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c5208e5c0ef28ff8a51447df077e667d034f3fd862a0b3d8e5d688f996affcb8
|
mi-creative/FaustPM_2021_examples
|
08_StringPlucked.dsp
|
import("stdfaust.lib");
/* Faust PM Workshop : Introduction to Mass-Interaction Modelling */
/* Part 8: Plucking our basic string */
in1 = hslider("Pos Input 1", 0, -1, 1, 0.001):si.smoo; //write a specific position input signal operation here
OutGain = 1;
str_M = 1.0;
str_K = 0.4;
str_Z = 0.001;
str_Zo = 0.0;
model = (
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0):
RoutingMassToLink :
mi.nlPluck(1, 0.1, 0.1, 0, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
RoutingMassToLink(m0, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32) = /* routed positions */ m32, m11, m0, m1, m1, m2, m2, m3, m3, m4, m4, m5, m5, m6, m6, m7, m7, m8, m8, m9, m9, m10, m10, m11, m11, m12, m12, m13, m13, m14, m14, m15, m15, m16, m16, m17, m17, m18, m18, m19, m19, m20, m20, m21, m21, m22, m22, m23, m23, m24, m24, m25, m25, m26, m26, m27, m27, m28, m28, m29, m29, m30, m30, m31, /* outputs */ m28, m4;
RoutingLinkToMass(l0_f1, l0_f2, l1_f1, l1_f2, l2_f1, l2_f2, l3_f1, l3_f2, l4_f1, l4_f2, l5_f1, l5_f2, l6_f1, l6_f2, l7_f1, l7_f2, l8_f1, l8_f2, l9_f1, l9_f2, l10_f1, l10_f2, l11_f1, l11_f2, l12_f1, l12_f2, l13_f1, l13_f2, l14_f1, l14_f2, l15_f1, l15_f2, l16_f1, l16_f2, l17_f1, l17_f2, l18_f1, l18_f2, l19_f1, l19_f2, l20_f1, l20_f2, l21_f1, l21_f2, l22_f1, l22_f2, l23_f1, l23_f2, l24_f1, l24_f2, l25_f1, l25_f2, l26_f1, l26_f2, l27_f1, l27_f2, l28_f1, l28_f2, l29_f1, l29_f2, l30_f1, l30_f2, l31_f1, l31_f2, p_out1, p_out2) = /* routed forces */ l1_f1, l1_f2 + l2_f1, l2_f2 + l3_f1, l3_f2 + l4_f1, l4_f2 + l5_f1, l5_f2 + l6_f1, l6_f2 + l7_f1, l7_f2 + l8_f1, l8_f2 + l9_f1, l9_f2 + l10_f1, l10_f2 + l11_f1, l0_f2 + l11_f2 + l12_f1, l12_f2 + l13_f1, l13_f2 + l14_f1, l14_f2 + l15_f1, l15_f2 + l16_f1, l16_f2 + l17_f1, l17_f2 + l18_f1, l18_f2 + l19_f1, l19_f2 + l20_f1, l20_f2 + l21_f1, l21_f2 + l22_f1, l22_f2 + l23_f1, l23_f2 + l24_f1, l24_f2 + l25_f1, l25_f2 + l26_f1, l26_f2 + l27_f1, l27_f2 + l28_f1, l28_f2 + l29_f1, l29_f2 + l30_f1, l30_f2 + l31_f1, l31_f2, l0_f1, /* pass-through */ p_out1, p_out2;
nbMass = 33;
nbPosIn = 1;
nbOut = 2;
};
process = in1 : model:*(OutGain), *(OutGain);
|
https://raw.githubusercontent.com/mi-creative/FaustPM_2021_examples/329e24a3d7c062cffb76416cff05a2922a3721f0/08_StringPlucked.dsp
|
faust
|
Faust PM Workshop : Introduction to Mass-Interaction Modelling
Part 8: Plucking our basic string
write a specific position input signal operation here
routed positions
outputs
routed forces
pass-through
|
import("stdfaust.lib");
OutGain = 1;
str_M = 1.0;
str_K = 0.4;
str_Z = 0.001;
str_Zo = 0.0;
model = (
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0):
RoutingMassToLink :
mi.nlPluck(1, 0.1, 0.1, 0, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
nbMass = 33;
nbPosIn = 1;
nbOut = 2;
};
process = in1 : model:*(OutGain), *(OutGain);
|
d55a2729ccbdc15b7febf05236367be1f5042cb51172557f195606d16e6e7c8c
|
mi-creative/FaustPM_2021_examples
|
09_StringHarmonic.dsp
|
import("stdfaust.lib");
/* Faust PM Workshop : Introduction to Mass-Interaction Modelling */
/* Part 9: Plucking our basic string and generating harmonics */
in1 = hslider("Pos Input 1", 0, -1, 1, 0.001):si.smoo; //write a specific position input signal operation here
in2 = hslider("Pos Input 2", 0, -1, 1, 0.001):si.smoo; //write a specific position input signal operation here
OutGain = 1;
str_M = 1.0;
str_K = 0.4;
str_Z = 0.001;
str_Zo = 0.0;
model = (
par(i, nbMass - nbPosIn, _), ro.interleave(nbPosIn, 2):
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0),
mi.posInput(0):
RoutingMassToLink :
mi.nlPluck(1, 0.1, 0.1, 0, 0.00),
mi.collision(0.0001, 0.01, 0, 0.00, 0),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
RoutingMassToLink(m0, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32, m33) = /* routed positions */ m32, m11, m17, m33, m0, m1, m1, m2, m2, m3, m3, m4, m4, m5, m5, m6, m6, m7, m7, m8, m8, m9, m9, m10, m10, m11, m11, m12, m12, m13, m13, m14, m14, m15, m15, m16, m16, m17, m17, m18, m18, m19, m19, m20, m20, m21, m21, m22, m22, m23, m23, m24, m24, m25, m25, m26, m26, m27, m27, m28, m28, m29, m29, m30, m30, m31, /* outputs */ m28, m4;
RoutingLinkToMass(l0_f1, l0_f2, l1_f1, l1_f2, l2_f1, l2_f2, l3_f1, l3_f2, l4_f1, l4_f2, l5_f1, l5_f2, l6_f1, l6_f2, l7_f1, l7_f2, l8_f1, l8_f2, l9_f1, l9_f2, l10_f1, l10_f2, l11_f1, l11_f2, l12_f1, l12_f2, l13_f1, l13_f2, l14_f1, l14_f2, l15_f1, l15_f2, l16_f1, l16_f2, l17_f1, l17_f2, l18_f1, l18_f2, l19_f1, l19_f2, l20_f1, l20_f2, l21_f1, l21_f2, l22_f1, l22_f2, l23_f1, l23_f2, l24_f1, l24_f2, l25_f1, l25_f2, l26_f1, l26_f2, l27_f1, l27_f2, l28_f1, l28_f2, l29_f1, l29_f2, l30_f1, l30_f2, l31_f1, l31_f2, l32_f1, l32_f2, p_out1, p_out2) = /* routed forces */ l2_f1, l2_f2 + l3_f1, l3_f2 + l4_f1, l4_f2 + l5_f1, l5_f2 + l6_f1, l6_f2 + l7_f1, l7_f2 + l8_f1, l8_f2 + l9_f1, l9_f2 + l10_f1, l10_f2 + l11_f1, l11_f2 + l12_f1, l0_f2 + l12_f2 + l13_f1, l13_f2 + l14_f1, l14_f2 + l15_f1, l15_f2 + l16_f1, l16_f2 + l17_f1, l17_f2 + l18_f1, l1_f1 + l18_f2 + l19_f1, l19_f2 + l20_f1, l20_f2 + l21_f1, l21_f2 + l22_f1, l22_f2 + l23_f1, l23_f2 + l24_f1, l24_f2 + l25_f1, l25_f2 + l26_f1, l26_f2 + l27_f1, l27_f2 + l28_f1, l28_f2 + l29_f1, l29_f2 + l30_f1, l30_f2 + l31_f1, l31_f2 + l32_f1, l32_f2, l0_f1, l1_f2, /* pass-through */ p_out1, p_out2;
nbMass = 34;
nbPosIn = 2;
nbOut = 2;
};
process = in1, in2 : model:*(OutGain), *(OutGain);
|
https://raw.githubusercontent.com/mi-creative/FaustPM_2021_examples/329e24a3d7c062cffb76416cff05a2922a3721f0/09_StringHarmonic.dsp
|
faust
|
Faust PM Workshop : Introduction to Mass-Interaction Modelling
Part 9: Plucking our basic string and generating harmonics
write a specific position input signal operation here
write a specific position input signal operation here
routed positions
outputs
routed forces
pass-through
|
import("stdfaust.lib");
OutGain = 1;
str_M = 1.0;
str_K = 0.4;
str_Z = 0.001;
str_Zo = 0.0;
model = (
par(i, nbMass - nbPosIn, _), ro.interleave(nbPosIn, 2):
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0),
mi.posInput(0):
RoutingMassToLink :
mi.nlPluck(1, 0.1, 0.1, 0, 0.00),
mi.collision(0.0001, 0.01, 0, 0.00, 0),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
nbMass = 34;
nbPosIn = 2;
nbOut = 2;
};
process = in1, in2 : model:*(OutGain), *(OutGain);
|
086fab80e66fb6dccf82245d27626bcd56db93679d71cd43b9fea7e6cdc04b0f
|
mi-creative/FaustPM_2021_examples
|
10_StringBowed.dsp
|
import("stdfaust.lib");
/* Faust PM Workshop : Introduction to Mass-Interaction Modelling */
/* Part 10: Bowing our basic string */
in1 = hslider("Pos Input 1", 0, -300, 300, 0.01):si.smoo:si.smoo:si.smoo; //write a specific position input signal operation here
in2 = hslider("Pos Input 2", 0, -1, 1, 0.001):si.smoo; //write a specific position input signal operation here
OutGain = 1;
nlZ = hslider("Bow Pressure", 0, 0, 1, 0.01);
nlscale = 0.02;
str_M = 1.0;
str_K = 0.4;
str_Z = 0.001;
str_Zo = 0.0;
model = (
par(i, nbMass - nbPosIn, _), ro.interleave(nbPosIn, 2):
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0),
mi.posInput(0):
RoutingMassToLink :
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.collision(0.0001, 0.01, 0, 0.00, 0),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
RoutingMassToLink(m0, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32, m33) = /* routed positions */ m32, m4, m32, m5, m11, m33, m0, m1, m1, m2, m2, m3, m3, m4, m4, m5, m5, m6, m6, m7, m7, m8, m8, m9, m9, m10, m10, m11, m11, m12, m12, m13, m13, m14, m14, m15, m15, m16, m16, m17, m17, m18, m18, m19, m19, m20, m20, m21, m21, m22, m22, m23, m23, m24, m24, m25, m25, m26, m26, m27, m27, m28, m28, m29, m29, m30, m30, m31, /* outputs */ m28, m4;
RoutingLinkToMass(l0_f1, l0_f2, l1_f1, l1_f2, l2_f1, l2_f2, l3_f1, l3_f2, l4_f1, l4_f2, l5_f1, l5_f2, l6_f1, l6_f2, l7_f1, l7_f2, l8_f1, l8_f2, l9_f1, l9_f2, l10_f1, l10_f2, l11_f1, l11_f2, l12_f1, l12_f2, l13_f1, l13_f2, l14_f1, l14_f2, l15_f1, l15_f2, l16_f1, l16_f2, l17_f1, l17_f2, l18_f1, l18_f2, l19_f1, l19_f2, l20_f1, l20_f2, l21_f1, l21_f2, l22_f1, l22_f2, l23_f1, l23_f2, l24_f1, l24_f2, l25_f1, l25_f2, l26_f1, l26_f2, l27_f1, l27_f2, l28_f1, l28_f2, l29_f1, l29_f2, l30_f1, l30_f2, l31_f1, l31_f2, l32_f1, l32_f2, l33_f1, l33_f2, p_out1, p_out2) = /* routed forces */ l3_f1, l3_f2 + l4_f1, l4_f2 + l5_f1, l5_f2 + l6_f1, l0_f2 + l6_f2 + l7_f1, l1_f2 + l7_f2 + l8_f1, l8_f2 + l9_f1, l9_f2 + l10_f1, l10_f2 + l11_f1, l11_f2 + l12_f1, l12_f2 + l13_f1, l2_f1 + l13_f2 + l14_f1, l14_f2 + l15_f1, l15_f2 + l16_f1, l16_f2 + l17_f1, l17_f2 + l18_f1, l18_f2 + l19_f1, l19_f2 + l20_f1, l20_f2 + l21_f1, l21_f2 + l22_f1, l22_f2 + l23_f1, l23_f2 + l24_f1, l24_f2 + l25_f1, l25_f2 + l26_f1, l26_f2 + l27_f1, l27_f2 + l28_f1, l28_f2 + l29_f1, l29_f2 + l30_f1, l30_f2 + l31_f1, l31_f2 + l32_f1, l32_f2 + l33_f1, l33_f2, l0_f1 + l1_f1, l2_f2, /* pass-through */ p_out1, p_out2;
nbMass = 34;
nbPosIn = 2;
nbOut = 2;
};
process = in1, in2 : model:*(OutGain), *(OutGain);
|
https://raw.githubusercontent.com/mi-creative/FaustPM_2021_examples/329e24a3d7c062cffb76416cff05a2922a3721f0/10_StringBowed.dsp
|
faust
|
Faust PM Workshop : Introduction to Mass-Interaction Modelling
Part 10: Bowing our basic string
write a specific position input signal operation here
write a specific position input signal operation here
routed positions
outputs
routed forces
pass-through
|
import("stdfaust.lib");
OutGain = 1;
nlZ = hslider("Bow Pressure", 0, 0, 1, 0.01);
nlscale = 0.02;
str_M = 1.0;
str_K = 0.4;
str_Z = 0.001;
str_Zo = 0.0;
model = (
par(i, nbMass - nbPosIn, _), ro.interleave(nbPosIn, 2):
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0),
mi.posInput(0):
RoutingMassToLink :
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.collision(0.0001, 0.01, 0, 0.00, 0),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
nbMass = 34;
nbPosIn = 2;
nbOut = 2;
};
process = in1, in2 : model:*(OutGain), *(OutGain);
|
eea6e45dd7190692a10a5394eae26d1fedda044ccb0bdd8b60e28e9fea0c6e85
|
mi-creative/FaustPM_2021_examples
|
11_LargeBowedString.dsp
|
import("stdfaust.lib");
/* Faust PM Workshop : Introduction to Mass-Interaction Modelling */
/* Part 11: A larger bowed string model */
in1 = hslider("Bow Position", 0, -300, 300, 0.001):si.smoo:si.smoo:si.smoo:si.smoo; //write a specific position input signal operation here
in2 = hslider("Finger Position", 1, -1, 1, 0.001):si.smoo; //write a specific position input signal operation here
OutGain = 0.6;
nlZ = hslider("Bow Pressure", 0, 0, 1, 0.01);
nlscale = 0.02;
str_M = 1.0;
str_K = 0.7;
str_Z = 0.001;
str_Zo = 0.0;
model = (
par(i, nbMass - nbPosIn, _), ro.interleave(nbPosIn, 2):
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0),
mi.posInput(0):
RoutingMassToLink :
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.collision(0.1, 0.01, 0, 0.00, 0),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
RoutingMassToLink(m0, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32, m33, m34, m35, m36, m37, m38, m39, m40, m41, m42, m43, m44, m45, m46, m47, m48, m49, m50, m51, m52, m53, m54, m55, m56, m57, m58, m59, m60, m61, m62, m63, m64, m65, m66, m67, m68, m69, m70, m71, m72, m73, m74, m75, m76, m77, m78, m79, m80, m81, m82, m83, m84, m85, m86, m87, m88, m89, m90, m91, m92, m93, m94, m95, m96, m97, m98, m99, m100, m101, m102, m103, m104, m105, m106, m107, m108, m109, m110, m111, m112, m113, m114, m115, m116, m117, m118, m119, m120, m121, m122, m123, m124, m125, m126, m127, m128, m129, m130, m131, m132, m133, m134, m135, m136, m137, m138, m139, m140, m141, m142, m143, m144, m145, m146, m147, m148, m149, m150, m151, m152, m153, m154, m155, m156, m157, m158, m159, m160, m161, m162, m163, m164, m165, m166, m167, m168, m169, m170, m171, m172, m173, m174, m175, m176, m177, m178, m179, m180, m181, m182, m183, m184, m185, m186, m187, m188, m189, m190, m191, m192, m193, m194, m195, m196, m197, m198, m199, m200, m201, m202, m203, m204, m205, m206, m207, m208, m209, m210, m211, m212, m213, m214, m215, m216, m217, m218, m219, m220, m221, m222, m223, m224, m225, m226, m227, m228, m229, m230, m231, m232, m233) = /* routed positions */ m232, m39, m232, m40, m116, m233, m0, m1, m1, m2, m2, m3, m3, m4, m4, m5, m5, m6, m6, m7, m7, m8, m8, m9, m9, m10, m10, m11, m11, m12, m12, m13, m13, m14, m14, m15, m15, m16, m16, m17, m17, m18, m18, m19, m19, m20, m20, m21, m21, m22, m22, m23, m23, m24, m24, m25, m25, m26, m26, m27, m27, m28, m28, m29, m29, m30, m30, m31, m31, m32, m32, m33, m33, m34, m34, m35, m35, m36, m36, m37, m37, m38, m38, m39, m39, m40, m40, m41, m41, m42, m42, m43, m43, m44, m44, m45, m45, m46, m46, m47, m47, m48, m48, m49, m49, m50, m50, m51, m51, m52, m52, m53, m53, m54, m54, m55, m55, m56, m56, m57, m57, m58, m58, m59, m59, m60, m60, m61, m61, m62, m62, m63, m63, m64, m64, m65, m65, m66, m66, m67, m67, m68, m68, m69, m69, m70, m70, m71, m71, m72, m72, m73, m73, m74, m74, m75, m75, m76, m76, m77, m77, m78, m78, m79, m79, m80, m80, m81, m81, m82, m82, m83, m83, m84, m84, m85, m85, m86, m86, m87, m87, m88, m88, m89, m89, m90, m90, m91, m91, m92, m92, m93, m93, m94, m94, m95, m95, m96, m96, m97, m97, m98, m98, m99, m99, m100, m100, m101, m101, m102, m102, m103, m103, m104, m104, m105, m105, m106, m106, m107, m107, m108, m108, m109, m109, m110, m110, m111, m111, m112, m112, m113, m113, m114, m114, m115, m115, m116, m116, m117, m117, m118, m118, m119, m119, m120, m120, m121, m121, m122, m122, m123, m123, m124, m124, m125, m125, m126, m126, m127, m127, m128, m128, m129, m129, m130, m130, m131, m131, m132, m132, m133, m133, m134, m134, m135, m135, m136, m136, m137, m137, m138, m138, m139, m139, m140, m140, m141, m141, m142, m142, m143, m143, m144, m144, m145, m145, m146, m146, m147, m147, m148, m148, m149, m149, m150, m150, m151, m151, m152, m152, m153, m153, m154, m154, m155, m155, m156, m156, m157, m157, m158, m158, m159, m159, m160, m160, m161, m161, m162, m162, m163, m163, m164, m164, m165, m165, m166, m166, m167, m167, m168, m168, m169, m169, m170, m170, m171, m171, m172, m172, m173, m173, m174, m174, m175, m175, m176, m176, m177, m177, m178, m178, m179, m179, m180, m180, m181, m181, m182, m182, m183, m183, m184, m184, m185, m185, m186, m186, m187, m187, m188, m188, m189, m189, m190, m190, m191, m191, m192, m192, m193, m193, m194, m194, m195, m195, m196, m196, m197, m197, m198, m198, m199, m199, m200, m200, m201, m201, m202, m202, m203, m203, m204, m204, m205, m205, m206, m206, m207, m207, m208, m208, m209, m209, m210, m210, m211, m211, m212, m212, m213, m213, m214, m214, m215, m215, m216, m216, m217, m217, m218, m218, m219, m219, m220, m220, m221, m221, m222, m222, m223, m223, m224, m224, m225, m225, m226, m226, m227, m227, m228, m228, m229, m229, m230, m230, m231, /* outputs */ m28, m4;
RoutingLinkToMass(l0_f1, l0_f2, l1_f1, l1_f2, l2_f1, l2_f2, l3_f1, l3_f2, l4_f1, l4_f2, l5_f1, l5_f2, l6_f1, l6_f2, l7_f1, l7_f2, l8_f1, l8_f2, l9_f1, l9_f2, l10_f1, l10_f2, l11_f1, l11_f2, l12_f1, l12_f2, l13_f1, l13_f2, l14_f1, l14_f2, l15_f1, l15_f2, l16_f1, l16_f2, l17_f1, l17_f2, l18_f1, l18_f2, l19_f1, l19_f2, l20_f1, l20_f2, l21_f1, l21_f2, l22_f1, l22_f2, l23_f1, l23_f2, l24_f1, l24_f2, l25_f1, l25_f2, l26_f1, l26_f2, l27_f1, l27_f2, l28_f1, l28_f2, l29_f1, l29_f2, l30_f1, l30_f2, l31_f1, l31_f2, l32_f1, l32_f2, l33_f1, l33_f2, l34_f1, l34_f2, l35_f1, l35_f2, l36_f1, l36_f2, l37_f1, l37_f2, l38_f1, l38_f2, l39_f1, l39_f2, l40_f1, l40_f2, l41_f1, l41_f2, l42_f1, l42_f2, l43_f1, l43_f2, l44_f1, l44_f2, l45_f1, l45_f2, l46_f1, l46_f2, l47_f1, l47_f2, l48_f1, l48_f2, l49_f1, l49_f2, l50_f1, l50_f2, l51_f1, l51_f2, l52_f1, l52_f2, l53_f1, l53_f2, l54_f1, l54_f2, l55_f1, l55_f2, l56_f1, l56_f2, l57_f1, l57_f2, l58_f1, l58_f2, l59_f1, l59_f2, l60_f1, l60_f2, l61_f1, l61_f2, l62_f1, l62_f2, l63_f1, l63_f2, l64_f1, l64_f2, l65_f1, l65_f2, l66_f1, l66_f2, l67_f1, l67_f2, l68_f1, l68_f2, l69_f1, l69_f2, l70_f1, l70_f2, l71_f1, l71_f2, l72_f1, l72_f2, l73_f1, l73_f2, l74_f1, l74_f2, l75_f1, l75_f2, l76_f1, l76_f2, l77_f1, l77_f2, l78_f1, l78_f2, l79_f1, l79_f2, l80_f1, l80_f2, l81_f1, l81_f2, l82_f1, l82_f2, l83_f1, l83_f2, l84_f1, l84_f2, l85_f1, l85_f2, l86_f1, l86_f2, l87_f1, l87_f2, l88_f1, l88_f2, l89_f1, l89_f2, l90_f1, l90_f2, l91_f1, l91_f2, l92_f1, l92_f2, l93_f1, l93_f2, l94_f1, l94_f2, l95_f1, l95_f2, l96_f1, l96_f2, l97_f1, l97_f2, l98_f1, l98_f2, l99_f1, l99_f2, l100_f1, l100_f2, l101_f1, l101_f2, l102_f1, l102_f2, l103_f1, l103_f2, l104_f1, l104_f2, l105_f1, l105_f2, l106_f1, l106_f2, l107_f1, l107_f2, l108_f1, l108_f2, l109_f1, l109_f2, l110_f1, l110_f2, l111_f1, l111_f2, l112_f1, l112_f2, l113_f1, l113_f2, l114_f1, l114_f2, l115_f1, l115_f2, l116_f1, l116_f2, l117_f1, l117_f2, l118_f1, l118_f2, l119_f1, l119_f2, l120_f1, l120_f2, l121_f1, l121_f2, l122_f1, l122_f2, l123_f1, l123_f2, l124_f1, l124_f2, l125_f1, l125_f2, l126_f1, l126_f2, l127_f1, l127_f2, l128_f1, l128_f2, l129_f1, l129_f2, l130_f1, l130_f2, l131_f1, l131_f2, l132_f1, l132_f2, l133_f1, l133_f2, l134_f1, l134_f2, l135_f1, l135_f2, l136_f1, l136_f2, l137_f1, l137_f2, l138_f1, l138_f2, l139_f1, l139_f2, l140_f1, l140_f2, l141_f1, l141_f2, l142_f1, l142_f2, l143_f1, l143_f2, l144_f1, l144_f2, l145_f1, l145_f2, l146_f1, l146_f2, l147_f1, l147_f2, l148_f1, l148_f2, l149_f1, l149_f2, l150_f1, l150_f2, l151_f1, l151_f2, l152_f1, l152_f2, l153_f1, l153_f2, l154_f1, l154_f2, l155_f1, l155_f2, l156_f1, l156_f2, l157_f1, l157_f2, l158_f1, l158_f2, l159_f1, l159_f2, l160_f1, l160_f2, l161_f1, l161_f2, l162_f1, l162_f2, l163_f1, l163_f2, l164_f1, l164_f2, l165_f1, l165_f2, l166_f1, l166_f2, l167_f1, l167_f2, l168_f1, l168_f2, l169_f1, l169_f2, l170_f1, l170_f2, l171_f1, l171_f2, l172_f1, l172_f2, l173_f1, l173_f2, l174_f1, l174_f2, l175_f1, l175_f2, l176_f1, l176_f2, l177_f1, l177_f2, l178_f1, l178_f2, l179_f1, l179_f2, l180_f1, l180_f2, l181_f1, l181_f2, l182_f1, l182_f2, l183_f1, l183_f2, l184_f1, l184_f2, l185_f1, l185_f2, l186_f1, l186_f2, l187_f1, l187_f2, l188_f1, l188_f2, l189_f1, l189_f2, l190_f1, l190_f2, l191_f1, l191_f2, l192_f1, l192_f2, l193_f1, l193_f2, l194_f1, l194_f2, l195_f1, l195_f2, l196_f1, l196_f2, l197_f1, l197_f2, l198_f1, l198_f2, l199_f1, l199_f2, l200_f1, l200_f2, l201_f1, l201_f2, l202_f1, l202_f2, l203_f1, l203_f2, l204_f1, l204_f2, l205_f1, l205_f2, l206_f1, l206_f2, l207_f1, l207_f2, l208_f1, l208_f2, l209_f1, l209_f2, l210_f1, l210_f2, l211_f1, l211_f2, l212_f1, l212_f2, l213_f1, l213_f2, l214_f1, l214_f2, l215_f1, l215_f2, l216_f1, l216_f2, l217_f1, l217_f2, l218_f1, l218_f2, l219_f1, l219_f2, l220_f1, l220_f2, l221_f1, l221_f2, l222_f1, l222_f2, l223_f1, l223_f2, l224_f1, l224_f2, l225_f1, l225_f2, l226_f1, l226_f2, l227_f1, l227_f2, l228_f1, l228_f2, l229_f1, l229_f2, l230_f1, l230_f2, l231_f1, l231_f2, l232_f1, l232_f2, l233_f1, l233_f2, p_out1, p_out2) = /* routed forces */ l3_f1, l3_f2 + l4_f1, l4_f2 + l5_f1, l5_f2 + l6_f1, l6_f2 + l7_f1, l7_f2 + l8_f1, l8_f2 + l9_f1, l9_f2 + l10_f1, l10_f2 + l11_f1, l11_f2 + l12_f1, l12_f2 + l13_f1, l13_f2 + l14_f1, l14_f2 + l15_f1, l15_f2 + l16_f1, l16_f2 + l17_f1, l17_f2 + l18_f1, l18_f2 + l19_f1, l19_f2 + l20_f1, l20_f2 + l21_f1, l21_f2 + l22_f1, l22_f2 + l23_f1, l23_f2 + l24_f1, l24_f2 + l25_f1, l25_f2 + l26_f1, l26_f2 + l27_f1, l27_f2 + l28_f1, l28_f2 + l29_f1, l29_f2 + l30_f1, l30_f2 + l31_f1, l31_f2 + l32_f1, l32_f2 + l33_f1, l33_f2 + l34_f1, l34_f2 + l35_f1, l35_f2 + l36_f1, l36_f2 + l37_f1, l37_f2 + l38_f1, l38_f2 + l39_f1, l39_f2 + l40_f1, l40_f2 + l41_f1, l0_f2 + l41_f2 + l42_f1, l1_f2 + l42_f2 + l43_f1, l43_f2 + l44_f1, l44_f2 + l45_f1, l45_f2 + l46_f1, l46_f2 + l47_f1, l47_f2 + l48_f1, l48_f2 + l49_f1, l49_f2 + l50_f1, l50_f2 + l51_f1, l51_f2 + l52_f1, l52_f2 + l53_f1, l53_f2 + l54_f1, l54_f2 + l55_f1, l55_f2 + l56_f1, l56_f2 + l57_f1, l57_f2 + l58_f1, l58_f2 + l59_f1, l59_f2 + l60_f1, l60_f2 + l61_f1, l61_f2 + l62_f1, l62_f2 + l63_f1, l63_f2 + l64_f1, l64_f2 + l65_f1, l65_f2 + l66_f1, l66_f2 + l67_f1, l67_f2 + l68_f1, l68_f2 + l69_f1, l69_f2 + l70_f1, l70_f2 + l71_f1, l71_f2 + l72_f1, l72_f2 + l73_f1, l73_f2 + l74_f1, l74_f2 + l75_f1, l75_f2 + l76_f1, l76_f2 + l77_f1, l77_f2 + l78_f1, l78_f2 + l79_f1, l79_f2 + l80_f1, l80_f2 + l81_f1, l81_f2 + l82_f1, l82_f2 + l83_f1, l83_f2 + l84_f1, l84_f2 + l85_f1, l85_f2 + l86_f1, l86_f2 + l87_f1, l87_f2 + l88_f1, l88_f2 + l89_f1, l89_f2 + l90_f1, l90_f2 + l91_f1, l91_f2 + l92_f1, l92_f2 + l93_f1, l93_f2 + l94_f1, l94_f2 + l95_f1, l95_f2 + l96_f1, l96_f2 + l97_f1, l97_f2 + l98_f1, l98_f2 + l99_f1, l99_f2 + l100_f1, l100_f2 + l101_f1, l101_f2 + l102_f1, l102_f2 + l103_f1, l103_f2 + l104_f1, l104_f2 + l105_f1, l105_f2 + l106_f1, l106_f2 + l107_f1, l107_f2 + l108_f1, l108_f2 + l109_f1, l109_f2 + l110_f1, l110_f2 + l111_f1, l111_f2 + l112_f1, l112_f2 + l113_f1, l113_f2 + l114_f1, l114_f2 + l115_f1, l115_f2 + l116_f1, l116_f2 + l117_f1, l117_f2 + l118_f1, l2_f1 + l118_f2 + l119_f1, l119_f2 + l120_f1, l120_f2 + l121_f1, l121_f2 + l122_f1, l122_f2 + l123_f1, l123_f2 + l124_f1, l124_f2 + l125_f1, l125_f2 + l126_f1, l126_f2 + l127_f1, l127_f2 + l128_f1, l128_f2 + l129_f1, l129_f2 + l130_f1, l130_f2 + l131_f1, l131_f2 + l132_f1, l132_f2 + l133_f1, l133_f2 + l134_f1, l134_f2 + l135_f1, l135_f2 + l136_f1, l136_f2 + l137_f1, l137_f2 + l138_f1, l138_f2 + l139_f1, l139_f2 + l140_f1, l140_f2 + l141_f1, l141_f2 + l142_f1, l142_f2 + l143_f1, l143_f2 + l144_f1, l144_f2 + l145_f1, l145_f2 + l146_f1, l146_f2 + l147_f1, l147_f2 + l148_f1, l148_f2 + l149_f1, l149_f2 + l150_f1, l150_f2 + l151_f1, l151_f2 + l152_f1, l152_f2 + l153_f1, l153_f2 + l154_f1, l154_f2 + l155_f1, l155_f2 + l156_f1, l156_f2 + l157_f1, l157_f2 + l158_f1, l158_f2 + l159_f1, l159_f2 + l160_f1, l160_f2 + l161_f1, l161_f2 + l162_f1, l162_f2 + l163_f1, l163_f2 + l164_f1, l164_f2 + l165_f1, l165_f2 + l166_f1, l166_f2 + l167_f1, l167_f2 + l168_f1, l168_f2 + l169_f1, l169_f2 + l170_f1, l170_f2 + l171_f1, l171_f2 + l172_f1, l172_f2 + l173_f1, l173_f2 + l174_f1, l174_f2 + l175_f1, l175_f2 + l176_f1, l176_f2 + l177_f1, l177_f2 + l178_f1, l178_f2 + l179_f1, l179_f2 + l180_f1, l180_f2 + l181_f1, l181_f2 + l182_f1, l182_f2 + l183_f1, l183_f2 + l184_f1, l184_f2 + l185_f1, l185_f2 + l186_f1, l186_f2 + l187_f1, l187_f2 + l188_f1, l188_f2 + l189_f1, l189_f2 + l190_f1, l190_f2 + l191_f1, l191_f2 + l192_f1, l192_f2 + l193_f1, l193_f2 + l194_f1, l194_f2 + l195_f1, l195_f2 + l196_f1, l196_f2 + l197_f1, l197_f2 + l198_f1, l198_f2 + l199_f1, l199_f2 + l200_f1, l200_f2 + l201_f1, l201_f2 + l202_f1, l202_f2 + l203_f1, l203_f2 + l204_f1, l204_f2 + l205_f1, l205_f2 + l206_f1, l206_f2 + l207_f1, l207_f2 + l208_f1, l208_f2 + l209_f1, l209_f2 + l210_f1, l210_f2 + l211_f1, l211_f2 + l212_f1, l212_f2 + l213_f1, l213_f2 + l214_f1, l214_f2 + l215_f1, l215_f2 + l216_f1, l216_f2 + l217_f1, l217_f2 + l218_f1, l218_f2 + l219_f1, l219_f2 + l220_f1, l220_f2 + l221_f1, l221_f2 + l222_f1, l222_f2 + l223_f1, l223_f2 + l224_f1, l224_f2 + l225_f1, l225_f2 + l226_f1, l226_f2 + l227_f1, l227_f2 + l228_f1, l228_f2 + l229_f1, l229_f2 + l230_f1, l230_f2 + l231_f1, l231_f2 + l232_f1, l232_f2 + l233_f1, l233_f2, l0_f1 + l1_f1, l2_f2, /* pass-through */ p_out1, p_out2;
nbMass = 234;
nbPosIn = 2;
nbOut = 2;
};
process = in1, in2 : model:*(OutGain), *(OutGain);
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https://raw.githubusercontent.com/mi-creative/FaustPM_2021_examples/329e24a3d7c062cffb76416cff05a2922a3721f0/11_LargeBowedString.dsp
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faust
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Faust PM Workshop : Introduction to Mass-Interaction Modelling
Part 11: A larger bowed string model
write a specific position input signal operation here
write a specific position input signal operation here
routed positions
outputs
routed forces
pass-through
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import("stdfaust.lib");
OutGain = 0.6;
nlZ = hslider("Bow Pressure", 0, 0, 1, 0.01);
nlscale = 0.02;
str_M = 1.0;
str_K = 0.7;
str_Z = 0.001;
str_Zo = 0.0;
model = (
par(i, nbMass - nbPosIn, _), ro.interleave(nbPosIn, 2):
mi.ground(0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.oscil(str_M, 0, str_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.posInput(0),
mi.posInput(0):
RoutingMassToLink :
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.nlBow(nlZ, nlscale, 1, 0, 0.00),
mi.collision(0.1, 0.01, 0, 0.00, 0),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
mi.springDamper(str_K, str_Z, 0.00, 0.00),
par(i, nbOut, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
nbMass = 234;
nbPosIn = 2;
nbOut = 2;
};
process = in1, in2 : model:*(OutGain), *(OutGain);
|
8278a56a2e918a2ea595f781e86c61242f88b3481e8a27eb0d5b68fc29960116
|
mi-creative/FaustPM_2021_examples
|
12_TriangleGamelan.dsp
|
import("stdfaust.lib");
/* Faust PM Workshop : Introduction to Mass-Interaction Modelling */
/* Part 12: A Triange Gamelan Model */
intens = hslider("intensity", 0, 0, 5, 0.01);
in1 = button("Frc Input 1"): ba.impulsify * intens * -2; //write a specific force input signal operation here
in2 = button("Frc Input 2"): ba.impulsify * intens* -2; //write a specific force input signal operation here
in3 = button("Frc Input 3"): ba.impulsify * intens * -2; //write a specific force input signal operation here
OutGain = 1000;
t1_M = 1.0;
t1_K = hslider("t1 stiff", 0.1, 0.001, 0.3, 0.001);
t1_Z = 0.0004;
t1_Zo = 0.0;
t2_M = 1.0;
t2_K = hslider("t2 stiff", 0.1, 0.001, 0.3, 0.001);
t2_Z = 0.0004;
t2_Zo = 0.0;
t3_M = 1.0;
t3_K = hslider("t3 stiff", 0.1, 0.001, 0.3, 0.001);
t3_Z = 0.0004;
t3_Zo = 0.0;
model = (
mi.oscil(2, 0.001, 0.1, 0, 2, 2),
mi.oscil(2, 0.001, 0.1, 0, 2, 2),
mi.oscil(2, 0.001, 0.1, 0, 2, 2),
mi.oscil(1000, 1000, 1000, 0, 0, 0),
mi.ground(0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.ground(0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.ground(0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
par(i, nbFrcIn,_):
RoutingMassToLink ,
par(i, nbFrcIn,_):
mi.nlCollisionClipped(0., 0.0001, 0.1, 0.001, 0, 0.00, 2),
mi.nlCollisionClipped(0., 0.0001, 0.1, 0.001, 0, 0.00, 2),
mi.nlCollisionClipped(0., 0.0001, 0.1, 0.001, 0, 0.00, 2),
mi.spring(0.2, 0.00, 0),
mi.spring(0.2, 0.00, 0),
mi.spring(0.2, 0.00, 0),
mi.nlSpringDamperClipped(0.01, 0.005, 0.1, 0., 0.00, 0.00),
mi.nlSpringDamperClipped(0.01, 0.005, 0.1, 0., 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
par(i, nbOut+nbFrcIn, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
RoutingMassToLink(m0, m1, m2, m3, m4, m5, m6, m7, m8, m9, m10, m11, m12, m13, m14, m15, m16, m17, m18, m19, m20, m21, m22, m23, m24, m25, m26, m27, m28, m29, m30, m31, m32, m33, m34, m35, m36, m37, m38, m39, m40, m41, m42, m43, m44, m45, m46, m47, m48, m49, m50, m51, m52, m53, m54, m55, m56, m57, m58, m59, m60, m61, m62, m63, m64, m65, m66, m67, m68, m69, m70, m71, m72, m73, m74, m75, m76, m77, m78, m79, m80, m81, m82, m83, m84, m85, m86, m87, m88, m89, m90, m91, m92, m93, m94, m95, m96, m97, m98, m99, m100, m101, m102, m103, m104, m105, m106, m107, m108, m109, m110, m111, m112, m113, m114, m115, m116, m117, m118, m119, m120, m121, m122, m123, m124, m125, m126, m127, m128, m129, m130, m131, m132, m133, m134, m135, m136, m137, m138, m139, m140, m141, m142, m143, m144, m145, m146, m147, m148, m149, m150, m151, m152, m153, m154, m155, m156, m157, m158, m159, m160, m161, m162, m163, m164, m165, m166, m167, m168) = /* routed positions */ m48, m0, m88, m1, m137, m2, m35, m3, m90, m3, m145, m3, m51, m87, m161, m87, m4, m5, m5, m6, m6, m7, m7, m8, m8, m9, m9, m10, m10, m11, m11, m12, m12, m13, m14, m15, m15, m16, m16, m17, m17, m18, m18, m19, m19, m20, m20, m21, m21, m22, m23, m24, m24, m25, m25, m26, m26, m27, m27, m28, m28, m29, m29, m30, m31, m32, m32, m33, m33, m34, m34, m35, m35, m36, m36, m37, m38, m39, m39, m40, m40, m41, m41, m42, m42, m43, m44, m45, m45, m46, m46, m47, m47, m48, m49, m50, m50, m51, m51, m52, m53, m54, m54, m55, m56, m57, m4, m14, m5, m15, m6, m16, m7, m17, m8, m18, m9, m19, m10, m20, m11, m21, m12, m22, m14, m23, m15, m24, m16, m25, m17, m26, m18, m27, m19, m28, m20, m29, m21, m30, m23, m31, m24, m32, m25, m33, m26, m34, m27, m35, m28, m36, m29, m37, m31, m38, m32, m39, m33, m40, m34, m41, m35, m42, m36, m43, m38, m44, m39, m45, m40, m46, m41, m47, m42, m48, m44, m49, m45, m50, m46, m51, m47, m52, m49, m53, m50, m54, m51, m55, m53, m56, m54, m57, m56, m58, m5, m14, m6, m15, m7, m16, m8, m17, m9, m18, m10, m19, m11, m20, m12, m21, m13, m22, m15, m23, m16, m24, m17, m25, m18, m26, m19, m27, m20, m28, m21, m29, m22, m30, m24, m31, m25, m32, m26, m33, m27, m34, m28, m35, m29, m36, m30, m37, m32, m38, m33, m39, m34, m40, m35, m41, m36, m42, m37, m43, m39, m44, m40, m45, m41, m46, m42, m47, m43, m48, m45, m49, m46, m50, m47, m51, m48, m52, m50, m53, m51, m54, m52, m55, m54, m56, m55, m57, m57, m58, m59, m60, m60, m61, m61, m62, m62, m63, m63, m64, m64, m65, m65, m66, m66, m67, m67, m68, m69, m70, m70, m71, m71, m72, m72, m73, m73, m74, m74, m75, m75, m76, m76, m77, m78, m79, m79, m80, m80, m81, m81, m82, m82, m83, m83, m84, m84, m85, m86, m87, m87, m88, m88, m89, m89, m90, m90, m91, m91, m92, m93, m94, m94, m95, m95, m96, m96, m97, m97, m98, m99, m100, m100, m101, m101, m102, m102, m103, m104, m105, m105, m106, m106, m107, m108, m109, m109, m110, m111, m112, m59, m69, m60, m70, m61, m71, m62, m72, m63, m73, m64, m74, m65, m75, m66, m76, m67, m77, m69, m78, m70, m79, m71, m80, m72, m81, m73, m82, m74, m83, m75, m84, m76, m85, m78, m86, m79, m87, m80, m88, m81, m89, m82, m90, m83, m91, m84, m92, m86, m93, m87, m94, m88, m95, m89, m96, m90, m97, m91, m98, m93, m99, m94, m100, m95, m101, m96, m102, m97, m103, m99, m104, m100, m105, m101, m106, m102, m107, m104, m108, m105, m109, m106, m110, m108, m111, m109, m112, m111, m113, m60, m69, m61, m70, m62, m71, m63, m72, m64, m73, m65, m74, m66, m75, m67, m76, m68, m77, m70, m78, m71, m79, m72, m80, m73, m81, m74, m82, m75, m83, m76, m84, m77, m85, m79, m86, m80, m87, m81, m88, m82, m89, m83, m90, m84, m91, m85, m92, m87, m93, m88, m94, m89, m95, m90, m96, m91, m97, m92, m98, m94, m99, m95, m100, m96, m101, m97, m102, m98, m103, m100, m104, m101, m105, m102, m106, m103, m107, m105, m108, m106, m109, m107, m110, m109, m111, m110, m112, m112, m113, m114, m115, m115, m116, m116, m117, m117, m118, m118, m119, m119, m120, m120, m121, m121, m122, m122, m123, m124, m125, m125, m126, m126, m127, m127, m128, m128, m129, m129, m130, m130, m131, m131, m132, m133, m134, m134, m135, m135, m136, m136, m137, m137, m138, m138, m139, m139, m140, m141, m142, m142, m143, m143, m144, m144, m145, m145, m146, m146, m147, m148, m149, m149, m150, m150, m151, m151, m152, m152, m153, m154, m155, m155, m156, m156, m157, m157, m158, m159, m160, m160, m161, m161, m162, m163, m164, m164, m165, m166, m167, m114, m124, m115, m125, m116, m126, m117, m127, m118, m128, m119, m129, m120, m130, m121, m131, m122, m132, m124, m133, m125, m134, m126, m135, m127, m136, m128, m137, m129, m138, m130, m139, m131, m140, m133, m141, m134, m142, m135, m143, m136, m144, m137, m145, m138, m146, m139, m147, m141, m148, m142, m149, m143, m150, m144, m151, m145, m152, m146, m153, m148, m154, m149, m155, m150, m156, m151, m157, m152, m158, m154, m159, m155, m160, m156, m161, m157, m162, m159, m163, m160, m164, m161, m165, m163, m166, m164, m167, m166, m168, m115, m124, m116, m125, m117, m126, m118, m127, m119, m128, m120, m129, m121, m130, m122, m131, m123, m132, m125, m133, m126, m134, m127, m135, m128, m136, m129, m137, m130, m138, m131, m139, m132, m140, m134, m141, m135, m142, m136, m143, m137, m144, m138, m145, m139, m146, m140, m147, m142, m148, m143, m149, m144, m150, m145, m151, m146, m152, m147, m153, m149, m154, m150, m155, m151, m156, m152, m157, m153, m158, m155, m159, m156, m160, m157, m161, m158, m162, m160, m163, m161, m164, m162, m165, m164, m166, m165, m167, m167, m168, /* outputs */ m3;
RoutingLinkToMass(l0_f1, l0_f2, l1_f1, l1_f2, l2_f1, l2_f2, l3_f1, l3_f2, l4_f1, l4_f2, l5_f1, l5_f2, l6_f1, l6_f2, l7_f1, l7_f2, l8_f1, l8_f2, l9_f1, l9_f2, l10_f1, l10_f2, l11_f1, l11_f2, l12_f1, l12_f2, l13_f1, l13_f2, l14_f1, l14_f2, l15_f1, l15_f2, l16_f1, l16_f2, l17_f1, l17_f2, l18_f1, l18_f2, l19_f1, l19_f2, l20_f1, l20_f2, l21_f1, l21_f2, l22_f1, l22_f2, l23_f1, l23_f2, l24_f1, l24_f2, l25_f1, l25_f2, l26_f1, l26_f2, l27_f1, l27_f2, l28_f1, l28_f2, l29_f1, l29_f2, l30_f1, l30_f2, l31_f1, l31_f2, l32_f1, l32_f2, l33_f1, l33_f2, l34_f1, l34_f2, l35_f1, l35_f2, l36_f1, l36_f2, l37_f1, l37_f2, l38_f1, l38_f2, l39_f1, l39_f2, l40_f1, l40_f2, l41_f1, l41_f2, l42_f1, l42_f2, l43_f1, l43_f2, l44_f1, l44_f2, l45_f1, l45_f2, l46_f1, l46_f2, l47_f1, l47_f2, l48_f1, l48_f2, l49_f1, l49_f2, l50_f1, l50_f2, l51_f1, l51_f2, l52_f1, l52_f2, l53_f1, l53_f2, l54_f1, l54_f2, l55_f1, l55_f2, l56_f1, l56_f2, l57_f1, l57_f2, l58_f1, l58_f2, l59_f1, l59_f2, l60_f1, l60_f2, l61_f1, l61_f2, l62_f1, l62_f2, l63_f1, l63_f2, l64_f1, l64_f2, l65_f1, l65_f2, l66_f1, l66_f2, l67_f1, l67_f2, l68_f1, l68_f2, l69_f1, l69_f2, l70_f1, l70_f2, l71_f1, l71_f2, l72_f1, l72_f2, l73_f1, l73_f2, l74_f1, l74_f2, l75_f1, l75_f2, l76_f1, l76_f2, l77_f1, l77_f2, l78_f1, l78_f2, l79_f1, l79_f2, l80_f1, l80_f2, l81_f1, l81_f2, l82_f1, l82_f2, l83_f1, l83_f2, l84_f1, l84_f2, l85_f1, l85_f2, l86_f1, l86_f2, l87_f1, l87_f2, l88_f1, l88_f2, l89_f1, l89_f2, l90_f1, l90_f2, l91_f1, l91_f2, l92_f1, l92_f2, l93_f1, l93_f2, l94_f1, l94_f2, l95_f1, l95_f2, l96_f1, l96_f2, l97_f1, l97_f2, l98_f1, l98_f2, l99_f1, l99_f2, l100_f1, l100_f2, l101_f1, l101_f2, l102_f1, l102_f2, l103_f1, l103_f2, l104_f1, l104_f2, l105_f1, l105_f2, l106_f1, l106_f2, l107_f1, l107_f2, l108_f1, l108_f2, l109_f1, l109_f2, l110_f1, l110_f2, l111_f1, l111_f2, l112_f1, l112_f2, l113_f1, l113_f2, l114_f1, l114_f2, l115_f1, l115_f2, l116_f1, l116_f2, l117_f1, l117_f2, l118_f1, l118_f2, l119_f1, l119_f2, l120_f1, l120_f2, l121_f1, l121_f2, l122_f1, l122_f2, l123_f1, l123_f2, l124_f1, l124_f2, l125_f1, l125_f2, l126_f1, l126_f2, l127_f1, l127_f2, l128_f1, l128_f2, l129_f1, l129_f2, l130_f1, l130_f2, l131_f1, l131_f2, l132_f1, l132_f2, l133_f1, l133_f2, l134_f1, l134_f2, l135_f1, l135_f2, l136_f1, l136_f2, l137_f1, l137_f2, l138_f1, l138_f2, l139_f1, l139_f2, l140_f1, l140_f2, l141_f1, l141_f2, l142_f1, l142_f2, l143_f1, l143_f2, l144_f1, l144_f2, l145_f1, l145_f2, l146_f1, l146_f2, l147_f1, l147_f2, l148_f1, l148_f2, l149_f1, l149_f2, l150_f1, l150_f2, l151_f1, l151_f2, l152_f1, l152_f2, l153_f1, l153_f2, l154_f1, l154_f2, l155_f1, l155_f2, l156_f1, l156_f2, l157_f1, l157_f2, l158_f1, l158_f2, l159_f1, l159_f2, l160_f1, l160_f2, l161_f1, l161_f2, l162_f1, l162_f2, l163_f1, l163_f2, l164_f1, l164_f2, l165_f1, l165_f2, l166_f1, l166_f2, l167_f1, l167_f2, l168_f1, l168_f2, l169_f1, l169_f2, l170_f1, l170_f2, l171_f1, l171_f2, l172_f1, l172_f2, l173_f1, l173_f2, l174_f1, l174_f2, l175_f1, l175_f2, l176_f1, l176_f2, l177_f1, l177_f2, l178_f1, l178_f2, l179_f1, l179_f2, l180_f1, l180_f2, l181_f1, l181_f2, l182_f1, l182_f2, l183_f1, l183_f2, l184_f1, l184_f2, l185_f1, l185_f2, l186_f1, l186_f2, l187_f1, l187_f2, l188_f1, l188_f2, l189_f1, l189_f2, l190_f1, l190_f2, l191_f1, l191_f2, l192_f1, l192_f2, l193_f1, l193_f2, l194_f1, l194_f2, l195_f1, l195_f2, l196_f1, l196_f2, l197_f1, l197_f2, l198_f1, l198_f2, l199_f1, l199_f2, l200_f1, l200_f2, l201_f1, l201_f2, l202_f1, l202_f2, l203_f1, l203_f2, l204_f1, l204_f2, l205_f1, l205_f2, l206_f1, l206_f2, l207_f1, l207_f2, l208_f1, l208_f2, l209_f1, l209_f2, l210_f1, l210_f2, l211_f1, l211_f2, l212_f1, l212_f2, l213_f1, l213_f2, l214_f1, l214_f2, l215_f1, l215_f2, l216_f1, l216_f2, l217_f1, l217_f2, l218_f1, l218_f2, l219_f1, l219_f2, l220_f1, l220_f2, l221_f1, l221_f2, l222_f1, l222_f2, l223_f1, l223_f2, l224_f1, l224_f2, l225_f1, l225_f2, l226_f1, l226_f2, l227_f1, l227_f2, l228_f1, l228_f2, l229_f1, l229_f2, l230_f1, l230_f2, l231_f1, l231_f2, l232_f1, l232_f2, l233_f1, l233_f2, l234_f1, l234_f2, l235_f1, l235_f2, l236_f1, l236_f2, l237_f1, l237_f2, l238_f1, l238_f2, l239_f1, l239_f2, l240_f1, l240_f2, l241_f1, l241_f2, l242_f1, l242_f2, l243_f1, l243_f2, l244_f1, l244_f2, l245_f1, l245_f2, l246_f1, l246_f2, l247_f1, l247_f2, l248_f1, l248_f2, l249_f1, l249_f2, l250_f1, l250_f2, l251_f1, l251_f2, l252_f1, l252_f2, l253_f1, l253_f2, l254_f1, l254_f2, l255_f1, l255_f2, l256_f1, l256_f2, l257_f1, l257_f2, l258_f1, l258_f2, l259_f1, l259_f2, l260_f1, l260_f2, l261_f1, l261_f2, l262_f1, l262_f2, l263_f1, l263_f2, l264_f1, l264_f2, l265_f1, l265_f2, l266_f1, l266_f2, l267_f1, l267_f2, l268_f1, l268_f2, l269_f1, l269_f2, l270_f1, l270_f2, l271_f1, l271_f2, l272_f1, l272_f2, l273_f1, l273_f2, l274_f1, l274_f2, l275_f1, l275_f2, l276_f1, l276_f2, l277_f1, l277_f2, l278_f1, l278_f2, l279_f1, l279_f2, l280_f1, l280_f2, l281_f1, l281_f2, l282_f1, l282_f2, l283_f1, l283_f2, l284_f1, l284_f2, l285_f1, l285_f2, l286_f1, l286_f2, l287_f1, l287_f2, l288_f1, l288_f2, l289_f1, l289_f2, l290_f1, l290_f2, l291_f1, l291_f2, l292_f1, l292_f2, l293_f1, l293_f2, l294_f1, l294_f2, l295_f1, l295_f2, l296_f1, l296_f2, l297_f1, l297_f2, l298_f1, l298_f2, l299_f1, l299_f2, l300_f1, l300_f2, l301_f1, l301_f2, l302_f1, l302_f2, l303_f1, l303_f2, l304_f1, l304_f2, l305_f1, l305_f2, l306_f1, l306_f2, l307_f1, l307_f2, l308_f1, l308_f2, l309_f1, l309_f2, l310_f1, l310_f2, l311_f1, l311_f2, l312_f1, l312_f2, l313_f1, l313_f2, l314_f1, l314_f2, l315_f1, l315_f2, l316_f1, l316_f2, l317_f1, l317_f2, l318_f1, l318_f2, l319_f1, l319_f2, l320_f1, l320_f2, l321_f1, l321_f2, l322_f1, l322_f2, l323_f1, l323_f2, l324_f1, l324_f2, l325_f1, l325_f2, l326_f1, l326_f2, l327_f1, l327_f2, l328_f1, l328_f2, l329_f1, l329_f2, l330_f1, l330_f2, l331_f1, l331_f2, l332_f1, l332_f2, l333_f1, l333_f2, l334_f1, l334_f2, l335_f1, l335_f2, l336_f1, l336_f2, l337_f1, l337_f2, l338_f1, l338_f2, l339_f1, l339_f2, l340_f1, l340_f2, l341_f1, l341_f2, l342_f1, l342_f2, l343_f1, l343_f2, l344_f1, l344_f2, l345_f1, l345_f2, l346_f1, l346_f2, l347_f1, l347_f2, l348_f1, l348_f2, l349_f1, l349_f2, l350_f1, l350_f2, l351_f1, l351_f2, l352_f1, l352_f2, l353_f1, l353_f2, l354_f1, l354_f2, l355_f1, l355_f2, l356_f1, l356_f2, l357_f1, l357_f2, l358_f1, l358_f2, l359_f1, l359_f2, l360_f1, l360_f2, l361_f1, l361_f2, l362_f1, l362_f2, l363_f1, l363_f2, l364_f1, l364_f2, l365_f1, l365_f2, l366_f1, l366_f2, l367_f1, l367_f2, l368_f1, l368_f2, l369_f1, l369_f2, l370_f1, l370_f2, l371_f1, l371_f2, l372_f1, l372_f2, l373_f1, l373_f2, l374_f1, l374_f2, l375_f1, l375_f2, l376_f1, l376_f2, l377_f1, l377_f2, l378_f1, l378_f2, l379_f1, l379_f2, l380_f1, l380_f2, l381_f1, l381_f2, l382_f1, l382_f2, l383_f1, l383_f2, l384_f1, l384_f2, l385_f1, l385_f2, l386_f1, l386_f2, l387_f1, l387_f2, l388_f1, l388_f2, l389_f1, l389_f2, l390_f1, l390_f2, l391_f1, l391_f2, l392_f1, l392_f2, l393_f1, l393_f2, l394_f1, l394_f2, l395_f1, l395_f2, l396_f1, l396_f2, l397_f1, l397_f2, l398_f1, l398_f2, l399_f1, l399_f2, l400_f1, l400_f2, l401_f1, l401_f2, l402_f1, l402_f2, l403_f1, l403_f2, l404_f1, l404_f2, l405_f1, l405_f2, l406_f1, l406_f2, l407_f1, l407_f2, l408_f1, l408_f2, l409_f1, l409_f2, l410_f1, l410_f2, l411_f1, l411_f2, l412_f1, l412_f2, p_out1, f_in1, f_in2, f_in3) = /* routed forces */ f_in1 + l0_f2, f_in2 + l1_f2, f_in3 + l2_f2, l3_f2 + l4_f2 + l5_f2, l8_f1 + l53_f1, l8_f2 + l9_f1 + l54_f1 + l98_f1, l9_f2 + l10_f1 + l55_f1 + l99_f1, l10_f2 + l11_f1 + l56_f1 + l100_f1, l11_f2 + l12_f1 + l57_f1 + l101_f1, l12_f2 + l13_f1 + l58_f1 + l102_f1, l13_f2 + l14_f1 + l59_f1 + l103_f1, l14_f2 + l15_f1 + l60_f1 + l104_f1, l15_f2 + l16_f1 + l61_f1 + l105_f1, l16_f2 + l106_f1, l17_f1 + l53_f2 + l62_f1 + l98_f2, l17_f2 + l18_f1 + l54_f2 + l63_f1 + l99_f2 + l107_f1, l18_f2 + l19_f1 + l55_f2 + l64_f1 + l100_f2 + l108_f1, l19_f2 + l20_f1 + l56_f2 + l65_f1 + l101_f2 + l109_f1, l20_f2 + l21_f1 + l57_f2 + l66_f1 + l102_f2 + l110_f1, l21_f2 + l22_f1 + l58_f2 + l67_f1 + l103_f2 + l111_f1, l22_f2 + l23_f1 + l59_f2 + l68_f1 + l104_f2 + l112_f1, l23_f2 + l24_f1 + l60_f2 + l69_f1 + l105_f2 + l113_f1, l24_f2 + l61_f2 + l106_f2 + l114_f1, l25_f1 + l62_f2 + l70_f1 + l107_f2, l25_f2 + l26_f1 + l63_f2 + l71_f1 + l108_f2 + l115_f1, l26_f2 + l27_f1 + l64_f2 + l72_f1 + l109_f2 + l116_f1, l27_f2 + l28_f1 + l65_f2 + l73_f1 + l110_f2 + l117_f1, l28_f2 + l29_f1 + l66_f2 + l74_f1 + l111_f2 + l118_f1, l29_f2 + l30_f1 + l67_f2 + l75_f1 + l112_f2 + l119_f1, l30_f2 + l31_f1 + l68_f2 + l76_f1 + l113_f2 + l120_f1, l31_f2 + l69_f2 + l114_f2 + l121_f1, l32_f1 + l70_f2 + l77_f1 + l115_f2, l32_f2 + l33_f1 + l71_f2 + l78_f1 + l116_f2 + l122_f1, l33_f2 + l34_f1 + l72_f2 + l79_f1 + l117_f2 + l123_f1, l34_f2 + l35_f1 + l73_f2 + l80_f1 + l118_f2 + l124_f1, l3_f1 + l35_f2 + l36_f1 + l74_f2 + l81_f1 + l119_f2 + l125_f1, l36_f2 + l37_f1 + l75_f2 + l82_f1 + l120_f2 + l126_f1, l37_f2 + l76_f2 + l121_f2 + l127_f1, l38_f1 + l77_f2 + l83_f1 + l122_f2, l38_f2 + l39_f1 + l78_f2 + l84_f1 + l123_f2 + l128_f1, l39_f2 + l40_f1 + l79_f2 + l85_f1 + l124_f2 + l129_f1, l40_f2 + l41_f1 + l80_f2 + l86_f1 + l125_f2 + l130_f1, l41_f2 + l42_f1 + l81_f2 + l87_f1 + l126_f2 + l131_f1, l42_f2 + l82_f2 + l127_f2 + l132_f1, l43_f1 + l83_f2 + l88_f1 + l128_f2, l43_f2 + l44_f1 + l84_f2 + l89_f1 + l129_f2 + l133_f1, l44_f2 + l45_f1 + l85_f2 + l90_f1 + l130_f2 + l134_f1, l45_f2 + l46_f1 + l86_f2 + l91_f1 + l131_f2 + l135_f1, l0_f1 + l46_f2 + l87_f2 + l132_f2 + l136_f1, l47_f1 + l88_f2 + l92_f1 + l133_f2, l47_f2 + l48_f1 + l89_f2 + l93_f1 + l134_f2 + l137_f1, l6_f1 + l48_f2 + l49_f1 + l90_f2 + l94_f1 + l135_f2 + l138_f1, l49_f2 + l91_f2 + l136_f2 + l139_f1, l50_f1 + l92_f2 + l95_f1 + l137_f2, l50_f2 + l51_f1 + l93_f2 + l96_f1 + l138_f2 + l140_f1, l51_f2 + l94_f2 + l139_f2 + l141_f1, l52_f1 + l95_f2 + l97_f1 + l140_f2, l52_f2 + l96_f2 + l141_f2 + l142_f1, l97_f2 + l142_f2, l143_f1 + l188_f1, l143_f2 + l144_f1 + l189_f1 + l233_f1, l144_f2 + l145_f1 + l190_f1 + l234_f1, l145_f2 + l146_f1 + l191_f1 + l235_f1, l146_f2 + l147_f1 + l192_f1 + l236_f1, l147_f2 + l148_f1 + l193_f1 + l237_f1, l148_f2 + l149_f1 + l194_f1 + l238_f1, l149_f2 + l150_f1 + l195_f1 + l239_f1, l150_f2 + l151_f1 + l196_f1 + l240_f1, l151_f2 + l241_f1, l152_f1 + l188_f2 + l197_f1 + l233_f2, l152_f2 + l153_f1 + l189_f2 + l198_f1 + l234_f2 + l242_f1, l153_f2 + l154_f1 + l190_f2 + l199_f1 + l235_f2 + l243_f1, l154_f2 + l155_f1 + l191_f2 + l200_f1 + l236_f2 + l244_f1, l155_f2 + l156_f1 + l192_f2 + l201_f1 + l237_f2 + l245_f1, l156_f2 + l157_f1 + l193_f2 + l202_f1 + l238_f2 + l246_f1, l157_f2 + l158_f1 + l194_f2 + l203_f1 + l239_f2 + l247_f1, l158_f2 + l159_f1 + l195_f2 + l204_f1 + l240_f2 + l248_f1, l159_f2 + l196_f2 + l241_f2 + l249_f1, l160_f1 + l197_f2 + l205_f1 + l242_f2, l160_f2 + l161_f1 + l198_f2 + l206_f1 + l243_f2 + l250_f1, l161_f2 + l162_f1 + l199_f2 + l207_f1 + l244_f2 + l251_f1, l162_f2 + l163_f1 + l200_f2 + l208_f1 + l245_f2 + l252_f1, l163_f2 + l164_f1 + l201_f2 + l209_f1 + l246_f2 + l253_f1, l164_f2 + l165_f1 + l202_f2 + l210_f1 + l247_f2 + l254_f1, l165_f2 + l166_f1 + l203_f2 + l211_f1 + l248_f2 + l255_f1, l166_f2 + l204_f2 + l249_f2 + l256_f1, l167_f1 + l205_f2 + l212_f1 + l250_f2, l6_f2 + l7_f2 + l167_f2 + l168_f1 + l206_f2 + l213_f1 + l251_f2 + l257_f1, l1_f1 + l168_f2 + l169_f1 + l207_f2 + l214_f1 + l252_f2 + l258_f1, l169_f2 + l170_f1 + l208_f2 + l215_f1 + l253_f2 + l259_f1, l4_f1 + l170_f2 + l171_f1 + l209_f2 + l216_f1 + l254_f2 + l260_f1, l171_f2 + l172_f1 + l210_f2 + l217_f1 + l255_f2 + l261_f1, l172_f2 + l211_f2 + l256_f2 + l262_f1, l173_f1 + l212_f2 + l218_f1 + l257_f2, l173_f2 + l174_f1 + l213_f2 + l219_f1 + l258_f2 + l263_f1, l174_f2 + l175_f1 + l214_f2 + l220_f1 + l259_f2 + l264_f1, l175_f2 + l176_f1 + l215_f2 + l221_f1 + l260_f2 + l265_f1, l176_f2 + l177_f1 + l216_f2 + l222_f1 + l261_f2 + l266_f1, l177_f2 + l217_f2 + l262_f2 + l267_f1, l178_f1 + l218_f2 + l223_f1 + l263_f2, l178_f2 + l179_f1 + l219_f2 + l224_f1 + l264_f2 + l268_f1, l179_f2 + l180_f1 + l220_f2 + l225_f1 + l265_f2 + l269_f1, l180_f2 + l181_f1 + l221_f2 + l226_f1 + l266_f2 + l270_f1, l181_f2 + l222_f2 + l267_f2 + l271_f1, l182_f1 + l223_f2 + l227_f1 + l268_f2, l182_f2 + l183_f1 + l224_f2 + l228_f1 + l269_f2 + l272_f1, l183_f2 + l184_f1 + l225_f2 + l229_f1 + l270_f2 + l273_f1, l184_f2 + l226_f2 + l271_f2 + l274_f1, l185_f1 + l227_f2 + l230_f1 + l272_f2, l185_f2 + l186_f1 + l228_f2 + l231_f1 + l273_f2 + l275_f1, l186_f2 + l229_f2 + l274_f2 + l276_f1, l187_f1 + l230_f2 + l232_f1 + l275_f2, l187_f2 + l231_f2 + l276_f2 + l277_f1, l232_f2 + l277_f2, l278_f1 + l323_f1, l278_f2 + l279_f1 + l324_f1 + l368_f1, l279_f2 + l280_f1 + l325_f1 + l369_f1, l280_f2 + l281_f1 + l326_f1 + l370_f1, l281_f2 + l282_f1 + l327_f1 + l371_f1, l282_f2 + l283_f1 + l328_f1 + l372_f1, l283_f2 + l284_f1 + l329_f1 + l373_f1, l284_f2 + l285_f1 + l330_f1 + l374_f1, l285_f2 + l286_f1 + l331_f1 + l375_f1, l286_f2 + l376_f1, l287_f1 + l323_f2 + l332_f1 + l368_f2, l287_f2 + l288_f1 + l324_f2 + l333_f1 + l369_f2 + l377_f1, l288_f2 + l289_f1 + l325_f2 + l334_f1 + l370_f2 + l378_f1, l289_f2 + l290_f1 + l326_f2 + l335_f1 + l371_f2 + l379_f1, l290_f2 + l291_f1 + l327_f2 + l336_f1 + l372_f2 + l380_f1, l291_f2 + l292_f1 + l328_f2 + l337_f1 + l373_f2 + l381_f1, l292_f2 + l293_f1 + l329_f2 + l338_f1 + l374_f2 + l382_f1, l293_f2 + l294_f1 + l330_f2 + l339_f1 + l375_f2 + l383_f1, l294_f2 + l331_f2 + l376_f2 + l384_f1, l295_f1 + l332_f2 + l340_f1 + l377_f2, l295_f2 + l296_f1 + l333_f2 + l341_f1 + l378_f2 + l385_f1, l296_f2 + l297_f1 + l334_f2 + l342_f1 + l379_f2 + l386_f1, l297_f2 + l298_f1 + l335_f2 + l343_f1 + l380_f2 + l387_f1, l2_f1 + l298_f2 + l299_f1 + l336_f2 + l344_f1 + l381_f2 + l388_f1, l299_f2 + l300_f1 + l337_f2 + l345_f1 + l382_f2 + l389_f1, l300_f2 + l301_f1 + l338_f2 + l346_f1 + l383_f2 + l390_f1, l301_f2 + l339_f2 + l384_f2 + l391_f1, l302_f1 + l340_f2 + l347_f1 + l385_f2, l302_f2 + l303_f1 + l341_f2 + l348_f1 + l386_f2 + l392_f1, l303_f2 + l304_f1 + l342_f2 + l349_f1 + l387_f2 + l393_f1, l304_f2 + l305_f1 + l343_f2 + l350_f1 + l388_f2 + l394_f1, l5_f1 + l305_f2 + l306_f1 + l344_f2 + l351_f1 + l389_f2 + l395_f1, l306_f2 + l307_f1 + l345_f2 + l352_f1 + l390_f2 + l396_f1, l307_f2 + l346_f2 + l391_f2 + l397_f1, l308_f1 + l347_f2 + l353_f1 + l392_f2, l308_f2 + l309_f1 + l348_f2 + l354_f1 + l393_f2 + l398_f1, l309_f2 + l310_f1 + l349_f2 + l355_f1 + l394_f2 + l399_f1, l310_f2 + l311_f1 + l350_f2 + l356_f1 + l395_f2 + l400_f1, l311_f2 + l312_f1 + l351_f2 + l357_f1 + l396_f2 + l401_f1, l312_f2 + l352_f2 + l397_f2 + l402_f1, l313_f1 + l353_f2 + l358_f1 + l398_f2, l313_f2 + l314_f1 + l354_f2 + l359_f1 + l399_f2 + l403_f1, l314_f2 + l315_f1 + l355_f2 + l360_f1 + l400_f2 + l404_f1, l315_f2 + l316_f1 + l356_f2 + l361_f1 + l401_f2 + l405_f1, l316_f2 + l357_f2 + l402_f2 + l406_f1, l317_f1 + l358_f2 + l362_f1 + l403_f2, l317_f2 + l318_f1 + l359_f2 + l363_f1 + l404_f2 + l407_f1, l7_f1 + l318_f2 + l319_f1 + l360_f2 + l364_f1 + l405_f2 + l408_f1, l319_f2 + l361_f2 + l406_f2 + l409_f1, l320_f1 + l362_f2 + l365_f1 + l407_f2, l320_f2 + l321_f1 + l363_f2 + l366_f1 + l408_f2 + l410_f1, l321_f2 + l364_f2 + l409_f2 + l411_f1, l322_f1 + l365_f2 + l367_f1 + l410_f2, l322_f2 + l366_f2 + l411_f2 + l412_f1, l367_f2 + l412_f2, /* pass-through */ p_out1;
nbMass = 169;
nbFrcIn = 3;
nbOut = 1;
};
process = in1, in2, in3 : model:*(OutGain);
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https://raw.githubusercontent.com/mi-creative/FaustPM_2021_examples/329e24a3d7c062cffb76416cff05a2922a3721f0/12_TriangleGamelan.dsp
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faust
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Faust PM Workshop : Introduction to Mass-Interaction Modelling
Part 12: A Triange Gamelan Model
write a specific force input signal operation here
write a specific force input signal operation here
write a specific force input signal operation here
routed positions
outputs
routed forces
pass-through
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import("stdfaust.lib");
intens = hslider("intensity", 0, 0, 5, 0.01);
OutGain = 1000;
t1_M = 1.0;
t1_K = hslider("t1 stiff", 0.1, 0.001, 0.3, 0.001);
t1_Z = 0.0004;
t1_Zo = 0.0;
t2_M = 1.0;
t2_K = hslider("t2 stiff", 0.1, 0.001, 0.3, 0.001);
t2_Z = 0.0004;
t2_Zo = 0.0;
t3_M = 1.0;
t3_K = hslider("t3 stiff", 0.1, 0.001, 0.3, 0.001);
t3_Z = 0.0004;
t3_Zo = 0.0;
model = (
mi.oscil(2, 0.001, 0.1, 0, 2, 2),
mi.oscil(2, 0.001, 0.1, 0, 2, 2),
mi.oscil(2, 0.001, 0.1, 0, 2, 2),
mi.oscil(1000, 1000, 1000, 0, 0, 0),
mi.ground(0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.oscil(t1_M, 0, t1_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.ground(0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.oscil(t2_M, 0, t2_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.ground(0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.oscil(t3_M, 0, t3_Zo, 0, 0.00, 0.00),
mi.ground(0.00),
par(i, nbFrcIn,_):
RoutingMassToLink ,
par(i, nbFrcIn,_):
mi.nlCollisionClipped(0., 0.0001, 0.1, 0.001, 0, 0.00, 2),
mi.nlCollisionClipped(0., 0.0001, 0.1, 0.001, 0, 0.00, 2),
mi.nlCollisionClipped(0., 0.0001, 0.1, 0.001, 0, 0.00, 2),
mi.spring(0.2, 0.00, 0),
mi.spring(0.2, 0.00, 0),
mi.spring(0.2, 0.00, 0),
mi.nlSpringDamperClipped(0.01, 0.005, 0.1, 0., 0.00, 0.00),
mi.nlSpringDamperClipped(0.01, 0.005, 0.1, 0., 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t1_K, t1_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t2_K, t2_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
mi.springDamper(t3_K, t3_Z, 0.00, 0.00),
par(i, nbOut+nbFrcIn, _):
RoutingLinkToMass
)~par(i, nbMass, _):
par(i, nbMass, !), par(i, nbOut , _)
with{
nbMass = 169;
nbFrcIn = 3;
nbOut = 1;
};
process = in1, in2, in3 : model:*(OutGain);
|
5de6d3c76994dc5b100ecbb0c9551d8e88c1a74be1404f639e835d28a1f06ef2
|
AlessandraVardeu/esercizi
|
Sommasottrazione.dsp
|
import("stdfaust.lib");
process = _,_ // questo è un commento. 2 canali
<: // dupplica i canali
_+_,// somma i canali
_-_ ;// sottrae i canali
|
https://raw.githubusercontent.com/AlessandraVardeu/esercizi/795f99b7d6cd0ae694966eedb3d71040a216cbe7/Faust/Sommasottrazione.dsp
|
faust
|
questo è un commento. 2 canali
dupplica i canali
somma i canali
sottrae i canali
|
import("stdfaust.lib");
|
2ca0fa336ffb06a0f8ac943b53cf5e25b8c1fa71e01376d9066094c874763dfe
|
magnetophon/DigiDrie
|
svf.dsp
|
import("stdfaust.lib");
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan(F * ma.PI / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
process = _, _, _ : svf.lp;
|
https://raw.githubusercontent.com/magnetophon/DigiDrie/a9f79d502e1f8d522e5f47e0c460ae99e80f9441/faust/benchmark/svf/svf.dsp
|
faust
|
import("stdfaust.lib");
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan(F * ma.PI / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
process = _, _, _ : svf.lp;
|
|
fba8c7b4423e0aac04be68c1536edd3ba3d24add04c62a568a4595cfa62b11e8
|
magnetophon/DigiDrie
|
korg35lpf.dsp
|
declare korg35LPF author "Eric Tarr";
declare korg35LPF license "MIT-style STK-4.3 license";
import("stdfaust.lib");
korg35LPF(freq,Q) = _ <: (s1,s2,s3,y) : !,!,!,_
letrec{
's1 = _-s1:_*(alpha*2):_+s1;
's2 = _-s1:_*alpha:_+s1:_+(s3*B3):_+(s2*B2):_*alpha0:_-s3:_*alpha:_+s3:_*K:_-s2:_*(alpha*2):_+s2;
's3 = _-s1:_*alpha:_+s1:_+(s3*B3):_+(s2*B2):_*alpha0:_-s3:_*(alpha*2):_+s3;
'y = _-s1:_*alpha:_+s1:_+(s3*B3):_+(s2*B2) :_*alpha0:_-s3:_*alpha:_+s3;
}
with{
// freq = 2*(10^(3*normFreq+1));
K = 2.0*(Q - 0.707)/(10.0 - 0.707); // target.
wd = 2*ma.PI*freq;
T = 1/ma.SR;
wa = (2/T)*tan(wd*T/2);
g = wa*T/2;
G = g/(1.0 + g);
alpha = G; // target.
B3 = (K - K*G)/(1 + g); // target.
B2 = -1/(1 + g); // target.
alpha0 = 1/(1 - K*G + K*G*G); // target.
};
process = _, _, _ : korg35LPF;
|
https://raw.githubusercontent.com/magnetophon/DigiDrie/a9f79d502e1f8d522e5f47e0c460ae99e80f9441/faust/benchmark/korg35lfp/korg35lpf.dsp
|
faust
|
freq = 2*(10^(3*normFreq+1));
target.
target.
target.
target.
target.
|
declare korg35LPF author "Eric Tarr";
declare korg35LPF license "MIT-style STK-4.3 license";
import("stdfaust.lib");
korg35LPF(freq,Q) = _ <: (s1,s2,s3,y) : !,!,!,_
letrec{
's1 = _-s1:_*(alpha*2):_+s1;
's2 = _-s1:_*alpha:_+s1:_+(s3*B3):_+(s2*B2):_*alpha0:_-s3:_*alpha:_+s3:_*K:_-s2:_*(alpha*2):_+s2;
's3 = _-s1:_*alpha:_+s1:_+(s3*B3):_+(s2*B2):_*alpha0:_-s3:_*(alpha*2):_+s3;
'y = _-s1:_*alpha:_+s1:_+(s3*B3):_+(s2*B2) :_*alpha0:_-s3:_*alpha:_+s3;
}
with{
wd = 2*ma.PI*freq;
T = 1/ma.SR;
wa = (2/T)*tan(wd*T/2);
g = wa*T/2;
G = g/(1.0 + g);
};
process = _, _, _ : korg35LPF;
|
b5f8c3353f51098558cb5c05734397dd4587b95e21a380ac76720635b3dcb526
|
magnetophon/DigiDrie
|
oberheim.dsp
|
declare oberheim author "Eric Tarr";
declare oberheim license "MIT-style STK-4.3 license";
import("stdfaust.lib");
oberheimF(freq,Q) = _<:(s1,s2,ybsf,ybpf,yhpf,ylpf) : !,!,_,_,_,_
letrec{
's1 = _-s2:_-(s1*FBs1):_*alpha0:_*g<:_,(_+s1:ef.cubicnl(0.0,0)):>_;
's2 = _-s2:_-(s1*FBs1):_*alpha0:_*g:_+s1:ef.cubicnl(0.0,0):_*g*2:_+s2;
// Compute the BSF, BPF, HPF, LPF outputs
'ybsf = _-s2:_-(s1*FBs1):_*alpha0<:(_*g:_+s1:ef.cubicnl(0.0,0):_*g:_+s2),_:>_;
'ybpf = _-s2:_-(s1*FBs1):_*alpha0:_*g:_+s1:ef.cubicnl(0.0,0);
'yhpf = _-s2:_-(s1*FBs1):_*alpha0;
'ylpf = _-s2:_-(s1*FBs1):_*alpha0:_*g :_+s1:ef.cubicnl(0.0,0):_*g:_+s2;
}
with{
wd = 2*ma.PI*freq;
T = 1/ma.SR;
wa = (2/T)*tan(wd*T/2);
g = wa*T/2; // target.
R = 1/(2*Q);
FBs1 = (2*R+g); // target.
alpha0 = 1/(1 + 2*R*g + g*g); // target.
};
process = _, _, _ : oberheimF;
|
https://raw.githubusercontent.com/magnetophon/DigiDrie/a9f79d502e1f8d522e5f47e0c460ae99e80f9441/faust/benchmark/oberheim/oberheim.dsp
|
faust
|
Compute the BSF, BPF, HPF, LPF outputs
target.
target.
target.
|
declare oberheim author "Eric Tarr";
declare oberheim license "MIT-style STK-4.3 license";
import("stdfaust.lib");
oberheimF(freq,Q) = _<:(s1,s2,ybsf,ybpf,yhpf,ylpf) : !,!,_,_,_,_
letrec{
's1 = _-s2:_-(s1*FBs1):_*alpha0:_*g<:_,(_+s1:ef.cubicnl(0.0,0)):>_;
's2 = _-s2:_-(s1*FBs1):_*alpha0:_*g:_+s1:ef.cubicnl(0.0,0):_*g*2:_+s2;
'ybsf = _-s2:_-(s1*FBs1):_*alpha0<:(_*g:_+s1:ef.cubicnl(0.0,0):_*g:_+s2),_:>_;
'ybpf = _-s2:_-(s1*FBs1):_*alpha0:_*g:_+s1:ef.cubicnl(0.0,0);
'yhpf = _-s2:_-(s1*FBs1):_*alpha0;
'ylpf = _-s2:_-(s1*FBs1):_*alpha0:_*g :_+s1:ef.cubicnl(0.0,0):_*g:_+s2;
}
with{
wd = 2*ma.PI*freq;
T = 1/ma.SR;
wa = (2/T)*tan(wd*T/2);
R = 1/(2*Q);
};
process = _, _, _ : oberheimF;
|
9051ed691565f217641cd0991af00828296d75e716e957562889927672dea86b
|
magnetophon/DigiDrie
|
svf_approx.dsp
|
import("stdfaust.lib");
// Only valid in [0, 0.498). 0.5 is nyquist frequency.
tan_halfpi_approx(x) = (
4.189308700355015e-05 +
4.290568649086532 * x +
-2.657498976290899 * x * x +
-1.5163927048819992 * x * x * x
) / (
1.3667229106607917 +
-0.8644224895636948 * x +
-4.828883069406347 * x * x +
2.181672945531366 * x * x * x
);
// A is only used for bell, ls, hs.
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan_halfpi_approx(F / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
process = _, _, _ : svf.lp;
|
https://raw.githubusercontent.com/magnetophon/DigiDrie/a9f79d502e1f8d522e5f47e0c460ae99e80f9441/faust/benchmark/svf/svf_approx.dsp
|
faust
|
Only valid in [0, 0.498). 0.5 is nyquist frequency.
A is only used for bell, ls, hs.
|
import("stdfaust.lib");
tan_halfpi_approx(x) = (
4.189308700355015e-05 +
4.290568649086532 * x +
-2.657498976290899 * x * x +
-1.5163927048819992 * x * x * x
) / (
1.3667229106607917 +
-0.8644224895636948 * x +
-4.828883069406347 * x * x +
2.181672945531366 * x * x * x
);
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan_halfpi_approx(F / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
process = _, _, _ : svf.lp;
|
86e6566ed1c0903d766bcf4318f2a22e24c6db290a7239aa0161e32b54660bf1
|
magnetophon/VoiceOfFaust
|
syncSaw.dsp
|
import("stdfaust.lib");
// import("lib/master.lib");
import("lib/slave.lib");
import ("lib/common.lib");
// specific to this synth:
import ("lib/FullGUI.lib");
import ("lib/FMvocoder.lib");
process(audio,index,fidelity) =
// os.lf_sawpos(fr)
// ,
// os.lf_sawpos( index2freq(os.lf_sawpos(fr) ))
// ,
// my_lf_sawpos(fr)
// ,
// my_lf_sawpos( index2freq(my_lf_sawpos(fr)) )
// ,
// my_lf_sawpos(fr)
// , (my_lf_sawpos(fr))
((soft_sync_lf_sawpos(frequency,syncer)*0.25)+0.5)
,
(sync_sawN(2,frequency,syncer)*0.5)
// index,
// my_lf_sawpos(freq/4)
with {
my_lf_sawpos(freq) = ma.decimal ~ +((freq/ma.SR));
frequency = hslider("frequency", 55, -55, 440, 1);
frequency2 = hslider("frequency 2", 55, -55, 440, 1);
depth = hslider("lfo depth", 1, 0, 2, 0.001);
lfo = os.oscrs(2);
syncer = os.lf_imptrain(frequency2);
fr = frequency+(lfo*depth*frequency);
// index2freq(index) = ((index-index')*ma.SR) : sampleAndHold((index-index')!=-1);
// sampleAndHold(sample) = select2((sample!=0):int) ~ _;
soft_sync_lf_sawpos(freq,sync) = ma.decimal ~ +(delta*sign) with {
delta = freq/ma.SR;
sign = (_<:select2(sync==1,_*1,_*-1)+impulse)~_;
};
// --- sync_sawN for N = 1 to 6 ---
sync_sawN(N,freq,sync) = sync_saw1 : poly(N) : D(N-1) : gate(N-1)
with {
p0n = float(ma.SR)/float(freq); // period in samples
lfsawpos = (_,1:fmod) ~ +(1.0/p0n); // os.sawtooth waveform in [0,1)
// To introduce a phase offset here (phase in [0,1]):
// lfsawpos(phase) = (+(phase*(1-1')), 1 : fmod ) ~ +(1.0/p0n);
sync_saw1 = 2* soft_sync_lf_sawpos(freq,sync) - 1; // fi.zero-mean, amplitude +/- 1
poly(1,x) = x;
poly(2,x) = x*x;
poly(3,x) = x*x*x - x;
poly(4,x) = x*x*(x*x - 2.0);
poly(5,x) = pow(x,5) - pow(x,3)*10.0/3.0 + x*7.0/3.0;
poly(6,x) = pow(x,6) - 5.0*pow(x,4) + 7.0*poly(2,x);
diff1(x) = (x - x')/(2.0/p0n);
diff(N) = seq(n,N,diff1); // N diff1s in series
D(0) = _;
D(1) = diff1/2.0;
D(2) = diff(2)/6.0;
D(3) = diff(3)/24.0;
D(4) = diff(4)/120.0;
D(5) = diff(5)/720.0;
gate(N) = *(1@(N)); // delayed step for blanking startup glitch
};
};
|
https://raw.githubusercontent.com/magnetophon/VoiceOfFaust/82c20ed40fb5f184a236a7c765eab5acfc3bb5f5/syncSaw.dsp
|
faust
|
import("lib/master.lib");
specific to this synth:
os.lf_sawpos(fr)
,
os.lf_sawpos( index2freq(os.lf_sawpos(fr) ))
,
my_lf_sawpos(fr)
,
my_lf_sawpos( index2freq(my_lf_sawpos(fr)) )
,
my_lf_sawpos(fr)
, (my_lf_sawpos(fr))
index,
my_lf_sawpos(freq/4)
index2freq(index) = ((index-index')*ma.SR) : sampleAndHold((index-index')!=-1);
sampleAndHold(sample) = select2((sample!=0):int) ~ _;
--- sync_sawN for N = 1 to 6 ---
period in samples
os.sawtooth waveform in [0,1)
To introduce a phase offset here (phase in [0,1]):
lfsawpos(phase) = (+(phase*(1-1')), 1 : fmod ) ~ +(1.0/p0n);
fi.zero-mean, amplitude +/- 1
N diff1s in series
delayed step for blanking startup glitch
|
import("stdfaust.lib");
import("lib/slave.lib");
import ("lib/common.lib");
import ("lib/FullGUI.lib");
import ("lib/FMvocoder.lib");
process(audio,index,fidelity) =
((soft_sync_lf_sawpos(frequency,syncer)*0.25)+0.5)
,
(sync_sawN(2,frequency,syncer)*0.5)
with {
my_lf_sawpos(freq) = ma.decimal ~ +((freq/ma.SR));
frequency = hslider("frequency", 55, -55, 440, 1);
frequency2 = hslider("frequency 2", 55, -55, 440, 1);
depth = hslider("lfo depth", 1, 0, 2, 0.001);
lfo = os.oscrs(2);
syncer = os.lf_imptrain(frequency2);
fr = frequency+(lfo*depth*frequency);
soft_sync_lf_sawpos(freq,sync) = ma.decimal ~ +(delta*sign) with {
delta = freq/ma.SR;
sign = (_<:select2(sync==1,_*1,_*-1)+impulse)~_;
};
sync_sawN(N,freq,sync) = sync_saw1 : poly(N) : D(N-1) : gate(N-1)
with {
poly(1,x) = x;
poly(2,x) = x*x;
poly(3,x) = x*x*x - x;
poly(4,x) = x*x*(x*x - 2.0);
poly(5,x) = pow(x,5) - pow(x,3)*10.0/3.0 + x*7.0/3.0;
poly(6,x) = pow(x,6) - 5.0*pow(x,4) + 7.0*poly(2,x);
diff1(x) = (x - x')/(2.0/p0n);
D(0) = _;
D(1) = diff1/2.0;
D(2) = diff(2)/6.0;
D(3) = diff(3)/24.0;
D(4) = diff(4)/120.0;
D(5) = diff(5)/720.0;
};
};
|
bc5a300dd601c32dccad9174f3811f683a8ce195aa4814a1b5864fc32070560f
|
magnetophon/DigiDrie
|
svf_test.dsp
|
import("stdfaust.lib");
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan(F * ma.PI / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
// Only valid in [0, 0.498). 0.5 is nyquist frequency.
tan_halfpi_approx(x) = (
4.189308700355015e-05 +
4.290568649086532 * x +
-2.657498976290899 * x * x +
-1.5163927048819992 * x * x * x
) / (
1.3667229106607917 +
-0.8644224895636948 * x +
-4.828883069406347 * x * x +
2.181672945531366 * x * x * x
);
// A is only used for bell, ls, hs.
svf_approx = environment {
svf_approx(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan_halfpi_approx(F / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf_approx(0, f,q,0);
bp(f,q) = svf_approx(1, f,q,0);
hp(f,q) = svf_approx(2, f,q,0);
notch(f,q) = svf_approx(3, f,q,0);
peak(f,q) = svf_approx(4, f,q,0);
ap(f,q) = svf_approx(5, f,q,0);
bell(f,q,g) = svf_approx(6, f,q,g);
ls(f,q,g) = svf_approx(7, f,q,g);
hs(f,q,g) = svf_approx(8, f,q,g);
};
freq = hslider("normFreq", 124, -12, 124, 1e-5) : ba.pianokey2hz : min(20000);
Q = hslider("Q", 0, 0, 10, 1e-5);
process = _ <: svf.lp(freq, Q), svf_approx.lp(freq, Q);
|
https://raw.githubusercontent.com/magnetophon/DigiDrie/a9f79d502e1f8d522e5f47e0c460ae99e80f9441/faust/benchmark/svf/svf_test.dsp
|
faust
|
Only valid in [0, 0.498). 0.5 is nyquist frequency.
A is only used for bell, ls, hs.
|
import("stdfaust.lib");
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan(F * ma.PI / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
tan_halfpi_approx(x) = (
4.189308700355015e-05 +
4.290568649086532 * x +
-2.657498976290899 * x * x +
-1.5163927048819992 * x * x * x
) / (
1.3667229106607917 +
-0.8644224895636948 * x +
-4.828883069406347 * x * x +
2.181672945531366 * x * x * x
);
svf_approx = environment {
svf_approx(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan_halfpi_approx(F / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf_approx(0, f,q,0);
bp(f,q) = svf_approx(1, f,q,0);
hp(f,q) = svf_approx(2, f,q,0);
notch(f,q) = svf_approx(3, f,q,0);
peak(f,q) = svf_approx(4, f,q,0);
ap(f,q) = svf_approx(5, f,q,0);
bell(f,q,g) = svf_approx(6, f,q,g);
ls(f,q,g) = svf_approx(7, f,q,g);
hs(f,q,g) = svf_approx(8, f,q,g);
};
freq = hslider("normFreq", 124, -12, 124, 1e-5) : ba.pianokey2hz : min(20000);
Q = hslider("Q", 0, 0, 10, 1e-5);
process = _ <: svf.lp(freq, Q), svf_approx.lp(freq, Q);
|
4cbd9d5d4f884929042151907eee6dc95797e4d437b44d1b7f6008c9718c6d47
|
magnetophon/VoiceOfFaust
|
Foflet.dsp
|
//-------------------------------------
// A formant wave function generator
//-------------------------------------
import("stdfaust.lib");
// Based on
//https://ccrma.stanford.edu/~mjolsen/220a/fp/Foflet.dsp
// by Michael Jørgen Olsen
// modified for dynamic parameters and octavation by Bart Brouns
// Sample period
T = 1.0/ma.SR;
t(4) = 0.000001;
// functions used in foflet calculation
multi = 2:pow(maxOctavation);
expy(fund,BW) = exp(-BW * ma.PI * T)^(fund/multi); // exponential env (BW = BW)
// bug in original: we don't want * ma.SR.
envAttack(fund,beta) = 0.5 * (1.0 - cos(beta * (fund) )); // attack discontinuity smoother (beta=beta)
// envAttack(beta) = 0.5 * (1.0 - cos(beta * k * ma.SR)); // attack discontinuity smoother (y=beta)
// most interesting sounds with sine at phase 0 and envelope phased
sinus(fund,fc,phase) = sin((2.0 * ma.PI * fc * (fund) * T)+(phase*0*ma.PI)); // sinusoid (z=fc)
// functions to calculate fof attack and decay sections
// fofStop(BW) = k < sigLen(BW); // gate
fofAttack(fund,phase,BW,beta,fc) = expy(fund,BW) * envAttack(fund,beta) * sinus(fund,fc,phase); // first part of fof calculation
fofRemainder(fund,phase,BW,fc) = expy(fund,BW) * sinus(fund,fc,phase); // 2nd part of fof calculation
// function to generate single fof
// most interesting sounds with sine at phase 0 and envelope phased:
// fofPart(fund,k1,phase,BW,fc) = (((fund) < int(k1)) * fofAttack(fund,phase,BW,beta,fc)) + (((fund) >= int(k1)) * fofRemainder(fund,phase,BW,fc)) with {
fofPart(fund,freq,k1,phase,BW,fc) = (((phasedFund) < int(k1)) * fofAttack(phasedFund,phase,BW,beta,fc)) + (((phasedFund) >= int(k1)) * fofRemainder(phasedFund,phase,BW,fc)) with {
beta = ma.PI / (float(k1));
phasedFund = (((fund/(multi*f0Period))+(phase)):ma.decimal)*f0Period*multi;
f0Period = ma.SR/freq;
}; // v = k1
// combines multiple fofParts to create octavation:
// octaviation index, normally fi.zero. If greater than fi.zero, lowers the effective xfund frequency by attenuating odd-numbered sinebursts. Whole numbers are full octaves, fractions transitional.
// source: https://csound.github.io/docs/manual/fof2.html
fof(phase,fc,fund,freq,k1,BW,octaviation) =
// fofPart(fundI(0),k1,phase,BW,fc)
par(i,multi,fofPart(fundI(i),freq,k1,phase,BW,fc)*OctMuliply(i)):>_
with {
fundI(i) = (((fund/(multi*f0Period))+(i/multi)):ma.decimal)*f0Period*multi;
OctMuliply(i) =
(OctMuliplyPart(i,floor(octaviation+1))* ma.decimal(octaviation)) +
(OctMuliplyPart(i,floor(octaviation ))* (1-ma.decimal(octaviation)));
OctMuliplyPart(i,oct) = select2(i>0,1,
(((i % int(2:pow(oct)))):min(1)*-1)+1
);
f0Period = ma.SR/freq;
};
|
https://raw.githubusercontent.com/magnetophon/VoiceOfFaust/82c20ed40fb5f184a236a7c765eab5acfc3bb5f5/lib/Foflet.dsp
|
faust
|
-------------------------------------
A formant wave function generator
-------------------------------------
Based on
https://ccrma.stanford.edu/~mjolsen/220a/fp/Foflet.dsp
by Michael Jørgen Olsen
modified for dynamic parameters and octavation by Bart Brouns
Sample period
functions used in foflet calculation
exponential env (BW = BW)
bug in original: we don't want * ma.SR.
attack discontinuity smoother (beta=beta)
envAttack(beta) = 0.5 * (1.0 - cos(beta * k * ma.SR)); // attack discontinuity smoother (y=beta)
most interesting sounds with sine at phase 0 and envelope phased
sinusoid (z=fc)
functions to calculate fof attack and decay sections
fofStop(BW) = k < sigLen(BW); // gate
first part of fof calculation
2nd part of fof calculation
function to generate single fof
most interesting sounds with sine at phase 0 and envelope phased:
fofPart(fund,k1,phase,BW,fc) = (((fund) < int(k1)) * fofAttack(fund,phase,BW,beta,fc)) + (((fund) >= int(k1)) * fofRemainder(fund,phase,BW,fc)) with {
v = k1
combines multiple fofParts to create octavation:
octaviation index, normally fi.zero. If greater than fi.zero, lowers the effective xfund frequency by attenuating odd-numbered sinebursts. Whole numbers are full octaves, fractions transitional.
source: https://csound.github.io/docs/manual/fof2.html
fofPart(fundI(0),k1,phase,BW,fc)
|
import("stdfaust.lib");
T = 1.0/ma.SR;
t(4) = 0.000001;
multi = 2:pow(maxOctavation);
fofPart(fund,freq,k1,phase,BW,fc) = (((phasedFund) < int(k1)) * fofAttack(phasedFund,phase,BW,beta,fc)) + (((phasedFund) >= int(k1)) * fofRemainder(phasedFund,phase,BW,fc)) with {
beta = ma.PI / (float(k1));
phasedFund = (((fund/(multi*f0Period))+(phase)):ma.decimal)*f0Period*multi;
f0Period = ma.SR/freq;
fof(phase,fc,fund,freq,k1,BW,octaviation) =
par(i,multi,fofPart(fundI(i),freq,k1,phase,BW,fc)*OctMuliply(i)):>_
with {
fundI(i) = (((fund/(multi*f0Period))+(i/multi)):ma.decimal)*f0Period*multi;
OctMuliply(i) =
(OctMuliplyPart(i,floor(octaviation+1))* ma.decimal(octaviation)) +
(OctMuliplyPart(i,floor(octaviation ))* (1-ma.decimal(octaviation)));
OctMuliplyPart(i,oct) = select2(i>0,1,
(((i % int(2:pow(oct)))):min(1)*-1)+1
);
f0Period = ma.SR/freq;
};
|
2898eeeacbc26187daa47bd6e936f8448797a20bd8616864aed84084aa566e16
|
magnetophon/faustExperiments
|
envelope.dsp
|
import("stdfaust.lib");
declare author "Bart Brouns";
declare license "GPLv3";
xVal = hslider("xVal", 0, 0, maxSamples, 1)/defaultSR*ma.SR;
yVal = hslider("yVal", 0, -1, 1, 0.001);
slope = hslider("slope", 0, -1, 1, 0.001);
goBtn = button("resetBtn"):ba.impulsify;
maxSeconds = 5;
maxSamples = maxSeconds*defaultSR;
defaultSR = 48000;
process =
envelope;
// ramp from 0 to 1 in n samples.
// when reset == 1, go back to 0.
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
xVal_target(reset) = rwtable(3, 0.0,nextValIndex(reset),xVal,currentValIndex(reset));
yVal_target(reset) = rwtable(3, 0.0,nextValIndex(reset),yVal,currentValIndex(reset));
currentValIndex(reset) = reset :ba.toggle: xor(startPulse'');
// currentValIndex(reset) = (reset|startPulse) :ba.toggle;
nextValIndex(reset) = currentValIndex(reset)*-1+1;
startPulse = 1-1';
xfade(a,b,x) = a*(1-x)+b*x;
envelope = FB~_ with {
FB(prev) = ((xfade(ba.sAndH(reset),yVal_target(reset),position)+(yVal*startPulse))~(_))
,(reset':ba.impulsify:hbargraph("[1]endpoint", 0, 1))
with {
reset = ( (prev==yVal_target(_)) :xor(goBtn): hbargraph("reset", 0, 1) )~(_<:(_,_));
position = ramp(xVal_target(reset),reset):hbargraph("[0]position", 0, 1);
// the commented out stuff is WIP for changing the curve of the ramp
// position = ramp(xVal_target(reset),reset):hbargraph("pos", 0, 1):pow(power):max(0):min(1);
};
// power = select2(slope<0,slope*px+1,1+slope*mx):hbargraph("power", 0, 10);
// px = hslider("px", 1, 1, 9, 1);
// mx = hslider("mx", 0.5, 0, 1, 0.001);
};
//********************************************************************************************
//**** bezier
//********************************************************************************************
// see for a different approach: https://www.cubic.org/docs/hermite.htm
// http://news.povray.org/povray.binaries.tutorials/attachment/%[email protected]%3E/Splines.bas.txt
// process = cubic_bezier(0,0, p1x, p1y, p2x, p2y, 1,1, os.lf_sawpos(0.5));
// https://www.musicdsp.org/en/latest/Other/93-hermite-interpollation.html
p1x = hslider("p1x", 0, -2, 2, 0.1);
p1y = hslider("p1y", 0, -2, 2, 0.1);
p2x = hslider("p2x", 0, -2, 2, 0.1);
p2y = hslider("p2y", 0, -2, 2, 0.1);
cubic_bezier(p0x, p0y, p1x, p1y, p2x, p2y, p3x, p3y, t) = pFinalX, pFinalY
with {
pFinalX = pow(1 - t, 3) * p0x +
pow(1 - t, 2) * 3 * t * p1x +
(1 - t) * 3 * t * t * p2x +
t * t * t * p3x;
pFinalY = pow(1 - t, 3) * p0y +
pow(1 - t, 2) * 3 * t * p1y +
(1 - t) * 3 * t * t * p2y +
t * t * t * p3y;
};
// cubicBezier: function(p0, p1, p2, p3, t, pFinal) {
// pFinal = pFinal || {};
// pFinal.x = Math.pow(1 - t, 3) * p0.x +
// Math.pow(1 - t, 2) * 3 * t * p1.x +
// (1 - t) * 3 * t * t * p2.x +
// t * t * t * p3.x;
// pFinal.y = Math.pow(1 - t, 3) * p0.y +
// Math.pow(1 - t, 2) * 3 * t * p1.y +
// (1 - t) * 3 * t * t * p2.y +
// t * t * t * p3.y;
// return pFinal;
// }
// TODO: PR:
// process = lf_sawpos_phase_trig(440,phase,reset);
// phase = hslider("phase", 0, 0, 1, 0.001);
// lf_sawpos_trig(freq,phase,trig) = ma.frac * dontReset ~ +(freq/ma.SR):_+phase:ma.frac
// with {
// dontReset = trig:ba.impulsify*-1+1;
// };
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/475def588ca4ae5b5a703cf15d30fa8851e2e147/envelope.dsp
|
faust
|
ramp from 0 to 1 in n samples.
when reset == 1, go back to 0.
currentValIndex(reset) = (reset|startPulse) :ba.toggle;
the commented out stuff is WIP for changing the curve of the ramp
position = ramp(xVal_target(reset),reset):hbargraph("pos", 0, 1):pow(power):max(0):min(1);
power = select2(slope<0,slope*px+1,1+slope*mx):hbargraph("power", 0, 10);
px = hslider("px", 1, 1, 9, 1);
mx = hslider("mx", 0.5, 0, 1, 0.001);
********************************************************************************************
**** bezier
********************************************************************************************
see for a different approach: https://www.cubic.org/docs/hermite.htm
http://news.povray.org/povray.binaries.tutorials/attachment/%[email protected]%3E/Splines.bas.txt
process = cubic_bezier(0,0, p1x, p1y, p2x, p2y, 1,1, os.lf_sawpos(0.5));
https://www.musicdsp.org/en/latest/Other/93-hermite-interpollation.html
cubicBezier: function(p0, p1, p2, p3, t, pFinal) {
pFinal = pFinal || {};
pFinal.x = Math.pow(1 - t, 3) * p0.x +
Math.pow(1 - t, 2) * 3 * t * p1.x +
(1 - t) * 3 * t * t * p2.x +
t * t * t * p3.x;
pFinal.y = Math.pow(1 - t, 3) * p0.y +
Math.pow(1 - t, 2) * 3 * t * p1.y +
(1 - t) * 3 * t * t * p2.y +
t * t * t * p3.y;
return pFinal;
}
TODO: PR:
process = lf_sawpos_phase_trig(440,phase,reset);
phase = hslider("phase", 0, 0, 1, 0.001);
lf_sawpos_trig(freq,phase,trig) = ma.frac * dontReset ~ +(freq/ma.SR):_+phase:ma.frac
with {
dontReset = trig:ba.impulsify*-1+1;
};
|
import("stdfaust.lib");
declare author "Bart Brouns";
declare license "GPLv3";
xVal = hslider("xVal", 0, 0, maxSamples, 1)/defaultSR*ma.SR;
yVal = hslider("yVal", 0, -1, 1, 0.001);
slope = hslider("slope", 0, -1, 1, 0.001);
goBtn = button("resetBtn"):ba.impulsify;
maxSeconds = 5;
maxSamples = maxSeconds*defaultSR;
defaultSR = 48000;
process =
envelope;
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
xVal_target(reset) = rwtable(3, 0.0,nextValIndex(reset),xVal,currentValIndex(reset));
yVal_target(reset) = rwtable(3, 0.0,nextValIndex(reset),yVal,currentValIndex(reset));
currentValIndex(reset) = reset :ba.toggle: xor(startPulse'');
nextValIndex(reset) = currentValIndex(reset)*-1+1;
startPulse = 1-1';
xfade(a,b,x) = a*(1-x)+b*x;
envelope = FB~_ with {
FB(prev) = ((xfade(ba.sAndH(reset),yVal_target(reset),position)+(yVal*startPulse))~(_))
,(reset':ba.impulsify:hbargraph("[1]endpoint", 0, 1))
with {
reset = ( (prev==yVal_target(_)) :xor(goBtn): hbargraph("reset", 0, 1) )~(_<:(_,_));
position = ramp(xVal_target(reset),reset):hbargraph("[0]position", 0, 1);
};
};
p1x = hslider("p1x", 0, -2, 2, 0.1);
p1y = hslider("p1y", 0, -2, 2, 0.1);
p2x = hslider("p2x", 0, -2, 2, 0.1);
p2y = hslider("p2y", 0, -2, 2, 0.1);
cubic_bezier(p0x, p0y, p1x, p1y, p2x, p2y, p3x, p3y, t) = pFinalX, pFinalY
with {
pFinalX = pow(1 - t, 3) * p0x +
pow(1 - t, 2) * 3 * t * p1x +
(1 - t) * 3 * t * t * p2x +
t * t * t * p3x;
pFinalY = pow(1 - t, 3) * p0y +
pow(1 - t, 2) * 3 * t * p1y +
(1 - t) * 3 * t * t * p2y +
t * t * t * p3y;
};
|
ec47e1798a3624adfb666747dc93e7a4694aaec20673a1f6cf9fbe30840a9491
|
magnetophon/VoiceOfFaust
|
Foflet_orig.dsp
|
//-------------------------------------
// A formant wave function generator
//-------------------------------------
import("stdfaust.lib");
// Sample period
T = 1.0/ma.SR;
//****************** user inputs ******************/
// fundmental frequency of tone with vibrato
f0 = hgroup("[1]",nentry("Freq [style:knob]",80,30,350,1) + (vibGain*os.osc(vibRate))); // fundamental freq (Hz)
// choice of formant structure (vowel a,e,i,o and u)
vow = hgroup("[1]",nentry("[5:]A_E_I_O_U",1,1,5,1));
// vibrato rate
vibRate = hgroup("[1]",nentry("Vib Rate [style:knob]",4,2,7,0.1));
// vibrato gain
vibGain = hgroup("[1]",nentry("Vib Gain [style:knob]",1,0.2,1.2,0.001));
// display group to group f0 and vow controls together
ctrls = vgroup("",hgroup("[1]",f0,vow));
//****************** formant values **********************//
// peak center frequencies
fc(0) = 600; // a
fc(1) = 1040;
fc(2) = 2250;
fc(3) = 2450;
fc(4) = 2750;
fc(5) = 400; // e
fc(6) = 1620;
fc(7) = 2400;
fc(8) = 2800;
fc(9) = 3100;
fc(10) = 250; // i
fc(11) = 1750;
fc(12) = 2600;
fc(13) = 3050;
fc(14) = 3340;
fc(15) = 400; // o
fc(16) = 750;
fc(17) = 2400;
fc(18) = 2600;
fc(19) = 2900;
fc(20) = 350; // u
fc(21) = 600;
fc(22) = 2400;
fc(23) = 2675;
fc(24) = 2950;
// peak amplitudes
A(0) = 0; // a
A(1) = -7;
A(2) = -9;
A(3) = -9;
A(4) = -20;
A(5) = 0; // e
A(6) = -12;
A(7) = -9;
A(8) = -12;
A(9) = -18;
A(10) = 0; // i
A(11) = -30;
A(12) = -16;
A(13) = -22;
A(14) = -28;
A(15) = 0; // o
A(16) = -11;
A(17) = -21;
A(18) = -20;
A(19) = -40;
A(20) = 0; // u
A(21) = -20;
A(22) = -32;
A(23) = -28;
A(24) = -36;
// formant peak bandwidths
BW(0) = 60; // a
BW(1) = 70;
BW(2) = 110;
BW(3) = 120;
BW(4) = 130;
BW(5) = 40; // e
BW(6) = 80;
BW(7) = 100;
BW(8) = 120;
BW(9) = 120;
BW(10) = 60; // i
BW(11) = 90;
BW(12) = 100;
BW(13) = 120;
BW(14) = 120;
BW(15) = 40; // o
BW(16) = 80;
BW(17) = 100;
BW(18) = 120;
BW(19) = 120;
BW(20) = 40; // u
BW(21) = 80;
BW(22) = 100;
BW(23) = 120;
BW(24) = 120;
// fof equation attack times (controls formant skirt widths
t(0) = 0.000002;
t(1) = 0.0000015;
t(2) = 0.0000015;
t(3) = 0.000003;
t(4) = 0.000001;
// constants based on user input
k1(0) = t(0) * ma.SR; // attack in samples
k1(1) = t(1) * ma.SR;
k1(2) = t(2) * ma.SR;
k1(3) = t(3) * ma.SR;
k1(4) = t(4) * ma.SR;
beta(0) = ma.PI / float(k1(0)); // attack value needed for attack(i) function
beta(1) = ma.PI / float(k1(1));
beta(2) = ma.PI / float(k1(2));
beta(3) = ma.PI / float(k1(3));
beta(4) = ma.PI / float(k1(4));
f0Period = ma.SR / f0; // fund period length in fractional samples
sigLen(x) = int(ma.SR * log(0.001) / (-x * ma.PI)) + 1; // foflet T60 in samples
// functions used in foflet calculation
k = (+(1)~_) - 1;
expy(x) = exp(-x * ma.PI * T)^k; // exponential env (x = BW)
envAttack(y) = 0.5 * (1.0 - cos(y * k * ma.SR)); // attack discontinuity smoother (y=beta)
sinus(z) = sin(2.0 * ma.PI * z * k * T); // sinusoid (z=fc)
// functions to calculate fof attack and decay sections
fofStop(x) = k < sigLen(x); // gate
fofAttack(w,x,y,z) = ba.db2linear(w) * expy(x) * envAttack(y) * sinus(z); // first part of fof calculation
fofRemainder(w,x,z) = ba.db2linear(w) * expy(x) * sinus(z); // 2nd part of fof calculation
// function to generate single fof
fof(v,w,x,y,z) = ((k < int(v)) * fofAttack(w,x,y,z)) + ((k >= int(v)) * fofRemainder(w,x,z)); // v = k1
// function to play single fof
playFof(v,w,x,y,z) = (+(fof(v,w,x,y,z) * fofStop(x))~fdelay2(2048,f0Period-1.0));
// function to play 5 fofs in parallel (5 fofs = 1 vowel
allFofs(j) = par(i,5,playFof(k1(i),A((j-1)*5+i),BW((j-1)*5+i),beta(i),fc((j-1)*5+i))) :>_;
// en.adsr variables and controls
attack = nentry("[1:]attack [style:knob]",1,0,4,0.1);
decay = nentry("[2:]decay[style:knob]",0.3,0,1,0.001);
sustain = nentry("[3:]sustain[style:knob]",0.5,0,1,0.01);
release = nentry("[4:]release[style:knob]",0.5,0,4,0.1);
// display group to group ADSR controls together
volADSR = vgroup("[2]",hgroup("ADSR", 0.75*en.adsr(attack,decay,sustain,release) : _));
// final process line: feed play button to volADSR to currently active vowel Fofs and then sum
process = vgroup("[3]",button("play")) <: (volADSR <: (par(i,5,*(allFofs(i+1)*((i+1)==vow)))) :>_<:_,_);
|
https://raw.githubusercontent.com/magnetophon/VoiceOfFaust/82c20ed40fb5f184a236a7c765eab5acfc3bb5f5/lib/Foflet_orig.dsp
|
faust
|
-------------------------------------
A formant wave function generator
-------------------------------------
Sample period
****************** user inputs ******************/
fundmental frequency of tone with vibrato
fundamental freq (Hz)
choice of formant structure (vowel a,e,i,o and u)
vibrato rate
vibrato gain
display group to group f0 and vow controls together
****************** formant values **********************//
peak center frequencies
a
e
i
o
u
peak amplitudes
a
e
i
o
u
formant peak bandwidths
a
e
i
o
u
fof equation attack times (controls formant skirt widths
constants based on user input
attack in samples
attack value needed for attack(i) function
fund period length in fractional samples
foflet T60 in samples
functions used in foflet calculation
exponential env (x = BW)
attack discontinuity smoother (y=beta)
sinusoid (z=fc)
functions to calculate fof attack and decay sections
gate
first part of fof calculation
2nd part of fof calculation
function to generate single fof
v = k1
function to play single fof
function to play 5 fofs in parallel (5 fofs = 1 vowel
en.adsr variables and controls
display group to group ADSR controls together
final process line: feed play button to volADSR to currently active vowel Fofs and then sum
|
import("stdfaust.lib");
T = 1.0/ma.SR;
vow = hgroup("[1]",nentry("[5:]A_E_I_O_U",1,1,5,1));
vibRate = hgroup("[1]",nentry("Vib Rate [style:knob]",4,2,7,0.1));
vibGain = hgroup("[1]",nentry("Vib Gain [style:knob]",1,0.2,1.2,0.001));
ctrls = vgroup("",hgroup("[1]",f0,vow));
fc(1) = 1040;
fc(2) = 2250;
fc(3) = 2450;
fc(4) = 2750;
fc(6) = 1620;
fc(7) = 2400;
fc(8) = 2800;
fc(9) = 3100;
fc(11) = 1750;
fc(12) = 2600;
fc(13) = 3050;
fc(14) = 3340;
fc(16) = 750;
fc(17) = 2400;
fc(18) = 2600;
fc(19) = 2900;
fc(21) = 600;
fc(22) = 2400;
fc(23) = 2675;
fc(24) = 2950;
A(1) = -7;
A(2) = -9;
A(3) = -9;
A(4) = -20;
A(6) = -12;
A(7) = -9;
A(8) = -12;
A(9) = -18;
A(11) = -30;
A(12) = -16;
A(13) = -22;
A(14) = -28;
A(16) = -11;
A(17) = -21;
A(18) = -20;
A(19) = -40;
A(21) = -20;
A(22) = -32;
A(23) = -28;
A(24) = -36;
BW(1) = 70;
BW(2) = 110;
BW(3) = 120;
BW(4) = 130;
BW(6) = 80;
BW(7) = 100;
BW(8) = 120;
BW(9) = 120;
BW(11) = 90;
BW(12) = 100;
BW(13) = 120;
BW(14) = 120;
BW(16) = 80;
BW(17) = 100;
BW(18) = 120;
BW(19) = 120;
BW(21) = 80;
BW(22) = 100;
BW(23) = 120;
BW(24) = 120;
t(0) = 0.000002;
t(1) = 0.0000015;
t(2) = 0.0000015;
t(3) = 0.000003;
t(4) = 0.000001;
k1(1) = t(1) * ma.SR;
k1(2) = t(2) * ma.SR;
k1(3) = t(3) * ma.SR;
k1(4) = t(4) * ma.SR;
beta(1) = ma.PI / float(k1(1));
beta(2) = ma.PI / float(k1(2));
beta(3) = ma.PI / float(k1(3));
beta(4) = ma.PI / float(k1(4));
k = (+(1)~_) - 1;
playFof(v,w,x,y,z) = (+(fof(v,w,x,y,z) * fofStop(x))~fdelay2(2048,f0Period-1.0));
allFofs(j) = par(i,5,playFof(k1(i),A((j-1)*5+i),BW((j-1)*5+i),beta(i),fc((j-1)*5+i))) :>_;
attack = nentry("[1:]attack [style:knob]",1,0,4,0.1);
decay = nentry("[2:]decay[style:knob]",0.3,0,1,0.001);
sustain = nentry("[3:]sustain[style:knob]",0.5,0,1,0.01);
release = nentry("[4:]release[style:knob]",0.5,0,4,0.1);
volADSR = vgroup("[2]",hgroup("ADSR", 0.75*en.adsr(attack,decay,sustain,release) : _));
process = vgroup("[3]",button("play")) <: (volADSR <: (par(i,5,*(allFofs(i+1)*((i+1)==vow)))) :>_<:_,_);
|
cb8076061a0233bed5b4782f848550174d3bb79901c8859a5025dd79a6e19e64
|
magnetophon/faustExperiments
|
acor.dsp
|
import("stdfaust.lib");
declare author "Julius Smith";
declare author "Bart Brouns";
external = checkbox("[0]use external input");
freq = hslider("[1]freq [unit:hz] [scale:log]
[tooltip: frequency of the test oscillator]", F0min, F0min, F0max, 0.1);
lp_freq = hslider("[2]lp_freq [unit:hz] [scale:log]
[tooltip: frequency of the low pass filter on the test oscillator]", 20000, 20, 20000, 1);
hp_freq = hslider("[3]hp_freq [unit:hz] [scale:log]
[tooltip: frequency of the high pass filter on the test oscillator]", 20, 20, 20000, 1);
noiseLevel = hslider("[4]noiseLevel", 0, 0, 1, 0.1);
level = hslider("[5]level (db)", -10, -70, 10, 0.1) : ba.db2linear : si.smooth(0.999);
medianBP = checkbox("[6]median bypass");
portamentoTime = hslider("[7] Portamento [unit:sec] [scale:log]
[tooltip: Portamento (frequency-glide) time-constant in seconds]",
0,0.00,1,0.001);
pitchMeter = hbargraph("[8]pitch", F0min, F0max);
// Gate parameters:
thresh = -35.0; // dB
att = 0.005; // attack time constant (sec) for gate to open
hold = 0.1; // hold time = time (sec) gate stays open after signal < thresh
rel = 0.02; // release time = time-constant (sec) for gate to close
gate = ef.gate_gain_mono(thresh,att,hold,rel);
// F0min = 80.0; // lowest tracked pitch (Hz)
// F0max = 500.0; // highest tracked pitch (Hz)
// F0min = 300.0; // lowest tracked pitch (Hz)
// F0max = 2000.0; // highest tracked pitch (Hz)
F0min = 445.0; // for block diagram
F0max = 450.0; // for block diagram
// F0min = 1000.0; // lowest tracked pitch (Hz)
// F0max = 5000.0; // highest tracked pitch (Hz)
// SRguess = 44100.0; // Can't seem to use SR in expression below:
SRguess = 48000.0; // Can't seem to use SR in expression below:
// MINPER = int(SRguess/F0max);
// MAXPER = int(SRguess/F0min);
// NLAGS = MAXPER-MINPER+1;
// MINPER = 12000;
// MAXPER = 14000;
MINPER = 001;
MAXPER = 10;
NLAGS = MAXPER-MINPER+1;
lag2hz(lag) = float(ma.SR)/float(lag);
// FIXME: should use rect smoothing window, not exp
// acor(L) = _ <: _,@(L) : * <: select3(hslider("exp,rectL,rectNLAGS", 0, 0, 2, 1), fi.pole(0.9999), ba.slidingSum(L*mult), ba.slidingSum(NLAGS*mult));
// acor(L) = _ <: _,@(L) : * <: select2(checkbox("rect"), fi.pole(0.9999), ba.slidingSum(NLAGS*mult));
// JuliusAcor(L) = _ <: _,@(L) : * <: select2(checkbox("rect"), fi.pole(0.9999), ba.slidingSum(NLAGS*mult));
JuliusAcor(L) = _ <: _,@(L) : * : ba.slidingSum(NLAGS*mult);
// Bitstream Autocorrelation
// https://www.cycfi.com/2018/03/fast-and-efficient-pitch-detection-bitstream-autocorrelation/
// BitAcor(L) = int(zeroCross) <: _,@(L) : xnor <: select2(checkbox("rect"), fi.pole(0.9999), _);
BitAcor(L) = int(zeroCross) <: _,@(L) : xor <: select2(checkbox("rect"), fi.pole(0.9999), ba.slidingSum(NLAGS*mult) );
// zeroCross(x) = ((x>=0) & (x'<0)) | ((x>0) & (x'<=0));
zeroCross(x) = x>0;
xnor = 1-xor(_,_);
// acor(L) = BitAcor(L);
acor(L) = JuliusAcor(L);
mult = hslider("mult", 1, 1, 100, 0.1);
macor(MINP,MAXP) = _ <: par(i,NLAGS,(MINP+i,acor(MINP+i)));
// lcomparator(n,x,m,y) = select2((x>y),m,n), select2((x>y),y,x); // compare integer-labeled signals
lcomparator(n,x,m,y) = select2((x>y),m,n), select2((x>y),y,x); // compare integer-labeled signals
find_lmax(N) = seq(i,N-2, (lcomparator,si.bus(2*(N-i-2)))) : lcomparator;
median3p(a,b,c) = select3(s,b,a,c)
with {
cf(a,b) = 2*(a<b)-1;
s=abs(cf(a,b)+2*cf(b,c)+3*cf(c,a))/2;
};
median3(x) = median3p(x,x',x'');
portamento = ba.bypass1(medianBP, median3) : si.smooth(ba.tau2pole(portamentoTime)); // pitch filtering
// smooth(p) = (1-p)/(1-p/z)
lagFinder = (macor(MINPER,MAXPER) : find_lmax(NLAGS) : _,!);
pitchTracker = (macor(MINPER,MAXPER) : find_lmax(NLAGS) : lag2hz,!);
signal(x) = select2(external, oscillator,x );
oscillator = (os.sawtooth(freq), no.noise):si.interpolate(noiseLevel): fi.lowpass(3,lp_freq): fi.highpass(3,hp_freq)*0.5;
process(x) =
lagFinder
// signal(x)
// , ((pitchTracker(signal(x)) : portamento : pitchMeter):os.sawtooth * level * gate(signal(x)): fi.lowpass(3,lp_freq): fi.highpass(3,hp_freq)*0.5)
;
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/41f0452e5bba26a7f8551ab05a452c8f8bfd6a87/acor.dsp
|
faust
|
Gate parameters:
dB
attack time constant (sec) for gate to open
hold time = time (sec) gate stays open after signal < thresh
release time = time-constant (sec) for gate to close
F0min = 80.0; // lowest tracked pitch (Hz)
F0max = 500.0; // highest tracked pitch (Hz)
F0min = 300.0; // lowest tracked pitch (Hz)
F0max = 2000.0; // highest tracked pitch (Hz)
for block diagram
for block diagram
F0min = 1000.0; // lowest tracked pitch (Hz)
F0max = 5000.0; // highest tracked pitch (Hz)
SRguess = 44100.0; // Can't seem to use SR in expression below:
Can't seem to use SR in expression below:
MINPER = int(SRguess/F0max);
MAXPER = int(SRguess/F0min);
NLAGS = MAXPER-MINPER+1;
MINPER = 12000;
MAXPER = 14000;
FIXME: should use rect smoothing window, not exp
acor(L) = _ <: _,@(L) : * <: select3(hslider("exp,rectL,rectNLAGS", 0, 0, 2, 1), fi.pole(0.9999), ba.slidingSum(L*mult), ba.slidingSum(NLAGS*mult));
acor(L) = _ <: _,@(L) : * <: select2(checkbox("rect"), fi.pole(0.9999), ba.slidingSum(NLAGS*mult));
JuliusAcor(L) = _ <: _,@(L) : * <: select2(checkbox("rect"), fi.pole(0.9999), ba.slidingSum(NLAGS*mult));
Bitstream Autocorrelation
https://www.cycfi.com/2018/03/fast-and-efficient-pitch-detection-bitstream-autocorrelation/
BitAcor(L) = int(zeroCross) <: _,@(L) : xnor <: select2(checkbox("rect"), fi.pole(0.9999), _);
zeroCross(x) = ((x>=0) & (x'<0)) | ((x>0) & (x'<=0));
acor(L) = BitAcor(L);
lcomparator(n,x,m,y) = select2((x>y),m,n), select2((x>y),y,x); // compare integer-labeled signals
compare integer-labeled signals
pitch filtering
smooth(p) = (1-p)/(1-p/z)
signal(x)
, ((pitchTracker(signal(x)) : portamento : pitchMeter):os.sawtooth * level * gate(signal(x)): fi.lowpass(3,lp_freq): fi.highpass(3,hp_freq)*0.5)
|
import("stdfaust.lib");
declare author "Julius Smith";
declare author "Bart Brouns";
external = checkbox("[0]use external input");
freq = hslider("[1]freq [unit:hz] [scale:log]
[tooltip: frequency of the test oscillator]", F0min, F0min, F0max, 0.1);
lp_freq = hslider("[2]lp_freq [unit:hz] [scale:log]
[tooltip: frequency of the low pass filter on the test oscillator]", 20000, 20, 20000, 1);
hp_freq = hslider("[3]hp_freq [unit:hz] [scale:log]
[tooltip: frequency of the high pass filter on the test oscillator]", 20, 20, 20000, 1);
noiseLevel = hslider("[4]noiseLevel", 0, 0, 1, 0.1);
level = hslider("[5]level (db)", -10, -70, 10, 0.1) : ba.db2linear : si.smooth(0.999);
medianBP = checkbox("[6]median bypass");
portamentoTime = hslider("[7] Portamento [unit:sec] [scale:log]
[tooltip: Portamento (frequency-glide) time-constant in seconds]",
0,0.00,1,0.001);
pitchMeter = hbargraph("[8]pitch", F0min, F0max);
gate = ef.gate_gain_mono(thresh,att,hold,rel);
MINPER = 001;
MAXPER = 10;
NLAGS = MAXPER-MINPER+1;
lag2hz(lag) = float(ma.SR)/float(lag);
JuliusAcor(L) = _ <: _,@(L) : * : ba.slidingSum(NLAGS*mult);
BitAcor(L) = int(zeroCross) <: _,@(L) : xor <: select2(checkbox("rect"), fi.pole(0.9999), ba.slidingSum(NLAGS*mult) );
zeroCross(x) = x>0;
xnor = 1-xor(_,_);
acor(L) = JuliusAcor(L);
mult = hslider("mult", 1, 1, 100, 0.1);
macor(MINP,MAXP) = _ <: par(i,NLAGS,(MINP+i,acor(MINP+i)));
find_lmax(N) = seq(i,N-2, (lcomparator,si.bus(2*(N-i-2)))) : lcomparator;
median3p(a,b,c) = select3(s,b,a,c)
with {
cf(a,b) = 2*(a<b)-1;
s=abs(cf(a,b)+2*cf(b,c)+3*cf(c,a))/2;
};
median3(x) = median3p(x,x',x'');
lagFinder = (macor(MINPER,MAXPER) : find_lmax(NLAGS) : _,!);
pitchTracker = (macor(MINPER,MAXPER) : find_lmax(NLAGS) : lag2hz,!);
signal(x) = select2(external, oscillator,x );
oscillator = (os.sawtooth(freq), no.noise):si.interpolate(noiseLevel): fi.lowpass(3,lp_freq): fi.highpass(3,hp_freq)*0.5;
process(x) =
lagFinder
;
|
6b329f8e23689749675c858c8f28c29f00999bfe066ac0e0672f0784aba47ea6
|
magnetophon/faustExperiments
|
bug.dsp
|
declare author "Bart Brouns";
declare license "AGPLv3";
declare name "lastNote";
declare options "[midi:on]";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////////////////////
// give the number of the last note played //
///////////////////////////////////////////////////////////////////////////////
phase = hslider("phase", 0, 0, 1, stepsize);
// traditional faust synth:
// freq = midiGroup(hslider("freq",440,0,24000,0.0001)) :new_smooth( ba.tau2pole(portamento));
// freq = midiGroup(hslider("freq",440,0,24000,0.0001)) :si.smooth(gate' * ba.tau2pole(portamento));
// gain = midiGroup(hslider("gain",0.5,0,1,stepsize));
// gate = midiGroup(button("gate"));
// workaround for proper monophonic handling, increases compile-time massively and CPU usage with +/- 5%:
// freq = lastNote:ba.pianokey2hz :new_smooth(ba.tau2pole(portamento));
// freq = lastNote:ba.pianokey2hz :si.smooth(gate' * ba.tau2pole(portamento));
freq = lastNote:ba.pianokey2hz : enabled_smooth(gate',ba.tau2pole(portamento));
gain = (vel(lastNote)/127); // increases the cpu-usage, from 7% to 11%
gate = gain>0;
// gate = vel(lastNote)>0;
// gain = (nrNotesPlaying>0); // no velocity, 7% cpu
// TODO: why this doesn't work,only gate works.
// from https://github.com/timowest/analogue/blob/master/faust/midi.dsp
// freq = hslider("/h:midi/pitch", 64, 32, 100, 1):ba.pianokey2hz;
// gain = hslider("/h:midi/gain", 1, 0, 1, 0.01);
// gate = button("/h:midi/gate");
///////////////////////////////////////////////////////////////////////////////
// process //
///////////////////////////////////////////////////////////////////////////////
process =
os.osc(freq)*gain*gate;
velocity(i) = select2(i>=0, 0, hslider("velocity of note %i [midi:key %i ]", 0, 0, nrNotes, 1));
portamento = hslider("[0]portamento[scale:log]", 0, 0, 1, stepsize);
enabled_smooth(e,s) = si.smooth(s * e );
vel(x) = chooseFromFixed(nrNotes,velocity,x);
// vel(x) = x:chooseFromFixed(nrNotes,velocity);
// you need the value of `expression(N)`, but expression wants N to be known at compile time.
// if you know N will be an int between 0 and maxN, you can do:
chooseFromFixed(maxN,expression,N) = par(i, maxN, expression(i)*(i==N)):>_;
///////////////////////////////////////////////////////////////////////////////
// lastNote //
///////////////////////////////////////////////////////////////////////////////
nrNotesPlaying = 0: seq(i, nrNotes, noteIsOn(i),_:+);
noteIsOn(i) = velocity(i)>0;
lastNote =
par(i, nrNotes, (i,index(i)) )
: find_max_index(nrNotes)
: (_,!)
;
// with {
// an index to indicate the order of the note
// it adds one for every additional note played
// it resets to 0 when there are no notes playing
// assume multiple notes can start at once
orderIndex = ((_+nrNewNotes) * (nrNotesPlaying>1))~_;
nrNewNotes = ((nrNotesPlaying-nrNotesPlaying')):max(0);
// the order index of note i
// TODO: when multiple notes start at the same time, give each a unique index
index(i) = orderIndex:(select2(noteStart(i),_,_)
:select2(noteEnd(i)+(1:ba.impulsify),_,-1))~_;
// we use this instead of:
// hslider("frequency[midi:keyon 62]",0,0,nrNotes,1)
// because keyon can come multiple times, and we only want the first
noteStart(i) = noteIsOn(i):ba.impulsify;
noteEnd(i) = (noteIsOn(i)'-noteIsOn(i)):max(0):ba.impulsify;
//or do we?
// noteStart(i) = (hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0) :ba.impulsify;
// ERROR : path '/lastNote/keyon' is already used
// noteEnd(i) = ((hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)'-(hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)):max(0):ba.impulsify;
// at the very least, the first implementation of noteStart(i) doesn't add another 127 sliders
// from Julius Smith's acor.dsp:
index_comparator(n,x,m,y) = select2((x>y),m,n), select2((x>y),y,x); // compare integer-labeled signals
// take N number-value pairs and give the number with the maximum value
find_max_index(N) = seq(i,N-2, (index_comparator,si.bus(2*(N-i-2)))) : index_comparator;
//////////////////////////////////////////////////////////////////////////////
// constants //
//////////////////////////////////////////////////////////////////////////////
// fast
// stepsize = 0.1;
// medium
stepsize = 0.01;
// smooth
// stepsize = 0.001;
nrNotes = 127; // nr of midi notes
// nrNotes = 4; // for block diagram
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/475def588ca4ae5b5a703cf15d30fa8851e2e147/bug.dsp
|
faust
|
/////////////////////////////////////////////////////////////////////////////
give the number of the last note played //
/////////////////////////////////////////////////////////////////////////////
traditional faust synth:
freq = midiGroup(hslider("freq",440,0,24000,0.0001)) :new_smooth( ba.tau2pole(portamento));
freq = midiGroup(hslider("freq",440,0,24000,0.0001)) :si.smooth(gate' * ba.tau2pole(portamento));
gain = midiGroup(hslider("gain",0.5,0,1,stepsize));
gate = midiGroup(button("gate"));
workaround for proper monophonic handling, increases compile-time massively and CPU usage with +/- 5%:
freq = lastNote:ba.pianokey2hz :new_smooth(ba.tau2pole(portamento));
freq = lastNote:ba.pianokey2hz :si.smooth(gate' * ba.tau2pole(portamento));
increases the cpu-usage, from 7% to 11%
gate = vel(lastNote)>0;
gain = (nrNotesPlaying>0); // no velocity, 7% cpu
TODO: why this doesn't work,only gate works.
from https://github.com/timowest/analogue/blob/master/faust/midi.dsp
freq = hslider("/h:midi/pitch", 64, 32, 100, 1):ba.pianokey2hz;
gain = hslider("/h:midi/gain", 1, 0, 1, 0.01);
gate = button("/h:midi/gate");
/////////////////////////////////////////////////////////////////////////////
process //
/////////////////////////////////////////////////////////////////////////////
vel(x) = x:chooseFromFixed(nrNotes,velocity);
you need the value of `expression(N)`, but expression wants N to be known at compile time.
if you know N will be an int between 0 and maxN, you can do:
/////////////////////////////////////////////////////////////////////////////
lastNote //
/////////////////////////////////////////////////////////////////////////////
with {
an index to indicate the order of the note
it adds one for every additional note played
it resets to 0 when there are no notes playing
assume multiple notes can start at once
the order index of note i
TODO: when multiple notes start at the same time, give each a unique index
we use this instead of:
hslider("frequency[midi:keyon 62]",0,0,nrNotes,1)
because keyon can come multiple times, and we only want the first
or do we?
noteStart(i) = (hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0) :ba.impulsify;
ERROR : path '/lastNote/keyon' is already used
noteEnd(i) = ((hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)'-(hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)):max(0):ba.impulsify;
at the very least, the first implementation of noteStart(i) doesn't add another 127 sliders
from Julius Smith's acor.dsp:
compare integer-labeled signals
take N number-value pairs and give the number with the maximum value
////////////////////////////////////////////////////////////////////////////
constants //
////////////////////////////////////////////////////////////////////////////
fast
stepsize = 0.1;
medium
smooth
stepsize = 0.001;
nr of midi notes
nrNotes = 4; // for block diagram
|
declare author "Bart Brouns";
declare license "AGPLv3";
declare name "lastNote";
declare options "[midi:on]";
import("stdfaust.lib");
phase = hslider("phase", 0, 0, 1, stepsize);
freq = lastNote:ba.pianokey2hz : enabled_smooth(gate',ba.tau2pole(portamento));
gate = gain>0;
process =
os.osc(freq)*gain*gate;
velocity(i) = select2(i>=0, 0, hslider("velocity of note %i [midi:key %i ]", 0, 0, nrNotes, 1));
portamento = hslider("[0]portamento[scale:log]", 0, 0, 1, stepsize);
enabled_smooth(e,s) = si.smooth(s * e );
vel(x) = chooseFromFixed(nrNotes,velocity,x);
chooseFromFixed(maxN,expression,N) = par(i, maxN, expression(i)*(i==N)):>_;
nrNotesPlaying = 0: seq(i, nrNotes, noteIsOn(i),_:+);
noteIsOn(i) = velocity(i)>0;
lastNote =
par(i, nrNotes, (i,index(i)) )
: find_max_index(nrNotes)
: (_,!)
;
orderIndex = ((_+nrNewNotes) * (nrNotesPlaying>1))~_;
nrNewNotes = ((nrNotesPlaying-nrNotesPlaying')):max(0);
index(i) = orderIndex:(select2(noteStart(i),_,_)
:select2(noteEnd(i)+(1:ba.impulsify),_,-1))~_;
noteStart(i) = noteIsOn(i):ba.impulsify;
noteEnd(i) = (noteIsOn(i)'-noteIsOn(i)):max(0):ba.impulsify;
find_max_index(N) = seq(i,N-2, (index_comparator,si.bus(2*(N-i-2)))) : index_comparator;
stepsize = 0.01;
|
7ff1a024ff5ba94d83b8b0ab72900cd7b69f621a33e1218af133183898c9786d
|
magnetophon/VoiceOfFaust
|
myFMvox.dsp
|
declare name "FMVox";
declare version "1.0";
declare author "Chris Chafe";
declare license "BSD";
declare copyright "stk";
import("stdfaust.lib");
// ------ Program A of "Glitch Free FM Vocal Synthesis" (minor corrections from article)
// ------ table lookup oscillators -----//
ts = 1 << 16; // table size
fs = float(ts);
ts1 = ts+1;
ct = (+(1)~_ ) - 1; // incrementing counter from 0
fct = float(ct);
sc = fct*(2*ma.PI)/fs:sin; // sine table for carrier
sm = fct*(2*ma.PI)/fs:sin:/(2*ma.PI); // sine table for modulator
dec(x) = x-floor(x); // fractional remainder
pha(f) = f/float(ma.SR):(+:dec) ~ _; // generates a index signal
tbl(t,p)= s1
// tbl(t,p)= s1+dec(f)*(s2-s1) // looks up linearly interpolated table value
with {
f = p*fs;
i = int(f):min(ts);
s1 = rdtable(ts1,t,i);
s2 = rdtable(ts1,t,i+1);
};
// MyMeter = _<:(_, (envelop :(OSCgroup(MeterGroup(hbargraph("[4]", 0, ts1))))):attach);
// i=hslider("i",0,0,ts,1);
// ------ formant generator using uniform (phase-synchronous) oscillators -----//
fupho(f0,a,b,c) = (even+odd):*(a) // outputs the sum of bracketing harmonics
with { // from f0, amp, bandwidth, center freq
cf = c/f0;
ci = int(floor(cf)); // integer harmonic below center freq
ci1 = ci+1; // and above
isEven= ba.if(((ci%2)<1),1,0); // below is even?
ef = ba.if(isEven,ci,ci1); // then set even harmonic to lowest
of = ba.if(isEven,ci1,ci); // and odd harmonic to highest
frac = cf-ci; // fractional frequency remainder
comp = 1-frac;
oa = ba.if(isEven,frac,comp); // odd harmonic amplitude
ea = ba.if(isEven,comp,frac); // even harmonic amplitude
ph = pha(f0); // index signal at fundamental
m = tbl(sm,ph):*(b); // modulator sine signal
even = ea:*(tbl(sc,(dec(ef*ph+m)))); // even harmonic signal with phase modulation
odd = oa:*(tbl(sc,(dec(of*ph+m)))); // odd harmonic signal
};
// as above, but synced to an external phaser
fuphoSlave(index,f0,a,b,c) = (even+odd):*(a) // outputs the sum of bracketing harmonics
with { // from f0, amp, bandwidth, center freq
cf = c/f0;
ci = int(floor(cf)); // integer harmonic below center freq
ci1 = ci+1; // and above
isEven= ba.if(((ci%2)<1),1,0); // below is even?
ef = ba.if(isEven,ci,ci1); // then set even harmonic to lowest
of = ba.if(isEven,ci1,ci); // and odd harmonic to highest
frac = cf-ci; // fractional frequency remainder
comp = 1-frac;
oa = ba.if(isEven,frac,comp); // odd harmonic amplitude
ea = ba.if(isEven,comp,frac); // even harmonic amplitude
// ph = pha(f0); // index signal at fundamental
m = tbl(sm,index):*(b); // modulator sine signal
even = ea:*(tbl(sc,(dec(ef*index+m)))); // even harmonic signal with phase modulation
odd = oa:*(tbl(sc,(dec(of*index+m)))); // odd harmonic signal
};
// as above, but with the parameter eo to set the proportion of even and odd harmonics.
fuphoSlaveEvenOdd(index,f0,a,b,c,eo) = (even+odd):*(a) // outputs the sum of bracketing harmonics
with { // from f0, amp, bandwidth, center freq
okt = vslider("okt", 0, -2, 2, 1);
cf = c/f0;
// cf = c/(f0*(okt:octaveMultiplier));
ci = int(floor(cf)); // integer harmonic below center freq
ci1 = ci+1; // and above
isEven= ba.if(((ci%2)<1),1,0); // below is even?
ef = ba.if(isEven,ci,ci1); // then set even harmonic to lowest
of = ba.if(isEven,ci1,ci); // and odd harmonic to highest
frac = cf-ci; // fractional frequency remainder
comp = 1-frac;
oa = ba.if(isEven,frac,comp)*eo; // odd harmonic amplitude
ea = ba.if(isEven,comp,frac)*((eo*-1)+1); // even harmonic amplitude
// ph = pha(f0); // index signal at fundamental
m = tbl(sm,index):*(b); // modulator sine signal
even = ea:*(tbl(sc,(dec(ef*index+m)))); // even harmonic signal with phase modulation
odd = oa:*(tbl(sc,(dec(of*index+m)))); // odd harmonic signal
};
// ------ parser functions for stream with interleaved formant parameters -----//
frame(c) = (w ~ _ ) // detects a new frame and starts counting
with {
rst(y)= ba.if(c,-y,1);
w(x) = x+rst(x);
};
demux(i,ctr,x) = coef // demux'es a given offset in frame
with {
trig = (ctr==i);
coef = (*(1-trig)+x*trig) ~ _;
};
// ------ parser for stream with interleaved formant parameters -----//
// formant(f_num,ctlStream) = fsig // applies parameters to formant generator
// with {
// ctr = frame(ctlStream<0); // negative value flags start of a new frame
// co(i) = demux(i,ctr,ctlStream); // demux using frame counter
// f0 = 1; // f0 pitch in counter position 1
// a = f0+1+f_num*3; // f1 amp in position 2, f2 amp in 5...
// b = a+1; // f1 bandwidth in 3...
// c = a+2; // f1 center freq in 4...
