mirror of
https://github.com/Tonejs/Tone.js
synced 2024-12-29 04:53:10 +00:00
338 lines
9.8 KiB
TypeScript
338 lines
9.8 KiB
TypeScript
import { Volume } from "../component/channel/Volume";
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import "../core/context/Destination";
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import "../core/clock/Transport";
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import { Param } from "../core/context/Param";
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import { OutputNode, ToneAudioNode, ToneAudioNodeOptions } from "../core/context/ToneAudioNode";
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import { Decibels, Seconds, Time } from "../core/type/Units";
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import { defaultArg } from "../core/util/Defaults";
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import { noOp, readOnly } from "../core/util/Interface";
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import { BasicPlaybackState, StateTimeline } from "../core/util/StateTimeline";
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import { isDefined, isUndef } from "../core/util/TypeCheck";
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import { assertContextRunning } from "../core/util/Debug";
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type onStopCallback = (source: Source<any>) => void;
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export interface SourceOptions extends ToneAudioNodeOptions {
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volume: Decibels;
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mute: boolean;
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onstop: onStopCallback;
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}
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/**
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* Base class for sources.
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* start/stop of this.context.transport.
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*
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* ```
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* // Multiple state change events can be chained together,
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* // but must be set in the correct order and with ascending times
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* // OK
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* state.start().stop("+0.2");
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* // OK
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* state.start().stop("+0.2").start("+0.4").stop("+0.7")
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* // BAD
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* state.stop("+0.2").start();
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* // BAD
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* state.start("+0.3").stop("+0.2");
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* ```
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*/
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export abstract class Source<Options extends SourceOptions> extends ToneAudioNode<Options> {
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/**
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* The output volume node
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*/
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private _volume: Volume;
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/**
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* The output note
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*/
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output: OutputNode;
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/**
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* Sources have no inputs
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*/
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input = undefined;
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/**
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* The volume of the output in decibels.
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* @example
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* import { PWMOscillator } from "tone";
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* const source = new PWMOscillator().toDestination();
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* source.volume.value = -6;
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*/
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volume: Param<"decibels">;
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/**
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* The callback to invoke when the source is stopped.
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*/
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onstop: onStopCallback;
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/**
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* Keep track of the scheduled state.
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*/
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protected _state: StateTimeline<{
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duration?: Seconds;
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offset?: Seconds;
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/**
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* Either the buffer is explicitly scheduled to end using the stop method,
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* or it's implicitly ended when the buffer is over.
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*/
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implicitEnd?: boolean;
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}> = new StateTimeline("stopped");
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/**
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* The synced `start` callback function from the transport
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*/
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protected _synced = false;
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/**
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* Keep track of all of the scheduled event ids
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*/
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private _scheduled: number[] = [];
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/**
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* Placeholder functions for syncing/unsyncing to transport
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*/
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private _syncedStart: (time: Seconds, offset: Seconds) => void = noOp;
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private _syncedStop: (time: Seconds) => void = noOp;
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constructor(options: SourceOptions) {
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super(options);
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this._state.memory = 100;
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this._state.increasing = true;
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this._volume = this.output = new Volume({
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context: this.context,
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mute: options.mute,
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volume: options.volume,
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});
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this.volume = this._volume.volume;
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readOnly(this, "volume");
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this.onstop = options.onstop;
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}
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static getDefaults(): SourceOptions {
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return Object.assign(ToneAudioNode.getDefaults(), {
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mute: false,
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onstop: noOp,
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volume: 0,
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});
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}
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/**
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* Returns the playback state of the source, either "started" or "stopped".
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* @example
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* import { Player } from "tone";
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* const player = new Player("https://tonejs.github.io/examples/audio/FWDL.mp3", () => {
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* player.start();
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* console.log(player.state);
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* }).toDestination();
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*/
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get state(): BasicPlaybackState {
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if (this._synced) {
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if (this.context.transport.state === "started") {
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return this._state.getValueAtTime(this.context.transport.seconds) as BasicPlaybackState;
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} else {
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return "stopped";
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}
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} else {
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return this._state.getValueAtTime(this.now()) as BasicPlaybackState;
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}
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}
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/**
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* Mute the output.
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* @example
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* import { Oscillator } from "tone";
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* const osc = new Oscillator().toDestination().start();
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* // mute the output
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* osc.mute = true;
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*/
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get mute(): boolean {
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return this._volume.mute;
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}
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set mute(mute: boolean) {
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this._volume.mute = mute;
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}
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// overwrite these functions
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protected abstract _start(time: Time, offset?: Time, duration?: Time): void;
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protected abstract _stop(time: Time): void;
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protected abstract _restart(time: Seconds, offset?: Time, duration?: Time): void;
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/**
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* Ensure that the scheduled time is not before the current time.
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* Should only be used when scheduled unsynced.
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*/
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private _clampToCurrentTime(time: Seconds): Seconds {
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if (this._synced) {
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return time;
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} else {
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return Math.max(time, this.context.currentTime);
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}
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}
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/**
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* Start the source at the specified time. If no time is given,
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* start the source now.
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* @param time When the source should be started.
