92 lines
2 KiB
Racket
92 lines
2 KiB
Racket
#lang scribble/manual
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@(require (for-label racket))
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@title{DynKlang}
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@section{categories}
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UGens>Generators>Deterministic
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Dynamic sine oscillator bank@section{related}
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Classes/Klang, Classes/DynKlank, Classes/Klank
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@section{description}
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DynKlang is a bank of sine oscillators. It is less efficient than Klang, as it is basically a wrapper around SinOsc UGens in order to provide a similar interface to link::Classes/Klang::.
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Unlike Klang, parameters in
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@racketblock[specificationsArrayRef:: can be changed after it has been started.
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]
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@section{classmethods}
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@section{private}
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categories
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@section{method}
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ar, kr
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@section{argument}
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specificationsArrayRef
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a Ref to an Array of three Arrays:
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@section{definitionlist}
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## frequencies || an Array of oscillator frequencies.
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## amplitudes || an Array of oscillator amplitudes, or nil. If nil, then amplitudes default to 1.0
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## phases || an Array of initial phases, or nil. If nil, then phases default to 0.0
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::
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@section{argument}
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freqscale
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a scale factor multiplied by all frequencies at initialization time.
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@section{argument}
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freqoffset
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an offset added to all frequencies at initialization time.
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@section{examples}
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@racketblock[
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// frequency modulation
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(
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play {
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DynKlang.ar(`[
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[800, 1000, 1200] + SinOsc.kr([2, 3, 4.2], 0, [13, 24, 12]),
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[0.3, 0.3, 0.3],
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[pi,pi,pi]
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]
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) * 0.1
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};
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)
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// building new synths every 2 seconds
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(
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{
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loop({
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play({
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var mod = SinOsc.kr(Rand(0.1, 0.9), 0, Rand(5, 20));
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Pan2.ar(DynKlang.ar(`[ Array.rand(12, 200.0, 2000.0), 1, mod ]), 1.0.rand)
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* EnvGen.kr(Env.sine(4), 1, 0.02, doneAction: Done.freeSelf);
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});
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2.wait;
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})
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}.fork;
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)
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// resetting the frequencies and amplitudes after the synth has been created
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(
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SynthDef('help-dynKlang', {| freqs=#[220, 440, 880, 1760],
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amps=#[0.35, 0.23, 0.12, 0.05],
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phases=#[1, 1.5, 2, 2.5]|
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Out.ar(0, DynKlang.ar(`[freqs, amps, phases]))
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}).add
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)
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a = Synth('help-dynKlang');
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a.setn(\freqs, Array.rand(4, 500, 2000));
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a.setn(\amps, Array.rand(4, 0.01, 0.25));
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::
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]
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