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55 Commits

Author SHA1 Message Date
Aria 79e0503474 Properly handle multiple releases 2025-11-18 19:58:03 -06:00
Aria 3a3d8299b8 Tweaks to deal with clicking 2025-11-18 19:30:51 -06:00
Aria e0a61b7f1e Further cleanup of chaining; remove fxr in favor of ADSR 2025-11-18 18:31:14 -06:00
Aria 5647bd84f9 Switch to a full signal chain including sources 2025-11-18 17:47:17 -06:00
Aria 971cfe15fc Merge main and use parray 2025-11-18 16:07:22 -06:00
Aria be8aebff92 Merge branch 'main' into glossing/multifx 2025-11-18 16:04:17 -06:00
Aria 9db821e50f Map -> forEach 2025-11-18 16:03:56 -06:00
Aria 89247d92db Revert to old stop format for compatibility 2025-11-18 13:52:22 -06:00
Aria c828adce03 More cleanup cleanup 2025-11-18 11:29:32 -06:00
Aria ea7dc7a732 Merge pull request 'Feature: Partials' (#1659) from glossing/strudel:glossing/partials into main
Reviewed-on: https://codeberg.org/uzu/strudel/pulls/1659
2025-11-17 05:31:53 +01:00
Aria 641bd2f356 Properly patternify everything 2025-11-16 22:20:17 -06:00
Aria f5ed6dbe79 Top level functions 2025-11-16 20:28:22 -06:00
Aria 7a3bea6f90 Working version 2025-11-16 19:38:59 -06:00
Aria cc10122b71 Testing out approach to allow list patterns in partials 2025-11-16 19:20:42 -06:00
Aria b66c0d18b3 Merge branch 'main' into glossing/partials 2025-11-16 18:44:04 -06:00
froos 0331c91b80 Merge pull request 'README: update superdough documentation' (#1741) from TristanMlct/strudel:update-readme-superdough into main
Reviewed-on: https://codeberg.org/uzu/strudel/pulls/1741
2025-11-16 22:06:12 +01:00
Aria 4d5ebfc204 Merge pull request 'Feature: Envelope worklet' (#1524) from glossing/strudel:glossing/snappy-envs into main
Reviewed-on: https://codeberg.org/uzu/strudel/pulls/1524
2025-11-16 22:00:42 +01:00
Aria 921cb17d33 Merge branch 'main' into glossing/snappy-envs 2025-11-16 14:39:40 -06:00
Aria 7e45389db3 Merge branch 'main' into glossing/multifx 2025-11-16 14:34:50 -06:00
Aria 601eaebb93 More cleanup 2025-11-16 14:27:47 -06:00
Aria 6b72e421cd Some cleanup from main merge 2025-11-16 14:20:53 -06:00
Aria 832fd04a3d Merge pull request 'Worklet optimizations' (#1730) from glossing/optimizations into main
Reviewed-on: https://codeberg.org/uzu/strudel/pulls/1730
Reviewed-by: Switch Angel AKA Jade Rose <daslyfe@noreply.codeberg.org>
2025-11-16 21:08:53 +01:00
Aria f3f7824111 Merge branch 'main' into glossing/multifx 2025-11-16 13:37:24 -06:00
Aria d9c21489f8 Merge branch 'main' into glossing/optimizations 2025-11-16 20:13:31 +01:00
Aria 3962558c09 Some final tweaks 2025-11-16 13:12:47 -06:00
Tristan Mlct 91799f2014 README: update superdough documentation 2025-11-15 15:06:44 +01:00
froos f6bb3869de Merge pull request '[perf] disconnect Offline AudioNode connections in generateReverb' (#1740) from jeromew/strudel:fix-perf2 into main
Reviewed-on: https://codeberg.org/uzu/strudel/pulls/1740
2025-11-15 14:59:28 +01:00
froos b9e9c9e9e6 Merge pull request '[perf] disconnect send effect AudioNode when room is used' (#1736) from jeromew/strudel:fix-perf1 into main
Reviewed-on: https://codeberg.org/uzu/strudel/pulls/1736
2025-11-15 14:57:46 +01:00
jeromew 92d87093e0 [perf] disconnect Offline AudioNode connections in generateReverb 2025-11-15 13:39:24 +00:00
jeromew 3e05525dc2 [perf] disconnect send effect AudioNode when room is used 2025-11-14 22:06:39 +00:00
Aria 22807b3833 Use weak references for sound sources 2025-11-14 16:05:09 -06:00
Aria 2875814a36 Square instead of self-multiply; more voices; more cleanup 2025-11-12 13:56:14 -06:00
Aria 157b05536a Final cleanup 2025-11-12 13:36:01 -06:00
Aria f8c9425569 Simplify spread 2025-11-12 13:13:37 -06:00
Aria be3a88b09c Optimize phase wrap; make voices k-rate 2025-11-12 12:23:40 -06:00
Aria aabf122161 Further optimizations, including detuner 2025-11-12 11:53:38 -06:00
Aria 3c6de3be6d First pass of worklets optimizations 2025-11-12 10:48:20 -06:00
Aria 29ee90f994 Fully working version 2025-10-22 22:32:14 -05:00
Aria fd03d1fdfb Update conditional to allow to control user waveforms 2025-10-15 15:14:31 -05:00
Aria 35016b5847 Mention range in docstring 2025-10-15 14:56:20 -05:00
Aria 0fe7edc157 Some examples 2025-10-15 14:53:07 -05:00
Aria d6de160224 Merge branch 'main' into glossing/partials 2025-10-15 13:19:57 -05:00
Aria 837b87e13a Some merge cleanup 2025-10-14 21:47:59 -05:00
Aria d07134dc5f Merge main 2025-10-14 21:36:57 -05:00
Aria cc4452ce58 Working version of partials and phases 2025-10-04 20:33:25 -05:00
Aria 93a38003ed Codeformat and pure worklet calls 2025-09-23 11:55:27 -05:00
Aria bb0ea3b4ad Working version with cleanup and such 2025-09-22 21:56:47 -05:00
Aria 99e4855545 Working version 2025-09-22 16:39:12 -05:00
Aria 555949366e First pass 2025-09-21 23:29:39 -05:00
Aria 93f7265f5c PoC 2025-09-21 13:11:04 -05:00
Aria e4070b86f8 More descriptive variables and comments 2025-08-29 14:33:14 -05:00
Aria 9eeb6da3e6 Codeformat 2025-08-28 14:54:09 -05:00
Aria 869141b0a3 Parity with old adsr 2025-08-28 00:31:37 -05:00
Aria ea017e7622 Working version 2025-08-27 20:11:00 -05:00
Aria 763f900c69 First pass at envelopes with curves 2025-08-27 19:19:54 -05:00
23 changed files with 1177 additions and 716 deletions
+1 -1
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@@ -1,4 +1,4 @@
<script src="https://unpkg.com/@strudel/web@1.2.6"></script>
<script src="https://unpkg.com/@strudel/web@1.0.3"></script>
<button id="play">PLAY</button>
<script>
initStrudel({
+8 -8
View File
@@ -12,14 +12,14 @@
"vite": "^6.0.11"
},
"dependencies": {
"@strudel/codemirror": "1.2.6",
"@strudel/core": "1.2.5",
"@strudel/draw": "1.2.5",
"@strudel/mini": "1.2.5",
"@strudel/soundfonts": "1.2.6",
"@strudel/tonal": "1.2.5",
"@strudel/transpiler": "1.2.5",
"@strudel/webaudio": "1.2.6"
"@strudel/codemirror": "workspace:*",
"@strudel/core": "workspace:*",
"@strudel/draw": "workspace:*",
"@strudel/mini": "workspace:*",
"@strudel/soundfonts": "workspace:*",
"@strudel/tonal": "workspace:*",
"@strudel/transpiler": "workspace:*",
"@strudel/webaudio": "workspace:*"
},
"engines": {
"node": ">=18.0.0"
+8 -5
View File
@@ -1,6 +1,6 @@
export const bumpStreet = `// froos - "22 bump street", licensed with CC BY-NC-SA 4.0
samples('github:felixroos/samples')
samples('https://strudel.b-cdn.net/tidal-drum-machines.json', 'github:ritchse/tidal-drum-machines/main/machines/')
samples('https://strudel.cc/tidal-drum-machines.json', 'github:ritchse/tidal-drum-machines/main/machines/')
"<[0,<6 7 9>,13,<17 20 22 26>]!2>/2"
// make it 22 edo
@@ -28,12 +28,13 @@ samples('https://strudel.b-cdn.net/tidal-drum-machines.json', 'github:ritchse/ti
.mask("<0@4 1@12>/4")
.reset("<x@15 [x(3,8) x*[4 8]]>")
// wait for it...
).fast(4/3)
).fast(2/3)
//.crush(6) // remove "//" if you dare`;
export const trafficFlam = `// froos - "traffic flam", licensed with CC BY-NC-SA 4.0
samples('https://strudel.b-cdn.net/tidal-drum-machines.json', 'github:ritchse/tidal-drum-machines/main/machines/')
samples('github:felixroos/samples')
samples('https://strudel.cc/tidal-drum-machines.json', 'github:ritchse/tidal-drum-machines/main/machines/')
addVoicings('hip', {
m11: ['2M 3m 4P 7m'],
@@ -60,14 +61,16 @@ stack(
s("rim*4").end(.05).bank('RolandTR808').speed(.8).room(.2)
)
)
.late("[0 .05]*2").late(12).fast(2)
.late("[0 .05]*2").late(12)
`;
export const funk42 = `// froos - how to funk in 42 lines of code
// adapted from "how to funk in two minutes" by marc rebillet https://www.youtube.com/watch?v=3vBwRfQbXkg
// thanks to peach for the transcription: https://www.youtube.com/watch?v=8eiPXvIgda4
samples('https://strudel.b-cdn.net/tidal-drum-machines.json', 'github:ritchse/tidal-drum-machines/main/machines/')
samples('github:felixroos/samples')
samples('https://strudel.cc/tidal-drum-machines.json', 'github:ritchse/tidal-drum-machines/main/machines/')
setcps(.5)
+1 -1
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@@ -13,7 +13,7 @@
<button id="c">C</button>
<button id="stop">stop</button>
<script type="module">
import { initStrudel, hush } from '@strudel/web';
import { initStrudel } from '@strudel/web';
initStrudel({
prebake: () => samples('github:tidalcycles/dirt-samples'),
});
+1 -1
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@@ -13,7 +13,7 @@
"vite": "^6.0.11"
},
"dependencies": {
"@strudel/web": "1.2.6"
"@strudel/web": "workspace:*"
},
"engines": {
"node": ">=18.0.0"
-1
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@@ -2264,7 +2264,6 @@ export const { tsdelay } = registerControl('tsdelay');
export const { real } = registerControl('real');
export const { imag } = registerControl('imag');
export const { enhance } = registerControl('enhance');
export const { partials } = registerControl('partials');
export const { comb } = registerControl('comb');
export const { smear } = registerControl('smear');
export const { scram } = registerControl('scram');
+86
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@@ -3624,3 +3624,89 @@ for (const name of distAlgoNames) {
return this.distort(argsPat);
};
}
/**
* Turns a list of patterns into a single pattern which outputs list-values
*
* @name parray
* @returns Pattern
*/
export const parray = (pats) => {
const pack = (...xs) => xs;
let acc = pure(curry(pack, null, pats.length));
for (const p of pats) acc = acc.appBoth(reify(p));
return acc;
};
const _ensureListPattern = (list) => {
if (Array.isArray(list)) {
return parray(list);
}
return reify(list);
};
/**
* Scale the magnitude of the harmonics of one of the core synths ('sine', 'tri', 'saw', ..)
*
* Can also be used to create a new synth via `s('user').partials(...)`
*
* @name partials
* @param {number[] | Pattern} magnitudes List of [0, 1] magnitudes for partials. 0th entry is the fundamental harmonic (i.e. DC offset is skipped)
* @example
* s("user").seg(16).n(irand(8)).scale("A:major")
* .partials([1, 0, 1, 0, 0, 1])
* @example
* s("saw").seg(8).n(irand(12)).scale("G#:minor")
* .partials(binaryL(irand(256).add("1")))
*/
Pattern.prototype.partials = function (list) {
return this.withValue((v) => (l) => ({ ...v, partials: l })).appLeft(_ensureListPattern(list));
};
// Also create a top-level function
export const partials = (list) => {
return _ensureListPattern(list).as('partials');
};
/**
* Rotates the harmonics of one of the core synths ('sine', 'tri', 'saw', 'user', ..) by a list of phases
*
* @name phases
* @param {number[] | Pattern} phases List of [0, 1) phases for partials. 0th entry is the fundamental phase (i.e. DC offset is skipped)
* @example
* // Phase cancellation
* s("saw").seg(8).n(irand(12)).scale("G#1:minor")
* .partials(partials([1, 1, 1]))
* .superimpose(x => x.phases([0.5, 0.5, 0.5]))
*/
Pattern.prototype.phases = function (list) {
return this.withValue((v) => (l) => ({ ...v, phases: l })).appLeft(_ensureListPattern(list));
};
// Also create a top-level function
export const phases = (list) => {
return _ensureListPattern(list).as('phases');
};
/**
* Establishes a signal chain. Can be called in sequence like pat.chain(...).chain(...) and so forth
* and/or in a single .chain(..., ..., etc) call. The arguments to `chain` are _patterns_ which each act like
* a self-contained pattern and follow the normal [signal chain](https://strudel.cc/learn/effects/).
*
* If multiple sound generators are present within the chain, they will be mixed in at the location where
* they are declared.
*
* @name chain
* @memberof Pattern
* @param {Pattern | Pattern[]} patterns Patterns to combine into a single chain
* @returns Pattern
*/
Pattern.prototype.chain = function (...pats) {
pats = pats.map(reify);
return this.withValue((v) => (vEff) => {
const currChain = v.chain ?? [];
return { ...v, chain: currChain.concat(vEff) };
}).appLeft(parray(pats));
};
export const chain = (pats) => pure({}).chain(pats);
+47 -2
View File
@@ -228,7 +228,7 @@ const timeToRands = (t, n) => timeToRandsPrime(timeToIntSeed(t), n);
export const run = (n) => saw.range(0, n).round().segment(n);
/**
* Creates a pattern from a binary number.
* Creates a binary pattern from a number.
*
* @name binary
* @param {number} n - input number to convert to binary
@@ -242,7 +242,7 @@ export const binary = (n) => {
};
/**
* Creates a pattern from a binary number, padded to n bits long.
* Creates a binary pattern from a number, padded to n bits long.
*
* @name binaryN
* @param {number} n - input number to convert to binary
@@ -258,6 +258,51 @@ export const binaryN = (n, nBits = 16) => {
return reify(n).segment(nBits).brshift(bitPos).band(pure(1));
};
/**
* Creates a binary list pattern from a number.
*
* @name binaryL
* @param {number} n - input number to convert to binary
* s("saw").seg(8)
* .partials(binaryL(irand(4096).add(1)))
*/
export const binaryL = (n) => {
const nBits = reify(n).log2(0).floor().add(1);
return binaryNL(n, nBits);
};
/**
* Creates a binary list pattern from a number, padded to n bits long.
*
* @name binaryNL
* @param {number} n - input number to convert to binary
* @param {number} nBits - pattern length, defaults to 16
*/
export const binaryNL = (n, nBits = 16) => {
return reify(n)
.withValue((v) => (bits) => {
const bList = [];
for (let i = bits - 1; i >= 0; i--) {
bList.push((v >> i) & 1);
}
return bList;
})
.appLeft(reify(nBits));
};
/**
* Creates a list of random numbers of the given length
*
* @name randL
* @param {number} n Number of random numbers to sample
* @example
* s("saw").seg(16).n(irand(12)).scale("F1:minor")
* .partials(randL(8))
*/
export const randL = (n) => {
return signal((t) => (nVal) => timeToRands(t, nVal).map(Math.abs)).appLeft(reify(n));
};
export const randrun = (n) => {
return signal((t) => {
// Without adding 0.5, the first cycle is always 0,1,2,3,...
