pre-switch to different RL

This commit is contained in:
chriskiefer 2025-10-28 12:16:20 +00:00
parent 4159e05f4c
commit 3234a2f884
4 changed files with 274 additions and 205 deletions

View file

@ -113,9 +113,9 @@ void setup() {
uint8_t midimsg[2] = { note_number, vel_value };
queue_try_add(&audio_app->qMIDINoteOff, &midimsg);
}
Serial.printf("MIDI Note %d: %d\n", note_number, vel_value);
// Serial.printf("MIDI Note %d: %d %d\n", note_number, vel_value, noteon);
});
Serial.println("MIDI note callback set.");
// Serial.println("MIDI note callback set.");
interface->bindMIDI(midi_interf);
}
@ -135,7 +135,7 @@ void setup() {
static uint8_t last_note_number = 0;
noteTrigView->SetOnTouchCallback([](float x, float y) {
Serial.printf("Note trigger at: %.2f, %.2f\n", x, y);
// Serial.printf("Note trigger at: %.2f, %.2f\n", x, y);
if (audio_app) {
// If a note is already playing, stop it
if (is_playing_note) {
@ -151,7 +151,7 @@ void setup() {
}
});
noteTrigView->SetOnTouchReleaseCallback([](float x, float y) {
Serial.printf("Note release at: %.2f, %.2f\n", x, y);
// Serial.printf("Note release at: %.2f, %.2f\n", x, y);
if (audio_app) {
uint8_t midimsg[2] = {last_note_number,0};
queue_try_add(&audio_app->qMIDINoteOff, &midimsg);
@ -181,13 +181,15 @@ void setup() {
PERF_DECLARE(MLSTATS);
#define ML_INFERENCE_PERIOD_US 5000
void loop() {
PERIODIC_RUN_US(
PERF_BEGIN(MLSTATS);
MEMLNaut::Instance()->loop();
PERF_END(MLSTATS);
, 5000)
, ML_INFERENCE_PERIOD_US)
PERIODIC_RUN_US(
static size_t blip_counter=0;
@ -204,9 +206,8 @@ void loop() {
}
, 100000)
PERIODIC_RUN_US(
midi_interf->Poll();
, 10000)
}
@ -272,9 +273,22 @@ void setup1() {
Serial.println("Finished initialising core 1.");
}
void loop1() {
// Audio app parameter processing loop
audio_app->loop();
delay(1);
PERIODIC_RUN_US(
audio_app->loop();
, ML_INFERENCE_PERIOD_US)
PERIODIC_RUN_US(
midi_interf->Poll();
, 10000)
#if 1 //test ARP
PERIODIC_RUN_US(
static size_t arpCount=0;
static size_t noteIndex=30;
, 100000)
#endif
}

View file

@ -9,97 +9,17 @@
#include <memory> // Added for std::shared_ptr
#include "src/memllib/synth/maxiPAF.hpp"
#include "src/memllib/synth/ADSRLite.hpp"
#include "src/memllib/interface/InterfaceBase.hpp" // Added missing include
#include <span>
// #define ARPEGGIATOR
class ADSRLite {
public:
enum envStage{WAITTOTRIG, ATTACK, DECAY, SUSTAIN, RELEASE};
void setup(float attackTimeMs, float decayTimeMs, float newSustainLevel, float releaseTimeMs) {
attackIncFull = 1.f/((attackTimeMs / 1000.f) * kSampleRate);
attackInc = attackIncFull;
decayInc = 1.f/((decayTimeMs / 1000.f) * kSampleRate);
sustainLevel = newSustainLevel;
decayInc *= (1.f - sustainLevel);
releaseMs = releaseTimeMs;
}
float play() {
switch(stage) {
case envStage::WAITTOTRIG:
{
envelopeValue = 0.f;
break;
}
case envStage::ATTACK:
{
envelopeValue += attackInc;
if (envelopeValue >= 1.f) {
stage = envStage::DECAY;
Serial.printf("decay %f\n", envelopeValue);
