Merge branch 'radical-new-docs' of ssh://codeberg.org/vvolhejn/strudel into radical-new-docs
This commit is contained in:
commit
29fd541f1f
59 changed files with 1234 additions and 214 deletions
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@ -2025,20 +2025,53 @@ export const { roomsize, size, sz, rsize } = registerControl('roomsize', 'size',
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export const { shape } = registerControl(['shape', 'shapevol']);
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/**
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* Wave shaping distortion. CAUTION: it can get loud.
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* Second option in optional array syntax (ex: ".9:.5") applies a postgain to the output.
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* Second option in optional array syntax (ex: ".9:.5") applies a postgain to the output. Third option sets the waveshaping type.
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* Most useful values are usually between 0 and 10 (depending on source gain). If you are feeling adventurous, you can turn it up to 11 and beyond ;)
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*
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* @name distort
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* @tags fx, superdough, supradough
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* @synonyms dist
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* @param {number | Pattern} distortion
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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* @param {number | string | Pattern} type type of distortion to apply
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* @example
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* s("bd sd [~ bd] sd,hh*8").distort("<0 2 3 10:.5>")
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* @example
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* note("d1!8").s("sine").penv(36).pdecay(.12).decay(.23).distort("8:.4")
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* @example
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* s("bd:4*4").bank("tr808").distort("3:0.5:diode")
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*
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*/
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export const { distort, dist } = registerControl(['distort', 'distortvol'], 'dist');
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export const { distort, dist } = registerControl(['distort', 'distortvol', 'distorttype'], 'dist');
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/**
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* Postgain for waveshaping distortion.
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*
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* @name distortvol
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* @synonyms distvol
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* @param {number | Pattern} volume linear postgain of the distortion
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* @example
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* s("bd*4").bank("tr909").distort(2).distortvol(0.8)
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*/
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export const { distortvol } = registerControl('distortvol', 'distvol');
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/**
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* Type of waveshaping distortion to apply.
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*
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* @name distorttype
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* @synonyms disttype
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* @param {number | string | Pattern} type type of distortion to apply
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* @example
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* s("bd*4").bank("tr909").distort(2).distorttype("<0 1 2>")
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*
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* @example
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* s("sine").note("F1*2").release(1)
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* .penv(24).pdecay(0.05)
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* .distort(rand.range(1, 8))
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* .distorttype("<fold chebyshev scurve diode asym sinefold>")
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*/
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export const { distorttype } = registerControl('distorttype', 'disttype');
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/**
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* Dynamics Compressor. The params are `compressor("threshold:ratio:knee:attack:release")`
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* More info [here](https://developer.mozilla.org/en-US/docs/Web/API/DynamicsCompressorNode?retiredLocale=de#instance_properties)
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@ -2451,6 +2484,24 @@ export const { miditouch } = registerControl('miditouch');
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// TODO: what is this?
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export const { polyTouch } = registerControl('polyTouch');
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/**
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* The host to send open sound control messages to. Requires running the OSC bridge.
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* @name oschost
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* @param {string | Pattern} oschost e.g. 'localhost'
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* @example
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* note("c4").oschost('127.0.0.1').oscport(57120).osc();
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*/
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export const { oschost } = registerControl('oschost');
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/**
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* The port to send open sound control messages to. Requires running the OSC bridge.