// fsig = fupho(co(f0), co(a), // signal for formant number f_num
// co(b), co(c));
// };
// ------ vox synthesizer with single multiplexed control stream input -----//
nf = 4; // number of formants
// process = _<: par(i,nf,formant(i)) :>_; // run formants in parallel, sum their outputs
// process = formant(1);
// freq = vslider("freq", 110, 55, 440, 1):si.smooth(0.999);
// amp = vslider("amp", 0, 0, 1, 0.001):si.smooth(0.999);
// bandwidth = vslider("bandwidth", 1, 0, 100, 0.001):si.smooth(0.999);
// center =vslider("center", 110, 55, 440, 1):si.smooth(0.999);
// process = fupho(freq,amp,bandwidth,center);
// process = fuphoSlave(os.lf_sawpos(freq),freq,amp,bandwidth,center);
|
https://raw.githubusercontent.com/magnetophon/VoiceOfFaust/82c20ed40fb5f184a236a7c765eab5acfc3bb5f5/lib/myFMvox.dsp
|
faust
|
------ Program A of "Glitch Free FM Vocal Synthesis" (minor corrections from article)
------ table lookup oscillators -----//
table size
incrementing counter from 0
sine table for carrier
sine table for modulator
fractional remainder
generates a index signal
tbl(t,p)= s1+dec(f)*(s2-s1) // looks up linearly interpolated table value
MyMeter = _<:(_, (envelop :(OSCgroup(MeterGroup(hbargraph("[4]", 0, ts1))))):attach);
i=hslider("i",0,0,ts,1);
------ formant generator using uniform (phase-synchronous) oscillators -----//
outputs the sum of bracketing harmonics
from f0, amp, bandwidth, center freq
integer harmonic below center freq
and above
below is even?
then set even harmonic to lowest
and odd harmonic to highest
fractional frequency remainder
odd harmonic amplitude
even harmonic amplitude
index signal at fundamental
modulator sine signal
even harmonic signal with phase modulation
odd harmonic signal
as above, but synced to an external phaser
outputs the sum of bracketing harmonics
from f0, amp, bandwidth, center freq
integer harmonic below center freq
and above
below is even?
then set even harmonic to lowest
and odd harmonic to highest
fractional frequency remainder
odd harmonic amplitude
even harmonic amplitude
ph = pha(f0); // index signal at fundamental
modulator sine signal
even harmonic signal with phase modulation
odd harmonic signal
as above, but with the parameter eo to set the proportion of even and odd harmonics.
outputs the sum of bracketing harmonics
from f0, amp, bandwidth, center freq
cf = c/(f0*(okt:octaveMultiplier));
integer harmonic below center freq
and above
below is even?
then set even harmonic to lowest
and odd harmonic to highest
fractional frequency remainder
odd harmonic amplitude
even harmonic amplitude
ph = pha(f0); // index signal at fundamental
modulator sine signal
even harmonic signal with phase modulation
odd harmonic signal
------ parser functions for stream with interleaved formant parameters -----//
detects a new frame and starts counting
demux'es a given offset in frame
------ parser for stream with interleaved formant parameters -----//
formant(f_num,ctlStream) = fsig // applies parameters to formant generator
with {
ctr = frame(ctlStream<0); // negative value flags start of a new frame
co(i) = demux(i,ctr,ctlStream); // demux using frame counter
f0 = 1; // f0 pitch in counter position 1
a = f0+1+f_num*3; // f1 amp in position 2, f2 amp in 5...
b = a+1; // f1 bandwidth in 3...
c = a+2; // f1 center freq in 4...
fsig = fupho(co(f0), co(a), // signal for formant number f_num
co(b), co(c));
};
------ vox synthesizer with single multiplexed control stream input -----//
number of formants
process = _<: par(i,nf,formant(i)) :>_; // run formants in parallel, sum their outputs
process = formant(1);
freq = vslider("freq", 110, 55, 440, 1):si.smooth(0.999);
amp = vslider("amp", 0, 0, 1, 0.001):si.smooth(0.999);
bandwidth = vslider("bandwidth", 1, 0, 100, 0.001):si.smooth(0.999);
center =vslider("center", 110, 55, 440, 1):si.smooth(0.999);
process = fupho(freq,amp,bandwidth,center);
process = fuphoSlave(os.lf_sawpos(freq),freq,amp,bandwidth,center);
|
declare name "FMVox";
declare version "1.0";
declare author "Chris Chafe";
declare license "BSD";
declare copyright "stk";
import("stdfaust.lib");
fs = float(ts);
ts1 = ts+1;
fct = float(ct);
tbl(t,p)= s1
with {
f = p*fs;
i = int(f):min(ts);
s1 = rdtable(ts1,t,i);
s2 = rdtable(ts1,t,i+1);
};
cf = c/f0;
comp = 1-frac;
};
cf = c/f0;
comp = 1-frac;
};
okt = vslider("okt", 0, -2, 2, 1);
cf = c/f0;
comp = 1-frac;
};
with {
rst(y)= ba.if(c,-y,1);
w(x) = x+rst(x);
};
with {
trig = (ctr==i);
coef = (*(1-trig)+x*trig) ~ _;
};
|
26747f85dc4a80f4e6d35b4f93118ea5a853ceb3d456a01e2a02692ba590aa63
|
magnetophon/faustOscillators
|
formant.dsp
|
declare author "Bart Brouns";
declare license "GPLv3";
declare name "formantOscs";
import("stdfaust.lib");
process =
fund(freq,phase,reset)<:
(
oscChooser(oscTypeL)
, oscChooser(oscTypeR)
);
oscTypeL = hslider ("[0] oscillator type left [scale:int][style:menu{'PAF':0;'FM':1;'FOF':2}]", 0, 0, 2, 1);
oscTypeR = hslider ("[1] oscillator type right[scale:int][style:menu{'PAF':0;'FM':1;'FOF':2}]", 1, 0, 2, 1);
reset = button ("[2]reset");
freq = hslider ("[3]freq", 440, 27.5, 3520, 0.1) :si.smoo;
phase = hslider ("[4]phase", 0, -1, 1, 0.001) :si.smoo;
formantFreq = hslider ("[5]formant frequency", 440, 27.5, 3520, 0.1) :si.smoo;
index = hslider ("[6]index", 1, 0, 1, 0.001) :si.smoo;
attack = hslider ("[7]FOF attack", 2, 0.001, multi, 0.001) :si.smoo;
release = hslider ("[8]FOF release", 2, 0.001, multi, 0.001) :si.smoo;
octavation = hslider ("[9]FOF octavation",0,0,maxOctavation,0.001) :si.smoo;
///////////////////////////////////////////////////////////////////////////////
// general //
///////////////////////////////////////////////////////////////////////////////
fund(freq,phase,reset) = lf_sawpos_phase_reset(freq,phase,reset);
lf_sawpos_phase_reset(freq,phase,reset) = lf_sawpos_reset(freq,reset) + phase : ma.frac;
lf_sawpos_reset(freq,reset) = ma.frac * (reset == 0) ~ +(freq/ma.SR);
oscChooser(type) =
select3(type
, (PAF(center,index*1000,1))
, (FMformant(index*40,formantFreq)*0.0625)
, (octavedFOF(octavation)));
// TODO: make work with negative frequency
fund2freq(fund) = delta*ma.SR
with {
absDelta = abs(fund-fund');
delta = select2(absDelta>0.5,absDelta,1-absDelta);
};
///////////////////////////////////////////////////////////////////////////////
// PAF oscilator //
///////////////////////////////////////////////////////////////////////////////
// http://msp.ucsd.edu/techniques/v0.11/book-html/node96.html
//
center = formantFreq / abs(freq);
// deglitch adapted from Chris Chafe:
// http://chrischafe.net/glitch-free-fm-vocal-synthesis/
// center, fund, index, volume
PAF(c,i,v,f) =
BasicPAF(ef,f,i,ea)+
BasicPAF(of,f,i,oa)
with {
ci = int(floor(c)); // integer harmonic below center freq
ci1 = ci+1; // and above
isEven = ba.if(((ci%2)<1),1,0); // below is even?
ef = ba.if(isEven,ci,ci1); // then set even harmonic to lowest
of = ba.if(isEven,ci1,ci); // and odd harmonic to highest
frac = c-ci; // fractional frequency remainder
comp = 1-frac; // and it's complement
oa = ba.if(isEven,frac,comp)*v; // odd harmonic amplitude
ea = ba.if(isEven,comp,frac)*v; // even harmonic amplitude
};
// center, fund, index, volume
BasicPAF(c,f,i,v)=
(((cos12(c,f))*bell(f,i)) * v) * volumeCompensate
with {
Nbellcurve(x) = curve(x*100);
bellcurve(x) = rdtable(belltablesize + 1,ba.time:curve,int(x*(belltablesize/200)):max(0):min(belltablesize));
belltablesize = 1 << 16;
curve = (((_-(belltablesize*0.5))/(belltablesize*0.125))<:exp((_*_)*-1));
// belltablesize = 200;
// curve = ba.time:(((_-100)/25)<:exp((_*_)*-1));
// curve = ba.time:(((x-100)/25)<:exp((w*w)*-1));
volumeCompensate = 0.666+(i/300)*0.75:min(1)*0.25;
// volumeCompensate = 1;
wrap = _<:(_>0,(_,1:fmod)+1,(_,1:fmod)):select2;
centerWrap(c,f) = c:sampleAndHold(f)<:wrap;
centerMin(c,f) = c:sampleAndHold(f)-centerWrap(c,f);
// different from library ba.sAndH because that one has ``sample`` instead of ``sample!=0``
sampleAndHold(sample) = select2((sample!=0)) ~ _;
cos12(c,f) = (centerMin(c,f)*f<:(_*2*ma.PI:cos)<:(_,_((_,(_+f:(_*2*ma.PI:cos))):_-_:(_*centerWrap(c,f))) )):_+_;
// bell(f,i) = (((f*0.5)-0.25:(_*4*ma.PI:cos))*i)+100:bellcurve;
bell(f,i) = ((((f*0.5)-0.25)*2*ma.PI:cos)*i)+100:bellcurve;
};
///////////////////////////////////////////////////////////////////////////////
// FM formant oscilator //
///////////////////////////////////////////////////////////////////////////////
// declare name "FMVox";
// declare version "1.0";
// declare author "Chris Chafe";
// declare license "BSD";
// declare copyright "stk";
// ------ Program A of "Glitch Free FM Vocal Synthesis" (minor corrections from article)
// ------ table lookup oscillators -----//
ts = 1 << 16; // table size
fs = float(ts);
ts1 = ts+1;
ct = (+(1)~_ ) - 1; // incrementing counter from 0
fct = float(ct);
sc = fct*(2*ma.PI)/fs:sin; // sine table for carrier
sm = fct*(2*ma.PI)/fs:sin:/(2*ma.PI); // sine table for modulator
dec(x) = x-floor(x); // fractional remainder
pha(f) = f/float(ma.SR):(+:dec) ~ _; // generates a index signal
tbl(t,p)= s1
// tbl(t,p)= s1+dec(f)*(s2-s1) // looks up linearly interpolated table value
with {
f = p*fs;
i = int(f):min(ts);
s1 = rdtable(ts1,t,i);
s2 = rdtable(ts1,t,i+1);
};
// synced to an external phaser "fund"
// the parameter eo sets the proportion of even and odd harmonics.
FMformant(b,c,fund) = even+odd // outputs the sum of bracketing harmonics
with { // from f0, amp, bandwidth, center freq
f0 = fund2freq(fund);
cf = c/f0;
ci = int(floor(cf)); // integer harmonic below center freq
ci1 = ci+1; // and above
isEven= ba.if(((ci%2)<1),1,0); // below is even?
ef = ba.if(isEven,ci,ci1); // then set even harmonic to lowest
of = ba.if(isEven,ci1,ci); // and odd harmonic to highest
frac = cf-ci; // fractional frequency remainder
comp = 1-frac;
oa = ba.if(isEven,frac,comp); // odd harmonic amplitude
ea = ba.if(isEven,comp,frac); // even harmonic amplitude
m = tbl(sm,fund):*(b); // modulator sine signal
even = ea:*(tbl(sc,(dec(ef*fund+m)))); // even harmonic signal with phase modulation
odd = oa:*(tbl(sc,(dec(of*fund+m)))); // odd harmonic signal
};
///////////////////////////////////////////////////////////////////////////////
// FOF //
///////////////////////////////////////////////////////////////////////////////
// declare author "Bart Brouns";
// declare license "GPLv3";
// declare name "fof";
// adapted from:
// https://ccrma.stanford.edu/~mjolsen/pdfs/smc2016_MOlsenFOF.pdf
// Cyclic Impulse Train Streams //
// impulse train at frequency of fund
// clk(fund) = (1-1')+(fund<:-(mem)<0)';
clk(fund) = (1-1') +(
abs(fund-fund')>0.5
)';
// impulse train at frequency f0 split into n cycles
clkCycle(n,fund) = clk(fund) <: par(i,n,resetCtr(n,(i+1)));
// function that lets through the mth impulse out of
// each consecutive group of n impulses
resetCtr(n,m) = _ <: (_,ctr(n)) : (_,(_==m)) : *;
// function to count nonzero inputs and reset after
// receiving x of them
ctr(x) = (+(_)~(negSub(x)));
// function that subtracts value x from
// input stream value if input stream value >= x
negSub(x)= _<: (_>=x,_,_):((-1*_),_,_):((_*_),_):(_+_);
// main process
octavedFOF(octavation,fund) =
(
clkCycle(multi,fund)
: par(i,multi,myFOF(fund)*OctMuliply(i))
:> _
* (octavation:max(1)/maxOctavation)
)
;
myFOF(fund,fofTrig) =
fofEnv(fund,fofTrig)*fofSlaveOsc(fofTrig);
fofEnv(fund,fofTrig) =
curved_ar(fund,attack,release,fofTrig) ;
fofSlaveOsc(fofTrig) =
// fund(formantFreq,0,fofTrig)
// : basicCZosc(oscType,index,reset);
rdtable(pl.tablesize
, os.sinwaveform(pl.tablesize)
, int(pl.tablesize * fund(formantFreq,0,fofTrig)));
// fund(formantFreq,0,fofTrig)
// *2*ma.PI:sin;
curved_ar(fund,a,r,gate) =
FB~(_,_) // we need the previous state and value
:!,_ // we only need the actual envelope output
with {
FB(prevState, prevValue) =
// states are :0 = release, 1= attack
state
// the actual value of the envelope
,envelope
with { // so we can use prevState by name, without passing it as an argument
state = (attackRamp < 1) | trigAttack;
trigAttack= gate;
attackRamp = ramp(attSamples,trigAttack);
attSamples = int( att * ma.SR / fund2freq(fund) );
att = (a/scale);
scale = ((a+r)/multi):max(1);
envelope = it.interpolate_linear(theRamp:SINshaper,from,to(state));
theRamp = ramp(samples,trig);
SINshaper(x) = sin(ma.PI*(x-0.5))*0.5+0.5;
samples = int( length(state) * ma.SR / fund2freq(fund) );
length(state) = select2(state,r,a)/scale;
trig = trigAttack, trigRelease :> _>0;
trigRelease =
(((prevState==1) & (attackRamp ==1))) // doesn not auto-impulsify because prev will NOT increase
| trigAttack & (attSamps==0);
from = prevValue : ba.sAndH(trig);
to(state) = select2(state,0,1); // release to 0, attack to 1, decay to sustain-level
attSamps = int(a * ma.SR);
// ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
// when reset == 1, go back to 1/n.
// ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
ramp(n,reset) = (select2(reset,_+(1/n):min(1),1/n)~_)+(n<1):min(1);
};
};
OctMuliply(i) =
(
(OctMuliplyPart(i,floor(octavation+1))* ma.decimal(octavation)) +
(OctMuliplyPart(i,floor(octavation ))* (1-ma.decimal(octavation)))
)
;
OctMuliplyPart(i,oct) =
select2(i>0,1,
(((i % int(2:pow(oct)))):min(1)*-1)+1) ;
multi = 2:pow(maxOctavation);
maxOctavation = 4;
|
https://raw.githubusercontent.com/magnetophon/faustOscillators/6ac2ac572f8a3dc78cc6cb0074d60cce10845300/formant.dsp
|
faust
|
/////////////////////////////////////////////////////////////////////////////
general //
/////////////////////////////////////////////////////////////////////////////
TODO: make work with negative frequency
/////////////////////////////////////////////////////////////////////////////
PAF oscilator //
/////////////////////////////////////////////////////////////////////////////
http://msp.ucsd.edu/techniques/v0.11/book-html/node96.html
deglitch adapted from Chris Chafe:
http://chrischafe.net/glitch-free-fm-vocal-synthesis/
center, fund, index, volume
integer harmonic below center freq
and above
below is even?
then set even harmonic to lowest
and odd harmonic to highest
fractional frequency remainder
and it's complement
odd harmonic amplitude
even harmonic amplitude
center, fund, index, volume
belltablesize = 200;
curve = ba.time:(((_-100)/25)<:exp((_*_)*-1));
curve = ba.time:(((x-100)/25)<:exp((w*w)*-1));
volumeCompensate = 1;
different from library ba.sAndH because that one has ``sample`` instead of ``sample!=0``
bell(f,i) = (((f*0.5)-0.25:(_*4*ma.PI:cos))*i)+100:bellcurve;
/////////////////////////////////////////////////////////////////////////////
FM formant oscilator //
/////////////////////////////////////////////////////////////////////////////
declare name "FMVox";
declare version "1.0";
declare author "Chris Chafe";
declare license "BSD";
declare copyright "stk";
------ Program A of "Glitch Free FM Vocal Synthesis" (minor corrections from article)
------ table lookup oscillators -----//
table size
incrementing counter from 0
sine table for carrier
sine table for modulator
fractional remainder
generates a index signal
tbl(t,p)= s1+dec(f)*(s2-s1) // looks up linearly interpolated table value
synced to an external phaser "fund"
the parameter eo sets the proportion of even and odd harmonics.
outputs the sum of bracketing harmonics
from f0, amp, bandwidth, center freq
integer harmonic below center freq
and above
below is even?
then set even harmonic to lowest
and odd harmonic to highest
fractional frequency remainder
odd harmonic amplitude
even harmonic amplitude
modulator sine signal
even harmonic signal with phase modulation
odd harmonic signal
/////////////////////////////////////////////////////////////////////////////
FOF //
/////////////////////////////////////////////////////////////////////////////
declare author "Bart Brouns";
declare license "GPLv3";
declare name "fof";
adapted from:
https://ccrma.stanford.edu/~mjolsen/pdfs/smc2016_MOlsenFOF.pdf
Cyclic Impulse Train Streams //
impulse train at frequency of fund
clk(fund) = (1-1')+(fund<:-(mem)<0)';
impulse train at frequency f0 split into n cycles
function that lets through the mth impulse out of
each consecutive group of n impulses
function to count nonzero inputs and reset after
receiving x of them
function that subtracts value x from
input stream value if input stream value >= x
main process
fund(formantFreq,0,fofTrig)
: basicCZosc(oscType,index,reset);
fund(formantFreq,0,fofTrig)
*2*ma.PI:sin;
we need the previous state and value
we only need the actual envelope output
states are :0 = release, 1= attack
the actual value of the envelope
so we can use prevState by name, without passing it as an argument
doesn not auto-impulsify because prev will NOT increase
release to 0, attack to 1, decay to sustain-level
ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
when reset == 1, go back to 1/n.
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
|
declare author "Bart Brouns";
declare license "GPLv3";
declare name "formantOscs";
import("stdfaust.lib");
process =
fund(freq,phase,reset)<:
(
oscChooser(oscTypeL)
, oscChooser(oscTypeR)
);
oscTypeL = hslider ("[0] oscillator type left [scale:int][style:menu{'PAF':0;'FM':1;'FOF':2}]", 0, 0, 2, 1);
oscTypeR = hslider ("[1] oscillator type right[scale:int][style:menu{'PAF':0;'FM':1;'FOF':2}]", 1, 0, 2, 1);
reset = button ("[2]reset");
freq = hslider ("[3]freq", 440, 27.5, 3520, 0.1) :si.smoo;
phase = hslider ("[4]phase", 0, -1, 1, 0.001) :si.smoo;
formantFreq = hslider ("[5]formant frequency", 440, 27.5, 3520, 0.1) :si.smoo;
index = hslider ("[6]index", 1, 0, 1, 0.001) :si.smoo;
attack = hslider ("[7]FOF attack", 2, 0.001, multi, 0.001) :si.smoo;
release = hslider ("[8]FOF release", 2, 0.001, multi, 0.001) :si.smoo;
octavation = hslider ("[9]FOF octavation",0,0,maxOctavation,0.001) :si.smoo;
fund(freq,phase,reset) = lf_sawpos_phase_reset(freq,phase,reset);
lf_sawpos_phase_reset(freq,phase,reset) = lf_sawpos_reset(freq,reset) + phase : ma.frac;
lf_sawpos_reset(freq,reset) = ma.frac * (reset == 0) ~ +(freq/ma.SR);
oscChooser(type) =
select3(type
, (PAF(center,index*1000,1))
, (FMformant(index*40,formantFreq)*0.0625)
, (octavedFOF(octavation)));
fund2freq(fund) = delta*ma.SR
with {
absDelta = abs(fund-fund');
delta = select2(absDelta>0.5,absDelta,1-absDelta);
};
center = formantFreq / abs(freq);
PAF(c,i,v,f) =
BasicPAF(ef,f,i,ea)+
BasicPAF(of,f,i,oa)
with {
};
BasicPAF(c,f,i,v)=
(((cos12(c,f))*bell(f,i)) * v) * volumeCompensate
with {
Nbellcurve(x) = curve(x*100);
bellcurve(x) = rdtable(belltablesize + 1,ba.time:curve,int(x*(belltablesize/200)):max(0):min(belltablesize));
belltablesize = 1 << 16;
curve = (((_-(belltablesize*0.5))/(belltablesize*0.125))<:exp((_*_)*-1));
volumeCompensate = 0.666+(i/300)*0.75:min(1)*0.25;
wrap = _<:(_>0,(_,1:fmod)+1,(_,1:fmod)):select2;
centerWrap(c,f) = c:sampleAndHold(f)<:wrap;
centerMin(c,f) = c:sampleAndHold(f)-centerWrap(c,f);
sampleAndHold(sample) = select2((sample!=0)) ~ _;
cos12(c,f) = (centerMin(c,f)*f<:(_*2*ma.PI:cos)<:(_,_((_,(_+f:(_*2*ma.PI:cos))):_-_:(_*centerWrap(c,f))) )):_+_;
bell(f,i) = ((((f*0.5)-0.25)*2*ma.PI:cos)*i)+100:bellcurve;
};
fs = float(ts);
ts1 = ts+1;
fct = float(ct);
tbl(t,p)= s1
with {
f = p*fs;
i = int(f):min(ts);
s1 = rdtable(ts1,t,i);
s2 = rdtable(ts1,t,i+1);
};
f0 = fund2freq(fund);
cf = c/f0;
comp = 1-frac;
};
clk(fund) = (1-1') +(
abs(fund-fund')>0.5
)';
clkCycle(n,fund) = clk(fund) <: par(i,n,resetCtr(n,(i+1)));
resetCtr(n,m) = _ <: (_,ctr(n)) : (_,(_==m)) : *;
ctr(x) = (+(_)~(negSub(x)));
negSub(x)= _<: (_>=x,_,_):((-1*_),_,_):((_*_),_):(_+_);
octavedFOF(octavation,fund) =
(
clkCycle(multi,fund)
: par(i,multi,myFOF(fund)*OctMuliply(i))
:> _
* (octavation:max(1)/maxOctavation)
)
;
myFOF(fund,fofTrig) =
fofEnv(fund,fofTrig)*fofSlaveOsc(fofTrig);
fofEnv(fund,fofTrig) =
curved_ar(fund,attack,release,fofTrig) ;
fofSlaveOsc(fofTrig) =
rdtable(pl.tablesize
, os.sinwaveform(pl.tablesize)
, int(pl.tablesize * fund(formantFreq,0,fofTrig)));
curved_ar(fund,a,r,gate) =
with {
FB(prevState, prevValue) =
state
,envelope
state = (attackRamp < 1) | trigAttack;
trigAttack= gate;
attackRamp = ramp(attSamples,trigAttack);
attSamples = int( att * ma.SR / fund2freq(fund) );
att = (a/scale);
scale = ((a+r)/multi):max(1);
envelope = it.interpolate_linear(theRamp:SINshaper,from,to(state));
theRamp = ramp(samples,trig);
SINshaper(x) = sin(ma.PI*(x-0.5))*0.5+0.5;
samples = int( length(state) * ma.SR / fund2freq(fund) );
length(state) = select2(state,r,a)/scale;
trig = trigAttack, trigRelease :> _>0;
trigRelease =
| trigAttack & (attSamps==0);
from = prevValue : ba.sAndH(trig);
attSamps = int(a * ma.SR);
ramp(n,reset) = (select2(reset,_+(1/n):min(1),1/n)~_)+(n<1):min(1);
};
};
OctMuliply(i) =
(
(OctMuliplyPart(i,floor(octavation+1))* ma.decimal(octavation)) +
(OctMuliplyPart(i,floor(octavation ))* (1-ma.decimal(octavation)))
)
;
OctMuliplyPart(i,oct) =
select2(i>0,1,
(((i % int(2:pow(oct)))):min(1)*-1)+1) ;
multi = 2:pow(maxOctavation);
maxOctavation = 4;
|
8b82245b0b6290d33fe69ffb1e0264799b769dc0536f6102803df78b859c38d9
|
magnetophon/LazyLimiter
|
simpleLimiter.dsp
|
import("stdfaust.lib");
import("slidingReduce.lib");
process = GR@totalLatency,smoothGRl(GR);
// maxAttack = 128;
// TODO:
// get to GR earlier, then for the last bit, xfade from dir to pos.
// - ramp of 64 samples towards GR:slidingMin(32)
//
//better separate out the attack and release
// release: xfade from dir
// trigger of each ramp compares itself to the un-shaped version and to the shaped versions of the others
// make separate transient stage and slow release, loke pro-L:
// Apart from the fast 'transient' stage, the limiter has a slower 'release' stage that responds to the overall dynamics of the incoming audio.
// The Attack and Release knobs control how quickly and heavily the release stage sets in. Shorter attack times will allow the release stage
// to set in sooner; longer release times will cause it to have more effect.
// In general, short attack times and long release times are safer and cleaner, but they can also cause pumping and reduce clarity. On the
t= hslider("time", 0.1, 0, 1, 0.001);
noiseLVL = hslider("noise", 0, 0, 1, 0.01);
rate = hslider("rate", 20, 10, 20000, 10);
// expo = 3; // for block diagram
// expo = 6; // 64 samples, 1.3 ms at 48k
expo = 7; // 128 samples, 2.6 ms at 48k
// expo = 8; // 256 samples, 5.3 ms at 48k, the max lookahead of fabfilter pro-L is 5ms
// TODO sAndH(reset) parameters
smoothGRl(GR) = FB~(_,_) :(_,!)
with {
FB(prev,oldDownSpeed) =
par(i, expo, fade(i)):ro.interleave(2,expo)
:((minN(expo)
:min(GR@totalLatency)//brute force fade of 64 samples not needed for binary tree attack ?
:attOrRelease(GR):smoothie(GR)),maxN(expo))
// ,( rampOne(0) * speed(0))
with {
new(i) = lowestGRblock(GR,size(i))@(totalLatency-size(i));
newH(i) = new(i):ba.sAndH( reset(i)| (attPhase(prev)==0) );
prevH(i) = prev:ba.sAndH( reset(i)| (attPhase(prev)==0) );
reset(i) =
(newDownSpeed(i) > currentDownSpeed) | (prev<=(lowestGRblock(GR,size(0))'));
// (newDownSpeed(i) > currentDownSpeed) ;
fade(i) =
crossfade(currentPosAndDir(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // crossfade from current direction to new position
// crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
// crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i))) // TODO crossfade from current direction to new position
// :min(GR@totalLatency)//brute force fade of 64 samples not needed for binary tree attack ?
// sample and hold oldDownSpeed:
, (select2((newDownSpeed(i) > currentDownSpeed),currentDownSpeed ,newDownSpeed(i)));
rampShaper(i) = _:pow(power(i))*mult(i):max(smallestRamp(reset(i)));
power(i) = LinArrayParametricMid(hslider("power bottom", 1, 0.01, 10, 0.01),hslider("power mid", 1, 0.01, 10, 0.01),hslider("power band", (expo/2)-1, 0, expo, 1),hslider("power top", 0.5, 0.01, 10, 0.01),i,expo);
mult(i) = 1;// LinArrayParametricMid(hslider("mult bottom", 1, 0.001, 1 ,0.001),hslider("mult mid", 1, 0.001, 1 ,0.001),hslider("mult band", (expo/2)-1, 0, expo, 1),hslider("mult top", 1, 0.001, 1 ,0.001),i,expo);
// currentPosAndDir(i) = prevH(i)-( ramp(size(i),reset(i)) * hslider("ramp", 0, 0, 1, 0.01) * (prevH(i)'-prevH(i)));
currentPosAndDir(i) = prevH(i)-( rampOne(i) * speed(i));
rampOne(i) = (select2(reset(i),_+1,1):min(size(i)))~_;
// speed(i) = (prev-prev'):ba.sAndH( reset(i)| (attPhase(prev)==0) );
speed(i) = (prev-prev'):ba.sAndH( select2( checkbox("speed(i)"),reset(i), reset(i)| (attPhase(prev)==0) ));
// speed(i) = (prev-prev'):ba.sAndH( reset(i) );
// newDownSpeed(i) = (select2(checkbox("newdown"),prev,(prev'-currentDownSpeed)) -new(i) )/size(i);
newDownSpeed(i) = (prev -new(i) )/size(i);
currentDownSpeed = oldDownSpeed*(speedIsZero==0);
// speedIsZero = (prev==GR@(totalLatency)) ; // TODO: needs more checks, not attack
// speedIsZero = (prev==prev') ;
speedIsZero = select2(checkbox("speedIsZero"),(prev==GR@(totalLatency)),(prev==prev'));
// speedIsZero = select2(checkbox("speed"),(prev==GR@(totalLatency+1)),(prev==prev'));
size(i) = pow(2,(expo-i));
// attOrRelease(GR,newGR) = select2(attPhase(prev) ,lowestGRblock(GR,size(0)),newGR);
attOrRelease(GR,newGR) = select2(newGR<=lowestGRblock(GR,size(0)),newGR,lowestGRblock(GR,size(0)));
// smoothie(GR) = crossfade( lowestGRblock(GR,size(0)) , (2*prev)-prev', hslider("smoothie", 0, 0, 1, 0.01):pow(0.5): (_<:select2(prev<prev',_,_*-1)) ) : min(GR);
// smoothie(GR) = crossfade( lowestGRblock(GR,size(0)) , (2*prev)-prev', (select2(prev<prev',smooUp,smooDown)) ) : min(GR);
smoothie(GR,newGR) = crossfade( select2(prev<prev',lowestGRblock(GR,size(0)),newGR) , (2*prev)-prev', (select2(prev<prev',smooUp,smooDown)) ) : min(newGR);
// smoothie(GR,newGR) = (select2(prev<prev',crossfade( lowestGRblock(GR,size(0)) , (2*prev)-prev', smooDown ) : min(GR);
smooUp = hslider("smooUp", 0, 0, 1, 0.01):pow(0.0005);
smooDown = hslider("smooDown", 0, 0, 1, 0.01):pow(0.05);
}; // ^^ needs prev and oldDownSpeed
attPhase(prev) = lowestGRblock(GR,totalLatency)<prev;
lowestGRblock(GR,size) = GR:slidingMinN(size,totalLatency);
// ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
// when reset == 1, go back to 0.
// ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
smallestRamp(reset) = select2(reset,_+(small):min(1),small)~_ with {
small = pow(2,-23);
};
crossfade(a,b,x) = it.interpolate_linear(x,a,b); // faster then: a*(1-x) + b*x;
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
// opWithNInputs()
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
};
LinArrayParametricMid(bottom,mid,band,top,element,nrElements) =
select2(band<=element +1,midToBottomVal(element), midToTopVal(element))
with {
midToBottomVal(element) = (midToBottom(element)*bottom) + (((midToBottom(element)*-1)+1)*mid);
midToBottom(element) = (band-(element +1))/(band-1);
midToTopVal(element) = (midToTop(element)*top) + (((midToTop(element)*-1)+1)*mid);
midToTop(element) = (element +1-band)/(nrElements-band);
};
attackBruteForce =
case {
(GR,0) => GR/(maxAttack+1);
(GR,n) => min(attack(GR,n-1), GR@n/(maxAttack-n+1));
};
// totalLatency = maxAttack;
totalLatency = pow(2,expo);
GR = vgroup("GR", no.lfnoise0(totalLatency * 8 *t * (no.lfnoise0(totalLatency/2):max(0.1) )):pow(3)*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0)) ;
|
https://raw.githubusercontent.com/magnetophon/LazyLimiter/f3bbb2c4c05858e93710272ec42bda19d8f6a608/simpleLimiter.dsp
|
faust
|
maxAttack = 128;
TODO:
get to GR earlier, then for the last bit, xfade from dir to pos.
- ramp of 64 samples towards GR:slidingMin(32)
better separate out the attack and release
release: xfade from dir
trigger of each ramp compares itself to the un-shaped version and to the shaped versions of the others
make separate transient stage and slow release, loke pro-L:
Apart from the fast 'transient' stage, the limiter has a slower 'release' stage that responds to the overall dynamics of the incoming audio.
The Attack and Release knobs control how quickly and heavily the release stage sets in. Shorter attack times will allow the release stage
to set in sooner; longer release times will cause it to have more effect.
In general, short attack times and long release times are safer and cleaner, but they can also cause pumping and reduce clarity. On the
expo = 3; // for block diagram
expo = 6; // 64 samples, 1.3 ms at 48k
128 samples, 2.6 ms at 48k
expo = 8; // 256 samples, 5.3 ms at 48k, the max lookahead of fabfilter pro-L is 5ms
TODO sAndH(reset) parameters
brute force fade of 64 samples not needed for binary tree attack ?
,( rampOne(0) * speed(0))
(newDownSpeed(i) > currentDownSpeed) ;
crossfade from current direction to new position
crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i))) // TODO crossfade from current direction to new position
:min(GR@totalLatency)//brute force fade of 64 samples not needed for binary tree attack ?
sample and hold oldDownSpeed:
LinArrayParametricMid(hslider("mult bottom", 1, 0.001, 1 ,0.001),hslider("mult mid", 1, 0.001, 1 ,0.001),hslider("mult band", (expo/2)-1, 0, expo, 1),hslider("mult top", 1, 0.001, 1 ,0.001),i,expo);
currentPosAndDir(i) = prevH(i)-( ramp(size(i),reset(i)) * hslider("ramp", 0, 0, 1, 0.01) * (prevH(i)'-prevH(i)));
speed(i) = (prev-prev'):ba.sAndH( reset(i)| (attPhase(prev)==0) );
speed(i) = (prev-prev'):ba.sAndH( reset(i) );
newDownSpeed(i) = (select2(checkbox("newdown"),prev,(prev'-currentDownSpeed)) -new(i) )/size(i);
speedIsZero = (prev==GR@(totalLatency)) ; // TODO: needs more checks, not attack
speedIsZero = (prev==prev') ;
speedIsZero = select2(checkbox("speed"),(prev==GR@(totalLatency+1)),(prev==prev'));
attOrRelease(GR,newGR) = select2(attPhase(prev) ,lowestGRblock(GR,size(0)),newGR);
smoothie(GR) = crossfade( lowestGRblock(GR,size(0)) , (2*prev)-prev', hslider("smoothie", 0, 0, 1, 0.01):pow(0.5): (_<:select2(prev<prev',_,_*-1)) ) : min(GR);
smoothie(GR) = crossfade( lowestGRblock(GR,size(0)) , (2*prev)-prev', (select2(prev<prev',smooUp,smooDown)) ) : min(GR);
smoothie(GR,newGR) = (select2(prev<prev',crossfade( lowestGRblock(GR,size(0)) , (2*prev)-prev', smooDown ) : min(GR);
^^ needs prev and oldDownSpeed
ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
when reset == 1, go back to 0.
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
faster then: a*(1-x) + b*x;
opWithNInputs()
totalLatency = maxAttack;
|
import("stdfaust.lib");
import("slidingReduce.lib");
process = GR@totalLatency,smoothGRl(GR);
t= hslider("time", 0.1, 0, 1, 0.001);
noiseLVL = hslider("noise", 0, 0, 1, 0.01);
rate = hslider("rate", 20, 10, 20000, 10);
smoothGRl(GR) = FB~(_,_) :(_,!)
with {
FB(prev,oldDownSpeed) =
par(i, expo, fade(i)):ro.interleave(2,expo)
:((minN(expo)
:attOrRelease(GR):smoothie(GR)),maxN(expo))
with {
new(i) = lowestGRblock(GR,size(i))@(totalLatency-size(i));
newH(i) = new(i):ba.sAndH( reset(i)| (attPhase(prev)==0) );
prevH(i) = prev:ba.sAndH( reset(i)| (attPhase(prev)==0) );
reset(i) =
(newDownSpeed(i) > currentDownSpeed) | (prev<=(lowestGRblock(GR,size(0))'));
fade(i) =
, (select2((newDownSpeed(i) > currentDownSpeed),currentDownSpeed ,newDownSpeed(i)));
rampShaper(i) = _:pow(power(i))*mult(i):max(smallestRamp(reset(i)));
power(i) = LinArrayParametricMid(hslider("power bottom", 1, 0.01, 10, 0.01),hslider("power mid", 1, 0.01, 10, 0.01),hslider("power band", (expo/2)-1, 0, expo, 1),hslider("power top", 0.5, 0.01, 10, 0.01),i,expo);
currentPosAndDir(i) = prevH(i)-( rampOne(i) * speed(i));
rampOne(i) = (select2(reset(i),_+1,1):min(size(i)))~_;
speed(i) = (prev-prev'):ba.sAndH( select2( checkbox("speed(i)"),reset(i), reset(i)| (attPhase(prev)==0) ));
newDownSpeed(i) = (prev -new(i) )/size(i);
currentDownSpeed = oldDownSpeed*(speedIsZero==0);
speedIsZero = select2(checkbox("speedIsZero"),(prev==GR@(totalLatency)),(prev==prev'));
size(i) = pow(2,(expo-i));
attOrRelease(GR,newGR) = select2(newGR<=lowestGRblock(GR,size(0)),newGR,lowestGRblock(GR,size(0)));
smoothie(GR,newGR) = crossfade( select2(prev<prev',lowestGRblock(GR,size(0)),newGR) , (2*prev)-prev', (select2(prev<prev',smooUp,smooDown)) ) : min(newGR);
smooUp = hslider("smooUp", 0, 0, 1, 0.01):pow(0.0005);
smooDown = hslider("smooDown", 0, 0, 1, 0.01):pow(0.05);
attPhase(prev) = lowestGRblock(GR,totalLatency)<prev;
lowestGRblock(GR,size) = GR:slidingMinN(size,totalLatency);
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
smallestRamp(reset) = select2(reset,_+(small):min(1),small)~_ with {
small = pow(2,-23);
};
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
};
LinArrayParametricMid(bottom,mid,band,top,element,nrElements) =
select2(band<=element +1,midToBottomVal(element), midToTopVal(element))
with {
midToBottomVal(element) = (midToBottom(element)*bottom) + (((midToBottom(element)*-1)+1)*mid);
midToBottom(element) = (band-(element +1))/(band-1);
midToTopVal(element) = (midToTop(element)*top) + (((midToTop(element)*-1)+1)*mid);
midToTop(element) = (element +1-band)/(nrElements-band);
};
attackBruteForce =
case {
(GR,0) => GR/(maxAttack+1);
(GR,n) => min(attack(GR,n-1), GR@n/(maxAttack-n+1));
};
totalLatency = pow(2,expo);
GR = vgroup("GR", no.lfnoise0(totalLatency * 8 *t * (no.lfnoise0(totalLatency/2):max(0.1) )):pow(3)*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0)) ;
|
7740a6f9610a615046fb7ecdb2537599bf1d4450d82d94e7f25aaf59434e72cb
|
magnetophon/faustExperiments
|
LazyLevelerOLD.dsp
|
declare name "LazyLeveler";
declare version "0.1";
declare author "Bart Brouns";
declare license "GPLv3";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////////////////////
// variables //
///////////////////////////////////////////////////////////////////////////////
// nr of channels
N = 2;
// nr of lookahead samples
// lookahead = pow(2,LA);
lookahead = 1<<LA;
LA = 3;
// LA = 4;
LAconvex = 128;
SEQnr = 32;
// table of indexes when to start a new ramp
indexes(N,lookahead, input) = par(i, N, rwtable(size+1, init, windex, input, rindex)) with {
windex = (_%lookahead)~(_+trig);
};
attack = hslider("[1]attack", 1, 0, 1, 0.01);
attackConvexBand = (attack*LA);
attackConvexVal = pow(2,(attackConvexBand-3));
// 1=2
// 2=3
// 4=4
// 8=5
// 16=6
// 32=7
// 64=8
// 128=9
// 256=10
// 512=11
// 1024=12
// 2048=13
///////////////////////////////////////////////////////////////////////////////
// implementation //
///////////////////////////////////////////////////////////////////////////////
process(x,y) =
// (x@(maxHold+((2*lookahead)-1))*lim(x,y))
// , (y@(maxHold+((2*lookahead)-1))*lim(x,y))
// , (lim(x,y):ba.linear2db/(thresh*-1))
testSig@(maxHold+((2*lookahead)-1))
, (testSig:LimiterConvex(LA) :Limiter(1,LA))
, (testSig:LimiterConvex(LA)@(lookahead))
;
// getIndexAndDirection(0,LA);
// find_Nmin(LA);
// (
// ((GR:sequentialLinMinimumParOut(LAconvex))
// , (_<:si.bus(LAconvex+2))
// )
// : (ro.interleave(LAconvex+1,2),_)
// : (par(i, LAconvex+1, -/(i+1)),_)
// : (maxOfN(LAconvex+1),_)
// :+)~_
// ,GR@(LAconvex)
// hold(10)
// (GR:LimiterConvex(LA)),
// ,(GR:hold(tCon):Limiter(0,LA-1)@(lookahead-(1<<(LA-1)))),
// (GR:hold(bCon):Limiter(0,LA-2)@(lookahead-(1<<(LA-2))))
// (GR:ba.slidingMin(LAconvex,LAconvex))
// , (GR:ba.slidingMin(64,LAconvex)@64)
// , (GR:ba.slidingMin(32,LAconvex)@96)
// , GR@LAconvex
//
// GR@(3*lookahead-3)
// ,((GR: Limiter@(2*lookahead-2)))
// , (GR: Limiter: Limiter@(lookahead-1))
// , (GR: Limiter: Limiter: Limiter)
//
// GR@(SEQnr*lookahead-offset)
// , (GR<:seq(i, SEQnr, select2((i+1)<=SEQamount,_@(lookahead-1), Limiter)<:(_,_) ))
SEQamount = hslider("seq amount", 1, 1, SEQnr, 1);
offset = hslider("offset", 0, -2*SEQnr, 2*SEQnr, 1);
conCurve = hslider("conCurve", 3, 1, 5, 0.01);
maxHold = 1<<(LA-1);
holdTime = hslider("holdTime", 0, 0, maxHold, 1);
// (GR:SimpleLimiter);
GR(x,y) =
max(abs(x),abs(y)): ba.linear2db : gain_computer(strength,thresh,knee)
with {
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)):pow(2)/(2*knee)),
(level-thresh)) : max(0)*-strength;
};
strength = 1;
thresh = hslider("[0]thresh", 0, -60, 12, 0.1);
knee = hslider("[3]knee", 0, 0, 60, 0.1);
autoGain = checkbox("[4]autoGain");
peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost) =
abs:ba.bypass1(prePost,si.lag_ud(att,rel)) : ba.linear2db : gain_computer(strength,thresh,knee):ba.bypass1((prePost*-1)+1,si.lag_ud(rel,att)) : ba.db2linear
with {
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)):pow(2)/(2*knee)),
(level-thresh)) : max(0)*-strength;
};
lim(x,y) = (GR(x,y):LimiterConvex(LA):Limiter(1,LA)-(autoGain*thresh@(maxHold+((2*lookahead)-1))):ba.db2linear);
find_Nmin(N) = seq(i,N-1, (Ncomparator,si.bus(2*(N-i-1)))) : Ncomparator;
Ncomparator(n,x,m,y) = select2((x<=y),m,n), select2((x<=y),y,x); // compare integer-labeled signals
LimiterConvex(LA) =
(
paramArray(attackConvexVal,0,attackConvexBand,0,LA)
// par(i, LA, 10)
// , (_:ba.slidingMin(lookahead,lookahead)<:si.bus(LA))
, (_<:si.bus(LA))
):ro.interleave(LA,2)
:par(i, LA,
(hold:Limiter(0,i+1)@(lookahead-(1<<(i+1))))
)
:maxOfN(LA)
;
bCon = hslider("bottom", 0, 0, maxHold, 1);
mCon = hslider("mid", 0, 0, maxHold, 1);
tCon = hslider("top", 0, 0, maxHold, 1);
LimiterDuo(LA) =
_<:max(
Limiter(0,LA)
, (hold(holdTime):Limiter(1,LA-1))
// , (ba.slidingMin(holdTime,maxHold):Limiter(1,LA-1)@(maxHold-holdTime))
);
hold(holdTime) = ba.slidingMin(HT,maxHold)@(maxHold-HT) with {
HT = holdTime:int:max(0):min(maxHold);
};
Limiter(Shaped,LA,x) =
// getNewOutputs
(
// (ro.crossn1(3)
(si.bus(3)
)
:
(( (x:sequentialMinimumParOut(LA)), ((split,split,split):ro.interleave(2,3)))
// : (si.bus(LA),split,si.bus(6))
: ((par(i, LA+1, split):ro.interleave(2,LA+1):(si.bus(LA+1),ba.selectn(LA+1,attackConvexBand+holdLow(Shaped)))),si.bus(6))
: (si.bus(LA+1),ro.crossNM(1,6))
: getIndexAndDirection(Shaped,LA),si.bus(4):getNewOutputs
)
)~si.bus(3)
:(_,!,!)
with {
split = (_<:(_,_));
getDirection =
(
si.bus(LA+1)
, (_ <: si.bus(LA+1))
)
:
(
ro.interleave(LA+1,2)
: par(i, LA+1,(- / (1<<i)) )
: minOfN(LA+1)
);
holdLow(0) = 0;
holdLow(1) = -1;//hslider("holdLow", 0, -LA, LA, 1);
// holdLow(Shaped) = Shaped*-4;
getNewOutputs(index, direction, oldGain, oldIndex, oldDirection,lowestGain) =
(getNewIndex<: (newAttack:newRelease),_,(_>0)*direction)
with {
getNewIndex =
select2((index>oldIndex)// & (direction!=oldDirection)
,oldIndex-1
,index
);
newAttack =
// !:(button("reset")==0)*direction+oldGain;
indexToGainMulti*direction+oldGain;
indexToGainMulti(index) =
// (index/lookahead)*-1+1;
(index>0);
// 1;
newRelease(newAttack) =
// select2(oldGain<lowestGain
// , newAttack:max(lowestGain)
// , (lowestGain-oldGain)/rel+oldGain
// );
select2(oldGain<lowestGain
, newAttack:max(lowestGain)
, (lowestGain-oldGain)/rel+oldGain
);
rel = select2(checkbox("att = rel"),hslider("[2]release", lookahead/8, 1, lookahead, 1),attackConvexVal*.5);
};
// attack = hslider("[2]attack shape[tooltip: 0 gives a linear attack (slow), 1 a strongly exponential one (fast)]", 1 , 0, 1 , 0.001);
// attackShaper(x)= ma.tanh(x:pow(attack:attackScale)*(attack*5+.1))/ma.tanh(attack*5+.1);
// attackScale(x) = (x+1):pow(7); //from 0-1 to 1-128, just to make the knob fit the aural experience better
// (oldGain, index, direction );
};
getIndexAndDirection(0,LA) =
(
si.bus(LA)
, prep
):
(ro.crossNM(LA+2,2)
:
(
si.bus(LA+3)
, (_ <: si.bus(LA+1))
)
)
:
(_,_),
(
ro.interleave(LA+1,2)
: par(i, LA+1, (1<<i),(- / (1<<i)) )
)
:
find_Nmin(LA+1)
with {
prep(lowestGain,prevGain,prevIndex,prevDirection) =
(lowestGain,prevGain,prevIndex,select2(prevGain<lowestGain, prevDirection, ma.INFINITY));
// (lowestGain,prevGain,prevIndex,ma.INFINITY);
};
getIndexAndDirection(1,LA) =
(
si.bus(LA)
, prep
):
(ro.crossNM(LA+2,2)
:
(
si.bus(LA+3)
, (_ <: si.bus(LA+1))
, paramArray(1.4,0,attackConvexBand ,0,LA+1)
)
)
:
(_,_),
(
ro.interleave(LA+1,3)
: par(i, LA+1, (1<<i),(((- / (1<<i)),_):*) )
// : par(i, LA+1, (1<<i),(((- / (1<<i)),_):dirMult) )
)
:
find_Nmin(LA+1)
with {
prep(lowestGain,prevGain,prevIndex,prevDirection) =
// (lowestGain,prevGain,prevIndex,select2(prevGain<lowestGain, prevDirection, ma.INFINITY));
(lowestGain,prevGain,prevIndex,ma.INFINITY);
dirMult(dir,mult) = select2(mult==0
, dir*mult
, ma.INFINITY
);
};
minOfGRmeter = min(1):max(-1):hbargraph("minGRmeter", -1, 1);
SimpleLimiter =
(
ro.cross(2)
:( sequentialMinimum(LA), (_<:(_,_)))
: (
((-:minGRmeter) / (1<<(LA-1)))<:(_,_)
) ,(_:+)
)~_;
opOfN(N,op) = seq(i, N-1, op,myBus(N-i-2));
minOfN(N) = opOfN(N,min);
maxOfN(N) = opOfN(N,max);
// sequentialMinimum(N) = seq(i, N, minimum(i)) with {
// minimum(i) = _<:min(_, _@(1<<i) );
// };
sequentialOperator(N,op) = seq(i, N, operator(i)) with {
operator(i) = _<:op(_, _@(1<<i) );
};
sequentialMinimum(N) = sequentialOperator(N,min);
sequentialOperatorParOut(N,op) =
// operator(2)
seq(i, N, operator(i))
: par(i, N+1, _@( 1<<N - 1<<i ))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(_,_@(1<<i) )
)
;
};
sequentialMinimumParOut(N) = sequentialOperatorParOut(N,min);
sequentialLinOperatorParOut(N,op) =
// operator(2)
seq(i, N, operator(i))
: par(i, N+1, _@( N - i ))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(_,_' )
)
;
};
sequentialLinMinimumParOut(N) = sequentialLinOperatorParOut(N,min);
// LazyLeveler(N);
LazyLeveler(N) = (fillTable(N):useTable(N))~feedback(N);
fillTable(N) = par(i, N*2, _):> par(i, N, _);
useTable(N) = par(i, N, _);
feedback(N) = par(i, N, _);
myBus(0) = 0:!;
myBus(i) = si.bus(i);
selectFromN(N, sel) = par(i, N, _*(i==sel)):>_;
paramArray(bottom,mid,band,top,LA) =
par(i, LA, select2(band<=i+1,midToBottomVal(i),midToTopVal(i)))
with {
midToBottomVal(i) = (midToBottom(i)*bottom) + (((midToBottom(i)*-1)+1)*mid);
midToBottom(i) = (band-(i+1))/(band-1);
midToTopVal(i) = (midToTop(i)*top) + (((midToTop(i)*-1)+1)*mid);
midToTop(i) = (i+1-band)/((LA+1)-band);
};
top = hslider("[0]top", 0, 0, 1, 0.01);
mid = hslider("[1]mid", 0, 0, 1, 0.01);
band = hslider("[2]band", 9, 0, LA+1, 1);
bottom = hslider("[3]bottom", 1.4, 1, 20, 0.1);
testSig = no.lfnoise0(lookahead *t * (no.lfnoise0(lookahead/2):max(0.1) )):pow(3)*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0);//(no.noise:min(0)):ba.sAndH(t)
t= hslider("[7]time", 0.07, 0.01, 4, 0.01):pow(2);
noiseLVL = hslider("[8]noise level", 0, 0, 1, 0.01);
rate = hslider("[9]rate [scale:log]", 420, 10, 10000, 1);
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/c3db8c533848e95c554f73fbba8b1cf6789c581b/LazyLevelerOLD.dsp
|
faust
|
/////////////////////////////////////////////////////////////////////////////
variables //
/////////////////////////////////////////////////////////////////////////////
nr of channels
nr of lookahead samples
lookahead = pow(2,LA);
LA = 4;
table of indexes when to start a new ramp
1=2
2=3
4=4
8=5
16=6
32=7
64=8
128=9
256=10
512=11
1024=12
2048=13
/////////////////////////////////////////////////////////////////////////////
implementation //
/////////////////////////////////////////////////////////////////////////////
(x@(maxHold+((2*lookahead)-1))*lim(x,y))
, (y@(maxHold+((2*lookahead)-1))*lim(x,y))
, (lim(x,y):ba.linear2db/(thresh*-1))
getIndexAndDirection(0,LA);
find_Nmin(LA);
(
((GR:sequentialLinMinimumParOut(LAconvex))
, (_<:si.bus(LAconvex+2))
)
: (ro.interleave(LAconvex+1,2),_)
: (par(i, LAconvex+1, -/(i+1)),_)
: (maxOfN(LAconvex+1),_)
:+)~_
,GR@(LAconvex)
hold(10)
(GR:LimiterConvex(LA)),
,(GR:hold(tCon):Limiter(0,LA-1)@(lookahead-(1<<(LA-1)))),
(GR:hold(bCon):Limiter(0,LA-2)@(lookahead-(1<<(LA-2))))
(GR:ba.slidingMin(LAconvex,LAconvex))
, (GR:ba.slidingMin(64,LAconvex)@64)
, (GR:ba.slidingMin(32,LAconvex)@96)
, GR@LAconvex
GR@(3*lookahead-3)
,((GR: Limiter@(2*lookahead-2)))
, (GR: Limiter: Limiter@(lookahead-1))
, (GR: Limiter: Limiter: Limiter)
GR@(SEQnr*lookahead-offset)
, (GR<:seq(i, SEQnr, select2((i+1)<=SEQamount,_@(lookahead-1), Limiter)<:(_,_) ))
(GR:SimpleLimiter);
compare integer-labeled signals
par(i, LA, 10)
, (_:ba.slidingMin(lookahead,lookahead)<:si.bus(LA))
, (ba.slidingMin(holdTime,maxHold):Limiter(1,LA-1)@(maxHold-holdTime))
getNewOutputs
(ro.crossn1(3)
: (si.bus(LA),split,si.bus(6))
hslider("holdLow", 0, -LA, LA, 1);
holdLow(Shaped) = Shaped*-4;
& (direction!=oldDirection)
!:(button("reset")==0)*direction+oldGain;
(index/lookahead)*-1+1;
1;
select2(oldGain<lowestGain
, newAttack:max(lowestGain)
, (lowestGain-oldGain)/rel+oldGain
);
attack = hslider("[2]attack shape[tooltip: 0 gives a linear attack (slow), 1 a strongly exponential one (fast)]", 1 , 0, 1 , 0.001);
attackShaper(x)= ma.tanh(x:pow(attack:attackScale)*(attack*5+.1))/ma.tanh(attack*5+.1);
attackScale(x) = (x+1):pow(7); //from 0-1 to 1-128, just to make the knob fit the aural experience better
(oldGain, index, direction );
(lowestGain,prevGain,prevIndex,ma.INFINITY);
: par(i, LA+1, (1<<i),(((- / (1<<i)),_):dirMult) )
(lowestGain,prevGain,prevIndex,select2(prevGain<lowestGain, prevDirection, ma.INFINITY));
sequentialMinimum(N) = seq(i, N, minimum(i)) with {
minimum(i) = _<:min(_, _@(1<<i) );
};
operator(2)
operator(2)
LazyLeveler(N);
(no.noise:min(0)):ba.sAndH(t)
|
declare name "LazyLeveler";
declare version "0.1";
declare author "Bart Brouns";
declare license "GPLv3";
import("stdfaust.lib");
N = 2;
lookahead = 1<<LA;
LA = 3;
LAconvex = 128;
SEQnr = 32;
indexes(N,lookahead, input) = par(i, N, rwtable(size+1, init, windex, input, rindex)) with {
windex = (_%lookahead)~(_+trig);
};
attack = hslider("[1]attack", 1, 0, 1, 0.01);
attackConvexBand = (attack*LA);
attackConvexVal = pow(2,(attackConvexBand-3));
process(x,y) =
testSig@(maxHold+((2*lookahead)-1))
, (testSig:LimiterConvex(LA) :Limiter(1,LA))
, (testSig:LimiterConvex(LA)@(lookahead))
;
SEQamount = hslider("seq amount", 1, 1, SEQnr, 1);
offset = hslider("offset", 0, -2*SEQnr, 2*SEQnr, 1);
conCurve = hslider("conCurve", 3, 1, 5, 0.01);
maxHold = 1<<(LA-1);
holdTime = hslider("holdTime", 0, 0, maxHold, 1);
GR(x,y) =
max(abs(x),abs(y)): ba.linear2db : gain_computer(strength,thresh,knee)
with {
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)):pow(2)/(2*knee)),
(level-thresh)) : max(0)*-strength;
};
strength = 1;
thresh = hslider("[0]thresh", 0, -60, 12, 0.1);
knee = hslider("[3]knee", 0, 0, 60, 0.1);
autoGain = checkbox("[4]autoGain");
peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost) =
abs:ba.bypass1(prePost,si.lag_ud(att,rel)) : ba.linear2db : gain_computer(strength,thresh,knee):ba.bypass1((prePost*-1)+1,si.lag_ud(rel,att)) : ba.db2linear
with {
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)):pow(2)/(2*knee)),
(level-thresh)) : max(0)*-strength;
};
lim(x,y) = (GR(x,y):LimiterConvex(LA):Limiter(1,LA)-(autoGain*thresh@(maxHold+((2*lookahead)-1))):ba.db2linear);
find_Nmin(N) = seq(i,N-1, (Ncomparator,si.bus(2*(N-i-1)))) : Ncomparator;
LimiterConvex(LA) =
(
paramArray(attackConvexVal,0,attackConvexBand,0,LA)
, (_<:si.bus(LA))
):ro.interleave(LA,2)
:par(i, LA,
(hold:Limiter(0,i+1)@(lookahead-(1<<(i+1))))
)
:maxOfN(LA)
;
bCon = hslider("bottom", 0, 0, maxHold, 1);
mCon = hslider("mid", 0, 0, maxHold, 1);
tCon = hslider("top", 0, 0, maxHold, 1);
LimiterDuo(LA) =
_<:max(
Limiter(0,LA)
, (hold(holdTime):Limiter(1,LA-1))
);
hold(holdTime) = ba.slidingMin(HT,maxHold)@(maxHold-HT) with {
HT = holdTime:int:max(0):min(maxHold);
};
Limiter(Shaped,LA,x) =
(
(si.bus(3)
)
:
(( (x:sequentialMinimumParOut(LA)), ((split,split,split):ro.interleave(2,3)))
: ((par(i, LA+1, split):ro.interleave(2,LA+1):(si.bus(LA+1),ba.selectn(LA+1,attackConvexBand+holdLow(Shaped)))),si.bus(6))
: (si.bus(LA+1),ro.crossNM(1,6))
: getIndexAndDirection(Shaped,LA),si.bus(4):getNewOutputs
)
)~si.bus(3)
:(_,!,!)
with {
split = (_<:(_,_));
getDirection =
(
si.bus(LA+1)
, (_ <: si.bus(LA+1))
)
:
(
ro.interleave(LA+1,2)
: par(i, LA+1,(- / (1<<i)) )
: minOfN(LA+1)
);
holdLow(0) = 0;
getNewOutputs(index, direction, oldGain, oldIndex, oldDirection,lowestGain) =
(getNewIndex<: (newAttack:newRelease),_,(_>0)*direction)
with {
getNewIndex =
,oldIndex-1
,index
);
newAttack =
indexToGainMulti*direction+oldGain;
indexToGainMulti(index) =
(index>0);
newRelease(newAttack) =
select2(oldGain<lowestGain
, newAttack:max(lowestGain)
, (lowestGain-oldGain)/rel+oldGain
);
rel = select2(checkbox("att = rel"),hslider("[2]release", lookahead/8, 1, lookahead, 1),attackConvexVal*.5);
};
};
getIndexAndDirection(0,LA) =
(
si.bus(LA)
, prep
):
(ro.crossNM(LA+2,2)
:
(
si.bus(LA+3)
, (_ <: si.bus(LA+1))
)
)
:
(_,_),
(
ro.interleave(LA+1,2)
: par(i, LA+1, (1<<i),(- / (1<<i)) )
)
:
find_Nmin(LA+1)
with {
prep(lowestGain,prevGain,prevIndex,prevDirection) =
(lowestGain,prevGain,prevIndex,select2(prevGain<lowestGain, prevDirection, ma.INFINITY));
};
getIndexAndDirection(1,LA) =
(
si.bus(LA)
, prep
):
(ro.crossNM(LA+2,2)
:
(
si.bus(LA+3)
, (_ <: si.bus(LA+1))
, paramArray(1.4,0,attackConvexBand ,0,LA+1)
)
)
:
(_,_),
(
ro.interleave(LA+1,3)
: par(i, LA+1, (1<<i),(((- / (1<<i)),_):*) )
)
:
find_Nmin(LA+1)
with {
prep(lowestGain,prevGain,prevIndex,prevDirection) =
(lowestGain,prevGain,prevIndex,ma.INFINITY);
dirMult(dir,mult) = select2(mult==0
, dir*mult
, ma.INFINITY
);
};
minOfGRmeter = min(1):max(-1):hbargraph("minGRmeter", -1, 1);
SimpleLimiter =
(
ro.cross(2)
:( sequentialMinimum(LA), (_<:(_,_)))
: (
((-:minGRmeter) / (1<<(LA-1)))<:(_,_)
) ,(_:+)
)~_;
opOfN(N,op) = seq(i, N-1, op,myBus(N-i-2));
minOfN(N) = opOfN(N,min);
maxOfN(N) = opOfN(N,max);
sequentialOperator(N,op) = seq(i, N, operator(i)) with {
operator(i) = _<:op(_, _@(1<<i) );
};
sequentialMinimum(N) = sequentialOperator(N,min);
sequentialOperatorParOut(N,op) =
seq(i, N, operator(i))
: par(i, N+1, _@( 1<<N - 1<<i ))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(_,_@(1<<i) )
)
;
};
sequentialMinimumParOut(N) = sequentialOperatorParOut(N,min);
sequentialLinOperatorParOut(N,op) =
seq(i, N, operator(i))
: par(i, N+1, _@( N - i ))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(_,_' )
)
;
};
sequentialLinMinimumParOut(N) = sequentialLinOperatorParOut(N,min);
LazyLeveler(N) = (fillTable(N):useTable(N))~feedback(N);
fillTable(N) = par(i, N*2, _):> par(i, N, _);
useTable(N) = par(i, N, _);
feedback(N) = par(i, N, _);
myBus(0) = 0:!;
myBus(i) = si.bus(i);
selectFromN(N, sel) = par(i, N, _*(i==sel)):>_;
paramArray(bottom,mid,band,top,LA) =
par(i, LA, select2(band<=i+1,midToBottomVal(i),midToTopVal(i)))
with {
midToBottomVal(i) = (midToBottom(i)*bottom) + (((midToBottom(i)*-1)+1)*mid);
midToBottom(i) = (band-(i+1))/(band-1);
midToTopVal(i) = (midToTop(i)*top) + (((midToTop(i)*-1)+1)*mid);
midToTop(i) = (i+1-band)/((LA+1)-band);
};
top = hslider("[0]top", 0, 0, 1, 0.01);
mid = hslider("[1]mid", 0, 0, 1, 0.01);
band = hslider("[2]band", 9, 0, LA+1, 1);
bottom = hslider("[3]bottom", 1.4, 1, 20, 0.1);
t= hslider("[7]time", 0.07, 0.01, 4, 0.01):pow(2);
noiseLVL = hslider("[8]noise level", 0, 0, 1, 0.01);
rate = hslider("[9]rate [scale:log]", 420, 10, 10000, 1);
|
65b5fca73016129a289969c38f860ef3f7f6f295a431ae1cd4b7fca0bbe064b9
|
magnetophon/LazyLimiter
|
LLng2.dsp
|
import("stdfaust.lib");
declare author "Bart Brouns";
declare license "GPLv3";
process =
GR@totalLatencyLinear
,smoothGRlinear(GR)
// ,(smoothGRlinear(GR):max(-1):min(1))
// , (attRel~_)
;
totalLatency = pow(2,expo);
totalLatencyLinear = nrBlocks * blockSize;
// nrBlocks = 1;
// blockSize = 1024;
// nrBlocks = 2;
// blockSize = 512;
// nrBlocks = 4;
// blockSize = 128;
// nrBlocks = 16;
// blockSize = 64;
// nrBlocks = 1;
// blockSize = 512;
// nrBlocks = 1;
// blockSize = 128;
nrBlocks = 4;
blockSize = 2;
// expo = 4;
// expo = 10;
expo = 8;
// TODO sAndH(reset) parameters
smoothGRl(GR) = FB~(_,_) :(_,!)
with {
FB(prev,oldDownSpeed) =
par(i, expo, fade(i)):ro.interleave(2,expo):(minN(expo),maxN(expo))
with {
new(i) = lowestGRblock(GR,size(i))@(totalLatency-size(i));
newH(i) = new(i):ba.sAndH( reset(i)| (attPhase(prev)==0) );
prevH(i) = prev:ba.sAndH( reset(i)| (attPhase(prev)==0) );
reset(i) =
(newDownSpeed(i) > currentDownSpeed);
fade(i) =
// crossfade(currentPosAndDir(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
:min(GR@totalLatency)//brute force fade of 64 samples not needed for binary tree attack ?
// sample and hold oldDownSpeed:
, (select2((newDownSpeed(i) > currentDownSpeed),currentDownSpeed ,newDownSpeed(i)));
rampShaper(i) = _:pow(power(i))*mult(i):max(smallestRamp(reset(i)));
power(i) = LinArrayParametricMid(hslider("power bottom", 1, 0.01, 10, 0.01),hslider("power mid", 1, 0.01, 10, 0.01),hslider("power band", (expo/2)-1, 0, expo, 1),hslider("power top", 0.5, 0.01, 10, 0.01),i,expo);
mult(i) = LinArrayParametricMid(hslider("mult bottom", 1, 0.001, 1 ,0.001),hslider("mult mid", 1, 0.001, 1 ,0.001),hslider("mult band", (expo/2)-1, 0, expo, 1),hslider("mult top", 1, 0.001, 1 ,0.001),i,expo);
currentPosAndDir(i) = prevH(i)-( ramp(size(i),reset(i)) * hslider("ramp", 0, 0, 1, 0.01) * (prevH(i)'-prevH(i)));
// newDownSpeed(i) = (select2(checkbox("newdown"),prev,(prev'-currentDownSpeed)) -new(i) )/size(i);
newDownSpeed(i) = (prev -new(i) )/size(i);
currentDownSpeed = oldDownSpeed*(speedIsZero==0);
// speedIsZero = (prev==GR@(totalLatency)) ; // TODO: needs more checks, not attack
// speedIsZero = (prev==prev') ;
speedIsZero = select2(checkbox("speed"),(prev==GR@(totalLatency)),(prev==prev'));
size(i) = pow(2,(expo-i));
}; // ^^ needs prev and oldDownSpeed
attPhase(prev) = lowestGRblock(GR,totalLatency)<prev;
lowestGRblock(GR,size) = GR:ba.slidingMin(size,totalLatency);
// ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
// when reset == 1, go back to 0.
// ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
smallestRamp(reset) = select2(reset,_+(small):min(1),small)~_ with {
small = pow(2,-23);
};
crossfade(a,b,x) = it.interpolate_linear(x,a,b); // faster then: a*(1-x) + b*x;
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
};
smoothGRlinear(GR) = FB~(_,_)
:(_,!)
with {
FB(prev,oldDownSpeed) =
// select2(attPhase(prev),
(par(i, nrBlocks, fade(i)):ro.interleave(2,nrBlocks):(minN(nrBlocks),maxN(nrBlocks)))
// , (lowestGRblock(GR,totalLatencyLinear),select2(checkbox("0"),oldDownSpeed,0))
// )
with {
new(i) = lowestGRblock(GR,size(i))@(i*blockSize);
newH(i) = new(i):ba.sAndH( reset(i)| (attPhase(prev)==0) );
prevH(i) = prev:ba.sAndH( reset(i)| (attPhase(prev)==0) );
reset(i) =
(newDownSpeed(i) > currentDownSpeed);
fade(i) =
crossfade(currentPosAndDir(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
// crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
:min(GR@totalLatencyLinear)//TODO: make into brute force fade of 64 samples
// sample and hold oldDownSpeed:
, (select2((newDownSpeed(i) > currentDownSpeed),currentDownSpeed ,newDownSpeed(i)));
rampShaper(i) = _:pow(power(i))*mult(i):max(smallestRamp(reset(i)));
power(i) = LinArrayParametricMid(hslider("power bottom", 1, 0.001, 100, 0.001),hslider("power mid", 1, 0.001, 100, 0.001),hslider("band", (nrBlocks/2)-1:max(0), 0, nrBlocks, 1),hslider("power top", 1, 0.001, 100, 0.001),i,nrBlocks);
mult(i) = LinArrayParametricMid(hslider("mult bottom", 1, 0.001, 1 ,0.001),hslider("mult mid", 1, 0.001, 1 ,0.001),hslider("band", (nrBlocks/2)-1:max(0), 0, nrBlocks, 1),hslider("mult top", 1, 0.001, 1 ,0.001),i,nrBlocks);
currentPosAndDir(i) = prevH(i)-( rampOne(i) * speed(i));
rampOne(i) = (select2(reset(i),_+1,1):min(size(i)))~_;
speed(i) = (prev-prev'):ba.sAndH( reset(i)| (attPhase(prev)==0) );
// speed(i) = (prev-prev'):ba.sAndH( reset(i) );
// newDownSpeed(i) = (select2(checkbox("newdown"),prev,(prev'-currentDownSpeed)) -new(i) )/size(i);
newDownSpeed(i) = (prev -new(i) )/size(i);
currentDownSpeed = oldDownSpeed*(speedIsZero==0);
// speedIsZero = (prev==GR@(totalLatencyLinear)) ; // TODO: needs more checks, not attack
// speedIsZero = (prev==prev') ;
speedIsZero = select2(checkbox("speed"),(prev==GR@(totalLatencyLinear)),(prev==prev'));
size(i) = (nrBlocks-i)*blockSize;
}; // ^^ needs prev and oldDownSpeed
attPhase(prev) = lowestGRblock(GR,totalLatencyLinear)<prev;
lowestGRblock(GR,size) = GR:ba.slidingMin(size,totalLatencyLinear);
// ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
// when reset == 1, go back to 0.
// ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
smallestRamp(reset) = select2(reset,_+(small):min(1),small)~_ with {
small = pow(2,-23);
};
crossfade(a,b,x) = it.interpolate_linear(x,a,b); // faster then: a*(1-x) + b*x;
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
};
// make a log array of values, from bottom to top
LogArray(bottom,top,nrElements) = par(i,nrElements, pow((pow((top/bottom),1/(nrElements-1))),i)*bottom);
LinArrayParametricMid(bottom,mid,band,top,element,nrElements) =
select2(band<=element +1,midToBottomVal(element), midToTopVal(element))
with {
midToBottomVal(element) = (midToBottom(element)*bottom) + (((midToBottom(element)*-1)+1)*mid);
midToBottom(element) = (band-(element +1))/(band-1);
midToTopVal(element) = (midToTop(element)*top) + (((midToTop(element)*-1)+1)*mid);
midToTop(element) = (element +1-band)/(nrElements-band);
};
GR = vgroup("GR", no.lfnoise0(totalLatency *t * (no.lfnoise0(totalLatency/2):max(0.1) )):pow(3)*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0)) ;
t= hslider("time", 0.1, 0, 1, 0.001);
noiseLVL = hslider("noise", 0, 0, 1, 0.01);
rate = hslider("rate", 20, 10, 20000, 10);
attRel(prev) = select2(
GR:ba.slidingMin(totalLatency,totalLatency)<prev,decay,attack) with {
decay = prev*ba.tau2pole(decaytime)+(GR:ba.slidingMin(totalLatency,totalLatency)*(1-ba.tau2pole(decaytime)));
attack = prev*ba.tau2pole(attacktime)+(GR:ba.slidingMin(totalLatency,totalLatency)*(1-ba.tau2pole(attacktime)));
attacktime = hslider("attacktime ", 0.02, 0, 0.1, 0.001);
decaytime = hslider("decaytime ", 0.1, 0, 0.5, 0.001);
};
|
https://raw.githubusercontent.com/magnetophon/LazyLimiter/f3bbb2c4c05858e93710272ec42bda19d8f6a608/LLng2.dsp
|
faust
|
,(smoothGRlinear(GR):max(-1):min(1))
, (attRel~_)
nrBlocks = 1;
blockSize = 1024;
nrBlocks = 2;
blockSize = 512;
nrBlocks = 4;
blockSize = 128;
nrBlocks = 16;
blockSize = 64;
nrBlocks = 1;
blockSize = 512;
nrBlocks = 1;
blockSize = 128;
expo = 4;
expo = 10;
TODO sAndH(reset) parameters
crossfade(currentPosAndDir(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
TODO crossfade from current direction to new position
brute force fade of 64 samples not needed for binary tree attack ?
sample and hold oldDownSpeed:
newDownSpeed(i) = (select2(checkbox("newdown"),prev,(prev'-currentDownSpeed)) -new(i) )/size(i);
speedIsZero = (prev==GR@(totalLatency)) ; // TODO: needs more checks, not attack
speedIsZero = (prev==prev') ;
^^ needs prev and oldDownSpeed
ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
when reset == 1, go back to 0.
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
faster then: a*(1-x) + b*x;
select2(attPhase(prev),
, (lowestGRblock(GR,totalLatencyLinear),select2(checkbox("0"),oldDownSpeed,0))
)
TODO crossfade from current direction to new position
crossfade(prevH(i),newH(i) ,ramp(size(i),reset(i)):rampShaper(i)) // TODO crossfade from current direction to new position
TODO: make into brute force fade of 64 samples
sample and hold oldDownSpeed:
speed(i) = (prev-prev'):ba.sAndH( reset(i) );
newDownSpeed(i) = (select2(checkbox("newdown"),prev,(prev'-currentDownSpeed)) -new(i) )/size(i);
speedIsZero = (prev==GR@(totalLatencyLinear)) ; // TODO: needs more checks, not attack
speedIsZero = (prev==prev') ;
^^ needs prev and oldDownSpeed
ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
when reset == 1, go back to 0.
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
faster then: a*(1-x) + b*x;
make a log array of values, from bottom to top
|
import("stdfaust.lib");
declare author "Bart Brouns";
declare license "GPLv3";
process =
GR@totalLatencyLinear
,smoothGRlinear(GR)
;
totalLatency = pow(2,expo);
totalLatencyLinear = nrBlocks * blockSize;
nrBlocks = 4;
blockSize = 2;
expo = 8;
smoothGRl(GR) = FB~(_,_) :(_,!)
with {
FB(prev,oldDownSpeed) =
par(i, expo, fade(i)):ro.interleave(2,expo):(minN(expo),maxN(expo))
with {
new(i) = lowestGRblock(GR,size(i))@(totalLatency-size(i));
newH(i) = new(i):ba.sAndH( reset(i)| (attPhase(prev)==0) );
prevH(i) = prev:ba.sAndH( reset(i)| (attPhase(prev)==0) );
reset(i) =
(newDownSpeed(i) > currentDownSpeed);
fade(i) =
, (select2((newDownSpeed(i) > currentDownSpeed),currentDownSpeed ,newDownSpeed(i)));
rampShaper(i) = _:pow(power(i))*mult(i):max(smallestRamp(reset(i)));
power(i) = LinArrayParametricMid(hslider("power bottom", 1, 0.01, 10, 0.01),hslider("power mid", 1, 0.01, 10, 0.01),hslider("power band", (expo/2)-1, 0, expo, 1),hslider("power top", 0.5, 0.01, 10, 0.01),i,expo);
mult(i) = LinArrayParametricMid(hslider("mult bottom", 1, 0.001, 1 ,0.001),hslider("mult mid", 1, 0.001, 1 ,0.001),hslider("mult band", (expo/2)-1, 0, expo, 1),hslider("mult top", 1, 0.001, 1 ,0.001),i,expo);
currentPosAndDir(i) = prevH(i)-( ramp(size(i),reset(i)) * hslider("ramp", 0, 0, 1, 0.01) * (prevH(i)'-prevH(i)));
newDownSpeed(i) = (prev -new(i) )/size(i);
currentDownSpeed = oldDownSpeed*(speedIsZero==0);
speedIsZero = select2(checkbox("speed"),(prev==GR@(totalLatency)),(prev==prev'));
size(i) = pow(2,(expo-i));
attPhase(prev) = lowestGRblock(GR,totalLatency)<prev;
lowestGRblock(GR,size) = GR:ba.slidingMin(size,totalLatency);
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
smallestRamp(reset) = select2(reset,_+(small):min(1),small)~_ with {
small = pow(2,-23);
};
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
};
smoothGRlinear(GR) = FB~(_,_)
:(_,!)
with {
FB(prev,oldDownSpeed) =
(par(i, nrBlocks, fade(i)):ro.interleave(2,nrBlocks):(minN(nrBlocks),maxN(nrBlocks)))
with {
new(i) = lowestGRblock(GR,size(i))@(i*blockSize);
newH(i) = new(i):ba.sAndH( reset(i)| (attPhase(prev)==0) );
prevH(i) = prev:ba.sAndH( reset(i)| (attPhase(prev)==0) );
reset(i) =
(newDownSpeed(i) > currentDownSpeed);
fade(i) =
, (select2((newDownSpeed(i) > currentDownSpeed),currentDownSpeed ,newDownSpeed(i)));
rampShaper(i) = _:pow(power(i))*mult(i):max(smallestRamp(reset(i)));
power(i) = LinArrayParametricMid(hslider("power bottom", 1, 0.001, 100, 0.001),hslider("power mid", 1, 0.001, 100, 0.001),hslider("band", (nrBlocks/2)-1:max(0), 0, nrBlocks, 1),hslider("power top", 1, 0.001, 100, 0.001),i,nrBlocks);
mult(i) = LinArrayParametricMid(hslider("mult bottom", 1, 0.001, 1 ,0.001),hslider("mult mid", 1, 0.001, 1 ,0.001),hslider("band", (nrBlocks/2)-1:max(0), 0, nrBlocks, 1),hslider("mult top", 1, 0.001, 1 ,0.001),i,nrBlocks);
currentPosAndDir(i) = prevH(i)-( rampOne(i) * speed(i));
rampOne(i) = (select2(reset(i),_+1,1):min(size(i)))~_;
speed(i) = (prev-prev'):ba.sAndH( reset(i)| (attPhase(prev)==0) );
newDownSpeed(i) = (prev -new(i) )/size(i);
currentDownSpeed = oldDownSpeed*(speedIsZero==0);
speedIsZero = select2(checkbox("speed"),(prev==GR@(totalLatencyLinear)),(prev==prev'));
size(i) = (nrBlocks-i)*blockSize;
attPhase(prev) = lowestGRblock(GR,totalLatencyLinear)<prev;
lowestGRblock(GR,size) = GR:ba.slidingMin(size,totalLatencyLinear);
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
smallestRamp(reset) = select2(reset,_+(small):min(1),small)~_ with {
small = pow(2,-23);
};
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
};
LogArray(bottom,top,nrElements) = par(i,nrElements, pow((pow((top/bottom),1/(nrElements-1))),i)*bottom);
LinArrayParametricMid(bottom,mid,band,top,element,nrElements) =
select2(band<=element +1,midToBottomVal(element), midToTopVal(element))
with {
midToBottomVal(element) = (midToBottom(element)*bottom) + (((midToBottom(element)*-1)+1)*mid);
midToBottom(element) = (band-(element +1))/(band-1);
midToTopVal(element) = (midToTop(element)*top) + (((midToTop(element)*-1)+1)*mid);
midToTop(element) = (element +1-band)/(nrElements-band);
};
GR = vgroup("GR", no.lfnoise0(totalLatency *t * (no.lfnoise0(totalLatency/2):max(0.1) )):pow(3)*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0)) ;
t= hslider("time", 0.1, 0, 1, 0.001);
noiseLVL = hslider("noise", 0, 0, 1, 0.01);
rate = hslider("rate", 20, 10, 20000, 10);
attRel(prev) = select2(
GR:ba.slidingMin(totalLatency,totalLatency)<prev,decay,attack) with {
decay = prev*ba.tau2pole(decaytime)+(GR:ba.slidingMin(totalLatency,totalLatency)*(1-ba.tau2pole(decaytime)));
attack = prev*ba.tau2pole(attacktime)+(GR:ba.slidingMin(totalLatency,totalLatency)*(1-ba.tau2pole(attacktime)));
attacktime = hslider("attacktime ", 0.02, 0, 0.1, 0.001);
decaytime = hslider("decaytime ", 0.1, 0, 0.5, 0.001);
};
|
98c93201f2861b2a3c5a9aca366c4eeb2448f5f85f4f7d3168e0de095456a86e
|
magnetophon/SubSynth
|
SubSynth.dsp
|
declare author "Bart Brouns";
declare license "AGPLv3";
declare name "SubSynth";
declare options "[midi:on][nvoices:1]";
import("stdfaust.lib");
process =
SubS(freq,gain,gate);
///////////////////////////////////////////////////////////////////////////////
// todo //
///////////////////////////////////////////////////////////////////////////////
/*
multi-target
target mod
env smooth tail: trig release at a certain level
*/
///////////////////////////////////////////////////////////////////////////////
// synth //
///////////////////////////////////////////////////////////////////////////////
SubS(freq,gain,gate) =
subOsc(targetFreq,punchFreq,punchEnv,retrigger,gate,freq)
// * (vel(lastNote)/127)
// * level
:>_*gainEnvelope<:(_,_)
with {
gainEnvelope = curved_adsr(a,d,s,r,ac,dc,rc,gate);
punchEnv =
curved_adsr(ap,dp,0,0.02,acp,dcp,0,gate);
};
///////////////////////////////////////////////////////////////////////////////
// oscillator //
///////////////////////////////////////////////////////////////////////////////
subOsc(target,punchFreq,punchEnv,retrigger,gate,freq) =
slaveSine(fund)
,(slaveSine(fund*2:ma.frac))
: xfade(fade)
with {
PunchedFreq = subFreq * punchFreqRatio;
punchFreqRatio =
(punchFreq / subFreq)
:ba.ratio2semi *punchEnv
:ba.semi2ratio;
subFreq = freq*oct/maxOct;
oct =
pow2( octave )
;
octave =
ma.log2
((target/freq)*maxOct)
:int
;
maxOct = pow2(baseOct);
fade =
(target/PunchedFreq)
-1:max(0):min(1)
:hbargraph("[30]fade", 0, 1)
;
lf_sawpos_trig(freq,trig) = ma.frac * dontReset ~ +(freq/ma.SR)
with {
dontReset = trig:ba.impulsify*-1+1;
};
masterOsc = lf_sawpos_trig(PunchedFreq/oct,gate & retrigger);
fund = masterOsc*(oct):ma.frac;
slaveSine(fund) = fund*ma.PI*2:sin;
xfade(x,a,b) = it.interpolate_linear(x,a,b);
};
///////////////////////////////////////////////////////////////////////////////
// envelopes //
///////////////////////////////////////////////////////////////////////////////
// shaper: https://www.desmos.com/calculator/6wotdstndy
curved_adsr(a,d,s,r,ac,dc,rc,gate) =
FB~(_,_) // we need the previous state and value
:!,_ // we only need the actual envelope output
with {
FB(prevState, prevValue) =
// states are :0 = release, 1= attack, 2 = decay
state
// the actual value of the envelope
,envelope
with { // so we can use prevState by name, without passing it as an argument
state = int(attackDecayState * gate); // if no gate then force release
attackDecayState = prevState+trigAttackDecay+trigDecay; // if no triggers, stay where you are, otherwise move to 1 and then 2
trigAttackDecay = gate'-gate == -1; // auto-impulsify
trigDecay =
(prevState==1) & (attackRamp ==1) // auto-impulsify because prev will increase
| trigAttackDecay & (attSamps==0);
attackRamp = ramp(attSamples,trigAttackDecay);
attSamples = int(a * ma.SR);
envelope = it.interpolate_linear(fadeVal,from,to(state));
fadeVal = ramp(samples,trig):shaper;
samples = int(length(state) * ma.SR);
length(state) = select3(state,r,a,d);
trig = trigAttackDecay, trigDecay, trigRelease :> _>0;
trigRelease = gate-gate' == -1;
from = max(prevValue,trigDecay) : ba.sAndH(trig);
to(state) = select3(state,0,1,s); // release to 0, attack to 1, decay to sustain-level
shaper(x) =
// x;
select2(shapeState
,map_log(x)
,x // t == 1 should be linear, not 0
);
// possiby make 3rd state: positive c mirorred
map_log(x) = log (x * (t - 1) + 1) / log(t); // from https://github.com/dariosanfilippo/edgeofchaos/blob/fff7e37ab80a5550421f7d4694c7de9b18b8b162/mathsEOC.lib#L881
shapeState =
t==1;
// + 2*checkbox("shape"):min(3);
// +t>1;
t = pow((c/((c<0)+1))+1,16);
c = curve(state);
// adjust polarity so more is more
curve(state) = select3(state,rc*-1,ac,dc*-1);
attSamps = int(a * ma.SR);
// ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
// when reset == 1, go back to 0.
// ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
};
};
///////////////////////////////////////////////////////////////////////////////
// MIDI //
///////////////////////////////////////////////////////////////////////////////
gain = midi_group(hslider("[0]gain",0.5,0,1,0.01));
f = midi_group(hslider("[1]freq",maxFreq,minFreq,maxFreq,0.001));
b = midi_group(hslider("[2]bend [midi:pitchwheel]",0,-2,2,0.001):ba.semi2ratio): si.polySmooth(gate,0.999,1);
gate = midi_group( button("[3]gate"));
// gate = nrNotesPlaying>0;
freq = f*b;
// freq = (lastNote:ba.pianokey2hz) * b:hbargraph("frequency", minFreq, maxFreq);
// freq = target_group(hslider("freq", 110, 55, 880, 1):si.smoo);
a = envelope_group(hslider("[0]attack [tooltip: Attack time in seconds][unit:s] [scale:log]", 0, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
d = envelope_group(hslider("[1]decay [tooltip: Decay time in seconds][unit:s] [scale:log]", 0.5, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
s = envelope_group(hslider("[2]sustain [tooltip: Sustain level]", 0.5, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
r = envelope_group(hslider("[3]release [tooltip: Release time in seconds][unit:s] [scale:log]", 0.050, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
ac = envelope_group(hslider("[0]attack curve [tooltip: shape of the attack, 0 is linear]", 0, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
dc = envelope_group(hslider("[1]decay curve [tooltip: shape of the decay, 0 is linear]", 0.5, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
rc = envelope_group(hslider("[3]release curve [tooltip: shape of the release, 0 is linear]", 0.25, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
targetFreq = punch_group(hslider("[-2]target frequency", 37, 0, 127, 1)):ba.midikey2hz : si.polySmooth(gate,0.999,1);
// targetFreq = target_group(hslider("target freq", 110, minFreq, 880, 1)
// : si.polySmooth(gate,0.999,1))
// ;
punchFreq = punch_group(hslider("[-1]punch frequency", 101, 0, 127, 1)):ba.midikey2hz: si.polySmooth(gate,0.999,1);
ap = punch_group(hslider("[0]attack [tooltip: Attack time in seconds][unit:s] [scale:log]", 0.002, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
dp = punch_group(hslider("[1]decay [tooltip: Decay time in seconds][unit:s] [scale:log]", 0.150, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
acp = punch_group(hslider("[0]attack curve [tooltip: shape of the attack, 0 is linear]", -0.5, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
dcp = punch_group(hslider("[1]decay curve [tooltip: shape of the decay, 0 is linear]", -0.75, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
retrigger = checkbox("retrigger")*-1+1;
level = target_group(hslider("level", 0, -60, 0, 1): si.polySmooth(gate,0.999,1):ba.db2linear);
tabs(x) = tgroup("", x);
synth_group(x) = tabs(hgroup("[0]synth", x));
midi_group(x) = tabs(vgroup("[1]midi", x));
envelope_group(x) = synth_group(vgroup("[0]envelope", x));
punch_group(x) = synth_group(vgroup("[1]punch", x));
target_group(x) = synth_group(vgroup("[2]target", x));
///////////////////////////////////////////////////////////////////////////////
// constants //
///////////////////////////////////////////////////////////////////////////////
// we can ony shift octaves up, not down so start with the lowest possibly usefull octave divider:
// we want any note to be able to turn subsonic
// midi 127 = 12543.9 Hz
// 12543.9/(2^10) = 12.249902 Hz
minFreq = maxFreq/pow2(baseOct); // 12.249902;
maxFreq = 12543.9;
baseOct = 10;
pow2(i) = 1<<int(i);
// same as:
// pow2(i) = int(pow(2,i));
// but in the block diagram, it will be displayed as a number, instead of a formula
///////////////////////////////////////////////////////////////////////////////
// lastNote //
// give the number of the last note played //
///////////////////////////////////////////////////////////////////////////////
// increases the cpu-usage, from 7% to 11%
// * (vel(lastNote)/127)
// no velocity:
// * (nrNotesPlaying>0)
// ;
nrNotesPlaying = 0: seq(i, nrNotes, noteIsOn(i),_:+);
noteIsOn(i) = velocity(i)>0;
vel(x) = par(i, nrNotes, velocity(i)*(i==x)):>_ ;
velocity(i) = hslider("velocity of note %i [midi:key %i ]", 0, 0, nrNotes, 1);
nrNotes = 127; // nr of midi notes
// nrNotes = 32; // for block diagram
lastNote = par(i, nrNotes, i,index(i)):find_max_index(nrNotes):(_,!)
with {
// an index to indicate the order of the note
// it adds one for every additional note played
// it resets to 0 when there are no notes playing
// assume multiple notes can start at once
orderIndex = ((_+((nrNotesPlaying-nrNotesPlaying'):max(0))) * (nrNotesPlaying>1))~_;
// the order index of note i
// TODO: when multiple notes start at the same time, give each a unique index
index(i) = orderIndex:(select2(noteStart(i),_,_)
:select2(noteEnd(i)+(1:ba.impulsify),_,-1))~_;
// we use this instead of:
// hslider("frequency[midi:keyon 62]",0,0,nrNotes,1)
// because keyon can come multiple times, and we only want the first
noteStart(i) = noteIsOn(i):ba.impulsify;
noteEnd(i) = (noteIsOn(i)'-noteIsOn(i)):max(0):ba.impulsify;
//or do we?
// noteStart(i) = (hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0) :ba.impulsify;
// at the very least, the first implementation of noteStart(i) doesn't add another 127 sliders
// from Julius Smith's acor.dsp:
index_comparator(n,x,m,y) = select2((x>y),m,n), select2((x>y),y,x); // compare integer-labeled signals
// take N number-value pairs and give the number with the maximum value
find_max_index(N) = seq(i,N-2, (index_comparator,si.bus(2*(N-i-2)))) : index_comparator;
};
|
https://raw.githubusercontent.com/magnetophon/SubSynth/1a276476a632964629bb3decbc68f9bdade09b0d/SubSynth.dsp
|
faust
|
/////////////////////////////////////////////////////////////////////////////
todo //
/////////////////////////////////////////////////////////////////////////////
multi-target
target mod
env smooth tail: trig release at a certain level
/////////////////////////////////////////////////////////////////////////////
synth //
/////////////////////////////////////////////////////////////////////////////
* (vel(lastNote)/127)
* level
/////////////////////////////////////////////////////////////////////////////
oscillator //
/////////////////////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////////////////////
envelopes //
/////////////////////////////////////////////////////////////////////////////
shaper: https://www.desmos.com/calculator/6wotdstndy
we need the previous state and value
we only need the actual envelope output
states are :0 = release, 1= attack, 2 = decay
the actual value of the envelope
so we can use prevState by name, without passing it as an argument
if no gate then force release
if no triggers, stay where you are, otherwise move to 1 and then 2
auto-impulsify
auto-impulsify because prev will increase
release to 0, attack to 1, decay to sustain-level
x;
t == 1 should be linear, not 0
possiby make 3rd state: positive c mirorred
from https://github.com/dariosanfilippo/edgeofchaos/blob/fff7e37ab80a5550421f7d4694c7de9b18b8b162/mathsEOC.lib#L881
+ 2*checkbox("shape"):min(3);
+t>1;
adjust polarity so more is more
ramp from 1/n to 1 in n samples. (don't start at 0 cause when the ramp restarts, the crossfade should start right away)
when reset == 1, go back to 0.
ramp(n,reset) = select2(reset,_+(1/n):min(1),0)~_;
/////////////////////////////////////////////////////////////////////////////
MIDI //
/////////////////////////////////////////////////////////////////////////////
gate = nrNotesPlaying>0;
freq = (lastNote:ba.pianokey2hz) * b:hbargraph("frequency", minFreq, maxFreq);
freq = target_group(hslider("freq", 110, 55, 880, 1):si.smoo);
targetFreq = target_group(hslider("target freq", 110, minFreq, 880, 1)
: si.polySmooth(gate,0.999,1))
;
/////////////////////////////////////////////////////////////////////////////
constants //
/////////////////////////////////////////////////////////////////////////////
we can ony shift octaves up, not down so start with the lowest possibly usefull octave divider:
we want any note to be able to turn subsonic
midi 127 = 12543.9 Hz
12543.9/(2^10) = 12.249902 Hz
12.249902;
same as:
pow2(i) = int(pow(2,i));
but in the block diagram, it will be displayed as a number, instead of a formula
/////////////////////////////////////////////////////////////////////////////
lastNote //
give the number of the last note played //
/////////////////////////////////////////////////////////////////////////////
increases the cpu-usage, from 7% to 11%
* (vel(lastNote)/127)
no velocity:
* (nrNotesPlaying>0)
;
nr of midi notes
nrNotes = 32; // for block diagram
an index to indicate the order of the note
it adds one for every additional note played
it resets to 0 when there are no notes playing
assume multiple notes can start at once
the order index of note i
TODO: when multiple notes start at the same time, give each a unique index
we use this instead of:
hslider("frequency[midi:keyon 62]",0,0,nrNotes,1)
because keyon can come multiple times, and we only want the first
or do we?
noteStart(i) = (hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0) :ba.impulsify;
at the very least, the first implementation of noteStart(i) doesn't add another 127 sliders
from Julius Smith's acor.dsp:
compare integer-labeled signals
take N number-value pairs and give the number with the maximum value
|
declare author "Bart Brouns";
declare license "AGPLv3";
declare name "SubSynth";
declare options "[midi:on][nvoices:1]";
import("stdfaust.lib");
process =
SubS(freq,gain,gate);
SubS(freq,gain,gate) =
subOsc(targetFreq,punchFreq,punchEnv,retrigger,gate,freq)
:>_*gainEnvelope<:(_,_)
with {
gainEnvelope = curved_adsr(a,d,s,r,ac,dc,rc,gate);
punchEnv =
curved_adsr(ap,dp,0,0.02,acp,dcp,0,gate);
};
subOsc(target,punchFreq,punchEnv,retrigger,gate,freq) =
slaveSine(fund)
,(slaveSine(fund*2:ma.frac))
: xfade(fade)
with {
PunchedFreq = subFreq * punchFreqRatio;
punchFreqRatio =
(punchFreq / subFreq)
:ba.ratio2semi *punchEnv
:ba.semi2ratio;
subFreq = freq*oct/maxOct;
oct =
pow2( octave )
;
octave =
ma.log2
((target/freq)*maxOct)
:int
;
maxOct = pow2(baseOct);
fade =
(target/PunchedFreq)
-1:max(0):min(1)
:hbargraph("[30]fade", 0, 1)
;
lf_sawpos_trig(freq,trig) = ma.frac * dontReset ~ +(freq/ma.SR)
with {
dontReset = trig:ba.impulsify*-1+1;
};
masterOsc = lf_sawpos_trig(PunchedFreq/oct,gate & retrigger);
fund = masterOsc*(oct):ma.frac;
slaveSine(fund) = fund*ma.PI*2:sin;
xfade(x,a,b) = it.interpolate_linear(x,a,b);
};
curved_adsr(a,d,s,r,ac,dc,rc,gate) =
with {
FB(prevState, prevValue) =
state
,envelope
trigDecay =
| trigAttackDecay & (attSamps==0);
attackRamp = ramp(attSamples,trigAttackDecay);
attSamples = int(a * ma.SR);
envelope = it.interpolate_linear(fadeVal,from,to(state));
fadeVal = ramp(samples,trig):shaper;
samples = int(length(state) * ma.SR);
length(state) = select3(state,r,a,d);
trig = trigAttackDecay, trigDecay, trigRelease :> _>0;
trigRelease = gate-gate' == -1;
from = max(prevValue,trigDecay) : ba.sAndH(trig);
shaper(x) =
select2(shapeState
,map_log(x)
);
shapeState =
t==1;
t = pow((c/((c<0)+1))+1,16);
c = curve(state);
curve(state) = select3(state,rc*-1,ac,dc*-1);
attSamps = int(a * ma.SR);
ramp(n,reset) = select2(reset,_+(1/n):min(1),1/n)~_;
};
};
gain = midi_group(hslider("[0]gain",0.5,0,1,0.01));
f = midi_group(hslider("[1]freq",maxFreq,minFreq,maxFreq,0.001));
b = midi_group(hslider("[2]bend [midi:pitchwheel]",0,-2,2,0.001):ba.semi2ratio): si.polySmooth(gate,0.999,1);
gate = midi_group( button("[3]gate"));
freq = f*b;
a = envelope_group(hslider("[0]attack [tooltip: Attack time in seconds][unit:s] [scale:log]", 0, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
d = envelope_group(hslider("[1]decay [tooltip: Decay time in seconds][unit:s] [scale:log]", 0.5, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
s = envelope_group(hslider("[2]sustain [tooltip: Sustain level]", 0.5, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
r = envelope_group(hslider("[3]release [tooltip: Release time in seconds][unit:s] [scale:log]", 0.050, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
ac = envelope_group(hslider("[0]attack curve [tooltip: shape of the attack, 0 is linear]", 0, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
dc = envelope_group(hslider("[1]decay curve [tooltip: shape of the decay, 0 is linear]", 0.5, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
rc = envelope_group(hslider("[3]release curve [tooltip: shape of the release, 0 is linear]", 0.25, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
targetFreq = punch_group(hslider("[-2]target frequency", 37, 0, 127, 1)):ba.midikey2hz : si.polySmooth(gate,0.999,1);
punchFreq = punch_group(hslider("[-1]punch frequency", 101, 0, 127, 1)):ba.midikey2hz: si.polySmooth(gate,0.999,1);
ap = punch_group(hslider("[0]attack [tooltip: Attack time in seconds][unit:s] [scale:log]", 0.002, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
dp = punch_group(hslider("[1]decay [tooltip: Decay time in seconds][unit:s] [scale:log]", 0.150, 0, 1, 0.001)): si.polySmooth(gate,0.999,1);
acp = punch_group(hslider("[0]attack curve [tooltip: shape of the attack, 0 is linear]", -0.5, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
dcp = punch_group(hslider("[1]decay curve [tooltip: shape of the decay, 0 is linear]", -0.75, -1, 1, 0.001)): si.polySmooth(gate,0.999,1);
retrigger = checkbox("retrigger")*-1+1;
level = target_group(hslider("level", 0, -60, 0, 1): si.polySmooth(gate,0.999,1):ba.db2linear);
tabs(x) = tgroup("", x);
synth_group(x) = tabs(hgroup("[0]synth", x));
midi_group(x) = tabs(vgroup("[1]midi", x));
envelope_group(x) = synth_group(vgroup("[0]envelope", x));
punch_group(x) = synth_group(vgroup("[1]punch", x));
target_group(x) = synth_group(vgroup("[2]target", x));
maxFreq = 12543.9;
baseOct = 10;
pow2(i) = 1<<int(i);
nrNotesPlaying = 0: seq(i, nrNotes, noteIsOn(i),_:+);
noteIsOn(i) = velocity(i)>0;
vel(x) = par(i, nrNotes, velocity(i)*(i==x)):>_ ;
velocity(i) = hslider("velocity of note %i [midi:key %i ]", 0, 0, nrNotes, 1);
lastNote = par(i, nrNotes, i,index(i)):find_max_index(nrNotes):(_,!)
with {
orderIndex = ((_+((nrNotesPlaying-nrNotesPlaying'):max(0))) * (nrNotesPlaying>1))~_;
index(i) = orderIndex:(select2(noteStart(i),_,_)
:select2(noteEnd(i)+(1:ba.impulsify),_,-1))~_;
noteStart(i) = noteIsOn(i):ba.impulsify;
noteEnd(i) = (noteIsOn(i)'-noteIsOn(i)):max(0):ba.impulsify;
find_max_index(N) = seq(i,N-2, (index_comparator,si.bus(2*(N-i-2)))) : index_comparator;
};
|
c0d53d4b6ff06edf0fc7cdf4170e207de3e7aa58c66036801d5e777c4c6fc1e4
|
magnetophon/LazyLimiter
|
LLng.dsp
|
declare name "LazyLimiter ng";
declare author "Bart Brouns";
declare license "GPLv3";
declare version "0.1";
import("stdfaust.lib");
maxmsp = library("maxmsp.lib");
comp = library("../FaustCompressors/compressors.lib");
// process(x) = (gainCalculator(x):ba.db2linear)*(x@LookAheadTime);
process =
// GR;
// lookahead_compression_gain_mono(strength,threshold,0,0,knee,x);
// lim(1);
gainCompareGraphs ;
// GR:SandH(hslider("hld", 0, 0, 1, 1));
// comp.compressor_N_chan_demo(2);
lim(N) =
(si.bus(N) <:
(
(
par(i, N, abs:ba.linear2db),
si.bus(N)
)
:lookahead_compression_gain_N_chan(strength,threshold,0,0,knee,hold,link,N),si.bus(N)
)
)
// :(ro.interleave(N,2):par(i,N,(meter:ba.db2linear)*(_@maxHold)))
:ro.interleave(N,2):par(i,N,(((meter:ba.db2linear<:si.bus(2))),(_@maxHold)):(_,*)):ro.interleave(2,N):ro.cross(N*2):par(i, 2, ro.cross(N))
with {
meter = _<:(_, (max(maxGR):(hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0)))):attach;
};
// generalise compression gains for N channels.
// first we define a mono version:
lookahead_compression_gain_N_chan(strength,thresh,att,rel,knee,hold,link,1) =
lookahead_compression_gain_mono(strength,thresh,att,rel,knee,hold)~_;
// The actual N-channel version:
// Calculate the maximum gain reduction of N channels,
// and then crossfade between that and each channel's own gain reduction,
// to link/unlink channels
lookahead_compression_gain_N_chan(strength,thresh,att,rel,knee,hold,link,N) =
( ro.interleave(N,2):
(
par(i, N, lookahead_compression_gain_mono(strength,threshold,0,0,knee,hold))
<:(si.bus(N),(minN(N)<:si.bus(N))):ro.interleave(N,2):par(i,N,(comp.crossfade(link)))
)
)~si.bus(N);
// ( ro.interleave(N,2):
// (
// par(i, N, lookahead_compression_gain_mono(strength,thresh,att,rel,knee,hold))
// <:(si.bus(N),(minN(N)<:si.bus(N))):ro.interleave(N,2):par(i,N,(comp.crossfade(link)))
// )
// )~(si.bus(N));
lookahead_compression_gain_mono(strength,thresh,att,rel,knee,hold,lastdown,level) =
(
comp.gain_computer(1,thresh,knee,level):deltaGR(LookAheadTime,lastdown)
// :deltaGR(LookAheadTime)
) *strength;
// (
// comp.gain_computer(1,thresh,knee,level)@(maxHold-LookAheadTime):deltaGR(LookAheadTime,lastdown)
// ,
// (comp.gain_computer(1,thresh,knee,level):ba.slidingMinN(hold,maxHold):max(lastdown))
// ) : min;
strength = (hslider("[0] Strength [style:knob]
[tooltip: A compression Strength of 0 means no gain reduction and 1 means full gain reduction]",
1, 0, 8, 0.01));
threshold = (hslider("[1] Threshold [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level is compressed according to the Strength]",
0, maxGR, 10, 0.1));
knee = (hslider("[2] Knee [unit:dB] [style:knob]
[tooltip: soft knee amount in dB]",
6, 0, 30, 0.1));
link = (hslider("[4] link [style:knob]
[tooltip: 0 means all channels get individual gain reduction, 1 means they all get the same gain reduction]",
1, 0, 1, 0.01));
hold = hslider("[5] Hold time [style:knob]", 0, 0, maxHold, 1);
gainCompareGraphs =
GR@maxHold
,
// (line(lowestGRi(5,GR),pow(2,6))@(maxHold-LookAheadTime))// fast fade
// lowestGRi(5,GR)
(GR:(deltaGR(LookAheadTime)~(_,_)))
// ,(GR:ba.slidingMinN(hold,maxHold)@(maxHold-hold))
// , ((ramp(powI(1),lowestGRi(1,GR))/powI(1))@(maxHold-LookAheadTime))
// ba.countup(powI(5),(GR-GR')!=0)
// ba.countup(powI(5),(GR-GR')!=0)
;
tmp=4;
del(x) = x-x';
// del = delFB~_;
// delFB(FB,x) = x-FB;
// deltaGR(maxI,GR) = FBdeltaGR(maxI,GR)~_
// with {
// FBdeltaGR(maxI,GR,FB) =
// par(i, expo,
// (
// (lowestGRi(i,GR)-FB)
// / ((powI(i)-ramp(powI(i),lowestGRi(i,GR)))+1)
// )
// : attackRelease(i)
// )
// : ((minN(expo) :smoothie ) +FB)
// // :min(0)
// :min(GR@LookAheadTime)
// ;
// deltaGR(maxI,GR) = FBdeltaGR(maxI,GR)~_
SandH(sample,x) = select2(sample,_,x)~_;
deltaGR(maxI,FB,FBraw,GR) =
(
// par(i, expo,
select2(lowestGRi(i,GR)@(maxHold-LookAheadTime)>=FB ,
(
((lowestGRi(i,GR)@(maxHold-LookAheadTime):SandH(trig(i,GR,FB,FBraw))-FB))
// / ((powI(i)-ramp(powI(i),lowestGRi(i,GR))@(maxHold-LookAheadTime))+1)
/ ((powI(i)-1- attackRamp(i,FB,FBraw)):max(0)+1)
),
(
((lowestGRi(i,GR)@(maxHold-LookAheadTime)-FB))
// / ((powI(i)-ramp(powI(i),lowestGRi(i,GR))@(maxHold-LookAheadTime))+1)
/ ((powI(i)-ramp(powI(i),lowestGRi(i,GR))@(maxHold-LookAheadTime))+1)
)
)
// )
// <: attackReleaseBlock(expo)
// : minN(expo)
: holdFunction
<:
(
((AR : smoothRel(smooR): smoothAttack(smooA) +FB) :min(GR@maxHold))
, (_+FBraw:min(GR@maxHold))
)
)
// ,((FB-FB') *pow(2,expo))
// ,(deltaI(expo-1,GR,FB) *pow(2,expo))
// ,(attackRamp(expo-1,FB,FBraw) / powI(expo-1))
,(trig(i,GR,FB,FBraw)*0.5)
// ,(trig4(i,GR,FB) * 0.25)
// ,(trig2(i,GR,FB)*0.25)
// par(i, nrBands,
// (
// (lowestGRlinI(i,GR)@(maxHold-LookAheadTime)-FB)
// / ((linI(i)-ramp(linI(i),lowestGRlinI(i,GR))@(maxHold-LookAheadTime))+1)
// )
// )
// : attackReleaseBlock(nrBands)
// : ((minN(nrBands): holdFunction :smoothRel(smooR): smoothAttack(smooA) ) +FB)
// :min(GR@maxHold)
with {
i=expo-1;
linI(i) = (i+1)*pow(2,expo)/nrBands; // the lenght of each block
lowestGRlinI(i,GR) = GR:ba.slidingMinN(linI(i),linI(i))@delCompLin(i);
holdFunction(attackedGR) =
attackedGR*(
(GR:ba.slidingMinN(hold,maxHold)@(maxHold-hold) > FB)
+
(attackedGR<0)
:min(1)
);
// attackedGR;
// holdFunction = _;//@(maxHold-LookAheadTime);//*(GR:ba.slidingMinN(hold,maxHold) >= FB);
// (comp.gain_computer(1,thresh,knee,level):ba.slidingMinN(hold,maxHold):max(lastdown))
delCompLin(i) = pow(2,expo)-linI(i);
attackReleaseBlock(size) =
attackPlusInputs(size) : par(i, size, attackRelease(i));
// smoothie(delta) = select2(delta>=0,delta,smoothieFB(delta)~_);
// smoothieFB(delta,FB) = min(( (FB*smoo) + (delta*(1-smoo))):max(0) , delta);
smoothAttack(smoo,delta) = select2((delta<=_)*(delta<0) ,delta,((_*smoo) + (delta*(1-smoo))) )~(_<:(_,_));
smoothRel(smoo,delta) = smoothieFB(smoo,delta)~_;
smoothieFB(smoo,delta,FB) = select2(delta>=0,delta,min(( (FB*smoo) + (delta*(1-smoo))):max(0) , delta));
smooA = hslider("smooA", 0, 0,0.999, 0.001):pow(1/128);
smooR = hslider("smooR", 0, 0,0.999, 0.001):pow(1/128);
// countup(n,trig) : _
// * `n`: the maximum count value
// * `trig`: the trigger signal (1: start at 0; 0: increase until `n`)
// ramp(maxI,GR) = ((ba.countup(maxI,(GR-GR')!=0)/maxI):attackShaper)*maxI;
// ramp(maxI,GR) = ba.countup(maxI,(GR-GR')!=0);
AR(delta) =
select2((delta)<=0, 1+release,bottom)*delta;
attackRelease(i,attack,delta) =
select2((delta)<=0,
releaseFunc,
// (1/(i+1))+attack : min(1)
attackFunc(i,attack)
)*delta;
releaseFunc = 1+release;
// releaseFunc(delta) = min((delta*smoo)+( (1+release) *(1-smoo)));
// attackFunc(i) =
// (
// (
// 1/
// ( pow(( (i-curve):max(1)) , 2.5) ) // linear from i=4
// // ) + pow(attack,2) : min(1)
// // ) + pow(attack,2) : min(1)+ ((i==3)*1) + ((i==1)*-0.75)
// ) + pow(attack,2) : min(1)+ ((i==curve)*1)
// //+ ((i==(curve-2))*-0.75)
// )
// ;
// attackFunc(i,attack) =
// (
// 1/
// ( i*64:max(1)*((attack:min(1)*-1)+1:pow(4)) )
// ) : min(1) + (attack-1:max(0):pow(1))
// ;
attackFunc(i,attack) = attack;
// attackFunc(i) =
// (
// (
// 1/
// ( (i-curve)*64:max(1)*(attack:pow(4)) )
// ) : min(1)+ ((i==curve)*1)
// )
// ;
curve = hslider("curve", 3, -1, nrBands, 1);
// curve = hslider("curve", 3, 2, expo, 1);
// (1/(i+1))-attack : min(1));
attack = hslider("attack", 0, 0, 1, 0.001);
// OK for expo=10
// release = (((hslider("release", 0, 0, 1, 0.001):pow(0.2))*-1)+1)*32;
// OK for 10 and 13
release = (((hslider("release", 0, 0, 1, 0.001):pow(0.2))*-1)+1)*pow(2,expo/2);
// release = (((hslider("release", 0, 0, 1, 0.001):pow(0.2))*-1)+1)*pow(2,expo)/32;
attackPlusInputs(size) =
(
VocoderLinArrayParametricMid(bottom,mid,band(size),top,size),
si.bus(size)
): ro.interleave(size,2) ;
bottom = hslider("bottom", 2, 0, 30, 0.01);
mid = hslider("mid", 1, 0, 3, 0.01);
top = hslider("top", 0, 0, 3, 0.01);
band(size) = hslider("band", 8, 1, size, 1);
};
// trig(i,GR,FB) = deltaI(i,GR,FB)<(FB-FB'):ba.impulsify ;//* (FB==GR@maxHold);
trig(i,GR,FB,FBraw) = select3(sel,trig1(i,GR,FB,FBraw) , trig2(i,GR,FB,FBraw), trig3(i,GR,FB,FBraw) );
sel = hslider("sel", 0, 0, 2, 1);
trig1(i,GR,FB,FBraw) = deltaI(i,GR,FB) <(FBraw-FBraw') ;
trig2(i,GR,FB,FBraw) = deltaI(i,GR,FB) <(FBraw-FBraw') : ba.impulsify;
trig3(i,GR,FB,FBraw) = deltaI(i,GR,FB) <(FB-FB') ;
// trig2(i,GR,FB) = deltaI(i,GR,FB) <(FB-FB') * (FB> (lowestGRi(i,GR)@(maxHold-LookAheadTime))) ;
// trig3(i,GR,FB) = ((GR/powI(i))-FB) <(FB-FB') ;
trig4(i,GR,FB) = deltaI(i,GR,FB) <(FB-FB') * (FB> (lowestGRi(i,GR)@(maxHold-LookAheadTime))) ;
// : ba.impulsify;
//(FB==GR@maxHold);
invert = _==0;
mult = hslider("mult", 1, 0, 3, 0.01);
ramp(maxI,GR) = ba.countup(maxI,(GR>GR'))*mult;
attackRamp(i,FB,FBraw) = ba.countup(powI(i),(trig(i,GR,FB,FBraw)));
deltaI(i,GR,FB) = (lowestGRi(i,GR)@(maxHold-LookAheadTime)-FB)/powI(i);
// attackRamp(i) = ba.countup(powI(i),(lowestGRi(i,GR)-lowestGRi(i,GR)')!=0);
// todo: ramp if lowestgr(10) !=lowestgr(5)
/*
slow =
band 16
bottom 1.92
mid 1.80
release 0.71
smoo = 0.829
top 0
fast =
band 3
bottom 1.92
mid 0.08
release 0
smoo = 0.046
top 0
*/
lss = 3;
// lin from 32 (i=4)
// *2 from 16-8
// *1 from 8-4
// *0.25 from 4-0
// auto-attack-release:
// vocoder, each band represents a fixed A&R, (lower is longer of course)
// and each influences the end result
// use VOF code to normalise and focus
// if (somewhere in the next "length" samples, we are going down quicker then we are now):
// then (fade down to that speed)
// second implementation option:
// if knikpunt
// then (fade down to 0 speed at knikpunt, then "normal release")
// TODO: remove this length mess & delay! :)
// length = 2;
// length = pow(2,6); // 64
// length = pow(2,7); // 128
length = pow(2,9); // 128
// smoother(length,x) = smootherFB(x,length)~_;
smoother(length,x) = smootherFB(x,length)~(!,!,_);
smootherFB(x,length,FB) =
reset,
ramp
,
// select2(minDelta<(delta@length) ,x@length, deltaXfade)
deltaXfade
with {
// delta = x-FB;
delta = x-x';
minDelta = (delta):ba.slidingMinN(length,length);
deltaXfade = xFade(ramp*downSmooth,(x@length)-FB,minDelta)+FB;
// deltaXfade = xFade(ramp*downSmooth,FB-FB',minDelta)+FB;
// deltaXfade = (
// (minDelta-(delta@length))
// / ((length-ramp(minDelta)+1))
// )
// +FB;
xFade(x,a,b) = a*(1-x)+b*(x);
downSmooth = hslider("downSmooth", 0, 0, 1, 0.01);
// ramp = ba.countup(length,(minDelta<minDelta'))/length;
ramp = (ba.countup(length,reset)/length):pow(rampPower);
rampPower = hslider("rampPower", 1, 1/128, 1, 0.01);
// ramp = (ba.countup(length,reset)/length);
reset = ((delta<delta')*delta>=0)@length;
// reset = delta<=0;
// reset = delta<delta';
};
detaGR(GR) = GR-GR';
minDeltaGR(GR) = deltaGR(GR):ba.slidingMinN(length,length);
// similar thing for the attack-corner:
GRlong = GR:ba.slidingMinN(length,length); // to almost reach the trought earlier
// if (somewhere in the next "length" samples, we are going up quicker then we are now):
// then (fade up to that speed)
linPart = hslider("linPart", 5, 1, 8, 1);
powI(i) = pow(2,i+1);
delComp(i) = pow(2,expo)-powI(i);
lowestGRi(i,GR) = GR:ba.slidingMinN(powI(i),powI(i))@delComp(i);
// LookAheadTime = 127;
// LookAheadTime = 4096;
LookAheadTime = pow(2,expo);
// LookAheadTime = 511;
// LookAheadTime = 15; // for diagram
line (value, time) = state~(_,_):!,_
with {
state (t, c) = nt, ba.if (nt <= 0, value, c+(value - c) / nt)
with {
nt = ba.if( value != value', time, t-1);
};
};
lowestGR(GR) = GR:ba.slidingMinN(LookAheadTime,LookAheadTime);
GR = no.lfnoise0(LookAheadTime *t * (no.lfnoise0(LookAheadTime/2):max(0.1) )):pow(3)*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0);//(no.noise:min(0)):ba.sAndH(t)
t= hslider("time", 0.1, 0, 1, 0.001);
noiseLVL = hslider("noise", 0, 0, 1, 0.01);
rate = hslider("rate", 20, 10, 20000, 10);
minGRdelta(GR) =
minGRdeltaFB(GR)~_
with {
GRdeltaFB(GR,i,FB) = (GR@(i) - FB)/(LookAheadTime-i+1);
// GRdeltaFB(GR,i,FB) = (GR@(i) - FB)/(((((LookAheadTime-i+1)/LookAheadTime):min(1):attackShaper)*LookAheadTime));
minGRdeltaFB(GR,FB) = par(i, LookAheadTime+1, GRdeltaFB(GR,i,FB)):minN(LookAheadTime+1)+FB;
};
minN(n) = opWithNInputs(min,n);
// opWithNInputs(op,n) = seq(j,(log(n)/log(2)),par(k,n/(2:pow(j+1)),op));
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
// (op,N) => (opWithNInputs(op,N/2),opWithNInputs(op,N/2)) : op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
// (op,N) => (opWithNInputs(op,nUp(N)),opWithNInputs(op,nDown(N))) : op with {
// nDown(N) = int(floor( N/2));
// nUp(N) = int(floor((N/2)+0.5));
// };
};
gainCalculator(x) = x;
attack = (hslider("[2]attack shape[tooltip: 0 gives a linear attack (slow), 1 a strongly exponential one (fast)]", 1 , 0, 1 , 0.001));
attackShaper(fraction)= ma.tanh(fraction:pow(attack:attackScale)*(attack*5+.1))/ma.tanh(attack*5+.1);
attackScale(x) = (x+1):pow(7); //from 0-1 to 1-128, just to make the knob fit the aural experience better
VocoderLinArrayParametricMid(bottom,mid,band,top,size) =
par(i, size, select2(band<=i+1,midToBottomVal(i),midToTopVal(i)))
with {
midToBottomVal(i) = (midToBottom(i)*bottom) + (((midToBottom(i)*-1)+1)*mid);
midToBottom(i) = (band-(i+1))/(band-1);
midToTopVal(i) = (midToTop(i)*top) + (((midToTop(i)*-1)+1)*mid);
midToTop(i) = (i+1-band)/(size-band);
};
// nrBands = 32;
nrBands = 4;
// expo = 4;
expo = 10; // 10 = 1024 samples
// maxHold = pow(2,6);
maxHold = pow(2,13);
// expo = 13; // 13 = 8192 samples, = 0.185759637188 sec = 186ms
maxGR = -30;
|
https://raw.githubusercontent.com/magnetophon/LazyLimiter/f3bbb2c4c05858e93710272ec42bda19d8f6a608/LLng.dsp
|
faust
|
process(x) = (gainCalculator(x):ba.db2linear)*(x@LookAheadTime);
GR;
lookahead_compression_gain_mono(strength,threshold,0,0,knee,x);
lim(1);
GR:SandH(hslider("hld", 0, 0, 1, 1));
comp.compressor_N_chan_demo(2);
:(ro.interleave(N,2):par(i,N,(meter:ba.db2linear)*(_@maxHold)))
generalise compression gains for N channels.
first we define a mono version:
The actual N-channel version:
Calculate the maximum gain reduction of N channels,
and then crossfade between that and each channel's own gain reduction,
to link/unlink channels
( ro.interleave(N,2):
(
par(i, N, lookahead_compression_gain_mono(strength,thresh,att,rel,knee,hold))
<:(si.bus(N),(minN(N)<:si.bus(N))):ro.interleave(N,2):par(i,N,(comp.crossfade(link)))
)
)~(si.bus(N));
:deltaGR(LookAheadTime)
(
comp.gain_computer(1,thresh,knee,level)@(maxHold-LookAheadTime):deltaGR(LookAheadTime,lastdown)
,
(comp.gain_computer(1,thresh,knee,level):ba.slidingMinN(hold,maxHold):max(lastdown))
) : min;
(line(lowestGRi(5,GR),pow(2,6))@(maxHold-LookAheadTime))// fast fade
lowestGRi(5,GR)
,(GR:ba.slidingMinN(hold,maxHold)@(maxHold-hold))
, ((ramp(powI(1),lowestGRi(1,GR))/powI(1))@(maxHold-LookAheadTime))
ba.countup(powI(5),(GR-GR')!=0)
ba.countup(powI(5),(GR-GR')!=0)
del = delFB~_;
delFB(FB,x) = x-FB;
deltaGR(maxI,GR) = FBdeltaGR(maxI,GR)~_
with {
FBdeltaGR(maxI,GR,FB) =
par(i, expo,
(
(lowestGRi(i,GR)-FB)
/ ((powI(i)-ramp(powI(i),lowestGRi(i,GR)))+1)
)
: attackRelease(i)
)
: ((minN(expo) :smoothie ) +FB)
// :min(0)
:min(GR@LookAheadTime)
;
deltaGR(maxI,GR) = FBdeltaGR(maxI,GR)~_
par(i, expo,
/ ((powI(i)-ramp(powI(i),lowestGRi(i,GR))@(maxHold-LookAheadTime))+1)
/ ((powI(i)-ramp(powI(i),lowestGRi(i,GR))@(maxHold-LookAheadTime))+1)
)
<: attackReleaseBlock(expo)
: minN(expo)
,((FB-FB') *pow(2,expo))
,(deltaI(expo-1,GR,FB) *pow(2,expo))
,(attackRamp(expo-1,FB,FBraw) / powI(expo-1))
,(trig4(i,GR,FB) * 0.25)
,(trig2(i,GR,FB)*0.25)
par(i, nrBands,
(
(lowestGRlinI(i,GR)@(maxHold-LookAheadTime)-FB)
/ ((linI(i)-ramp(linI(i),lowestGRlinI(i,GR))@(maxHold-LookAheadTime))+1)
)
)
: attackReleaseBlock(nrBands)
: ((minN(nrBands): holdFunction :smoothRel(smooR): smoothAttack(smooA) ) +FB)
:min(GR@maxHold)
the lenght of each block
attackedGR;
holdFunction = _;//@(maxHold-LookAheadTime);//*(GR:ba.slidingMinN(hold,maxHold) >= FB);
(comp.gain_computer(1,thresh,knee,level):ba.slidingMinN(hold,maxHold):max(lastdown))
smoothie(delta) = select2(delta>=0,delta,smoothieFB(delta)~_);
smoothieFB(delta,FB) = min(( (FB*smoo) + (delta*(1-smoo))):max(0) , delta);
countup(n,trig) : _
* `n`: the maximum count value
* `trig`: the trigger signal (1: start at 0; 0: increase until `n`)
ramp(maxI,GR) = ((ba.countup(maxI,(GR-GR')!=0)/maxI):attackShaper)*maxI;
ramp(maxI,GR) = ba.countup(maxI,(GR-GR')!=0);
(1/(i+1))+attack : min(1)
releaseFunc(delta) = min((delta*smoo)+( (1+release) *(1-smoo)));
attackFunc(i) =
(
(
1/
( pow(( (i-curve):max(1)) , 2.5) ) // linear from i=4
// ) + pow(attack,2) : min(1)
// ) + pow(attack,2) : min(1)+ ((i==3)*1) + ((i==1)*-0.75)
) + pow(attack,2) : min(1)+ ((i==curve)*1)
//+ ((i==(curve-2))*-0.75)
)
;
attackFunc(i,attack) =
(
1/
( i*64:max(1)*((attack:min(1)*-1)+1:pow(4)) )
) : min(1) + (attack-1:max(0):pow(1))
;
attackFunc(i) =
(
(
1/
( (i-curve)*64:max(1)*(attack:pow(4)) )
) : min(1)+ ((i==curve)*1)
)
;
curve = hslider("curve", 3, 2, expo, 1);
(1/(i+1))-attack : min(1));
OK for expo=10
release = (((hslider("release", 0, 0, 1, 0.001):pow(0.2))*-1)+1)*32;
OK for 10 and 13
release = (((hslider("release", 0, 0, 1, 0.001):pow(0.2))*-1)+1)*pow(2,expo)/32;
trig(i,GR,FB) = deltaI(i,GR,FB)<(FB-FB'):ba.impulsify ;//* (FB==GR@maxHold);
trig2(i,GR,FB) = deltaI(i,GR,FB) <(FB-FB') * (FB> (lowestGRi(i,GR)@(maxHold-LookAheadTime))) ;
trig3(i,GR,FB) = ((GR/powI(i))-FB) <(FB-FB') ;
: ba.impulsify;
(FB==GR@maxHold);
attackRamp(i) = ba.countup(powI(i),(lowestGRi(i,GR)-lowestGRi(i,GR)')!=0);
todo: ramp if lowestgr(10) !=lowestgr(5)
slow =
band 16
bottom 1.92
mid 1.80
release 0.71
smoo = 0.829
top 0
fast =
band 3
bottom 1.92
mid 0.08
release 0
smoo = 0.046
top 0
lin from 32 (i=4)
*2 from 16-8
*1 from 8-4
*0.25 from 4-0
auto-attack-release:
vocoder, each band represents a fixed A&R, (lower is longer of course)
and each influences the end result
use VOF code to normalise and focus
if (somewhere in the next "length" samples, we are going down quicker then we are now):
then (fade down to that speed)
second implementation option:
if knikpunt
then (fade down to 0 speed at knikpunt, then "normal release")
TODO: remove this length mess & delay! :)
length = 2;
length = pow(2,6); // 64
length = pow(2,7); // 128
128
smoother(length,x) = smootherFB(x,length)~_;
select2(minDelta<(delta@length) ,x@length, deltaXfade)
delta = x-FB;
deltaXfade = xFade(ramp*downSmooth,FB-FB',minDelta)+FB;
deltaXfade = (
(minDelta-(delta@length))
/ ((length-ramp(minDelta)+1))
)
+FB;
ramp = ba.countup(length,(minDelta<minDelta'))/length;
ramp = (ba.countup(length,reset)/length);
reset = delta<=0;
reset = delta<delta';
similar thing for the attack-corner:
to almost reach the trought earlier
if (somewhere in the next "length" samples, we are going up quicker then we are now):
then (fade up to that speed)
LookAheadTime = 127;
LookAheadTime = 4096;
LookAheadTime = 511;
LookAheadTime = 15; // for diagram
(no.noise:min(0)):ba.sAndH(t)
GRdeltaFB(GR,i,FB) = (GR@(i) - FB)/(((((LookAheadTime-i+1)/LookAheadTime):min(1):attackShaper)*LookAheadTime));
opWithNInputs(op,n) = seq(j,(log(n)/log(2)),par(k,n/(2:pow(j+1)),op));
(op,N) => (opWithNInputs(op,N/2),opWithNInputs(op,N/2)) : op;
(op,N) => (opWithNInputs(op,nUp(N)),opWithNInputs(op,nDown(N))) : op with {
nDown(N) = int(floor( N/2));
nUp(N) = int(floor((N/2)+0.5));
};
from 0-1 to 1-128, just to make the knob fit the aural experience better
nrBands = 32;
expo = 4;
10 = 1024 samples
maxHold = pow(2,6);
expo = 13; // 13 = 8192 samples, = 0.185759637188 sec = 186ms
|
declare name "LazyLimiter ng";
declare author "Bart Brouns";
declare license "GPLv3";
declare version "0.1";
import("stdfaust.lib");
maxmsp = library("maxmsp.lib");
comp = library("../FaustCompressors/compressors.lib");
process =
gainCompareGraphs ;
lim(N) =
(si.bus(N) <:
(
(
par(i, N, abs:ba.linear2db),
si.bus(N)
)
:lookahead_compression_gain_N_chan(strength,threshold,0,0,knee,hold,link,N),si.bus(N)
)
)
:ro.interleave(N,2):par(i,N,(((meter:ba.db2linear<:si.bus(2))),(_@maxHold)):(_,*)):ro.interleave(2,N):ro.cross(N*2):par(i, 2, ro.cross(N))
with {
meter = _<:(_, (max(maxGR):(hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0)))):attach;
};
lookahead_compression_gain_N_chan(strength,thresh,att,rel,knee,hold,link,1) =
lookahead_compression_gain_mono(strength,thresh,att,rel,knee,hold)~_;
lookahead_compression_gain_N_chan(strength,thresh,att,rel,knee,hold,link,N) =
( ro.interleave(N,2):
(
par(i, N, lookahead_compression_gain_mono(strength,threshold,0,0,knee,hold))
<:(si.bus(N),(minN(N)<:si.bus(N))):ro.interleave(N,2):par(i,N,(comp.crossfade(link)))
)
)~si.bus(N);
lookahead_compression_gain_mono(strength,thresh,att,rel,knee,hold,lastdown,level) =
(
comp.gain_computer(1,thresh,knee,level):deltaGR(LookAheadTime,lastdown)
) *strength;
strength = (hslider("[0] Strength [style:knob]
[tooltip: A compression Strength of 0 means no gain reduction and 1 means full gain reduction]",
1, 0, 8, 0.01));
threshold = (hslider("[1] Threshold [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level is compressed according to the Strength]",
0, maxGR, 10, 0.1));
knee = (hslider("[2] Knee [unit:dB] [style:knob]
[tooltip: soft knee amount in dB]",
6, 0, 30, 0.1));
link = (hslider("[4] link [style:knob]
[tooltip: 0 means all channels get individual gain reduction, 1 means they all get the same gain reduction]",
1, 0, 1, 0.01));
hold = hslider("[5] Hold time [style:knob]", 0, 0, maxHold, 1);
gainCompareGraphs =
GR@maxHold
,
(GR:(deltaGR(LookAheadTime)~(_,_)))
;
tmp=4;
del(x) = x-x';
SandH(sample,x) = select2(sample,_,x)~_;
deltaGR(maxI,FB,FBraw,GR) =
(
select2(lowestGRi(i,GR)@(maxHold-LookAheadTime)>=FB ,
(
((lowestGRi(i,GR)@(maxHold-LookAheadTime):SandH(trig(i,GR,FB,FBraw))-FB))
/ ((powI(i)-1- attackRamp(i,FB,FBraw)):max(0)+1)
),
(
((lowestGRi(i,GR)@(maxHold-LookAheadTime)-FB))
/ ((powI(i)-ramp(powI(i),lowestGRi(i,GR))@(maxHold-LookAheadTime))+1)
)
)
: holdFunction
<:
(
((AR : smoothRel(smooR): smoothAttack(smooA) +FB) :min(GR@maxHold))
, (_+FBraw:min(GR@maxHold))
)
)
,(trig(i,GR,FB,FBraw)*0.5)
with {
i=expo-1;
lowestGRlinI(i,GR) = GR:ba.slidingMinN(linI(i),linI(i))@delCompLin(i);
holdFunction(attackedGR) =
attackedGR*(
(GR:ba.slidingMinN(hold,maxHold)@(maxHold-hold) > FB)
+
(attackedGR<0)
:min(1)
);
delCompLin(i) = pow(2,expo)-linI(i);
attackReleaseBlock(size) =
attackPlusInputs(size) : par(i, size, attackRelease(i));
smoothAttack(smoo,delta) = select2((delta<=_)*(delta<0) ,delta,((_*smoo) + (delta*(1-smoo))) )~(_<:(_,_));
smoothRel(smoo,delta) = smoothieFB(smoo,delta)~_;
smoothieFB(smoo,delta,FB) = select2(delta>=0,delta,min(( (FB*smoo) + (delta*(1-smoo))):max(0) , delta));
smooA = hslider("smooA", 0, 0,0.999, 0.001):pow(1/128);
smooR = hslider("smooR", 0, 0,0.999, 0.001):pow(1/128);
AR(delta) =
select2((delta)<=0, 1+release,bottom)*delta;
attackRelease(i,attack,delta) =
select2((delta)<=0,
releaseFunc,
attackFunc(i,attack)
)*delta;
releaseFunc = 1+release;
attackFunc(i,attack) = attack;
curve = hslider("curve", 3, -1, nrBands, 1);
attack = hslider("attack", 0, 0, 1, 0.001);
release = (((hslider("release", 0, 0, 1, 0.001):pow(0.2))*-1)+1)*pow(2,expo/2);
attackPlusInputs(size) =
(
VocoderLinArrayParametricMid(bottom,mid,band(size),top,size),
si.bus(size)
): ro.interleave(size,2) ;
bottom = hslider("bottom", 2, 0, 30, 0.01);
mid = hslider("mid", 1, 0, 3, 0.01);
top = hslider("top", 0, 0, 3, 0.01);
band(size) = hslider("band", 8, 1, size, 1);
};
trig(i,GR,FB,FBraw) = select3(sel,trig1(i,GR,FB,FBraw) , trig2(i,GR,FB,FBraw), trig3(i,GR,FB,FBraw) );
sel = hslider("sel", 0, 0, 2, 1);
trig1(i,GR,FB,FBraw) = deltaI(i,GR,FB) <(FBraw-FBraw') ;
trig2(i,GR,FB,FBraw) = deltaI(i,GR,FB) <(FBraw-FBraw') : ba.impulsify;
trig3(i,GR,FB,FBraw) = deltaI(i,GR,FB) <(FB-FB') ;
trig4(i,GR,FB) = deltaI(i,GR,FB) <(FB-FB') * (FB> (lowestGRi(i,GR)@(maxHold-LookAheadTime))) ;
invert = _==0;
mult = hslider("mult", 1, 0, 3, 0.01);
ramp(maxI,GR) = ba.countup(maxI,(GR>GR'))*mult;
attackRamp(i,FB,FBraw) = ba.countup(powI(i),(trig(i,GR,FB,FBraw)));
deltaI(i,GR,FB) = (lowestGRi(i,GR)@(maxHold-LookAheadTime)-FB)/powI(i);
lss = 3;
smoother(length,x) = smootherFB(x,length)~(!,!,_);
smootherFB(x,length,FB) =
reset,
ramp
,
deltaXfade
with {
delta = x-x';
minDelta = (delta):ba.slidingMinN(length,length);
deltaXfade = xFade(ramp*downSmooth,(x@length)-FB,minDelta)+FB;
xFade(x,a,b) = a*(1-x)+b*(x);
downSmooth = hslider("downSmooth", 0, 0, 1, 0.01);
ramp = (ba.countup(length,reset)/length):pow(rampPower);
rampPower = hslider("rampPower", 1, 1/128, 1, 0.01);
reset = ((delta<delta')*delta>=0)@length;
};
detaGR(GR) = GR-GR';
minDeltaGR(GR) = deltaGR(GR):ba.slidingMinN(length,length);
linPart = hslider("linPart", 5, 1, 8, 1);
powI(i) = pow(2,i+1);
delComp(i) = pow(2,expo)-powI(i);
lowestGRi(i,GR) = GR:ba.slidingMinN(powI(i),powI(i))@delComp(i);
LookAheadTime = pow(2,expo);
line (value, time) = state~(_,_):!,_
with {
state (t, c) = nt, ba.if (nt <= 0, value, c+(value - c) / nt)
with {
nt = ba.if( value != value', time, t-1);
};
};
lowestGR(GR) = GR:ba.slidingMinN(LookAheadTime,LookAheadTime);
t= hslider("time", 0.1, 0, 1, 0.001);
noiseLVL = hslider("noise", 0, 0, 1, 0.01);
rate = hslider("rate", 20, 10, 20000, 10);
minGRdelta(GR) =
minGRdeltaFB(GR)~_
with {
GRdeltaFB(GR,i,FB) = (GR@(i) - FB)/(LookAheadTime-i+1);
minGRdeltaFB(GR,FB) = par(i, LookAheadTime+1, GRdeltaFB(GR,i,FB)):minN(LookAheadTime+1)+FB;
};
minN(n) = opWithNInputs(min,n);
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
gainCalculator(x) = x;
attack = (hslider("[2]attack shape[tooltip: 0 gives a linear attack (slow), 1 a strongly exponential one (fast)]", 1 , 0, 1 , 0.001));
attackShaper(fraction)= ma.tanh(fraction:pow(attack:attackScale)*(attack*5+.1))/ma.tanh(attack*5+.1);
VocoderLinArrayParametricMid(bottom,mid,band,top,size) =
par(i, size, select2(band<=i+1,midToBottomVal(i),midToTopVal(i)))
with {
midToBottomVal(i) = (midToBottom(i)*bottom) + (((midToBottom(i)*-1)+1)*mid);
midToBottom(i) = (band-(i+1))/(band-1);
midToTopVal(i) = (midToTop(i)*top) + (((midToTop(i)*-1)+1)*mid);
midToTop(i) = (i+1-band)/(size-band);
};
nrBands = 4;
maxHold = pow(2,13);
maxGR = -30;
|
222378bb570be0a20669dbc1ae3d03ad1fdb8cd4043378aac3a22211ae4694d2
|
magnetophon/faustExperiments
|
expander.dsp
|
declare name "Expander / Upward Compressor";
declare version "0.1";
declare author "Bart Brouns";
declare license "GPLv3";
import("stdfaust.lib");
// maximum time in seconds for attack, hold and release
maxRelTime = 1;
process =
// FFcompressorSC_N_chan(strength,threshold,attack,release,knee,prePost,link,meter,2,sidechain(freq),SCswitch)
// FFexpanderSC_N_chan(strength,threshold,range,attack,hold,release,knee,prePost,link,meter,5,sidechain(freq),SCswitch)
FFexpander_N_chan(strength,threshold,range,attack,hold,release,knee,prePost,link,meter,2)
// , (level(hold,x):peak_expansion_gain_mono(strength,threshold,range,attack,release,knee,prePost)/range*-1) // for looking at the GR on the scope
;
// example sidechain function
sidechain(freq) = fi.highpass(1,freq);
freq = hslider("SC HP freq", 240, 1, 20000, 1);
//--------------------`(co.)peak_expansion_gain_N_chan`-------------------
// N channel dynamic range expander gain computer.
// `peak_expansion_gain_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : peak_expansion_gain_N_chan(strength,thresh,range,att,rel,knee,prePost,link,N) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the expansion (0 = no expansion, 100 means gating, <1 means upward compression)
// * `thresh`: dB level threshold below which expansion kicks in
// * `range`: maximum amount of expansion in dB
// * `att`: attack time = time constant (sec) coming out of expansion
// * `hold` : hold time (sec)
// * `rel`: release time = time constant (sec) going into expansion
// * `knee`: a gradual increase in gain reduction around the threshold:
// Above thresh+(knee/2) there is no gain reduction,
// below thresh-(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-range detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `N`: the number of channels of the expander
//
//------------------------------------------------------------
declare peak_expansion_gain_N_chan author "Bart Brouns";
declare peak_expansion_gain_N_chan license "GPLv3";
// generalise expansion gains for N channels.
// first we define a mono version:
peak_expansion_gain_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,1) =
level(hold) : peak_expansion_gain_mono(strength,thresh,range,att,rel,knee,prePost);
// The actual N-channels version:
// Calculate the maximum gain reduction of N channels,
// and then crossfade between that and each channel's own gain reduction,
// to link/unlink channels
peak_expansion_gain_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,N) =
par(i, N, level(hold) :peak_expansion_gain_mono(strength,thresh,range,att,rel,knee,prePost))
<: (si.bus(N),(ba.parallelMax(N) <: si.bus(N))) : ro.interleave(N,2) : par(i,N,(it.interpolate_linear(link)));
peak_expansion_gain_mono(strength,thresh,range,attack,release,knee,prePost,level) =
level:ba.bypass1(prePost,si.lag_ud(attack,release)) :ba.linear2db : gain_computer(strength,thresh,range,knee) : ba.bypass1((prePost !=1),si.lag_ud(att,rel))
with {
gain_computer(strength,thresh,range,knee,level) =
( select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2)))
, (level-thresh)
, ((level-thresh-(knee/2)):pow(2) /(min(ma.EPSILON,knee*-2)))
, 0
) *abs(strength):max(range)
* (-1+(2*(strength>0)))
);
att = select2((strength>0),release,attack);
rel = select2((strength>0),attack,release);
};
level(hold,x) =
x:abs:ba.slidingMax(hold*ma.SR,192000*maxRelTime);
// x:abs;
//--------------------`(co.)FFexpander_N_chan`-------------------
// feed forward N channel dynamic range expander.
// `FFexpander_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : FFexpander_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the expansion (0 = no expansion, 100 means gating, <1 means upward compression)
// * `thresh`: dB level threshold below which expansion kicks in
// * `range`: maximum amount of expansion in dB
// * `att`: attack time = time constant (sec) coming out of expansion
// * `hold` : hold time
// * `rel`: release time = time constant (sec) going into expansion
// * `knee`: a gradual increase in gain reduction around the threshold:
// Above thresh+(knee/2) there is no gain reduction,
// below thresh-(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-range detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `meter`: a gain reduction meter. It can be implemented like so:
// meter = _<:(_, (ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
// * `N`: the number of channels of the expander
//
//------------------------------------------------------------
declare FFexpander_N_chan author "Bart Brouns";
declare FFexpander_N_chan license "GPLv3";
// feed forward expander
FFexpander_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N) =
FFexpanderSC_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N,_,0,0);
//--------------------`(co.)FFexpanderSC_N_chan`-------------------
// feed forward N channel dynamic range expander.
// `FFexpanderSC_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : FFexpanderSC_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the expansion (0 = no expansion, 100 means gating, <1 means upward compression)
// * `thresh`: dB level threshold below which expansion kicks in
// * `range`: maximum amount of expansion in dB
// * `att`: attack time = time constant (sec) coming out of expansion
// * `hold` : hold time
// * `rel`: release time = time constant (sec) going into expansion
// * `knee`: a gradual increase in gain reduction around the threshold:
// Above thresh+(knee/2) there is no gain reduction,
// below thresh-(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-range detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `meter`: a gain reduction meter. It can be implemented like so:
// meter = _<:(_, (ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
// * `N`: the number of channels of the expander
// * `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
// * `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
// * `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
//
//------------------------------------------------------------
declare FFexpanderSC_N_chan author "Bart Brouns";
declare FFexpanderSC_N_chan license "GPLv3";
// feed forward expander with sidechain
FFexpanderSC_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) =
si.bus(N) <:
((par(i, N, select2(SCswitch,_,SCsignal):SCfunction)
: peak_expansion_gain_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,N))
,si.bus(N))
: ro.interleave(N,2)
: par(i,N,(meter:ba.db2linear)*_);
//---------------------------------- GUI --------------------------------------
expander_group(x) = vgroup("Expander / Upward Compressor", x);
meter_group(x) = expander_group(vgroup("[0]", x));
knob_group(x) = expander_group(hgroup("[1]", x));
checkbox_group(x) = meter_group(hgroup("[0]", x));
maxGR = -100;
meter = _<:(_, (max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
ctl_group(x) = knob_group(hgroup("[3] Compression Control", x));
threshold = ctl_group(hslider("[0] Threshold [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level is compressed according to the Strength]",
maxGR, maxGR, 10, 0.1));
strength = ctl_group(hslider("[1] Strength [style:knob]
[tooltip: A compression Strength of 0 means no gain reduction and 1 means full gain reduction]",
8, -100, 100, 0.1));
range = ctl_group(hslider("[2] Range [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level is compressed according to the Strength]",
maxGR*0.3, maxGR, 0, 0.1));
knee = ctl_group(hslider("[3] Knee [unit:dB] [style:knob]
[tooltip: soft knee amount in dB]",
6, 0, 30, 0.1));
env_group(x) = knob_group(hgroup("[4] Compression Response", x));
attack = env_group(hslider("[1] Attack [unit:ms] [style:knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain to approach (exponentially) a new lower target level (the compression `kicking in')]",
2, 0.001, 1000, 0.1)-0.001) : *(0.001) :max(0);
hold = env_group(hslider("[2] Hold [unit:ms] [style:knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain to approach (exponentially) a new lower target level (the compression `kicking in')]",
30, 0.001, 1000, 0.1)-0.001) : *(0.001) :max(0);
// The actual attack value is 0.1 smaller than the one displayed.
// This is done for hard limiting:
// You need 0 attack for that, but a log scale starting at 0 is useless
release = env_group(hslider("[3] Release [unit:ms] [style: knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain to approach (exponentially) a new higher target level (the compression 'releasing')]",
42, 0.001, maxRelTime*1000, 0.1)-0.001) : *(0.001) : max(0);
sw_group(x) = env_group(vgroup("[3]", x));
prePost = sw_group(checkbox("[1] slow/fast [tooltip: Unchecked: log domain return-to-threshold detector
Checked: linear return-to-zero detector]")*-1)+1;
SCswitch = sw_group(checkbox("[2] External SideChain [tooltip: Unchecked: original signal
Checked: Use external Sidechain]")*-1)+1;
link = env_group(hslider("[4] link [style:knob]
[tooltip: 0 means all channels get individual gain reduction, 1 means they all get the same gain reduction]",
1, 0, 1, 0.01));
// meter upward
// SC function
// lin / log
//--------------------`(co.)FFcompressorSC_N_chan`-------------------
// feed forward N channel dynamic range compressor.
// `FFcompressorSC_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : FFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
// * `thresh`: dB level threshold above which compression kicks in
// * `att`: attack time = time constant (sec) when level & compression going up
// * `rel`: release time = time constant (sec) coming out of compression
// * `knee`: a gradual increase in gain reduction around the threshold:
// Below thresh-(knee/2) there is no gain reduction,
// above thresh+(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `meter`: a gain reduction meter. It can be implemented like so:
// meter = _<:(_, (ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
// * `N`: the number of channels of the compressor
// * `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
// * `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
// * `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
//
// It uses a strength parameter instead of the traditional ratio, in order to be able to
// function as a hard limiter.