+2 -2
View File
@@ -1,9 +1,9 @@
# @strudel/draw
# @strudel/canvas
Helpers for drawing with the Canvas API and Strudel
## Install
```sh
npm i @strudel/draw --save
npm i @strudel/canvas --save
```
+5 -9
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@@ -1,5 +1,6 @@
import { noteToMidi, freqToMidi, getSoundIndex } from '@strudel/core';
import {
cleanupNodes,
getAudioContext,
registerSound,
getParamADSR,
@@ -161,22 +162,17 @@ export function registerSoundfonts() {
const node = bufferSource.connect(envGain);
const holdEnd = time + duration;
getParamADSR(node.gain, attack, decay, sustain, release, 0, 0.3, time, holdEnd, 'linear');
let envEnd = holdEnd + release + 0.01;
// vibrato
let vibratoOscillator = getVibratoOscillator(bufferSource.detune, value, time);
// pitch envelope
getPitchEnvelope(bufferSource.detune, value, time, holdEnd);
bufferSource.stop(envEnd);
const stop = (releaseTime) => {};
bufferSource.onended = () => {
bufferSource.disconnect();
vibratoOscillator?.stop();
node.disconnect();
cleanupNodes([bufferSource, vibratoOscillator, node]);
onended();
};
return { node, stop };
const envEnd = holdEnd + release + 0.01;
bufferSource.stop(envEnd);
return { node, stop: bufferSource.stop };
},
{ type: 'soundfont', prebake: true, fonts },
);
+1 -1
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@@ -89,7 +89,7 @@ superdough({ s: 'bd', delay: 0.5 }, 0, 1);
- `decay`: seconds of decay phase
- `sustain`: gain of sustain phase
- `release`: seconds of release phase
- `deadline`: seconds until the sound should play (0 = immediate)
- `deadline`: seconds from audio context initialization before playing the sound (getAudioContextCurrentTime() = immediate)
- `duration`: seconds the sound should last. optional for one shot samples, required for synth sounds
### registerSynthSounds()
+9 -6
View File
@@ -518,10 +518,13 @@ export const getFrequencyFromValue = (value, defaultNote = 36) => {
return Number(freq);
};
export const destroyAudioWorkletNode = (node) => {
if (node == null) {
return;
}
node.disconnect();
node.parameters.get('end')?.setValueAtTime(0, 0);
export const cleanupNode = (node, time) => {
if (node == null) return;
node.disconnect?.();
node.parameters?.get('end')?.setValueAtTime(0, 0);
node.stop?.(time);
};
export const cleanupNodes = (nodes, time) => {
nodes.forEach((n) => cleanupNode(n, time));
};
+2
View File
@@ -104,6 +104,8 @@ var applyGradualLowpass = function (input, lpFreqStart, lpFreqEnd, lpFreqEndAt,
player.start();
context.oncomplete = function (event) {
callback(event.renderedBuffer);
filter.disconnect();
player.disconnect();
};
context.startRendering();
+4 -12
View File
@@ -1,7 +1,7 @@
import { getCommonSampleInfo } from './util.mjs';
import { registerSound, registerWaveTable } from './index.mjs';
import { getAudioContext } from './audioContext.mjs';
import { getADSRValues, getParamADSR, getPitchEnvelope, getVibratoOscillator } from './helpers.mjs';
import { getADSRValues, cleanupNodes, getParamADSR, getPitchEnvelope, getVibratoOscillator } from './helpers.mjs';
import { logger } from './logger.mjs';
const bufferCache = {}; // string: Promise<ArrayBuffer>
@@ -319,19 +319,11 @@ export async function onTriggerSample(t, value, onended, bank, resolveUrl) {
const out = ac.createGain(); // we need a separate gain for the cutgroups because firefox...
node.connect(out);
bufferSource.onended = function () {
bufferSource.disconnect();
vibratoOscillator?.stop();
node.disconnect();
out.disconnect();
const stop = () => {
cleanupNodes([bufferSource, vibratoOscillator, node]);
onended();
};
let envEnd = holdEnd + release + 0.01;
bufferSource.stop(envEnd);
const stop = (endTime) => {
bufferSource.stop(endTime);
};
const handle = { node: out, bufferSource, stop };
const handle = { node: out, stop };
// cut groups
if (cut !== undefined) {
+346 -236
View File
@@ -7,9 +7,22 @@ This program is free software: you can redistribute it and/or modify it under th
import './feedbackdelay.mjs';
import './reverb.mjs';
import './vowel.mjs';
import { nanFallback, _mod, cycleToSeconds, pickAndRename } from './util.mjs';
import { _mod, clamp, cycleToSeconds, pickAndRename } from './util.mjs';
import workletsUrl from './worklets.mjs?audioworklet';
import { createFilter, gainNode, getCompressor, getDistortion, getLfo, getWorklet, effectSend } from './helpers.mjs';
import {
cleanupNode,
cleanupNodes,
createFilter,
gainNode,
getADSRValues,
getCompressor,
getDistortion,
getLfo,
getParamADSR,
getWorklet,
effectSend,
webAudioTimeout,
} from './helpers.mjs';
import { map } from 'nanostores';
import { logger } from './logger.mjs';
import { loadBuffer } from './sampler.mjs';
@@ -159,6 +172,9 @@ let defaultDefaultValues = {
i: 1,
velocity: 1,
fft: 8,
tremolodepth: 1,
tremolophase: 0,
drive: 0.69,
};
const defaultDefaultDefaultValues = Object.freeze({ ...defaultDefaultValues });
@@ -391,44 +407,17 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
}
// destructure
let {
tremolo,
tremolosync,
tremolodepth = 1,
tremoloskew,
tremolophase = 0,
tremoloshape,
s = getDefaultValue('s'),
bank,
source,
gain = getDefaultValue('gain'),
postgain = getDefaultValue('postgain'),
density = getDefaultValue('density'),
duckorbit,
duckonset,
duckattack,
duckdepth,
djf,
// filters
fanchor = getDefaultValue('fanchor'),
release = 0,
//phaser
phaserrate: phaser,
phaserdepth = getDefaultValue('phaserdepth'),
phasersweep,
phasercenter,
//
coarse,
crush,
dry,
shape,
shapevol = getDefaultValue('shapevol'),
distort,
distortvol = getDefaultValue('distortvol'),
distorttype = getDefaultValue('distorttype'),
pan,
vowel,
delay = getDefaultValue('delay'),
delayfeedback = getDefaultValue('delayfeedback'),
delaysync = getDefaultValue('delaysync'),
@@ -443,18 +432,21 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
irspeed,
irbegin,
i = getDefaultValue('i'),
velocity = getDefaultValue('velocity'),
analyze, // analyser wet
fft = getDefaultValue('fft'), // fftSize 0 - 10
compressor: compressorThreshold,
compressorRatio,
compressorKnee,
compressorAttack,
compressorRelease,
chain: subChains = [],
} = value;
delaytime = delaytime ?? cycleToSeconds(delaysync, cps);
if (value.wtPosSynced != null) {
value.wtPosRate /= cps;
}
if (value.wtWarpSynced != null) {
value.wtWarpRate /= cps;
}
const orbitChannels = mapChannelNumbers(
multiChannelOrbits && orbit > 0 ? [orbit * 2 - 1, orbit * 2] : getDefaultValue('channels'),
);
@@ -465,23 +457,13 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
audioController.duck(duckorbit, t, duckonset, duckattack, duckdepth);
}
gain = applyGainCurve(nanFallback(gain, 1));
postgain = applyGainCurve(postgain);
shapevol = applyGainCurve(shapevol);
distortvol = applyGainCurve(distortvol);
delay = applyGainCurve(delay);
velocity = applyGainCurve(velocity);
tremolodepth = applyGainCurve(tremolodepth);
gain *= velocity; // velocity currently only multiplies with gain. it might do other things in the future
const end = t + hapDuration;
const endWithRelease = end + release;
const chainID = Math.round(Math.random() * 1000000);
// oldest audio nodes will be destroyed if maximum polyphony is exceeded
for (let i = 0; i <= activeSoundSources.size - maxPolyphony; i++) {
const ch = activeSoundSources.entries().next();
const source = ch.value[1];
const source = ch.value[1].deref();
const chainID = ch.value[0];
const endTime = t + 0.25;
source?.node?.gain?.linearRampToValueAtTime(0, endTime);
@@ -489,8 +471,6 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
activeSoundSources.delete(chainID);
}
let audioNodes = [];
if (['-', '~', '_'].includes(s)) {
return;
}
@@ -498,201 +478,318 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
s = `${bank}_${s}`;
value.s = s;
}
// get source AudioNode
let sourceNode;
if (source) {
sourceNode = source(t, value, hapDuration, cps);
} else if (getSound(s)) {
const { onTrigger } = getSound(s);
const onEnded = () => {
audioNodes.forEach((n) => n?.disconnect());
activeSoundSources.delete(chainID);
};
const soundHandle = await onTrigger(t, value, onEnded, cps);
if (soundHandle) {
sourceNode = soundHandle.node;
activeSoundSources.set(chainID, soundHandle);
const end = t + hapDuration;
let fullRelease = release;
for (const ch of subChains) {
fullRelease = Math.max(fullRelease, ch.release ?? 0);
}
const fullEndWithRelease = end + fullRelease + 0.02;
// The following ensures we run through the value once as normal _and then_ through all the subchains
subChains = [value, ...subChains];
let prev;
for (const ch of subChains) {
const audioNodes = [];
const chain = [];
ch.duration = hapDuration;
const endWithRelease = end + Math.max(release, ch.release ?? 0);
const chainID = Math.round(Math.random() * 1000000);
// get source AudioNode
let sourceNode;
if (source) {
sourceNode = source(t, ch, hapDuration, cps);
chain.push(sourceNode);
} else if (ch.s !== undefined && getSound(ch.s)) {
const { onTrigger } = getSound(ch.s);
const soundHandle = await onTrigger(t, ch, () => {}, cps);
if (soundHandle) {
sourceNode = soundHandle.node;
activeSoundSources.set(chainID, new WeakRef(soundHandle)); // allow GC
}
chain.push(sourceNode);
} else if (ch.s !== undefined) {
throw new Error(`sound ${ch.s} not found! Is it loaded?`);
}
} else {
throw new Error(`sound ${s} not found! Is it loaded?`);
}
if (!sourceNode) {
// if onTrigger does not return anything, we will just silently skip
// this can be used for things like speed(0) in the sampler
return;
}
if (ac.currentTime > t) {
logger('[webaudio] skip hap: still loading', ac.currentTime - t);
return;
}
const chain = []; // audio nodes that will be connected to each other sequentially
chain.push(sourceNode);
stretch !== undefined && chain.push(getWorklet(ac, 'phase-vocoder-processor', { pitchFactor: stretch }));
// gain stage
chain.push(gainNode(gain));
// filter
const ftype = getFilterType(value.ftype);
if (value.cutoff !== undefined) {
const lpMap = {
frequency: 'cutoff',
q: 'resonance',
attack: 'lpattack',
decay: 'lpdecay',
sustain: 'lpsustain',
release: 'lprelease',
env: 'lpenv',
anchor: 'fanchor',
model: 'ftype',
drive: 'drive',
rate: 'lprate',
sync: 'lpsync',
depth: 'lpdepth',
shape: 'lpshape',
dcoffset: 'lpdc',
skew: 'lpskew',
};
const lpParams = pickAndRename(value, lpMap);
lpParams.type = 'lowpass';
let lp = () => createFilter(ac, t, end, lpParams, cps);
chain.push(lp());
if (ftype === '24db') {
chain.push(lp());
if (ac.currentTime > t) {
logger('[webaudio] skip hap: still loading', ac.currentTime - t);
return;
}
}
if (value.hcutoff !== undefined) {
const hpMap = {
frequency: 'hcutoff',
q: 'hresonance',
attack: 'hpattack',
decay: 'hpdecay',
sustain: 'hpsustain',
release: 'hprelease',
env: 'hpenv',
anchor: 'fanchor',
model: 'ftype',
drive: 'drive',
rate: 'hprate',
sync: 'hpsync',
depth: 'hpdepth',
shape: 'hpshape',
dcoffset: 'hpdc',
skew: 'hpskew',
};
const hpParams = pickAndRename(value, hpMap);
hpParams.type = 'highpass';
let hp = () => createFilter(ac, t, end, hpParams, cps);
chain.push(hp());
if (ftype === '24db') {
chain.push(hp());
const prevExists = prev !== undefined;
const sourceExists = sourceNode !== undefined;
if (!prevExists && !sourceExists) {
// if there are no signals, we will just silently continue
// this can be used for things like speed(0) in the sampler
continue;
} else if (prevExists && !sourceExists) {
// just FX -- apply ADSR now
const adsrParams = [ch.attack, ch.decay, ch.sustain, ch.release];
if (adsrParams.some((v) => v != null)) {
const [attack, decay, sustain, release] = getADSRValues(adsrParams, 'linear', [0.001, 0.05, 0.6, 0.01]);
const adsrNode = gainNode(1);
chain.push(adsrNode);
getParamADSR(adsrNode.gain, attack, decay, sustain, release, 0, 1, t, t + hapDuration, 'linear');
}
}
}
if (value.bandf !== undefined) {
const bpMap = {
frequency: 'bandf',
q: 'bandq',
attack: 'bpattack',
decay: 'bpdecay',
sustain: 'bpsustain',
release: 'bprelease',
env: 'bpenv',
anchor: 'fanchor',
model: 'ftype',
drive: 'drive',
rate: 'bprate',
sync: 'bpsync',
depth: 'bpdepth',
shape: 'bpshape',
dcoffset: 'bpdc',
skew: 'bpskew',
};
const bpParams = pickAndRename(value, bpMap);
bpParams.type = 'bandpass';
let bp = () => createFilter(ac, t, end, bpParams, cps);
chain.push(bp());
if (ftype === '24db') {
chain.push(bp());
}
}
if (vowel !== undefined) {
const vowelFilter = ac.createVowelFilter(vowel);
chain.push(vowelFilter);
}
// effects
coarse !== undefined && chain.push(getWorklet(ac, 'coarse-processor', { coarse }));
crush !== undefined && chain.push(getWorklet(ac, 'crush-processor', { crush }));
shape !== undefined && chain.push(getWorklet(ac, 'shape-processor', { shape, postgain: shapevol }));
distort !== undefined && chain.push(getDistortion(distort, distortvol, distorttype));
if (tremolosync != null) {
tremolo = cps * tremolosync;
}
if (value.wtPosSynced != null) {
value.wtPosRate /= cps;
}
if (value.wtWarpSynced != null) {
value.wtWarpRate /= cps;
}
if (tremolo !== undefined) {
// Allow clipping of modulator for more dynamic possiblities, and to prevent speaker overload
// EX: a triangle waveform will clip like this /-\ when the depth is above 1
const gain = Math.max(1 - tremolodepth, 0);
const amGain = new GainNode(ac, { gain });
const time = cycle / cps;
const lfo = getLfo(ac, t, endWithRelease, {
skew: tremoloskew ?? (tremoloshape != null ? 0.5 : 1),