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* @example
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* import { Oscillator } from "tone";
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* const source = new Oscillator().toDestination();
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* source.start("+0.5"); // starts the source 0.5 seconds from now
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*/
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start(time?: Time, offset?: Time, duration?: Time): this {
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let computedTime = isUndef(time) && this._synced ? this.context.transport.seconds : this.toSeconds(time);
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computedTime = this._clampToCurrentTime(computedTime);
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// if it's started, stop it and restart it
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if (this._state.getValueAtTime(computedTime) === "started") {
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this._state.cancel(computedTime);
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this._state.setStateAtTime("started", computedTime);
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this.log("restart", computedTime);
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this.restart(computedTime, offset, duration);
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} else {
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this.log("start", computedTime);
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this._state.setStateAtTime("started", computedTime);
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if (this._synced) {
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// add the offset time to the event
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const event = this._state.get(computedTime);
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if (event) {
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event.offset = this.toSeconds(defaultArg(offset, 0));
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event.duration = duration ? this.toSeconds(duration) : undefined;
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}
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const sched = this.context.transport.schedule(t => {
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this._start(t, offset, duration);
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}, computedTime);
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this._scheduled.push(sched);
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// if it's already started
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if (this.context.transport.state === "started") {
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this._syncedStart(this.now(), this.context.transport.seconds);
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}
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} else {
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this._start(computedTime, offset, duration);
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}
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assertContextRunning(this.context);
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}
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return this;
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}
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/**
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* Stop the source at the specified time. If no time is given,
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* stop the source now.
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* @param time When the source should be stopped.
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* @example
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* import { Oscillator } from "tone";
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* const source = new Oscillator().toDestination();
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* source.start();
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* source.stop("+0.5"); // stops the source 0.5 seconds from now
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*/
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stop(time?: Time): this {
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let computedTime = isUndef(time) && this._synced ? this.context.transport.seconds : this.toSeconds(time);
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computedTime = this._clampToCurrentTime(computedTime);
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if (this._state.getValueAtTime(computedTime) === "started" || isDefined(this._state.getNextState("started", computedTime))) {
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this.log("stop", computedTime);
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if (!this._synced) {
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this._stop(computedTime);
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} else {
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const sched = this.context.transport.schedule(this._stop.bind(this), computedTime);
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this._scheduled.push(sched);
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}
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this._state.cancel(computedTime);
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this._state.setStateAtTime("stopped", computedTime);
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}
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return this;
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}
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/**
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* Restart the source.
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*/
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restart(time?: Time, offset?: Time, duration?: Time): this {
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time = this.toSeconds(time);
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if (this._state.getValueAtTime(time) === "started") {
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this._state.cancel(time);
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this._restart(time, offset, duration);
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}
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return this;
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}
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/**
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* Sync the source to the Transport so that all subsequent
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* calls to `start` and `stop` are synced to the TransportTime
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* instead of the AudioContext time.
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*
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* @example
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* import { Oscillator, Transport } from "tone";
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* const osc = new Oscillator().toDestination();
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* // sync the source so that it plays between 0 and 0.3 on the Transport's timeline
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* osc.sync().start(0).stop(0.3);
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* // start the transport.
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* Transport.start();
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* // set it to loop once a second
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* Transport.loop = true;
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* Transport.loopEnd = 1;
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*/
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sync(): this {
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if (!this._synced) {
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this._synced = true;
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this._syncedStart = (time, offset) => {
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if (offset > 0) {
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// get the playback state at that time
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const stateEvent = this._state.get(offset);
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// listen for start events which may occur in the middle of the sync'ed time
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if (stateEvent && stateEvent.state === "started" && stateEvent.time !== offset) {
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// get the offset
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const startOffset = offset - this.toSeconds(stateEvent.time);
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let duration;
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if (stateEvent.duration) {
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duration = this.toSeconds(stateEvent.duration) - startOffset;
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}
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this._start(time, this.toSeconds(stateEvent.offset) + startOffset, duration);
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}
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}
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};
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this._syncedStop = time => {
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const seconds = this.context.transport.getSecondsAtTime(Math.max(time - this.sampleTime, 0));
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if (this._state.getValueAtTime(seconds) === "started") {
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this._stop(time);
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}
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};
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this.context.transport.on("start", this._syncedStart);
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this.context.transport.on("loopStart", this._syncedStart);
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this.context.transport.on("stop", this._syncedStop);
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this.context.transport.on("pause", this._syncedStop);
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this.context.transport.on("loopEnd", this._syncedStop);
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}
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return this;
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}
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/**
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* Unsync the source to the Transport. See Source.sync
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*/
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unsync(): this {
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if (this._synced) {
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this.context.transport.off("stop", this._syncedStop);
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this.context.transport.off("pause", this._syncedStop);
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this.context.transport.off("loopEnd", this._syncedStop);
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this.context.transport.off("start", this._syncedStart);
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this.context.transport.off("loopStart", this._syncedStart);
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}
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this._synced = false;
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// clear all of the scheduled ids
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this._scheduled.forEach(id => this.context.transport.clear(id));
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this._scheduled = [];
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this._state.cancel(0);
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return this;
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}
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/**
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* Clean up.
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*/
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dispose(): this {
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super.dispose();
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this.onstop = noOp;
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this.unsync();
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this._volume.dispose();
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this._state.dispose();
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return this;
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}
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}
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