// For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
//
// Sometimes even bigger ratios are useful:
// for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
// and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
//
// #### References
//
// * <http://en.wikipedia.org/wiki/Dynamic_range_compression>
// * Digital Dynamic Range Compressor Design
// A Tutorial and Analysis
// DIMITRIOS GIANNOULIS ([email protected])
// MICHAEL MASSBERG ([email protected])
// AND JOSHUA D. REISS ([email protected])
//------------------------------------------------------------
declare FFcompressorSC_N_chan author "Bart Brouns";
declare FFcompressorSC_N_chan license "GPLv3";
// feed forward compressor
FFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) =
si.bus(N) <: (
(par(i, N, select2(SCswitch,_,SCsignal):SCfunction):peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N))
,si.bus(N)
) : ro.interleave(N,2) : par(i,N,meter*_);
//--------------------`(co.)FBcompressorSC_N_chan`-------------------
// feed back N channel dynamic range compressor.
// `FBcompressorSC_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : FBcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
// * `thresh`: dB level threshold above which compression kicks in
// * `att`: attack time = time constant (sec) when level & compression going up
// * `rel`: release time = time constant (sec) coming out of compression
// * `knee`: a gradual increase in gain reduction around the threshold:
// Below thresh-(knee/2) there is no gain reduction,
// above thresh+(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `meter`: a gain reduction meter. It can be implemented like so:
// `meter = _ <: (_,(ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;`
// or it can be omitted by defining `meter = _;`.
// * `N`: the number of channels of the compressor
// * `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
// * `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
// * `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
//
// It uses a strength parameter instead of the traditional ratio, in order to be able to
// function as a hard limiter.
// For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
//
// Sometimes even bigger ratios are useful:
// for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
// and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
//
// #### References
//
// * <http://en.wikipedia.org/wiki/Dynamic_range_compression>
// * Digital Dynamic Range Compressor Design
// A Tutorial and Analysis
// DIMITRIOS GIANNOULIS ([email protected])
// MICHAEL MASSBERG ([email protected])
// AND JOSHUA D. REISS ([email protected])
//------------------------------------------------------------
declare FBcompressorSC_N_chan author "Bart Brouns";
declare FBcompressorSC_N_chan license "GPLv3";
FBcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) =
( (par(i, N, select2(SCswitch,_,SCsignal):SCfunction):
peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N)),si.bus(N) : (ro.interleave(N,2) : par(i,N,meter*_))) ~ si.bus(N);
//--------------------`(co.)FBFFcompressorSC_N_chan`-------------------
// feed forward / feed back N channel dynamic range compressor.
// The feedback part has a much higher strength, so they end up sounding similar.
// `FBFFcompressorSC_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : FBFFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,FBFF,meter,N) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
// * `thresh`: dB level threshold above which compression kicks in
// * `att`: attack time = time constant (sec) when level & compression going up
// * `rel`: release time = time constant (sec) coming out of compression
// * `knee`: a gradual increase in gain reduction around the threshold:
// Below thresh-(knee/2) there is no gain reduction,
// above thresh+(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `FBFF`: fade between feed forward (0) and feed back (1) compression.
// * `meter`: a gain reduction meter. It can be implemented like so:
// `meter = _<:(_,(ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;`
// * `N`: the number of channels of the compressor
// * `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
// * `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
// * `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
//
// It uses a strength parameter instead of the traditional ratio, in order to be able to
// function as a hard limiter.
// For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
//
// Sometimes even bigger ratios are useful:
// for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
// and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
//
// #### References
//
// * <http://en.wikipedia.org/wiki/Dynamic_range_compression>
// * Digital Dynamic Range Compressor Design
// A Tutorial and Analysis
// DIMITRIOS GIANNOULIS ([email protected])
// MICHAEL MASSBERG ([email protected])
// AND JOSHUA D. REISS ([email protected])
//------------------------------------------------------------
declare FBFFcompressorSC_N_chan author "Bart Brouns";
declare FBFFcompressorSC_N_chan license "GPLv3";
FBFFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,FBFF,meter,N) =
si.bus(N) <: si.bus(N*2) :
(
((par(i,2,peak_compression_gain_N_chan(strength*(1+((i ==0)*2)),thresh,att,rel,knee,prePost,link,N)) : ro.interleave(N,2) : par(i,N,it.interpolate_linear(FBFF))),si.bus(N))
: (ro.interleave(N,2) : par(i,N,meter*_))
)
~ si.bus(N);
peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost) =
abs : ba.bypass1(prePost,si.onePoleSwitching(att,rel)) : ba.linear2db : gain_computer(strength,thresh,knee) : ba.bypass1((prePost !=1),si.onePoleSwitching(rel,att)) : ba.db2linear
with {
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)) : pow(2)/(2*max(ma.EPSILON,knee))),
(level-thresh))
: max(0)*-strength;
};
//--------------------`(co.)peak_compression_gain_N_chan`-------------------
// N channel dynamic range compressor gain computer.
// `peak_compression_gain_N_chan` is a standard Faust function.
//
// #### Usage
//
// ```
// si.bus(N) : peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N) : si.bus(N)
// ```
//
// Where:
//
// * `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
// * `thresh`: dB level threshold above which compression kicks in
// * `att`: attack time = time constant (sec) when level & compression going up
// * `rel`: release time = time constant (sec) coming out of compression
// * `knee`: a gradual increase in gain reduction around the threshold:
// Below thresh-(knee/2) there is no gain reduction,
// above thresh+(knee/2) there is the same gain reduction as without a knee,
// and in between there is a gradual increase in gain reduction.
// * `prePost`: places the level detector either at the input or after the gain computer;
// this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
// * `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
// * `N`: the number of channels of the compressor
//
// It uses a strength parameter instead of the traditional ratio, in order to be able to
// function as a hard limiter.
// For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
//
// Sometimes even bigger ratios are useful:
// for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
// and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
//
// #### References
//
// * <http://en.wikipedia.org/wiki/Dynamic_range_compression>
// * Digital Dynamic Range Compressor Design
// A Tutorial and Analysis
// DIMITRIOS GIANNOULIS ([email protected])
// MICHAEL MASSBERG ([email protected])
// AND JOSHUA D. REISS ([email protected])
//------------------------------------------------------------
declare peak_compression_gain_N_chan author "Bart Brouns";
declare peak_compression_gain_N_chan license "GPLv3";
// generalise compression gains for N channels.
// first we define a mono version:
peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,1) =
peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost);
// The actual N-channels version:
// Calculate the maximum gain reduction of N channels,
// and then crossfade between that and each channel's own gain reduction,
// to link/unlink channels
peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N) =
par(i, N, peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost))
<: (si.bus(N),(ba.parallelMin(N) <: si.bus(N))) : ro.interleave(N,2) : par(i,N,(it.interpolate_linear(link)));
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/92090608b8ff80d0cc73a0ff085a3dcd2ea8e844/expander.dsp
|
faust
|
maximum time in seconds for attack, hold and release
FFcompressorSC_N_chan(strength,threshold,attack,release,knee,prePost,link,meter,2,sidechain(freq),SCswitch)
FFexpanderSC_N_chan(strength,threshold,range,attack,hold,release,knee,prePost,link,meter,5,sidechain(freq),SCswitch)
, (level(hold,x):peak_expansion_gain_mono(strength,threshold,range,attack,release,knee,prePost)/range*-1) // for looking at the GR on the scope
example sidechain function
--------------------`(co.)peak_expansion_gain_N_chan`-------------------
N channel dynamic range expander gain computer.
`peak_expansion_gain_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : peak_expansion_gain_N_chan(strength,thresh,range,att,rel,knee,prePost,link,N) : si.bus(N)
```
Where:
* `strength`: strength of the expansion (0 = no expansion, 100 means gating, <1 means upward compression)
* `thresh`: dB level threshold below which expansion kicks in
* `range`: maximum amount of expansion in dB
* `att`: attack time = time constant (sec) coming out of expansion
* `hold` : hold time (sec)
* `rel`: release time = time constant (sec) going into expansion
* `knee`: a gradual increase in gain reduction around the threshold:
Above thresh+(knee/2) there is no gain reduction,
below thresh-(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-range detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `N`: the number of channels of the expander
------------------------------------------------------------
generalise expansion gains for N channels.
first we define a mono version:
The actual N-channels version:
Calculate the maximum gain reduction of N channels,
and then crossfade between that and each channel's own gain reduction,
to link/unlink channels
x:abs;
--------------------`(co.)FFexpander_N_chan`-------------------
feed forward N channel dynamic range expander.
`FFexpander_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : FFexpander_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
```
Where:
* `strength`: strength of the expansion (0 = no expansion, 100 means gating, <1 means upward compression)
* `thresh`: dB level threshold below which expansion kicks in
* `range`: maximum amount of expansion in dB
* `att`: attack time = time constant (sec) coming out of expansion
* `hold` : hold time
* `rel`: release time = time constant (sec) going into expansion
* `knee`: a gradual increase in gain reduction around the threshold:
Above thresh+(knee/2) there is no gain reduction,
below thresh-(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-range detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `meter`: a gain reduction meter. It can be implemented like so:
meter = _<:(_, (ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
* `N`: the number of channels of the expander
------------------------------------------------------------
feed forward expander
--------------------`(co.)FFexpanderSC_N_chan`-------------------
feed forward N channel dynamic range expander.
`FFexpanderSC_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : FFexpanderSC_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
```
Where:
* `strength`: strength of the expansion (0 = no expansion, 100 means gating, <1 means upward compression)
* `thresh`: dB level threshold below which expansion kicks in
* `range`: maximum amount of expansion in dB
* `att`: attack time = time constant (sec) coming out of expansion
* `hold` : hold time
* `rel`: release time = time constant (sec) going into expansion
* `knee`: a gradual increase in gain reduction around the threshold:
Above thresh+(knee/2) there is no gain reduction,
below thresh-(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-range detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `meter`: a gain reduction meter. It can be implemented like so:
meter = _<:(_, (ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
* `N`: the number of channels of the expander
* `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
* `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
* `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
------------------------------------------------------------
feed forward expander with sidechain
---------------------------------- GUI --------------------------------------
The actual attack value is 0.1 smaller than the one displayed.
This is done for hard limiting:
You need 0 attack for that, but a log scale starting at 0 is useless
meter upward
SC function
lin / log
--------------------`(co.)FFcompressorSC_N_chan`-------------------
feed forward N channel dynamic range compressor.
`FFcompressorSC_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : FFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
```
Where:
* `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
* `thresh`: dB level threshold above which compression kicks in
* `att`: attack time = time constant (sec) when level & compression going up
* `rel`: release time = time constant (sec) coming out of compression
* `knee`: a gradual increase in gain reduction around the threshold:
Below thresh-(knee/2) there is no gain reduction,
above thresh+(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `meter`: a gain reduction meter. It can be implemented like so:
meter = _<:(_, (ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
* `N`: the number of channels of the compressor
* `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
* `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
* `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
It uses a strength parameter instead of the traditional ratio, in order to be able to
function as a hard limiter.
For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
Sometimes even bigger ratios are useful:
for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
#### References
* <http://en.wikipedia.org/wiki/Dynamic_range_compression>
* Digital Dynamic Range Compressor Design
A Tutorial and Analysis
DIMITRIOS GIANNOULIS ([email protected])
MICHAEL MASSBERG ([email protected])
AND JOSHUA D. REISS ([email protected])
------------------------------------------------------------
feed forward compressor
--------------------`(co.)FBcompressorSC_N_chan`-------------------
feed back N channel dynamic range compressor.
`FBcompressorSC_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : FBcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) : si.bus(N)
```
Where:
* `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
* `thresh`: dB level threshold above which compression kicks in
* `att`: attack time = time constant (sec) when level & compression going up
* `rel`: release time = time constant (sec) coming out of compression
* `knee`: a gradual increase in gain reduction around the threshold:
Below thresh-(knee/2) there is no gain reduction,
above thresh+(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `meter`: a gain reduction meter. It can be implemented like so:
`meter = _ <: (_,(ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;`
or it can be omitted by defining `meter = _;`.
* `N`: the number of channels of the compressor
* `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
* `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
* `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
It uses a strength parameter instead of the traditional ratio, in order to be able to
function as a hard limiter.
For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
Sometimes even bigger ratios are useful:
for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
#### References
* <http://en.wikipedia.org/wiki/Dynamic_range_compression>
* Digital Dynamic Range Compressor Design
A Tutorial and Analysis
DIMITRIOS GIANNOULIS ([email protected])
MICHAEL MASSBERG ([email protected])
AND JOSHUA D. REISS ([email protected])
------------------------------------------------------------
--------------------`(co.)FBFFcompressorSC_N_chan`-------------------
feed forward / feed back N channel dynamic range compressor.
The feedback part has a much higher strength, so they end up sounding similar.
`FBFFcompressorSC_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : FBFFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,FBFF,meter,N) : si.bus(N)
```
Where:
* `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
* `thresh`: dB level threshold above which compression kicks in
* `att`: attack time = time constant (sec) when level & compression going up
* `rel`: release time = time constant (sec) coming out of compression
* `knee`: a gradual increase in gain reduction around the threshold:
Below thresh-(knee/2) there is no gain reduction,
above thresh+(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `FBFF`: fade between feed forward (0) and feed back (1) compression.
* `meter`: a gain reduction meter. It can be implemented like so:
`meter = _<:(_,(ba.linear2db:max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;`
* `N`: the number of channels of the compressor
* `SCfunction` : a function that get's placed before the level-detector; needs to have a single input and output
* `SCswitch` : use either the regular audio inout or the SCsignal as the input for the level detector
* `SCsignal` : An audiosignal, to be used as the inout for the level detector when SCswitch is 1
It uses a strength parameter instead of the traditional ratio, in order to be able to
function as a hard limiter.
For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
Sometimes even bigger ratios are useful:
for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
#### References
* <http://en.wikipedia.org/wiki/Dynamic_range_compression>
* Digital Dynamic Range Compressor Design
A Tutorial and Analysis
DIMITRIOS GIANNOULIS ([email protected])
MICHAEL MASSBERG ([email protected])
AND JOSHUA D. REISS ([email protected])
------------------------------------------------------------
--------------------`(co.)peak_compression_gain_N_chan`-------------------
N channel dynamic range compressor gain computer.
`peak_compression_gain_N_chan` is a standard Faust function.
#### Usage
```
si.bus(N) : peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N) : si.bus(N)
```
Where:
* `strength`: strength of the compression (0 = no compression, 1 means hard limiting, >1 means over-compression)
* `thresh`: dB level threshold above which compression kicks in
* `att`: attack time = time constant (sec) when level & compression going up
* `rel`: release time = time constant (sec) coming out of compression
* `knee`: a gradual increase in gain reduction around the threshold:
Below thresh-(knee/2) there is no gain reduction,
above thresh+(knee/2) there is the same gain reduction as without a knee,
and in between there is a gradual increase in gain reduction.
* `prePost`: places the level detector either at the input or after the gain computer;
this turns it from a linear return-to-zero detector into a log domain return-to-threshold detector
* `link`: the amount of linkage between the channels. 0 = each channel is independent, 1 = all channels have the same amount of gain reduction
* `N`: the number of channels of the compressor
It uses a strength parameter instead of the traditional ratio, in order to be able to
function as a hard limiter.
For that you'd need a ratio of infinity:1, and you cannot express that in Faust.
Sometimes even bigger ratios are useful:
for example a group recording where one instrument is recorded with both a close microphone and a room microphone,
and the instrument is loud enough in the room mic when playing loud, but you want to boost it when it is playing soft.
#### References
* <http://en.wikipedia.org/wiki/Dynamic_range_compression>
* Digital Dynamic Range Compressor Design
A Tutorial and Analysis
DIMITRIOS GIANNOULIS ([email protected])
MICHAEL MASSBERG ([email protected])
AND JOSHUA D. REISS ([email protected])
------------------------------------------------------------
generalise compression gains for N channels.
first we define a mono version:
The actual N-channels version:
Calculate the maximum gain reduction of N channels,
and then crossfade between that and each channel's own gain reduction,
to link/unlink channels
|
declare name "Expander / Upward Compressor";
declare version "0.1";
declare author "Bart Brouns";
declare license "GPLv3";
import("stdfaust.lib");
maxRelTime = 1;
process =
FFexpander_N_chan(strength,threshold,range,attack,hold,release,knee,prePost,link,meter,2)
;
sidechain(freq) = fi.highpass(1,freq);
freq = hslider("SC HP freq", 240, 1, 20000, 1);
declare peak_expansion_gain_N_chan author "Bart Brouns";
declare peak_expansion_gain_N_chan license "GPLv3";
peak_expansion_gain_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,1) =
level(hold) : peak_expansion_gain_mono(strength,thresh,range,att,rel,knee,prePost);
peak_expansion_gain_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,N) =
par(i, N, level(hold) :peak_expansion_gain_mono(strength,thresh,range,att,rel,knee,prePost))
<: (si.bus(N),(ba.parallelMax(N) <: si.bus(N))) : ro.interleave(N,2) : par(i,N,(it.interpolate_linear(link)));
peak_expansion_gain_mono(strength,thresh,range,attack,release,knee,prePost,level) =
level:ba.bypass1(prePost,si.lag_ud(attack,release)) :ba.linear2db : gain_computer(strength,thresh,range,knee) : ba.bypass1((prePost !=1),si.lag_ud(att,rel))
with {
gain_computer(strength,thresh,range,knee,level) =
( select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2)))
, (level-thresh)
, ((level-thresh-(knee/2)):pow(2) /(min(ma.EPSILON,knee*-2)))
, 0
) *abs(strength):max(range)
* (-1+(2*(strength>0)))
);
att = select2((strength>0),release,attack);
rel = select2((strength>0),attack,release);
};
level(hold,x) =
x:abs:ba.slidingMax(hold*ma.SR,192000*maxRelTime);
declare FFexpander_N_chan author "Bart Brouns";
declare FFexpander_N_chan license "GPLv3";
FFexpander_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N) =
FFexpanderSC_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N,_,0,0);
declare FFexpanderSC_N_chan author "Bart Brouns";
declare FFexpanderSC_N_chan license "GPLv3";
FFexpanderSC_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) =
si.bus(N) <:
((par(i, N, select2(SCswitch,_,SCsignal):SCfunction)
: peak_expansion_gain_N_chan(strength,thresh,range,att,hold,rel,knee,prePost,link,N))
,si.bus(N))
: ro.interleave(N,2)
: par(i,N,(meter:ba.db2linear)*_);
expander_group(x) = vgroup("Expander / Upward Compressor", x);
meter_group(x) = expander_group(vgroup("[0]", x));
knob_group(x) = expander_group(hgroup("[1]", x));
checkbox_group(x) = meter_group(hgroup("[0]", x));
maxGR = -100;
meter = _<:(_, (max(maxGR):meter_group((hbargraph("[1][unit:dB][tooltip: gain reduction in dB]", maxGR, 0))))):attach;
ctl_group(x) = knob_group(hgroup("[3] Compression Control", x));
threshold = ctl_group(hslider("[0] Threshold [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level is compressed according to the Strength]",
maxGR, maxGR, 10, 0.1));
strength = ctl_group(hslider("[1] Strength [style:knob]
[tooltip: A compression Strength of 0 means no gain reduction and 1 means full gain reduction]",
8, -100, 100, 0.1));
range = ctl_group(hslider("[2] Range [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level is compressed according to the Strength]",
maxGR*0.3, maxGR, 0, 0.1));
knee = ctl_group(hslider("[3] Knee [unit:dB] [style:knob]
[tooltip: soft knee amount in dB]",
6, 0, 30, 0.1));
env_group(x) = knob_group(hgroup("[4] Compression Response", x));
attack = env_group(hslider("[1] Attack [unit:ms] [style:knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain to approach (exponentially) a new lower target level (the compression `kicking in')]",
2, 0.001, 1000, 0.1)-0.001) : *(0.001) :max(0);
hold = env_group(hslider("[2] Hold [unit:ms] [style:knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain to approach (exponentially) a new lower target level (the compression `kicking in')]",
30, 0.001, 1000, 0.1)-0.001) : *(0.001) :max(0);
release = env_group(hslider("[3] Release [unit:ms] [style: knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain to approach (exponentially) a new higher target level (the compression 'releasing')]",
42, 0.001, maxRelTime*1000, 0.1)-0.001) : *(0.001) : max(0);
sw_group(x) = env_group(vgroup("[3]", x));
prePost = sw_group(checkbox("[1] slow/fast [tooltip: Unchecked: log domain return-to-threshold detector
Checked: linear return-to-zero detector]")*-1)+1;
SCswitch = sw_group(checkbox("[2] External SideChain [tooltip: Unchecked: original signal
Checked: Use external Sidechain]")*-1)+1;
link = env_group(hslider("[4] link [style:knob]
[tooltip: 0 means all channels get individual gain reduction, 1 means they all get the same gain reduction]",
1, 0, 1, 0.01));
declare FFcompressorSC_N_chan author "Bart Brouns";
declare FFcompressorSC_N_chan license "GPLv3";
FFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) =
si.bus(N) <: (
(par(i, N, select2(SCswitch,_,SCsignal):SCfunction):peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N))
,si.bus(N)
) : ro.interleave(N,2) : par(i,N,meter*_);
declare FBcompressorSC_N_chan author "Bart Brouns";
declare FBcompressorSC_N_chan license "GPLv3";
FBcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,meter,N,SCfunction,SCswitch,SCsignal) =
( (par(i, N, select2(SCswitch,_,SCsignal):SCfunction):
peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N)),si.bus(N) : (ro.interleave(N,2) : par(i,N,meter*_))) ~ si.bus(N);
declare FBFFcompressorSC_N_chan author "Bart Brouns";
declare FBFFcompressorSC_N_chan license "GPLv3";
FBFFcompressorSC_N_chan(strength,thresh,att,rel,knee,prePost,link,FBFF,meter,N) =
si.bus(N) <: si.bus(N*2) :
(
((par(i,2,peak_compression_gain_N_chan(strength*(1+((i ==0)*2)),thresh,att,rel,knee,prePost,link,N)) : ro.interleave(N,2) : par(i,N,it.interpolate_linear(FBFF))),si.bus(N))
: (ro.interleave(N,2) : par(i,N,meter*_))
)
~ si.bus(N);
peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost) =
abs : ba.bypass1(prePost,si.onePoleSwitching(att,rel)) : ba.linear2db : gain_computer(strength,thresh,knee) : ba.bypass1((prePost !=1),si.onePoleSwitching(rel,att)) : ba.db2linear
with {
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)) : pow(2)/(2*max(ma.EPSILON,knee))),
(level-thresh))
: max(0)*-strength;
};
declare peak_compression_gain_N_chan author "Bart Brouns";
declare peak_compression_gain_N_chan license "GPLv3";
peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,1) =
peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost);
peak_compression_gain_N_chan(strength,thresh,att,rel,knee,prePost,link,N) =
par(i, N, peak_compression_gain_mono(strength,thresh,att,rel,knee,prePost))
<: (si.bus(N),(ba.parallelMin(N) <: si.bus(N))) : ro.interleave(N,2) : par(i,N,(it.interpolate_linear(link)));
|
2293c3ba5bdcddac298dcae2d07640e1e7d722948f769acf2536d18dff05d5b3
|
magnetophon/faustExperiments
|
LazyLeveler.dsp
|
declare name "LazyLeveler";
declare version "0.1";
declare author "Bart Brouns";
declare license "GPLv3";
import("stdfaust.lib");
DG(x) = tgroup("limiter", vgroup("[1]controlls", x));
AG(x) = tgroup("limiter", vgroup("[2]tweaks", x));
process(x,y) =
// attackArray(LA)
// : par(i, LA, hbargraph("lev%i",0,1.4))
// LazyLeveler(LA,testSig(LA-5))
LazyLeveler(LA,GR(x*inGain,y*inGain))
// +outGain
:ba.db2linear
<:
(
(_*(x*inGain)@(5*lookahead(LA)))
, (_*(y*inGain)@(5*lookahead(LA)))
, (((_:ba.linear2db)):ba.db2linear)
, (((_:ba.linear2db))/(thresh:min(ma.EPSILON)))
)
// blokjes
// sequentialBlockMinimumParOut(nrBlocks,lookahead(LA))
// slidingReduce(min,lookahead(LA),lookahead(LA),ma.INFINITY)
// testSig(LA):
// (convexAttack(nrBlocks,LA,Lookah))
// ,_
// @Lookah
// )
// :par(i, 2, _@200000)
// :par(i, 5, _*.5)
with {
GR(x,y) = gain_computer(strength,thresh,knee,level(x,y));
level(x,y) = max(abs(x),abs(y)): ba.linear2db;
holdTime= Lookah;
LA = 13;
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)):pow(2)/(2*knee)),
(level-thresh)) : max(0)*-strength;
// blokjes(x,n) = sequentialBlockOperatorParOut(n,min,ma.INFINITY,lookahead(LA),x);
strength = AG(hslider("strength", 1, 0, 1, 0.01));
thresh = DG(hslider("[4]thresh", 0, -60, 0, 0.1));
knee = DG(hslider("[5]knee", 0, 0, 60, 0.1));
inGain = DG(hslider("[1]inputgain", 0, 0, 60, 0.1)): ba.db2linear;
outGain = hslider("outputgain", 0, 0, 60, 0.1);
};
//TODO: each stage caries it's GR and its properly delayed audio
LazyLeveler(LA,x) =
// (linearAttack(LA,x)~_)
// x
// : (linAtt(LA-4)~_)
// : (hold(LA,attackHold(LA))~_)
// : convexAttack(LA)
// : (linAtt(LA-4)~_)
// : (shapedAttack(LA)~_)
// : (release(LA,holdTime(LA))~_)
// (
// (x:hold(LA,holdTime(LA))~_)
// :slidingMax(holdTime(LA),lookahead(LA))@(lookahead(LA)-holdTime(LA))
// )
// , (x:hold(LA,holdTime(LA))~_)@(lookahead(LA))
(
x
:(hold(LA,holdTime(LA))~_)
<:
// :slidingMax(holdTime(LA),lookahead(LA))@(lookahead(LA)-holdTime(LA))
// : si.lag_ud(hslider("release exp", 0, 0, 1, 0.01),0)
// : (hold(LA,expHoldTime(LA))~_)
// : (hold(LA,holdTime(LA))~_)
(
// ,((LArelease(LA,holdTime(LA)*htFactor)~_):(expRelease(LA,expHoldTime(LA))~_))
// (((changeRateLimitPre(holdTime(LA)*htFactor)~_):LArelease(LA,holdTime(LA)*htFactor)~_):(convexRelease(LA))~_)
(((changeRateLimitPre(holdTime(LA)*htFactor)~_):LArelease(LA,holdTime(LA)*htFactor)~_))
// , (((changeRateLimitPre(holdTime(LA)*htFactor)~_):LArelease(LA,holdTime(LA)*htFactor)~_):lag_dud(lagDup(LA),lagDdown(LA)))
// ,((LArelease(LA,holdTime(LA)*htFactor)~_):(changeRateLimit(holdTime(LA)*htFactor)~_):si.lag_ud(lagUp(LA),0))
// ,_@lookahead(LA)
// , ((LArelease(LA,holdTime(LA)*htFactor)~_):si.lag_ud(lagDup(LA),0))
// , ((LArelease(LA,holdTime(LA)*htFactor)~_):si.lag_ud(lagUp(LA),0):(changeRateLimitPre(holdTime(LA)*htFactor)~_))
// , (si.lag_ud(lagUp(LA),0):(LArelease(LA,holdTime(LA)*htFactor)~_))
)
// : convexAttack(LA)
// : (linAtt(LA-4)~_)
<:
(
((shapedAttack(LA)~_):(convexAttack(LA):si.lag_ud(lagUp(LA),0)))
// , ((shapedAttackOLD(LA)~_):(convexAttack(LA):si.lag_ud(lagUp(LA),0)))
// , (convexAttack(LA):(shapedAttackOLD(LA)~_):si.lag_ud(lagUp(LA),0))
)
)
// ,
// x@(5*lookahead(LA)+(0*lookahead(LA-4)))
// , (x: (hold(LA,attackHold(LA))~_): convexAttack(LA): (shapedAttack(LA)~_)@(0*lookahead(LA-4) ))
;
lag_dud(up,dn) = FB(up,dn)~_
with {
FB(up,dn,prev,x) =x <: ((isConvex,ba.tau2pole(up),ba.tau2pole(dn):select2),_:si.smooth):min(x)
with {
// isConvex = dir>dir';
// isConvex = dir>Pdir;
isConvex = changeRate>=changeRate';
changeRate = dir-Pdir;
// dir = prev-prev';
// Pdir = dir';
dir = x-prev;
Pdir = prev-prev';
};
};
convexRelease(LA,prev,x) =
(
(prev +
// max(prevDir,dir)
// prevDir
// newDir
select2(
// prev<=prev'
x<=prev
, newDir
, ma.MAX
)
// :max(0)
)
:min(x))
// , speedup
// , x<=prev
// , prev<=prev'
// , (prevDir>prevDir')
with {
newDir =
select2(
speedup
// prevDir>prevDir'
// , min(inputDir,dir)/hslider("convexDiv", 1, 1, 100, 0.1)
// ,inputDir/hslider("convexDiv", 1, 1, 100, 0.1)
,prevDir/(1+pow(hslider("convexDiv", 0.25, 0, 1, 0.01),8)):min(prevDir)
, inputDir
// , dir
);
inputDir = x-x';
dir = x-prev;
prevDir =
prev-prev';
speedup = (inputDir>inputDir')*(inputDir>inputDir')';
// speedup = (inputDir>inputDir');
};
convexReleaseOLD(LA,prevGain,x) =
// speed>speed'
// , speed==speed'
// ,
select2(speed==speed'
, prevGain
, prevGain:si.lag_ud(lagUp(LA),0)
):min(x)
with {
speed = x-prevGain;
};
lagUp(LA) = div(LA)/44100;
lagDup(LA) = divDup(LA)/44100;
lagDdown(LA) = divDdown(LA)/44100;
div(LA) = AG(hslider("div", 0.22, 0, 1, 0.01))*holdTime(LA);
divDup(LA) = hslider("divDup", 0, 0, 8, 0.01)*holdTime(LA);
divDdown(LA) = hslider("divDdown", 0, 0, 1, 0.01)*holdTime(LA);
expRelease1(LA,holdTime,prevGain,x) =
(diff
/div(LA)
:max(0)
+prevGain
:min(x
@((1*lookahead(LA)) )//-holdTime)
)
)
with {
// diff = prevGain-prevGain';
diff = x@(lookahead(LA))-prevGain;
minDiff = minGain-prevGain;
// minDiff = prevGain-prevGain';
minGain =
x
// : slidingMin(holdTime,lookahead(LA))
: slidingMax(holdTime,lookahead(LA))
// @(1*(lookahead(LA)-holdTime))
@((1*lookahead(LA))-holdTime)
;
};
expRelease(LA,holdTime,prevGain,x) =
(minDiff
/div(LA)
:max(0)
+prevGain
:min(x
@((1*lookahead(LA)) )//-holdTime)
))
with {
// diff = prevGain-prevGain';
diff = x@(lookahead(LA))-prevGain;
minDiff = minGain-prevGain;
// minDiff = prevGain-prevGain';
minGain =
x
// : slidingMin(holdTime,lookahead(LA))
: slidingMax(holdTime,lookahead(LA))
// @(1*(lookahead(LA)-holdTime))
@((1*lookahead(LA))-holdTime)
;
};
expReleaseOLD(LA,holdTime,prevGain,x) =
x@(0*lookahead(LA))
,
(
// min(diff@lookahead(LA),
(minDiff/div(LA))
// )
:max(0)
+prevGain
:min(x@(1*lookahead(LA)))
)
,minDiff
// ,minGain
// ,minDiff
// ,diff
with {
// diff = prevGain-prevGain';
diff = x-prevGain;
minDiff = minGain-prevGain;
// minDiff = prevGain-prevGain';
minGain =
x
// : slidingMin(holdTime,lookahead(LA))
: slidingMax(holdTime,lookahead(LA))
// @(1*(lookahead(LA)-holdTime))
@((1*lookahead(LA))-holdTime)
;
};
// attack = hslider("[1]attack", 1, 0, 1, 0.01);
// attack(LA) = hslider("[1]attack", LA-2, 0, LA, 0.1)/LA;
attack = DG(hslider("[2]attack", 8.8, 0, 13, 0.1))/13;
// attack = hslider("[1]attack", 6, 0, 6, 1)/6;
// holdTime(LA) = hslider("holdTime", lookahead(LA)/nrBlocks, 0, lookahead(LA), 1);
holdTime(LA) = pow(2,DG(hslider("[3]release", 11.2, 0, LA, 0.1)))-1:max(0);
expHoldTime(LA) = hslider("expHoldTime", lookahead(LA)/nrBlocks, 0, lookahead(LA), nrBlocks);
htFactor = AG(hslider("htFactor", 0.2, 0, 1, 0.01));
// attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int+1:max(0):min(lookahead(LA));
// attackHold(LA) = hslider("holdTime", lookahead(LA), 0, lookahead(LA), 1);
// attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 2, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
LArelease(LA,holdTime,prevGain,x) =
select2(trig
, (par(i, nrBlocks,
(x:LAreleaseBlock(LA,i,holdTime
,holdTime/nrBlocks*(i+1) :min(lookahead(LA))
,prevGain))
)
:minOfN(nrBlocks)
+prevGain
:min(x@(1*lookahead(LA)))
)
,(x@(1*lookahead(LA)))
)
// : (changeRateLimit(holdTime,prevGain))
// : si.lag_ud(hslider("release exp", 0, 0, 1, 0.01),0)
// , prevDir*holdTime
// , changeRate*holdTime
// , normalisedChangeRate
// , (x:LAreleaseBlock(LA,LA-1,holdTime,holdTime)~_)+prevGain
// , (x-prevGain)'@lookahead(LA)
with {
prevDir = prevGain-prevGain';
changeRate = prevDir-prevDir';
normalisedChangeRate =
// prevDir/changeRate*(changeRate!=0);
(changeRate-changeRate')*holdTime;
trig = prevGain>=x@(1*lookahead(LA));
};
changeRateLimitPre(holdTime,prev,x) =
prevDir
// :min(dirRelMin)
+limitedChangeRate
:max(0)+prev:min(x)
with {
dir = x-prev;
prevDir = prev-prev';
changeRate = dir-prevDir
:max(0);
limitedChangeRate =
changeRate:min(maxRate) ;
dirRelMin= (dir/relFactorMin);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
maxRate = AG(hslider("posRate Pre", 2, 0, 11, 0.01))/pow(holdTime,2);
// maxRate = AG(hslider("posRate Pre", 2, 0, 11, 0.01)):hbargraph("maxRate Pre", 0, 11)/pow(holdTime,2);
};
changeRateLimit(holdTime,prev,x) =
prevDir
// :min(dirRelMin)
+limitedChangeRate
:max(0)+prev:min(x)
with {
dir = x-prev;
prevDir = prev-prev';
changeRate = dir-prevDir;
//:max(0);
limitedChangeRate =
changeRate:min(maxRate) ;
dirRelMin= (dir/relFactorMin);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
maxRate = hslider("posRate", 0.5, 0, 11, 0.01):hbargraph("maxRate", 0, 11)/pow(holdTime,2);
};
changeRateLimitOLD(holdTime,prev,x) =
prevDir
// :min(dirRelMin)
+limitedChangeRate
:max(0)+prev:min(x)
with {
dir = x-prev;
prevDir = prev-prev';
changeRate = dir-prevDir:max(0);
limitedChangeRate =
select2(changeRate>0
, changeRate
// , changeRate*lookahead(LA)/holdTime*(hslider("posRate", 1, 0, 1, 0.01):pow(2))
// , changeRate:min(hslider("posRate", 0.94, 0, 1, 0.01):pow(8)/pow(holdTime,hslider("pow", 2, 1, 4, .01)))
, changeRate:min(maxRate)
);
dirRelMin= (dir/relFactorMin);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
// maxRate = hslider("posRate", 0.94, 0, 1, 0.01):pow(8):hbargraph("maxRate", 0, 1)/pow(holdTime,2);
maxRate = hslider("posRate", 0.5, 0, 11, 0.01):hbargraph("maxRate", 0, 11)/pow(holdTime,2);
};
nrBlocks = 16;
LAreleaseBlock(LA,i,globalHoldTime,holdTime,prevGain,x) =
minGain
:getDir(LA,holdTime,prevGain,x)
with {
trig = prevGain>=x@(1*lookahead(LA));
minGain =
x
: slidingMax(holdTime,lookahead(LA),_)
@(lookahead(LA)-holdTime);
off =
0;
// hslider("off", 1, 0.01, 2, 0.01);
// diff = (minGain-prevGain);
diff = (minGain:ba.sAndH(trig)-prevGain);
// diff = (minGain-prevGain):ba.sAndH(trig);
getDir(LA,holdTime,prevGain,x,minGain) =
(newDir~_)
// select2(trig
// ,((newDir) ~_)
// +prevGain
// ,0-(ma.MAX)
// )
with {
newDir(prevDir) =
select2(trig
,dir
:max((globalMinGain-prevGain)
/globalHoldTime
)
:max(prevDir)
:max(0)
,0-(ma.MAX));
dir =
diff/(holdTime
/
(
select2(i==(nrBlocks-1)
, ((i+1)/(i+2))
, 1)
)//+hslider("off", 0, -1, 1, 1)
)
// :max(
// (x-x')'//globalHoldTime
// )
;
// trig = diff<0;
globalMinGain = slidingMin(globalHoldTime,lookahead(LA),x)@(lookahead(LA)-globalHoldTime);
};
};
LAreleaseOLD(LA,holdTime,prevGain,x) =
(newDir~_)+prevGain:min(x@lookahead(LA))//:max(minGain)
with {
newDir(prevDir) =
(prevGain-minGain)/holdTime
:min(select2((prevGain+prevDir)<=minGain
, prevDir
// , 1
,ma.MAX
)
);
minGain = slidingMin(holdTime,lookahead(LA),x)@(lookahead(LA)-holdTime);
};
hold(LA,holdTime,prevGain,x) =
slidingMin(holdTime,lookahead(LA),x)@(lookahead(LA)-holdTime)
: max(prevGain)
: min(x@lookahead(LA));
release(LA,holdTime,prevGain,x) =
select2(
diff>0
, x
, (prevGain+direction)
)
with {
diff=x-prevGain;
dir = prevGain-prevGain';
prevDir = dir';
dirRel= (diff/relFactor);
dirRelMin= (diff/relFactorMin);
direction = xfade(keepDir,dirRel,prevDir):min(dirRelMin);
relFactor = holdTime*hslider("release", 0.14, 0, 1, 0.01);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
keepDir = hslider("keepDir", 0, 0, 1, 0.01):pow(1/64);
xfade(x,a,b) = (1-x)*a+x*b;
};
convexAttackAlsoBroken(LA,x) =
(
paramArray(attackConvexVal(LA),0,attackConvexBand(LA),0,LA)
// : par(i, LA, hbargraph("hold%i",0,maxHold(LA)))
// par(i, LA, holdT:hbargraph("hold%i",0,maxHold(LA+1)))
// , (x<:si.bus(LA))
,( x:sequentialMinimumParOutDelayed(LA)
// ,( x:sequentialMinimumParOut(LA)
: (!,si.bus(LA))
)
)
:ro.interleave(LA,2)
:
par(i, LA,
(
hold(LA)
:
linAttack(LA,i+1,x)~_
// :
// _ @(lookahead(LA)+1-(1<<(i+1)))
)
)
:(par(i, LA-3, !),si.bus(3))
// :maxOfN(LA)
with {
holdT = hslider("holdT", 0, 0, lookahead(LA), 1);
attackConvexBand(LA) = (attack*LA);
attackConvexVal(LA) = pow(2,(attackConvexBand(LA)-3));
selectn(maxN,N) = par(i, maxN, _*(i==N)):>_;
hold(LA,holdTime,x) =
x@maxHold(LA),(holdTime:!)
// slidingMin(HT(LA),maxHold(LA),x)@(maxHold(LA)-HT(LA))
with {
HT(LA) = holdTime:int:max(0):min(maxHold(LA));
};
maxHold(LA) = 1<<(LA)-1;
};
linAttack(LA,N,x,prevGain,minGain) =
(minGain:getDirection(N,prevGain))
: (getGain(LA,x,prevGain))
with {
// getGain(LA,x,prevGain,index,direction,minGain)=
// getGain(LA,x,prevGain,direction,minGain)=
// direction+ prevGain:min(0):min(x@lookahead(LA)):max(minGain)
// ;
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@(2*lookahead(LA))
, (direction+ prevGain:min(0):min(x@(2*lookahead(LA))))
)
;
};
convexAttackNICETRY(nrBlocks,LA,blockSize,x) =
x@maxHold
, (sequentialBlockMinimumParOut(nrBlocks,lookahead(LA),x,blockSize)
: (!,si.bus(nrBlocks))
: delays
: getGains
: holds
// : maxOfN(nrBlocks)
)
with {
delays = par(i, nrBlocks, _@(maxHold-((nrBlocks)*blockSize)));
// delays = par(i, nrBlocks, _@(maxHold-((i+1)*blockSize)));
// delays = par(i, nrBlocks+1, _@((nrBlocks-i)*blockSize));
getGains = par(i, nrBlocks, gainIndex(i)~(_,_):(_,!));
// 0= nrBlocks-1
// 1=nrBlocks-2
// 3=nrBlocks-3
holds =
par(j, nrBlocks,
// _*maxcomp
slidingMin(compSize(j),maxcomp)
) with {
maxcomp = (nrBlocks-1)*lookahead(LA);
compSize(j) = (nrBlocks-j-1)*blockSize;
};
maxHold = (nrBlocks)*lookahead(LA);
gainIndex(i,prevGain,prevIndex,minGain) =
// triggers :
getGain(LA,x,prevGain,direction)
, index
with {
// 3=0
// 2=dif*1/2
// 1=dif*3/4
// 0=dif*7/8
start =
trig*startMult*dif
// *(prevIndex==0)
;
startMult = 1-pow(2,(-i));
// startMult = 1-pow(2,(-nrBlocks+i));
getGain(LA,x,prevGain,direction) =
select2(direction<0
, minGain
, (direction+ prevGain + start
// :min(0):min(x@lookahead(LA))
)) ;
index =
select2(
((minGain:ba.sAndH(trig)-prevGain))<0
, 0
, select2(trig
, ((prevIndex-1) :max(0))
, blockI));
direction =
select2(trig
, (minGain:ba.sAndH(trig)-prevGain) / ((prevIndex):max(1))
, (minGain-prevGain)/(blockI+1))
// * dirMult*pow(2,nrBlocks)
;
trig = (proposedDirection<=(prevGain-prevGain'));
proposedDirection = dif/(blockI+1);
dif = minGain-prevGain;
blockI = ((i+1)*blockSize);
};
};
bottom(LA) = hslider("bottom", 0, 0, lookahead(LA), 1);
mid(LA) = hslider("mid", 0, 0, lookahead(LA), 1);
band(LA) = hslider("band", 0, 0, lookahead(LA), 1);
top(LA) = hslider("top", 0, 0, lookahead(LA), 1);
convexAttack(LA,x) =
(
paramArray(attackConvexVal(LA),0,attackConvexBand(LA),0,LA)
// : par(i, LA, hbargraph("hold%i",0,maxHold(LA)))
// par(i, LA, holdT:hbargraph("hold%i",0,maxHold(LA+1)))
, (x<:si.bus(LA))
)
:ro.interleave(LA,2)
:
par(i, LA,
(
// (_,linAtt(i+1)~_)
// : hold(LA)
hold(LA) :
(linAtt(i+1)~_)
@(lookahead(LA)+1-(1<<(i+1)))
)
)
:maxOfN(LA)
: select2(attack<(2/LA),_,x@(2*lookahead(LA)))
with {
holdT = hslider("holdT", 0, 0, lookahead(LA), 1);
attackConvexBand(LA) = (attack*LA);
attackConvexVal(LA) = pow(2,(attackConvexBand(LA)-3));
selectn(maxN,N) = par(i, maxN, _*(i==N)):>_;
hold(LA,holdTime,x) =
// _
slidingMin(HT(LA),maxHold(LA),x)@(maxHold(LA)-HT(LA))
with {
HT(LA) = holdTime:int:max(0):min(maxHold(LA));
};
maxHold(LA) = 1<<(LA)-1;
};
shapedAttackOLD(LA,prevGain,x) =
(x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
: par(i, LA, getDirection(i+1,prevGain))
, attackArray(LA)
: (ro.interleave(LA,2)
)
: (par(i, LA,
// shaper
*
// : max(prevDir)
)
)
: minOfN(LA)
: (getGain(LA,x,prevGain))
)
with {
shaper(direction,factor) =
select2((prevDir<=direction) & (factor>0)
, direction*factor
, direction);
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@lookahead(LA)
// , hold(LA,attackHold(LA)+holdTime(LA):min(lookahead(LA)),prevGain,x)
, (direction+ prevGain:min(0)
:min(x@lookahead(LA))
)
)
// : hold(LA,attackHold(LA),prevGain)
;
prevDir = prevGain-prevGain';
// attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
// attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int+1:max(0):min(lookahead(LA));
// attackHold(LA) = hslider("holdTime", lookahead(LA), 0, lookahead(LA), 1);
};
shapedAttack(LA,prevGain,x) =
(x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
: par(i, LA, getDirection(i+1,prevGain))
, attackArray(LA)
: (ro.interleave(LA,2)
)
: (par(i, LA,
shaper
// *
// : max(prevDir)
)
)
: minOfN(LA)
: (getGain(LA,x,prevGain))
)
with {
shaper(direction,factor) =
select2((prevDir<=(direction+ma.EPSILON)) & (factor>0)
// select2((avgPrevDir<=direction) * (factor>0)
, direction*factor
// , direction*min(1,factor*hslider("fac", 40, 1, 40, 1))
, direction
);
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@lookahead(LA)
// , hold(LA,attackHold(LA)+holdTime(LA):min(lookahead(LA)),prevGain,x)
, (direction+ prevGain:min(0)
:min(x@lookahead(LA))
)
)
// : hold(LA,attackHold(LA),prevGain)
;
prevDir = prevGain-prevGain';
avgPrevDir = prevDir: ba.slidingMean(hslider("avg", 1, 1, 1024, 1));
// attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
// attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int+1:max(0):min(lookahead(LA));
// attackHold(LA) = hslider("holdTime", lookahead(LA), 0, lookahead(LA), 1);
};
// hold(LA,holdTime,prevGain,x) =
// slidingMin(holdTime,lookahead(LA),x)@(lookahead(LA)-holdTime)
// : max(prevGain)
// : min(x@lookahead(LA));
// linAtt(0,prevGain,x) = linearAttack(0,x,prevGain);
linAtt(LA,prevGain,x) = linearAttack(LA,x,prevGain);
linearAttack(0,x,prevGain) = x;
linearAttack(LA,x,prevGain) =
(x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
: par(i, LA, getDirection(i+1,prevGain))
: minOfN(LA)
: (getGain(LA,x,prevGain))
)
with {
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@lookahead(LA)
, (direction+ prevGain:min(0):min(x@lookahead(LA)))
)
;
};
getDirection(LA,prevGain,minGain) =
(getIndexAndDirection~(_,!))
: (!,_)
// : (_,_,minGain)
with {
getIndexAndDirection(prevIndex) =
index,direction
with {
index =
select2(
((minGain:ba.sAndH(trig)-prevGain))<0
// proposedDirection<0
, 0
, select2(trig
, ((prevIndex-1) :max(0))
, lookahead(LA)));
direction =
select2(trig
, (minGain:ba.sAndH(trig)-prevGain) / ((prevIndex):max(1))
, (minGain-prevGain)/(lookahead(LA)+1)) ;
trig = (proposedDirection<=(prevDir));
proposedDirection = (dif/(lookahead(LA)+1)) ;
prevDir = prevGain-prevGain';
dif = minGain-prevGain;
};
};
sequentialMinimumParOutDelayed(N) =
sequentialOperatorParOut(N,min)
: par(i, N+1, _@( 1<<N - 1<<i ));
sequentialMinimumParOut(N) =
sequentialOperatorParOut(N,min);
sequentialOperatorParOut(N,op) =
// operator(2)
seq(i, N, operator(i))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(_,_@(1<<i) )
)
;
};
sequentialBlockMinimumParOut(N,maxBlock,x,blockSize) =
sequentialBlockOperatorParOut(N,min,ma.INFINITY,maxBlock,x,blockSize);
// sequentialBlockOperatorParOut(N,min,blockSize);
sequentialBlockOperatorParOut(N,op,disabledVal,maxBlock,x,blockSize) =
// operator(2)
x:seq(i, N, operator(i))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(
slidingReduce(op,blockSize,maxBlock,disabledVal)
)
)
;
};
paramArray(bottom,mid,band,top,LA) =
par(i, LA, select2(band<=i+1,midToBottomVal(i),midToTopVal(i)))
with {
midToBottomVal(i) = (midToBottom(i)*bottom) + (((midToBottom(i)*-1)+1)*mid);
midToBottom(i) = (band-(i+1))/(band-1);
midToTopVal(i) = (midToTop(i)*top) + (((midToTop(i)*-1)+1)*mid);
midToTop(i) = (i+1-band)/((LA+1)-band);
};
opOfN(N,op) = seq(i, N-1, op,myBus(N-i-2));
minOfN(1) = _;
minOfN(N) = opOfN(N,min);
maxOfN(N) = opOfN(N,max);
find_Nmin(1) = _,_;
find_Nmin(2) = Ncomparator;
find_Nmin(N) = seq(i,N-2, (Ncomparator,si.bus(2*(N-i-2)))) : Ncomparator;
Ncomparator(x,n,y,m) = select2((x<=y),y,x), select2((x<=y),m,n); // compare integer-labeled signals
lookahead(LA) = (1<<LA)-1;
myBus(0) =
0:!
;
myBus(i) = si.bus(i);
attackArray(LA) =
paramArray(1.4,0,attack2band(LA+1) ,0,LA+1)
: (par(i, LA, min(1)),!)
;
// attack2band(LA) = (attack*LA);
// attack2band(LA) = 2+(attack*(LA-2)):max(2):hbargraph("band",0,LA);
attack2band(LA) = 1+(attack*(LA-1)):max(1);
// attack2band(LA) = hslider("band", 0, 0, LA, 0.1);
testSig(LA) =
// checkbox("tst")*-1;
// button:ba.impulsify*-1;
no.lfnoise0(lookahead(LA) *t * (no.lfnoise0(lookahead(LA)/2):max(0.1) )):pow(3)
// : fi.lowpass(4,LPfreq)
*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0);
t= hslider("[7]time", 1, 0.01, 4, 0.01):pow(2);
noiseLVL = hslider("[8]noise level", 0.0, 0, 1, 0.01);
rate = hslider("[9]rate [scale:log]", 420, 10, 10000, 1);
LPfreq = hslider("[10]LPfreq [scale:log]", 420, 10, 10000, 1);
slidingReduce(op,N,0,disabledVal) = _;
slidingReduce(op,N,maxN,disabledVal) =
sequentialOperatorParOut(maxNrBits(maxN+1)-1,op)
:
par(i,maxNrBits(maxN+1)
, _@sumOfPrevBlockSizes(i)
: useVal(i)
) : combine(maxNrBits(maxN+1))
with {
// The sum of all the sizes of the previous blocks
sumOfPrevBlockSizes(0) = 0;
sumOfPrevBlockSizes(i) = (ba.subseq((allBlockSizes),0,i):>_);
allBlockSizes = par(i, maxNrBits(maxN), (pow2(i)) * isUsed(i));
maxNrBits(n) = int2nrOfBits(n);
// Apply <op> to <N> parallel input signals
combine(2) = op;
combine(N) = op(combine(N-1),_);
// Decide wether or not to use a certain value, based on N
// Basically only the second <select2> is needed,
// but this version also works for N == 0
// 'works' in this case means 'does the same as reduce'
useVal(i) =
// _ <: select2(
// (i==0) & (N==0),
select2(isUsed(i), disabledVal, _)
// , _
// )
;
// useVal(i) =
// select2(isUsed(i), disabledVal,_);
// isUsed(0,N,maxN) = 1;
isUsed(i) = ba.take(i+1, (int2bin(N+1,maxN*2+1)));
pow2(i) = 1<<i;
// same as:
// pow2(i) = int(pow(2,i));
// but in the block diagram, it will be displayed as a number, instead of a formula
// convert N into a list of ones and zeros
int2bin(N,maxN) = par(j, maxNrBits(maxN), int(floor((N)/(pow2(j))))%2);
// int2bin(N,maxN) = par(j, maxNrBits(maxN), int(floor((N)/(pow2(j))))%2);
// calculate how many ones and zeros are needed to represent maxN
int2nrOfBits(N) = int(floor(log(N)/log(2))+1);
};
slidingMin(n,maxn) = slidingReduce(min,n,maxn,ma.INFINITY);
slidingMax(n,maxn) = slidingReduce(max,n,maxn,0-ma.INFINITY);
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/acff3680410cfebf74b87cf5466e35530693798a/LazyLeveler.dsp
|
faust
|
attackArray(LA)
: par(i, LA, hbargraph("lev%i",0,1.4))
LazyLeveler(LA,testSig(LA-5))
+outGain
blokjes
sequentialBlockMinimumParOut(nrBlocks,lookahead(LA))
slidingReduce(min,lookahead(LA),lookahead(LA),ma.INFINITY)
testSig(LA):
(convexAttack(nrBlocks,LA,Lookah))
,_
@Lookah
)
:par(i, 2, _@200000)
:par(i, 5, _*.5)
blokjes(x,n) = sequentialBlockOperatorParOut(n,min,ma.INFINITY,lookahead(LA),x);
TODO: each stage caries it's GR and its properly delayed audio
(linearAttack(LA,x)~_)
x
: (linAtt(LA-4)~_)
: (hold(LA,attackHold(LA))~_)
: convexAttack(LA)
: (linAtt(LA-4)~_)
: (shapedAttack(LA)~_)
: (release(LA,holdTime(LA))~_)
(
(x:hold(LA,holdTime(LA))~_)
:slidingMax(holdTime(LA),lookahead(LA))@(lookahead(LA)-holdTime(LA))
)
, (x:hold(LA,holdTime(LA))~_)@(lookahead(LA))
:slidingMax(holdTime(LA),lookahead(LA))@(lookahead(LA)-holdTime(LA))
: si.lag_ud(hslider("release exp", 0, 0, 1, 0.01),0)
: (hold(LA,expHoldTime(LA))~_)
: (hold(LA,holdTime(LA))~_)
,((LArelease(LA,holdTime(LA)*htFactor)~_):(expRelease(LA,expHoldTime(LA))~_))
(((changeRateLimitPre(holdTime(LA)*htFactor)~_):LArelease(LA,holdTime(LA)*htFactor)~_):(convexRelease(LA))~_)
, (((changeRateLimitPre(holdTime(LA)*htFactor)~_):LArelease(LA,holdTime(LA)*htFactor)~_):lag_dud(lagDup(LA),lagDdown(LA)))
,((LArelease(LA,holdTime(LA)*htFactor)~_):(changeRateLimit(holdTime(LA)*htFactor)~_):si.lag_ud(lagUp(LA),0))
,_@lookahead(LA)
, ((LArelease(LA,holdTime(LA)*htFactor)~_):si.lag_ud(lagDup(LA),0))
, ((LArelease(LA,holdTime(LA)*htFactor)~_):si.lag_ud(lagUp(LA),0):(changeRateLimitPre(holdTime(LA)*htFactor)~_))
, (si.lag_ud(lagUp(LA),0):(LArelease(LA,holdTime(LA)*htFactor)~_))
: convexAttack(LA)
: (linAtt(LA-4)~_)
, ((shapedAttackOLD(LA)~_):(convexAttack(LA):si.lag_ud(lagUp(LA),0)))
, (convexAttack(LA):(shapedAttackOLD(LA)~_):si.lag_ud(lagUp(LA),0))
,
x@(5*lookahead(LA)+(0*lookahead(LA-4)))
, (x: (hold(LA,attackHold(LA))~_): convexAttack(LA): (shapedAttack(LA)~_)@(0*lookahead(LA-4) ))
isConvex = dir>dir';
isConvex = dir>Pdir;
dir = prev-prev';
Pdir = dir';
max(prevDir,dir)
prevDir
newDir
prev<=prev'
:max(0)
, speedup
, x<=prev
, prev<=prev'
, (prevDir>prevDir')
prevDir>prevDir'
, min(inputDir,dir)/hslider("convexDiv", 1, 1, 100, 0.1)
,inputDir/hslider("convexDiv", 1, 1, 100, 0.1)
, dir
speedup = (inputDir>inputDir');
speed>speed'
, speed==speed'
,
-holdTime)
diff = prevGain-prevGain';
minDiff = prevGain-prevGain';
: slidingMin(holdTime,lookahead(LA))
@(1*(lookahead(LA)-holdTime))
-holdTime)
diff = prevGain-prevGain';
minDiff = prevGain-prevGain';
: slidingMin(holdTime,lookahead(LA))
@(1*(lookahead(LA)-holdTime))
min(diff@lookahead(LA),
)
,minGain
,minDiff
,diff
diff = prevGain-prevGain';
minDiff = prevGain-prevGain';
: slidingMin(holdTime,lookahead(LA))
@(1*(lookahead(LA)-holdTime))
attack = hslider("[1]attack", 1, 0, 1, 0.01);
attack(LA) = hslider("[1]attack", LA-2, 0, LA, 0.1)/LA;
attack = hslider("[1]attack", 6, 0, 6, 1)/6;
holdTime(LA) = hslider("holdTime", lookahead(LA)/nrBlocks, 0, lookahead(LA), 1);
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int+1:max(0):min(lookahead(LA));
attackHold(LA) = hslider("holdTime", lookahead(LA), 0, lookahead(LA), 1);
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
: (changeRateLimit(holdTime,prevGain))
: si.lag_ud(hslider("release exp", 0, 0, 1, 0.01),0)
, prevDir*holdTime
, changeRate*holdTime
, normalisedChangeRate
, (x:LAreleaseBlock(LA,LA-1,holdTime,holdTime)~_)+prevGain
, (x-prevGain)'@lookahead(LA)
prevDir/changeRate*(changeRate!=0);
:min(dirRelMin)
maxRate = AG(hslider("posRate Pre", 2, 0, 11, 0.01)):hbargraph("maxRate Pre", 0, 11)/pow(holdTime,2);
:min(dirRelMin)
:max(0);
:min(dirRelMin)
, changeRate*lookahead(LA)/holdTime*(hslider("posRate", 1, 0, 1, 0.01):pow(2))
, changeRate:min(hslider("posRate", 0.94, 0, 1, 0.01):pow(8)/pow(holdTime,hslider("pow", 2, 1, 4, .01)))
maxRate = hslider("posRate", 0.94, 0, 1, 0.01):pow(8):hbargraph("maxRate", 0, 1)/pow(holdTime,2);
hslider("off", 1, 0.01, 2, 0.01);
diff = (minGain-prevGain);
diff = (minGain-prevGain):ba.sAndH(trig);
select2(trig
,((newDir) ~_)
+prevGain
,0-(ma.MAX)
)
+hslider("off", 0, -1, 1, 1)
:max(
(x-x')'//globalHoldTime
)
trig = diff<0;
:max(minGain)
, 1
: par(i, LA, hbargraph("hold%i",0,maxHold(LA)))
par(i, LA, holdT:hbargraph("hold%i",0,maxHold(LA+1)))
, (x<:si.bus(LA))
,( x:sequentialMinimumParOut(LA)
:
_ @(lookahead(LA)+1-(1<<(i+1)))
:maxOfN(LA)
slidingMin(HT(LA),maxHold(LA),x)@(maxHold(LA)-HT(LA))
getGain(LA,x,prevGain,index,direction,minGain)=
getGain(LA,x,prevGain,direction,minGain)=
direction+ prevGain:min(0):min(x@lookahead(LA)):max(minGain)
;
: maxOfN(nrBlocks)
delays = par(i, nrBlocks, _@(maxHold-((i+1)*blockSize)));
delays = par(i, nrBlocks+1, _@((nrBlocks-i)*blockSize));
0= nrBlocks-1
1=nrBlocks-2
3=nrBlocks-3
_*maxcomp
triggers :
3=0
2=dif*1/2
1=dif*3/4
0=dif*7/8
*(prevIndex==0)
startMult = 1-pow(2,(-nrBlocks+i));
:min(0):min(x@lookahead(LA))
* dirMult*pow(2,nrBlocks)
: par(i, LA, hbargraph("hold%i",0,maxHold(LA)))
par(i, LA, holdT:hbargraph("hold%i",0,maxHold(LA+1)))
(_,linAtt(i+1)~_)
: hold(LA)
_
shaper
: max(prevDir)
, hold(LA,attackHold(LA)+holdTime(LA):min(lookahead(LA)),prevGain,x)
: hold(LA,attackHold(LA),prevGain)
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int+1:max(0):min(lookahead(LA));
attackHold(LA) = hslider("holdTime", lookahead(LA), 0, lookahead(LA), 1);
*
: max(prevDir)
select2((avgPrevDir<=direction) * (factor>0)
, direction*min(1,factor*hslider("fac", 40, 1, 40, 1))
, hold(LA,attackHold(LA)+holdTime(LA):min(lookahead(LA)),prevGain,x)
: hold(LA,attackHold(LA),prevGain)
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 1, 0.01):int+1:max(0):min(lookahead(LA));
attackHold(LA) = hslider("holdTime", lookahead(LA), 0, lookahead(LA), 1);
hold(LA,holdTime,prevGain,x) =
slidingMin(holdTime,lookahead(LA),x)@(lookahead(LA)-holdTime)
: max(prevGain)
: min(x@lookahead(LA));
linAtt(0,prevGain,x) = linearAttack(0,x,prevGain);
: (_,_,minGain)
proposedDirection<0
operator(2)
sequentialBlockOperatorParOut(N,min,blockSize);
operator(2)
compare integer-labeled signals
attack2band(LA) = (attack*LA);
attack2band(LA) = 2+(attack*(LA-2)):max(2):hbargraph("band",0,LA);
attack2band(LA) = hslider("band", 0, 0, LA, 0.1);
checkbox("tst")*-1;
button:ba.impulsify*-1;
: fi.lowpass(4,LPfreq)
The sum of all the sizes of the previous blocks
Apply <op> to <N> parallel input signals
Decide wether or not to use a certain value, based on N
Basically only the second <select2> is needed,
but this version also works for N == 0
'works' in this case means 'does the same as reduce'
_ <: select2(
(i==0) & (N==0),
, _
)
useVal(i) =
select2(isUsed(i), disabledVal,_);
isUsed(0,N,maxN) = 1;
same as:
pow2(i) = int(pow(2,i));
but in the block diagram, it will be displayed as a number, instead of a formula
convert N into a list of ones and zeros
int2bin(N,maxN) = par(j, maxNrBits(maxN), int(floor((N)/(pow2(j))))%2);
calculate how many ones and zeros are needed to represent maxN
|
declare name "LazyLeveler";
declare version "0.1";
declare author "Bart Brouns";
declare license "GPLv3";
import("stdfaust.lib");
DG(x) = tgroup("limiter", vgroup("[1]controlls", x));
AG(x) = tgroup("limiter", vgroup("[2]tweaks", x));
process(x,y) =
LazyLeveler(LA,GR(x*inGain,y*inGain))
:ba.db2linear
<:
(
(_*(x*inGain)@(5*lookahead(LA)))
, (_*(y*inGain)@(5*lookahead(LA)))
, (((_:ba.linear2db)):ba.db2linear)
, (((_:ba.linear2db))/(thresh:min(ma.EPSILON)))
)
with {
GR(x,y) = gain_computer(strength,thresh,knee,level(x,y));
level(x,y) = max(abs(x),abs(y)): ba.linear2db;
holdTime= Lookah;
LA = 13;
gain_computer(strength,thresh,knee,level) =
select3((level>(thresh-(knee/2)))+(level>(thresh+(knee/2))),
0,
((level-thresh+(knee/2)):pow(2)/(2*knee)),
(level-thresh)) : max(0)*-strength;
strength = AG(hslider("strength", 1, 0, 1, 0.01));
thresh = DG(hslider("[4]thresh", 0, -60, 0, 0.1));
knee = DG(hslider("[5]knee", 0, 0, 60, 0.1));
inGain = DG(hslider("[1]inputgain", 0, 0, 60, 0.1)): ba.db2linear;
outGain = hslider("outputgain", 0, 0, 60, 0.1);
};
LazyLeveler(LA,x) =
(
x
:(hold(LA,holdTime(LA))~_)
<:
(
(((changeRateLimitPre(holdTime(LA)*htFactor)~_):LArelease(LA,holdTime(LA)*htFactor)~_))
)
<:
(
((shapedAttack(LA)~_):(convexAttack(LA):si.lag_ud(lagUp(LA),0)))
)
)
;
lag_dud(up,dn) = FB(up,dn)~_
with {
FB(up,dn,prev,x) =x <: ((isConvex,ba.tau2pole(up),ba.tau2pole(dn):select2),_:si.smooth):min(x)
with {
isConvex = changeRate>=changeRate';
changeRate = dir-Pdir;
dir = x-prev;
Pdir = prev-prev';
};
};
convexRelease(LA,prev,x) =
(
(prev +
select2(
x<=prev
, newDir
, ma.MAX
)
)
:min(x))
with {
newDir =
select2(
speedup
,prevDir/(1+pow(hslider("convexDiv", 0.25, 0, 1, 0.01),8)):min(prevDir)
, inputDir
);
inputDir = x-x';
dir = x-prev;
prevDir =
prev-prev';
speedup = (inputDir>inputDir')*(inputDir>inputDir')';
};
convexReleaseOLD(LA,prevGain,x) =
select2(speed==speed'
, prevGain
, prevGain:si.lag_ud(lagUp(LA),0)
):min(x)
with {
speed = x-prevGain;
};
lagUp(LA) = div(LA)/44100;
lagDup(LA) = divDup(LA)/44100;
lagDdown(LA) = divDdown(LA)/44100;
div(LA) = AG(hslider("div", 0.22, 0, 1, 0.01))*holdTime(LA);
divDup(LA) = hslider("divDup", 0, 0, 8, 0.01)*holdTime(LA);
divDdown(LA) = hslider("divDdown", 0, 0, 1, 0.01)*holdTime(LA);
expRelease1(LA,holdTime,prevGain,x) =
(diff
/div(LA)
:max(0)
+prevGain
:min(x
)
)
with {
diff = x@(lookahead(LA))-prevGain;
minDiff = minGain-prevGain;
minGain =
x
: slidingMax(holdTime,lookahead(LA))
@((1*lookahead(LA))-holdTime)
;
};
expRelease(LA,holdTime,prevGain,x) =
(minDiff
/div(LA)
:max(0)
+prevGain
:min(x
))
with {
diff = x@(lookahead(LA))-prevGain;
minDiff = minGain-prevGain;
minGain =
x
: slidingMax(holdTime,lookahead(LA))
@((1*lookahead(LA))-holdTime)
;
};
expReleaseOLD(LA,holdTime,prevGain,x) =
x@(0*lookahead(LA))
,
(
(minDiff/div(LA))
:max(0)
+prevGain
:min(x@(1*lookahead(LA)))
)
,minDiff
with {
diff = x-prevGain;
minDiff = minGain-prevGain;
minGain =
x
: slidingMax(holdTime,lookahead(LA))
@((1*lookahead(LA))-holdTime)
;
};
attack = DG(hslider("[2]attack", 8.8, 0, 13, 0.1))/13;
holdTime(LA) = pow(2,DG(hslider("[3]release", 11.2, 0, LA, 0.1)))-1:max(0);
expHoldTime(LA) = hslider("expHoldTime", lookahead(LA)/nrBlocks, 0, lookahead(LA), nrBlocks);
htFactor = AG(hslider("htFactor", 0.2, 0, 1, 0.01));
attackHold(LA) = pow(2,attack*LA-1)*hslider("attackHold", 1, 0, 2, 0.01):int:hbargraph("hold",0,lookahead(LA)):max(0):min(lookahead(LA));
LArelease(LA,holdTime,prevGain,x) =
select2(trig
, (par(i, nrBlocks,
(x:LAreleaseBlock(LA,i,holdTime
,holdTime/nrBlocks*(i+1) :min(lookahead(LA))
,prevGain))
)
:minOfN(nrBlocks)
+prevGain
:min(x@(1*lookahead(LA)))
)
,(x@(1*lookahead(LA)))
)
with {
prevDir = prevGain-prevGain';
changeRate = prevDir-prevDir';
normalisedChangeRate =
(changeRate-changeRate')*holdTime;
trig = prevGain>=x@(1*lookahead(LA));
};
changeRateLimitPre(holdTime,prev,x) =
prevDir
+limitedChangeRate
:max(0)+prev:min(x)
with {
dir = x-prev;
prevDir = prev-prev';
changeRate = dir-prevDir
:max(0);
limitedChangeRate =
changeRate:min(maxRate) ;
dirRelMin= (dir/relFactorMin);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
maxRate = AG(hslider("posRate Pre", 2, 0, 11, 0.01))/pow(holdTime,2);
};
changeRateLimit(holdTime,prev,x) =
prevDir
+limitedChangeRate
:max(0)+prev:min(x)
with {
dir = x-prev;
prevDir = prev-prev';
changeRate = dir-prevDir;
limitedChangeRate =
changeRate:min(maxRate) ;
dirRelMin= (dir/relFactorMin);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
maxRate = hslider("posRate", 0.5, 0, 11, 0.01):hbargraph("maxRate", 0, 11)/pow(holdTime,2);
};
changeRateLimitOLD(holdTime,prev,x) =
prevDir
+limitedChangeRate
:max(0)+prev:min(x)
with {
dir = x-prev;
prevDir = prev-prev';
changeRate = dir-prevDir:max(0);
limitedChangeRate =
select2(changeRate>0
, changeRate
, changeRate:min(maxRate)
);
dirRelMin= (dir/relFactorMin);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
maxRate = hslider("posRate", 0.5, 0, 11, 0.01):hbargraph("maxRate", 0, 11)/pow(holdTime,2);
};
nrBlocks = 16;
LAreleaseBlock(LA,i,globalHoldTime,holdTime,prevGain,x) =
minGain
:getDir(LA,holdTime,prevGain,x)
with {
trig = prevGain>=x@(1*lookahead(LA));
minGain =
x
: slidingMax(holdTime,lookahead(LA),_)
@(lookahead(LA)-holdTime);
off =
0;
diff = (minGain:ba.sAndH(trig)-prevGain);
getDir(LA,holdTime,prevGain,x,minGain) =
(newDir~_)
with {
newDir(prevDir) =
select2(trig
,dir
:max((globalMinGain-prevGain)
/globalHoldTime
)
:max(prevDir)
:max(0)
,0-(ma.MAX));
dir =
diff/(holdTime
/
(
select2(i==(nrBlocks-1)
, ((i+1)/(i+2))
, 1)
)
;
globalMinGain = slidingMin(globalHoldTime,lookahead(LA),x)@(lookahead(LA)-globalHoldTime);
};
};
LAreleaseOLD(LA,holdTime,prevGain,x) =
with {
newDir(prevDir) =
(prevGain-minGain)/holdTime
:min(select2((prevGain+prevDir)<=minGain
, prevDir
,ma.MAX
)
);
minGain = slidingMin(holdTime,lookahead(LA),x)@(lookahead(LA)-holdTime);
};
hold(LA,holdTime,prevGain,x) =
slidingMin(holdTime,lookahead(LA),x)@(lookahead(LA)-holdTime)
: max(prevGain)
: min(x@lookahead(LA));
release(LA,holdTime,prevGain,x) =
select2(
diff>0
, x
, (prevGain+direction)
)
with {
diff=x-prevGain;
dir = prevGain-prevGain';
prevDir = dir';
dirRel= (diff/relFactor);
dirRelMin= (diff/relFactorMin);
direction = xfade(keepDir,dirRel,prevDir):min(dirRelMin);
relFactor = holdTime*hslider("release", 0.14, 0, 1, 0.01);
relFactorMin = holdTime*hslider("releaseMin", 0.14, 0, 1, 0.01);
keepDir = hslider("keepDir", 0, 0, 1, 0.01):pow(1/64);
xfade(x,a,b) = (1-x)*a+x*b;
};
convexAttackAlsoBroken(LA,x) =
(
paramArray(attackConvexVal(LA),0,attackConvexBand(LA),0,LA)
,( x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
)
)
:ro.interleave(LA,2)
:
par(i, LA,
(
hold(LA)
:
linAttack(LA,i+1,x)~_
)
)
:(par(i, LA-3, !),si.bus(3))
with {
holdT = hslider("holdT", 0, 0, lookahead(LA), 1);
attackConvexBand(LA) = (attack*LA);
attackConvexVal(LA) = pow(2,(attackConvexBand(LA)-3));
selectn(maxN,N) = par(i, maxN, _*(i==N)):>_;
hold(LA,holdTime,x) =
x@maxHold(LA),(holdTime:!)
with {
HT(LA) = holdTime:int:max(0):min(maxHold(LA));
};
maxHold(LA) = 1<<(LA)-1;
};
linAttack(LA,N,x,prevGain,minGain) =
(minGain:getDirection(N,prevGain))
: (getGain(LA,x,prevGain))
with {
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@(2*lookahead(LA))
, (direction+ prevGain:min(0):min(x@(2*lookahead(LA))))
)
;
};
convexAttackNICETRY(nrBlocks,LA,blockSize,x) =
x@maxHold
, (sequentialBlockMinimumParOut(nrBlocks,lookahead(LA),x,blockSize)
: (!,si.bus(nrBlocks))
: delays
: getGains
: holds
)
with {
delays = par(i, nrBlocks, _@(maxHold-((nrBlocks)*blockSize)));
getGains = par(i, nrBlocks, gainIndex(i)~(_,_):(_,!));
holds =
par(j, nrBlocks,
slidingMin(compSize(j),maxcomp)
) with {
maxcomp = (nrBlocks-1)*lookahead(LA);
compSize(j) = (nrBlocks-j-1)*blockSize;
};
maxHold = (nrBlocks)*lookahead(LA);
gainIndex(i,prevGain,prevIndex,minGain) =
getGain(LA,x,prevGain,direction)
, index
with {
start =
trig*startMult*dif
;
startMult = 1-pow(2,(-i));
getGain(LA,x,prevGain,direction) =
select2(direction<0
, minGain
, (direction+ prevGain + start
)) ;
index =
select2(
((minGain:ba.sAndH(trig)-prevGain))<0
, 0
, select2(trig
, ((prevIndex-1) :max(0))
, blockI));
direction =
select2(trig
, (minGain:ba.sAndH(trig)-prevGain) / ((prevIndex):max(1))
, (minGain-prevGain)/(blockI+1))
;
trig = (proposedDirection<=(prevGain-prevGain'));
proposedDirection = dif/(blockI+1);
dif = minGain-prevGain;
blockI = ((i+1)*blockSize);
};
};
bottom(LA) = hslider("bottom", 0, 0, lookahead(LA), 1);
mid(LA) = hslider("mid", 0, 0, lookahead(LA), 1);
band(LA) = hslider("band", 0, 0, lookahead(LA), 1);
top(LA) = hslider("top", 0, 0, lookahead(LA), 1);
convexAttack(LA,x) =
(
paramArray(attackConvexVal(LA),0,attackConvexBand(LA),0,LA)
, (x<:si.bus(LA))
)
:ro.interleave(LA,2)
:
par(i, LA,
(
hold(LA) :
(linAtt(i+1)~_)
@(lookahead(LA)+1-(1<<(i+1)))
)
)
:maxOfN(LA)
: select2(attack<(2/LA),_,x@(2*lookahead(LA)))
with {
holdT = hslider("holdT", 0, 0, lookahead(LA), 1);
attackConvexBand(LA) = (attack*LA);
attackConvexVal(LA) = pow(2,(attackConvexBand(LA)-3));
selectn(maxN,N) = par(i, maxN, _*(i==N)):>_;
hold(LA,holdTime,x) =
slidingMin(HT(LA),maxHold(LA),x)@(maxHold(LA)-HT(LA))
with {
HT(LA) = holdTime:int:max(0):min(maxHold(LA));
};
maxHold(LA) = 1<<(LA)-1;
};
shapedAttackOLD(LA,prevGain,x) =
(x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
: par(i, LA, getDirection(i+1,prevGain))
, attackArray(LA)
: (ro.interleave(LA,2)
)
: (par(i, LA,
*
)
)
: minOfN(LA)
: (getGain(LA,x,prevGain))
)
with {
shaper(direction,factor) =
select2((prevDir<=direction) & (factor>0)
, direction*factor
, direction);
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@lookahead(LA)
, (direction+ prevGain:min(0)
:min(x@lookahead(LA))
)
)
;
prevDir = prevGain-prevGain';
};
shapedAttack(LA,prevGain,x) =
(x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
: par(i, LA, getDirection(i+1,prevGain))
, attackArray(LA)
: (ro.interleave(LA,2)
)
: (par(i, LA,
shaper
)
)
: minOfN(LA)
: (getGain(LA,x,prevGain))
)
with {
shaper(direction,factor) =
select2((prevDir<=(direction+ma.EPSILON)) & (factor>0)
, direction*factor
, direction
);
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@lookahead(LA)
, (direction+ prevGain:min(0)
:min(x@lookahead(LA))
)
)
;
prevDir = prevGain-prevGain';
avgPrevDir = prevDir: ba.slidingMean(hslider("avg", 1, 1, 1024, 1));
};
linAtt(LA,prevGain,x) = linearAttack(LA,x,prevGain);
linearAttack(0,x,prevGain) = x;
linearAttack(LA,x,prevGain) =
(x:sequentialMinimumParOutDelayed(LA)
: (!,si.bus(LA))
: par(i, LA, getDirection(i+1,prevGain))
: minOfN(LA)
: (getGain(LA,x,prevGain))
)
with {
getGain(LA,x,prevGain,direction)=
select2(direction<0
, x@lookahead(LA)
, (direction+ prevGain:min(0):min(x@lookahead(LA)))
)
;
};
getDirection(LA,prevGain,minGain) =
(getIndexAndDirection~(_,!))
: (!,_)
with {
getIndexAndDirection(prevIndex) =
index,direction
with {
index =
select2(
((minGain:ba.sAndH(trig)-prevGain))<0
, 0
, select2(trig
, ((prevIndex-1) :max(0))
, lookahead(LA)));
direction =
select2(trig
, (minGain:ba.sAndH(trig)-prevGain) / ((prevIndex):max(1))
, (minGain-prevGain)/(lookahead(LA)+1)) ;
trig = (proposedDirection<=(prevDir));
proposedDirection = (dif/(lookahead(LA)+1)) ;
prevDir = prevGain-prevGain';
dif = minGain-prevGain;
};
};
sequentialMinimumParOutDelayed(N) =
sequentialOperatorParOut(N,min)
: par(i, N+1, _@( 1<<N - 1<<i ));
sequentialMinimumParOut(N) =
sequentialOperatorParOut(N,min);
sequentialOperatorParOut(N,op) =
seq(i, N, operator(i))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(_,_@(1<<i) )
)
;
};
sequentialBlockMinimumParOut(N,maxBlock,x,blockSize) =
sequentialBlockOperatorParOut(N,min,ma.INFINITY,maxBlock,x,blockSize);
sequentialBlockOperatorParOut(N,op,disabledVal,maxBlock,x,blockSize) =
x:seq(i, N, operator(i))
with {
operator(i) =
myBus(i)
,
(_<:
_ , op(
slidingReduce(op,blockSize,maxBlock,disabledVal)
)
)
;
};
paramArray(bottom,mid,band,top,LA) =
par(i, LA, select2(band<=i+1,midToBottomVal(i),midToTopVal(i)))
with {
midToBottomVal(i) = (midToBottom(i)*bottom) + (((midToBottom(i)*-1)+1)*mid);
midToBottom(i) = (band-(i+1))/(band-1);
midToTopVal(i) = (midToTop(i)*top) + (((midToTop(i)*-1)+1)*mid);
midToTop(i) = (i+1-band)/((LA+1)-band);
};
opOfN(N,op) = seq(i, N-1, op,myBus(N-i-2));
minOfN(1) = _;
minOfN(N) = opOfN(N,min);
maxOfN(N) = opOfN(N,max);
find_Nmin(1) = _,_;
find_Nmin(2) = Ncomparator;
find_Nmin(N) = seq(i,N-2, (Ncomparator,si.bus(2*(N-i-2)))) : Ncomparator;
lookahead(LA) = (1<<LA)-1;
myBus(0) =
0:!
;
myBus(i) = si.bus(i);
attackArray(LA) =
paramArray(1.4,0,attack2band(LA+1) ,0,LA+1)
: (par(i, LA, min(1)),!)
;
attack2band(LA) = 1+(attack*(LA-1)):max(1);
testSig(LA) =
no.lfnoise0(lookahead(LA) *t * (no.lfnoise0(lookahead(LA)/2):max(0.1) )):pow(3)
*(1-noiseLVL) +(no.lfnoise(rate):pow(3) *noiseLVL):min(0);
t= hslider("[7]time", 1, 0.01, 4, 0.01):pow(2);
noiseLVL = hslider("[8]noise level", 0.0, 0, 1, 0.01);
rate = hslider("[9]rate [scale:log]", 420, 10, 10000, 1);
LPfreq = hslider("[10]LPfreq [scale:log]", 420, 10, 10000, 1);
slidingReduce(op,N,0,disabledVal) = _;
slidingReduce(op,N,maxN,disabledVal) =
sequentialOperatorParOut(maxNrBits(maxN+1)-1,op)
:
par(i,maxNrBits(maxN+1)
, _@sumOfPrevBlockSizes(i)
: useVal(i)
) : combine(maxNrBits(maxN+1))
with {
sumOfPrevBlockSizes(0) = 0;
sumOfPrevBlockSizes(i) = (ba.subseq((allBlockSizes),0,i):>_);
allBlockSizes = par(i, maxNrBits(maxN), (pow2(i)) * isUsed(i));
maxNrBits(n) = int2nrOfBits(n);
combine(2) = op;
combine(N) = op(combine(N-1),_);
useVal(i) =
select2(isUsed(i), disabledVal, _)
;
isUsed(i) = ba.take(i+1, (int2bin(N+1,maxN*2+1)));
pow2(i) = 1<<i;
int2bin(N,maxN) = par(j, maxNrBits(maxN), int(floor((N)/(pow2(j))))%2);
int2nrOfBits(N) = int(floor(log(N)/log(2))+1);
};
slidingMin(n,maxn) = slidingReduce(min,n,maxn,ma.INFINITY);
slidingMax(n,maxn) = slidingReduce(max,n,maxn,0-ma.INFINITY);
|
689060dc257ab993baf10d35d50d5cffdf788237208e862e6a8ea0db3142db43
|
magnetophon/faustOscillators
|
CZ.dsp
|
declare author "Bart Brouns";
declare license "GPLv3";
declare name "CZoscs";
import("stdfaust.lib");
process =
full<:(_,_);
// basic ,medium full;
// "basic" is an almost normal CZ oscillator.
// I did a PR for it to faustlibraries, but for convenience, I pasted the code below,
// from the line marked with "Casio CZ Oscillators"
// It is documented more thoroughly there, but basically, it has the following changes:
// - it is phase alligned to a master oscillator called "fund"
// - it's anti-aliased by decreasing the index at higher frequencies.
basic =
fund(freq,phase,reset)
: basicCZosc(oscType,index,res);
// Like basic, but adds a filter between the master oscillator and the CZ oscillator.
medium =
fund(freq,phase,reset)
: prefilterCZosc(oscType,filterType,filterFreq,filterQ,index,res);
// Like medium, but can crossfade between octaves
full =
fund(freq*minOctMult,phase,reset)
: prefilterOctaveCZosc(oscType,filterType,filterFreq,filterQ,index,res,oct) ;
basicCZosc(oscType,index,res,fund) =
(fund,index,res)
: oscillatorChooser(oscType);
prefilterCZosc(oscType,filterType,filterFreq,filterQ,index,res,fund) =
fund
: filterChooser(filterType,filterFreq,filterQ)
: basicCZosc(oscType,index,res);
prefilterOctaveCZosc(oscType,filterType,filterFreq,filterQ,index,res,oct,fund) =
fund
:oscOctaver
( oct
, prefilterCZosc(oscType,filterType,filterFreq,filterQ,index,res));
fund(freq,phase,reset) = lf_sawpos_phase_reset(freq,phase,reset);
oscillatorChooser(oscType,fund,index,res) =
chooseOne(allOscsParallel(fund,index,res),oscType);
filterChooser(filterType,filterFreq,filterQ) =
_<:chooseOne(allFiltersParallel(filterFreq,filterQ),filterType);
chooseOne(proc,N) = // choose the Nth processor out of a list of processors with one output each
proc
// : par(i, maxN, control(i==clampedN)*(i==clampedN)):>_ // only actually run one of the procs
: par(i, maxN, _ *(i==clampedN)):>_ // run them all, but mute all but one
with {
clampedN = int(min(N,maxN-1));
maxN = outputs(proc);
};
allFiltersParallel(f,q) =
_
, svf.lp(f,q)
, svf.bp(f,q)
, svf.hp(f,q)
, svf.notch(f,q)
, svf.peak(f,q)
, svf.ap(f,q);
allOscsParallel(fund,index,res) =
sineNoise(fund,index)
, CZsawPAA(fund, index)
, CZsquarePAA(fund, index)
, CZpulsePAA(fund, index)
, CZsinePulsePAA(fund, index)
, CZhalfSinePAA(fund, index)
, CZresSawAA(fund,res)
, CZresTriangleAA(fund,res)
, CZresTrapAA(fund, res);
oscOctaver(oct,oscil,fund) =
(
(f0:oscil)
,(f1:oscil)
):si.interpolate(oct:abs%1)
with {
f0 = (fund+phaseM(oct0):ma.frac):octaveSwitcher(oct0);
f1 = (fund+phaseM(oct1):ma.frac):octaveSwitcher(oct1);
oct0 = oct:floor+((oct<0) & (oct!=(oct:floor)));
oct1 = oct:floor+(oct>0);
octaveSwitcher(oct) = _*(octaveMultiplier(oct)/minOctMult)%1;
phaseM(oct) = phase*octMult(oct);
octMult(oct)=
octaveMultiplier(minOct)/(1/pow(2,oct*-1));
};
octaveMultiplier =
int<:
(
(_ <0) / pow(2,abs),
(_==0),
(_ >0) * pow(2,_)
):>_;
minOctMult = minOct:octaveMultiplier;
// When index is 0, you hear a sine, just like with all the other oscillators.
// When index is between 0 and 0.5, it smoothly morphs into band-pass noise at the freq of the oscillator.
// When index is between 0.5 and 1, it crossfades into low-pass noise.
sineNoise(fund,index) =
it.interpolate_linear
( (index*2:max(1)-1)
, (fund*2*ma.PI:sin*(it.interpolate_linear(index*2:min(1),1,lfnoiseF(fund))))
, lfnoiseF(fund)
)
with {
index2freq(i) = ((i-i')*ma.SR) : ba.sAndH(abs(i-i')<0.5):int :max(20):min(ma.SR*.5);
NF = index2freq(fund) :int :max(20):min(ma.SR*.25);
lfnoise0F(fund) = no.noise : ba.latch((fund:ma.decimal)<0.5);
lfnoiseNF(N,fund) = lfnoise0F(fund) : fi.lowpass(N,index2freq(fund) ); // Nth-order Butterworth lowpass
lfnoiseF(fund) = lfnoise0F(fund) : seq(i,5,fi.lowpass(1,index2freq(fund))); // non-overshooting lowpass
};
// params:
// osc type
// filter type
// filter freq
// filter q
// osc index
// osc res
// osc octave
// osc phase
//
//
// TODO:
// fix click in oct
//PR sineNoise, credit/ask?
// include subSynth?
// make brightness vs index correction, maybe PR
///////////////////////////////////////////////////////////////////////////////
// GUI //
///////////////////////////////////////////////////////////////////////////////
// type = hslider("type[scale:int][style:menu{'Sine-Noise':0;'Sawtooth':1;'Square':2;'Pulse':3;'Sine-Pulse':4;'Half Sine':5;'Resonant Saw':6;'Resonant Tri':7;'Resonant Trap':8}]", 2, 0, 8, 1);
oscType = hslider("[0] oscillator type[scale:int][style:menu{'Sine-Noise':0;'Sawtooth':1;'Square':2;'Pulse':3;'Sine-Pulse':4;'Half Sine':5;'Resonant Saw':6;'Resonant Tri':7;'Resonant Trap':8}]", 2, 0, 8, 1);
filterType = hslider("[1] filter type[scale:int]
[style:menu
{
'none':0;
'lp':1;
'bp':2;
'hp':3;
'notch':4;
'peak':5;
'ap':6
}
]", 0, 0, 6, 1);
filterFreq = hslider("[2] filter freq[scale:log]", 24000, 20, 24000, 1) :si.smoo;
filterQ = hslider("[3] filter Q", 1, 0.001, 10, 0.001) :si.smoo;
// an osc has either index or res, never both, so using the same [number] is OK
index = hslider("[4] index", 0, 0, 1, stepsize) :si.smoo;
res = hslider("[4] res", 0, 0, 64, stepsize) :si.smoo;
oct = hslider("[5] octave", 0, minOct, maxOct, stepsize) :si.smoo;
phase = hslider("[6] phase", 0, -64, 64, stepsize) :si.smoo;
freq = hslider("[7]freq", 440, 20, 24000, 1) :si.smoo;
reset = button("[8]reset oscillator");
///////////////////////////////////////////////////////////////////////////////
// constants //
///////////////////////////////////////////////////////////////////////////////
minOct = -8;
maxOct = 4;
// fast
// stepsize = 0.1;
// medium
stepsize = 0.01;
// smooth
// stepsize = 0.001;
///////////////////////////////////////////////////////////////////////////////
// not yet in my version of faust, but merged in master: //
///////////////////////////////////////////////////////////////////////////////
lf_sawpos_phase_reset(freq,phase,reset) = lf_sawpos_reset(freq,reset) + phase : ma.frac;
lf_sawpos_reset(freq,reset) = ma.frac * (reset == 0) ~ +(freq/ma.SR);
declare svf author "Oleg Nesterov";
declare svf copyright "Copyright (C) 2020 Oleg Nesterov <[email protected]>";
declare svf license "MIT-style STK-4.3 license";
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G/40.0);
g = tan(F * ma.PI/ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
// External API
lp(f,q) = svf(0, f, q, 0);
bp(f,q) = svf(1, f, q, 0);
hp(f,q) = svf(2, f, q, 0);
notch(f,q) = svf(3, f, q, 0);
peak(f,q) = svf(4, f, q, 0);
ap(f,q) = svf(5, f, q, 0);
bell(f,q,g) = svf(6, f, q, g);
ls(f,q,g) = svf(7, f, q, g);
hs(f,q,g) = svf(8, f, q, g);
};
///////////////////////////////////////////////////////////////////////////////
// https://github.com/grame-cncm/faustlibraries/pull/64 //
// CZ Oscillators: add anti-aliased versions //
///////////////////////////////////////////////////////////////////////////////
//===================== Casio CZ Oscillators ==========================
// Oscillators that mimic some of the Casio CZ oscillators.
//
// There are two sets:
// - A set with an index parameter
// - A set with a res parameter
//
// The "index oscillators" output a sine wave at index=0 and gets brighter with a higher index.
// There are two versions of the "index oscillators":
// - with P appended to the name: is phase aligned with 'fund:sin'
// - without P appended to the name: has the phase of the original CZ oscillators
//
// The "res oscillators" have a resonant frequency.
// "res" is the frequency of resonance as a factor of the fundamental pitch.
//
// All oscillators also have an anti-aliased version, marked with AA
//=====================================================================
//----------`(os.)CZsaw`----------
// Oscillator that mimics the Casio CZ saw oscillator
// `CZsaw` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsaw(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsaw(fund, index) = CZ.saw(fund, index);
//----------`(os.)CZsawAA`----------
// Oscillator that mimics the Casio CZ saw oscillator,
// anti-aliased by decreasing the index at higher frequencies.
// `CZsawAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsawAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsawAA(fund, index) = CZ.sawAA(fund, index);
//----------`(os.)CZsawP`----------
// Oscillator that mimics the Casio CZ saw oscillator,
// with it's phase aligned to `fund:sin`.
// `CZsawP` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsawP(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsawP(fund, index) = CZ.sawP(fund, index);
//----------`(os.)CZsawPAA`----------
// Oscillator that mimics the Casio CZ saw oscillator,
// with it's phase aligned to `fund:sin`,
// anti-aliased by decreasing the index at higher frequencies.
// `CZsawPAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsawPAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsawPAA(fund, index) = CZ.sawPAA(fund, index);
//----------`(os.)CZsquare`----------
// Oscillator that mimics the Casio CZ square oscillator
// `CZsquare` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsquare(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsquare(fund, index) = CZ.square(fund, index);
//----------`(os.)CZsquareAA`----------
// Oscillator that mimics the Casio CZ square oscillator,
// anti-aliased by decreasing the index at higher frequencies.
// `CZsquareAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsquareAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsquareAA(fund, index) = CZ.squareAA(fund, index);
//----------`(os.)CZsquareP`----------
// Oscillator that mimics the Casio CZ square oscillator,
// with it's phase aligned to `fund:sin`.
// `CZsquareP` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsquareP(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsquareP(fund, index) = CZ.squareP(fund, index);
//----------`(os.)CZsquarePAA`----------
// Oscillator that mimics the Casio CZ square oscillator,
// with it's phase aligned to `fund:sin`,
// anti-aliased by decreasing the index at higher frequencies.
// `CZsquarePAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsquarePAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsquarePAA(fund, index) = CZ.squarePAA(fund, index);
//----------`(os.)CZpulse`----------
// Oscillator that mimics the Casio CZ pulse oscillator
// `CZpulse` is a standard Faust function.
//
// #### Usage
//
// ```
// CZpulse(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZpulse(fund, index) = CZ.pulse(fund, index);
//----------`(os.)CZpulseAA`----------
// Oscillator that mimics the Casio CZ pulse oscillator,
// anti-aliased by decreasing the index at higher frequencies.
// `CZpulseAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZpulseAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZpulseAA(fund, index) = CZ.pulseAA(fund, index);
//----------`(os.)CZpulseP`----------
// Oscillator that mimics the Casio CZ pulse oscillator,
// with it's phase aligned to `fund:sin`.
// `CZpulseP` is a standard Faust function.
//
// #### Usage
//
// ```
// CZpulseP(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZpulseP(fund, index) = CZ.pulseP(fund, index);
//----------`(os.)CZpulsePAA`----------
// Oscillator that mimics the Casio CZ pulse oscillator,
// with it's phase aligned to `fund:sin`,
// anti-aliased by decreasing the index at higher frequencies.
// `CZpulsePAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZpulsePAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZpulsePAA(fund, index) = CZ.pulsePAA(fund, index);
//----------`(os.)CZsinePulse`----------
// Oscillator that mimics the Casio CZ sine/pulse oscillator
// `CZsinePulse` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsinePulse(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsinePulse(fund, index) = CZ.sinePulse(fund, index);
//----------`(os.)CZsinePulseAA`----------
// Oscillator that mimics the Casio CZ sine/pulse oscillator,
// anti-aliased by decreasing the index at higher frequencies.
// `CZsinePulseAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsinePulseAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsinePulseAA(fund, index) = CZ.sinePulseAA(fund, index);
//----------`(os.)CZsinePulseP`----------
// Oscillator that mimics the Casio CZ sine/pulse oscillator,
// with it's phase aligned to `fund:sin`.
// `CZsinePulseP` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsinePulseP(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsinePulseP(fund, index) = CZ.sinePulseP(fund, index);
//----------`(os.)CZsinePulsePAA`----------
// Oscillator that mimics the Casio CZ sine/pulse oscillator,
// with it's phase aligned to `fund:sin`,
// anti-aliased by decreasing the index at higher frequencies.
// `CZsinePulsePAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZsinePulsePAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZsinePulsePAA(fund, index) = CZ.sinePulsePAA(fund, index);
//----------`(os.)CZhalfSine`----------
// Oscillator that mimics the Casio CZ half sine oscillator
// `CZhalfSine` is a standard Faust function.
//
// #### Usage
//
// ```
// CZhalfSine(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZhalfSine(fund, index) = CZ.halfSine(fund, index);
//----------`(os.)CZhalfSineAA`----------
// Oscillator that mimics the Casio CZ half sine oscillator,
// anti-aliased by decreasing the index at higher frequencies.
// `CZhalfSineAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZhalfSineAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZhalfSineAA(fund, index) = CZ.halfSineAA(fund, index);
//----------`(os.)CZhalfSineP`----------
// Oscillator that mimics the Casio CZ half sine oscillator,
// with it's phase aligned to `fund:sin`.
// `CZhalfSineP` is a standard Faust function.
//
// #### Usage
//
// ```
// CZhalfSineP(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZhalfSineP(fund, index) = CZ.halfSineP(fund, index);
//----------`(os.)CZhalfSinePAA`----------
// Oscillator that mimics the Casio CZ half sine oscillator,
// with it's phase aligned to `fund:sin`,
// anti-aliased by decreasing the index at higher frequencies.
// `CZhalfSinePAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZhalfSinePAA(fund,index) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZhalfSinePAA(fund, index) = CZ.halfSinePAA(fund, index);
//----------`(os.)CZresSaw`----------
// Oscillator that mimics the Casio CZ resonant saw-tooth oscillator
// `CZresSaw` is a standard Faust function.
//
// #### Usage
//
// ```
// CZresSaw(fund,res) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `res`: the frequency of resonance as a factor of the fundamental pitch.
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZresSaw(fund,res) = CZ.resSaw(fund,res);
//----------`(os.)CZresSawAA`----------
// Oscillator that mimics the Casio CZ resonant saw-tooth oscillator,
// anti-aliased by decreasing the resonance at higher frequencies.
// `CZresSawAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZresSawAA(fund,res) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `res`: the frequency of resonance as a factor of the fundamental pitch.
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZresSawAA(fund,res) = CZ.resSawAA(fund,res);
//----------`(os.)CZresTriangle`----------
// Oscillator that mimics the Casio CZ resonant triangle oscillator
// `CZresTriangle` is a standard Faust function.
//
// #### Usage
//
// ```
// CZresTriangle(fund,res) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `res`: the frequency of resonance as a factor of the fundamental pitch.
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZresTriangle(fund,res) = CZ.resTriangle(fund,res);
//----------`(os.)CZresTriangleAA`----------
// Oscillator that mimics the Casio CZ resonant triangle oscillator,
// anti-aliased by decreasing the resonance at higher frequencies.
// `CZresTriangleAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZresTriangleAA(fund,res) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `res`: the frequency of resonance as a factor of the fundamental pitch.
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZresTriangleAA(fund,res) = CZ.resTriangleAA(fund,res);
//----------`(os.)CZresTrap`----------
// Oscillator that mimics the Casio CZ resonant trapeze oscillator
// `CZresTrap` is a standard Faust function.
//
// #### Usage
//
// ```
// CZresTrap(fund,res) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `res`: the frequency of resonance as a factor of the fundamental pitch.
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZresTrap(fund, res) = CZ.resTrap(fund, res);
//----------`(os.)CZresTrapAA`----------
// Oscillator that mimics the Casio CZ resonant trapeze oscillator,
// anti-aliased by decreasing the resonance at higher frequencies.
// `CZresTrapAA` is a standard Faust function.
//
// #### Usage
//
// ```
// CZresTrapAA(fund,res) : _
// ```
//
// Where:
//
// * `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
// * `res`: the frequency of resonance as a factor of the fundamental pitch.
//------------------------------------------------------------
// Author: Bart Brouns
// License: GPLv3
// CZ oscillators by Mike Moser-Booth:
// <https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
// Ported from pd to Faust by Bart Brouns
CZresTrapAA(fund, res) = CZ.resTrapAA(fund, res);
CZ = environment {
saw(fund, index) = sawChooseP(fund, index, 0);
sawP(fund, index) = sawChooseP(fund, index, 1);
sawAA(fund, index) = saw(fund, indexAA(fund, index));
sawPAA(fund, index) = sawP(fund, indexAA(fund, index));
sawChooseP(fund, index, p) =
(((FUND(fund,align,p)*((.5-INDEX)/INDEX)),(-1*FUND(fund,align,p)+1)*((.5-INDEX)/(1-INDEX))):min+FUND(fund,align,p))*2*ma.PI:cos
with {
INDEX = (.5-(index*.5)):max(0.01):min(0.5);
align = si.interpolate(index, 0.75, 0.5);
};
square(fund, index) = squareChooseP(fund, index, 0);
squareP(fund, index) = squareChooseP(fund, index, 1);
squareAA(fund, index) = square(fund, indexAA(fund, index));
squarePAA(fund, index) = squareP(fund, indexAA(fund, index));
squareChooseP(fund, index, p) = (FUND(fund,align,p)>=0.5), (ma.decimal((FUND(fund,align,p)*2)+1)<:_-min(_,(-1*_+1)*((INDEX)/(1-INDEX)))) :+ *ma.PI:cos
with {
INDEX = (index:pow(0.25)):max(0):min(1);
align = si.interpolate(INDEX, -0.25, 0);
};
pulse(fund, index) = pulseChooseP(fund, index, 0);
pulseP(fund, index) = pulseChooseP(fund, index, 1);
pulseAA(fund, index) = pulse(fund, indexAA(fund, index));
pulsePAA(fund, index) = pulseP(fund, indexAA(fund, index));
pulseChooseP(fund, index, p) = ((FUND(fund,align,p)-min(FUND(fund,align,p),((-1*FUND(fund,align,p)+1)*(INDEX/(1-INDEX)))))*2*ma.PI):cos
with {
INDEX = index:min(0.99):max(0);
align = si.interpolate(index, -0.25, 0.0);
};
sinePulse(fund, index) = sinePulseChooseP(fund, index, 0);
sinePulseP(fund, index) = sinePulseChooseP(fund, index, 1);
sinePulseAA(fund, index) = sinePulse(fund, indexAA(fund, index));
sinePulsePAA(fund, index) = sinePulseP(fund, indexAA(fund, index));
sinePulseChooseP(fund, index, p) = (min(FUND(fund,align,p)*((0.5-INDEX)/INDEX),(-1*FUND(fund,align,p)+1)*((.5-INDEX)/(1-INDEX)))+FUND(fund,align,p))*4*ma.PI:cos
with {
INDEX = ((index*-0.49)+0.5);
align = si.interpolate(index, -0.125, -0.25);
};
halfSine(fund, index) = halfSineChooseP(fund, index, 0);
halfSineP(fund, index) = halfSineChooseP(fund, index, 1);
halfSineAA(fund, index) = halfSine(fund, indexAA(fund, index));
halfSinePAA(fund, index) = halfSineP(fund, indexAA(fund, index));
halfSineChooseP(fund, index, p) = (select2(FUND(fund,align,p)<.5, .5*(FUND(fund,align,p)-.5)/INDEX+.5, FUND(fund,align,p)):min(1))*2*ma.PI:cos
with {
INDEX = (.5-(index*0.5)):min(.5):max(.01);
align = si.interpolate(index:min(0.975), -0.25, -0.5);
};
FUND =
case {
(fund,align,0) => fund;
(fund,align,1) => (fund+align) : ma.frac; // align phase with fund
};
resSaw(fund,res) = (((-1*(1-fund))*((cos((ma.decimal((max(1,res)*fund)+1))*2*ma.PI)*-.5)+.5))*2)+1;
resSawAA(fund, res) = resSaw(fund, resAA(fund, res));
resTriangle(fund, res) = select2(fund<.5, 2-(fund*2), fund*2)*RES*2-1
with {
RES = ((fund*(res:max(1)))+1:ma.decimal)*2*ma.PI:cos*.5+.5;
};
resTriangleAA(fund, res) = resTriangle(fund, resAA(fund, res));
resTrap(fund, res) = (((1-fund)*2):min(1)*sin(ma.decimal(fund*(res:max(1)))*2*ma.PI));
resTrapAA(fund, res) = resTrap(fund,resAA(fund, res));
fund2freq(fund) = ((fund-fund')*ma.SR) : ba.sAndH(abs(fund-fund')<0.5);
indexAA(fund,index) = // Anti Alias => lower the index for higher freqs
index*(1-
(( (fund2freq(fund)-(ma.SR/256))
/ (ma.SR/8))
:max(0):min(1)
));
resAA(fund,res) = res*fund2freq(fund):max(0):min(ma.SR/4)/fund2freq(fund);
};
|
https://raw.githubusercontent.com/magnetophon/faustOscillators/6ac2ac572f8a3dc78cc6cb0074d60cce10845300/CZ.dsp
|
faust
|
basic ,medium full;
"basic" is an almost normal CZ oscillator.
I did a PR for it to faustlibraries, but for convenience, I pasted the code below,
from the line marked with "Casio CZ Oscillators"
It is documented more thoroughly there, but basically, it has the following changes:
- it is phase alligned to a master oscillator called "fund"
- it's anti-aliased by decreasing the index at higher frequencies.
Like basic, but adds a filter between the master oscillator and the CZ oscillator.
Like medium, but can crossfade between octaves
choose the Nth processor out of a list of processors with one output each
: par(i, maxN, control(i==clampedN)*(i==clampedN)):>_ // only actually run one of the procs
run them all, but mute all but one
When index is 0, you hear a sine, just like with all the other oscillators.
When index is between 0 and 0.5, it smoothly morphs into band-pass noise at the freq of the oscillator.
When index is between 0.5 and 1, it crossfades into low-pass noise.
Nth-order Butterworth lowpass
non-overshooting lowpass
params:
osc type
filter type
filter freq
filter q
osc index
osc res
osc octave
osc phase
TODO:
fix click in oct
PR sineNoise, credit/ask?
include subSynth?
make brightness vs index correction, maybe PR
/////////////////////////////////////////////////////////////////////////////
GUI //
/////////////////////////////////////////////////////////////////////////////
type = hslider("type[scale:int][style:menu{'Sine-Noise':0;'Sawtooth':1;'Square':2;'Pulse':3;'Sine-Pulse':4;'Half Sine':5;'Resonant Saw':6;'Resonant Tri':7;'Resonant Trap':8}]", 2, 0, 8, 1);
an osc has either index or res, never both, so using the same [number] is OK
/////////////////////////////////////////////////////////////////////////////
constants //
/////////////////////////////////////////////////////////////////////////////
fast
stepsize = 0.1;
medium
smooth
stepsize = 0.001;
/////////////////////////////////////////////////////////////////////////////
not yet in my version of faust, but merged in master: //
/////////////////////////////////////////////////////////////////////////////
External API
/////////////////////////////////////////////////////////////////////////////
https://github.com/grame-cncm/faustlibraries/pull/64 //
CZ Oscillators: add anti-aliased versions //
/////////////////////////////////////////////////////////////////////////////
===================== Casio CZ Oscillators ==========================
Oscillators that mimic some of the Casio CZ oscillators.
There are two sets:
- A set with an index parameter
- A set with a res parameter
The "index oscillators" output a sine wave at index=0 and gets brighter with a higher index.
There are two versions of the "index oscillators":
- with P appended to the name: is phase aligned with 'fund:sin'
- without P appended to the name: has the phase of the original CZ oscillators
The "res oscillators" have a resonant frequency.
"res" is the frequency of resonance as a factor of the fundamental pitch.
All oscillators also have an anti-aliased version, marked with AA
=====================================================================
----------`(os.)CZsaw`----------
Oscillator that mimics the Casio CZ saw oscillator
`CZsaw` is a standard Faust function.
#### Usage
```
CZsaw(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsawAA`----------
Oscillator that mimics the Casio CZ saw oscillator,
anti-aliased by decreasing the index at higher frequencies.
`CZsawAA` is a standard Faust function.
#### Usage
```
CZsawAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsawP`----------
Oscillator that mimics the Casio CZ saw oscillator,
with it's phase aligned to `fund:sin`.
`CZsawP` is a standard Faust function.
#### Usage
```
CZsawP(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsawPAA`----------
Oscillator that mimics the Casio CZ saw oscillator,
with it's phase aligned to `fund:sin`,
anti-aliased by decreasing the index at higher frequencies.
`CZsawPAA` is a standard Faust function.
#### Usage
```
CZsawPAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = saw-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsquare`----------
Oscillator that mimics the Casio CZ square oscillator
`CZsquare` is a standard Faust function.
#### Usage
```
CZsquare(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsquareAA`----------
Oscillator that mimics the Casio CZ square oscillator,
anti-aliased by decreasing the index at higher frequencies.
`CZsquareAA` is a standard Faust function.
#### Usage
```
CZsquareAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsquareP`----------
Oscillator that mimics the Casio CZ square oscillator,
with it's phase aligned to `fund:sin`.
`CZsquareP` is a standard Faust function.
#### Usage
```
CZsquareP(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsquarePAA`----------
Oscillator that mimics the Casio CZ square oscillator,
with it's phase aligned to `fund:sin`,
anti-aliased by decreasing the index at higher frequencies.
`CZsquarePAA` is a standard Faust function.
#### Usage
```
CZsquarePAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 to 1. 0 = sine-wave, 1 = square-wave
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZpulse`----------
Oscillator that mimics the Casio CZ pulse oscillator
`CZpulse` is a standard Faust function.
#### Usage
```
CZpulse(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZpulseAA`----------
Oscillator that mimics the Casio CZ pulse oscillator,
anti-aliased by decreasing the index at higher frequencies.
`CZpulseAA` is a standard Faust function.
#### Usage
```
CZpulseAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZpulseP`----------
Oscillator that mimics the Casio CZ pulse oscillator,
with it's phase aligned to `fund:sin`.
`CZpulseP` is a standard Faust function.
#### Usage
```
CZpulseP(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZpulsePAA`----------
Oscillator that mimics the Casio CZ pulse oscillator,
with it's phase aligned to `fund:sin`,
anti-aliased by decreasing the index at higher frequencies.
`CZpulsePAA` is a standard Faust function.
#### Usage
```
CZpulsePAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is closer to a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsinePulse`----------
Oscillator that mimics the Casio CZ sine/pulse oscillator
`CZsinePulse` is a standard Faust function.
#### Usage
```
CZsinePulse(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsinePulseAA`----------
Oscillator that mimics the Casio CZ sine/pulse oscillator,
anti-aliased by decreasing the index at higher frequencies.
`CZsinePulseAA` is a standard Faust function.
#### Usage
```
CZsinePulseAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsinePulseP`----------
Oscillator that mimics the Casio CZ sine/pulse oscillator,
with it's phase aligned to `fund:sin`.
`CZsinePulseP` is a standard Faust function.
#### Usage
```
CZsinePulseP(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZsinePulsePAA`----------
Oscillator that mimics the Casio CZ sine/pulse oscillator,
with it's phase aligned to `fund:sin`,
anti-aliased by decreasing the index at higher frequencies.
`CZsinePulsePAA` is a standard Faust function.
#### Usage
```
CZsinePulsePAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is a sine minus a pulse
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZhalfSine`----------
Oscillator that mimics the Casio CZ half sine oscillator
`CZhalfSine` is a standard Faust function.
#### Usage
```
CZhalfSine(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZhalfSineAA`----------
Oscillator that mimics the Casio CZ half sine oscillator,
anti-aliased by decreasing the index at higher frequencies.
`CZhalfSineAA` is a standard Faust function.
#### Usage
```
CZhalfSineAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZhalfSineP`----------
Oscillator that mimics the Casio CZ half sine oscillator,
with it's phase aligned to `fund:sin`.
`CZhalfSineP` is a standard Faust function.
#### Usage
```
CZhalfSineP(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZhalfSinePAA`----------
Oscillator that mimics the Casio CZ half sine oscillator,
with it's phase aligned to `fund:sin`,
anti-aliased by decreasing the index at higher frequencies.
`CZhalfSinePAA` is a standard Faust function.
#### Usage
```
CZhalfSinePAA(fund,index) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `index`: the brightness of the oscillator, 0 gives a sine-wave, 1 is somewhere between a saw and a square
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZresSaw`----------
Oscillator that mimics the Casio CZ resonant saw-tooth oscillator
`CZresSaw` is a standard Faust function.
#### Usage
```
CZresSaw(fund,res) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `res`: the frequency of resonance as a factor of the fundamental pitch.
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZresSawAA`----------
Oscillator that mimics the Casio CZ resonant saw-tooth oscillator,
anti-aliased by decreasing the resonance at higher frequencies.
`CZresSawAA` is a standard Faust function.
#### Usage
```
CZresSawAA(fund,res) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `res`: the frequency of resonance as a factor of the fundamental pitch.
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZresTriangle`----------
Oscillator that mimics the Casio CZ resonant triangle oscillator
`CZresTriangle` is a standard Faust function.
#### Usage
```
CZresTriangle(fund,res) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `res`: the frequency of resonance as a factor of the fundamental pitch.
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZresTriangleAA`----------
Oscillator that mimics the Casio CZ resonant triangle oscillator,
anti-aliased by decreasing the resonance at higher frequencies.
`CZresTriangleAA` is a standard Faust function.
#### Usage
```
CZresTriangleAA(fund,res) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `res`: the frequency of resonance as a factor of the fundamental pitch.
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZresTrap`----------
Oscillator that mimics the Casio CZ resonant trapeze oscillator
`CZresTrap` is a standard Faust function.
#### Usage
```
CZresTrap(fund,res) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `res`: the frequency of resonance as a factor of the fundamental pitch.
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
----------`(os.)CZresTrapAA`----------
Oscillator that mimics the Casio CZ resonant trapeze oscillator,
anti-aliased by decreasing the resonance at higher frequencies.
`CZresTrapAA` is a standard Faust function.
#### Usage
```
CZresTrapAA(fund,res) : _
```
Where:
* `fund`: a saw-tooth waveform between 0 and 1 that the oscillator slaves to
* `res`: the frequency of resonance as a factor of the fundamental pitch.
------------------------------------------------------------
Author: Bart Brouns
License: GPLv3
CZ oscillators by Mike Moser-Booth:
<https://forum.pdpatchrepo.info/topic/5992/casio-cz-oscillators>
Ported from pd to Faust by Bart Brouns
align phase with fund
Anti Alias => lower the index for higher freqs
|
declare author "Bart Brouns";
declare license "GPLv3";
declare name "CZoscs";
import("stdfaust.lib");
process =
full<:(_,_);
basic =
fund(freq,phase,reset)
: basicCZosc(oscType,index,res);
medium =
fund(freq,phase,reset)
: prefilterCZosc(oscType,filterType,filterFreq,filterQ,index,res);
full =
fund(freq*minOctMult,phase,reset)
: prefilterOctaveCZosc(oscType,filterType,filterFreq,filterQ,index,res,oct) ;
basicCZosc(oscType,index,res,fund) =
(fund,index,res)
: oscillatorChooser(oscType);
prefilterCZosc(oscType,filterType,filterFreq,filterQ,index,res,fund) =
fund
: filterChooser(filterType,filterFreq,filterQ)
: basicCZosc(oscType,index,res);
prefilterOctaveCZosc(oscType,filterType,filterFreq,filterQ,index,res,oct,fund) =
fund
:oscOctaver
( oct
, prefilterCZosc(oscType,filterType,filterFreq,filterQ,index,res));
fund(freq,phase,reset) = lf_sawpos_phase_reset(freq,phase,reset);
oscillatorChooser(oscType,fund,index,res) =
chooseOne(allOscsParallel(fund,index,res),oscType);
filterChooser(filterType,filterFreq,filterQ) =
_<:chooseOne(allFiltersParallel(filterFreq,filterQ),filterType);
proc
with {
clampedN = int(min(N,maxN-1));
maxN = outputs(proc);
};
allFiltersParallel(f,q) =
_
, svf.lp(f,q)
, svf.bp(f,q)
, svf.hp(f,q)
, svf.notch(f,q)
, svf.peak(f,q)
, svf.ap(f,q);
allOscsParallel(fund,index,res) =
sineNoise(fund,index)
, CZsawPAA(fund, index)
, CZsquarePAA(fund, index)
, CZpulsePAA(fund, index)
, CZsinePulsePAA(fund, index)
, CZhalfSinePAA(fund, index)
, CZresSawAA(fund,res)
, CZresTriangleAA(fund,res)
, CZresTrapAA(fund, res);
oscOctaver(oct,oscil,fund) =
(
(f0:oscil)
,(f1:oscil)
):si.interpolate(oct:abs%1)
with {
f0 = (fund+phaseM(oct0):ma.frac):octaveSwitcher(oct0);
f1 = (fund+phaseM(oct1):ma.frac):octaveSwitcher(oct1);
oct0 = oct:floor+((oct<0) & (oct!=(oct:floor)));
oct1 = oct:floor+(oct>0);
octaveSwitcher(oct) = _*(octaveMultiplier(oct)/minOctMult)%1;
phaseM(oct) = phase*octMult(oct);
octMult(oct)=
octaveMultiplier(minOct)/(1/pow(2,oct*-1));
};
octaveMultiplier =
int<:
(
(_ <0) / pow(2,abs),
(_==0),
(_ >0) * pow(2,_)
):>_;
minOctMult = minOct:octaveMultiplier;
sineNoise(fund,index) =
it.interpolate_linear
( (index*2:max(1)-1)
, (fund*2*ma.PI:sin*(it.interpolate_linear(index*2:min(1),1,lfnoiseF(fund))))
, lfnoiseF(fund)
)
with {
index2freq(i) = ((i-i')*ma.SR) : ba.sAndH(abs(i-i')<0.5):int :max(20):min(ma.SR*.5);
NF = index2freq(fund) :int :max(20):min(ma.SR*.25);
lfnoise0F(fund) = no.noise : ba.latch((fund:ma.decimal)<0.5);
};
oscType = hslider("[0] oscillator type[scale:int][style:menu{'Sine-Noise':0;'Sawtooth':1;'Square':2;'Pulse':3;'Sine-Pulse':4;'Half Sine':5;'Resonant Saw':6;'Resonant Tri':7;'Resonant Trap':8}]", 2, 0, 8, 1);
filterType = hslider("[1] filter type[scale:int]
[style:menu
{
'none':0;
'lp':1;
'bp':2;
'hp':3;
'notch':4;
'peak':5;
'ap':6
}
]", 0, 0, 6, 1);
filterFreq = hslider("[2] filter freq[scale:log]", 24000, 20, 24000, 1) :si.smoo;
filterQ = hslider("[3] filter Q", 1, 0.001, 10, 0.001) :si.smoo;
index = hslider("[4] index", 0, 0, 1, stepsize) :si.smoo;
res = hslider("[4] res", 0, 0, 64, stepsize) :si.smoo;
oct = hslider("[5] octave", 0, minOct, maxOct, stepsize) :si.smoo;
phase = hslider("[6] phase", 0, -64, 64, stepsize) :si.smoo;
freq = hslider("[7]freq", 440, 20, 24000, 1) :si.smoo;
reset = button("[8]reset oscillator");
minOct = -8;
maxOct = 4;
stepsize = 0.01;
lf_sawpos_phase_reset(freq,phase,reset) = lf_sawpos_reset(freq,reset) + phase : ma.frac;
lf_sawpos_reset(freq,reset) = ma.frac * (reset == 0) ~ +(freq/ma.SR);
declare svf author "Oleg Nesterov";
declare svf copyright "Copyright (C) 2020 Oleg Nesterov <[email protected]>";
declare svf license "MIT-style STK-4.3 license";
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G/40.0);
g = tan(F * ma.PI/ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f, q, 0);
bp(f,q) = svf(1, f, q, 0);
hp(f,q) = svf(2, f, q, 0);
notch(f,q) = svf(3, f, q, 0);
peak(f,q) = svf(4, f, q, 0);
ap(f,q) = svf(5, f, q, 0);
bell(f,q,g) = svf(6, f, q, g);
ls(f,q,g) = svf(7, f, q, g);
hs(f,q,g) = svf(8, f, q, g);
};
CZsaw(fund, index) = CZ.saw(fund, index);
CZsawAA(fund, index) = CZ.sawAA(fund, index);
CZsawP(fund, index) = CZ.sawP(fund, index);
CZsawPAA(fund, index) = CZ.sawPAA(fund, index);
CZsquare(fund, index) = CZ.square(fund, index);
CZsquareAA(fund, index) = CZ.squareAA(fund, index);
CZsquareP(fund, index) = CZ.squareP(fund, index);
CZsquarePAA(fund, index) = CZ.squarePAA(fund, index);
CZpulse(fund, index) = CZ.pulse(fund, index);
CZpulseAA(fund, index) = CZ.pulseAA(fund, index);
CZpulseP(fund, index) = CZ.pulseP(fund, index);
CZpulsePAA(fund, index) = CZ.pulsePAA(fund, index);
CZsinePulse(fund, index) = CZ.sinePulse(fund, index);
CZsinePulseAA(fund, index) = CZ.sinePulseAA(fund, index);
CZsinePulseP(fund, index) = CZ.sinePulseP(fund, index);
CZsinePulsePAA(fund, index) = CZ.sinePulsePAA(fund, index);
CZhalfSine(fund, index) = CZ.halfSine(fund, index);
CZhalfSineAA(fund, index) = CZ.halfSineAA(fund, index);
CZhalfSineP(fund, index) = CZ.halfSineP(fund, index);
CZhalfSinePAA(fund, index) = CZ.halfSinePAA(fund, index);
CZresSaw(fund,res) = CZ.resSaw(fund,res);
CZresSawAA(fund,res) = CZ.resSawAA(fund,res);
CZresTriangle(fund,res) = CZ.resTriangle(fund,res);
CZresTriangleAA(fund,res) = CZ.resTriangleAA(fund,res);
CZresTrap(fund, res) = CZ.resTrap(fund, res);
CZresTrapAA(fund, res) = CZ.resTrapAA(fund, res);
CZ = environment {
saw(fund, index) = sawChooseP(fund, index, 0);
sawP(fund, index) = sawChooseP(fund, index, 1);
sawAA(fund, index) = saw(fund, indexAA(fund, index));
sawPAA(fund, index) = sawP(fund, indexAA(fund, index));
sawChooseP(fund, index, p) =
(((FUND(fund,align,p)*((.5-INDEX)/INDEX)),(-1*FUND(fund,align,p)+1)*((.5-INDEX)/(1-INDEX))):min+FUND(fund,align,p))*2*ma.PI:cos
with {
INDEX = (.5-(index*.5)):max(0.01):min(0.5);
align = si.interpolate(index, 0.75, 0.5);
};
square(fund, index) = squareChooseP(fund, index, 0);
squareP(fund, index) = squareChooseP(fund, index, 1);
squareAA(fund, index) = square(fund, indexAA(fund, index));
squarePAA(fund, index) = squareP(fund, indexAA(fund, index));
squareChooseP(fund, index, p) = (FUND(fund,align,p)>=0.5), (ma.decimal((FUND(fund,align,p)*2)+1)<:_-min(_,(-1*_+1)*((INDEX)/(1-INDEX)))) :+ *ma.PI:cos
with {
INDEX = (index:pow(0.25)):max(0):min(1);
align = si.interpolate(INDEX, -0.25, 0);
};
pulse(fund, index) = pulseChooseP(fund, index, 0);
pulseP(fund, index) = pulseChooseP(fund, index, 1);
pulseAA(fund, index) = pulse(fund, indexAA(fund, index));
pulsePAA(fund, index) = pulseP(fund, indexAA(fund, index));
pulseChooseP(fund, index, p) = ((FUND(fund,align,p)-min(FUND(fund,align,p),((-1*FUND(fund,align,p)+1)*(INDEX/(1-INDEX)))))*2*ma.PI):cos
with {
INDEX = index:min(0.99):max(0);
align = si.interpolate(index, -0.25, 0.0);
};
sinePulse(fund, index) = sinePulseChooseP(fund, index, 0);
sinePulseP(fund, index) = sinePulseChooseP(fund, index, 1);
sinePulseAA(fund, index) = sinePulse(fund, indexAA(fund, index));
sinePulsePAA(fund, index) = sinePulseP(fund, indexAA(fund, index));
sinePulseChooseP(fund, index, p) = (min(FUND(fund,align,p)*((0.5-INDEX)/INDEX),(-1*FUND(fund,align,p)+1)*((.5-INDEX)/(1-INDEX)))+FUND(fund,align,p))*4*ma.PI:cos
with {
INDEX = ((index*-0.49)+0.5);
align = si.interpolate(index, -0.125, -0.25);
};
halfSine(fund, index) = halfSineChooseP(fund, index, 0);
halfSineP(fund, index) = halfSineChooseP(fund, index, 1);
halfSineAA(fund, index) = halfSine(fund, indexAA(fund, index));
halfSinePAA(fund, index) = halfSineP(fund, indexAA(fund, index));
halfSineChooseP(fund, index, p) = (select2(FUND(fund,align,p)<.5, .5*(FUND(fund,align,p)-.5)/INDEX+.5, FUND(fund,align,p)):min(1))*2*ma.PI:cos
with {
INDEX = (.5-(index*0.5)):min(.5):max(.01);
align = si.interpolate(index:min(0.975), -0.25, -0.5);
};
FUND =
case {
(fund,align,0) => fund;
};
resSaw(fund,res) = (((-1*(1-fund))*((cos((ma.decimal((max(1,res)*fund)+1))*2*ma.PI)*-.5)+.5))*2)+1;
resSawAA(fund, res) = resSaw(fund, resAA(fund, res));
resTriangle(fund, res) = select2(fund<.5, 2-(fund*2), fund*2)*RES*2-1
with {
RES = ((fund*(res:max(1)))+1:ma.decimal)*2*ma.PI:cos*.5+.5;
};
resTriangleAA(fund, res) = resTriangle(fund, resAA(fund, res));
resTrap(fund, res) = (((1-fund)*2):min(1)*sin(ma.decimal(fund*(res:max(1)))*2*ma.PI));
resTrapAA(fund, res) = resTrap(fund,resAA(fund, res));
fund2freq(fund) = ((fund-fund')*ma.SR) : ba.sAndH(abs(fund-fund')<0.5);
index*(1-
(( (fund2freq(fund)-(ma.SR/256))
/ (ma.SR/8))
:max(0):min(1)
));
resAA(fund,res) = res*fund2freq(fund):max(0):min(ma.SR/4)/fund2freq(fund);
};
|
52c78efcbaec000b60423d626a3412e3c4a64295cc4fc2796ff7f3e3ccbdd73f
|
magnetophon/faustExperiments
|
lastNote.dsp
|
declare author "Bart Brouns";
declare license "AGPLv3";
declare name "lastNote";
declare options "[midi:on]";
import("stdfaust.lib");
// import("/home/bart/source/edgeofchaos/edgeofchaos.lib");
///////////////////////////////////////////////////////////////////////////////
// give the number of the last note played //
///////////////////////////////////////////////////////////////////////////////
phase = hslider("phase", 0, 0, 1, stepsize);
// traditional faust synth:
// freq = midiGroup(hslider("freq",440,0,24000,0.0001)) :new_smooth( ba.tau2pole(portamento));
// gain = midiGroup(hslider("gain",0.5,0,1,stepsize));
// gate = midiGroup(button("gate"));
// workaround for proper monophonic handling, increases compile-time massively and CPU usage with +/- 5%:
// freq = lastNote:ba.pianokey2hz :new_smooth(ba.tau2pole(portamento));
// freq = lastNote:ba.pianokey2hz :si.smooth(gate' * ba.tau2pole(portamento));
freq(lastNote) = lastNote:ba.pianokey2hz : enabled_smooth(gate(lastNote)' & gate(lastNote) , ba.tau2pole(portamento));
gain(lastNote) = (vel(lastNote)/127); // increases the cpu-usage, from 7% to 11%
gate(lastNote) = gain(lastNote)>0;
// gate = vel(lastNote)>0;
// gain = (nrNotesPlaying>0); // no velocity, 7% cpu
// TODO: why this doesn't work,only gate works.
// from https://github.com/timowest/analogue/blob/master/faust/midi.dsp
// freq = hslider("/h:midi/pitch", 64, 32, 100, 1):ba.pianokey2hz;
// gain = hslider("/h:midi/gain", 1, 0, 1, 0.01);
// gate = button("/h:midi/gate");
///////////////////////////////////////////////////////////////////////////////
// process //
///////////////////////////////////////////////////////////////////////////////
process =
CZsynth;
// envMixer(CZsawGroup,levelGroup,1,oscillatorLevel);
mono = envM*envMidmaster+midAmount;
left = (envM*envMidmaster + envS*envSideMaster) + midAmount + sideAmount;
right = (envM*envMidmaster - envS*envSideMaster) + midAmount - sideAmount;
// envMixer(group,subGroup,0,param,gate,gain) =
// par(j, nrEnvelopes, group(offset(envLevel(subGroup,j)),i), envelope(j,gate,gain))
// :mixer(nrEnvelopes,1,1)
// * group(offset(subGroup(masterGroup(param)),i))
// + group(offset(subGroup(param),i)) ;
envMixer(group,subGroup,i,param,gate,gain) =
((((env(M)*envMaster(M)) , (env(S)*envMaster(S)))) :op(i))
+ ((amount(M), amount(S)) : op(i))
with {
env(MSgroup) = par(j, nrEnvelopes,
(group(MSgroup(envLevel(subGroup,j))):si.smooth(0.999))
, envelope(j,gate,gain))
:mixer(nrEnvelopes,1,1);
envMaster(MSgroup) = group(MSgroup(subGroup(masterGroup(param)))):si.smooth(0.999);
amount(MSgroup) = group(MSgroup(subGroup(param))):si.smooth(0.999);
M = mainGroup;
S = offsetGroup;
op(0) = +;
op(1) = -;
};
OLDenvMixer(group,subGroup,i,param,gate,gain) =
par(j, nrEnvelopes, group(offset(envLevel(subGroup,j)),i), envelope(j,gate,gain))
:mixer(nrEnvelopes,1,1)
* group(offset(subGroup(masterGroup(param)),i))
+ group(offset(subGroup(param),i)) ;
envLevel(subGroup,i) = subGroup(vgroup("[-1]envelope mixer", hslider("envLevel %i", 0, -1, 1, stepsize)));
///////////////////////////////////////////////////////////////////////////////
// GUI //
///////////////////////////////////////////////////////////////////////////////
//groups///////////////////////////////////////////////////////////////////////
tabs(x) = tgroup("CZsynth", x);
oscillatorGroup(x) = tabs(vgroup("[00]oscillators", x));
// envelopeGroup(x) = tabs(vgroup("[01]envelope", x));
envelopeGroup(i,x) = tabs(vgroup("envelopes", hgroup("[%i]envelope %i", x)));
midiGroup(x) = tabs(vgroup("[99]midi", x));
mainGroup(x) = stereoGroup(vgroup("[0]main", x));
offsetGroup(x) = stereoGroup(vgroup("[1]L-R offset", x));
stereoGroup(x) = tgroup("stereo", x);
sineGroup(x) = tabs(hgroup("[0]sine", x));
CZsawGroup(x) = tabs(hgroup("[1]CZ saw", x));
CZsquareGroup(x) = tabs(hgroup("[2]CZ square", x));
CZpulseGroup(x) = tabs(hgroup("[3]CZ pulse", x));
CZsinePulseGroup(x) = tabs(hgroup("[4]CZ sinePulse", x));
CZhalfSineGroup(x) = tabs(hgroup("[5]CZ halfSine", x));
CZresSawGroup(x) = tabs(hgroup("[6]CZ resSaw", x));
CZresTriangleGroup(x) = tabs(hgroup("[7]CZ resTriangle", x));
CZresTrapGroup(x) = tabs(hgroup("[8]CZ resTrap", x));
sawGroup(x) = tabs(hgroup("[9]saw", x));
allpassGroup(x) = preFilterGroup(hgroup("[0]allpass", x));
ms20Group(x) = preFilterGroup(hgroup("[1]ms20", x));
oberheimGroup(x) = preFilterGroup(hgroup("[2]oberheim", x));
normFreqGroup(x) = preFilterGroup(hgroup("[3]freq", x));
QGroup(x) = preFilterGroup(hgroup("[4]Q", x));
levelGroup(x) = oscGroup(hgroup("[0]level", x));
indexGroup(x) = oscGroup(hgroup("[1]index", x));
octGroup(x) = oscGroup(hgroup("[2]oct", x));
oscGroup(x) = hgroup("oscillator",x);
preFilterGroup(x) = hgroup("preFilter",x);
masterGroup(x) = hgroup("master",x);
//sliders//////////////////////////////////////////////////////////////////////
masterPhase = hslider("masterPhase", 0, -1, 1, stepsize) :new_smooth(0.999);
portamento = hslider("portamento[scale:log]", 0, 0, 1, stepsize);
oscillatorLevel = vslider("[0]Level", 0, -1, 1, stepsize);
oscillatorIndex = vslider("[1]index", 0, 0, 1, stepsize);
oscillatorRes = vslider("[1]res", 0, 0, 64, stepsize);
oct = vslider("oct", 0, minOct, maxOct, stepsize);
// sawIndex = sawGroup(oscillatorIndex);
// pulseIndex = pulseGroup(oscillatorIndex);
attack(i) = envelopeGroup(i,hslider("[0]attack", 0, 0, 1, stepsize));
decay(i) = envelopeGroup(i,hslider("[1]decay", 0.1, 0, 1, stepsize));
sustain(i) = envelopeGroup(i,hslider("[2]sustain", 0.8, 0, 1, stepsize));
release(i) = envelopeGroup(i,hslider("[3]release", 0.1, 0, 1, stepsize));
lfo_amount = hslider("lfo amount", 0, 0, 1, stepsize):new_smooth(0.999);
// velocity(i) = midiGroup(select2(i>=0, 0, hslider("velocity of note %i [midi:key %i ]", 0, 0, 127, 1)));
// velocity(-1) = 0;
// velocity(i) = midiGroup(hslider("velocity of note %i [midi:key %i ]", 0, 0, 127, 1));
velocity(i) = VEL(i:max(-1):int) with {
VEL =
case {
(-1) => 0;
(i) => midiGroup(midiTabs(tabNr(i),hslider("velocity of note %i [midi:key %i ]", 0, 0, 127, 1)));
};
midiTabs(tabNr,x) = tgroup("velocity",vgroup("v %tabNr", x));
tabNr(i) = (i/nrTabs):floor;
nrTabs = int((nrNotes+1)/16)+1;
};
// pre-filter /////////////////////////////////////////////////////////////////
LPfreq = hslider("LPfreq[scale:log]", 24000, 20, 24000, 1);
filterBPlevel = vslider("filterBPlevel", 1, 0, 1, stepsize);
allpassLevel = vslider("level", 0, 0, 1, stepsize);
ms20level = vslider("level", 0, 0, 1, stepsize);
oberheimLevel = vslider("level", 0, 0, 1, stepsize);
normFreq = vslider("normFreq", 1, 0, 1, stepsize);
Q = vslider("Q", 1, stepsize, 10, stepsize);
///////////////////////////////////////////////////////////////////////////////
// implementation //
///////////////////////////////////////////////////////////////////////////////
octaver(fund,oscillator,params,oct) =
(
((f0,params):oscillator)
, ((f1,params):oscillator)
// ):it.interpolate_linear(oct:ma.decimal)
):it.interpolate_linear(oct:abs%1)
with {
f0 = fund:octaveSwitcher(oct:floor+((oct<0) & (oct!=(oct:floor))));
f1 = fund:octaveSwitcher(oct:floor+(oct>0));
octaveSwitcher(oct) = _*(octaveMultiplier(oct)/minOctMult)%1;
};
octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,oscillator,params,oct) =
(
((f0:preFilter(allpassLevel,ms20level,oberheimLevel,normFreq,Q),params):oscillator)
, ((f1:preFilter(allpassLevel,ms20level,oberheimLevel,normFreq,Q),params):oscillator)
// ):it.interpolate_linear(oct:ma.decimal)
):it.interpolate_linear(oct:abs%1)
with {
f0 = fund:octaveSwitcher(oct:floor+((oct<0) & (oct!=(oct:floor))));
f1 = fund:octaveSwitcher(oct:floor+(oct>0));
octaveSwitcher(oct) = _*(octaveMultiplier(oct)/minOctMult)%1;
};
octaveMultiplier =
int<:
(
(_ <0) / pow(2,abs),
(_==0),
(_ >0) * pow(2,_)
):>_;
minOctMult = minOct:octaveMultiplier;
smoothDelayedBy(d, s) = *(1.0 - sd) : + ~ *(sd)
with {
sd = s * ((1-1@d) < 1) ;
};
CZsynth = par(i, 2, CZsynthMono(i));
CZsynthMono(i) =
(lastNote<:(master,gate,gain)) :
(si.bus(3)<:si.bus(6)) :
(
(oscillators(i) : filters(i))
, (!,_,_)
)
:(_*envelope(-1));
oscillators(i,fund,gate,gain) =
(
(preFilterParams(i,gate,gain))
,(
(
(fund
<:si.bus(9))
,(CZparams(i,gate,gain))
):(ro.crossnn(9),si.bus(2*9))
)
)
: (ro.crossNM(5*9,9),si.bus(3*9))
: ro.interleave(9,9) //9* osc by 9 params per osc
:
(
(!,sinPOF)
, ((_,CZsawPOF):enableIfVolume)
, ((_,CZsquarePOF):enableIfVolume)
, ((_,CZpulsePOF):enableIfVolume)
, ((_,CZsinePulsePOF):enableIfVolume)
, ((_,CZhalfSinePOF):enableIfVolume)
, ((_,CZresSawOF):enableIfVolume)
, ((_,CZresTriangleOF):enableIfVolume)
, ((_,CZresTrapOF):enableIfVolume)
)
:fallbackMixer(8,1,1)
;
CZparams(i,gate,gain) =
(
0,0,envMixer(sineGroup,octGroup,i,oct,gate,gain) // for routing
, oscParamsI(CZsawGroup,i,gate,gain)
, oscParamsI(CZsquareGroup,i,gate,gain)
, oscParamsI(CZpulseGroup,i,gate,gain)
, oscParamsI(CZsinePulseGroup,i,gate,gain)
, oscParamsI(CZhalfSineGroup,i,gate,gain)
, oscParamsR(CZresSawGroup,i,gate,gain)
, oscParamsR(CZresTriangleGroup,i,gate,gain)
, oscParamsR(CZresTrapGroup,i,gate,gain)
)
: ro.interleave(3,9);
oldCZparams(i) =
(
0,0 // for routing
, CZsawGroup(indexParam(i))
// , (envMixer(CZsawGroup),envMixer(CZsawGroup))
// , oscParams(CZsawGroup,i)
, CZsquareGroup(indexParam(i))
, CZpulseGroup(indexParam(i))
, CZsinePulseGroup(indexParam(i))
, CZhalfSineGroup(indexParam(i))
, CZresSawGroup(resParam(i))
, CZresTriangleGroup(resParam(i))
, CZresTrapGroup(resParam(i))
)
: ro.interleave(2,9);
preFilterParams(i,gate,gain) =
(
oscPreFilterParams(sineGroup,i,gate,gain)
, oscPreFilterParams(CZsawGroup,i,gate,gain)
, oscPreFilterParams(CZsquareGroup,i,gate,gain)
, oscPreFilterParams(CZpulseGroup,i,gate,gain)
, oscPreFilterParams(CZsinePulseGroup,i,gate,gain)
, oscPreFilterParams(CZhalfSineGroup,i,gate,gain)
, oscPreFilterParams(CZresSawGroup,i,gate,gain)
, oscPreFilterParams(CZresTriangleGroup,i,gate,gain)
, oscPreFilterParams(CZresTrapGroup,i,gate,gain)
)
: ro.interleave(5,9);
oscPreFilterParams(group,i,gate,gain) =
envMixer(group,allpassGroup,i,allpassLevel,gate,gain)
, envMixer(group,ms20Group,i,ms20level,gate,gain)
, envMixer(group,oberheimGroup,i,oberheimLevel,gate,gain)
, (envMixer(group,normFreqGroup,i,normFreq,gate,gain):max(0):min(1))
, (envMixer(group,QGroup,i,Q,gate,gain):max(stepsize):min(10));
oscParamsI(group,i,gate,gain) =
envMixer(group,levelGroup,i,oscillatorLevel,gate,gain)
, envMixer(group,indexGroup,i,oscillatorIndex,gate,gain)
, envMixer(group,octGroup,i,oct,gate,gain);
oscParamsR(group,i,gate,gain) =
envMixer(group,levelGroup,i,oscillatorLevel,gate,gain)
, envMixer(group,indexGroup,i,oscillatorRes,gate,gain)
, envMixer(group,octGroup,i,oct,gate,gain);
indexParam(i) = offset(oscillatorLevel,i)
, (offset(oscillatorIndex,i));
resParam(i) = offset(oscillatorLevel,i)
, (offset(oscillatorRes,i));
OLDoscillators(i,fund) =
(fund :preFilter
<:si.bus(9)):
(
(_*2*ma.PI:sin)
,
CZsawGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZsawP)
))
, CZsquareGroup ((
offset(oscillatorLevel,i)
,((_, offset(oscillatorIndex,i)):CZsquareP)
))
, CZpulseGroup((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZpulseP)
))
, CZsinePulseGroup((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZsinePulseP)
))
, CZhalfSineGroup((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZhalfSineP)
))
, CZresSawGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorRes,i)):CZresSaw)
))
, CZresTriangleGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorRes,i)):CZresTriangle)
))
, CZresTrapGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorRes,i)):CZresTrap)
))
)
:fallbackMixer(8,1,1) ;
filters(i) = _;
envelope(i,gate,gain) = adsreg(attack(i),decay(i),sustain(i),release(i),gate,gain);
// envelope(i) = _*adsre(attack(i),decay(i),sustain(i),release(i),gate);
// envelope(i) = _*en.adsre(attack(i),decay(i),sustain(i),release(i),gate);
// master = lf_sawpos_reset(freq,reset) ;
master(lastNote) = lf_sawpos_phase_reset(freq(lastNote)*minOctMult,masterPhase,reset(lastNote)) ;
reset(lastNote) = gate(lastNote):ba.impulsify;
offset(param,i) = mainGroup(param)+(offsetGroup(param) * select2(i,1,-1)) :new_smooth(0.999);
preFilter(allpassLevel,ms20level,oberheimLevel,normFreq,Q) =
_<:
(
_
, allpassLevel , fi.allpassnn(1,normFreq/2*ma.PI)
, ms20level , ve.korg35LPF(normFreq,Q)
, oberheimLevel , ve.oberheimLPF(normFreq,Q)
)
:fallbackMixer(3,1,1);
// oneSumMixer(nrInChan,nrOutChan,nrSends) =
// par(i, nrInChan, si.bus(nrSends),si.bus(nrOutChan)) : mixer(nrInChan,nrOutChan,nrSends) : par(i, nrSends, si.bus(nrOutChan));
lfo = 0.5*(1+os.osc(0.5));
// vel(x) = chooseFromFixed(nrNotes,velocity,x);
vel(x) = x:chooseFromFixed(nrNotes,velocity);
//par(i, nrNotes, velocity(i)*(i==x)):>_ ;
enableIfVolume =
si.bus(2) <:
((_,!)