frequency: tremolo,
depth: tremolodepth,
time,
dcoffset: 0,
shape: tremoloshape,
phaseoffset: tremolophase,
min: 0,
max: 1,
curve: 1.5,
});
lfo.connect(amGain.gain);
chain.push(amGain);
}
compressorThreshold !== undefined &&
chain.push(
getCompressor(ac, compressorThreshold, compressorRatio, compressorKnee, compressorAttack, compressorRelease),
webAudioTimeout(
ac,
() => {
audioNodes.forEach((n) => n?.disconnect());
activeSoundSources.delete(chainID);
},
0,
fullEndWithRelease,
);
let {
gain = getDefaultValue('gain'),
velocity = getDefaultValue('velocity'),
shapevol = getDefaultValue('shapevol'),
distorttype = getDefaultValue('distorttype'),
distortvol = getDefaultValue('distortvol'),
tremolodepth = getDefaultValue('tremolodepth'),
phaserdepth = getDefaultValue('phaserdepth'),
delay = getDefaultValue('delay'),
delayfeedback = getDefaultValue('delayfeedback'),
delaysync = getDefaultValue('delaysync'),
delaytime,
} = ch;
delaytime = delaytime ?? cycleToSeconds(delaysync, cps);
gain = applyGainCurve(gain);
velocity = applyGainCurve(velocity);
gain *= velocity; // velocity currently only multiplies with gain. it might do other things in the future
shapevol = applyGainCurve(shapevol);
distortvol = applyGainCurve(distortvol);
tremolodepth = applyGainCurve(tremolodepth);
ch.drive = ch.drive ?? getDefaultValue('drive');
ch.fanchor = ch.fanchor ?? getDefaultValue('fanchor');
ch.stretch !== undefined && chain.push(getWorklet(ac, 'phase-vocoder-processor', { pitchFactor: ch.stretch }));
// panning
if (pan !== undefined) {
const panner = ac.createStereoPanner();
panner.pan.value = 2 * pan - 1;
chain.push(panner);
}
// phaser
if (phaser !== undefined && phaserdepth > 0) {
const phaserFX = getPhaser(t, endWithRelease, phaser, phaserdepth, phasercenter, phasersweep);
chain.push(phaserFX);
// gain stage
chain.push(gainNode(gain));
//filter
const ftype = getFilterType(ch.ftype);
if (ch.cutoff !== undefined) {
const lpMap = {
frequency: 'cutoff',
q: 'resonance',
attack: 'lpattack',
decay: 'lpdecay',
sustain: 'lpsustain',
release: 'lprelease',
env: 'lpenv',
anchor: 'fanchor',
model: 'ftype',
drive: 'drive',
rate: 'lprate',
sync: 'lpsync',
depth: 'lpdepth',
shape: 'lpshape',
dcoffset: 'lpdc',
skew: 'lpskew',
};
const lpParams = pickAndRename(ch, lpMap);
lpParams.type = 'lowpass';
let lp = () => createFilter(ac, t, end, lpParams, cps);
chain.push(lp());
if (ch.ftype === '24db') {
chain.push(lp());
}
}
if (ch.hcutoff !== undefined) {
const hpMap = {
frequency: 'hcutoff',
q: 'hresonance',
attack: 'hpattack',
decay: 'hpdecay',
sustain: 'hpsustain',
release: 'hprelease',
env: 'hpenv',
anchor: 'fanchor',
model: 'ftype',
drive: 'drive',
rate: 'hprate',
sync: 'hpsync',
depth: 'hpdepth',
shape: 'hpshape',
dcoffset: 'hpdc',
skew: 'hpskew',
};
const hpParams = pickAndRename(ch, hpMap);
hpParams.type = 'highpass';
let hp = () => createFilter(ac, t, end, hpParams, cps);
chain.push(hp());
if (ch.ftype === '24db') {
chain.push(hp());
}
}
if (ch.bandf !== undefined) {
const bpMap = {
frequency: 'bandf',
q: 'bandq',
attack: 'bpattack',
decay: 'bpdecay',
sustain: 'bpsustain',
release: 'bprelease',
env: 'bpenv',
anchor: 'fanchor',
model: 'ftype',
drive: 'drive',
rate: 'bprate',
sync: 'bpsync',
depth: 'bpdepth',
shape: 'bpshape',
dcoffset: 'bpdc',
skew: 'bpskew',
};
const bpParams = pickAndRename(ch, bpMap);
bpParams.type = 'bandpass';
let bp = () => createFilter(ac, t, end, bpParams, cps);
chain.push(bp());
if (ftype === '24db') {
chain.push(bp());
}
}
if (ch.vowel !== undefined) {
const vowelFilter = ac.createVowelFilter(ch.vowel);
chain.push(vowelFilter);
}
// effects
ch.coarse !== undefined && chain.push(getWorklet(ac, 'coarse-processor', { coarse: ch.coarse }));
ch.crush !== undefined && chain.push(getWorklet(ac, 'crush-processor', { crush: ch.crush }));
ch.shape !== undefined && chain.push(getWorklet(ac, 'shape-processor', { shape: ch.shape, postgain: shapevol }));
ch.distort !== undefined && chain.push(getDistortion(ch.distort, distortvol, distorttype));
let tremolo = ch.tremolo;
if (ch.tremolosync != null) {
tremolo = cps * ch.tremolosync;
}
if (tremolo !== undefined) {
// Allow clipping of modulator for more dynamic possiblities, and to prevent speaker overload
// EX: a triangle waveform will clip like this /-\ when the depth is above 1
const gain = Math.max(1 - tremolodepth, 0);
const amGain = new GainNode(ac, { gain });
const time = cycle / cps;
const lfo = getLfo(ac, t, endWithRelease, {
skew: ch.tremoloskew ?? (ch.tremoloshape != null ? 0.5 : 1),
frequency: tremolo,
depth: tremolodepth,
time,
dcoffset: 0,
shape: ch.tremoloshape,
phaseoffset: ch.tremolophase,
min: 0,
max: 1,
curve: 1.5,
});
lfo.connect(amGain.gain);
chain.push(amGain);
}
ch.compressor !== undefined &&
chain.push(
getCompressor(
ac,
ch.compressor,
ch.compressorRatio,
ch.compressorKnee,
ch.compressorAttack,
ch.compressorRelease,
),
);
// panning
if (ch.pan !== undefined) {
const panner = ac.createStereoPanner();
panner.pan.value = 2 * ch.pan - 1;
chain.push(panner);
}
// phaser
if (ch.phaserrate !== undefined && phaserdepth > 0) {
const phaserFX = getPhaser(t, endWithRelease, ch.phaserrate, phaserdepth, ch.phasercenter, ch.phasersweep);
chain.push(phaserFX);
}
// delay
if (delay > 0 && delaytime > 0 && delayfeedback > 0) {
const dry = gainNode(1);
delayfeedback = clamp(delayfeedback, 0, 0.98);
const delayNode = ac.createFeedbackDelay(1, delaytime, delayfeedback);
const wetDelay = gainNode(delay);
const dryDelay = gainNode(ch.dry ?? 1);
const sum = new GainNode(ac, { gain: 1, channelCount: 2, channelCountMode: 'explicit' });
dry.connect(dryDelay).connect(sum);
dry.connect(delayNode).connect(wetDelay).connect(sum);
const stop = () => cleanupNodes([dryDelay, delayNode, dry, wetDelay]);
chain.push({ input: dry, output: sum, disconnect: stop });
}
// reverb
if (ch.room > 0) {
let roomIR;
if (ch.ir !== undefined) {
let url;
let sample = getSound(ch.ir);
if (Array.isArray(sample)) {
url = sample.data.samples[ch.i % sample.data.samples.length];
} else if (typeof sample === 'object') {
url = Object.values(sample.data.samples).flat()[ch.i % Object.values(sample.data.samples).length];
}
roomIR = await loadBuffer(url, ac, ch.ir, 0);
}
const dry = gainNode(1);
const reverbNode = ac.createReverb(
ch.roomsize,
ch.roomfade,
ch.roomlp,
ch.roomdim,
roomIR,
ch.irspeed,
ch.irbegin,
);
const wetReverb = gainNode(ch.room);
const dryReverb = gainNode(ch.dry ?? 1);
const sum = new GainNode(ac, { gain: 1, channelCount: 2, channelCountMode: 'explicit' });
dry.connect(dryReverb).connect(sum);
dry.connect(reverbNode).connect(wetReverb).connect(sum);
const stop = () => cleanupNodes([dryReverb, reverbNode, dry, wetReverb]);
chain.push({ input: dry, output: sum, disconnect: stop });
}
if (prevExists) {
const prevOut = prev.output ?? prev;
if (sourceExists) {
// mix with the previous output
const mixer = new GainNode(ac, { gain: 1, channelCount: 2, channelCountMode: 'explicit' });
prevOut.connect(mixer);
chain.push(mixer);
} else {
prevOut.connect(chain[0]);
}
}
// connect chain elements together
chain.slice(1).reduce((last, current) => {
const lastC = last.output ?? last;
const currentC = current.input ?? current;
lastC.connect(currentC);
return current.output ?? current;
}, chain[0]);
audioNodes.push(...chain);
prev = chain[chain.length - 1];
}
const outerAudioNodes = [];
const outerChain = [prev];
// last gain
const post = new GainNode(ac, { gain: postgain });
chain.push(post);
outerChain.push(post);
// delay
if (delay > 0 && delaytime > 0 && delayfeedback > 0) {
orbitBus.getDelay(delaytime, delayfeedback, t);
orbitBus.sendDelay(post, delay);
const send = orbitBus.sendDelay(post, delay);
outerAudioNodes.push(send);
}
// reverb
if (room > 0) {
@@ -708,7 +805,8 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
roomIR = await loadBuffer(url, ac, ir, 0);
}
orbitBus.getReverb(roomsize, roomfade, roomlp, roomdim, roomIR, irspeed, irbegin);
orbitBus.sendReverb(post, room);
const send = orbitBus.sendReverb(post, room);
outerAudioNodes.push(send);
}
if (djf != null) {
@@ -719,20 +817,32 @@ export const superdough = async (value, t, hapDuration, cps = 0.5, cycle = 0.5)
if (analyze) {
const analyserNode = getAnalyserById(analyze, 2 ** (fft + 5));
const analyserSend = effectSend(post, analyserNode, 1);
audioNodes.push(analyserSend);
outerAudioNodes.push(analyserSend);
}
if (dry != null) {
dry = applyGainCurve(dry);
const dryGain = new GainNode(ac, { gain: dry });
chain.push(dryGain);
outerChain.push(dryGain);
orbitBus.connectToOutput(dryGain);
} else {
orbitBus.connectToOutput(post);
}
// connect chain elements together
chain.slice(1).reduce((last, current) => last.connect(current), chain[0]);
audioNodes = audioNodes.concat(chain);
outerChain.slice(1).reduce((last, current) => {
const lastC = last.output ?? last;
const currentC = current.input ?? current;
lastC.connect(currentC);
return current.output ?? current;
}, outerChain[0]);
outerAudioNodes.push(...outerChain);
webAudioTimeout(
ac,
() => {
outerAudioNodes.forEach((n) => n?.disconnect?.());
},
0,
fullEndWithRelease,
);
};
export const superdoughTrigger = (t, hap, ct, cps) => {
+2 -2
View File
@@ -78,11 +78,11 @@ export class Orbit {
return this.reverbNode;
}
sendReverb(node, amount) {
effectSend(node, this.reverbNode, amount);
return effectSend(node, this.reverbNode, amount);
}
sendDelay(node, amount) {
effectSend(node, this.delayNode, amount);
return effectSend(node, this.delayNode, amount);
}
duck(t, onsettime = 0, attacktime = 0.1, depth = 1) {
+76 -106
View File
@@ -3,7 +3,7 @@ import { registerSound, soundMap } from './superdough.mjs';
import { getAudioContext } from './audioContext.mjs';
import {
applyFM,
destroyAudioWorkletNode,
cleanupNodes,
gainNode,
getADSRValues,
getFrequencyFromValue,
@@ -15,9 +15,10 @@ import {
noises,
webAudioTimeout,
} from './helpers.mjs';
import { logger } from './logger.mjs';
import { getNoiseMix, getNoiseOscillator } from './noise.mjs';
const waveforms = ['triangle', 'square', 'sawtooth', 'sine'];
const waveforms = ['triangle', 'square', 'sawtooth', 'sine', 'user'];
const waveformAliases = [
['tri', 'triangle'],
['sqr', 'square'],
@@ -46,33 +47,21 @@ export function registerSynthSounds() {
'linear',
[0.001, 0.05, 0.6, 0.01],
);
let sound = getOscillator(s, t, value);
let { node: o, stop, triggerRelease } = sound;
const { node: o, stop } = getOscillator(s, t, value);
// turn down
const g = gainNode(0.3);
const { duration } = value;
o.onended = () => {
o.disconnect();
g.disconnect();
cleanupNodes([o, g]);
onended();
};
const envGain = gainNode(1);
let node = o.connect(g).connect(envGain);
const holdEnd = t + duration;
const node = o.connect(g).connect(gainNode(1));
const holdEnd = t + value.duration;
getParamADSR(node.gain, attack, decay, sustain, release, 0, 1, t, holdEnd, 'linear');
const envEnd = holdEnd + release + 0.01;
triggerRelease?.(envEnd);
stop(envEnd);
return {
node,
stop: (endTime) => {
stop(endTime);
},
stop,
};
},
{ type: 'synth', prebake: true },
@@ -112,12 +101,7 @@ export function registerSynthSounds() {
const mix = gainNode(mixGain);
o.onended = () => {
o.disconnect();
g.disconnect();
sat.disconnect();
noise.node.disconnect();
noiseGain.disconnect();
mix.disconnect();
cleanupNodes([o, g, sat, noise.node, noiseGain]);
onended();
};
@@ -135,13 +119,10 @@ export function registerSynthSounds() {
mix.gain.linearRampToValueAtTime(0, end);
o.stop(end);
noise.stop(end);
return {
node,
stop: (endTime) => {
o.stop(endTime);
},
stop: o.stop,
};
},
{ type: 'synth', prebake: true },
@@ -185,29 +166,22 @@ export function registerSynthSounds() {
getPitchEnvelope(o.parameters.get('detune'), value, begin, holdend);
const vibratoOscillator = getVibratoOscillator(o.parameters.get('detune'), value, begin);
const fm = applyFM(o.parameters.get('frequency'), value, begin);
let envGain = gainNode(1);
envGain = o.connect(envGain);
const node = o.connect(gainNode(1));
getParamADSR(envGain.gain, attack, decay, sustain, release, 0, 0.3 * gainAdjustment, begin, holdend, 'linear');
getParamADSR(node.gain, attack, decay, sustain, release, 0, 0.3 * gainAdjustment, begin, holdend, 'linear');
let timeoutNode = webAudioTimeout(
const timeoutNode = webAudioTimeout(
ac,
() => {
destroyAudioWorkletNode(o);
envGain.disconnect();
cleanupNodes([o, fm, vibratoOscillator]);
onended();
fm?.stop();
vibratoOscillator?.stop();
},
begin,
end,
);
return {
node: envGain,
stop: (time) => {
timeoutNode.stop(time);
},
node,
stop: timeoutNode.stop,
};
},
{ prebake: true, type: 'synth' },
@@ -260,30 +234,21 @@ export function registerSynthSounds() {
outputChannelCount: [2],
},
);
o.port.postMessage({ codeText: byteBeatExpression, byteBeatStartTime, frequency });
let envGain = gainNode(1);
envGain = o.connect(envGain);
getParamADSR(envGain.gain, attack, decay, sustain, release, 0, 1, begin, holdend, 'linear');
let timeoutNode = webAudioTimeout(
const node = o.connect(gainNode(1));
getParamADSR(node.gain, attack, decay, sustain, release, 0, 1, begin, holdend, 'linear');
const timeoutNode = webAudioTimeout(
ac,
() => {
destroyAudioWorkletNode(o);
envGain.disconnect();
cleanupNodes([node, o]);
onended();
},
begin,
end,
);
return {
node: envGain,
stop: (time) => {
timeoutNode.stop(time);
},
node,
stop: timeoutNode.stop,
};
},
