mirror of
https://github.com/Tonejs/Tone.js
synced 2024-11-15 16:17:58 +00:00
converting Channel to ts
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parent
68a7bb03ec
commit
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4 changed files with 191 additions and 136 deletions
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@ -1,136 +0,0 @@
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import Tone from "../../core/Tone";
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import "../PanVol";
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import "../component/Solo";
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import "../core/AudioNode";
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/**
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* @class Tone.Channel provides a channel strip interface with
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* volume, pan, solo and mute controls.
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*
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* @extends {Tone.AudioNode}
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* @constructor
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* @param {Decibels} volume The output volume.
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* @param {AudioRange} pan the initial pan
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* @example
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* //pan the incoming signal left and drop the volume
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* var channel = new Tone.Channel(-0.25, -12);
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*/
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Tone.Channel = function(){
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var options = Tone.defaults(arguments, ["volume", "pan"], Tone.PanVol);
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Tone.AudioNode.call(this, options);
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/**
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* The soloing interface
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* @type {Tone.Solo}
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* @private
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*/
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this._solo = this.input = new Tone.Solo(options.solo);
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/**
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* The panning and volume node
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* @type {Tone.PanVol}
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* @private
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*/
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this._panVol = this.output = new Tone.PanVol({
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"pan" : options.pan,
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"volume" : options.volume,
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"mute" : options.mute
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});
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/**
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* The L/R panning control.
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* @type {AudioRange}
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* @signal
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*/
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this.pan = this._panVol.pan;
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/**
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* The volume control in decibels.
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* @type {Decibels}
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* @signal
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*/
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this.volume = this._panVol.volume;
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this._solo.connect(this._panVol);
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this._readOnly(["pan", "volume"]);
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};
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Tone.extend(Tone.Channel, Tone.AudioNode);
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/**
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* The defaults
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* @type {Object}
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* @const
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* @static
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*/
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Tone.Channel.defaults = {
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"pan" : 0,
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"volume" : 0,
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"mute" : false,
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"solo" : false
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};
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/**
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* Solo/unsolo the channel. Soloing is only relative to other
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* Tone.Channels and Tone.Solos.
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* @memberOf Tone.Channel#
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* @name solo
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* @type {Boolean}
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*/
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Object.defineProperty(Tone.Channel.prototype, "solo", {
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get : function(){
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return this._solo.solo;
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},
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set : function(solo){
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this._solo.solo = solo;
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}
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});
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/**
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* If the current instance is muted, i.e. another instance is soloed,
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* or the channel is muted
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* @memberOf Tone.Channel#
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* @type {Boolean}
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* @name muted
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* @readOnly
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*/
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Object.defineProperty(Tone.Channel.prototype, "muted", {
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get : function(){
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return this._solo.muted || this.mute;
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}
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});
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/**
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* Mute/unmute the volume
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* @memberOf Tone.Channel#
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* @name mute
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* @type {Boolean}
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*/
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Object.defineProperty(Tone.Channel.prototype, "mute", {
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get : function(){
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return this._panVol.mute;
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},
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set : function(mute){
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this._panVol.mute = mute;
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}
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});
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/**
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* clean up
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* @returns {Tone.Channel} this
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*/
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Tone.Channel.prototype.dispose = function(){
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Tone.AudioNode.prototype.dispose.call(this);
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this._writable(["pan", "volume"]);
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this._panVol.dispose();
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this._panVol = null;
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this.pan = null;
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this.volume = null;
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this._solo.dispose();
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this._solo = null;
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return this;
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};
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export default Tone.Channel;
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65
Tone/component/channel/Channel.test.ts
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65
Tone/component/channel/Channel.test.ts
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import { Channel } from "./Channel";
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import { BasicTests } from "test/helper/Basic";
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import { PassAudio } from "test/helper/PassAudio";
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import { Signal } from "Tone/signal/Signal";
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import { Offline } from "test/helper/Offline";
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import { expect } from "chai";
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describe("Channel", () => {
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BasicTests(Channel);
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context("Channel", () => {
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it("can pass volume and panning into the constructor", () => {
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const channel = new Channel(-10, -1);
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expect(channel.pan.value).to.be.closeTo(-1, 0.01);
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expect(channel.volume.value).to.be.closeTo(-10, 0.01);
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channel.dispose();
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});
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it("can pass in an object into the constructor", () => {
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const channel = new Channel({
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pan: 1,
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volume: 6,
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mute: false,
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solo: true
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});
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expect(channel.pan.value).to.be.closeTo(1, 0.01);
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expect(channel.volume.value).to.be.closeTo(6, 0.01);
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expect(channel.mute).to.be.false;
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expect(channel.solo).to.be.true;
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channel.dispose();
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});
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it("passes the incoming signal through", () => {