,(ro.cross(2) :(_,_!=0):control)) ;
// enableIfVolume = si.bus(2);
///////////////////////////////////////////////////////////////////////////////
// still to PR: //
///////////////////////////////////////////////////////////////////////////////
adsre(attT60,decT60,susLvl,relT60,gate) = envelope with {
ugate = gate>0;
samps = ugate : +~(*(ugate)); // ramp time in samples
attSamps = int(attT60 * ma.SR);
// the first sample of each note is alwaus the attack phase, also when attSamps==0
attPhase = (samps<attSamps) | (ugate:ba.impulsify);
// attPhase = (samps<attSamps) | ((attSamps==0) & (ugate:ba.impulsify));
target = select2(ugate, 0.0,
select2(attPhase, (susLvl)*float(ugate), ugate));
t60 = select2(ugate, relT60, select2(attPhase, decT60, attT60));
pole = ba.tau2pole(t60/6.91);
envelope = target : si.smooth(pole);
};
adsreg(attT60,decT60,susLvl,relT60,gate,gain) = envelope with {
ugate = gate>0;
samps = ugate : +~(*(ugate)); // ramp time in samples
attSamps = int(attT60 * ma.SR);
// the first sample of each note is alwaus the attack phase, also when attSamps==0
attPhase = (samps<attSamps) | (ugate:ba.impulsify);
// attPhase = (samps<attSamps) | ((attSamps==0) & (ugate:ba.impulsify));
target = select2(ugate, 0.0,
select2(attPhase, (susLvl)*float(ugate), ugate)) * gain;
t60 = select2(ugate, relT60, select2(attPhase, decT60, attT60));
pole = ba.tau2pole(t60/6.91);
envelope = target : si.smooth(pole);
};
myBus(0) = 0:!;
myBus(i) = si.bus(i);
sumN(n) = si.bus(n):>_;
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
meanN(n) = sumN(n)/n;
RMSn(n) = par(i, n, pow(2)) : meanN(n) : sqrt;
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
chooseFromFixed(maxN,expression,N) = par(i, maxN, expression(i)*(i==N)):>_;
// https://github.com/grame-cncm/faustlibraries/pull/44#issuecomment-651245377
new_smooth(s) = si.smooth(s * ((1-1') < 1) );
enabled_smooth(e,s) = si.smooth(s * e );
///////////////////////////////////////////////////////////////////////////////
// mixers from PR //
///////////////////////////////////////////////////////////////////////////////
// (si.bus(nrSends),_) : monoMixerChannel(nrSends) : si.bus(nrSends);
monoMixerChannel(nrSends) =
(
si.bus(nrSends)
, (_<:si.bus(nrSends))
)
:ro.interleave(nrSends,2)
:par(i,nrSends,_*_);
oneSumMonoMixerChannel(nrSends) =
(
(si.bus(nrSends)
<: (
// par(i, nrSends, min(nrSends*ma.MIN))
// ,(sumN(nrSends) : min(nrSends*nrSends*ma.MIN) <: si.bus(nrSends) )
si.bus(nrSends)
,(sumN(nrSends) <: si.bus(nrSends) )
)
: ro.interleave(nrSends,2) : par(i, nrSends, _/_)
)
, (_<:si.bus(nrSends))
)
:ro.interleave(nrSends,2)
:par(i,nrSends,_*_);
//(si.bus(nrSends),si.bus(nrOutChan)) : multiMixerChannel(nrOutChan,nrSends) : par(i, nrSends, si.bus(nrOutChan));
multiMixerChannel(nrOutChan,nrSends) =
si.bus(nrOutChan+nrSends)
<:par(i,nrOutChan,sel(nrOutChan,nrSends,i))
:par(i,nrOutChan,monoMixerChannel(nrSends))
:ro.interleave(nrSends,nrOutChan)
with {
sel(nrOutChan,nrSends,i) = (par(i,nrSends,_),par(i,nrOutChan,!),(ba.selector(i+nrSends,nrOutChan+nrSends)));
};
mixer(nrInChan,nrOutChan,nrSends) =
par(i,nrInChan,multiMixerChannel(nrOutChan,nrSends)):ro.interleave(nrSends*nrOutChan,nrInChan):mix
with {
mix=par(i,nrOutChan*nrSends,(si.bus(nrInChan):>_));
};
// par(i, nrInChan, sendsBus,outBus)
// : mixer(nrInChan,nrOutChan,nrSends)
// : par(i, nrSends, outBus);
fallbackMixer(nrInChan,nrOutChan,nrSends,fallBack) =
(
(ro.interleave(nrOutChan+nrSends,nrInChan)
: (FallbackGains
, ro.interleave(nrInChan, nrOutChan)
))
, fallBack
)
:
(si.bus((nrInChan+1)*nrSends), ro.interleave(nrOutChan,nrInChan+1) )
:
// (par(i, nrInChan+1, ro.interleave(nrOutChan+nrSends,1)))
// ro.interleave(nrOutChan+nrSends,nrInChan+1)
ro.interleave(nrInChan+1,nrOutChan+nrSends)
: mixer(nrInChan+1,nrOutChan,nrSends)
with {
mix=par(i,nrOutChan*nrSends,(si.bus(nrInChan):>_));
inBus = si.bus(nrInChan);
outBus = si.bus(nrOutChan);
sendsBus = si.bus(nrSends);
FallbackGains =
(
par(i,nrSends,
(inBus
<: (
par(i, nrInChan,
(_<:(_<0,(abs:max(nrInChan*ma.MIN)<:(_,_)))) : select2(_,_,_*-1)
)
, ((par(i, nrInChan, abs):sumN(nrInChan)) <: (max(nrInChan*nrInChan*ma.MIN)<:inBus)
, _
)
)
:((ro.interleave(nrInChan,2):par(i, nrInChan, /))
, (0<:(inBus))
, (min(1)<:(inBus,_))
)
: ((ro.interleave(nrInChan,3)
: par(i, nrInChan, ro.cross(3) : it.interpolate_linear)
),_*-1+1)
)
)
)
;
};
oneSumMixer(nrInChan,nrOutChan,nrSends) =
// ro.interleave(nrInChan,nrOutChan+nrSends)
// par(i, nrInChan, sendsBus,outBus)
ro.interleave(nrOutChan+nrSends,nrInChan)
:
(oneSumGains
, par(i, nrInChan, outBus)
)
:
// par(i, nrSends, ro.interleave(nrOutChan,nrInChan))
ro.interleave(nrInChan,nrOutChan+nrSends)
: mixer(nrInChan,nrOutChan,nrSends)
// : par(i,nrInChan,multiMixerChannel(nrOutChan,nrSends))
// : ro.interleave(nrSends*nrOutChan,nrInChan)
// : mix
with {
mix=par(i,nrOutChan*nrSends,(si.bus(nrInChan):>_));
inBus = si.bus(nrInChan);
outBus = si.bus(nrOutChan);
sendsBus = si.bus(nrSends);
oneSumGains =
(
par(i,nrSends,
(inBus
<: (
par(i, nrInChan,
(_<:(_<0,(abs:max(nrInChan*ma.MIN)<:(_,_)))) : select2(_,_,_*-1)
)
, (par(i, nrInChan, abs):sumN(nrInChan):max(nrInChan*nrInChan*ma.MIN)<:inBus)
)
)
:ro.interleave(nrInChan,2):par(i, nrInChan, /)
))
;
};
///////////////////////////////////////////////////////////////////////////////
// lastNote //
///////////////////////////////////////////////////////////////////////////////
// uniqueify makse sure that when multiple new notes are started simultaneously, each get's a unique index
// TODO: make the uniqueify function only affect the new notes
nrNotesPlaying = 0: seq(i, nrNotes, noteIsOn(i),_:+);
noteIsOn(i) = velocity(i)>0;
lastNote =
par(i, nrNotes, i, index(i))
// , ((par(i, nrNotes, index(i)),uniqueIfy):ro.interleave(nrNotes,2):par(i, nrNotes, +))
:find_max_index(nrNotes)
:ba.sAndH(nrNotesPlaying>0)
;
// with {
// an index to indicate the order of the note
// it adds one for every additional note played
// it resets to 0 when there are no notes playing
// assume multiple notes can start at once
orderIndex = ((_+nrNewNotes) * (nrNotesPlaying>1))~_;
nrNewNotes = ((nrNotesPlaying-nrNotesPlaying')):max(0);
// the order index of note i
// TODO: when multiple notes start at the same time, give each a unique index
index(i) = orderIndex:(select2(noteStart(i),_,_)
:select2(noteEnd(i)+(1:ba.impulsify),_,-1))~_;
// we use this instead of:
// hslider("frequency[midi:keyon 62]",0,0,nrNotes,1)
// because keyon can come multiple times, and we only want the first
noteStart(i) = noteIsOn(i):ba.impulsify;
noteEnd(i) = (noteIsOn(i)'-noteIsOn(i)):max(0):ba.impulsify;
//or do we?
// noteStart(i) = (hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0) :ba.impulsify;
// ERROR : path '/lastNote/keyon' is already used
// noteEnd(i) = ((hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)'-(hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)):max(0):ba.impulsify;
// at the very least, the first implementation of noteStart(i) doesn't add another 127 sliders
// from Julius Smith's acor.dsp:
index_comparator(n,x,m,y) = select2((x>y),m,n), select2((x>y),y,x); // compare integer-labeled signals
// take N number-value pairs and give the number with the maximum value
find_max_index(N) = seq(i,N-2, (index_comparator,si.bus(2*(N-i-2)))) : index_comparator :(_,!);
uniqueIfy =
(0:seq(i, nrNotes, myBus(i),(_-(noteIsOn(i-1)*(nrNewNotes>1))<:(_,_)) ):(si.bus(nrNotes),!));
// };
//////////////////////////////////////////////////////////////////////////////
// from @idle on slack //
//////////////////////////////////////////////////////////////////////////////
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan(F * ma.PI / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
//////////////////////////////////////////////////////////////////////////////
// https://github.com/grame-cncm/faustlibraries/pull/47 //
//////////////////////////////////////////////////////////////////////////////
CZ =
environment {
saw(fund, index) = sawChooseP(fund, index, 0);
sawP(fund, index) = sawChooseP(fund, index, 1);
sawChooseP(fund, index, p) =
(((fnd(fund,allign,p)*((.5-tmp)/tmp)),(-1*fnd(fund,allign,p)+1)*((.5-tmp)/(1-tmp))):min+fnd(fund,allign,p))*2*ma.PI:cos
with {
tmp = (.5-(index*.5)):max(0.01):min(0.5);
allign = si.interpolate(index, 0.75, 0.5);
};
square(fund, index) = squareChooseP(fund, index, 0);
squareP(fund, index) = squareChooseP(fund, index, 1);
squareChooseP(fund, index, p) = (fnd(fund,allign,p)>=0.5), (ma.decimal((fnd(fund,allign,p)*2)+1)<:_-min(_,(-1*_+1)*((INDEX)/(1-INDEX)))) :+ *ma.PI:cos
with {
INDEX = index:max(ma.MIN):min(1-ma.MIN);
allign = si.interpolate(INDEX, -0.25, 0);
};
pulse(fund, index) = pulseChooseP(fund, index, 0);
pulseP(fund, index) = pulseChooseP(fund, index, 1);
pulseChooseP(fund, index, p) = ((fnd(fund,allign,p)-min(fnd(fund,allign,p),((-1*fnd(fund,allign,p)+1)*(INDEX/(1-INDEX)))))*2*ma.PI):cos
with {
INDEX = index:min(0.99):max(0);
allign = si.interpolate(index, -0.25, 0.0);
};
sinePulse(fund, index) = sinePulseChooseP(fund, index, 0);
sinePulseP(fund, index) = sinePulseChooseP(fund, index, 1);
sinePulseChooseP(fund, index, p) = (min(fnd(fund,allign,p)*((0.5-INDEX)/INDEX),(-1*fnd(fund,allign,p)+1)*((.5-INDEX)/(1-INDEX)))+fnd(fund,allign,p))*4*ma.PI:cos
with {
INDEX = ((index*-0.49)+0.5);
allign = si.interpolate(index, -0.125, -0.25);
};
halfSine(fund, index) = halfSineChooseP(fund, index, 0);
halfSineP(fund, index) = halfSineChooseP(fund, index, 1);
halfSineChooseP(fund, index, p) = (select2(fnd(fund,allign,p)<.5, .5*(fnd(fund,allign,p)-.5)/INDEX+.5, fnd(fund,allign,p)):min(1))*2*ma.PI:cos
with {
INDEX = (.5-(index*0.5)):min(.5):max(.01);
allign = si.interpolate(index:min(0.975), -0.25, -0.5);
};
fnd =
case {
(fund,allign,0) => fund;
(fund,allign,1) => (fund+allign) : ma.frac; // allign phase with fund
};
resSaw(fund,res) = (((-1*(1-fund))*((cos((ma.decimal((max(1,res)*fund)+1))*2*ma.PI)*-.5)+.5))*2)+1;
resTriangle(fund,res) = select2(fund<.5, 2-(fund*2), fund*2)*tmp*2-1
with {
tmp = ((fund*(res:max(1)))+1:ma.decimal)*2*ma.PI:cos*.5+.5;
};
resTrap(fund, res) = (((1-fund)*2):min(1)*sin(ma.decimal(fund*(res:max(1)))*2*ma.PI));
};
CZsaw(fund, index) = CZ.sawChooseP(fund, index, 0);
CZsawP(fund, index) = CZ.sawChooseP(fund, index, 1);
CZsquare(fund, index) = CZ.squareChooseP(fund, index, 0);
CZsquareP(fund, index) = CZ.squareChooseP(fund, index, 1);
CZpulse(fund, index) = CZ.pulseChooseP(fund, index, 0);
CZpulseP(fund, index) = CZ.pulseChooseP(fund, index, 1);
CZsinePulse(fund, index) = CZ.sinePulseChooseP(fund, index, 0);
CZsinePulseP(fund, index) = CZ.sinePulseChooseP(fund, index, 1);
CZhalfSine(fund, index) = CZ.halfSineChooseP(fund, index, 0);
CZhalfSineP(fund, index) = CZ.halfSineChooseP(fund, index, 1);
CZresSaw(fund,res) = CZ.resSaw(fund,res);
CZresTriangle(fund,res) = CZ.resTriangle(fund,res);
CZresTrap(fund, res) = CZ.resTrap(fund, res);
CZsawPO(fund, index,oct) = octaver(fund,CZsawP,index,oct);
CZsquarePO(fund, index,oct) = octaver(fund,CZsquareP,index,oct);
CZpulsePO(fund, index,oct) = octaver(fund,CZpulseP,index,oct);
CZsinePulsePO(fund, index,oct) = octaver(fund,CZsinePulseP,index,oct);
CZhalfSinePO(fund, index,oct) = octaver(fund,CZhalfSineP,index,oct);
CZresSawO(fund,res,oct) = octaver(fund,CZresSaw,res,oct);
CZresTriangleO(fund,res,oct) = octaver(fund,CZresTriangle,res,oct);
CZresTrapO(fund, res,oct) = octaver(fund,CZresTrap,res,oct);
sinPOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,sine,index,oct);
sine(fund,index) = (fund*2*ma.PI:sin);
// sine(fund,index) = (fund*2*ma.PI:sin),(index:!);
CZsawPOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZsawP,index,oct);
CZsquarePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZsquareP,index,oct);
CZpulsePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZpulseP,index,oct);
CZsinePulsePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZsinePulseP,index,oct);
CZhalfSinePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZhalfSineP,index,oct);
CZresSawOF(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,res,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZresSaw,res,oct);
CZresTriangleOF(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,res,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZresTriangle,res,oct);
CZresTrapOF(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,res,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZresTrap,res,oct);
///////////////////////////////////////////////////////////////////////////////
// oscs fom PR //
///////////////////////////////////////////////////////////////////////////////
lf_sawpos_reset(freq,reset) = ma.frac * (reset == 0) ~ +(freq/ma.SR);
lf_sawpos_phase_reset(freq,phase,reset) = lf_sawpos_reset(freq,reset) +phase :ma.frac;
// lf_sawpos_phase_reset(freq,phase,reset) = (+(phase-phase') : ma.frac * (reset == 0)) ~ +(freq/ma.SR);
//////////////////////////////////////////////////////////////////////////////
// constants //
//////////////////////////////////////////////////////////////////////////////
nrEnvelopes = 4;
minOct = -4;
maxOct = 4;
// fast
// stepsize = 0.1;
// medium
stepsize = 0.01;
// smooth
// stepsize = 0.001;
nrNotes = notes(diagram);
notes(0) = 127; // nr of midi notes
notes(1) = 4; // for block diagram
// nrNotes = 42; // for looking at bargraphs
diagram = 0;
|
https://raw.githubusercontent.com/magnetophon/faustExperiments/475def588ca4ae5b5a703cf15d30fa8851e2e147/lastNote.dsp
|
faust
|
import("/home/bart/source/edgeofchaos/edgeofchaos.lib");
/////////////////////////////////////////////////////////////////////////////
give the number of the last note played //
/////////////////////////////////////////////////////////////////////////////
traditional faust synth:
freq = midiGroup(hslider("freq",440,0,24000,0.0001)) :new_smooth( ba.tau2pole(portamento));
gain = midiGroup(hslider("gain",0.5,0,1,stepsize));
gate = midiGroup(button("gate"));
workaround for proper monophonic handling, increases compile-time massively and CPU usage with +/- 5%:
freq = lastNote:ba.pianokey2hz :new_smooth(ba.tau2pole(portamento));
freq = lastNote:ba.pianokey2hz :si.smooth(gate' * ba.tau2pole(portamento));
increases the cpu-usage, from 7% to 11%
gate = vel(lastNote)>0;
gain = (nrNotesPlaying>0); // no velocity, 7% cpu
TODO: why this doesn't work,only gate works.
from https://github.com/timowest/analogue/blob/master/faust/midi.dsp
freq = hslider("/h:midi/pitch", 64, 32, 100, 1):ba.pianokey2hz;
gain = hslider("/h:midi/gain", 1, 0, 1, 0.01);
gate = button("/h:midi/gate");
/////////////////////////////////////////////////////////////////////////////
process //
/////////////////////////////////////////////////////////////////////////////
envMixer(CZsawGroup,levelGroup,1,oscillatorLevel);
envMixer(group,subGroup,0,param,gate,gain) =
par(j, nrEnvelopes, group(offset(envLevel(subGroup,j)),i), envelope(j,gate,gain))
:mixer(nrEnvelopes,1,1)
* group(offset(subGroup(masterGroup(param)),i))
+ group(offset(subGroup(param),i)) ;
/////////////////////////////////////////////////////////////////////////////
GUI //
/////////////////////////////////////////////////////////////////////////////
groups///////////////////////////////////////////////////////////////////////
envelopeGroup(x) = tabs(vgroup("[01]envelope", x));
sliders//////////////////////////////////////////////////////////////////////
sawIndex = sawGroup(oscillatorIndex);
pulseIndex = pulseGroup(oscillatorIndex);
velocity(i) = midiGroup(select2(i>=0, 0, hslider("velocity of note %i [midi:key %i ]", 0, 0, 127, 1)));
velocity(-1) = 0;
velocity(i) = midiGroup(hslider("velocity of note %i [midi:key %i ]", 0, 0, 127, 1));
pre-filter /////////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////////////////////
implementation //
/////////////////////////////////////////////////////////////////////////////
):it.interpolate_linear(oct:ma.decimal)
):it.interpolate_linear(oct:ma.decimal)
9* osc by 9 params per osc
for routing
for routing
, (envMixer(CZsawGroup),envMixer(CZsawGroup))
, oscParams(CZsawGroup,i)
envelope(i) = _*adsre(attack(i),decay(i),sustain(i),release(i),gate);
envelope(i) = _*en.adsre(attack(i),decay(i),sustain(i),release(i),gate);
master = lf_sawpos_reset(freq,reset) ;
oneSumMixer(nrInChan,nrOutChan,nrSends) =
par(i, nrInChan, si.bus(nrSends),si.bus(nrOutChan)) : mixer(nrInChan,nrOutChan,nrSends) : par(i, nrSends, si.bus(nrOutChan));
vel(x) = chooseFromFixed(nrNotes,velocity,x);
par(i, nrNotes, velocity(i)*(i==x)):>_ ;
enableIfVolume = si.bus(2);
/////////////////////////////////////////////////////////////////////////////
still to PR: //
/////////////////////////////////////////////////////////////////////////////
ramp time in samples
the first sample of each note is alwaus the attack phase, also when attSamps==0
attPhase = (samps<attSamps) | ((attSamps==0) & (ugate:ba.impulsify));
ramp time in samples
the first sample of each note is alwaus the attack phase, also when attSamps==0
attPhase = (samps<attSamps) | ((attSamps==0) & (ugate:ba.impulsify));
https://github.com/grame-cncm/faustlibraries/pull/44#issuecomment-651245377
/////////////////////////////////////////////////////////////////////////////
mixers from PR //
/////////////////////////////////////////////////////////////////////////////
(si.bus(nrSends),_) : monoMixerChannel(nrSends) : si.bus(nrSends);
par(i, nrSends, min(nrSends*ma.MIN))
,(sumN(nrSends) : min(nrSends*nrSends*ma.MIN) <: si.bus(nrSends) )
(si.bus(nrSends),si.bus(nrOutChan)) : multiMixerChannel(nrOutChan,nrSends) : par(i, nrSends, si.bus(nrOutChan));
par(i, nrInChan, sendsBus,outBus)
: mixer(nrInChan,nrOutChan,nrSends)
: par(i, nrSends, outBus);
(par(i, nrInChan+1, ro.interleave(nrOutChan+nrSends,1)))
ro.interleave(nrOutChan+nrSends,nrInChan+1)
ro.interleave(nrInChan,nrOutChan+nrSends)
par(i, nrInChan, sendsBus,outBus)
par(i, nrSends, ro.interleave(nrOutChan,nrInChan))
: par(i,nrInChan,multiMixerChannel(nrOutChan,nrSends))
: ro.interleave(nrSends*nrOutChan,nrInChan)
: mix
/////////////////////////////////////////////////////////////////////////////
lastNote //
/////////////////////////////////////////////////////////////////////////////
uniqueify makse sure that when multiple new notes are started simultaneously, each get's a unique index
TODO: make the uniqueify function only affect the new notes
, ((par(i, nrNotes, index(i)),uniqueIfy):ro.interleave(nrNotes,2):par(i, nrNotes, +))
with {
an index to indicate the order of the note
it adds one for every additional note played
it resets to 0 when there are no notes playing
assume multiple notes can start at once
the order index of note i
TODO: when multiple notes start at the same time, give each a unique index
we use this instead of:
hslider("frequency[midi:keyon 62]",0,0,nrNotes,1)
because keyon can come multiple times, and we only want the first
or do we?
noteStart(i) = (hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0) :ba.impulsify;
ERROR : path '/lastNote/keyon' is already used
noteEnd(i) = ((hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)'-(hslider("keyon[midi:keyon %i]",0,0,nrNotes,1)>0)):max(0):ba.impulsify;
at the very least, the first implementation of noteStart(i) doesn't add another 127 sliders
from Julius Smith's acor.dsp:
compare integer-labeled signals
take N number-value pairs and give the number with the maximum value
};
////////////////////////////////////////////////////////////////////////////
from @idle on slack //
////////////////////////////////////////////////////////////////////////////
////////////////////////////////////////////////////////////////////////////
https://github.com/grame-cncm/faustlibraries/pull/47 //
////////////////////////////////////////////////////////////////////////////
allign phase with fund
sine(fund,index) = (fund*2*ma.PI:sin),(index:!);
/////////////////////////////////////////////////////////////////////////////
oscs fom PR //
/////////////////////////////////////////////////////////////////////////////
lf_sawpos_phase_reset(freq,phase,reset) = (+(phase-phase') : ma.frac * (reset == 0)) ~ +(freq/ma.SR);
////////////////////////////////////////////////////////////////////////////
constants //
////////////////////////////////////////////////////////////////////////////
fast
stepsize = 0.1;
medium
smooth
stepsize = 0.001;
nr of midi notes
for block diagram
nrNotes = 42; // for looking at bargraphs
|
declare author "Bart Brouns";
declare license "AGPLv3";
declare name "lastNote";
declare options "[midi:on]";
import("stdfaust.lib");
phase = hslider("phase", 0, 0, 1, stepsize);
freq(lastNote) = lastNote:ba.pianokey2hz : enabled_smooth(gate(lastNote)' & gate(lastNote) , ba.tau2pole(portamento));
gate(lastNote) = gain(lastNote)>0;
process =
CZsynth;
mono = envM*envMidmaster+midAmount;
left = (envM*envMidmaster + envS*envSideMaster) + midAmount + sideAmount;
right = (envM*envMidmaster - envS*envSideMaster) + midAmount - sideAmount;
envMixer(group,subGroup,i,param,gate,gain) =
((((env(M)*envMaster(M)) , (env(S)*envMaster(S)))) :op(i))
+ ((amount(M), amount(S)) : op(i))
with {
env(MSgroup) = par(j, nrEnvelopes,
(group(MSgroup(envLevel(subGroup,j))):si.smooth(0.999))
, envelope(j,gate,gain))
:mixer(nrEnvelopes,1,1);
envMaster(MSgroup) = group(MSgroup(subGroup(masterGroup(param)))):si.smooth(0.999);
amount(MSgroup) = group(MSgroup(subGroup(param))):si.smooth(0.999);
M = mainGroup;
S = offsetGroup;
op(0) = +;
op(1) = -;
};
OLDenvMixer(group,subGroup,i,param,gate,gain) =
par(j, nrEnvelopes, group(offset(envLevel(subGroup,j)),i), envelope(j,gate,gain))
:mixer(nrEnvelopes,1,1)
* group(offset(subGroup(masterGroup(param)),i))
+ group(offset(subGroup(param),i)) ;
envLevel(subGroup,i) = subGroup(vgroup("[-1]envelope mixer", hslider("envLevel %i", 0, -1, 1, stepsize)));
tabs(x) = tgroup("CZsynth", x);
oscillatorGroup(x) = tabs(vgroup("[00]oscillators", x));
envelopeGroup(i,x) = tabs(vgroup("envelopes", hgroup("[%i]envelope %i", x)));
midiGroup(x) = tabs(vgroup("[99]midi", x));
mainGroup(x) = stereoGroup(vgroup("[0]main", x));
offsetGroup(x) = stereoGroup(vgroup("[1]L-R offset", x));
stereoGroup(x) = tgroup("stereo", x);
sineGroup(x) = tabs(hgroup("[0]sine", x));
CZsawGroup(x) = tabs(hgroup("[1]CZ saw", x));
CZsquareGroup(x) = tabs(hgroup("[2]CZ square", x));
CZpulseGroup(x) = tabs(hgroup("[3]CZ pulse", x));
CZsinePulseGroup(x) = tabs(hgroup("[4]CZ sinePulse", x));
CZhalfSineGroup(x) = tabs(hgroup("[5]CZ halfSine", x));
CZresSawGroup(x) = tabs(hgroup("[6]CZ resSaw", x));
CZresTriangleGroup(x) = tabs(hgroup("[7]CZ resTriangle", x));
CZresTrapGroup(x) = tabs(hgroup("[8]CZ resTrap", x));
sawGroup(x) = tabs(hgroup("[9]saw", x));
allpassGroup(x) = preFilterGroup(hgroup("[0]allpass", x));
ms20Group(x) = preFilterGroup(hgroup("[1]ms20", x));
oberheimGroup(x) = preFilterGroup(hgroup("[2]oberheim", x));
normFreqGroup(x) = preFilterGroup(hgroup("[3]freq", x));
QGroup(x) = preFilterGroup(hgroup("[4]Q", x));
levelGroup(x) = oscGroup(hgroup("[0]level", x));
indexGroup(x) = oscGroup(hgroup("[1]index", x));
octGroup(x) = oscGroup(hgroup("[2]oct", x));
oscGroup(x) = hgroup("oscillator",x);
preFilterGroup(x) = hgroup("preFilter",x);
masterGroup(x) = hgroup("master",x);
masterPhase = hslider("masterPhase", 0, -1, 1, stepsize) :new_smooth(0.999);
portamento = hslider("portamento[scale:log]", 0, 0, 1, stepsize);
oscillatorLevel = vslider("[0]Level", 0, -1, 1, stepsize);
oscillatorIndex = vslider("[1]index", 0, 0, 1, stepsize);
oscillatorRes = vslider("[1]res", 0, 0, 64, stepsize);
oct = vslider("oct", 0, minOct, maxOct, stepsize);
attack(i) = envelopeGroup(i,hslider("[0]attack", 0, 0, 1, stepsize));
decay(i) = envelopeGroup(i,hslider("[1]decay", 0.1, 0, 1, stepsize));
sustain(i) = envelopeGroup(i,hslider("[2]sustain", 0.8, 0, 1, stepsize));
release(i) = envelopeGroup(i,hslider("[3]release", 0.1, 0, 1, stepsize));
lfo_amount = hslider("lfo amount", 0, 0, 1, stepsize):new_smooth(0.999);
velocity(i) = VEL(i:max(-1):int) with {
VEL =
case {
(-1) => 0;
(i) => midiGroup(midiTabs(tabNr(i),hslider("velocity of note %i [midi:key %i ]", 0, 0, 127, 1)));
};
midiTabs(tabNr,x) = tgroup("velocity",vgroup("v %tabNr", x));
tabNr(i) = (i/nrTabs):floor;
nrTabs = int((nrNotes+1)/16)+1;
};
LPfreq = hslider("LPfreq[scale:log]", 24000, 20, 24000, 1);
filterBPlevel = vslider("filterBPlevel", 1, 0, 1, stepsize);
allpassLevel = vslider("level", 0, 0, 1, stepsize);
ms20level = vslider("level", 0, 0, 1, stepsize);
oberheimLevel = vslider("level", 0, 0, 1, stepsize);
normFreq = vslider("normFreq", 1, 0, 1, stepsize);
Q = vslider("Q", 1, stepsize, 10, stepsize);
octaver(fund,oscillator,params,oct) =
(
((f0,params):oscillator)
, ((f1,params):oscillator)
):it.interpolate_linear(oct:abs%1)
with {
f0 = fund:octaveSwitcher(oct:floor+((oct<0) & (oct!=(oct:floor))));
f1 = fund:octaveSwitcher(oct:floor+(oct>0));
octaveSwitcher(oct) = _*(octaveMultiplier(oct)/minOctMult)%1;
};
octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,oscillator,params,oct) =
(
((f0:preFilter(allpassLevel,ms20level,oberheimLevel,normFreq,Q),params):oscillator)
, ((f1:preFilter(allpassLevel,ms20level,oberheimLevel,normFreq,Q),params):oscillator)
):it.interpolate_linear(oct:abs%1)
with {
f0 = fund:octaveSwitcher(oct:floor+((oct<0) & (oct!=(oct:floor))));
f1 = fund:octaveSwitcher(oct:floor+(oct>0));
octaveSwitcher(oct) = _*(octaveMultiplier(oct)/minOctMult)%1;
};
octaveMultiplier =
int<:
(
(_ <0) / pow(2,abs),
(_==0),
(_ >0) * pow(2,_)
):>_;
minOctMult = minOct:octaveMultiplier;
smoothDelayedBy(d, s) = *(1.0 - sd) : + ~ *(sd)
with {
sd = s * ((1-1@d) < 1) ;
};
CZsynth = par(i, 2, CZsynthMono(i));
CZsynthMono(i) =
(lastNote<:(master,gate,gain)) :
(si.bus(3)<:si.bus(6)) :
(
(oscillators(i) : filters(i))
, (!,_,_)
)
:(_*envelope(-1));
oscillators(i,fund,gate,gain) =
(
(preFilterParams(i,gate,gain))
,(
(
(fund
<:si.bus(9))
,(CZparams(i,gate,gain))
):(ro.crossnn(9),si.bus(2*9))
)
)
: (ro.crossNM(5*9,9),si.bus(3*9))
:
(
(!,sinPOF)
, ((_,CZsawPOF):enableIfVolume)
, ((_,CZsquarePOF):enableIfVolume)
, ((_,CZpulsePOF):enableIfVolume)
, ((_,CZsinePulsePOF):enableIfVolume)
, ((_,CZhalfSinePOF):enableIfVolume)
, ((_,CZresSawOF):enableIfVolume)
, ((_,CZresTriangleOF):enableIfVolume)
, ((_,CZresTrapOF):enableIfVolume)
)
:fallbackMixer(8,1,1)
;
CZparams(i,gate,gain) =
(
, oscParamsI(CZsawGroup,i,gate,gain)
, oscParamsI(CZsquareGroup,i,gate,gain)
, oscParamsI(CZpulseGroup,i,gate,gain)
, oscParamsI(CZsinePulseGroup,i,gate,gain)
, oscParamsI(CZhalfSineGroup,i,gate,gain)
, oscParamsR(CZresSawGroup,i,gate,gain)
, oscParamsR(CZresTriangleGroup,i,gate,gain)
, oscParamsR(CZresTrapGroup,i,gate,gain)
)
: ro.interleave(3,9);
oldCZparams(i) =
(
, CZsawGroup(indexParam(i))
, CZsquareGroup(indexParam(i))
, CZpulseGroup(indexParam(i))
, CZsinePulseGroup(indexParam(i))
, CZhalfSineGroup(indexParam(i))
, CZresSawGroup(resParam(i))
, CZresTriangleGroup(resParam(i))
, CZresTrapGroup(resParam(i))
)
: ro.interleave(2,9);
preFilterParams(i,gate,gain) =
(
oscPreFilterParams(sineGroup,i,gate,gain)
, oscPreFilterParams(CZsawGroup,i,gate,gain)
, oscPreFilterParams(CZsquareGroup,i,gate,gain)
, oscPreFilterParams(CZpulseGroup,i,gate,gain)
, oscPreFilterParams(CZsinePulseGroup,i,gate,gain)
, oscPreFilterParams(CZhalfSineGroup,i,gate,gain)
, oscPreFilterParams(CZresSawGroup,i,gate,gain)
, oscPreFilterParams(CZresTriangleGroup,i,gate,gain)
, oscPreFilterParams(CZresTrapGroup,i,gate,gain)
)
: ro.interleave(5,9);
oscPreFilterParams(group,i,gate,gain) =
envMixer(group,allpassGroup,i,allpassLevel,gate,gain)
, envMixer(group,ms20Group,i,ms20level,gate,gain)
, envMixer(group,oberheimGroup,i,oberheimLevel,gate,gain)
, (envMixer(group,normFreqGroup,i,normFreq,gate,gain):max(0):min(1))
, (envMixer(group,QGroup,i,Q,gate,gain):max(stepsize):min(10));
oscParamsI(group,i,gate,gain) =
envMixer(group,levelGroup,i,oscillatorLevel,gate,gain)
, envMixer(group,indexGroup,i,oscillatorIndex,gate,gain)
, envMixer(group,octGroup,i,oct,gate,gain);
oscParamsR(group,i,gate,gain) =
envMixer(group,levelGroup,i,oscillatorLevel,gate,gain)
, envMixer(group,indexGroup,i,oscillatorRes,gate,gain)
, envMixer(group,octGroup,i,oct,gate,gain);
indexParam(i) = offset(oscillatorLevel,i)
, (offset(oscillatorIndex,i));
resParam(i) = offset(oscillatorLevel,i)
, (offset(oscillatorRes,i));
OLDoscillators(i,fund) =
(fund :preFilter
<:si.bus(9)):
(
(_*2*ma.PI:sin)
,
CZsawGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZsawP)
))
, CZsquareGroup ((
offset(oscillatorLevel,i)
,((_, offset(oscillatorIndex,i)):CZsquareP)
))
, CZpulseGroup((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZpulseP)
))
, CZsinePulseGroup((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZsinePulseP)
))
, CZhalfSineGroup((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorIndex,i)):CZhalfSineP)
))
, CZresSawGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorRes,i)):CZresSaw)
))
, CZresTriangleGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorRes,i)):CZresTriangle)
))
, CZresTrapGroup ((
offset(oscillatorLevel,i)
, ((_, offset(oscillatorRes,i)):CZresTrap)
))
)
:fallbackMixer(8,1,1) ;
filters(i) = _;
envelope(i,gate,gain) = adsreg(attack(i),decay(i),sustain(i),release(i),gate,gain);
master(lastNote) = lf_sawpos_phase_reset(freq(lastNote)*minOctMult,masterPhase,reset(lastNote)) ;
reset(lastNote) = gate(lastNote):ba.impulsify;
offset(param,i) = mainGroup(param)+(offsetGroup(param) * select2(i,1,-1)) :new_smooth(0.999);
preFilter(allpassLevel,ms20level,oberheimLevel,normFreq,Q) =
_<:
(
_
, allpassLevel , fi.allpassnn(1,normFreq/2*ma.PI)
, ms20level , ve.korg35LPF(normFreq,Q)
, oberheimLevel , ve.oberheimLPF(normFreq,Q)
)
:fallbackMixer(3,1,1);
lfo = 0.5*(1+os.osc(0.5));
vel(x) = x:chooseFromFixed(nrNotes,velocity);
enableIfVolume =
si.bus(2) <:
((_,!)
,(ro.cross(2) :(_,_!=0):control)) ;
adsre(attT60,decT60,susLvl,relT60,gate) = envelope with {
ugate = gate>0;
attSamps = int(attT60 * ma.SR);
attPhase = (samps<attSamps) | (ugate:ba.impulsify);
target = select2(ugate, 0.0,
select2(attPhase, (susLvl)*float(ugate), ugate));
t60 = select2(ugate, relT60, select2(attPhase, decT60, attT60));
pole = ba.tau2pole(t60/6.91);
envelope = target : si.smooth(pole);
};
adsreg(attT60,decT60,susLvl,relT60,gate,gain) = envelope with {
ugate = gate>0;
attSamps = int(attT60 * ma.SR);
attPhase = (samps<attSamps) | (ugate:ba.impulsify);
target = select2(ugate, 0.0,
select2(attPhase, (susLvl)*float(ugate), ugate)) * gain;
t60 = select2(ugate, relT60, select2(attPhase, decT60, attT60));
pole = ba.tau2pole(t60/6.91);
envelope = target : si.smooth(pole);
};
myBus(0) = 0:!;
myBus(i) = si.bus(i);
sumN(n) = si.bus(n):>_;
minN(n) = opWithNInputs(min,n);
maxN(n) = opWithNInputs(max,n);
meanN(n) = sumN(n)/n;
RMSn(n) = par(i, n, pow(2)) : meanN(n) : sqrt;
opWithNInputs =
case {
(op,0) => 0:!;
(op,1) => _;
(op,2) => op;
(op,N) => (opWithNInputs(op,N-1),_) : op;
};
chooseFromFixed(maxN,expression,N) = par(i, maxN, expression(i)*(i==N)):>_;
new_smooth(s) = si.smooth(s * ((1-1') < 1) );
enabled_smooth(e,s) = si.smooth(s * e );
monoMixerChannel(nrSends) =
(
si.bus(nrSends)
, (_<:si.bus(nrSends))
)
:ro.interleave(nrSends,2)
:par(i,nrSends,_*_);
oneSumMonoMixerChannel(nrSends) =
(
(si.bus(nrSends)
<: (
si.bus(nrSends)
,(sumN(nrSends) <: si.bus(nrSends) )
)
: ro.interleave(nrSends,2) : par(i, nrSends, _/_)
)
, (_<:si.bus(nrSends))
)
:ro.interleave(nrSends,2)
:par(i,nrSends,_*_);
multiMixerChannel(nrOutChan,nrSends) =
si.bus(nrOutChan+nrSends)
<:par(i,nrOutChan,sel(nrOutChan,nrSends,i))
:par(i,nrOutChan,monoMixerChannel(nrSends))
:ro.interleave(nrSends,nrOutChan)
with {
sel(nrOutChan,nrSends,i) = (par(i,nrSends,_),par(i,nrOutChan,!),(ba.selector(i+nrSends,nrOutChan+nrSends)));
};
mixer(nrInChan,nrOutChan,nrSends) =
par(i,nrInChan,multiMixerChannel(nrOutChan,nrSends)):ro.interleave(nrSends*nrOutChan,nrInChan):mix
with {
mix=par(i,nrOutChan*nrSends,(si.bus(nrInChan):>_));
};
fallbackMixer(nrInChan,nrOutChan,nrSends,fallBack) =
(
(ro.interleave(nrOutChan+nrSends,nrInChan)
: (FallbackGains
, ro.interleave(nrInChan, nrOutChan)
))
, fallBack
)
:
(si.bus((nrInChan+1)*nrSends), ro.interleave(nrOutChan,nrInChan+1) )
:
ro.interleave(nrInChan+1,nrOutChan+nrSends)
: mixer(nrInChan+1,nrOutChan,nrSends)
with {
mix=par(i,nrOutChan*nrSends,(si.bus(nrInChan):>_));
inBus = si.bus(nrInChan);
outBus = si.bus(nrOutChan);
sendsBus = si.bus(nrSends);
FallbackGains =
(
par(i,nrSends,
(inBus
<: (
par(i, nrInChan,
(_<:(_<0,(abs:max(nrInChan*ma.MIN)<:(_,_)))) : select2(_,_,_*-1)
)
, ((par(i, nrInChan, abs):sumN(nrInChan)) <: (max(nrInChan*nrInChan*ma.MIN)<:inBus)
, _
)
)
:((ro.interleave(nrInChan,2):par(i, nrInChan, /))
, (0<:(inBus))
, (min(1)<:(inBus,_))
)
: ((ro.interleave(nrInChan,3)
: par(i, nrInChan, ro.cross(3) : it.interpolate_linear)
),_*-1+1)
)
)
)
;
};
oneSumMixer(nrInChan,nrOutChan,nrSends) =
ro.interleave(nrOutChan+nrSends,nrInChan)
:
(oneSumGains
, par(i, nrInChan, outBus)
)
:
ro.interleave(nrInChan,nrOutChan+nrSends)
: mixer(nrInChan,nrOutChan,nrSends)
with {
mix=par(i,nrOutChan*nrSends,(si.bus(nrInChan):>_));
inBus = si.bus(nrInChan);
outBus = si.bus(nrOutChan);
sendsBus = si.bus(nrSends);
oneSumGains =
(
par(i,nrSends,
(inBus
<: (
par(i, nrInChan,
(_<:(_<0,(abs:max(nrInChan*ma.MIN)<:(_,_)))) : select2(_,_,_*-1)
)
, (par(i, nrInChan, abs):sumN(nrInChan):max(nrInChan*nrInChan*ma.MIN)<:inBus)
)
)
:ro.interleave(nrInChan,2):par(i, nrInChan, /)
))
;
};
nrNotesPlaying = 0: seq(i, nrNotes, noteIsOn(i),_:+);
noteIsOn(i) = velocity(i)>0;
lastNote =
par(i, nrNotes, i, index(i))
:find_max_index(nrNotes)
:ba.sAndH(nrNotesPlaying>0)
;
orderIndex = ((_+nrNewNotes) * (nrNotesPlaying>1))~_;
nrNewNotes = ((nrNotesPlaying-nrNotesPlaying')):max(0);
index(i) = orderIndex:(select2(noteStart(i),_,_)
:select2(noteEnd(i)+(1:ba.impulsify),_,-1))~_;
noteStart(i) = noteIsOn(i):ba.impulsify;
noteEnd(i) = (noteIsOn(i)'-noteIsOn(i)):max(0):ba.impulsify;
find_max_index(N) = seq(i,N-2, (index_comparator,si.bus(2*(N-i-2)))) : index_comparator :(_,!);
uniqueIfy =
(0:seq(i, nrNotes, myBus(i),(_-(noteIsOn(i-1)*(nrNewNotes>1))<:(_,_)) ):(si.bus(nrNotes),!));
svf = environment {
svf(T,F,Q,G) = tick ~ (_,_) : !,!,_,_,_ : si.dot(3, mix)
with {
tick(ic1eq, ic2eq, v0) =
2*v1 - ic1eq,
2*v2 - ic2eq,
v0, v1, v2
with {
v1 = ic1eq + g *(v0-ic2eq) : /(1 + g*(g+k));
v2 = ic2eq + g * v1;
};
A = pow(10.0, G / 40.0);
g = tan(F * ma.PI / ma.SR) : case {
(7) => /(sqrt(A));
(8) => *(sqrt(A));
(t) => _;
} (T);
k = case {
(6) => 1/(Q*A);
(t) => 1/Q;
} (T);
mix = case {
(0) => 0, 0, 1;
(1) => 0, 1, 0;
(2) => 1, -k, -1;
(3) => 1, -k, 0;
(4) => 1, -k, -2;
(5) => 1, -2*k, 0;
(6) => 1, k*(A*A-1), 0;
(7) => 1, k*(A-1), A*A-1;
(8) => A*A, k*(1-A)*A, 1-A*A;
} (T);
};
lp(f,q) = svf(0, f,q,0);
bp(f,q) = svf(1, f,q,0);
hp(f,q) = svf(2, f,q,0);
notch(f,q) = svf(3, f,q,0);
peak(f,q) = svf(4, f,q,0);
ap(f,q) = svf(5, f,q,0);
bell(f,q,g) = svf(6, f,q,g);
ls(f,q,g) = svf(7, f,q,g);
hs(f,q,g) = svf(8, f,q,g);
};
CZ =
environment {
saw(fund, index) = sawChooseP(fund, index, 0);
sawP(fund, index) = sawChooseP(fund, index, 1);
sawChooseP(fund, index, p) =
(((fnd(fund,allign,p)*((.5-tmp)/tmp)),(-1*fnd(fund,allign,p)+1)*((.5-tmp)/(1-tmp))):min+fnd(fund,allign,p))*2*ma.PI:cos
with {
tmp = (.5-(index*.5)):max(0.01):min(0.5);
allign = si.interpolate(index, 0.75, 0.5);
};
square(fund, index) = squareChooseP(fund, index, 0);
squareP(fund, index) = squareChooseP(fund, index, 1);
squareChooseP(fund, index, p) = (fnd(fund,allign,p)>=0.5), (ma.decimal((fnd(fund,allign,p)*2)+1)<:_-min(_,(-1*_+1)*((INDEX)/(1-INDEX)))) :+ *ma.PI:cos
with {
INDEX = index:max(ma.MIN):min(1-ma.MIN);
allign = si.interpolate(INDEX, -0.25, 0);
};
pulse(fund, index) = pulseChooseP(fund, index, 0);
pulseP(fund, index) = pulseChooseP(fund, index, 1);
pulseChooseP(fund, index, p) = ((fnd(fund,allign,p)-min(fnd(fund,allign,p),((-1*fnd(fund,allign,p)+1)*(INDEX/(1-INDEX)))))*2*ma.PI):cos
with {
INDEX = index:min(0.99):max(0);
allign = si.interpolate(index, -0.25, 0.0);
};
sinePulse(fund, index) = sinePulseChooseP(fund, index, 0);
sinePulseP(fund, index) = sinePulseChooseP(fund, index, 1);
sinePulseChooseP(fund, index, p) = (min(fnd(fund,allign,p)*((0.5-INDEX)/INDEX),(-1*fnd(fund,allign,p)+1)*((.5-INDEX)/(1-INDEX)))+fnd(fund,allign,p))*4*ma.PI:cos
with {
INDEX = ((index*-0.49)+0.5);
allign = si.interpolate(index, -0.125, -0.25);
};
halfSine(fund, index) = halfSineChooseP(fund, index, 0);
halfSineP(fund, index) = halfSineChooseP(fund, index, 1);
halfSineChooseP(fund, index, p) = (select2(fnd(fund,allign,p)<.5, .5*(fnd(fund,allign,p)-.5)/INDEX+.5, fnd(fund,allign,p)):min(1))*2*ma.PI:cos
with {
INDEX = (.5-(index*0.5)):min(.5):max(.01);
allign = si.interpolate(index:min(0.975), -0.25, -0.5);
};
fnd =
case {
(fund,allign,0) => fund;
};
resSaw(fund,res) = (((-1*(1-fund))*((cos((ma.decimal((max(1,res)*fund)+1))*2*ma.PI)*-.5)+.5))*2)+1;
resTriangle(fund,res) = select2(fund<.5, 2-(fund*2), fund*2)*tmp*2-1
with {
tmp = ((fund*(res:max(1)))+1:ma.decimal)*2*ma.PI:cos*.5+.5;
};
resTrap(fund, res) = (((1-fund)*2):min(1)*sin(ma.decimal(fund*(res:max(1)))*2*ma.PI));
};
CZsaw(fund, index) = CZ.sawChooseP(fund, index, 0);
CZsawP(fund, index) = CZ.sawChooseP(fund, index, 1);
CZsquare(fund, index) = CZ.squareChooseP(fund, index, 0);
CZsquareP(fund, index) = CZ.squareChooseP(fund, index, 1);
CZpulse(fund, index) = CZ.pulseChooseP(fund, index, 0);
CZpulseP(fund, index) = CZ.pulseChooseP(fund, index, 1);
CZsinePulse(fund, index) = CZ.sinePulseChooseP(fund, index, 0);
CZsinePulseP(fund, index) = CZ.sinePulseChooseP(fund, index, 1);
CZhalfSine(fund, index) = CZ.halfSineChooseP(fund, index, 0);
CZhalfSineP(fund, index) = CZ.halfSineChooseP(fund, index, 1);
CZresSaw(fund,res) = CZ.resSaw(fund,res);
CZresTriangle(fund,res) = CZ.resTriangle(fund,res);
CZresTrap(fund, res) = CZ.resTrap(fund, res);
CZsawPO(fund, index,oct) = octaver(fund,CZsawP,index,oct);
CZsquarePO(fund, index,oct) = octaver(fund,CZsquareP,index,oct);
CZpulsePO(fund, index,oct) = octaver(fund,CZpulseP,index,oct);
CZsinePulsePO(fund, index,oct) = octaver(fund,CZsinePulseP,index,oct);
CZhalfSinePO(fund, index,oct) = octaver(fund,CZhalfSineP,index,oct);
CZresSawO(fund,res,oct) = octaver(fund,CZresSaw,res,oct);
CZresTriangleO(fund,res,oct) = octaver(fund,CZresTriangle,res,oct);
CZresTrapO(fund, res,oct) = octaver(fund,CZresTrap,res,oct);
sinPOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,sine,index,oct);
sine(fund,index) = (fund*2*ma.PI:sin);
CZsawPOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZsawP,index,oct);
CZsquarePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZsquareP,index,oct);
CZpulsePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZpulseP,index,oct);
CZsinePulsePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZsinePulseP,index,oct);
CZhalfSinePOF(allpassLevel,ms20level,oberheimLevel,normFreq,Q,fund,index,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZhalfSineP,index,oct);
CZresSawOF(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,res,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZresSaw,res,oct);
CZresTriangleOF(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,res,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZresTriangle,res,oct);
CZresTrapOF(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,res,oct) = octaverFilter(fund,allpassLevel,ms20level,oberheimLevel,normFreq,Q,CZresTrap,res,oct);
lf_sawpos_reset(freq,reset) = ma.frac * (reset == 0) ~ +(freq/ma.SR);
lf_sawpos_phase_reset(freq,phase,reset) = lf_sawpos_reset(freq,reset) +phase :ma.frac;
nrEnvelopes = 4;
minOct = -4;
maxOct = 4;
stepsize = 0.01;
nrNotes = notes(diagram);
diagram = 0;
|
b5d5a9090e0b02e1a40369a3335c74f5bc11dacc593c0b38259ed5f5247d4894
|
sagpant/OTTO
|
wormhole.dsp
|
/*
Black Hole Reverb for the OTTO -- By Jonatan Midtgaard
Adapted by with permission from the "OWLGAZER" modules by Xavier Godart (Empirical Noises).
To-Do:
- Perhaps adjust allpass values to be closer to freeverb?
- Add stereo spread. Are some delay lines for left/right?? Modulation for this?
- Look at shimmer. More modulation?
- Better tone control. More... dynamic? Reverb is very static at high decay rates.
- Being able to change number of AP filters. Few makes more of a metallic clang.
*/
import("stdfaust.lib");
blackhole(mix,decay,hicut,pitchmix) =
_ <:
(
_,_ <:
(si.bus(N*2) :> networkline)~(feedbackline)
:> fi.lowpass(2, hicut),fi.lowpass(2, hicut) : *(mix),*(mix) //Here are the lowpass filters. Perhaps move them or make another inside the reverb?
),
(*(1-mix),*(1-mix)) :>
_
with {
N = 8; //Number of comb filters
earlyAPNb = 6; //Number of allpass filters.
MAXDELAY = 8192;
delays = (1356, 1422, 1557, 1617, 1933, 2401, 3125, 6561, 14641); //latereflections values (comb)
delayval(i) = ba.take(i+1,delays) : *(time_lfo_late);
time_lfo_late = os.osc(lfo_rate)*(lfo_strength_late) : +(1);
//lfo_strength_late = hslider("LFO Late", 0.001, 0.0, 0.02,0.001);
lfo_strength_late = 0.001;
//lfo_rate = hslider("LFO Rate",1, 0.0, 10, 0.01);
lfo_rate = 0.25;
pitchshifter(delay, pitch, amount) = _ <: de.delay(MAXDELAY, delay)*(1-amount),(ef.transpose(delay,delay,pitch)*amount) :> _;
earlyreflections(i) = seq(j, earlyAPNb,
fi.allpass_fcomb(2048, delayval(j+1), -allpassfb)
)
with{
allpassfb = 0.6;
delays = (243, 343, 441, 625, 727, 1331, 2403, 3119); //earlyreflections values (allpass)
time_lfo = os.osc(lfo_rate)*(lfo_strength) : +(1);
//lfo_strength = hslider("LFO Early", 0.003, 0.0, 0.02,0.001);
lfo_strength = 0.001;
delayval(x) = ba.take(x+1, delays) : *(time_lfo);
};
latereflections(i) = _ <:
de.fdelay(MAXDELAY, delayval(i))*(i!=3),
pitchshifter(MAXDELAY + delayval(i),12,pitchmix)*(i==3) :>
_;
networkline = par(i,N,
_ :
earlyreflections(i) :
latereflections(i) :
_/sqrt(N)
) : _,_,fi.highpass(2, 100),_,_,_,_,_;
feedbackline = ro.hadamard(N) : par(i,N,(*(decay) : fi.lowpass(4, hicut) ));
};
blackhole_master = blackhole(mix,decay,hicut,pitchmix)
with {
decay = hslider("LENGTH", 0.5, 0.05, 1.00, 0.01) : *(0.5) : +(0.5);
hicut = hslider("SHAPE[scale:log]", 4000, 100, 14000, 0.01) :si.smoo;
pitchmix = hslider("SHIMMER", 0.0, 0, 1.2, 0.01);
mix = hslider("MIX", 0.5, 0, 1, 0.01);
};
process = _, _ :> blackhole_master <: _ , _ ;
|
https://raw.githubusercontent.com/sagpant/OTTO/d736d5fb29f9cfbd32d2cbd3b0ad1492e6c27f9a/src/engines/fx/wormhole/wormhole.dsp
|
faust
|
Black Hole Reverb for the OTTO -- By Jonatan Midtgaard
Adapted by with permission from the "OWLGAZER" modules by Xavier Godart (Empirical Noises).
To-Do:
- Perhaps adjust allpass values to be closer to freeverb?
- Add stereo spread. Are some delay lines for left/right?? Modulation for this?
- Look at shimmer. More modulation?
- Better tone control. More... dynamic? Reverb is very static at high decay rates.
- Being able to change number of AP filters. Few makes more of a metallic clang.
Here are the lowpass filters. Perhaps move them or make another inside the reverb?
Number of comb filters
Number of allpass filters.
latereflections values (comb)
lfo_strength_late = hslider("LFO Late", 0.001, 0.0, 0.02,0.001);
lfo_rate = hslider("LFO Rate",1, 0.0, 10, 0.01);
earlyreflections values (allpass)
lfo_strength = hslider("LFO Early", 0.003, 0.0, 0.02,0.001);
|
import("stdfaust.lib");
blackhole(mix,decay,hicut,pitchmix) =
_ <:
(
_,_ <:
(si.bus(N*2) :> networkline)~(feedbackline)
),
(*(1-mix),*(1-mix)) :>
_
with {
MAXDELAY = 8192;
delayval(i) = ba.take(i+1,delays) : *(time_lfo_late);
time_lfo_late = os.osc(lfo_rate)*(lfo_strength_late) : +(1);
lfo_strength_late = 0.001;
lfo_rate = 0.25;
pitchshifter(delay, pitch, amount) = _ <: de.delay(MAXDELAY, delay)*(1-amount),(ef.transpose(delay,delay,pitch)*amount) :> _;
earlyreflections(i) = seq(j, earlyAPNb,
fi.allpass_fcomb(2048, delayval(j+1), -allpassfb)
)
with{
allpassfb = 0.6;
time_lfo = os.osc(lfo_rate)*(lfo_strength) : +(1);
lfo_strength = 0.001;
delayval(x) = ba.take(x+1, delays) : *(time_lfo);
};
latereflections(i) = _ <:
de.fdelay(MAXDELAY, delayval(i))*(i!=3),
pitchshifter(MAXDELAY + delayval(i),12,pitchmix)*(i==3) :>
_;
networkline = par(i,N,
_ :
earlyreflections(i) :
latereflections(i) :
_/sqrt(N)
) : _,_,fi.highpass(2, 100),_,_,_,_,_;
feedbackline = ro.hadamard(N) : par(i,N,(*(decay) : fi.lowpass(4, hicut) ));
};
blackhole_master = blackhole(mix,decay,hicut,pitchmix)
with {
decay = hslider("LENGTH", 0.5, 0.05, 1.00, 0.01) : *(0.5) : +(0.5);
hicut = hslider("SHAPE[scale:log]", 4000, 100, 14000, 0.01) :si.smoo;
pitchmix = hslider("SHIMMER", 0.0, 0, 1.2, 0.01);
mix = hslider("MIX", 0.5, 0, 1, 0.01);
};
process = _, _ :> blackhole_master <: _ , _ ;
|
4703c7408a5778f615d905882f0a569a1020f5702db87223af9f6f1ec3a0c63c
|
sagpant/OTTO
|
nuke.dsp
|
// An analog style synth with ringmod and hardsync. This contains the code for the OTTO ADSR-envelope (exponential, but with arbitrary attack. Here it is linear.)
// A TO-DO is to add this to a dedicated faust library instead.
import("stdfaust.lib");
process = hgroup("voices", vgroup("0", voice) + vgroup("3", voice) +
vgroup("1", voice) + vgroup("4", voice) +
vgroup("2", voice) + vgroup("5", voice)) : _ ;
voice = hgroup("midi", ( multi_osc(osc1_freq) , multi_osc(osc2_freq) ) <: mixer :> VCF : *(envelope))
//voice = hgroup("midi", envelope)
with {
midigate = button ("trigger");
midifreq = hslider("freq", 440, 20, 1000, 1);
midigain = hslider("velocity", 0.5, 0, 1, 1/127);
// Filter
flt = hslider("/Filter",0.5, 0, 1, 0.01) : si.smoo;
fc = flt*flt*10000 + 100;
Q = 1.25;
VCF = fi.resonlp(fc,Q,0.5) : fi.resonlp(fc,Q,0.5);
//Oscillators--------------------------
wave = hslider("/Wave", 1, 0.08, 4, 0.01) : si.smoo;
//Waveform modifiers
hardsync = wave : max(3) : -(3) : *(midifreq) : *(0.1); //Amount of hardsync of the saw-wave
duty = wave*(0.5) : min(0.5); //Duty cycle in the pulse wave
sq_amount = 2-(wave) : max(0) : min(1);
saw_amount = wave-(2) : max(0) : min(1);
tri_amount = 1-(sq_amount) : -(saw_amount);
multi_osc(frequency) = ( os.pulsetrain(frequency, duty)*(sq_amount) , os.triangle(frequency)*(tri_amount)*(1.5) , saw2_own(frequency+(hardsync),clock)*(saw_amount) ) :> _
with{
clock = ba.pulse(ba.sec2samp(1/(frequency))); //Master osc. for hardsync
phase(slave_freq,master_freq) = 2 * (os.hs_phasor(1<<16,slave_freq,master_freq)/(1<<16) ) - 1.0; //Zero-mean sawtooth
saw2_own(slave_freq,master_freq) = phase(slave_freq,master_freq) <: * <: -(mem) : *(0.25'*ma.SR/slave_freq); //Hard-syncable anti-alialised saw
};
//-----------------------------------------------
//Oscillator relations
relation = hslider("/Relation", 2, 0, 3.001, 0.001) : *(2) : /(2) : si.smoo ;
detune_amount = (1, (relation-2.1 :*(0.02) : +(1.0)), (1-relation : *(0.02) : +(1.0) ) ) : (max, _) : max ;
detune = ba.if( (relation == 0) + (relation >= 3) , 1, detune_amount);
mixer = (_,_,_,_) <: (_,_,_,!,!,!,_,_) : ((+ : *(relation >= 2)), *(1-(octave)) , (* : *(octave))) : (_, (+ : *(relation<2)), third_osc_send) ;
octave = 2-relation : max(0) : min(1);
detune_osc2 = 1.0/(detune);
fifth = ba.if( (relation >= 3) , 1.49830, 1 ); //A fifth is seven semitones above
osc1_freq = midifreq*detune;
osc2_freq = midifreq*(detune_osc2) : *(fifth);
//Fourth knob
Sub = hslider("/Sub", 0, 0, 1, 0.001) : si.smoo;
tonic_osc_send = multi_osc(midifreq)*(1-Sub);
sub_osc_send = multi_osc(midifreq/(2))*(Sub);
third_osc_send = tonic_osc_send+sub_osc_send;
//ADSR envelope----------------------------
envelope = adsre_min(a,d,s,r,midigate)*(midigain);
a = hslider("/v:envelope/Attack", 0.001, 0.001, 4, 0.001);
d = hslider("/v:envelope/Decay", 0.0, 0.0, 4, 0.001);
s = hslider("/v:envelope/Sustain", 1.0, 0.0, 1.0, 0.01);
r = hslider("/v:envelope/Release", 0.0, 0.0, 4.0, 0.01);
adsre_min(attT60,decT60,susLvl,relT60,gate) = envel
with {
ugate = gate>0;
samps = ugate : +~(*(ugate)); // ramp time in samples
attSamps = int(attT60 * ma.SR);
attLvl = samps/attSamps; //The function for the attack phase. Should go from 0-1 in attSamps samples.
target = select2(ugate, 0.0,
select2(samps<attSamps, (susLvl)*float(ugate), attLvl)); //In the attack phase the target moves up following attLvl
t60 = select2(ugate, relT60, select2(samps<attSamps, decT60, 0.0000001)); //Instead of attT60, we choose some very small number, such that there is virtually no smoothing in the attack phase
pole = ba.tau2pole(t60/6.91);
envel = target : si.smooth(pole);
};
};
|
https://raw.githubusercontent.com/sagpant/OTTO/d736d5fb29f9cfbd32d2cbd3b0ad1492e6c27f9a/src/engines/synths/nuke/nuke.dsp
|
faust
|
An analog style synth with ringmod and hardsync. This contains the code for the OTTO ADSR-envelope (exponential, but with arbitrary attack. Here it is linear.)
A TO-DO is to add this to a dedicated faust library instead.
voice = hgroup("midi", envelope)
Filter
Oscillators--------------------------
Waveform modifiers
Amount of hardsync of the saw-wave
Duty cycle in the pulse wave
Master osc. for hardsync
Zero-mean sawtooth
Hard-syncable anti-alialised saw
-----------------------------------------------
Oscillator relations
A fifth is seven semitones above
Fourth knob
ADSR envelope----------------------------
ramp time in samples
The function for the attack phase. Should go from 0-1 in attSamps samples.
In the attack phase the target moves up following attLvl
Instead of attT60, we choose some very small number, such that there is virtually no smoothing in the attack phase
|
import("stdfaust.lib");
process = hgroup("voices", vgroup("0", voice) + vgroup("3", voice) +
vgroup("1", voice) + vgroup("4", voice) +
vgroup("2", voice) + vgroup("5", voice)) : _ ;
voice = hgroup("midi", ( multi_osc(osc1_freq) , multi_osc(osc2_freq) ) <: mixer :> VCF : *(envelope))
with {
midigate = button ("trigger");
midifreq = hslider("freq", 440, 20, 1000, 1);
midigain = hslider("velocity", 0.5, 0, 1, 1/127);
flt = hslider("/Filter",0.5, 0, 1, 0.01) : si.smoo;
fc = flt*flt*10000 + 100;
Q = 1.25;
VCF = fi.resonlp(fc,Q,0.5) : fi.resonlp(fc,Q,0.5);
wave = hslider("/Wave", 1, 0.08, 4, 0.01) : si.smoo;
sq_amount = 2-(wave) : max(0) : min(1);
saw_amount = wave-(2) : max(0) : min(1);
tri_amount = 1-(sq_amount) : -(saw_amount);
multi_osc(frequency) = ( os.pulsetrain(frequency, duty)*(sq_amount) , os.triangle(frequency)*(tri_amount)*(1.5) , saw2_own(frequency+(hardsync),clock)*(saw_amount) ) :> _
with{
};
relation = hslider("/Relation", 2, 0, 3.001, 0.001) : *(2) : /(2) : si.smoo ;
detune_amount = (1, (relation-2.1 :*(0.02) : +(1.0)), (1-relation : *(0.02) : +(1.0) ) ) : (max, _) : max ;
detune = ba.if( (relation == 0) + (relation >= 3) , 1, detune_amount);
mixer = (_,_,_,_) <: (_,_,_,!,!,!,_,_) : ((+ : *(relation >= 2)), *(1-(octave)) , (* : *(octave))) : (_, (+ : *(relation<2)), third_osc_send) ;
octave = 2-relation : max(0) : min(1);
detune_osc2 = 1.0/(detune);
osc1_freq = midifreq*detune;
osc2_freq = midifreq*(detune_osc2) : *(fifth);
Sub = hslider("/Sub", 0, 0, 1, 0.001) : si.smoo;
tonic_osc_send = multi_osc(midifreq)*(1-Sub);
sub_osc_send = multi_osc(midifreq/(2))*(Sub);
third_osc_send = tonic_osc_send+sub_osc_send;
envelope = adsre_min(a,d,s,r,midigate)*(midigain);
a = hslider("/v:envelope/Attack", 0.001, 0.001, 4, 0.001);
d = hslider("/v:envelope/Decay", 0.0, 0.0, 4, 0.001);
s = hslider("/v:envelope/Sustain", 1.0, 0.0, 1.0, 0.01);
r = hslider("/v:envelope/Release", 0.0, 0.0, 4.0, 0.01);
adsre_min(attT60,decT60,susLvl,relT60,gate) = envel
with {
ugate = gate>0;
attSamps = int(attT60 * ma.SR);
target = select2(ugate, 0.0,
pole = ba.tau2pole(t60/6.91);
envel = target : si.smooth(pole);
};
};
|
7bc9d84adf0000871b7f07f3c29e6b761ab8a1c26457cb154e7e0d1a2d0280df
|
Harrolee/pypedal
|
FaustZita.dsp
|
import("stdfaust.lib");
//-------------------------------`(re.)zita_rev_fdn`-------------------------------
// Internal 8x8 late-reverberation FDN used in the FOSS Linux reverb zita-rev1
// by Fons Adriaensen <[email protected]>. This is an FDN reverb with
// allpass comb filters in each feedback delay in addition to the
// damping filters.
//
// #### Usage
//
// ```
// bus(8) : zita_rev_fdn(f1,f2,t60dc,t60m,fsmax) : bus(8)
// ```
//
// Where:
//
// * `f1`: crossover frequency (Hz) separating dc and midrange frequencies
// * `f2`: frequency (Hz) above f1 where T60 = t60m/2 (see below)
// * `t60dc`: desired decay time (t60) at frequency 0 (sec)
// * `t60m`: desired decay time (t60) at midrange frequencies (sec)
// * `fsmax`: maximum sampling rate to be used (Hz)
//
// #### Reference
//
// * <http://www.kokkinizita.net/linuxaudio/zita-rev1-doc/quickguide.html>
// * <https://ccrma.stanford.edu/~jos/pasp/Zita_Rev1.html>
//------------------------------------------------------------
zita_rev_fdn(f1,f2,t60dc,t60m,fsmax) =
((si.bus(2*N) :> allpass_combs(N) : feedbackmatrix(N)) ~
(delayfilters(N,freqs,durs) : fbdelaylines(N)))
with {
N = 8;
// Delay-line lengths in seconds:
apdelays = (0.020346, 0.024421, 0.031604, 0.027333, 0.022904,
0.029291, 0.013458, 0.019123); // feedforward delays in seconds
tdelays = ( 0.153129, 0.210389, 0.127837, 0.256891, 0.174713,
0.192303, 0.125000, 0.219991); // total delays in seconds
tdelay(i) = floor(0.5 + ma.SR*ba.take(i+1,tdelays)); // samples
apdelay(i) = floor(0.5 + ma.SR*ba.take(i+1,apdelays));
fbdelay(i) = tdelay(i) - apdelay(i);
// NOTE: Since SR is not bounded at compile time, we can't use it to
// allocate delay lines; hence, the fsmax parameter:
tdelaymaxfs(i) = floor(0.5 + fsmax*ba.take(i+1,tdelays));
apdelaymaxfs(i) = floor(0.5 + fsmax*ba.take(i+1,apdelays));
fbdelaymaxfs(i) = tdelaymaxfs(i) - apdelaymaxfs(i);
nextpow2(x) = ceil(log(x)/log(2.0));
maxapdelay(i) = int(2.0^max(1.0,nextpow2(apdelaymaxfs(i))));
maxfbdelay(i) = int(2.0^max(1.0,nextpow2(fbdelaymaxfs(i))));
apcoeff(i) = select2(i&1,0.6,-0.6); // allpass comb-filter coefficient
allpass_combs(N) =
par(i,N,(fi.allpass_comb(maxapdelay(i),apdelay(i),apcoeff(i)))); // filters.lib
fbdelaylines(N) = par(i,N,(de.delay(1024,(fbdelay(i)))));
freqs = (f1,f2); durs = (t60dc,t60m);
delayfilters(N,freqs,durs) = par(i,N,filter(i,freqs,durs));
feedbackmatrix(N) = ro.hadamard(N);
staynormal = 10.0^(-20); // let signals decay well below LSB, but not to zero
special_lowpass(g,f) = si.smooth(p) with {
// unity-dc-gain lowpass needs gain g at frequency f => quadratic formula:
p = mbo2 - sqrt(max(0,mbo2*mbo2 - 1.0)); // other solution is unstable
mbo2 = (1.0 - gs*c)/(1.0 - gs); // NOTE: must ensure |g|<1 (t60m finite)
gs = g*g;
c = cos(2.0*ma.PI*f/float(ma.SR));
};
filter(i,freqs,durs) = lowshelf_lowpass(i)/sqrt(float(N))+staynormal
with {
lowshelf_lowpass(i) = gM*low_shelf1_l(g0/gM,f(1)):special_lowpass(gM,f(2));
low_shelf1_l(G0,fx,x) = x + (G0-1)*fi.lowpass(1,fx,x); // filters.lib
g0 = g(0,i);
gM = g(1,i);
f(k) = ba.take(k,freqs);
dur(j) = ba.take(j+1,durs);
n60(j) = dur(j)*ma.SR; // decay time in samples
g(j,i) = exp(-3.0*log(10.0)*tdelay(i)/n60(j));
};
};
// Stereo input delay used by zita_rev1 in both stereo and ambisonics mode:
zita_in_delay(rdel) = zita_delay_mono(rdel), zita_delay_mono(rdel) with {
zita_delay_mono(rdel) = de.delay(2700,ma.SR*rdel*0.001) * 0.3;
};
// Stereo input mapping used by zita_rev1 in both stereo and ambisonics mode:
zita_distrib2(N) = _,_ <: fanflip(N) with {
fanflip(4) = _,_,*(-1),*(-1);
fanflip(N) = fanflip(N/2),fanflip(N/2);
};
//----------------------------`(re.)zita_rev1_stereo`---------------------------
// Extend `zita_rev_fdn` to include `zita_rev1` input/output mapping in stereo mode.
// `zita_rev1_stereo` is a standard Faust function.
//
// #### Usage
//
// ```
// _,_ : zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax) : _,_
// ```
//
// Where:
//
// `rdel` = delay (in ms) before reverberation begins (e.g., 0 to ~100 ms)
// (remaining args and refs as for `zita_rev_fdn` above)
//------------------------------------------------------------
zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax) =
zita_in_delay(rdel)
: zita_distrib2(N)
: zita_rev_fdn(f1,f2,t60dc,t60m,fsmax)
: output2(N)
with {
N = 8;
output2(N) = outmix(N) : *(t1),*(t1);
t1 = 0.37; // zita-rev1 linearly ramps from 0 to t1 over one buffer
outmix(4) = !,ro.butterfly(2),!; // probably the result of some experimenting!
outmix(N) = outmix(N/2),par(i,N/2,!);
};
zita_light = hgroup("zita",(_,_ <: zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax),_,_ :
out_eq,_,_ : dry_wet : out_level))
with{
fsmax = 48000.0; // highest sampling rate that will be used
rdel = 60;
f1 = 200;
t60dc = 3;
t60m = 2;
f2 = 6000;
out_eq = pareq_stereo(eq1f,eq1l,eq1q) : pareq_stereo(eq2f,eq2l,eq2q);
pareq_stereo(eqf,eql,Q) = fi.peak_eq_rm(eql,eqf,tpbt), fi.peak_eq_rm(eql,eqf,tpbt)
with {
tpbt = wcT/sqrt(max(0,g)); // tan(PI*B/SR), B bw in Hz (Q^2 ~ g/4)
wcT = 2*ma.PI*eqf/ma.SR; // peak frequency in rad/sample
g = ba.db2linear(eql); // peak gain
};
eq1f = 315;
eq1l = 0;
eq1q = 3;
eq2f = 1500;
eq2l = 0;
eq2q = 3;
dry_wet(x,y) = *(wet) + dry*x, *(wet) + dry*y
with {
wet = 0.5*(drywet+1.0);
dry = 1.0-wet;
};
drywet = vslider("dryWet",
0,-1.0,1.0,0.01) : si.smoo;
gain = vslider("level", -6, -70, 40, 0.1) : ba.db2linear : si.smoo;
out_level = *(gain),*(gain);
};
process = zita_light;
|
https://raw.githubusercontent.com/Harrolee/pypedal/932bedc87d99f6096044c31d3f0895dbb36c6574/faust/faustTutorialEffect/FaustZita.dsp
|
faust
|
-------------------------------`(re.)zita_rev_fdn`-------------------------------
Internal 8x8 late-reverberation FDN used in the FOSS Linux reverb zita-rev1
by Fons Adriaensen <[email protected]>. This is an FDN reverb with
allpass comb filters in each feedback delay in addition to the
damping filters.
#### Usage
```
bus(8) : zita_rev_fdn(f1,f2,t60dc,t60m,fsmax) : bus(8)
```
Where:
* `f1`: crossover frequency (Hz) separating dc and midrange frequencies
* `f2`: frequency (Hz) above f1 where T60 = t60m/2 (see below)
* `t60dc`: desired decay time (t60) at frequency 0 (sec)
* `t60m`: desired decay time (t60) at midrange frequencies (sec)
* `fsmax`: maximum sampling rate to be used (Hz)
#### Reference
* <http://www.kokkinizita.net/linuxaudio/zita-rev1-doc/quickguide.html>
* <https://ccrma.stanford.edu/~jos/pasp/Zita_Rev1.html>
------------------------------------------------------------
Delay-line lengths in seconds:
feedforward delays in seconds
total delays in seconds
samples
NOTE: Since SR is not bounded at compile time, we can't use it to
allocate delay lines; hence, the fsmax parameter:
allpass comb-filter coefficient
filters.lib
let signals decay well below LSB, but not to zero
unity-dc-gain lowpass needs gain g at frequency f => quadratic formula:
other solution is unstable
NOTE: must ensure |g|<1 (t60m finite)
filters.lib
decay time in samples
Stereo input delay used by zita_rev1 in both stereo and ambisonics mode:
Stereo input mapping used by zita_rev1 in both stereo and ambisonics mode:
----------------------------`(re.)zita_rev1_stereo`---------------------------
Extend `zita_rev_fdn` to include `zita_rev1` input/output mapping in stereo mode.
`zita_rev1_stereo` is a standard Faust function.
#### Usage
```
_,_ : zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax) : _,_
```
Where:
`rdel` = delay (in ms) before reverberation begins (e.g., 0 to ~100 ms)
(remaining args and refs as for `zita_rev_fdn` above)
------------------------------------------------------------
zita-rev1 linearly ramps from 0 to t1 over one buffer
probably the result of some experimenting!
highest sampling rate that will be used
tan(PI*B/SR), B bw in Hz (Q^2 ~ g/4)
peak frequency in rad/sample
peak gain
|
import("stdfaust.lib");
zita_rev_fdn(f1,f2,t60dc,t60m,fsmax) =
((si.bus(2*N) :> allpass_combs(N) : feedbackmatrix(N)) ~
(delayfilters(N,freqs,durs) : fbdelaylines(N)))
with {
N = 8;
apdelays = (0.020346, 0.024421, 0.031604, 0.027333, 0.022904,
tdelays = ( 0.153129, 0.210389, 0.127837, 0.256891, 0.174713,
apdelay(i) = floor(0.5 + ma.SR*ba.take(i+1,apdelays));
fbdelay(i) = tdelay(i) - apdelay(i);
tdelaymaxfs(i) = floor(0.5 + fsmax*ba.take(i+1,tdelays));
apdelaymaxfs(i) = floor(0.5 + fsmax*ba.take(i+1,apdelays));
fbdelaymaxfs(i) = tdelaymaxfs(i) - apdelaymaxfs(i);
nextpow2(x) = ceil(log(x)/log(2.0));
maxapdelay(i) = int(2.0^max(1.0,nextpow2(apdelaymaxfs(i))));
maxfbdelay(i) = int(2.0^max(1.0,nextpow2(fbdelaymaxfs(i))));
allpass_combs(N) =
fbdelaylines(N) = par(i,N,(de.delay(1024,(fbdelay(i)))));
freqs = (f1,f2); durs = (t60dc,t60m);
delayfilters(N,freqs,durs) = par(i,N,filter(i,freqs,durs));
feedbackmatrix(N) = ro.hadamard(N);
special_lowpass(g,f) = si.smooth(p) with {
gs = g*g;
c = cos(2.0*ma.PI*f/float(ma.SR));
};
filter(i,freqs,durs) = lowshelf_lowpass(i)/sqrt(float(N))+staynormal
with {
lowshelf_lowpass(i) = gM*low_shelf1_l(g0/gM,f(1)):special_lowpass(gM,f(2));
g0 = g(0,i);
gM = g(1,i);
f(k) = ba.take(k,freqs);
dur(j) = ba.take(j+1,durs);
g(j,i) = exp(-3.0*log(10.0)*tdelay(i)/n60(j));
};
};
zita_in_delay(rdel) = zita_delay_mono(rdel), zita_delay_mono(rdel) with {
zita_delay_mono(rdel) = de.delay(2700,ma.SR*rdel*0.001) * 0.3;
};
zita_distrib2(N) = _,_ <: fanflip(N) with {
fanflip(4) = _,_,*(-1),*(-1);
fanflip(N) = fanflip(N/2),fanflip(N/2);
};
zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax) =
zita_in_delay(rdel)
: zita_distrib2(N)
: zita_rev_fdn(f1,f2,t60dc,t60m,fsmax)
: output2(N)
with {
N = 8;
output2(N) = outmix(N) : *(t1),*(t1);
outmix(N) = outmix(N/2),par(i,N/2,!);
};
zita_light = hgroup("zita",(_,_ <: zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax),_,_ :
out_eq,_,_ : dry_wet : out_level))
with{
rdel = 60;
f1 = 200;
t60dc = 3;
t60m = 2;
f2 = 6000;
out_eq = pareq_stereo(eq1f,eq1l,eq1q) : pareq_stereo(eq2f,eq2l,eq2q);
pareq_stereo(eqf,eql,Q) = fi.peak_eq_rm(eql,eqf,tpbt), fi.peak_eq_rm(eql,eqf,tpbt)
with {
};
eq1f = 315;
eq1l = 0;
eq1q = 3;
eq2f = 1500;
eq2l = 0;
eq2q = 3;
dry_wet(x,y) = *(wet) + dry*x, *(wet) + dry*y
with {
wet = 0.5*(drywet+1.0);
dry = 1.0-wet;
};
drywet = vslider("dryWet",
0,-1.0,1.0,0.01) : si.smoo;
gain = vslider("level", -6, -70, 40, 0.1) : ba.db2linear : si.smoo;
out_level = *(gain),*(gain);
};
process = zita_light;
|
7eb432b1c6402b841da61b390a6cd6975ecd940e0d5c470a3826e70bd4aed282
|
sebastien-clara/panoplie
|
autowah.dsp
|
declare name "autoWah";
import("stdfaust.lib");
process = ve.autowah(amount)
with {
amount = vslider("amount [tooltip: amount of effect desired (0 to 1)][style:knob]", 1, 0, 1, 0.01);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/autowah%7E.mxo/autowah.dsp
|
faust
|
declare name "autoWah";
import("stdfaust.lib");
process = ve.autowah(amount)
with {
amount = vslider("amount [tooltip: amount of effect desired (0 to 1)][style:knob]", 1, 0, 1, 0.01);
};
|
|
286c3dcc60a85c9349f8fde417f1054cc7171152832bd761a10fc751ff50dee6
|
sebastien-clara/panoplie
|
crybaby.dsp
|
declare name "Crybaby";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:ve.crybaby(wah)) :> _
with{
wah = vslider("[1] Wah parameter [tooltip: wah pedal angle between 0 (rocked back) and 1 (rocked forward)]",0.8,0,1,0.01);
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/crybaby%7E.mxo/crybaby.dsp
|
faust
|
declare name "Crybaby";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:ve.crybaby(wah)) :> _
with{
wah = vslider("[1] Wah parameter [tooltip: wah pedal angle between 0 (rocked back) and 1 (rocked forward)]",0.8,0,1,0.01);
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
};
|
|
6d5c92b9810cea3b1e41b1e271e86b717e504a9c29ffbefadd708b8aa7e1ece8
|
sebastien-clara/panoplie
|
wah4.dsp
|
declare name "wah4";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:ve.wah4(fr)) :> _
with {
fr = vslider("[1] Resonance Frequency [scale:log] [tooltip: wah resonance frequency in Hz][style:knob]", 200,100,2000,1);
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/wah4%7E.mxo/wah4.dsp
|
faust
|
declare name "wah4";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:ve.wah4(fr)) :> _
with {
fr = vslider("[1] Resonance Frequency [scale:log] [tooltip: wah resonance frequency in Hz][style:knob]", 200,100,2000,1);
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
};
|
|
a9b07e31ca5ed9b5df61c17c12cf6b04d328422a4277dacf1a602d5b43c410ff
|
sebastien-clara/panoplie
|
echo.dsp
|
declare name "echo";
declare description "delay with feedback";
import("stdfaust.lib");
dtime = hslider("[1] delay[style:knob]", 0.001, 0, 5, 0.001) : si.smoo;
feedback = hslider("[2] feedback[style:knob]", 0, 0, 0.99, 0.001);
wetdry = hslider("[3] amount [style:knob]", 1, 0, 1, 0.01) : si.smoo;
dry = 1 - wetdry;
frac(n) = n-int(n);
delay(n,d,x) = x@(int(d)&(n-1));
fdelay(n,d,x) = delay(n,int(d),x)*(1 - frac(d)) + delay(n,int(d)+1,x)*frac(d);
echo(dtime,feedback) = +~echoo
with {
echoo = fdelay(1<<18, ma.SR*dtime)*feedback;
};
process = vgroup("echo", _ <: _*dry, (_*wetdry:out) :> _)
with { out = echo(dtime,feedback); };
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/echo%7E.mxo/echo.dsp
|
faust
|
declare name "echo";
declare description "delay with feedback";
import("stdfaust.lib");
dtime = hslider("[1] delay[style:knob]", 0.001, 0, 5, 0.001) : si.smoo;
feedback = hslider("[2] feedback[style:knob]", 0, 0, 0.99, 0.001);
wetdry = hslider("[3] amount [style:knob]", 1, 0, 1, 0.01) : si.smoo;
dry = 1 - wetdry;
frac(n) = n-int(n);
delay(n,d,x) = x@(int(d)&(n-1));
fdelay(n,d,x) = delay(n,int(d),x)*(1 - frac(d)) + delay(n,int(d)+1,x)*frac(d);
echo(dtime,feedback) = +~echoo
with {
echoo = fdelay(1<<18, ma.SR*dtime)*feedback;
};
process = vgroup("echo", _ <: _*dry, (_*wetdry:out) :> _)
with { out = echo(dtime,feedback); };
|
|
9ee3b18094d0dd2e56fb1622488da60a272793304a021b07de342b9d9332f1bd
|
sebastien-clara/panoplie
|
moogVcf.dsp
|
declare name "moogVcf";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:vcf) :> _
with {
wetdry = vslider("[3] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
freq = hslider("[1] Corner Frequency [unit:PK] [tooltip: The VCF resonates
at the corner frequency. The VCF response is flat below the corner frequency, and rolls off -24 dB per
octave above.] [style:knob]",
440, 20, 5000, 1) : si.smoo;
res = hslider("[2] Corner Resonance [style:knob] [tooltip: Amount of
resonance near VCF corner frequency (specified between 0 and 1)]", 0.9, 0, 1, 0.01);
vcf = ve.moog_vcf(res^4,freq);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/moogVcf%7E.mxo/moogVcf.dsp
|
faust
|
declare name "moogVcf";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:vcf) :> _
with {
wetdry = vslider("[3] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
freq = hslider("[1] Corner Frequency [unit:PK] [tooltip: The VCF resonates
at the corner frequency. The VCF response is flat below the corner frequency, and rolls off -24 dB per
octave above.] [style:knob]",
440, 20, 5000, 1) : si.smoo;
res = hslider("[2] Corner Resonance [style:knob] [tooltip: Amount of
resonance near VCF corner frequency (specified between 0 and 1)]", 0.9, 0, 1, 0.01);
vcf = ve.moog_vcf(res^4,freq);
};
|
|
9fa8aee150b24e4b003be2bb12c82e5ed84ab3578b4b620a666ff42ca3b9c86d
|
sebastien-clara/panoplie
|
moogVcf2bn.dsp
|
declare name "moogVcf2b";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:vcf) :> _
with {
wetdry = vslider("[3] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
freq = hslider("[1] Corner Frequency [unit:PK] [tooltip: The VCF resonates
at the corner frequency. The VCF response is flat below the corner frequency, and rolls off -24 dB per
octave above.] [style:knob]",
440, 20, 5000, 1) : si.smoo;
res = hslider("[2] Corner Resonance [style:knob] [tooltip: Amount of
resonance near VCF corner frequency (specified between 0 and 1)]", 0.9, 0, 1, 0.01);
vcf = ve.moog_vcf_2bn(res,freq);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/moogVcf2bn%7E.mxo/moogVcf2bn.dsp
|
faust
|
declare name "moogVcf2b";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:vcf) :> _
with {
wetdry = vslider("[3] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
freq = hslider("[1] Corner Frequency [unit:PK] [tooltip: The VCF resonates
at the corner frequency. The VCF response is flat below the corner frequency, and rolls off -24 dB per
octave above.] [style:knob]",
440, 20, 5000, 1) : si.smoo;
res = hslider("[2] Corner Resonance [style:knob] [tooltip: Amount of
resonance near VCF corner frequency (specified between 0 and 1)]", 0.9, 0, 1, 0.01);
vcf = ve.moog_vcf_2bn(res,freq);
};
|
|
9bd35f17eed2918e1463e1a84444f59092168d77d890974c9d957c0cbea5263e
|
sebastien-clara/panoplie
|
moogVcf2b.dsp
|
declare name "moogVcf2b";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:vcf) :> _
with {
wetdry = vslider("[3] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
freq = hslider("[1] Corner Frequency [unit:PK] [tooltip: The VCF resonates
at the corner frequency. The VCF response is flat below the corner frequency, and rolls off -24 dB per
octave above.] [style:knob]",
440, 20, 5000, 1) : si.smoo;
res = hslider("[2] Corner Resonance [style:knob] [tooltip: Amount of
resonance near VCF corner frequency (specified between 0 and 1)]", 0.9, 0, 1, 0.01);
vcf = ve.moog_vcf_2b(res,freq);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/moogVcf2b%7E.mxo/moogVcf2b.dsp
|
faust
|
declare name "moogVcf2b";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:vcf) :> _
with {
wetdry = vslider("[3] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
freq = hslider("[1] Corner Frequency [unit:PK] [tooltip: The VCF resonates
at the corner frequency. The VCF response is flat below the corner frequency, and rolls off -24 dB per
octave above.] [style:knob]",
440, 20, 5000, 1) : si.smoo;
res = hslider("[2] Corner Resonance [style:knob] [tooltip: Amount of
resonance near VCF corner frequency (specified between 0 and 1)]", 0.9, 0, 1, 0.01);
vcf = ve.moog_vcf_2b(res,freq);
};
|
|
5385551cbd97636c7bedb9b4fb71529ead8f3a37aeb335492441485847747e2b
|
sebastien-clara/panoplie
|
fuzz.dsp
|
declare name "fuzz";
declare category "Distortion";
declare description "A simple waveshaping effect";
import("stdfaust.lib");
dist = hslider("[1] distortion [style:knob]", 12, 0, 100, 0.1); // distortion parameter
gain = hslider("[9] gain [style:knob]", 3, -96, 96, 0.1) : si.smoo; // output gain (dB)
wetdry = hslider("[3] amount [style:knob]", 1, 0, 1, 0.01) : si.smoo;
dry = 1 - wetdry;
// the waveshaping function
f(a,x) = x*(abs(x) + a)/(x*x + (a-1)*abs(x) + 1);
// gain correction factor to compensate for distortion
g(a) = 1/sqrt(a+1);
fc = hslider("tone[name:Tone][style:knob]", 400, 100, 2000, 1);
lpFilter = fi.lowpass(1,fc);
fuzz(x) = ba.db2linear(gain)*g(dist)*f(ba.db2linear(dist),x) : lpFilter;
process = vgroup("[2] distortion", _ <: _*dry, (_*wetdry:fuzz) :> _);
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/fuzz%7E.mxo/fuzz.dsp
|
faust
|
distortion parameter
output gain (dB)
the waveshaping function
gain correction factor to compensate for distortion
|
declare name "fuzz";
declare category "Distortion";
declare description "A simple waveshaping effect";
import("stdfaust.lib");
wetdry = hslider("[3] amount [style:knob]", 1, 0, 1, 0.01) : si.smoo;
dry = 1 - wetdry;
f(a,x) = x*(abs(x) + a)/(x*x + (a-1)*abs(x) + 1);
g(a) = 1/sqrt(a+1);
fc = hslider("tone[name:Tone][style:knob]", 400, 100, 2000, 1);
lpFilter = fi.lowpass(1,fc);
fuzz(x) = ba.db2linear(gain)*g(dist)*f(ba.db2linear(dist),x) : lpFilter;
process = vgroup("[2] distortion", _ <: _*dry, (_*wetdry:fuzz) :> _);
|
3415005f78470ec8aceb1f1c71e12d9565612175c49dc94a3a0bebdea875c8fc
|
sebastien-clara/panoplie
|
simpleVocoder.dsp
|
import("stdfaust.lib");
process = hgroup("faustVocoder",_,os.lf_imptrain(freq)*gain :
ve.vocoder(bands,att,rel,BWRatio) <: _,_)
with{
bands = 64;
vocoderGroup(x) = vgroup("Vocoder",x);
att = vocoderGroup(hslider("[0] Attack [style:knob] [tooltip: Attack time in seconds]",
5,0.1,100,0.1)*0.001);
rel = vocoderGroup(hslider("[1] Release [style:knob] [tooltip: Release time in seconds]",
5,0.1,100,0.1)*0.001);
BWRatio = vocoderGroup(hslider("[2] BW [style:knob] [tooltip: Coefficient to adjust the
bandwidth of each band]",0.5,0.1,2,0.001));
excitGroup(x) = vgroup("Excitation",x);
freq = excitGroup(hslider("[0] Freq [style:knob]",330,50,2000,0.1));
gain = excitGroup(vslider("[1] Gain",0.5,0,1,0.01) : si.smoo);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/simpleVocoder%7E.mxo/simpleVocoder.dsp
|
faust
|
import("stdfaust.lib");
process = hgroup("faustVocoder",_,os.lf_imptrain(freq)*gain :
ve.vocoder(bands,att,rel,BWRatio) <: _,_)
with{
bands = 64;
vocoderGroup(x) = vgroup("Vocoder",x);
att = vocoderGroup(hslider("[0] Attack [style:knob] [tooltip: Attack time in seconds]",
5,0.1,100,0.1)*0.001);
rel = vocoderGroup(hslider("[1] Release [style:knob] [tooltip: Release time in seconds]",
5,0.1,100,0.1)*0.001);
BWRatio = vocoderGroup(hslider("[2] BW [style:knob] [tooltip: Coefficient to adjust the
bandwidth of each band]",0.5,0.1,2,0.001));
excitGroup(x) = vgroup("Excitation",x);
freq = excitGroup(hslider("[0] Freq [style:knob]",330,50,2000,0.1));
gain = excitGroup(vslider("[1] Gain",0.5,0,1,0.01) : si.smoo);
};
|
|
3f25ebd3bb4b5321541a66e7189c95c30ade63fc89a823039a5af6b3d0c70c33
|
sebastien-clara/panoplie
|
flanger.dsp
|
declare name "flanger";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:flanger) :> _
with {
wetdry = vslider("[9] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
invert = checkbox("[6] Invert Flange Sum");
flanger = pf.flanger_mono(dmax,curdel,depth,fb,invert);
lfo = os.osc;
dmax = 2048;
dflange = 0.001 * ma.SR *
hslider("[1] Flange Delay [unit:ms] [style:knob]", 10, 0, 20, 0.001);
odflange = 0.001 * ma.SR *
hslider("[2] Delay Offset [unit:ms] [style:knob]", 1, 0, 20, 0.001);
freq = hslider("[3] Speed [unit:Hz] [style:knob]", 0.5, 0, 10, 0.01);
depth = hslider("[4] Depth [style:knob]", 1, 0, 1, 0.001);
fb = hslider("[5] Feedback [style:knob]", 0, -0.999, 0.999, 0.001);
curdel = odflange+dflange*(1 + lfo(freq))/2;
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/flanger%7E.mxo/flanger.dsp
|
faust
|
declare name "flanger";
import("stdfaust.lib");
process = _ <: _*dry, (_*wetdry:flanger) :> _
with {
wetdry = vslider("[9] amount [style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
invert = checkbox("[6] Invert Flange Sum");
flanger = pf.flanger_mono(dmax,curdel,depth,fb,invert);
lfo = os.osc;
dmax = 2048;
dflange = 0.001 * ma.SR *
hslider("[1] Flange Delay [unit:ms] [style:knob]", 10, 0, 20, 0.001);
odflange = 0.001 * ma.SR *
hslider("[2] Delay Offset [unit:ms] [style:knob]", 1, 0, 20, 0.001);
freq = hslider("[3] Speed [unit:Hz] [style:knob]", 0.5, 0, 10, 0.01);
depth = hslider("[4] Depth [style:knob]", 1, 0, 1, 0.001);
fb = hslider("[5] Feedback [style:knob]", 0, -0.999, 0.999, 0.001);
curdel = odflange+dflange*(1 + lfo(freq))/2;
};
|
|
ae7db255ff881b581178fa84d78abdbf70f7fc872b6dc60a59ad393764cef168
|
sebastien-clara/panoplie
|
chorus.dsp
|
declare name "chorus";
import("stdfaust.lib");
freq = hslider("[1]freq[style:knob]", 3, 0, 15, 0.01);
dtime = hslider("[2]delay[style:knob]", 0.001, 0, 0.2, 0.001) : si.smoo;
depth = hslider("[3]depth[style:knob]", 0.02, 0, 1, 0.001) : si.smoo;
level = hslider("[4]level[style:knob]", 1, 0, 1, 0.01) : si.smoo;
decimal(x) = x - floor(x);
time = (+(1)~_ ) - 1; // 0,1,2,3,...
frac(n) = n-int(n);
delay(n,d,x) = x@(int(d)&(n-1));
fdelay(n,d,x) = delay(n,int(d),x)*(1 - frac(d)) + delay(n,int(d)+1,x)*frac(d);
tblosc(n,f,freq,mod) = (1-d)*rdtable(n,wave,i&(n-1)) + d*rdtable(n,wave,(i+1)&(n-1))
with {
wave = time*(2.0*ma.PI)/n : f;
phase = freq/ma.SR : (+ : decimal) ~ _;
modphase = decimal(phase+mod/(2*ma.PI))*n;
i = int(floor(modphase));
d = decimal(modphase);
};
chorus(dtime,freq,depth,phase,x) = x+level*fdelay(1<<16, t, x)
with {
t = ma.SR*dtime/2*(1+depth*tblosc(1<<16, sin, freq, phase));
};
process = vgroup("chorus", chorus(dtime,freq,depth,0));
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/chorus%7E.mxo/chorus.dsp
|
faust
|
0,1,2,3,...
|
declare name "chorus";
import("stdfaust.lib");
freq = hslider("[1]freq[style:knob]", 3, 0, 15, 0.01);
dtime = hslider("[2]delay[style:knob]", 0.001, 0, 0.2, 0.001) : si.smoo;
depth = hslider("[3]depth[style:knob]", 0.02, 0, 1, 0.001) : si.smoo;
level = hslider("[4]level[style:knob]", 1, 0, 1, 0.01) : si.smoo;
decimal(x) = x - floor(x);
frac(n) = n-int(n);
delay(n,d,x) = x@(int(d)&(n-1));
fdelay(n,d,x) = delay(n,int(d),x)*(1 - frac(d)) + delay(n,int(d)+1,x)*frac(d);
tblosc(n,f,freq,mod) = (1-d)*rdtable(n,wave,i&(n-1)) + d*rdtable(n,wave,(i+1)&(n-1))
with {
wave = time*(2.0*ma.PI)/n : f;
phase = freq/ma.SR : (+ : decimal) ~ _;
modphase = decimal(phase+mod/(2*ma.PI))*n;
i = int(floor(modphase));
d = decimal(modphase);
};
chorus(dtime,freq,depth,phase,x) = x+level*fdelay(1<<16, t, x)
with {
t = ma.SR*dtime/2*(1+depth*tblosc(1<<16, sin, freq, phase));
};
process = vgroup("chorus", chorus(dtime,freq,depth,0));
|
554f5e5b8c707d724b0f5940d586aea0f71f7e9ec16acdd39e0869df195985f1
|
sebastien-clara/panoplie
|
cabinetMarshallMG15.dsp
|
declare name "cabinetMarshallMG15";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 11;
modeFrequencies=(158.029115342,286.427771557,424.70324748,543.225083987,671.623740202,958.051511758,1708.68980963,2133.39305711,4227.27883539,7605.15117581,7733.54983203);
massEigenValues=(0.611078749629,0.34789209721,0.171554261056,0.204626822018,0.214611556888,0.226790750267,1.0,0.559425912064,0.390642188356,0.0132517118767,0.0119132128807);
t60=(4.34493343704,3.62079092182,0.0409134990214,0.0441438585647,0.0454317832264,0.0508360379224,0.80468114201,0.217321108684,0.157500643606,0.0269982167817,0.0265069810392);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallMG15=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallMG15;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallMG15%7E.mxo/cabinetMarshallMG15.dsp
|
faust
|
declare name "cabinetMarshallMG15";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 11;
modeFrequencies=(158.029115342,286.427771557,424.70324748,543.225083987,671.623740202,958.051511758,1708.68980963,2133.39305711,4227.27883539,7605.15117581,7733.54983203);
massEigenValues=(0.611078749629,0.34789209721,0.171554261056,0.204626822018,0.214611556888,0.226790750267,1.0,0.559425912064,0.390642188356,0.0132517118767,0.0119132128807);
t60=(4.34493343704,3.62079092182,0.0409134990214,0.0441438585647,0.0454317832264,0.0508360379224,0.80468114201,0.217321108684,0.157500643606,0.0269982167817,0.0265069810392);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallMG15=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallMG15;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
050a1c0bf48b1e49ab89d6fc19c3a9b265e36b1050412c2f9fa95379beefd8e9
|
sebastien-clara/panoplie
|
zitaLight.dsp
|
declare name "zitaLight";
import("stdfaust.lib");
process = hgroup("Zita Light",(_,_ <: re.zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax),_,_ :
out_eq,_,_ : dry_wet : out_level))
with{
fsmax = 48000.0; // highest sampling rate that will be used
rdel = 60;
f1 = 200;
t60dc = 3;
t60m = 2;
f2 = 6000;
out_eq = pareq_stereo(eq1f,eq1l,eq1q) : pareq_stereo(eq2f,eq2l,eq2q);
pareq_stereo(eqf,eql,Q) = fi.peak_eq_rm(eql,eqf,tpbt), fi.peak_eq_rm(eql,eqf,tpbt)
with {
tpbt = wcT/sqrt(max(0,g)); // tan(PI*B/SR), B bw in Hz (Q^2 ~ g/4)
wcT = 2*ma.PI*eqf/ma.SR; // peak frequency in rad/sample
g = ba.db2linear(eql); // peak gain
};
eq1f = 315;
eq1l = 0;
eq1q = 3;
eq2f = 1500;
eq2l = 0;
eq2q = 3;
// dry_wet(x,y) = *(wet) + dry*x, *(wet) + dry*y
dry_wet(x,y) = *(dry) + wet*x, *(dry) + wet*y
with {
wet = 0.5*(drywet+1.0);
dry = 1.0-wet;
};
drywet = vslider("[1] Dry-Wet Mix [style:knob] [tooltip: -1 = dry, 1 = wet]",
0,-1.0,1.0,0.01) : si.smoo;
gain = vslider("[2] Level [unit:dB] [style:knob] [tooltip: Output scale
factor]", -6, -70, 40, 0.1) : ba.db2linear : si.smoo;
out_level = *(gain),*(gain);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/zitaLight%7E.mxo/zitaLight.dsp
|
faust
|
highest sampling rate that will be used
tan(PI*B/SR), B bw in Hz (Q^2 ~ g/4)
peak frequency in rad/sample
peak gain
dry_wet(x,y) = *(wet) + dry*x, *(wet) + dry*y
|
declare name "zitaLight";
import("stdfaust.lib");
process = hgroup("Zita Light",(_,_ <: re.zita_rev1_stereo(rdel,f1,f2,t60dc,t60m,fsmax),_,_ :
out_eq,_,_ : dry_wet : out_level))
with{
rdel = 60;
f1 = 200;
t60dc = 3;
t60m = 2;
f2 = 6000;
out_eq = pareq_stereo(eq1f,eq1l,eq1q) : pareq_stereo(eq2f,eq2l,eq2q);
pareq_stereo(eqf,eql,Q) = fi.peak_eq_rm(eql,eqf,tpbt), fi.peak_eq_rm(eql,eqf,tpbt)
with {
};
eq1f = 315;
eq1l = 0;
eq1q = 3;
eq2f = 1500;
eq2l = 0;
eq2q = 3;
dry_wet(x,y) = *(dry) + wet*x, *(dry) + wet*y
with {
wet = 0.5*(drywet+1.0);
dry = 1.0-wet;
};
drywet = vslider("[1] Dry-Wet Mix [style:knob] [tooltip: -1 = dry, 1 = wet]",
0,-1.0,1.0,0.01) : si.smoo;
gain = vslider("[2] Level [unit:dB] [style:knob] [tooltip: Output scale
factor]", -6, -70, 40, 0.1) : ba.db2linear : si.smoo;
out_level = *(gain),*(gain);
};
|
696f900d3d5d436ef13166d1e94e4711556aa368f89c826b1fcf50824a2c6451
|
sebastien-clara/panoplie
|
compressor.dsp
|
declare name "compressor";
import("stdfaust.lib");
process = hgroup("compressor", compressor)
with {
compressor = co.compressor_mono(ratio,threshold,attack,release) * makeupgain;
ratio = hslider("[0] Ratio [style:knob]
[tooltip: A compression Ratio of N means that for each N dB increase in input
signal level above Threshold, the output level goes up 1 dB]",
5, 1, 20, 0.1);
threshold = hslider("[1] Threshold [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level
is compressed according to the Ratio]",
-30, -100, 10, 0.1);
attack = hslider("[2] Attack [unit:ms] [style:knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain
to approach (exponentially) a new lower target level (the compression
`kicking in')]", 50, 1, 1000, 0.1) : *(0.001) : max(1/ma.SR);
release = hslider("[3] Release [unit:ms] [style: knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain
to approach (exponentially) a new higher target level (the compression
'releasing')]", 500, 1, 1000, 0.1) : *(0.001) : max(1/ma.SR);
makeupgain = hslider("[5] Makeup Gain [unit:dB] [style: knob]
[tooltip: The compressed-signal output level is increased by this amount
(in dB) to make up for the level lost due to compression]",
40, -96, 96, 0.1) : ba.db2linear : si.smoo;
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/compressor%7E.mxo/compressor.dsp
|
faust
|
declare name "compressor";
import("stdfaust.lib");
process = hgroup("compressor", compressor)
with {
compressor = co.compressor_mono(ratio,threshold,attack,release) * makeupgain;
ratio = hslider("[0] Ratio [style:knob]
[tooltip: A compression Ratio of N means that for each N dB increase in input
signal level above Threshold, the output level goes up 1 dB]",
5, 1, 20, 0.1);
threshold = hslider("[1] Threshold [unit:dB] [style:knob]
[tooltip: When the signal level exceeds the Threshold (in dB), its level
is compressed according to the Ratio]",
-30, -100, 10, 0.1);
attack = hslider("[2] Attack [unit:ms] [style:knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain
to approach (exponentially) a new lower target level (the compression
`kicking in')]", 50, 1, 1000, 0.1) : *(0.001) : max(1/ma.SR);
release = hslider("[3] Release [unit:ms] [style: knob] [scale:log]
[tooltip: Time constant in ms (1/e smoothing time) for the compression gain
to approach (exponentially) a new higher target level (the compression
'releasing')]", 500, 1, 1000, 0.1) : *(0.001) : max(1/ma.SR);
makeupgain = hslider("[5] Makeup Gain [unit:dB] [style: knob]
[tooltip: The compressed-signal output level is increased by this amount
(in dB) to make up for the level lost due to compression]",
40, -96, 96, 0.1) : ba.db2linear : si.smoo;
};
|
|
fa69e1720edf3874f5f21bb12510dff05d6298a06b329e4a7a3d02735d7586a4
|
sebastien-clara/panoplie
|
rissetBell.dsp
|
//--------------------`rissetBell`-------------------
// Synthesizer
//
// #### Usage
//
// ```
// rissetBell(gate, gain, freq, duration) <: _,_
// ```
//
// Where:
//
// * `gate`: the trigger signal (0 or 1)
// * `gain`: the gain of the instrument
// * `freq`: the frequency of the instrument
// * `duration`: duration of the resonance of the bell
//
// #### Compilation example
// * faust2jaqt -midi rissetBell.dsp
//
//
// #### Source
// * Dodge, Jerse, Computer Music Synthesis Composition and Performance, 2ed., p. 107
///////////////////////////////////////////////////////////////
declare name "rissetBell";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
midigate = button ("v:rissetBell/h:[0]midi/[1]gate");
midifreq = vslider("v:rissetBell/h:[0]midi/[2]freq[unit:Hz] [style:knob]", 1760, 20, 10000, 1);
midigain = vslider("v:rissetBell/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("v:rissetBell/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
duration = vslider("v:rissetBell/h:[1]parameters/[3]duration [style:knob]", 5, 0.2, 10, 0.2) : si.smoo;
env(gate, gain, dur) = en.adsre(att, (dur-att):abs, 0.01, rel, gate) * gain
with {
att = vslider("v:rissetBell/h:[1]parameters/[1]attack [style:knob] [tooltip:sec]", 0.01, 0, 3, 0.01) : si.smoo;
rel = vslider("v:rissetBell/h:[1]parameters/[2]release [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
rissetBell(gate, gain, freq, dur) = par(i, N, part(i)) :> _*0.05
with {
coef = (0.56, 0.561, 0.92, 0.925, 1.19, 1.7, 2, 2.74, 3, 3.76, 4.07);
amp = (1, 0.67, 1, 1.8, 2.67, 1.67, 1.46, 1.33, 1.33, 1, 1.33);
dura = (1, 0.9, 0.65, 0.55, 0.325, 0.35, 0.25, 0.2, 0.15, 0.1, 0.075);
N = ba.count(coef);
part(i) = os.osci(freq*ba.take(i+1, coef)) * env(gate, gain * ba.take(i+1, amp), dur * ba.take(i+1, dura));
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = rissetBell(midigate, midigain, midifreq*bend, duration) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/rissetBell/rissetBell%7E.mxo/rissetBell.dsp
|
faust
|
--------------------`rissetBell`-------------------
Synthesizer
#### Usage
```
rissetBell(gate, gain, freq, duration) <: _,_
```
Where:
* `gate`: the trigger signal (0 or 1)
* `gain`: the gain of the instrument
* `freq`: the frequency of the instrument
* `duration`: duration of the resonance of the bell
#### Compilation example
* faust2jaqt -midi rissetBell.dsp
#### Source
* Dodge, Jerse, Computer Music Synthesis Composition and Performance, 2ed., p. 107
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "rissetBell";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
midigate = button ("v:rissetBell/h:[0]midi/[1]gate");
midifreq = vslider("v:rissetBell/h:[0]midi/[2]freq[unit:Hz] [style:knob]", 1760, 20, 10000, 1);
midigain = vslider("v:rissetBell/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("v:rissetBell/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
duration = vslider("v:rissetBell/h:[1]parameters/[3]duration [style:knob]", 5, 0.2, 10, 0.2) : si.smoo;
env(gate, gain, dur) = en.adsre(att, (dur-att):abs, 0.01, rel, gate) * gain
with {
att = vslider("v:rissetBell/h:[1]parameters/[1]attack [style:knob] [tooltip:sec]", 0.01, 0, 3, 0.01) : si.smoo;
rel = vslider("v:rissetBell/h:[1]parameters/[2]release [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
rissetBell(gate, gain, freq, dur) = par(i, N, part(i)) :> _*0.05
with {
coef = (0.56, 0.561, 0.92, 0.925, 1.19, 1.7, 2, 2.74, 3, 3.76, 4.07);
amp = (1, 0.67, 1, 1.8, 2.67, 1.67, 1.46, 1.33, 1.33, 1, 1.33);
dura = (1, 0.9, 0.65, 0.55, 0.325, 0.35, 0.25, 0.2, 0.15, 0.1, 0.075);
N = ba.count(coef);
part(i) = os.osci(freq*ba.take(i+1, coef)) * env(gate, gain * ba.take(i+1, amp), dur * ba.take(i+1, dura));
};
process = rissetBell(midigate, midigain, midifreq*bend, duration) <: _,_;
|
8c5f6715261f4790181044913f3e5375235d4d3f98d56c64db6c83659c4be501
|
sebastien-clara/panoplie
|
phaseRhodes.dsp
|
//--------------------`phaseRhodes`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi phaseRhodes.dsp
//
//
// #### Source
// * http://sccode.org/1-522
///////////////////////////////////////////////////////////////
declare name "phaseRhodes";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// MIDI interface
///////////////////////////////////////////////////////////////
midigate = button ("v:phaseRhodes/h:[0]midi/[1]gate");
midifreq = vslider("v:phaseRhodes/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 5000, 1);
midigain = vslider("v:phaseRhodes/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("v:phaseRhodes/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
phaseRhodes(gate, gain, freq) = sig * 0.5
with {
modIndex = vslider("v:phaseRhodes/h:[1]fx/[1]modIndex [style:knob]", 0.2,0,15,0.01) : si.smoo;
lfoSpeed = vslider("v:phaseRhodes/h:[1]fx/[2]lfoSpeed [style:knob]", 0.4,0,10,0.01);
lfoDepth = vslider("v:phaseRhodes/h:[1]fx/[3]lfoDepth [style:knob]", 0.1,0,1,0.01) : si.smoo;
brightness = vslider("v:phaseRhodes/h:[1]fx/[4]brightness [style:knob]", 0.2,0,1,0.01)*0.7 : si.smoo;
rel = vslider("v:phaseRhodes/h:[1]fx/[5]release [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
env1 = en.adsr(0.01, 1.25, 0, rel, gate) * gain;
env2 = en.adsr(0.01, 1, 0, rel, gate) * gain;
env3 = en.adsr(0.01, 1.5, 0, rel, gate) * gain;
env4 = en.adsr(0.01, 1.5, 0, rel, gate) * gain;
osc4 = os.osci(freq * 0.5) * 4 * ma.PI * 0.535887 * modIndex * env4;
osc3 = os.oscp(freq, osc4) * env3;
osc2 = os.osci(freq * 15) * 2 * ma.PI * 0.108819 * env2;
osc1 = os.oscp(freq, osc2) * env1;
sig = ((osc3 * (1 - brightness)) + (osc1 * brightness)) * (os.osci(lfoSpeed) * lfoDepth + 1);
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = phaseRhodes(midigate, midigain, midifreq*bend) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/phaseRhodes/phaseRhodes%7E.mxo/phaseRhodes.dsp
|
faust
|
--------------------`phaseRhodes`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi phaseRhodes.dsp
#### Source
* http://sccode.org/1-522
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
MIDI interface
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "phaseRhodes";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
midigate = button ("v:phaseRhodes/h:[0]midi/[1]gate");
midifreq = vslider("v:phaseRhodes/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 5000, 1);
midigain = vslider("v:phaseRhodes/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("v:phaseRhodes/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
phaseRhodes(gate, gain, freq) = sig * 0.5
with {
modIndex = vslider("v:phaseRhodes/h:[1]fx/[1]modIndex [style:knob]", 0.2,0,15,0.01) : si.smoo;
lfoSpeed = vslider("v:phaseRhodes/h:[1]fx/[2]lfoSpeed [style:knob]", 0.4,0,10,0.01);
lfoDepth = vslider("v:phaseRhodes/h:[1]fx/[3]lfoDepth [style:knob]", 0.1,0,1,0.01) : si.smoo;
brightness = vslider("v:phaseRhodes/h:[1]fx/[4]brightness [style:knob]", 0.2,0,1,0.01)*0.7 : si.smoo;
rel = vslider("v:phaseRhodes/h:[1]fx/[5]release [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
env1 = en.adsr(0.01, 1.25, 0, rel, gate) * gain;
env2 = en.adsr(0.01, 1, 0, rel, gate) * gain;
env3 = en.adsr(0.01, 1.5, 0, rel, gate) * gain;
env4 = en.adsr(0.01, 1.5, 0, rel, gate) * gain;
osc4 = os.osci(freq * 0.5) * 4 * ma.PI * 0.535887 * modIndex * env4;
osc3 = os.oscp(freq, osc4) * env3;
osc2 = os.osci(freq * 15) * 2 * ma.PI * 0.108819 * env2;
osc1 = os.oscp(freq, osc2) * env1;
sig = ((osc3 * (1 - brightness)) + (osc1 * brightness)) * (os.osci(lfoSpeed) * lfoDepth + 1);
};
process = phaseRhodes(midigate, midigain, midifreq*bend) <: _,_;
|
adcceac68709155ebc66bc46e104381c0d3b25515692188674c7156dd1859943
|
sebastien-clara/panoplie
|
cabinetMesaGhandiBass.dsp
|
declare name "cabinetMesaGhandiBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 23;
modeFrequencies=(158.918918919,635.675675676,953.513513514,1191.89189189,1350.81081081,1589.18918919,2224.86486486,2463.24324324,2781.08108108,3178.37837838,3337.2972973,3814.05405405,4449.72972973,4608.64864865,5005.94594595,5403.24324324,5880.0,6595.13513514,6912.97297297,8899.45945946,9296.75675676,10965.4054054,11918.9189189);
massEigenValues=(1.0,0.392656781741,0.179698264984,0.16272865923,0.159858764562,0.385698217173,0.423967154107,0.346161950402,0.227094155569,0.447609425077,0.440784764765,0.354954511744,0.129041093615,0.0883058328048,0.160879116756,0.0492903135974,0.0619921982738,0.032771899832,0.0170549644327,0.0103629048452,0.0119384482167,0.02242546121,0.0118962229927);
t60=(87.3864656679,58.2576698922,6.24196315368,4.85487764072,4.85487764072,58.2576698922,24.9676175793,19.4192755274,12.4838479621,24.9676175793,24.9676175793,14.5644762318,8.73871707706,1.32411451775,34.9546332734,1.12041664549,19.4192755274,34.9546332734,0.971038205904,14.5644762318,19.4192755274,21.8466751751,29.1288741184);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMesaGhandiBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMesaGhandiBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMesaGhandiBass%7E.mxo/cabinetMesaGhandiBass.dsp
|
faust
|
declare name "cabinetMesaGhandiBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 23;
modeFrequencies=(158.918918919,635.675675676,953.513513514,1191.89189189,1350.81081081,1589.18918919,2224.86486486,2463.24324324,2781.08108108,3178.37837838,3337.2972973,3814.05405405,4449.72972973,4608.64864865,5005.94594595,5403.24324324,5880.0,6595.13513514,6912.97297297,8899.45945946,9296.75675676,10965.4054054,11918.9189189);
massEigenValues=(1.0,0.392656781741,0.179698264984,0.16272865923,0.159858764562,0.385698217173,0.423967154107,0.346161950402,0.227094155569,0.447609425077,0.440784764765,0.354954511744,0.129041093615,0.0883058328048,0.160879116756,0.0492903135974,0.0619921982738,0.032771899832,0.0170549644327,0.0103629048452,0.0119384482167,0.02242546121,0.0118962229927);
t60=(87.3864656679,58.2576698922,6.24196315368,4.85487764072,4.85487764072,58.2576698922,24.9676175793,19.4192755274,12.4838479621,24.9676175793,24.9676175793,14.5644762318,8.73871707706,1.32411451775,34.9546332734,1.12041664549,19.4192755274,34.9546332734,0.971038205904,14.5644762318,19.4192755274,21.8466751751,29.1288741184);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMesaGhandiBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMesaGhandiBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
93bc25a241362a80dc867381af9d8363531351cb873e1db8099798c8e3ad57e4
|
sebastien-clara/panoplie
|
phaseRhodesMono.dsp
|
//--------------------`phaseRhodes`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi phaseRhodes.dsp
//
//
// #### Source
// * http://sccode.org/1-522
///////////////////////////////////////////////////////////////
declare name "phaseRhodes";
declare author "Sébastien Clara";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// MIDI interface
///////////////////////////////////////////////////////////////
midigate = button ("v:phaseRhodes/h:[0]midi/[1]gate");
midifreq = vslider("v:phaseRhodes/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 5000, 1) : portamento;
midigain = vslider("v:phaseRhodes/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("v:phaseRhodes/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:phaseRhodes/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
phaseRhodes(gate, gain, freq) = sig * 0.5
with {
modIndex = vslider("v:phaseRhodes/h:[1]fx/[1]modIndex [style:knob]", 0.2,0,15,0.01) : si.smoo;
lfoSpeed = vslider("v:phaseRhodes/h:[1]fx/[2]lfoSpeed [style:knob]", 0.4,0,10,0.01);
lfoDepth = vslider("v:phaseRhodes/h:[1]fx/[3]lfoDepth [style:knob]", 0.1,0,1,0.01) : si.smoo;
brightness = vslider("v:phaseRhodes/h:[1]fx/[4]brightness [style:knob]", 0.2,0,1,0.01)*0.7 : si.smoo;
rel = vslider("v:phaseRhodes/h:[1]fx/[5]release [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
env1 = en.adsr(0.01, 1.25, 0.7, rel, gate) * gain;
env2 = en.adsr(0.01, 1, 0.7, rel, gate) * gain;
env3 = en.adsr(0.01, 1.5, 0.7, rel, gate) * gain;
env4 = en.adsr(0.01, 1.5, 0.7, rel, gate) * gain;
osc4 = os.osci(freq * 0.5) * 4 * ma.PI * 0.535887 * modIndex * env4;
osc3 = os.oscp(freq, osc4) * env3;
osc2 = os.osci(freq * 15) * 2 * ma.PI * 0.108819 * env2;
osc1 = os.oscp(freq, osc2) * env1;
sig = ((osc3 * (1 - brightness)) + (osc1 * brightness)) * (os.osci(lfoSpeed) * lfoDepth + 1);
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = phaseRhodes(midigate, midigain, midifreq*bend) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/phaseRhodesMono/phaseRhodesMono%7E.mxo/phaseRhodesMono.dsp
|
faust
|
--------------------`phaseRhodes`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi phaseRhodes.dsp
#### Source
* http://sccode.org/1-522
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
MIDI interface
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "phaseRhodes";
declare author "Sébastien Clara";
import("stdfaust.lib");
midigate = button ("v:phaseRhodes/h:[0]midi/[1]gate");
midifreq = vslider("v:phaseRhodes/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 5000, 1) : portamento;
midigain = vslider("v:phaseRhodes/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("v:phaseRhodes/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:phaseRhodes/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
phaseRhodes(gate, gain, freq) = sig * 0.5
with {
modIndex = vslider("v:phaseRhodes/h:[1]fx/[1]modIndex [style:knob]", 0.2,0,15,0.01) : si.smoo;
lfoSpeed = vslider("v:phaseRhodes/h:[1]fx/[2]lfoSpeed [style:knob]", 0.4,0,10,0.01);
lfoDepth = vslider("v:phaseRhodes/h:[1]fx/[3]lfoDepth [style:knob]", 0.1,0,1,0.01) : si.smoo;
brightness = vslider("v:phaseRhodes/h:[1]fx/[4]brightness [style:knob]", 0.2,0,1,0.01)*0.7 : si.smoo;
rel = vslider("v:phaseRhodes/h:[1]fx/[5]release [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
env1 = en.adsr(0.01, 1.25, 0.7, rel, gate) * gain;
env2 = en.adsr(0.01, 1, 0.7, rel, gate) * gain;
env3 = en.adsr(0.01, 1.5, 0.7, rel, gate) * gain;
env4 = en.adsr(0.01, 1.5, 0.7, rel, gate) * gain;
osc4 = os.osci(freq * 0.5) * 4 * ma.PI * 0.535887 * modIndex * env4;
osc3 = os.oscp(freq, osc4) * env3;
osc2 = os.osci(freq * 15) * 2 * ma.PI * 0.108819 * env2;
osc1 = os.oscp(freq, osc2) * env1;
sig = ((osc3 * (1 - brightness)) + (osc1 * brightness)) * (os.osci(lfoSpeed) * lfoDepth + 1);
};
process = phaseRhodes(midigate, midigain, midifreq*bend) <: _,_;
|
5819cd7fa9219e35d652d51214c2c73b94133971e2ca8c80df5c1a5ad76d37c7
|
sebastien-clara/panoplie
|
cabinetMesaGhandiTreble.dsp
|
declare name "cabinetMesaGhandiTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 28;
modeFrequencies=(177.108433735,708.43373494,974.096385542,1239.75903614,1593.97590361,2213.85542169,2656.62650602,3099.39759036,3542.1686747,3719.27710843,4162.04819277,4516.26506024,4959.03614458,6198.79518072,6730.12048193,7350.0,8146.98795181,8678.31325301,9740.96385542,10095.1807229,10803.6144578,11157.8313253,12220.4819277,12840.3614458,13460.2409639,14611.4457831,15319.8795181,16116.8674699);
massEigenValues=(1.0,0.36751606489,0.298870274002,0.376965946141,0.431845320751,0.621944802822,0.711148807806,0.997135886921,0.578672242824,0.56869872828,0.512754999047,0.59389630814,0.628170641703,0.0373450160688,0.0616765194919,0.0485742044011,0.029503256078,0.028222767439,0.0426637334594,0.0485623746681,0.0229874255324,0.0268915380165,0.0219745643631,0.0282216190443,0.0384767082243,0.0270342790581,0.0204156906017,0.0191714119422);
t60=(64.9257074788,16.2314856284,16.2314856284,64.9257074788,64.9257074788,8.46863866678,38.9554558249,38.9554558249,5.12578590831,5.12578590831,4.86950053017,12.9852041717,13.9127131593,48.6943001959,32.4628929119,27.825347974,5.72881032748,5.72881032748,16.2314856284,17.7070681088,21.641954723,24.3471892701,4.86950053017,11.4575423098,19.477767085,6.9563957522,4.75073413542,3.89561609326);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMesaGhandiTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMesaGhandiTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMesaGhandiTreble%7E.mxo/cabinetMesaGhandiTreble.dsp
|
faust
|
declare name "cabinetMesaGhandiTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 28;
modeFrequencies=(177.108433735,708.43373494,974.096385542,1239.75903614,1593.97590361,2213.85542169,2656.62650602,3099.39759036,3542.1686747,3719.27710843,4162.04819277,4516.26506024,4959.03614458,6198.79518072,6730.12048193,7350.0,8146.98795181,8678.31325301,9740.96385542,10095.1807229,10803.6144578,11157.8313253,12220.4819277,12840.3614458,13460.2409639,14611.4457831,15319.8795181,16116.8674699);
massEigenValues=(1.0,0.36751606489,0.298870274002,0.376965946141,0.431845320751,0.621944802822,0.711148807806,0.997135886921,0.578672242824,0.56869872828,0.512754999047,0.59389630814,0.628170641703,0.0373450160688,0.0616765194919,0.0485742044011,0.029503256078,0.028222767439,0.0426637334594,0.0485623746681,0.0229874255324,0.0268915380165,0.0219745643631,0.0282216190443,0.0384767082243,0.0270342790581,0.0204156906017,0.0191714119422);
t60=(64.9257074788,16.2314856284,16.2314856284,64.9257074788,64.9257074788,8.46863866678,38.9554558249,38.9554558249,5.12578590831,5.12578590831,4.86950053017,12.9852041717,13.9127131593,48.6943001959,32.4628929119,27.825347974,5.72881032748,5.72881032748,16.2314856284,17.7070681088,21.641954723,24.3471892701,4.86950053017,11.4575423098,19.477767085,6.9563957522,4.75073413542,3.89561609326);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMesaGhandiTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMesaGhandiTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
9addde7c71ebc151f258c62d9929bd97fef6e4bd84d649300291f9e57990d085
|
sebastien-clara/panoplie
|
parametricEQ.dsp
|
// A parametric equalizer application.
//
// #### Usage:
//
// ```
// _ : parametric_eq : _ ;
// ```
//------------------------------------------------------------
declare name "parametricEQ";
import("stdfaust.lib");
process = fi.low_shelf(LL,FL) : fi.peak_eq(LP,FP,BP) : fi.high_shelf(LH,FH)
with{
eq_group(x) = hgroup("[0] PARAMETRIC EQ SECTIONS [tooltip: See Faust's filters.lib
for info and pointers]",x);
ls_group(x) = eq_group(vgroup("[1] Low Shelf",x));
LL = ls_group(hslider("[0] Low Boost|Cut [unit:dB] [style:knob]
[tooltip: Amount of low-frequency boost or cut in decibels]",0,-40,40,0.1));
FL = ls_group(hslider("[1] Transition Frequency [unit:Hz] [style:knob] [scale:log]
[tooltip: Transition-frequency from boost (cut) to unity gain]",200,1,5000,1));
pq_group(x) = eq_group(vgroup("[2] Peaking Equalizer[tooltip: Parametric Equalizer
sections from filters.lib]",x));
LP = pq_group(hslider("[0] Peak Boost|Cut [unit:dB] [style:knob][tooltip: Amount of
local boost or cut in decibels]",0,-40,40,0.1));
FP = pq_group(hslider("[1] Peak Frequency [unit:Hz] [style:knob] [tooltip: Peak
Frequency]",2500,20,10000,1)) : si.smooth(0.999);
Q = pq_group(hslider("[2] Peak Q [style:knob] [scale:log] [tooltip: Quality factor
(Q) of the peak = center-frequency/bandwidth]",10,0.1,100,0.1));
BP = FP/Q;
hs_group(x) = eq_group(vgroup("[3] High Shelf [tooltip: A high shelf provides a boost
or cut above some frequency]",x));
LH = hs_group(hslider("[0] High Boost|Cut [unit:dB] [style:knob] [tooltip: Amount of
high-frequency boost or cut in decibels]",0,-40,40,.1));
FH = hs_group(hslider("[1] Transition Frequency [unit:Hz] [style:knob] [scale:log]
[tooltip: Transition-frequency from boost (cut) to unity gain]",8000,20,10000,1));
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/parametricEQ%7E.mxo/parametricEQ.dsp
|
faust
|
A parametric equalizer application.
