package tiny_libs
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From-scratch libraries for teaching: graphics, audio, compression, crypto, networking and more
Install
dune-project
Dependency
Authors
Maintainers
Sources
0.3.6.tar.gz
md5=7c636383d146d30ac6f2fa234a6253c8
sha512=c79f3823c5f8f57e5038eb640d487c61168b84aa07c61999d6622ef9fd0c890e2b03b4c6a7cdbbe9352a49e25dda00ac7bb14693cee8e3d7beeed251351a2af0
doc/src/tiny_libs.audio_instruments/Lfo.ml.html
Source file Lfo.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55(* Claude Code * * Copyright (C) 2026 Yoann Padioleau * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Library General Public License * (LGPL) as published by the Free Software Foundation; either version * 2 of the License, or (at your option) any later version. *) (* See Lfo.mli *) type shape = Sine | Triangle | Square | Saw_up | Saw_down | Sample_and_hold let shapes = [ Sine; Triangle; Square; Saw_up; Saw_down; Sample_and_hold ] let name = function | Sine -> "sine" | Triangle -> "triangle" | Square -> "square" | Saw_up -> "saw up" | Saw_down -> "saw down" | Sample_and_hold -> "sample & hold" let value (shape : shape) (phase : float) : float = match shape with | Sine -> Oscillator.wave Sine phase | Triangle -> Oscillator.wave Triangle phase | Square -> Oscillator.wave Square phase | Saw_up -> Oscillator.wave Sawtooth phase | Saw_down -> -.Oscillator.wave Sawtooth phase | Sample_and_hold -> 0. (* the phase; the random generator's state, and the value it last drew, * held *) type t = { mutable phase : float; mutable random : int; mutable held : float } let create ?(seed = 0) () : t = let random = Noise.lcg seed in { phase = 0.; random; held = Noise.uniform random } let fill (t : t) (shape : shape) ~(rate : float) (out : Signal.t) : unit = let dphase = rate /. float_of_int Signal.rate in for i = 0 to Array.length out - 1 do out.(i) <- (match shape with Sample_and_hold -> t.held | _ -> value shape t.phase); let next = t.phase +. dphase in (* a new period: sample and hold draws its next value *) if next >= 1. then ( t.random <- Noise.lcg t.random; t.held <- Noise.uniform t.random); t.phase <- next -. Float.floor next done let unipolar (x : float) : float = (x +. 1.) /. 2. let of_tempo ~(bpm : float) ~(beats : float) : float = bpm /. 60. /. beats
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