Tone.js/Tone/instrument/Synth.ts
Yotam Mann 56db8b3a7a simplifying _internalChannels
channelCount/Mode/Interpretation check the input/output nodes, which removes the need for many classes to have _internalChannels
2019-08-03 12:00:14 -04:00

125 lines
3.7 KiB
TypeScript

import { AmplitudeEnvelope } from "../component/envelope/AmplitudeEnvelope";
import { Envelope, EnvelopeOptions } from "../component/envelope/Envelope";
import { Time } from "../core/type/Units";
import { omitFromObject, optionsFromArguments } from "../core/util/Defaults";
import { readOnly } from "../core/util/Interface";
import { RecursivePartial } from "../core/util/Interface";
import { OmniOscillator } from "../source/oscillator/OmniOscillator";
import { OmniOscillatorConstructorOptions } from "../source/oscillator/OscillatorInterface";
import { Source } from "../source/Source";
import { Monophonic, MonophonicOptions } from "./Monophonic";
export interface SynthOptions extends MonophonicOptions {
oscillator: OmniOscillatorConstructorOptions;
envelope: EnvelopeOptions;
}
/**
* Synth is composed simply of a {@link OmniOscillator} routed through an {@link AmplitudeEnvelope}.
* ```
* +----------------+ +-------------------+
* | OmniOscillator +>--> AmplitudeEnvelope +>--> Output
* +----------------+ +-------------------+
* ```
* @param options the options available for the synth.
* @example
* var synth = new Synth().toDestination();
* synth.triggerAttackRelease("C4", "8n");
*/
export class Synth extends Monophonic<SynthOptions> {
readonly name = "Synth";
/**
* The oscillator.
*/
readonly oscillator = new OmniOscillator({ context: this.context });
/**
* The frequency signal
*/
readonly frequency = this.oscillator.frequency;
/**
* The detune signal
*/
readonly detune = this.oscillator.detune;
/**
* The envelope
*/
readonly envelope: AmplitudeEnvelope = new AmplitudeEnvelope({ context: this.context });
protected _internalChannels = [this.oscillator, this.envelope];
constructor(options?: RecursivePartial<SynthOptions>);
constructor() {
super(optionsFromArguments(Synth.getDefaults(), arguments));
const options = optionsFromArguments(Synth.getDefaults(), arguments);
this.oscillator.set(options.oscillator);
this.envelope.set(options.envelope);
// connect the oscillators to the output
this.oscillator.chain(this.envelope, this.output);
readOnly(this, ["oscillator", "frequency", "detune", "envelope"]);
}
static getDefaults(): SynthOptions {
return Object.assign(Monophonic.getDefaults(), {
envelope: Object.assign(
omitFromObject(Envelope.getDefaults(), Object.keys(Source.getDefaults())),
{
attack : 0.005,
decay : 0.1,
release : 1,
sustain : 0.3,
},
),
oscillator: Object.assign(
omitFromObject(OmniOscillator.getDefaults(), Object.keys(Source.getDefaults())),
{
type: "triangle",
},
),
});
}
/**
* start the attack portion of the envelope
* @param time the time the attack should start
* @param velocity the velocity of the note (0-1)
*/
protected _triggerEnvelopeAttack(time?: Time, velocity: number = 1): void {
const computedTime = this.toSeconds(time);
// the envelopes
this.envelope.triggerAttack(computedTime, velocity);
this.oscillator.start(computedTime);
// if there is no release portion, stop the oscillator
if (this.envelope.sustain === 0) {
const computedAttack = this.toSeconds(this.envelope.attack);
const computedDecay = this.toSeconds(this.envelope.decay);
this.oscillator.stop(computedTime + computedAttack + computedDecay);
}
}
/**
* start the release portion of the envelope
* @param time the time the release should start
*/
protected _triggerEnvelopeRelease(time: Time): void {
time = this.toSeconds(time);
this.envelope.triggerRelease(time);
this.oscillator.stop(time + this.toSeconds(this.envelope.release));
}
/**
* clean up
*/
dispose(): this {
super.dispose();
this.oscillator.dispose();
this.envelope.dispose();
return this;
}
}