#### Usage:
```
_ : parametric_eq : _ ;
```
------------------------------------------------------------
|
declare name "parametricEQ";
import("stdfaust.lib");
process = fi.low_shelf(LL,FL) : fi.peak_eq(LP,FP,BP) : fi.high_shelf(LH,FH)
with{
eq_group(x) = hgroup("[0] PARAMETRIC EQ SECTIONS [tooltip: See Faust's filters.lib
for info and pointers]",x);
ls_group(x) = eq_group(vgroup("[1] Low Shelf",x));
LL = ls_group(hslider("[0] Low Boost|Cut [unit:dB] [style:knob]
[tooltip: Amount of low-frequency boost or cut in decibels]",0,-40,40,0.1));
FL = ls_group(hslider("[1] Transition Frequency [unit:Hz] [style:knob] [scale:log]
[tooltip: Transition-frequency from boost (cut) to unity gain]",200,1,5000,1));
pq_group(x) = eq_group(vgroup("[2] Peaking Equalizer[tooltip: Parametric Equalizer
sections from filters.lib]",x));
LP = pq_group(hslider("[0] Peak Boost|Cut [unit:dB] [style:knob][tooltip: Amount of
local boost or cut in decibels]",0,-40,40,0.1));
FP = pq_group(hslider("[1] Peak Frequency [unit:Hz] [style:knob] [tooltip: Peak
Frequency]",2500,20,10000,1)) : si.smooth(0.999);
Q = pq_group(hslider("[2] Peak Q [style:knob] [scale:log] [tooltip: Quality factor
(Q) of the peak = center-frequency/bandwidth]",10,0.1,100,0.1));
BP = FP/Q;
hs_group(x) = eq_group(vgroup("[3] High Shelf [tooltip: A high shelf provides a boost
or cut above some frequency]",x));
LH = hs_group(hslider("[0] High Boost|Cut [unit:dB] [style:knob] [tooltip: Amount of
high-frequency boost or cut in decibels]",0,-40,40,.1));
FH = hs_group(hslider("[1] Transition Frequency [unit:Hz] [style:knob] [scale:log]
[tooltip: Transition-frequency from boost (cut) to unity gain]",8000,20,10000,1));
};
|
3bf791f01aa8b957395b8518cbe851cebd09cd8d2cd1e060f50779fcca40d8c1
|
sebastien-clara/panoplie
|
protoPad.dsp
|
//--------------------`protoPad`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi protoPad.dsp
//
//
// #### Source
// * http://sccode.org/1-4QJ
///////////////////////////////////////////////////////////////
declare name "protoPad";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// MIDI interface
///////////////////////////////////////////////////////////////
midigate = button ("v:protoPad/h:[0]midi/[1]gate");
midifreq = vslider("v:protoPad/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 20, 10000, 1);
midigain = vslider("v:protoPad/h:[0]midi/[9]gain [style:knob]", 0.5, 0, 3, 0.01);
bend = vslider("v:protoPad/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:protoPad/h:[1]env/[1]A [style:knob] [tooltip:sec]", 0.01, 0, 5, 0.01) : si.smoo;
dec = vslider("v:protoPad/h:[1]env/[2]D [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
sus = vslider("v:protoPad/h:[1]env/[3]S [style:knob] [tooltip:percentage of max]", 90, 0, 100, 0.1) : si.smoo;
rel = vslider("v:protoPad/h:[1]env/[4]R [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
protoPad(freq) = snd : co.limiter_1176_R4_mono
with {
freq2 = freq*1.5;
freq3 = freq*1.33;
mod = freq + (os.osci(freq/2) * freq/3);
sig = ((mod*0.99, mod+1, (mod-1)*0.99, freq2, freq3*0.99) : par(i, 5, os.sawtooth) :> _*0.1),
((mod*0.99, (mod+1)*0.99, (mod-1)*0.99, freq2*0.99, freq3*0.99, (freq2+1)*0.99, (freq3+1)*0.99) :
par(i, 7, _<:(os.sawtooth, os.triangle) : si.interpolate(os.lf_trianglepos(7.13)*0.1)) :> _*0.1) : +;
shape = (sig : re.mono_freeverb(0.51, 0.51, 0.1, ba.sec2samp(0.05))) <:
(fi.resonlp(((os.osc(freq/500)*1700)+4000)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5),
fi.resonlp(((os.osc(freq/300)*480)+700)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5)) :> _;
drive=0.3;
offset=0;
snd = (shape*0.05) : ef.cubicnl(drive,offset) : fi.highpass(3,freq);
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = protoPad(midifreq*bend)*envelop(midigate,midigain) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/protoPad/protoPad%7E.mxo/protoPad.dsp
|
faust
|
--------------------`protoPad`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi protoPad.dsp
#### Source
* http://sccode.org/1-4QJ
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
MIDI interface
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "protoPad";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
midigate = button ("v:protoPad/h:[0]midi/[1]gate");
midifreq = vslider("v:protoPad/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 20, 10000, 1);
midigain = vslider("v:protoPad/h:[0]midi/[9]gain [style:knob]", 0.5, 0, 3, 0.01);
bend = vslider("v:protoPad/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:protoPad/h:[1]env/[1]A [style:knob] [tooltip:sec]", 0.01, 0, 5, 0.01) : si.smoo;
dec = vslider("v:protoPad/h:[1]env/[2]D [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
sus = vslider("v:protoPad/h:[1]env/[3]S [style:knob] [tooltip:percentage of max]", 90, 0, 100, 0.1) : si.smoo;
rel = vslider("v:protoPad/h:[1]env/[4]R [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
protoPad(freq) = snd : co.limiter_1176_R4_mono
with {
freq2 = freq*1.5;
freq3 = freq*1.33;
mod = freq + (os.osci(freq/2) * freq/3);
sig = ((mod*0.99, mod+1, (mod-1)*0.99, freq2, freq3*0.99) : par(i, 5, os.sawtooth) :> _*0.1),
((mod*0.99, (mod+1)*0.99, (mod-1)*0.99, freq2*0.99, freq3*0.99, (freq2+1)*0.99, (freq3+1)*0.99) :
par(i, 7, _<:(os.sawtooth, os.triangle) : si.interpolate(os.lf_trianglepos(7.13)*0.1)) :> _*0.1) : +;
shape = (sig : re.mono_freeverb(0.51, 0.51, 0.1, ba.sec2samp(0.05))) <:
(fi.resonlp(((os.osc(freq/500)*1700)+4000)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5),
fi.resonlp(((os.osc(freq/300)*480)+700)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5)) :> _;
drive=0.3;
offset=0;
snd = (shape*0.05) : ef.cubicnl(drive,offset) : fi.highpass(3,freq);
};
process = protoPad(midifreq*bend)*envelop(midigate,midigain) <: _,_;
|
e5304ba34601d55d1c94b238175e3fe94d18c7409db1dc047b74e17431d3d20b
|
sebastien-clara/panoplie
|
protoPadMono.dsp
|
//--------------------`protoPad`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi protoPad.dsp
//
//
// #### Source
// * http://sccode.org/1-4QJ
///////////////////////////////////////////////////////////////
declare name "protoPad";
declare author "Sébastien Clara";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// MIDI interface
///////////////////////////////////////////////////////////////
midigate = button ("v:protoPad/h:[0]midi/[1]gate");
midifreq = vslider("v:protoPad/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 20, 10000, 1) : portamento;
midigain = vslider("v:protoPad/h:[0]midi/[9]gain [style:knob]", 0.5, 0, 3, 0.01) : si.smoo;
bend = vslider("v:protoPad/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:protoPad/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain * (gate:si.smoo)
with {
att = vslider("v:protoPad/h:[1]env/[1]A [style:knob] [tooltip:sec]", 0.01, 0, 5, 0.01) : si.smoo;
dec = vslider("v:protoPad/h:[1]env/[2]D [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
sus = vslider("v:protoPad/h:[1]env/[3]S [style:knob] [tooltip:percentage of max]", 0.9, 0, 1, 0.1) : si.smoo;
rel = vslider("v:protoPad/h:[1]env/[4]R [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
protoPad(freq) = snd : co.limiter_1176_R4_mono
with {
freq2 = freq*1.5;
freq3 = freq*1.33;
mod = freq + (os.osci(freq/2) * freq/3);
sig = ((mod*0.99, mod+1, (mod-1)*0.99, freq2, freq3*0.99) : par(i, 5, os.sawtooth) :> _*0.1),
((mod*0.99, (mod+1)*0.99, (mod-1)*0.99, freq2*0.99, freq3*0.99, (freq2+1)*0.99, (freq3+1)*0.99) :
par(i, 7, _<:(os.sawtooth, os.triangle) : si.interpolate(os.lf_trianglepos(7.13)*0.1)) :> _*0.1) : +;
shape = (sig : re.mono_freeverb(0.51, 0.51, 0.1, ba.sec2samp(0.05))) <:
(fi.resonlp(((os.osc(freq/500)*1700)+4000)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5),
fi.resonlp(((os.osc(freq/300)*480)+700)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5)) :> _;
drive=0.3;
offset=0;
snd = (shape*0.05) : ef.cubicnl(drive,offset) : fi.highpass(3,freq);
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = protoPad(midifreq*bend)*envelop(midigate,midigain) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/protoPadMono/protoPadMono%7E.mxo/protoPadMono.dsp
|
faust
|
--------------------`protoPad`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi protoPad.dsp
#### Source
* http://sccode.org/1-4QJ
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
MIDI interface
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "protoPad";
declare author "Sébastien Clara";
import("stdfaust.lib");
midigate = button ("v:protoPad/h:[0]midi/[1]gate");
midifreq = vslider("v:protoPad/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 20, 10000, 1) : portamento;
midigain = vslider("v:protoPad/h:[0]midi/[9]gain [style:knob]", 0.5, 0, 3, 0.01) : si.smoo;
bend = vslider("v:protoPad/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:protoPad/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain * (gate:si.smoo)
with {
att = vslider("v:protoPad/h:[1]env/[1]A [style:knob] [tooltip:sec]", 0.01, 0, 5, 0.01) : si.smoo;
dec = vslider("v:protoPad/h:[1]env/[2]D [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
sus = vslider("v:protoPad/h:[1]env/[3]S [style:knob] [tooltip:percentage of max]", 0.9, 0, 1, 0.1) : si.smoo;
rel = vslider("v:protoPad/h:[1]env/[4]R [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
protoPad(freq) = snd : co.limiter_1176_R4_mono
with {
freq2 = freq*1.5;
freq3 = freq*1.33;
mod = freq + (os.osci(freq/2) * freq/3);
sig = ((mod*0.99, mod+1, (mod-1)*0.99, freq2, freq3*0.99) : par(i, 5, os.sawtooth) :> _*0.1),
((mod*0.99, (mod+1)*0.99, (mod-1)*0.99, freq2*0.99, freq3*0.99, (freq2+1)*0.99, (freq3+1)*0.99) :
par(i, 7, _<:(os.sawtooth, os.triangle) : si.interpolate(os.lf_trianglepos(7.13)*0.1)) :> _*0.1) : +;
shape = (sig : re.mono_freeverb(0.51, 0.51, 0.1, ba.sec2samp(0.05))) <:
(fi.resonlp(((os.osc(freq/500)*1700)+4000)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5),
fi.resonlp(((os.osc(freq/300)*480)+700)/1, 1/(os.oscp(freq/1000,1.5*ma.PI)+2.5),0.5)) :> _;
drive=0.3;
offset=0;
snd = (shape*0.05) : ef.cubicnl(drive,offset) : fi.highpass(3,freq);
};
process = protoPad(midifreq*bend)*envelop(midigate,midigain) <: _,_;
|
9f150b0ebc3e72c05e5bc00d1341522f129eec0c9a69e8cf418b94b8294a9fe1
|
sebastien-clara/panoplie
|
cabinetMarshallDamienTreble.dsp
|
declare name "cabinetMarshallDamienTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 44;
modeFrequencies=(105.0,630.0,787.5,997.5,1207.5,1575.0,1785.0,1890.0,2047.5,2310.0,2625.0,2835.0,3045.0,3255.0,3517.5,3727.5,4095.0,4252.5,4462.5,4620.0,4725.0,4935.0,5092.5,5565.0,5722.5,6562.5,6825.0,7245.0,7875.0,8032.5,8505.0,8662.5,8820.0,9082.5,9660.0,10185.0,10447.5,10710.0,11182.5,11707.5,11865.0,12075.0,12232.5,12390.0);
massEigenValues=(1.0,0.229230846243,0.292112455987,0.330710408992,0.207465469033,0.266067758911,0.271784738486,0.292383734617,0.437359762684,0.354020027846,0.300787329373,0.279034873814,0.296104365532,0.524994190351,0.350656948008,0.503690327875,0.450765853725,0.331046266848,0.249063235849,0.293323821755,0.285879792191,0.343005882467,0.392333238484,0.087048204078,0.073636791989,0.0949205518909,0.0842974801078,0.0501173874028,0.0363202521033,0.0333490437783,0.0267739680552,0.0266376975765,0.0315772165354,0.0224295197786,0.0417477209889,0.0300421672479,0.0220248167178,0.0298613345356,0.0312084124198,0.0121972920109,0.0118165947651,0.012459891424,0.0137822810557,0.0122026921349);
t60=(38.4917013318,9.62298409157,28.8687955849,38.4917013318,12.8306193404,4.27692534368,4.27692534368,5.02072482161,38.4917013318,23.0950521368,5.02072482161,4.27692534368,2.51040158375,28.8687955849,4.27692534368,19.2458898381,9.62298409157,2.56618654459,2.51040158375,2.51040158375,2.51040158375,2.62450718546,12.8306193404,1.04039248142,1.04039248142,10.4977937049,9.62298409157,5.49888162886,11.5475652409,9.62298409157,1.56054954815,1.56054954815,14.4344369648,0.264928969278,10.4977937049,3.39639802058,0.263719605766,6.07770302713,6.79271769558,0.253312714506,0.245769563552,19.2458898381,19.2458898381,38.4917013318);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallDamienTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallDamienTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallDamienTreble%7E.mxo/cabinetMarshallDamienTreble.dsp
|
faust
|
declare name "cabinetMarshallDamienTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 44;
modeFrequencies=(105.0,630.0,787.5,997.5,1207.5,1575.0,1785.0,1890.0,2047.5,2310.0,2625.0,2835.0,3045.0,3255.0,3517.5,3727.5,4095.0,4252.5,4462.5,4620.0,4725.0,4935.0,5092.5,5565.0,5722.5,6562.5,6825.0,7245.0,7875.0,8032.5,8505.0,8662.5,8820.0,9082.5,9660.0,10185.0,10447.5,10710.0,11182.5,11707.5,11865.0,12075.0,12232.5,12390.0);
massEigenValues=(1.0,0.229230846243,0.292112455987,0.330710408992,0.207465469033,0.266067758911,0.271784738486,0.292383734617,0.437359762684,0.354020027846,0.300787329373,0.279034873814,0.296104365532,0.524994190351,0.350656948008,0.503690327875,0.450765853725,0.331046266848,0.249063235849,0.293323821755,0.285879792191,0.343005882467,0.392333238484,0.087048204078,0.073636791989,0.0949205518909,0.0842974801078,0.0501173874028,0.0363202521033,0.0333490437783,0.0267739680552,0.0266376975765,0.0315772165354,0.0224295197786,0.0417477209889,0.0300421672479,0.0220248167178,0.0298613345356,0.0312084124198,0.0121972920109,0.0118165947651,0.012459891424,0.0137822810557,0.0122026921349);
t60=(38.4917013318,9.62298409157,28.8687955849,38.4917013318,12.8306193404,4.27692534368,4.27692534368,5.02072482161,38.4917013318,23.0950521368,5.02072482161,4.27692534368,2.51040158375,28.8687955849,4.27692534368,19.2458898381,9.62298409157,2.56618654459,2.51040158375,2.51040158375,2.51040158375,2.62450718546,12.8306193404,1.04039248142,1.04039248142,10.4977937049,9.62298409157,5.49888162886,11.5475652409,9.62298409157,1.56054954815,1.56054954815,14.4344369648,0.264928969278,10.4977937049,3.39639802058,0.263719605766,6.07770302713,6.79271769558,0.253312714506,0.245769563552,19.2458898381,19.2458898381,38.4917013318);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallDamienTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallDamienTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
518210a33fd2ee7032d96171d71d14dd627c42653c93f38812ccc1fea3ea5fa2
|
sebastien-clara/panoplie
|
granular.dsp
|
//--------------------`granular`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi granular.dsp
///////////////////////////////////////////////////////////////
declare name "granular";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// MIDI interface
///////////////////////////////////////////////////////////////
gate = button ("v:granular/h:[0]midi/[1]gate");
freq = vslider("v:granular/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 10000, 10);
gain = vslider("v:granular/h:[0]midi/[9]gain [style:knob]", 1, 0, 5, 0.01);
bend = vslider("v:granular/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(hslider("v:granular/h:[2]grain/[9]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
///////////////////////////////////////////////////////////////
// UI parameters
///////////////////////////////////////////////////////////////
envelop(gate, gain) = en.adsre(att, dec, sus, 0.01, gate) * gain
with {
att = vslider("v:granular/h:[1]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
dec = vslider("v:granular/h:[1]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0, 5, 0.01) : si.smoo;
sus = vslider("v:granular/h:[1]env/[3]sustain [style:knob] [tooltip:percentage of max]", 90, 0, 100, 0.1) : si.smoo;
};
grainDur = vslider("v:granular/h:[2]grain/[1]grainDur [style:knob] [tooltip:ms]", 10, 1, 100, 1)*0.001: si.smoo;
grainDensity = vslider("v:granular/h:[2]grain/[2]density [style:knob]", 5, 0.5, 150, 0.5);
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
grainEnv(d, t) = (1-cos(ma.PI*en.ar(d/2,d/2, t)))/2;
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
grainFreq(freq, density) = f
with {
cloud = checkbox("v:granular/h:[2]grain/[4]cloud"): si.smoo;
cloudAmbitus = (2^(vslider("v:granular/h:[2]grain/[5]cloudAmbitus [style:knob] [tooltip:semitone]", 12, 2, 96, 1)/12)) : si.smoo;
f = (freq * (1-cloud)),
(range(no.lfnoise0(density), freq, freq*cloudAmbitus) * cloud) : +;
};
densityPulse(freq) = os.lf_squarewavepos(f)
with {
async = checkbox("v:granular/h:[2]grain/[3]asynchro"): si.smoo;
point = freq * 0.5;
f = (freq * (1-async)),
(range(no.lfnoise0(freq), freq-point, freq+point) * async) : +;
};
signalGrain(sig, density, dur) = sig * grainEnv(dur, density:densityPulse);
sinGrain(freq, density, dur) = signalGrain(os.osci(grainFreq(freq, density)), density, dur);
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = sinGrain(freq*bend:portamento, grainDensity, grainDur) * envelop(gate, gain) * 0.01
<: par(i,2,ef.cubicnl(0.7,0));
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/granular/granular%7E.mxo/granular.dsp
|
faust
|
--------------------`granular`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi granular.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
MIDI interface
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
UI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "granular";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
gate = button ("v:granular/h:[0]midi/[1]gate");
freq = vslider("v:granular/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 10000, 10);
gain = vslider("v:granular/h:[0]midi/[9]gain [style:knob]", 1, 0, 5, 0.01);
bend = vslider("v:granular/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(hslider("v:granular/h:[2]grain/[9]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(gate, gain) = en.adsre(att, dec, sus, 0.01, gate) * gain
with {
att = vslider("v:granular/h:[1]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
dec = vslider("v:granular/h:[1]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0, 5, 0.01) : si.smoo;
sus = vslider("v:granular/h:[1]env/[3]sustain [style:knob] [tooltip:percentage of max]", 90, 0, 100, 0.1) : si.smoo;
};
grainDur = vslider("v:granular/h:[2]grain/[1]grainDur [style:knob] [tooltip:ms]", 10, 1, 100, 1)*0.001: si.smoo;
grainDensity = vslider("v:granular/h:[2]grain/[2]density [style:knob]", 5, 0.5, 150, 0.5);
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
grainEnv(d, t) = (1-cos(ma.PI*en.ar(d/2,d/2, t)))/2;
grainFreq(freq, density) = f
with {
cloud = checkbox("v:granular/h:[2]grain/[4]cloud"): si.smoo;
cloudAmbitus = (2^(vslider("v:granular/h:[2]grain/[5]cloudAmbitus [style:knob] [tooltip:semitone]", 12, 2, 96, 1)/12)) : si.smoo;
f = (freq * (1-cloud)),
(range(no.lfnoise0(density), freq, freq*cloudAmbitus) * cloud) : +;
};
densityPulse(freq) = os.lf_squarewavepos(f)
with {
async = checkbox("v:granular/h:[2]grain/[3]asynchro"): si.smoo;
point = freq * 0.5;
f = (freq * (1-async)),
(range(no.lfnoise0(freq), freq-point, freq+point) * async) : +;
};
signalGrain(sig, density, dur) = sig * grainEnv(dur, density:densityPulse);
sinGrain(freq, density, dur) = signalGrain(os.osci(grainFreq(freq, density)), density, dur);
process = sinGrain(freq*bend:portamento, grainDensity, grainDur) * envelop(gate, gain) * 0.01
<: par(i,2,ef.cubicnl(0.7,0));
|
365d59be365457c0feed45470073d648d972115280d59c997b5b2517c11c79b7
|
sebastien-clara/panoplie
|
granularMono.dsp
|
//--------------------`granular`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi granular.dsp
///////////////////////////////////////////////////////////////
declare name "granular";
declare author "Sébastien Clara";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// MIDI interface
///////////////////////////////////////////////////////////////
midigate = button ("v:granular/h:[0]midi/[1]gate");
midifreq = vslider("v:granular/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 10000, 10) : portamento;
midigain = vslider("v:granular/h:[0]midi/[9]gain [style:knob]", 1, 0, 5, 0.01) : si.smoo;
bend = vslider("v:granular/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:granular/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
///////////////////////////////////////////////////////////////
// UI parameters
///////////////////////////////////////////////////////////////
envelop(gate, gain) = en.adsre(att, dec, sus, 0.01, gate) * gain
with {
att = vslider("v:granular/h:[1]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
dec = vslider("v:granular/h:[1]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0, 5, 0.01) : si.smoo;
sus = vslider("v:granular/h:[1]env/[3]sustain [style:knob] [tooltip:percentage of max]", 0.9, 0, 1, 0.01) : si.smoo;
};
grainDur = vslider("v:granular/h:[2]grain/[1]grainDur [style:knob] [tooltip:ms]", 10, 1, 100, 1)*0.001: si.smoo;
grainDensity = vslider("v:granular/h:[2]grain/[2]density [style:knob]", 5, 0.5, 150, 0.5);
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
grainEnv(d, t) = (1-cos(ma.PI*en.ar(d/2,d/2, t)))/2;
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
grainFreq(freq, density) = f
with {
cloud = checkbox("v:granular/h:[2]grain/[4]cloud"): si.smoo;
cloudAmbitus = (2^(vslider("v:granular/h:[2]grain/[5]cloudAmbitus [style:knob] [tooltip:semitone]", 12, 2, 96, 1)/12)) : si.smoo;
f = (freq * (1-cloud)),
(range(no.lfnoise0(density), freq, freq*cloudAmbitus) * cloud) : +;
};
densityPulse(freq) = os.lf_squarewavepos(f)
with {
async = checkbox("v:granular/h:[2]grain/[3]asynchro"): si.smoo;
point = freq * 0.5;
f = (freq * (1-async)),
(range(no.lfnoise0(freq), freq-point, freq+point) * async) : +;
};
signalGrain(sig, density, dur) = sig * grainEnv(dur, density:densityPulse);
sinGrain(freq, density, dur) = signalGrain(os.osci(grainFreq(freq, density)), density, dur);
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = sinGrain(midifreq*bend, grainDensity, grainDur) * envelop(midigate, midigain) * 0.01
<: par(i,2,ef.cubicnl(0.7,0));
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/granularMono/granularMono%7E.mxo/granularMono.dsp
|
faust
|
--------------------`granular`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi granular.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
MIDI interface
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
UI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "granular";
declare author "Sébastien Clara";
import("stdfaust.lib");
midigate = button ("v:granular/h:[0]midi/[1]gate");
midifreq = vslider("v:granular/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 30, 10000, 10) : portamento;
midigain = vslider("v:granular/h:[0]midi/[9]gain [style:knob]", 1, 0, 5, 0.01) : si.smoo;
bend = vslider("v:granular/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:granular/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(gate, gain) = en.adsre(att, dec, sus, 0.01, gate) * gain
with {
att = vslider("v:granular/h:[1]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0, 5, 0.01) : si.smoo;
dec = vslider("v:granular/h:[1]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0, 5, 0.01) : si.smoo;
sus = vslider("v:granular/h:[1]env/[3]sustain [style:knob] [tooltip:percentage of max]", 0.9, 0, 1, 0.01) : si.smoo;
};
grainDur = vslider("v:granular/h:[2]grain/[1]grainDur [style:knob] [tooltip:ms]", 10, 1, 100, 1)*0.001: si.smoo;
grainDensity = vslider("v:granular/h:[2]grain/[2]density [style:knob]", 5, 0.5, 150, 0.5);
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
grainEnv(d, t) = (1-cos(ma.PI*en.ar(d/2,d/2, t)))/2;
grainFreq(freq, density) = f
with {
cloud = checkbox("v:granular/h:[2]grain/[4]cloud"): si.smoo;
cloudAmbitus = (2^(vslider("v:granular/h:[2]grain/[5]cloudAmbitus [style:knob] [tooltip:semitone]", 12, 2, 96, 1)/12)) : si.smoo;
f = (freq * (1-cloud)),
(range(no.lfnoise0(density), freq, freq*cloudAmbitus) * cloud) : +;
};
densityPulse(freq) = os.lf_squarewavepos(f)
with {
async = checkbox("v:granular/h:[2]grain/[3]asynchro"): si.smoo;
point = freq * 0.5;
f = (freq * (1-async)),
(range(no.lfnoise0(freq), freq-point, freq+point) * async) : +;
};
signalGrain(sig, density, dur) = sig * grainEnv(dur, density:densityPulse);
sinGrain(freq, density, dur) = signalGrain(os.osci(grainFreq(freq, density)), density, dur);
process = sinGrain(midifreq*bend, grainDensity, grainDur) * envelop(midigate, midigain) * 0.01
<: par(i,2,ef.cubicnl(0.7,0));
|
c1c9802917005bbb5604b552727d635b6fcdc974f4bff9a81e2f9538c9faa57b
|
sebastien-clara/panoplie
|
wobble.dsp
|
//--------------------`wobble`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi wobble.dsp
///////////////////////////////////////////////////////////////
declare name "wobble";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
gate = button ("v:wobble/h:[0]midi/[1]gate");
freq = vslider("v:wobble/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 220, 20, 5000, 10);
gain = vslider("v:wobble/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("v:wobble/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:wobble/h:[2]parameters/h:[9]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0.01, 5, 0.01) : si.smoo;
dec = vslider("v:wobble/h:[2]parameters/h:[9]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
sus = vslider("v:wobble/h:[2]parameters/h:[9]env/[3]sustain [style:knob] [tooltip:percentage of max]", 90, 0.1, 100, 0.1) : si.smoo;
rel = vslider("v:wobble/h:[2]parameters/h:[9]env/[4]release [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
maxCut = ma.SR/6.3;
modulation(freq) = clip(range(os.osci(modCoef*freq),freq*1.5,maxCut) * modAmp, 20,maxCut)
with {
modCoef = vslider("v:wobble/h:[2]parameters/[1]modCoef [style:knob]", 0.01, 0, 1, 0.01);
modAmp = vslider("v:wobble/h:[2]parameters/[2]modAmp [style:knob]", 0.5, 0.05, 1, 0.01);
};
wobble(freq) = (main + beat) * 0.8 : filter : co.limiter_1176_R4_mono
with {
ampBeat = vslider("v:wobble/h:[2]parameters/[3]beat [style:knob]", 0.5, 0, 1, 0.01) : si.smoo;
r = vslider("v:wobble/h:[2]parameters/[4]resonance [style:knob]", 0.05, 0, 1, 0.01): si.smoo;
main = os.sawtooth(freq) * 0.5;
beat = (os.sawtooth(freq*0.99)+os.sawtooth(freq*1.001)+os.sawtooth(freq*1.008)) * 0.5 * ampBeat;
filter = ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, modulation(freq))*0.4);
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = (wobble(freq*bend) * envelop(gate, gain) * 0.35) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/wobble/wobble%7E.mxo/wobble.dsp
|
faust
|
--------------------`wobble`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi wobble.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "wobble";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
gate = button ("v:wobble/h:[0]midi/[1]gate");
freq = vslider("v:wobble/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 220, 20, 5000, 10);
gain = vslider("v:wobble/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("v:wobble/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:wobble/h:[2]parameters/h:[9]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0.01, 5, 0.01) : si.smoo;
dec = vslider("v:wobble/h:[2]parameters/h:[9]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
sus = vslider("v:wobble/h:[2]parameters/h:[9]env/[3]sustain [style:knob] [tooltip:percentage of max]", 90, 0.1, 100, 0.1) : si.smoo;
rel = vslider("v:wobble/h:[2]parameters/h:[9]env/[4]release [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
maxCut = ma.SR/6.3;
modulation(freq) = clip(range(os.osci(modCoef*freq),freq*1.5,maxCut) * modAmp, 20,maxCut)
with {
modCoef = vslider("v:wobble/h:[2]parameters/[1]modCoef [style:knob]", 0.01, 0, 1, 0.01);
modAmp = vslider("v:wobble/h:[2]parameters/[2]modAmp [style:knob]", 0.5, 0.05, 1, 0.01);
};
wobble(freq) = (main + beat) * 0.8 : filter : co.limiter_1176_R4_mono
with {
ampBeat = vslider("v:wobble/h:[2]parameters/[3]beat [style:knob]", 0.5, 0, 1, 0.01) : si.smoo;
r = vslider("v:wobble/h:[2]parameters/[4]resonance [style:knob]", 0.05, 0, 1, 0.01): si.smoo;
main = os.sawtooth(freq) * 0.5;
beat = (os.sawtooth(freq*0.99)+os.sawtooth(freq*1.001)+os.sawtooth(freq*1.008)) * 0.5 * ampBeat;
filter = ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, modulation(freq))*0.4);
};
process = (wobble(freq*bend) * envelop(gate, gain) * 0.35) <: _,_;
|
1a81721c33e45aa166e8cdaf804f1e7f5bee0c19623348338b457f20f0289e69
|
sebastien-clara/panoplie
|
wobbleMono.dsp
|
//--------------------`wobble`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi wobble.dsp
//
//
// #### Source
// * https://www.youtube.com/watch?v=E_qrk2hE__s
///////////////////////////////////////////////////////////////
declare name "wobble";
declare author "Sébastien Clara";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
gate = button ("v:wobble/h:[0]midi/[1]gate");
freq = vslider("v:wobble/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 220, 20, 5000, 10) : portamento;
gain = vslider("v:wobble/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("v:wobble/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:wobble/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:wobble/h:[2]parameters/h:[9]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0.01, 5, 0.01) : si.smoo;
dec = vslider("v:wobble/h:[2]parameters/h:[9]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
sus = vslider("v:wobble/h:[2]parameters/h:[9]env/[3]sustain [style:knob] [tooltip:percentage of max]", 0.9, 0.1, 1, 0.1) : si.smoo;
rel = vslider("v:wobble/h:[2]parameters/h:[9]env/[4]release [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
maxCut = ma.SR/6.3;
modulation(freq) = clip(range(os.osci(modCoef*freq),freq*1.5,maxCut) * modAmp, 20,maxCut)
with {
modCoef = vslider("v:wobble/h:[2]parameters/[1]modCoef [style:knob]", 0.01, 0, 1, 0.01);
modAmp = vslider("v:wobble/h:[2]parameters/[2]modAmp [style:knob]", 0.5, 0.05, 1, 0.01);
};
wobble(freq) = (main + beat) * 0.8 : filter : co.limiter_1176_R4_mono
with {
ampBeat = vslider("v:wobble/h:[2]parameters/[3]beat [style:knob]", 0.5, 0, 1, 0.01) : si.smoo;
r = vslider("v:wobble/h:[2]parameters/[4]resonance [style:knob]", 0.05, 0, 1, 0.01): si.smoo;
main = os.sawtooth(freq) * 0.5;
beat = (os.sawtooth(freq*0.99)+os.sawtooth(freq*1.001)+os.sawtooth(freq*1.008)) * 0.5 * ampBeat;
filter = ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, modulation(freq))*0.4);
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
process = (wobble(freq*bend) * envelop(gate, gain) * 0.5) <: _,_;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/wobbleMono/wobbleMono%7E.mxo/wobbleMono.dsp
|
faust
|
--------------------`wobble`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi wobble.dsp
#### Source
* https://www.youtube.com/watch?v=E_qrk2hE__s
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
|
declare name "wobble";
declare author "Sébastien Clara";
import("stdfaust.lib");
gate = button ("v:wobble/h:[0]midi/[1]gate");
freq = vslider("v:wobble/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 220, 20, 5000, 10) : portamento;
gain = vslider("v:wobble/h:[0]midi/[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("v:wobble/h:[0]midi/[8]bend [hide:1] [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("v:wobble/h:[0]midi/[7]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:wobble/h:[2]parameters/h:[9]env/[1]attack [style:knob] [tooltip:sec]", 0.03, 0.01, 5, 0.01) : si.smoo;
dec = vslider("v:wobble/h:[2]parameters/h:[9]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0.01, 5, 0.01) : si.smoo;
sus = vslider("v:wobble/h:[2]parameters/h:[9]env/[3]sustain [style:knob] [tooltip:percentage of max]", 0.9, 0.1, 1, 0.1) : si.smoo;
rel = vslider("v:wobble/h:[2]parameters/h:[9]env/[4]release [style:knob] [tooltip:sec]", 0.3, 0.01, 5, 0.01) : si.smoo;
};
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
range(signal, low, high) = scale(signal, -1,1, low,high);
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
maxCut = ma.SR/6.3;
modulation(freq) = clip(range(os.osci(modCoef*freq),freq*1.5,maxCut) * modAmp, 20,maxCut)
with {
modCoef = vslider("v:wobble/h:[2]parameters/[1]modCoef [style:knob]", 0.01, 0, 1, 0.01);
modAmp = vslider("v:wobble/h:[2]parameters/[2]modAmp [style:knob]", 0.5, 0.05, 1, 0.01);
};
wobble(freq) = (main + beat) * 0.8 : filter : co.limiter_1176_R4_mono
with {
ampBeat = vslider("v:wobble/h:[2]parameters/[3]beat [style:knob]", 0.5, 0, 1, 0.01) : si.smoo;
r = vslider("v:wobble/h:[2]parameters/[4]resonance [style:knob]", 0.05, 0, 1, 0.01): si.smoo;
main = os.sawtooth(freq) * 0.5;
beat = (os.sawtooth(freq*0.99)+os.sawtooth(freq*1.001)+os.sawtooth(freq*1.008)) * 0.5 * ampBeat;
filter = ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, modulation(freq))*0.4);
};
process = (wobble(freq*bend) * envelop(gate, gain) * 0.5) <: _,_;
|
d62be6fc73c1248afd8caa13c64ed19a04311155b8d4486fe69403a4d1bb4a49
|
sebastien-clara/panoplie
|
cabinetMarshallDamienBass.dsp
|
declare name "cabinetMarshallDamienBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 55;
modeFrequencies=(110.989932886,295.973154362,369.966442953,443.959731544,554.94966443,628.94295302,776.929530201,998.909395973,1109.89932886,1183.89261745,1331.87919463,1479.86577181,1553.8590604,1775.83892617,2108.80872483,2293.79194631,2367.7852349,2441.77852349,2552.76845638,2626.76174497,2700.75503356,2811.74496644,2885.73825503,2996.72818792,3070.72147651,3218.70805369,3292.70134228,3366.69463087,3440.68791946,3662.66778523,3773.65771812,4106.62751678,4217.61744966,4513.59060403,4624.58053691,4698.5738255,4772.56711409,4883.55704698,5031.54362416,5105.53691275,5290.52013423,5364.51342282,5512.5,5586.49328859,5660.48657718,5771.47651007,6141.44295302,6844.37919463,6955.36912752,7066.3590604,7140.35234899,7288.33892617,9767.11409396,9952.09731544,10359.0604027);
massEigenValues=(1.0,0.415584877053,0.378614005973,0.314644033904,0.25983654913,0.245227651471,0.260350928466,0.271394863771,0.206850600573,0.195973524916,0.142382907116,0.199891472282,0.268787915793,0.119616443451,0.454966687298,0.29072448516,0.325142857751,0.309469060195,0.293494832899,0.262808397126,0.225386077984,0.294685793581,0.265543096505,0.23688750615,0.210534794049,0.252973444609,0.233872394098,0.258393248199,0.214337606421,0.314391099249,0.295276640456,0.1143203552,0.109055981534,0.132488765034,0.118901322623,0.0464598144121,0.0718552735008,0.0870316787988,0.092973130258,0.0773871089973,0.0264342330989,0.0104202391373,0.0379680306207,0.0425420311721,0.048929314252,0.0511043431201,0.0117660402151,0.0170153168984,0.0182615356946,0.0151047408305,0.0130175028083,0.0100337265084,0.0193388445866,0.014895562902,0.0110796002699);
t60=(27.1250475636,6.78132064968,6.25968662627,5.42507218882,5.42507218882,27.1250475636,27.1250475636,20.3438052588,13.5625629543,20.3438052588,27.1250475636,10.1719418019,13.5625629543,7.39779722282,20.3438052588,3.87507394789,20.3438052588,9.04173475119,3.87507394789,2.46598463813,1.47962212163,10.1719418019,6.78132064968,1.50702108041,1.47962212163,3.87507394789,1.47962212163,3.87507394789,1.47962212163,10.1719418019,8.1375691106,16.2750598762,16.2750598762,20.3438052588,11.6250651529,4.06882372801,13.5625629543,27.1250475636,20.3438052588,20.3438052588,40.6875321731,4.78683761901,6.25968662627,6.78132064968,10.1719418019,10.1719418019,16.2750598762,6.78132064968,9.04173475119,6.78132064968,6.78132064968,27.1250475636,6.25968662627,4.52090654827,2.54304420974);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallDamienBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallDamienBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallDamienBass%7E.mxo/cabinetMarshallDamienBass.dsp
|
faust
|
declare name "cabinetMarshallDamienBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 55;
modeFrequencies=(110.989932886,295.973154362,369.966442953,443.959731544,554.94966443,628.94295302,776.929530201,998.909395973,1109.89932886,1183.89261745,1331.87919463,1479.86577181,1553.8590604,1775.83892617,2108.80872483,2293.79194631,2367.7852349,2441.77852349,2552.76845638,2626.76174497,2700.75503356,2811.74496644,2885.73825503,2996.72818792,3070.72147651,3218.70805369,3292.70134228,3366.69463087,3440.68791946,3662.66778523,3773.65771812,4106.62751678,4217.61744966,4513.59060403,4624.58053691,4698.5738255,4772.56711409,4883.55704698,5031.54362416,5105.53691275,5290.52013423,5364.51342282,5512.5,5586.49328859,5660.48657718,5771.47651007,6141.44295302,6844.37919463,6955.36912752,7066.3590604,7140.35234899,7288.33892617,9767.11409396,9952.09731544,10359.0604027);
massEigenValues=(1.0,0.415584877053,0.378614005973,0.314644033904,0.25983654913,0.245227651471,0.260350928466,0.271394863771,0.206850600573,0.195973524916,0.142382907116,0.199891472282,0.268787915793,0.119616443451,0.454966687298,0.29072448516,0.325142857751,0.309469060195,0.293494832899,0.262808397126,0.225386077984,0.294685793581,0.265543096505,0.23688750615,0.210534794049,0.252973444609,0.233872394098,0.258393248199,0.214337606421,0.314391099249,0.295276640456,0.1143203552,0.109055981534,0.132488765034,0.118901322623,0.0464598144121,0.0718552735008,0.0870316787988,0.092973130258,0.0773871089973,0.0264342330989,0.0104202391373,0.0379680306207,0.0425420311721,0.048929314252,0.0511043431201,0.0117660402151,0.0170153168984,0.0182615356946,0.0151047408305,0.0130175028083,0.0100337265084,0.0193388445866,0.014895562902,0.0110796002699);
t60=(27.1250475636,6.78132064968,6.25968662627,5.42507218882,5.42507218882,27.1250475636,27.1250475636,20.3438052588,13.5625629543,20.3438052588,27.1250475636,10.1719418019,13.5625629543,7.39779722282,20.3438052588,3.87507394789,20.3438052588,9.04173475119,3.87507394789,2.46598463813,1.47962212163,10.1719418019,6.78132064968,1.50702108041,1.47962212163,3.87507394789,1.47962212163,3.87507394789,1.47962212163,10.1719418019,8.1375691106,16.2750598762,16.2750598762,20.3438052588,11.6250651529,4.06882372801,13.5625629543,27.1250475636,20.3438052588,20.3438052588,40.6875321731,4.78683761901,6.25968662627,6.78132064968,10.1719418019,10.1719418019,16.2750598762,6.78132064968,9.04173475119,6.78132064968,6.78132064968,27.1250475636,6.25968662627,4.52090654827,2.54304420974);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallDamienBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallDamienBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
6fdaf5b4987848f1c227604a036755f6a237f2d9cedd1605ff9a8b03f7ebb950
|
sebastien-clara/panoplie
|
cabinetMarshallSterlingTreble.dsp
|
declare name "cabinetMarshallSterlingTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 57;
modeFrequencies=(143.181818182,429.545454545,644.318181818,823.295454545,1038.06818182,1217.04545455,1431.81818182,1575.0,1718.18181818,1861.36363636,1968.75,2111.93181818,2541.47727273,2648.86363636,2720.45454545,3006.81818182,3150.0,3400.56818182,3651.13636364,3758.52272727,3865.90909091,4223.86363636,4331.25,4402.84090909,4510.22727273,4760.79545455,4868.18181818,5011.36363636,5154.54545455,5297.72727273,5512.5,5584.09090909,5798.86363636,6264.20454545,6371.59090909,6514.77272727,7517.04545455,7696.02272727,8053.97727273,8232.95454545,8805.68181818,8877.27272727,9056.25,9199.43181818,9450.0,10130.1136364,10380.6818182,10881.8181818,11096.5909091,11203.9772727,11740.9090909,11991.4772727,12600.0,12707.3863636,12993.75,13315.9090909,13387.5);
massEigenValues=(1.0,0.271670633576,0.479872001467,0.254653154815,0.215994557473,0.264453381999,0.197084316264,0.176582589724,0.182391652812,0.265016354125,0.308024194455,0.468481333539,0.770059705832,0.772037610266,0.769833104368,0.582980621975,0.57063791118,0.854528016967,0.550916648872,0.476922190428,0.46477223165,0.471461173505,0.428997877534,0.43674279542,0.498961916679,0.480316920541,0.531494539071,0.48648959996,0.504080581188,0.509111935669,0.516782708321,0.513908734554,0.507602888878,0.26974895735,0.265921383544,0.26707158694,0.0102223177985,0.0124542858885,0.0465203009921,0.0415042432671,0.0203487315971,0.0206662423536,0.0217509001059,0.0264520659296,0.0314817970707,0.0363907468372,0.0568873867843,0.0240691716282,0.023942835033,0.0230615285061,0.0418811500669,0.0422126728626,0.0288764055192,0.0285606201016,0.0320142470692,0.0230019914777,0.0224508941584);
t60=(19.6832946448,5.62385443076,19.6832946448,7.87336486494,26.2443667447,13.1222225448,0.483102061792,0.483102061792,0.483102061792,0.574770794948,0.578996474677,1.4315849861,3.74926240237,3.74926240237,3.74926240237,1.67524569058,1.64034637092,9.8416864949,1.48560410454,1.4315849861,1.40602236756,1.381356683,1.31229276623,1.31229276623,1.40602236756,1.40602236756,1.4315849861,1.40602236756,1.40602236756,1.40602236756,1.4315849861,1.4315849861,1.40602236756,0.574770794948,0.574770794948,0.574770794948,11.2476305163,0.44489679673,5.24893602507,3.93672160521,0.47724722896,0.47724722896,0.480156795276,0.486083689623,4.37412641182,3.02826546843,7.87336486494,0.486083689623,0.486083689623,0.483102061792,2.91611038982,2.91611038982,0.629941269521,0.629941269521,1.4580943683,0.483102061792,0.480156795276);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallSterlingTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallSterlingTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallSterlingTreble%7E.mxo/cabinetMarshallSterlingTreble.dsp
|
faust
|
declare name "cabinetMarshallSterlingTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 57;
modeFrequencies=(143.181818182,429.545454545,644.318181818,823.295454545,1038.06818182,1217.04545455,1431.81818182,1575.0,1718.18181818,1861.36363636,1968.75,2111.93181818,2541.47727273,2648.86363636,2720.45454545,3006.81818182,3150.0,3400.56818182,3651.13636364,3758.52272727,3865.90909091,4223.86363636,4331.25,4402.84090909,4510.22727273,4760.79545455,4868.18181818,5011.36363636,5154.54545455,5297.72727273,5512.5,5584.09090909,5798.86363636,6264.20454545,6371.59090909,6514.77272727,7517.04545455,7696.02272727,8053.97727273,8232.95454545,8805.68181818,8877.27272727,9056.25,9199.43181818,9450.0,10130.1136364,10380.6818182,10881.8181818,11096.5909091,11203.9772727,11740.9090909,11991.4772727,12600.0,12707.3863636,12993.75,13315.9090909,13387.5);
massEigenValues=(1.0,0.271670633576,0.479872001467,0.254653154815,0.215994557473,0.264453381999,0.197084316264,0.176582589724,0.182391652812,0.265016354125,0.308024194455,0.468481333539,0.770059705832,0.772037610266,0.769833104368,0.582980621975,0.57063791118,0.854528016967,0.550916648872,0.476922190428,0.46477223165,0.471461173505,0.428997877534,0.43674279542,0.498961916679,0.480316920541,0.531494539071,0.48648959996,0.504080581188,0.509111935669,0.516782708321,0.513908734554,0.507602888878,0.26974895735,0.265921383544,0.26707158694,0.0102223177985,0.0124542858885,0.0465203009921,0.0415042432671,0.0203487315971,0.0206662423536,0.0217509001059,0.0264520659296,0.0314817970707,0.0363907468372,0.0568873867843,0.0240691716282,0.023942835033,0.0230615285061,0.0418811500669,0.0422126728626,0.0288764055192,0.0285606201016,0.0320142470692,0.0230019914777,0.0224508941584);
t60=(19.6832946448,5.62385443076,19.6832946448,7.87336486494,26.2443667447,13.1222225448,0.483102061792,0.483102061792,0.483102061792,0.574770794948,0.578996474677,1.4315849861,3.74926240237,3.74926240237,3.74926240237,1.67524569058,1.64034637092,9.8416864949,1.48560410454,1.4315849861,1.40602236756,1.381356683,1.31229276623,1.31229276623,1.40602236756,1.40602236756,1.4315849861,1.40602236756,1.40602236756,1.40602236756,1.4315849861,1.4315849861,1.40602236756,0.574770794948,0.574770794948,0.574770794948,11.2476305163,0.44489679673,5.24893602507,3.93672160521,0.47724722896,0.47724722896,0.480156795276,0.486083689623,4.37412641182,3.02826546843,7.87336486494,0.486083689623,0.486083689623,0.483102061792,2.91611038982,2.91611038982,0.629941269521,0.629941269521,1.4580943683,0.483102061792,0.480156795276);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallSterlingTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallSterlingTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
31bba6b3677812262fe88b1b69547f76c6def879e103dc1170823cdc3c661920
|
sebastien-clara/panoplie
|
cabinetAmpegManateeTreble.dsp
|
declare name "cabinetAmpegManateeTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 69;
modeFrequencies=(131.152416357,557.397769517,754.126394052,852.49070632,1016.43122677,1147.58364312,1245.94795539,1409.88847584,1508.2527881,1868.92193309,2229.59107807,2983.71747212,3705.05576208,4164.08921933,4557.5464684,5213.30855019,5344.46096654,5869.07063197,6852.71375465,6951.07806691,7213.38289963,7344.53531599,7574.05204461,7705.20446097,7836.35687732,7967.50929368,8065.87360595,8197.0260223,8295.39033457,8426.54275093,8557.69516729,8688.84758364,8787.21189591,9541.33828996,9639.70260223,9770.85501859,9902.00743494,10000.3717472,10262.6765799,10393.8289963,10524.9814126,10623.3457249,10754.4981413,10852.8624535,11967.6579926,12066.0223048,12229.9628253,12361.1152416,12459.4795539,12590.6319703,12688.9962825,12820.1486989,13311.9702602,13443.1226766,13574.2750929,13672.6394052,13803.7918216,13934.9442379,14066.0966543,14164.4609665,14426.7657993,14557.9182156,14689.070632,14787.4349442,14918.5873606,15049.739777,15148.1040892,15508.7732342,16754.7211896);
massEigenValues=(0.66978497919,0.238389827636,0.153718791254,0.139423229831,0.169572658086,0.237862617056,0.262793271005,0.267597801215,0.245515312458,0.226284368712,0.333509867501,1.0,0.577888640991,0.493938895054,0.656934282283,0.272468002877,0.31740453831,0.776929949393,0.145177395781,0.147505207333,0.0983724559777,0.0826110532374,0.0487086259585,0.0391797182141,0.0404173153704,0.0469826555432,0.0509715874943,0.0511286869874,0.0509470419886,0.0490911990203,0.0537748679525,0.0532359050413,0.0502608261938,0.0404413053164,0.0396908893117,0.0374256105632,0.0358455164839,0.036597973554,0.0224481884853,0.0174725578797,0.0171299826378,0.0182785928174,0.0199418064535,0.0181834607127,0.0447380104087,0.0449005751448,0.0468154170295,0.0483199626808,0.0494774773788,0.0489136520395,0.0478720879747,0.04543141292,0.0278656268625,0.0263494124332,0.0251044021814,0.0232998520974,0.0230982061554,0.0228092369328,0.0219554184591,0.0202937511743,0.014398598654,0.0130192939566,0.0114205680938,0.0104071603611,0.0102820877648,0.0117009576356,0.0124678163196,0.0230296795026,0.0106033795024);
t60=(12.0197673072,10.3026688841,0.165486920743,0.165486920743,0.38368544455,0.414550382794,4.00664133265,4.00664133265,0.416946174865,0.414550382794,0.767292536428,6.00992282623,6.00992282623,2.40401613801,5.15137361468,0.474539755394,0.511554474731,4.50746170603,0.165486920743,0.165486920743,0.159631750801,0.157541531845,0.152226319668,0.128402442064,0.12978723414,1.80303169017,1.89792397139,1.89792397139,1.89792397139,1.89792397139,2.12119992724,2.12119992724,1.89792397139,2.77385272135,2.77385272135,2.48691054461,0.116023915009,2.48691054461,0.112063042715,0.107717369312,0.107717369312,0.107717369312,0.108039641728,0.107717369312,1.53450672419,1.53450672419,1.60270354094,1.67724424762,1.71717676906,1.67724424762,1.67724424762,1.53450672419,0.868971525032,0.868971525032,0.858627558655,0.829022413513,0.829022413513,0.819602594605,0.819602594605,0.801390944719,0.700254403656,0.601062796196,0.515207875603,0.50795253021,0.50795253021,0.591210592185,0.596095982604,9.0148450667,4.24232150836);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetAmpegManateeTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetAmpegManateeTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetAmpegManateeTreble%7E.mxo/cabinetAmpegManateeTreble.dsp
|
faust
|
declare name "cabinetAmpegManateeTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 69;
modeFrequencies=(131.152416357,557.397769517,754.126394052,852.49070632,1016.43122677,1147.58364312,1245.94795539,1409.88847584,1508.2527881,1868.92193309,2229.59107807,2983.71747212,3705.05576208,4164.08921933,4557.5464684,5213.30855019,5344.46096654,5869.07063197,6852.71375465,6951.07806691,7213.38289963,7344.53531599,7574.05204461,7705.20446097,7836.35687732,7967.50929368,8065.87360595,8197.0260223,8295.39033457,8426.54275093,8557.69516729,8688.84758364,8787.21189591,9541.33828996,9639.70260223,9770.85501859,9902.00743494,10000.3717472,10262.6765799,10393.8289963,10524.9814126,10623.3457249,10754.4981413,10852.8624535,11967.6579926,12066.0223048,12229.9628253,12361.1152416,12459.4795539,12590.6319703,12688.9962825,12820.1486989,13311.9702602,13443.1226766,13574.2750929,13672.6394052,13803.7918216,13934.9442379,14066.0966543,14164.4609665,14426.7657993,14557.9182156,14689.070632,14787.4349442,14918.5873606,15049.739777,15148.1040892,15508.7732342,16754.7211896);
massEigenValues=(0.66978497919,0.238389827636,0.153718791254,0.139423229831,0.169572658086,0.237862617056,0.262793271005,0.267597801215,0.245515312458,0.226284368712,0.333509867501,1.0,0.577888640991,0.493938895054,0.656934282283,0.272468002877,0.31740453831,0.776929949393,0.145177395781,0.147505207333,0.0983724559777,0.0826110532374,0.0487086259585,0.0391797182141,0.0404173153704,0.0469826555432,0.0509715874943,0.0511286869874,0.0509470419886,0.0490911990203,0.0537748679525,0.0532359050413,0.0502608261938,0.0404413053164,0.0396908893117,0.0374256105632,0.0358455164839,0.036597973554,0.0224481884853,0.0174725578797,0.0171299826378,0.0182785928174,0.0199418064535,0.0181834607127,0.0447380104087,0.0449005751448,0.0468154170295,0.0483199626808,0.0494774773788,0.0489136520395,0.0478720879747,0.04543141292,0.0278656268625,0.0263494124332,0.0251044021814,0.0232998520974,0.0230982061554,0.0228092369328,0.0219554184591,0.0202937511743,0.014398598654,0.0130192939566,0.0114205680938,0.0104071603611,0.0102820877648,0.0117009576356,0.0124678163196,0.0230296795026,0.0106033795024);
t60=(12.0197673072,10.3026688841,0.165486920743,0.165486920743,0.38368544455,0.414550382794,4.00664133265,4.00664133265,0.416946174865,0.414550382794,0.767292536428,6.00992282623,6.00992282623,2.40401613801,5.15137361468,0.474539755394,0.511554474731,4.50746170603,0.165486920743,0.165486920743,0.159631750801,0.157541531845,0.152226319668,0.128402442064,0.12978723414,1.80303169017,1.89792397139,1.89792397139,1.89792397139,1.89792397139,2.12119992724,2.12119992724,1.89792397139,2.77385272135,2.77385272135,2.48691054461,0.116023915009,2.48691054461,0.112063042715,0.107717369312,0.107717369312,0.107717369312,0.108039641728,0.107717369312,1.53450672419,1.53450672419,1.60270354094,1.67724424762,1.71717676906,1.67724424762,1.67724424762,1.53450672419,0.868971525032,0.868971525032,0.858627558655,0.829022413513,0.829022413513,0.819602594605,0.819602594605,0.801390944719,0.700254403656,0.601062796196,0.515207875603,0.50795253021,0.50795253021,0.591210592185,0.596095982604,9.0148450667,4.24232150836);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetAmpegManateeTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetAmpegManateeTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
143c913e4b4fe9fae13ce4c16d54b1468140fdb0a5878af86ce72481154af581
|
sebastien-clara/panoplie
|
Tinkle.dsp
|
declare name "Tinkle";
declare description "Banded Waveguide Modeld Tibetan Bowl";
//declare author "Romain Michon";
declare author "Sébastien Clara";
declare description "This instrument uses banded waveguide. For more information, see Essl, G. and Cook, P. Banded Waveguides: Towards Physical Modelling of Bar Percussion Instruments, Proceedings of the 1999 International Computer Music Conference.";
import("stdfaust.lib");
instrument = library("instruments.lib");
//==================== INSTRUMENT =======================
amp = 0.25 * envelop(gate, gain);
process = (gate : ba.toggle <:
//nModes resonances with nModes feedbacks for bow table look-up
par(i,nModes,(resonance(i)~_))):>+:fi.lowpass(1,5000)*(amp);
//==================== GUI SPECIFICATION ================
gate = button ("v:Tinkle/h:[0]midi/[1]gate");
freq = vslider("v:Tinkle/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 180, 780, 1)*bend;
bend = vslider("v:Tinkle/h:[0]midi/[3]bend [midi:pitchwheel] [style:knob]", 1, 0.9, 1.1, 0.01);
gain = vslider("v:Tinkle/h:[0]midi/[9]gain [style:knob]", 0.1, 0, 1, 0.01);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:Tinkle/h:[1]env/[1]attack [style:knob] [tooltip:sec]", 0.01, 0, 15, 0.01) : si.smoo;
dec = vslider("v:Tinkle/h:[1]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0, 15, 0.01) : si.smoo;
sus = vslider("v:Tinkle/h:[1]env/[3]sustain [style:knob] [tooltip:percentage of max]", 80, 0, 100, 0.1) : si.smoo;
rel = vslider("v:Tinkle/h:[1]env/[4]release [style:knob] [tooltip:sec]", 0.3, 0.01, 15, 0.01) : si.smoo;
};
//==================== MODAL PARAMETERS ================
preset = 0;
nMode(0) = 12;
modes(0,0) = 0.996108344;
basegains(0,0) = 0.999925960128219;
excitation(0,0) = 11.900357 / 10;
modes(0,1) = 1.0038916562;
basegains(0,1) = 0.999925960128219;
excitation(0,1) = 11.900357 / 10;
modes(0,2) = 2.979178;
basegains(0,2) = 0.999982774366897;
excitation(0,2) = 10.914886 / 10;
modes(0,3) = 2.99329767;
basegains(0,3) = 0.999982774366897;
excitation(0,3) = 10.914886 / 10;
modes(0,4) = 5.704452;
basegains(0,4) = 1.0;
excitation(0,4) = 42.995041 / 10;
modes(0,5) = 5.704452;
basegains(0,5) = 1.0;
excitation(0,5) = 42.995041 / 10;
modes(0,6) = 8.9982;
basegains(0,6) = 1.0;
excitation(0,6) = 40.063034 / 10;
modes(0,7) = 9.01549726;
basegains(0,7) = 1.0;
excitation(0,7) = 40.063034 / 10;
modes(0,8) = 12.83303;
basegains(0,8) = 0.999965497558225;
excitation(0,8) = 7.063034 / 10;
modes(0,9) = 12.807382;
basegains(0,9) = 0.999965497558225;
excitation(0,9) = 7.063034 / 10;
modes(0,10) = 17.2808219;
basegains(0,10) = 0.9999999999999999999965497558225;
excitation(0,10) = 57.063034 / 10;
modes(0,11) = 21.97602739726;
basegains(0,11) = 0.999999999999999965497558225;
excitation(0,11) = 57.063034 / 10;
//==================== SIGNAL PROCESSING ================
//----------------------- Synthesis parameters computing and functions declaration ----------------------------
//the number of modes depends on the preset being used
nModes = nMode(preset);
delayLengthBase = ma.SR/freq;
//delay lengths in number of samples
delayLength(x) = delayLengthBase/modes(preset,x);
//delay lines
delayLine(x) = de.delay(4096,delayLength(x));
//Filter bank: fi.bandpass filters (declared in instrument.lib)
radius = 1 - ma.PI*32/ma.SR;
bandPassFilter(x) = instrument.bandPass(freq*modes(preset,x),radius);
//----------------------- Algorithm implementation ----------------------------
//One resonance
resonance(x) = + : + (excitation(preset,x)) : delayLine(x) : *(basegains(preset,x)) : bandPassFilter(x);
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/Tinkle/Tinkle%7E.mxo/Tinkle.dsp
|
faust
|
declare author "Romain Michon";
==================== INSTRUMENT =======================
nModes resonances with nModes feedbacks for bow table look-up
==================== GUI SPECIFICATION ================
==================== MODAL PARAMETERS ================
==================== SIGNAL PROCESSING ================
----------------------- Synthesis parameters computing and functions declaration ----------------------------
the number of modes depends on the preset being used
delay lengths in number of samples
delay lines
Filter bank: fi.bandpass filters (declared in instrument.lib)
----------------------- Algorithm implementation ----------------------------
One resonance
|
declare name "Tinkle";
declare description "Banded Waveguide Modeld Tibetan Bowl";
declare author "Sébastien Clara";
declare description "This instrument uses banded waveguide. For more information, see Essl, G. and Cook, P. Banded Waveguides: Towards Physical Modelling of Bar Percussion Instruments, Proceedings of the 1999 International Computer Music Conference.";
import("stdfaust.lib");
instrument = library("instruments.lib");
amp = 0.25 * envelop(gate, gain);
process = (gate : ba.toggle <:
par(i,nModes,(resonance(i)~_))):>+:fi.lowpass(1,5000)*(amp);
gate = button ("v:Tinkle/h:[0]midi/[1]gate");
freq = vslider("v:Tinkle/h:[0]midi/[2]freq [unit:Hz] [style:knob]", 440, 180, 780, 1)*bend;
bend = vslider("v:Tinkle/h:[0]midi/[3]bend [midi:pitchwheel] [style:knob]", 1, 0.9, 1.1, 0.01);
gain = vslider("v:Tinkle/h:[0]midi/[9]gain [style:knob]", 0.1, 0, 1, 0.01);
envelop(gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
att = vslider("v:Tinkle/h:[1]env/[1]attack [style:knob] [tooltip:sec]", 0.01, 0, 15, 0.01) : si.smoo;
dec = vslider("v:Tinkle/h:[1]env/[2]decay [style:knob] [tooltip:sec]", 0.05, 0, 15, 0.01) : si.smoo;
sus = vslider("v:Tinkle/h:[1]env/[3]sustain [style:knob] [tooltip:percentage of max]", 80, 0, 100, 0.1) : si.smoo;
rel = vslider("v:Tinkle/h:[1]env/[4]release [style:knob] [tooltip:sec]", 0.3, 0.01, 15, 0.01) : si.smoo;
};
preset = 0;
nMode(0) = 12;
modes(0,0) = 0.996108344;
basegains(0,0) = 0.999925960128219;
excitation(0,0) = 11.900357 / 10;
modes(0,1) = 1.0038916562;
basegains(0,1) = 0.999925960128219;
excitation(0,1) = 11.900357 / 10;
modes(0,2) = 2.979178;
basegains(0,2) = 0.999982774366897;
excitation(0,2) = 10.914886 / 10;
modes(0,3) = 2.99329767;
basegains(0,3) = 0.999982774366897;
excitation(0,3) = 10.914886 / 10;
modes(0,4) = 5.704452;
basegains(0,4) = 1.0;
excitation(0,4) = 42.995041 / 10;
modes(0,5) = 5.704452;
basegains(0,5) = 1.0;
excitation(0,5) = 42.995041 / 10;
modes(0,6) = 8.9982;
basegains(0,6) = 1.0;
excitation(0,6) = 40.063034 / 10;
modes(0,7) = 9.01549726;
basegains(0,7) = 1.0;
excitation(0,7) = 40.063034 / 10;
modes(0,8) = 12.83303;
basegains(0,8) = 0.999965497558225;
excitation(0,8) = 7.063034 / 10;
modes(0,9) = 12.807382;
basegains(0,9) = 0.999965497558225;
excitation(0,9) = 7.063034 / 10;
modes(0,10) = 17.2808219;
basegains(0,10) = 0.9999999999999999999965497558225;
excitation(0,10) = 57.063034 / 10;
modes(0,11) = 21.97602739726;
basegains(0,11) = 0.999999999999999965497558225;
excitation(0,11) = 57.063034 / 10;
nModes = nMode(preset);
delayLengthBase = ma.SR/freq;
delayLength(x) = delayLengthBase/modes(preset,x);
delayLine(x) = de.delay(4096,delayLength(x));
radius = 1 - ma.PI*32/ma.SR;
bandPassFilter(x) = instrument.bandPass(freq*modes(preset,x),radius);
resonance(x) = + : + (excitation(preset,x)) : delayLine(x) : *(basegains(preset,x)) : bandPassFilter(x);
|
0b8420c52e1b410c2dfa7984a739104283906fc7eadad3a91d7a7a167d9eda2e
|
sebastien-clara/panoplie
|
cabinetCarvinKirbyTreble.dsp
|
declare name "cabinetCarvinKirbyTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 67;
modeFrequencies=(148.818897638,396.850393701,694.488188976,942.519685039,1091.33858268,1537.79527559,1637.00787402,1736.22047244,1934.64566929,2281.88976378,2579.52755906,3075.59055118,3422.83464567,3522.04724409,3621.25984252,3720.47244094,3819.68503937,4216.53543307,4464.56692913,4662.99212598,4911.02362205,5109.4488189,5208.66141732,5307.87401575,5555.90551181,5655.11811024,5754.33070866,5853.54330709,5952.75590551,6051.96850394,6200.78740157,6300.0,6399.21259843,6498.42519685,6597.63779528,6696.8503937,6796.06299213,6895.27559055,7242.51968504,7341.73228346,7887.4015748,7986.61417323,8085.82677165,8333.85826772,8433.07086614,8730.70866142,8829.92125984,9325.98425197,9772.44094488,9871.65354331,9970.86614173,10268.503937,10714.9606299,11955.1181102,12401.5748031,12996.8503937,13096.0629921,13393.7007874,14633.8582677,15874.015748,15973.2283465,16122.0472441,16568.503937,16667.7165354,16766.9291339,17064.5669291,17411.8110236);
massEigenValues=(1.0,0.276016517396,0.20803800039,0.184929059217,0.308126795084,0.286297087214,0.313111292451,0.280467529825,0.345398566643,0.741542507174,0.555447079797,0.620770344677,0.556682431558,0.663281149561,0.608492000945,0.576259022371,0.601006781274,0.345947424572,0.45305523507,0.56822079312,0.361784079739,0.36424681916,0.387719487741,0.379403618668,0.361990398422,0.382658552769,0.386338388343,0.334335848252,0.286179981728,0.243570415023,0.221386312498,0.212977731227,0.229132753773,0.254726354842,0.278356016008,0.290255291153,0.246948565901,0.215497291124,0.0783550794599,0.0620875417708,0.152350359351,0.155824781398,0.150518466222,0.109112658948,0.100151406539,0.080837685954,0.08003952179,0.130365232279,0.088467533478,0.0884344407417,0.0924111555314,0.0625993862824,0.0832536565264,0.023086159018,0.0202186046944,0.0177530763255,0.0170209136933,0.0151360067067,0.0139668278323,0.011132859585,0.0117233560443,0.0112354858442,0.0167674365084,0.0172041934353,0.0185247871872,0.0151836839638,0.0223499027846);
t60=(54.5551345459,12.1234241675,6.81946037017,6.81946037017,21.8221008255,4.36448284128,4.36448284128,4.1966211299,5.74271583995,18.1850970787,9.09258771183,15.5872372595,7.79365780231,8.39316391442,8.39316391442,7.79365780231,8.39316391442,1.73198489194,7.27408583852,12.1234241675,1.73198489194,1.73198489194,1.78876871308,1.73198489194,1.73198489194,1.73198489194,1.73198489194,1.73198489194,1.53684049253,1.29900825581,1.28372672748,1.28372672748,1.28372672748,1.29900825581,9.09258771183,9.09258771183,1.29900825581,1.28372672748,1.18605782904,0.491565341642,9.09258771183,9.09258771183,9.09258771183,4.1966211299,1.98389857122,1.84940228482,1.84940228482,9.09258771183,1.94847321007,1.94847321007,1.98389857122,0.491565341642,8.39316391442,6.81946037017,3.30644538782,3.030914801,2.94900030222,2.87139709284,15.5872372595,2.53752281998,2.59793816459,2.53752281998,4.04119361938,4.04119361938,4.36448284128,2.94900030222,10.9110895852);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetCarvinKirbyTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetCarvinKirbyTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetCarvinKirbyTreble%7E.mxo/cabinetCarvinKirbyTreble.dsp
|
faust
|
declare name "cabinetCarvinKirbyTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 67;
modeFrequencies=(148.818897638,396.850393701,694.488188976,942.519685039,1091.33858268,1537.79527559,1637.00787402,1736.22047244,1934.64566929,2281.88976378,2579.52755906,3075.59055118,3422.83464567,3522.04724409,3621.25984252,3720.47244094,3819.68503937,4216.53543307,4464.56692913,4662.99212598,4911.02362205,5109.4488189,5208.66141732,5307.87401575,5555.90551181,5655.11811024,5754.33070866,5853.54330709,5952.75590551,6051.96850394,6200.78740157,6300.0,6399.21259843,6498.42519685,6597.63779528,6696.8503937,6796.06299213,6895.27559055,7242.51968504,7341.73228346,7887.4015748,7986.61417323,8085.82677165,8333.85826772,8433.07086614,8730.70866142,8829.92125984,9325.98425197,9772.44094488,9871.65354331,9970.86614173,10268.503937,10714.9606299,11955.1181102,12401.5748031,12996.8503937,13096.0629921,13393.7007874,14633.8582677,15874.015748,15973.2283465,16122.0472441,16568.503937,16667.7165354,16766.9291339,17064.5669291,17411.8110236);
massEigenValues=(1.0,0.276016517396,0.20803800039,0.184929059217,0.308126795084,0.286297087214,0.313111292451,0.280467529825,0.345398566643,0.741542507174,0.555447079797,0.620770344677,0.556682431558,0.663281149561,0.608492000945,0.576259022371,0.601006781274,0.345947424572,0.45305523507,0.56822079312,0.361784079739,0.36424681916,0.387719487741,0.379403618668,0.361990398422,0.382658552769,0.386338388343,0.334335848252,0.286179981728,0.243570415023,0.221386312498,0.212977731227,0.229132753773,0.254726354842,0.278356016008,0.290255291153,0.246948565901,0.215497291124,0.0783550794599,0.0620875417708,0.152350359351,0.155824781398,0.150518466222,0.109112658948,0.100151406539,0.080837685954,0.08003952179,0.130365232279,0.088467533478,0.0884344407417,0.0924111555314,0.0625993862824,0.0832536565264,0.023086159018,0.0202186046944,0.0177530763255,0.0170209136933,0.0151360067067,0.0139668278323,0.011132859585,0.0117233560443,0.0112354858442,0.0167674365084,0.0172041934353,0.0185247871872,0.0151836839638,0.0223499027846);
t60=(54.5551345459,12.1234241675,6.81946037017,6.81946037017,21.8221008255,4.36448284128,4.36448284128,4.1966211299,5.74271583995,18.1850970787,9.09258771183,15.5872372595,7.79365780231,8.39316391442,8.39316391442,7.79365780231,8.39316391442,1.73198489194,7.27408583852,12.1234241675,1.73198489194,1.73198489194,1.78876871308,1.73198489194,1.73198489194,1.73198489194,1.73198489194,1.73198489194,1.53684049253,1.29900825581,1.28372672748,1.28372672748,1.28372672748,1.29900825581,9.09258771183,9.09258771183,1.29900825581,1.28372672748,1.18605782904,0.491565341642,9.09258771183,9.09258771183,9.09258771183,4.1966211299,1.98389857122,1.84940228482,1.84940228482,9.09258771183,1.94847321007,1.94847321007,1.98389857122,0.491565341642,8.39316391442,6.81946037017,3.30644538782,3.030914801,2.94900030222,2.87139709284,15.5872372595,2.53752281998,2.59793816459,2.53752281998,4.04119361938,4.04119361938,4.36448284128,2.94900030222,10.9110895852);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetCarvinKirbyTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetCarvinKirbyTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
87c77cba432b7f151af78725f9789e63d9bb117dfc79fbb5ec7d8cd7a37066b3
|
sebastien-clara/panoplie
|
cabinetCarvinKirbyBass.dsp
|
declare name "cabinetCarvinKirbyBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 58;
modeFrequencies=(160.753341434,750.182260024,1071.68894289,1232.44228433,1553.94896719,1661.11786148,2036.20899149,2250.54678007,2411.30012151,2572.05346294,2732.80680437,2893.56014581,3000.7290401,3161.48238153,3268.65127582,3375.82017011,3482.9890644,3590.15795869,3750.91130012,3858.08019441,4018.83353584,4393.92466586,4501.09356015,4608.26245443,4715.43134872,4876.18469016,4983.35358445,5144.10692588,5251.27582017,5412.0291616,5519.19805589,5733.53584447,5840.70473876,5947.87363305,6269.38031592,6376.54921021,6537.30255164,6644.47144593,6751.64034022,6912.39368165,7019.56257594,7126.73147023,7287.48481166,7394.65370595,7501.82260024,7662.57594168,7823.32928311,8037.66707169,8573.51154313,8787.84933171,9162.94046173,9323.69380316,10234.6294046,10341.7982989,11306.3183475,11413.4872418,11574.2405832,11681.4094775);
massEigenValues=(1.0,0.238934640147,0.247595767826,0.154233491965,0.292780037218,0.234843687501,0.266255258441,0.34730085397,0.302519344801,0.373856624687,0.226707874154,0.313228067585,0.323845073129,0.263987279044,0.298039636186,0.361182613489,0.327606833058,0.31921353718,0.295800533845,0.239977709644,0.241030768835,0.213038829308,0.243285006899,0.277793977183,0.189947991964,0.154566486743,0.135349888037,0.0916616683491,0.0713864171216,0.0443082157922,0.0266485462222,0.039589065361,0.046114750495,0.0439142906853,0.0632201538299,0.048886662503,0.0389377047574,0.043119838128,0.0424672384615,0.0450488925529,0.0394900451555,0.0407586723926,0.0542467021481,0.0542735712433,0.0400040091257,0.0485654335627,0.0534073292645,0.0564438329905,0.0266889619559,0.0252141732334,0.0324852037603,0.0329659521857,0.0448094385389,0.042984364612,0.0111028120482,0.0122521982915,0.0127631895393,0.0139949517417);
t60=(39.286789534,19.6434339395,23.5721050585,4.91091724377,23.5721050585,19.6434339395,2.94658168457,10.714635942,3.68320751923,11.7860917016,2.87471574949,6.20324326965,6.20324326965,2.94658168457,3.68320751923,16.8372402832,6.20324326965,6.20324326965,3.68320751923,2.87471574949,39.286789534,10.714635942,13.0956487413,58.9301451294,1.84164293279,1.68379453972,1.25390955448,1.20273277054,1.17867968209,1.15556985201,1.13334886156,23.5721050585,29.4651117367,39.286789534,29.4651117367,16.8372402832,11.7860917016,58.9301451294,39.286789534,58.9301451294,4.71448368783,4.71448368783,23.5721050585,23.5721050585,4.71448368783,9.8217561422,10.714635942,10.714635942,3.18548736067,1.59278285363,13.0956487413,13.0956487413,10.714635942,10.714635942,0.519285985476,8.41865931405,9.06624246552,9.8217561422);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetCarvinKirbyBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetCarvinKirbyBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetCarvinKirbyBass%7E.mxo/cabinetCarvinKirbyBass.dsp
|
faust
|
declare name "cabinetCarvinKirbyBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 58;
modeFrequencies=(160.753341434,750.182260024,1071.68894289,1232.44228433,1553.94896719,1661.11786148,2036.20899149,2250.54678007,2411.30012151,2572.05346294,2732.80680437,2893.56014581,3000.7290401,3161.48238153,3268.65127582,3375.82017011,3482.9890644,3590.15795869,3750.91130012,3858.08019441,4018.83353584,4393.92466586,4501.09356015,4608.26245443,4715.43134872,4876.18469016,4983.35358445,5144.10692588,5251.27582017,5412.0291616,5519.19805589,5733.53584447,5840.70473876,5947.87363305,6269.38031592,6376.54921021,6537.30255164,6644.47144593,6751.64034022,6912.39368165,7019.56257594,7126.73147023,7287.48481166,7394.65370595,7501.82260024,7662.57594168,7823.32928311,8037.66707169,8573.51154313,8787.84933171,9162.94046173,9323.69380316,10234.6294046,10341.7982989,11306.3183475,11413.4872418,11574.2405832,11681.4094775);
massEigenValues=(1.0,0.238934640147,0.247595767826,0.154233491965,0.292780037218,0.234843687501,0.266255258441,0.34730085397,0.302519344801,0.373856624687,0.226707874154,0.313228067585,0.323845073129,0.263987279044,0.298039636186,0.361182613489,0.327606833058,0.31921353718,0.295800533845,0.239977709644,0.241030768835,0.213038829308,0.243285006899,0.277793977183,0.189947991964,0.154566486743,0.135349888037,0.0916616683491,0.0713864171216,0.0443082157922,0.0266485462222,0.039589065361,0.046114750495,0.0439142906853,0.0632201538299,0.048886662503,0.0389377047574,0.043119838128,0.0424672384615,0.0450488925529,0.0394900451555,0.0407586723926,0.0542467021481,0.0542735712433,0.0400040091257,0.0485654335627,0.0534073292645,0.0564438329905,0.0266889619559,0.0252141732334,0.0324852037603,0.0329659521857,0.0448094385389,0.042984364612,0.0111028120482,0.0122521982915,0.0127631895393,0.0139949517417);
t60=(39.286789534,19.6434339395,23.5721050585,4.91091724377,23.5721050585,19.6434339395,2.94658168457,10.714635942,3.68320751923,11.7860917016,2.87471574949,6.20324326965,6.20324326965,2.94658168457,3.68320751923,16.8372402832,6.20324326965,6.20324326965,3.68320751923,2.87471574949,39.286789534,10.714635942,13.0956487413,58.9301451294,1.84164293279,1.68379453972,1.25390955448,1.20273277054,1.17867968209,1.15556985201,1.13334886156,23.5721050585,29.4651117367,39.286789534,29.4651117367,16.8372402832,11.7860917016,58.9301451294,39.286789534,58.9301451294,4.71448368783,4.71448368783,23.5721050585,23.5721050585,4.71448368783,9.8217561422,10.714635942,10.714635942,3.18548736067,1.59278285363,13.0956487413,13.0956487413,10.714635942,10.714635942,0.519285985476,8.41865931405,9.06624246552,9.8217561422);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetCarvinKirbyBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetCarvinKirbyBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
920cec501f42b9e1df3cbab659eb347eba5929c88d0a9c0ebb816016324ad7ae
|
sebastien-clara/panoplie
|
cabinetLineAngoraBass.dsp
|
declare name "cabinetLineAngoraBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 64;
modeFrequencies=(166.57223796,374.787535411,458.073654391,541.359773371,666.288951841,999.433427762,1166.00566572,1290.93484419,1415.86402266,1665.7223796,1749.00849858,1873.93767705,2040.50991501,2248.72521246,2332.01133144,2456.94050992,2581.86968839,2748.44192635,2831.72804533,2915.01416431,2998.30028329,3123.22946176,3289.80169972,3373.0878187,3498.01699717,3706.23229462,3872.80453258,4122.66288952,4205.9490085,4289.23512748,4747.30878187,4830.59490085,4913.88101983,5163.73937677,5247.02549575,5413.59773371,5496.88385269,5663.45609065,5830.02832861,5913.31444759,6163.17280453,6371.38810198,6621.24645892,6912.74787535,7120.9631728,7412.46458924,7495.75070822,7579.0368272,7662.32294618,7787.25212465,7995.4674221,8078.75354108,8453.54107649,8745.04249292,8869.97167139,8953.25779037,9036.54390935,9119.83002833,9369.68838527,9452.97450425,10494.0509915,11993.2011331,12243.0594901,12326.3456091);
massEigenValues=(1.0,0.3508142206,0.299035699072,0.243738427025,0.499446960411,0.159509626813,0.177524803443,0.17131720051,0.193851423911,0.213122943186,0.218535278711,0.196135130931,0.172385874337,0.369505010495,0.435608345921,0.420810191136,0.341650849343,0.326319506978,0.265839955939,0.231031510505,0.247515461279,0.201329876172,0.175007825714,0.15333308271,0.132996467325,0.172881239286,0.158307140372,0.114233040694,0.151770588337,0.174538660011,0.0974740213488,0.129229299915,0.182834913175,0.17585371408,0.19877183095,0.171308991989,0.101083077369,0.0668972406545,0.0354687240851,0.0332731767509,0.0210767780544,0.0133419122848,0.0340282369674,0.0380176781916,0.0297777931353,0.0131203036748,0.0102781395835,0.0143445156905,0.0139798632746,0.0172510123526,0.0134273373437,0.0130722176625,0.0254188159552,0.0139665380997,0.013882391463,0.0135139193059,0.0151288698154,0.0130106852243,0.0112518657591,0.0114184390154,0.0186823959525,0.0103643228185,0.0131334834403,0.0129754620318);
t60=(30.5316773144,8.32687806393,8.32687806393,6.5425638385,45.797476799,22.8987775722,30.5316773144,5.388007575,6.10639813895,11.4494279584,11.4494279584,6.5425638385,3.15851961804,8.32687806393,10.1772780014,8.32687806393,8.32687806393,22.8987775722,3.81652821641,3.66387022159,3.66387022159,3.15851961804,18.3190377266,18.3190377266,3.66387022159,8.32687806393,8.32687806393,3.66387022159,15.2658778297,15.2658778297,3.98246081949,5.72475315185,11.4494279584,7.63297808737,22.8987775722,6.5425638385,4.57981819057,3.52295514945,45.797476799,13.0850493318,0.301377025505,0.297464055801,18.3190377266,18.3190377266,9.15955803579,5.08867817335,1.3671648672,2.34866288167,2.28994826829,6.5425638385,2.28994826829,2.28994826829,11.4494279584,2.28994826829,2.28994826829,2.28994826829,10.1772780014,2.28994826829,13.0850493318,13.0850493318,11.4494279584,2.6940429604,7.04583195335,7.04583195335);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetLineAngoraBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetLineAngoraBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetLineAngoraBass%7E.mxo/cabinetLineAngoraBass.dsp
|
faust
|
declare name "cabinetLineAngoraBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 64;
modeFrequencies=(166.57223796,374.787535411,458.073654391,541.359773371,666.288951841,999.433427762,1166.00566572,1290.93484419,1415.86402266,1665.7223796,1749.00849858,1873.93767705,2040.50991501,2248.72521246,2332.01133144,2456.94050992,2581.86968839,2748.44192635,2831.72804533,2915.01416431,2998.30028329,3123.22946176,3289.80169972,3373.0878187,3498.01699717,3706.23229462,3872.80453258,4122.66288952,4205.9490085,4289.23512748,4747.30878187,4830.59490085,4913.88101983,5163.73937677,5247.02549575,5413.59773371,5496.88385269,5663.45609065,5830.02832861,5913.31444759,6163.17280453,6371.38810198,6621.24645892,6912.74787535,7120.9631728,7412.46458924,7495.75070822,7579.0368272,7662.32294618,7787.25212465,7995.4674221,8078.75354108,8453.54107649,8745.04249292,8869.97167139,8953.25779037,9036.54390935,9119.83002833,9369.68838527,9452.97450425,10494.0509915,11993.2011331,12243.0594901,12326.3456091);
massEigenValues=(1.0,0.3508142206,0.299035699072,0.243738427025,0.499446960411,0.159509626813,0.177524803443,0.17131720051,0.193851423911,0.213122943186,0.218535278711,0.196135130931,0.172385874337,0.369505010495,0.435608345921,0.420810191136,0.341650849343,0.326319506978,0.265839955939,0.231031510505,0.247515461279,0.201329876172,0.175007825714,0.15333308271,0.132996467325,0.172881239286,0.158307140372,0.114233040694,0.151770588337,0.174538660011,0.0974740213488,0.129229299915,0.182834913175,0.17585371408,0.19877183095,0.171308991989,0.101083077369,0.0668972406545,0.0354687240851,0.0332731767509,0.0210767780544,0.0133419122848,0.0340282369674,0.0380176781916,0.0297777931353,0.0131203036748,0.0102781395835,0.0143445156905,0.0139798632746,0.0172510123526,0.0134273373437,0.0130722176625,0.0254188159552,0.0139665380997,0.013882391463,0.0135139193059,0.0151288698154,0.0130106852243,0.0112518657591,0.0114184390154,0.0186823959525,0.0103643228185,0.0131334834403,0.0129754620318);
t60=(30.5316773144,8.32687806393,8.32687806393,6.5425638385,45.797476799,22.8987775722,30.5316773144,5.388007575,6.10639813895,11.4494279584,11.4494279584,6.5425638385,3.15851961804,8.32687806393,10.1772780014,8.32687806393,8.32687806393,22.8987775722,3.81652821641,3.66387022159,3.66387022159,3.15851961804,18.3190377266,18.3190377266,3.66387022159,8.32687806393,8.32687806393,3.66387022159,15.2658778297,15.2658778297,3.98246081949,5.72475315185,11.4494279584,7.63297808737,22.8987775722,6.5425638385,4.57981819057,3.52295514945,45.797476799,13.0850493318,0.301377025505,0.297464055801,18.3190377266,18.3190377266,9.15955803579,5.08867817335,1.3671648672,2.34866288167,2.28994826829,6.5425638385,2.28994826829,2.28994826829,11.4494279584,2.28994826829,2.28994826829,2.28994826829,10.1772780014,2.28994826829,13.0850493318,13.0850493318,11.4494279584,2.6940429604,7.04583195335,7.04583195335);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetLineAngoraBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetLineAngoraBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
5d516e22d995465ceb7e33fa6dc3ab7b23695c00ef46cdd2af7f1c607926083a
|
sebastien-clara/panoplie
|
faustDX7.dsp
|
declare name "faustDX7";
declare nvoices "16";
import("stdfaust.lib");
bend = vslider("h:dx7/v:global/[9]bend [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
process = dx7 * 0.25;
dx7 = par(i,32, dx.dx7_algo(i,egR1,egR2,egR3,egR4,egL1,egL2,egL3,egL4,outLevel,keyVelSens,ampModSens,opMode,opFreq,opDetune,opRateScale,feedback,lfoDelay,lfoDepth,lfoSpeed,freq*bend,gain,gate) ) :
ba.selectn(32,algorithm) : _
with{
algorithm = nentry("h:dx7/v:global/[0]algorithm",0,0,31,1) : int;
feedback = nentry("h:dx7/v:global/[1]feedback",0,0,99,1) : dx.dx7_fdbkscalef/(2*ma.PI);
lfoDelay = nentry("h:dx7/v:global/[2]lfoDelay",0,0,99,1);
lfoDepth = nentry("h:dx7/v:global/[3]lfoDepth",0,0,99,1);
lfoSpeed = nentry("h:dx7/v:global/[4]lfoSpeed",0,0,99,1);
freq = hslider("h:dx7/v:global/[5]freq",400,50,1000,0.01);
gain = hslider("h:dx7/v:global/[6]gain",0.8,0,1,0.01);
gate = button("h:dx7/v:global/[7]gate");
egR1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[0]egR1",90,0,99,1));
egR1(n) = ba.take(n+1,egR1UI);
egR2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[1]egR2",90,0,99,1));
egR2(n) = ba.take(n+1,egR2UI);
egR3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[2]egR3",90,0,99,1));
egR3(n) = ba.take(n+1,egR3UI);
egR4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[3]egR4",90,0,99,1));
egR4(n) = ba.take(n+1,egR4UI);
egL1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[4]egL1",0,0,99,1));
egL1(n) = ba.take(n+1,egL1UI);
egL2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[5]egL2",90,0,99,1));
egL2(n) = ba.take(n+1,egL2UI);
egL3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[6]egL3",90,0,99,1));
egL3(n) = ba.take(n+1,egL3UI);
egL4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[7]egL4",0,0,99,1));
egL4(n) = ba.take(n+1,egL4UI);
outLevelUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[8]level",95,0,99,1));
outLevel(n) = ba.take(n+1,outLevelUI);
keyVelSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[9]keyVelSens",1,0,8,1));
keyVelSens(n) = ba.take(n+1,keyVelSensUI);
ampModSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[10]ampModSens",0,0,99,1));
ampModSens(n) = ba.take(n+1,ampModSensUI);
opModeUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[11]opMode",0,0,1,1));
opMode(n) = ba.take(n+1,opModeUI);
opFreqUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[12]opFreq",1.0,0.0,2.0,0.01));
opFreq(n) = ba.take(n+1,opFreqUI);
opDetuneUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[13]opDetune",1,-10,10,1));
opDetune(n) = ba.take(n+1,opDetuneUI);
opRateScaleUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[14]opRateScale",0,0,10,1));
opRateScale(n) = ba.take(n+1,opRateScaleUI);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/faustDX7/faustDX7%7E.mxo/faustDX7.dsp
|
faust
|
declare name "faustDX7";
declare nvoices "16";
import("stdfaust.lib");
bend = vslider("h:dx7/v:global/[9]bend [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
process = dx7 * 0.25;
dx7 = par(i,32, dx.dx7_algo(i,egR1,egR2,egR3,egR4,egL1,egL2,egL3,egL4,outLevel,keyVelSens,ampModSens,opMode,opFreq,opDetune,opRateScale,feedback,lfoDelay,lfoDepth,lfoSpeed,freq*bend,gain,gate) ) :
ba.selectn(32,algorithm) : _
with{
algorithm = nentry("h:dx7/v:global/[0]algorithm",0,0,31,1) : int;
feedback = nentry("h:dx7/v:global/[1]feedback",0,0,99,1) : dx.dx7_fdbkscalef/(2*ma.PI);
lfoDelay = nentry("h:dx7/v:global/[2]lfoDelay",0,0,99,1);
lfoDepth = nentry("h:dx7/v:global/[3]lfoDepth",0,0,99,1);
lfoSpeed = nentry("h:dx7/v:global/[4]lfoSpeed",0,0,99,1);
freq = hslider("h:dx7/v:global/[5]freq",400,50,1000,0.01);
gain = hslider("h:dx7/v:global/[6]gain",0.8,0,1,0.01);
gate = button("h:dx7/v:global/[7]gate");
egR1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[0]egR1",90,0,99,1));
egR1(n) = ba.take(n+1,egR1UI);
egR2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[1]egR2",90,0,99,1));
egR2(n) = ba.take(n+1,egR2UI);
egR3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[2]egR3",90,0,99,1));
egR3(n) = ba.take(n+1,egR3UI);
egR4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[3]egR4",90,0,99,1));
egR4(n) = ba.take(n+1,egR4UI);
egL1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[4]egL1",0,0,99,1));
egL1(n) = ba.take(n+1,egL1UI);
egL2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[5]egL2",90,0,99,1));
egL2(n) = ba.take(n+1,egL2UI);
egL3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[6]egL3",90,0,99,1));
egL3(n) = ba.take(n+1,egL3UI);
egL4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[7]egL4",0,0,99,1));
egL4(n) = ba.take(n+1,egL4UI);
outLevelUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[8]level",95,0,99,1));
outLevel(n) = ba.take(n+1,outLevelUI);
keyVelSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[9]keyVelSens",1,0,8,1));
keyVelSens(n) = ba.take(n+1,keyVelSensUI);
ampModSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[10]ampModSens",0,0,99,1));
ampModSens(n) = ba.take(n+1,ampModSensUI);
opModeUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[11]opMode",0,0,1,1));
opMode(n) = ba.take(n+1,opModeUI);
opFreqUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[12]opFreq",1.0,0.0,2.0,0.01));
opFreq(n) = ba.take(n+1,opFreqUI);
opDetuneUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[13]opDetune",1,-10,10,1));
opDetune(n) = ba.take(n+1,opDetuneUI);
opRateScaleUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[14]opRateScale",0,0,10,1));
opRateScale(n) = ba.take(n+1,opRateScaleUI);
};
|
|
5b4eb78b0c9d47d1c082374fecc6cb40c4b1554fc8926bf419d82f55eaae2a8c
|
sebastien-clara/panoplie
|
faustDX7mono.dsp
|
declare name "faustDX7";
import("stdfaust.lib");
bend = vslider("h:dx7/v:global/[9]bend [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("h:dx7/v:global/[8]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
process = dx7 * 0.25;
dx7 = par(i,32, dx.dx7_algo(i,egR1,egR2,egR3,egR4,egL1,egL2,egL3,egL4,outLevel,keyVelSens,ampModSens,opMode,opFreq,opDetune,opRateScale,feedback,lfoDelay,lfoDepth,lfoSpeed,freq*bend,gain,gate) ) :
ba.selectn(32,algorithm) : _
with{
algorithm = nentry("h:dx7/v:global/[0]algorithm",0,0,31,1) : int;
feedback = nentry("h:dx7/v:global/[1]feedback",0,0,99,1) : dx.dx7_fdbkscalef/(2*ma.PI);
lfoDelay = nentry("h:dx7/v:global/[2]lfoDelay",0,0,99,1);
lfoDepth = nentry("h:dx7/v:global/[3]lfoDepth",0,0,99,1);
lfoSpeed = nentry("h:dx7/v:global/[4]lfoSpeed",0,0,99,1);
freq = hslider("h:dx7/v:global/[5]freq",400,30,5000,0.01) : portamento;
gain = hslider("h:dx7/v:global/[6]gain",0.8,0,1,0.01) : si.smoo;
gate = button("h:dx7/v:global/[7]gate");
egR1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[0]egR1",90,0,99,1));
egR1(n) = ba.take(n+1,egR1UI);
egR2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[1]egR2",90,0,99,1));
egR2(n) = ba.take(n+1,egR2UI);
egR3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[2]egR3",90,0,99,1));
egR3(n) = ba.take(n+1,egR3UI);
egR4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[3]egR4",90,0,99,1));
egR4(n) = ba.take(n+1,egR4UI);
egL1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[4]egL1",0,0,99,1));
egL1(n) = ba.take(n+1,egL1UI);
egL2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[5]egL2",90,0,99,1));
egL2(n) = ba.take(n+1,egL2UI);
egL3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[6]egL3",90,0,99,1));
egL3(n) = ba.take(n+1,egL3UI);
egL4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[7]egL4",0,0,99,1));
egL4(n) = ba.take(n+1,egL4UI);
outLevelUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[8]level",95,0,99,1));
outLevel(n) = ba.take(n+1,outLevelUI);
keyVelSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[9]keyVelSens",1,0,8,1));
keyVelSens(n) = ba.take(n+1,keyVelSensUI);
ampModSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[10]ampModSens",0,0,99,1));
ampModSens(n) = ba.take(n+1,ampModSensUI);
opModeUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[11]opMode",0,0,1,1));
opMode(n) = ba.take(n+1,opModeUI);
opFreqUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[12]opFreq",1.0,0.0,2.0,0.01));
opFreq(n) = ba.take(n+1,opFreqUI);
opDetuneUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[13]opDetune",1,-10,10,1));
opDetune(n) = ba.take(n+1,opDetuneUI);
opRateScaleUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[14]opRateScale",0,0,10,1));
opRateScale(n) = ba.take(n+1,opRateScaleUI);
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/faustDX7mono/faustDX7mono%7E.mxo/faustDX7mono.dsp
|
faust
|
declare name "faustDX7";
import("stdfaust.lib");
bend = vslider("h:dx7/v:global/[9]bend [style:knob] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("h:dx7/v:global/[8]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
process = dx7 * 0.25;
dx7 = par(i,32, dx.dx7_algo(i,egR1,egR2,egR3,egR4,egL1,egL2,egL3,egL4,outLevel,keyVelSens,ampModSens,opMode,opFreq,opDetune,opRateScale,feedback,lfoDelay,lfoDepth,lfoSpeed,freq*bend,gain,gate) ) :
ba.selectn(32,algorithm) : _
with{
algorithm = nentry("h:dx7/v:global/[0]algorithm",0,0,31,1) : int;
feedback = nentry("h:dx7/v:global/[1]feedback",0,0,99,1) : dx.dx7_fdbkscalef/(2*ma.PI);
lfoDelay = nentry("h:dx7/v:global/[2]lfoDelay",0,0,99,1);
lfoDepth = nentry("h:dx7/v:global/[3]lfoDepth",0,0,99,1);
lfoSpeed = nentry("h:dx7/v:global/[4]lfoSpeed",0,0,99,1);
freq = hslider("h:dx7/v:global/[5]freq",400,30,5000,0.01) : portamento;
gain = hslider("h:dx7/v:global/[6]gain",0.8,0,1,0.01) : si.smoo;
gate = button("h:dx7/v:global/[7]gate");
egR1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[0]egR1",90,0,99,1));
egR1(n) = ba.take(n+1,egR1UI);
egR2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[1]egR2",90,0,99,1));
egR2(n) = ba.take(n+1,egR2UI);
egR3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[2]egR3",90,0,99,1));
egR3(n) = ba.take(n+1,egR3UI);
egR4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[3]egR4",90,0,99,1));
egR4(n) = ba.take(n+1,egR4UI);
egL1UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[4]egL1",0,0,99,1));
egL1(n) = ba.take(n+1,egL1UI);
egL2UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[5]egL2",90,0,99,1));
egL2(n) = ba.take(n+1,egL2UI);
egL3UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[6]egL3",90,0,99,1));
egL3(n) = ba.take(n+1,egL3UI);
egL4UI = par(i,6,nentry("h:dx7/v:[%i]op%i/[7]egL4",0,0,99,1));
egL4(n) = ba.take(n+1,egL4UI);
outLevelUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[8]level",95,0,99,1));
outLevel(n) = ba.take(n+1,outLevelUI);
keyVelSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[9]keyVelSens",1,0,8,1));
keyVelSens(n) = ba.take(n+1,keyVelSensUI);
ampModSensUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[10]ampModSens",0,0,99,1));
ampModSens(n) = ba.take(n+1,ampModSensUI);
opModeUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[11]opMode",0,0,1,1));
opMode(n) = ba.take(n+1,opModeUI);
opFreqUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[12]opFreq",1.0,0.0,2.0,0.01));
opFreq(n) = ba.take(n+1,opFreqUI);
opDetuneUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[13]opDetune",1,-10,10,1));
opDetune(n) = ba.take(n+1,opDetuneUI);
opRateScaleUI = par(i,6,nentry("h:dx7/v:[%i]op%i/[14]opRateScale",0,0,10,1));
opRateScale(n) = ba.take(n+1,opRateScaleUI);
};
|
|
586ad47a5213ac6a2559bad0822247b28ed92505ce125d391d51b381008cd9b3
|
sebastien-clara/panoplie
|
cabinetLineAngoraTreble.dsp
|
declare name "cabinetLineAngoraTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 87;
modeFrequencies=(152.595155709,305.190311419,396.747404844,457.785467128,549.342560554,671.418685121,824.01384083,1007.12802768,1190.24221453,1281.79930796,1434.39446367,1525.95155709,1586.98961938,1648.02768166,1739.58477509,1800.62283737,2014.25605536,2105.81314879,2166.85121107,2288.92733564,2380.48442907,2472.04152249,2716.19377163,2838.26989619,3051.90311419,3235.01730104,3326.57439446,3387.61245675,3540.20761246,3692.80276817,3814.87889273,3906.43598616,3997.99307958,4089.55017301,4272.66435986,4364.22145329,4455.77854671,4547.33564014,4730.44982699,5066.15916955,5401.86851211,5462.90657439,5584.98269896,5676.53979239,5768.09688581,6042.76816609,6103.80622837,6164.84429066,6256.40138408,6317.43944637,6500.55363322,6744.70588235,7080.41522491,7171.97231834,7660.27681661,7782.35294118,7873.9100346,8057.02422145,8148.58131488,8270.65743945,8362.21453287,8545.32871972,8636.88581315,8942.07612457,9094.67128028,9155.70934256,9247.26643599,9338.82352941,9430.38062284,9491.41868512,9582.97577855,9674.53287197,9796.60899654,10223.8754325,10315.432526,10712.1799308,10773.2179931,11841.384083,11932.9411765,11993.9792388,12085.5363322,12146.5743945,12573.8408304,12665.3979239,12726.4359862,13611.4878893,13672.5259516);
massEigenValues=(1.0,0.30312031159,0.26933536686,0.234549878442,0.188701260592,0.356989313089,0.177257664845,0.183527763507,0.210628109778,0.220336804522,0.17830758767,0.155603464399,0.161137859145,0.186126993477,0.201537626182,0.185749868643,0.323397876033,0.34927189487,0.417793699122,0.397676836824,0.439899568261,0.42452928625,0.345456785106,0.268343626682,0.414377297574,0.535181128168,0.601463699445,0.527275165103,0.364287167206,0.38347589236,0.319629062526,0.320785280475,0.338884120511,0.319408114414,0.17331435758,0.170542891753,0.190247653017,0.218789891056,0.301897911226,0.466065604526,0.304374627047,0.304597214824,0.25156020447,0.216414756756,0.182535626116,0.0878538598192,0.0924675298076,0.09170479001,0.0892576961739,0.09001994143,0.123233765189,0.0944367356187,0.0434519057532,0.0435703521557,0.0515974404754,0.0479013144108,0.0407930797167,0.0294614510223,0.027562855578,0.0243307529483,0.0229205521437,0.0326412815997,0.0328025373155,0.0370854366079,0.0429134233798,0.0406013842404,0.0456927414526,0.0502594958567,0.0523500112807,0.0495973821466,0.0436920151603,0.0372783002923,0.0355727095949,0.0633874599473,0.0632144958392,0.0319195235804,0.032918728852,0.0197248143243,0.0196747066465,0.019310272842,0.0185530190599,0.0178799300219,0.0251969975164,0.0245329097169,0.0236257720433,0.0110581069293,0.0112898016104);
t60=(33.5637080768,4.79488259259,4.79488259259,3.94874066665,3.72937053771,16.7818932111,7.45866272992,22.3758314997,16.7818932111,16.7818932111,0.438818607275,0.435969644591,0.438818607275,0.441705056309,0.476158203329,0.441705056309,3.19661451031,3.35644131852,4.19553206172,4.19553206172,5.59401663378,4.19553206172,11.1879549223,2.0342377234,2.39748046927,4.47522897612,5.59401663378,4.19553206172,1.72129012701,2.39748046927,1.63732857677,1.63732857677,1.63732857677,1.63732857677,0.438818607275,0.438818607275,0.441705056309,1.37002241688,1.91800004473,4.79488259259,1.91800004473,1.91800004473,1.5256978793,1.37002241688,0.438818607275,0.299753616966,0.301097452207,0.299753616966,0.299753616966,0.299753616966,4.79488259259,0.302453394072,0.284515891969,0.284515891969,4.79488259259,4.19553206172,3.5330920013,0.245068351069,0.184493903746,0.1839886557,0.1839886557,0.771656042321,0.771656042321,0.818703462595,0.959039196302,0.849790492203,1.11886600425,2.79704748977,3.19661451031,2.68516872403,0.972937179598,0.818703462595,0.79921238848,3.72937053771,3.72937053771,0.771656042321,0.771656042321,1.59834642845,1.59834642845,1.59834642845,1.59834642845,1.5611774033,3.5330920013,3.05131741193,1.76658517385,3.19661451031,5.59401663378);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetLineAngoraTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetLineAngoraTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetLineAngoraTreble%7E.mxo/cabinetLineAngoraTreble.dsp
|
faust
|
declare name "cabinetLineAngoraTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 87;
modeFrequencies=(152.595155709,305.190311419,396.747404844,457.785467128,549.342560554,671.418685121,824.01384083,1007.12802768,1190.24221453,1281.79930796,1434.39446367,1525.95155709,1586.98961938,1648.02768166,1739.58477509,1800.62283737,2014.25605536,2105.81314879,2166.85121107,2288.92733564,2380.48442907,2472.04152249,2716.19377163,2838.26989619,3051.90311419,3235.01730104,3326.57439446,3387.61245675,3540.20761246,3692.80276817,3814.87889273,3906.43598616,3997.99307958,4089.55017301,4272.66435986,4364.22145329,4455.77854671,4547.33564014,4730.44982699,5066.15916955,5401.86851211,5462.90657439,5584.98269896,5676.53979239,5768.09688581,6042.76816609,6103.80622837,6164.84429066,6256.40138408,6317.43944637,6500.55363322,6744.70588235,7080.41522491,7171.97231834,7660.27681661,7782.35294118,7873.9100346,8057.02422145,8148.58131488,8270.65743945,8362.21453287,8545.32871972,8636.88581315,8942.07612457,9094.67128028,9155.70934256,9247.26643599,9338.82352941,9430.38062284,9491.41868512,9582.97577855,9674.53287197,9796.60899654,10223.8754325,10315.432526,10712.1799308,10773.2179931,11841.384083,11932.9411765,11993.9792388,12085.5363322,12146.5743945,12573.8408304,12665.3979239,12726.4359862,13611.4878893,13672.5259516);
massEigenValues=(1.0,0.30312031159,0.26933536686,0.234549878442,0.188701260592,0.356989313089,0.177257664845,0.183527763507,0.210628109778,0.220336804522,0.17830758767,0.155603464399,0.161137859145,0.186126993477,0.201537626182,0.185749868643,0.323397876033,0.34927189487,0.417793699122,0.397676836824,0.439899568261,0.42452928625,0.345456785106,0.268343626682,0.414377297574,0.535181128168,0.601463699445,0.527275165103,0.364287167206,0.38347589236,0.319629062526,0.320785280475,0.338884120511,0.319408114414,0.17331435758,0.170542891753,0.190247653017,0.218789891056,0.301897911226,0.466065604526,0.304374627047,0.304597214824,0.25156020447,0.216414756756,0.182535626116,0.0878538598192,0.0924675298076,0.09170479001,0.0892576961739,0.09001994143,0.123233765189,0.0944367356187,0.0434519057532,0.0435703521557,0.0515974404754,0.0479013144108,0.0407930797167,0.0294614510223,0.027562855578,0.0243307529483,0.0229205521437,0.0326412815997,0.0328025373155,0.0370854366079,0.0429134233798,0.0406013842404,0.0456927414526,0.0502594958567,0.0523500112807,0.0495973821466,0.0436920151603,0.0372783002923,0.0355727095949,0.0633874599473,0.0632144958392,0.0319195235804,0.032918728852,0.0197248143243,0.0196747066465,0.019310272842,0.0185530190599,0.0178799300219,0.0251969975164,0.0245329097169,0.0236257720433,0.0110581069293,0.0112898016104);
t60=(33.5637080768,4.79488259259,4.79488259259,3.94874066665,3.72937053771,16.7818932111,7.45866272992,22.3758314997,16.7818932111,16.7818932111,0.438818607275,0.435969644591,0.438818607275,0.441705056309,0.476158203329,0.441705056309,3.19661451031,3.35644131852,4.19553206172,4.19553206172,5.59401663378,4.19553206172,11.1879549223,2.0342377234,2.39748046927,4.47522897612,5.59401663378,4.19553206172,1.72129012701,2.39748046927,1.63732857677,1.63732857677,1.63732857677,1.63732857677,0.438818607275,0.438818607275,0.441705056309,1.37002241688,1.91800004473,4.79488259259,1.91800004473,1.91800004473,1.5256978793,1.37002241688,0.438818607275,0.299753616966,0.301097452207,0.299753616966,0.299753616966,0.299753616966,4.79488259259,0.302453394072,0.284515891969,0.284515891969,4.79488259259,4.19553206172,3.5330920013,0.245068351069,0.184493903746,0.1839886557,0.1839886557,0.771656042321,0.771656042321,0.818703462595,0.959039196302,0.849790492203,1.11886600425,2.79704748977,3.19661451031,2.68516872403,0.972937179598,0.818703462595,0.79921238848,3.72937053771,3.72937053771,0.771656042321,0.771656042321,1.59834642845,1.59834642845,1.59834642845,1.59834642845,1.5611774033,3.5330920013,3.05131741193,1.76658517385,3.19661451031,5.59401663378);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetLineAngoraTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetLineAngoraTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
3ab507a3f0d958abe061fba6817ed1931b6ac558b34bbe6d9b24c6d4a2600f39
|
sebastien-clara/panoplie
|
cabinetAmpegMotown.dsp
|
declare name "cabinetAmpegMotown";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 87;
modeFrequencies=(5.55485577529,72.2131250787,111.097115506,211.084519461,299.962211865,344.401058068,366.620481169,477.717596675,561.040433304,622.143846832,772.124952765,833.228366293,933.215770248,1083.19687618,1183.18428014,1388.71394382,1499.81105933,1560.91447286,1688.67615569,1760.88928077,1883.09610782,1971.97380023,2055.29663686,2105.29033883,2327.48456985,2527.45937776,2616.33707016,2649.66620481,2744.09875299,2794.09245497,2916.29928203,3032.95125331,3094.05466683,3271.81005164,3427.34601335,3577.32711928,3610.65625394,3677.31452324,3710.64365789,3843.9601965,4010.60586976,4038.38014863,4110.59327371,4160.58697569,4305.01322585,4460.54918756,4604.97543771,4727.18226477,4804.95024562,4877.1633707,4949.37649578,5027.14447663,5104.91245749,5160.46101524,5315.99697695,5338.21640005,5421.53923668,5460.42322711,5488.19750598,5565.96548684,5599.29462149,5749.27572742,5810.37914095,5977.02481421,6104.78649704,6165.88991057,6338.0904396,6410.30356468,6526.95553596,6638.05265147,6688.04635345,6754.70462275,6793.58861318,7038.00226729,7065.77654616,7126.87995969,7165.76395012,7326.8547676,7404.62274846,7543.49414284,9398.81597178,9432.14510644,9598.7907797,9748.77188563,10054.2889533,10065.3986648,10082.0632321);
massEigenValues=(0.0115070149161,0.286995254364,0.73161132958,0.299665536897,0.348151307004,0.451744582535,0.458046769946,0.646857693742,0.37108234696,0.772926112706,0.526863013212,0.242346588938,0.552898792521,0.755010709684,1.0,0.712971351281,0.295881627006,0.333239622228,0.603858350087,0.738089898189,0.481197920276,0.698506709971,0.513815680107,0.616690296156,0.519229390471,0.484716412383,0.459421501812,0.472210580341,0.372355658191,0.370386595176,0.320042074463,0.42516881138,0.3519116748,0.183764817916,0.154584656101,0.188929359254,0.198761447063,0.21876484479,0.228721498695,0.166966957034,0.112891282825,0.114407270958,0.116576773406,0.131766239703,0.0741767520569,0.0733995616373,0.0387527779035,0.031626682123,0.0262903210052,0.0422183560419,0.0505842130137,0.0473980022334,0.0231361403914,0.0291508696874,0.0319602263795,0.031673497682,0.0361039215165,0.0365546011466,0.0352450970914,0.0257048281812,0.0257702297668,0.0127727368426,0.0121874681851,0.0191519084168,0.0375948078263,0.0415537217269,0.0339901101379,0.0346587898704,0.0234222550933,0.0376036326082,0.0292265058767,0.0232579350857,0.026292460735,0.0219623963602,0.0218340373738,0.027868127701,0.0290266345047,0.0327061503338,0.0281252201871,0.0222404601527,0.0101496573351,0.0106396413865,0.0105239015661,0.0102158129255,0.0101941839009,0.010177344719,0.0101243905929);
t60=(6.10909018068,0.0861207886704,1.74551029889,0.0861207886704,0.130057335639,0.230607102062,0.230607102062,0.643132225291,0.130057335639,1.11080777118,1.22188071348,0.0843406011682,1.35763653188,0.277760708206,0.330295206849,0.718785622302,0.0947917280661,0.555443060688,0.470002336384,0.555443060688,0.207163501523,0.718785622302,0.21825734818,0.321605289754,0.452597744427,0.313361009441,0.298078928886,0.313361009441,0.169773129941,0.169773129941,0.210733934924,0.407345805406,0.226338051331,0.0281014077532,0.643132225291,0.179755174754,0.190984975253,0.277760708206,0.298078928886,0.162985339515,0.0826325834499,0.0986108143979,0.0986108143979,0.101053767176,0.070296900655,0.531296769015,0.0147812800606,0.581888999203,0.0719491006169,0.290983677212,0.313361009441,0.305528943153,0.0715288041324,0.130057335639,0.254620512528,0.24942577474,0.452597744427,0.470002336384,0.277760708206,0.0719491006169,0.0719491006169,0.872794323539,0.678857440537,1.01824698596,0.581888999203,0.610979531587,0.394208145712,0.407345805406,0.188047950499,0.531296769015,0.24942577474,0.188047950499,0.197143252978,0.116440492457,0.116440492457,0.143819813862,0.145531021491,0.581888999203,0.143819813862,0.116440492457,0.150918156646,0.154736885385,0.154736885385,0.150918156646,0.160841826757,0.160841826757,0.15875398966);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetAmpegMotown=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetAmpegMotown;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetAmpegMotown%7E.mxo/cabinetAmpegMotown.dsp
|
faust
|
declare name "cabinetAmpegMotown";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 87;
modeFrequencies=(5.55485577529,72.2131250787,111.097115506,211.084519461,299.962211865,344.401058068,366.620481169,477.717596675,561.040433304,622.143846832,772.124952765,833.228366293,933.215770248,1083.19687618,1183.18428014,1388.71394382,1499.81105933,1560.91447286,1688.67615569,1760.88928077,1883.09610782,1971.97380023,2055.29663686,2105.29033883,2327.48456985,2527.45937776,2616.33707016,2649.66620481,2744.09875299,2794.09245497,2916.29928203,3032.95125331,3094.05466683,3271.81005164,3427.34601335,3577.32711928,3610.65625394,3677.31452324,3710.64365789,3843.9601965,4010.60586976,4038.38014863,4110.59327371,4160.58697569,4305.01322585,4460.54918756,4604.97543771,4727.18226477,4804.95024562,4877.1633707,4949.37649578,5027.14447663,5104.91245749,5160.46101524,5315.99697695,5338.21640005,5421.53923668,5460.42322711,5488.19750598,5565.96548684,5599.29462149,5749.27572742,5810.37914095,5977.02481421,6104.78649704,6165.88991057,6338.0904396,6410.30356468,6526.95553596,6638.05265147,6688.04635345,6754.70462275,6793.58861318,7038.00226729,7065.77654616,7126.87995969,7165.76395012,7326.8547676,7404.62274846,7543.49414284,9398.81597178,9432.14510644,9598.7907797,9748.77188563,10054.2889533,10065.3986648,10082.0632321);
massEigenValues=(0.0115070149161,0.286995254364,0.73161132958,0.299665536897,0.348151307004,0.451744582535,0.458046769946,0.646857693742,0.37108234696,0.772926112706,0.526863013212,0.242346588938,0.552898792521,0.755010709684,1.0,0.712971351281,0.295881627006,0.333239622228,0.603858350087,0.738089898189,0.481197920276,0.698506709971,0.513815680107,0.616690296156,0.519229390471,0.484716412383,0.459421501812,0.472210580341,0.372355658191,0.370386595176,0.320042074463,0.42516881138,0.3519116748,0.183764817916,0.154584656101,0.188929359254,0.198761447063,0.21876484479,0.228721498695,0.166966957034,0.112891282825,0.114407270958,0.116576773406,0.131766239703,0.0741767520569,0.0733995616373,0.0387527779035,0.031626682123,0.0262903210052,0.0422183560419,0.0505842130137,0.0473980022334,0.0231361403914,0.0291508696874,0.0319602263795,0.031673497682,0.0361039215165,0.0365546011466,0.0352450970914,0.0257048281812,0.0257702297668,0.0127727368426,0.0121874681851,0.0191519084168,0.0375948078263,0.0415537217269,0.0339901101379,0.0346587898704,0.0234222550933,0.0376036326082,0.0292265058767,0.0232579350857,0.026292460735,0.0219623963602,0.0218340373738,0.027868127701,0.0290266345047,0.0327061503338,0.0281252201871,0.0222404601527,0.0101496573351,0.0106396413865,0.0105239015661,0.0102158129255,0.0101941839009,0.010177344719,0.0101243905929);
t60=(6.10909018068,0.0861207886704,1.74551029889,0.0861207886704,0.130057335639,0.230607102062,0.230607102062,0.643132225291,0.130057335639,1.11080777118,1.22188071348,0.0843406011682,1.35763653188,0.277760708206,0.330295206849,0.718785622302,0.0947917280661,0.555443060688,0.470002336384,0.555443060688,0.207163501523,0.718785622302,0.21825734818,0.321605289754,0.452597744427,0.313361009441,0.298078928886,0.313361009441,0.169773129941,0.169773129941,0.210733934924,0.407345805406,0.226338051331,0.0281014077532,0.643132225291,0.179755174754,0.190984975253,0.277760708206,0.298078928886,0.162985339515,0.0826325834499,0.0986108143979,0.0986108143979,0.101053767176,0.070296900655,0.531296769015,0.0147812800606,0.581888999203,0.0719491006169,0.290983677212,0.313361009441,0.305528943153,0.0715288041324,0.130057335639,0.254620512528,0.24942577474,0.452597744427,0.470002336384,0.277760708206,0.0719491006169,0.0719491006169,0.872794323539,0.678857440537,1.01824698596,0.581888999203,0.610979531587,0.394208145712,0.407345805406,0.188047950499,0.531296769015,0.24942577474,0.188047950499,0.197143252978,0.116440492457,0.116440492457,0.143819813862,0.145531021491,0.581888999203,0.143819813862,0.116440492457,0.150918156646,0.154736885385,0.154736885385,0.150918156646,0.160841826757,0.160841826757,0.15875398966);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetAmpegMotown=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetAmpegMotown;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
04c40700398816dd79835bc10e383fd6310b1021e91e805e5b784efe8d970026
|
sebastien-clara/panoplie
|
cabinetAmpegManateeBass.dsp
|
declare name "cabinetAmpegManateeBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 90;
modeFrequencies=(153.277060576,569.314796425,744.48857994,875.868917577,1007.24925521,1160.52631579,1423.28699106,1510.87388282,1817.42800397,2102.08540218,2211.56901688,2474.32969215,2583.81330685,2715.19364449,2846.57398213,3196.92154916,3350.19860973,3481.57894737,3591.06256207,3722.4428997,3853.82323734,3985.20357498,4094.68718967,4226.06752731,4357.44786495,4488.82820258,4598.31181728,4729.69215492,4861.07249255,4992.45283019,5123.83316783,5255.21350546,5386.5938431,5496.0774578,5627.45779543,5977.80536246,6218.6693148,6393.84309831,6985.05461768,7116.43495531,7247.81529295,7357.29890765,7466.78252234,7598.16285998,7729.54319762,7860.92353525,7970.40714995,8079.89076465,8211.27110228,8320.75471698,8583.51539225,8714.89572989,8824.37934459,8955.75968222,9087.14001986,9196.62363456,9328.00397219,9459.38430983,9568.86792453,9678.35153923,9831.6285998,9963.00893744,10094.3892751,10203.8728898,10466.633565,10598.0139027,10707.4975174,10816.9811321,10948.3614697,11079.7418073,11211.122145,11846.1271102,12218.3714002,12349.7517378,12481.1320755,12612.5124131,12721.9960278,12853.3763654,13006.653426,13116.1370407,13247.5173784,13357.000993,13488.3813307,13619.7616683,13751.142006,13860.6256207,13992.0059583,14123.3862959,14254.7666336,14386.1469712);
massEigenValues=(1.0,0.36615984745,0.22744022957,0.188193971069,0.233945855568,0.298263832859,0.270413027029,0.269736027507,0.16889224272,0.285488338352,0.310266379364,0.282672629981,0.316300774299,0.329920510747,0.37277587059,0.342210764576,0.300978806334,0.358814177357,0.325382515504,0.24078807851,0.225567421217,0.227186489751,0.204157898051,0.279251999862,0.293670790931,0.258314792512,0.254582779596,0.217196527908,0.234460779487,0.254693595283,0.225015533134,0.227862600329,0.268257577062,0.2744148369,0.208748171036,0.336393287759,0.19194060367,0.170375918049,0.0144125466502,0.0240144866209,0.02944645799,0.0313381863625,0.0278278039862,0.0239621534636,0.0202053097614,0.0248110261358,0.0285105003133,0.0261939524762,0.0205163461547,0.0177166564061,0.0300696571557,0.0269533644655,0.0229198851123,0.0196576134443,0.0190134814152,0.0212616275651,0.0262913260979,0.0344396343269,0.034496896504,0.0295949908249,0.0320129040717,0.0373821051527,0.0452453664689,0.0481135426095,0.0355972495768,0.0370317835782,0.0343264001846,0.0328933401625,0.0305095276699,0.0228294454812,0.0136042981234,0.0542443736176,0.0295397608255,0.0250663293893,0.021254265409,0.0188838361044,0.0167879562789,0.0171200295623,0.0194172760177,0.0202583393891,0.0209480113163,0.0181204945192,0.0158907211585,0.0143150036969,0.0135222877969,0.0136232560177,0.0136590084288,0.0143334583207,0.014308054188,0.0122246380306);
t60=(4.81630922527,5.35144598969,0.175853205952,0.175853205952,0.283386050727,3.21089893209,2.67576216776,2.67576216776,0.175853205952,1.04708505971,1.07035187551,1.04708505971,1.09467627385,1.85247483815,2.09409177181,4.81630922527,1.50515049608,2.83315533373,1.72016080306,1.41661684028,4.01360407866,4.01360407866,0.301092781479,2.00684121243,2.09409177181,0.688111330526,0.47225784706,0.391641836089,0.467673580131,0.47225784706,0.418881034789,0.467673580131,1.72016080306,1.72016080306,0.302985953952,3.01022264546,0.301092781479,0.299223126677,0.244557077922,0.875756688857,2.29352162184,2.29352162184,2.18927420023,0.875756688857,0.776889779591,0.875756688857,2.83315533373,2.18927420023,0.776889779591,0.247064551938,3.01022264546,2.18927420023,1.7838675607,0.379309128033,0.379309128033,0.496596996232,0.535215112958,0.60972782653,0.60972782653,0.566693745949,0.602107208091,0.860119575652,1.23500934124,2.18927420023,0.642242465214,0.845031133088,0.60972782653,0.60972782653,0.573439167308,0.52358170512,0.140493253708,2.67576216776,1.02480832117,0.891972954404,0.718918777394,0.467673580131,0.437917520269,0.437917520269,0.467673580131,0.47225784706,1.45954224916,0.446025652979,0.346569780804,0.140493253708,0.140493253708,0.140493253708,0.140493253708,0.329957178282,0.140493253708,0.13847579854);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetAmpegManateeBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetAmpegManateeBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetAmpegManateeBass%7E.mxo/cabinetAmpegManateeBass.dsp
|
faust
|
declare name "cabinetAmpegManateeBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 90;
modeFrequencies=(153.277060576,569.314796425,744.48857994,875.868917577,1007.24925521,1160.52631579,1423.28699106,1510.87388282,1817.42800397,2102.08540218,2211.56901688,2474.32969215,2583.81330685,2715.19364449,2846.57398213,3196.92154916,3350.19860973,3481.57894737,3591.06256207,3722.4428997,3853.82323734,3985.20357498,4094.68718967,4226.06752731,4357.44786495,4488.82820258,4598.31181728,4729.69215492,4861.07249255,4992.45283019,5123.83316783,5255.21350546,5386.5938431,5496.0774578,5627.45779543,5977.80536246,6218.6693148,6393.84309831,6985.05461768,7116.43495531,7247.81529295,7357.29890765,7466.78252234,7598.16285998,7729.54319762,7860.92353525,7970.40714995,8079.89076465,8211.27110228,8320.75471698,8583.51539225,8714.89572989,8824.37934459,8955.75968222,9087.14001986,9196.62363456,9328.00397219,9459.38430983,9568.86792453,9678.35153923,9831.6285998,9963.00893744,10094.3892751,10203.8728898,10466.633565,10598.0139027,10707.4975174,10816.9811321,10948.3614697,11079.7418073,11211.122145,11846.1271102,12218.3714002,12349.7517378,12481.1320755,12612.5124131,12721.9960278,12853.3763654,13006.653426,13116.1370407,13247.5173784,13357.000993,13488.3813307,13619.7616683,13751.142006,13860.6256207,13992.0059583,14123.3862959,14254.7666336,14386.1469712);
massEigenValues=(1.0,0.36615984745,0.22744022957,0.188193971069,0.233945855568,0.298263832859,0.270413027029,0.269736027507,0.16889224272,0.285488338352,0.310266379364,0.282672629981,0.316300774299,0.329920510747,0.37277587059,0.342210764576,0.300978806334,0.358814177357,0.325382515504,0.24078807851,0.225567421217,0.227186489751,0.204157898051,0.279251999862,0.293670790931,0.258314792512,0.254582779596,0.217196527908,0.234460779487,0.254693595283,0.225015533134,0.227862600329,0.268257577062,0.2744148369,0.208748171036,0.336393287759,0.19194060367,0.170375918049,0.0144125466502,0.0240144866209,0.02944645799,0.0313381863625,0.0278278039862,0.0239621534636,0.0202053097614,0.0248110261358,0.0285105003133,0.0261939524762,0.0205163461547,0.0177166564061,0.0300696571557,0.0269533644655,0.0229198851123,0.0196576134443,0.0190134814152,0.0212616275651,0.0262913260979,0.0344396343269,0.034496896504,0.0295949908249,0.0320129040717,0.0373821051527,0.0452453664689,0.0481135426095,0.0355972495768,0.0370317835782,0.0343264001846,0.0328933401625,0.0305095276699,0.0228294454812,0.0136042981234,0.0542443736176,0.0295397608255,0.0250663293893,0.021254265409,0.0188838361044,0.0167879562789,0.0171200295623,0.0194172760177,0.0202583393891,0.0209480113163,0.0181204945192,0.0158907211585,0.0143150036969,0.0135222877969,0.0136232560177,0.0136590084288,0.0143334583207,0.014308054188,0.0122246380306);
t60=(4.81630922527,5.35144598969,0.175853205952,0.175853205952,0.283386050727,3.21089893209,2.67576216776,2.67576216776,0.175853205952,1.04708505971,1.07035187551,1.04708505971,1.09467627385,1.85247483815,2.09409177181,4.81630922527,1.50515049608,2.83315533373,1.72016080306,1.41661684028,4.01360407866,4.01360407866,0.301092781479,2.00684121243,2.09409177181,0.688111330526,0.47225784706,0.391641836089,0.467673580131,0.47225784706,0.418881034789,0.467673580131,1.72016080306,1.72016080306,0.302985953952,3.01022264546,0.301092781479,0.299223126677,0.244557077922,0.875756688857,2.29352162184,2.29352162184,2.18927420023,0.875756688857,0.776889779591,0.875756688857,2.83315533373,2.18927420023,0.776889779591,0.247064551938,3.01022264546,2.18927420023,1.7838675607,0.379309128033,0.379309128033,0.496596996232,0.535215112958,0.60972782653,0.60972782653,0.566693745949,0.602107208091,0.860119575652,1.23500934124,2.18927420023,0.642242465214,0.845031133088,0.60972782653,0.60972782653,0.573439167308,0.52358170512,0.140493253708,2.67576216776,1.02480832117,0.891972954404,0.718918777394,0.467673580131,0.437917520269,0.437917520269,0.467673580131,0.47225784706,1.45954224916,0.446025652979,0.346569780804,0.140493253708,0.140493253708,0.140493253708,0.140493253708,0.329957178282,0.140493253708,0.13847579854);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetAmpegManateeBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetAmpegManateeBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
3ce37b7e46d6e20a93ec0b38beb86a8c91da1e3df6020d9a724906aa7a41d476
|
sebastien-clara/panoplie
|
cabinetGenzieTreble.dsp
|
declare name "cabinetGenzieTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 92;
modeFrequencies=(118.151373074,383.991962492,649.832551909,708.908238446,797.521768252,915.673141326,1092.90020094,1683.65706631,1919.95981246,2156.26255861,2274.41393168,2599.33020764,2658.40589417,2983.32217013,3042.39785666,3101.4735432,3160.54922974,3219.62491628,3278.70060281,3367.31413262,3426.38981916,3485.46550569,3544.54119223,3603.61687877,3751.30609511,3810.38178165,3869.45746818,3987.60884126,4046.6845278,4194.37374414,4253.44943068,4312.52511721,4460.21433356,4637.44139317,4755.59276624,4814.66845278,4873.74413932,4932.81982585,4991.89551239,5198.66041527,5257.73610181,5316.81178835,5434.96316142,5494.03884796,5582.65237776,5641.7280643,6232.48492967,6291.56061621,6793.70395177,6852.77963831,6911.85532485,7236.7716008,7295.84728734,7413.99866042,7650.30140656,7797.99062291,7916.14199598,8152.44474213,8211.52042867,8300.13395847,8359.20964501,8418.28533155,9009.04219692,9215.8070998,9274.88278634,9333.95847287,9422.57200268,9629.33690556,9717.95043537,10042.8667113,10101.9423979,11460.6831882,11519.7588747,11578.8345613,11637.9102478,11696.9859344,11844.6751507,11903.7508372,13262.4916276,13469.2565305,13676.0214334,13735.0971199,14325.8539853,14739.383791,15861.8218352,15979.9732083,16600.2679169,16659.3436035,16895.6463496,17013.7977227,17250.1004689,17427.3275285);
massEigenValues=(1.0,0.277520685859,0.433871018595,0.340886005537,0.283339089512,0.299127632897,0.412003026561,0.273169930538,0.266166570944,0.402214776489,0.480367274793,0.27154894366,0.288904020747,0.434185478449,0.559430702845,0.656903920447,0.609609384784,0.510814508896,0.383545953119,0.343336104533,0.477565517251,0.486655756982,0.450395632555,0.338674692005,0.253097785253,0.25056942089,0.205314349249,0.328962995601,0.307112504041,0.203249575754,0.148317315192,0.157142960746,0.259023285478,0.239111211144,0.268553505694,0.296607963457,0.285858266554,0.285649410318,0.259374642931,0.21612250893,0.258566884455,0.272904841775,0.337471380063,0.355227808918,0.344703549687,0.326788540873,0.111189074765,0.113824757961,0.060735473016,0.0554881134341,0.0523380904729,0.0755599278041,0.0777717540179,0.0747016344638,0.0651097041026,0.0583814050543,0.0574358109277,0.0490362246746,0.0492702120772,0.0510785517752,0.0517060946303,0.052657274094,0.0570090234636,0.065668608091,0.0637281917154,0.0616522309505,0.0582305194856,0.0499752933195,0.0503436196988,0.0926458100817,0.0919602863879,0.0157439198267,0.015659260874,0.0156777132513,0.0152507459126,0.0153598252577,0.0166510574285,0.0178751273142,0.0808245189888,0.0686361442118,0.0755236412729,0.0755278092662,0.0420598669133,0.0456083296858,0.0181316706424,0.018186530414,0.0142285471913,0.0143395178287,0.0144678355898,0.0151636528995,0.0132545013554,0.0120949612194);
t60=(21.6564502866,4.06064808423,21.6564502866,4.99770263931,2.59884297846,4.33135273348,12.9939015098,10.8282643157,2.95321997377,5.41417133047,6.49698992748,9.28138060562,9.28138060562,4.64072947547,6.49698992748,10.8282643157,8.12121782305,5.41417133047,2.4063418946,2.4063418946,10.8282643157,10.8282643157,8.12121782305,2.32040391073,1.80477600761,1.80477600761,1.38239995945,8.12121782305,7.21886899218,1.38239995945,1.29946066275,1.06514581913,1.2259107204,1.20321012091,1.2259107204,4.33135273348,3.41950549395,3.41950549395,1.2259107204,1.18133499777,1.2259107204,1.24948441987,3.24853413655,3.8217910408,3.60947366885,3.24853413655,0.507649566085,0.511646189812,0.224109787683,0.177105919784,0.176146420858,2.03036321521,2.09585627548,1.91093469354,0.273057830422,0.22257532587,0.177105919784,0.175197266934,0.175197266934,0.175670561255,0.175670561255,0.176146420858,0.177105919784,0.984458889552,0.941659735611,0.941659735611,0.902427177841,0.175670561255,0.175670561255,3.41950549395,3.41950549395,0.0548584122264,0.0548584122264,0.0548584122264,0.0548584122264,0.0548584122264,0.058609114604,0.117563200829,1.58469092706,1.32597866917,1.47664916026,1.47664916026,0.698670990879,0.730068412923,0.117563200829,0.117563200829,0.0547661900163,0.0547661900163,0.0547661900163,0.0548584122264,0.0546742777971,0.0545826740083);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetGenzieTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetGenzieTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetGenzieTreble%7E.mxo/cabinetGenzieTreble.dsp
|
faust
|
declare name "cabinetGenzieTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 92;
modeFrequencies=(118.151373074,383.991962492,649.832551909,708.908238446,797.521768252,915.673141326,1092.90020094,1683.65706631,1919.95981246,2156.26255861,2274.41393168,2599.33020764,2658.40589417,2983.32217013,3042.39785666,3101.4735432,3160.54922974,3219.62491628,3278.70060281,3367.31413262,3426.38981916,3485.46550569,3544.54119223,3603.61687877,3751.30609511,3810.38178165,3869.45746818,3987.60884126,4046.6845278,4194.37374414,4253.44943068,4312.52511721,4460.21433356,4637.44139317,4755.59276624,4814.66845278,4873.74413932,4932.81982585,4991.89551239,5198.66041527,5257.73610181,5316.81178835,5434.96316142,5494.03884796,5582.65237776,5641.7280643,6232.48492967,6291.56061621,6793.70395177,6852.77963831,6911.85532485,7236.7716008,7295.84728734,7413.99866042,7650.30140656,7797.99062291,7916.14199598,8152.44474213,8211.52042867,8300.13395847,8359.20964501,8418.28533155,9009.04219692,9215.8070998,9274.88278634,9333.95847287,9422.57200268,9629.33690556,9717.95043537,10042.8667113,10101.9423979,11460.6831882,11519.7588747,11578.8345613,11637.9102478,11696.9859344,11844.6751507,11903.7508372,13262.4916276,13469.2565305,13676.0214334,13735.0971199,14325.8539853,14739.383791,15861.8218352,15979.9732083,16600.2679169,16659.3436035,16895.6463496,17013.7977227,17250.1004689,17427.3275285);
massEigenValues=(1.0,0.277520685859,0.433871018595,0.340886005537,0.283339089512,0.299127632897,0.412003026561,0.273169930538,0.266166570944,0.402214776489,0.480367274793,0.27154894366,0.288904020747,0.434185478449,0.559430702845,0.656903920447,0.609609384784,0.510814508896,0.383545953119,0.343336104533,0.477565517251,0.486655756982,0.450395632555,0.338674692005,0.253097785253,0.25056942089,0.205314349249,0.328962995601,0.307112504041,0.203249575754,0.148317315192,0.157142960746,0.259023285478,0.239111211144,0.268553505694,0.296607963457,0.285858266554,0.285649410318,0.259374642931,0.21612250893,0.258566884455,0.272904841775,0.337471380063,0.355227808918,0.344703549687,0.326788540873,0.111189074765,0.113824757961,0.060735473016,0.0554881134341,0.0523380904729,0.0755599278041,0.0777717540179,0.0747016344638,0.0651097041026,0.0583814050543,0.0574358109277,0.0490362246746,0.0492702120772,0.0510785517752,0.0517060946303,0.052657274094,0.0570090234636,0.065668608091,0.0637281917154,0.0616522309505,0.0582305194856,0.0499752933195,0.0503436196988,0.0926458100817,0.0919602863879,0.0157439198267,0.015659260874,0.0156777132513,0.0152507459126,0.0153598252577,0.0166510574285,0.0178751273142,0.0808245189888,0.0686361442118,0.0755236412729,0.0755278092662,0.0420598669133,0.0456083296858,0.0181316706424,0.018186530414,0.0142285471913,0.0143395178287,0.0144678355898,0.0151636528995,0.0132545013554,0.0120949612194);
t60=(21.6564502866,4.06064808423,21.6564502866,4.99770263931,2.59884297846,4.33135273348,12.9939015098,10.8282643157,2.95321997377,5.41417133047,6.49698992748,9.28138060562,9.28138060562,4.64072947547,6.49698992748,10.8282643157,8.12121782305,5.41417133047,2.4063418946,2.4063418946,10.8282643157,10.8282643157,8.12121782305,2.32040391073,1.80477600761,1.80477600761,1.38239995945,8.12121782305,7.21886899218,1.38239995945,1.29946066275,1.06514581913,1.2259107204,1.20321012091,1.2259107204,4.33135273348,3.41950549395,3.41950549395,1.2259107204,1.18133499777,1.2259107204,1.24948441987,3.24853413655,3.8217910408,3.60947366885,3.24853413655,0.507649566085,0.511646189812,0.224109787683,0.177105919784,0.176146420858,2.03036321521,2.09585627548,1.91093469354,0.273057830422,0.22257532587,0.177105919784,0.175197266934,0.175197266934,0.175670561255,0.175670561255,0.176146420858,0.177105919784,0.984458889552,0.941659735611,0.941659735611,0.902427177841,0.175670561255,0.175670561255,3.41950549395,3.41950549395,0.0548584122264,0.0548584122264,0.0548584122264,0.0548584122264,0.0548584122264,0.058609114604,0.117563200829,1.58469092706,1.32597866917,1.47664916026,1.47664916026,0.698670990879,0.730068412923,0.117563200829,0.117563200829,0.0547661900163,0.0547661900163,0.0547661900163,0.0548584122264,0.0546742777971,0.0545826740083);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetGenzieTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetGenzieTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
2882843cbb9c51a85166844efc614dc8e995a81aaedfb4736453971cda852068
|
sebastien-clara/panoplie
|
distoTubeScreamer.dsp
|
declare name "Tube Screamer";
declare category "Distortion";
declare description "Based on a circuit diagram of the Ibanez TS-9 and a mathematical analysis published by Tamás Kenéz";
import("stdfaust.lib");
smoothi(c) = *(1-c) : +~*(c);
process = ts9nonlin : lowpassfilter : *(gain) with {
R1 = 4700;
R2 = 51000 + 500000 * vslider("drive[name:Drive][style:knob]", 0.5, 0, 1, 0.01);
C = 0.047 * 1e-6;
a1 = (R1 + R2) * C * 2 * ma.SR;
a2 = R1 * C * 2 * ma.SR;
B0 = (1 + a1) / (1 + a2);
B1 = (1 - a1) / (1 + a2);
A1 = (1 - a2) / (1 + a2);
X2 = fi.tf1(B0, B1, A1);
ts9nonlin = _ <: _ ,(X2,_ : - : ts9comp) : - :> _;
fc = vslider("tone[log][name:Tone][style:knob]", 400, 100, 1000, 1.03);
lowpassfilter = fi.lowpass(1,fc);
gain = vslider("level[name:Level][style:knob]", -16, -20, 4, 0.1) : ba.db2linear : smoothi(0.999);
};
/****************************************************************************************/
//-- Rdtable from waveform
rtable(table, r) = (table, int(r)):rdtable;
// Change sign of input signal x;
inverse(x) = abs(x) * invsign(x);
//function that takes f value and x sign
ccopysign(f, x) = abs(f)*sign(x);
//-- Get sign and reversed sign of a signal x
sign (x) = x<0, 1, -1 : select2;
invsign (x) = x<0, -1, 1 : select2;
//-- Interpolate value between i and i+1 in table with coefficient f.
interpolation (table, f, i) = rtable(table, i)*(1-f) + rtable(table,i+1)*f;
//-- Bound Index with table boundaries
boundIndex(size, index) = index : floor: min(size-1) : max(0);
//-- Bound factor of interpolation : factor-index if still in the table boundaries, 0 otherwise
boundFactor(size, factor, index) = 0<index<size-1, factor - index, 0 : select2;
/****************************************************************************************
* 1-dimensional function tables for nonlinear interpolation
****************************************************************************************/
nonlininterpolation(table, low, high, step, size, x) = ts9(low, step, size, table, x) , inverse(x) : ccopysign;
//-- Interpolate value from table
ts9 (low, step, size, table, x) = interpolation(
table,
getCoef(low, step, size, x),
nonlinindex(low, step, x) : boundIndex(size)
);
//-- Calculate non linear index
nonlinindex(low, step, x) = (abs(x)/(3.0 + abs(x)) - low) * step;
//--Get interpolation factor
getCoef(low, step, size, x) = boundFactor(size, nonlinindex(low, step, x), nonlinindex(low, step, x) : boundIndex(size));
/********* Faust Version of ts9nonlin.cc, generated by tools/ts9sim.py ****************/
ts9comp = nonlininterpolation(ts9table, low, high, step, size) with{
// Characteristics of the wavetable
low = 0.0;
high = 0.970874;
step = 101.97;
size = 100;
ts9table = waveform{0.0,-0.0296990148227,-0.0599780676992,-0.0908231643281,-0.122163239629,
-0.15376009788,-0.184938007182,-0.214177260107,-0.239335434213,-0.259232575019,
-0.274433909887,-0.286183308354,-0.29553854444,-0.303222323477,-0.309706249977,
-0.315301338712,-0.320218440785,-0.324604982281,-0.328567120703,-0.332183356975,
-0.335513124719,-0.33860236542,-0.34148724693,-0.344196707008,-0.346754233717,
-0.34917913798,-0.351487480543,-0.35369275887,-0.355806424152,-0.357838275995,
-0.359796767655,-0.361689244919,-0.363522135105,-0.365301098113,-0.367031148289,
-0.368716753588,-0.370361916943,-0.371970243537,-0.373544996828,-0.375089145544,
-0.376605403346,-0.378096262548,-0.379564022938,-0.381010816596,-0.382438629377,
-0.383849319643,-0.385244634694,-0.386626225283,-0.387995658543,-0.389354429565,
-0.39070397188,-0.392045667012,-0.393380853288,-0.39471083403,-0.396036885269,
-0.397360263098,-0.398682210753,-0.400003965547,-0.401326765733,-0.402651857394,
-0.403980501471,-0.405313980999,-0.406653608692,-0.40800073496,-0.409356756504,
-0.410723125631,-0.412101360439,-0.413493056085,-0.414899897347,-0.416323672745,
-0.417766290556,-0.419229797097,-0.420716397759,-0.422228481377,-0.423768648654,
-0.425339745558,-0.426944902828,-0.428587583057,-0.430271637224,-0.432001373102,
-0.433781638746,-0.435617925286,-0.437516494692,-0.439484540257,-0.441530390423,
-0.443663770898,-0.445896146322,-0.448241172434,-0.450715304661,-0.453338632988,
-0.45613605235,-0.45913894467,-0.46238766699,-0.465935359011,-0.469854010456,
-0.474244617411,-0.479255257451,-0.48511588606,-0.492212726244,-0.501272723631
};
};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/distoTubeScreamer%7E.mxo/distoTubeScreamer.dsp
|
faust
|
**************************************************************************************
-- Rdtable from waveform
Change sign of input signal x;
function that takes f value and x sign
-- Get sign and reversed sign of a signal x
-- Interpolate value between i and i+1 in table with coefficient f.
