mirror of
https://github.com/Tonejs/Tone.js
synced 2024-12-30 13:33:10 +00:00
233 lines
5.8 KiB
TypeScript
233 lines
5.8 KiB
TypeScript
import { Param } from "../../core/context/Param";
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import { ToneAudioNode, ToneAudioNodeOptions } from "../../core/context/ToneAudioNode";
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import { Degrees, GainFactor } from "../../core/type/Units";
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import { optionsFromArguments } from "../../core/util/Defaults";
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export interface Panner3DOptions extends ToneAudioNodeOptions {
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coneInnerAngle: Degrees;
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coneOuterAngle: Degrees;
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coneOuterGain: GainFactor;
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distanceModel: DistanceModelType;
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maxDistance: number;
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orientationX: number;
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orientationY: number;
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orientationZ: number;
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panningModel: PanningModelType;
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positionX: number;
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positionY: number;
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positionZ: number;
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refDistance: number;
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rolloffFactor: number;
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}
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/**
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* A spatialized panner node which supports equalpower or HRTF panning.
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* @category Component
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*/
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export class Panner3D extends ToneAudioNode<Panner3DOptions> {
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readonly name: string = "Panner3D";
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/**
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* The panning object
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*/
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private _panner: PannerNode;
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readonly input: PannerNode;
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readonly output: PannerNode;
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readonly positionX: Param<"number">;
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readonly positionY: Param<"number">;
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readonly positionZ: Param<"number">;
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readonly orientationX: Param<"number">;
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readonly orientationY: Param<"number">;
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readonly orientationZ: Param<"number">;
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/**
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* @param positionX The initial x position.
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* @param positionY The initial y position.
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* @param positionZ The initial z position.
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*/
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constructor(positionX: number, positionY: number, positionZ: number);
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constructor(options?: Partial<Panner3DOptions>);
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constructor() {
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super(optionsFromArguments(Panner3D.getDefaults(), arguments, ["positionX", "positionY", "positionZ"]));
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const options = optionsFromArguments(Panner3D.getDefaults(), arguments, ["positionX", "positionY", "positionZ"]);
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this._panner = this.input = this.output = this.context.createPanner();
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// set some values
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this.panningModel = options.panningModel;
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this.maxDistance = options.maxDistance;
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this.distanceModel = options.distanceModel;
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this.coneOuterGain = options.coneOuterGain;
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this.coneOuterAngle = options.coneOuterAngle;
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this.coneInnerAngle = options.coneInnerAngle;
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this.refDistance = options.refDistance;
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this.rolloffFactor = options.rolloffFactor;
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this.positionX = new Param({
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context: this.context,
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param: this._panner.positionX,
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value: options.positionX,
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});
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this.positionY = new Param({
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context: this.context,
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param: this._panner.positionY,
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value: options.positionY,
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});
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this.positionZ = new Param({
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context: this.context,
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param: this._panner.positionZ,
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value: options.positionZ,
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});
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this.orientationX = new Param({
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context: this.context,
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param: this._panner.orientationX,
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value: options.orientationX,
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});
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this.orientationY = new Param({
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context: this.context,
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param: this._panner.orientationY,
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value: options.orientationY,
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});
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this.orientationZ = new Param({
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context: this.context,
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param: this._panner.orientationZ,
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value: options.orientationZ,
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});
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}
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static getDefaults(): Panner3DOptions {
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return Object.assign(ToneAudioNode.getDefaults(), {
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coneInnerAngle: 360,
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coneOuterAngle: 360,
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coneOuterGain: 0,
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distanceModel: "inverse" as DistanceModelType,
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maxDistance: 10000,
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orientationX: 0,
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orientationY: 0,
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orientationZ: 0,
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panningModel: "equalpower" as PanningModelType,
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positionX: 0,
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positionY: 0,
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positionZ: 0,
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refDistance: 1,
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rolloffFactor: 1,
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});
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}
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/**
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* Sets the position of the source in 3d space.
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*/
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setPosition(x: number, y: number, z: number): this {
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this.positionX.value = x;
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this.positionY.value = y;
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this.positionZ.value = z;
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return this;
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}
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/**
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* Sets the orientation of the source in 3d space.
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*/
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setOrientation(x: number, y: number, z: number): this {
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this.orientationX.value = x;
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this.orientationY.value = y;
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this.orientationZ.value = z;
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return this;
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}
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/**
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* The panning model. Either "equalpower" or "HRTF".
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*/
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get panningModel(): PanningModelType {
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return this._panner.panningModel;
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}
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set panningModel(val) {
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this._panner.panningModel = val;
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}
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/**
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* A reference distance for reducing volume as source move further from the listener
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*/
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get refDistance(): number {
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return this._panner.refDistance;
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}
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set refDistance(val) {
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this._panner.refDistance = val;
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}
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/**
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* Describes how quickly the volume is reduced as source moves away from listener.
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*/
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get rolloffFactor(): number {
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return this._panner.rolloffFactor;
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}
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set rolloffFactor(val) {
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this._panner.rolloffFactor = val;
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}
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/**
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* The distance model used by, "linear", "inverse", or "exponential".
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*/
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get distanceModel(): DistanceModelType {
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return this._panner.distanceModel;
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}
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set distanceModel(val) {
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this._panner.distanceModel = val;
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}
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/**
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* The angle, in degrees, inside of which there will be no volume reduction
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*/
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get coneInnerAngle(): Degrees {
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return this._panner.coneInnerAngle;
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}
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set coneInnerAngle(val) {
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this._panner.coneInnerAngle = val;
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}
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/**
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* The angle, in degrees, outside of which the volume will be reduced
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* to a constant value of coneOuterGain
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*/
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get coneOuterAngle(): Degrees {
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return this._panner.coneOuterAngle;
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}
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set coneOuterAngle(val) {
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this._panner.coneOuterAngle = val;
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}
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/**
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* The gain outside of the coneOuterAngle
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*/
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get coneOuterGain(): GainFactor {
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return this._panner.coneOuterGain;
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}
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set coneOuterGain(val) {
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this._panner.coneOuterGain = val;
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}
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/**
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* The maximum distance between source and listener,
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* after which the volume will not be reduced any further.
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*/
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get maxDistance(): number {
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return this._panner.maxDistance;
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}
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set maxDistance(val) {
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this._panner.maxDistance = val;
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}
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dispose(): this {
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super.dispose();
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this._panner.disconnect();
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this.orientationX.dispose();
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this.orientationY.dispose();
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this.orientationZ.dispose();
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this.positionX.dispose();
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this.positionY.dispose();
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this.positionZ.dispose();
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return this;
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}
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}
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