}
break;
}
case envStage::DECAY:
{
envelopeValue -= decayInc;
if (envelopeValue<=sustainLevel) {
stage = envStage::SUSTAIN;
Serial.printf("sus %f\n", envelopeValue);
}
break;
}
case envStage::SUSTAIN:
{
// envelopeValue = sustainLevel;
break;
}
case envStage::RELEASE:
{
envelopeValue -= relInc;
if (envelopeValue <= 0.f) {
stage = envStage::WAITTOTRIG;
Serial.println("wait");
envelopeValue=0.f;
}
break;
}
}
return envelopeValue * velocity;
}
void reset() {
stage = envStage::WAITTOTRIG;
envelopeValue=0;
}
void trigger(float vel) {
stage = envStage::ATTACK;
attackInc = attackIncFull * (1.f - envelopeValue);
velocity = vel;
}
void release() {
relInc = 1.f/((releaseMs / 1000.f) * kSampleRate);
relInc *= envelopeValue;
stage = envStage::RELEASE;
}
private:
envStage stage = envStage::WAITTOTRIG;
float attackInc=0, attackIncFull=0, decayInc=0, sustainLevel=0,relInc=0, releaseMs;
float envelopeValue=0;
float velocity = 1.f;
};
template<size_t NPARAMS=33>
// template<size_t NPARAMS=33>
template<size_t NPARAMS=1>
class PAFSynthAudioApp : public AudioAppBase<NPARAMS>
{
public:
@ -119,102 +39,226 @@ public:
VoiceSpaceFn currentVoiceSpace;
PAFSynthAudioApp() : AudioAppBase<NPARAMS>() {
#if 0
auto voiceSpace1 = [this](const std::array<float, NPARAMS>& params) {
p0Gain=1.f;
p1Gain=1.f;
p2Gain=0.f;
p3Gain=0.f;
detune1 = 2.0f;
detune2 = 1.0f;
detune3 = 1.0f;
paf0_cf = (params[2] * 1.f);
paf1_cf = (params[3] * 1.f);
// paf2_cf = (params[4] * params[4] * 1.f);
// paf3_cf = (params[21] * params[21] * 1.f);
paf0_bw = 10.f + (params[5] * 200.f);
paf1_bw = 10.f + (params[6] * 200.f);
// paf2_bw = 0.1f + (params[7] * 2.f);
// paf3_bw = 0.1f + (params[22] * 2.f);
paf0_vib = params[8] * params[8] * 0.05f;
paf1_vib = (params[9] * params[9] * 0.05f);
// paf2_vib = (params[10] * params[10] * 0.99f);
// paf3_vib = (params[23] * params[23] * 0.99f);
paf0_vfr = (params[11] * params[11]* 5.0f);
paf1_vfr = (params[12] * params[12] * 5.f);
// paf2_vfr = (params[13] * params[13] * 10.f);
// paf3_vfr = (params[24] * params[24] * 10.f);
paf0_shift = -50.f + (params[14] * 100.f);
paf1_shift = -50.f + (params[15] * 100.f);
// paf2_shift = (params[16] * 1000.f);
// paf3_shift = (params[25] * 1000.f);
dl1mix = params[17] * params[17] * 0.8f;
// dl2mix = params[18] * params[18] * 0.4f;
// detune = 1.0f + (params[18] * 0.1);
// euclidN = static_cast<size_t>(2 + (params[19] * 5));
dlfb = params[19] * 0.9f;
env.setup(params[30] * 200.f,params[20] * params[20] * 500.f,0.01 + (params[31] * 0.5f), params[32] * 500.f, sampleRatef );
sineShapeGain = params[26] * params[26];
sineShapeASym = params[27] * params[27] * 0.1f;
sineShapeMix = params[28];
rmGain = params[29] * params[29];
feedbackGain = 0.0f;
delayMax=1000;
fbSmoothAlpha=0.f;
};
auto voiceSpace2 = [this](const std::array<float, NPARAMS>& params) {
p0Gain=1.f;
p1Gain=1.f;
p2Gain=1.f;
p3Gain=1.f;
detune1 = 2.0f;
detune2 = 0.5f;
detune3 = 1.0f;
paf0_cf = (params[2] * 1.f);
