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api.lua
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api.lua
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return {
Voc = {
description = "# Voc\nfreq, pos, diameter, tenseness, velum -> f\nVocal Tract Physical Model"
},
abs = {
description = "# abs\nv1 (f) -> f\nPerforms absolute value."
},
add = {
description = "# add\nv1 (f), v2 (f) -> f\nPerforms addition."
},
adsr = {
description = "# adsr\ngate, attack, decay, sustain, release -> f\nAnalogue modelled ADSR generator"
},
allpass = {
description = "# allpass\nrevtime (f) looptime(f) -> f\nallpass filter"
},
atone = {
description = "# atone\ncutoff (f) -> f\natone filter (hipass)"
},
autowah = {
description = "# autowah\nlevel (f) wah (f) mix (f) -> f\nautowah"
},
biscale = {
description = "# biscale\nv1 (f), min (f), max (f) -> f\nScales from bipolar [-1, 1] to [min, max]."
},
bitcrush = {
description = "# bitcrush\nbitdepth (f) samplerate (f) -> f\nbitcrusher"
},
blsaw = {
description = "# blsaw\nfreq (f) amp (f) -> f\nBand-limited sawtooth oscillator"
},
blsquare = {
description = "# blsquare\nfreq (f) width (f) amp (f) -> f\nBand-limited square oscillator with pulse-width"
},
bltriangle = {
description = "# bltriangle\nfreq (f) amp (f) -> f\nBand-limited triangle oscillator"
},
bpm2dur = {
description = "# bpm2dur\nbpm (f) -> f\nconvert bpm to duration (seconds)"
},
bpm2rate = {
description = "# bpm2rate\nbpm (f) -> f\nconvert bpm to rate (Hertz)"
},
branch = {
description = "# branch\ngate (f), sig1 (f), sig2 (f) -> f\nreturns signal based on state of gate (0 = sig1, 1 = sig2)"
},
brown = {
description = "# brown\n(none) -> f\nBrownian noise generator"
},
butbp = {
description = "# butbp\nin (f) freq (f) bw (f) -> f\nbutterworth bandpass filter"
},
butbr = {
description = "# butbr\nin (f) freq (f) bw (f) -> f\nbutterworth band reject filter"
},
buthp = {
description = "# buthp\nin (f), cutoff (f) -> f\nButterworth highpass filter"
},
butlp = {
description = "# butlp\nin (f), cutoff (f) -> f\nButterworth lowpass filter"
},
c = {
description = "# c\ninit value (f) -> f\nConstant generator, used for feedback loops."
},
cdb = {
description = "# cdb\nkey (s) ftname (s) -> s\nloads string from cdb file"
},
cdbload = {
description = "# cdbload\nftname (s) filename (s) -> n/a\nloads cdb file"
},
cdbtab = {
description = "# cdbtab\nftname (s) key(s) db(s) filename (s) -> n/a\nloads raw floating point data from a cdb file"
},
changed = {
description = "# changed\nsig -> f\nReturns a trigger if the input changes"
},
clip = {
description = "# clip\nin (f), limit (f) -> f\nclip limiter / distortion"
},
clock = {
description = "# clock\ntrig, bpm, subdiv -> f\nClock with subdivisions and triggerable reset"
},
comb = {
description = "# comb\nin (f), rev time (f), loop time (f) -> f\ncomb filter"
},
conv = {
description = "# conv\nin (f), delay (f), ftbl impulse response (s) -> f\npartitioned convolution"
},
count = {
description = "# count\ntrig (f), max (f), mode (f) -> f\nclock counter. mode: 0 = loop, 1 = one-shot"
},
crossfade = {
description = "# crossfade\nsig1 sig2 pos -> f\ncrossfade two signals"
},
dcblk = {
description = "# dcblk\nf -> f\ndc block filter."