-- Bound Index with table boundaries
-- Bound factor of interpolation : factor-index if still in the table boundaries, 0 otherwise
***************************************************************************************
* 1-dimensional function tables for nonlinear interpolation
***************************************************************************************
-- Interpolate value from table
-- Calculate non linear index
--Get interpolation factor
******** Faust Version of ts9nonlin.cc, generated by tools/ts9sim.py ***************
Characteristics of the wavetable
|
declare name "Tube Screamer";
declare category "Distortion";
declare description "Based on a circuit diagram of the Ibanez TS-9 and a mathematical analysis published by Tamás Kenéz";
import("stdfaust.lib");
smoothi(c) = *(1-c) : +~*(c);
process = ts9nonlin : lowpassfilter : *(gain) with {
R1 = 4700;
R2 = 51000 + 500000 * vslider("drive[name:Drive][style:knob]", 0.5, 0, 1, 0.01);
C = 0.047 * 1e-6;
a1 = (R1 + R2) * C * 2 * ma.SR;
a2 = R1 * C * 2 * ma.SR;
B0 = (1 + a1) / (1 + a2);
B1 = (1 - a1) / (1 + a2);
A1 = (1 - a2) / (1 + a2);
X2 = fi.tf1(B0, B1, A1);
ts9nonlin = _ <: _ ,(X2,_ : - : ts9comp) : - :> _;
fc = vslider("tone[log][name:Tone][style:knob]", 400, 100, 1000, 1.03);
lowpassfilter = fi.lowpass(1,fc);
gain = vslider("level[name:Level][style:knob]", -16, -20, 4, 0.1) : ba.db2linear : smoothi(0.999);
};
rtable(table, r) = (table, int(r)):rdtable;
inverse(x) = abs(x) * invsign(x);
ccopysign(f, x) = abs(f)*sign(x);
sign (x) = x<0, 1, -1 : select2;
invsign (x) = x<0, -1, 1 : select2;
interpolation (table, f, i) = rtable(table, i)*(1-f) + rtable(table,i+1)*f;
boundIndex(size, index) = index : floor: min(size-1) : max(0);
boundFactor(size, factor, index) = 0<index<size-1, factor - index, 0 : select2;
nonlininterpolation(table, low, high, step, size, x) = ts9(low, step, size, table, x) , inverse(x) : ccopysign;
ts9 (low, step, size, table, x) = interpolation(
table,
getCoef(low, step, size, x),
nonlinindex(low, step, x) : boundIndex(size)
);
nonlinindex(low, step, x) = (abs(x)/(3.0 + abs(x)) - low) * step;
getCoef(low, step, size, x) = boundFactor(size, nonlinindex(low, step, x), nonlinindex(low, step, x) : boundIndex(size));
ts9comp = nonlininterpolation(ts9table, low, high, step, size) with{
low = 0.0;
high = 0.970874;
step = 101.97;
size = 100;
ts9table = waveform{0.0,-0.0296990148227,-0.0599780676992,-0.0908231643281,-0.122163239629,
-0.15376009788,-0.184938007182,-0.214177260107,-0.239335434213,-0.259232575019,
-0.274433909887,-0.286183308354,-0.29553854444,-0.303222323477,-0.309706249977,
-0.315301338712,-0.320218440785,-0.324604982281,-0.328567120703,-0.332183356975,
-0.335513124719,-0.33860236542,-0.34148724693,-0.344196707008,-0.346754233717,
-0.34917913798,-0.351487480543,-0.35369275887,-0.355806424152,-0.357838275995,
-0.359796767655,-0.361689244919,-0.363522135105,-0.365301098113,-0.367031148289,
-0.368716753588,-0.370361916943,-0.371970243537,-0.373544996828,-0.375089145544,
-0.376605403346,-0.378096262548,-0.379564022938,-0.381010816596,-0.382438629377,
-0.383849319643,-0.385244634694,-0.386626225283,-0.387995658543,-0.389354429565,
-0.39070397188,-0.392045667012,-0.393380853288,-0.39471083403,-0.396036885269,
-0.397360263098,-0.398682210753,-0.400003965547,-0.401326765733,-0.402651857394,
-0.403980501471,-0.405313980999,-0.406653608692,-0.40800073496,-0.409356756504,
-0.410723125631,-0.412101360439,-0.413493056085,-0.414899897347,-0.416323672745,
-0.417766290556,-0.419229797097,-0.420716397759,-0.422228481377,-0.423768648654,
-0.425339745558,-0.426944902828,-0.428587583057,-0.430271637224,-0.432001373102,
-0.433781638746,-0.435617925286,-0.437516494692,-0.439484540257,-0.441530390423,
-0.443663770898,-0.445896146322,-0.448241172434,-0.450715304661,-0.453338632988,
-0.45613605235,-0.45913894467,-0.46238766699,-0.465935359011,-0.469854010456,
-0.474244617411,-0.479255257451,-0.48511588606,-0.492212726244,-0.501272723631
};
};
|
cf4a28fcc370b78ebfcc20336ebf4722c7c4f9513307d6c6f84151c3345185f6
|
sebastien-clara/panoplie
|
cabinetMarshallSterlingBass.dsp
|
declare name "cabinetMarshallSterlingBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 109;
modeFrequencies=(131.838565022,417.488789238,637.219730942,681.165919283,725.112107623,834.977578475,1032.73542601,1120.62780269,1186.5470852,1230.49327354,1406.27802691,1516.14349776,1604.03587444,1691.92825112,1845.73991031,1955.60538117,2021.52466368,2109.41704036,2219.28251121,2307.17488789,2460.98654709,2548.87892377,2592.82511211,2702.69058296,2812.55605381,2988.34080717,3076.23318386,3142.15246637,3339.9103139,3383.85650224,3449.77578475,3581.61434978,3625.56053812,3669.50672646,3757.39910314,3845.29147982,3889.23766816,3955.15695067,3999.10313901,4108.96860987,4218.83408072,4328.69955157,4416.59192825,4504.48430493,4548.43049327,4636.32286996,4812.10762332,4900.0,5031.83856502,5185.65022422,5339.46188341,5537.21973094,5603.13901345,5669.05829596,5734.97757848,5866.8161435,5954.70852018,6042.60089686,6130.49327354,6174.43946188,6218.38565022,6262.33183857,6306.27802691,6394.17040359,6482.06278027,6547.98206278,6723.76681614,6811.65919283,6855.60538117,6965.47085202,7053.3632287,7141.25560538,7185.20179372,7229.14798206,7273.0941704,7382.95964126,7514.79820628,7602.69058296,7646.6367713,7778.47533632,7998.20627803,8064.12556054,8217.93721973,8305.82959641,8371.74887892,8547.53363229,8657.39910314,8701.34529148,8745.29147982,8789.23766816,8877.13004484,8921.07623318,9030.94170404,9096.86098655,9162.78026906,9228.69955157,9360.53811659,9426.4573991,10964.573991,11096.4125561,11184.3049327,11250.2242152,11338.1165919,11426.0089686,11469.955157,11513.9013453,11645.7399103,11799.5515695,11887.4439462);
massEigenValues=(1.0,0.226813437687,0.379482546432,0.356379343802,0.324869930141,0.231489469059,0.198885642377,0.154593353735,0.168669519442,0.176646004834,0.155074732044,0.118152989725,0.1424125851,0.162443369801,0.177585893457,0.175162671468,0.112866852774,0.227300172666,0.285262189763,0.381698227462,0.416597238873,0.465550658349,0.46515600702,0.396396342627,0.352809396004,0.333389978345,0.392812348766,0.371319244162,0.409175924236,0.417315948659,0.414163682535,0.33270024953,0.346150409966,0.304768089966,0.267954380472,0.324434004907,0.334639489167,0.319551617025,0.30000906121,0.287477939713,0.35290027498,0.359589509523,0.281987494308,0.228453486837,0.240051527989,0.207775535961,0.114607793745,0.112366358115,0.172109803198,0.249001223211,0.314835650235,0.176532728274,0.193965252025,0.196006199318,0.182124389079,0.155148764659,0.113591620681,0.0580262251343,0.0413999533599,0.0530047247431,0.0545897843166,0.0776453644616,0.0820598668285,0.0933575555374,0.106050868001,0.0918437449915,0.0694800635784,0.0549624108263,0.0566001436712,0.0496382471281,0.0396924421202,0.0374029534587,0.0356907092923,0.0347907055498,0.0307435797961,0.0271747545298,0.0312639265819,0.0292487427,0.0305933338626,0.0244674016707,0.0263185974454,0.0271496022126,0.023867038789,0.0216875069977,0.0204161044061,0.0254564655078,0.0201496505461,0.0202956340624,0.0192098056674,0.0187959215262,0.0191712190347,0.0184916625608,0.0156023288717,0.0142246727435,0.0144037207965,0.012763763779,0.0118829019207,0.0122878295605,0.0118440848897,0.0131614652869,0.0137466524532,0.014613008671,0.0139362669363,0.0126161820423,0.0121476432447,0.0119979193547,0.0119279476973,0.0144859134548,0.0154691568476);
t60=(24.1652228208,2.30152067661,6.04136446401,5.37011045083,5.37011045083,3.45224184184,12.0826505829,2.68509439832,9.66613613531,8.0551265036,9.66613613531,0.221776927074,0.322280277368,4.02760242451,5.37011045083,5.37011045083,0.221776927074,0.39950222543,0.420341731731,1.6666400339,1.79008904774,2.41659279312,2.41659279312,1.79008904774,0.710817890962,0.562058452405,1.34258637264,1.23931652458,1.38094374478,1.42155743293,1.38094374478,0.562058452405,0.58947211585,0.431598786484,0.416718771582,0.456024471347,0.562058452405,0.447581024725,0.431598786484,0.420341731731,2.68509439832,2.68509439832,0.420341731731,0.39950222543,0.402830757684,0.396228259278,0.221776927074,0.947731071379,1.15079951197,2.543777764,4.39374097713,1.15079951197,1.15079951197,1.15079951197,1.15079951197,1.12403855468,0.947731071379,0.176466272154,0.146533779708,1.09849400453,1.09849400453,1.93328990381,1.93328990381,3.45224184184,3.71779287999,3.45224184184,1.42155743293,1.09849400453,1.15079951197,1.07408476773,0.146091316242,0.14565151822,0.138560562746,0.138164899351,0.135837598371,0.123685238338,0.136220018719,0.128275413554,0.135837598371,0.118826000603,0.123685238338,0.123685238338,0.118826000603,0.0593066744992,0.0585896253428,0.123685238338,0.0585896253428,0.0585896253428,0.0585896253428,0.0585896253428,0.0585896253428,0.0585896253428,0.0573417559357,0.0561460017561,0.0561460017561,0.056016215682,0.056016215682,0.056016215682,0.743621254377,0.792378166139,0.84797815326,0.84797815326,0.84797815326,0.767225791021,0.743621254377,0.743621254377,0.743621254377,0.84797815326,1.85893561316);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallSterlingBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallSterlingBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallSterlingBass%7E.mxo/cabinetMarshallSterlingBass.dsp
|
faust
|
declare name "cabinetMarshallSterlingBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 109;
modeFrequencies=(131.838565022,417.488789238,637.219730942,681.165919283,725.112107623,834.977578475,1032.73542601,1120.62780269,1186.5470852,1230.49327354,1406.27802691,1516.14349776,1604.03587444,1691.92825112,1845.73991031,1955.60538117,2021.52466368,2109.41704036,2219.28251121,2307.17488789,2460.98654709,2548.87892377,2592.82511211,2702.69058296,2812.55605381,2988.34080717,3076.23318386,3142.15246637,3339.9103139,3383.85650224,3449.77578475,3581.61434978,3625.56053812,3669.50672646,3757.39910314,3845.29147982,3889.23766816,3955.15695067,3999.10313901,4108.96860987,4218.83408072,4328.69955157,4416.59192825,4504.48430493,4548.43049327,4636.32286996,4812.10762332,4900.0,5031.83856502,5185.65022422,5339.46188341,5537.21973094,5603.13901345,5669.05829596,5734.97757848,5866.8161435,5954.70852018,6042.60089686,6130.49327354,6174.43946188,6218.38565022,6262.33183857,6306.27802691,6394.17040359,6482.06278027,6547.98206278,6723.76681614,6811.65919283,6855.60538117,6965.47085202,7053.3632287,7141.25560538,7185.20179372,7229.14798206,7273.0941704,7382.95964126,7514.79820628,7602.69058296,7646.6367713,7778.47533632,7998.20627803,8064.12556054,8217.93721973,8305.82959641,8371.74887892,8547.53363229,8657.39910314,8701.34529148,8745.29147982,8789.23766816,8877.13004484,8921.07623318,9030.94170404,9096.86098655,9162.78026906,9228.69955157,9360.53811659,9426.4573991,10964.573991,11096.4125561,11184.3049327,11250.2242152,11338.1165919,11426.0089686,11469.955157,11513.9013453,11645.7399103,11799.5515695,11887.4439462);
massEigenValues=(1.0,0.226813437687,0.379482546432,0.356379343802,0.324869930141,0.231489469059,0.198885642377,0.154593353735,0.168669519442,0.176646004834,0.155074732044,0.118152989725,0.1424125851,0.162443369801,0.177585893457,0.175162671468,0.112866852774,0.227300172666,0.285262189763,0.381698227462,0.416597238873,0.465550658349,0.46515600702,0.396396342627,0.352809396004,0.333389978345,0.392812348766,0.371319244162,0.409175924236,0.417315948659,0.414163682535,0.33270024953,0.346150409966,0.304768089966,0.267954380472,0.324434004907,0.334639489167,0.319551617025,0.30000906121,0.287477939713,0.35290027498,0.359589509523,0.281987494308,0.228453486837,0.240051527989,0.207775535961,0.114607793745,0.112366358115,0.172109803198,0.249001223211,0.314835650235,0.176532728274,0.193965252025,0.196006199318,0.182124389079,0.155148764659,0.113591620681,0.0580262251343,0.0413999533599,0.0530047247431,0.0545897843166,0.0776453644616,0.0820598668285,0.0933575555374,0.106050868001,0.0918437449915,0.0694800635784,0.0549624108263,0.0566001436712,0.0496382471281,0.0396924421202,0.0374029534587,0.0356907092923,0.0347907055498,0.0307435797961,0.0271747545298,0.0312639265819,0.0292487427,0.0305933338626,0.0244674016707,0.0263185974454,0.0271496022126,0.023867038789,0.0216875069977,0.0204161044061,0.0254564655078,0.0201496505461,0.0202956340624,0.0192098056674,0.0187959215262,0.0191712190347,0.0184916625608,0.0156023288717,0.0142246727435,0.0144037207965,0.012763763779,0.0118829019207,0.0122878295605,0.0118440848897,0.0131614652869,0.0137466524532,0.014613008671,0.0139362669363,0.0126161820423,0.0121476432447,0.0119979193547,0.0119279476973,0.0144859134548,0.0154691568476);
t60=(24.1652228208,2.30152067661,6.04136446401,5.37011045083,5.37011045083,3.45224184184,12.0826505829,2.68509439832,9.66613613531,8.0551265036,9.66613613531,0.221776927074,0.322280277368,4.02760242451,5.37011045083,5.37011045083,0.221776927074,0.39950222543,0.420341731731,1.6666400339,1.79008904774,2.41659279312,2.41659279312,1.79008904774,0.710817890962,0.562058452405,1.34258637264,1.23931652458,1.38094374478,1.42155743293,1.38094374478,0.562058452405,0.58947211585,0.431598786484,0.416718771582,0.456024471347,0.562058452405,0.447581024725,0.431598786484,0.420341731731,2.68509439832,2.68509439832,0.420341731731,0.39950222543,0.402830757684,0.396228259278,0.221776927074,0.947731071379,1.15079951197,2.543777764,4.39374097713,1.15079951197,1.15079951197,1.15079951197,1.15079951197,1.12403855468,0.947731071379,0.176466272154,0.146533779708,1.09849400453,1.09849400453,1.93328990381,1.93328990381,3.45224184184,3.71779287999,3.45224184184,1.42155743293,1.09849400453,1.15079951197,1.07408476773,0.146091316242,0.14565151822,0.138560562746,0.138164899351,0.135837598371,0.123685238338,0.136220018719,0.128275413554,0.135837598371,0.118826000603,0.123685238338,0.123685238338,0.118826000603,0.0593066744992,0.0585896253428,0.123685238338,0.0585896253428,0.0585896253428,0.0585896253428,0.0585896253428,0.0585896253428,0.0585896253428,0.0573417559357,0.0561460017561,0.0561460017561,0.056016215682,0.056016215682,0.056016215682,0.743621254377,0.792378166139,0.84797815326,0.84797815326,0.84797815326,0.767225791021,0.743621254377,0.743621254377,0.743621254377,0.84797815326,1.85893561316);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallSterlingBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallSterlingBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
d32e7921a60590e3099de7e2a3859b90e66eefe15c5a439596851e39c412d9f8
|
sebastien-clara/panoplie
|
cabinetKrankIgorTreble.dsp
|
declare name "cabinetKrankIgorTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 112;
modeFrequencies=(123.946037099,446.205733558,644.519392917,818.043844857,917.200674536,966.779089376,1065.93591906,1189.88195616,1338.61720067,1512.14165261,1710.45531197,1760.03372681,1859.19055649,2032.71500843,2131.87183811,2478.92074199,2726.81281619,2776.39123103,2825.96964587,2999.49409781,3173.01854975,3222.59696459,3296.96458685,3346.54300169,3396.12141653,3445.69983137,3495.27824621,3767.95952782,3891.90556492,4065.43001686,4238.9544688,4288.53288364,4338.11129848,4387.68971332,4561.21416526,4685.16020236,4809.10623946,4858.6846543,4908.26306914,4957.84148398,5032.20910624,5081.78752108,5131.36593592,5180.94435076,5230.5227656,5304.89038786,5354.4688027,5527.99325464,5577.57166948,5627.15008432,5701.51770658,5751.09612142,5800.67453626,5850.2529511,5924.62057336,5974.1989882,6023.77740304,6147.72344013,6197.30185497,6246.88026981,6321.24789207,6370.82630691,6420.40472175,6569.13996627,6618.71838111,6742.66441821,6792.24283305,6916.18887015,7511.12984823,7585.49747049,7684.65430017,7858.17875211,7907.75716695,8031.70320405,8081.28161889,8180.43844857,8279.59527825,8353.96290051,8403.54131535,8453.11973019,8502.69814503,8626.64418212,8800.16863406,8973.693086,9122.42833052,9172.00674536,9295.95278246,9370.32040472,9692.58010118,9766.94772344,9816.52613828,9866.10455312,9915.68296796,9990.05059022,10039.6290051,10188.3642496,10337.0994941,10510.623946,10560.2023609,10609.7807757,10708.9376054,10758.5160202,11155.143339,11254.3001686,11452.613828,11551.7706577,11774.8735245,11874.0303541,11923.608769,12196.2900506,12865.5986509,15592.4114671);
massEigenValues=(1.0,0.193042235876,0.395454815838,0.166697963881,0.21910698452,0.265830545771,0.29732858212,0.228296777542,0.177856194295,0.133547615777,0.250421747302,0.222420814723,0.280827382407,0.584598752614,0.750136988968,0.638366081331,0.554252233849,0.550601425957,0.553005293629,0.183848291163,0.446412690726,0.376133091632,0.339013879771,0.336992371918,0.308085068757,0.382756184031,0.378728477506,0.26210982535,0.329636872768,0.249161552833,0.21408845121,0.195768955199,0.183988684289,0.208733199761,0.222486138212,0.24198181906,0.266085599192,0.278966171809,0.290424218948,0.263185830455,0.242333026419,0.220565495693,0.248366139375,0.254512771252,0.252827248981,0.2564791236,0.241306446276,0.150601831882,0.137630331244,0.116605712539,0.109491652116,0.102402956303,0.0922652111346,0.0828600002552,0.0737032387449,0.0676899468777,0.0582875612091,0.0399180038129,0.0363609003851,0.0304232432514,0.0224369173616,0.0204093956772,0.0149549753288,0.0176375086427,0.0217638785599,0.0398883678606,0.0379318678911,0.0253269279209,0.0106140011441,0.0111383113091,0.0125856755685,0.0252726306345,0.0268700377898,0.0338403343467,0.0373031408995,0.0452668898271,0.0494491726728,0.0521997784212,0.052231614652,0.0482200396051,0.0464508495326,0.0449151812981,0.0375217409961,0.034877405802,0.0432449746672,0.0434098410861,0.043837816132,0.0412112916335,0.0226676277272,0.0221568030855,0.0222224466234,0.0222124193513,0.021701423425,0.0212084669818,0.0206839283223,0.0220304138115,0.023640132886,0.0256109737705,0.0256302952121,0.0253181269417,0.0207227775506,0.0197547934738,0.0242504346969,0.0249839072744,0.0223209954086,0.0214605727572,0.0325331201338,0.0381885298152,0.0396414712514,0.0541103324,0.033407629697,0.0214827596525);
t60=(18.1748750332,3.02921112677,27.2622733777,5.45251735161,2.59647787239,7.78927692575,13.6311758612,3.20739540799,2.47845971212,1.88022972733,1.00978927384,0.349593671458,1.18539117391,3.89467763559,5.45251735161,4.95684107833,5.45251735161,5.45251735161,5.45251735161,0.340855788585,4.95684107833,2.37070400056,2.27192793164,2.27192793164,2.09717027125,2.37070400056,2.37070400056,2.18105394823,3.63503768294,1.06918403415,0.349593671458,0.345169426964,0.340855788585,0.349593671458,0.349593671458,1.39813962987,1.47371050999,1.47371050999,1.55791806214,1.43493071624,1.39813962987,0.349593671458,1.39813962987,1.43493071624,1.43493071624,1.43493071624,1.39813962987,0.332544143908,0.324628291842,0.317080618948,0.313436914796,0.268671406799,0.252506084561,0.227263312284,0.225385750717,0.22353896885,0.222626884744,0.217306999769,0.217306999769,0.213899491752,0.212235514103,0.212235514103,0.210597234952,2.86978308568,3.02921112677,7.78927692575,6.05834390785,3.40785272437,0.219934765532,6.05834390785,0.229172429508,0.439791172434,0.446999579295,0.768027503189,0.813875213836,0.879503993217,1.65233259032,2.01950019997,2.01950019997,1.65233259032,0.893920807052,0.879503993217,0.813875213836,0.778998205378,0.865544856012,0.865544856012,0.865544856012,0.826205469353,0.432811603888,0.429404255465,0.432811603888,0.432811603888,0.426050146862,0.426050146862,0.426050146862,0.426050146862,0.436273469886,0.443366073397,0.443366073397,0.439791172434,0.426050146862,0.422748039943,0.59273476188,0.599247469686,0.562185462389,0.55082976319,0.852021941848,0.940154037634,0.973728169372,2.18105394823,0.879503993217,2.7262978487);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetKrankIgorTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetKrankIgorTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetKrankIgorTreble%7E.mxo/cabinetKrankIgorTreble.dsp
|
faust
|
declare name "cabinetKrankIgorTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 112;
modeFrequencies=(123.946037099,446.205733558,644.519392917,818.043844857,917.200674536,966.779089376,1065.93591906,1189.88195616,1338.61720067,1512.14165261,1710.45531197,1760.03372681,1859.19055649,2032.71500843,2131.87183811,2478.92074199,2726.81281619,2776.39123103,2825.96964587,2999.49409781,3173.01854975,3222.59696459,3296.96458685,3346.54300169,3396.12141653,3445.69983137,3495.27824621,3767.95952782,3891.90556492,4065.43001686,4238.9544688,4288.53288364,4338.11129848,4387.68971332,4561.21416526,4685.16020236,4809.10623946,4858.6846543,4908.26306914,4957.84148398,5032.20910624,5081.78752108,5131.36593592,5180.94435076,5230.5227656,5304.89038786,5354.4688027,5527.99325464,5577.57166948,5627.15008432,5701.51770658,5751.09612142,5800.67453626,5850.2529511,5924.62057336,5974.1989882,6023.77740304,6147.72344013,6197.30185497,6246.88026981,6321.24789207,6370.82630691,6420.40472175,6569.13996627,6618.71838111,6742.66441821,6792.24283305,6916.18887015,7511.12984823,7585.49747049,7684.65430017,7858.17875211,7907.75716695,8031.70320405,8081.28161889,8180.43844857,8279.59527825,8353.96290051,8403.54131535,8453.11973019,8502.69814503,8626.64418212,8800.16863406,8973.693086,9122.42833052,9172.00674536,9295.95278246,9370.32040472,9692.58010118,9766.94772344,9816.52613828,9866.10455312,9915.68296796,9990.05059022,10039.6290051,10188.3642496,10337.0994941,10510.623946,10560.2023609,10609.7807757,10708.9376054,10758.5160202,11155.143339,11254.3001686,11452.613828,11551.7706577,11774.8735245,11874.0303541,11923.608769,12196.2900506,12865.5986509,15592.4114671);
massEigenValues=(1.0,0.193042235876,0.395454815838,0.166697963881,0.21910698452,0.265830545771,0.29732858212,0.228296777542,0.177856194295,0.133547615777,0.250421747302,0.222420814723,0.280827382407,0.584598752614,0.750136988968,0.638366081331,0.554252233849,0.550601425957,0.553005293629,0.183848291163,0.446412690726,0.376133091632,0.339013879771,0.336992371918,0.308085068757,0.382756184031,0.378728477506,0.26210982535,0.329636872768,0.249161552833,0.21408845121,0.195768955199,0.183988684289,0.208733199761,0.222486138212,0.24198181906,0.266085599192,0.278966171809,0.290424218948,0.263185830455,0.242333026419,0.220565495693,0.248366139375,0.254512771252,0.252827248981,0.2564791236,0.241306446276,0.150601831882,0.137630331244,0.116605712539,0.109491652116,0.102402956303,0.0922652111346,0.0828600002552,0.0737032387449,0.0676899468777,0.0582875612091,0.0399180038129,0.0363609003851,0.0304232432514,0.0224369173616,0.0204093956772,0.0149549753288,0.0176375086427,0.0217638785599,0.0398883678606,0.0379318678911,0.0253269279209,0.0106140011441,0.0111383113091,0.0125856755685,0.0252726306345,0.0268700377898,0.0338403343467,0.0373031408995,0.0452668898271,0.0494491726728,0.0521997784212,0.052231614652,0.0482200396051,0.0464508495326,0.0449151812981,0.0375217409961,0.034877405802,0.0432449746672,0.0434098410861,0.043837816132,0.0412112916335,0.0226676277272,0.0221568030855,0.0222224466234,0.0222124193513,0.021701423425,0.0212084669818,0.0206839283223,0.0220304138115,0.023640132886,0.0256109737705,0.0256302952121,0.0253181269417,0.0207227775506,0.0197547934738,0.0242504346969,0.0249839072744,0.0223209954086,0.0214605727572,0.0325331201338,0.0381885298152,0.0396414712514,0.0541103324,0.033407629697,0.0214827596525);
t60=(18.1748750332,3.02921112677,27.2622733777,5.45251735161,2.59647787239,7.78927692575,13.6311758612,3.20739540799,2.47845971212,1.88022972733,1.00978927384,0.349593671458,1.18539117391,3.89467763559,5.45251735161,4.95684107833,5.45251735161,5.45251735161,5.45251735161,0.340855788585,4.95684107833,2.37070400056,2.27192793164,2.27192793164,2.09717027125,2.37070400056,2.37070400056,2.18105394823,3.63503768294,1.06918403415,0.349593671458,0.345169426964,0.340855788585,0.349593671458,0.349593671458,1.39813962987,1.47371050999,1.47371050999,1.55791806214,1.43493071624,1.39813962987,0.349593671458,1.39813962987,1.43493071624,1.43493071624,1.43493071624,1.39813962987,0.332544143908,0.324628291842,0.317080618948,0.313436914796,0.268671406799,0.252506084561,0.227263312284,0.225385750717,0.22353896885,0.222626884744,0.217306999769,0.217306999769,0.213899491752,0.212235514103,0.212235514103,0.210597234952,2.86978308568,3.02921112677,7.78927692575,6.05834390785,3.40785272437,0.219934765532,6.05834390785,0.229172429508,0.439791172434,0.446999579295,0.768027503189,0.813875213836,0.879503993217,1.65233259032,2.01950019997,2.01950019997,1.65233259032,0.893920807052,0.879503993217,0.813875213836,0.778998205378,0.865544856012,0.865544856012,0.865544856012,0.826205469353,0.432811603888,0.429404255465,0.432811603888,0.432811603888,0.426050146862,0.426050146862,0.426050146862,0.426050146862,0.436273469886,0.443366073397,0.443366073397,0.439791172434,0.426050146862,0.422748039943,0.59273476188,0.599247469686,0.562185462389,0.55082976319,0.852021941848,0.940154037634,0.973728169372,2.18105394823,0.879503993217,2.7262978487);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetKrankIgorTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetKrankIgorTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
f299578ce7b335fe5cc12561f3eca503c0a9bc985123633e28bb825e28175135
|
sebastien-clara/panoplie
|
cabinetKrankIgorBass.dsp
|
declare name "cabinetKrankIgorBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 109;
modeFrequencies=(121.879318287,446.890833717,528.143712575,650.023030861,690.64947029,914.094887149,975.034546292,1076.60064486,1178.16674344,1279.73284201,1360.98572087,1462.55181944,1665.68401658,1848.50299401,2031.32197144,2071.94841087,2132.88807001,2193.82772916,2396.9599263,2457.89958544,2721.97144173,2884.47719945,3026.66973745,3067.29617688,3148.54905573,3311.05481345,3351.68125288,3412.62091202,3615.75310917,3697.00598802,3757.94564717,3798.5720866,3900.13818517,3961.07784431,4082.9571626,4184.52326117,4225.1497006,4306.40257946,4367.3422386,4428.28189774,4509.5347766,4570.47443574,4611.10087517,4732.98019346,4834.54629203,4895.48595117,4956.42561032,5037.67848918,5179.87102718,5220.49746661,5261.12390603,5301.75034546,5362.69000461,5403.31644404,5443.94288346,5504.88254261,5586.13542146,5626.76186089,5708.01473975,5768.95439889,5850.20727775,5911.1469369,5972.08659604,6053.3394749,6114.27913404,6175.21879318,6398.66421004,6459.60386918,6520.54352833,6683.04928604,7719.02349148,7779.96315062,8003.40856748,8104.97466605,8145.60110548,8206.54076462,8348.73330263,8429.98618148,8490.92584063,8531.55228006,8633.11837863,10075.3569784,10115.9834178,10156.6098572,10197.2362966,10258.1759558,10298.8023952,10400.3684938,10440.9949332,10583.1874712,10948.8254261,11070.7047444,11131.6444035,11212.8972824,11273.8369415,11619.1616766,11720.7277752,11781.6674344,12269.1847075,12309.8111469,12350.4375864,12411.3772455,12452.0036849,12553.5697835,12634.8226624,12675.4491018,12777.0152004,12817.6416398,12878.5812989);
massEigenValues=(1.0,0.176729974379,0.131220875342,0.345064403459,0.249530139,0.22595636564,0.246591836092,0.248467754908,0.192680745574,0.155590599863,0.115769501725,0.0837308721563,0.207059155124,0.196281586191,0.38441571809,0.363793257848,0.467116619643,0.446487348998,0.298263059171,0.331565676325,0.390254545188,0.241942856069,0.213577115968,0.264366325882,0.26307727164,0.241859049704,0.247353729449,0.233100171186,0.118764707391,0.110663277232,0.121938674091,0.125349892404,0.0841998897331,0.0667883079953,0.128075649791,0.125970366045,0.118388289906,0.133166779499,0.13845939125,0.122156801626,0.116384036279,0.104683195095,0.122843824552,0.132580029949,0.131821137716,0.129197206949,0.146610255944,0.119677582403,0.0664812564264,0.0696129094386,0.0660761936261,0.0889398187443,0.0737126232286,0.0665234824413,0.0752792647288,0.0620681570243,0.0309315493514,0.0175665287984,0.0165861633297,0.0182026014122,0.0202164927141,0.0205307228096,0.0218811520173,0.0193066750659,0.0181072933253,0.0147410633441,0.024490987818,0.0255207856161,0.0237549723736,0.0260132118607,0.0244395671376,0.0248407778287,0.0146896185607,0.0181479021591,0.0189896838231,0.0209497315712,0.0202891050372,0.0193216091692,0.017665183572,0.0181524425568,0.0153869918647,0.0105837710251,0.0116139715023,0.0115749000553,0.011329912487,0.0104128771276,0.0107931139247,0.0108321074151,0.0103568472179,0.0103269850784,0.0113474097409,0.0132946717156,0.0147910754069,0.0160947812283,0.017761575567,0.035648290045,0.039497692575,0.0385747140965,0.0141213919126,0.012713560169,0.0122677224799,0.0139963242067,0.0136744118259,0.0141476910107,0.0133396841278,0.0136185138877,0.0140599082345,0.0139978437705,0.0126573652347);
t60=(11.1699182719,1.86171833362,1.71851525772,22.3397581989,4.46801431596,5.58499830857,5.58499830857,5.58499830857,3.19146118162,1.71851525772,1.59576976411,1.01551834006,6.3828440176,0.513634207371,1.59576976411,1.59576976411,3.19146118162,2.62827597535,1.35399833734,1.48939033632,4.964451646,0.558570344688,0.544948588771,1.65486944621,0.558570344688,0.558570344688,0.558570344688,0.551675381816,0.395470913636,0.395470913636,0.395470913636,0.399001204338,0.38195321933,0.249683714367,1.48939033632,1.48939033632,1.4413480141,1.48939033632,1.54074592215,1.4413480141,1.4413480141,1.39630833702,1.4413480141,2.234046331,2.234046331,2.234046331,2.35162359334,2.03095833242,0.249683714367,2.62827597535,2.62827597535,8.93595028654,2.62827597535,2.62827597535,2.79253832717,0.228034270525,0.181701769384,0.161375684822,0.783926763216,14.8931982476,2.62827597535,2.62827597535,2.62827597535,2.62827597535,0.876144223639,0.744734342557,1.54074592215,1.54074592215,1.54074592215,1.59576976411,3.19146118162,3.43695216898,0.783926763216,0.812430341886,1.2766314808,1.65486944621,1.4413480141,1.2766314808,0.812430341886,0.812430341886,0.783926763216,1.20762860875,1.35399833734,1.35399833734,1.2766314808,1.20762860875,1.20762860875,1.20762860875,1.14570295436,1.14570295436,0.409980732307,0.425596060987,0.442448247398,0.460690304869,0.720713181515,1.59576976411,1.94265920261,1.86171833362,0.429687577398,0.421581742999,0.413776124693,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.421581742999);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetKrankIgorBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetKrankIgorBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetKrankIgorBass%7E.mxo/cabinetKrankIgorBass.dsp
|
faust
|
declare name "cabinetKrankIgorBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 109;
modeFrequencies=(121.879318287,446.890833717,528.143712575,650.023030861,690.64947029,914.094887149,975.034546292,1076.60064486,1178.16674344,1279.73284201,1360.98572087,1462.55181944,1665.68401658,1848.50299401,2031.32197144,2071.94841087,2132.88807001,2193.82772916,2396.9599263,2457.89958544,2721.97144173,2884.47719945,3026.66973745,3067.29617688,3148.54905573,3311.05481345,3351.68125288,3412.62091202,3615.75310917,3697.00598802,3757.94564717,3798.5720866,3900.13818517,3961.07784431,4082.9571626,4184.52326117,4225.1497006,4306.40257946,4367.3422386,4428.28189774,4509.5347766,4570.47443574,4611.10087517,4732.98019346,4834.54629203,4895.48595117,4956.42561032,5037.67848918,5179.87102718,5220.49746661,5261.12390603,5301.75034546,5362.69000461,5403.31644404,5443.94288346,5504.88254261,5586.13542146,5626.76186089,5708.01473975,5768.95439889,5850.20727775,5911.1469369,5972.08659604,6053.3394749,6114.27913404,6175.21879318,6398.66421004,6459.60386918,6520.54352833,6683.04928604,7719.02349148,7779.96315062,8003.40856748,8104.97466605,8145.60110548,8206.54076462,8348.73330263,8429.98618148,8490.92584063,8531.55228006,8633.11837863,10075.3569784,10115.9834178,10156.6098572,10197.2362966,10258.1759558,10298.8023952,10400.3684938,10440.9949332,10583.1874712,10948.8254261,11070.7047444,11131.6444035,11212.8972824,11273.8369415,11619.1616766,11720.7277752,11781.6674344,12269.1847075,12309.8111469,12350.4375864,12411.3772455,12452.0036849,12553.5697835,12634.8226624,12675.4491018,12777.0152004,12817.6416398,12878.5812989);
massEigenValues=(1.0,0.176729974379,0.131220875342,0.345064403459,0.249530139,0.22595636564,0.246591836092,0.248467754908,0.192680745574,0.155590599863,0.115769501725,0.0837308721563,0.207059155124,0.196281586191,0.38441571809,0.363793257848,0.467116619643,0.446487348998,0.298263059171,0.331565676325,0.390254545188,0.241942856069,0.213577115968,0.264366325882,0.26307727164,0.241859049704,0.247353729449,0.233100171186,0.118764707391,0.110663277232,0.121938674091,0.125349892404,0.0841998897331,0.0667883079953,0.128075649791,0.125970366045,0.118388289906,0.133166779499,0.13845939125,0.122156801626,0.116384036279,0.104683195095,0.122843824552,0.132580029949,0.131821137716,0.129197206949,0.146610255944,0.119677582403,0.0664812564264,0.0696129094386,0.0660761936261,0.0889398187443,0.0737126232286,0.0665234824413,0.0752792647288,0.0620681570243,0.0309315493514,0.0175665287984,0.0165861633297,0.0182026014122,0.0202164927141,0.0205307228096,0.0218811520173,0.0193066750659,0.0181072933253,0.0147410633441,0.024490987818,0.0255207856161,0.0237549723736,0.0260132118607,0.0244395671376,0.0248407778287,0.0146896185607,0.0181479021591,0.0189896838231,0.0209497315712,0.0202891050372,0.0193216091692,0.017665183572,0.0181524425568,0.0153869918647,0.0105837710251,0.0116139715023,0.0115749000553,0.011329912487,0.0104128771276,0.0107931139247,0.0108321074151,0.0103568472179,0.0103269850784,0.0113474097409,0.0132946717156,0.0147910754069,0.0160947812283,0.017761575567,0.035648290045,0.039497692575,0.0385747140965,0.0141213919126,0.012713560169,0.0122677224799,0.0139963242067,0.0136744118259,0.0141476910107,0.0133396841278,0.0136185138877,0.0140599082345,0.0139978437705,0.0126573652347);
t60=(11.1699182719,1.86171833362,1.71851525772,22.3397581989,4.46801431596,5.58499830857,5.58499830857,5.58499830857,3.19146118162,1.71851525772,1.59576976411,1.01551834006,6.3828440176,0.513634207371,1.59576976411,1.59576976411,3.19146118162,2.62827597535,1.35399833734,1.48939033632,4.964451646,0.558570344688,0.544948588771,1.65486944621,0.558570344688,0.558570344688,0.558570344688,0.551675381816,0.395470913636,0.395470913636,0.395470913636,0.399001204338,0.38195321933,0.249683714367,1.48939033632,1.48939033632,1.4413480141,1.48939033632,1.54074592215,1.4413480141,1.4413480141,1.39630833702,1.4413480141,2.234046331,2.234046331,2.234046331,2.35162359334,2.03095833242,0.249683714367,2.62827597535,2.62827597535,8.93595028654,2.62827597535,2.62827597535,2.79253832717,0.228034270525,0.181701769384,0.161375684822,0.783926763216,14.8931982476,2.62827597535,2.62827597535,2.62827597535,2.62827597535,0.876144223639,0.744734342557,1.54074592215,1.54074592215,1.54074592215,1.59576976411,3.19146118162,3.43695216898,0.783926763216,0.812430341886,1.2766314808,1.65486944621,1.4413480141,1.2766314808,0.812430341886,0.812430341886,0.783926763216,1.20762860875,1.35399833734,1.35399833734,1.2766314808,1.20762860875,1.20762860875,1.20762860875,1.14570295436,1.14570295436,0.409980732307,0.425596060987,0.442448247398,0.460690304869,0.720713181515,1.59576976411,1.94265920261,1.86171833362,0.429687577398,0.421581742999,0.413776124693,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.429687577398,0.421581742999);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetKrankIgorBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetKrankIgorBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
976f48077bb0f659b8b8f202b0c9942d9722e36a50be6101bd18544905e10d10
|
sebastien-clara/panoplie
|
cabinetGenzieBass.dsp
|
declare name "cabinetGenzieBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 117;
modeFrequencies=(42.0400381316,126.120114395,357.340324118,630.600571973,693.660629171,777.740705434,840.800762631,903.860819828,987.940896092,1072.02097235,1492.42135367,1576.50142993,1681.60152526,1870.78169685,1933.84175405,2165.06196378,2249.14204004,2333.2221163,2564.44232602,2606.48236416,2669.54242135,2711.58245949,2774.64251668,2879.74261201,2984.84270734,3047.90276454,3089.94280267,3131.9828408,3258.1029552,3384.22306959,3426.26310772,3510.34318398,3741.56339371,3909.72354623,3972.78360343,4056.86367969,4119.92373689,4288.08388942,4330.12392755,4393.18398475,4456.24404194,4561.34413727,4624.40419447,4666.4442326,4792.564347,4855.62440419,4897.66444233,5002.76453765,5065.82459485,5107.86463298,5233.98474738,5339.08484271,5444.18493804,5528.2650143,5612.34509056,5675.40514776,5717.44518589,5801.52526215,5843.56530029,5906.62535748,6011.72545281,6074.78551001,6116.82554814,6179.88560534,6221.92564347,6390.085796,6453.14585319,6495.18589133,6537.22592946,6726.40610105,6873.54623451,6915.58627264,6957.62631077,7020.68636797,7188.8465205,7251.90657769,7777.40705434,7840.46711153,7882.50714967,8050.66730219,8197.80743565,8429.02764538,8471.06768351,8534.12774071,8639.22783603,8870.44804576,8975.54814109,9080.64823642,9227.78836988,9269.82840801,10026.5490944,10110.6291706,10194.7092469,10299.8093422,10341.8493804,10404.9094376,10467.9694948,10510.0095329,10573.0695901,10615.1096282,10720.2097235,11077.5500477,11224.6901811,11434.8903718,11497.950429,11603.0505243,11687.1306006,11813.250715,11918.3508103,12044.4709247,12990.3717827,13032.4118208,13095.471878,13137.5119161,13179.5519542,13242.6120114,13410.772164);
massEigenValues=(0.0784509942626,1.0,0.259711399792,0.359087620144,0.288818787853,0.227006029338,0.239554454653,0.254200835657,0.206671385484,0.304992193349,0.0628438723042,0.176842140655,0.260026292037,0.246227169998,0.231838143269,0.331418576058,0.443945367762,0.406359542658,0.176617157771,0.220642858816,0.223290566005,0.198840319816,0.164093547658,0.190860991935,0.281309193669,0.3576573923,0.372089038385,0.394199831498,0.346706934514,0.350173482041,0.349668682749,0.352923470718,0.166272638145,0.214965765338,0.222322361381,0.187498852835,0.158023811711,0.158389676352,0.138872375191,0.117016303514,0.125145232385,0.134883260049,0.154428436849,0.154887335178,0.208947490902,0.219764701066,0.215242422052,0.179964916778,0.173654126041,0.164451946046,0.124096974329,0.090558520328,0.0737939688553,0.0864929228678,0.0858098061882,0.0737710511087,0.0676458148,0.056725641532,0.0543302673888,0.0457903466049,0.0343137193799,0.0260743146701,0.0280023966479,0.0250831183396,0.0340086051332,0.0568885943437,0.0561763968972,0.0566825951221,0.0528377805186,0.0334793296921,0.0258031126767,0.0255168888226,0.0252943435656,0.0243677325579,0.0281689864734,0.0289878164673,0.0169392612027,0.0171282678622,0.0175446634713,0.0196109379964,0.0217305103579,0.0135364989545,0.0128830998361,0.0120648223982,0.0104309959564,0.0118338521911,0.0128332463004,0.0108185322378,0.0126390120508,0.0121535687108,0.0291796169249,0.0317810838203,0.0324156969673,0.0258243348366,0.0255404672041,0.0267951178961,0.029114629669,0.0297227671057,0.030068036378,0.0282350217286,0.0258339770543,0.0108207634657,0.0125530579061,0.0139347391287,0.0145079981346,0.0149682188185,0.0144555672576,0.0141862042975,0.014285572265,0.0139099694634,0.0103283527966,0.010278582315,0.0112333967902,0.0117565925907,0.0116363327515,0.0110496062236,0.0113844969111);
t60=(23.1170683179,15.4114049934,2.43344571109,15.4114049934,3.55653834109,2.20169643827,2.31177734285,2.31177734285,1.40110804146,9.24687433409,0.165199714012,15.4114049934,9.24687433409,6.60493262299,6.60493262299,2.43344571109,4.62347633971,3.08234367507,0.379045398808,3.85291000736,3.85291000736,0.98378004773,0.379045398808,0.711370346716,1.24964537188,1.49149705398,1.49149705398,1.54121101087,1.4448902194,1.4448902194,1.4448902194,1.4448902194,0.379045398808,3.08234367507,3.55653834109,0.700593195258,0.281992863794,0.285473289778,0.280284291039,0.272042940112,0.276928531379,0.276928531379,0.280284291039,0.280284291039,1.92649417682,2.20169643827,2.20169643827,1.59435351651,1.4448902194,1.24964537188,0.275280613689,0.248648137558,0.168815509884,0.228959442452,0.228959442452,0.168815509884,0.167592776979,0.164612093569,0.164612093569,0.162874061274,0.161172364152,0.131799100791,0.131799100791,0.131424894185,1.15592784509,2.7197242246,2.7197242246,2.7197242246,2.43344571109,1.15592784509,0.131799100791,0.131799100791,0.131424894185,0.131424894185,0.132175445719,0.132175445719,1.12773639395,1.12773639395,1.21676202914,1.40110804146,1.59435351651,0.0561875800987,0.0561875800987,0.0559165213435,0.0517942454699,0.0520266761299,1.49149705398,0.0517942454699,1.49149705398,1.49149705398,1.02750012324,1.10088739286,1.10088739286,0.963286262337,0.963286262337,0.98378004773,1.02750012324,1.05085061812,1.05085061812,0.98378004773,0.963286262337,0.379045398808,0.391891739266,0.395240571609,0.840696164305,0.90662697332,0.840696164305,0.398647142442,0.398647142442,0.395240571609,1.4448902194,1.4448902194,2.31177734285,2.43344571109,2.31177734285,2.31177734285,4.62347633971);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetGenzieBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetGenzieBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetGenzieBass%7E.mxo/cabinetGenzieBass.dsp
|
faust
|
declare name "cabinetGenzieBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 117;
modeFrequencies=(42.0400381316,126.120114395,357.340324118,630.600571973,693.660629171,777.740705434,840.800762631,903.860819828,987.940896092,1072.02097235,1492.42135367,1576.50142993,1681.60152526,1870.78169685,1933.84175405,2165.06196378,2249.14204004,2333.2221163,2564.44232602,2606.48236416,2669.54242135,2711.58245949,2774.64251668,2879.74261201,2984.84270734,3047.90276454,3089.94280267,3131.9828408,3258.1029552,3384.22306959,3426.26310772,3510.34318398,3741.56339371,3909.72354623,3972.78360343,4056.86367969,4119.92373689,4288.08388942,4330.12392755,4393.18398475,4456.24404194,4561.34413727,4624.40419447,4666.4442326,4792.564347,4855.62440419,4897.66444233,5002.76453765,5065.82459485,5107.86463298,5233.98474738,5339.08484271,5444.18493804,5528.2650143,5612.34509056,5675.40514776,5717.44518589,5801.52526215,5843.56530029,5906.62535748,6011.72545281,6074.78551001,6116.82554814,6179.88560534,6221.92564347,6390.085796,6453.14585319,6495.18589133,6537.22592946,6726.40610105,6873.54623451,6915.58627264,6957.62631077,7020.68636797,7188.8465205,7251.90657769,7777.40705434,7840.46711153,7882.50714967,8050.66730219,8197.80743565,8429.02764538,8471.06768351,8534.12774071,8639.22783603,8870.44804576,8975.54814109,9080.64823642,9227.78836988,9269.82840801,10026.5490944,10110.6291706,10194.7092469,10299.8093422,10341.8493804,10404.9094376,10467.9694948,10510.0095329,10573.0695901,10615.1096282,10720.2097235,11077.5500477,11224.6901811,11434.8903718,11497.950429,11603.0505243,11687.1306006,11813.250715,11918.3508103,12044.4709247,12990.3717827,13032.4118208,13095.471878,13137.5119161,13179.5519542,13242.6120114,13410.772164);
massEigenValues=(0.0784509942626,1.0,0.259711399792,0.359087620144,0.288818787853,0.227006029338,0.239554454653,0.254200835657,0.206671385484,0.304992193349,0.0628438723042,0.176842140655,0.260026292037,0.246227169998,0.231838143269,0.331418576058,0.443945367762,0.406359542658,0.176617157771,0.220642858816,0.223290566005,0.198840319816,0.164093547658,0.190860991935,0.281309193669,0.3576573923,0.372089038385,0.394199831498,0.346706934514,0.350173482041,0.349668682749,0.352923470718,0.166272638145,0.214965765338,0.222322361381,0.187498852835,0.158023811711,0.158389676352,0.138872375191,0.117016303514,0.125145232385,0.134883260049,0.154428436849,0.154887335178,0.208947490902,0.219764701066,0.215242422052,0.179964916778,0.173654126041,0.164451946046,0.124096974329,0.090558520328,0.0737939688553,0.0864929228678,0.0858098061882,0.0737710511087,0.0676458148,0.056725641532,0.0543302673888,0.0457903466049,0.0343137193799,0.0260743146701,0.0280023966479,0.0250831183396,0.0340086051332,0.0568885943437,0.0561763968972,0.0566825951221,0.0528377805186,0.0334793296921,0.0258031126767,0.0255168888226,0.0252943435656,0.0243677325579,0.0281689864734,0.0289878164673,0.0169392612027,0.0171282678622,0.0175446634713,0.0196109379964,0.0217305103579,0.0135364989545,0.0128830998361,0.0120648223982,0.0104309959564,0.0118338521911,0.0128332463004,0.0108185322378,0.0126390120508,0.0121535687108,0.0291796169249,0.0317810838203,0.0324156969673,0.0258243348366,0.0255404672041,0.0267951178961,0.029114629669,0.0297227671057,0.030068036378,0.0282350217286,0.0258339770543,0.0108207634657,0.0125530579061,0.0139347391287,0.0145079981346,0.0149682188185,0.0144555672576,0.0141862042975,0.014285572265,0.0139099694634,0.0103283527966,0.010278582315,0.0112333967902,0.0117565925907,0.0116363327515,0.0110496062236,0.0113844969111);
t60=(23.1170683179,15.4114049934,2.43344571109,15.4114049934,3.55653834109,2.20169643827,2.31177734285,2.31177734285,1.40110804146,9.24687433409,0.165199714012,15.4114049934,9.24687433409,6.60493262299,6.60493262299,2.43344571109,4.62347633971,3.08234367507,0.379045398808,3.85291000736,3.85291000736,0.98378004773,0.379045398808,0.711370346716,1.24964537188,1.49149705398,1.49149705398,1.54121101087,1.4448902194,1.4448902194,1.4448902194,1.4448902194,0.379045398808,3.08234367507,3.55653834109,0.700593195258,0.281992863794,0.285473289778,0.280284291039,0.272042940112,0.276928531379,0.276928531379,0.280284291039,0.280284291039,1.92649417682,2.20169643827,2.20169643827,1.59435351651,1.4448902194,1.24964537188,0.275280613689,0.248648137558,0.168815509884,0.228959442452,0.228959442452,0.168815509884,0.167592776979,0.164612093569,0.164612093569,0.162874061274,0.161172364152,0.131799100791,0.131799100791,0.131424894185,1.15592784509,2.7197242246,2.7197242246,2.7197242246,2.43344571109,1.15592784509,0.131799100791,0.131799100791,0.131424894185,0.131424894185,0.132175445719,0.132175445719,1.12773639395,1.12773639395,1.21676202914,1.40110804146,1.59435351651,0.0561875800987,0.0561875800987,0.0559165213435,0.0517942454699,0.0520266761299,1.49149705398,0.0517942454699,1.49149705398,1.49149705398,1.02750012324,1.10088739286,1.10088739286,0.963286262337,0.963286262337,0.98378004773,1.02750012324,1.05085061812,1.05085061812,0.98378004773,0.963286262337,0.379045398808,0.391891739266,0.395240571609,0.840696164305,0.90662697332,0.840696164305,0.398647142442,0.398647142442,0.395240571609,1.4448902194,1.4448902194,2.31177734285,2.43344571109,2.31177734285,2.31177734285,4.62347633971);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetGenzieBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetGenzieBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
c1c1dacd292f35f97bccd33df5958daa46aab678494d8cec67c3e08a5f770f7a
|
sebastien-clara/panoplie
|
cabinetSelmerZodiacBass.dsp
|
declare name "cabinetSelmerZodiacBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 135;
modeFrequencies=(77.767980854,99.9874039552,133.316538607,166.645673259,249.968509888,327.736490742,455.498173573,588.81471218,683.24726036,838.783222068,877.667212495,938.770626023,1083.19687618,1210.95855901,1344.27509762,1388.71394382,1488.70134778,1572.02418441,1638.68245371,1760.88928077,1849.76697317,2021.9675022,2094.18062728,2305.26514674,2405.2525507,2477.46567578,2538.56908931,2577.45307973,2716.32447412,2844.08615695,2888.52500315,3038.50610908,3155.15808036,3310.69404207,3355.13288827,3432.90086913,3588.43683084,3732.86308099,3860.62476382,4010.60586976,4138.36755259,4260.57437964,4393.89091825,4538.31716841,4671.63370702,4804.95024562,4943.82164001,4988.26048621,5021.58962086,5082.69303439,5171.57072679,5221.56442877,5277.11298652,5432.64894823,5543.74606374,5577.07519839,5715.94659277,5832.59856405,6004.79909308,6110.34135282,6165.88991057,6288.09673762,6415.85842046,6521.40068019,6549.17495906,6626.94293992,6721.3754881,6771.36919007,6854.6920267,6988.00856531,7038.00226729,7087.99596927,7476.83587354,7610.15241214,7693.47524877,7704.58496032,7743.46895075,7810.12722005,7860.12092203,7926.77919133,8026.76659529,8126.75399924,8171.19284545,8193.41226855,8293.3996725,8404.49678801,8443.38077844,8515.59390351,8571.14246127,8637.80073057,8671.12986522,8765.5624134,8837.77553848,8893.32409623,8971.09207709,9037.75034639,9298.82856783,9371.04169291,9421.03539489,9526.57765462,9648.78448167,9737.66217408,9793.21073183,9843.20443381,9854.31414536,9898.75299156,9926.52727044,10026.5146744,10093.1729437,10104.2826552,10159.831213,10237.5991939,10259.818617,10270.9283285,10454.2385691,10465.3482806,10576.4453961,10643.1036654,10709.7619348,10737.5362136,10759.7556367,10854.1881849,11004.1692908,11176.3698199,11304.1315027,11448.5577529,11537.4354453,11592.984003,11687.4165512,11804.0685225,12031.8176093,12148.4695806,12159.5792921,12259.5666961,12387.3283789);
massEigenValues=(0.133751749771,0.178320527187,0.18342710518,0.203022308116,0.295099266368,0.214586737144,0.348202498552,0.514538052109,0.354455747924,0.273746759635,0.271590564861,0.222413514147,0.116105103473,0.132008989137,0.330315618695,0.286048512869,0.299482176631,0.326902917171,0.276904562207,0.553705310921,0.492956753121,0.468186693976,0.368161053243,0.714910709869,1.0,0.926284629179,0.86855330131,0.82486455498,0.829740513719,0.655325863172,0.678432805864,0.602114486171,0.553070214801,0.43032713765,0.429679884948,0.603019797934,0.538640565728,0.640366960063,0.667031443904,0.395817223865,0.65157663573,0.686117554809,0.744770450392,0.49872043746,0.487611863606,0.391672218914,0.247810279659,0.22521753268,0.219326115483,0.217084117181,0.270847102917,0.272059794666,0.266781816405,0.199093361168,0.244366306403,0.253520215273,0.315959782916,0.195580879557,0.139188351558,0.101582567751,0.0978169375448,0.0542690564564,0.0752217723625,0.0881746719091,0.0855414963664,0.0891310181039,0.0718706503256,0.0643023624422,0.0489833326557,0.0258063105624,0.0214694476382,0.0255308053211,0.0105905332266,0.0173554315134,0.0163853506272,0.0161899866922,0.0162052851766,0.0182779501619,0.0176912872183,0.015665714686,0.0268373648007,0.0384424342354,0.0362732010586,0.0366689449935,0.0428670584158,0.0367472905351,0.03519333546,0.036716118796,0.0355260703983,0.0352216663475,0.034392926008,0.0410836920621,0.0392409754031,0.0446191449543,0.0403389382611,0.0390820022551,0.01497342999,0.0178110336851,0.0178803186551,0.0273679059461,0.035158759962,0.039513305562,0.042652753532,0.0438350820096,0.0438169396936,0.0451651126399,0.0464491719654,0.0413046599272,0.035747308048,0.0357860710543,0.0328114507259,0.0215355593653,0.0222109367543,0.0221558392151,0.0312170283154,0.0311235576489,0.0394456093012,0.037919792017,0.0391255036282,0.0387058993974,0.0384638812202,0.0360354633066,0.0302338350462,0.0280694871609,0.0288574133795,0.0252644440287,0.0197561444327,0.0215450029969,0.0156832165393,0.0108561442528,0.0114780082851,0.015154854521,0.0151128611159,0.0159759448192,0.0124139606139);
t60=(0.070296900655,0.0741270006123,0.555443060688,0.610979531587,0.581888999203,0.0879778188202,0.197143252978,0.872794323539,0.200373824908,0.112170323211,0.0905822463244,0.0879778188202,0.0624152329582,0.0163909182537,0.112170323211,0.109167860492,0.110150648586,0.112170323211,0.10820246688,0.436436337622,0.394208145712,0.0551145245097,0.0541404341589,0.0933457228774,0.160841826757,0.1328829652,0.128689136067,0.124752072014,0.124752072014,0.0855190935915,0.0879778188202,0.0719491006169,0.678857440537,0.0873499657672,0.0873499657672,0.222224238814,0.10450591701,0.277760708206,0.290983677212,0.0861207886704,0.177151163056,0.182436918149,0.271589989347,0.130057335639,0.581888999203,0.0826325834499,0.0168614661264,0.0168384443466,0.0168384443466,0.0168154856406,0.260036302995,0.260036302995,0.254620512528,0.939926321566,0.177151163056,0.182436918149,0.555443060688,0.162985339515,0.555443060688,0.011115588463,0.011115588463,0.939926321566,0.15875398966,0.172163197002,0.167448544174,0.172163197002,0.156719686852,0.135834178312,0.128689136067,0.00963882759044,0.00963135295812,0.00963882759044,0.939926321566,0.0163258425001,0.0162827463578,0.0162827463578,0.0162827463578,0.0163474766494,0.0163474766494,0.0162827463578,0.0539022755086,0.0602656873902,0.0571719490641,0.0577105673004,0.0633841991211,0.0577105673004,0.0566433052457,0.0577105673004,0.0566433052457,0.0566433052457,0.05612436132,0.0624152329582,0.0608645657491,0.0647240042107,0.0620988023873,0.0608645657491,0.0162612839088,0.0163474766494,0.0163474766494,0.0769212874683,0.0955316760376,0.110150648586,0.115342736679,0.117559358926,0.117559358926,0.121048892983,0.134342356298,0.114265499704,0.0962832767358,0.0962832767358,0.092639152164,0.0285586581672,0.0291689475528,0.0291689475528,0.0933457228774,0.0933457228774,0.121048892983,0.100226100112,0.101895228693,0.101895228693,0.101053767176,0.0986108143979,0.092639152164,0.0769212874683,0.509162668329,0.0534321981769,0.0180726022185,0.0285586581672,0.0162827463578,0.0158436662822,0.142148401762,0.214429646696,0.214429646696,0.284218437251,0.147283463044);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetSelmerZodiacBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetSelmerZodiacBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetSelmerZodiacBass%7E.mxo/cabinetSelmerZodiacBass.dsp
|
faust
|
declare name "cabinetSelmerZodiacBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 135;
modeFrequencies=(77.767980854,99.9874039552,133.316538607,166.645673259,249.968509888,327.736490742,455.498173573,588.81471218,683.24726036,838.783222068,877.667212495,938.770626023,1083.19687618,1210.95855901,1344.27509762,1388.71394382,1488.70134778,1572.02418441,1638.68245371,1760.88928077,1849.76697317,2021.9675022,2094.18062728,2305.26514674,2405.2525507,2477.46567578,2538.56908931,2577.45307973,2716.32447412,2844.08615695,2888.52500315,3038.50610908,3155.15808036,3310.69404207,3355.13288827,3432.90086913,3588.43683084,3732.86308099,3860.62476382,4010.60586976,4138.36755259,4260.57437964,4393.89091825,4538.31716841,4671.63370702,4804.95024562,4943.82164001,4988.26048621,5021.58962086,5082.69303439,5171.57072679,5221.56442877,5277.11298652,5432.64894823,5543.74606374,5577.07519839,5715.94659277,5832.59856405,6004.79909308,6110.34135282,6165.88991057,6288.09673762,6415.85842046,6521.40068019,6549.17495906,6626.94293992,6721.3754881,6771.36919007,6854.6920267,6988.00856531,7038.00226729,7087.99596927,7476.83587354,7610.15241214,7693.47524877,7704.58496032,7743.46895075,7810.12722005,7860.12092203,7926.77919133,8026.76659529,8126.75399924,8171.19284545,8193.41226855,8293.3996725,8404.49678801,8443.38077844,8515.59390351,8571.14246127,8637.80073057,8671.12986522,8765.5624134,8837.77553848,8893.32409623,8971.09207709,9037.75034639,9298.82856783,9371.04169291,9421.03539489,9526.57765462,9648.78448167,9737.66217408,9793.21073183,9843.20443381,9854.31414536,9898.75299156,9926.52727044,10026.5146744,10093.1729437,10104.2826552,10159.831213,10237.5991939,10259.818617,10270.9283285,10454.2385691,10465.3482806,10576.4453961,10643.1036654,10709.7619348,10737.5362136,10759.7556367,10854.1881849,11004.1692908,11176.3698199,11304.1315027,11448.5577529,11537.4354453,11592.984003,11687.4165512,11804.0685225,12031.8176093,12148.4695806,12159.5792921,12259.5666961,12387.3283789);
massEigenValues=(0.133751749771,0.178320527187,0.18342710518,0.203022308116,0.295099266368,0.214586737144,0.348202498552,0.514538052109,0.354455747924,0.273746759635,0.271590564861,0.222413514147,0.116105103473,0.132008989137,0.330315618695,0.286048512869,0.299482176631,0.326902917171,0.276904562207,0.553705310921,0.492956753121,0.468186693976,0.368161053243,0.714910709869,1.0,0.926284629179,0.86855330131,0.82486455498,0.829740513719,0.655325863172,0.678432805864,0.602114486171,0.553070214801,0.43032713765,0.429679884948,0.603019797934,0.538640565728,0.640366960063,0.667031443904,0.395817223865,0.65157663573,0.686117554809,0.744770450392,0.49872043746,0.487611863606,0.391672218914,0.247810279659,0.22521753268,0.219326115483,0.217084117181,0.270847102917,0.272059794666,0.266781816405,0.199093361168,0.244366306403,0.253520215273,0.315959782916,0.195580879557,0.139188351558,0.101582567751,0.0978169375448,0.0542690564564,0.0752217723625,0.0881746719091,0.0855414963664,0.0891310181039,0.0718706503256,0.0643023624422,0.0489833326557,0.0258063105624,0.0214694476382,0.0255308053211,0.0105905332266,0.0173554315134,0.0163853506272,0.0161899866922,0.0162052851766,0.0182779501619,0.0176912872183,0.015665714686,0.0268373648007,0.0384424342354,0.0362732010586,0.0366689449935,0.0428670584158,0.0367472905351,0.03519333546,0.036716118796,0.0355260703983,0.0352216663475,0.034392926008,0.0410836920621,0.0392409754031,0.0446191449543,0.0403389382611,0.0390820022551,0.01497342999,0.0178110336851,0.0178803186551,0.0273679059461,0.035158759962,0.039513305562,0.042652753532,0.0438350820096,0.0438169396936,0.0451651126399,0.0464491719654,0.0413046599272,0.035747308048,0.0357860710543,0.0328114507259,0.0215355593653,0.0222109367543,0.0221558392151,0.0312170283154,0.0311235576489,0.0394456093012,0.037919792017,0.0391255036282,0.0387058993974,0.0384638812202,0.0360354633066,0.0302338350462,0.0280694871609,0.0288574133795,0.0252644440287,0.0197561444327,0.0215450029969,0.0156832165393,0.0108561442528,0.0114780082851,0.015154854521,0.0151128611159,0.0159759448192,0.0124139606139);
t60=(0.070296900655,0.0741270006123,0.555443060688,0.610979531587,0.581888999203,0.0879778188202,0.197143252978,0.872794323539,0.200373824908,0.112170323211,0.0905822463244,0.0879778188202,0.0624152329582,0.0163909182537,0.112170323211,0.109167860492,0.110150648586,0.112170323211,0.10820246688,0.436436337622,0.394208145712,0.0551145245097,0.0541404341589,0.0933457228774,0.160841826757,0.1328829652,0.128689136067,0.124752072014,0.124752072014,0.0855190935915,0.0879778188202,0.0719491006169,0.678857440537,0.0873499657672,0.0873499657672,0.222224238814,0.10450591701,0.277760708206,0.290983677212,0.0861207886704,0.177151163056,0.182436918149,0.271589989347,0.130057335639,0.581888999203,0.0826325834499,0.0168614661264,0.0168384443466,0.0168384443466,0.0168154856406,0.260036302995,0.260036302995,0.254620512528,0.939926321566,0.177151163056,0.182436918149,0.555443060688,0.162985339515,0.555443060688,0.011115588463,0.011115588463,0.939926321566,0.15875398966,0.172163197002,0.167448544174,0.172163197002,0.156719686852,0.135834178312,0.128689136067,0.00963882759044,0.00963135295812,0.00963882759044,0.939926321566,0.0163258425001,0.0162827463578,0.0162827463578,0.0162827463578,0.0163474766494,0.0163474766494,0.0162827463578,0.0539022755086,0.0602656873902,0.0571719490641,0.0577105673004,0.0633841991211,0.0577105673004,0.0566433052457,0.0577105673004,0.0566433052457,0.0566433052457,0.05612436132,0.0624152329582,0.0608645657491,0.0647240042107,0.0620988023873,0.0608645657491,0.0162612839088,0.0163474766494,0.0163474766494,0.0769212874683,0.0955316760376,0.110150648586,0.115342736679,0.117559358926,0.117559358926,0.121048892983,0.134342356298,0.114265499704,0.0962832767358,0.0962832767358,0.092639152164,0.0285586581672,0.0291689475528,0.0291689475528,0.0933457228774,0.0933457228774,0.121048892983,0.100226100112,0.101895228693,0.101895228693,0.101053767176,0.0986108143979,0.092639152164,0.0769212874683,0.509162668329,0.0534321981769,0.0180726022185,0.0285586581672,0.0162827463578,0.0158436662822,0.142148401762,0.214429646696,0.214429646696,0.284218437251,0.147283463044);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetSelmerZodiacBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetSelmerZodiacBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
fef5b8f013f34231db2af49055246ef11ebe53e0ba763ea6f9f48b0ed7a60beb
|
sebastien-clara/panoplie
|
cabinetFenderTweedTreble.dsp
|
declare name "cabinetFenderTweedTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 122;
modeFrequencies=(16.6645673259,38.883990427,122.206827056,183.310240584,266.633077214,327.736490742,416.614183146,488.827308225,544.375865978,616.588991057,727.686106563,755.460385439,877.667212495,1010.9837511,1088.75173196,1249.84254944,1372.0493765,1572.02418441,1722.00529034,1777.55384809,1833.10240584,1994.19322333,2016.41264643,2105.29033883,2166.39375236,2460.80110845,2510.79481043,2599.67250283,2699.65990679,2760.76332032,2866.30558005,3044.06096486,3077.39009951,3182.93235924,3321.80375362,3488.44942688,3627.32082126,3782.85678297,3921.72817735,4093.92870639,4160.58697569,4205.02582189,4243.90981232,4388.33606248,4432.77490868,4577.20115884,4727.18226477,4943.82164001,5038.25418818,5182.68043834,5282.6678423,5332.66154428,5577.07519839,5660.39803502,5771.49515052,5927.03111223,5960.36024688,6077.01221816,6093.67678549,6299.20644917,6338.0904396,6410.30356468,6488.07154553,6610.27837259,6765.8143343,6815.80803628,6954.67943066,7076.88625772,7099.10568082,7549.04899861,7560.15871017,7654.59125834,7665.7009699,7787.90779695,7832.34664315,7921.22433556,7932.33404711,7976.77289331,8004.54717219,8037.87630684,8048.98601839,8148.97342235,8160.0831339,8204.5219801,8221.18654742,8248.9608263,8337.83851871,8348.94823026,8415.60649956,8443.38077844,8471.15505731,8482.26476886,8587.80702859,8643.35558635,8676.684721,8726.67842298,8771.11726918,9071.07948104,9082.18919259,9093.29890414,9109.96347147,9132.18289457,9187.73145232,9204.39601965,9221.06058698,10104.2826552,10159.831213,10220.9346265,10237.5991939,10398.6900113,10432.019146,10465.3482806,10498.6774153,10520.8968384,10543.1162615,10559.7808288,10665.3230886,10687.5425117,10820.8590503,10843.0784734,10854.1881849,10937.5110215);
massEigenValues=(0.0151169184278,0.128447977019,0.18234880551,0.172255715818,0.29443375581,0.261643594716,0.227381227903,0.274509307112,0.265097646634,0.296105128007,0.203381472345,0.194958998583,0.191428838145,0.105178772493,0.27387278437,0.153623640688,0.246795711114,0.199601513205,0.227613653854,0.239990333849,0.239640314844,0.405383114066,0.413363434621,0.516175783128,0.531756557664,1.0,0.9859443608,0.874373652055,0.765948092301,0.845984014599,0.620678728824,0.632516326592,0.666705891979,0.768600061526,0.651127058081,0.739487132887,0.674895461952,0.446937843073,0.350054446569,0.21925981352,0.212032364176,0.216706978773,0.219257093409,0.178077429879,0.177162534367,0.172516246276,0.154806963507,0.193355957026,0.204212308253,0.172273829493,0.160989612208,0.164870815103,0.0731762742677,0.0725063186894,0.0625019571489,0.0832419208142,0.0834425390103,0.0727528979629,0.0729894134618,0.0323016613834,0.0326449675472,0.0277802958569,0.0258530996462,0.0165477200515,0.0120977767218,0.0152853103544,0.0252472859548,0.0290716642194,0.0286703325384,0.0129418068657,0.0130007409121,0.0130366704058,0.01306939579,0.0149636093071,0.0159393962194,0.0185017793064,0.0186496318998,0.0171994758712,0.0175769207231,0.0179093559937,0.0179618402387,0.0161859942591,0.0164185619968,0.0172317147705,0.017120825152,0.0177827392378,0.021600097974,0.0217014590539,0.0197384978783,0.0192880040766,0.0188032965038,0.0187222403361,0.0145631683405,0.0155284512444,0.0151860167699,0.0135670602402,0.0129874708032,0.0103986713391,0.0105617837574,0.0106102696306,0.0107854588038,0.0105988706378,0.0102293071846,0.0103161165852,0.0102007041562,0.0131083446432,0.0149902921164,0.0168204856251,0.0167226330821,0.0223712572846,0.0233293904203,0.0239084776378,0.0244326186657,0.0245123209334,0.0248481031151,0.0247714664025,0.0216518472074,0.020877967441,0.0151459094927,0.0153687123372,0.0150749215072,0.0119221258269);
t60=(0.0102432911015,6.10909018068,0.488799295711,0.452597744427,0.154736885385,0.150918156646,0.123492741768,0.152803653959,0.152803653959,0.156719686852,0.121048892983,0.119862907549,0.509162668329,0.0123950669059,0.678857440537,0.0153701226114,0.21825734818,0.018933427983,0.0213271777771,0.0215890448404,0.0215890448404,0.0325731514408,0.0344953722058,0.0362264002984,0.0365501132202,0.160841826757,0.15875398966,0.143819813862,0.112170323211,0.12225859813,0.0458387776637,0.0461841387497,0.092639152164,0.185199926501,0.0912576482394,0.254620512528,0.0933457228774,0.0350870669275,0.0317313203742,0.0205099225201,0.0204418179293,0.0204758133759,0.0205099225201,0.0155052748597,0.0155052748597,0.0154858213102,0.0153701226114,0.119862907549,0.127349440656,0.0154858213102,0.0154084952857,0.0154470610316,0.0110758517488,0.0110758517488,0.0110265814344,0.194015238893,0.194015238893,0.0110758517488,0.0110758517488,0.0105212958668,0.0105302287663,0.0104768594476,0.010459190593,0.0102687236562,0.117559358926,0.126037367835,0.203712082574,0.260036302995,0.260036302995,0.0491467545253,0.0491467545253,0.0491467545253,0.0491467545253,0.0514146184385,0.0569063977498,0.0675812681922,0.0679562840982,0.0630578806178,0.0643837642314,0.0650678637661,0.0650678637661,0.0574399938194,0.0574399938194,0.0630578806178,0.0630578806178,0.0643837642314,0.152803653959,0.154736885385,0.0719491006169,0.0711133948183,0.0691067566345,0.0687189569013,0.0511998226482,0.0518496709334,0.051631226853,0.0503583181664,0.0491467545253,0.0335524432477,0.0335524432477,0.0335524432477,0.034111896908,0.0335524432477,0.0324012219143,0.0334609842965,0.0172386095044,0.0683354901278,0.0745785164711,0.0799347341566,0.0783990353539,0.114265499704,0.118699950961,0.131454958861,0.135834178312,0.137359524421,0.13891953749,0.137359524421,0.10820246688,0.0947917280661,0.0745785164711,0.0745785164711,0.0745785164711,0.0485626077877);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderTweedTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderTweedTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetFenderTweedTreble%7E.mxo/cabinetFenderTweedTreble.dsp
|
faust
|
declare name "cabinetFenderTweedTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 122;
modeFrequencies=(16.6645673259,38.883990427,122.206827056,183.310240584,266.633077214,327.736490742,416.614183146,488.827308225,544.375865978,616.588991057,727.686106563,755.460385439,877.667212495,1010.9837511,1088.75173196,1249.84254944,1372.0493765,1572.02418441,1722.00529034,1777.55384809,1833.10240584,1994.19322333,2016.41264643,2105.29033883,2166.39375236,2460.80110845,2510.79481043,2599.67250283,2699.65990679,2760.76332032,2866.30558005,3044.06096486,3077.39009951,3182.93235924,3321.80375362,3488.44942688,3627.32082126,3782.85678297,3921.72817735,4093.92870639,4160.58697569,4205.02582189,4243.90981232,4388.33606248,4432.77490868,4577.20115884,4727.18226477,4943.82164001,5038.25418818,5182.68043834,5282.6678423,5332.66154428,5577.07519839,5660.39803502,5771.49515052,5927.03111223,5960.36024688,6077.01221816,6093.67678549,6299.20644917,6338.0904396,6410.30356468,6488.07154553,6610.27837259,6765.8143343,6815.80803628,6954.67943066,7076.88625772,7099.10568082,7549.04899861,7560.15871017,7654.59125834,7665.7009699,7787.90779695,7832.34664315,7921.22433556,7932.33404711,7976.77289331,8004.54717219,8037.87630684,8048.98601839,8148.97342235,8160.0831339,8204.5219801,8221.18654742,8248.9608263,8337.83851871,8348.94823026,8415.60649956,8443.38077844,8471.15505731,8482.26476886,8587.80702859,8643.35558635,8676.684721,8726.67842298,8771.11726918,9071.07948104,9082.18919259,9093.29890414,9109.96347147,9132.18289457,9187.73145232,9204.39601965,9221.06058698,10104.2826552,10159.831213,10220.9346265,10237.5991939,10398.6900113,10432.019146,10465.3482806,10498.6774153,10520.8968384,10543.1162615,10559.7808288,10665.3230886,10687.5425117,10820.8590503,10843.0784734,10854.1881849,10937.5110215);
massEigenValues=(0.0151169184278,0.128447977019,0.18234880551,0.172255715818,0.29443375581,0.261643594716,0.227381227903,0.274509307112,0.265097646634,0.296105128007,0.203381472345,0.194958998583,0.191428838145,0.105178772493,0.27387278437,0.153623640688,0.246795711114,0.199601513205,0.227613653854,0.239990333849,0.239640314844,0.405383114066,0.413363434621,0.516175783128,0.531756557664,1.0,0.9859443608,0.874373652055,0.765948092301,0.845984014599,0.620678728824,0.632516326592,0.666705891979,0.768600061526,0.651127058081,0.739487132887,0.674895461952,0.446937843073,0.350054446569,0.21925981352,0.212032364176,0.216706978773,0.219257093409,0.178077429879,0.177162534367,0.172516246276,0.154806963507,0.193355957026,0.204212308253,0.172273829493,0.160989612208,0.164870815103,0.0731762742677,0.0725063186894,0.0625019571489,0.0832419208142,0.0834425390103,0.0727528979629,0.0729894134618,0.0323016613834,0.0326449675472,0.0277802958569,0.0258530996462,0.0165477200515,0.0120977767218,0.0152853103544,0.0252472859548,0.0290716642194,0.0286703325384,0.0129418068657,0.0130007409121,0.0130366704058,0.01306939579,0.0149636093071,0.0159393962194,0.0185017793064,0.0186496318998,0.0171994758712,0.0175769207231,0.0179093559937,0.0179618402387,0.0161859942591,0.0164185619968,0.0172317147705,0.017120825152,0.0177827392378,0.021600097974,0.0217014590539,0.0197384978783,0.0192880040766,0.0188032965038,0.0187222403361,0.0145631683405,0.0155284512444,0.0151860167699,0.0135670602402,0.0129874708032,0.0103986713391,0.0105617837574,0.0106102696306,0.0107854588038,0.0105988706378,0.0102293071846,0.0103161165852,0.0102007041562,0.0131083446432,0.0149902921164,0.0168204856251,0.0167226330821,0.0223712572846,0.0233293904203,0.0239084776378,0.0244326186657,0.0245123209334,0.0248481031151,0.0247714664025,0.0216518472074,0.020877967441,0.0151459094927,0.0153687123372,0.0150749215072,0.0119221258269);
t60=(0.0102432911015,6.10909018068,0.488799295711,0.452597744427,0.154736885385,0.150918156646,0.123492741768,0.152803653959,0.152803653959,0.156719686852,0.121048892983,0.119862907549,0.509162668329,0.0123950669059,0.678857440537,0.0153701226114,0.21825734818,0.018933427983,0.0213271777771,0.0215890448404,0.0215890448404,0.0325731514408,0.0344953722058,0.0362264002984,0.0365501132202,0.160841826757,0.15875398966,0.143819813862,0.112170323211,0.12225859813,0.0458387776637,0.0461841387497,0.092639152164,0.185199926501,0.0912576482394,0.254620512528,0.0933457228774,0.0350870669275,0.0317313203742,0.0205099225201,0.0204418179293,0.0204758133759,0.0205099225201,0.0155052748597,0.0155052748597,0.0154858213102,0.0153701226114,0.119862907549,0.127349440656,0.0154858213102,0.0154084952857,0.0154470610316,0.0110758517488,0.0110758517488,0.0110265814344,0.194015238893,0.194015238893,0.0110758517488,0.0110758517488,0.0105212958668,0.0105302287663,0.0104768594476,0.010459190593,0.0102687236562,0.117559358926,0.126037367835,0.203712082574,0.260036302995,0.260036302995,0.0491467545253,0.0491467545253,0.0491467545253,0.0491467545253,0.0514146184385,0.0569063977498,0.0675812681922,0.0679562840982,0.0630578806178,0.0643837642314,0.0650678637661,0.0650678637661,0.0574399938194,0.0574399938194,0.0630578806178,0.0630578806178,0.0643837642314,0.152803653959,0.154736885385,0.0719491006169,0.0711133948183,0.0691067566345,0.0687189569013,0.0511998226482,0.0518496709334,0.051631226853,0.0503583181664,0.0491467545253,0.0335524432477,0.0335524432477,0.0335524432477,0.034111896908,0.0335524432477,0.0324012219143,0.0334609842965,0.0172386095044,0.0683354901278,0.0745785164711,0.0799347341566,0.0783990353539,0.114265499704,0.118699950961,0.131454958861,0.135834178312,0.137359524421,0.13891953749,0.137359524421,0.10820246688,0.0947917280661,0.0745785164711,0.0745785164711,0.0745785164711,0.0485626077877);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderTweedTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderTweedTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
b643d16b39ca28e2e15240f6b4bbe3c0a7964935a3502c253cf5ae368455f74d
|
sebastien-clara/panoplie
|
cabinetMarshallGreenBass.dsp
|
declare name "cabinetMarshallGreenBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 136;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,177.755384809,227.749086787,333.291346517,477.717596675,583.259856405,633.253558383,716.576395012,799.899231641,877.667212495,944.325481799,1049.86774153,1066.53230886,1199.84884746,1344.27509762,1444.26250157,1599.79846328,1716.45043456,1899.76067515,2044.18692531,2133.06461771,2171.94860814,2271.93601209,2316.37485829,2338.5942814,2438.58168535,2616.33707016,2738.54389722,2882.97014737,3038.50610908,3171.82264769,3316.24889785,3427.34601335,3499.55913843,3560.66255196,3643.98538859,3710.64365789,3771.74707142,3843.9601965,3943.94760045,3993.94130243,4121.70298526,4143.92240836,4299.45837007,4427.2200529,4560.53659151,4699.40798589,4782.73082252,4849.38909183,4916.04736113,4954.93135156,4988.26048621,5049.36389974,5154.90615947,5310.44212117,5449.31351556,5610.40433304,5677.06260234,5760.38543897,5843.7082756,5893.70197758,5993.68938153,6065.90250661,6132.56077592,6276.98702607,6421.41327623,6582.50409371,6715.82063232,6865.80173825,6954.67943066,7021.33769996,7065.77654616,7154.65423857,7204.64794055,7221.31250787,7254.64164252,7354.62904648,7393.51303691,7521.27471974,7660.14611412,7749.02380652,7810.12722005,7876.78548936,7943.44375866,8026.76659529,8065.65058572,8132.30885502,8260.07053785,8376.72250913,8510.03904774,8637.80073057,8698.9041441,8710.01385565,8771.11726918,8859.99496158,8921.09837511,9009.97606751,9165.51202922,9309.93827938,9326.60284671,9343.26741403,9482.13880841,9626.56505857,9682.11361632,9770.99130873,9820.98501071,9954.30154931,10059.843809,10098.7277995,10193.1603477,10293.1477516,10343.1414536,10420.9094344,10498.6774153,10537.5614057,10615.3293866,10787.5299156,10798.6396272,10893.0721753,10926.40131,11087.4921275,11315.2412143,11404.1189067,11465.2223202,11520.7708779,11559.6548684,11648.5325608,11709.6359743,11776.2942436,11931.8302053,12092.9210228,13987.1268422,13998.2365537,14009.3462653);
massEigenValues=(0.123052884796,0.498315536885,0.611358959639,0.61849014589,0.690803145016,0.968170100874,1.0,0.496523218614,0.936549435352,0.828000066577,0.439588287974,0.590845353864,0.368850257232,0.30171714126,0.303114164722,0.703667791179,0.379765241719,0.394734095196,0.390460882299,0.728296431809,0.279269349644,0.367798935366,0.529757474119,0.523905354945,0.54949109602,0.495657220549,0.502664302678,0.56931723495,0.609135517046,0.618383983886,0.496143637842,0.564849532732,0.428390153623,0.447713436884,0.30622270879,0.272285494389,0.226376445695,0.420943122846,0.242370458912,0.283535122351,0.317969491043,0.38104511755,0.387406904899,0.310296920858,0.315570315747,0.232477214068,0.324405753678,0.175935660051,0.204088432342,0.180658543041,0.26008870795,0.128715114789,0.14768743944,0.156909114402,0.190344557183,0.205898288591,0.236038681858,0.184460718619,0.110598195794,0.108955271735,0.134253114742,0.0635321866437,0.0886425447369,0.0664771001847,0.0486939439063,0.0767648293095,0.0677552404125,0.0708055057411,0.066449332078,0.0577475272103,0.0440356409413,0.0305142526388,0.0358739939733,0.0335400130037,0.0257322543845,0.020092917866,0.0202060530078,0.0199657960868,0.0163201498478,0.0149902503442,0.0216136283104,0.0234946822961,0.01855987334,0.0219730668716,0.0166866868581,0.0195783342372,0.0186182874747,0.0203295791288,0.0202341883035,0.0270410664981,0.0351254818892,0.0433796414861,0.0384536073209,0.029959316293,0.0300556880661,0.0324854548265,0.0335435085779,0.0342875029357,0.0373916911819,0.0372012891033,0.0338959362766,0.0334764131203,0.0332039922192,0.0424637773841,0.0437325413689,0.0313633800205,0.031379702718,0.0350825700133,0.0354682642305,0.0254944239142,0.0270829577524,0.0240985686023,0.0305442704795,0.0285920009563,0.0350485129231,0.0334035129567,0.0355603853228,0.0414450315374,0.0420462241472,0.0421221925345,0.0439655585157,0.0449866789854,0.0435942722054,0.0231173145164,0.0237041244828,0.0213389850099,0.0199864887921,0.0213234289382,0.0225266851197,0.0229985693829,0.0261150259212,0.0214770222592,0.0100833570403,0.0111286893468,0.0111115694336,0.0110201695668);
t60=(4.07275290229,0.0794161865068,0.160841826757,0.160841826757,0.172163197002,0.678857440537,0.814613258605,0.0794161865068,1.22188071348,0.407345805406,0.0774076348716,0.188047950499,0.075966717416,0.872794323539,0.872794323539,0.470002336384,0.169773129941,0.172163197002,0.194015238893,0.509162668329,0.0227044048583,0.070702787926,0.610979531587,0.610979531587,0.555443060688,0.531296769015,0.531296769015,0.763704826809,0.555443060688,0.763704826809,0.678857440537,0.872794323539,0.939926321566,0.643132225291,0.239647444806,0.13891953749,0.0165448081019,0.872794323539,0.135834178312,0.152803653959,0.179755174754,0.436436337622,0.452597744427,0.177151163056,0.179755174754,0.718785622302,0.814613258605,1.11080777118,0.814613258605,0.290983677212,0.939926321566,0.152803653959,0.156719686852,0.15875398966,0.470002336384,0.763704826809,0.718785622302,0.763704826809,0.321605289754,0.313361009441,1.11080777118,0.143819813862,0.763704826809,0.145531021491,0.0365501132202,0.814613258605,0.763704826809,0.718785622302,0.939926321566,0.939926321566,0.763704826809,0.1328829652,0.150918156646,0.147283463044,0.00948427710603,0.00945540374694,0.00945540374694,0.00945540374694,0.763704826809,0.678857440537,0.872794323539,0.643132225291,0.0155247775969,0.239647444806,0.0154664167625,0.0155443297085,0.0155247775969,0.0167016292076,0.0167016292076,0.0213271777771,0.0398765187876,0.210733934924,0.13891953749,0.0349870423412,0.0350870669275,0.0374423861913,0.039491376167,0.039747304271,0.0732401910273,0.0732401910273,0.0396189260953,0.039491376167,0.0375569994801,0.21825734818,0.239647444806,0.0351876663687,0.0351876663687,0.039747304271,0.0400065778447,0.0183963329319,0.0213271777771,0.0178630647651,0.0608645657491,0.0558684437699,0.0657666751259,0.0647240042107,0.0657666751259,0.0804601048041,0.0809924340054,0.0809924340054,0.0826325834499,0.0905822463244,0.0820785284899,0.0167925897496,0.017837215216,0.0167469853842,0.0166790435579,0.0167469853842,0.0167925897496,0.0167925897496,0.0184514239551,0.0167469853842,0.814613258605,0.555443060688,0.555443060688,0.555443060688);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallGreenBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallGreenBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallGreenBass%7E.mxo/cabinetMarshallGreenBass.dsp
|
faust
|
declare name "cabinetMarshallGreenBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 136;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,177.755384809,227.749086787,333.291346517,477.717596675,583.259856405,633.253558383,716.576395012,799.899231641,877.667212495,944.325481799,1049.86774153,1066.53230886,1199.84884746,1344.27509762,1444.26250157,1599.79846328,1716.45043456,1899.76067515,2044.18692531,2133.06461771,2171.94860814,2271.93601209,2316.37485829,2338.5942814,2438.58168535,2616.33707016,2738.54389722,2882.97014737,3038.50610908,3171.82264769,3316.24889785,3427.34601335,3499.55913843,3560.66255196,3643.98538859,3710.64365789,3771.74707142,3843.9601965,3943.94760045,3993.94130243,4121.70298526,4143.92240836,4299.45837007,4427.2200529,4560.53659151,4699.40798589,4782.73082252,4849.38909183,4916.04736113,4954.93135156,4988.26048621,5049.36389974,5154.90615947,5310.44212117,5449.31351556,5610.40433304,5677.06260234,5760.38543897,5843.7082756,5893.70197758,5993.68938153,6065.90250661,6132.56077592,6276.98702607,6421.41327623,6582.50409371,6715.82063232,6865.80173825,6954.67943066,7021.33769996,7065.77654616,7154.65423857,7204.64794055,7221.31250787,7254.64164252,7354.62904648,7393.51303691,7521.27471974,7660.14611412,7749.02380652,7810.12722005,7876.78548936,7943.44375866,8026.76659529,8065.65058572,8132.30885502,8260.07053785,8376.72250913,8510.03904774,8637.80073057,8698.9041441,8710.01385565,8771.11726918,8859.99496158,8921.09837511,9009.97606751,9165.51202922,9309.93827938,9326.60284671,9343.26741403,9482.13880841,9626.56505857,9682.11361632,9770.99130873,9820.98501071,9954.30154931,10059.843809,10098.7277995,10193.1603477,10293.1477516,10343.1414536,10420.9094344,10498.6774153,10537.5614057,10615.3293866,10787.5299156,10798.6396272,10893.0721753,10926.40131,11087.4921275,11315.2412143,11404.1189067,11465.2223202,11520.7708779,11559.6548684,11648.5325608,11709.6359743,11776.2942436,11931.8302053,12092.9210228,13987.1268422,13998.2365537,14009.3462653);
massEigenValues=(0.123052884796,0.498315536885,0.611358959639,0.61849014589,0.690803145016,0.968170100874,1.0,0.496523218614,0.936549435352,0.828000066577,0.439588287974,0.590845353864,0.368850257232,0.30171714126,0.303114164722,0.703667791179,0.379765241719,0.394734095196,0.390460882299,0.728296431809,0.279269349644,0.367798935366,0.529757474119,0.523905354945,0.54949109602,0.495657220549,0.502664302678,0.56931723495,0.609135517046,0.618383983886,0.496143637842,0.564849532732,0.428390153623,0.447713436884,0.30622270879,0.272285494389,0.226376445695,0.420943122846,0.242370458912,0.283535122351,0.317969491043,0.38104511755,0.387406904899,0.310296920858,0.315570315747,0.232477214068,0.324405753678,0.175935660051,0.204088432342,0.180658543041,0.26008870795,0.128715114789,0.14768743944,0.156909114402,0.190344557183,0.205898288591,0.236038681858,0.184460718619,0.110598195794,0.108955271735,0.134253114742,0.0635321866437,0.0886425447369,0.0664771001847,0.0486939439063,0.0767648293095,0.0677552404125,0.0708055057411,0.066449332078,0.0577475272103,0.0440356409413,0.0305142526388,0.0358739939733,0.0335400130037,0.0257322543845,0.020092917866,0.0202060530078,0.0199657960868,0.0163201498478,0.0149902503442,0.0216136283104,0.0234946822961,0.01855987334,0.0219730668716,0.0166866868581,0.0195783342372,0.0186182874747,0.0203295791288,0.0202341883035,0.0270410664981,0.0351254818892,0.0433796414861,0.0384536073209,0.029959316293,0.0300556880661,0.0324854548265,0.0335435085779,0.0342875029357,0.0373916911819,0.0372012891033,0.0338959362766,0.0334764131203,0.0332039922192,0.0424637773841,0.0437325413689,0.0313633800205,0.031379702718,0.0350825700133,0.0354682642305,0.0254944239142,0.0270829577524,0.0240985686023,0.0305442704795,0.0285920009563,0.0350485129231,0.0334035129567,0.0355603853228,0.0414450315374,0.0420462241472,0.0421221925345,0.0439655585157,0.0449866789854,0.0435942722054,0.0231173145164,0.0237041244828,0.0213389850099,0.0199864887921,0.0213234289382,0.0225266851197,0.0229985693829,0.0261150259212,0.0214770222592,0.0100833570403,0.0111286893468,0.0111115694336,0.0110201695668);
t60=(4.07275290229,0.0794161865068,0.160841826757,0.160841826757,0.172163197002,0.678857440537,0.814613258605,0.0794161865068,1.22188071348,0.407345805406,0.0774076348716,0.188047950499,0.075966717416,0.872794323539,0.872794323539,0.470002336384,0.169773129941,0.172163197002,0.194015238893,0.509162668329,0.0227044048583,0.070702787926,0.610979531587,0.610979531587,0.555443060688,0.531296769015,0.531296769015,0.763704826809,0.555443060688,0.763704826809,0.678857440537,0.872794323539,0.939926321566,0.643132225291,0.239647444806,0.13891953749,0.0165448081019,0.872794323539,0.135834178312,0.152803653959,0.179755174754,0.436436337622,0.452597744427,0.177151163056,0.179755174754,0.718785622302,0.814613258605,1.11080777118,0.814613258605,0.290983677212,0.939926321566,0.152803653959,0.156719686852,0.15875398966,0.470002336384,0.763704826809,0.718785622302,0.763704826809,0.321605289754,0.313361009441,1.11080777118,0.143819813862,0.763704826809,0.145531021491,0.0365501132202,0.814613258605,0.763704826809,0.718785622302,0.939926321566,0.939926321566,0.763704826809,0.1328829652,0.150918156646,0.147283463044,0.00948427710603,0.00945540374694,0.00945540374694,0.00945540374694,0.763704826809,0.678857440537,0.872794323539,0.643132225291,0.0155247775969,0.239647444806,0.0154664167625,0.0155443297085,0.0155247775969,0.0167016292076,0.0167016292076,0.0213271777771,0.0398765187876,0.210733934924,0.13891953749,0.0349870423412,0.0350870669275,0.0374423861913,0.039491376167,0.039747304271,0.0732401910273,0.0732401910273,0.0396189260953,0.039491376167,0.0375569994801,0.21825734818,0.239647444806,0.0351876663687,0.0351876663687,0.039747304271,0.0400065778447,0.0183963329319,0.0213271777771,0.0178630647651,0.0608645657491,0.0558684437699,0.0657666751259,0.0647240042107,0.0657666751259,0.0804601048041,0.0809924340054,0.0809924340054,0.0826325834499,0.0905822463244,0.0820785284899,0.0167925897496,0.017837215216,0.0167469853842,0.0166790435579,0.0167469853842,0.0167925897496,0.0167925897496,0.0184514239551,0.0167469853842,0.814613258605,0.555443060688,0.555443060688,0.555443060688);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallGreenBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallGreenBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
f89f1699af13fd4f7113905ab2eb264ab09e89a4926a13ce4c5aaf5836e39637
|
sebastien-clara/panoplie
|
cabinetSelmerZodiacTreble.dsp
|
declare name "cabinetSelmerZodiacTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 135;
modeFrequencies=(77.767980854,99.9874039552,127.761682832,244.413654113,466.607885124,599.924423731,699.911827686,883.222068271,949.880337574,1105.41629928,1199.84884746,1338.72024184,1483.146492,1572.02418441,1638.68245371,1760.88928077,1783.10870387,1827.54755007,2005.30293488,2194.16803124,2333.03942562,2399.69769492,2471.91082,2583.00793551,2755.20846454,2877.4152916,3032.95125331,3155.15808036,3294.02947474,3427.34601335,3571.77226351,3627.32082126,3716.19851367,3855.06990805,3905.06361003,3982.83159088,4155.03211991,4205.02582189,4282.79380275,4360.5617836,4427.2200529,4488.32346643,4549.42687996,4577.20115884,4638.30457236,4704.96284167,4782.73082252,4916.04736113,4999.37019776,5138.24159214,5266.00327497,5354.88096738,5404.87466935,5504.86207331,5560.41063106,5632.62375614,5665.95289079,5754.8305832,5899.25683335,6038.12822774,6171.44476634,6210.32875677,6304.76130495,6432.52298778,6460.29726666,6565.83952639,6610.27837259,6676.93664189,6738.04005542,6804.69832473,6926.90515178,7043.55712306,7110.21539237,7404.62274846,7432.39702733,7521.27471974,7571.26842172,7676.81068145,8121.19914347,8432.27106688,8482.26476886,8537.81332662,8604.47159592,8643.35558635,8654.4652979,8782.22698073,8887.76924046,9054.41491372,9065.52462527,9098.85375992,9143.29260612,9176.62174077,9215.5057312,9337.71255826,9398.81597178,9471.02909686,9482.13880841,9543.24222194,9632.11991435,9704.33303943,9770.99130873,9859.86900113,9932.08212621,9976.52097241,10004.2952513,10098.7277995,10143.1666457,10248.7089054,10259.818617,10298.7026074,10387.5802998,10437.5740018,10454.2385691,10548.6711173,10570.8905404,10609.7745308,10665.3230886,10681.9876559,10726.4265021,10759.7556367,10893.0721753,11037.4984255,11115.2664063,11187.4795314,11287.4669354,11320.79607,11487.4417433,11659.6422723,11981.8239073,11992.9336188,12070.7015997,12120.6953017,12192.9084268,12237.347273,12670.6260234);
massEigenValues=(0.0531510349204,0.0638763151419,0.0597394941764,0.0361542539822,0.0527545825277,0.217375980404,0.308711560195,0.345796028759,0.350850763454,0.335448916629,0.318960226633,0.38537479472,0.260644723012,0.273560130315,0.206998779545,0.48733974403,0.489207711983,0.446611087964,0.435676512612,0.546018384835,0.875907340258,1.0,0.949813881965,0.900516419889,0.925133010027,0.78746095158,0.729904384064,0.649750496755,0.455310297315,0.648547692834,0.486792296099,0.397194185621,0.544312042232,0.62385298186,0.525604170565,0.402533395818,0.424430742646,0.41703655217,0.356255686093,0.446688374528,0.401144135689,0.355281570621,0.334855399566,0.319469041235,0.360253236035,0.453259275745,0.371318320786,0.242883201204,0.399492672838,0.522103770019,0.510852435415,0.232361180375,0.291887774539,0.17193331471,0.211610974746,0.24338177641,0.231079819607,0.241020581682,0.130166299348,0.15062615528,0.112158092134,0.0944271319694,0.100061269743,0.0706881602954,0.0730598689416,0.0948035728216,0.0904404471813,0.0971141653846,0.0805787449482,0.0791195842472,0.0577420722393,0.0453680763659,0.0333530420079,0.0137033436489,0.0152494140267,0.0159528495937,0.0152569870976,0.0188296907192,0.012599264802,0.0169691379188,0.0196975559332,0.0199193791381,0.0200440573565,0.0178002893921,0.0176310495699,0.0287754398359,0.0308449904739,0.0310606966453,0.0309602502309,0.029474275594,0.0239541833644,0.0272490964202,0.0277670835329,0.0168754181705,0.0157564627831,0.0173947698218,0.0176368784574,0.0201477334593,0.027449190386,0.0318882834731,0.0332981826366,0.0389415107345,0.0334563333175,0.0346440177888,0.0334150083155,0.0281322899787,0.0288327062532,0.0296001529546,0.0295920669994,0.0296622185636,0.0363431680044,0.034072659089,0.0337736524537,0.0409845111342,0.0408684676983,0.039308900535,0.0380946785279,0.0380233578103,0.0359945055428,0.0375859585576,0.0308313402194,0.0274162739984,0.0229056433232,0.0231763778444,0.0223025161727,0.0207157544582,0.0176980054244,0.0101611059294,0.0133217631656,0.0131495915108,0.0133752741651,0.01372604488,0.011885325704,0.012000418943,0.0108106711979);
t60=(0.509162668329,0.555443060688,0.509162668329,1.52733130493,0.046534752481,0.051631226853,0.678857440537,0.339467897125,0.349164741141,0.370321491753,0.359431987757,0.643132225291,0.185199926501,0.190984975253,0.0514146184385,0.814613258605,0.814613258605,0.470002336384,0.678857440537,0.0715288041324,0.123492741768,0.169773129941,0.128689136067,0.124752072014,0.126037367835,0.0986108143979,0.718785622302,0.814613258605,0.0886147711953,0.678857440537,0.0986108143979,0.0855190935915,0.24443882647,0.26568756262,0.110150648586,0.0861207886704,0.130057335639,0.130057335639,0.0412165212447,0.177151163056,0.0843406011682,0.0412165212447,0.0402692629172,0.039747304271,0.0413555012354,0.290983677212,0.0416362975468,0.0194414038552,0.194015238893,0.763704826809,0.678857440537,0.0194107664379,0.0307000246968,0.190984975253,0.207163501523,0.235040347058,0.21825734818,0.226338051331,0.0170244066974,1.01824698596,0.678857440537,0.555443060688,0.718785622302,0.718785622302,0.763704826809,0.214429646696,0.207163501523,0.222224238814,0.185199926501,0.182436918149,0.100226100112,0.0130902417096,0.0130213244336,0.763704826809,0.763704826809,0.581888999203,0.531296769015,0.814613258605,1.22188071348,0.0211077426013,0.0637139167773,0.0732401910273,0.0736809247056,0.0212535256447,0.0212168907181,0.126037367835,0.128689136067,0.128689136067,0.128689136067,0.126037367835,0.119862907549,0.124752072014,0.124752072014,0.0211077426013,0.0209639531812,0.0211803823377,0.0212168907181,0.0324012219143,0.039747304271,0.115342736679,0.115342736679,0.179755174754,0.116440492457,0.118699950961,0.115342736679,0.0405354272667,0.0446697178213,0.0451633482481,0.0451633482481,0.0451633482481,0.114265499704,0.0919432065767,0.0919432065767,0.145531021491,0.145531021491,0.142148401762,0.13891953749,0.137359524421,0.0947917280661,0.137359524421,0.075966717416,0.039747304271,0.034592595112,0.034592595112,0.0343025603945,0.0324869586538,0.0212168907181,0.0195960591962,0.179755174754,0.177151163056,0.182436918149,0.197143252978,0.135834178312,0.137359524421,0.0711133948183);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetSelmerZodiacTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetSelmerZodiacTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetSelmerZodiacTreble%7E.mxo/cabinetSelmerZodiacTreble.dsp
|
faust
|
declare name "cabinetSelmerZodiacTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 135;
modeFrequencies=(77.767980854,99.9874039552,127.761682832,244.413654113,466.607885124,599.924423731,699.911827686,883.222068271,949.880337574,1105.41629928,1199.84884746,1338.72024184,1483.146492,1572.02418441,1638.68245371,1760.88928077,1783.10870387,1827.54755007,2005.30293488,2194.16803124,2333.03942562,2399.69769492,2471.91082,2583.00793551,2755.20846454,2877.4152916,3032.95125331,3155.15808036,3294.02947474,3427.34601335,3571.77226351,3627.32082126,3716.19851367,3855.06990805,3905.06361003,3982.83159088,4155.03211991,4205.02582189,4282.79380275,4360.5617836,4427.2200529,4488.32346643,4549.42687996,4577.20115884,4638.30457236,4704.96284167,4782.73082252,4916.04736113,4999.37019776,5138.24159214,5266.00327497,5354.88096738,5404.87466935,5504.86207331,5560.41063106,5632.62375614,5665.95289079,5754.8305832,5899.25683335,6038.12822774,6171.44476634,6210.32875677,6304.76130495,6432.52298778,6460.29726666,6565.83952639,6610.27837259,6676.93664189,6738.04005542,6804.69832473,6926.90515178,7043.55712306,7110.21539237,7404.62274846,7432.39702733,7521.27471974,7571.26842172,7676.81068145,8121.19914347,8432.27106688,8482.26476886,8537.81332662,8604.47159592,8643.35558635,8654.4652979,8782.22698073,8887.76924046,9054.41491372,9065.52462527,9098.85375992,9143.29260612,9176.62174077,9215.5057312,9337.71255826,9398.81597178,9471.02909686,9482.13880841,9543.24222194,9632.11991435,9704.33303943,9770.99130873,9859.86900113,9932.08212621,9976.52097241,10004.2952513,10098.7277995,10143.1666457,10248.7089054,10259.818617,10298.7026074,10387.5802998,10437.5740018,10454.2385691,10548.6711173,10570.8905404,10609.7745308,10665.3230886,10681.9876559,10726.4265021,10759.7556367,10893.0721753,11037.4984255,11115.2664063,11187.4795314,11287.4669354,11320.79607,11487.4417433,11659.6422723,11981.8239073,11992.9336188,12070.7015997,12120.6953017,12192.9084268,12237.347273,12670.6260234);
massEigenValues=(0.0531510349204,0.0638763151419,0.0597394941764,0.0361542539822,0.0527545825277,0.217375980404,0.308711560195,0.345796028759,0.350850763454,0.335448916629,0.318960226633,0.38537479472,0.260644723012,0.273560130315,0.206998779545,0.48733974403,0.489207711983,0.446611087964,0.435676512612,0.546018384835,0.875907340258,1.0,0.949813881965,0.900516419889,0.925133010027,0.78746095158,0.729904384064,0.649750496755,0.455310297315,0.648547692834,0.486792296099,0.397194185621,0.544312042232,0.62385298186,0.525604170565,0.402533395818,0.424430742646,0.41703655217,0.356255686093,0.446688374528,0.401144135689,0.355281570621,0.334855399566,0.319469041235,0.360253236035,0.453259275745,0.371318320786,0.242883201204,0.399492672838,0.522103770019,0.510852435415,0.232361180375,0.291887774539,0.17193331471,0.211610974746,0.24338177641,0.231079819607,0.241020581682,0.130166299348,0.15062615528,0.112158092134,0.0944271319694,0.100061269743,0.0706881602954,0.0730598689416,0.0948035728216,0.0904404471813,0.0971141653846,0.0805787449482,0.0791195842472,0.0577420722393,0.0453680763659,0.0333530420079,0.0137033436489,0.0152494140267,0.0159528495937,0.0152569870976,0.0188296907192,0.012599264802,0.0169691379188,0.0196975559332,0.0199193791381,0.0200440573565,0.0178002893921,0.0176310495699,0.0287754398359,0.0308449904739,0.0310606966453,0.0309602502309,0.029474275594,0.0239541833644,0.0272490964202,0.0277670835329,0.0168754181705,0.0157564627831,0.0173947698218,0.0176368784574,0.0201477334593,0.027449190386,0.0318882834731,0.0332981826366,0.0389415107345,0.0334563333175,0.0346440177888,0.0334150083155,0.0281322899787,0.0288327062532,0.0296001529546,0.0295920669994,0.0296622185636,0.0363431680044,0.034072659089,0.0337736524537,0.0409845111342,0.0408684676983,0.039308900535,0.0380946785279,0.0380233578103,0.0359945055428,0.0375859585576,0.0308313402194,0.0274162739984,0.0229056433232,0.0231763778444,0.0223025161727,0.0207157544582,0.0176980054244,0.0101611059294,0.0133217631656,0.0131495915108,0.0133752741651,0.01372604488,0.011885325704,0.012000418943,0.0108106711979);
t60=(0.509162668329,0.555443060688,0.509162668329,1.52733130493,0.046534752481,0.051631226853,0.678857440537,0.339467897125,0.349164741141,0.370321491753,0.359431987757,0.643132225291,0.185199926501,0.190984975253,0.0514146184385,0.814613258605,0.814613258605,0.470002336384,0.678857440537,0.0715288041324,0.123492741768,0.169773129941,0.128689136067,0.124752072014,0.126037367835,0.0986108143979,0.718785622302,0.814613258605,0.0886147711953,0.678857440537,0.0986108143979,0.0855190935915,0.24443882647,0.26568756262,0.110150648586,0.0861207886704,0.130057335639,0.130057335639,0.0412165212447,0.177151163056,0.0843406011682,0.0412165212447,0.0402692629172,0.039747304271,0.0413555012354,0.290983677212,0.0416362975468,0.0194414038552,0.194015238893,0.763704826809,0.678857440537,0.0194107664379,0.0307000246968,0.190984975253,0.207163501523,0.235040347058,0.21825734818,0.226338051331,0.0170244066974,1.01824698596,0.678857440537,0.555443060688,0.718785622302,0.718785622302,0.763704826809,0.214429646696,0.207163501523,0.222224238814,0.185199926501,0.182436918149,0.100226100112,0.0130902417096,0.0130213244336,0.763704826809,0.763704826809,0.581888999203,0.531296769015,0.814613258605,1.22188071348,0.0211077426013,0.0637139167773,0.0732401910273,0.0736809247056,0.0212535256447,0.0212168907181,0.126037367835,0.128689136067,0.128689136067,0.128689136067,0.126037367835,0.119862907549,0.124752072014,0.124752072014,0.0211077426013,0.0209639531812,0.0211803823377,0.0212168907181,0.0324012219143,0.039747304271,0.115342736679,0.115342736679,0.179755174754,0.116440492457,0.118699950961,0.115342736679,0.0405354272667,0.0446697178213,0.0451633482481,0.0451633482481,0.0451633482481,0.114265499704,0.0919432065767,0.0919432065767,0.145531021491,0.145531021491,0.142148401762,0.13891953749,0.137359524421,0.0947917280661,0.137359524421,0.075966717416,0.039747304271,0.034592595112,0.034592595112,0.0343025603945,0.0324869586538,0.0212168907181,0.0195960591962,0.179755174754,0.177151163056,0.182436918149,0.197143252978,0.135834178312,0.137359524421,0.0711133948183);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetSelmerZodiacTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetSelmerZodiacTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
2f438e27c04b5ad0840be5e2c3a99eacafbbc31212afeff995a2a94f31969b0d
|
sebastien-clara/panoplie
|
cabinetOrangeTangerineBass.dsp
|
declare name "cabinetOrangeTangerineBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 148;
modeFrequencies=(72.2131250787,83.3228366293,122.206827056,161.090817483,188.86509636,227.749086787,355.510769618,438.833606248,505.491875551,577.70500063,672.13754881,722.131250787,755.460385439,788.789520091,833.228366293,960.990049125,1005.42889533,1122.08086661,1177.62942436,1227.62312634,1338.72024184,1394.2687996,1572.02418441,1610.90817483,1655.34702104,1705.34072301,1733.11500189,1749.77956922,1805.32812697,1855.32182895,1910.8703867,1960.86408868,2010.85779065,2071.96120418,2183.05831969,2249.71658899,2294.15543519,2349.70399295,2383.0331276,2483.02053155,2527.45937776,2588.56279128,2644.11134904,2699.65990679,2732.98904144,2794.09245497,2888.52500315,2960.73812823,3044.06096486,3110.71923416,3177.37750346,3277.36490742,3416.2363018,3466.23000378,3482.8945711,3577.32711928,3616.21110971,3755.08250409,3816.18591762,3871.73447537,3905.06361003,4010.60586976,4077.26413906,4177.25154302,4227.24524499,4371.67149515,4477.21375488,4638.30457236,4677.18856279,4821.61481295,4904.93764958,4949.37649578,4982.70563043,5032.69933241,5077.13817861,5110.46731326,5171.57072679,5227.11928454,5260.4484192,5293.77755385,5349.3261116,5421.53923668,5510.41692908,5577.07519839,5649.28832347,5688.17231389,5704.83688122,5854.81798715,5938.14082378,6021.46366041,6093.67678549,6171.44476634,6221.43846832,6360.3098627,6393.63899735,6532.51039174,6588.05894949,6626.94293992,6671.38178612,6704.71092077,6788.0337574,6854.6920267,6888.02116136,7004.67313264,7065.77654616,7132.43481547,7182.42851745,7276.86106563,7315.74505605,7437.95188311,7460.17130621,7482.39072931,7565.71356594,7721.24952765,8154.52827812,8282.28996095,8365.61279758,8454.49048999,8687.79443255,8748.89784608,8843.33039426,8871.10467313,8926.65323089,8965.53722131,9015.53092329,9054.41491372,9098.85375992,9159.95717345,9215.5057312,9248.83486585,9271.05428895,9315.49313516,9354.37712558,9393.26111601,9421.03539489,9482.13880841,9532.13251039,11054.1629928,11104.1566948,11198.589243,11237.4732334,11270.8023681,11293.0217912,11420.783474,11443.0028971,11592.984003,11731.8553974,11809.6233783);
massEigenValues=(0.119917672778,0.123125463738,0.471865353894,0.480164738818,0.492980812232,0.5330114397,0.707683797515,0.4616843113,0.493383938012,1.0,0.924437789224,0.844288894023,0.522283489539,0.651728086567,0.776153475794,0.510814670129,0.408762187071,0.710615864617,0.333005312171,0.334851227928,0.146135962708,0.257963891937,0.352128183854,0.319688278298,0.467072341492,0.413743173819,0.392886613708,0.38495213033,0.224036208062,0.476586357092,0.0873746064033,0.24768608956,0.291884410548,0.363053448997,0.730009815494,0.685025101001,0.737994897139,0.678078547274,0.674021795687,0.583102643033,0.486675592723,0.401498838664,0.475789580654,0.307849290109,0.267290931175,0.441150374352,0.323268631155,0.403362109164,0.314554804497,0.407397920649,0.334889562539,0.385857592375,0.187011477348,0.120514553706,0.120595871237,0.187884446179,0.170468750826,0.277380497317,0.324011775421,0.34310055981,0.314063176387,0.150328668932,0.166944495729,0.225831088238,0.272368141572,0.198174166292,0.239538995231,0.176705315672,0.207208848573,0.235519228198,0.130456111288,0.188471817534,0.219363183809,0.212699540025,0.179622262408,0.197764067795,0.217235461309,0.156204701335,0.149215160141,0.137128489381,0.118090683324,0.0586116206424,0.125204013492,0.138194615112,0.0768994354429,0.108912042184,0.111641883436,0.120142397882,0.0788150781815,0.131245470097,0.0911342544397,0.100398403895,0.0849566502223,0.0363709322628,0.0324881709855,0.0519457312041,0.0160874896778,0.0309368461525,0.0386022608938,0.0473170526616,0.0421751516284,0.0463077879051,0.0490695720205,0.0215862839244,0.0101955489716,0.0192620411673,0.0147940356029,0.0183359953346,0.0109192539165,0.0142897224175,0.0127477839772,0.0132240897007,0.0140813085112,0.0103153131222,0.0116470744567,0.0110300514837,0.0124531003622,0.0105446982172,0.0218982518762,0.0168242714074,0.0205527029356,0.0205809132849,0.0167642147523,0.0155892870875,0.0173355980323,0.015685051952,0.0172746772752,0.014336165374,0.0106526653215,0.0118210899767,0.0121648441757,0.012923174978,0.0137382339379,0.0149016710786,0.0152644160628,0.0106629145149,0.0113717380614,0.0135297387062,0.0125146329336,0.0125239423395,0.0110871921259,0.0105061114479,0.0105186385344,0.0113791509931,0.012000147128,0.0155334943264,0.0113289171128,0.0114685491428);
t60=(0.0525162535221,0.0525162535221,0.15875398966,0.15875398966,0.15875398966,0.160841826757,0.718785622302,0.15875398966,0.15875398966,1.74551029889,0.610979531587,0.381891589759,0.188047950499,0.200373824908,0.643132225291,0.814613258605,0.147283463044,1.35763653188,0.581888999203,1.11080777118,0.0843406011682,1.74551029889,0.271589989347,0.26568756262,1.35763653188,0.470002336384,0.284218437251,0.277760708206,0.182436918149,1.74551029889,4.07275290229,0.0485626077877,0.0509868168241,0.055363556662,0.182436918149,0.177151163056,0.185199926501,0.177151163056,0.177151163056,0.150918156646,0.117559358926,0.101053767176,0.117559358926,0.0514146184385,0.0505660863164,0.555443060688,0.0514146184385,0.210733934924,0.0514146184385,0.509162668329,0.051631226853,1.01824698596,1.11080777118,0.0429486508916,0.0429486508916,0.555443060688,0.531296769015,0.260036302995,0.313361009441,0.321605289754,0.298078928886,0.190984975253,1.35763653188,0.509162668329,0.610979531587,0.763704826809,0.718785622302,0.643132225291,0.763704826809,0.939926321566,0.110150648586,0.197143252978,0.235040347058,0.222224238814,0.190984975253,0.197143252978,0.226338051331,0.119862907549,0.111151305558,0.110150648586,0.10820246688,0.0978225549736,0.509162668329,0.555443060688,0.581888999203,0.939926321566,0.939926321566,0.763704826809,0.194015238893,0.678857440537,0.407345805406,0.678857440537,0.488799295711,0.763704826809,0.678857440537,0.763704826809,0.113208211565,0.210733934924,0.222224238814,0.718785622302,0.421389510608,0.421389510608,0.436436337622,1.11080777118,0.235040347058,1.11080777118,0.509162668329,1.22188071348,0.24443882647,0.555443060688,0.470002336384,0.509162668329,1.22188071348,1.11080777118,1.11080777118,0.271589989347,0.678857440537,0.271589989347,0.718785622302,0.581888999203,0.203712082574,0.203712082574,0.179755174754,0.174621551698,0.179755174754,0.174621551698,0.179755174754,0.0978225549736,0.0849257553911,0.089916776793,0.0905822463244,0.0912576482394,0.0970468076064,0.260036302995,0.290983677212,0.0849257553911,0.0892610221477,0.222224238814,0.207163501523,0.207163501523,0.169773129941,0.165186785054,0.165186785054,0.147283463044,0.147283463044,0.531296769015,0.147283463044,0.147283463044);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetOrangeTangerineBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetOrangeTangerineBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetOrangeTangerineBass%7E.mxo/cabinetOrangeTangerineBass.dsp
|
faust
|
declare name "cabinetOrangeTangerineBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 148;
modeFrequencies=(72.2131250787,83.3228366293,122.206827056,161.090817483,188.86509636,227.749086787,355.510769618,438.833606248,505.491875551,577.70500063,672.13754881,722.131250787,755.460385439,788.789520091,833.228366293,960.990049125,1005.42889533,1122.08086661,1177.62942436,1227.62312634,1338.72024184,1394.2687996,1572.02418441,1610.90817483,1655.34702104,1705.34072301,1733.11500189,1749.77956922,1805.32812697,1855.32182895,1910.8703867,1960.86408868,2010.85779065,2071.96120418,2183.05831969,2249.71658899,2294.15543519,2349.70399295,2383.0331276,2483.02053155,2527.45937776,2588.56279128,2644.11134904,2699.65990679,2732.98904144,2794.09245497,2888.52500315,2960.73812823,3044.06096486,3110.71923416,3177.37750346,3277.36490742,3416.2363018,3466.23000378,3482.8945711,3577.32711928,3616.21110971,3755.08250409,3816.18591762,3871.73447537,3905.06361003,4010.60586976,4077.26413906,4177.25154302,4227.24524499,4371.67149515,4477.21375488,4638.30457236,4677.18856279,4821.61481295,4904.93764958,4949.37649578,4982.70563043,5032.69933241,5077.13817861,5110.46731326,5171.57072679,5227.11928454,5260.4484192,5293.77755385,5349.3261116,5421.53923668,5510.41692908,5577.07519839,5649.28832347,5688.17231389,5704.83688122,5854.81798715,5938.14082378,6021.46366041,6093.67678549,6171.44476634,6221.43846832,6360.3098627,6393.63899735,6532.51039174,6588.05894949,6626.94293992,6671.38178612,6704.71092077,6788.0337574,6854.6920267,6888.02116136,7004.67313264,7065.77654616,7132.43481547,7182.42851745,7276.86106563,7315.74505605,7437.95188311,7460.17130621,7482.39072931,7565.71356594,7721.24952765,8154.52827812,8282.28996095,8365.61279758,8454.49048999,8687.79443255,8748.89784608,8843.33039426,8871.10467313,8926.65323089,8965.53722131,9015.53092329,9054.41491372,9098.85375992,9159.95717345,9215.5057312,9248.83486585,9271.05428895,9315.49313516,9354.37712558,9393.26111601,9421.03539489,9482.13880841,9532.13251039,11054.1629928,11104.1566948,11198.589243,11237.4732334,11270.8023681,11293.0217912,11420.783474,11443.0028971,11592.984003,11731.8553974,11809.6233783);
massEigenValues=(0.119917672778,0.123125463738,0.471865353894,0.480164738818,0.492980812232,0.5330114397,0.707683797515,0.4616843113,0.493383938012,1.0,0.924437789224,0.844288894023,0.522283489539,0.651728086567,0.776153475794,0.510814670129,0.408762187071,0.710615864617,0.333005312171,0.334851227928,0.146135962708,0.257963891937,0.352128183854,0.319688278298,0.467072341492,0.413743173819,0.392886613708,0.38495213033,0.224036208062,0.476586357092,0.0873746064033,0.24768608956,0.291884410548,0.363053448997,0.730009815494,0.685025101001,0.737994897139,0.678078547274,0.674021795687,0.583102643033,0.486675592723,0.401498838664,0.475789580654,0.307849290109,0.267290931175,0.441150374352,0.323268631155,0.403362109164,0.314554804497,0.407397920649,0.334889562539,0.385857592375,0.187011477348,0.120514553706,0.120595871237,0.187884446179,0.170468750826,0.277380497317,0.324011775421,0.34310055981,0.314063176387,0.150328668932,0.166944495729,0.225831088238,0.272368141572,0.198174166292,0.239538995231,0.176705315672,0.207208848573,0.235519228198,0.130456111288,0.188471817534,0.219363183809,0.212699540025,0.179622262408,0.197764067795,0.217235461309,0.156204701335,0.149215160141,0.137128489381,0.118090683324,0.0586116206424,0.125204013492,0.138194615112,0.0768994354429,0.108912042184,0.111641883436,0.120142397882,0.0788150781815,0.131245470097,0.0911342544397,0.100398403895,0.0849566502223,0.0363709322628,0.0324881709855,0.0519457312041,0.0160874896778,0.0309368461525,0.0386022608938,0.0473170526616,0.0421751516284,0.0463077879051,0.0490695720205,0.0215862839244,0.0101955489716,0.0192620411673,0.0147940356029,0.0183359953346,0.0109192539165,0.0142897224175,0.0127477839772,0.0132240897007,0.0140813085112,0.0103153131222,0.0116470744567,0.0110300514837,0.0124531003622,0.0105446982172,0.0218982518762,0.0168242714074,0.0205527029356,0.0205809132849,0.0167642147523,0.0155892870875,0.0173355980323,0.015685051952,0.0172746772752,0.014336165374,0.0106526653215,0.0118210899767,0.0121648441757,0.012923174978,0.0137382339379,0.0149016710786,0.0152644160628,0.0106629145149,0.0113717380614,0.0135297387062,0.0125146329336,0.0125239423395,0.0110871921259,0.0105061114479,0.0105186385344,0.0113791509931,0.012000147128,0.0155334943264,0.0113289171128,0.0114685491428);
t60=(0.0525162535221,0.0525162535221,0.15875398966,0.15875398966,0.15875398966,0.160841826757,0.718785622302,0.15875398966,0.15875398966,1.74551029889,0.610979531587,0.381891589759,0.188047950499,0.200373824908,0.643132225291,0.814613258605,0.147283463044,1.35763653188,0.581888999203,1.11080777118,0.0843406011682,1.74551029889,0.271589989347,0.26568756262,1.35763653188,0.470002336384,0.284218437251,0.277760708206,0.182436918149,1.74551029889,4.07275290229,0.0485626077877,0.0509868168241,0.055363556662,0.182436918149,0.177151163056,0.185199926501,0.177151163056,0.177151163056,0.150918156646,0.117559358926,0.101053767176,0.117559358926,0.0514146184385,0.0505660863164,0.555443060688,0.0514146184385,0.210733934924,0.0514146184385,0.509162668329,0.051631226853,1.01824698596,1.11080777118,0.0429486508916,0.0429486508916,0.555443060688,0.531296769015,0.260036302995,0.313361009441,0.321605289754,0.298078928886,0.190984975253,1.35763653188,0.509162668329,0.610979531587,0.763704826809,0.718785622302,0.643132225291,0.763704826809,0.939926321566,0.110150648586,0.197143252978,0.235040347058,0.222224238814,0.190984975253,0.197143252978,0.226338051331,0.119862907549,0.111151305558,0.110150648586,0.10820246688,0.0978225549736,0.509162668329,0.555443060688,0.581888999203,0.939926321566,0.939926321566,0.763704826809,0.194015238893,0.678857440537,0.407345805406,0.678857440537,0.488799295711,0.763704826809,0.678857440537,0.763704826809,0.113208211565,0.210733934924,0.222224238814,0.718785622302,0.421389510608,0.421389510608,0.436436337622,1.11080777118,0.235040347058,1.11080777118,0.509162668329,1.22188071348,0.24443882647,0.555443060688,0.470002336384,0.509162668329,1.22188071348,1.11080777118,1.11080777118,0.271589989347,0.678857440537,0.271589989347,0.718785622302,0.581888999203,0.203712082574,0.203712082574,0.179755174754,0.174621551698,0.179755174754,0.174621551698,0.179755174754,0.0978225549736,0.0849257553911,0.089916776793,0.0905822463244,0.0912576482394,0.0970468076064,0.260036302995,0.290983677212,0.0849257553911,0.0892610221477,0.222224238814,0.207163501523,0.207163501523,0.169773129941,0.165186785054,0.165186785054,0.147283463044,0.147283463044,0.531296769015,0.147283463044,0.147283463044);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetOrangeTangerineBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetOrangeTangerineBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
4b02d7a1bcb0fac958ca35cb1ba5938f94599d4332b351742a28e56e0545415d
|
sebastien-clara/panoplie
|
cabinetMarshallGreenTreble.dsp
|
declare name "cabinetMarshallGreenTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 150;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,177.755384809,227.749086787,333.291346517,472.162740899,583.259856405,633.253558383,716.576395012,877.667212495,944.325481799,1049.86774153,1166.51971281,1188.73913591,1349.82995339,1438.7076458,1472.03678045,1610.90817483,1688.67615569,1755.33442499,1788.66355964,1871.98639627,1966.41894445,2094.18062728,2116.40005038,2216.38745434,2266.38115632,2349.70399295,2399.69769492,2566.34336818,2699.65990679,2832.9764454,3021.84154176,3082.94495528,3199.59692657,3327.3586094,3460.675148,3616.21110971,3743.97279254,3971.72187933,4043.93500441,4066.15442751,4105.03841794,4210.58067767,4366.11663938,4488.32346643,4582.75601461,4660.52399547,4721.62740899,4777.17596675,4910.49250535,4938.26678423,5110.46731326,5238.2289961,5377.10039048,5504.86207331,5565.96548684,5654.84317924,5704.83688122,5788.15971785,5943.69567956,6104.78649704,6238.10303565,6415.85842046,6560.28467061,6704.71092077,6860.24688248,6993.56342109,7082.44111349,7254.64164252,7310.19020028,7376.84846958,7410.17760423,7437.95188311,7499.05529664,7571.26842172,7637.92669102,7726.80438342,8160.0831339,8243.40597053,8337.83851871,8387.83222068,8482.26476886,8521.14875929,8621.13616324,8660.02015367,8760.00755763,8782.22698073,8815.55611538,8915.54351933,9182.17659655,9226.61544275,9287.71885628,9382.15140446,9498.80337574,9537.68736617,9548.79707772,9582.12621237,9643.2296259,9698.77818365,9709.8878952,9732.1073183,9776.5461645,9848.75928958,9920.97241466,9987.63068397,9998.74039552,10115.3923668,10170.9409245,10226.4894823,10259.818617,10270.9283285,10337.5865978,10393.1351556,10504.2322711,10548.6711173,10576.4453961,10643.1036654,10654.213377,10670.8779443,10759.7556367,10787.5299156,10876.407608,10943.0658773,10954.1755889,11015.2790024,11165.2601083,11309.6863585,11437.4480413,11476.3320317,11520.7708779,11654.0874166,11676.3068397,11698.5262628,11781.8490994,11854.0622245,11909.6107822,11998.4884746,12065.1467439,12548.4191964,12581.748331,12720.6197254,12765.0585716,12826.1619851,12859.4911198,12937.2591006,13015.0270815,13137.2339086,13148.3436201);
massEigenValues=(0.115307565694,0.462694806576,0.554754815935,0.55315376911,0.63804764665,0.844633992123,0.882573888295,0.45478668925,0.846511780094,0.902926830497,0.631199358527,0.360372988836,0.341697677072,0.76666431885,0.758326538406,0.475635948798,0.475112530036,0.488844233474,0.600784584788,0.861129968907,0.705983381317,0.70499855834,0.462181850853,0.660381492759,1.0,0.976791765126,0.975594435256,0.913152845988,0.846197786698,0.843359492389,0.516751356863,0.611978626182,0.457445798506,0.51764896159,0.623111433834,0.741130123506,0.69553426424,0.687875497532,0.529639149371,0.330528416024,0.419704179501,0.327913569092,0.339823051093,0.289278481695,0.377248095079,0.502822582103,0.642020416833,0.471230239326,0.438130370727,0.382266576511,0.382516438133,0.237520856541,0.248396320954,0.275118379395,0.198063460734,0.208715908564,0.255751759893,0.22186127261,0.269571074609,0.274668862714,0.277752238392,0.17212698914,0.0880321898095,0.0645439983154,0.0530226176584,0.0608883056823,0.0811994801867,0.0855933503506,0.0831356756783,0.0635774411394,0.0395305395718,0.039855602567,0.0218937570646,0.0211091549516,0.0215203683309,0.0146885141939,0.0138612216308,0.0156148122945,0.0140609094506,0.0119413421719,0.0145450720129,0.0166028108017,0.0154839784018,0.0218519591648,0.0194908195625,0.0196776400044,0.0173277623621,0.0167560669878,0.0161638043327,0.014805825717,0.0162824122852,0.0107869581603,0.0154515060558,0.0173517188486,0.0223006850345,0.0174030944746,0.0182851484074,0.0183893494613,0.018547070392,0.0179684771841,0.0215250663474,0.0214048058867,0.0219721856284,0.0218470253491,0.0246288368218,0.0194354672586,0.0207858111971,0.0206031650755,0.0218534503956,0.0232001134213,0.0215202551565,0.0225394446324,0.0222784446769,0.0147397909705,0.0164871787208,0.0155682919688,0.0145139417232,0.0135602552956,0.0223057737166,0.0226963797045,0.0229934203822,0.0275470641455,0.0264877949376,0.0340833263859,0.0390613376374,0.0392485532588,0.0432775104486,0.0325085054339,0.0197875485715,0.0147989108952,0.0164114369582,0.0172901349573,0.024845171164,0.0245496046871,0.0253848462007,0.0326371441067,0.0278608057851,0.0297769978636,0.022337159031,0.0193186989475,0.010815583585,0.0118897892068,0.0154821824784,0.0135763230617,0.0160042085714,0.0157935046079,0.0153330540041,0.0148935554862,0.0137236757158,0.0135194448394);
t60=(4.07275290229,0.0783990353539,0.162985339515,0.160841826757,0.174621551698,0.643132225291,0.763704826809,0.0783990353539,0.407345805406,0.718785622302,0.872794323539,0.0683354901278,0.0683354901278,0.452597744427,0.452597744427,0.0384998560076,0.0384998560076,0.0384998560076,0.0620988023873,0.349164741141,0.21825734818,0.214429646696,0.0382597222295,0.118699950961,0.174621551698,0.169773129941,0.169773129941,0.167448544174,0.160841826757,0.160841826757,0.038621059178,0.330295206849,0.0382597222295,0.0892610221477,0.156719686852,0.305528943153,0.165186785054,0.678857440537,0.0905822463244,0.0252183924559,0.359431987757,0.0617855680864,0.0657666751259,0.0602656873902,0.0947917280661,0.131454958861,0.26568756262,0.127349440656,0.124752072014,0.0970468076064,0.0970468076064,0.0138997864465,0.0139154389333,0.718785622302,0.814613258605,0.107254010001,0.154736885385,0.1328829652,0.160841826757,0.162985339515,0.230607102062,0.0955316760376,0.0112467396312,0.872794323539,0.0664806780444,0.581888999203,0.135834178312,0.142148401762,0.137359524421,0.115342736679,0.00937690844301,0.00937690844301,0.0092101260271,0.00920330651023,0.0092101260271,0.00914911490185,0.488799295711,0.939926321566,1.01824698596,0.0886147711953,0.10450591701,0.106322048027,0.105406154366,0.610979531587,0.509162668329,0.452597744427,0.10820246688,0.106322048027,0.105406154366,0.10450591701,0.678857440537,0.0225380381034,0.0551145245097,0.0556148527445,0.070296900655,0.0556148527445,0.05612436132,0.05612436132,0.05612436132,0.0558684437699,0.0643837642314,0.0643837642314,0.0694989631848,0.0694989631848,0.210733934924,0.0617855680864,0.0620988023873,0.0620988023873,0.0694989631848,0.0815318609316,0.0643837642314,0.0809924340054,0.070296900655,0.0546231307137,0.055363556662,0.0404019058763,0.0402692629172,0.0400065778447,0.0886147711953,0.089916776793,0.0912576482394,0.101895228693,0.094063163912,0.128689136067,0.179755174754,0.179755174754,0.197143252978,0.118699950961,0.0849257553911,0.0402692629172,0.0406698358435,0.0409413501626,0.131454958861,0.131454958861,0.149078647077,0.197143252978,0.15875398966,0.165186785054,0.106322048027,0.0970468076064,0.0728047041805,0.0933457228774,0.119862907549,0.0986108143979,0.121048892983,0.121048892983,0.118699950961,0.101895228693,0.0994118910513,0.0986108143979);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallGreenTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallGreenTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshallGreenTreble%7E.mxo/cabinetMarshallGreenTreble.dsp
|
faust
|
declare name "cabinetMarshallGreenTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 150;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,177.755384809,227.749086787,333.291346517,472.162740899,583.259856405,633.253558383,716.576395012,877.667212495,944.325481799,1049.86774153,1166.51971281,1188.73913591,1349.82995339,1438.7076458,1472.03678045,1610.90817483,1688.67615569,1755.33442499,1788.66355964,1871.98639627,1966.41894445,2094.18062728,2116.40005038,2216.38745434,2266.38115632,2349.70399295,2399.69769492,2566.34336818,2699.65990679,2832.9764454,3021.84154176,3082.94495528,3199.59692657,3327.3586094,3460.675148,3616.21110971,3743.97279254,3971.72187933,4043.93500441,4066.15442751,4105.03841794,4210.58067767,4366.11663938,4488.32346643,4582.75601461,4660.52399547,4721.62740899,4777.17596675,4910.49250535,4938.26678423,5110.46731326,5238.2289961,5377.10039048,5504.86207331,5565.96548684,5654.84317924,5704.83688122,5788.15971785,5943.69567956,6104.78649704,6238.10303565,6415.85842046,6560.28467061,6704.71092077,6860.24688248,6993.56342109,7082.44111349,7254.64164252,7310.19020028,7376.84846958,7410.17760423,7437.95188311,7499.05529664,7571.26842172,7637.92669102,7726.80438342,8160.0831339,8243.40597053,8337.83851871,8387.83222068,8482.26476886,8521.14875929,8621.13616324,8660.02015367,8760.00755763,8782.22698073,8815.55611538,8915.54351933,9182.17659655,9226.61544275,9287.71885628,9382.15140446,9498.80337574,9537.68736617,9548.79707772,9582.12621237,9643.2296259,9698.77818365,9709.8878952,9732.1073183,9776.5461645,9848.75928958,9920.97241466,9987.63068397,9998.74039552,10115.3923668,10170.9409245,10226.4894823,10259.818617,10270.9283285,10337.5865978,10393.1351556,10504.2322711,10548.6711173,10576.4453961,10643.1036654,10654.213377,10670.8779443,10759.7556367,10787.5299156,10876.407608,10943.0658773,10954.1755889,11015.2790024,11165.2601083,11309.6863585,11437.4480413,11476.3320317,11520.7708779,11654.0874166,11676.3068397,11698.5262628,11781.8490994,11854.0622245,11909.6107822,11998.4884746,12065.1467439,12548.4191964,12581.748331,12720.6197254,12765.0585716,12826.1619851,12859.4911198,12937.2591006,13015.0270815,13137.2339086,13148.3436201);
massEigenValues=(0.115307565694,0.462694806576,0.554754815935,0.55315376911,0.63804764665,0.844633992123,0.882573888295,0.45478668925,0.846511780094,0.902926830497,0.631199358527,0.360372988836,0.341697677072,0.76666431885,0.758326538406,0.475635948798,0.475112530036,0.488844233474,0.600784584788,0.861129968907,0.705983381317,0.70499855834,0.462181850853,0.660381492759,1.0,0.976791765126,0.975594435256,0.913152845988,0.846197786698,0.843359492389,0.516751356863,0.611978626182,0.457445798506,0.51764896159,0.623111433834,0.741130123506,0.69553426424,0.687875497532,0.529639149371,0.330528416024,0.419704179501,0.327913569092,0.339823051093,0.289278481695,0.377248095079,0.502822582103,0.642020416833,0.471230239326,0.438130370727,0.382266576511,0.382516438133,0.237520856541,0.248396320954,0.275118379395,0.198063460734,0.208715908564,0.255751759893,0.22186127261,0.269571074609,0.274668862714,0.277752238392,0.17212698914,0.0880321898095,0.0645439983154,0.0530226176584,0.0608883056823,0.0811994801867,0.0855933503506,0.0831356756783,0.0635774411394,0.0395305395718,0.039855602567,0.0218937570646,0.0211091549516,0.0215203683309,0.0146885141939,0.0138612216308,0.0156148122945,0.0140609094506,0.0119413421719,0.0145450720129,0.0166028108017,0.0154839784018,0.0218519591648,0.0194908195625,0.0196776400044,0.0173277623621,0.0167560669878,0.0161638043327,0.014805825717,0.0162824122852,0.0107869581603,0.0154515060558,0.0173517188486,0.0223006850345,0.0174030944746,0.0182851484074,0.0183893494613,0.018547070392,0.0179684771841,0.0215250663474,0.0214048058867,0.0219721856284,0.0218470253491,0.0246288368218,0.0194354672586,0.0207858111971,0.0206031650755,0.0218534503956,0.0232001134213,0.0215202551565,0.0225394446324,0.0222784446769,0.0147397909705,0.0164871787208,0.0155682919688,0.0145139417232,0.0135602552956,0.0223057737166,0.0226963797045,0.0229934203822,0.0275470641455,0.0264877949376,0.0340833263859,0.0390613376374,0.0392485532588,0.0432775104486,0.0325085054339,0.0197875485715,0.0147989108952,0.0164114369582,0.0172901349573,0.024845171164,0.0245496046871,0.0253848462007,0.0326371441067,0.0278608057851,0.0297769978636,0.022337159031,0.0193186989475,0.010815583585,0.0118897892068,0.0154821824784,0.0135763230617,0.0160042085714,0.0157935046079,0.0153330540041,0.0148935554862,0.0137236757158,0.0135194448394);
t60=(4.07275290229,0.0783990353539,0.162985339515,0.160841826757,0.174621551698,0.643132225291,0.763704826809,0.0783990353539,0.407345805406,0.718785622302,0.872794323539,0.0683354901278,0.0683354901278,0.452597744427,0.452597744427,0.0384998560076,0.0384998560076,0.0384998560076,0.0620988023873,0.349164741141,0.21825734818,0.214429646696,0.0382597222295,0.118699950961,0.174621551698,0.169773129941,0.169773129941,0.167448544174,0.160841826757,0.160841826757,0.038621059178,0.330295206849,0.0382597222295,0.0892610221477,0.156719686852,0.305528943153,0.165186785054,0.678857440537,0.0905822463244,0.0252183924559,0.359431987757,0.0617855680864,0.0657666751259,0.0602656873902,0.0947917280661,0.131454958861,0.26568756262,0.127349440656,0.124752072014,0.0970468076064,0.0970468076064,0.0138997864465,0.0139154389333,0.718785622302,0.814613258605,0.107254010001,0.154736885385,0.1328829652,0.160841826757,0.162985339515,0.230607102062,0.0955316760376,0.0112467396312,0.872794323539,0.0664806780444,0.581888999203,0.135834178312,0.142148401762,0.137359524421,0.115342736679,0.00937690844301,0.00937690844301,0.0092101260271,0.00920330651023,0.0092101260271,0.00914911490185,0.488799295711,0.939926321566,1.01824698596,0.0886147711953,0.10450591701,0.106322048027,0.105406154366,0.610979531587,0.509162668329,0.452597744427,0.10820246688,0.106322048027,0.105406154366,0.10450591701,0.678857440537,0.0225380381034,0.0551145245097,0.0556148527445,0.070296900655,0.0556148527445,0.05612436132,0.05612436132,0.05612436132,0.0558684437699,0.0643837642314,0.0643837642314,0.0694989631848,0.0694989631848,0.210733934924,0.0617855680864,0.0620988023873,0.0620988023873,0.0694989631848,0.0815318609316,0.0643837642314,0.0809924340054,0.070296900655,0.0546231307137,0.055363556662,0.0404019058763,0.0402692629172,0.0400065778447,0.0886147711953,0.089916776793,0.0912576482394,0.101895228693,0.094063163912,0.128689136067,0.179755174754,0.179755174754,0.197143252978,0.118699950961,0.0849257553911,0.0402692629172,0.0406698358435,0.0409413501626,0.131454958861,0.131454958861,0.149078647077,0.197143252978,0.15875398966,0.165186785054,0.106322048027,0.0970468076064,0.0728047041805,0.0933457228774,0.119862907549,0.0986108143979,0.121048892983,0.121048892983,0.118699950961,0.101895228693,0.0994118910513,0.0986108143979);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshallGreenTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshallGreenTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
a698b164e3cd44fc0f9eaa3e5bb84f7db937ee020e3d1f99c49af1fc47480031
|
sebastien-clara/panoplie
|
cloudGenerator.dsp
|
/*********************************************************************
----------------------------------------------------------------------
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as
published by the Free Software Foundation.
<https://www.gnu.org/licenses/lgpl-3.0.en.html>
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Lesser General Public License for more details.
**********************************************************************/
declare name "Cloud Generator";
declare version "0.01";
declare description "Source : https://github.com/visstup/cloud-generator";
declare nvoices "16";
// Revised by Sébastien Clara
import("stdfaust.lib");
//detuning parameters for individual oscillators
spread(i,spreadamt) = pow(spreadvox(i),spreadamt)
with {
spreadvox(0) = 1;
spreadvox(1) = 1.25;
spreadvox(2) = 0.8;
spreadvox(3) = 1.5;
spreadvox(4) = 0.66;
spreadvox(5) = 1.75;
spreadvox(6) = 0.57;
spreadvox(7) = 2;
spreadvox(8) = 0.5;
};
//modulating the frequency of the oscillators
chaosMul(chaosbw,chaos) = (chaos * os.osc(chaosbw)*0.01 + 1);
//declaring 9 parallel sawtooth oscillators
parSaw(freq,spreadamt,chaosMul) = par(i,9,sawt(freq,i,chaosMul)) :> _
with {
sawt(freq,i,chaosbw,chaos) = os.sawtooth(
pow((freq * spread(i,spreadamt)), chaosMul)
);
};
//same thing, but with sinusodial oscillators
parSine(freq,spreadamt,chaosMul) = par(i,9,sine(freq,i,chaosMul)) :> _
with {
sine(freq,i,chaosbw,chaos) = os.osc(
pow((freq * spread(i,spreadamt)), chaosMul)
);
};
//declaring audio signal
//path: oscillators : distortion
cloudgen(freq,spreadAmt,chaosbw,chaos,wavForm,richness) =
chaosMul(chaosbw,chaos) <: osc(freq,spreadAmt,wavForm) :
*(richness) : clip(-1,1) : cubic
with {
osc(freq,spreadAmt,wavForm) =
(parSine(freq,spreadAmt) * (1-wavForm)) +
(parSaw(freq,spreadAmt) * wavForm) :> _*(0.2);
clip(lo,hi) = min(hi) : max(lo);
cubic(x) = x - x*x*x/3;
};
//declaring FX signal
//path: LPF : compressor : volume
fxGen(lpFreq, lpReso, lpDepth, volume) =
lpFilter(lpFreq, lpReso, lpDepth) :
*(volume)
with {
lpFilter(lpFreq, lpReso, lpDepth) = _ <: lpf :> _
with {
lpf = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(lpReso, lpFreq)*lpDepth*0.4)), _*(1-lpDepth);
};
};
//declaring the envelope of the gate
envlop(att,dec,sus,rel,gate,gain) = en.adsr(att,dec,sus,rel,gate) * gain;
//declaring UI parameters
mainGroup(x) = hgroup("Cloud Generator",x);
cloudSynth = mainGroup(
cloudgen(freq*bend:portamento,spreadAmt,chaosbw,chaos,wavForm,richness) *
envlop(att,dec,sus,rel,gate,gain)
)
with {
//declaring groups
envGroup(x) = vgroup("[0]Envelope",x);
noteGroup(x) = vgroup("[1]Note",x);
modGroup(x) = vgroup("[2]Modulation",x);
timbreGroup(x) = vgroup("[3]Timbre",x);
att = envGroup(hslider("[1]Attack [style:knob][unit:ms]",20,1,3000,1)/1000);
dec = envGroup(hslider("[2]Decay [style:knob][unit:ms]",100,1,3000,1)/1000);
sus = envGroup(hslider("[3]Sustain [style:knob] [unit:%]",0.7,0,1,0.01));
rel = envGroup(hslider("[4]Release [style:knob][unit:ms]",500,1,5000,1)/1000);
gate = noteGroup(button("[9]gate [style:knob]"));
gain = noteGroup(hslider("[3]gain [style:knob]", 0.5, 0, 10, 0.01));
freq = noteGroup(hslider("[1]freq[unit:Hz] [style:knob]",220,20,5000,1));
bend = noteGroup(hslider("[8]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01));
portamento = noteGroup(si.smooth(hslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole));
spreadAmt = modGroup(hslider("[1]Spread
[tooltip:Modulates the individual detuning of the 9 parallel oscillators]
[style:knob]",0.05,0,1,0.01) : ba.lin2LogGain);
chaos = modGroup(hslider("[2]Leslie Amount
[tooltip:The amount of the sinusoidal LFO modulating the pitch of the oscillators]
[style:knob]",0,0,1,0.01) : si.smoo);
chaosbw = modGroup(hslider("[3]Leslie Bandwidth
[tooltip:The frequency of the sinusodial LFO modulating the pitch of the oscillators]
[unit:Hz][style:knob]",1,0.01,20,0.01));
wavForm = timbreGroup(hslider("[0]Wave Form
[tooltip:Sine:0 ; Saw:1] [style:knob]",0,0,1,0.1):si.smoo);
richness = timbreGroup(hslider("[1]Richness
[tooltip:A simple cubic distortion unit]
[style:knob]",1,1,10,0.01) : si.smoo);
};
fx = mainGroup(fxGen(lpFreq,lpReso,lpDepth, volume))
with {
filterGroup(x) = vgroup("[7]LP Filter",x);
compGroup(x) = vgroup("[8]Compressor",x);
lpDepth = filterGroup(hslider("[2]LPF Depth [style:knob]",0,0,1,0.01));
lpReso = filterGroup(hslider("[3]resonance [style:knob]", 0.1, 0, 0.99, 0.01));
maxCut = 7000; //ma.SR/6.3;
lpFreq = filterGroup(hslider("[4]Cutoff [unit:Hz][style:knob]",1500,20,maxCut,1) : si.smoo);
volume = vslider("[9]Volume [unit:dB]",-15,-128,30,1) : si.smooth(0.999) : ba.db2linear;
};
process = cloudSynth : fx <: _,_;
/*
process = cloudSynth;
effect = fx <: _,_;
*/
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/cloudgenerator/cloudGenerator%7E.mxo/cloudGenerator.dsp
|
faust
|
********************************************************************
----------------------------------------------------------------------
This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as
published by the Free Software Foundation.
<https://www.gnu.org/licenses/lgpl-3.0.en.html>
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU Lesser General Public License for more details.