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* @name oscport
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* @param {number | Pattern} oscport e.g. 57120
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* @example
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* note("c4").oschost('127.0.0.1').oscport(57120).osc();
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*/
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export const { oscport } = registerControl('oscport');
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export const getControlName = (alias) => {
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if (controlAlias.has(alias)) {
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return controlAlias.get(alias);
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@ -57,7 +57,7 @@ export class Cyclist {
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}
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// query the pattern for events
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const haps = this.pattern.queryArc(begin, end, { _cps: this.cps });
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const haps = this.pattern.queryArc(begin, end, { _cps: this.cps, cyclist: 'cyclist' });
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haps.forEach((hap) => {
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if (hap.hasOnset()) {
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@ -38,8 +38,7 @@ export class NeoCyclist {
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if (this.started === false) {
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return;
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}
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const haps = this.pattern.queryArc(begin, end, { _cps: this.cps });
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const haps = this.pattern.queryArc(begin, end, { _cps: this.cps, cyclist: 'neocyclist' });
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haps.forEach((hap) => {
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if (hap.hasOnset()) {
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const timeUntilTrigger = cycleToSeconds(hap.whole.begin - this.cycle, this.cps);
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@ -1,6 +1,6 @@
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{
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"name": "@strudel/core",
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"version": "1.2.4",
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"version": "1.2.5",
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"description": "Port of Tidal Cycles to JavaScript",
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"main": "index.mjs",
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"type": "module",
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@ -99,10 +99,7 @@ export class Pattern {
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// runs func on query state
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withState(func) {
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return this.withHaps((haps, state) => {
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func(state);
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return haps;
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});
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return new Pattern((state) => this.query(func(state)));
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}
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/**
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@ -3123,6 +3120,24 @@ export const extend = stepRegister('extend', function (factor, pat) {
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return pat.fast(factor).expand(factor);
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});
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/**
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* *Experimental*
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*
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* `replicate` is similar to `fast` in that it increases its density, but it also increases the step count
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* accordingly. So `stepcat("a b".replicate(2), "c d")` would be the same as `"a b a b c d"`, whereas
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* `stepcat("a b".fast(2), "c d")` would be the same as `"[a b] [a b] c d"`.
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*
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* TODO: find out how this function differs from extend
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* @example
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* stepcat(
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* sound("bd bd - cp").replicate(2),
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* sound("bd - sd -")
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* ).pace(8)
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*/
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export const replicate = stepRegister('replicate', function (factor, pat) {
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return pat.repeatCycles(factor).fast(factor).expand(factor);
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});
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/**
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* *Experimental*
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*
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@ -3677,3 +3692,76 @@ export const morph = (frompat, topat, bypat) => {
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bypat = reify(bypat);
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return frompat.innerBind((from) => topat.innerBind((to) => bypat.innerBind((by) => _morph(from, to, by))));
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};
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/**
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* Soft-clipping distortion
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*
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* @name soft
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Hard-clipping distortion
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*
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* @name hard
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Cubic polynomial distortion
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*
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* @name cubic
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Diode-emulating distortion
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*
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* @name diode
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Asymmetrical diode distortion
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*
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* @name asym
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Wavefolding distortion
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*
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* @name fold
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Wavefolding distortion composed with sinusoid
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*
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* @name sinefold
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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/**
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* Distortion via Chebyshev polynomials
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*
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* @name chebyshev
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* @param {number | Pattern} distortion amount of distortion to apply
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* @param {number | Pattern} volume linear postgain of the distortion
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*
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*/
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const distAlgoNames = ['scurve', 'soft', 'hard', 'cubic', 'diode', 'asym', 'fold', 'sinefold', 'chebyshev'];
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for (const name of distAlgoNames) {
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// Add aliases for distortion algorithms
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Pattern.prototype[name] = function (args) {
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const argsPat = reify(args).fmap((v) => (Array.isArray(v) ? [...v, name] : [v, 1, name]));
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return this.distort(argsPat);
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};
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}
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@ -219,7 +219,10 @@ export function repl({
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}
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let { pattern, meta } = await _evaluate(code, transpiler, transpilerOptions);
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if (Object.keys(pPatterns).length) {
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let patterns = Object.values(pPatterns);
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let patterns = [];
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for (const [key, value] of Object.entries(pPatterns)) {
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patterns.push(value.withState((state) => state.setControls({ id: key })));
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}
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if (eachTransform) {
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// Explicit lambda so only element (not index and array) are passed
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patterns = patterns.map((x) => eachTransform(x));
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@ -233,6 +236,7 @@ export function repl({
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pattern = allTransforms[i](pattern);
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}
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}
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if (!isPattern(pattern)) {
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const message = `got "${typeof evaluated}" instead of pattern`;
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throw new Error(message + (typeof evaluated === 'function' ? ', did you forget to call a function?' : '.'));
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@ -19,9 +19,9 @@ export class State {
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return this.setSpan(func(this.span));
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}
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// Returns new State with different controls
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// Returns new State with added controls.
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setControls(controls) {
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return new State(this.span, controls);
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return new State(this.span, { ...this.controls, ...controls });
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}
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}
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