paf1_cf = (params[3] * 1.f);
paf2_cf = (params[4] * 1.f);
paf3_cf = (params[21] * 1.f);
paf0_bw = 10.f + (params[5] * 400.f);
paf1_bw = 10.f + (params[6] * 300.f);
paf2_bw = 10.f + (params[7] * 200.f);
paf3_bw = 10.f + (params[22] * 100.f);
paf0_vib = params[8] * params[8] * 0.1f;
paf1_vib = (params[9] * params[9] * 0.05f);
paf2_vib = (params[10] * params[10] * 0.05);
paf3_vib = (params[23] * params[23] * 0.05f);
paf0_vfr = (params[11] * params[11]* 5.0f);
paf1_vfr = (params[12] * params[12] * 5.f);
paf2_vfr = (params[13] * params[13] * 10.f);
paf3_vfr = (params[24] * params[24] * 10.f);
paf0_shift = -50.f + (params[14] * 200.f);
paf1_shift = -50.f + (params[15] * 200.f);
paf2_shift = -50.f + (params[16] * 300.f);
paf3_shift = -50.f + (params[25] * 400.f);
dl1mix = params[17] * params[17] * 0.3f;
// euclidN = static_cast<size_t>(2 + (params[19] * 5));
dlfb = params[19] * 0.95f;
env.setup(params[30] * 200.f,params[20] * params[20] * 500.f,0.01 + (params[31] * 0.5f), params[32] * 500.f, sampleRatef );
sineShapeGain = params[26] * params[26];
sineShapeASym = params[27] * params[27] * 0.2f;
sineShapeMix = params[28];
rmGain = params[29] * params[29];
feedbackGain = 0.01f;
delayMax=3000;
fbSmoothAlpha=0.94f;
};
auto voiceSpacePerc = [this](const std::array<float, NPARAMS>& params) {
p0Gain=1.f;
p1Gain=1.f;
p2Gain=1.f;
p3Gain=1.f;
detune1 = 1.0f;
detune2 = 1.1f;
detune3 = 1.2f;
paf0_cf = (params[2] * 2.f);
paf1_cf = (params[3] * 2.f);
paf2_cf = (params[4] * 2.f);
paf3_cf = (params[21] * 2.f);
paf0_bw = 10.f + (params[5] * 400.f);
paf1_bw = 10.f + (params[6] * 50.f);
paf2_bw = 10.f + (params[7] * 50.f);
paf3_bw = 10.f + (params[22] * 100.f);
paf0_vib = params[8] * params[8] * 0.01f;
paf1_vib = (params[9] * params[9] * 0.01f);
paf2_vib = (params[10] * params[10] * 0.01);
paf3_vib = (params[23] * params[23] * 0.01f);
paf0_vfr = (params[11] * params[11]* 15.0f);
paf1_vfr = (params[12] * params[12] * 15.f);
paf2_vfr = (params[13] * params[13] * 15.f);
paf3_vfr = (params[24] * params[24] * 15.f);
paf0_shift = -500.f + (params[14] * 500.f);
paf1_shift = -300.f + (params[15] * 300.f);
paf2_shift = -300.f + (params[16] * 300.f);
paf3_shift = -300.f + (params[25] * 300.f);
dl1mix = params[17] * params[17] * 0.5f;
// euclidN = static_cast<size_t>(2 + (params[19] * 5));
dlfb = params[19] * 0.95f;
env.setup(params[30] * 1.f,params[20] * params[20] * 100.f,0.01 + (params[31] * 0.1f), params[32] * params[32] * 300.f, sampleRatef );
sineShapeGain = params[26];
sineShapeASym = params[27]* 0.5f;
sineShapeMix = params[28];
rmGain = params[29];
feedbackGain = 0.1f;
delayMax=178;
fbSmoothAlpha=0.5f;
};
voiceSpaces[0] = {"default", voiceSpace1};
voiceSpaces[1] = {"bright", voiceSpace2};
voiceSpaces[2] = {"perc", voiceSpacePerc};
currentVoiceSpace = voiceSpaces[2].mappingFunction;
#endif
auto voiceSpaceTest = [this](const std::array<float, NPARAMS>& params) {
p0Gain=1.f;
p1Gain=0.f;
p2Gain=0.f;
p3Gain=0.f;