{ prebake: true, type: 'synth' },
@@ -333,34 +298,26 @@ export function registerSynthSounds() {
getPitchEnvelope(o.parameters.get('detune'), value, begin, holdend);
const vibratoOscillator = getVibratoOscillator(o.parameters.get('detune'), value, begin);
const fm = applyFM(o.parameters.get('frequency'), value, begin);
let envGain = gainNode(1);
envGain = o.connect(envGain);
const node = o.connect(gainNode(1));
getParamADSR(envGain.gain, attack, decay, sustain, release, 0, 1, begin, holdend, 'linear');
getParamADSR(node.gain, attack, decay, sustain, release, 0, 1, begin, holdend, 'linear');
let lfo;
if (pwsweep != 0) {
lfo = getLfo(ac, begin, end, { frequency: pwrate, depth: pwsweep });
lfo.connect(o.parameters.get('pulsewidth'));
}
let timeoutNode = webAudioTimeout(
const timeoutNode = webAudioTimeout(
ac,
() => {
destroyAudioWorkletNode(o);
destroyAudioWorkletNode(lfo);
envGain.disconnect();
cleanupNodes([node, o, lfo, fm, vibratoOscillator]);
onended();
fm?.stop();
vibratoOscillator?.stop();
},
begin,
end,
);
return {
node: envGain,
stop: (time) => {
timeoutNode.stop(time);
},
node,
stop: timeoutNode.stop,
};
},
{ prebake: true, type: 'synth' },
@@ -381,31 +338,26 @@ export function registerSynthSounds() {
let { density } = value;
sound = getNoiseOscillator(s, t, density);
let { node: o, stop, triggerRelease } = sound;
let { node: o, stop } = sound;
// turn down
const g = gainNode(0.3);
const { duration } = value;
o.onended = () => {
o.disconnect();
g.disconnect();
onended();
};
const envGain = gainNode(1);
let node = o.connect(g).connect(envGain);
const holdEnd = t + duration;
getParamADSR(node.gain, attack, decay, sustain, release, 0, 1, t, holdEnd, 'linear');
o.onended = () => {
cleanupNodes([node, o, g]);
onended();
};
const envEnd = holdEnd + release + 0.01;
triggerRelease?.(envEnd);
stop(envEnd);
return {
node,
stop: (endTime) => {
stop(endTime);
},
stop,
};
},
{ type: 'synth', prebake: true },
@@ -414,9 +366,13 @@ export function registerSynthSounds() {
waveformAliases.forEach(([alias, actual]) => soundMap.set({ ...soundMap.get(), [alias]: soundMap.get()[actual] }));
}
export function waveformN(partials, type) {
const real = new Float32Array(partials + 1);
const imag = new Float32Array(partials + 1);
const PI2 = 2 * Math.PI;
export function waveformN(partials, phases, type) {
const isList = typeof partials === 'object';
partials = isList ? partials : new Float32Array(partials).fill(1);
const len = partials.length;
const real = new Float32Array(len + 1);
const imag = new Float32Array(len + 1);
const ac = getAudioContext();
const osc = ac.createOscillator();
@@ -424,20 +380,29 @@ export function waveformN(partials, type) {
sawtooth: (n) => [0, -1 / n],
square: (n) => [0, n % 2 === 0 ? 0 : 1 / n],
triangle: (n) => [n % 2 === 0 ? 0 : 1 / (n * n), 0],
user: (_n) => [0, 1],
};
if (!terms[type]) {
throw new Error(`unknown wave type ${type}`);
}
real[0] = 0; // dc offset
imag[0] = 0;
let n = 1;
while (n <= partials) {
const [r, i] = terms[type](n);
real[n] = r;
imag[n] = i;
n++;
for (let n = 0; n < len; n++) {
const mag = partials[n];
const [r, i] = terms[type](n + 1); // we skip n === 0 as this is dc offset
const phase = phases?.[n] ?? 0;
// Scale by `partials`
let R = r * mag;
let I = i * mag;
// Apply rotation by the phase
if (phase !== 0) {
const c = Math.cos(PI2 * phase);
const s = Math.sin(PI2 * phase);
R = c * R - s * I;
I = s * R + c * I;
}
real[n + 1] = R;
imag[n + 1] = I;
}
const wave = ac.createPeriodicWave(real, imag);
@@ -447,16 +412,24 @@ export function waveformN(partials, type) {
// expects one of waveforms as s
export function getOscillator(s, t, value) {
let { n: partials, duration, noise = 0 } = value;
const { duration, noise = 0 } = value;
const partials = value.partials ?? value.n;
let o;
if (s === 'user' && !partials) {
logger(
`[superdough] Synth 'user' was selected, but partials not specified. Defaulting to triangle. Use pat.partials to setup custom waveform`,
);
s = 'triangle';
}
s = s === 'user' && !partials ? 'triangle' : s;
// If no partials are given, use stock waveforms
if (!partials || s === 'sine') {
if (!partials || partials?.length === 0 || s === 'sine') {
o = getAudioContext().createOscillator();
o.type = s || 'triangle';
}
// generate custom waveform if partials are given
else {
o = waveformN(partials, s);
o = waveformN(partials, value.phases, s);
}
// set frequency
o.frequency.value = getFrequencyFromValue(value);
@@ -472,17 +445,14 @@ export function getOscillator(s, t, value) {
if (noise) {
noiseMix = getNoiseMix(o, noise, t);
}
const stop = (time) => {
fmModulator.stop(time);
vibratoOscillator?.stop(time);
noiseMix?.stop(time);
o.stop(time);
};
return {
node: noiseMix?.node || o,
stop: (time) => {
fmModulator.stop(time);
vibratoOscillator?.stop(time);
noiseMix?.stop(time);
o.stop(time);
},
triggerRelease: (time) => {
// envGain?.stop(time);
},
stop,
};
}
+3 -10
View File
@@ -3,7 +3,7 @@ import { getCommonSampleInfo } from './util.mjs';
import {
applyFM,
applyParameterModulators,
destroyAudioWorkletNode,
cleanupNodes,
getADSRValues,
getFrequencyFromValue,
getParamADSR,
@@ -318,19 +318,12 @@ export async function onTriggerSynth(t, value, onended, tables, cps, frameLen) {
const timeoutNode = webAudioTimeout(
ac,
() => {
destroyAudioWorkletNode(source);
vibratoOscillator?.stop();
fm?.stop();
node.disconnect();
wtPosModulators?.disconnect();
wtWarpModulators?.disconnect();
cleanupNodes([source, vibratoOscillator, fm, node, wtPosModulators, wtWarpModulators]);
onended();
},
t,
envEnd,
);
handle.stop = (time) => {
timeoutNode.stop(time);
};
handle.stop = timeoutNode.stop;
return handle;
}
+236 -173
View File
@@ -6,51 +6,57 @@ import OLAProcessor from './ola-processor';
import FFT from './fft.js';
import { getDistortionAlgorithm } from './helpers.mjs';
const blockSize = 128;
const PI = Math.PI;
const TWO_PI = 2 * PI;
const INVSR = 1 / sampleRate;
const clamp = (num, min, max) => Math.min(Math.max(num, min), max);
const mod = (n, m) => ((n % m) + m) % m;
const lerp = (a, b, n) => n * (b - a) + a;
const pv = (arr, n) => arr[n] ?? arr[0];
const frac = (x) => x - Math.floor(x);
const ffloor = (x) => x | 0; // fast floor for non-negative
const getUnisonDetune = (unison, detune, voiceIndex) => {
if (unison < 2) {
return 0;
}
return lerp(-detune * 0.5, detune * 0.5, voiceIndex / (unison - 1));
// Fast integer ops for non-negative values
const ffloor = (x) => x | 0;
const fround = (x) => ffloor(x + 0.5);
const fceil = (x) => ffloor(x + 1);
const ffrac = (x) => x - ffloor(x);
const fast_tanh = (x) => {
const x2 = x ** 2;
return (x * (27.0 + x2)) / (27.0 + 9.0 * x2);
};
// Optimized per-voice detuner which precomputes constants
const getDetuner = (unison, detune) => {
if (unison < 2) {
return (_voiceIdx) => 0;
}
const scale = detune / (unison - 1);
const center = detune * 0.5;
return (voiceIdx) => voiceIdx * scale - center;
};
const applySemitoneDetuneToFrequency = (frequency, detune) => {
return frequency * Math.pow(2, detune / 12);
};
// Restrict phase to the range [0, maxPhase) via wrapping
function wrapPhase(phase, maxPhase = 1) {
if (phase >= maxPhase) {
phase -= maxPhase;
} else if (phase < 0) {
phase += maxPhase;
}
return phase;
}
const blockSize = 128;
// Smooth waveshape near discontinuities to remove frequencies above Nyquist and prevent aliasing
// referenced from https://www.kvraudio.com/forum/viewtopic.php?t=375517
function polyBlep(phase, dt) {
dt = Math.min(dt, 1 - dt);
const invdt = 1 / dt;
// Start of cycle
if (phase < dt) {
phase /= dt;
// 2 * (phase - phase^2/2 - 0.5)
return phase + phase - phase * phase - 1;
phase *= invdt;
return 2 * phase - phase ** 2 - 1;
}
// End of cycle
else if (phase > 1 - dt) {
phase = (phase - 1) / dt;
// 2 * (phase^2/2 + phase + 0.5)
return phase * phase + phase + phase + 1;
phase = (phase - 1) * invdt;
return phase ** 2 + 2 * phase + 1;
}
// 0 otherwise
else {
return 0;
@@ -66,7 +72,7 @@ const waveshapes = {
return phase / skew;
},
sine(phase) {
return Math.sin(Math.PI * 2 * phase) * 0.5 + 0.5;
return Math.sin(TWO_PI * phase) * 0.5 + 0.5;
},
ramp(phase) {
return phase;
@@ -100,12 +106,6 @@ const waveshapes = {
return v - polyBlep(phase, dt);
},
};
function getParamValue(block, param) {
if (param.length > 1) {
return param[block];
}
return param[0];
}
const waveShapeNames = Object.keys(waveshapes);
class LFOProcessor extends AudioWorkletProcessor {
@@ -165,9 +165,9 @@ class LFOProcessor extends AudioWorkletProcessor {
const blockSize = output[0].length ?? 0;
if (this.phase == null) {
this.phase = mod(time * frequency + phaseoffset, 1);
this.phase = ffrac(time * frequency + phaseoffset);
}
const dt = frequency / sampleRate;
const dt = frequency * INVSR;
for (let n = 0; n < blockSize; n++) {
for (let i = 0; i < output.length; i++) {
let modval = (waveshapes[shape](this.phase, skew) + dcoffset) * depth;
@@ -293,8 +293,8 @@ class TwoPoleFilter {
// Out of bound values can produce NaNs
resonance = clamp(resonance, 0, 1);
cutoff = clamp(cutoff, 0, sampleRate / 2 - 1);
const c = clamp(2 * Math.sin(cutoff * (_PI / sampleRate)), 0, 1.14);
const r = Math.pow(0.5, (resonance + 0.125) / 0.125);
const c = clamp(2 * Math.sin(cutoff * PI * INVSR), 0, 1.14);
const r = Math.pow(0.5, 8 * resonance + 1);
const mrc = 1 - r * c;
this.s0 = mrc * this.s0 - c * this.s1 + c * s; // bpf
this.s1 = mrc * this.s1 + c * this.s0; // lpf
@@ -353,11 +353,6 @@ class DJFProcessor extends AudioWorkletProcessor {
}
registerProcessor('djf-processor', DJFProcessor);
function fast_tanh(x) {
const x2 = x * x;
return (x * (27.0 + x2)) / (27.0 + 9.0 * x2);
}
const _PI = 3.14159265359;
//adapted from https://github.com/TheBouteillacBear/webaudioworklet-wasm?tab=MIT-1-ov-file
class LadderProcessor extends AudioWorkletProcessor {
static get parameterDescriptors() {
@@ -395,7 +390,7 @@ class LadderProcessor extends AudioWorkletProcessor {
const drive = clamp(Math.exp(parameters.drive[0]), 0.1, 2000);
let cutoff = parameters.frequency[0];
cutoff = (cutoff * 2 * _PI) / sampleRate;
cutoff = cutoff * TWO_PI * INVSR;
cutoff = cutoff > 1 ? 1 : cutoff;
const k = Math.min(8, resonance * 0.13);
@@ -508,6 +503,7 @@ class SuperSawOscillatorProcessor extends AudioWorkletProcessor {
name: 'voices',
defaultValue: 5,
min: 1,
automationRate: 'k-rate',
},
];
}
@@ -519,40 +515,36 @@ class SuperSawOscillatorProcessor extends AudioWorkletProcessor {
// this.port.postMessage({ type: 'onended' });
return false;
}
const output = outputs[0];
const voices = params.voices[0]; // k-rate
for (let i = 0; i < output[0].length; i++) {
const detune = pv(params.detune, i);
const voices = pv(params.voices, i);
const freqspread = pv(params.freqspread, i);
const panspread = pv(params.panspread, i) * 0.5 + 0.5;
const gain1 = Math.sqrt(1 - panspread);
const gain2 = Math.sqrt(panspread);
let gainL = Math.sqrt(1 - panspread);
let gainR = Math.sqrt(panspread);
let freq = pv(params.frequency, i);
// Main detuning
freq = applySemitoneDetuneToFrequency(freq, detune / 100);
const detuner = getDetuner(voices, freqspread);
for (let n = 0; n < voices; n++) {
const isOdd = (n & 1) == 1;
let gainL = gain1;
let gainR = gain2;
// invert right and left gain
if (isOdd) {
gainL = gain2;
gainR = gain1;
}
// Individual voice detuning
const freqVoice = applySemitoneDetuneToFrequency(freq, getUnisonDetune(voices, freqspread, n));
const freqVoice = applySemitoneDetuneToFrequency(freq, detuner(n));
// We must wrap this here because it is passed into sawblep below which
// has domain [0, 1]
const dt = mod(freqVoice / sampleRate, 1);
const dt = ffrac(freqVoice * INVSR);
this.phase[n] = this.phase[n] ?? Math.random();
const v = waveshapes.sawblep(this.phase[n], dt);
output[0][i] = output[0][i] + v * gainL;
output[1][i] = output[1][i] + v * gainR;
output[0][i] += v * gainL;
output[1][i] += v * gainR;
this.phase[n] = wrapPhase(this.phase[n] + dt);
let pn = this.phase[n] + dt;
if (pn >= 1.0) pn -= 1.0;
this.phase[n] = pn;
// invert right and left gain
gainL = gainR;
gainR = gainL;
}
}
return true;
@@ -564,12 +556,16 @@ registerProcessor('supersaw-oscillator', SuperSawOscillatorProcessor);
// Phase Vocoder sourced from https://github.com/olvb/phaze/tree/master?tab=readme-ov-file
const BUFFERED_BLOCK_SIZE = 2048;
const hannCache = new Map();
function genHannWindow(length) {
let win = new Float32Array(length);
for (var i = 0; i < length; i++) {
win[i] = 0.5 * (1 - Math.cos((2 * Math.PI * i) / length));
if (!hannCache.has(length)) {
const win = new Float32Array(length);
for (let i = 0; i < length; i++) {
win[i] = 0.5 * (1 - Math.cos((TWO_PI * i) / length));
}
hannCache.set(length, win);
}
return win;
return hannCache.get(length);
}
class PhaseVocoderProcessor extends OLAProcessor {
@@ -587,11 +583,10 @@ class PhaseVocoderProcessor extends OLAProcessor {
blockSize: BUFFERED_BLOCK_SIZE,
};
super(options);
this.fftSize = this.blockSize;
this.timeCursor = 0;
this.hannWindow = genHannWindow(this.blockSize);
this.fftSize = this.blockSize;
this.invfftSize = 1 / this.fftSize;
this.hannWindow = genHannWindow(this.fftSize);
// prepare FFT and pre-allocate buffers
this.fft = new FFT(this.fftSize);
this.freqComplexBuffer = this.fft.createComplexArray();
@@ -604,52 +599,43 @@ class PhaseVocoderProcessor extends OLAProcessor {
processOLA(inputs, outputs, parameters) {
