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CLK/Machines/Electron/SoundGenerator.cpp

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//
// Speaker.cpp
// Clock Signal
//
// Created by Thomas Harte on 03/12/2016.
// Copyright 2016 Thomas Harte. All rights reserved.
//
#include "SoundGenerator.hpp"
#include <cstring>
using namespace Electron;
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SoundGenerator::SoundGenerator(Concurrency::AsyncTaskQueue<false> &audio_queue) :
audio_queue_(audio_queue) {}
void SoundGenerator::set_sample_volume_range(std::int16_t range) {
volume_ = unsigned(range / 2);
}
template <Outputs::Speaker::Action action>
void SoundGenerator::apply_samples(std::size_t number_of_samples, Outputs::Speaker::MonoSample *target) {
if constexpr (action == Outputs::Speaker::Action::Ignore) {
counter_ = (counter_ + number_of_samples) % ((divider_+1) * 2);
return;
}
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if(is_enabled_) {
while(number_of_samples--) {
Outputs::Speaker::apply<action>(*target, Outputs::Speaker::MonoSample((counter_ / (divider_+1)) * volume_));
target++;
counter_ = (counter_ + 1) % ((divider_+1) * 2);
}
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} else {
Outputs::Speaker::fill<action>(target, target + number_of_samples, Outputs::Speaker::MonoSample(0));
}
}
template void SoundGenerator::apply_samples<Outputs::Speaker::Action::Mix>(std::size_t, Outputs::Speaker::MonoSample *);
template void SoundGenerator::apply_samples<Outputs::Speaker::Action::Store>(std::size_t, Outputs::Speaker::MonoSample *);
template void SoundGenerator::apply_samples<Outputs::Speaker::Action::Ignore>(std::size_t, Outputs::Speaker::MonoSample *);
void SoundGenerator::set_divider(uint8_t divider) {
audio_queue_.enqueue([this, divider]() {
divider_ = divider * 32 / clock_rate_divider;
});
}
void SoundGenerator::set_is_enabled(bool is_enabled) {
audio_queue_.enqueue([this, is_enabled]() {
is_enabled_ = is_enabled;
counter_ = 0;
});
}