detune1 = 1.0f;
detune2 = 1.1f;
detune3 = 1.2f;
paf0_cf = (params[2] * params[2] * 0.1f);
paf1_cf = (params[3] * params[3] * 1.f);
paf2_cf = (params[4] * params[4] * 1.f);
paf3_cf = (params[21] * params[21] * 1.f);
paf0_cf = (params[0] * 2.f);
paf0_bw = 10.f + (params[0] * 400.f);
// paf1_bw = 10.f + (params[6] * 50.f);
// paf2_bw = 10.f + (params[7] * 50.f);
// paf3_bw = 10.f + (params[22] * 100.f);
paf0_bw = 0.1f + (params[5] * 0.2f);
paf1_bw = 0.1f + (params[6] * 2.f);
paf2_bw = 0.1f + (params[7] * 2.f);
paf3_bw = 0.1f + (params[22] * 2.f);
paf0_vib = 0.f;
// paf1_vib = (params[9] * params[9] * 0.01f);
// paf2_vib = (params[10] * params[10] * 0.01);
// paf3_vib = (params[23] * params[23] * 0.01f);
paf0_vib = (params[8] * params[8] * 0.1f);
paf1_vib = (params[9] * params[9] * 0.99f);
paf2_vib = (params[10] * params[10] * 0.99f);
paf3_vib = (params[23] * params[23] * 0.99f);
paf0_vfr = 0.f;
// paf1_vfr = (params[12] * params[12] * 15.f);
// paf2_vfr = (params[13] * params[13] * 15.f);
// paf3_vfr = (params[24] * params[24] * 15.f);
paf0_vfr = (params[11] * params[11]* 0.1f);
paf1_vfr = (params[12] * params[12] * 10.f);
paf2_vfr = (params[13] * params[13] * 10.f);
paf3_vfr = (params[24] * params[24] * 10.f);
paf0_shift = -500.f + (params[0] * 500.f);
// paf1_shift = -300.f + (params[15] * 300.f);
// paf2_shift = -300.f + (params[16] * 300.f);
// paf3_shift = -300.f + (params[25] * 300.f);
paf0_shift = (params[14] * 10.f);
paf1_shift = (params[15] * 1000.f);
paf2_shift = (params[16] * 1000.f);
paf3_shift = (params[25] * 1000.f);
dl1mix = params[17] * params[17] * 0.4f;
// dl2mix = params[18] * params[18] * 0.4f;
detune = 1.0f + (params[18] * 0.1);
dl1mix = 0.f;
// euclidN = static_cast<size_t>(2 + (params[19] * 5));
dlfb = params[19] * 0.98f;
dlfb = 0.f;
// envdec=((params[20] * 1.f) + 0.01f)/9000.f; // Decay rate for the envelope
env.setup(params[30] * 200.f,params[20] * params[20] * 500.f, params[31] * 0.5f, params[32] * 500.f );
env.setup(1.f,100.f,0.3f, 200.f, sampleRatef );
sineShapeGain = params[26] * params[26];
sineShapeASym = params[27] * params[27] * 0.1f;
sineShapeMix = params[28];
sineShapeGain = 0.f;
sineShapeASym = 0.f;
sineShapeMix = 0.f;
rmGain = params[29] * params[29];
rmGain = 0.f;
feedbackGain = 0.0f;
delayMax=1000;
fbSmoothAlpha=0.f;
};
auto voiceSpace2 = [this](const std::array<float, NPARAMS>& params) {
paf0_cf = (params[2] * params[2] * 0.1f);
paf1_cf = (params[3] * params[3] * 1.f);
paf2_cf = (params[4] * params[4] * 1.f);
paf3_cf = (params[21] * params[21] * 1.f);
paf0_bw = 0.1f + (params[5] * 2.f);
paf1_bw = 0.1f + (params[6] * 2.f);
paf2_bw = 0.1f + (params[7] * 2.f);
paf3_bw = 0.1f + (params[22] * 2.f);
paf0_vib = (params[8] * params[8] * 10.f);
paf1_vib = (params[9] * params[9] * 0.99f);
paf2_vib = (params[10] * params[10] * 0.99f);
paf3_vib = (params[23] * params[23] * 0.99f);
paf0_vfr = (params[11] * params[11]* 1.0f);
paf1_vfr = (params[12] * params[12] * 10.f);
