mirror of
https://github.com/Tonejs/Tone.js
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244 lines
5.6 KiB
TypeScript
244 lines
5.6 KiB
TypeScript
import { Monophonic, MonophonicOptions } from "./Monophonic.js";
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import { MonoSynth, MonoSynthOptions } from "./MonoSynth.js";
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import { Signal } from "../signal/Signal.js";
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import { readOnly, RecursivePartial } from "../core/util/Interface.js";
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import { LFO } from "../source/oscillator/LFO.js";
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import { Gain } from "../core/context/Gain.js";
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import { Multiply } from "../signal/Multiply.js";
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import {
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Frequency,
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NormalRange,
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Positive,
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Seconds,
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Time,
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} from "../core/type/Units.js";
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import {
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deepMerge,
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omitFromObject,
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optionsFromArguments,
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} from "../core/util/Defaults.js";
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import { Param } from "../core/context/Param.js";
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export interface DuoSynthOptions extends MonophonicOptions {
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voice0: Omit<MonoSynthOptions, keyof MonophonicOptions>;
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voice1: Omit<MonoSynthOptions, keyof MonophonicOptions>;
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harmonicity: Positive;
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vibratoRate: Frequency;
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vibratoAmount: Positive;
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}
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/**
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* DuoSynth is a monophonic synth composed of two {@link MonoSynth}s run in parallel with control over the
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* frequency ratio between the two voices and vibrato effect.
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* @example
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* const duoSynth = new Tone.DuoSynth().toDestination();
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* duoSynth.triggerAttackRelease("C4", "2n");
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* @category Instrument
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*/
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export class DuoSynth extends Monophonic<DuoSynthOptions> {
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readonly name: string = "DuoSynth";
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readonly frequency: Signal<"frequency">;
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readonly detune: Signal<"cents">;
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/**
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* the first voice
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*/
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readonly voice0: MonoSynth;
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/**
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* the second voice
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*/
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readonly voice1: MonoSynth;
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/**
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* The amount of vibrato
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*/
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public vibratoAmount: Param<"normalRange">;
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/**
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* the vibrato frequency
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*/
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public vibratoRate: Signal<"frequency">;
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/**
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* Harmonicity is the ratio between the two voices. A harmonicity of
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* 1 is no change. Harmonicity = 2 means a change of an octave.
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* @example
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* const duoSynth = new Tone.DuoSynth().toDestination();
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* duoSynth.triggerAttackRelease("C4", "2n");
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* // pitch voice1 an octave below voice0
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* duoSynth.harmonicity.value = 0.5;
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*/
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public harmonicity: Signal<"positive">;
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/**
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* The vibrato LFO.
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*/
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private _vibrato: LFO;
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/**
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* the vibrato gain
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*/
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private _vibratoGain: Gain<"normalRange">;
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constructor(options?: RecursivePartial<DuoSynthOptions>);
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constructor() {
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const options = optionsFromArguments(DuoSynth.getDefaults(), arguments);
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super(options);
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this.voice0 = new MonoSynth(
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Object.assign(options.voice0, {
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context: this.context,
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onsilence: () => this.onsilence(this),
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})
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);
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this.voice1 = new MonoSynth(
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Object.assign(options.voice1, {
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context: this.context,
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})
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);
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this.harmonicity = new Multiply({
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context: this.context,
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units: "positive",
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value: options.harmonicity,
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});
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this._vibrato = new LFO({
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frequency: options.vibratoRate,
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context: this.context,
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min: -50,
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max: 50,
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});
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// start the vibrato immediately
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this._vibrato.start();
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this.vibratoRate = this._vibrato.frequency;
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this._vibratoGain = new Gain({
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context: this.context,
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units: "normalRange",
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gain: options.vibratoAmount,
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});
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this.vibratoAmount = this._vibratoGain.gain;
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this.frequency = new Signal({
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context: this.context,
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units: "frequency",
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value: 440,
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});
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this.detune = new Signal({
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context: this.context,
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units: "cents",
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value: options.detune,
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});
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// control the two voices frequency
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this.frequency.connect(this.voice0.frequency);
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this.frequency.chain(this.harmonicity, this.voice1.frequency);
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this._vibrato.connect(this._vibratoGain);
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this._vibratoGain.fan(this.voice0.detune, this.voice1.detune);
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this.detune.fan(this.voice0.detune, this.voice1.detune);
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this.voice0.connect(this.output);
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this.voice1.connect(this.output);
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readOnly(this, [
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"voice0",
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"voice1",
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"frequency",
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"vibratoAmount",
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"vibratoRate",
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]);
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}
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getLevelAtTime(time: Time): NormalRange {
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time = this.toSeconds(time);
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return (
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this.voice0.envelope.getValueAtTime(time) +
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this.voice1.envelope.getValueAtTime(time)
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);
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}
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static getDefaults(): DuoSynthOptions {
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return deepMerge(Monophonic.getDefaults(), {
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vibratoAmount: 0.5,
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vibratoRate: 5,
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harmonicity: 1.5,
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voice0: deepMerge(
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omitFromObject(
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MonoSynth.getDefaults(),
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Object.keys(Monophonic.getDefaults())
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),
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{
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filterEnvelope: {
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attack: 0.01,
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decay: 0.0,
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sustain: 1,
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release: 0.5,
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},
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envelope: {
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attack: 0.01,
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decay: 0.0,
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sustain: 1,
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release: 0.5,
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},
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}
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),
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voice1: deepMerge(
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omitFromObject(
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MonoSynth.getDefaults(),
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Object.keys(Monophonic.getDefaults())
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),
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{
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filterEnvelope: {
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attack: 0.01,
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decay: 0.0,
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sustain: 1,
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release: 0.5,
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},
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envelope: {
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attack: 0.01,
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decay: 0.0,
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sustain: 1,
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release: 0.5,
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},
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}
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),
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}) as unknown as DuoSynthOptions;
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}
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/**
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* Trigger the attack portion of the note
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*/
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protected _triggerEnvelopeAttack(time: Seconds, velocity: number): void {
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// @ts-ignore
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this.voice0._triggerEnvelopeAttack(time, velocity);
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// @ts-ignore
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this.voice1._triggerEnvelopeAttack(time, velocity);
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}
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/**
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* Trigger the release portion of the note
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*/
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protected _triggerEnvelopeRelease(time: Seconds) {
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// @ts-ignore
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this.voice0._triggerEnvelopeRelease(time);
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// @ts-ignore
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this.voice1._triggerEnvelopeRelease(time);
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return this;
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}
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dispose(): this {
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super.dispose();
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this.voice0.dispose();
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this.voice1.dispose();
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this.frequency.dispose();
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this.detune.dispose();
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this._vibrato.dispose();
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this.vibratoRate.dispose();
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this._vibratoGain.dispose();
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this.harmonicity.dispose();
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return this;
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}
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}
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