// no automation, take last value
let pitchFactor = parameters.pitchFactor[parameters.pitchFactor.length - 1];
if (pitchFactor < 0) {
pitchFactor = pitchFactor * 0.25;
}
pitchFactor = Math.max(0, pitchFactor + 1);
for (var i = 0; i < this.nbInputs; i++) {
for (var j = 0; j < inputs[i].length; j++) {
// big assumption here: output is symetric to input
var input = inputs[i][j];
var output = outputs[i][j];
for (let i = 0; i < this.nbInputs; i++) {
for (let j = 0; j < inputs[i].length; j++) {
const input = inputs[i][j];
const output = outputs[i][j];
this.applyHannWindow(input);
this.fft.realTransform(this.freqComplexBuffer, input);
this.computeMagnitudes();
this.findPeaks();
this.shiftPeaks(pitchFactor);
this.fft.completeSpectrum(this.freqComplexBufferShifted);
this.fft.inverseTransform(this.timeComplexBuffer, this.freqComplexBufferShifted);
this.fft.fromComplexArray(this.timeComplexBuffer, output);
this.applyHannWindow(output);
}
}
this.timeCursor += this.hopSize;
}
/** Apply Hann window in-place */
applyHannWindow(input) {
for (var i = 0; i < this.blockSize; i++) {
input[i] = input[i] * this.hannWindow[i] * 1.62;
for (let i = 0; i < this.blockSize; i++) {
input[i] *= this.hannWindow[i] * 1.62;
}
}
/** Compute squared magnitudes for peak finding **/
computeMagnitudes() {
var i = 0,
let i = 0,
j = 0;
while (i < this.magnitudes.length) {
let real = this.freqComplexBuffer[j];
let imag = this.freqComplexBuffer[j + 1];
const real = this.freqComplexBuffer[j];
const imag = this.freqComplexBuffer[j + 1];
// no need to sqrt for peak finding
this.magnitudes[i] = real ** 2 + imag ** 2;
i += 1;
@@ -660,12 +646,10 @@ class PhaseVocoderProcessor extends OLAProcessor {
/** Find peaks in spectrum magnitudes **/
findPeaks() {
this.nbPeaks = 0;
var i = 2;
let end = this.magnitudes.length - 2;
let i = 2;
const end = this.magnitudes.length - 2;
while (i < end) {
let mag = this.magnitudes[i];
const mag = this.magnitudes[i];
if (this.magnitudes[i - 1] >= mag || this.magnitudes[i - 2] >= mag) {
i++;
continue;
@@ -674,7 +658,6 @@ class PhaseVocoderProcessor extends OLAProcessor {
i++;
continue;
}
this.peakIndexes[this.nbPeaks] = i;
this.nbPeaks++;
i += 2;
@@ -685,53 +668,44 @@ class PhaseVocoderProcessor extends OLAProcessor {
shiftPeaks(pitchFactor) {
// zero-fill new spectrum
this.freqComplexBufferShifted.fill(0);
for (var i = 0; i < this.nbPeaks; i++) {
let peakIndex = this.peakIndexes[i];
let peakIndexShifted = Math.round(peakIndex * pitchFactor);
for (let i = 0; i < this.nbPeaks; i++) {
const peakIndex = this.peakIndexes[i];
const peakIndexShifted = fround(peakIndex * pitchFactor);
if (peakIndexShifted > this.magnitudes.length) {
break;
}
// find region of influence
var startIndex = 0;
var endIndex = this.fftSize;
let startIndex = 0;
let endIndex = this.fftSize;
if (i > 0) {
let peakIndexBefore = this.peakIndexes[i - 1];
startIndex = peakIndex - Math.floor((peakIndex - peakIndexBefore) / 2);
startIndex = peakIndex - fround((peakIndex - this.peakIndexes[i - 1]) / 2);
}
if (i < this.nbPeaks - 1) {
let peakIndexAfter = this.peakIndexes[i + 1];
endIndex = peakIndex + Math.ceil((peakIndexAfter - peakIndex) / 2);
endIndex = peakIndex + fceil((this.peakIndexes[i + 1] - peakIndex) / 2);
}
// shift whole region of influence around peak to shifted peak
let startOffset = startIndex - peakIndex;
let endOffset = endIndex - peakIndex;
for (var j = startOffset; j < endOffset; j++) {
let binIndex = peakIndex + j;
let binIndexShifted = peakIndexShifted + j;
const startOffset = startIndex - peakIndex;
const endOffset = endIndex - peakIndex;
const omegaDelta = TWO_PI * this.invfftSize * (peakIndexShifted - peakIndex);
const phaseShiftReal = Math.cos(omegaDelta * this.timeCursor);
const phaseShiftImag = Math.sin(omegaDelta * this.timeCursor);
for (let j = startOffset; j < endOffset; j++) {
const binIndex = peakIndex + j;
const binIndexShifted = peakIndexShifted + j;
if (binIndexShifted >= this.magnitudes.length) {
break;
}
// apply phase correction
let omegaDelta = (2 * Math.PI * (binIndexShifted - binIndex)) / this.fftSize;
let phaseShiftReal = Math.cos(omegaDelta * this.timeCursor);
let phaseShiftImag = Math.sin(omegaDelta * this.timeCursor);
const indexReal = 2 * binIndex;
const indexImag = indexReal + 1;
const valueReal = this.freqComplexBuffer[indexReal];
const valueImag = this.freqComplexBuffer[indexImag];
let indexReal = binIndex * 2;
let indexImag = indexReal + 1;
let valueReal = this.freqComplexBuffer[indexReal];
let valueImag = this.freqComplexBuffer[indexImag];
const valueShiftedReal = valueReal * phaseShiftReal - valueImag * phaseShiftImag;
const valueShiftedImag = valueReal * phaseShiftImag + valueImag * phaseShiftReal;
let valueShiftedReal = valueReal * phaseShiftReal - valueImag * phaseShiftImag;
let valueShiftedImag = valueReal * phaseShiftImag + valueImag * phaseShiftReal;
let indexShiftedReal = binIndexShifted * 2;
let indexShiftedImag = indexShiftedReal + 1;
const indexShiftedReal = 2 * binIndexShifted;
const indexShiftedImag = indexShiftedReal + 1;
this.freqComplexBufferShifted[indexShiftedReal] += valueShiftedReal;
this.freqComplexBufferShifted[indexShiftedImag] += valueShiftedImag;
}
@@ -745,11 +719,10 @@ registerProcessor('phase-vocoder-processor', PhaseVocoderProcessor);
class PulseOscillatorProcessor extends AudioWorkletProcessor {
constructor() {
super();
this.pi = _PI;
this.phi = -this.pi; // phase
this.phi = -PI; // phase
this.Y0 = 0; // feedback memories
this.Y1 = 0;
this.PW = this.pi; // pulse width
this.PW = PI; // pulse width
this.B = 2.3; // feedback coefficient
this.dphif = 0; // filtered phase increment
this.envf = 0; // filtered envelope
@@ -806,11 +779,11 @@ class PulseOscillatorProcessor extends AudioWorkletProcessor {
dphi;
for (let i = 0; i < (output[0].length ?? 0); i++) {
const pw = (1 - clamp(getParamValue(i, params.pulsewidth), -0.99, 0.99)) * this.pi;
const detune = getParamValue(i, params.detune);
const freq = applySemitoneDetuneToFrequency(getParamValue(i, params.frequency), detune / 100);
const pw = (1 - clamp(pv(params.pulsewidth, i), -0.99, 0.99)) * PI;
const detune = pv(params.detune, i);
const freq = applySemitoneDetuneToFrequency(pv(params.frequency, i), detune / 100);
dphi = freq * (this.pi / (sampleRate * 0.5)); // phase increment
dphi = freq * TWO_PI * INVSR; // phase increment
this.dphif += 0.1 * (dphi - this.dphif);
env *= 0.9998; // exponential decay envelope
@@ -822,7 +795,7 @@ class PulseOscillatorProcessor extends AudioWorkletProcessor {
// Waveform generation (half-Tomisawa oscillators)
this.phi += this.dphif; // phase increment
if (this.phi >= this.pi) this.phi -= 2 * this.pi; // phase wrapping
if (this.phi >= PI) this.phi -= TWO_PI; // phase wrapping
// First half-Tomisawa generator
let out0 = Math.cos(this.phi + this.B * this.Y0); // self-phase modulation
@@ -852,24 +825,23 @@ const chyx = {
/*bit reverse*/ br: function (x, size = 8) {
if (size > 32) {
throw new Error('br() Size cannot be greater than 32');
} else {
let result = 0;
for (let idx = 0; idx < size - 0; idx++) {
result += chyx.bitC(x, 2 ** idx, 2 ** (size - (idx + 1)));
}
return result;
}
let result = 0;
for (let idx = 0; idx < size; idx++) {
result |= chyx.bitC(x, 1 << idx, 1 << (size - (idx + 1)));
}
return result;
},
/*sin that loops every 128 "steps", instead of every pi steps*/ sinf: function (x) {
return Math.sin(x / (128 / Math.PI));
return Math.sin((x * PI) / 128);
},
/*cos that loops every 128 "steps", instead of every pi steps*/ cosf: function (x) {
return Math.cos(x / (128 / Math.PI));
return Math.cos((x * PI) / 128);
},
/*tan that loops every 128 "steps", instead of every pi steps*/ tanf: function (x) {
return Math.tan(x / (128 / Math.PI));
return Math.tan((x * PI) / 128);
},
/*converts t into a string composed of it's bits, regex's that*/ regG: function (t, X) {
/*converts t into a string composed of its bits; regexes that*/ regG: function (t, X) {
return X.test(t.toString(2));
},
};
@@ -877,7 +849,7 @@ const chyx = {
// Create shortened Math functions
let mathParams, byteBeatHelperFuncs;
function getByteBeatFunc(codetext) {
if ((mathParams || byteBeatHelperFuncs) == null) {
if (mathParams == null) {
mathParams = Object.getOwnPropertyNames(Math);
byteBeatHelperFuncs = mathParams.map((k) => Math[k]);
const chyxNames = Object.getOwnPropertyNames(chyx);
@@ -910,7 +882,7 @@ class ByteBeatProcessor extends AudioWorkletProcessor {
this.func = getByteBeatFunc(codeText);
};
this.initialOffset = null;
this.initialOffset = 0;
this.t = null;
this.func = null;
}
@@ -957,18 +929,19 @@ class ByteBeatProcessor extends AudioWorkletProcessor {
this.t = params.begin[0] * sampleRate;
}
const output = outputs[0];
const scale = 256 * INVSR;
for (let i = 0; i < output[0].length; i++) {
const detune = getParamValue(i, params.detune);
const freq = applySemitoneDetuneToFrequency(getParamValue(i, params.frequency), detune / 100);
let local_t = (this.t / (sampleRate / 256)) * freq + this.initialOffset;
const detune = pv(params.detune, i);
const freq = applySemitoneDetuneToFrequency(pv(params.frequency, i), detune / 100);
const local_t = scale * freq * this.t + this.initialOffset;
const funcValue = this.func(local_t);
let signal = (funcValue & 255) / 127.5 - 1;
const out = signal * 0.2;
const signal = (funcValue & 255) / 127.5 - 1;
//prevent speaker blowout via clipping if threshold exceeds
const out = clamp(signal * 0.2, -0.4, 0.4);
for (let c = 0; c < output.length; c++) {
//prevent speaker blowout via clipping if threshold exceeds
output[c][i] = clamp(out, -0.4, 0.4);
output[c][i] = out;
}
this.t = this.t + 1;
this.t++;
}
return true; // keep the audio processing going
@@ -977,6 +950,102 @@ class ByteBeatProcessor extends AudioWorkletProcessor {
registerProcessor('byte-beat-processor', ByteBeatProcessor);
class EnvelopeProcessor extends AudioWorkletProcessor {
static get parameterDescriptors() {
return [
{ name: 'begin', defaultValue: 0 },
{ name: 'end', defaultValue: 0 },
{ name: 'attack', defaultValue: 0.005, minValue: 0 },
{ name: 'decay', defaultValue: 0.14, minValue: 0 },
{ name: 'sustain', defaultValue: 0, minValue: 0, maxValue: 1 },
{ name: 'release', defaultValue: 0.1, minValue: 0 },
{ name: 'attackCurve', defaultValue: 0, minValue: -1, maxValue: 1 },
{ name: 'decayCurve', defaultValue: 0, minValue: -1, maxValue: 1 },
{ name: 'releaseCurve', defaultValue: 0, minValue: -1, maxValue: 1 },
{ name: 'peak', defaultValue: 1 },
{ name: 'retrigger', defaultValue: 1, minValue: 0, maxValue: 1 },
];
}
constructor() {
super();
this.val = 0;
this.segIdx = 0;
this.state = 0;
this.beginTime = 0;
this.endTime = 0;
this.attackStart = 0;
}
_warp(phase, curvature, strength = 8) {
if (phase === 0 || phase === 1) return phase; // fast exit
if (curvature > 0) {
// snappier
const exp = 1 + strength * curvature;
return 1 - Math.pow(1 - phase, exp);
} else {
// more calm
const exp = 1 - strength * curvature;
return Math.pow(phase, exp);
}
}
_advance(start, target, time, curvature) {
if (time === 0 || start === target) {
this.val = target;
} else {
// We compute our progress through this section of the envelope in time
// as a `phase` value, which is warped by the curvature, and then used
// to compute the value of the envelope at that time
const phase = Math.min(1, (currentTime - this.beginTime) / time);
const phaseWarped = this._warp(phase, curvature);
this.val = start + (target - start) * phaseWarped;
}
}
process(_inputs, outputs, params) {
const out = outputs[0][0];
if (!out) return true;
const begin = pv(params.begin, 0);
const retrigger = pv(params.retrigger, 0) >= 0.5; // convert to bool
if (begin !== this.beginTime && (this.state === 0 || retrigger)) {
// triggered
this.beginTime = begin;
this.state = 1;
this.endTime = pv(params.end, 0);
this.attackStart = this.val;
}
const susTime = this.endTime - this.beginTime;
for (let i = 0; i < out.length; i++) {
const attack = pv(params.attack, i);
const decay = pv(params.decay, i);
const sustain = pv(params.sustain, i);
const release = pv(params.release, i);
const aCurve = pv(params.attackCurve, i);
const dCurve = pv(params.decayCurve, i);
const rCurve = pv(params.releaseCurve, i);
const peak = pv(params.peak, i);
const states = [
{ time: Number.POSITIVE_INFINITY, start: 0, target: 0 }, // idle
{ time: attack, start: this.attackStart, target: 1, curve: aCurve },
{ time: attack + decay, start: 1, target: sustain, curve: dCurve },
{ time: susTime, start: sustain, target: sustain },
{ time: susTime + release, start: sustain, target: 0, curve: rCurve },
];
let { time, start, target, curve } = states[this.state];
this._advance(start, target, time, curve);
while (currentTime - this.beginTime >= time) {
this.state = (this.state + 1) % states.length;
time = states[this.state].time;
}
out[i] = this.val * peak;
}
return true;
}
}
registerProcessor('envelope-processor', EnvelopeProcessor);
export const WarpMode = Object.freeze({
NONE: 0,
ASYM: 1,
@@ -1056,7 +1125,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
{ name: 'position', defaultValue: 0, min: 0, max: 1 },
{ name: 'warp', defaultValue: 0, min: 0, max: 1 },
{ name: 'warpMode', defaultValue: 0 },
{ name: 'voices', defaultValue: 1, min: 1 },
{ name: 'voices', defaultValue: 1, min: 1, automationRate: 'k-rate' },