*********************************************************************
Revised by Sébastien Clara
detuning parameters for individual oscillators
modulating the frequency of the oscillators
declaring 9 parallel sawtooth oscillators
same thing, but with sinusodial oscillators
declaring audio signal
path: oscillators : distortion
declaring FX signal
path: LPF : compressor : volume
declaring the envelope of the gate
declaring UI parameters
declaring groups
ma.SR/6.3;
process = cloudSynth;
effect = fx <: _,_;
|
declare name "Cloud Generator";
declare version "0.01";
declare description "Source : https://github.com/visstup/cloud-generator";
declare nvoices "16";
import("stdfaust.lib");
spread(i,spreadamt) = pow(spreadvox(i),spreadamt)
with {
spreadvox(0) = 1;
spreadvox(1) = 1.25;
spreadvox(2) = 0.8;
spreadvox(3) = 1.5;
spreadvox(4) = 0.66;
spreadvox(5) = 1.75;
spreadvox(6) = 0.57;
spreadvox(7) = 2;
spreadvox(8) = 0.5;
};
chaosMul(chaosbw,chaos) = (chaos * os.osc(chaosbw)*0.01 + 1);
parSaw(freq,spreadamt,chaosMul) = par(i,9,sawt(freq,i,chaosMul)) :> _
with {
sawt(freq,i,chaosbw,chaos) = os.sawtooth(
pow((freq * spread(i,spreadamt)), chaosMul)
);
};
parSine(freq,spreadamt,chaosMul) = par(i,9,sine(freq,i,chaosMul)) :> _
with {
sine(freq,i,chaosbw,chaos) = os.osc(
pow((freq * spread(i,spreadamt)), chaosMul)
);
};
cloudgen(freq,spreadAmt,chaosbw,chaos,wavForm,richness) =
chaosMul(chaosbw,chaos) <: osc(freq,spreadAmt,wavForm) :
*(richness) : clip(-1,1) : cubic
with {
osc(freq,spreadAmt,wavForm) =
(parSine(freq,spreadAmt) * (1-wavForm)) +
(parSaw(freq,spreadAmt) * wavForm) :> _*(0.2);
clip(lo,hi) = min(hi) : max(lo);
cubic(x) = x - x*x*x/3;
};
fxGen(lpFreq, lpReso, lpDepth, volume) =
lpFilter(lpFreq, lpReso, lpDepth) :
*(volume)
with {
lpFilter(lpFreq, lpReso, lpDepth) = _ <: lpf :> _
with {
lpf = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(lpReso, lpFreq)*lpDepth*0.4)), _*(1-lpDepth);
};
};
envlop(att,dec,sus,rel,gate,gain) = en.adsr(att,dec,sus,rel,gate) * gain;
mainGroup(x) = hgroup("Cloud Generator",x);
cloudSynth = mainGroup(
cloudgen(freq*bend:portamento,spreadAmt,chaosbw,chaos,wavForm,richness) *
envlop(att,dec,sus,rel,gate,gain)
)
with {
envGroup(x) = vgroup("[0]Envelope",x);
noteGroup(x) = vgroup("[1]Note",x);
modGroup(x) = vgroup("[2]Modulation",x);
timbreGroup(x) = vgroup("[3]Timbre",x);
att = envGroup(hslider("[1]Attack [style:knob][unit:ms]",20,1,3000,1)/1000);
dec = envGroup(hslider("[2]Decay [style:knob][unit:ms]",100,1,3000,1)/1000);
sus = envGroup(hslider("[3]Sustain [style:knob] [unit:%]",0.7,0,1,0.01));
rel = envGroup(hslider("[4]Release [style:knob][unit:ms]",500,1,5000,1)/1000);
gate = noteGroup(button("[9]gate [style:knob]"));
gain = noteGroup(hslider("[3]gain [style:knob]", 0.5, 0, 10, 0.01));
freq = noteGroup(hslider("[1]freq[unit:Hz] [style:knob]",220,20,5000,1));
bend = noteGroup(hslider("[8]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01));
portamento = noteGroup(si.smooth(hslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole));
spreadAmt = modGroup(hslider("[1]Spread
[tooltip:Modulates the individual detuning of the 9 parallel oscillators]
[style:knob]",0.05,0,1,0.01) : ba.lin2LogGain);
chaos = modGroup(hslider("[2]Leslie Amount
[tooltip:The amount of the sinusoidal LFO modulating the pitch of the oscillators]
[style:knob]",0,0,1,0.01) : si.smoo);
chaosbw = modGroup(hslider("[3]Leslie Bandwidth
[tooltip:The frequency of the sinusodial LFO modulating the pitch of the oscillators]
[unit:Hz][style:knob]",1,0.01,20,0.01));
wavForm = timbreGroup(hslider("[0]Wave Form
[tooltip:Sine:0 ; Saw:1] [style:knob]",0,0,1,0.1):si.smoo);
richness = timbreGroup(hslider("[1]Richness
[tooltip:A simple cubic distortion unit]
[style:knob]",1,1,10,0.01) : si.smoo);
};
fx = mainGroup(fxGen(lpFreq,lpReso,lpDepth, volume))
with {
filterGroup(x) = vgroup("[7]LP Filter",x);
compGroup(x) = vgroup("[8]Compressor",x);
lpDepth = filterGroup(hslider("[2]LPF Depth [style:knob]",0,0,1,0.01));
lpReso = filterGroup(hslider("[3]resonance [style:knob]", 0.1, 0, 0.99, 0.01));
lpFreq = filterGroup(hslider("[4]Cutoff [unit:Hz][style:knob]",1500,20,maxCut,1) : si.smoo);
volume = vslider("[9]Volume [unit:dB]",-15,-128,30,1) : si.smooth(0.999) : ba.db2linear;
};
process = cloudSynth : fx <: _,_;
|
28a9440c3d287dc71a1374e2b6ecf491c3fb522c40e870bbd30e4027dac4bdac
|
sebastien-clara/panoplie
|
cabinetFenderTweedBass.dsp
|
declare name "cabinetFenderTweedBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 180;
modeFrequencies=(27.7742788764,38.883990427,127.761682832,183.310240584,266.633077214,327.736490742,422.169038922,488.827308225,544.375865978,611.034135282,727.686106563,877.667212495,1088.75173196,1372.0493765,1566.46932863,1605.35331906,1683.12129991,1827.54755007,1983.08351178,2121.95490616,2166.39375236,2449.6913969,2510.79481043,2549.67880086,2621.89192594,2710.76961834,2860.75072427,3027.39639753,3166.26779191,3249.59062854,3316.24889785,3477.33971533,3616.21110971,3882.84418693,3905.06361003,3943.94760045,4021.71558131,4160.58697569,4310.56808162,4438.32976445,4566.09144729,4732.73712054,4832.7245245,4871.60851493,4921.6022169,4966.04106311,5071.58332284,5082.69303439,5204.89986144,5388.21010203,5454.86837133,5532.63635219,5727.05630432,5882.59226603,5949.25053533,5993.68938153,6143.67048747,6293.6515934,6421.41327623,6460.29726666,6526.95553596,6632.49779569,6715.82063232,6743.5949112,6826.91774783,7065.77654616,7076.88625772,7093.55082504,7137.98967124,7154.65423857,7432.39702733,7510.16500819,7537.93928706,7554.60385439,7593.48784482,7604.59755637,7626.81697947,7871.23063358,7882.34034513,7926.77919133,7943.44375866,8054.54087417,8198.96712432,8210.07683587,8371.16765336,8393.38707646,8415.60649956,8460.04534576,8537.81332662,8571.14246127,8687.79443255,8710.01385565,8732.23327875,8760.00755763,8776.67212495,8798.89154805,8810.0012596,8821.11097116,8832.22068271,8898.87895201,8921.09837511,8937.76294244,8959.98236554,8993.31150019,9043.30520217,9054.41491372,9071.07948104,9126.6280388,9137.73775035,9148.8474619,9187.73145232,9209.95087543,9221.06058698,9232.17029853,9248.83486585,9271.05428895,9282.1640005,9293.27371205,9326.60284671,9426.59025066,9465.47424109,9482.13880841,9537.68736617,9554.35193349,9565.46164504,9587.68106814,9598.7907797,9665.449049,9704.33303943,9793.21073183,9854.31414536,9887.64328001,9898.75299156,9937.63698199,9954.30154931,9965.41126086,9987.63068397,9998.74039552,10037.6243859,10065.3986648,10076.5083764,10098.7277995,10109.837511,10176.4957803,10193.1603477,10209.824915,10259.818617,10304.2574632,10320.9220305,10359.8060209,10376.4705882,10482.012848,10493.1225595,10559.7808288,10870.8527522,10881.9624638,10893.0721753,11193.0343872,11204.1440988,11248.582945,11270.8023681,11287.4669354,11337.4606374,11348.5703489,11398.5640509,11409.6737624,11465.2223202,11481.8868875,11520.7708779,11598.5388588,11615.2034261,11759.6296763,11776.2942436,11804.0685225,11881.8365033,11915.165638,11926.2753495,11948.4947726,11959.6044842,11970.7141957);
massEigenValues=(0.0288641708751,0.10587374949,0.170815351105,0.162170522066,0.283173913826,0.247877995751,0.22220307395,0.262624657016,0.258388458233,0.286720247727,0.186542981636,0.183951510007,0.29287261321,0.262888223516,0.204354579123,0.192921281466,0.256725272357,0.236632861953,0.447416908942,0.513471467116,0.54463004763,0.978354507512,0.905696783593,0.976964600071,1.0,0.933516937609,0.646001080266,0.559394878364,0.82783629787,0.712016484586,0.716997871956,0.711171090304,0.651054126743,0.320285180161,0.319165845238,0.31615733496,0.328796657433,0.272379274648,0.310531376581,0.319072098337,0.260660087311,0.186659983703,0.172189299441,0.166881897035,0.169814350913,0.161990722651,0.191536197288,0.190707332578,0.182707660864,0.12785068332,0.12466779194,0.125538861661,0.109362583582,0.112802904867,0.105810799357,0.108691095914,0.0713010514487,0.031652036295,0.0187470596435,0.0179548772457,0.0138747130696,0.0201770621637,0.0193663272914,0.018014207223,0.0103274811248,0.0367352587064,0.0364806835028,0.0363738415218,0.0349112961548,0.0349363939995,0.0120434003915,0.0141643429685,0.0146417580305,0.0147735123852,0.0152598040192,0.0154396761254,0.0159709519505,0.0211754997282,0.0214014804358,0.0226271142097,0.022601670592,0.0173836982155,0.0104585057182,0.0103309178563,0.0101022192911,0.010620950028,0.0107080335891,0.0111347455184,0.0140815422071,0.0145358298512,0.021118522434,0.0209734440919,0.0206351929272,0.0210668539322,0.0209927362087,0.0211310981122,0.021412694324,0.0214218757016,0.0210632943024,0.0186778078624,0.0187691362274,0.0184635330139,0.0186585427743,0.0180395750275,0.0174692157256,0.0175056900843,0.017663464142,0.0194989401158,0.0194555048181,0.0194966730545,0.019011632227,0.0189818594935,0.0190424474009,0.0190010842015,0.0188911176829,0.0189768394028,0.0189140358982,0.0189649835048,0.0190250211261,0.0215834219841,0.0224355026402,0.0225501456454,0.0244253154351,0.0244164839118,0.0243962449223,0.0244379829541,0.0242857466049,0.0245826389819,0.0235836733274,0.0214865686974,0.0202750188528,0.020423850313,0.0204973162143,0.019630614419,0.0196122752806,0.0194609673329,0.0190038633546,0.0190160263729,0.0192021694223,0.0192822592572,0.0193311857166,0.0195696787941,0.0197650589289,0.0210804514898,0.0210986305568,0.0211301130225,0.0193369468036,0.020921927072,0.0207528585411,0.0211526521125,0.0208216679364,0.0167500028081,0.016621514468,0.0138041349849,0.0324190160524,0.0323947999191,0.03234110209,0.0190103716951,0.0190291585751,0.0180599033085,0.0181379653026,0.0179507545562,0.0185250468383,0.0184940312276,0.0176854801573,0.0176044768151,0.0171100251796,0.0170832450727,0.0171302809819,0.0159994941579,0.0160597644948,0.0131936270467,0.013136470732,0.0128466181804,0.0115459666148,0.0115043234794,0.0115960862342,0.0113877724991,0.0113418487998,0.0113814080323);
t60=(0.010777330712,6.10909018068,0.470002336384,0.436436337622,0.156719686852,0.150918156646,0.127349440656,0.152803653959,0.152803653959,0.156719686852,0.12225859813,0.531296769015,0.763704826809,0.0200752124053,0.0170952109637,0.0169775302929,0.0196900439733,0.0191393313718,0.0358036173538,0.067210373342,0.0679562840982,0.149078647077,0.130057335639,0.149078647077,0.150918156646,0.135834178312,0.0978225549736,0.0905822463244,0.235040347058,0.101053767176,0.101053767176,0.101053767176,0.0978225549736,0.0249118085045,0.0248614367015,0.0248614367015,0.0250131689102,0.0222125379598,0.0247613036648,0.0248614367015,0.0200099704387,0.01690769995,0.0158436662822,0.0150149409046,0.0153129224499,0.0149785108511,0.0169775302929,0.016954189211,0.0168384443466,0.011940676053,0.0113915104023,0.0119291707317,0.0113497657404,0.0113601729964,0.0113393776687,0.0113497657404,0.0110956842742,0.0107961001926,0.0104768594476,0.0104680175079,0.0100199855177,0.349164741141,0.330295206849,0.305528943153,0.00830068211491,0.230607102062,0.230607102062,0.230607102062,0.210733934924,0.210733934924,0.00831731429349,0.089916776793,0.0933457228774,0.0947917280661,0.0962832767358,0.0962832767358,0.0994118910513,0.185199926501,0.188047950499,0.203712082574,0.203712082574,0.101895228693,0.00830068211491,0.00830068211491,0.0174830543485,0.0176079071132,0.0176079071132,0.0177090865053,0.0185626061472,0.0187319256077,0.0349870423412,0.0349870423412,0.034788698136,0.0349870423412,0.0349870423412,0.0349870423412,0.0352888456347,0.0352888456347,0.0349870423412,0.0209639531812,0.0209639531812,0.0208221167675,0.0209639531812,0.0206475075588,0.0203405081193,0.0203405081193,0.0204079356129,0.0335524432477,0.0335524432477,0.0335524432477,0.0332795575752,0.0332795575752,0.03337002376,0.0332795575752,0.021035601253,0.0332795575752,0.021035601253,0.021035601253,0.03337002376,0.0352888456347,0.035595912948,0.035595912948,0.047992205691,0.047992205691,0.047992205691,0.047992205691,0.0476193358445,0.0485626077877,0.0364415666244,0.0352888456347,0.0343986954966,0.0344953722058,0.0346903688572,0.0336444047217,0.0336444047217,0.0335524432477,0.0332795575752,0.0332795575752,0.0334609842965,0.0334609842965,0.0335524432477,0.0336444047217,0.034111896908,0.0349870423412,0.0349870423412,0.0349870423412,0.0335524432477,0.0349870423412,0.0349870423412,0.0349870423412,0.0349870423412,0.0201738801534,0.0201079938205,0.0184514239551,0.167448544174,0.167448544174,0.167448544174,0.0569063977498,0.0571719490641,0.0206475075588,0.0206475075588,0.0205099225201,0.0208221167675,0.0208221167675,0.0204079356129,0.0203741658629,0.0202402013817,0.0202402013817,0.0202402013817,0.0195649307995,0.0199451528122,0.0182871361259,0.0182600400447,0.0181524573841,0.0177857408977,0.0177857408977,0.0177857408977,0.0177345641208,0.0177345641208,0.0177345641208);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderTweedBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderTweedBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetFenderTweedBass%7E.mxo/cabinetFenderTweedBass.dsp
|
faust
|
declare name "cabinetFenderTweedBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 180;
modeFrequencies=(27.7742788764,38.883990427,127.761682832,183.310240584,266.633077214,327.736490742,422.169038922,488.827308225,544.375865978,611.034135282,727.686106563,877.667212495,1088.75173196,1372.0493765,1566.46932863,1605.35331906,1683.12129991,1827.54755007,1983.08351178,2121.95490616,2166.39375236,2449.6913969,2510.79481043,2549.67880086,2621.89192594,2710.76961834,2860.75072427,3027.39639753,3166.26779191,3249.59062854,3316.24889785,3477.33971533,3616.21110971,3882.84418693,3905.06361003,3943.94760045,4021.71558131,4160.58697569,4310.56808162,4438.32976445,4566.09144729,4732.73712054,4832.7245245,4871.60851493,4921.6022169,4966.04106311,5071.58332284,5082.69303439,5204.89986144,5388.21010203,5454.86837133,5532.63635219,5727.05630432,5882.59226603,5949.25053533,5993.68938153,6143.67048747,6293.6515934,6421.41327623,6460.29726666,6526.95553596,6632.49779569,6715.82063232,6743.5949112,6826.91774783,7065.77654616,7076.88625772,7093.55082504,7137.98967124,7154.65423857,7432.39702733,7510.16500819,7537.93928706,7554.60385439,7593.48784482,7604.59755637,7626.81697947,7871.23063358,7882.34034513,7926.77919133,7943.44375866,8054.54087417,8198.96712432,8210.07683587,8371.16765336,8393.38707646,8415.60649956,8460.04534576,8537.81332662,8571.14246127,8687.79443255,8710.01385565,8732.23327875,8760.00755763,8776.67212495,8798.89154805,8810.0012596,8821.11097116,8832.22068271,8898.87895201,8921.09837511,8937.76294244,8959.98236554,8993.31150019,9043.30520217,9054.41491372,9071.07948104,9126.6280388,9137.73775035,9148.8474619,9187.73145232,9209.95087543,9221.06058698,9232.17029853,9248.83486585,9271.05428895,9282.1640005,9293.27371205,9326.60284671,9426.59025066,9465.47424109,9482.13880841,9537.68736617,9554.35193349,9565.46164504,9587.68106814,9598.7907797,9665.449049,9704.33303943,9793.21073183,9854.31414536,9887.64328001,9898.75299156,9937.63698199,9954.30154931,9965.41126086,9987.63068397,9998.74039552,10037.6243859,10065.3986648,10076.5083764,10098.7277995,10109.837511,10176.4957803,10193.1603477,10209.824915,10259.818617,10304.2574632,10320.9220305,10359.8060209,10376.4705882,10482.012848,10493.1225595,10559.7808288,10870.8527522,10881.9624638,10893.0721753,11193.0343872,11204.1440988,11248.582945,11270.8023681,11287.4669354,11337.4606374,11348.5703489,11398.5640509,11409.6737624,11465.2223202,11481.8868875,11520.7708779,11598.5388588,11615.2034261,11759.6296763,11776.2942436,11804.0685225,11881.8365033,11915.165638,11926.2753495,11948.4947726,11959.6044842,11970.7141957);
massEigenValues=(0.0288641708751,0.10587374949,0.170815351105,0.162170522066,0.283173913826,0.247877995751,0.22220307395,0.262624657016,0.258388458233,0.286720247727,0.186542981636,0.183951510007,0.29287261321,0.262888223516,0.204354579123,0.192921281466,0.256725272357,0.236632861953,0.447416908942,0.513471467116,0.54463004763,0.978354507512,0.905696783593,0.976964600071,1.0,0.933516937609,0.646001080266,0.559394878364,0.82783629787,0.712016484586,0.716997871956,0.711171090304,0.651054126743,0.320285180161,0.319165845238,0.31615733496,0.328796657433,0.272379274648,0.310531376581,0.319072098337,0.260660087311,0.186659983703,0.172189299441,0.166881897035,0.169814350913,0.161990722651,0.191536197288,0.190707332578,0.182707660864,0.12785068332,0.12466779194,0.125538861661,0.109362583582,0.112802904867,0.105810799357,0.108691095914,0.0713010514487,0.031652036295,0.0187470596435,0.0179548772457,0.0138747130696,0.0201770621637,0.0193663272914,0.018014207223,0.0103274811248,0.0367352587064,0.0364806835028,0.0363738415218,0.0349112961548,0.0349363939995,0.0120434003915,0.0141643429685,0.0146417580305,0.0147735123852,0.0152598040192,0.0154396761254,0.0159709519505,0.0211754997282,0.0214014804358,0.0226271142097,0.022601670592,0.0173836982155,0.0104585057182,0.0103309178563,0.0101022192911,0.010620950028,0.0107080335891,0.0111347455184,0.0140815422071,0.0145358298512,0.021118522434,0.0209734440919,0.0206351929272,0.0210668539322,0.0209927362087,0.0211310981122,0.021412694324,0.0214218757016,0.0210632943024,0.0186778078624,0.0187691362274,0.0184635330139,0.0186585427743,0.0180395750275,0.0174692157256,0.0175056900843,0.017663464142,0.0194989401158,0.0194555048181,0.0194966730545,0.019011632227,0.0189818594935,0.0190424474009,0.0190010842015,0.0188911176829,0.0189768394028,0.0189140358982,0.0189649835048,0.0190250211261,0.0215834219841,0.0224355026402,0.0225501456454,0.0244253154351,0.0244164839118,0.0243962449223,0.0244379829541,0.0242857466049,0.0245826389819,0.0235836733274,0.0214865686974,0.0202750188528,0.020423850313,0.0204973162143,0.019630614419,0.0196122752806,0.0194609673329,0.0190038633546,0.0190160263729,0.0192021694223,0.0192822592572,0.0193311857166,0.0195696787941,0.0197650589289,0.0210804514898,0.0210986305568,0.0211301130225,0.0193369468036,0.020921927072,0.0207528585411,0.0211526521125,0.0208216679364,0.0167500028081,0.016621514468,0.0138041349849,0.0324190160524,0.0323947999191,0.03234110209,0.0190103716951,0.0190291585751,0.0180599033085,0.0181379653026,0.0179507545562,0.0185250468383,0.0184940312276,0.0176854801573,0.0176044768151,0.0171100251796,0.0170832450727,0.0171302809819,0.0159994941579,0.0160597644948,0.0131936270467,0.013136470732,0.0128466181804,0.0115459666148,0.0115043234794,0.0115960862342,0.0113877724991,0.0113418487998,0.0113814080323);
t60=(0.010777330712,6.10909018068,0.470002336384,0.436436337622,0.156719686852,0.150918156646,0.127349440656,0.152803653959,0.152803653959,0.156719686852,0.12225859813,0.531296769015,0.763704826809,0.0200752124053,0.0170952109637,0.0169775302929,0.0196900439733,0.0191393313718,0.0358036173538,0.067210373342,0.0679562840982,0.149078647077,0.130057335639,0.149078647077,0.150918156646,0.135834178312,0.0978225549736,0.0905822463244,0.235040347058,0.101053767176,0.101053767176,0.101053767176,0.0978225549736,0.0249118085045,0.0248614367015,0.0248614367015,0.0250131689102,0.0222125379598,0.0247613036648,0.0248614367015,0.0200099704387,0.01690769995,0.0158436662822,0.0150149409046,0.0153129224499,0.0149785108511,0.0169775302929,0.016954189211,0.0168384443466,0.011940676053,0.0113915104023,0.0119291707317,0.0113497657404,0.0113601729964,0.0113393776687,0.0113497657404,0.0110956842742,0.0107961001926,0.0104768594476,0.0104680175079,0.0100199855177,0.349164741141,0.330295206849,0.305528943153,0.00830068211491,0.230607102062,0.230607102062,0.230607102062,0.210733934924,0.210733934924,0.00831731429349,0.089916776793,0.0933457228774,0.0947917280661,0.0962832767358,0.0962832767358,0.0994118910513,0.185199926501,0.188047950499,0.203712082574,0.203712082574,0.101895228693,0.00830068211491,0.00830068211491,0.0174830543485,0.0176079071132,0.0176079071132,0.0177090865053,0.0185626061472,0.0187319256077,0.0349870423412,0.0349870423412,0.034788698136,0.0349870423412,0.0349870423412,0.0349870423412,0.0352888456347,0.0352888456347,0.0349870423412,0.0209639531812,0.0209639531812,0.0208221167675,0.0209639531812,0.0206475075588,0.0203405081193,0.0203405081193,0.0204079356129,0.0335524432477,0.0335524432477,0.0335524432477,0.0332795575752,0.0332795575752,0.03337002376,0.0332795575752,0.021035601253,0.0332795575752,0.021035601253,0.021035601253,0.03337002376,0.0352888456347,0.035595912948,0.035595912948,0.047992205691,0.047992205691,0.047992205691,0.047992205691,0.0476193358445,0.0485626077877,0.0364415666244,0.0352888456347,0.0343986954966,0.0344953722058,0.0346903688572,0.0336444047217,0.0336444047217,0.0335524432477,0.0332795575752,0.0332795575752,0.0334609842965,0.0334609842965,0.0335524432477,0.0336444047217,0.034111896908,0.0349870423412,0.0349870423412,0.0349870423412,0.0335524432477,0.0349870423412,0.0349870423412,0.0349870423412,0.0349870423412,0.0201738801534,0.0201079938205,0.0184514239551,0.167448544174,0.167448544174,0.167448544174,0.0569063977498,0.0571719490641,0.0206475075588,0.0206475075588,0.0205099225201,0.0208221167675,0.0208221167675,0.0204079356129,0.0203741658629,0.0202402013817,0.0202402013817,0.0202402013817,0.0195649307995,0.0199451528122,0.0182871361259,0.0182600400447,0.0181524573841,0.0177857408977,0.0177857408977,0.0177857408977,0.0177345641208,0.0177345641208,0.0177345641208);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderTweedBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderTweedBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
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dd73d7c60380090c137a6ac68e7a4e83001dae70faaaaa6df186d9561a493860
|
sebastien-clara/panoplie
|
cabinetVoxTopBoostTreble.dsp
|
declare name "cabinetVoxTopBoostTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 182;
modeFrequencies=(99.9874039552,127.761682832,166.645673259,255.523365663,344.401058068,499.937019776,616.588991057,655.472981484,733.240962338,788.789520091,872.11235672,922.106058698,1177.62942436,1283.17168409,1349.82995339,1394.2687996,1460.9270689,1477.59163623,1510.92077088,1566.46932863,1583.13389596,1599.79846328,1616.46303061,1638.68245371,1677.56644414,1688.67615569,1755.33442499,1821.99269429,1877.54125205,1938.64466558,1983.08351178,2044.18692531,2110.84519461,2210.83259856,2344.14913717,2399.69769492,2416.36226225,2477.46567578,2505.23995465,2527.45937776,2555.23365663,2677.44048369,2738.54389722,2766.31817609,2827.42158962,2977.40269555,3032.95125331,3132.93865726,3277.36490742,3294.02947474,3349.5780325,3371.7974556,3427.34601335,3449.56543645,3505.11399421,3521.77856153,3605.10139816,3682.86937901,3732.86308099,3816.18591762,3899.50875425,4016.16072553,4071.70928329,4132.81269681,4149.47726414,4321.67779317,4493.87832221,4638.30457236,4710.51769744,4766.0662552,4860.49880338,4910.49250535,4954.93135156,5021.58962086,5088.24789016,5182.68043834,5249.33870765,5338.21640005,5388.21010203,5493.75236176,5543.74606374,5638.17861192,5693.72716967,5804.82428517,5860.37284293,6049.23793929,6138.11563169,6660.27207457,6782.47890162,6832.4726036,6988.00856531,7143.54452702,7154.65423857,7282.4159214,7415.73246001,7560.15871017,7704.58496032,7837.90149893,7871.23063358,7910.11462401,8004.54717219,8154.52827812,8221.18654742,8310.06423983,8448.93563421,8498.92933619,8587.80702859,8732.23327875,8882.21438468,9032.19549062,9093.29890414,9182.17659655,9259.9445774,9271.05428895,9332.15770248,9465.47424109,9476.58395264,9582.12621237,9720.99760675,9837.64957803,9848.75928958,9876.53356846,9982.07582819,10043.1792417,10132.0569341,10198.7152034,10254.2637612,10298.7026074,10448.6837133,10598.6648192,10643.1036654,10781.9750598,10965.2853004,11070.8275601,11193.0343872,11309.6863585,11326.3509258,11381.8994836,11542.990301,11698.5262628,11820.7330898,11959.6044842,12109.5855901,12270.6764076,12426.2123693,12498.4254944,12637.2968888,12648.4066003,12781.7231389,12920.5945333,13059.4659277,13187.2276105,13198.3373221,14675.9289583,14698.1483814,14720.3678045,14792.5809296,14803.6906411,14814.8003527,14842.5746316,14975.8911702,15020.3300164,15053.659151,15070.3237184,15081.4334299,15103.652853,15114.7625646,15136.9819877,15159.2014108,15175.8659781,15192.5305454,15209.1951127,15253.6339589,15264.7436705,15275.853382,15286.9630936,15342.5116513,15353.6213629,15370.2859302,15392.5053533,15997.9846328,16114.6366041);
massEigenValues=(0.0812924670098,0.0797786858989,0.0935597984945,0.236908218373,0.247848795595,0.286535649593,0.214844579162,0.217760815167,0.163084051558,0.238890495504,0.284188785488,0.325300427184,0.301976120408,0.256973780891,0.255597132706,0.283346699178,0.261737826211,0.259847979776,0.251000344196,0.306590819106,0.313307231656,0.313524169238,0.316067942028,0.313482909382,0.340849855624,0.342099738452,0.419790297866,0.4249390581,0.393490236965,0.354261445184,0.424497492895,0.440145429637,0.582055062803,0.5719505083,0.573730719988,0.644736731114,0.641747088177,0.539326788505,0.558656409579,0.563833288425,0.553804552913,0.412609191553,0.356400035685,0.365204368727,0.523577117666,0.405515479179,0.338766685948,0.541820635889,0.994346115716,1.0,0.943961975873,0.949976794661,0.991631368505,0.988898712827,0.92503119641,0.92800638397,0.844667455522,0.638342528389,0.553906633664,0.457652028241,0.555871422983,0.590969362329,0.583102887393,0.51949278213,0.519844619297,0.240897093632,0.400205107903,0.636240750922,0.700201848725,0.685835972433,0.559952328836,0.506909791659,0.47350836386,0.460507038532,0.486801426589,0.435431359777,0.45860982215,0.390831299787,0.38185525252,0.350289223889,0.357024143076,0.27030587906,0.260751740116,0.161731518691,0.150745259236,0.22107865048,0.289496879916,0.0611533599978,0.0617751742988,0.0652211715409,0.0491285422723,0.041062571263,0.0411074952296,0.036202813234,0.0188064256968,0.031883740736,0.0516827006423,0.050635405965,0.0538754885718,0.0514560912426,0.0534934334749,0.0436281764521,0.0357710789089,0.0446535462937,0.0485546813709,0.0431106448476,0.044736087161,0.0411877136759,0.0385941654334,0.0463726798808,0.0442915853377,0.0571198020259,0.0542777611234,0.0542520513986,0.0574168604979,0.0656679587316,0.0654807603593,0.071712871303,0.0598419677359,0.0602454635099,0.0601678376639,0.0599462061509,0.0609206139236,0.0559740635599,0.0524296088177,0.0506377309955,0.0468415747818,0.0463642168491,0.0467146106855,0.0545669544592,0.0524235787644,0.0729643258003,0.110266579875,0.112998632728,0.094243440065,0.0639801187733,0.0639228291021,0.0655919532912,0.072763104288,0.0794744840233,0.068862021056,0.0578276531645,0.0534406596981,0.0384795544393,0.0263982180554,0.0214898117319,0.0300971133443,0.0301623198533,0.036215648905,0.0317552862967,0.0229462964709,0.0123038460731,0.0124616053266,0.0102094417173,0.0104463508058,0.0103903162606,0.0106083064619,0.0110040217052,0.0108839920027,0.0103360711656,0.0103695804881,0.0103792459525,0.0115478836617,0.0115741280558,0.0112711979732,0.0108866683146,0.0108576157819,0.0105975986441,0.0109149068248,0.0112890493305,0.010997486141,0.0113619622001,0.0104317923836,0.0112384173602,0.0105372759086,0.0105793065525,0.0103694136776,0.010489596811,0.0102131405132,0.0102545934485,0.0106803770099,0.0102900885812);
t60=(0.0105751234975,0.0105751234975,0.0106204055935,0.150918156646,0.214429646696,0.226338051331,0.149078647077,0.149078647077,0.0764410194097,0.226338051331,0.407345805406,0.488799295711,0.0218186944235,0.0147989941055,0.0147989941055,0.0211803823377,0.0147989941055,0.0147989941055,0.014763608598,0.0218574469399,0.0218963378587,0.0218963378587,0.0218963378587,0.0218963378587,0.0232625385578,0.0232625385578,0.0640470869761,0.0643837642314,0.0489504812201,0.0249623854887,0.0643837642314,0.070702787926,0.24942577474,0.24443882647,0.239647444806,0.254620512528,0.254620512528,0.235040347058,0.239647444806,0.239647444806,0.235040347058,0.226338051331,0.0249623854887,0.0250641600356,0.555443060688,0.555443060688,0.0232186294343,0.0608645657491,0.156719686852,0.15875398966,0.150918156646,0.150918156646,0.156719686852,0.156719686852,0.150918156646,0.150918156646,0.1328829652,0.0978225549736,0.0611684965187,0.0593891736878,0.0611684965187,0.0617855680864,0.0617855680864,0.0605636441966,0.0605636441966,0.014763608598,0.0577105673004,0.152803653959,0.177151163056,0.172163197002,0.0886147711953,0.0694989631848,0.0679562840982,0.067210373342,0.0687189569013,0.0664806780444,0.067210373342,0.0574399938194,0.0574399938194,0.0522921602287,0.0525162535221,0.0147989941055,0.0147989941055,0.0142854929507,0.0110167803039,0.190984975253,0.298078928886,0.00985297292544,0.00986079855377,0.15875398966,0.00978310169984,0.00960157094947,0.00960157094947,0.939926321566,1.11080777118,0.0137758299947,0.147283463044,0.143819813862,0.150918156646,0.147283463044,0.149078647077,0.0143853069643,0.0140419468179,0.0563826375587,0.169773129941,0.0143685740098,0.0563826375587,0.0143352252521,0.0140899857271,0.0194414038552,0.0144020791524,0.0501522530355,0.0493446106811,0.0493446106811,0.0501522530355,0.0599706517306,0.0596784944693,0.111151305558,0.0509868168241,0.0509868168241,0.0509868168241,0.0509868168241,0.0539022755086,0.0497451487566,0.020578484191,0.0204758133759,0.0194721385346,0.0194414038552,0.0194721385346,0.036333664223,0.020578484191,0.0456680301136,0.150918156646,0.154736885385,0.119862907549,0.0408051404786,0.0408051404786,0.0413555012354,0.0456680301136,0.055363556662,0.0420647290407,0.0393646464966,0.0358036173538,0.0140899857271,0.0122116053245,0.0121397420132,0.142148401762,0.143819813862,0.179755174754,0.149078647077,0.0121636016737,0.011637673677,0.011637673677,0.0582594449382,0.0588188779216,0.0588188779216,0.0602656873902,0.0698956520976,0.0605636441966,0.0585378230727,0.0588188779216,0.0588188779216,0.083194176575,0.083194176575,0.070296900655,0.0605636441966,0.0605636441966,0.0602656873902,0.0605636441966,0.070702787926,0.0698956520976,0.083194176575,0.0588188779216,0.070296900655,0.0602656873902,0.0602656873902,0.0588188779216,0.0588188779216,0.0582594449382,0.0582594449382,0.142148401762,0.114265499704);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetVoxTopBoostTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetVoxTopBoostTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetVoxTopBoostTreble%7E.mxo/cabinetVoxTopBoostTreble.dsp
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faust
|
declare name "cabinetVoxTopBoostTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 182;
modeFrequencies=(99.9874039552,127.761682832,166.645673259,255.523365663,344.401058068,499.937019776,616.588991057,655.472981484,733.240962338,788.789520091,872.11235672,922.106058698,1177.62942436,1283.17168409,1349.82995339,1394.2687996,1460.9270689,1477.59163623,1510.92077088,1566.46932863,1583.13389596,1599.79846328,1616.46303061,1638.68245371,1677.56644414,1688.67615569,1755.33442499,1821.99269429,1877.54125205,1938.64466558,1983.08351178,2044.18692531,2110.84519461,2210.83259856,2344.14913717,2399.69769492,2416.36226225,2477.46567578,2505.23995465,2527.45937776,2555.23365663,2677.44048369,2738.54389722,2766.31817609,2827.42158962,2977.40269555,3032.95125331,3132.93865726,3277.36490742,3294.02947474,3349.5780325,3371.7974556,3427.34601335,3449.56543645,3505.11399421,3521.77856153,3605.10139816,3682.86937901,3732.86308099,3816.18591762,3899.50875425,4016.16072553,4071.70928329,4132.81269681,4149.47726414,4321.67779317,4493.87832221,4638.30457236,4710.51769744,4766.0662552,4860.49880338,4910.49250535,4954.93135156,5021.58962086,5088.24789016,5182.68043834,5249.33870765,5338.21640005,5388.21010203,5493.75236176,5543.74606374,5638.17861192,5693.72716967,5804.82428517,5860.37284293,6049.23793929,6138.11563169,6660.27207457,6782.47890162,6832.4726036,6988.00856531,7143.54452702,7154.65423857,7282.4159214,7415.73246001,7560.15871017,7704.58496032,7837.90149893,7871.23063358,7910.11462401,8004.54717219,8154.52827812,8221.18654742,8310.06423983,8448.93563421,8498.92933619,8587.80702859,8732.23327875,8882.21438468,9032.19549062,9093.29890414,9182.17659655,9259.9445774,9271.05428895,9332.15770248,9465.47424109,9476.58395264,9582.12621237,9720.99760675,9837.64957803,9848.75928958,9876.53356846,9982.07582819,10043.1792417,10132.0569341,10198.7152034,10254.2637612,10298.7026074,10448.6837133,10598.6648192,10643.1036654,10781.9750598,10965.2853004,11070.8275601,11193.0343872,11309.6863585,11326.3509258,11381.8994836,11542.990301,11698.5262628,11820.7330898,11959.6044842,12109.5855901,12270.6764076,12426.2123693,12498.4254944,12637.2968888,12648.4066003,12781.7231389,12920.5945333,13059.4659277,13187.2276105,13198.3373221,14675.9289583,14698.1483814,14720.3678045,14792.5809296,14803.6906411,14814.8003527,14842.5746316,14975.8911702,15020.3300164,15053.659151,15070.3237184,15081.4334299,15103.652853,15114.7625646,15136.9819877,15159.2014108,15175.8659781,15192.5305454,15209.1951127,15253.6339589,15264.7436705,15275.853382,15286.9630936,15342.5116513,15353.6213629,15370.2859302,15392.5053533,15997.9846328,16114.6366041);
massEigenValues=(0.0812924670098,0.0797786858989,0.0935597984945,0.236908218373,0.247848795595,0.286535649593,0.214844579162,0.217760815167,0.163084051558,0.238890495504,0.284188785488,0.325300427184,0.301976120408,0.256973780891,0.255597132706,0.283346699178,0.261737826211,0.259847979776,0.251000344196,0.306590819106,0.313307231656,0.313524169238,0.316067942028,0.313482909382,0.340849855624,0.342099738452,0.419790297866,0.4249390581,0.393490236965,0.354261445184,0.424497492895,0.440145429637,0.582055062803,0.5719505083,0.573730719988,0.644736731114,0.641747088177,0.539326788505,0.558656409579,0.563833288425,0.553804552913,0.412609191553,0.356400035685,0.365204368727,0.523577117666,0.405515479179,0.338766685948,0.541820635889,0.994346115716,1.0,0.943961975873,0.949976794661,0.991631368505,0.988898712827,0.92503119641,0.92800638397,0.844667455522,0.638342528389,0.553906633664,0.457652028241,0.555871422983,0.590969362329,0.583102887393,0.51949278213,0.519844619297,0.240897093632,0.400205107903,0.636240750922,0.700201848725,0.685835972433,0.559952328836,0.506909791659,0.47350836386,0.460507038532,0.486801426589,0.435431359777,0.45860982215,0.390831299787,0.38185525252,0.350289223889,0.357024143076,0.27030587906,0.260751740116,0.161731518691,0.150745259236,0.22107865048,0.289496879916,0.0611533599978,0.0617751742988,0.0652211715409,0.0491285422723,0.041062571263,0.0411074952296,0.036202813234,0.0188064256968,0.031883740736,0.0516827006423,0.050635405965,0.0538754885718,0.0514560912426,0.0534934334749,0.0436281764521,0.0357710789089,0.0446535462937,0.0485546813709,0.0431106448476,0.044736087161,0.0411877136759,0.0385941654334,0.0463726798808,0.0442915853377,0.0571198020259,0.0542777611234,0.0542520513986,0.0574168604979,0.0656679587316,0.0654807603593,0.071712871303,0.0598419677359,0.0602454635099,0.0601678376639,0.0599462061509,0.0609206139236,0.0559740635599,0.0524296088177,0.0506377309955,0.0468415747818,0.0463642168491,0.0467146106855,0.0545669544592,0.0524235787644,0.0729643258003,0.110266579875,0.112998632728,0.094243440065,0.0639801187733,0.0639228291021,0.0655919532912,0.072763104288,0.0794744840233,0.068862021056,0.0578276531645,0.0534406596981,0.0384795544393,0.0263982180554,0.0214898117319,0.0300971133443,0.0301623198533,0.036215648905,0.0317552862967,0.0229462964709,0.0123038460731,0.0124616053266,0.0102094417173,0.0104463508058,0.0103903162606,0.0106083064619,0.0110040217052,0.0108839920027,0.0103360711656,0.0103695804881,0.0103792459525,0.0115478836617,0.0115741280558,0.0112711979732,0.0108866683146,0.0108576157819,0.0105975986441,0.0109149068248,0.0112890493305,0.010997486141,0.0113619622001,0.0104317923836,0.0112384173602,0.0105372759086,0.0105793065525,0.0103694136776,0.010489596811,0.0102131405132,0.0102545934485,0.0106803770099,0.0102900885812);
t60=(0.0105751234975,0.0105751234975,0.0106204055935,0.150918156646,0.214429646696,0.226338051331,0.149078647077,0.149078647077,0.0764410194097,0.226338051331,0.407345805406,0.488799295711,0.0218186944235,0.0147989941055,0.0147989941055,0.0211803823377,0.0147989941055,0.0147989941055,0.014763608598,0.0218574469399,0.0218963378587,0.0218963378587,0.0218963378587,0.0218963378587,0.0232625385578,0.0232625385578,0.0640470869761,0.0643837642314,0.0489504812201,0.0249623854887,0.0643837642314,0.070702787926,0.24942577474,0.24443882647,0.239647444806,0.254620512528,0.254620512528,0.235040347058,0.239647444806,0.239647444806,0.235040347058,0.226338051331,0.0249623854887,0.0250641600356,0.555443060688,0.555443060688,0.0232186294343,0.0608645657491,0.156719686852,0.15875398966,0.150918156646,0.150918156646,0.156719686852,0.156719686852,0.150918156646,0.150918156646,0.1328829652,0.0978225549736,0.0611684965187,0.0593891736878,0.0611684965187,0.0617855680864,0.0617855680864,0.0605636441966,0.0605636441966,0.014763608598,0.0577105673004,0.152803653959,0.177151163056,0.172163197002,0.0886147711953,0.0694989631848,0.0679562840982,0.067210373342,0.0687189569013,0.0664806780444,0.067210373342,0.0574399938194,0.0574399938194,0.0522921602287,0.0525162535221,0.0147989941055,0.0147989941055,0.0142854929507,0.0110167803039,0.190984975253,0.298078928886,0.00985297292544,0.00986079855377,0.15875398966,0.00978310169984,0.00960157094947,0.00960157094947,0.939926321566,1.11080777118,0.0137758299947,0.147283463044,0.143819813862,0.150918156646,0.147283463044,0.149078647077,0.0143853069643,0.0140419468179,0.0563826375587,0.169773129941,0.0143685740098,0.0563826375587,0.0143352252521,0.0140899857271,0.0194414038552,0.0144020791524,0.0501522530355,0.0493446106811,0.0493446106811,0.0501522530355,0.0599706517306,0.0596784944693,0.111151305558,0.0509868168241,0.0509868168241,0.0509868168241,0.0509868168241,0.0539022755086,0.0497451487566,0.020578484191,0.0204758133759,0.0194721385346,0.0194414038552,0.0194721385346,0.036333664223,0.020578484191,0.0456680301136,0.150918156646,0.154736885385,0.119862907549,0.0408051404786,0.0408051404786,0.0413555012354,0.0456680301136,0.055363556662,0.0420647290407,0.0393646464966,0.0358036173538,0.0140899857271,0.0122116053245,0.0121397420132,0.142148401762,0.143819813862,0.179755174754,0.149078647077,0.0121636016737,0.011637673677,0.011637673677,0.0582594449382,0.0588188779216,0.0588188779216,0.0602656873902,0.0698956520976,0.0605636441966,0.0585378230727,0.0588188779216,0.0588188779216,0.083194176575,0.083194176575,0.070296900655,0.0605636441966,0.0605636441966,0.0602656873902,0.0605636441966,0.070702787926,0.0698956520976,0.083194176575,0.0588188779216,0.070296900655,0.0602656873902,0.0602656873902,0.0588188779216,0.0588188779216,0.0582594449382,0.0582594449382,0.142148401762,0.114265499704);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetVoxTopBoostTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetVoxTopBoostTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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5ae5f335226e5b8503d181e2fc3f43cee826915cffc1a2d433c08ed858a25030
|
sebastien-clara/panoplie
|
cabinetMarshall1960AVBass.dsp
|
declare name "cabinetMarshall1960AVBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 175;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,183.310240584,222.194231011,338.846202292,477.717596675,583.259856405,627.698702607,711.021539237,766.57009699,888.776924046,1027.64831843,1133.19057816,1188.73913591,1210.95855901,1333.16538607,1422.04307847,1477.59163623,1533.14019398,1583.13389596,1655.34702104,1705.34072301,1810.88298274,1860.87668472,1944.19952135,1988.63836755,2021.9675022,2138.61947349,2171.94860814,2216.38745434,2310.82000252,2333.03942562,2466.35596423,2588.56279128,2699.65990679,2755.20846454,2877.4152916,3032.95125331,3094.05466683,3177.37750346,3305.1391863,3466.23000378,3549.55284041,3632.87567704,3743.97279254,3799.5213503,3860.62476382,3949.50245623,4055.04471596,4093.92870639,4177.25154302,4260.57437964,4321.67779317,4454.99433178,4588.31087039,4627.19486081,4727.18226477,4760.51139942,4910.49250535,4954.93135156,5016.03476508,5093.80274594,5243.78385187,5282.6678423,5354.88096738,5393.7649578,5443.75865978,5499.30721753,5582.63005416,5721.50144855,5843.7082756,5893.70197758,5949.25053533,6010.35394886,6143.67048747,6276.98702607,6410.30356468,6443.63269933,6560.28467061,6732.48519965,6871.35659403,6932.46000756,6965.78914221,6993.56342109,7082.44111349,7215.7576521,7365.73875803,7449.06159466,7499.05529664,7593.48784482,7632.37183524,7676.81068145,7754.5786623,7854.56606626,7882.34034513,7948.99861444,7982.32774909,8082.31515304,8198.96712432,8232.29625897,8310.06423983,8376.72250913,8404.49678801,8482.26476886,8543.36818239,8654.4652979,8715.56871142,8726.67842298,8798.89154805,8865.54981736,8926.65323089,9004.42121174,9071.07948104,9104.40861569,9204.39601965,9226.61544275,9371.04169291,9448.80967376,9504.35823152,9515.46794307,9593.23592392,9626.56505857,9665.449049,9726.55246253,9765.43645295,9815.43015493,9854.31414536,9915.41755889,9959.85640509,9987.63068397,10076.5083764,10109.837511,10215.3797708,10270.9283285,10354.2511651,10365.3608767,10426.4642902,10459.7934249,10520.8968384,10582.0002519,10693.0973674,10809.7493387,10870.8527522,10943.0658773,11020.8338582,11087.4921275,11326.3509258,11459.6674644,11576.3194357,11704.0811185,11837.3976571,11859.6170802,11948.4947726,12098.4758786,12553.9740521,12609.5226099,12637.2968888,12709.5100139,12898.3751102,13031.6916488,13065.0207835,13076.130495,13092.7950624,13103.9047739,13203.8921779,13220.5567452,13231.6664567,13314.9892934,13431.6412646,13787.1520343,13842.700592,13892.694294,13909.3588613,13931.5782844);
massEigenValues=(0.107068845829,0.363598584061,0.492117230093,0.514774462501,0.539649555147,0.88421168965,1.0,0.628886759755,0.676003465463,0.50411527846,0.770928973914,0.665629766467,0.662193565116,0.458552127009,0.62581601039,0.577898125013,0.375863596579,0.403980952549,0.473328662323,0.702416965899,0.645551746567,0.755868177428,0.462361797513,0.647919551747,0.5647382723,0.499430108351,0.478776776909,0.538729160394,0.655623733429,0.653493833456,0.715941005026,0.65583040561,0.603277000108,0.770435699627,0.692590163968,0.463199154906,0.458350939776,0.422995867317,0.534063550336,0.400608120412,0.533990842616,0.530630801229,0.470768762421,0.222634756115,0.306069777292,0.255037272984,0.282023862857,0.345200976532,0.517733085658,0.420893733969,0.416769113337,0.374278742039,0.348396509069,0.425425472513,0.57896889086,0.399848306675,0.389117919419,0.295604566336,0.299541426223,0.204576111311,0.218453663273,0.165218065366,0.143434176139,0.175343322064,0.147557931908,0.13601894025,0.118206641375,0.15684385775,0.10103350626,0.113989658305,0.0834766100159,0.0725718601964,0.063982134114,0.0657914726055,0.0668072969033,0.0740074407031,0.0508830712193,0.055024365228,0.0541170083958,0.0538170536771,0.0347384946504,0.0322667338596,0.0256847113983,0.029788614064,0.0290590156687,0.039260795566,0.0349634808835,0.0371665474241,0.0212963401253,0.0235848215202,0.020211098577,0.0234878097832,0.0169441437716,0.0205030303722,0.0112249103675,0.0114751456244,0.0112458097137,0.0121560801102,0.0141626346787,0.0222978269427,0.0209133324918,0.0252801015146,0.027822540703,0.0283109283764,0.0241848035147,0.0293557850304,0.0287166596599,0.03138333633,0.031448510418,0.0332867278474,0.0390642938142,0.0361051475697,0.0372285559182,0.0366793710768,0.0356999151892,0.0328707588279,0.0333261090572,0.0302917286568,0.0289994369318,0.028231127367,0.0281784709157,0.0248189298773,0.0228644961199,0.0260576667136,0.0240558713608,0.027897668097,0.0261619318586,0.0287422480954,0.0262267778899,0.0224580532136,0.0213700239488,0.0259400097142,0.0238805657298,0.0326468546094,0.0288665218962,0.0321096109975,0.0320381043392,0.0301195940658,0.0296718889176,0.0236370034427,0.0300299926573,0.03047145931,0.0222018929049,0.0224505556984,0.0189645108778,0.0190859958513,0.0163684054629,0.0183308835251,0.0312025686179,0.0343179703159,0.0299781035886,0.0241449151547,0.0238516122883,0.0196222219142,0.0118877476901,0.0115287242015,0.0100410997776,0.0101306390412,0.0116325143413,0.0112999023193,0.0145586244041,0.0131790643622,0.0132118732608,0.0129412505739,0.0130336693198,0.0181606539688,0.0177955950727,0.01757762275,0.0193174611253,0.0143481033613,0.0108836816475,0.0102422860868,0.0106175800906,0.0107197662603,0.0103013468477);
t60=(0.0125078314263,0.0933457228774,0.0962832767358,0.0994118910513,0.124752072014,0.643132225291,0.763704826809,0.130057335639,0.131454958861,0.0994118910513,1.11080777118,0.939926321566,1.11080777118,0.260036302995,0.814613258605,0.718785622302,0.939926321566,0.0536662059707,0.0605636441966,0.339467897125,0.26568756262,0.359431987757,0.0602656873902,0.488799295711,0.407345805406,0.10450591701,0.0605636441966,0.222224238814,0.21825734818,0.21825734818,0.226338051331,0.21825734818,0.210733934924,0.872794323539,0.814613258605,0.610979531587,0.610979531587,0.678857440537,0.254620512528,0.150918156646,0.254620512528,0.581888999203,0.872794323539,0.0142854929507,0.470002336384,0.0177345641208,0.0336444047217,0.0769212874683,0.290983677212,0.179755174754,0.179755174754,0.0820785284899,0.0769212874683,0.230607102062,0.581888999203,0.083194176575,0.0826325834499,0.0605636441966,0.0608645657491,0.0137299176391,0.0138997864465,0.0134461385025,0.0134024062651,0.381891589759,0.222224238814,0.0125713751808,0.0125204884097,0.230607102062,0.0122357504464,0.610979531587,0.872794323539,0.169773129941,0.128689136067,0.130057335639,0.130057335639,0.24443882647,0.939926321566,0.718785622302,0.678857440537,0.718785622302,1.01824698596,0.349164741141,0.203712082574,0.330295206849,0.210733934924,0.763704826809,0.763704826809,0.718785622302,0.130057335639,0.185199926501,0.128689136067,0.610979531587,0.126037367835,0.814613258605,0.339467897125,0.339467897125,0.339467897125,0.359431987757,0.0222125379598,0.0241296574375,0.0230015552589,0.0366593097966,0.0392387291969,0.0393646464966,0.0364415666244,0.039491376167,0.039491376167,0.0617855680864,0.0617855680864,0.0627349089727,0.131454958861,0.103620937917,0.105406154366,0.103620937917,0.102750832425,0.0627349089727,0.0627349089727,0.0402692629172,0.039491376167,0.0392387291969,0.0392387291969,0.0365501132202,0.0241296574375,0.0366593097966,0.0364415666244,0.0392387291969,0.0367691622093,0.039491376167,0.0368796763845,0.0241296574375,0.0240824056841,0.0779001777853,0.0723743710262,0.177151163056,0.0867310184335,0.174621551698,0.174621551698,0.0986108143979,0.0986108143979,0.0242247212437,0.0986108143979,0.100226100112,0.0241296574375,0.0241296574375,0.0229158616823,0.0229586282329,0.0228308064216,0.0919432065767,0.1328829652,0.167448544174,0.127349440656,0.0994118910513,0.0994118910513,0.0933457228774,0.0779001777853,0.290983677212,0.182436918149,0.182436918149,0.290983677212,0.0886147711953,0.124752072014,0.105406154366,0.105406154366,0.100226100112,0.100226100112,0.185199926501,0.143819813862,0.143819813862,0.210733934924,0.124752072014,0.235040347058,0.226338051331,0.226338051331,0.226338051331,0.226338051331);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshall1960AVBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshall1960AVBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshall1960AVBass%7E.mxo/cabinetMarshall1960AVBass.dsp
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faust
|
declare name "cabinetMarshall1960AVBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 175;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,183.310240584,222.194231011,338.846202292,477.717596675,583.259856405,627.698702607,711.021539237,766.57009699,888.776924046,1027.64831843,1133.19057816,1188.73913591,1210.95855901,1333.16538607,1422.04307847,1477.59163623,1533.14019398,1583.13389596,1655.34702104,1705.34072301,1810.88298274,1860.87668472,1944.19952135,1988.63836755,2021.9675022,2138.61947349,2171.94860814,2216.38745434,2310.82000252,2333.03942562,2466.35596423,2588.56279128,2699.65990679,2755.20846454,2877.4152916,3032.95125331,3094.05466683,3177.37750346,3305.1391863,3466.23000378,3549.55284041,3632.87567704,3743.97279254,3799.5213503,3860.62476382,3949.50245623,4055.04471596,4093.92870639,4177.25154302,4260.57437964,4321.67779317,4454.99433178,4588.31087039,4627.19486081,4727.18226477,4760.51139942,4910.49250535,4954.93135156,5016.03476508,5093.80274594,5243.78385187,5282.6678423,5354.88096738,5393.7649578,5443.75865978,5499.30721753,5582.63005416,5721.50144855,5843.7082756,5893.70197758,5949.25053533,6010.35394886,6143.67048747,6276.98702607,6410.30356468,6443.63269933,6560.28467061,6732.48519965,6871.35659403,6932.46000756,6965.78914221,6993.56342109,7082.44111349,7215.7576521,7365.73875803,7449.06159466,7499.05529664,7593.48784482,7632.37183524,7676.81068145,7754.5786623,7854.56606626,7882.34034513,7948.99861444,7982.32774909,8082.31515304,8198.96712432,8232.29625897,8310.06423983,8376.72250913,8404.49678801,8482.26476886,8543.36818239,8654.4652979,8715.56871142,8726.67842298,8798.89154805,8865.54981736,8926.65323089,9004.42121174,9071.07948104,9104.40861569,9204.39601965,9226.61544275,9371.04169291,9448.80967376,9504.35823152,9515.46794307,9593.23592392,9626.56505857,9665.449049,9726.55246253,9765.43645295,9815.43015493,9854.31414536,9915.41755889,9959.85640509,9987.63068397,10076.5083764,10109.837511,10215.3797708,10270.9283285,10354.2511651,10365.3608767,10426.4642902,10459.7934249,10520.8968384,10582.0002519,10693.0973674,10809.7493387,10870.8527522,10943.0658773,11020.8338582,11087.4921275,11326.3509258,11459.6674644,11576.3194357,11704.0811185,11837.3976571,11859.6170802,11948.4947726,12098.4758786,12553.9740521,12609.5226099,12637.2968888,12709.5100139,12898.3751102,13031.6916488,13065.0207835,13076.130495,13092.7950624,13103.9047739,13203.8921779,13220.5567452,13231.6664567,13314.9892934,13431.6412646,13787.1520343,13842.700592,13892.694294,13909.3588613,13931.5782844);
massEigenValues=(0.107068845829,0.363598584061,0.492117230093,0.514774462501,0.539649555147,0.88421168965,1.0,0.628886759755,0.676003465463,0.50411527846,0.770928973914,0.665629766467,0.662193565116,0.458552127009,0.62581601039,0.577898125013,0.375863596579,0.403980952549,0.473328662323,0.702416965899,0.645551746567,0.755868177428,0.462361797513,0.647919551747,0.5647382723,0.499430108351,0.478776776909,0.538729160394,0.655623733429,0.653493833456,0.715941005026,0.65583040561,0.603277000108,0.770435699627,0.692590163968,0.463199154906,0.458350939776,0.422995867317,0.534063550336,0.400608120412,0.533990842616,0.530630801229,0.470768762421,0.222634756115,0.306069777292,0.255037272984,0.282023862857,0.345200976532,0.517733085658,0.420893733969,0.416769113337,0.374278742039,0.348396509069,0.425425472513,0.57896889086,0.399848306675,0.389117919419,0.295604566336,0.299541426223,0.204576111311,0.218453663273,0.165218065366,0.143434176139,0.175343322064,0.147557931908,0.13601894025,0.118206641375,0.15684385775,0.10103350626,0.113989658305,0.0834766100159,0.0725718601964,0.063982134114,0.0657914726055,0.0668072969033,0.0740074407031,0.0508830712193,0.055024365228,0.0541170083958,0.0538170536771,0.0347384946504,0.0322667338596,0.0256847113983,0.029788614064,0.0290590156687,0.039260795566,0.0349634808835,0.0371665474241,0.0212963401253,0.0235848215202,0.020211098577,0.0234878097832,0.0169441437716,0.0205030303722,0.0112249103675,0.0114751456244,0.0112458097137,0.0121560801102,0.0141626346787,0.0222978269427,0.0209133324918,0.0252801015146,0.027822540703,0.0283109283764,0.0241848035147,0.0293557850304,0.0287166596599,0.03138333633,0.031448510418,0.0332867278474,0.0390642938142,0.0361051475697,0.0372285559182,0.0366793710768,0.0356999151892,0.0328707588279,0.0333261090572,0.0302917286568,0.0289994369318,0.028231127367,0.0281784709157,0.0248189298773,0.0228644961199,0.0260576667136,0.0240558713608,0.027897668097,0.0261619318586,0.0287422480954,0.0262267778899,0.0224580532136,0.0213700239488,0.0259400097142,0.0238805657298,0.0326468546094,0.0288665218962,0.0321096109975,0.0320381043392,0.0301195940658,0.0296718889176,0.0236370034427,0.0300299926573,0.03047145931,0.0222018929049,0.0224505556984,0.0189645108778,0.0190859958513,0.0163684054629,0.0183308835251,0.0312025686179,0.0343179703159,0.0299781035886,0.0241449151547,0.0238516122883,0.0196222219142,0.0118877476901,0.0115287242015,0.0100410997776,0.0101306390412,0.0116325143413,0.0112999023193,0.0145586244041,0.0131790643622,0.0132118732608,0.0129412505739,0.0130336693198,0.0181606539688,0.0177955950727,0.01757762275,0.0193174611253,0.0143481033613,0.0108836816475,0.0102422860868,0.0106175800906,0.0107197662603,0.0103013468477);
t60=(0.0125078314263,0.0933457228774,0.0962832767358,0.0994118910513,0.124752072014,0.643132225291,0.763704826809,0.130057335639,0.131454958861,0.0994118910513,1.11080777118,0.939926321566,1.11080777118,0.260036302995,0.814613258605,0.718785622302,0.939926321566,0.0536662059707,0.0605636441966,0.339467897125,0.26568756262,0.359431987757,0.0602656873902,0.488799295711,0.407345805406,0.10450591701,0.0605636441966,0.222224238814,0.21825734818,0.21825734818,0.226338051331,0.21825734818,0.210733934924,0.872794323539,0.814613258605,0.610979531587,0.610979531587,0.678857440537,0.254620512528,0.150918156646,0.254620512528,0.581888999203,0.872794323539,0.0142854929507,0.470002336384,0.0177345641208,0.0336444047217,0.0769212874683,0.290983677212,0.179755174754,0.179755174754,0.0820785284899,0.0769212874683,0.230607102062,0.581888999203,0.083194176575,0.0826325834499,0.0605636441966,0.0608645657491,0.0137299176391,0.0138997864465,0.0134461385025,0.0134024062651,0.381891589759,0.222224238814,0.0125713751808,0.0125204884097,0.230607102062,0.0122357504464,0.610979531587,0.872794323539,0.169773129941,0.128689136067,0.130057335639,0.130057335639,0.24443882647,0.939926321566,0.718785622302,0.678857440537,0.718785622302,1.01824698596,0.349164741141,0.203712082574,0.330295206849,0.210733934924,0.763704826809,0.763704826809,0.718785622302,0.130057335639,0.185199926501,0.128689136067,0.610979531587,0.126037367835,0.814613258605,0.339467897125,0.339467897125,0.339467897125,0.359431987757,0.0222125379598,0.0241296574375,0.0230015552589,0.0366593097966,0.0392387291969,0.0393646464966,0.0364415666244,0.039491376167,0.039491376167,0.0617855680864,0.0617855680864,0.0627349089727,0.131454958861,0.103620937917,0.105406154366,0.103620937917,0.102750832425,0.0627349089727,0.0627349089727,0.0402692629172,0.039491376167,0.0392387291969,0.0392387291969,0.0365501132202,0.0241296574375,0.0366593097966,0.0364415666244,0.0392387291969,0.0367691622093,0.039491376167,0.0368796763845,0.0241296574375,0.0240824056841,0.0779001777853,0.0723743710262,0.177151163056,0.0867310184335,0.174621551698,0.174621551698,0.0986108143979,0.0986108143979,0.0242247212437,0.0986108143979,0.100226100112,0.0241296574375,0.0241296574375,0.0229158616823,0.0229586282329,0.0228308064216,0.0919432065767,0.1328829652,0.167448544174,0.127349440656,0.0994118910513,0.0994118910513,0.0933457228774,0.0779001777853,0.290983677212,0.182436918149,0.182436918149,0.290983677212,0.0886147711953,0.124752072014,0.105406154366,0.105406154366,0.100226100112,0.100226100112,0.185199926501,0.143819813862,0.143819813862,0.210733934924,0.124752072014,0.235040347058,0.226338051331,0.226338051331,0.226338051331,0.226338051331);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshall1960AVBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshall1960AVBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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9ba8af3fc4521e292bb4e7dace6c1127f96b9005f0ee5af36707913a4bb3743c
|
sebastien-clara/panoplie
|
cabinetRandallExcelBass.dsp
|
declare name "cabinetRandallExcelBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 193;
modeFrequencies=(72.2131250787,127.761682832,166.645673259,183.310240584,233.303942562,333.291346517,472.162740899,566.595289079,633.253558383,711.021539237,761.015241214,883.222068271,1027.64831843,1172.07456859,1216.51341479,1260.95226099,1327.61053029,1422.04307847,1549.8047613,1599.79846328,1666.45673259,1727.56014611,1771.99899232,1805.32812697,1921.98009825,1983.08351178,2049.74178108,2077.51605996,2105.29033883,2221.94231011,2355.25884872,2410.80740647,2477.46567578,2499.68509888,2583.00793551,2649.66620481,2677.44048369,2738.54389722,2816.31187807,2999.62211865,3149.60322459,3282.91976319,3432.90086913,3549.55284041,3666.20481169,3721.75336944,3799.5213503,3816.18591762,3877.28933115,3932.8378889,4060.59957173,4138.36755259,4260.57437964,4377.22635093,4504.98803376,4549.42687996,4599.42058194,4649.41428391,4754.95654365,4793.84053407,4838.27938027,4899.3827938,4999.37019776,5071.58332284,5132.68673636,5193.79014989,5254.89356342,5282.6678423,5321.55183272,5343.77125583,5365.99067893,5399.31981358,5471.53293866,5504.86207331,5538.19120796,5621.51404459,5677.06260234,5699.28202544,5738.16601587,5849.26313138,5904.81168913,5938.14082378,5960.36024688,5988.13452576,6032.57337196,6154.78019902,6182.55447789,6221.43846832,6254.76760297,6282.54188185,6304.76130495,6343.64529538,6382.5292858,6432.52298778,6476.96183398,6599.16866104,6632.49779569,6676.93664189,6726.93034387,6832.4726036,6876.9114498,6921.35029601,6971.34399798,7010.22798841,7043.55712306,7176.87366167,7321.29991183,7332.40962338,8254.51568208,8387.83222068,8454.49048999,8515.59390351,8526.70361506,8565.58760549,8693.34928832,8737.78813453,8798.89154805,8815.55611538,8865.54981736,9015.53092329,9159.95717345,9193.2863081,9332.15770248,9487.69366419,9604.34563547,9621.0102028,9632.11991435,9715.44275098,9976.52097241,10104.2826552,10126.5020783,10154.2763572,10287.5928958,10315.3671747,10437.5740018,10448.6837133,10465.3482806,10576.4453961,10731.9813579,11204.1440988,11259.6926565,11326.3509258,11476.3320317,11537.4354453,11692.971407,11837.3976571,12942.8139564,12965.0333795,12981.6979468,13009.4722257,13059.4659277,13070.5756392,13148.3436201,13159.4533317,13187.2276105,14514.8381408,14587.0512659,14625.9352563,14648.1546794,14659.264391,14698.1483814,14764.8066507,14798.1357854,14853.6843431,14875.9037662,14887.0134778,14909.2329009,14931.452324,15081.4334299,15092.5431415,15103.652853,15203.640257,15214.7499685,15231.4145358,15259.1888147,15270.2985263,15281.4082378,15298.0728051,15309.1825167,15320.2922282,15336.9567956,15359.1762187,15375.840786,15386.9504975,15409.1699206,15420.2796322,15442.4990553,15464.7184784,15486.9379015,15536.9316035,15548.041315,15559.1510266,15581.3704497);
massEigenValues=(0.109436173006,0.518870371163,0.573826186881,0.614937470254,0.614288862093,0.912319063614,0.884646157174,0.348496550267,1.0,0.66103392159,0.644554697715,0.455794096102,0.583324678691,0.625385657502,0.779545188267,0.485558067087,0.365581496911,0.335286936909,0.342915191513,0.316980934561,0.334552827419,0.374172965963,0.388305980352,0.395645702827,0.486291773939,0.296890100661,0.384880138846,0.37534159947,0.316924683908,0.504112160364,0.550504400638,0.474530245352,0.53920867826,0.532816180564,0.410793123513,0.367881417393,0.352247626236,0.42262438798,0.422480193758,0.299143024285,0.431323510399,0.452736990461,0.280186150125,0.258752838293,0.152406322816,0.219334120109,0.245057308888,0.244444791767,0.293147834151,0.342831228346,0.474464680046,0.486461320647,0.450815028533,0.341385250381,0.237373045987,0.247485327904,0.206665291588,0.203251689548,0.116862784171,0.076009768148,0.0769067403007,0.0644338762918,0.0628066650045,0.0885442759597,0.151997628814,0.173501372488,0.180323911708,0.174851180169,0.13025029753,0.130800977998,0.123609803685,0.116049008798,0.0913209727203,0.0988242197312,0.0921383275894,0.105563161285,0.0817431872701,0.0753054164761,0.0777459527838,0.0416000309823,0.0603926148106,0.0592374289747,0.0562801478752,0.0609811330131,0.0960700943269,0.114173802222,0.117402959707,0.0969916765817,0.10743353533,0.116057433503,0.105190115356,0.122094177933,0.11036263212,0.132426637264,0.112979088337,0.0519959460749,0.0401816183865,0.0350043702883,0.0356424007082,0.0282038563896,0.0256394994392,0.017200143477,0.0178949085452,0.0173789424954,0.0128245468298,0.0106752217409,0.0120415204978,0.0120156877089,0.0149647427135,0.0163445575778,0.0111807485014,0.0176920661183,0.0176006002967,0.0164358607535,0.0174294793687,0.0173114121745,0.0127680246448,0.0130430879774,0.0151210766038,0.0153819560786,0.0124055775297,0.0136965079434,0.0158118656945,0.01947562826,0.0173697189588,0.0172943762944,0.0170764460348,0.0112616694588,0.015189125401,0.0219856127027,0.021323452731,0.019895507513,0.0161972809935,0.0155173952973,0.0146741616963,0.014814616769,0.0145254711193,0.0138164382127,0.0109853385596,0.0166106191165,0.018641649607,0.0221643918243,0.013217600008,0.0135946802922,0.0136268333376,0.0118189541899,0.0105508644026,0.0106643577743,0.0111309680581,0.0108852182837,0.0120830400396,0.0120379584753,0.0116279378988,0.0116354678093,0.0121440886219,0.0107832296557,0.0104473450147,0.011980213824,0.0127469545211,0.0125911476274,0.0113398040471,0.0146876314488,0.0158055752273,0.0125804725053,0.0132067199157,0.0130662407679,0.0128712117995,0.013071168911,0.0104280423788,0.0105549815322,0.0110118739213,0.0105143632952,0.010677722154,0.0114345370648,0.0116588044025,0.0113262188725,0.0111271207165,0.0108354850218,0.0108600836038,0.0108086041288,0.0117189885118,0.0118036567929,0.0114685531186,0.0114843076756,0.0118576049581,0.0118269486509,0.01185972175,0.0114366865116,0.0107620592932,0.0103517781462,0.0101931566536,0.0105138855859,0.0102128687921);
t60=(4.07275290229,0.160841826757,0.162985339515,0.167448544174,0.167448544174,0.718785622302,0.763704826809,0.13891953749,1.22188071348,0.381891589759,0.370321491753,0.197143252978,2.03641562423,1.52733130493,2.03641562423,0.436436337622,0.313361009441,1.11080777118,0.1328829652,0.0474350687711,0.1328829652,0.452597744427,0.452597744427,0.452597744427,0.939926321566,0.0470707869452,0.581888999203,0.075966717416,0.0474350687711,0.152803653959,0.26568756262,0.150918156646,0.254620512528,0.21825734818,0.089916776793,0.0754982710046,0.0754982710046,0.24942577474,0.24942577474,0.610979531587,0.277760708206,0.290983677212,0.126037367835,0.718785622302,0.0187604475675,0.0661217468466,0.0675812681922,0.0675812681922,0.0809924340054,0.112170323211,0.177151163056,0.182436918149,0.137359524421,0.112170323211,0.067210373342,0.0683354901278,0.0654154009655,0.0654154009655,0.0145548173666,0.014203372376,0.0142197204526,1.74551029889,1.52733130493,0.177151163056,1.35763653188,0.339467897125,0.488799295711,0.370321491753,0.26568756262,0.26568756262,0.207163501523,0.207163501523,0.194015238893,0.488799295711,0.194015238893,0.763704826809,0.185199926501,0.182436918149,0.185199926501,0.0732401910273,0.100226100112,0.0994118910513,0.0919432065767,0.100226100112,1.11080777118,0.169773129941,0.172163197002,0.15875398966,0.167448544174,0.172163197002,0.165186785054,0.177151163056,0.169773129941,0.260036302995,0.169773129941,0.0873499657672,0.0382597222295,0.0381407774625,0.0381407774625,0.763704826809,0.718785622302,0.26568756262,0.271589989347,0.26568756262,0.0322311021758,1.35763653188,0.872794323539,0.872794323539,0.531296769015,0.814613258605,0.0551145245097,0.581888999203,0.581888999203,0.509162668329,0.271589989347,0.26568756262,0.0892610221477,0.113208211565,0.24942577474,0.555443060688,0.152803653959,0.581888999203,0.678857440537,0.763704826809,0.581888999203,0.581888999203,0.581888999203,0.188047950499,0.154736885385,0.407345805406,0.370321491753,0.321605289754,0.15875398966,0.156719686852,0.643132225291,0.643132225291,0.643132225291,0.610979531587,0.581888999203,0.197143252978,0.226338051331,0.284218437251,0.145531021491,0.145531021491,0.610979531587,0.814613258605,0.154736885385,0.169773129941,0.177151163056,0.174621551698,0.188047950499,0.188047950499,0.185199926501,0.185199926501,0.190984975253,0.0579837054606,0.0577105673004,0.100226100112,0.127349440656,0.127349440656,0.0978225549736,0.172163197002,0.24942577474,0.127349440656,0.154736885385,0.154736885385,0.152803653959,0.154736885385,0.0577105673004,0.0577105673004,0.0579837054606,0.0577105673004,0.0579837054606,0.145531021491,0.145531021491,0.143819813862,0.0582594449382,0.0579837054606,0.0579837054606,0.0579837054606,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.0579837054606,0.0571719490641,0.0571719490641,0.0577105673004,0.0571719490641);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetRandallExcelBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetRandallExcelBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetRandallExcelBass%7E.mxo/cabinetRandallExcelBass.dsp
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faust
|
declare name "cabinetRandallExcelBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 193;
modeFrequencies=(72.2131250787,127.761682832,166.645673259,183.310240584,233.303942562,333.291346517,472.162740899,566.595289079,633.253558383,711.021539237,761.015241214,883.222068271,1027.64831843,1172.07456859,1216.51341479,1260.95226099,1327.61053029,1422.04307847,1549.8047613,1599.79846328,1666.45673259,1727.56014611,1771.99899232,1805.32812697,1921.98009825,1983.08351178,2049.74178108,2077.51605996,2105.29033883,2221.94231011,2355.25884872,2410.80740647,2477.46567578,2499.68509888,2583.00793551,2649.66620481,2677.44048369,2738.54389722,2816.31187807,2999.62211865,3149.60322459,3282.91976319,3432.90086913,3549.55284041,3666.20481169,3721.75336944,3799.5213503,3816.18591762,3877.28933115,3932.8378889,4060.59957173,4138.36755259,4260.57437964,4377.22635093,4504.98803376,4549.42687996,4599.42058194,4649.41428391,4754.95654365,4793.84053407,4838.27938027,4899.3827938,4999.37019776,5071.58332284,5132.68673636,5193.79014989,5254.89356342,5282.6678423,5321.55183272,5343.77125583,5365.99067893,5399.31981358,5471.53293866,5504.86207331,5538.19120796,5621.51404459,5677.06260234,5699.28202544,5738.16601587,5849.26313138,5904.81168913,5938.14082378,5960.36024688,5988.13452576,6032.57337196,6154.78019902,6182.55447789,6221.43846832,6254.76760297,6282.54188185,6304.76130495,6343.64529538,6382.5292858,6432.52298778,6476.96183398,6599.16866104,6632.49779569,6676.93664189,6726.93034387,6832.4726036,6876.9114498,6921.35029601,6971.34399798,7010.22798841,7043.55712306,7176.87366167,7321.29991183,7332.40962338,8254.51568208,8387.83222068,8454.49048999,8515.59390351,8526.70361506,8565.58760549,8693.34928832,8737.78813453,8798.89154805,8815.55611538,8865.54981736,9015.53092329,9159.95717345,9193.2863081,9332.15770248,9487.69366419,9604.34563547,9621.0102028,9632.11991435,9715.44275098,9976.52097241,10104.2826552,10126.5020783,10154.2763572,10287.5928958,10315.3671747,10437.5740018,10448.6837133,10465.3482806,10576.4453961,10731.9813579,11204.1440988,11259.6926565,11326.3509258,11476.3320317,11537.4354453,11692.971407,11837.3976571,12942.8139564,12965.0333795,12981.6979468,13009.4722257,13059.4659277,13070.5756392,13148.3436201,13159.4533317,13187.2276105,14514.8381408,14587.0512659,14625.9352563,14648.1546794,14659.264391,14698.1483814,14764.8066507,14798.1357854,14853.6843431,14875.9037662,14887.0134778,14909.2329009,14931.452324,15081.4334299,15092.5431415,15103.652853,15203.640257,15214.7499685,15231.4145358,15259.1888147,15270.2985263,15281.4082378,15298.0728051,15309.1825167,15320.2922282,15336.9567956,15359.1762187,15375.840786,15386.9504975,15409.1699206,15420.2796322,15442.4990553,15464.7184784,15486.9379015,15536.9316035,15548.041315,15559.1510266,15581.3704497);
massEigenValues=(0.109436173006,0.518870371163,0.573826186881,0.614937470254,0.614288862093,0.912319063614,0.884646157174,0.348496550267,1.0,0.66103392159,0.644554697715,0.455794096102,0.583324678691,0.625385657502,0.779545188267,0.485558067087,0.365581496911,0.335286936909,0.342915191513,0.316980934561,0.334552827419,0.374172965963,0.388305980352,0.395645702827,0.486291773939,0.296890100661,0.384880138846,0.37534159947,0.316924683908,0.504112160364,0.550504400638,0.474530245352,0.53920867826,0.532816180564,0.410793123513,0.367881417393,0.352247626236,0.42262438798,0.422480193758,0.299143024285,0.431323510399,0.452736990461,0.280186150125,0.258752838293,0.152406322816,0.219334120109,0.245057308888,0.244444791767,0.293147834151,0.342831228346,0.474464680046,0.486461320647,0.450815028533,0.341385250381,0.237373045987,0.247485327904,0.206665291588,0.203251689548,0.116862784171,0.076009768148,0.0769067403007,0.0644338762918,0.0628066650045,0.0885442759597,0.151997628814,0.173501372488,0.180323911708,0.174851180169,0.13025029753,0.130800977998,0.123609803685,0.116049008798,0.0913209727203,0.0988242197312,0.0921383275894,0.105563161285,0.0817431872701,0.0753054164761,0.0777459527838,0.0416000309823,0.0603926148106,0.0592374289747,0.0562801478752,0.0609811330131,0.0960700943269,0.114173802222,0.117402959707,0.0969916765817,0.10743353533,0.116057433503,0.105190115356,0.122094177933,0.11036263212,0.132426637264,0.112979088337,0.0519959460749,0.0401816183865,0.0350043702883,0.0356424007082,0.0282038563896,0.0256394994392,0.017200143477,0.0178949085452,0.0173789424954,0.0128245468298,0.0106752217409,0.0120415204978,0.0120156877089,0.0149647427135,0.0163445575778,0.0111807485014,0.0176920661183,0.0176006002967,0.0164358607535,0.0174294793687,0.0173114121745,0.0127680246448,0.0130430879774,0.0151210766038,0.0153819560786,0.0124055775297,0.0136965079434,0.0158118656945,0.01947562826,0.0173697189588,0.0172943762944,0.0170764460348,0.0112616694588,0.015189125401,0.0219856127027,0.021323452731,0.019895507513,0.0161972809935,0.0155173952973,0.0146741616963,0.014814616769,0.0145254711193,0.0138164382127,0.0109853385596,0.0166106191165,0.018641649607,0.0221643918243,0.013217600008,0.0135946802922,0.0136268333376,0.0118189541899,0.0105508644026,0.0106643577743,0.0111309680581,0.0108852182837,0.0120830400396,0.0120379584753,0.0116279378988,0.0116354678093,0.0121440886219,0.0107832296557,0.0104473450147,0.011980213824,0.0127469545211,0.0125911476274,0.0113398040471,0.0146876314488,0.0158055752273,0.0125804725053,0.0132067199157,0.0130662407679,0.0128712117995,0.013071168911,0.0104280423788,0.0105549815322,0.0110118739213,0.0105143632952,0.010677722154,0.0114345370648,0.0116588044025,0.0113262188725,0.0111271207165,0.0108354850218,0.0108600836038,0.0108086041288,0.0117189885118,0.0118036567929,0.0114685531186,0.0114843076756,0.0118576049581,0.0118269486509,0.01185972175,0.0114366865116,0.0107620592932,0.0103517781462,0.0101931566536,0.0105138855859,0.0102128687921);
t60=(4.07275290229,0.160841826757,0.162985339515,0.167448544174,0.167448544174,0.718785622302,0.763704826809,0.13891953749,1.22188071348,0.381891589759,0.370321491753,0.197143252978,2.03641562423,1.52733130493,2.03641562423,0.436436337622,0.313361009441,1.11080777118,0.1328829652,0.0474350687711,0.1328829652,0.452597744427,0.452597744427,0.452597744427,0.939926321566,0.0470707869452,0.581888999203,0.075966717416,0.0474350687711,0.152803653959,0.26568756262,0.150918156646,0.254620512528,0.21825734818,0.089916776793,0.0754982710046,0.0754982710046,0.24942577474,0.24942577474,0.610979531587,0.277760708206,0.290983677212,0.126037367835,0.718785622302,0.0187604475675,0.0661217468466,0.0675812681922,0.0675812681922,0.0809924340054,0.112170323211,0.177151163056,0.182436918149,0.137359524421,0.112170323211,0.067210373342,0.0683354901278,0.0654154009655,0.0654154009655,0.0145548173666,0.014203372376,0.0142197204526,1.74551029889,1.52733130493,0.177151163056,1.35763653188,0.339467897125,0.488799295711,0.370321491753,0.26568756262,0.26568756262,0.207163501523,0.207163501523,0.194015238893,0.488799295711,0.194015238893,0.763704826809,0.185199926501,0.182436918149,0.185199926501,0.0732401910273,0.100226100112,0.0994118910513,0.0919432065767,0.100226100112,1.11080777118,0.169773129941,0.172163197002,0.15875398966,0.167448544174,0.172163197002,0.165186785054,0.177151163056,0.169773129941,0.260036302995,0.169773129941,0.0873499657672,0.0382597222295,0.0381407774625,0.0381407774625,0.763704826809,0.718785622302,0.26568756262,0.271589989347,0.26568756262,0.0322311021758,1.35763653188,0.872794323539,0.872794323539,0.531296769015,0.814613258605,0.0551145245097,0.581888999203,0.581888999203,0.509162668329,0.271589989347,0.26568756262,0.0892610221477,0.113208211565,0.24942577474,0.555443060688,0.152803653959,0.581888999203,0.678857440537,0.763704826809,0.581888999203,0.581888999203,0.581888999203,0.188047950499,0.154736885385,0.407345805406,0.370321491753,0.321605289754,0.15875398966,0.156719686852,0.643132225291,0.643132225291,0.643132225291,0.610979531587,0.581888999203,0.197143252978,0.226338051331,0.284218437251,0.145531021491,0.145531021491,0.610979531587,0.814613258605,0.154736885385,0.169773129941,0.177151163056,0.174621551698,0.188047950499,0.188047950499,0.185199926501,0.185199926501,0.190984975253,0.0579837054606,0.0577105673004,0.100226100112,0.127349440656,0.127349440656,0.0978225549736,0.172163197002,0.24942577474,0.127349440656,0.154736885385,0.154736885385,0.152803653959,0.154736885385,0.0577105673004,0.0577105673004,0.0579837054606,0.0577105673004,0.0579837054606,0.145531021491,0.145531021491,0.143819813862,0.0582594449382,0.0579837054606,0.0579837054606,0.0579837054606,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.145531021491,0.0579837054606,0.0571719490641,0.0571719490641,0.0577105673004,0.0571719490641);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetRandallExcelBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetRandallExcelBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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96ea26d807a99fb9f92b255c16c2e72abad275d3407a5f2784f2f01a697890da
|
sebastien-clara/panoplie
|
cabinetOrangeTangerineTreble.dsp
|
declare name "cabinetOrangeTangerineTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 208;
modeFrequencies=(72.2131250787,83.3228366293,122.206827056,161.090817483,227.749086787,249.968509888,355.510769618,438.833606248,499.937019776,577.70500063,666.582693034,833.228366293,949.880337574,1010.9837511,1116.52601083,1160.96485703,1177.62942436,1222.06827056,1338.72024184,1394.2687996,1433.15279002,1505.3659151,1616.46303061,1655.34702104,1755.33442499,1799.77327119,1833.10240584,1899.76067515,1988.63836755,2088.62577151,2271.93601209,2316.37485829,2371.92341605,2444.13654113,2510.79481043,2605.22735861,2660.77591636,2771.87303187,2816.31187807,2916.29928203,2960.73812823,3005.17697443,3105.16437839,3160.71293614,3271.81005164,3316.24889785,3427.34601335,3488.44942688,3610.65625394,3677.31452324,3732.86308099,3760.63735987,3893.95389848,3927.28303313,3982.83159088,4049.48986018,4182.80639879,4232.80010077,4288.34865852,4327.23264895,4382.7812067,4466.10404333,4527.20745686,4577.20115884,4610.53029349,4638.30457236,4716.07255322,4760.51139942,4877.1633707,4988.26048621,5010.47990931,5099.35760171,5171.57072679,5204.89986144,5254.89356342,5338.21640005,5382.65524625,5415.9843809,5477.08779443,5521.52664063,5554.85577529,5599.29462149,5754.8305832,5821.4888525,5871.48255448,5927.03111223,6027.01851619,6088.12192971,6143.67048747,6210.32875677,6232.54817987,6293.6515934,6343.64529538,6393.63899735,6488.07154553,6515.84582441,6621.38808414,6654.71721879,6676.93664189,6749.14976697,6810.2531805,6899.13087291,6943.56971911,7038.00226729,7076.88625772,7210.20279632,7226.86736365,7254.64164252,7337.96447915,7404.62274846,7515.71986396,7587.93298904,7660.14611412,7699.03010455,7782.35294118,7810.12722005,7854.56606626,7876.78548936,7937.88890288,8082.31515304,8115.64428769,8132.30885502,8226.7414032,8254.51568208,8287.84481673,8432.27106688,8471.15505731,8482.26476886,8493.37448041,8576.69731704,8610.02645169,8643.35558635,8732.23327875,8748.89784608,8793.33669228,8810.0012596,8826.66582693,8871.10467313,8915.54351933,8998.86635596,9009.97606751,9098.85375992,9109.96347147,9126.6280388,9159.95717345,9182.17659655,9254.38972163,9321.04799093,9365.48683713,9443.25481799,9515.46794307,9865.42385691,10204.2700592,10226.4894823,10337.5865978,11137.4858294,11159.7052526,12692.8454465,12703.9551581,12726.1745812,12859.4911198,12870.6008313,12887.2653987,13253.8858798,13331.6538607,13342.7635722,13370.5378511,13403.8669858,13492.7446782,13553.8480917,13570.512659,13653.8354957,13670.500063,13681.6097745,13731.6034765,13748.2680438,13814.9263131,13831.5908805,13881.5845824,13892.694294,13903.8040055,13953.7977075,13970.4622748,13981.5719864,14003.7914095,14014.901121,14053.7851115,14125.9982366,14137.1079481,14148.2176597,14170.4370828,14192.6565059,14220.4307847,14253.7599194,14275.9793425,14292.6439098,14309.3084771,14337.082756,14359.3021791,14375.9667464,14403.7410253,14420.4055926,14431.5153042,14459.2895831,14475.9541504,14498.1735735,14509.283285,14520.3929966);
massEigenValues=(0.116355821145,0.140164781129,0.496752840397,0.489665996503,0.55496836189,0.477960032829,0.742701720671,0.523246594292,0.565024101138,0.955063440686,0.991547550453,0.809185949182,0.548547540702,0.410153782625,0.876363767149,0.756109127042,0.751518747107,0.607492069144,0.346927690536,0.401649961551,0.344262885253,0.380267404564,0.572954207091,0.526502549063,0.619221677027,0.532356688248,0.526790999701,0.390075862035,0.533275736066,0.540240472165,0.968717248957,1.0,0.951722945119,0.816932944669,0.665814325501,0.529917445948,0.480327104846,0.416132231993,0.453637940815,0.42801528178,0.429260228415,0.366166055639,0.499976731753,0.532242735586,0.594970180766,0.590742505266,0.496368048385,0.440998744569,0.347733884111,0.28637992513,0.332355244884,0.349192698803,0.427908417523,0.429818276479,0.512678909664,0.557821967779,0.760811484192,0.69531887755,0.678190524935,0.628202167395,0.425398805505,0.431570893239,0.371729158062,0.359296744589,0.352209550881,0.384627141365,0.33869173507,0.387238919566,0.27120527437,0.19628236088,0.218414722008,0.187572093729,0.148606096786,0.159396555548,0.23496677118,0.25973162078,0.169748283761,0.174531114778,0.139717670109,0.126120976147,0.136068795678,0.16371314381,0.170028774909,0.126092997133,0.143356582133,0.156956300949,0.21075684912,0.168606543793,0.176105774112,0.168083843801,0.168922710941,0.135646756085,0.132908618715,0.110439852927,0.0824409863185,0.0817573602872,0.0787384322093,0.0873598743133,0.0907992408331,0.0860145757888,0.104083934311,0.0872564431322,0.0845246845814,0.0580427985729,0.0542178377348,0.0474844817394,0.0473739271712,0.0481368687169,0.0461497142198,0.0433135197402,0.0498154796246,0.0412885164557,0.045409197026,0.041906507138,0.0455271458518,0.0462272769123,0.0421820423424,0.0417854587169,0.0406153095072,0.0186328021396,0.0193087033636,0.0192812631263,0.0101397570107,0.0120794740193,0.01226192255,0.0135011546308,0.0122693932993,0.0121759400974,0.0121463289699,0.0205374025143,0.0227497071538,0.0202452193761,0.0223430028849,0.0220508863786,0.0208457379988,0.0208375594815,0.0208741662591,0.0214640721674,0.020476601156,0.0219534892488,0.022041035876,0.0237056613687,0.0238556042315,0.0235923648211,0.0243940203795,0.0256477982641,0.0260600144926,0.0255442876594,0.0245946797826,0.0170140668125,0.0132216835579,0.0132776332691,0.0119604491859,0.0116970457519,0.0105746006995,0.0119288029449,0.0127369362449,0.0102895465724,0.0102936565549,0.0103942601315,0.0114946101408,0.0114341744434,0.011180796778,0.0111153194009,0.0134163490962,0.0134193813252,0.0128408920679,0.0121589036781,0.0146578427107,0.0135564989901,0.0130353208436,0.0175884571824,0.0178193453294,0.017395285533,0.0189376734226,0.019158840711,0.0191013752652,0.0196254111501,0.0204081228546,0.0202760253891,0.0201929504732,0.018236152508,0.0181335159605,0.0180716449015,0.0167839186609,0.0168994732765,0.0183751736406,0.0155991161178,0.0158002184172,0.0156366697959,0.0148388051609,0.0145065870966,0.0150173565076,0.0144100118284,0.0140241907591,0.01323575937,0.0133151414432,0.0127480460171,0.0119798170413,0.0110639466999,0.010558517027,0.010888185026,0.0109918507829,0.010781117459,0.0109375034192,0.01028081757,0.0102310527747,0.0100662448199);
t60=(0.010702905653,0.0122116053245,0.15875398966,0.15875398966,0.160841826757,0.156719686852,0.610979531587,0.15875398966,0.160841826757,0.421389510608,0.436436337622,0.718785622302,1.35763653188,0.678857440537,0.678857440537,0.407345805406,0.407345805406,0.349164741141,0.230607102062,0.126037367835,0.124752072014,0.126037367835,0.230607102062,0.21825734818,0.421389510608,0.21825734818,0.21825734818,0.126037367835,0.089916776793,0.089916776793,0.235040347058,0.24942577474,0.226338051331,0.167448544174,0.135834178312,0.089916776793,0.0886147711953,0.0420647290407,0.470002336384,0.0423552915822,0.0423552915822,0.0362264002984,0.149078647077,0.214429646696,0.235040347058,0.230607102062,0.149078647077,0.10450591701,0.0362264002984,0.0175827934616,0.0361197692003,0.0362264002984,0.0679562840982,0.0679562840982,0.121048892983,0.126037367835,0.277760708206,0.254620512528,0.172163197002,0.167448544174,0.0679562840982,0.0679562840982,0.0627349089727,0.0624152329582,0.0624152329582,0.0654154009655,0.0617855680864,0.0654154009655,0.0155247775969,0.0149061812837,0.0151438610824,0.0148882084831,0.0122478590812,0.0126098142684,0.394208145712,0.509162668329,0.0126226799186,0.0137912028193,0.0122116053245,0.0107214146707,0.0107492994376,0.488799295711,0.488799295711,0.0107214146707,0.089916776793,0.0970468076064,0.222224238814,0.127349440656,0.1328829652,0.127349440656,0.128689136067,0.0107492994376,0.0107399882935,0.010702905653,0.00981403185458,0.00979081579805,0.00976771020888,0.154736885385,0.162985339515,0.0098295709882,0.174621551698,0.154736885385,0.00982179522543,0.00966884346353,0.00966132183847,0.00863462278035,0.00863462278035,0.00863462278035,0.00862863551674,0.00861668609406,0.00865865592792,0.00861072389992,0.00862265662716,0.00861072389992,0.00862265662716,0.00862863551674,0.00861072389992,0.00861072389992,0.00860477002729,0.00843565082288,0.00843565082288,0.00843565082288,0.00827311055576,0.555443060688,0.555443060688,0.0566433052457,0.0558684437699,0.0558684437699,0.0558684437699,0.0719491006169,0.0732401910273,0.0719491006169,0.0732401910273,0.0732401910273,0.0719491006169,0.0719491006169,0.0719491006169,0.0728047041805,0.0719491006169,0.0732401910273,0.0732401910273,0.0741270006123,0.134342356298,0.0741270006123,0.140515412933,0.143819813862,0.145531021491,0.143819813862,0.140515412933,0.0654154009655,0.05612436132,0.814613258605,0.359431987757,0.349164741141,0.190984975253,0.24942577474,0.394208145712,0.678857440537,0.678857440537,0.678857440537,0.488799295711,0.488799295711,0.470002336384,0.0446697178213,0.0509868168241,0.0509868168241,0.0503583181664,0.0493446106811,0.0715288041324,0.0511998226482,0.0507755786847,0.0769212874683,0.0789043297965,0.0769212874683,0.0962832767358,0.0970468076064,0.0970468076064,0.101053767176,0.116440492457,0.115342736679,0.115342736679,0.0809924340054,0.0789043297965,0.0789043297965,0.075966717416,0.075966717416,0.0933457228774,0.0741270006123,0.0741270006123,0.0741270006123,0.0715288041324,0.0650678637661,0.0715288041324,0.0647240042107,0.05612436132,0.0507755786847,0.0507755786847,0.0497451487566,0.0491467545253,0.0446697178213,0.04402811666,0.0445075677078,0.0446697178213,0.0443465925963,0.0445075677078,0.0361197692003,0.0361197692003,0.035908383214);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetOrangeTangerineTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetOrangeTangerineTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetOrangeTangerineTreble%7E.mxo/cabinetOrangeTangerineTreble.dsp
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faust
|
declare name "cabinetOrangeTangerineTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 208;
modeFrequencies=(72.2131250787,83.3228366293,122.206827056,161.090817483,227.749086787,249.968509888,355.510769618,438.833606248,499.937019776,577.70500063,666.582693034,833.228366293,949.880337574,1010.9837511,1116.52601083,1160.96485703,1177.62942436,1222.06827056,1338.72024184,1394.2687996,1433.15279002,1505.3659151,1616.46303061,1655.34702104,1755.33442499,1799.77327119,1833.10240584,1899.76067515,1988.63836755,2088.62577151,2271.93601209,2316.37485829,2371.92341605,2444.13654113,2510.79481043,2605.22735861,2660.77591636,2771.87303187,2816.31187807,2916.29928203,2960.73812823,3005.17697443,3105.16437839,3160.71293614,3271.81005164,3316.24889785,3427.34601335,3488.44942688,3610.65625394,3677.31452324,3732.86308099,3760.63735987,3893.95389848,3927.28303313,3982.83159088,4049.48986018,4182.80639879,4232.80010077,4288.34865852,4327.23264895,4382.7812067,4466.10404333,4527.20745686,4577.20115884,4610.53029349,4638.30457236,4716.07255322,4760.51139942,4877.1633707,4988.26048621,5010.47990931,5099.35760171,5171.57072679,5204.89986144,5254.89356342,5338.21640005,5382.65524625,5415.9843809,5477.08779443,5521.52664063,5554.85577529,5599.29462149,5754.8305832,5821.4888525,5871.48255448,5927.03111223,6027.01851619,6088.12192971,6143.67048747,6210.32875677,6232.54817987,6293.6515934,6343.64529538,6393.63899735,6488.07154553,6515.84582441,6621.38808414,6654.71721879,6676.93664189,6749.14976697,6810.2531805,6899.13087291,6943.56971911,7038.00226729,7076.88625772,7210.20279632,7226.86736365,7254.64164252,7337.96447915,7404.62274846,7515.71986396,7587.93298904,7660.14611412,7699.03010455,7782.35294118,7810.12722005,7854.56606626,7876.78548936,7937.88890288,8082.31515304,8115.64428769,8132.30885502,8226.7414032,8254.51568208,8287.84481673,8432.27106688,8471.15505731,8482.26476886,8493.37448041,8576.69731704,8610.02645169,8643.35558635,8732.23327875,8748.89784608,8793.33669228,8810.0012596,8826.66582693,8871.10467313,8915.54351933,8998.86635596,9009.97606751,9098.85375992,9109.96347147,9126.6280388,9159.95717345,9182.17659655,9254.38972163,9321.04799093,9365.48683713,9443.25481799,9515.46794307,9865.42385691,10204.2700592,10226.4894823,10337.5865978,11137.4858294,11159.7052526,12692.8454465,12703.9551581,12726.1745812,12859.4911198,12870.6008313,12887.2653987,13253.8858798,13331.6538607,13342.7635722,13370.5378511,13403.8669858,13492.7446782,13553.8480917,13570.512659,13653.8354957,13670.500063,13681.6097745,13731.6034765,13748.2680438,13814.9263131,13831.5908805,13881.5845824,13892.694294,13903.8040055,13953.7977075,13970.4622748,13981.5719864,14003.7914095,14014.901121,14053.7851115,14125.9982366,14137.1079481,14148.2176597,14170.4370828,14192.6565059,14220.4307847,14253.7599194,14275.9793425,14292.6439098,14309.3084771,14337.082756,14359.3021791,14375.9667464,14403.7410253,14420.4055926,14431.5153042,14459.2895831,14475.9541504,14498.1735735,14509.283285,14520.3929966);
massEigenValues=(0.116355821145,0.140164781129,0.496752840397,0.489665996503,0.55496836189,0.477960032829,0.742701720671,0.523246594292,0.565024101138,0.955063440686,0.991547550453,0.809185949182,0.548547540702,0.410153782625,0.876363767149,0.756109127042,0.751518747107,0.607492069144,0.346927690536,0.401649961551,0.344262885253,0.380267404564,0.572954207091,0.526502549063,0.619221677027,0.532356688248,0.526790999701,0.390075862035,0.533275736066,0.540240472165,0.968717248957,1.0,0.951722945119,0.816932944669,0.665814325501,0.529917445948,0.480327104846,0.416132231993,0.453637940815,0.42801528178,0.429260228415,0.366166055639,0.499976731753,0.532242735586,0.594970180766,0.590742505266,0.496368048385,0.440998744569,0.347733884111,0.28637992513,0.332355244884,0.349192698803,0.427908417523,0.429818276479,0.512678909664,0.557821967779,0.760811484192,0.69531887755,0.678190524935,0.628202167395,0.425398805505,0.431570893239,0.371729158062,0.359296744589,0.352209550881,0.384627141365,0.33869173507,0.387238919566,0.27120527437,0.19628236088,0.218414722008,0.187572093729,0.148606096786,0.159396555548,0.23496677118,0.25973162078,0.169748283761,0.174531114778,0.139717670109,0.126120976147,0.136068795678,0.16371314381,0.170028774909,0.126092997133,0.143356582133,0.156956300949,0.21075684912,0.168606543793,0.176105774112,0.168083843801,0.168922710941,0.135646756085,0.132908618715,0.110439852927,0.0824409863185,0.0817573602872,0.0787384322093,0.0873598743133,0.0907992408331,0.0860145757888,0.104083934311,0.0872564431322,0.0845246845814,0.0580427985729,0.0542178377348,0.0474844817394,0.0473739271712,0.0481368687169,0.0461497142198,0.0433135197402,0.0498154796246,0.0412885164557,0.045409197026,0.041906507138,0.0455271458518,0.0462272769123,0.0421820423424,0.0417854587169,0.0406153095072,0.0186328021396,0.0193087033636,0.0192812631263,0.0101397570107,0.0120794740193,0.01226192255,0.0135011546308,0.0122693932993,0.0121759400974,0.0121463289699,0.0205374025143,0.0227497071538,0.0202452193761,0.0223430028849,0.0220508863786,0.0208457379988,0.0208375594815,0.0208741662591,0.0214640721674,0.020476601156,0.0219534892488,0.022041035876,0.0237056613687,0.0238556042315,0.0235923648211,0.0243940203795,0.0256477982641,0.0260600144926,0.0255442876594,0.0245946797826,0.0170140668125,0.0132216835579,0.0132776332691,0.0119604491859,0.0116970457519,0.0105746006995,0.0119288029449,0.0127369362449,0.0102895465724,0.0102936565549,0.0103942601315,0.0114946101408,0.0114341744434,0.011180796778,0.0111153194009,0.0134163490962,0.0134193813252,0.0128408920679,0.0121589036781,0.0146578427107,0.0135564989901,0.0130353208436,0.0175884571824,0.0178193453294,0.017395285533,0.0189376734226,0.019158840711,0.0191013752652,0.0196254111501,0.0204081228546,0.0202760253891,0.0201929504732,0.018236152508,0.0181335159605,0.0180716449015,0.0167839186609,0.0168994732765,0.0183751736406,0.0155991161178,0.0158002184172,0.0156366697959,0.0148388051609,0.0145065870966,0.0150173565076,0.0144100118284,0.0140241907591,0.01323575937,0.0133151414432,0.0127480460171,0.0119798170413,0.0110639466999,0.010558517027,0.010888185026,0.0109918507829,0.010781117459,0.0109375034192,0.01028081757,0.0102310527747,0.0100662448199);
t60=(0.010702905653,0.0122116053245,0.15875398966,0.15875398966,0.160841826757,0.156719686852,0.610979531587,0.15875398966,0.160841826757,0.421389510608,0.436436337622,0.718785622302,1.35763653188,0.678857440537,0.678857440537,0.407345805406,0.407345805406,0.349164741141,0.230607102062,0.126037367835,0.124752072014,0.126037367835,0.230607102062,0.21825734818,0.421389510608,0.21825734818,0.21825734818,0.126037367835,0.089916776793,0.089916776793,0.235040347058,0.24942577474,0.226338051331,0.167448544174,0.135834178312,0.089916776793,0.0886147711953,0.0420647290407,0.470002336384,0.0423552915822,0.0423552915822,0.0362264002984,0.149078647077,0.214429646696,0.235040347058,0.230607102062,0.149078647077,0.10450591701,0.0362264002984,0.0175827934616,0.0361197692003,0.0362264002984,0.0679562840982,0.0679562840982,0.121048892983,0.126037367835,0.277760708206,0.254620512528,0.172163197002,0.167448544174,0.0679562840982,0.0679562840982,0.0627349089727,0.0624152329582,0.0624152329582,0.0654154009655,0.0617855680864,0.0654154009655,0.0155247775969,0.0149061812837,0.0151438610824,0.0148882084831,0.0122478590812,0.0126098142684,0.394208145712,0.509162668329,0.0126226799186,0.0137912028193,0.0122116053245,0.0107214146707,0.0107492994376,0.488799295711,0.488799295711,0.0107214146707,0.089916776793,0.0970468076064,0.222224238814,0.127349440656,0.1328829652,0.127349440656,0.128689136067,0.0107492994376,0.0107399882935,0.010702905653,0.00981403185458,0.00979081579805,0.00976771020888,0.154736885385,0.162985339515,0.0098295709882,0.174621551698,0.154736885385,0.00982179522543,0.00966884346353,0.00966132183847,0.00863462278035,0.00863462278035,0.00863462278035,0.00862863551674,0.00861668609406,0.00865865592792,0.00861072389992,0.00862265662716,0.00861072389992,0.00862265662716,0.00862863551674,0.00861072389992,0.00861072389992,0.00860477002729,0.00843565082288,0.00843565082288,0.00843565082288,0.00827311055576,0.555443060688,0.555443060688,0.0566433052457,0.0558684437699,0.0558684437699,0.0558684437699,0.0719491006169,0.0732401910273,0.0719491006169,0.0732401910273,0.0732401910273,0.0719491006169,0.0719491006169,0.0719491006169,0.0728047041805,0.0719491006169,0.0732401910273,0.0732401910273,0.0741270006123,0.134342356298,0.0741270006123,0.140515412933,0.143819813862,0.145531021491,0.143819813862,0.140515412933,0.0654154009655,0.05612436132,0.814613258605,0.359431987757,0.349164741141,0.190984975253,0.24942577474,0.394208145712,0.678857440537,0.678857440537,0.678857440537,0.488799295711,0.488799295711,0.470002336384,0.0446697178213,0.0509868168241,0.0509868168241,0.0503583181664,0.0493446106811,0.0715288041324,0.0511998226482,0.0507755786847,0.0769212874683,0.0789043297965,0.0769212874683,0.0962832767358,0.0970468076064,0.0970468076064,0.101053767176,0.116440492457,0.115342736679,0.115342736679,0.0809924340054,0.0789043297965,0.0789043297965,0.075966717416,0.075966717416,0.0933457228774,0.0741270006123,0.0741270006123,0.0741270006123,0.0715288041324,0.0650678637661,0.0715288041324,0.0647240042107,0.05612436132,0.0507755786847,0.0507755786847,0.0497451487566,0.0491467545253,0.0446697178213,0.04402811666,0.0445075677078,0.0446697178213,0.0443465925963,0.0445075677078,0.0361197692003,0.0361197692003,0.035908383214);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetOrangeTangerineTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetOrangeTangerineTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
3b9334586ffa83ed9b22a6f75b900a274ededf4af9ccebf40ce46906cf2765df
|
sebastien-clara/panoplie
|
cabinetVoxTopBoostBass.dsp
|
declare name "cabinetVoxTopBoostBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 230;
modeFrequencies=(99.9874039552,127.761682832,166.645673259,183.310240584,255.523365663,288.852500315,344.401058068,499.937019776,655.472981484,727.686106563,788.789520091,877.667212495,922.106058698,1172.07456859,1260.95226099,1272.06197254,1327.61053029,1383.15908805,1494.25620355,1505.3659151,1599.79846328,1616.46303061,1649.79216526,1727.56014611,1749.77956922,1833.10240584,1894.20581937,1977.528656,2071.96120418,2121.95490616,2216.38745434,2338.5942814,2399.69769492,2449.6913969,2466.35596423,2499.68509888,2538.56908931,2555.23365663,2644.11134904,2705.21476256,2766.31817609,2894.07985892,3027.39639753,3199.59692657,3255.14548432,3332.91346517,3460.675148,3488.44942688,3560.66255196,3605.10139816,3677.31452324,3732.86308099,3810.63106185,3943.94760045,3988.38644666,4082.81899484,4127.25784104,4171.69668724,4199.47096612,4249.46466809,4399.44577403,4499.43317798,4543.87202418,4599.42058194,4671.63370702,4843.83423605,4916.04736113,4971.59591888,5132.68673636,5254.89356342,5332.66154428,5415.9843809,5471.53293866,5571.52034261,5643.73346769,5710.39173699,5765.94029475,5843.7082756,5888.1471218,5921.47625646,5993.68938153,6110.34135282,6193.66418944,6254.76760297,6349.20015115,6399.19385313,6538.06524751,6565.83952639,6688.04635345,6826.91774783,6849.13717093,6988.00856531,7093.55082504,7121.32510392,7254.64164252,7321.29991183,7404.62274846,7554.60385439,7699.03010455,7749.02380652,7799.0175085,7887.89520091,7932.33404711,7943.44375866,8054.54087417,8126.75399924,8165.63798967,8265.62539363,8304.50938405,8360.05794181,8443.38077844,8504.48419196,8604.47159592,8632.2458748,8737.78813453,8787.7818365,8837.77553848,8848.88525003,8921.09837511,8998.86635596,9087.74404837,9098.85375992,9148.8474619,9226.61544275,9321.04799093,9387.70626023,9448.80967376,9482.13880841,9593.23592392,9648.78448167,9732.1073183,9793.21073183,9826.53986648,9882.08842423,9920.97241466,9954.30154931,10037.6243859,10048.7340975,10065.3986648,10154.2763572,10226.4894823,10248.7089054,10393.1351556,10443.1288575,10465.3482806,10509.7871268,10582.0002519,10720.8716463,10765.3104925,10837.5236176,10865.2978965,10881.9624638,10893.0721753,10954.1755889,11076.3824159,11215.2538103,11326.3509258,11359.6800605,11393.0091951,11448.5577529,11481.8868875,11620.7582819,11742.965109,11787.4039552,11809.6233783,11965.15934,12048.4821766,12087.366167,12137.359869,12215.1278499,12287.3409749,12348.4443885,12431.7672251,12476.2060713,12581.748331,12615.0774657,12631.742033,12642.8517446,12726.1745812,12765.0585716,12792.8328505,12876.1556871,13042.8013604,13198.3373221,13353.8732838,13392.7572742,13420.5315531,13492.7446782,13520.518957,13592.7320821,13642.7257841,13659.3903514,13692.7194861,13703.8291976,13720.493765,13731.6034765,13776.0423227,13798.2617458,13876.0297267,13964.9074191,13987.1268422,14064.894823,14359.3021791,14409.2958811,14448.1798715,14464.8444388,14481.5090062,14509.283285,14537.0575639,14548.1672755,14559.276987,14570.3866986,15059.2140068,15070.3237184,15120.3174203,15136.9819877,15148.0916992,15181.4208339,15203.640257,15220.3048243,15236.9693916,15248.0791032,15259.1888147,15286.9630936,15303.6276609,15320.2922282,15331.4019398,15342.5116513,15364.7310744,15392.5053533);
massEigenValues=(0.165635490394,0.164660869063,0.198918713214,0.192738214966,0.501397772339,0.473556634707,0.5505848494,0.645472122906,0.486609993884,0.357218166134,0.488001601206,0.48846218741,0.590847652191,0.510752438441,0.435809758429,0.437765714313,0.412863303283,0.424424392122,0.313433345458,0.31370825608,0.44264112409,0.442253359707,0.459718698506,0.628176118254,0.644516308713,0.530705755688,0.637536983933,0.467630331245,0.610786456505,0.742948467724,0.716013247953,0.836859924866,0.868968573998,0.835624620127,0.836689464213,0.848648953964,0.86185832036,0.869521719091,0.59927830824,0.507612950223,0.579110225994,1.0,0.803993794929,0.771712035706,0.672954315912,0.834934904967,0.7475580875,0.733803328279,0.539073763781,0.595935431751,0.429716845726,0.402390391035,0.516735096225,0.594656292647,0.652799509118,0.882631293125,0.935646028755,0.896613633675,0.894076985815,0.794715923832,0.519177232637,0.466216317032,0.422780193704,0.372955553118,0.491226789378,0.601644605969,0.428401710242,0.482447230918,0.386957972143,0.214926080204,0.206162387303,0.304788042985,0.27549206882,0.217772396399,0.111527796382,0.0936117158432,0.077810175144,0.0396339784841,0.0546364473901,0.0649433105959,0.130592566177,0.137610347293,0.098040798104,0.13272142262,0.113693463974,0.119594468411,0.0770158994293,0.0751119879314,0.0974662821644,0.0544635825852,0.0547068137748,0.0577766303639,0.0492453946021,0.0486502699202,0.0532274694644,0.0352326119296,0.0575464966792,0.0573304899155,0.065822929443,0.0628354852201,0.0752743094151,0.0714763238048,0.0693372893522,0.0692010164011,0.0586186210155,0.0513034056239,0.0473716686721,0.049005442192,0.0468832251827,0.049165795704,0.0541150481035,0.0508772455164,0.0461811539413,0.0455310040165,0.0356878166715,0.0369952101712,0.034979195157,0.0349409746418,0.0411681444095,0.0474550822756,0.0392066938035,0.0389494648278,0.0422758209446,0.0447110441084,0.0634704425358,0.0579179469162,0.0595173479399,0.0627900311448,0.0500368645105,0.0499552431174,0.036879233317,0.0424395617753,0.0420224506901,0.0370575823037,0.0389628926531,0.0431171530593,0.0311664331606,0.0312977210903,0.0312835691898,0.023174459639,0.0167554594013,0.0169955878284,0.0290035912271,0.0217383200827,0.0220484957968,0.0231599970651,0.0177297043458,0.0261821108266,0.0225018161529,0.03139710025,0.0327149840762,0.0328511617542,0.0326865533175,0.0399329511379,0.0407026141292,0.0449735115002,0.0492828721662,0.048041938354,0.0509240028808,0.0524713399166,0.0553806186428,0.0500543598663,0.0285761831727,0.0291828839664,0.0298931041423,0.0293873651869,0.0239350907611,0.0252900994931,0.030151773949,0.027663533024,0.0342919689758,0.0297522304373,0.0234049955601,0.0212879576147,0.0206708882362,0.0202874003718,0.0202020251127,0.0202156226817,0.0237246125861,0.0228966918991,0.0223130285562,0.0256327941556,0.0199608582587,0.0143419433609,0.0144685628477,0.0125122935523,0.0130193749747,0.016212346115,0.0162712665444,0.0118072383081,0.0141341070732,0.0141531786856,0.0135619704464,0.0134918059003,0.0138886095035,0.0138458721818,0.0120407578433,0.0126552367981,0.0187610253628,0.0111684123201,0.0102609435048,0.0102454688762,0.0101025529679,0.0102067776162,0.0108033179872,0.0104589654613,0.0103770607758,0.0102753046166,0.0102915841141,0.0104134664304,0.0105227431987,0.0102863887225,0.0103794487259,0.0104660673377,0.0103196331675,0.0107788273513,0.0119407821524,0.0140319382175,0.0144217886454,0.0145279406571,0.014263942254,0.0139365929825,0.0139011260235,0.0119490609966,0.011858882453,0.0120474996515,0.0123300625074,0.0119632513868,0.0129282133115,0.0122798110243);
t60=(0.0133157946499,0.0133157946499,0.0134024062651,0.0133589592413,0.149078647077,0.147283463044,0.214429646696,0.643132225291,0.147283463044,0.0779001777853,0.939926321566,0.370321491753,0.531296769015,0.330295206849,0.179755174754,0.179755174754,0.0190211250379,0.0190505389579,0.0188754130108,0.0188754130108,0.0213271777771,0.0213271777771,0.0213271777771,0.24942577474,0.254620512528,0.0306234708313,0.24942577474,0.0213641963149,0.0611684965187,0.271589989347,0.102750832425,0.207163501523,0.210733934924,0.194015238893,0.207163501523,0.207163501523,0.207163501523,0.210733934924,0.0608645657491,0.0221725126285,0.0605636441966,0.452597744427,0.214429646696,0.254620512528,0.13891953749,0.555443060688,0.349164741141,0.349164741141,0.0307000246968,0.1328829652,0.0190505389579,0.0190211250379,0.0221725126285,0.103620937917,0.117559358926,0.200373824908,0.226338051331,0.207163501523,0.207163501523,0.154736885385,0.0222125379598,0.0213641963149,0.0190505389579,0.0189918021831,0.814613258605,0.814613258605,0.260036302995,0.290983677212,0.814613258605,1.01824698596,1.35763653188,0.531296769015,0.488799295711,0.872794323539,0.143819813862,0.0119522037368,0.0119176877079,0.0160288954885,0.0640470869761,0.0668435319893,0.872794323539,0.643132225291,0.128689136067,0.271589989347,0.135834178312,0.169773129941,0.0962832767358,0.0779001777853,0.678857440537,0.0640470869761,0.0640470869761,0.555443060688,0.0505660863164,0.0503583181664,0.718785622302,0.0160080997987,0.763704826809,0.0630578806178,0.116440492457,0.0970468076064,0.145531021491,0.137359524421,0.127349440656,0.126037367835,0.0637139167773,0.0551145245097,0.0543807097766,0.0546231307137,0.0266393427248,0.0548677258312,0.0558684437699,0.0551145245097,0.0265243607176,0.0162827463578,0.0160080997987,0.0160080997987,0.0160080997987,0.0160080997987,0.0160497455466,0.0520699741138,0.0160288954885,0.0160288954885,0.0160497455466,0.0162612839088,0.15875398966,0.126037367835,0.130057335639,0.152803653959,0.0596784944693,0.0593891736878,0.0160080997987,0.0160497455466,0.0160497455466,0.0160080997987,0.0160288954885,0.0160706501865,0.0159666706754,0.0159666706754,0.0159666706754,0.0156230356685,0.0052756858927,0.00648559828333,0.313361009441,0.15875398966,0.188047950499,0.203712082574,0.00648895957144,0.0566433052457,0.0558684437699,0.0577105673004,0.0633841991211,0.0637139167773,0.0630578806178,0.21825734818,0.21825734818,0.12225859813,0.127349440656,0.126037367835,0.130057335639,0.130057335639,0.167448544174,0.128689136067,0.0571719490641,0.0571719490641,0.0574399938194,0.117559358926,0.109167860492,0.110150648586,0.154736885385,0.114265499704,0.214429646696,0.118699950961,0.107254010001,0.0627349089727,0.0624152329582,0.0293782314573,0.0293782314573,0.0293782314573,0.165186785054,0.162985339515,0.160841826757,0.174621551698,0.610979531587,0.763704826809,0.100226100112,0.092639152164,0.094063163912,0.235040347058,0.235040347058,0.0711133948183,0.0978225549736,0.0978225549736,0.0970468076064,0.0962832767358,0.0970468076064,0.0970468076064,0.0715288041324,0.092639152164,0.643132225291,0.00491184697256,0.00490993607675,0.00490993607675,0.177151163056,0.182436918149,0.185199926501,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.130057335639,0.130057335639,0.130057335639,0.134342356298,0.162985339515,0.226338051331,0.230607102062,0.230607102062,0.226338051331,0.226338051331,0.226338051331,0.162985339515,0.162985339515,0.162985339515,0.167448544174,0.162985339515,0.169773129941,0.167448544174);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetVoxTopBoostBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetVoxTopBoostBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetVoxTopBoostBass%7E.mxo/cabinetVoxTopBoostBass.dsp
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faust
|
declare name "cabinetVoxTopBoostBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 230;
modeFrequencies=(99.9874039552,127.761682832,166.645673259,183.310240584,255.523365663,288.852500315,344.401058068,499.937019776,655.472981484,727.686106563,788.789520091,877.667212495,922.106058698,1172.07456859,1260.95226099,1272.06197254,1327.61053029,1383.15908805,1494.25620355,1505.3659151,1599.79846328,1616.46303061,1649.79216526,1727.56014611,1749.77956922,1833.10240584,1894.20581937,1977.528656,2071.96120418,2121.95490616,2216.38745434,2338.5942814,2399.69769492,2449.6913969,2466.35596423,2499.68509888,2538.56908931,2555.23365663,2644.11134904,2705.21476256,2766.31817609,2894.07985892,3027.39639753,3199.59692657,3255.14548432,3332.91346517,3460.675148,3488.44942688,3560.66255196,3605.10139816,3677.31452324,3732.86308099,3810.63106185,3943.94760045,3988.38644666,4082.81899484,4127.25784104,4171.69668724,4199.47096612,4249.46466809,4399.44577403,4499.43317798,4543.87202418,4599.42058194,4671.63370702,4843.83423605,4916.04736113,4971.59591888,5132.68673636,5254.89356342,5332.66154428,5415.9843809,5471.53293866,5571.52034261,5643.73346769,5710.39173699,5765.94029475,5843.7082756,5888.1471218,5921.47625646,5993.68938153,6110.34135282,6193.66418944,6254.76760297,6349.20015115,6399.19385313,6538.06524751,6565.83952639,6688.04635345,6826.91774783,6849.13717093,6988.00856531,7093.55082504,7121.32510392,7254.64164252,7321.29991183,7404.62274846,7554.60385439,7699.03010455,7749.02380652,7799.0175085,7887.89520091,7932.33404711,7943.44375866,8054.54087417,8126.75399924,8165.63798967,8265.62539363,8304.50938405,8360.05794181,8443.38077844,8504.48419196,8604.47159592,8632.2458748,8737.78813453,8787.7818365,8837.77553848,8848.88525003,8921.09837511,8998.86635596,9087.74404837,9098.85375992,9148.8474619,9226.61544275,9321.04799093,9387.70626023,9448.80967376,9482.13880841,9593.23592392,9648.78448167,9732.1073183,9793.21073183,9826.53986648,9882.08842423,9920.97241466,9954.30154931,10037.6243859,10048.7340975,10065.3986648,10154.2763572,10226.4894823,10248.7089054,10393.1351556,10443.1288575,10465.3482806,10509.7871268,10582.0002519,10720.8716463,10765.3104925,10837.5236176,10865.2978965,10881.9624638,10893.0721753,10954.1755889,11076.3824159,11215.2538103,11326.3509258,11359.6800605,11393.0091951,11448.5577529,11481.8868875,11620.7582819,11742.965109,11787.4039552,11809.6233783,11965.15934,12048.4821766,12087.366167,12137.359869,12215.1278499,12287.3409749,12348.4443885,12431.7672251,12476.2060713,12581.748331,12615.0774657,12631.742033,12642.8517446,12726.1745812,12765.0585716,12792.8328505,12876.1556871,13042.8013604,13198.3373221,13353.8732838,13392.7572742,13420.5315531,13492.7446782,13520.518957,13592.7320821,13642.7257841,13659.3903514,13692.7194861,13703.8291976,13720.493765,13731.6034765,13776.0423227,13798.2617458,13876.0297267,13964.9074191,13987.1268422,14064.894823,14359.3021791,14409.2958811,14448.1798715,14464.8444388,14481.5090062,14509.283285,14537.0575639,14548.1672755,14559.276987,14570.3866986,15059.2140068,15070.3237184,15120.3174203,15136.9819877,15148.0916992,15181.4208339,15203.640257,15220.3048243,15236.9693916,15248.0791032,15259.1888147,15286.9630936,15303.6276609,15320.2922282,15331.4019398,15342.5116513,15364.7310744,15392.5053533);
massEigenValues=(0.165635490394,0.164660869063,0.198918713214,0.192738214966,0.501397772339,0.473556634707,0.5505848494,0.645472122906,0.486609993884,0.357218166134,0.488001601206,0.48846218741,0.590847652191,0.510752438441,0.435809758429,0.437765714313,0.412863303283,0.424424392122,0.313433345458,0.31370825608,0.44264112409,0.442253359707,0.459718698506,0.628176118254,0.644516308713,0.530705755688,0.637536983933,0.467630331245,0.610786456505,0.742948467724,0.716013247953,0.836859924866,0.868968573998,0.835624620127,0.836689464213,0.848648953964,0.86185832036,0.869521719091,0.59927830824,0.507612950223,0.579110225994,1.0,0.803993794929,0.771712035706,0.672954315912,0.834934904967,0.7475580875,0.733803328279,0.539073763781,0.595935431751,0.429716845726,0.402390391035,0.516735096225,0.594656292647,0.652799509118,0.882631293125,0.935646028755,0.896613633675,0.894076985815,0.794715923832,0.519177232637,0.466216317032,0.422780193704,0.372955553118,0.491226789378,0.601644605969,0.428401710242,0.482447230918,0.386957972143,0.214926080204,0.206162387303,0.304788042985,0.27549206882,0.217772396399,0.111527796382,0.0936117158432,0.077810175144,0.0396339784841,0.0546364473901,0.0649433105959,0.130592566177,0.137610347293,0.098040798104,0.13272142262,0.113693463974,0.119594468411,0.0770158994293,0.0751119879314,0.0974662821644,0.0544635825852,0.0547068137748,0.0577766303639,0.0492453946021,0.0486502699202,0.0532274694644,0.0352326119296,0.0575464966792,0.0573304899155,0.065822929443,0.0628354852201,0.0752743094151,0.0714763238048,0.0693372893522,0.0692010164011,0.0586186210155,0.0513034056239,0.0473716686721,0.049005442192,0.0468832251827,0.049165795704,0.0541150481035,0.0508772455164,0.0461811539413,0.0455310040165,0.0356878166715,0.0369952101712,0.034979195157,0.0349409746418,0.0411681444095,0.0474550822756,0.0392066938035,0.0389494648278,0.0422758209446,0.0447110441084,0.0634704425358,0.0579179469162,0.0595173479399,0.0627900311448,0.0500368645105,0.0499552431174,0.036879233317,0.0424395617753,0.0420224506901,0.0370575823037,0.0389628926531,0.0431171530593,0.0311664331606,0.0312977210903,0.0312835691898,0.023174459639,0.0167554594013,0.0169955878284,0.0290035912271,0.0217383200827,0.0220484957968,0.0231599970651,0.0177297043458,0.0261821108266,0.0225018161529,0.03139710025,0.0327149840762,0.0328511617542,0.0326865533175,0.0399329511379,0.0407026141292,0.0449735115002,0.0492828721662,0.048041938354,0.0509240028808,0.0524713399166,0.0553806186428,0.0500543598663,0.0285761831727,0.0291828839664,0.0298931041423,0.0293873651869,0.0239350907611,0.0252900994931,0.030151773949,0.027663533024,0.0342919689758,0.0297522304373,0.0234049955601,0.0212879576147,0.0206708882362,0.0202874003718,0.0202020251127,0.0202156226817,0.0237246125861,0.0228966918991,0.0223130285562,0.0256327941556,0.0199608582587,0.0143419433609,0.0144685628477,0.0125122935523,0.0130193749747,0.016212346115,0.0162712665444,0.0118072383081,0.0141341070732,0.0141531786856,0.0135619704464,0.0134918059003,0.0138886095035,0.0138458721818,0.0120407578433,0.0126552367981,0.0187610253628,0.0111684123201,0.0102609435048,0.0102454688762,0.0101025529679,0.0102067776162,0.0108033179872,0.0104589654613,0.0103770607758,0.0102753046166,0.0102915841141,0.0104134664304,0.0105227431987,0.0102863887225,0.0103794487259,0.0104660673377,0.0103196331675,0.0107788273513,0.0119407821524,0.0140319382175,0.0144217886454,0.0145279406571,0.014263942254,0.0139365929825,0.0139011260235,0.0119490609966,0.011858882453,0.0120474996515,0.0123300625074,0.0119632513868,0.0129282133115,0.0122798110243);
t60=(0.0133157946499,0.0133157946499,0.0134024062651,0.0133589592413,0.149078647077,0.147283463044,0.214429646696,0.643132225291,0.147283463044,0.0779001777853,0.939926321566,0.370321491753,0.531296769015,0.330295206849,0.179755174754,0.179755174754,0.0190211250379,0.0190505389579,0.0188754130108,0.0188754130108,0.0213271777771,0.0213271777771,0.0213271777771,0.24942577474,0.254620512528,0.0306234708313,0.24942577474,0.0213641963149,0.0611684965187,0.271589989347,0.102750832425,0.207163501523,0.210733934924,0.194015238893,0.207163501523,0.207163501523,0.207163501523,0.210733934924,0.0608645657491,0.0221725126285,0.0605636441966,0.452597744427,0.214429646696,0.254620512528,0.13891953749,0.555443060688,0.349164741141,0.349164741141,0.0307000246968,0.1328829652,0.0190505389579,0.0190211250379,0.0221725126285,0.103620937917,0.117559358926,0.200373824908,0.226338051331,0.207163501523,0.207163501523,0.154736885385,0.0222125379598,0.0213641963149,0.0190505389579,0.0189918021831,0.814613258605,0.814613258605,0.260036302995,0.290983677212,0.814613258605,1.01824698596,1.35763653188,0.531296769015,0.488799295711,0.872794323539,0.143819813862,0.0119522037368,0.0119176877079,0.0160288954885,0.0640470869761,0.0668435319893,0.872794323539,0.643132225291,0.128689136067,0.271589989347,0.135834178312,0.169773129941,0.0962832767358,0.0779001777853,0.678857440537,0.0640470869761,0.0640470869761,0.555443060688,0.0505660863164,0.0503583181664,0.718785622302,0.0160080997987,0.763704826809,0.0630578806178,0.116440492457,0.0970468076064,0.145531021491,0.137359524421,0.127349440656,0.126037367835,0.0637139167773,0.0551145245097,0.0543807097766,0.0546231307137,0.0266393427248,0.0548677258312,0.0558684437699,0.0551145245097,0.0265243607176,0.0162827463578,0.0160080997987,0.0160080997987,0.0160080997987,0.0160080997987,0.0160497455466,0.0520699741138,0.0160288954885,0.0160288954885,0.0160497455466,0.0162612839088,0.15875398966,0.126037367835,0.130057335639,0.152803653959,0.0596784944693,0.0593891736878,0.0160080997987,0.0160497455466,0.0160497455466,0.0160080997987,0.0160288954885,0.0160706501865,0.0159666706754,0.0159666706754,0.0159666706754,0.0156230356685,0.0052756858927,0.00648559828333,0.313361009441,0.15875398966,0.188047950499,0.203712082574,0.00648895957144,0.0566433052457,0.0558684437699,0.0577105673004,0.0633841991211,0.0637139167773,0.0630578806178,0.21825734818,0.21825734818,0.12225859813,0.127349440656,0.126037367835,0.130057335639,0.130057335639,0.167448544174,0.128689136067,0.0571719490641,0.0571719490641,0.0574399938194,0.117559358926,0.109167860492,0.110150648586,0.154736885385,0.114265499704,0.214429646696,0.118699950961,0.107254010001,0.0627349089727,0.0624152329582,0.0293782314573,0.0293782314573,0.0293782314573,0.165186785054,0.162985339515,0.160841826757,0.174621551698,0.610979531587,0.763704826809,0.100226100112,0.092639152164,0.094063163912,0.235040347058,0.235040347058,0.0711133948183,0.0978225549736,0.0978225549736,0.0970468076064,0.0962832767358,0.0970468076064,0.0970468076064,0.0715288041324,0.092639152164,0.643132225291,0.00491184697256,0.00490993607675,0.00490993607675,0.177151163056,0.182436918149,0.185199926501,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.182436918149,0.130057335639,0.130057335639,0.130057335639,0.134342356298,0.162985339515,0.226338051331,0.230607102062,0.230607102062,0.226338051331,0.226338051331,0.226338051331,0.162985339515,0.162985339515,0.162985339515,0.167448544174,0.162985339515,0.169773129941,0.167448544174);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetVoxTopBoostBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetVoxTopBoostBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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711722287bfb4cfd8a60168998e2d9714300edfcc828b1e42793b8769d60175f
|
sebastien-clara/panoplie
|
cabinetMarshall1960AVTreble.dsp
|
declare name "cabinetMarshall1960AVTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 260;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,183.310240584,227.749086787,338.846202292,477.717596675,577.70500063,627.698702607,716.576395012,766.57009699,888.776924046,1022.09346265,1183.18428014,1210.95855901,1305.39110719,1422.04307847,1494.25620355,1533.14019398,1638.68245371,1760.88928077,1905.31553092,1955.3092329,1994.19322333,2166.39375236,2227.49716589,2305.26514674,2427.4719738,2571.89822396,2688.55019524,2755.20846454,2821.86673385,2960.73812823,3094.05466683,3127.38380149,3188.48721501,3232.92606122,3366.24259982,3405.12659025,3427.34601335,3494.00428266,3566.21740773,3638.43053281,3799.5213503,3932.8378889,4043.93500441,4177.25154302,4366.11663938,4471.65889911,4532.76231263,4632.74971659,4793.84053407,4910.49250535,5027.14447663,5182.68043834,5282.6678423,5299.33240962,5493.75236176,5549.30091951,5643.73346769,5804.82428517,5899.25683335,5954.80539111,6127.00592014,6221.43846832,6393.63899735,6515.84582441,6604.72351682,6649.16236302,6699.156065,6765.8143343,6843.58231515,6954.67943066,6993.56342109,7054.66683461,7115.77024814,7193.538229,7254.64164252,7337.96447915,7382.40332536,7404.62274846,7471.28101776,7510.16500819,7615.70726792,7737.91409497,7865.67577781,7954.55347021,8048.98601839,8060.09572994,8082.31515304,8271.1802494,8348.94823026,8476.70991309,8571.14246127,8587.80702859,8610.02645169,8637.80073057,8665.57500945,8737.78813453,8776.67212495,8815.55611538,8871.10467313,8893.32409623,8904.43380778,8965.53722131,8993.31150019,9004.42121174,9026.64063484,9104.40861569,9121.07318302,9221.06058698,9243.28001008,9259.9445774,9315.49313516,9343.26741403,9398.81597178,9487.69366419,9626.56505857,9704.33303943,9726.55246253,9748.77188563,9776.5461645,9848.75928958,9915.41755889,9982.07582819,9993.18553974,10098.7277995,10109.837511,10215.3797708,10232.0443381,10248.7089054,10304.2574632,10320.9220305,10359.8060209,10376.4705882,10398.6900113,10437.5740018,10493.1225595,10554.225973,10615.3293866,10687.5425117,10765.3104925,10893.0721753,10915.2915984,10937.5110215,10948.6207331,10965.2853004,11070.8275601,11115.2664063,11181.9246757,11226.3635219,11237.4732334,11254.1378007,11331.9057816,11343.0154931,11454.1126086,11504.1063106,11520.7708779,11570.7645799,11598.5388588,11654.0874166,11737.4102532,11904.0559264,12031.8176093,12065.1467439,12187.353571,12198.4632825,12270.6764076,12337.3346769,12403.9929462,12465.0963597,12481.7609271,12753.9488601,12765.0585716,12776.1682832,12792.8328505,12803.942562,12848.3814082,13003.9173699,13503.8543897,13520.518957,13576.0675148,13653.8354957,13664.9452072,13714.9389092,13764.9326112,13781.5971785,13792.70689,13803.8166016,13814.9263131,13831.5908805,13870.4748709,13909.3588613,14026.0108326,14042.6753999,14064.894823,14081.5593904,15670.2481421,15764.6806903,15798.0098249,15820.229248,15848.0035269,15881.3326615,15892.4423731,15903.5520846,15914.6617962,15925.7715077,15936.8812193,15947.9909308,15959.1006424,15975.7652097,15997.9846328,16014.6492002,16025.7589117,16036.8686233,16047.9783348,16064.6429021,16075.7526137,16086.8623252,16103.5268926,16120.1914599,16153.5205945,16181.2948734,16192.404585,16203.5142965,16220.1788638,16236.8434312,16253.5079985,16264.61771,16281.2822774,16297.9468447,16314.611412,16331.2759793,16342.3856909,16353.4954024,16375.7148255,16409.0439602,16420.1536717,16442.3730948,16453.4828064,16464.5925179,16481.2570853,16497.9216526,16514.5862199,16531.2507873,16542.3604988,16553.4702104,16564.5799219,16581.2444892,16603.4639123,16614.5736239,16625.6833354,16659.0124701,16681.2318932,16697.8964605,16714.5610278,16725.6707394,16747.8901625,16770.1095856,16781.2192971);
massEigenValues=(0.0865440583019,0.284527297174,0.361669632467,0.365573466014,0.404143569709,0.600709434406,0.654598307837,0.461829323171,0.489538305199,0.535811174936,0.671617293471,0.642343415022,0.704875914789,0.579466177077,0.533427966529,0.47704854954,0.415708281854,0.515386443486,0.644401577738,0.785928291681,0.517475512899,0.444581214416,0.432880529798,0.495123433692,0.791266179869,0.793282770862,0.91555296607,0.748632354643,0.550900889245,0.539115302397,0.518317922356,0.568659589747,0.671943773438,0.783330895046,0.769045430538,0.724047521443,0.706230044532,0.648510703676,0.648346841269,0.635695909572,0.641455917546,0.596479389933,0.616159829417,0.728499112296,1.0,0.91351813227,0.515106011776,0.510534445609,0.476628314305,0.414696368892,0.331469949172,0.349353410476,0.495302333814,0.535259335359,0.47753996568,0.376895564607,0.377470972341,0.248592349848,0.246426368613,0.21003188459,0.129562627323,0.0921950919947,0.087710177067,0.0618873518395,0.0799294134417,0.160107986032,0.101192866353,0.0396738908134,0.0443790180766,0.0388095359873,0.0475415824578,0.0406184488711,0.0545322932365,0.0524733517212,0.0524549516362,0.0557398001118,0.0609867219178,0.0681499916205,0.0735184475821,0.072421712286,0.0725928127321,0.074077571932,0.0734295897336,0.0639960455614,0.0425491773796,0.0281638965655,0.0200683628861,0.0201790505465,0.0198447620772,0.0211238985382,0.046065471155,0.0536035142337,0.0481496636373,0.03699852045,0.0367111427354,0.0371703072056,0.0364848854135,0.0366017486838,0.0305491112894,0.0304889235553,0.0281381884644,0.0265554069454,0.027295376593,0.0272025990315,0.0260718882572,0.0263857352469,0.0263792845008,0.0264016020768,0.0326359734523,0.0321853481141,0.0389800624754,0.0382782647957,0.0389002008473,0.0397450278709,0.0398397374338,0.0415740052177,0.051464356412,0.0702327354079,0.0743738917103,0.0741564475631,0.072344140569,0.0719944380042,0.0643970294059,0.0592710523001,0.0543521744539,0.05486577136,0.0471082087028,0.0472201175476,0.0378435262231,0.038045692827,0.0381387893176,0.0338078029639,0.0330757746665,0.0334207554874,0.0330031172087,0.0336125875456,0.0287344730585,0.0328492249075,0.0282613208312,0.0279149542139,0.0205769217561,0.012250992498,0.0103859966461,0.0110269517156,0.0120262604921,0.0120502945796,0.0126372940149,0.0196797420334,0.0190303086437,0.0233024325035,0.0254560558084,0.0255687146839,0.0253700314935,0.0334785416624,0.0333678984367,0.0404144508777,0.0406171254063,0.0400968551103,0.0421731473183,0.041914284658,0.0418882809491,0.0417074562189,0.0367349411802,0.0298574632243,0.0296630356868,0.0254548101003,0.0254184981646,0.0200305132535,0.0219937354064,0.0173868582214,0.0152107636057,0.0151500681072,0.0151225914993,0.0150496617744,0.015145678007,0.0154220376265,0.0154066947643,0.0146029716364,0.010238253022,0.0142265553632,0.0140264175018,0.0161173462181,0.0201777601305,0.0201737402881,0.0217592424605,0.0239052090517,0.0245020227776,0.0243211924493,0.0243841295743,0.0241930671031,0.0234566433554,0.0217991580137,0.0198539867142,0.0128691791332,0.0120132855377,0.0113799916706,0.0110558108212,0.0101128231239,0.0105187824133,0.0105855626231,0.0109570432665,0.011571102007,0.0113082014877,0.0115118661648,0.0119154280608,0.0114907209163,0.0112204660586,0.0116218038542,0.0112189501979,0.0117602312391,0.0120692831073,0.012776430267,0.0128697922516,0.012756498579,0.0121223943616,0.0118491468175,0.0118317757693,0.0118885035538,0.0116678622054,0.0120861444562,0.0115350567043,0.0114677449191,0.011304995112,0.0111003316643,0.0103404137581,0.0111847986938,0.0104982079485,0.0102370308884,0.0108858779595,0.0108590963971,0.0107794795705,0.0107471011899,0.0108046581967,0.010287825856,0.0110048014628,0.0112138431802,0.0114317002561,0.0106045620886,0.0112548038291,0.0114818100313,0.0109653526171,0.0108860786319,0.0113580547072,0.0115720066548,0.0111680829763,0.0109114267527,0.0110152285163,0.0110734499036,0.0111959794431,0.011956638295,0.010433435183,0.0105692887717,0.0106582669554,0.0108953103088,0.010871952382,0.0100930982091,0.0105044623288,0.0104083273852,0.0105198758725,0.0103033744593);
t60=(0.011475934323,0.0122599918612,0.094063163912,0.0947917280661,0.126037367835,0.509162668329,0.718785622302,0.128689136067,0.131454958861,0.581888999203,0.718785622302,0.872794323539,1.35763653188,0.359431987757,0.321605289754,0.277760708206,0.0207519185459,0.169773129941,0.260036302995,0.555443060688,0.169773129941,0.0208927933439,0.0208573949563,0.0277836876146,0.172163197002,0.172163197002,0.197143252978,0.165186785054,0.0281014077532,0.0280372820852,0.0279099071844,0.0282305456213,0.051631226853,0.0892610221477,0.0886147711953,0.0849257553911,0.0843406011682,0.0511998226482,0.0511998226482,0.0427987550503,0.0427987550503,0.0420647290407,0.0425020862013,0.160841826757,0.284218437251,0.197143252978,0.0279099071844,0.24942577474,0.0244657013629,0.0207519185459,0.0154858213102,0.0155052748597,0.130057335639,0.15875398966,0.117559358926,0.100226100112,0.100226100112,0.0121755669397,0.0121636016737,0.0121041286542,0.0117147335182,0.0115186205825,0.011475934323,0.0104768594476,0.452597744427,0.470002336384,0.239647444806,0.00881822374361,0.00883074439005,0.00881197684532,0.00884959277345,0.00881822374361,0.0719491006169,0.0647240042107,0.0647240042107,0.0769212874683,0.0815318609316,0.0892610221477,0.117559358926,0.116440492457,0.116440492457,0.117559358926,0.117559358926,0.0843406011682,0.00882447958545,0.00867676958349,0.0064289910038,0.0064289910038,0.0064289910038,0.006432293137,0.128689136067,0.197143252978,0.131454958861,0.0947917280661,0.0861207886704,0.0947917280661,0.0861207886704,0.0861207886704,0.026467242227,0.026467242227,0.0258548452921,0.0253745408132,0.0254797218307,0.0254797218307,0.0253222762797,0.0253745408132,0.0253745408132,0.0253745408132,0.0266972094877,0.0266972094877,0.0446697178213,0.0441867797612,0.0446697178213,0.0453303294073,0.0453303294073,0.0501522530355,0.0620988023873,0.116440492457,0.1328829652,0.131454958861,0.127349440656,0.121048892983,0.107254010001,0.0919432065767,0.0826325834499,0.0826325834499,0.0579837054606,0.0579837054606,0.04402811666,0.0441867797612,0.0441867797612,0.0268137027544,0.0267553289446,0.0267553289446,0.0267553289446,0.0268137027544,0.0260742184201,0.0266972094877,0.0258548452921,0.0258005793096,0.006432293137,0.00639615749653,0.0281658282525,0.039747304271,0.0401374897492,0.0401374897492,0.0404019058763,0.0451633482481,0.0449975948928,0.048755771847,0.0507755786847,0.0507755786847,0.0507755786847,0.0719491006169,0.0715288041324,0.0873499657672,0.0873499657672,0.0861207886704,0.10450591701,0.103620937917,0.103620937917,0.101895228693,0.0815318609316,0.0624152329582,0.0620988023873,0.0507755786847,0.0507755786847,0.0453303294073,0.0476193358445,0.0443465925963,0.0419209403875,0.0419209403875,0.226338051331,0.226338051331,0.226338051331,0.235040347058,0.235040347058,0.21825734818,0.0281658282525,0.106322048027,0.105406154366,0.113208211565,0.143819813862,0.143819813862,0.156719686852,0.185199926501,0.188047950499,0.188047950499,0.188047950499,0.188047950499,0.179755174754,0.156719686852,0.13891953749,0.101053767176,0.0919432065767,0.0905822463244,0.0879778188202,0.039491376167,0.0408051404786,0.0408051404786,0.044833055849,0.0518496709334,0.0460108090311,0.0460108090311,0.0624152329582,0.0460108090311,0.0460108090311,0.0518496709334,0.0460108090311,0.0571719490641,0.0624152329582,0.0637139167773,0.0637139167773,0.0637139167773,0.0624152329582,0.0571719490641,0.0571719490641,0.0571719490641,0.0548677258312,0.0624152329582,0.0460108090311,0.0460108090311,0.0460108090311,0.044833055849,0.039491376167,0.044833055849,0.0408051404786,0.039491376167,0.044833055849,0.044833055849,0.0429486508916,0.0429486508916,0.0438705909298,0.039491376167,0.044833055849,0.0460108090311,0.0460108090311,0.0429486508916,0.0460108090311,0.0460108090311,0.044833055849,0.044833055849,0.0460108090311,0.0518496709334,0.044833055849,0.044833055849,0.044833055849,0.044833055849,0.0460108090311,0.0624152329582,0.0408051404786,0.0408051404786,0.0429486508916,0.044833055849,0.044833055849,0.039491376167,0.0408051404786,0.0408051404786,0.0408051404786,0.039491376167);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshall1960AVTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshall1960AVTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetMarshall1960AVTreble%7E.mxo/cabinetMarshall1960AVTreble.dsp
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faust
|
declare name "cabinetMarshall1960AVTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 260;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,183.310240584,227.749086787,338.846202292,477.717596675,577.70500063,627.698702607,716.576395012,766.57009699,888.776924046,1022.09346265,1183.18428014,1210.95855901,1305.39110719,1422.04307847,1494.25620355,1533.14019398,1638.68245371,1760.88928077,1905.31553092,1955.3092329,1994.19322333,2166.39375236,2227.49716589,2305.26514674,2427.4719738,2571.89822396,2688.55019524,2755.20846454,2821.86673385,2960.73812823,3094.05466683,3127.38380149,3188.48721501,3232.92606122,3366.24259982,3405.12659025,3427.34601335,3494.00428266,3566.21740773,3638.43053281,3799.5213503,3932.8378889,4043.93500441,4177.25154302,4366.11663938,4471.65889911,4532.76231263,4632.74971659,4793.84053407,4910.49250535,5027.14447663,5182.68043834,5282.6678423,5299.33240962,5493.75236176,5549.30091951,5643.73346769,5804.82428517,5899.25683335,5954.80539111,6127.00592014,6221.43846832,6393.63899735,6515.84582441,6604.72351682,6649.16236302,6699.156065,6765.8143343,6843.58231515,6954.67943066,6993.56342109,7054.66683461,7115.77024814,7193.538229,7254.64164252,7337.96447915,7382.40332536,7404.62274846,7471.28101776,7510.16500819,7615.70726792,7737.91409497,7865.67577781,7954.55347021,8048.98601839,8060.09572994,8082.31515304,8271.1802494,8348.94823026,8476.70991309,8571.14246127,8587.80702859,8610.02645169,8637.80073057,8665.57500945,8737.78813453,8776.67212495,8815.55611538,8871.10467313,8893.32409623,8904.43380778,8965.53722131,8993.31150019,9004.42121174,9026.64063484,9104.40861569,9121.07318302,9221.06058698,9243.28001008,9259.9445774,9315.49313516,9343.26741403,9398.81597178,9487.69366419,9626.56505857,9704.33303943,9726.55246253,9748.77188563,9776.5461645,9848.75928958,9915.41755889,9982.07582819,9993.18553974,10098.7277995,10109.837511,10215.3797708,10232.0443381,10248.7089054,10304.2574632,10320.9220305,10359.8060209,10376.4705882,10398.6900113,10437.5740018,10493.1225595,10554.225973,10615.3293866,10687.5425117,10765.3104925,10893.0721753,10915.2915984,10937.5110215,10948.6207331,10965.2853004,11070.8275601,11115.2664063,11181.9246757,11226.3635219,11237.4732334,11254.1378007,11331.9057816,11343.0154931,11454.1126086,11504.1063106,11520.7708779,11570.7645799,11598.5388588,11654.0874166,11737.4102532,11904.0559264,12031.8176093,12065.1467439,12187.353571,12198.4632825,12270.6764076,12337.3346769,12403.9929462,12465.0963597,12481.7609271,12753.9488601,12765.0585716,12776.1682832,12792.8328505,12803.942562,12848.3814082,13003.9173699,13503.8543897,13520.518957,13576.0675148,13653.8354957,13664.9452072,13714.9389092,13764.9326112,13781.5971785,13792.70689,13803.8166016,13814.9263131,13831.5908805,13870.4748709,13909.3588613,14026.0108326,14042.6753999,14064.894823,14081.5593904,15670.2481421,15764.6806903,15798.0098249,15820.229248,15848.0035269,15881.3326615,15892.4423731,15903.5520846,15914.6617962,15925.7715077,15936.8812193,15947.9909308,15959.1006424,15975.7652097,15997.9846328,16014.6492002,16025.7589117,16036.8686233,16047.9783348,16064.6429021,16075.7526137,16086.8623252,16103.5268926,16120.1914599,16153.5205945,16181.2948734,16192.404585,16203.5142965,16220.1788638,16236.8434312,16253.5079985,16264.61771,16281.2822774,16297.9468447,16314.611412,16331.2759793,16342.3856909,16353.4954024,16375.7148255,16409.0439602,16420.1536717,16442.3730948,16453.4828064,16464.5925179,16481.2570853,16497.9216526,16514.5862199,16531.2507873,16542.3604988,16553.4702104,16564.5799219,16581.2444892,16603.4639123,16614.5736239,16625.6833354,16659.0124701,16681.2318932,16697.8964605,16714.5610278,16725.6707394,16747.8901625,16770.1095856,16781.2192971);