},
delay = {
description = "# delay\nin (f), feedback (f), deltime (f) -> f\nfeedback delay"
},
diode = {
description = "# diode\nin, cutoff, res -> f\nDiode ladder filter"
},
dist = {
description = "# dist\npregain (f) gain (f) shape1 (f) shape2 (f) -> f\nDistortion"
},
div = {
description = "# div\nv1 (f), v2 (f) -> f\nPerforms division."
},
dmetro = {
description = "# dmetro\ntime (f) -> f\nTrigger envelope, using time instead of frequency"
},
drip = {
description = "# drip\ntrig num_tubes amp shake_max freq freq1 freq dettack -> f\ndripwater physical model"
},
drop = {
description = "# drop\nf -> (none)\nRemoves the last item on the stack."
},
dtrig = {
description = "# dtrig\ntrig (f) loop (f) delay (f) scale (f) tbl (s) -> f\ndelta trig. loop = 1 will loop the sequence"
},
dup = {
description = "# dup\nf -> f f\nDuplicates last item on the stack."
},
dur = {
description = "# dur\n(none) -> f\nreturns duration of sporth patch (in seconds)"
},
dust = {
description = "# dust\namp (f) density (f) bipolar (f) -> f\ndust. bipolar = 1 unipolar = 0"
},
eq = {
description = "# eq\nv1 (f), v2 (f) -> f\nconditional equals"
},
eqfil = {
description = "# eqfil\nin(f) freq (f) bw (f) gain (f) -> f\neq filter"
},
expon = {
description = "# expon\ntrig (f) ia (f) idur (f) ib (f) -> f\nexponential line segment"
},
f = {
description = "# f\nnum (f) -> (none by default)\nCall a user defined function"
},
fc = {
description = "# fc\ntbl (s) -> n/a\nclose a dynamically loaded ugen (call this once at the end)"
},
fe = {
description = "# fe\ntbl (s) -> varies\nexecute a dynamically loaded ugen"
},
fl = {
description = "# fl\nfilename (s), tbl -> n/a\ndynamically load a ugen"
},
floor = {
description = "# floor\nv1 (f) -> f\nPerforms flooring, returning the integer part."
},
fm = {
description = "# fm\nfrequency (f), amplitude (f), carrier (f), modulator (f), index (f) -> f\nA simple FM oscillator."
},
fof = {
description = "# fof\namp fund form oct band ris dec dur iphs iolaps win(s) sine(s) -> f\nfof"
},
fofilt = {
description = "# fofilt\nin, freq, atk, rel -> f\nFOF filter"
},
fog = {
description = "# fog\namp dense trans spd oct band ris dec dur iphs iolaps win(s) wav(s) -> f\nfog"
},
fosc = {
description = "# fosc\nfreq(f), amp(f), carrier (f), modulator (f), index (f), table (s) -> f\nFM oscillator"
},
frac = {
description = "# frac\nv1 (f) -> f\nReturns the fractional part of item on the stack."
},
ftsum = {
description = "# ftsum\nstart (f), end (f), tbl (s) -> f\nsum a range of ftable values (inclusive). built for polysporth."
},
gbuzz = {
description = "# gbuzz\nfreq (f), amp(f), nharm (f), lharm(f), mul (f) -> f\nstreson filter"
},
gen_eval = {
description = "# gen_eval\nname (s), size (f), string -> n/a\nEvaluates sporth string to table"
},
gen_line = {
description = "# gen_line\nname (s), size (f), args (s) -> ftable\nGenerates a line from ordered list of breakpoints."
},
gen_padsynth = {
description = "# gen_padsynth\nftname (s), size (f), base freq (f), bandwidth (f), amp table (s) -> n/a\npadsynth algorithm by Paul Nasca Octavian"
},
gen_rand = {
description = "# gen_rand\nname (s) size (f) args (s) -> f\nrandom distribution generator"
},
gen_sine = {
description = "# gen_sine\nftable name (s), size (f) -> ftable\nGenerates a sine wave ftable."