paf2_vfr = (params[13] * params[13] * 10.f);
paf3_vfr = (params[24] * params[24] * 10.f);
paf0_shift = (params[14] * 1000.f);
paf1_shift = (params[15] * 1000.f);
paf2_shift = (params[16] * 1000.f);
paf3_shift = (params[25] * 1000.f);
dl1mix = params[17] * params[17] * 0.4f;
// dl2mix = params[18] * params[18] * 0.4f;
detune = 1.0f + (params[18] * 0.1);
// euclidN = static_cast<size_t>(2 + (params[19] * 5));
dlfb = params[19] * 0.98f;
// envdec=((params[20] * 1.f) + 0.01f)/9000.f; // Decay rate for the envelope
env.setup(params[30] * 200.f,params[20] * params[20] * 500.f, params[31] * 0.5f, params[32] * 500.f );
sineShapeGain = params[26] * params[26];
sineShapeASym = params[27] * params[27] * 0.1f;
sineShapeMix = params[28];
rmGain = params[29] * params[29];
};
voiceSpaces[0] = {"default", voiceSpace1};
voiceSpaces[1] = {"bright", voiceSpace2};
voiceSpaces[0] = {"test", voiceSpaceTest};
currentVoiceSpace = voiceSpaces[0].mappingFunction;
};
bool __force_inline euclidean(float phase, const size_t n, const size_t k, const size_t offset, const float pulseWidth)
@ -231,45 +275,43 @@ public:
return (idx < k && rem < pulseWidth) ? 1 : 0;
}
// maxiOsc testosc;
stereosample_t __force_inline Process(const stereosample_t x) override
{
float x1[1];
// const float trig = pulse.square(1);
// float p0 = testosc.sinewave(baseFreq);
float fbsmooth = (fbzm1 * fbSmoothAlpha) + (feedback * (1.f-fbSmoothAlpha));
fbzm1 = fbsmooth;
paf0.play(x1, 1, baseFreq, baseFreq + (paf0_cf * baseFreq), paf0_bw * baseFreq, paf0_vib, paf0_vfr, paf0_shift, 0);
float freq0 = baseFreq * (1.f + fbsmooth);
paf0.play(x1, 1, freq0, freq0 + (paf0_cf * freq0), paf0_bw, paf0_vib, paf0_vfr, paf0_shift, 0);
float p0 = *x1 * p0Gain;
const float freq1 = baseFreq * detune;
const float freq1 = freq0 * detune1;
paf1.play(x1, 1, freq1, freq1 + (paf1_cf * freq1), paf1_bw * freq1, paf1_vib, paf1_vfr, paf1_shift, 1);
paf1.play(x1, 1, freq1, freq1 + (paf1_cf * freq1), paf1_bw, paf1_vib, paf1_vfr, paf1_shift, 1);
const float p1 = *x1 * p1Gain;
const float freq2 = freq1 * detune;
const float freq2 = freq1 * detune2;
paf2.play(x1, 1, freq2, freq2 + (paf2_cf * freq2), paf2_bw * freq2, paf2_vib, paf2_vfr, paf2_shift, 1);
paf2.play(x1, 1, freq2, freq2 + (paf2_cf * freq2), paf2_bw, paf2_vib, paf2_vfr, paf2_shift, 1);
const float p2 = *x1 * p2Gain;
const float freq3 = freq2 * detune;
const float freq3 = freq2 * detune3;
paf3.play(x1, 1, freq3, freq3 + (paf3_cf * freq3), paf3_bw * freq3, paf3_vib, paf3_vfr, paf3_shift, 1);
const float p3 = *x1 * p3Gain;
auto shapedSine = [](float phasor, float gain, float asym) -> float {
// This function shapes the sine wave to create a foldback effect
float x = sinf(phasor * TWOPI);
x = sinf(((x * TWOPI) * gain) + asym);
return x;
};
float y = p0 + p1 + p2 + p3;
// float rm = p0 * p1 * p2 * p3;
// y = y + (rm * rmGain);
y = y + (shapedSine(y, sineShapeGain, sineShapeGain) * sineShapeMix);
