)
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PanningModelType PanningModel() const
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{
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return mPanningModel;
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}
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void SetPanningModel(PanningModelType aPanningModel)
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{
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mPanningModel = aPanningModel;
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SendInt32ParameterToStream(PANNING_MODEL, int32_t(mPanningModel));
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}
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DistanceModelType DistanceModel() const
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{
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return mDistanceModel;
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}
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void SetDistanceModel(DistanceModelType aDistanceModel)
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{
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mDistanceModel = aDistanceModel;
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SendInt32ParameterToStream(DISTANCE_MODEL, int32_t(mDistanceModel));
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}
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void SetPosition(double aX, double aY, double aZ)
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{
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if (WebAudioUtils::FuzzyEqual(mPosition.x, aX) &&
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WebAudioUtils::FuzzyEqual(mPosition.y, aY) &&
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WebAudioUtils::FuzzyEqual(mPosition.z, aZ)) {
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return;
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}
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mPosition.x = aX;
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mPosition.y = aY;
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mPosition.z = aZ;
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SendThreeDPointParameterToStream(POSITION, mPosition);
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}
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void SetOrientation(double aX, double aY, double aZ)
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{
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ThreeDPoint orientation(aX, aY, aZ);
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if (!orientation.IsZero()) {
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orientation.Normalize();
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}
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if (mOrientation.FuzzyEqual(orientation)) {
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return;
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}
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mOrientation = orientation;
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SendThreeDPointParameterToStream(ORIENTATION, mOrientation);
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}
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void SetVelocity(double aX, double aY, double aZ)
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{
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if (WebAudioUtils::FuzzyEqual(mVelocity.x, aX) &&
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WebAudioUtils::FuzzyEqual(mVelocity.y, aY) &&
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WebAudioUtils::FuzzyEqual(mVelocity.z, aZ)) {
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return;
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}
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mVelocity.x = aX;
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mVelocity.y = aY;
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mVelocity.z = aZ;
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SendThreeDPointParameterToStream(VELOCITY, mVelocity);
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SendDopplerToSourcesIfNeeded();
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}
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double RefDistance() const
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{
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return mRefDistance;
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}
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void SetRefDistance(double aRefDistance)
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{
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if (WebAudioUtils::FuzzyEqual(mRefDistance, aRefDistance)) {
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return;
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}
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mRefDistance = aRefDistance;
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SendDoubleParameterToStream(REF_DISTANCE, mRefDistance);
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}
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double MaxDistance() const
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{
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return mMaxDistance;
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}
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void SetMaxDistance(double aMaxDistance)
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{
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if (WebAudioUtils::FuzzyEqual(mMaxDistance, aMaxDistance)) {
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return;
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}
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mMaxDistance = aMaxDistance;
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SendDoubleParameterToStream(MAX_DISTANCE, mMaxDistance);
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}
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double RolloffFactor() const
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{
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return mRolloffFactor;
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}
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void SetRolloffFactor(double aRolloffFactor)
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{
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if (WebAudioUtils::FuzzyEqual(mRolloffFactor, aRolloffFactor)) {
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return;
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}
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mRolloffFactor = aRolloffFactor;
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SendDoubleParameterToStream(ROLLOFF_FACTOR, mRolloffFactor);
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}
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double ConeInnerAngle() const
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{
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return mConeInnerAngle;
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}
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void SetConeInnerAngle(double aConeInnerAngle)
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{
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if (WebAudioUtils::FuzzyEqual(mConeInnerAngle, aConeInnerAngle)) {
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return;
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}
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mConeInnerAngle = aConeInnerAngle;
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SendDoubleParameterToStream(CONE_INNER_ANGLE, mConeInnerAngle);
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}
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double ConeOuterAngle() const
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{
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return mConeOuterAngle;
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}
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void SetConeOuterAngle(double aConeOuterAngle)
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{
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if (WebAudioUtils::FuzzyEqual(mConeOuterAngle, aConeOuterAngle)) {
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return;
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}
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mConeOuterAngle = aConeOuterAngle;
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SendDoubleParameterToStream(CONE_OUTER_ANGLE, mConeOuterAngle);
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}
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double ConeOuterGain() const
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{
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return mConeOuterGain;
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}
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void SetConeOuterGain(double aConeOuterGain)
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{
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if (WebAudioUtils::FuzzyEqual(mConeOuterGain, aConeOuterGain)) {
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return;
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}
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mConeOuterGain = aConeOuterGain;
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SendDoubleParameterToStream(CONE_OUTER_GAIN, mConeOuterGain);
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}
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float ComputeDopplerShift();
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void SendDopplerToSourcesIfNeeded();
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void FindConnectedSources();
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void FindConnectedSources(AudioNode* aNode, nsTArray<AudioBufferSourceNode*>& aSources, std::set<AudioNode*>& aSeenNodes);
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2014-04-13 18:08:10 +00:00
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virtual const char* NodeType() const
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{
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return "PannerNode";
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}
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virtual size_t SizeOfExcludingThis(MallocSizeOf aMallocSizeOf) const MOZ_OVERRIDE;
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virtual size_t SizeOfIncludingThis(MallocSizeOf aMallocSizeOf) const MOZ_OVERRIDE;
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private:
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friend class AudioListener;
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friend class PannerNodeEngine;
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enum EngineParameters {
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LISTENER_POSITION,
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LISTENER_FRONT_VECTOR, // unit length
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LISTENER_RIGHT_VECTOR, // unit length, orthogonal to LISTENER_FRONT_VECTOR
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LISTENER_VELOCITY,
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LISTENER_DOPPLER_FACTOR,
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LISTENER_SPEED_OF_SOUND,
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PANNING_MODEL,
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DISTANCE_MODEL,
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POSITION,
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ORIENTATION, // unit length or zero
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VELOCITY,
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REF_DISTANCE,
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MAX_DISTANCE,
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ROLLOFF_FACTOR,
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CONE_INNER_ANGLE,
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CONE_OUTER_ANGLE,
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CONE_OUTER_GAIN
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};
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private:
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PanningModelType mPanningModel;
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DistanceModelType mDistanceModel;
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ThreeDPoint mPosition;
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ThreeDPoint mOrientation;
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ThreeDPoint mVelocity;
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double mRefDistance;
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double mMaxDistance;
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double mRolloffFactor;
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double mConeInnerAngle;
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double mConeOuterAngle;
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double mConeOuterGain;
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// An array of all the AudioBufferSourceNode connected directly or indirectly
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// to this AudioPannerNode.
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nsTArray<AudioBufferSourceNode*> mSources;
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};
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}
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}
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#endif
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