{ name: 'panspread', defaultValue: 0.7, min: 0, max: 1 },
{ name: 'phaserand', defaultValue: 0, min: 0, max: 1 },
];
@@ -1067,7 +1136,6 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
this.frameLen = 0;
this.numFrames = 0;
this.phase = [];
this.invSR = 1 / sampleRate;
this.port.onmessage = (e) => {
const { type, payload } = e.data || {};
@@ -1104,7 +1172,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
_toBits(amt, min = 2, max = 12) {
const b = max + (min - max) * amt;
return { b, n: Math.round(Math.pow(2, b)) };
return { b, n: fround(Math.pow(2, b)) };
}
_warpPhase(phase, amt, mode) {
@@ -1130,7 +1198,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
return amt < 0.5 ? this._warpPhase(phase, 1 - 2 * amt, 3) : this._warpPhase(phase, 2 * amt - 1, 2);
}
case WarpMode.SYNC: {
const syncRatio = Math.pow(16, amt * amt);
const syncRatio = Math.pow(16, amt ** 2);
return (phase * syncRatio) % 1;
}
case WarpMode.QUANT: {
@@ -1139,8 +1207,8 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
}
case WarpMode.FOLD: {
const K = 7;
const k = 1 + Math.max(1, Math.round(K * amt));
return Math.abs(frac(k * phase) - 0.5) * 2;
const k = 1 + Math.max(1, fround(K * amt));
return Math.abs(ffrac(k * phase) - 0.5) * 2;
}
case WarpMode.PWM: {
const w = clamp(0.5 + 0.49 * (2 * amt - 1), 0, 1);
@@ -1150,12 +1218,12 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
case WarpMode.ORBIT: {
const depth = 0.5 * amt;
const n = 3;
return frac(phase + depth * Math.sin(2 * Math.PI * n * phase));
return frac(phase + depth * Math.sin(TWO_PI * n * phase));
}
case WarpMode.SPIN: {
const depth = 0.5 * amt;
const { n } = this._toBits(amt, 1, 6);
return frac(phase + depth * Math.sin(2 * Math.PI * n * phase));
return frac(phase + depth * Math.sin(TWO_PI * n * phase));
}
case WarpMode.CHAOS: {
const r = 3.7 + 0.3 * amt;
@@ -1166,7 +1234,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
const isPrime = (n) => {
if (n < 2) return false;
if (n % 2 === 0) return n === 2;
for (let d = 3; d * d <= n; d += 2) if (n % d === 0) return false;
for (let d = 3; d ** 2 <= n; d += 2) if (n % d === 0) return false;
return true;
};
let { n } = this._toBits(amt, 3);
@@ -1175,18 +1243,12 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
}
case WarpMode.BINARY: {
let { b } = this._toBits(amt, 3);
b = Math.round(b);
b = fround(b);
const n = 1 << b;
const idx = ffloor(phase * n);
const ridx = bitReverse(idx, b);
return ridx / n;
}
case WarpMode.MODULAR: {
const { n } = this._toBits(amt);
const depth = 0.5 * amt;
const jump = frac(phase * n) / n;
return frac(phase + depth * jump);
}
case WarpMode.BROWNIAN: {
const disp = 0.25 * amt * brownian(64 * phase, 4);
return frac(phase + disp);
@@ -1209,7 +1271,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
case WarpMode.LOGISTIC: {
let x = phase;
const r = 3.6 + 0.4 * amt;
const iters = 1 + Math.round(2 * amt);
const iters = 1 + fround(2 * amt);
for (let i = 0; i < iters; i++) x = r * x * (1 - x);
return clamp(x, 0, 1);
}
@@ -1222,7 +1284,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
return (y - y0) / (y1 - y0);
}
case WarpMode.FRACTAL: {
const d = 0.5 * Math.sin(2 * Math.PI * phase) * amt;
const d = 0.5 * Math.sin(TWO_PI * phase) * amt;
return frac(phase + d);
}
case WarpMode.FLIP: {
@@ -1269,6 +1331,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
if (outR !== outL) outR.set(outL);
return true;
}
const voices = parameters.voices[0]; // k-rate
for (let i = 0; i < outL.length; i++) {
const detune = pv(parameters.detune, i);
const freqspread = pv(parameters.freqspread, i);
@@ -1278,7 +1341,6 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
const frac = idx - fIdx;
const warpAmount = clamp(pv(parameters.warp, i), 0, 1);
const warpMode = pv(parameters.warpMode, i);
const voices = pv(parameters.voices, i);
const phaseRand = clamp(pv(parameters.phaserand, i), 0, 1);
const panspread = voices > 1 ? clamp(pv(parameters.panspread, i), 0, 1) : 0;
const gain1 = Math.sqrt(0.5 - 0.5 * panspread);
@@ -1286,6 +1348,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
let f = pv(parameters.frequency, i);
f = applySemitoneDetuneToFrequency(f, detune / 100); // overall detune
const normalizer = 1 / Math.sqrt(voices);
const detuner = getDetuner(voices, freqspread);
for (let n = 0; n < voices; n++) {
const isOdd = (n & 1) == 1;
let gainL = gain1;
@@ -1295,8 +1358,8 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
gainL = gain2;
gainR = gain1;
}
const fVoice = applySemitoneDetuneToFrequency(f, getUnisonDetune(voices, freqspread, n)); // voice detune
const dPhase = fVoice * this.invSR;
const fVoice = applySemitoneDetuneToFrequency(f, detuner(n)); // voice detune
const dPhase = fVoice * INVSR;
const level = this._chooseMip(dPhase);
const table = this.tables[level];
@@ -1311,7 +1374,7 @@ class WavetableOscillatorProcessor extends AudioWorkletProcessor {
}
outL[i] += s * gainL * normalizer;
outR[i] += s * gainR * normalizer;
this.phase[n] = wrapPhase(this.phase[n] + dPhase);
this.phase[n] = ffrac(this.phase[n] + dPhase);
}
}
return true;
+2 -1
View File
@@ -3,6 +3,7 @@ import { midiToFreq, noteToMidi } from './util.mjs';
import { registerSound } from './superdough.mjs';
import { getAudioContext } from './audioContext.mjs';
import { buildSamples } from './zzfx_fork.mjs';
import { cleanupNode } from './helpers.mjs';
export const getZZFX = (value, t) => {
let {
@@ -84,7 +85,7 @@ export function registerZZFXSounds() {
(t, value, onended) => {
const { node: o } = getZZFX({ s: wave, ...value }, t);
o.onended = () => {
o.disconnect();
cleanupNode(o);
onended();
};
return {
+20 -132
View File
@@ -41,7 +41,7 @@ importers:
version: 2.2.7
'@vitest/coverage-v8':
specifier: 3.0.4
version: 3.0.4(vitest@3.0.4)
version: 3.0.4(vitest@3.0.4(@types/debug@4.1.12)(@types/node@22.10.10)(@vitest/ui@3.0.4)(jiti@2.4.2)(lightningcss@1.29.1)(terser@5.37.0)(yaml@2.7.0))
'@vitest/ui':
specifier: ^3.0.4
version: 3.0.4(vitest@3.0.4)
@@ -85,29 +85,29 @@ importers:
examples/codemirror-repl:
dependencies:
'@strudel/codemirror':
specifier: 1.2.6
version: 1.2.6(@codemirror/lint@6.8.4)
specifier: workspace:*
version: link:../../packages/codemirror
'@strudel/core':
specifier: 1.2.5
version: 1.2.5
specifier: workspace:*
version: link:../../packages/core
'@strudel/draw':
specifier: 1.2.5
version: 1.2.5
specifier: workspace:*
version: link:../../packages/draw
'@strudel/mini':
specifier: 1.2.5
version: 1.2.5
specifier: workspace:*
version: link:../../packages/mini
'@strudel/soundfonts':
specifier: 1.2.6
version: 1.2.6
specifier: workspace:*
version: link:../../packages/soundfonts
'@strudel/tonal':
specifier: 1.2.5
version: 1.2.5
specifier: workspace:*
version: link:../../packages/tonal
'@strudel/transpiler':
specifier: 1.2.5
version: 1.2.5
specifier: workspace:*
version: link:../../packages/transpiler
'@strudel/webaudio':
specifier: 1.2.6
version: 1.2.6
specifier: workspace:*
version: link:../../packages/webaudio
devDependencies:
vite:
specifier: ^6.0.11
@@ -116,8 +116,8 @@ importers:
examples/headless-repl:
dependencies:
'@strudel/web':
specifier: 1.2.6
version: 1.2.6
specifier: workspace:*
version: link:../../packages/web
devDependencies:
vite:
specifier: ^6.0.11
@@ -2544,33 +2544,6 @@ packages:
'@sinclair/typebox@0.27.8':
resolution: {integrity: sha512-+Fj43pSMwJs4KRrH/938Uf+uAELIgVBmQzg/q1YG10djyfA3TnrU8N8XzqCh/okZdszqBQTZf96idMfE5lnwTA==}
'@strudel/codemirror@1.2.6':
resolution: {integrity: sha512-zjKbnbnOY40dlIAQu1poq28rcngYliLsuDwXXVnJsaXzCZSVuXEOMq91LqY4IGz/2QUOIDGm663ziz6Nb4IXeg==}
'@strudel/core@1.2.5':
resolution: {integrity: sha512-XO6ICbfuGfvaQ4sZmfIFsPDcjFez/+AVpNgJnmks5gtMMQNXpr0reuee61tvMiu2k5QYKzxWgzDl2FF9pJeIgA==}
'@strudel/draw@1.2.5':
resolution: {integrity: sha512-ZI4WPxUsVsxgDoeZMHo6VfFf+S1tsj8ubKBeSLcf6lH29JqPp7Nz6tPmbomOV1fzazZ7+xpkC7z772MdtgWy2g==}
'@strudel/mini@1.2.5':
resolution: {integrity: sha512-GmTWSBt49C3ogBy0hjM3bmf6K12PaJ1JJLsEvQu7j5J+lUd2n7GmLYR1UL6fntY4yVqT8ZwMhfUf6vIgUCTNbw==}
'@strudel/soundfonts@1.2.6':
resolution: {integrity: sha512-F7eBhohkCXCMo8WiufSAhD3JCfL5GTgCh9RlOJVT+1swiFeIss1vUAWJR3WjonB6moL8BiuNpcYOqO6i6cFy4A==}
'@strudel/tonal@1.2.5':
resolution: {integrity: sha512-mX3uW0nWH8Sa52HTLwnxlR5BrejFX77abeaiMbp+kQCMrX9I+XRdf8rEr7gdeInB6f/y2TzTVFpnsNsB5jLdoA==}
'@strudel/transpiler@1.2.5':
resolution: {integrity: sha512-mBZWfQBzknvnIYsjjzR8D67A+uIZ1iZ60U2WoXT21q5luXKz2c95RcTpqdx3oOGpLK9K00lDzcKjhQDJtj4OKw==}
'@strudel/web@1.2.6':
resolution: {integrity: sha512-e6VltuX90zZz8JVe1FtN23DCaXA9p8zGDakp5OuUb5kZ5hC6cySFkkOsHdGC6dJ0EAsZSCKXMihRxgk9GhBwKA==}
'@strudel/webaudio@1.2.6':
resolution: {integrity: sha512-4LnyNvyeAXYNmXQGGw2f0chIkDr9Rbwo+SK6Y0p8C3W8juDiOfKq2ihSVph95yaBBPRYFJ5Kttj1kLknRHYsog==}
'@supabase/auth-js@2.67.3':
resolution: {integrity: sha512-NJDaW8yXs49xMvWVOkSIr8j46jf+tYHV0wHhrwOaLLMZSFO4g6kKAf+MfzQ2RaD06OCUkUHIzctLAxjTgEVpzw==}
@@ -7121,9 +7094,6 @@ packages:
engines: {node: '>=16 || 14 >=14.17'}
hasBin: true
superdough@1.2.6:
resolution: {integrity: sha512-zHEFfG+N4zhxJ9lUDf8p4Oj4sdGGQ5SrOPksdc0cKv5Yn0hzlNlMehEa5TkeIfDCiR27Y4H81ks7S8/CGSByhQ==}
supports-color@7.2.0:
resolution: {integrity: sha512-qpCAvRl9stuOHveKsn7HncJRvv501qIacKzQlO/+Lwxc9+0q2wLyv4Dfvt80/DPn2pqOBsJdDiogXGR9+OvwRw==}
engines: {node: '>=8'}
@@ -7132,9 +7102,6 @@ packages:
resolution: {integrity: sha512-ot0WnXS9fgdkgIcePe6RHNk1WA8+muPa6cSjeR3V8K27q9BB1rTE3R1p7Hv0z1ZyAc8s6Vvv8DIyWf681MAt0w==}
engines: {node: '>= 0.4'}
supradough@1.2.4:
resolution: {integrity: sha512-/v3cL9fq05QCQVwbttLHNZcjyyFFz5wdKvg3j6V6moRXpDlQG89l8dQtUIpQvHsxYI5sXNod9rh5bf+Y4NMGeA==}
tabbable@6.2.0:
resolution: {integrity: sha512-Cat63mxsVJlzYvN51JmVXIgNoUokrIaT2zLclCXjRd8boZ0004U4KCs/sToJ75C6sdlByWxpYnb5Boif1VSFew==}
@@ -10052,79 +10019,6 @@ snapshots:
'@sinclair/typebox@0.27.8': {}
'@strudel/codemirror@1.2.6(@codemirror/lint@6.8.4)':
dependencies:
'@codemirror/autocomplete': 6.18.4
'@codemirror/commands': 6.8.0
'@codemirror/lang-javascript': 6.2.2
'@codemirror/language': 6.10.8
'@codemirror/search': 6.5.8
'@codemirror/state': 6.5.1
'@codemirror/view': 6.36.2
'@lezer/highlight': 1.2.1
'@nanostores/persistent': 0.10.2(nanostores@0.11.3)
'@replit/codemirror-emacs': 6.1.0(@codemirror/autocomplete@6.18.4)(@codemirror/commands@6.8.0)(@codemirror/search@6.5.8)(@codemirror/state@6.5.1)(@codemirror/view@6.36.2)
'@replit/codemirror-vim': 6.3.0(@codemirror/commands@6.8.0)(@codemirror/language@6.10.8)(@codemirror/search@6.5.8)(@codemirror/state@6.5.1)(@codemirror/view@6.36.2)
'@replit/codemirror-vscode-keymap': 6.0.2(@codemirror/autocomplete@6.18.4)(@codemirror/commands@6.8.0)(@codemirror/language@6.10.8)(@codemirror/lint@6.8.4)(@codemirror/search@6.5.8)(@codemirror/state@6.5.1)(@codemirror/view@6.36.2)
'@strudel/core': 1.2.5
'@strudel/draw': 1.2.5
'@strudel/tonal': 1.2.5
'@strudel/transpiler': 1.2.5
'@tonaljs/tonal': 4.10.0
nanostores: 0.11.3
superdough: 1.2.6
transitivePeerDependencies:
- '@codemirror/lint'
'@strudel/core@1.2.5':
dependencies:
fraction.js: 5.2.1
'@strudel/draw@1.2.5':
dependencies:
'@strudel/core': 1.2.5
'@strudel/mini@1.2.5':
dependencies:
'@strudel/core': 1.2.5
'@strudel/soundfonts@1.2.6':
dependencies:
'@strudel/core': 1.2.5
'@strudel/webaudio': 1.2.6
sfumato: 0.1.2
soundfont2: 0.5.0
'@strudel/tonal@1.2.5':
dependencies:
'@strudel/core': 1.2.5
'@tonaljs/tonal': 4.10.0
chord-voicings: 0.0.1
webmidi: 3.1.12
'@strudel/transpiler@1.2.5':
dependencies:
'@strudel/core': 1.2.5
'@strudel/mini': 1.2.5
acorn: 8.14.0
escodegen: 2.1.0
estree-walker: 3.0.3
'@strudel/web@1.2.6':
dependencies:
'@strudel/core': 1.2.5
'@strudel/mini': 1.2.5
'@strudel/tonal': 1.2.5
'@strudel/transpiler': 1.2.5
'@strudel/webaudio': 1.2.6
'@strudel/webaudio@1.2.6':
dependencies:
'@strudel/core': 1.2.5
'@strudel/draw': 1.2.5
superdough: 1.2.6
supradough: 1.2.4
'@supabase/auth-js@2.67.3':
dependencies:
'@supabase/node-fetch': 2.6.15
@@ -10660,7 +10554,7 @@ snapshots:
transitivePeerDependencies:
- supports-color
'@vitest/coverage-v8@3.0.4(vitest@3.0.4)':
'@vitest/coverage-v8@3.0.4(vitest@3.0.4(@types/debug@4.1.12)(@types/node@22.10.10)(@vitest/ui@3.0.4)(jiti@2.4.2)(lightningcss@1.29.1)(terser@5.37.0)(yaml@2.7.0))':
dependencies:
'@ampproject/remapping': 2.3.0
'@bcoe/v8-coverage': 1.0.2
@@ -15771,18 +15665,12 @@ snapshots:
pirates: 4.0.6
ts-interface-checker: 0.1.13
superdough@1.2.6:
dependencies:
nanostores: 0.11.3
supports-color@7.2.0:
dependencies:
has-flag: 4.0.0
supports-preserve-symlinks-flag@1.0.0: {}
supradough@1.2.4: {}
tabbable@6.2.0: {}
tailwindcss@3.4.17:
+244
View File
@@ -7219,6 +7219,112 @@ exports[`runs examples > example "panchor" example index 0 1`] = `
]
`;
exports[`runs examples > example "partials" example index 0 1`] = `
[
