183 lines
6.5 KiB
C++
183 lines
6.5 KiB
C++
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// nisps/engines/elysiamorf.hpp — 8-track FM-pair sequencer emitting MIDI CC.
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//
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// `process()` returns silence; on each tick the engine evaluates 8 FM-pair
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// generators and emits CC events scaled to MIDI 0..127. Voice 0 → CC1, voice
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// 1 → CC2, etc. (firmware mapping: {1,2,3,4,5,9,11,12}).
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//
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// Per-track param layout (5 params each, 40 total): carrier_freq, mod_freq,
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// mod_index, phasor_mul, phase_off. Firmware NPARAMS template defaults to 56
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// but only consumes 40 — `param_notes.md` flags this and we follow consumption.
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#pragma once
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#include <array>
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#include <cmath>
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#include <cstddef>
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#include <cstdint>
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#include <span>
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#include <string_view>
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#include "../core/concepts.hpp"
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#include "../core/perf.hpp"
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#include "../core/types.hpp"
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#include "../dsp/osc.hpp"
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namespace nisps {
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class ElysiamorfEngine {
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public:
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static constexpr std::size_t kNSequences = 8u;
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static constexpr std::size_t kSeqParamsEach = 5u;
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static constexpr std::size_t kNParams = kNSequences * kSeqParamsEach; // = 40
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static constexpr std::size_t kEventBufferSize = 64u;
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static constexpr std::size_t param_count() noexcept { return kNParams; }
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static constexpr std::string_view engine_id() noexcept { return "elysiamorf"; }
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enum class VoiceSpace : std::size_t { None = 0, Count = 0 };
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static constexpr std::size_t kVoiceSpaceCount = 0u;
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static constexpr std::array<std::string_view, 0u> kVoiceSpaceNames = {};
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void set_voice_space(VoiceSpace) noexcept {}
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VoiceSpace voice_space() const noexcept { return VoiceSpace::None; }
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enum class EventKind : std::uint8_t { CC, Clock };
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struct Event {
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EventKind kind;
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std::uint8_t cc_number;
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std::uint8_t cc_value;
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std::uint8_t pad;
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};
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void setup(float sample_rate) noexcept {
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sample_rate_ = sample_rate;
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bar_phasor_ = 0.f;
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midi_clock_phasor_ = 0.f;
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sequencing_sample_counter_ = 0u;
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update_bpm(90.f);
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for (auto& t : tracks_) {
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t.carrier_freq = 1.f;
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t.mod_freq = 2.f;
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t.mod_index = 0.f;
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t.phasor_mul = 1.f;
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t.phase_off = 0.f;
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t.carrier.reset();
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t.modulator.reset();
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}
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}
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void set_params(std::span<const float> params) noexcept {
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if (params.size() < kNParams) return;
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std::size_t i = 0u;
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for (auto& t : tracks_) {
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t.carrier_freq = (0.25f + params[i++] * 0.75f) * 0.125f;
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t.mod_freq = (0.25f + params[i++] * 0.75f) * 0.25f;
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t.mod_index = params[i++] * 4.f;
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static const float muls[4] = {1.f, 2.f, 3.f, 4.f};
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t.phasor_mul = muls[static_cast<int>(params[i++] * 3.999f) & 3];
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t.phase_off = static_cast<float>(static_cast<int>(params[i++] * 4.f)) * 0.25f;
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}
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}
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NISPS_HOT NISPS_FORCE_INLINE stereosample_t process(stereosample_t /*x*/) noexcept {
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if (!playing_) return {0.f, 0.f};
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midi_clock_phasor_ += midi_clock_phasor_inc_;
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if (midi_clock_phasor_ >= 1.f) {
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midi_clock_phasor_ -= 1.f;
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push_event({EventKind::Clock, 0u, 0u, 0u});
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}
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if (sequencing_sample_counter_ == 0u) {
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bar_phasor_ += bar_phasor_inc_;
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if (bar_phasor_ >= 1.f) bar_phasor_ -= 1.f;
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for (std::size_t i = 0u; i < kNSequences; ++i) {
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auto& t = tracks_[i];
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float seq_phasor = bar_phasor_ * t.phasor_mul;
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seq_phasor = std::fmod(seq_phasor + t.phase_off, 1.f);
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const float mod_out = t.modulator.process(seq_phasor, 0.f, t.mod_freq, 0.f, 0.f);
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const float fm = t.carrier.process(seq_phasor, mod_out, t.carrier_freq, t.mod_index, 0.f);
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// Map [-1, 1] → [0, 127].
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float scaled = (fm + 1.f) * 0.5f * 127.f;
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if (scaled < 0.f) scaled = 0.f;
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if (scaled > 127.f) scaled = 127.f;
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push_event({EventKind::CC, kCCNumbers[i], static_cast<std::uint8_t>(scaled), 0u});
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}
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}
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++sequencing_sample_counter_;
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if (sequencing_sample_counter_ >= kSequencingSampleDiv) sequencing_sample_counter_ = 0u;
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return {0.f, 0.f};
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}
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DriverConfig driver_config() const noexcept { return {}; }
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std::size_t pop_events(std::span<Event> out) noexcept {
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std::size_t n = 0u;
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while (n < out.size() && event_count_ > 0u) {
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out[n++] = events_[event_read_];
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event_read_ = (event_read_ + 1u) % kEventBufferSize;
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--event_count_;
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}
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return n;
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}
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void update_bpm(float bpm) noexcept {
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bpm_ = bpm;
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const float beat_seconds = 60.f / bpm;
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const float bar_seconds = beat_seconds * 4.f;
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const float bar_samples = bar_seconds * (sample_rate_ / static_cast<float>(kSequencingSampleDiv));
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bar_phasor_inc_ = 1.f / bar_samples;
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const float clock_seconds = beat_seconds / 24.f;
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midi_clock_phasor_inc_ = 1.f / (clock_seconds * sample_rate_);
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}
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void set_playing(bool playing) noexcept {
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playing_ = playing;
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if (!playing) {
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bar_phasor_ = 0.f;
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midi_clock_phasor_ = 0.f;
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sequencing_sample_counter_ = 0u;
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}
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}
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private:
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static constexpr std::size_t kSequencingSampleDiv = 500u;
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static constexpr std::uint8_t kCCNumbers[kNSequences] = {1u, 2u, 3u, 4u, 5u, 9u, 11u, 12u};
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struct Track {
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float carrier_freq = 1.f;
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float mod_freq = 2.f;
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float mod_index = 0.f;
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float phasor_mul = 1.f;
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float phase_off = 0.f;
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FMOp carrier;
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FMOp modulator;
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};
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NISPS_FORCE_INLINE void push_event(const Event& e) noexcept {
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if (event_count_ >= kEventBufferSize) return;
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events_[event_write_] = e;
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event_write_ = (event_write_ + 1u) % kEventBufferSize;
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++event_count_;
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}
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float sample_rate_ = 48000.f;
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float bpm_ = 90.f;
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bool playing_ = true;
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std::array<Track, kNSequences> tracks_{};
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float bar_phasor_ = 0.f;
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float bar_phasor_inc_ = 0.f;
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float midi_clock_phasor_ = 0.f;
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float midi_clock_phasor_inc_ = 0.f;
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std::size_t sequencing_sample_counter_ = 0u;
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std::array<Event, kEventBufferSize> events_{};
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std::size_t event_read_ = 0u;
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std::size_t event_write_ = 0u;
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std::size_t event_count_ = 0u;
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};
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static_assert(AudioEngine<ElysiamorfEngine>, "ElysiamorfEngine must satisfy AudioEngine");
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} // namespace nisps
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