massEigenValues=(0.0865440583019,0.284527297174,0.361669632467,0.365573466014,0.404143569709,0.600709434406,0.654598307837,0.461829323171,0.489538305199,0.535811174936,0.671617293471,0.642343415022,0.704875914789,0.579466177077,0.533427966529,0.47704854954,0.415708281854,0.515386443486,0.644401577738,0.785928291681,0.517475512899,0.444581214416,0.432880529798,0.495123433692,0.791266179869,0.793282770862,0.91555296607,0.748632354643,0.550900889245,0.539115302397,0.518317922356,0.568659589747,0.671943773438,0.783330895046,0.769045430538,0.724047521443,0.706230044532,0.648510703676,0.648346841269,0.635695909572,0.641455917546,0.596479389933,0.616159829417,0.728499112296,1.0,0.91351813227,0.515106011776,0.510534445609,0.476628314305,0.414696368892,0.331469949172,0.349353410476,0.495302333814,0.535259335359,0.47753996568,0.376895564607,0.377470972341,0.248592349848,0.246426368613,0.21003188459,0.129562627323,0.0921950919947,0.087710177067,0.0618873518395,0.0799294134417,0.160107986032,0.101192866353,0.0396738908134,0.0443790180766,0.0388095359873,0.0475415824578,0.0406184488711,0.0545322932365,0.0524733517212,0.0524549516362,0.0557398001118,0.0609867219178,0.0681499916205,0.0735184475821,0.072421712286,0.0725928127321,0.074077571932,0.0734295897336,0.0639960455614,0.0425491773796,0.0281638965655,0.0200683628861,0.0201790505465,0.0198447620772,0.0211238985382,0.046065471155,0.0536035142337,0.0481496636373,0.03699852045,0.0367111427354,0.0371703072056,0.0364848854135,0.0366017486838,0.0305491112894,0.0304889235553,0.0281381884644,0.0265554069454,0.027295376593,0.0272025990315,0.0260718882572,0.0263857352469,0.0263792845008,0.0264016020768,0.0326359734523,0.0321853481141,0.0389800624754,0.0382782647957,0.0389002008473,0.0397450278709,0.0398397374338,0.0415740052177,0.051464356412,0.0702327354079,0.0743738917103,0.0741564475631,0.072344140569,0.0719944380042,0.0643970294059,0.0592710523001,0.0543521744539,0.05486577136,0.0471082087028,0.0472201175476,0.0378435262231,0.038045692827,0.0381387893176,0.0338078029639,0.0330757746665,0.0334207554874,0.0330031172087,0.0336125875456,0.0287344730585,0.0328492249075,0.0282613208312,0.0279149542139,0.0205769217561,0.012250992498,0.0103859966461,0.0110269517156,0.0120262604921,0.0120502945796,0.0126372940149,0.0196797420334,0.0190303086437,0.0233024325035,0.0254560558084,0.0255687146839,0.0253700314935,0.0334785416624,0.0333678984367,0.0404144508777,0.0406171254063,0.0400968551103,0.0421731473183,0.041914284658,0.0418882809491,0.0417074562189,0.0367349411802,0.0298574632243,0.0296630356868,0.0254548101003,0.0254184981646,0.0200305132535,0.0219937354064,0.0173868582214,0.0152107636057,0.0151500681072,0.0151225914993,0.0150496617744,0.015145678007,0.0154220376265,0.0154066947643,0.0146029716364,0.010238253022,0.0142265553632,0.0140264175018,0.0161173462181,0.0201777601305,0.0201737402881,0.0217592424605,0.0239052090517,0.0245020227776,0.0243211924493,0.0243841295743,0.0241930671031,0.0234566433554,0.0217991580137,0.0198539867142,0.0128691791332,0.0120132855377,0.0113799916706,0.0110558108212,0.0101128231239,0.0105187824133,0.0105855626231,0.0109570432665,0.011571102007,0.0113082014877,0.0115118661648,0.0119154280608,0.0114907209163,0.0112204660586,0.0116218038542,0.0112189501979,0.0117602312391,0.0120692831073,0.012776430267,0.0128697922516,0.012756498579,0.0121223943616,0.0118491468175,0.0118317757693,0.0118885035538,0.0116678622054,0.0120861444562,0.0115350567043,0.0114677449191,0.011304995112,0.0111003316643,0.0103404137581,0.0111847986938,0.0104982079485,0.0102370308884,0.0108858779595,0.0108590963971,0.0107794795705,0.0107471011899,0.0108046581967,0.010287825856,0.0110048014628,0.0112138431802,0.0114317002561,0.0106045620886,0.0112548038291,0.0114818100313,0.0109653526171,0.0108860786319,0.0113580547072,0.0115720066548,0.0111680829763,0.0109114267527,0.0110152285163,0.0110734499036,0.0111959794431,0.011956638295,0.010433435183,0.0105692887717,0.0106582669554,0.0108953103088,0.010871952382,0.0100930982091,0.0105044623288,0.0104083273852,0.0105198758725,0.0103033744593);
t60=(0.011475934323,0.0122599918612,0.094063163912,0.0947917280661,0.126037367835,0.509162668329,0.718785622302,0.128689136067,0.131454958861,0.581888999203,0.718785622302,0.872794323539,1.35763653188,0.359431987757,0.321605289754,0.277760708206,0.0207519185459,0.169773129941,0.260036302995,0.555443060688,0.169773129941,0.0208927933439,0.0208573949563,0.0277836876146,0.172163197002,0.172163197002,0.197143252978,0.165186785054,0.0281014077532,0.0280372820852,0.0279099071844,0.0282305456213,0.051631226853,0.0892610221477,0.0886147711953,0.0849257553911,0.0843406011682,0.0511998226482,0.0511998226482,0.0427987550503,0.0427987550503,0.0420647290407,0.0425020862013,0.160841826757,0.284218437251,0.197143252978,0.0279099071844,0.24942577474,0.0244657013629,0.0207519185459,0.0154858213102,0.0155052748597,0.130057335639,0.15875398966,0.117559358926,0.100226100112,0.100226100112,0.0121755669397,0.0121636016737,0.0121041286542,0.0117147335182,0.0115186205825,0.011475934323,0.0104768594476,0.452597744427,0.470002336384,0.239647444806,0.00881822374361,0.00883074439005,0.00881197684532,0.00884959277345,0.00881822374361,0.0719491006169,0.0647240042107,0.0647240042107,0.0769212874683,0.0815318609316,0.0892610221477,0.117559358926,0.116440492457,0.116440492457,0.117559358926,0.117559358926,0.0843406011682,0.00882447958545,0.00867676958349,0.0064289910038,0.0064289910038,0.0064289910038,0.006432293137,0.128689136067,0.197143252978,0.131454958861,0.0947917280661,0.0861207886704,0.0947917280661,0.0861207886704,0.0861207886704,0.026467242227,0.026467242227,0.0258548452921,0.0253745408132,0.0254797218307,0.0254797218307,0.0253222762797,0.0253745408132,0.0253745408132,0.0253745408132,0.0266972094877,0.0266972094877,0.0446697178213,0.0441867797612,0.0446697178213,0.0453303294073,0.0453303294073,0.0501522530355,0.0620988023873,0.116440492457,0.1328829652,0.131454958861,0.127349440656,0.121048892983,0.107254010001,0.0919432065767,0.0826325834499,0.0826325834499,0.0579837054606,0.0579837054606,0.04402811666,0.0441867797612,0.0441867797612,0.0268137027544,0.0267553289446,0.0267553289446,0.0267553289446,0.0268137027544,0.0260742184201,0.0266972094877,0.0258548452921,0.0258005793096,0.006432293137,0.00639615749653,0.0281658282525,0.039747304271,0.0401374897492,0.0401374897492,0.0404019058763,0.0451633482481,0.0449975948928,0.048755771847,0.0507755786847,0.0507755786847,0.0507755786847,0.0719491006169,0.0715288041324,0.0873499657672,0.0873499657672,0.0861207886704,0.10450591701,0.103620937917,0.103620937917,0.101895228693,0.0815318609316,0.0624152329582,0.0620988023873,0.0507755786847,0.0507755786847,0.0453303294073,0.0476193358445,0.0443465925963,0.0419209403875,0.0419209403875,0.226338051331,0.226338051331,0.226338051331,0.235040347058,0.235040347058,0.21825734818,0.0281658282525,0.106322048027,0.105406154366,0.113208211565,0.143819813862,0.143819813862,0.156719686852,0.185199926501,0.188047950499,0.188047950499,0.188047950499,0.188047950499,0.179755174754,0.156719686852,0.13891953749,0.101053767176,0.0919432065767,0.0905822463244,0.0879778188202,0.039491376167,0.0408051404786,0.0408051404786,0.044833055849,0.0518496709334,0.0460108090311,0.0460108090311,0.0624152329582,0.0460108090311,0.0460108090311,0.0518496709334,0.0460108090311,0.0571719490641,0.0624152329582,0.0637139167773,0.0637139167773,0.0637139167773,0.0624152329582,0.0571719490641,0.0571719490641,0.0571719490641,0.0548677258312,0.0624152329582,0.0460108090311,0.0460108090311,0.0460108090311,0.044833055849,0.039491376167,0.044833055849,0.0408051404786,0.039491376167,0.044833055849,0.044833055849,0.0429486508916,0.0429486508916,0.0438705909298,0.039491376167,0.044833055849,0.0460108090311,0.0460108090311,0.0429486508916,0.0460108090311,0.0460108090311,0.044833055849,0.044833055849,0.0460108090311,0.0518496709334,0.044833055849,0.044833055849,0.044833055849,0.044833055849,0.0460108090311,0.0624152329582,0.0408051404786,0.0408051404786,0.0429486508916,0.044833055849,0.044833055849,0.039491376167,0.0408051404786,0.0408051404786,0.0408051404786,0.039491376167);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetMarshall1960AVTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetMarshall1960AVTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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9c1ffc7403d5c8ed95cfcfb1886b76ff68a1e06df1e826b7cacfd30724f44ecf
|
sebastien-clara/panoplie
|
cabinetFenderBlackfaceTreble.dsp
|
declare name "cabinetFenderBlackfaceTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 264;
modeFrequencies=(105.54225973,133.316538607,177.755384809,238.858798337,272.187932989,305.517067641,333.291346517,433.278750472,605.479279506,716.576395012,755.460385439,849.892933619,877.667212495,910.996347147,988.764328001,999.874039552,1022.09346265,1105.41629928,1133.19057816,1144.30028971,1255.39740521,1272.06197254,1283.17168409,1344.27509762,1377.60423227,1388.71394382,1405.37851115,1472.03678045,1594.24360751,1616.46303061,1710.89557879,1833.10240584,1871.98639627,1899.76067515,1933.0898098,2038.63206953,2166.39375236,2283.04572364,2316.37485829,2366.36856027,2449.6913969,2610.78221438,2727.43418567,2855.1958685,2882.97014737,2999.62211865,3127.38380149,3160.71293614,3227.37120544,3294.02947474,3405.12659025,3449.56543645,3555.10769618,3577.32711928,3727.30822522,3749.52764832,3832.85048495,3888.3990427,3955.057312,3999.49615821,4132.81269681,4255.01952387,4410.55548558,4443.88462023,4554.98173573,4688.29827434,4821.61481295,4960.48620733,5110.46731326,5249.33870765,5382.65524625,5510.41692908,5649.28832347,5782.60486207,5915.92140068,6060.34765084,6182.55447789,6315.8710165,6404.74870891,6471.40697821,6626.94293992,6654.71721879,6710.26577655,6799.14346895,6915.79544023,6999.11827686,7032.44741151,7115.77024814,7149.09938279,7187.98337322,7260.1964983,7332.40962338,7393.51303691,7449.06159466,7515.71986396,7571.26842172,7649.03640257,7776.7980854,7799.0175085,7893.45005668,7904.55976823,7948.99861444,7971.21803754,8004.54717219,8076.76029727,8143.41856657,8171.19284545,8232.29625897,8371.16765336,8448.93563421,8537.81332662,8582.25217282,8676.684721,8754.45270185,8810.0012596,8848.88525003,8987.75664441,9048.86005794,9115.51832725,9198.84116387,9254.38972163,9309.93827938,9376.59654868,9487.69366419,9609.90049125,9737.66217408,9754.3267414,9804.32044338,9915.41755889,10059.843809,10109.837511,10209.824915,10248.7089054,10337.5865978,10387.5802998,10409.7997229,10465.3482806,10543.1162615,10626.4390981,10687.5425117,10715.3167905,10776.4202041,10820.8590503,10931.9561658,11081.9372717,11131.9309737,11143.0406852,11226.3635219,11293.0217912,11326.3509258,11448.5577529,11504.1063106,11565.2097241,11620.7582819,11731.8553974,11776.2942436,11854.0622245,11915.165638,11937.3850611,12020.7078977,12142.9147248,12198.4632825,12242.9021287,12315.1152538,12365.1089558,12492.8706386,12548.4191964,12565.0837637,12603.9677541,13170.5630432,13309.4344376,13448.305832,13576.0675148,13587.1772264,13609.3966495,13631.6160726,13653.8354957,13737.1583323,13776.0423227,13837.1457362,13853.8103036,13870.4748709,13898.2491498,13914.9137171,13926.0234286,13937.1331402,13953.7977075,13992.6816979,14009.3462653,14020.4559768,14031.5656884,14042.6753999,14142.6628039,14175.9919385,14203.7662174,14220.4307847,14259.3147752,14287.089054,14342.6376118,14370.4118907,14381.5216022,14414.8507369,14425.9604484,14448.1798715,14492.6187177,14503.7284293,14537.0575639,14548.1672755,14570.3866986,14587.0512659,14620.3804006,14631.4901121,14648.1546794,14664.8192468,14675.9289583,14703.7032372,14725.9226603,14748.1420834,14764.8066507,14787.0260738,14803.6906411,14814.8003527,14831.46492,14842.5746316,14859.2391989,14875.9037662,14892.5683335,14909.2329009,14925.8974682,14942.5620355,15398.0602091,15409.1699206,15431.3893437,15453.6087668,15464.7184784,15525.8218919,15536.9316035,15564.7058824,15620.2544401,15631.3641517,15653.5835748,15675.8029979,15686.9127094,15709.1321325,15725.7966998,15742.4612672,15759.1258345,15770.235546,15792.4549691,15814.6743922,15825.7841038,15842.4486711,15853.5583827,15864.6680942,15892.4423731,15903.5520846,15914.6617962,15942.4360751,15953.5457866,15964.6554982,15981.3200655,16014.6492002,16036.8686233,16047.9783348);
massEigenValues=(0.307097160922,0.353952113462,0.408994552129,0.372982862282,0.647237554647,0.758317349968,0.758203169801,0.689802351432,0.528513809846,0.700408139844,0.682225285835,0.544624931035,0.5410566383,0.499916481675,0.676639141973,0.663355786086,0.697777172249,0.540595517866,0.517546959416,0.519640517182,0.520823163522,0.527809883236,0.531500717238,0.396071792783,0.410248639819,0.404123521486,0.394861595297,0.493810911601,0.316497816057,0.322646014375,0.701896333724,0.517856904733,0.545422420081,0.544516042697,0.454519689422,0.969947248718,0.920405680955,0.583146638907,0.541432180108,0.354703882079,0.638577840168,0.605257648263,0.705413574828,0.721702576385,0.711838250799,0.691111421559,0.735139697544,0.875855246906,0.855008286548,0.811838148886,0.530614361874,0.484216442739,0.339157358546,0.335687461972,0.41016313292,0.3873314286,0.566914165954,0.665387216842,0.772551876444,0.747000916781,0.730876043822,0.682257125554,0.767288245532,0.785284003717,1.0,0.935546862802,0.923865100657,0.903678941495,0.945461823048,0.772640376643,0.643209646444,0.504075450922,0.530226387039,0.510446434337,0.314942688825,0.27484499237,0.267601803379,0.264707879377,0.217342448444,0.218455265742,0.198182250913,0.196997981969,0.174074017567,0.231377743877,0.309026542731,0.283081058333,0.294570797692,0.239728034723,0.244186813556,0.230660343753,0.266077188668,0.25268024948,0.243692234087,0.227421747957,0.249302949243,0.219272800481,0.243080548425,0.236955542987,0.242039298031,0.187781303381,0.187547935528,0.198670218123,0.198399992444,0.191922503712,0.225828551011,0.206921205851,0.213022615468,0.2258482655,0.229370516039,0.247965027393,0.244559095423,0.228020783073,0.250621311601,0.251037942198,0.226649525828,0.226875418903,0.220919767673,0.202873125894,0.222363493201,0.226835899495,0.200686533064,0.20022683434,0.165588118449,0.164347260073,0.142980453403,0.10326189197,0.102810438577,0.107585837288,0.12562772553,0.11381033369,0.103455544523,0.110185835407,0.102494444596,0.096457339868,0.0836251361523,0.0823721546124,0.0663347758383,0.054967111324,0.0528196174377,0.0607484825609,0.0577382804808,0.0551228053118,0.0619753800947,0.0526319487953,0.0460768332072,0.0397861258115,0.0399825321226,0.0394832632902,0.0323534441548,0.0348154902276,0.032926786023,0.0318608726973,0.0335291952125,0.034482900561,0.03577427031,0.033187080383,0.0334818333904,0.0315305408337,0.0310516617902,0.0281215630381,0.023704128765,0.0216310404164,0.0239983594957,0.017796006342,0.019710638391,0.0149620521496,0.0112029013381,0.0110134275874,0.012171082203,0.0120918535509,0.0134204812534,0.0138799635289,0.0164342652073,0.0161674601917,0.0150626556124,0.0140527744632,0.0147230198283,0.018963959308,0.0165469090363,0.0182129475048,0.0190817184522,0.0189944333355,0.0178124360217,0.0182205460651,0.0181175826461,0.0177497731958,0.017208767719,0.0190165583742,0.019472194516,0.019746473062,0.0198134381774,0.0197243435926,0.0222130643917,0.0195022998455,0.0181384616323,0.0181005403527,0.0197337814589,0.0180515798591,0.0165460648104,0.0173243629522,0.0168186473041,0.0160730544102,0.0158388434822,0.0156542814568,0.0151799700193,0.0162523937356,0.0145648023119,0.0139623141329,0.0140792094877,0.0132598705299,0.0132660074465,0.013548015577,0.0132841720488,0.0132589803371,0.013467848114,0.0134039692302,0.0138790357689,0.0137984179574,0.0137300271046,0.0137104410142,0.0142355976982,0.0139812932556,0.0129116004808,0.0127387834033,0.0118561177047,0.0114161396557,0.011404852566,0.0110639112939,0.0113420267675,0.0108538408815,0.0108812587085,0.0110698742111,0.0111814543479,0.0103204239947,0.0101956655646,0.010456120685,0.0105498036053,0.0100567388096,0.01004548367,0.0105163535312,0.0105794326455,0.0104707050025,0.0106648501728,0.0109278172549,0.0104205154346,0.0105429618501,0.0106429661227,0.011391621943,0.0114959467502,0.011339260898,0.0107438303743,0.0105193454387,0.011070409158,0.0106615897247,0.0108808442431,0.0105143605788,0.0105811539521,0.0116227007119,0.0110320614019,0.0102875354698,0.0107725688009,0.0101866059004,0.0100817801797,0.010872899328);
t60=(0.0986108143979,0.0994118910513,0.610979531587,0.0994118910513,0.284218437251,0.298078928886,0.298078928886,0.290983677212,0.298078928886,0.643132225291,0.610979531587,0.197143252978,0.197143252978,0.190984975253,0.305528943153,0.207163501523,0.555443060688,0.197143252978,0.190984975253,0.190984975253,0.203712082574,0.207163501523,0.210733934924,0.0398765187876,0.0400065778447,0.0398765187876,0.0398765187876,0.200373824908,0.0396189260953,0.0396189260953,0.718785622302,0.0970468076064,0.0986108143979,0.0986108143979,0.0769212874683,0.763704826809,0.581888999203,0.174621551698,0.0986108143979,0.0396189260953,0.939926321566,0.872794323539,0.939926321566,0.763704826809,0.718785622302,0.763704826809,0.239647444806,0.254620512528,0.254620512528,0.24443882647,0.123492741768,0.12225859813,0.555443060688,0.555443060688,0.0417781332279,0.0414954234646,0.0624152329582,0.128689136067,0.298078928886,0.290983677212,0.452597744427,0.128689136067,0.678857440537,0.678857440537,0.678857440537,0.939926321566,0.939926321566,0.814613258605,0.610979531587,0.939926321566,0.939926321566,0.939926321566,0.939926321566,0.872794323539,0.872794323539,0.872794323539,0.763704826809,0.718785622302,0.172163197002,0.172163197002,0.0227463823712,0.0227463823712,0.0198167741272,0.0246126121424,0.0867310184335,0.0694989631848,0.070296900655,0.0256927299376,0.0259640670811,0.0246126121424,0.0605636441966,0.0261296463871,0.025746541336,0.024514475741,0.0260742184201,0.0239884569944,0.025746541336,0.0246126121424,0.0256927299376,0.0226625825308,0.0226625825308,0.0227463823712,0.0227463823712,0.0227044048583,0.024514475741,0.0237109721954,0.0238489048115,0.024514475741,0.0245634456083,0.0260742184201,0.0259640670811,0.024514475741,0.0260742184201,0.0260742184201,0.024514475741,0.024514475741,0.0240824056841,0.0237109721954,0.0240824056841,0.024514475741,0.0236199030084,0.0236199030084,0.0192590222522,0.0192590222522,0.0191393313718,0.0153319415627,0.0153319415627,0.0153701226114,0.0169775302929,0.0154084952857,0.0153319415627,0.0153892849053,0.0153319415627,0.0153129224499,0.0151438610824,0.0151253078254,0.0148882084831,0.0132303018198,0.0132161602651,0.226338051331,0.0136239765034,0.0132303018198,0.235040347058,0.0132161602651,0.0129667140414,0.0126874064918,0.0126874064918,0.0126874064918,0.00571953085919,0.0112365405185,0.0112060546479,0.00571692797011,0.0112161980776,0.0112263600176,0.0112569574068,0.0112161980776,0.0112161980776,0.00571692797011,0.00570913369767,0.00562479784959,0.00557737726812,0.00557243276442,0.00557737726812,0.00555519681877,0.0055625703899,0.00546348604412,0.00540248656462,0.00540248656462,0.00545637638613,0.678857440537,0.678857440537,0.0430996023386,0.0509868168241,0.0507755786847,0.0499478700703,0.0430996023386,0.044833055849,0.067210373342,0.0514146184385,0.067210373342,0.067210373342,0.067210373342,0.0637139167773,0.067210373342,0.0668435319893,0.0637139167773,0.0522921602287,0.067210373342,0.0750355724039,0.0764410194097,0.0764410194097,0.0764410194097,0.107254010001,0.0750355724039,0.0668435319893,0.0668435319893,0.0764410194097,0.0637139167773,0.0514146184385,0.0522921602287,0.0514146184385,0.0507755786847,0.0505660863164,0.0499478700703,0.0499478700703,0.0509868168241,0.044833055849,0.0430996023386,0.0430996023386,0.0429486508916,0.0429486508916,0.0430996023386,0.0429486508916,0.0429486508916,0.0430996023386,0.0429486508916,0.0430996023386,0.0430996023386,0.0430996023386,0.0430996023386,0.0430996023386,0.0430996023386,0.0427987550503,0.0426499037805,0.0425020862013,0.0391136164816,0.0391136164816,0.034111896908,0.0391136164816,0.034111896908,0.0736809247056,0.0837634627588,0.0837634627588,0.0723743710262,0.0719491006169,0.0723743710262,0.0723743710262,0.0711133948183,0.0711133948183,0.0723743710262,0.0723743710262,0.0723743710262,0.0723743710262,0.0736809247056,0.0723743710262,0.0723743710262,0.0723743710262,0.0849257553911,0.0849257553911,0.0849257553911,0.0736809247056,0.0723743710262,0.0837634627588,0.0723743710262,0.0736809247056,0.0723743710262,0.0723743710262,0.0849257553911,0.0837634627588,0.0723743710262,0.0736809247056,0.0719491006169,0.0719491006169,0.0736809247056);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderBlackfaceTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderBlackfaceTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetFenderBlackfaceTreble%7E.mxo/cabinetFenderBlackfaceTreble.dsp
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faust
|
declare name "cabinetFenderBlackfaceTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 264;
modeFrequencies=(105.54225973,133.316538607,177.755384809,238.858798337,272.187932989,305.517067641,333.291346517,433.278750472,605.479279506,716.576395012,755.460385439,849.892933619,877.667212495,910.996347147,988.764328001,999.874039552,1022.09346265,1105.41629928,1133.19057816,1144.30028971,1255.39740521,1272.06197254,1283.17168409,1344.27509762,1377.60423227,1388.71394382,1405.37851115,1472.03678045,1594.24360751,1616.46303061,1710.89557879,1833.10240584,1871.98639627,1899.76067515,1933.0898098,2038.63206953,2166.39375236,2283.04572364,2316.37485829,2366.36856027,2449.6913969,2610.78221438,2727.43418567,2855.1958685,2882.97014737,2999.62211865,3127.38380149,3160.71293614,3227.37120544,3294.02947474,3405.12659025,3449.56543645,3555.10769618,3577.32711928,3727.30822522,3749.52764832,3832.85048495,3888.3990427,3955.057312,3999.49615821,4132.81269681,4255.01952387,4410.55548558,4443.88462023,4554.98173573,4688.29827434,4821.61481295,4960.48620733,5110.46731326,5249.33870765,5382.65524625,5510.41692908,5649.28832347,5782.60486207,5915.92140068,6060.34765084,6182.55447789,6315.8710165,6404.74870891,6471.40697821,6626.94293992,6654.71721879,6710.26577655,6799.14346895,6915.79544023,6999.11827686,7032.44741151,7115.77024814,7149.09938279,7187.98337322,7260.1964983,7332.40962338,7393.51303691,7449.06159466,7515.71986396,7571.26842172,7649.03640257,7776.7980854,7799.0175085,7893.45005668,7904.55976823,7948.99861444,7971.21803754,8004.54717219,8076.76029727,8143.41856657,8171.19284545,8232.29625897,8371.16765336,8448.93563421,8537.81332662,8582.25217282,8676.684721,8754.45270185,8810.0012596,8848.88525003,8987.75664441,9048.86005794,9115.51832725,9198.84116387,9254.38972163,9309.93827938,9376.59654868,9487.69366419,9609.90049125,9737.66217408,9754.3267414,9804.32044338,9915.41755889,10059.843809,10109.837511,10209.824915,10248.7089054,10337.5865978,10387.5802998,10409.7997229,10465.3482806,10543.1162615,10626.4390981,10687.5425117,10715.3167905,10776.4202041,10820.8590503,10931.9561658,11081.9372717,11131.9309737,11143.0406852,11226.3635219,11293.0217912,11326.3509258,11448.5577529,11504.1063106,11565.2097241,11620.7582819,11731.8553974,11776.2942436,11854.0622245,11915.165638,11937.3850611,12020.7078977,12142.9147248,12198.4632825,12242.9021287,12315.1152538,12365.1089558,12492.8706386,12548.4191964,12565.0837637,12603.9677541,13170.5630432,13309.4344376,13448.305832,13576.0675148,13587.1772264,13609.3966495,13631.6160726,13653.8354957,13737.1583323,13776.0423227,13837.1457362,13853.8103036,13870.4748709,13898.2491498,13914.9137171,13926.0234286,13937.1331402,13953.7977075,13992.6816979,14009.3462653,14020.4559768,14031.5656884,14042.6753999,14142.6628039,14175.9919385,14203.7662174,14220.4307847,14259.3147752,14287.089054,14342.6376118,14370.4118907,14381.5216022,14414.8507369,14425.9604484,14448.1798715,14492.6187177,14503.7284293,14537.0575639,14548.1672755,14570.3866986,14587.0512659,14620.3804006,14631.4901121,14648.1546794,14664.8192468,14675.9289583,14703.7032372,14725.9226603,14748.1420834,14764.8066507,14787.0260738,14803.6906411,14814.8003527,14831.46492,14842.5746316,14859.2391989,14875.9037662,14892.5683335,14909.2329009,14925.8974682,14942.5620355,15398.0602091,15409.1699206,15431.3893437,15453.6087668,15464.7184784,15525.8218919,15536.9316035,15564.7058824,15620.2544401,15631.3641517,15653.5835748,15675.8029979,15686.9127094,15709.1321325,15725.7966998,15742.4612672,15759.1258345,15770.235546,15792.4549691,15814.6743922,15825.7841038,15842.4486711,15853.5583827,15864.6680942,15892.4423731,15903.5520846,15914.6617962,15942.4360751,15953.5457866,15964.6554982,15981.3200655,16014.6492002,16036.8686233,16047.9783348);
massEigenValues=(0.307097160922,0.353952113462,0.408994552129,0.372982862282,0.647237554647,0.758317349968,0.758203169801,0.689802351432,0.528513809846,0.700408139844,0.682225285835,0.544624931035,0.5410566383,0.499916481675,0.676639141973,0.663355786086,0.697777172249,0.540595517866,0.517546959416,0.519640517182,0.520823163522,0.527809883236,0.531500717238,0.396071792783,0.410248639819,0.404123521486,0.394861595297,0.493810911601,0.316497816057,0.322646014375,0.701896333724,0.517856904733,0.545422420081,0.544516042697,0.454519689422,0.969947248718,0.920405680955,0.583146638907,0.541432180108,0.354703882079,0.638577840168,0.605257648263,0.705413574828,0.721702576385,0.711838250799,0.691111421559,0.735139697544,0.875855246906,0.855008286548,0.811838148886,0.530614361874,0.484216442739,0.339157358546,0.335687461972,0.41016313292,0.3873314286,0.566914165954,0.665387216842,0.772551876444,0.747000916781,0.730876043822,0.682257125554,0.767288245532,0.785284003717,1.0,0.935546862802,0.923865100657,0.903678941495,0.945461823048,0.772640376643,0.643209646444,0.504075450922,0.530226387039,0.510446434337,0.314942688825,0.27484499237,0.267601803379,0.264707879377,0.217342448444,0.218455265742,0.198182250913,0.196997981969,0.174074017567,0.231377743877,0.309026542731,0.283081058333,0.294570797692,0.239728034723,0.244186813556,0.230660343753,0.266077188668,0.25268024948,0.243692234087,0.227421747957,0.249302949243,0.219272800481,0.243080548425,0.236955542987,0.242039298031,0.187781303381,0.187547935528,0.198670218123,0.198399992444,0.191922503712,0.225828551011,0.206921205851,0.213022615468,0.2258482655,0.229370516039,0.247965027393,0.244559095423,0.228020783073,0.250621311601,0.251037942198,0.226649525828,0.226875418903,0.220919767673,0.202873125894,0.222363493201,0.226835899495,0.200686533064,0.20022683434,0.165588118449,0.164347260073,0.142980453403,0.10326189197,0.102810438577,0.107585837288,0.12562772553,0.11381033369,0.103455544523,0.110185835407,0.102494444596,0.096457339868,0.0836251361523,0.0823721546124,0.0663347758383,0.054967111324,0.0528196174377,0.0607484825609,0.0577382804808,0.0551228053118,0.0619753800947,0.0526319487953,0.0460768332072,0.0397861258115,0.0399825321226,0.0394832632902,0.0323534441548,0.0348154902276,0.032926786023,0.0318608726973,0.0335291952125,0.034482900561,0.03577427031,0.033187080383,0.0334818333904,0.0315305408337,0.0310516617902,0.0281215630381,0.023704128765,0.0216310404164,0.0239983594957,0.017796006342,0.019710638391,0.0149620521496,0.0112029013381,0.0110134275874,0.012171082203,0.0120918535509,0.0134204812534,0.0138799635289,0.0164342652073,0.0161674601917,0.0150626556124,0.0140527744632,0.0147230198283,0.018963959308,0.0165469090363,0.0182129475048,0.0190817184522,0.0189944333355,0.0178124360217,0.0182205460651,0.0181175826461,0.0177497731958,0.017208767719,0.0190165583742,0.019472194516,0.019746473062,0.0198134381774,0.0197243435926,0.0222130643917,0.0195022998455,0.0181384616323,0.0181005403527,0.0197337814589,0.0180515798591,0.0165460648104,0.0173243629522,0.0168186473041,0.0160730544102,0.0158388434822,0.0156542814568,0.0151799700193,0.0162523937356,0.0145648023119,0.0139623141329,0.0140792094877,0.0132598705299,0.0132660074465,0.013548015577,0.0132841720488,0.0132589803371,0.013467848114,0.0134039692302,0.0138790357689,0.0137984179574,0.0137300271046,0.0137104410142,0.0142355976982,0.0139812932556,0.0129116004808,0.0127387834033,0.0118561177047,0.0114161396557,0.011404852566,0.0110639112939,0.0113420267675,0.0108538408815,0.0108812587085,0.0110698742111,0.0111814543479,0.0103204239947,0.0101956655646,0.010456120685,0.0105498036053,0.0100567388096,0.01004548367,0.0105163535312,0.0105794326455,0.0104707050025,0.0106648501728,0.0109278172549,0.0104205154346,0.0105429618501,0.0106429661227,0.011391621943,0.0114959467502,0.011339260898,0.0107438303743,0.0105193454387,0.011070409158,0.0106615897247,0.0108808442431,0.0105143605788,0.0105811539521,0.0116227007119,0.0110320614019,0.0102875354698,0.0107725688009,0.0101866059004,0.0100817801797,0.010872899328);
t60=(0.0986108143979,0.0994118910513,0.610979531587,0.0994118910513,0.284218437251,0.298078928886,0.298078928886,0.290983677212,0.298078928886,0.643132225291,0.610979531587,0.197143252978,0.197143252978,0.190984975253,0.305528943153,0.207163501523,0.555443060688,0.197143252978,0.190984975253,0.190984975253,0.203712082574,0.207163501523,0.210733934924,0.0398765187876,0.0400065778447,0.0398765187876,0.0398765187876,0.200373824908,0.0396189260953,0.0396189260953,0.718785622302,0.0970468076064,0.0986108143979,0.0986108143979,0.0769212874683,0.763704826809,0.581888999203,0.174621551698,0.0986108143979,0.0396189260953,0.939926321566,0.872794323539,0.939926321566,0.763704826809,0.718785622302,0.763704826809,0.239647444806,0.254620512528,0.254620512528,0.24443882647,0.123492741768,0.12225859813,0.555443060688,0.555443060688,0.0417781332279,0.0414954234646,0.0624152329582,0.128689136067,0.298078928886,0.290983677212,0.452597744427,0.128689136067,0.678857440537,0.678857440537,0.678857440537,0.939926321566,0.939926321566,0.814613258605,0.610979531587,0.939926321566,0.939926321566,0.939926321566,0.939926321566,0.872794323539,0.872794323539,0.872794323539,0.763704826809,0.718785622302,0.172163197002,0.172163197002,0.0227463823712,0.0227463823712,0.0198167741272,0.0246126121424,0.0867310184335,0.0694989631848,0.070296900655,0.0256927299376,0.0259640670811,0.0246126121424,0.0605636441966,0.0261296463871,0.025746541336,0.024514475741,0.0260742184201,0.0239884569944,0.025746541336,0.0246126121424,0.0256927299376,0.0226625825308,0.0226625825308,0.0227463823712,0.0227463823712,0.0227044048583,0.024514475741,0.0237109721954,0.0238489048115,0.024514475741,0.0245634456083,0.0260742184201,0.0259640670811,0.024514475741,0.0260742184201,0.0260742184201,0.024514475741,0.024514475741,0.0240824056841,0.0237109721954,0.0240824056841,0.024514475741,0.0236199030084,0.0236199030084,0.0192590222522,0.0192590222522,0.0191393313718,0.0153319415627,0.0153319415627,0.0153701226114,0.0169775302929,0.0154084952857,0.0153319415627,0.0153892849053,0.0153319415627,0.0153129224499,0.0151438610824,0.0151253078254,0.0148882084831,0.0132303018198,0.0132161602651,0.226338051331,0.0136239765034,0.0132303018198,0.235040347058,0.0132161602651,0.0129667140414,0.0126874064918,0.0126874064918,0.0126874064918,0.00571953085919,0.0112365405185,0.0112060546479,0.00571692797011,0.0112161980776,0.0112263600176,0.0112569574068,0.0112161980776,0.0112161980776,0.00571692797011,0.00570913369767,0.00562479784959,0.00557737726812,0.00557243276442,0.00557737726812,0.00555519681877,0.0055625703899,0.00546348604412,0.00540248656462,0.00540248656462,0.00545637638613,0.678857440537,0.678857440537,0.0430996023386,0.0509868168241,0.0507755786847,0.0499478700703,0.0430996023386,0.044833055849,0.067210373342,0.0514146184385,0.067210373342,0.067210373342,0.067210373342,0.0637139167773,0.067210373342,0.0668435319893,0.0637139167773,0.0522921602287,0.067210373342,0.0750355724039,0.0764410194097,0.0764410194097,0.0764410194097,0.107254010001,0.0750355724039,0.0668435319893,0.0668435319893,0.0764410194097,0.0637139167773,0.0514146184385,0.0522921602287,0.0514146184385,0.0507755786847,0.0505660863164,0.0499478700703,0.0499478700703,0.0509868168241,0.044833055849,0.0430996023386,0.0430996023386,0.0429486508916,0.0429486508916,0.0430996023386,0.0429486508916,0.0429486508916,0.0430996023386,0.0429486508916,0.0430996023386,0.0430996023386,0.0430996023386,0.0430996023386,0.0430996023386,0.0430996023386,0.0427987550503,0.0426499037805,0.0425020862013,0.0391136164816,0.0391136164816,0.034111896908,0.0391136164816,0.034111896908,0.0736809247056,0.0837634627588,0.0837634627588,0.0723743710262,0.0719491006169,0.0723743710262,0.0723743710262,0.0711133948183,0.0711133948183,0.0723743710262,0.0723743710262,0.0723743710262,0.0723743710262,0.0736809247056,0.0723743710262,0.0723743710262,0.0723743710262,0.0849257553911,0.0849257553911,0.0849257553911,0.0736809247056,0.0723743710262,0.0837634627588,0.0723743710262,0.0736809247056,0.0723743710262,0.0723743710262,0.0849257553911,0.0837634627588,0.0723743710262,0.0736809247056,0.0719491006169,0.0719491006169,0.0736809247056);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderBlackfaceTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderBlackfaceTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
985066018560df1f25c1b165d53f51a17b0eb64f5fe2caeaaab5131ddf016776
|
sebastien-clara/panoplie
|
cabinetRandallExcelTreble.dsp
|
declare name "cabinetRandallExcelTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 295;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,183.310240584,227.749086787,333.291346517,472.162740899,566.595289079,633.253558383,716.576395012,761.015241214,883.222068271,1027.64831843,1172.07456859,1216.51341479,1260.95226099,1333.16538607,1422.04307847,1549.8047613,1644.23730948,1777.55384809,1821.99269429,1921.98009825,2060.85149263,2077.51605996,2105.29033883,2216.38745434,2360.8137045,2499.68509888,2616.33707016,2649.66620481,2799.64731074,2882.97014737,2916.29928203,3094.05466683,3205.15178234,3244.03577277,3310.69404207,3366.24259982,3421.79115758,3516.22370576,3566.21740773,3666.20481169,3699.53394634,3805.07620607,3888.3990427,4016.16072553,4110.59327371,4143.92240836,4255.01952387,4321.67779317,4399.44577403,4449.439476,4516.09774531,4654.96913969,4793.84053407,4810.5051014,4916.04736113,4966.04106311,5060.47361129,5166.01587102,5227.11928454,5332.66154428,5410.42952513,5510.41692908,5632.62375614,5699.28202544,5771.49515052,5871.48255448,5910.3665449,5993.68938153,6027.01851619,6043.68308351,6110.34135282,6138.11563169,6199.21904522,6254.76760297,6288.09673762,6354.75500693,6388.08414158,6410.30356468,6504.73611286,6638.05265147,6732.48519965,6804.69832473,6876.9114498,6932.46000756,7026.89255574,7071.33140194,7204.64794055,7360.18390225,7410.17760423,7437.95188311,7454.61645043,7476.83587354,7487.94558509,7515.71986396,7676.81068145,7760.13351808,7860.12092203,7887.89520091,7899.00491246,7965.66318176,8004.54717219,8171.19284545,8193.41226855,8260.07053785,8276.73510518,8298.95452828,8332.28366293,8393.38707646,8426.71621111,8515.59390351,8532.25847084,8548.92303817,8560.03274972,8587.80702859,8743.3429903,8776.67212495,8787.7818365,8859.99496158,9021.08577907,9032.19549062,9159.95717345,9176.62174077,9315.49313516,9465.47424109,9565.46164504,9609.90049125,9765.43645295,9920.97241466,9937.63698199,9998.74039552,10104.2826552,10132.0569341,10320.9220305,10354.2511651,10398.6900113,10437.5740018,10704.207079,10737.5362136,10748.6459252,10765.3104925,10781.9750598,10837.5236176,10848.6333291,10976.395012,11004.1692908,11109.7115506,11143.0406852,11154.1503968,11231.9183776,11259.6926565,11298.5766469,11337.4606374,11348.5703489,11359.6800605,11370.789772,11498.5514548,11531.8805895,11542.990301,11654.0874166,11665.1971281,11698.5262628,11748.5199647,11759.6296763,11770.7393878,11781.8490994,11792.9588109,11804.0685225,11820.7330898,11831.8428014,11848.5073687,11865.171936,11909.6107822,11981.8239073,12148.4695806,12737.2842927,12770.6134274,12798.3877063,12848.3814082,12920.5945333,12953.923668,13070.5756392,13509.4092455,13531.6286686,13603.8417937,13659.3903514,13676.0549188,13687.1646303,13714.9389092,13731.6034765,13742.7131881,13753.8228996,13809.3714574,13820.4811689,13842.700592,13859.3651593,13876.0297267,13887.1394382,13903.8040055,13931.5782844,13942.687996,13953.7977075,13964.9074191,13976.0171306,14014.901121,14031.5656884,14048.2302557,14076.0045346,14098.2239577,14109.3336692,14137.1079481,14148.2176597,14159.3273712,14170.4370828,14214.875929,14225.9856405,14242.6502078,14259.3147752,14309.3084771,14331.5279002,14342.6376118,14359.3021791,14370.4118907,14381.5216022,14392.6313138,14403.7410253,14420.4055926,14514.8381408,14531.5027081,14542.6124197,14553.7221313,14648.1546794,14659.264391,14703.7032372,14748.1420834,14764.8066507,14781.471218,14825.9100642,14859.2391989,14870.3489104,14892.5683335,15020.3300164,15042.5494395,15053.659151,15070.3237184,15081.4334299,15092.5431415,15103.652853,15114.7625646,15148.0916992,15159.2014108,15181.4208339,15198.0854012,15214.7499685,15242.5242474,15253.6339589,15270.2985263,15309.1825167,15342.5116513,15353.6213629,15386.9504975,15403.6150649,15420.2796322,15436.9441995,15448.0539111,15481.3830457,15492.4927573,15509.1573246,15525.8218919,15553.5961708,15620.2544401,15631.3641517,15648.028719,15670.2481421,15686.9127094,15709.1321325,15736.9064114,15759.1258345,15770.235546,15781.3452576,15792.4549691,15803.5646807,15814.6743922,15831.3389596,15848.0035269,15859.1132384,15875.7778058,15897.9972289,15914.6617962,15925.7715077,16336.8308351,16353.4954024,16370.1599698);
massEigenValues=(0.123136253493,0.364451601024,0.549273361601,0.568457703311,0.57838873573,0.867446177413,0.847527959825,0.309278063873,0.946906727725,0.657210227559,0.64646181884,0.478231364062,0.566489977358,0.670549111369,0.867415419861,0.566959187449,0.453483585164,0.392763745191,0.437661858176,0.488581485653,0.513222489124,0.565169702762,0.659480989415,0.501711358818,0.495218583652,0.453450488234,0.795382203183,0.959527598375,1.0,0.659301770634,0.685785077271,0.756825613731,0.484621876705,0.46670013209,0.627827088615,0.719904436333,0.703803107495,0.713962422441,0.690886779824,0.64531635086,0.585155941539,0.655216054554,0.61452413873,0.577473678601,0.500222803559,0.576787013504,0.502730655517,0.463705235695,0.458923166899,0.596533484864,0.697732287991,0.66508078817,0.633251158774,0.691715475805,0.627997524331,0.490476803586,0.488751245883,0.496658031856,0.506799406267,0.504721922068,0.5324317315,0.557814721221,0.482876869032,0.484261623934,0.652851787366,0.655252730724,0.577618940323,0.597618627761,0.416279338953,0.406448642526,0.3702988505,0.343499107449,0.34448122782,0.324643235509,0.315618560747,0.33737853602,0.352082252211,0.346098723087,0.321891351683,0.299038940141,0.300111235444,0.228577160332,0.159691131562,0.114601911515,0.121682503604,0.108729897844,0.107563811742,0.0838762259766,0.0815650133946,0.0655206143831,0.0445755693434,0.0462358977008,0.0459477971589,0.0455680964527,0.0470873345305,0.0470275157691,0.0488443491535,0.026514564428,0.0191958661589,0.0166178475868,0.018014568256,0.0181378545713,0.0124833985073,0.0101652059265,0.0115604348742,0.0108337692146,0.0146771130566,0.0147356628908,0.0139511069911,0.0137698729645,0.0198990894938,0.0188483489921,0.022291918247,0.0221821386061,0.022609060006,0.0226477649424,0.021107376104,0.0174419411476,0.0163826233748,0.0168778120159,0.0193329310342,0.0132802248259,0.0134469759863,0.0215717585309,0.0223000442599,0.0276641678183,0.0283999263959,0.0284666193139,0.026313690278,0.0115152595225,0.0170997610176,0.0165455022227,0.0200491942066,0.0252567458023,0.0263994959721,0.0442915773594,0.0432847412144,0.0418051476031,0.0395566018466,0.0150557494355,0.0134611882263,0.0138179035592,0.0138508912149,0.0138311053226,0.0157640445333,0.0156562364125,0.0223119785807,0.0210529442416,0.027303618834,0.027466824666,0.0274583550507,0.0317300335775,0.0328556692153,0.0322834818418,0.0306058071391,0.0305552477248,0.0304978677448,0.0303026854279,0.0248000316212,0.0235318406692,0.0232287710009,0.0173870915228,0.0175609336456,0.0184080618841,0.0187402409228,0.0187325837629,0.0186421091146,0.0186578513866,0.0189139550865,0.0189177577218,0.0186975739763,0.0187697418026,0.0191170056313,0.0189137630714,0.0202567112126,0.0187582033221,0.0103790868767,0.0252880307873,0.0249027892368,0.0247151630747,0.0268874654801,0.0212606193873,0.0205831006562,0.0144870567405,0.0156795208537,0.0166686634904,0.0194556405686,0.0165690437954,0.0166590698535,0.0165679135459,0.0158811584446,0.0155464686505,0.0153237187302,0.0153187007108,0.0115020685547,0.0116041737544,0.0120089966129,0.011793122628,0.0114861096767,0.0114983977123,0.0112690312214,0.0120637343208,0.012241989433,0.0127174246135,0.0127321161327,0.0124225532444,0.0139725315097,0.0139292102716,0.0134907143937,0.0129381361826,0.012791288072,0.0122083061886,0.0113643199311,0.0114047513667,0.0115568901948,0.0113963971941,0.0110500964398,0.0109057151638,0.0109021451742,0.0102359858863,0.010384655776,0.0107265747518,0.0107665303672,0.0114784295224,0.0118302688653,0.0116992957265,0.0118640545235,0.0118855454703,0.0111066671045,0.0160297148648,0.0174564303914,0.0175249089743,0.0179524292085,0.0293474807182,0.0299429986449,0.0307923351483,0.0354712091763,0.03562038077,0.0355347234901,0.0335353893926,0.0306499378606,0.0306423455078,0.029149284969,0.0184167625615,0.0175202860934,0.0176627277502,0.0174227266998,0.0173193851664,0.0169856097724,0.0169810906481,0.0163301672953,0.0153010139748,0.0159994483612,0.0175063469807,0.0182927634796,0.018150931455,0.0179920784118,0.0179215014752,0.0186560543815,0.0177779666014,0.0203259238024,0.0204038447463,0.021728315647,0.0217156666275,0.0222719502167,0.0225480275844,0.0224343229544,0.0235085424153,0.0239752985189,0.0246590876762,0.0242641523507,0.0225769713344,0.0182011168685,0.0176438241336,0.0173050330546,0.0159161002794,0.0153099605246,0.013509042304,0.0129323167885,0.0120073685524,0.0119729429972,0.0129385735022,0.0124829310258,0.0133495154313,0.0129476348875,0.0131666518225,0.0121624201592,0.011154399908,0.010968546753,0.0106790621242,0.0102650561369,0.0103042104934,0.010288010956,0.0101748463532,0.0102840976832);
t60=(0.0098922267827,0.140515412933,0.172163197002,0.174621551698,0.174621551698,0.718785622302,0.814613258605,0.137359524421,1.22188071348,0.349164741141,0.349164741141,0.197143252978,1.74551029889,1.74551029889,1.74551029889,0.330295206849,0.298078928886,0.121048892983,0.121048892983,0.321605289754,0.581888999203,0.581888999203,1.01824698596,0.0172869476078,0.0172627445628,0.0167925897496,0.718785622302,0.271589989347,0.531296769015,0.124752072014,0.126037367835,0.678857440537,0.0172386095044,0.0168154856406,0.0905822463244,0.0978225549736,0.0962832767358,0.0962832767358,0.0955316760376,0.0919432065767,0.0879778188202,0.092639152164,0.089916776793,0.0879778188202,0.0172869476078,0.0234846076979,0.0172869476078,0.0168154856406,0.0168154856406,0.0611684965187,0.134342356298,0.130057335639,0.124752072014,0.1328829652,0.124752072014,0.0172627445628,0.0172386095044,0.0172627445628,0.0173355588098,0.0172869476078,0.0173844454312,0.0231313082736,0.0172386095044,0.0172386095044,0.179755174754,0.179755174754,0.0319792539011,0.0820785284899,0.0149422580744,0.014924197761,0.012872246654,0.012832183246,0.012832183246,0.0127923699768,0.0126874064918,0.0128188844789,0.0128455098059,0.012832183246,0.0127923699768,0.0126614358698,0.0126614358698,0.0125331711977,0.0122357504464,0.00986079855377,0.00988435080759,0.0097294442437,0.00972182729389,0.00952792211019,0.00952061983489,0.00941956039122,0.00904264016749,0.00905581259858,0.00905581259858,0.00904922154722,0.00906241334291,0.00906241334291,0.0090690238016,0.00891301130746,0.00879950980277,0.00862863551674,0.643132225291,0.643132225291,0.00858103740442,0.00856332446489,0.131454958861,0.130057335639,0.135834178312,0.135834178312,0.134342356298,0.134342356298,0.222224238814,0.214429646696,0.24443882647,0.24443882647,0.24443882647,0.24443882647,0.235040347058,0.305528943153,0.284218437251,0.298078928886,0.321605289754,0.067210373342,0.067210373342,0.117559358926,0.118699950961,0.26568756262,0.26568756262,0.26568756262,0.124752072014,0.939926321566,0.0308542894159,0.0306234708313,0.0861207886704,0.100226100112,0.101895228693,0.210733934924,0.203712082574,0.190984975253,0.179755174754,0.0300245494419,0.0291689475528,0.0293081363689,0.0293081363689,0.0293081363689,0.0303210451726,0.0303210451726,0.0602656873902,0.0591026482779,0.102750832425,0.103620937917,0.103620937917,0.128689136067,0.135834178312,0.131454958861,0.124752072014,0.123492741768,0.123492741768,0.12225859813,0.0947917280661,0.0611684965187,0.0611684965187,0.0308542894159,0.0309320061128,0.0312468380463,0.0541404341589,0.0541404341589,0.0539022755086,0.0539022755086,0.0541404341589,0.0541404341589,0.0541404341589,0.0541404341589,0.0543807097766,0.0541404341589,0.0582594449382,0.0541404341589,0.0286252006205,0.177151163056,0.169773129941,0.165186785054,0.194015238893,0.13891953749,0.134342356298,0.106322048027,0.149078647077,0.194015238893,0.226338051331,0.194015238893,0.194015238893,0.194015238893,0.152803653959,0.149078647077,0.149078647077,0.149078647077,0.0254797218307,0.0255326410312,0.0255857811894,0.0255326410312,0.0254797218307,0.0254797218307,0.0254797218307,0.0255857811894,0.0256391436921,0.0745785164711,0.0745785164711,0.0262973576219,0.0799347341566,0.0794161865068,0.0779001777853,0.0764410194097,0.0745785164711,0.0256391436921,0.0254797218307,0.0254797218307,0.0255326410312,0.0254797218307,0.0254797218307,0.0254797218307,0.0254797218307,0.0194107664379,0.0253222762797,0.0254270222127,0.0254270222127,0.0254797218307,0.0255326410312,0.0255326410312,0.0255326410312,0.0255326410312,0.0254797218307,0.047992205691,0.053200225235,0.053200225235,0.053200225235,0.167448544174,0.167448544174,0.172163197002,0.203712082574,0.203712082574,0.203712082574,0.182436918149,0.172163197002,0.172163197002,0.165186785054,0.0536662059707,0.053200225235,0.053200225235,0.053200225235,0.0529702607182,0.0529702607182,0.0529702607182,0.0518496709334,0.0467120666791,0.047992205691,0.053200225235,0.0536662059707,0.0534321981769,0.053200225235,0.053200225235,0.0541404341589,0.053200225235,0.119862907549,0.119862907549,0.1328829652,0.1328829652,0.1328829652,0.137359524421,0.137359524421,0.142148401762,0.200373824908,0.210733934924,0.210733934924,0.137359524421,0.0534321981769,0.053200225235,0.0529702607182,0.047992205691,0.0468907396079,0.0413555012354,0.0409413501626,0.0255857811894,0.0255857811894,0.0409413501626,0.0264103699375,0.0412165212447,0.0409413501626,0.0409413501626,0.0256391436921,0.0254797218307,0.0254797218307,0.0254270222127,0.0194107664379,0.0194107664379,0.407345805406,0.290983677212,0.407345805406);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetRandallExcelTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetRandallExcelTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
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https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetRandallExcelTreble%7E.mxo/cabinetRandallExcelTreble.dsp
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faust
|
declare name "cabinetRandallExcelTreble";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 295;
modeFrequencies=(72.2131250787,122.206827056,161.090817483,183.310240584,227.749086787,333.291346517,472.162740899,566.595289079,633.253558383,716.576395012,761.015241214,883.222068271,1027.64831843,1172.07456859,1216.51341479,1260.95226099,1333.16538607,1422.04307847,1549.8047613,1644.23730948,1777.55384809,1821.99269429,1921.98009825,2060.85149263,2077.51605996,2105.29033883,2216.38745434,2360.8137045,2499.68509888,2616.33707016,2649.66620481,2799.64731074,2882.97014737,2916.29928203,3094.05466683,3205.15178234,3244.03577277,3310.69404207,3366.24259982,3421.79115758,3516.22370576,3566.21740773,3666.20481169,3699.53394634,3805.07620607,3888.3990427,4016.16072553,4110.59327371,4143.92240836,4255.01952387,4321.67779317,4399.44577403,4449.439476,4516.09774531,4654.96913969,4793.84053407,4810.5051014,4916.04736113,4966.04106311,5060.47361129,5166.01587102,5227.11928454,5332.66154428,5410.42952513,5510.41692908,5632.62375614,5699.28202544,5771.49515052,5871.48255448,5910.3665449,5993.68938153,6027.01851619,6043.68308351,6110.34135282,6138.11563169,6199.21904522,6254.76760297,6288.09673762,6354.75500693,6388.08414158,6410.30356468,6504.73611286,6638.05265147,6732.48519965,6804.69832473,6876.9114498,6932.46000756,7026.89255574,7071.33140194,7204.64794055,7360.18390225,7410.17760423,7437.95188311,7454.61645043,7476.83587354,7487.94558509,7515.71986396,7676.81068145,7760.13351808,7860.12092203,7887.89520091,7899.00491246,7965.66318176,8004.54717219,8171.19284545,8193.41226855,8260.07053785,8276.73510518,8298.95452828,8332.28366293,8393.38707646,8426.71621111,8515.59390351,8532.25847084,8548.92303817,8560.03274972,8587.80702859,8743.3429903,8776.67212495,8787.7818365,8859.99496158,9021.08577907,9032.19549062,9159.95717345,9176.62174077,9315.49313516,9465.47424109,9565.46164504,9609.90049125,9765.43645295,9920.97241466,9937.63698199,9998.74039552,10104.2826552,10132.0569341,10320.9220305,10354.2511651,10398.6900113,10437.5740018,10704.207079,10737.5362136,10748.6459252,10765.3104925,10781.9750598,10837.5236176,10848.6333291,10976.395012,11004.1692908,11109.7115506,11143.0406852,11154.1503968,11231.9183776,11259.6926565,11298.5766469,11337.4606374,11348.5703489,11359.6800605,11370.789772,11498.5514548,11531.8805895,11542.990301,11654.0874166,11665.1971281,11698.5262628,11748.5199647,11759.6296763,11770.7393878,11781.8490994,11792.9588109,11804.0685225,11820.7330898,11831.8428014,11848.5073687,11865.171936,11909.6107822,11981.8239073,12148.4695806,12737.2842927,12770.6134274,12798.3877063,12848.3814082,12920.5945333,12953.923668,13070.5756392,13509.4092455,13531.6286686,13603.8417937,13659.3903514,13676.0549188,13687.1646303,13714.9389092,13731.6034765,13742.7131881,13753.8228996,13809.3714574,13820.4811689,13842.700592,13859.3651593,13876.0297267,13887.1394382,13903.8040055,13931.5782844,13942.687996,13953.7977075,13964.9074191,13976.0171306,14014.901121,14031.5656884,14048.2302557,14076.0045346,14098.2239577,14109.3336692,14137.1079481,14148.2176597,14159.3273712,14170.4370828,14214.875929,14225.9856405,14242.6502078,14259.3147752,14309.3084771,14331.5279002,14342.6376118,14359.3021791,14370.4118907,14381.5216022,14392.6313138,14403.7410253,14420.4055926,14514.8381408,14531.5027081,14542.6124197,14553.7221313,14648.1546794,14659.264391,14703.7032372,14748.1420834,14764.8066507,14781.471218,14825.9100642,14859.2391989,14870.3489104,14892.5683335,15020.3300164,15042.5494395,15053.659151,15070.3237184,15081.4334299,15092.5431415,15103.652853,15114.7625646,15148.0916992,15159.2014108,15181.4208339,15198.0854012,15214.7499685,15242.5242474,15253.6339589,15270.2985263,15309.1825167,15342.5116513,15353.6213629,15386.9504975,15403.6150649,15420.2796322,15436.9441995,15448.0539111,15481.3830457,15492.4927573,15509.1573246,15525.8218919,15553.5961708,15620.2544401,15631.3641517,15648.028719,15670.2481421,15686.9127094,15709.1321325,15736.9064114,15759.1258345,15770.235546,15781.3452576,15792.4549691,15803.5646807,15814.6743922,15831.3389596,15848.0035269,15859.1132384,15875.7778058,15897.9972289,15914.6617962,15925.7715077,16336.8308351,16353.4954024,16370.1599698);
massEigenValues=(0.123136253493,0.364451601024,0.549273361601,0.568457703311,0.57838873573,0.867446177413,0.847527959825,0.309278063873,0.946906727725,0.657210227559,0.64646181884,0.478231364062,0.566489977358,0.670549111369,0.867415419861,0.566959187449,0.453483585164,0.392763745191,0.437661858176,0.488581485653,0.513222489124,0.565169702762,0.659480989415,0.501711358818,0.495218583652,0.453450488234,0.795382203183,0.959527598375,1.0,0.659301770634,0.685785077271,0.756825613731,0.484621876705,0.46670013209,0.627827088615,0.719904436333,0.703803107495,0.713962422441,0.690886779824,0.64531635086,0.585155941539,0.655216054554,0.61452413873,0.577473678601,0.500222803559,0.576787013504,0.502730655517,0.463705235695,0.458923166899,0.596533484864,0.697732287991,0.66508078817,0.633251158774,0.691715475805,0.627997524331,0.490476803586,0.488751245883,0.496658031856,0.506799406267,0.504721922068,0.5324317315,0.557814721221,0.482876869032,0.484261623934,0.652851787366,0.655252730724,0.577618940323,0.597618627761,0.416279338953,0.406448642526,0.3702988505,0.343499107449,0.34448122782,0.324643235509,0.315618560747,0.33737853602,0.352082252211,0.346098723087,0.321891351683,0.299038940141,0.300111235444,0.228577160332,0.159691131562,0.114601911515,0.121682503604,0.108729897844,0.107563811742,0.0838762259766,0.0815650133946,0.0655206143831,0.0445755693434,0.0462358977008,0.0459477971589,0.0455680964527,0.0470873345305,0.0470275157691,0.0488443491535,0.026514564428,0.0191958661589,0.0166178475868,0.018014568256,0.0181378545713,0.0124833985073,0.0101652059265,0.0115604348742,0.0108337692146,0.0146771130566,0.0147356628908,0.0139511069911,0.0137698729645,0.0198990894938,0.0188483489921,0.022291918247,0.0221821386061,0.022609060006,0.0226477649424,0.021107376104,0.0174419411476,0.0163826233748,0.0168778120159,0.0193329310342,0.0132802248259,0.0134469759863,0.0215717585309,0.0223000442599,0.0276641678183,0.0283999263959,0.0284666193139,0.026313690278,0.0115152595225,0.0170997610176,0.0165455022227,0.0200491942066,0.0252567458023,0.0263994959721,0.0442915773594,0.0432847412144,0.0418051476031,0.0395566018466,0.0150557494355,0.0134611882263,0.0138179035592,0.0138508912149,0.0138311053226,0.0157640445333,0.0156562364125,0.0223119785807,0.0210529442416,0.027303618834,0.027466824666,0.0274583550507,0.0317300335775,0.0328556692153,0.0322834818418,0.0306058071391,0.0305552477248,0.0304978677448,0.0303026854279,0.0248000316212,0.0235318406692,0.0232287710009,0.0173870915228,0.0175609336456,0.0184080618841,0.0187402409228,0.0187325837629,0.0186421091146,0.0186578513866,0.0189139550865,0.0189177577218,0.0186975739763,0.0187697418026,0.0191170056313,0.0189137630714,0.0202567112126,0.0187582033221,0.0103790868767,0.0252880307873,0.0249027892368,0.0247151630747,0.0268874654801,0.0212606193873,0.0205831006562,0.0144870567405,0.0156795208537,0.0166686634904,0.0194556405686,0.0165690437954,0.0166590698535,0.0165679135459,0.0158811584446,0.0155464686505,0.0153237187302,0.0153187007108,0.0115020685547,0.0116041737544,0.0120089966129,0.011793122628,0.0114861096767,0.0114983977123,0.0112690312214,0.0120637343208,0.012241989433,0.0127174246135,0.0127321161327,0.0124225532444,0.0139725315097,0.0139292102716,0.0134907143937,0.0129381361826,0.012791288072,0.0122083061886,0.0113643199311,0.0114047513667,0.0115568901948,0.0113963971941,0.0110500964398,0.0109057151638,0.0109021451742,0.0102359858863,0.010384655776,0.0107265747518,0.0107665303672,0.0114784295224,0.0118302688653,0.0116992957265,0.0118640545235,0.0118855454703,0.0111066671045,0.0160297148648,0.0174564303914,0.0175249089743,0.0179524292085,0.0293474807182,0.0299429986449,0.0307923351483,0.0354712091763,0.03562038077,0.0355347234901,0.0335353893926,0.0306499378606,0.0306423455078,0.029149284969,0.0184167625615,0.0175202860934,0.0176627277502,0.0174227266998,0.0173193851664,0.0169856097724,0.0169810906481,0.0163301672953,0.0153010139748,0.0159994483612,0.0175063469807,0.0182927634796,0.018150931455,0.0179920784118,0.0179215014752,0.0186560543815,0.0177779666014,0.0203259238024,0.0204038447463,0.021728315647,0.0217156666275,0.0222719502167,0.0225480275844,0.0224343229544,0.0235085424153,0.0239752985189,0.0246590876762,0.0242641523507,0.0225769713344,0.0182011168685,0.0176438241336,0.0173050330546,0.0159161002794,0.0153099605246,0.013509042304,0.0129323167885,0.0120073685524,0.0119729429972,0.0129385735022,0.0124829310258,0.0133495154313,0.0129476348875,0.0131666518225,0.0121624201592,0.011154399908,0.010968546753,0.0106790621242,0.0102650561369,0.0103042104934,0.010288010956,0.0101748463532,0.0102840976832);
t60=(0.0098922267827,0.140515412933,0.172163197002,0.174621551698,0.174621551698,0.718785622302,0.814613258605,0.137359524421,1.22188071348,0.349164741141,0.349164741141,0.197143252978,1.74551029889,1.74551029889,1.74551029889,0.330295206849,0.298078928886,0.121048892983,0.121048892983,0.321605289754,0.581888999203,0.581888999203,1.01824698596,0.0172869476078,0.0172627445628,0.0167925897496,0.718785622302,0.271589989347,0.531296769015,0.124752072014,0.126037367835,0.678857440537,0.0172386095044,0.0168154856406,0.0905822463244,0.0978225549736,0.0962832767358,0.0962832767358,0.0955316760376,0.0919432065767,0.0879778188202,0.092639152164,0.089916776793,0.0879778188202,0.0172869476078,0.0234846076979,0.0172869476078,0.0168154856406,0.0168154856406,0.0611684965187,0.134342356298,0.130057335639,0.124752072014,0.1328829652,0.124752072014,0.0172627445628,0.0172386095044,0.0172627445628,0.0173355588098,0.0172869476078,0.0173844454312,0.0231313082736,0.0172386095044,0.0172386095044,0.179755174754,0.179755174754,0.0319792539011,0.0820785284899,0.0149422580744,0.014924197761,0.012872246654,0.012832183246,0.012832183246,0.0127923699768,0.0126874064918,0.0128188844789,0.0128455098059,0.012832183246,0.0127923699768,0.0126614358698,0.0126614358698,0.0125331711977,0.0122357504464,0.00986079855377,0.00988435080759,0.0097294442437,0.00972182729389,0.00952792211019,0.00952061983489,0.00941956039122,0.00904264016749,0.00905581259858,0.00905581259858,0.00904922154722,0.00906241334291,0.00906241334291,0.0090690238016,0.00891301130746,0.00879950980277,0.00862863551674,0.643132225291,0.643132225291,0.00858103740442,0.00856332446489,0.131454958861,0.130057335639,0.135834178312,0.135834178312,0.134342356298,0.134342356298,0.222224238814,0.214429646696,0.24443882647,0.24443882647,0.24443882647,0.24443882647,0.235040347058,0.305528943153,0.284218437251,0.298078928886,0.321605289754,0.067210373342,0.067210373342,0.117559358926,0.118699950961,0.26568756262,0.26568756262,0.26568756262,0.124752072014,0.939926321566,0.0308542894159,0.0306234708313,0.0861207886704,0.100226100112,0.101895228693,0.210733934924,0.203712082574,0.190984975253,0.179755174754,0.0300245494419,0.0291689475528,0.0293081363689,0.0293081363689,0.0293081363689,0.0303210451726,0.0303210451726,0.0602656873902,0.0591026482779,0.102750832425,0.103620937917,0.103620937917,0.128689136067,0.135834178312,0.131454958861,0.124752072014,0.123492741768,0.123492741768,0.12225859813,0.0947917280661,0.0611684965187,0.0611684965187,0.0308542894159,0.0309320061128,0.0312468380463,0.0541404341589,0.0541404341589,0.0539022755086,0.0539022755086,0.0541404341589,0.0541404341589,0.0541404341589,0.0541404341589,0.0543807097766,0.0541404341589,0.0582594449382,0.0541404341589,0.0286252006205,0.177151163056,0.169773129941,0.165186785054,0.194015238893,0.13891953749,0.134342356298,0.106322048027,0.149078647077,0.194015238893,0.226338051331,0.194015238893,0.194015238893,0.194015238893,0.152803653959,0.149078647077,0.149078647077,0.149078647077,0.0254797218307,0.0255326410312,0.0255857811894,0.0255326410312,0.0254797218307,0.0254797218307,0.0254797218307,0.0255857811894,0.0256391436921,0.0745785164711,0.0745785164711,0.0262973576219,0.0799347341566,0.0794161865068,0.0779001777853,0.0764410194097,0.0745785164711,0.0256391436921,0.0254797218307,0.0254797218307,0.0255326410312,0.0254797218307,0.0254797218307,0.0254797218307,0.0254797218307,0.0194107664379,0.0253222762797,0.0254270222127,0.0254270222127,0.0254797218307,0.0255326410312,0.0255326410312,0.0255326410312,0.0255326410312,0.0254797218307,0.047992205691,0.053200225235,0.053200225235,0.053200225235,0.167448544174,0.167448544174,0.172163197002,0.203712082574,0.203712082574,0.203712082574,0.182436918149,0.172163197002,0.172163197002,0.165186785054,0.0536662059707,0.053200225235,0.053200225235,0.053200225235,0.0529702607182,0.0529702607182,0.0529702607182,0.0518496709334,0.0467120666791,0.047992205691,0.053200225235,0.0536662059707,0.0534321981769,0.053200225235,0.053200225235,0.0541404341589,0.053200225235,0.119862907549,0.119862907549,0.1328829652,0.1328829652,0.1328829652,0.137359524421,0.137359524421,0.142148401762,0.200373824908,0.210733934924,0.210733934924,0.137359524421,0.0534321981769,0.053200225235,0.0529702607182,0.047992205691,0.0468907396079,0.0413555012354,0.0409413501626,0.0255857811894,0.0255857811894,0.0409413501626,0.0264103699375,0.0412165212447,0.0409413501626,0.0409413501626,0.0256391436921,0.0254797218307,0.0254797218307,0.0254270222127,0.0194107664379,0.0194107664379,0.407345805406,0.290983677212,0.407345805406);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetRandallExcelTreble=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetRandallExcelTreble;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
6c7fdd05c72c988f452919f3bf5425e949cad2cdef64b6816cc6f8bb243bba47
|
sebastien-clara/panoplie
|
cabinetFenderBlackfaceBass.dsp
|
declare name "cabinetFenderBlackfaceBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 339;
modeFrequencies=(105.54225973,133.316538607,177.755384809,238.858798337,272.187932989,305.517067641,333.291346517,444.388462023,605.479279506,649.918125709,716.576395012,749.905529664,849.892933619,872.11235672,883.222068271,916.551202922,994.319183776,1016.53860688,1027.64831843,1077.64202041,1099.86144351,1138.74543393,1149.85514548,1205.40370324,1294.28139564,1305.39110719,1399.82365537,1433.15279002,1444.26250157,1549.8047613,1622.01788638,1655.34702104,1738.66985766,1794.21841542,1833.10240584,1871.98639627,1933.0898098,2021.9675022,2105.29033883,2144.17432926,2216.38745434,2249.71658899,2310.82000252,2449.6913969,2538.56908931,2594.11764706,2710.76961834,2738.54389722,2771.87303187,2805.20216652,2932.96384935,2994.06726288,3060.72553218,3088.49981106,3110.71923416,3205.15178234,3277.36490742,3321.80375362,3394.0168787,3427.34601335,3477.33971533,3527.33341731,3627.32082126,3660.64995591,3727.30822522,3788.41163875,3860.62476382,3949.50245623,4005.05101398,4082.81899484,4227.24524499,4371.67149515,4516.09774531,4671.63370702,4810.5051014,4943.82164001,5049.36389974,5093.80274594,5315.99697695,5382.65524625,5499.30721753,5538.19120796,5671.50774657,5782.60486207,5804.82428517,5893.70197758,6049.23793929,6193.66418944,6338.0904396,6438.07784356,6482.51668976,6621.38808414,6760.25947852,6910.24058446,7010.22798841,7115.77024814,7160.20909434,7254.64164252,7287.97077718,7393.51303691,7515.71986396,7643.48154679,7804.57236428,7921.22433556,8060.09572994,8187.85741277,8337.83851871,8371.16765336,8460.04534576,8526.70361506,8604.47159592,8676.684721,8754.45270185,8865.54981736,8898.87895201,8982.20178864,9026.64063484,9065.52462527,9204.39601965,9326.60284671,9476.58395264,9576.57135659,9732.1073183,9759.88159718,9859.86900113,9893.19813579,9993.18553974,10137.6117899,10165.3860688,10237.5991939,10270.9283285,10387.5802998,10432.019146,10504.2322711,10559.7808288,10670.8779443,10681.9876559,10704.207079,10776.4202041,10865.2978965,10904.1818869,10915.2915984,10931.9561658,11015.2790024,11109.7115506,11165.2601083,11204.1440988,11220.8086661,11276.3572238,11298.5766469,11359.6800605,11470.777176,11565.2097241,11604.0937146,11670.7519839,12020.7078977,12065.1467439,12131.8050132,12198.4632825,12254.0118403,12326.2249654,12337.3346769,12365.1089558,12426.2123693,12470.6512155,12503.9803502,12526.1997733,12553.9740521,12565.0837637,12926.1493891,12965.0333795,13098.3499181,13109.4596297,13120.5693412,13231.6664567,13348.318428,13403.8669858,13437.1961204,13448.305832,13459.4155435,13481.6349666,13520.518957,13626.0612168,13637.1709283,13653.8354957,13681.6097745,13737.1583323,13759.3777554,13787.1520343,13803.8166016,13820.4811689,13831.5908805,13848.2554478,13876.0297267,13898.2491498,13909.3588613,13926.0234286,13970.4622748,13981.5719864,14003.7914095,14042.6753999,14059.3399673,14070.4496788,14087.1142461,14103.7788135,14114.888525,14175.9919385,14203.7662174,14253.7599194,14275.9793425,14292.6439098,14303.7536214,14320.4181887,14337.082756,14353.7473233,14375.9667464,14392.6313138,14409.2958811,14420.4055926,14431.5153042,14448.1798715,14470.3992946,14487.0638619,14525.9478524,14542.6124197,14553.7221313,14614.8255448,14631.4901121,14642.5998237,14698.1483814,15120.3174203,15131.4271319,15142.5368434,15159.2014108,15170.3111223,15181.4208339,15198.0854012,15225.8596801,15242.5242474,15253.6339589,15275.853382,15286.9630936,15298.0728051,15309.1825167,15331.4019398,15348.0665071,15370.2859302,15392.5053533,15403.6150649,15431.3893437,15442.4990553,15453.6087668,15470.2733342,15481.3830457,15498.047613,15520.2670362,15542.4864593,15553.5961708,15570.2607381,15592.4801612,15609.1447286,15620.2544401,15642.4738632,15659.1384305,15670.2481421,15686.9127094,15698.022421,15714.6869883,15731.3515556,15742.4612672,15753.5709787,15770.235546,15792.4549691,15803.5646807,15825.7841038,15853.5583827,15892.4423731,15903.5520846,15920.216652,15942.4360751,15964.6554982,15981.3200655,15992.4297771,16009.0943444,16031.3137675,16059.0880464,16075.7526137,16097.9720368,16114.6366041,16125.7463157,16136.8560272,16159.0754503,16175.7400176,16197.9594407,16214.6240081,16231.2885754,16242.3982869,16259.0628543,16297.9468447,16314.611412,16325.7211236,16359.0502582,16370.1599698,16386.8245371,16403.4891044,16420.1536717,16436.8182391,16459.0376622,16481.2570853,16497.9216526,16514.5862199,16531.2507873,16542.3604988,16553.4702104,16564.5799219,16581.2444892,16597.9090566,16609.0187681,16636.793047,16653.4576143,16664.5673259,16686.786749,16697.8964605,16720.1158836,16731.2255952,16753.4450183,16764.5547298,16775.6644414,16786.7741529,16797.8838645,16808.993576,16825.6581433,16847.8775664,16858.987278,16870.0969895,16886.7615569,16897.8712684,16908.98098,16981.1941051);
massEigenValues=(0.251884383454,0.294567788702,0.328902239188,0.277600242129,0.495164069944,0.583437401672,0.59626964227,0.570567149844,0.402229847493,0.320903876808,0.482758623127,0.474255240471,0.321743640066,0.311205842687,0.311231083228,0.305414196961,0.479935452885,0.508533143287,0.508946873752,0.390036757192,0.408482908293,0.393751032511,0.390418675256,0.382884012012,0.338475433806,0.34569364806,0.272337609584,0.279885273954,0.280542631443,0.192409798331,0.211092474954,0.238430906684,0.37159896749,0.326914484105,0.30257050615,0.32598127092,0.352840190561,0.505793026154,0.517401280483,0.557356749919,0.318553188232,0.334196155602,0.40290576278,0.694539963402,0.445604844255,0.611188511752,0.520323054774,0.537451590799,0.571500639381,0.609160845902,0.666288654402,0.689964000419,0.800240482855,0.786339611351,0.783536469207,0.642096930163,0.501913641277,0.515054259497,0.356341490527,0.429109073285,0.353789762053,0.322860541516,0.344269516159,0.355801900655,0.321857685091,0.291073916297,0.375019786604,0.403438929843,0.372570478113,0.535656279252,0.466396651847,0.604673996637,0.664997861355,0.632305483601,0.939805145314,1.0,0.868615461936,0.913701811742,0.365295854283,0.394603716177,0.387563055625,0.404884451627,0.486334548931,0.485185072099,0.485323669127,0.462265514295,0.260745876049,0.223428959895,0.185381184974,0.130173344413,0.138031724927,0.123137331499,0.165234365215,0.197981108328,0.180402732321,0.121604778297,0.13062524891,0.125266540585,0.137101909661,0.184833493104,0.177807593644,0.133758982263,0.123192755738,0.177447625212,0.216324219714,0.208516061021,0.178241844954,0.182989057712,0.182122289773,0.164855112389,0.177979903462,0.189797081555,0.212037032005,0.199658504417,0.196307237154,0.184730360835,0.187771866804,0.19011907562,0.171781053277,0.14070391233,0.111393669352,0.0957438805606,0.0890744024419,0.088431392903,0.0943511461388,0.0890726725291,0.0906405626903,0.07551000981,0.0763719108976,0.0574375995824,0.0624160287147,0.0455830780641,0.0481960684534,0.0326798470717,0.0355224575781,0.0335277793191,0.0332497053317,0.0328796679898,0.0333454756237,0.0273648722434,0.0290107702339,0.0291741414218,0.0296975514339,0.035090276592,0.0320253515549,0.0345915994975,0.0308779738891,0.0309164411147,0.0278897571447,0.0286431496332,0.0256569927043,0.021689937925,0.0142986016289,0.0151018507543,0.0101502606496,0.0121241606261,0.0111874821307,0.0137725337551,0.0130914794142,0.0161429524991,0.0125876114868,0.0127481902849,0.0131979581826,0.0116890588587,0.0113234411282,0.0123474668689,0.0120320200027,0.0112709812022,0.0111068783251,0.0132357902645,0.0126592523483,0.0180235327664,0.017897904189,0.0177964880294,0.0228914031149,0.0239498527178,0.0226496985848,0.0215751820325,0.0211211269592,0.0210482932229,0.0211420940936,0.0216844592187,0.0179202384007,0.0179248265187,0.0177621487747,0.0170020515742,0.0155858300598,0.0160301877495,0.0164787703757,0.0167577505637,0.0168241769159,0.0169122081219,0.017037451388,0.0167392915038,0.0169192424427,0.0172505869785,0.0172536880198,0.01891240391,0.0189387437642,0.0186626704732,0.0204447231386,0.0208649617548,0.0211277211662,0.0212065650606,0.0208788886191,0.0207853745511,0.0224288172927,0.0225802487303,0.0227344040724,0.023272934158,0.0234351743579,0.0234662975358,0.0233736826728,0.0226100100317,0.0228501870322,0.0221845424313,0.0215450023251,0.0209272300856,0.0206269383624,0.0209234868044,0.020808061482,0.0202538950315,0.020184360172,0.0190611902563,0.0187339741907,0.0185416402231,0.0158506898399,0.0153645858652,0.01465136563,0.0105800462305,0.0117475211655,0.0119236208741,0.0125216842409,0.0125824519933,0.0135344750087,0.0132568712822,0.0135541135392,0.0144643230657,0.0150947590249,0.0161992758634,0.0166866876013,0.0165291188525,0.0164441188448,0.0157456035506,0.0154973510005,0.0154432786092,0.0157596273982,0.0159054224135,0.01572143707,0.0158348583879,0.0151884466934,0.0149829303458,0.0153246129541,0.0152159562681,0.0153535548837,0.0152104156713,0.0144848023149,0.0144696339222,0.0147598621256,0.0142242894457,0.0146558101822,0.014039100556,0.0134102334966,0.0131088886169,0.0134126608149,0.0132655208793,0.0130011203051,0.0136077481738,0.0136233599321,0.0134878283736,0.0135235347974,0.0130051630991,0.0134427722488,0.0130874312888,0.0133885467452,0.012903353587,0.013457359205,0.0130721668525,0.0121617540955,0.0128669266092,0.0127348100147,0.0125758673751,0.0120287666373,0.0115798595577,0.0118577792112,0.0112681762453,0.0125419624114,0.0118251893348,0.0119449042275,0.011557513175,0.010860442457,0.0113832849399,0.0112927149497,0.0114252876879,0.0116810602221,0.011235842151,0.0107353941681,0.0107122025127,0.0117499828155,0.0116225541834,0.01168821123,0.0108307813129,0.011131642282,0.0113311867587,0.0110011006306,0.0109434823074,0.0118426355832,0.0119476543998,0.0117035194038,0.0122546794833,0.01278888324,0.0124176731145,0.0128854766489,0.0131141511341,0.0125130715718,0.0127470458895,0.0128515541651,0.0124066512342,0.0132758113319,0.0124865562256,0.0137948430007,0.0130875925269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t60=(0.0994118910513,0.0994118910513,0.610979531587,0.0994118910513,0.277760708206,0.298078928886,0.298078928886,0.290983677212,0.313361009441,0.12225859813,0.678857440537,0.678857440537,0.102750832425,0.101895228693,0.101895228693,0.101053767176,0.305528943153,0.330295206849,0.330295206849,0.160841826757,0.194015238893,0.190984975253,0.160841826757,0.1328829652,0.103620937917,0.10450591701,0.0970468076064,0.0986108143979,0.0986108143979,0.0867310184335,0.015033222817,0.015088338069,0.0329225566183,0.0305472987813,0.0156428374875,0.0305472987813,0.0307769632561,0.330295206849,0.330295206849,0.349164741141,0.0301720670206,0.0306234708313,0.0596784944693,0.610979531587,0.0668435319893,0.643132225291,0.0994118910513,0.100226100112,0.101053767176,0.394208145712,0.150918156646,0.165186785054,0.197143252978,0.194015238893,0.194015238893,0.147283463044,0.0986108143979,0.0994118910513,0.0307769632561,0.555443060688,0.0307769632561,0.0305472987813,0.0306234708313,0.0307769632561,0.0305472987813,0.0155443297085,0.555443060688,0.290983677212,0.277760708206,0.939926321566,0.718785622302,0.763704826809,0.678857440537,0.106322048027,0.167448544174,0.174621551698,0.15875398966,0.165186785054,0.0381407774625,0.0556148527445,0.124752072014,0.126037367835,0.169773129941,0.169773129941,0.169773129941,0.1328829652,0.0151253078254,0.763704826809,0.581888999203,0.0119062269167,0.0119176877079,0.718785622302,0.763704826809,0.610979531587,0.284218437251,0.135834178312,0.13891953749,0.143819813862,0.145531021491,0.290983677212,0.284218437251,0.145531021491,0.038621059178,0.0453303294073,0.0536662059707,0.0497451487566,0.0453303294073,0.0456680301136,0.0456680301136,0.044833055849,0.0453303294073,0.047992205691,0.053200225235,0.0491467545253,0.0489504812201,0.0456680301136,0.0458387776637,0.047992205691,0.0451633482481,0.0435589030118,0.0380225714838,0.0228308064216,0.0227044048583,0.0227044048583,0.0227885159351,0.0227044048583,0.0227463823712,0.00667942376281,0.00667942376281,0.00659841497267,0.00660538018958,0.0065227674736,0.00658799497982,0.00606204785872,0.00650244007038,0.00606791356426,0.00606497927444,0.00606497927444,0.00606497927444,0.00600401666599,0.00600976907547,0.00600976907547,0.00603869949587,0.00607379078313,0.00605911931288,0.00607085073241,0.00604451948475,0.00604451948475,0.00600689147511,0.00600689147511,0.00599254526084,0.00598397081689,0.00592743726125,0.00593023821582,0.00589680283146,0.0970468076064,0.0955316760376,0.106322048027,0.0994118910513,0.185199926501,0.0978225549736,0.0986108143979,0.102750832425,0.0970468076064,0.0962832767358,0.0978225549736,0.0970468076064,0.0955316760376,0.0955316760376,0.0362264002984,0.0358036173538,0.0404019058763,0.0404019058763,0.0402692629172,0.10450591701,0.127349440656,0.103620937917,0.0427987550503,0.0426499037805,0.0426499037805,0.0426499037805,0.0427987550503,0.0404019058763,0.0404019058763,0.0401374897492,0.0383794127328,0.0379050974318,0.0379050974318,0.0381407774625,0.0382597222295,0.0382597222295,0.0382597222295,0.0383794127328,0.0382597222295,0.0383794127328,0.0384998560076,0.0384998560076,0.0413555012354,0.0413555012354,0.0412165212447,0.042209509341,0.0426499037805,0.0426499037805,0.0426499037805,0.0426499037805,0.0426499037805,0.0809924340054,0.0809924340054,0.0809924340054,0.0947917280661,0.0955316760376,0.0955316760376,0.0955316760376,0.0809924340054,0.0815318609316,0.0789043297965,0.0427987550503,0.0426499037805,0.042209509341,0.0426499037805,0.0426499037805,0.042209509341,0.0420647290407,0.0414954234646,0.0412165212447,0.0409413501626,0.0379050974318,0.0376723180826,0.0373284717649,0.0338298518956,0.0338298518956,0.0343986954966,0.0360137653449,0.0360137653449,0.0381407774625,0.0376723180826,0.0381407774625,0.0637139167773,0.0694989631848,0.0779001777853,0.0861207886704,0.0789043297965,0.0789043297965,0.0723743710262,0.0723743710262,0.0723743710262,0.0723743710262,0.0754982710046,0.0723743710262,0.0754982710046,0.0723743710262,0.0694989631848,0.0723743710262,0.0723743710262,0.0723743710262,0.0723743710262,0.0637139167773,0.0637139167773,0.0643837642314,0.0582594449382,0.0640470869761,0.0582594449382,0.0376723180826,0.0376723180826,0.0376723180826,0.0376723180826,0.0376723180826,0.0381407774625,0.0381407774625,0.0381407774625,0.0381407774625,0.0376723180826,0.0381407774625,0.0376723180826,0.0376723180826,0.0366593097966,0.0381407774625,0.0376723180826,0.0343986954966,0.0366593097966,0.0362264002984,0.0360137653449,0.0343986954966,0.0338298518956,0.0338298518956,0.0338298518956,0.0360137653449,0.0338298518956,0.0343986954966,0.0338298518956,0.03337002376,0.0338298518956,0.0338298518956,0.0338298518956,0.0338298518956,0.0338298518956,0.0329225566183,0.0329225566183,0.0338298518956,0.0338298518956,0.0338298518956,0.03337002376,0.0338298518956,0.0338298518956,0.0337368728713,0.03337002376,0.0338298518956,0.0343986954966,0.0338298518956,0.0349870423412,0.0366593097966,0.0349870423412,0.0366593097966,0.0376723180826,0.0360137653449,0.0366593097966,0.0366593097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modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderBlackfaceBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderBlackfaceBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/audioFX/ampli/cabinetFenderBlackfaceBass%7E.mxo/cabinetFenderBlackfaceBass.dsp
|
faust
|
declare name "cabinetFenderBlackfaceBass";
declare description "Generated by tools/physicalModeling/ir2dsp.py";
import("stdfaust.lib");
pi = 4*atan(1.0);
nModes = 339;
modeFrequencies=(105.54225973,133.316538607,177.755384809,238.858798337,272.187932989,305.517067641,333.291346517,444.388462023,605.479279506,649.918125709,716.576395012,749.905529664,849.892933619,872.11235672,883.222068271,916.551202922,994.319183776,1016.53860688,1027.64831843,1077.64202041,1099.86144351,1138.74543393,1149.85514548,1205.40370324,1294.28139564,1305.39110719,1399.82365537,1433.15279002,1444.26250157,1549.8047613,1622.01788638,1655.34702104,1738.66985766,1794.21841542,1833.10240584,1871.98639627,1933.0898098,2021.9675022,2105.29033883,2144.17432926,2216.38745434,2249.71658899,2310.82000252,2449.6913969,2538.56908931,2594.11764706,2710.76961834,2738.54389722,2771.87303187,2805.20216652,2932.96384935,2994.06726288,3060.72553218,3088.49981106,3110.71923416,3205.15178234,3277.36490742,3321.80375362,3394.0168787,3427.34601335,3477.33971533,3527.33341731,3627.32082126,3660.64995591,3727.30822522,3788.41163875,3860.62476382,3949.50245623,4005.05101398,4082.81899484,4227.24524499,4371.67149515,4516.09774531,4671.63370702,4810.5051014,4943.82164001,5049.36389974,5093.80274594,5315.99697695,5382.65524625,5499.30721753,5538.19120796,5671.50774657,5782.60486207,5804.82428517,5893.70197758,6049.23793929,6193.66418944,6338.0904396,6438.07784356,6482.51668976,6621.38808414,6760.25947852,6910.24058446,7010.22798841,7115.77024814,7160.20909434,7254.64164252,7287.97077718,7393.51303691,7515.71986396,7643.48154679,7804.57236428,7921.22433556,8060.09572994,8187.85741277,8337.83851871,8371.16765336,8460.04534576,8526.70361506,8604.47159592,8676.684721,8754.45270185,8865.54981736,8898.87895201,8982.20178864,9026.64063484,9065.52462527,9204.39601965,9326.60284671,9476.58395264,9576.57135659,9732.1073183,9759.88159718,9859.86900113,9893.19813579,9993.18553974,10137.6117899,10165.3860688,10237.5991939,10270.9283285,10387.5802998,10432.019146,10504.2322711,10559.7808288,10670.8779443,10681.9876559,10704.207079,10776.4202041,10865.2978965,10904.1818869,10915.2915984,10931.9561658,11015.2790024,11109.7115506,11165.2601083,11204.1440988,11220.8086661,11276.3572238,11298.5766469,11359.6800605,11470.777176,11565.2097241,11604.0937146,11670.7519839,12020.7078977,12065.1467439,12131.8050132,12198.4632825,12254.0118403,12326.2249654,12337.3346769,12365.1089558,12426.2123693,12470.6512155,12503.9803502,12526.1997733,12553.9740521,12565.0837637,12926.1493891,12965.0333795,13098.3499181,13109.4596297,13120.5693412,13231.6664567,13348.318428,13403.8669858,13437.1961204,13448.305832,13459.4155435,13481.6349666,13520.518957,13626.0612168,13637.1709283,13653.8354957,13681.6097745,13737.1583323,13759.3777554,13787.1520343,13803.8166016,13820.4811689,13831.5908805,13848.2554478,13876.0297267,13898.2491498,13909.3588613,13926.0234286,13970.4622748,13981.5719864,14003.7914095,14042.6753999,14059.3399673,14070.4496788,14087.1142461,14103.7788135,14114.888525,14175.9919385,14203.7662174,14253.7599194,14275.9793425,14292.6439098,14303.7536214,14320.4181887,14337.082756,14353.7473233,14375.9667464,14392.6313138,14409.2958811,14420.4055926,14431.5153042,14448.1798715,14470.3992946,14487.0638619,14525.9478524,14542.6124197,14553.7221313,14614.8255448,14631.4901121,14642.5998237,14698.1483814,15120.3174203,15131.4271319,15142.5368434,15159.2014108,15170.3111223,15181.4208339,15198.0854012,15225.8596801,15242.5242474,15253.6339589,15275.853382,15286.9630936,15298.0728051,15309.1825167,15331.4019398,15348.0665071,15370.2859302,15392.5053533,15403.6150649,15431.3893437,15442.4990553,15453.6087668,15470.2733342,15481.3830457,15498.047613,15520.2670362,15542.4864593,15553.5961708,15570.2607381,15592.4801612,15609.1447286,15620.2544401,15642.4738632,15659.1384305,15670.2481421,15686.9127094,15698.022421,15714.6869883,15731.3515556,15742.4612672,15753.5709787,15770.235546,15792.4549691,15803.5646807,15825.7841038,15853.5583827,15892.4423731,15903.5520846,15920.216652,15942.4360751,15964.6554982,15981.3200655,15992.4297771,16009.0943444,16031.3137675,16059.0880464,16075.7526137,16097.9720368,16114.6366041,16125.7463157,16136.8560272,16159.0754503,16175.7400176,16197.9594407,16214.6240081,16231.2885754,16242.3982869,16259.0628543,16297.9468447,16314.611412,16325.7211236,16359.0502582,16370.1599698,16386.8245371,16403.4891044,16420.1536717,16436.8182391,16459.0376622,16481.2570853,16497.9216526,16514.5862199,16531.2507873,16542.3604988,16553.4702104,16564.5799219,16581.2444892,16597.9090566,16609.0187681,16636.793047,16653.4576143,16664.5673259,16686.786749,16697.8964605,16720.1158836,16731.2255952,16753.4450183,16764.5547298,16775.6644414,16786.7741529,16797.8838645,16808.993576,16825.6581433,16847.8775664,16858.987278,16870.0969895,16886.7615569,16897.8712684,16908.98098,16981.1941051);
massEigenValues=(0.251884383454,0.294567788702,0.328902239188,0.277600242129,0.495164069944,0.583437401672,0.59626964227,0.570567149844,0.402229847493,0.320903876808,0.482758623127,0.474255240471,0.321743640066,0.311205842687,0.311231083228,0.305414196961,0.479935452885,0.508533143287,0.508946873752,0.390036757192,0.408482908293,0.393751032511,0.390418675256,0.382884012012,0.338475433806,0.34569364806,0.272337609584,0.279885273954,0.280542631443,0.192409798331,0.211092474954,0.238430906684,0.37159896749,0.326914484105,0.30257050615,0.32598127092,0.352840190561,0.505793026154,0.517401280483,0.557356749919,0.318553188232,0.334196155602,0.40290576278,0.694539963402,0.445604844255,0.611188511752,0.520323054774,0.537451590799,0.571500639381,0.609160845902,0.666288654402,0.689964000419,0.800240482855,0.786339611351,0.783536469207,0.642096930163,0.501913641277,0.515054259497,0.356341490527,0.429109073285,0.353789762053,0.322860541516,0.344269516159,0.355801900655,0.321857685091,0.291073916297,0.375019786604,0.403438929843,0.372570478113,0.535656279252,0.466396651847,0.604673996637,0.664997861355,0.632305483601,0.939805145314,1.0,0.868615461936,0.913701811742,0.365295854283,0.394603716177,0.387563055625,0.404884451627,0.486334548931,0.485185072099,0.485323669127,0.462265514295,0.260745876049,0.223428959895,0.185381184974,0.130173344413,0.138031724927,0.123137331499,0.165234365215,0.197981108328,0.180402732321,0.121604778297,0.13062524891,0.125266540585,0.137101909661,0.184833493104,0.177807593644,0.133758982263,0.123192755738,0.177447625212,0.216324219714,0.208516061021,0.178241844954,0.182989057712,0.182122289773,0.164855112389,0.177979903462,0.189797081555,0.212037032005,0.199658504417,0.196307237154,0.184730360835,0.187771866804,0.19011907562,0.171781053277,0.14070391233,0.111393669352,0.0957438805606,0.0890744024419,0.088431392903,0.0943511461388,0.0890726725291,0.0906405626903,0.07551000981,0.0763719108976,0.0574375995824,0.0624160287147,0.0455830780641,0.0481960684534,0.0326798470717,0.0355224575781,0.0335277793191,0.0332497053317,0.0328796679898,0.0333454756237,0.0273648722434,0.0290107702339,0.0291741414218,0.0296975514339,0.035090276592,0.0320253515549,0.0345915994975,0.0308779738891,0.0309164411147,0.0278897571447,0.0286431496332,0.0256569927043,0.021689937925,0.0142986016289,0.0151018507543,0.0101502606496,0.0121241606261,0.0111874821307,0.0137725337551,0.0130914794142,0.0161429524991,0.0125876114868,0.0127481902849,0.0131979581826,0.0116890588587,0.0113234411282,0.0123474668689,0.0120320200027,0.0112709812022,0.0111068783251,0.0132357902645,0.0126592523483,0.0180235327664,0.017897904189,0.0177964880294,0.0228914031149,0.0239498527178,0.0226496985848,0.0215751820325,0.0211211269592,0.0210482932229,0.0211420940936,0.0216844592187,0.0179202384007,0.0179248265187,0.0177621487747,0.0170020515742,0.0155858300598,0.0160301877495,0.0164787703757,0.0167577505637,0.0168241769159,0.0169122081219,0.017037451388,0.0167392915038,0.0169192424427,0.0172505869785,0.0172536880198,0.01891240391,0.0189387437642,0.0186626704732,0.0204447231386,0.0208649617548,0.0211277211662,0.0212065650606,0.0208788886191,0.0207853745511,0.0224288172927,0.0225802487303,0.0227344040724,0.023272934158,0.0234351743579,0.0234662975358,0.0233736826728,0.0226100100317,0.0228501870322,0.0221845424313,0.0215450023251,0.0209272300856,0.0206269383624,0.0209234868044,0.020808061482,0.0202538950315,0.020184360172,0.0190611902563,0.0187339741907,0.0185416402231,0.0158506898399,0.0153645858652,0.01465136563,0.0105800462305,0.0117475211655,0.0119236208741,0.0125216842409,0.0125824519933,0.0135344750087,0.0132568712822,0.0135541135392,0.0144643230657,0.0150947590249,0.0161992758634,0.0166866876013,0.0165291188525,0.0164441188448,0.0157456035506,0.0154973510005,0.0154432786092,0.0157596273982,0.0159054224135,0.01572143707,0.0158348583879,0.0151884466934,0.0149829303458,0.0153246129541,0.0152159562681,0.0153535548837,0.0152104156713,0.0144848023149,0.0144696339222,0.0147598621256,0.0142242894457,0.0146558101822,0.014039100556,0.0134102334966,0.0131088886169,0.0134126608149,0.0132655208793,0.0130011203051,0.0136077481738,0.0136233599321,0.0134878283736,0.0135235347974,0.0130051630991,0.0134427722488,0.0130874312888,0.0133885467452,0.012903353587,0.013457359205,0.0130721668525,0.0121617540955,0.0128669266092,0.0127348100147,0.0125758673751,0.0120287666373,0.0115798595577,0.0118577792112,0.0112681762453,0.0125419624114,0.0118251893348,0.0119449042275,0.011557513175,0.010860442457,0.0113832849399,0.0112927149497,0.0114252876879,0.0116810602221,0.011235842151,0.0107353941681,0.0107122025127,0.0117499828155,0.0116225541834,0.01168821123,0.0108307813129,0.011131642282,0.0113311867587,0.0110011006306,0.0109434823074,0.0118426355832,0.0119476543998,0.0117035194038,0.0122546794833,0.01278888324,0.0124176731145,0.0128854766489,0.0131141511341,0.0125130715718,0.0127470458895,0.0128515541651,0.0124066512342,0.0132758113319,0.0124865562256,0.0137948430007,0.0130875925269,0.012710525322,0.0127215846077,0.012740460728,0.0128817867037,0.0121653961346,0.011913796418,0.0120453475754,0.0117655110959,0.0124500276586,0.0113977364963,0.0116210008226,0.0120623190717,0.0106162005839,0.0111794127801,0.0100456029557,0.0103952717017,0.0102168121494);
t60=(0.0994118910513,0.0994118910513,0.610979531587,0.0994118910513,0.277760708206,0.298078928886,0.298078928886,0.290983677212,0.313361009441,0.12225859813,0.678857440537,0.678857440537,0.102750832425,0.101895228693,0.101895228693,0.101053767176,0.305528943153,0.330295206849,0.330295206849,0.160841826757,0.194015238893,0.190984975253,0.160841826757,0.1328829652,0.103620937917,0.10450591701,0.0970468076064,0.0986108143979,0.0986108143979,0.0867310184335,0.015033222817,0.015088338069,0.0329225566183,0.0305472987813,0.0156428374875,0.0305472987813,0.0307769632561,0.330295206849,0.330295206849,0.349164741141,0.0301720670206,0.0306234708313,0.0596784944693,0.610979531587,0.0668435319893,0.643132225291,0.0994118910513,0.100226100112,0.101053767176,0.394208145712,0.150918156646,0.165186785054,0.197143252978,0.194015238893,0.194015238893,0.147283463044,0.0986108143979,0.0994118910513,0.0307769632561,0.555443060688,0.0307769632561,0.0305472987813,0.0306234708313,0.0307769632561,0.0305472987813,0.0155443297085,0.555443060688,0.290983677212,0.277760708206,0.939926321566,0.718785622302,0.763704826809,0.678857440537,0.106322048027,0.167448544174,0.174621551698,0.15875398966,0.165186785054,0.0381407774625,0.0556148527445,0.124752072014,0.126037367835,0.169773129941,0.169773129941,0.169773129941,0.1328829652,0.0151253078254,0.763704826809,0.581888999203,0.0119062269167,0.0119176877079,0.718785622302,0.763704826809,0.610979531587,0.284218437251,0.135834178312,0.13891953749,0.143819813862,0.145531021491,0.290983677212,0.284218437251,0.145531021491,0.038621059178,0.0453303294073,0.0536662059707,0.0497451487566,0.0453303294073,0.0456680301136,0.0456680301136,0.044833055849,0.0453303294073,0.047992205691,0.053200225235,0.0491467545253,0.0489504812201,0.0456680301136,0.0458387776637,0.047992205691,0.0451633482481,0.0435589030118,0.0380225714838,0.0228308064216,0.0227044048583,0.0227044048583,0.0227885159351,0.0227044048583,0.0227463823712,0.00667942376281,0.00667942376281,0.00659841497267,0.00660538018958,0.0065227674736,0.00658799497982,0.00606204785872,0.00650244007038,0.00606791356426,0.00606497927444,0.00606497927444,0.00606497927444,0.00600401666599,0.00600976907547,0.00600976907547,0.00603869949587,0.00607379078313,0.00605911931288,0.00607085073241,0.00604451948475,0.00604451948475,0.00600689147511,0.00600689147511,0.00599254526084,0.00598397081689,0.00592743726125,0.00593023821582,0.00589680283146,0.0970468076064,0.0955316760376,0.106322048027,0.0994118910513,0.185199926501,0.0978225549736,0.0986108143979,0.102750832425,0.0970468076064,0.0962832767358,0.0978225549736,0.0970468076064,0.0955316760376,0.0955316760376,0.0362264002984,0.0358036173538,0.0404019058763,0.0404019058763,0.0402692629172,0.10450591701,0.127349440656,0.103620937917,0.0427987550503,0.0426499037805,0.0426499037805,0.0426499037805,0.0427987550503,0.0404019058763,0.0404019058763,0.0401374897492,0.0383794127328,0.0379050974318,0.0379050974318,0.0381407774625,0.0382597222295,0.0382597222295,0.0382597222295,0.0383794127328,0.0382597222295,0.0383794127328,0.0384998560076,0.0384998560076,0.0413555012354,0.0413555012354,0.0412165212447,0.042209509341,0.0426499037805,0.0426499037805,0.0426499037805,0.0426499037805,0.0426499037805,0.0809924340054,0.0809924340054,0.0809924340054,0.0947917280661,0.0955316760376,0.0955316760376,0.0955316760376,0.0809924340054,0.0815318609316,0.0789043297965,0.0427987550503,0.0426499037805,0.042209509341,0.0426499037805,0.0426499037805,0.042209509341,0.0420647290407,0.0414954234646,0.0412165212447,0.0409413501626,0.0379050974318,0.0376723180826,0.0373284717649,0.0338298518956,0.0338298518956,0.0343986954966,0.0360137653449,0.0360137653449,0.0381407774625,0.0376723180826,0.0381407774625,0.0637139167773,0.0694989631848,0.0779001777853,0.0861207886704,0.0789043297965,0.0789043297965,0.0723743710262,0.0723743710262,0.0723743710262,0.0723743710262,0.0754982710046,0.0723743710262,0.0754982710046,0.0723743710262,0.0694989631848,0.0723743710262,0.0723743710262,0.0723743710262,0.0723743710262,0.0637139167773,0.0637139167773,0.0643837642314,0.0582594449382,0.0640470869761,0.0582594449382,0.0376723180826,0.0376723180826,0.0376723180826,0.0376723180826,0.0376723180826,0.0381407774625,0.0381407774625,0.0381407774625,0.0381407774625,0.0376723180826,0.0381407774625,0.0376723180826,0.0376723180826,0.0366593097966,0.0381407774625,0.0376723180826,0.0343986954966,0.0366593097966,0.0362264002984,0.0360137653449,0.0343986954966,0.0338298518956,0.0338298518956,0.0338298518956,0.0360137653449,0.0338298518956,0.0343986954966,0.0338298518956,0.03337002376,0.0338298518956,0.0338298518956,0.0338298518956,0.0338298518956,0.0338298518956,0.0329225566183,0.0329225566183,0.0338298518956,0.0338298518956,0.0338298518956,0.03337002376,0.0338298518956,0.0338298518956,0.0337368728713,0.03337002376,0.0338298518956,0.0343986954966,0.0338298518956,0.0349870423412,0.0366593097966,0.0349870423412,0.0366593097966,0.0376723180826,0.0360137653449,0.0366593097966,0.0366593097966,0.0349870423412,0.0376723180826,0.0360137653449,0.0382597222295,0.0376723180826,0.0362264002984,0.0362264002984,0.0362264002984,0.0366593097966,0.0343986954966,0.0343986954966,0.0343986954966,0.0338298518956,0.035595912948,0.0338298518956,0.0338298518956,0.0343986954966,0.0329225566183,0.0338298518956,0.0325731514408,0.0325731514408,0.0325731514408);
modeFreqs=par(i,nModes,ba.take(i+1, modeFrequencies));
modeGains=par(i,nModes,ba.take(i+1, massEigenValues));
modeT60 = par(i,nModes,ba.take(i+1,t60));
cabinetFenderBlackfaceBass=modalModel(nModes,modeFrequencies,modeT60,modeGains);
modalModel(n,modeFreqs,modeRes,modeGains) = _ <: par(i,n,gain(i)*pm.modeFilter(freqs(i),res(i))) :> _
with {
freqs(i) = ba.take(i+1,modeFreqs);
res(i) = ba.take(i+1,modeRes);
gain(i) = ba.take(i+1,modeGains);
};
cab = cabinetFenderBlackfaceBass;
wetdry = vslider("[2] amount[style:knob]", 1, 0, 1, 0.01);
dry = 1 - wetdry;
process = _ <: _*dry, (_*wetdry:cab) :> _;
|
|
830da5295ccb20b1bfe43b90868de391becbf18d93a41dc55c75e0c76cc3733c
|
sebastien-clara/panoplie
|
wavesElectric.dsp
|
//--------------------`wavesElectric`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi wavesElectric.dsp
///////////////////////////////////////////////////////////////
declare name "wavesElectric";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 5000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 5, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 5, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 5, 0.01)) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[1]", osc,_,_,_), vgroup("[2]", grpKr(midigate)) <: //audio,freq, lof1,lfo2, gate
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
//////////////////////////////////////////////////////////////
// Wave table
//////////////////////////////////////////////////////////////
shapesTable = waveform {-0.22370067238808, 0.26563954353333, 0.78243947029114, 0.9646954536438, 0.99997633695602, 0.93255311250687, 0.83142328262329, 0.80105835199356, 0.78243350982666, 0.7417368888855, 0.70617789030075, 0.70025074481964, 0.69960641860962, 0.68160659074783, 0.66408550739288, 0.66269171237946, 0.6625804901123, 0.64944189786911, 0.63603949546814, 0.63441842794418, 0.63365083932877, 0.62334114313126, 0.61275589466095, 0.61078482866287, 0.60927361249924, 0.60024404525757, 0.59097224473953, 0.58865910768509, 0.58660823106766, 0.57816779613495, 0.56934928894043, 0.56614339351654, 0.5629774928093, 0.55397200584412, 0.54500418901443, 0.54224973917007, 0.54010772705078, 0.53329223394394, 0.52591019868851, 0.52157264947891, 0.51730823516846, 0.51003557443619, 0.50301826000214, 0.50008350610733, 0.49731224775314, 0.49046245217323, 0.48329028487206, 0.47950637340546, 0.4759912788868, 0.4697345495224, 0.46327769756317, 0.45921778678894, 0.45510885119438, 0.44803395867348, 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};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/wavesElectric/wavesElectric%7E.mxo/wavesElectric.dsp
|
faust
|
--------------------`wavesElectric`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi wavesElectric.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
audio,freq, lof1,lfo2, gate
////////////////////////////////////////////////////////////
Wave table
////////////////////////////////////////////////////////////
|
declare name "wavesElectric";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 5000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 5, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 5, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 5, 0.01)) : si.smoo;
};
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
shapesTable = waveform {-0.22370067238808, 0.26563954353333, 0.78243947029114, 0.9646954536438, 0.99997633695602, 0.93255311250687, 0.83142328262329, 0.80105835199356, 0.78243350982666, 0.7417368888855, 0.70617789030075, 0.70025074481964, 0.69960641860962, 0.68160659074783, 0.66408550739288, 0.66269171237946, 0.6625804901123, 0.64944189786911, 0.63603949546814, 0.63441842794418, 0.63365083932877, 0.62334114313126, 0.61275589466095, 0.61078482866287, 0.60927361249924, 0.60024404525757, 0.59097224473953, 0.58865910768509, 0.58660823106766, 0.57816779613495, 0.56934928894043, 0.56614339351654, 0.5629774928093, 0.55397200584412, 0.54500418901443, 0.54224973917007, 0.54010772705078, 0.53329223394394, 0.52591019868851, 0.52157264947891, 0.51730823516846, 0.51003557443619, 0.50301826000214, 0.50008350610733, 0.49731224775314, 0.49046245217323, 0.48329028487206, 0.47950637340546, 0.4759912788868, 0.4697345495224, 0.46327769756317, 0.45921778678894, 0.45510885119438, 0.44803395867348, 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};
|
ce6066413056d4cf5a8d06bfc88c4e8ab0a3a5b435fa118e3576cfd7557426c0
|
sebastien-clara/panoplie
|
wavesElectricMono.dsp
|
//--------------------`wavesElectric`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi wavesElectric.dsp
///////////////////////////////////////////////////////////////
declare name "wavesElectric";
declare author "Sébastien Clara";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 4000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 5, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 5, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 5, 0.01)) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[1]", osc,_,_,_), vgroup("[2]", grpKr(midigate)) <: //audio,freq, lof1,lfo2, gate
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
//////////////////////////////////////////////////////////////
// Wave table
//////////////////////////////////////////////////////////////
shapesTable = waveform {-0.22370067238808, 0.26563954353333, 0.78243947029114, 0.9646954536438, 0.99997633695602, 0.93255311250687, 0.83142328262329, 0.80105835199356, 0.78243350982666, 0.7417368888855, 0.70617789030075, 0.70025074481964, 0.69960641860962, 0.68160659074783, 0.66408550739288, 0.66269171237946, 0.6625804901123, 0.64944189786911, 0.63603949546814, 0.63441842794418, 0.63365083932877, 0.62334114313126, 0.61275589466095, 0.61078482866287, 0.60927361249924, 0.60024404525757, 0.59097224473953, 0.58865910768509, 0.58660823106766, 0.57816779613495, 0.56934928894043, 0.56614339351654, 0.5629774928093, 0.55397200584412, 0.54500418901443, 0.54224973917007, 0.54010772705078, 0.53329223394394, 0.52591019868851, 0.52157264947891, 0.51730823516846, 0.51003557443619, 0.50301826000214, 0.50008350610733, 0.49731224775314, 0.49046245217323, 0.48329028487206, 0.47950637340546, 0.4759912788868, 0.4697345495224, 0.46327769756317, 0.45921778678894, 0.45510885119438, 0.44803395867348, 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};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/wavesElectricMono/wavesElectricMono%7E.mxo/wavesElectricMono.dsp
|
faust
|
--------------------`wavesElectric`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi wavesElectric.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
audio,freq, lof1,lfo2, gate
////////////////////////////////////////////////////////////
Wave table
////////////////////////////////////////////////////////////
|
declare name "wavesElectric";
declare author "Sébastien Clara";
import("stdfaust.lib");
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 4000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 5, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 5, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 5, 0.01)) : si.smoo;
};
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
shapesTable = waveform {-0.22370067238808, 0.26563954353333, 0.78243947029114, 0.9646954536438, 0.99997633695602, 0.93255311250687, 0.83142328262329, 0.80105835199356, 0.78243350982666, 0.7417368888855, 0.70617789030075, 0.70025074481964, 0.69960641860962, 0.68160659074783, 0.66408550739288, 0.66269171237946, 0.6625804901123, 0.64944189786911, 0.63603949546814, 0.63441842794418, 0.63365083932877, 0.62334114313126, 0.61275589466095, 0.61078482866287, 0.60927361249924, 0.60024404525757, 0.59097224473953, 0.58865910768509, 0.58660823106766, 0.57816779613495, 0.56934928894043, 0.56614339351654, 0.5629774928093, 0.55397200584412, 0.54500418901443, 0.54224973917007, 0.54010772705078, 0.53329223394394, 0.52591019868851, 0.52157264947891, 0.51730823516846, 0.51003557443619, 0.50301826000214, 0.50008350610733, 0.49731224775314, 0.49046245217323, 0.48329028487206, 0.47950637340546, 0.4759912788868, 0.4697345495224, 0.46327769756317, 0.45921778678894, 0.45510885119438, 0.44803395867348, 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};
|
fd55fca3165f9a9ed5a7631bf1654d4cd0047615d65909229be824f78a9f1298
|
sebastien-clara/panoplie
|
wavesMoog.dsp
|
//--------------------`wavesMoog`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi wavesMoog.dsp
///////////////////////////////////////////////////////////////
declare name "wavesMoog";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 5000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 15, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 15, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 10, 0.01)) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[1]", osc,_,_,_), vgroup("[2]", grpKr(midigate)) <: //audio,freq, lof1,lfo2, gate
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
//////////////////////////////////////////////////////////////
// Wave table
//////////////////////////////////////////////////////////////
shapesTable = waveform {0, 0.0047074296035357, 0.0094148592070713, 0.014122288810607, 0.018829718414143, 0.023270972717315, 0.027235469995153, 0.031199967272991, 0.035164464550829, 0.039128961828667, 0.042466887160517, 0.045556959665631, 0.048647032170745, 0.051737104675859, 0.054794214618573, 0.05744378742615, 0.060093360233726, 0.062742933041303, 0.065392505848879, 0.068010756022533, 0.070588007984245, 0.073165259945957, 0.07574251190767, 0.078319763869382, 0.080829376235612, 0.083321158106757, 0.085812939977902, 0.088304721849047, 0.090760097307989, 0.093008618152136, 0.095257138996283, 0.09750565984043, 0.099754180684577, 0.10188915884431, 0.10391414252851, 0.10593912621271, 0.10796410989691, 0.10998909358112, 0.11194573697312, 0.11389182518911, 0.1158379134051, 0.11778400162108, 0.11972566203018, 0.12165202637911, 0.12357839072805, 0.12550475507698, 0.12743111942591, 0.1292923487974, 0.13110694456636, 0.13292154033532, 0.13473613610428, 0.13655073187324, 0.13822302657567, 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0.30961992779067, 0.30965280090243, 0.30968567401418, 0.30970284853788, 0.30971599778258, 0.30972914702728, 0.30974229627198, 0.30975240419478, 0.30974582957243, 0.30973925495008, 0.30973268032773, 0.30972610570538, 0.30971616177543, 0.30970301253072, 0.30968986328602, 0.30967671404132, 0.30966356479662, 0.30964469071068, 0.30962496684363, 0.30960524297657, 0.30958551910952, 0.30956428948995, 0.30953799100055, 0.30951169251114, 0.30948539402174, 0.30945909553233, 0.30941735189836, 0.30936475491955, 0.30931215794074, 0.30925956096193, 0.30920696398312, 0.30914815018453, 0.30908897858337, 0.30902980698221, 0.30897063538105, 0.30890946604883, 0.30884371982532, 0.3087779736018, 0.30871222737829, 0.30864648115478, 0.30858073493126, 0.30851498870775, 0.30844924248424, 0.30838349626072, 0.30831721333335, 0.30822516862043, 0.30813312390751, 0.30804107919459, 0.30794903448167, 0.30785201034956, 0.30774681639194, 0.30764162243432, 0.3075364284767, 0.30743123451908, 0.30732604056145, 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};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthPoly/faustInstru/wavesMoog/wavesMoog%7E.mxo/wavesMoog.dsp
|
faust
|
--------------------`wavesMoog`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi wavesMoog.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
audio,freq, lof1,lfo2, gate
////////////////////////////////////////////////////////////
Wave table
////////////////////////////////////////////////////////////
|
declare name "wavesMoog";
declare author "Sébastien Clara";
declare nvoices "16";
import("stdfaust.lib");
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 5000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01);
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 15, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 15, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 10, 0.01)) : si.smoo;
};
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
shapesTable = waveform {0, 0.0047074296035357, 0.0094148592070713, 0.014122288810607, 0.018829718414143, 0.023270972717315, 0.027235469995153, 0.031199967272991, 0.035164464550829, 0.039128961828667, 0.042466887160517, 0.045556959665631, 0.048647032170745, 0.051737104675859, 0.054794214618573, 0.05744378742615, 0.060093360233726, 0.062742933041303, 0.065392505848879, 0.068010756022533, 0.070588007984245, 0.073165259945957, 0.07574251190767, 0.078319763869382, 0.080829376235612, 0.083321158106757, 0.085812939977902, 0.088304721849047, 0.090760097307989, 0.093008618152136, 0.095257138996283, 0.09750565984043, 0.099754180684577, 0.10188915884431, 0.10391414252851, 0.10593912621271, 0.10796410989691, 0.10998909358112, 0.11194573697312, 0.11389182518911, 0.1158379134051, 0.11778400162108, 0.11972566203018, 0.12165202637911, 0.12357839072805, 0.12550475507698, 0.12743111942591, 0.1292923487974, 0.13110694456636, 0.13292154033532, 0.13473613610428, 0.13655073187324, 0.13822302657567, 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};
|
bdcda80b8d260f8a38105f36e07b09b18ac30f71a386711ce5d002f81398bb1e
|
sebastien-clara/panoplie
|
wavesMoogMono.dsp
|
//--------------------`wavesMoog`-------------------
// Synthesizer
//
//
// #### Compilation example
// * faust2jaqt -midi wavesMoog.dsp
///////////////////////////////////////////////////////////////
declare name "wavesMoog";
declare author "Sébastien Clara";
import("stdfaust.lib");
///////////////////////////////////////////////////////////////
// GUI parameters
///////////////////////////////////////////////////////////////
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 4000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 15, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 15, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 10, 0.01)) : si.smoo;
};
///////////////////////////////////////////////////////////////
// Tools
///////////////////////////////////////////////////////////////
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
///////////////////////////////////////////////////////////////
// Synthesis
///////////////////////////////////////////////////////////////
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
///////////////////////////////////////////////////////////////
// DSP
///////////////////////////////////////////////////////////////
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[1]", osc,_,_,_), vgroup("[2]", grpKr(midigate)) <: //audio,freq, lof1,lfo2, gate
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
//////////////////////////////////////////////////////////////
// Wave table
//////////////////////////////////////////////////////////////
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};
|
https://raw.githubusercontent.com/sebastien-clara/panoplie/bfb061ab2874a404826a2d62a5359dcd92264f30/synthMono/faustInstruMono/wavesMoogMono/wavesMoogMono%7E.mxo/wavesMoogMono.dsp
|
faust
|
--------------------`wavesMoog`-------------------
Synthesizer
#### Compilation example
* faust2jaqt -midi wavesMoog.dsp
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
GUI parameters
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Tools
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
Synthesis
/////////////////////////////////////////////////////////////
/////////////////////////////////////////////////////////////
DSP
/////////////////////////////////////////////////////////////
audio,freq, lof1,lfo2, gate
////////////////////////////////////////////////////////////
Wave table
////////////////////////////////////////////////////////////
|
declare name "wavesMoog";
declare author "Sébastien Clara";
import("stdfaust.lib");
midigate = button ("[1]gate");
midifreq = vslider("[2]freq[unit:Hz] [style:knob]", 440, 20, 4000, 1) : portamento;
midigain = vslider("[9]gain [style:knob]", 1, 0, 3, 0.01) : si.smoo;
bend = vslider("[9]bend [style:knob] [hide:1] [midi:pitchwheel]", 1,0.9,1.1,0.01);
portamento = si.smooth(vslider("[2]portamento [style:knob]", 0, 0, 5, 0.05) : ba.tau2pole);
envelop(a,d,s,r, gate, gain) = en.adsre(att, dec, sus, rel, gate) * gain
with {
ctl_group(x) = hgroup("[5]env", x);
att = ctl_group(vslider("[1]A [style:knob] [tooltip:sec]", a, 0, 15, 0.01)) : si.smoo;
dec = ctl_group(vslider("[2]D [style:knob] [tooltip:sec]", d, 0, 15, 0.01)) : si.smoo;
sus = ctl_group(vslider("[3]S [style:knob] [tooltip:percentage of max]", s, 0, 1, 0.01)) : si.smoo;
rel = ctl_group(vslider("[4]R [style:knob] [tooltip:sec]", r, 0.01, 10, 0.01)) : si.smoo;
};
scale(value, minIn, maxIn, minOut, maxOut) =
((maxOut - minOut) * (value - minIn) / (maxIn - minIn)) + minOut;
clip(value, low, high) = resul
with {
maxR = (value > max(low, high))*max(low, high) + (value <= max(low, high))*value;
resul = (maxR < min(low, high))*min(low, high) + (maxR >= min(low, high))*maxR;
};
scaleClip(value, minIn, maxIn, minOut, maxOut) =
clip(scale(value, minIn, maxIn, minOut, maxOut) , minOut, maxOut);
multiSig(f) = sig:si.smoo
with {
i = vslider("[1]form [style:knob] [tooltip:0=sin\\n1=saw\\n2=randSmooth\\n3=rand]",
0,0,3,1);
sig = (os.osc(f), os.sawtooth(f), (no.lfnoise0(f) <: si.smooth(ba.tau2pole(1/f)),_) )
: ba.selectn(4,i) : _;
};
lfoGen = lfo1, lfo2
with {
bpm = vslider("[2]bpm [style:knob] [tooltip:global lfo rate]", 120,1,1000,1) : si.smoo;
rate1 = vslider("[1]rate lfo1[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
rate2 = vslider("[3]rate lfo2[style:knob] [tooltip:modulation coef]", 1, 0, 10, 0.01):si.smoo;
lfo1 = (rate1*(1/(60/bpm))) : hgroup("[1]lfo1", multiSig);
lfo2 = (rate2*(1/(60/bpm))) : hgroup("[3]lfo2", multiSig);
};
lfo(sig, lfo1, lfo2, amp) = sig <: +(lfo1*amp1), +(lfo2*amp2) :> _
with {
amp1 = vslider("[9]lfo1 [style:knob] [tooltip:amp lfo1]", 0,0,amp,0.1) : si.smoo;
amp2 = vslider("[9]lfo2 [style:knob] [tooltip:amp lfo2]", 0,0,amp,0.1) : si.smoo;
};
waveTableSynth(freq, lfo1, lfo2) = sig * a * 0.2
with {
waveForms = shapesTable;
tuning = vslider("[3]tuning wav[style:knob] [tooltip:semitone]", 0, -12, 12, 0.01)/12;
f = hgroup("[1]lfo freq", lfo(freq * (2^tuning), lfo1, lfo2, 500));
formSel = vslider("[2]form wav[style:knob]", 0, 0, ((waveForms:_,!)/2048)-1, 1);
a = vslider("[3]amp wav[style:knob]", 0,0,1,0.01):si.smoo;
fi = scaleClip(f, 200, 4000, 0, 1);
wave = waveForms, int(os.phasor(2048, f) + (formSel*2048)) : rdtable;
osc = os.osc(f);
sig = wave, osc : si.interpolate(fi);
};
osc = hgroup("[4]osc1", waveTableSynth),
hgroup("[5]osc2", waveTableSynth),
hgroup("[6]osc3", waveTableSynth) :>_;
envFx(gate, value, valMax, valMin) = env
with {
envDepth = vslider("[5]envDepth [style:knob]", 1, 0, 1, 0.01):si.smoo;
invEnv = checkbox("[5]invEnv LPF"):si.smoo;
env = ((value+envelop(0,0,0,0.1, gate, (envDepth*valMax)-value))*(1-invEnv)) + ((value-(envDepth*envelop(0,0,0,0.1, gate, value-valMin)))* invEnv);
};
modulator(sig, freq, lfo1, lfo2, gate) = sig <: nonLinearFilterOsc :> _
with {
idx = vslider("[2]index FM [style:knob]", 0, 0, 15, 0.01):si.smoo;
f = hgroup("[1]lfo freq", lfo(
(vslider("[1]coef FM [style:knob]", 1, 0.01, 10, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
tosc = envFx(gate,idx,15,0)*ma.PI*os.osc(clip(f,0,20000));
nonLinearFilterOsc = fi.allpassnn(3,(par(i,3,tosc)));
};
lpFilter(sig, freq, lfo1, lfo2, gate) = sig <: filter :> _
with {
maxCut = ma.SR/6.3;
f = hgroup("[1]lfo cutOff", lfo(
(vslider("[1]coef cutOff [style:knob] [tooltip:pitchTracker * coef = cutOff]", 2, 0.01, 5, 0.01):si.smoo)*freq,
lfo1, lfo2, 1000));
fc = clip(envFx(gate, f,maxCut,20), 20,maxCut);
r = vslider("[8]resonance [style:knob]", 0.1, 0, 0.99, 0.01):si.smoo;
a = vslider("[9]dry/wet LPF [style:knob]", 1, 0, 1, 0.01):si.smoo;
filter = (ef.cubicnl_nodc(0.4,0) : (ve.moog_vcf_2bn(r, fc)*a*0.4)), _*(1-a);
};
tremolo(sig, lfo1, lfo2) = sig,trem:*
with {
trem = lfo(1, lfo1, lfo2, 1)/2;
};
grpKr(x) = hgroup("[1]", x);
grpLfo(x) = hgroup("[2]", x);
voice = hgroup("",
vgroup("[2]", grpKr(midifreq*bend), grpLfo(lfoGen) ) <:
vgroup("[2]", tgroup("[2]FX",
hgroup("[2]modulator", modulator), (!,_,_,_,_) <:
hgroup("[3]filter", lpFilter), (!,!,_,_,_) <:
((_,_,_,!):hgroup("[1]tremolo", tremolo)), (!,!,!,_)
) ) :
vgroup("[2]",
(_, (_,grpKr(midigain) : grpKr(envelop(0.01,0.06,0.9,0.1))) :*)
)
);
process = voice : co.limiter_1176_R4_mono <: _,_;
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};
|
10c32be6e11bd4e8b9bd5832c218c672cfaaeba3aee1993cafc51d98b3589b14
|
monome/norns
|
EqSection.dsp
|
declare name "EqSection";
import("stdfaust.lib");
import("effect.lib");
import("filter.lib");
par_eq = _,_ : par(i, 2, fi.low_shelf(ll,fl) : fi.peak_eq(lp,fp,bp) : fi.high_shelf(lh,fh)) : _,_
with{
eq_group(x) = hgroup("[0] parametric EQ",x);
ls_group(x) = eq_group(vgroup("[1] low shelf", x));
ll = ls_group(hslider("[0] lf_gain [unit:db]
[tooltip: amount of low-frequency boost or cut in decibels]",0,-40,40,0.1));
fl = ls_group(hslider("[1] lf_fc [unit:hz] [style:knob] [scale:log]
[tooltip: transition-frequency from boost (cut) to unity gain]",200,1,5000,1));
pq_group(x) = eq_group(vgroup("[2] peaking EQ",x));
lp = pq_group(hslider("[0] peak_gain [unit:db] [tooltip: amount of
local boost or cut in decibels]",0,-40,40,0.1));
fp = pq_group(hslider("[1] peak_freq [unit:hz] [scale:log] [tooltip: peak
frequency]",49,1,100,1)) : si.smooth(0.999)
: ba.pianokey2hz;
q = pq_group(hslider("[2] peak_q [scale:log] [tooltip: quality factor
(q) of the peak = center-frequency/bandwidth]",40,1,1000,0.1));
bp = fp/q;
hs_group(x) = eq_group(vgroup("[3] high shelf]",x));
lh = hs_group(hslider("[0] high boost|cut [unit:db] [style:knob] [tooltip: amount of
high-frequency boost or cut in decibels]",0,-40,40,.1));
fh = hs_group(hslider("[1] transition frequency [unit:hz] [style:knob] [scale:log]
[tooltip: transition-frequency from boost (cut) to unity gain]",8000,20,10000,1));
};
tilt = _,_ : par(i,2, fi.spectral_tilt(O,f0,bw,alpha) ) : _,_
with{
O = 5;
tilt_group(x) = hgroup("[0] spectral tilt",x);
alpha = tilt_group(hslider("[1] slope [tooltip: slope of spectral tilt across band]",-1/2,-1,1,0.001));
f0 = tilt_group(hslider("[2] fc [unit:Hz] [tooltip: band start frequency]",100,20,10000,1));
bw = tilt_group(hslider("[3] bw [unit:Hz] [tooltip: band width",5000,100,10000,1));
};
process = tilt : par_eq;
|
https://raw.githubusercontent.com/monome/norns/e8ddf657830f8db99465965d45ade11e9dbbc831/crone/dsp/EqSection.dsp
|
faust
|
declare name "EqSection";
import("stdfaust.lib");
import("effect.lib");
import("filter.lib");
par_eq = _,_ : par(i, 2, fi.low_shelf(ll,fl) : fi.peak_eq(lp,fp,bp) : fi.high_shelf(lh,fh)) : _,_
with{
eq_group(x) = hgroup("[0] parametric EQ",x);
ls_group(x) = eq_group(vgroup("[1] low shelf", x));
ll = ls_group(hslider("[0] lf_gain [unit:db]
[tooltip: amount of low-frequency boost or cut in decibels]",0,-40,40,0.1));
fl = ls_group(hslider("[1] lf_fc [unit:hz] [style:knob] [scale:log]
[tooltip: transition-frequency from boost (cut) to unity gain]",200,1,5000,1));
pq_group(x) = eq_group(vgroup("[2] peaking EQ",x));
lp = pq_group(hslider("[0] peak_gain [unit:db] [tooltip: amount of
local boost or cut in decibels]",0,-40,40,0.1));
fp = pq_group(hslider("[1] peak_freq [unit:hz] [scale:log] [tooltip: peak
frequency]",49,1,100,1)) : si.smooth(0.999)
: ba.pianokey2hz;
q = pq_group(hslider("[2] peak_q [scale:log] [tooltip: quality factor
(q) of the peak = center-frequency/bandwidth]",40,1,1000,0.1));
bp = fp/q;
hs_group(x) = eq_group(vgroup("[3] high shelf]",x));
lh = hs_group(hslider("[0] high boost|cut [unit:db] [style:knob] [tooltip: amount of
high-frequency boost or cut in decibels]",0,-40,40,.1));
fh = hs_group(hslider("[1] transition frequency [unit:hz] [style:knob] [scale:log]
[tooltip: transition-frequency from boost (cut) to unity gain]",8000,20,10000,1));
};
tilt = _,_ : par(i,2, fi.spectral_tilt(O,f0,bw,alpha) ) : _,_
with{
O = 5;
tilt_group(x) = hgroup("[0] spectral tilt",x);
alpha = tilt_group(hslider("[1] slope [tooltip: slope of spectral tilt across band]",-1/2,-1,1,0.001));
f0 = tilt_group(hslider("[2] fc [unit:Hz] [tooltip: band start frequency]",100,20,10000,1));
bw = tilt_group(hslider("[3] bw [unit:Hz] [tooltip: band width",5000,100,10000,1));
};
process = tilt : par_eq;
|
|
4687c54ab4c176348c39e7263e9b3ebbd0c9dbb59d5fa77cedca51d9ea98c91d
|
lukas303/stream-splice
|
stream_splice_v1_0.dsp
|
declare filename "stream-splice";
declare version "1.0";
declare author "Lukas Hartmann & Luca Hilbrich";
declare options "[osc:on]";
declare options "[midi:on]";
import("stdfaust.lib");
// USER INTERFACE //
volumeSlider = vslider("h:/h:[0]Main/ [0]Input Gain [midi:ctrl 0]", 0.5, 0, 1, 0.01); // volume slider
dry_wetMain = vslider("h:/h:[0]Main/ [1]Dry/Wet [midi:ctrl 1]", 1.0, 0, 1, 0.001);
pitchSliderA = vslider("h:/h:[0]Main/ [2] Pitch Alpha [midi:ctrl 2]", 0, -2, 2, 0.01); // pitch control (downsampling)
pitchSliderB = vslider("h:/h:[0]Main/ [2] Pitch Beta [midi:ctrl 3]", 0, -2, 2, 0.01); // pitch control (downsampling)
grainAmountSlider = vslider("h:/h:[1]Granulator/v:Grain/h:[0]Control/[0]Density [midi:ctrl 4]",5, 1, MAXN, 1); // number of grains
grainbufferSizeSlider = vslider("h:/h:[1]Granulator/v:Grain/h:[0]Control/[1]Size [midi:ctrl 5]", 0.1, 0.01, 0.5, 0.01); // grain size in samples
delayLengthSlider = vslider("h:/h:[1]Granulator/v:Grain/h:[0]Control/[2]Delay [midi:ctrl 6]", 1, 0.5, 2, 0.1); // delay length in samples
positionspreadSlider = vslider("h:/h:[1]Granulator/v:Grain/h:[0]Control/[3]Spread [midi:ctrl 7]", 1, 0.1, 2, 0.1); // position spread of grains
windowSliderA = vslider("h:/h:[1]Granulator/v:Grain/h:[1]Window/[1] Alpha [style:menu{'Sine':0;
'Hanning ':1;'Top Down':2}]",0,0,2,1); // alpha window selector
windowSliderB = vslider("h:/h:[1]Granulator/v:Grain/h:[1]Window/[1] Beta [style:menu{'Sine':0;'Hanning ':1;'Top Down':2}]",0,0,2,1); // beta window selector
dry_wetA = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [0]Reverb[style:knob] [midi:ctrl 16]", 0.0, 0, 1, 0.001);
filter_cuttoffA = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [1]HPF[unit:Hz][style:knob] [midi:ctrl 17]", 100, 100, 10000, 1);
volumeSliderAL = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [2]GainL[style:knob] [midi:ctrl 18]", 1.0, 0, 1, 0.01);
volumeSliderAR = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [3]GainR[style:knob] [midi:ctrl 19]", 1.0, 0, 1, 0.01);
dry_wetB = vslider("h:/h:[2]Mixer/v:[3]Beta/ [0]Reverb[style:knob] [midi:ctrl 20]", 0.0, 0, 1, 0.001);
filter_cuttoffB = vslider("h:/h:[2]Mixer/v:[3]Beta/ [1]HPF[unit:Hz][style:knob] [midi:ctrl 21]", 100, 100, 10000, 1);
volumeSliderBL = vslider("h:/h:[2]Mixer/v:[3]Beta/ [2]GainL[style:knob] [midi:ctrl 22]", 1.0, 0, 1, 0.01);
volumeSliderBR = vslider("h:/h:[2]Mixer/v:[3]Beta/ [3]GainR[style:knob] [midi:ctrl 23]", 1.0, 0, 1, 0.01);
// CODE //
SR = 44100; // samplerate in samples per second
MAXN = 10; // maximum numbers of grains
Volume = volumeSlider; // volume slider
bufferSize = 2 * SR; // size of input buffer in samples
bufferCounter = + (1) % delayLength ~ _; // counter to cycle through the input buffer from 0 to bufferSize
delayLength = SR * delayLengthSlider; // set delay length with delay length slider
grainbufferSize = SR * grainbufferSizeSlider; // size of grainbuffer in samples
grainbufferCounterA = + (pitchSliderA) % grainbufferSize ~ _; // counter to cycle through the grains from 0 to grainSize
grainbufferCounterB = + (pitchSliderB) % grainbufferSize ~ _; // counter to cycle through the grains from 0 to grainSize
SH(trigger, signal) = ( * (1 - trigger) + signal * trigger) ~ _; // sample and hold function definiton for grain offset
grainOffset(i) = int(SH(1 - 1', int(delayLength * noise(i)))); // delay length between grainbuffer refresh
grainCounterA(i) = (grainbufferCounterA + grainOffset(i)) % grainbufferSize; // grain-specific grain counter (Alpha)
grainCounterB(i) = (grainbufferCounterB + grainOffset(i)) % grainbufferSize; // grain-specific grain counter (Beta)
grainRandomStartPosA(i) = int(SH(int(grainCounterA(i) / (grainbufferSize - 1)), int(delayLength * noise(i))));
grainRandomStartPosB(i) = int(SH(int(grainCounterB(i) / (grainbufferSize - 1)), int(delayLength * noise(i))));
grainPositionA(i) = grainCounterA(i) + grainRandomStartPosA(i);
grainPositionB(i) = grainCounterB(i) + grainRandomStartPosB(i);
buffer(writeIndex, readIndex, signal) = rwtable(bufferSize, 0.0, int(writeIndex % delayLength), signal, int(readIndex % delayLength)); // function definition of cycling buffer
// alpha windows
window1A(i) = sin(2 * 3.14159 * grainCounterA(i) / (grainbufferSize - 1)); // sine
window2A(i) = 0.54 - 0.64 * cos(2 * 3.14159 * grainCounterA(i) / grainbufferSize - 1); // hamming
window3A(i) = 1 - 1.93 * cos(2 * 3.14159 * grainCounterA(i) / grainbufferSize - 1) + 1.29 * cos(4 * 3.14159 * grainCounterA(i) / grainbufferSize - 1) - 0.388 * cos(6 * 3.14159 * grainCounterA(i) / grainbufferSize - 1) + 0.028 * cos(8 * 3.14159 * grainCounterA(i) / grainbufferSize - 1); // flat top
// beta windows
window1B(i) = sin(2 * 3.14159 * grainCounterB(i) / (grainbufferSize - 1)); //sine
window2B(i) = 0.54 - 0.64 * cos(2 * 3.14159 * grainCounterB(i) / grainbufferSize - 1); // hamming
window3B(i) = 1 - 1.93 * cos(2 * 3.14159 * grainCounterB(i) / grainbufferSize - 1) + 1.29 * cos(4 * 3.14159 * grainCounterB(i) / grainbufferSize - 1) - 0.388 * cos(6 * 3.14159 * grainCounterB(i) / grainbufferSize - 1) + 0.028 * cos(8 * 3.14159 * grainCounterB(i) / grainbufferSize - 1); // flat top
// NOISE GENERATOR //
RANDMAX = (2147483647.0) * 2 ; // max number of random number generatorn
polyRandom(n) = scramble(n) ~ _
with {
scramble (1) = * (1103515245) : + (12345); // pseudo random number generator
scramble (n) = scramble(1) <: scramble(n - 1), _;
};
polyNoise(n) = polyRandom(n) : par(i, n, /(RANDMAX));
noiseChan(n, 0) = polyNoise(MAXN + 1) :> _, par(j, n - 1, !);
noiseChan(n, i) = polyNoise(MAXN + 1) :> par(j, i, !), _, par(j, n - i - 1, !);
noise(i) = (noiseChan(MAXN + 1, i) + 1) / 2 * positionspreadSlider; //to get nth channel of multi-channel noiser (not quite sure how)
// EFFECTS //
reverbA = ( * (dry_wetA) * fixedgain:re.mono_freeverb(fb1, fb2, damp, spread)), * (1 - dry_wetA)
with {
fb1 = 0.5; // coefficient of the lowpass comb filters (0-1)
fb2 = 0.5; // coefficient of the allpass comb filters (0-1)
damp = 0.5; // damping of the lowpass comb filter (0-1)
spread = 1; //spatial spread in number of samples (for stereo)
fixedgain = 0.1;
}; // mono with dry/wet implementation
hpf_filterA = (fi.highpass(filter_order, filter_cuttoffA))
with {
filter_order = 1;
};
reverbB = ( * (dry_wetB) * fixedgain:re.mono_freeverb(fb1, fb2, damp, spread)), * (1 - dry_wetB)
with {
fb1 = 0.5; // coefficient of the lowpass comb filters (0-1)
fb2 = 0.5; // coefficient of the allpass comb filters (0-1)
damp = 0.5; // damping of the lowpass comb filter (0-1)
spread = 1; //spatial spread in number of samples (for stereo)
fixedgain = 0.1;
}; // mono with dry/wet implementation
hpf_filterB = (fi.highpass(filter_order, filter_cuttoffB))
with {
filter_order = 1;
};
// GRANULATORS //
granAlpha = par(i, MAXN, buffer(int(bufferCounter), int(grainPositionA(i)), _) * (select3(windowSliderA,window1A(i),window2A(i),window3A(i))) *
(i < grainAmountSlider) / grainAmountSlider);
granBeta = par(i, MAXN, buffer(int(bufferCounter), int(grainPositionB(i)), _) * (select3(windowSliderB,window1B(i),window2B(i),window3B(i)))*
(i < grainAmountSlider) / grainAmountSlider);
// PROCESS //
process =
_ * Volume <:
((((granAlpha:>_*dry_wetMain<:reverbA:> hpf_filterA * volumeSliderAL),(granBeta:>_*dry_wetMain<:reverbB:> hpf_filterB * volumeSliderBL):>_),_ * (1 - dry_wetMain)):>_)
,
((((granAlpha:>_*dry_wetMain<:reverbA:> hpf_filterA * volumeSliderAR),(granBeta:>_*dry_wetMain<:reverbB:> hpf_filterB * volumeSliderBR):>_),_* (1 - dry_wetMain)):>_)
;
|
https://raw.githubusercontent.com/lukas303/stream-splice/225a75101751838c50ea2da6c8e4c155cc6d5097/stream_splice_v1_0.dsp
|
faust
|
USER INTERFACE //
volume slider
pitch control (downsampling)
pitch control (downsampling)
number of grains
grain size in samples
delay length in samples
position spread of grains
alpha window selector
beta window selector
CODE //
samplerate in samples per second
maximum numbers of grains
volume slider
size of input buffer in samples
counter to cycle through the input buffer from 0 to bufferSize
set delay length with delay length slider
size of grainbuffer in samples
counter to cycle through the grains from 0 to grainSize
counter to cycle through the grains from 0 to grainSize
sample and hold function definiton for grain offset
delay length between grainbuffer refresh
grain-specific grain counter (Alpha)
grain-specific grain counter (Beta)
function definition of cycling buffer
alpha windows
sine
hamming
flat top
beta windows
sine
hamming
flat top
NOISE GENERATOR //
max number of random number generatorn
pseudo random number generator
to get nth channel of multi-channel noiser (not quite sure how)
EFFECTS //
coefficient of the lowpass comb filters (0-1)
coefficient of the allpass comb filters (0-1)
damping of the lowpass comb filter (0-1)
spatial spread in number of samples (for stereo)
mono with dry/wet implementation
coefficient of the lowpass comb filters (0-1)
coefficient of the allpass comb filters (0-1)
damping of the lowpass comb filter (0-1)
spatial spread in number of samples (for stereo)
mono with dry/wet implementation
GRANULATORS //
PROCESS //
|
declare filename "stream-splice";
declare version "1.0";
declare author "Lukas Hartmann & Luca Hilbrich";
declare options "[osc:on]";
declare options "[midi:on]";
import("stdfaust.lib");
dry_wetMain = vslider("h:/h:[0]Main/ [1]Dry/Wet [midi:ctrl 1]", 1.0, 0, 1, 0.001);
windowSliderA = vslider("h:/h:[1]Granulator/v:Grain/h:[1]Window/[1] Alpha [style:menu{'Sine':0;
dry_wetA = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [0]Reverb[style:knob] [midi:ctrl 16]", 0.0, 0, 1, 0.001);
filter_cuttoffA = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [1]HPF[unit:Hz][style:knob] [midi:ctrl 17]", 100, 100, 10000, 1);
volumeSliderAL = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [2]GainL[style:knob] [midi:ctrl 18]", 1.0, 0, 1, 0.01);
volumeSliderAR = vslider("h:/h:[2]Mixer/v:[2]Alpha/ [3]GainR[style:knob] [midi:ctrl 19]", 1.0, 0, 1, 0.01);
dry_wetB = vslider("h:/h:[2]Mixer/v:[3]Beta/ [0]Reverb[style:knob] [midi:ctrl 20]", 0.0, 0, 1, 0.001);
filter_cuttoffB = vslider("h:/h:[2]Mixer/v:[3]Beta/ [1]HPF[unit:Hz][style:knob] [midi:ctrl 21]", 100, 100, 10000, 1);
volumeSliderBL = vslider("h:/h:[2]Mixer/v:[3]Beta/ [2]GainL[style:knob] [midi:ctrl 22]", 1.0, 0, 1, 0.01);
volumeSliderBR = vslider("h:/h:[2]Mixer/v:[3]Beta/ [3]GainR[style:knob] [midi:ctrl 23]", 1.0, 0, 1, 0.01);
grainRandomStartPosA(i) = int(SH(int(grainCounterA(i) / (grainbufferSize - 1)), int(delayLength * noise(i))));
grainRandomStartPosB(i) = int(SH(int(grainCounterB(i) / (grainbufferSize - 1)), int(delayLength * noise(i))));
grainPositionA(i) = grainCounterA(i) + grainRandomStartPosA(i);
grainPositionB(i) = grainCounterB(i) + grainRandomStartPosB(i);
polyRandom(n) = scramble(n) ~ _
with {
scramble (n) = scramble(1) <: scramble(n - 1), _;
};
polyNoise(n) = polyRandom(n) : par(i, n, /(RANDMAX));
noiseChan(n, 0) = polyNoise(MAXN + 1) :> _, par(j, n - 1, !);
noiseChan(n, i) = polyNoise(MAXN + 1) :> par(j, i, !), _, par(j, n - i - 1, !);
reverbA = ( * (dry_wetA) * fixedgain:re.mono_freeverb(fb1, fb2, damp, spread)), * (1 - dry_wetA)
with {
fixedgain = 0.1;
hpf_filterA = (fi.highpass(filter_order, filter_cuttoffA))
with {
filter_order = 1;
};
reverbB = ( * (dry_wetB) * fixedgain:re.mono_freeverb(fb1, fb2, damp, spread)), * (1 - dry_wetB)
with {
fixedgain = 0.1;
hpf_filterB = (fi.highpass(filter_order, filter_cuttoffB))
with {
filter_order = 1;
};
granAlpha = par(i, MAXN, buffer(int(bufferCounter), int(grainPositionA(i)), _) * (select3(windowSliderA,window1A(i),window2A(i),window3A(i))) *
(i < grainAmountSlider) / grainAmountSlider);
granBeta = par(i, MAXN, buffer(int(bufferCounter), int(grainPositionB(i)), _) * (select3(windowSliderB,window1B(i),window2B(i),window3B(i)))*
(i < grainAmountSlider) / grainAmountSlider);
process =
_ * Volume <:
((((granAlpha:>_*dry_wetMain<:reverbA:> hpf_filterA * volumeSliderAL),(granBeta:>_*dry_wetMain<:reverbB:> hpf_filterB * volumeSliderBL):>_),_ * (1 - dry_wetMain)):>_)
,
((((granAlpha:>_*dry_wetMain<:reverbA:> hpf_filterA * volumeSliderAR),(granBeta:>_*dry_wetMain<:reverbB:> hpf_filterB * volumeSliderBR):>_),_* (1 - dry_wetMain)):>_)
;
|
6921b201907407881295c1adec8f4a76bb6279b5e85522764fadbe728fa15249
|
antisvin/MyPatches
|
Samples.dsp
|
import("stdfaust.lib");
// Simple syntax for loading a single file
//wav1 = soundfile("test[url:test.wav]",2);
// Full syntax for multiple files
//wav1 = soundfile("test[url:{'test1.wav';'test2.wav'}]",2);
// We support both!
wav1 = soundfile("Percussion[url:{'KICK.wav';'HAT.wav'}]", 1);
// Percussion samples from KastleDrum are LoFi beyond ridiculous
kick_sound = so.sound(wav1, 0);
hat_sound = so.sound(wav1, 1);
// Wavetable is made in WaveEdit, uses reasonable bitdepth/SR
// #_64 is a special syntax that forces splitting - which we don't support yet
//wav2 = soundfile("Wavetable[url:WT.wav#_64]", 1);
//sample_sound = so.sound(wav2, 0);
// We can files in different formats in a single soundfile, because FAUST would transcode
// everything to floats. But only one part of soundfile can be played at any point of
// time. We don't want WT playback to interfere with percussion, so separate soundfiles
// must be used.
notes = (36, 40, 43, 47, 48, 47, 43, 40);
notes_per_bar = 4;
total_notes = 8;
base_freq = 440.0;
gain = 0.4;
gate_len = 0.1; // In seconds
process = kick , hat :> _, _
with {
// Tempo
tempo = hslider("BPM[OWL:A]", 120, 60, 180, 0.1);
wt_x = hslider("WaveX[OWL:B]", 0, 0, 8, 0.001);
wt_y = hslider("WaveY[OWL:C]", 0, 0, 8, 0.001);
bar = tempo : ba.tempo : *(notes_per_bar);
//Phase is the place!
phase_out = hbargraph("Phase>[OWL:F]", 0, 1);
phasor = (_ + 1.0 / bar : wrap) ~ _;
wrap = fmod(_, 1.0);
trig = (1.0 - _) <: _ > mem;
//mkgate(t) = (t * gate_len) ~ * ba.pulse_countdown_loop(gate_len) > 0.01;
mkgate = en.ar(gate_len / 2, gate_len / 2, _) > 0;
// Convert bar phase to triggers
// Kick is triggered on first beat (1)
kick_out = hbargraph("Kick>[OWL:AA]", 0, 1);
kick_trig = phasor : trig <: attach(_, mkgate : kick_out);
// Hat is triggered on even beats (2, 4, 6, 8)
hat_out = hbargraph("Hat>[OWL:AB]", 0, 1);
hat_trig = phasor : *(4) : +(0.125) : wrap : trig <: attach(_, mkgate : hat_out);
// Percussion samples playback
kick = kick_sound.play(gain, kick_trig) <: _, _;
hat = hat_sound.play(gain, hat_trig) : sp.panner(0.8);
};
|
https://raw.githubusercontent.com/antisvin/MyPatches/89a3df2464b68d4996d9b159ff105e8c9fc9f762/Faust/Samples/Samples.dsp
|
faust
|
Simple syntax for loading a single file
wav1 = soundfile("test[url:test.wav]",2);
Full syntax for multiple files
wav1 = soundfile("test[url:{'test1.wav';'test2.wav'}]",2);
We support both!
Percussion samples from KastleDrum are LoFi beyond ridiculous
Wavetable is made in WaveEdit, uses reasonable bitdepth/SR
#_64 is a special syntax that forces splitting - which we don't support yet
wav2 = soundfile("Wavetable[url:WT.wav#_64]", 1);
sample_sound = so.sound(wav2, 0);
We can files in different formats in a single soundfile, because FAUST would transcode
everything to floats. But only one part of soundfile can be played at any point of
time. We don't want WT playback to interfere with percussion, so separate soundfiles
must be used.
In seconds
Tempo
Phase is the place!
mkgate(t) = (t * gate_len) ~ * ba.pulse_countdown_loop(gate_len) > 0.01;
Convert bar phase to triggers
Kick is triggered on first beat (1)
Hat is triggered on even beats (2, 4, 6, 8)
Percussion samples playback
|
import("stdfaust.lib");
wav1 = soundfile("Percussion[url:{'KICK.wav';'HAT.wav'}]", 1);
kick_sound = so.sound(wav1, 0);
hat_sound = so.sound(wav1, 1);
notes = (36, 40, 43, 47, 48, 47, 43, 40);
notes_per_bar = 4;
total_notes = 8;
base_freq = 440.0;
gain = 0.4;
process = kick , hat :> _, _
with {
tempo = hslider("BPM[OWL:A]", 120, 60, 180, 0.1);
wt_x = hslider("WaveX[OWL:B]", 0, 0, 8, 0.001);
wt_y = hslider("WaveY[OWL:C]", 0, 0, 8, 0.001);
bar = tempo : ba.tempo : *(notes_per_bar);
phase_out = hbargraph("Phase>[OWL:F]", 0, 1);
phasor = (_ + 1.0 / bar : wrap) ~ _;
wrap = fmod(_, 1.0);
trig = (1.0 - _) <: _ > mem;
mkgate = en.ar(gate_len / 2, gate_len / 2, _) > 0;
kick_out = hbargraph("Kick>[OWL:AA]", 0, 1);
kick_trig = phasor : trig <: attach(_, mkgate : kick_out);
hat_out = hbargraph("Hat>[OWL:AB]", 0, 1);
hat_trig = phasor : *(4) : +(0.125) : wrap : trig <: attach(_, mkgate : hat_out);
kick = kick_sound.play(gain, kick_trig) <: _, _;
hat = hat_sound.play(gain, hat_trig) : sp.panner(0.8);
};
|
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