"[ 0/1 → 1/16 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 1/16 → 1/8 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 1/8 → 3/16 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 3/16 → 1/4 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 1/4 → 5/16 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 5/16 → 3/8 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 3/8 → 7/16 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 7/16 → 1/2 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 1/2 → 9/16 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 9/16 → 5/8 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 5/8 → 11/16 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 11/16 → 3/4 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 3/4 → 13/16 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 13/16 → 7/8 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 7/8 → 15/16 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 15/16 → 1/1 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 1/1 → 17/16 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 17/16 → 9/8 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 9/8 → 19/16 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 19/16 → 5/4 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 5/4 → 21/16 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 21/16 → 11/8 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 11/8 → 23/16 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 23/16 → 3/2 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 3/2 → 25/16 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 25/16 → 13/8 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 13/8 → 27/16 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 27/16 → 7/4 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 7/4 → 29/16 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 29/16 → 15/8 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 15/8 → 31/16 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 31/16 → 2/1 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 2/1 → 33/16 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 33/16 → 17/8 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 17/8 → 35/16 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 35/16 → 9/4 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 9/4 → 37/16 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 37/16 → 19/8 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 19/8 → 39/16 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 39/16 → 5/2 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 5/2 → 41/16 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 41/16 → 21/8 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 21/8 → 43/16 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 43/16 → 11/4 | s:user note:E4 partials:[1 0 1 0 0 1] ]",
"[ 11/4 → 45/16 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 45/16 → 23/8 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 23/8 → 47/16 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 47/16 → 3/1 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 3/1 → 49/16 | s:user note:B3 partials:[1 0 1 0 0 1] ]",
"[ 49/16 → 25/8 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 25/8 → 51/16 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 51/16 → 13/4 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 13/4 → 53/16 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 53/16 → 27/8 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
"[ 27/8 → 55/16 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 55/16 → 7/2 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 7/2 → 57/16 | s:user note:D4 partials:[1 0 1 0 0 1] ]",
"[ 57/16 → 29/8 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 29/8 → 59/16 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 59/16 → 15/4 | s:user note:A4 partials:[1 0 1 0 0 1] ]",
"[ 15/4 → 61/16 | s:user note:G#4 partials:[1 0 1 0 0 1] ]",
"[ 61/16 → 31/8 | s:user note:A3 partials:[1 0 1 0 0 1] ]",
"[ 31/8 → 63/16 | s:user note:F#4 partials:[1 0 1 0 0 1] ]",
"[ 63/16 → 4/1 | s:user note:C#4 partials:[1 0 1 0 0 1] ]",
]
`;
exports[`runs examples > example "partials" example index 1 1`] = `
[
"[ 0/1 → 1/8 | s:saw note:G#3 partials:[1] ]",
"[ 1/8 → 1/4 | s:saw note:A#4 partials:[1 0 1 1 0 0 0 0] ]",
"[ 1/4 → 3/8 | s:saw note:D#4 partials:[1 0 1 1 1 1 1] ]",
"[ 3/8 → 1/2 | s:saw note:D#4 partials:[1 1 0 0 1 1 1] ]",
"[ 1/2 → 5/8 | s:saw note:C#4 partials:[1 0 0 0 0 1 1] ]",
"[ 5/8 → 3/4 | s:saw note:A#3 partials:[1 0 0 0 1 1] ]",
"[ 3/4 → 7/8 | s:saw note:B3 partials:[1 1 0 0 1 1] ]",
"[ 7/8 → 1/1 | s:saw note:D#4 partials:[1 1 0 0 1 1 0] ]",
"[ 1/1 → 9/8 | s:saw note:F#4 partials:[1 0 0 0 0 1 1 0] ]",
"[ 9/8 → 5/4 | s:saw note:A#4 partials:[1 0 1 0 1 1 0 1] ]",
"[ 5/4 → 11/8 | s:saw note:A#4 partials:[1 0 1 1 1 0 1 1] ]",
"[ 11/8 → 3/2 | s:saw note:B3 partials:[1 0 1 1 1 1] ]",
"[ 3/2 → 13/8 | s:saw note:G#4 partials:[1 0 0 1 1 1 0 0] ]",
"[ 13/8 → 7/4 | s:saw note:E4 partials:[1 0 0 0 0 0 0 0] ]",
"[ 7/4 → 15/8 | s:saw note:B3 partials:[1 1 0 1 0 1] ]",
"[ 15/8 → 2/1 | s:saw note:G#4 partials:[1 0 0 1 1 0 0 1] ]",
"[ 2/1 → 17/8 | s:saw note:D#5 partials:[1 1 1 1 0 1 1 0] ]",
"[ 17/8 → 9/4 | s:saw note:C#5 partials:[1 1 1 0 1 0 0 0] ]",
"[ 9/4 → 19/8 | s:saw note:D#4 partials:[1 0 1 1 0 0 1] ]",
"[ 19/8 → 5/2 | s:saw note:C#5 partials:[1 1 0 1 0 1 1 1] ]",
"[ 5/2 → 21/8 | s:saw note:E4 partials:[1 1 1 0 1 1 0] ]",
"[ 21/8 → 11/4 | s:saw note:A#3 partials:[1 0 1 0 1 0] ]",
"[ 11/4 → 23/8 | s:saw note:G#4 partials:[1 0 1 0 0 0 1 1] ]",
"[ 23/8 → 3/1 | s:saw note:G#3 partials:[1 0 1] ]",
"[ 3/1 → 25/8 | s:saw note:B3 partials:[1 1 1 0 0 0] ]",
"[ 25/8 → 13/4 | s:saw note:D#4 partials:[1 0 1 1 0 0 0] ]",
"[ 13/4 → 27/8 | s:saw note:D#5 partials:[1 1 1 1 1 1 1 1] ]",
"[ 27/8 → 7/2 | s:saw note:D#4 partials:[1 1 0 1 0 0 1] ]",
"[ 7/2 → 29/8 | s:saw note:D#4 partials:[1 1 0 1 0 0 1] ]",
"[ 29/8 → 15/4 | s:saw note:D#5 partials:[1 1 1 1 0 0 0 1] ]",
"[ 15/4 → 31/8 | s:saw note:B4 partials:[1 1 0 1 0 0 0 0] ]",
"[ 31/8 → 4/1 | s:saw note:A#4 partials:[1 0 1 1 1 1 0 1] ]",
]
`;
exports[`runs examples > example "pattack" example index 0 1`] = `
[
"[ 0/1 → 1/2 | note:c pattack:0 ]",
@@ -7472,6 +7578,75 @@ exports[`runs examples > example "phasersweep" example index 0 1`] = `
]
`;
exports[`runs examples > example "phases" example index 0 1`] = `
[
"[ 0/1 → 1/8 | s:saw note:G#1 partials:{partials:1} ]",
"[ 0/1 → 1/8 | s:saw note:G#1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 1/8 → 1/4 | s:saw note:A#2 partials:{partials:1} ]",
"[ 1/8 → 1/4 | s:saw note:A#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 1/4 → 3/8 | s:saw note:D#2 partials:{partials:1} ]",
"[ 1/4 → 3/8 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 3/8 → 1/2 | s:saw note:D#2 partials:{partials:1} ]",
"[ 3/8 → 1/2 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 1/2 → 5/8 | s:saw note:C#2 partials:{partials:1} ]",
"[ 1/2 → 5/8 | s:saw note:C#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 5/8 → 3/4 | s:saw note:A#1 partials:{partials:1} ]",
"[ 5/8 → 3/4 | s:saw note:A#1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 3/4 → 7/8 | s:saw note:B1 partials:{partials:1} ]",
"[ 3/4 → 7/8 | s:saw note:B1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 7/8 → 1/1 | s:saw note:D#2 partials:{partials:1} ]",
"[ 7/8 → 1/1 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 1/1 → 9/8 | s:saw note:F#2 partials:{partials:1} ]",
"[ 1/1 → 9/8 | s:saw note:F#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 9/8 → 5/4 | s:saw note:A#2 partials:{partials:1} ]",
"[ 9/8 → 5/4 | s:saw note:A#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 5/4 → 11/8 | s:saw note:A#2 partials:{partials:1} ]",
"[ 5/4 → 11/8 | s:saw note:A#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 11/8 → 3/2 | s:saw note:B1 partials:{partials:1} ]",
"[ 11/8 → 3/2 | s:saw note:B1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 3/2 → 13/8 | s:saw note:G#2 partials:{partials:1} ]",
"[ 3/2 → 13/8 | s:saw note:G#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 13/8 → 7/4 | s:saw note:E2 partials:{partials:1} ]",
"[ 13/8 → 7/4 | s:saw note:E2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 7/4 → 15/8 | s:saw note:B1 partials:{partials:1} ]",
"[ 7/4 → 15/8 | s:saw note:B1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 15/8 → 2/1 | s:saw note:G#2 partials:{partials:1} ]",
"[ 15/8 → 2/1 | s:saw note:G#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 2/1 → 17/8 | s:saw note:D#3 partials:{partials:1} ]",
"[ 2/1 → 17/8 | s:saw note:D#3 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 17/8 → 9/4 | s:saw note:C#3 partials:{partials:1} ]",
"[ 17/8 → 9/4 | s:saw note:C#3 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 9/4 → 19/8 | s:saw note:D#2 partials:{partials:1} ]",
"[ 9/4 → 19/8 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 19/8 → 5/2 | s:saw note:C#3 partials:{partials:1} ]",
"[ 19/8 → 5/2 | s:saw note:C#3 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 5/2 → 21/8 | s:saw note:E2 partials:{partials:1} ]",
"[ 5/2 → 21/8 | s:saw note:E2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 21/8 → 11/4 | s:saw note:A#1 partials:{partials:1} ]",
"[ 21/8 → 11/4 | s:saw note:A#1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 11/4 → 23/8 | s:saw note:G#2 partials:{partials:1} ]",
"[ 11/4 → 23/8 | s:saw note:G#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 23/8 → 3/1 | s:saw note:G#1 partials:{partials:1} ]",
"[ 23/8 → 3/1 | s:saw note:G#1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 3/1 → 25/8 | s:saw note:B1 partials:{partials:1} ]",
"[ 3/1 → 25/8 | s:saw note:B1 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 25/8 → 13/4 | s:saw note:D#2 partials:{partials:1} ]",
"[ 25/8 → 13/4 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 13/4 → 27/8 | s:saw note:D#3 partials:{partials:1} ]",
"[ 13/4 → 27/8 | s:saw note:D#3 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 27/8 → 7/2 | s:saw note:D#2 partials:{partials:1} ]",
"[ 27/8 → 7/2 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 7/2 → 29/8 | s:saw note:D#2 partials:{partials:1} ]",
"[ 7/2 → 29/8 | s:saw note:D#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 29/8 → 15/4 | s:saw note:D#3 partials:{partials:1} ]",
"[ 29/8 → 15/4 | s:saw note:D#3 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 15/4 → 31/8 | s:saw note:B2 partials:{partials:1} ]",
"[ 15/4 → 31/8 | s:saw note:B2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
"[ 31/8 → 4/1 | s:saw note:A#2 partials:{partials:1} ]",
"[ 31/8 → 4/1 | s:saw note:A#2 partials:{partials:1} phases:[0.5 0.5 0.5] ]",
]
`;
exports[`runs examples > example "pianoroll" example index 0 1`] = `
[
"[ 0/1 → 1/8 | note:c2 s:sawtooth lpenv:4 cutoff:300 ]",
@@ -8193,6 +8368,75 @@ exports[`runs examples > example "rand" example index 0 1`] = `
]
`;
exports[`runs examples > example "randL" example index 0 1`] = `
[
"[ 0/1 → 1/16 | s:saw note:F1 partials:[0 0 0 0 0 0 0 0] ]",
"[ 1/16 → 1/8 | s:saw note:Bb2 partials:[0.8426077850162983 0.0886186733841896 0.9342893119901419 0.06848422810435295 0.6248505394905806 0.5372848063707352 0.8283301629126072 0.7969411127269268] ]",
"[ 1/8 → 3/16 | s:saw note:G2 partials:[0.6852155700325966 0.17723728902637959 0.8521428182721138 0.5022399611771107 0.9780306946486235 0.3186125475913286 0.1851645242422819 0.8495976086705923] ]",
"[ 3/16 → 1/4 | s:saw note:Ab1 partials:[0.20066574029624462 0.17195586115121841 0.2159541044384241 0.17005567252635956 0.6841662060469389 0.07906394638121128 0.004815371707081795 0.027107616886496544] ]",
"[ 1/4 → 5/16 | s:saw note:C2 partials:[0.36975969187915325 0.18273563869297504 0.012781793251633644 0.5423613861203194 0.12467948533594608 0.7188410349190235 0.856887087225914 0.8818203993141651] ]",
"[ 5/16 → 3/8 | s:saw note:Eb2 partials:[0.5675661638379097 0.15932588279247284 0.31376867927610874 0.32359412126243114 0.3281281068921089 0.011714376509189606 0.4433113746345043 0.68459103256464] ]",
"[ 3/8 → 7/16 | s:saw note:C2 partials:[0.40139251574873924 0.15799915604293346 0.9604704882949591 0.03873417526483536 0.4157217647880316 0.27756719291210175 0.8800551909953356 0.5692523363977671] ]",
"[ 7/16 → 1/2 | s:saw note:Bb1 partials:[0.3015887886285782 0.22311350144445896 0.47645803540945053 0.001545613631606102 0.53841289319098 0.330710094422102 0.2747743520885706 0.9471044968813658] ]",
"[ 1/2 → 9/16 | s:saw note:Bb1 partials:[0.2604806162416935 0.3654713351279497 0.9900747090578079 0.22572625242173672 0.9328999016433954 0.5273839123547077 0.7047769222408533 0.7311522178351879] ]",
"[ 9/16 → 5/8 | s:saw note:G1 partials:[0.16399178467690945 0.9559339117258787 0.21830322034657001 0.4903192054480314 0.2504696864634752 0.7302105724811554 0.6580934692174196 0.9855979979038239] ]",
"[ 5/8 → 11/16 | s:saw note:G1 partials:[0.1356358677148819 0.5403102282434702 0.07321739941835403 0.9646544624119997 0.7707359045743942 0.46888123638927937 0.9489036612212658 0.366748945787549] ]",
"[ 11/16 → 3/4 | s:saw note:C2 partials:[0.408811716362834 0.9613851886242628 0.7683626655489206 0.5862949229776859 0.9568102769553661 0.7154356613755226 0.6283384170383215 0.2193678840994835] ]",
"[ 3/4 → 13/16 | s:saw note:Ab1 partials:[0.19582648016512394 0.0024610888212919235 0.08272589556872845 0.09592138417065144 0.9678201265633106 0.3249557167291641 0.9463537875562906 0.20766610652208328] ]",
"[ 13/16 → 7/8 | s:saw note:Ab2 partials:[0.7516226731240749 0.15610851533710957 0.9039078876376152 0.8602268267422915 0.928601048886776 0.4479671400040388 0.5080656576901674 0.562442347407341] ]",
"[ 7/8 → 15/16 | s:saw note:C2 partials:[0.3976310808211565 0.13476407527923584 0.963376859202981 0.6579397786408663 0.5203975513577461 0.865439185872674 0.5583905670791864 0.2736878804862499] ]",