},
gen_sinesum = {
description = "# gen_sinesum\nname (s), size (f), args (s) -> ftable\nSummation of harmonically related sines. based on GEN10."
},
gen_sporth = {
description = "# gen_sporth\ntblname size filename -> n/a\nrender a (mono) sporth file to a table"
},
gen_vals = {
description = "# gen_vals\nname (s), args (s) -> ftable\nGenerates an ftable from a space delimited set of values."
},
get = {
description = "# get\nname (s) -> f\ngets variable"
},
gt = {
description = "# gt\nv1 (f), v2 (f) -> f\nconditional greater than"
},
hilbert = {
description = "# hilbert\nin (f) -> f f\nhilbert transform"
},
["in"] = {
description = "# in\n(none) -> f\nRead a float from STDIN."
},
incr = {
description = "# incr\ntrig,step,min,max,ival -> f\nIncrementer"
},
inv = {
description = "# inv\ninv (f) -> f\ninverse a signal 1/x"
},
jcrev = {
description = "# jcrev\ninput (f) -> f\nChowning reverb"
},
jitter = {
description = "# jitter\namp (f) cpsMin (f) cpsMax(f) -> f\nJitter control signal"
},
line = {
description = "# line\ntrig (f) ia (f) idur (f) ib (f) -> f\nline segment"
},
ling = {
description = "# ling\ntrig (f) N (f) mode (f) code (s) -> f\nEvaluates a string of ling code. (0 = int mode, 1 = binary mode)"
},
load = {
description = "# load\nfilename (s) -> ?\nloads a sporth file (global variables/tables)"
},
loadfile = {
description = "# loadfile\ntable name (s), file name (s) -> n/a\nload a (mono) audio file into a table"
},
log = {
description = "# log\nv1 (f) -> f\nPerforms natural logarithm."
},
log10 = {
description = "# log10\nv1 (f) -> f\nPerforms base 10 logarithm."
},
lpc = {
description = "# lpc\nin, framesize -> f\napply linear-predictive coding (LPC10) to signal"
},
lpcsynth = {
description = "# lpcsynth\nframesize, ftbl -> f\nLPC synth. Manipulate parameters directly."
},
lpf18 = {
description = "# lpf18\nin (f) freq (f) res (f) dist (f) -> f\nlow pass filter with tanh distortion"
},
lsys = {
description = "# lsys\ntrig (f), ord (f), code (s) -> f\nL-Systems microlanguage"
},
lt = {
description = "# lt\nv1 (f), v2 (f) -> f\nconditional lt"
},
max = {
description = "# max\nff -> f\nReturns the greater of two items on the stack."
},
maygate = {
description = "# maygate\ntrig (f), probability (f), mode -> f\nRandom selection of gate or no gate. output mode: 0 = gate 1 = trigger"
},
maytrig = {
description = "# maytrig\ntrig (f), probability (f) -> f\nRandom selection of trig or no trig."
},
metatable_add = {
description = "# metatable_add\nname (s), metatable (s), position -> n/a\nadd ftable to position in metatable"
},
metatable_copy = {
description = "# metatable_copy\nname (s), metatable (s), position -> n/a\ncreate a new ftable which shares the data at a metatable position"
},
metatable_create = {
description = "# metatable_create\nname (s), length (F) -> n/a\ncreate metatable that holds a number of tables"
},
metro = {
description = "# metro\nfrequency (f) -> f\nCreates clock signal."
},
min = {
description = "# min\nff -> f\nReturns the lesser of two items on the stack."
},
mincer = {
description = "# mincer\ntime (f), amp (f), pitch (f), winsize (f, 2048 is good), ftable (s) -> f\nPhase-locked vocoder"
},
mix = {
description = "# mix\nf..f -> f\nSums up remaining items on stack."
},
mode = {
description = "# mode\nin (f), freq (f), Q (f) -> f\nmodal filter"
},
moogladder = {
description = "# moogladder\ninput (f) cutoff(f) (res) -> f\nMoog ladder lowpass filter"
},
mtof = {
description = "# mtof\nNote number (f) -> f\nConverts MIDI note number to Hz."