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return PassAudio((input) => {
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const channel = new Channel().toDestination();
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input.connect(channel);
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});
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});
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it("can mute the input", () => {
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return Offline(() => {
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const channel = new Channel(0).toDestination();
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new Signal(1).connect(channel);
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channel.mute = true;
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}).then((buffer) => {
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expect(buffer.isSilent()).to.be.true;
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});
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});
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it("reports itself as muted when either muted or another channel is soloed", () => {
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const channelA = new Channel();
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const channelB = new Channel();
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channelB.solo = true;
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expect(channelA.muted).to.be.true;
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expect(channelB.muted).to.be.false;
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channelB.mute = true;
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expect(channelA.muted).to.be.true;
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expect(channelB.muted).to.be.true;
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channelA.dispose();
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channelB.dispose();
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});
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});
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});
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123
Tone/component/channel/Channel.ts
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123
Tone/component/channel/Channel.ts
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import { AudioRange, Decibels } from "../../core/type/Units";
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import { InputNode, OutputNode, ToneAudioNode, ToneAudioNodeOptions } from "../../core/context/ToneAudioNode";
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import { optionsFromArguments } from "../../core/util/Defaults";
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import { Solo } from "./Solo";
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import { PanVol } from "./PanVol";
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import { Param } from "../../core/context/Param";
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import { readOnly } from "../../core/util/Interface";
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export interface ChannelOptions extends ToneAudioNodeOptions {
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pan: AudioRange;
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volume: Decibels;
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solo: boolean;
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mute: boolean;
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}
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/**
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* Channel provides a channel strip interface with volume, pan, solo and mute controls.
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* See [[PanVol]] and [[Solo]]
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* @example
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* import { Channel } from "tone";
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* // pan the incoming signal left and drop the volume 12db
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* const channel = new Channel(-0.25, -12);
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*/
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export class Channel extends ToneAudioNode<ChannelOptions> {
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readonly name: string = "Channel";
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readonly input: InputNode;
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readonly output: OutputNode;
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/**
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* The soloing interface
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*/
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private _solo: Solo;
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/**
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* The panning and volume node
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*/
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private _panVol: PanVol;
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/**
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* The L/R panning control.
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*/
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readonly pan: Param<"audioRange">;
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/**
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* The volume control in decibels.
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*/
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readonly volume: Param<"decibels">;
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/**
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* @param volume The output volume.
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* @param pan the initial pan
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*/
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constructor(volume?: Decibels, pan?: AudioRange);
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constructor(options?: Partial<ChannelOptions>);
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constructor() {
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super(optionsFromArguments(Channel.getDefaults(), arguments, ["volume", "pan"]));
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const options = optionsFromArguments(Channel.getDefaults(), arguments, ["volume", "pan"]);
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this._solo = this.input = new Solo({
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solo: options.solo,
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context: this.context,
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});
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this._panVol = this.output = new PanVol({
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context: this.context,
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pan: options.pan,
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volume: options.volume,
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mute: options.mute,
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});
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this.pan = this._panVol.pan;
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this.volume = this._panVol.volume;
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this._solo.connect(this._panVol);
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readOnly(this, ["pan", "volume"]);
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}
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static getDefaults(): ChannelOptions {
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return Object.assign(ToneAudioNode.getDefaults(), {
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pan: 0,
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volume: 0,
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mute: false,
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solo: false
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});
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}
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/**
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* Solo/unsolo the channel. Soloing is only relative to other [[Channels]] and [[Solo]] instances
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*/
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get solo(): boolean {
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return this._solo.solo;
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}
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set solo(solo) {
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this._solo.solo = solo;
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}
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/**
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* If the current instance is muted, i.e. another instance is soloed,
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* or the channel is muted
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*/
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get muted(): boolean {
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return this._solo.muted || this.mute;
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}
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/**
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* Mute/unmute the volume
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*/
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get mute(): boolean {
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return this._panVol.mute;
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}
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set mute(mute) {
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this._panVol.mute = mute;
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}
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dispose(): this {
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super.dispose();
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this._panVol.dispose();
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this.pan.dispose();
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this.volume.dispose();
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this._solo.dispose();
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return this;
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}
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}
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@ -4,8 +4,11 @@ export * from "./analysis/FFT";
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export * from "./analysis/DCMeter";
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export * from "./analysis/Waveform";
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export * from "./analysis/Follower";
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export * from "./channel/Channel";
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export * from "./channel/CrossFade";
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export * from "./channel/Merge";
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export * from "./channel/MidSideMerge";
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export * from "./channel/MidSideSplit";
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export * from "./channel/MultibandSplit";
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export * from "./channel/Panner";
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export * from "./channel/PanVol";
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