"[ 15/16 → 1/1 | s:saw note:G2 partials:[0.7029578909277916 0.6351367030292749 0.26143294386565685 0.6411824338138103 0.5676082745194435 0.4803342465311289 0.5140306428074837 0.9477859679609537] ]",
"[ 1/1 → 17/16 | s:saw note:Eb2 partials:[0.5195421651005745 0.9349692352116108 0.1718774326145649 0.9601866770535707 0.2802200373262167 0.8732441551983356 0.01810968853533268 0.42737805284559727] ]",
"[ 17/16 → 9/8 | s:saw note:Eb2 partials:[0.5486328881233931 0.7088070474565029 0.07877279818058014 0.9422610364854336 0.7696988433599472 0.8289324026554823 0.5925844628363848 0.3920764606446028] ]",
"[ 9/8 → 19/16 | s:saw note:G2 partials:[0.6724895145744085 0.21410975232720375 0.5229047331959009 0.20957534946501255 0.7402758821845055 0.2681974694132805 0.4059371296316385 0.9422509074211121] ]",
"[ 19/16 → 5/4 | s:saw note:F1 partials:[0.08174665085971355 0.2762963864952326 0.5428560189902782 0.29452037811279297 0.17946280725300312 0.366960596293211 0.26327736489474773 0.5002023074775934] ]",
"[ 5/4 → 21/16 | s:saw note:G2 partials:[0.7287282031029463 0.9341024849563837 0.5098182689398527 0.5608645845204592 0.6812942810356617 0.5015129633247852 0.4602120481431484 0.927369873970747] ]",
"[ 21/16 → 11/8 | s:saw note:F1 partials:[0.08104278706014156 0.5200720727443695 0.5363391060382128 0.9824271816760302 0.10652091167867184 0.23473932035267353 0.7656102329492569 0.4850195776671171] ]",
"[ 11/8 → 23/16 | s:saw note:Ab1 partials:[0.18280375190079212 0.40527783520519733 0.30504362285137177 0.7622128054499626 0.842598931863904 0.053796686232089996 0.5124214049428701 0.9178454764187336] ]",
"[ 23/16 → 3/2 | s:saw note:Eb2 partials:[0.5081270858645439 0.1421387754380703 0.8852288406342268 0.9066353775560856 0.7700740322470665 0.35437702015042305 0.20032598450779915 0.963155921548605] ]",
"[ 3/2 → 25/16 | s:saw note:F2 partials:[0.6084080748260021 0.4424846563488245 0.755185678601265 0.04328125901520252 0.04244415462017059 0.3994515985250473 0.787989066913724 0.3180440980941057] ]",
"[ 25/16 → 13/8 | s:saw note:Ab1 partials:[0.17092766426503658 0.7808954659849405 0.8234915658831596 0.8643151633441448 0.9781719036400318 0.5102015696465969 0.018259897828102112 0.25844234600663185] ]",
"[ 13/8 → 27/16 | s:saw note:Db2 partials:[0.49675471149384975 0.2965749856084585 0.09848833456635475 0.19172007404267788 0.22677889838814735 0.9841996673494577 0.11156083643436432 0.6079028844833374] ]",
"[ 27/16 → 7/4 | s:saw note:Bb1 partials:[0.29589061066508293 0.13011129200458527 0.8021425940096378 0.38040103763341904 0.33274981752038 0.29745868407189846 0.9898250997066498 0.743482418358326] ]",
"[ 7/4 → 29/16 | s:saw note:Ab1 partials:[0.20473789609968662 0.7480021081864834 0.30757393687963486 0.5827204789966345 0.22094514779746532 0.6370698790997267 0.16573002003133297 0.0638319905847311] ]",
"[ 29/16 → 15/8 | s:saw note:Db2 partials:[0.4695742893964052 0.6690364442765713 0.6216684486716986 0.41342394426465034 0.9508822970092297 0.8403679896146059 0.91759910620749 0.6591395419090986] ]",
"[ 15/8 → 31/16 | s:saw note:F2 partials:[0.5945571791380644 0.3962489552795887 0.563431927934289 0.4742323160171509 0.4185752831399441 0.9703940469771624 0.5282467231154442 0.6896266285330057] ]",
"[ 31/16 → 2/1 | s:saw note:Bb2 partials:[0.8672592639923096 0.3438429981470108 0.9795673936605453 0.46547594852745533 0.9770395755767822 0.36851615831255913 0.7725539114326239 0.876962523907423] ]",
"[ 2/1 → 33/16 | s:saw note:C3 partials:[0.9595271199941635 0.5427457969635725 0.45864437520504 0.8057199101895094 0.18388565629720688 0.17221237532794476 0.8838487900793552 0.4976818822324276] ]",
"[ 33/16 → 17/8 | s:saw note:Bb1 partials:[0.3324784208089113 0.6005446836352348 0.1564352661371231 0.765217661857605 0.12899602390825748 0.20880493707954884 0.9156261626631021 0.5550615340471268] ]",
"[ 17/8 → 35/16 | s:saw note:Bb2 partials:[0.9033902939409018 0.22919894196093082 0.8388008493930101 0.9108077362179756 0.32246968522667885 0.16122018359601498 0.31932324543595314 0.18524732999503613] ]",
"[ 35/16 → 9/4 | s:saw note:F1 partials:[0.037000780925154686 0.30360451713204384 0.7516817897558212 0.17065968923270702 0.24669718369841576 0.978821286931634 0.9620356522500515 0.12417634017765522] ]",
"[ 9/4 → 37/16 | s:saw note:C2 partials:[0.34548251144587994 0.30419893004000187 0.10205957666039467 0.9906709585338831 0.3156223688274622 0.3745057098567486 0.7668170686811209 0.9379972033202648] ]",
"[ 37/16 → 19/8 | s:saw note:F2 partials:[0.6649543270468712 0.41613837145268917 0.9078915324062109 0.2232209537178278 0.2918607946485281 0.4931973237544298 0.7035325299948454 0.29280414804816246] ]",
"[ 19/8 → 39/16 | s:saw note:Bb2 partials:[0.8365066405385733 0.5369812995195389 0.2263860274106264 0.21759207546710968 0.2172116208821535 0.09454222768545151 0.8075542915612459 0.9017798062413931] ]",
"[ 39/16 → 5/2 | s:saw note:G1 partials:[0.14231421053409576 0.6801821701228619 0.7958894111216068 0.9494249671697617 0.179213372990489 0.22531690262258053 0.7458387855440378 0.3595987129956484] ]",
"[ 5/2 → 41/16 | s:saw note:Db2 partials:[0.45861607417464256 0.6807645913213491 0.07009582966566086 0.1450389064848423 0.2579921595752239 0.612881500273943 0.5503941811621189 0.7027011960744858] ]",
"[ 41/16 → 21/8 | s:saw note:F2 partials:[0.6068673655390739 0.8489279896020889 0.027898555621504784 0.90520747192204 0.18605150654911995 0.30939464271068573 0.16843407973647118 0.5127317048609257] ]",
"[ 21/8 → 43/16 | s:saw note:G1 partials:[0.16019348427653313 0.47758268006145954 0.9749126061797142 0.8025561925023794 0.3600110989063978 0.324309878051281 0.5655391272157431 0.13364790193736553] ]",
"[ 43/16 → 11/4 | s:saw note:Eb2 partials:[0.538035349920392 0.4103843830525875 0.6443832442164421 0.7532152868807316 0.32128027081489563 0.29064710810780525 0.5972099266946316 0.8252892810851336] ]",
"[ 11/4 → 45/16 | s:saw note:F2 partials:[0.6332327704876661 0.7342763151973486 0.16935866326093674 0.4754706546664238 0.528122790157795 0.21934260986745358 0.7476693484932184 0.2995396424084902] ]",
"[ 45/16 → 23/8 | s:saw note:Bb2 partials:[0.8912940509617329 0.5256196465343237 0.25639201514422894 0.46860250271856785 0.08611978217959404 0.6175916157662868 0.990638293325901 0.11189854890108109] ]",
"[ 23/8 → 47/16 | s:saw note:F1 partials:[0.01625417172908783 0.28409438766539097 0.3075305689126253 0.40343056432902813 0.5556836389005184 0.6926821582019329 0.5635769125074148 0.017873913049697876] ]",
"[ 47/16 → 3/1 | s:saw note:Bb1 partials:[0.2830589488148689 0.3613663297146559 0.6216250211000443 0.6083405166864395 0.27202711440622807 0.771099541336298 0.3156145606189966 0.736228458583355] ]",
"[ 3/1 → 49/16 | s:saw note:Ab1 partials:[0.21728911064565182 0.7605195846408606 0.11240843310952187 0.4372697602957487 0.15630115941166878 0.1653979979455471 0.5303416550159454 0.07218753732740879] ]",
"[ 49/16 → 25/8 | s:saw note:F1 partials:[0.012518879026174545 0.6565517522394657 0.783835593611002 0.2481316588819027 0.27786846831440926 0.6153149046003819 0.39914070069789886 0.2175555843859911] ]",
"[ 25/8 → 51/16 | s:saw note:C2 partials:[0.34324387833476067 0.14098095521330833 0.012934491038322449 0.827436288818717 0.5283997394144535 0.8942463714629412 0.4924008697271347 0.9298017006367445] ]",
"[ 51/16 → 13/4 | s:saw note:Bb2 partials:[0.9057559575885534 0.5731389932334423 0.06561482697725296 0.02156665176153183 0.4685337021946907 0.000788738951086998 0.6995994579046965 0.9893404543399811] ]",
"[ 13/4 → 53/16 | s:saw note:C3 partials:[0.9923650715500116 0.7797339502722025 0.1992435697466135 0.9005183521658182 0.718992218375206 0.23745290748775005 0.28872333094477654 0.35448253713548183] ]",
"[ 53/16 → 27/8 | s:saw note:Bb1 partials:[0.3235324025154114 0.5165992900729179 0.6231792941689491 0.8034896682947874 0.6663950439542532 0.4207208137959242 0.9748435858637094 0.27676148526370525] ]",
"[ 27/8 → 55/16 | s:saw note:C2 partials:[0.40869180113077164 0.4018078800290823 0.34696186147630215 0.9572948440909386 0.400035472586751 0.3531211093068123 0.7240961641073227 0.8125612027943134] ]",
"[ 55/16 → 7/2 | s:saw note:Ab2 partials:[0.775677714496851 0.0502743236720562 0.3246541116386652 0.503994770348072 0.8252716399729252 0.89872563816607 0.060319963842630386 0.25497629307210445] ]",
"[ 7/2 → 57/16 | s:saw note:C2 partials:[0.40994881466031075 0.6455810181796551 0.35704658553004265 0.2732649203389883 0.31587288342416286 0.23243548162281513 0.22569947130978107 0.17241661623120308] ]",
"[ 57/16 → 29/8 | s:saw note:Ab2 partials:[0.8133465722203255 0.8327706772834063 0.32914630882442 0.23131784796714783 0.7526696771383286 0.1361286472529173 0.11441296897828579 0.36366880126297474] ]",
"[ 29/8 → 59/16 | s:saw note:C3 partials:[0.9391485787928104 0.3380728308111429 0.7723016366362572 0.998674126341939 0.7193406894803047 0.6963680125772953 0.9260678570717573 0.7829763628542423] ]",
"[ 59/16 → 15/4 | s:saw note:C3 partials:[0.9731374885886908 0.0494034755975008 0.990720022469759 0.9819309785962105 0.22877203114330769 0.7265191469341516 0.4922411348670721 0.7549834884703159] ]",
"[ 15/4 → 61/16 | s:saw note:Ab2 partials:[0.8121673222631216 0.25548945367336273 0.5759696904569864 0.6668333616107702 0.9233786761760712 0.11143362522125244 0.9734930321574211 0.369325939565897] ]",
"[ 61/16 → 31/8 | s:saw note:G1 partials:[0.1008925698697567 0.7558664139360189 0.1523460578173399 0.6523381881415844 0.9690635204315186 0.7343240566551685 0.9544064309448004 0.9150135722011328] ]",
"[ 31/8 → 63/16 | s:saw note:G2 partials:[0.7361665386706591 0.7657648548483849 0.21474426984786987 0.8228576295077801 0.5647660344839096 0.08148551359772682 0.9714624118059874 0.13992334716022015] ]",
"[ 63/16 → 4/1 | s:saw note:Bb1 partials:[0.3056422360241413 0.8881660811603069 0.7683485243469477 0.08641545102000237 0.5427133180201054 0.20803124643862247 0.5347504671663046 0.5977730695158243] ]",
]
`;
exports[`runs examples > example "range" example index 0 1`] = `
[
"[ 0/1 → 1/8 | s:hh cutoff:2250 ]",
+73 -7
View File
@@ -48,28 +48,94 @@ You can also use the `crackle` type to play some subtle noise crackles. You can
### Additive Synthesis
To tame the harsh sound of the basic waveforms, we can set the `n` control to limit the overtones of the waveform:
Periodic waveforms are composed of several [harmonics](https://en.wikipedia.org/wiki/Harmonic) above a fundamental frequency, lying at integer multiples. These overtones combine to give a sound its unique timbral quality.
For the basic waveforms, we offer you control over these harmonics with the `partials` and `phases` functions.
#### Partials
`partials` refers to the magnitude of each harmonic relative to the fundamental frequency. They can thus be used to spectrally filter these waveforms and tame some of their harshness:
<MiniRepl
client:idle
tune={`note("c2 <eb2 <g2 g1>>".fast(2))
.sound("sawtooth")
.n("<32 16 8 4>")
.partials([1, 1, "<1 0>", "<1 0>", "<1 0>", "<1 0>", "<1 0>"])
._scope()`}
/>
When the `n` control is used on a basic waveform, it defines the number of harmonic partials the sound is getting.
You can also set `n` directly in mini notation with `sound`:
`partials` can also be used to construct _new_ waveforms not present in our basic set with the 'user' sound source:
<MiniRepl
client:idle
tune={`note("c2 <eb2 <g2 g1>>".fast(2))
.sound("sawtooth:<32 16 8 4>")
.sound("user")
.partials([1, 0, 0.3, 0, 0.1, 0, 0, 0.3])
._scope()`}
/>
Note for tidal users: `n` in tidal is synonymous to `note` for synths only.
In strudel, this is not the case, where `n` will always change timbre, be it though different samples or different waveforms.
We may algorithmically construct lists of magnitudes with Javascript code like:
<MiniRepl
client:idle
tune={`const numHarmonics = 22;
note("c2 <eb2 <g2 g1>>".fast(2))
.sound("saw")
.partials(new Array(numHarmonics).fill(1))
._scope()`}
/>
which acts as a spectral filter. Or:
<MiniRepl
client:idle
tune={`note("c2 <eb2 <g2 g1>>").fast(2)
.sound("user")
.partials(new Array(50).fill(0)
.map((_, idx) => ((-1) ** (idx + 1)) / (idx + 1))
)
._scope()`}
/>
which recovers a familiar waveform.
`partials` is also compatible with pattern functions designed to produce lists, like `randL` or `binaryL`:
<MiniRepl
client:idle
tune={`note("c2 <eb2 <g2 g1>>").fast(2)
.sound("user")
.partials(randL(10))
._scope()`}
/>
and with lists _of_ patterns:
<MiniRepl
client:idle
tune={`note("c2 <eb2 <g2 g1>>".fast(4))
.sound("user")
.partials([1, 0, "0 1", "0 1 0.3", rand])
._scope()`}
/>
Note that the first value in the `partials` array controls the magnitude of the fundamental harmonic rather than the DC offset, which is fixed at 0.
#### Phases
Earlier, we mentioned that periodic waveforms can be broken into a set of harmonics above a fundamental frequency. Each harmonic has two defining properties: its magnitude (how loud it is) and its phase, which determines where in its cycle that sine wave starts when the waveform is built.
These phases too can be declared in Strudel and can give your sounds interesting depth.
<MiniRepl
client:idle
tune={`s("saw").seg(16).n(irand(12)).scale("F1:minor")
.penv(48).panchor(0).pdec(0.05)
.delay(0.25).room(0.25)
.compressor(-20).vib(0.3)
.partials(randL(200))
.phases(randL(200))`}
/>
## Vibrato