},
mul = {
description = "# mul\nv1 (f), v2 (f) -> f\nPerforms multiplication."
},
ne = {
description = "# ne\nv1 (f), v2 (f) -> f\nconditional not-equal to"
},
noise = {
description = "# noise\ngain (f) -> f\nWhite noise generator."
},
nsmp = {
description = "# nsmp\ntrig (f), index (f), sr (f), ini (s), wav (s) -> f\nNanosamp sampler. See soundpipe docs."
},
osc = {
description = "# osc\nfreq (f), amp (f), phase (f), ft name (s) -> f\nWavetable lookup oscillator"
},
oscmorph2 = {
description = "# oscmorph2\nfreq (f), amp (f), wtpos(f), phase (f) ft1 (s), ft2 (s) -> f\n2-table morphing oscillator"
},
oscmorph4 = {
description = "# oscmorph4\nfreq (f), amp (f), wtpos(f), phase (f) ft1 (s), ft2 (s), ft3 (s), ft4 (s) -> f\n4-table morphing oscillator"
},
p = {
description = "# p\nnum (f) -> f\np register get"
},
palias = {
description = "# palias\nname,index -> n/a\ncreate a variable alias for p-value"
},
pan = {
description = "# pan\nin (f) pan (f) -> ff\nEqual power panning. -1 = hardL 1 = hardR"
},
pareq = {
description = "# pareq\nin,freq,boost,Q,mode(0=peak, 1=low shelf, 2= high shelf) -> f\nparametric equalizer"
},
paulstretch = {
description = "# paulstretch\nstretch (F), window size (F), tbl (s) -> f\nPaulstretch algorithm"
},
pdhalf = {
description = "# pdhalf\namount -1 to 1 (f) -> f\ncasio phasor distortion"
},
peaklim = {
description = "# peaklim\ninput (f), atk (f), rel (f), thresh db (f) -> f\npeak limiter"
},
phaser = {
description = "# phaser\ninl,in2,max notch,min notch,width,notch freq,depth,fdbk,invert,lvl,lfobpm -> f f\nstereo phaser"
},
phasor = {
description = "# phasor\nfreq (f) phase (f) -> f\nNormalized sawtooth wave."
},
pinknoise = {
description = "# pinknoise\namp(f) -> f\npink noise generator"
},
pluck = {
description = "# pluck\ntrigger (f), freq (f), amp (f), ifreq (f) -> f\nplucked instrument"
},
poly = {
description = "# poly\nmax voices (f) max params (f) polyfile (s) ftable (s) -> (none)\nParse a poly file and write to table ftable"
},
polyget = {
description = "# polyget\nvoice number (f) param number (f) tbl (s) -> f\nget a value from a poly table. p0 = tick p1 = dur p2,3,etc: other"
},
port = {
description = "# port\nhtime (f) -> f\nApplies portamento to a signal."
