memlnaut-nisps/modes/AudioApps/BreakOrAudioApp.hpp
2026-04-13 16:55:39 +01:00

183 lines
5.3 KiB
C++

#ifndef __BREAKOR_AUDIO_APP_HPP__
#define __BREAKOR_AUDIO_APP_HPP__
#include "../../src/memllib/audio/AudioAppBase.hpp"
#include "../../src/memllib/synth/maximilian.h"
#include "../../src/memllib/interface/MIDIInOut.hpp"
#include <cstddef>
#include <cstdint>
#include <memory>
#include "../../src/memllib/interface/InterfaceBase.hpp"
#include <span>
#include "../../voicespaces/VoiceSpaces.hpp"
#include "RatioSeq.hpp"
#include "RatioSeqEngine.hpp"
template<size_t NPARAMS=56, size_t NSEQUENCES=8>
class BreakOrAudioApp : public AudioAppBase<NPARAMS>
{
public:
static constexpr size_t kN_Params = NPARAMS;
static constexpr size_t nVoiceSpaces=0;
queue_t bpmQueue;
queue_t sequencerControlQueue;
queue_t i2cOutQueue;
queue_t barPhaseResetQueue;
enum SequencerClockModes {
INTERNAL,
MIDI_CLOCK
} sequencerClockMode = INTERNAL;
bool sequencerPlaying = false;
std::shared_ptr<MIDIInOut> midiIO;
RatioSeqEngine<NSEQUENCES> seqEngine;
std::array<VoiceSpace<NPARAMS>, nVoiceSpaces> voiceSpaces;
VoiceSpaceFn<NPARAMS> currentVoiceSpace;
std::array<String, nVoiceSpaces> getVoiceSpaceNames() {
std::array<String, nVoiceSpaces> names;
for(size_t i=0; i < voiceSpaces.size(); i++) {
names[i] = voiceSpaces[i].name;
}
return names;
}
void setVoiceSpace(size_t i) {
if (i < voiceSpaces.size()) {
currentVoiceSpace = voiceSpaces[i].mappingFunction;
}
}
BreakOrAudioApp() : AudioAppBase<NPARAMS>() {
queue_init(&bpmQueue, sizeof(float), 1);
queue_init(&sequencerControlQueue, sizeof(int), 1);
queue_init(&i2cOutQueue, sizeof(float) * 8, 1);
queue_init(&barPhaseResetQueue, sizeof(int), 1);
};
bool __force_inline euclidean(float phase, const size_t n, const size_t k, const size_t offset, const float pulseWidth)
{
const float fi = phase * n;
int i = static_cast<int>(fi);
const float rem = fi - i;
if (i == n)
{
i--;
}
const int idx = ((i + n - offset) * k) % n;
return (idx < k && rem < pulseWidth) ? 1 : 0;
}
stereosample_t __force_inline Process(const stereosample_t x) override
{
if (sequencerPlaying) {
if (sequencerClockMode == INTERNAL){
seqEngine.midiClockPhasor += seqEngine.midiClockPhasorInc;
if (seqEngine.midiClockPhasor >= 1.f) {
seqEngine.midiClockPhasor -= 1.f;
midiIO->queueClock();
midiIO->flushQueue();
}
}
if (sequencerClockMode == MIDI_CLOCK) {
int phasorResetValue=0;
if (queue_try_remove(&barPhaseResetQueue, &phasorResetValue)) {
seqEngine.resetBar();
}
}
if (seqEngine.tick()) {
// Capture trigger state for I2C after tick
for (size_t i = 0; i < NSEQUENCES; i++) {
i2cValues[i] = seqEngine.states[i].lastTrig;
}
midiIO->flushQueue();
queue_try_add(&i2cOutQueue, &i2cValues);
}
}
stereosample_t ret { 0.f,0.f };
return ret;
}
void Setup(float sample_rate, std::shared_ptr<InterfaceBase> interface, SequencerClockModes clockMode)
{
AudioAppBase<NPARAMS>::Setup(sample_rate, interface);
maxiSettings::sampleRate = sample_rate;
sampleRatef = static_cast<float>(sample_rate);
sequencerClockMode = clockMode;
const size_t midiNotes[NSEQUENCES] = {36,37,38,39,40, 42,43,45};
for (size_t i = 0; i < NSEQUENCES; i++) {
seqEngine.states[i].midiNote = midiNotes[i];
}
seqEngine.setup(sample_rate);
seqEngine.updateBPM(90.f);
seqEngine.onNoteOn = [this](size_t seqIdx, int velocity) {
midiIO->queueNoteOn(seqEngine.states[seqIdx].midiNote, velocity);
};
seqEngine.onNoteOff = [this](size_t seqIdx) {
midiIO->queueNoteOff(seqEngine.states[seqIdx].midiNote, 0);
};
}
void setupMIDI(std::shared_ptr<MIDIInOut> new_midi_interf) {
midiIO = new_midi_interf;
}
void loop() override {
AudioAppBase<NPARAMS>::loop();
}
void ProcessParams(const std::array<float, NPARAMS>& params)
{
firstParamsReceived = true;
float newBPM;
if (queue_try_remove(&bpmQueue, &newBPM)) {
seqEngine.updateBPM(newBPM);
}
int sequencerControl;
if (queue_try_remove(&sequencerControlQueue, &sequencerControl)) {
sequencerPlaying = sequencerControl == 1;
seqEngine.setPlaying(sequencerPlaying);
if (!sequencerPlaying) {
midiIO->queueClockStop();
midiIO->flushQueue();
} else {
midiIO->queueClockStart();
midiIO->flushQueue();
}
}
seqEngine.updateParams(params, 0);
}
void setTimeSignature(float beats, float division) {
seqEngine.setTimeSignature(beats, division);
}
protected:
float i2cValues[8] = {0,0,0,0,0,0,0,0};
float sampleRatef;
bool firstParamsReceived = false;
};
#endif // __BREAKOR_AUDIO_APP_HPP__