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129 lines
3.5 KiB
C++
129 lines
3.5 KiB
C++
//
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// OPLL.hpp
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// Clock Signal
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//
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// Created by Thomas Harte on 03/05/2020.
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// Copyright © 2020 Thomas Harte. All rights reserved.
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//
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#pragma once
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#include "Implementation/OPLBase.hpp"
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#include "Implementation/EnvelopeGenerator.hpp"
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#include "Implementation/KeyLevelScaler.hpp"
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#include "Implementation/PhaseGenerator.hpp"
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#include "Implementation/LowFrequencyOscillator.hpp"
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#include "Implementation/WaveformGenerator.hpp"
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#include <atomic>
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namespace Yamaha::OPL {
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class OPLL: public OPLBase<OPLL, false> {
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public:
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/// Creates a new OPLL or VRC7.
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OPLL(Concurrency::AsyncTaskQueue<false> &task_queue, int audio_divider = 1, bool is_vrc7 = false);
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/// As per ::SampleSource; provides audio output.
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template <Outputs::Speaker::Action action>
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void apply_samples(std::size_t number_of_samples, Outputs::Speaker::MonoSample *);
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void set_sample_volume_range(std::int16_t range);
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bool is_zero_level() const { return false; } // TODO.
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// The OPLL is generally 'half' as loud as it's told to be. This won't strictly be true in
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// rhythm mode, but it's correct for melodic output.
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double average_output_peak() const { return 0.5; }
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/// Reads from the OPL.
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uint8_t read(uint16_t address);
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private:
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friend OPLBase<OPLL, false>;
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void write_register(uint8_t address, uint8_t value);
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int audio_divider_ = 0;
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int audio_offset_ = 0;
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std::atomic<int> total_volume_;
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int16_t output_levels_[18];
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void update_all_channels();
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int melodic_output(int channel);
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int bass_drum() const;
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int tom_tom() const;
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int snare_drum() const;
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int cymbal() const;
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int high_hat() const;
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static constexpr int period_precision = 9;
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static constexpr int envelope_precision = 7;
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// Standard melodic phase and envelope generators;
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//
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// These are assigned as:
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//
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// [x], 0 <= x < 9 = carrier for channel x;
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// [x+9] = modulator for channel x.
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//
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PhaseGenerator<period_precision> phase_generators_[18];
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EnvelopeGenerator<envelope_precision, period_precision> envelope_generators_[18];
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KeyLevelScaler<period_precision> key_level_scalers_[18];
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// Dedicated rhythm envelope generators and attenuations.
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EnvelopeGenerator<envelope_precision, period_precision> rhythm_envelope_generators_[6];
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enum RhythmIndices {
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HighHat = 0,
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Cymbal = 1,
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TomTom = 2,
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Snare = 3,
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BassCarrier = 4,
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BassModulator = 5
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};
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// Channel specifications.
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struct Channel {
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int octave = 0;
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int period = 0;
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int instrument = 0;
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int attenuation = 0;
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int modulator_attenuation = 0;
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Waveform carrier_waveform = Waveform::Sine;
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Waveform modulator_waveform = Waveform::Sine;
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int carrier_key_rate_scale_multiplier = 0;
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int modulator_key_rate_scale_multiplier = 0;
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LogSign modulator_output;
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int modulator_feedback = 0;
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bool use_sustain = false;
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} channels_[9];
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// The low-frequency oscillator.
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LowFrequencyOscillator oscillator_;
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bool rhythm_mode_enabled_ = false;
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bool is_vrc7_ = false;
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// Contains the current configuration of the custom instrument.
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uint8_t custom_instrument_[8] = {0, 0, 0, 0, 0, 0, 0, 0};
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// Helpers to push per-channel information.
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/// Pushes the current octave and period to channel @c channel.
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void set_channel_period(int channel);
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/// Installs the appropriate instrument on channel @c channel.
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void install_instrument(int channel);
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/// Sets whether the sustain level is used for channel @c channel based on its current instrument
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/// and the user's selection.
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void set_use_sustain(int channel);
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/// @returns The 8-byte definition of instrument @c instrument.
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const uint8_t *instrument_definition(int instrument, int channel) const;
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};
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}
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