},
pos = {
description = "# pos\n(none) -> f\nreturns playing time, in seconds"
},
posc3 = {
description = "# posc3\nfreq, amp -> f\nhigh-precision oscillator with cubic interpolation"
},
print = {
description = "# print\nval (f/s) label (s) -> f/s\nprints values to terminal"
},
prop = {
description = "# prop\nbpm (f), prop string (s) -> f\nParses prop code to produce a set of triggers"
},
ps = {
description = "# ps\nmax voices (f) out (s), file (s) -> (none)\npolysporth"
},
pset = {
description = "# pset\nval (f), num (f) -> f\np register set"
},
psh = {
description = "# psh\nftname, ninstances, filename -> n/a\nCreate polysporth handle"
},
pshift = {
description = "# pshift\nin (f), window size (samps) (f), xfade (samps) (f) -> f\npitch shifter"
},
pst = {
description = "# pst\ntog, id, ftname -> f\ntoggle a polysporth sporthlet"
},
ptrack = {
description = "# ptrack\nin (f) -> amp (f) pitch (f)\npitch tracking"
},
rand = {
description = "# rand\nmin (f) max(f) -> f\npicks random number at start time"
},
randh = {
description = "# randh\nmin (f), max (f), freq (f) -> f\nRandom hold"
},
randi = {
description = "# randi\nmin (f), max (f), freq (f) -> f\nRandomized line segment with interpolation"
},
ref = {
description = "# ref\nname (s) -> n/a\nsave pointer reference of next pipe in table"
},
render = {
description = "# render\nfilename (s) -> ?\nrenders a sporth file (private variables/tables)"
},
reson = {
description = "# reson\nin (f) -> freq (f) bw (f)\nresonator filter"
},
reverse = {
description = "# reverse\nin (f), delay (f) -> f\nreverse delay"
},
revsc = {
description = "# revsc\nin1 (f), in2 (f), feedback (f), cutoff (f) -> f f\nStereo reverb module from reverbsc Csound opcode."
},
rot = {
description = "# rot\nf f f -> f f f\nStack rotate. s: 1 2 3 -> 2 3 1"
},
round = {
description = "# round\nv1 (f) -> f\nPerforms rounding to nearest integer."
},
rpt = {
description = "# rpt\nin (f), trig (f), bpm (f), div (f), rep (f), bufsize (f) -> f\nStutterer / repeater"
},
rspline = {
description = "# rspline\nmin, max, cps min, cps max -> f\nrandom spline generator"
},
samphold = {
description = "# samphold\nin (f), trig (f) -> f\nsample and hold"
},
saturator = {
description = "# saturator\nin, drive, dcoffset -> f\nsaturator distortion unit"
},
scale = {
description = "# scale\nv1 (f), min (f), max (f) -> f\nScales from unipolar [0, 1] to [min, max]."
},
sdelay = {
description = "# sdelay\ndelay (samples) (f) -> f\ndelay (in samples)"
},
set = {
description = "# set\nname (s) -> n/a\nsets variable"
},
setdurs = {
description = "# setdurs\nsize (f) -> n/a\nset total duration (in samples)"
},
sget = {
description = "# sget\nindex (f) ftname (s) -> s\npicks a string from a string list"
},
sine = {
description = "# sine\nfreq (f), amp (f) -> f\nSimple sine oscillator."
},
slice = {
description = "# slice\ntrig (f) id (f) vals (s) buf (s) -> f\nin-memory slice based sampler"
},
slick = {
description = "# slick\nftname (s) -> s\npicks a string randomly from string list"
},
slist = {
description = "# slist\nftname (s) size (s) slist -> 0\nloads a text file into a string list"
},
smoothdelay = {
description = "# smoothdelay\nin(f) fdbk(f) del(f) maxdel(f) interp (f) -> f\nsmooth delay line"
},
spa = {
description = "# spa\nfilename -> f\nStreams a spa file"
},
sparec = {
description = "# sparec\ninput, filename -> f\nWrites a sparec file."
},
srand = {
description = "# srand\nseed (f) -> n/a\nseed internal RNG"
},
streson = {
description = "# streson\nin (f), frequency (f), gain (f) -> f\nstreson filter"
},
sub = {
description = "# sub\nv1 (f), v2 (f) -> f\nPerforms subtraction."
},
swap = {
description = "# swap\nf f -> f f\nSwaps last two items on the stack."
},
switch = {
description = "# switch\ntrig (f), sig1 (f), sig2 (f) -> f\ntoggle between two signals"
},
tabread = {
description = "# tabread\n(f) index, scaled (1: yes, 0: no), offset, wrap, (s) ftname -> f\nread from table with interpolation"
},
talias = {
description = "# talias\nname, index, ftbl -> n/a\nalias a table value to a variable"
},
talkbox = {
description = "# talkbox\nsource, excitation, quality -> f\nhigh-resolution vocoder"
},
tbldur = {
description = "# tbldur\nftable (s) -> f\nGet duration of table (in seconds)"
},
tblrec = {
description = "# tblrec\nin (f) trig (f) tbl name (s) -> f\nrecords values to table."
