memlnaut-nisps/modes/MEMLNautModeElysiamorfs.hpp

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2026-03-07 16:14:39 +01:00
#ifndef MEMLNAUT_MODE_ELYSIAMORFS_HPP
#define MEMLNAUT_MODE_ELYSIAMORFS_HPP
//Elysiamorfs
#include "../src/memllib/interface/MIDIInOut.hpp"
#include "../src/memllib/hardware/memlnaut/MEMLNaut.hpp"
#include "./AudioApps/ElysiamorfAudioApp.hpp"
#include "../src/memllib/examples/InterfaceRL.hpp"
#include "../src/memllib/PicoDefs.hpp"
#include "MEMLNautMode.hpp"
#include <memory>
#include <array>
#include "../src/memllib/interface/USeqI2C.hpp"
class MEMLNautModeElysiamorfs {
public:
constexpr static size_t kN_InputParams = 4; // joystick x, y, rotate
USeqI2C i2cOut;
inline static ElysiamorfAudioApp<> audioAppElysiamorfs;
std::array<String, ElysiamorfAudioApp<>::nVoiceSpaces> voiceSpaceList;
InterfaceRL interface;
std::shared_ptr<InterfaceRL> interfacePtr;
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ElysiamorfAudioApp<>::SequencerClockModes clockMode = ElysiamorfAudioApp<>::INTERNAL;
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bool sequencerPlaying = false;
void setupInterface() {
interface.setup(kN_InputParams, ElysiamorfAudioApp<>::kN_Params);
interface.bindInterface(InterfaceRL::INPUT_MODES::JOYSTICK, true);
interfacePtr = make_non_owning(interface);
MEMLNaut::Instance()->setTogA2Callback([this](bool state) { // scr_ref no longer captured directly
Serial.println(state ? "TogA2 ON" : "TogA2 OFF");
if (state) {
sequencerPlaying = !sequencerPlaying;
queue_try_add(&audioAppElysiamorfs.sequencerControlQueue, &sequencerPlaying);
}
});
i2cOut.begin();
}
String getHelpTitle() {
return "Elysiamorfs";
}
__force_inline stereosample_t process(stereosample_t x) {
return audioAppElysiamorfs.Process(x);
}
void setupAudio(float sample_rate) {
audioAppElysiamorfs.Setup(sample_rate, interfacePtr, clockMode);
voiceSpaceList = audioAppElysiamorfs.getVoiceSpaceNames();
audioAppElysiamorfs.setupMIDI(midi_interf);
MEMLNaut::Instance()->setRVGain1Callback([this](float value) {
if (clockMode == ElysiamorfAudioApp<>::INTERNAL) {
float bpm = 30.f + (value * 200.f); // Scale BPM from [0,1] to [30,230]
queue_try_add(&audioAppElysiamorfs.bpmQueue, &bpm);
}
}, 0); // Set threshold to 0 to trigger on any change
}
__force_inline void loop() {
audioAppElysiamorfs.loop();
}
std::shared_ptr<MIDIInOut> midi_interf;
void setupMIDI(std::shared_ptr<MIDIInOut> new_midi_interf) {
midi_interf = new_midi_interf;
midi_interf->Setup(0);
// midi_interf->SetMIDISendChannel(1);
// midi_interf->SetMIDINoteChannel(10);
midi_interf->SetNoteCallback([this](bool noteon, uint8_t note_number, uint8_t vel_value) {
// Serial.printf("MIDI Note %d: %d %d\n", note_number, vel_value, noteon);
if (note_number==0) {
int resetTrigger=1;
queue_try_add(&audioAppElysiamorfs.barPhaseResetQueue, &resetTrigger); // value doesn't matter, just a trigger
Serial.println("Bar phase reset triggered by MIDI note 0");
}
});
midi_interf->SetBPMCallback([this](float bpm) {
if (clockMode == ElysiamorfAudioApp<>::MIDI_CLOCK) {
queue_try_add(&audioAppElysiamorfs.bpmQueue, &bpm);
}
});
interface.bindMIDI(midi_interf);
}
void addViews() {
};
inline void processAnalysisParams() {}
void analyse(stereosample_t) {}
float i2cValues[8];
void loopCore0() {
// PERIODIC_RUN_US(
// if (queue_try_remove(&audioAppElysiamorfs.i2cOutQueue, &i2cValues)) {
// // Serial.printf("i2c received: %f %f %f %f %f %f %f %f\n", i2cValues[0], i2cValues[1], i2cValues[2], i2cValues[3], i2cValues[4], i2cValues[5], i2cValues[6], i2cValues[7]);
// bool i2cSuccess = i2cOut.sendValues(i2cValues, 8);
// }
// , 5000)
}
};
#endif // MEMLNAUT_MODE_ELYSIAMORFS_HPP