const float rm = p0 * p1 * p2 * p3;
//
y = y + (rm * rmGain);
float shape = sinf(y * TWOPI);
shape = sinf(((shape * TWOPI) * sineShapeGain) + sineShapeASym);
y = y + (shape * sineShapeMix);
#ifdef ARPEGGIATOR
// const float ph = phasorOsc.phasor(1);
@ -301,17 +343,19 @@ public:
// }
#endif
float envval = env.play();
y = y * envval;
// y = y * envamp* envamp;
// y = y * envval;
#ifndef ARPEGGIATOR
y *= noteVel;
#endif
// #ifndef ARPEGGIATOR
// y *= noteVel;
// #endif
float d1 = (dl1.play(y, 100, dlfb) * dl1mix);
y = tanhf(y);
float d1 = (dl1.play(y, delayMax, dlfb) * dl1mix);
y = y + d1;// + d2;
stereosample_t ret { y, y };
frame++;
feedback = y * feedbackGain;
// frame++;
return ret;
}
@ -319,6 +363,7 @@ public:
{
AudioAppBase<NPARAMS>::Setup(sample_rate, interface);
maxiSettings::sampleRate = sample_rate;
sampleRatef = static_cast<float>(sample_rate);
paf0.init();
@ -336,7 +381,7 @@ public:
arpFreq = frequencies[0];
envamp=1.f;
env.setup(500,500,0.8,1000);
env.setup(500,500,0.8,1000,sampleRatef);
queue_init(&qMIDINoteOn, sizeof(uint8_t)*2, 1);
queue_init(&qMIDINoteOff, sizeof(uint8_t)*2, 1);
@ -353,6 +398,7 @@ public:
if (firstParamsReceived && queue_try_remove(&qMIDINoteOn, &midimsg)) {
// Serial.printf("PAFSynthAudioApp::ProcessParams - Received MIDI Note On: %d, Velocity: %d\n", midimsg[0], midimsg[1]);
baseFreq = mtof(midimsg[0]);
// Serial.printf("PAFSynthAudioApp::loop - Note On: %d, Freq: %.2f Hz, Velocity: %d\n", midimsg[0], baseFreq, midimsg[1]);
noteVel = midimsg[1] / 127.0f; // Normalize velocity to [0, 1]
noteVel = noteVel * noteVel; // Square the velocity for more pronounced effect
newNote = true;
@ -361,7 +407,6 @@ public:
if (firstParamsReceived && queue_try_remove(&qMIDINoteOff, &midimsg)) {
// Serial.printf("PAFSynthAudioApp::ProcessParams - Received MIDI Note On: %d, Velocity: %d\n", midimsg[0], midimsg[1]);
env.release();
Serial.println("release");
}
AudioAppBase<NPARAMS>::loop();
}
@ -381,8 +426,8 @@ protected:
maxiPAFOperator paf2;
maxiPAFOperator paf3;
maxiDelayline<5000> dl1;
maxiDelayline<15100> dl2;
maxiDelayline<10000> dl1;
// maxiDelayline<15100> dl2;
maxiOsc pulse;
@ -390,6 +435,8 @@ protected:
float frame=0;
float feedback=0.f, feedbackGain=0.f;
float p0Gain=1.f, p1Gain = 1.f, p2Gain=1.f, p3Gain=1.f;
float paf0_freq = 100;
@ -440,7 +487,9 @@ protected:
maxiLine line;
float envamp=0.f;
float detune = 1.0;
float detune1 = 1.0;
float detune2 = 1.0;
float detune3 = 1.0;
maxiOsc phasorOsc;
maxiTrigger zxdetect;
@ -454,6 +503,12 @@ protected:
float envdec=0.2f/9000.f; // Decay rate for the envelope
float sampleRatef = maxiSettings::getSampleRate();
float fbzm1=0.f;
size_t delayMax=10;
float fbSmoothAlpha=0.95f;
};

@ -1 +1 @@
Subproject commit 04d150ab22bed88fef91b5a659ebb48b85e03b6b
Subproject commit e207eebb2df4aa065c808404dd1019d520494899

@ -1 +1 @@
Subproject commit bb7dcefccb3248a12af5aad234dc54e9ccc1c2de
Subproject commit 8dc59a6003c932d7d095df2b225e2bc7bcda8179