},
tblsize = {
description = "# tblsize\nftable (s) -> f\nGet size of table (in samples)"
},
tdiv = {
description = "# tdiv\nnum (f) offset (f) -> f\ntrigger divider"
},
tenv = {
description = "# tenv\ntrig (f), attack (f), sustain (f), release (f) -> f\nTriggerable linear envelope generator."
},
tenv2 = {
description = "# tenv2\ntrig (f), attack (f), release (f) -> f\nTwo-step triggerable linear envelope generator."
},
tenvx = {
description = "# tenvx\ntrig (f) atk (f) hold (f) rel (f) -> f\nExponential Envelope Generator"
},
tgate = {
description = "# tgate\ntime (f) -> f\ntriggerable gate"
},
tget = {
description = "# tget\nindex (f) table (s) -> f\nGet value from table"
},
thresh = {
description = "# thresh\nin (f) thresh (f) mode (f) -> f\ndetect threshold crossings. mode: 0=from below, 1=above, 2=both"
},
tick = {
description = "# tick\nn/a -> f\ntrigger at start of file. only use once"
},
timer = {
description = "# timer\ntrig (f) -> f\ntimer"
},
tog = {
description = "# tog\ntrig (f) -> f\ntoggle switch that can be triggered on/off"
},
tphasor = {
description = "# tphasor\ntrig (f) freq (f) phase (f) -> f\nTriggerable normalized sawtooth wave."
},
tpoly = {
description = "# tpoly\ntrig (f) max voices (f) max params (f) arg_ft (s) poly_ft (s) -> n/a\ntriggered polyphony"
},
tport = {
description = "# tport\ntrig (f) htime (f) -> f\nApplies portamento to a signal with triggerable reset."
},
tprop = {
description = "# tprop\ntrig (f), bpm (f), code (s) -> f\nprop with a triggerable reset"
},
trand = {
description = "# trand\ntrig (f) min (f) max (f) -> f\ntriggerable RNG"
},
tseg = {
description = "# tseg\ntrig (f), val (f), dur (f), curve (f), init (f) -> f\ntrigger segment"
},
tseq = {
description = "# tseq\ntrig (f), mode (f), ft name (s) -> f\nTriggered sequencer. modes: 0 = normal, 1 = shuffle."
},
tset = {
description = "# tset\nindex (f) value (f) table (s) -> (none)\nSet value of table"
},
var = {
description = "# var\nname (s) -> 0\ncreates variable"
},
varset = {
description = "# varset\nname (s) val (f) -> 0\ncreates and sets a variable"
},
vdelay = {
description = "# vdelay\nin (f), feedback (f), deltime (f) maxdelay(f) -> f\nvariable delay with feedback"
},
vocoder = {
description = "# vocoder\natk rel bwq sig exc -> f\n32-band channel vocoder"
},
waveset = {
description = "# waveset\nin (f) rep (f) buflen (F) -> f\nwaveset timestretching algorithm"
},
wpkorg35 = {
description = "# wpkorg35\nin (f) cutoff (f) res (f) saturation (f) -> f\nwpkorg filter"
},
writecode = {
description = "# writecode\nfilename (s) -> 0\nwrites sporth code to file"
},
zeros = {
description = "# zeros\nname (s) size (f) -> n/a\nGenerate table of zeros"
},
zitarev = {
description = "# zitarev\nin2,in1,delay,lf_x,rtlo,rthi,hfdmp,eq1f,eq1l,eq2f,eq1l,mix,lvl -> f\nzitareverb module"
},
zrev = {
description = "# zrev\nin2,in1,rtlo,rthi,hfdmp -> ff\nzitareverb module (simplified)"
}
}