kopia lustrzana https://github.com/jameshball/osci-render
75 wiersze
2.0 KiB
C++
75 wiersze
2.0 KiB
C++
#include "PitchDetector.h"
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#include "../PluginProcessor.h"
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PitchDetector::PitchDetector(OscirenderAudioProcessor& audioProcessor) : juce::Thread("PitchDetector"), audioProcessor(audioProcessor) {
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startThread();
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}
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PitchDetector::~PitchDetector() {
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{
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juce::CriticalSection::ScopedLockType scope(consumerLock);
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audioProcessor.consumerStop(consumer);
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}
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stopThread(1000);
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}
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void PitchDetector::run() {
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while (!threadShouldExit()) {
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{
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juce::CriticalSection::ScopedLockType scope(consumerLock);
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consumer = audioProcessor.consumerRegister(buffer);
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}
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audioProcessor.consumerRead(consumer);
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// buffer is for 2 channels, so we need to only use one
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for (int i = 0; i < fftSize; i++) {
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fftData[i] = buffer[2 * i];
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}
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forwardFFT.performFrequencyOnlyForwardTransform(fftData.data());
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// get frequency of the peak
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int maxIndex = 0;
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for (int i = 0; i < fftSize / 2; ++i) {
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if (frequencyFromIndex(i) < 20 || frequencyFromIndex(i) > 20000) {
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continue;
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}
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auto current = fftData[i];
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if (current > fftData[maxIndex]) {
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maxIndex = i;
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}
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}
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frequency = frequencyFromIndex(maxIndex);
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triggerAsyncUpdate();
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}
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}
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void PitchDetector::handleAsyncUpdate() {
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juce::SpinLock::ScopedLockType scope(lock);
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for (auto& callback : callbacks) {
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callback(frequency);
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}
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}
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int PitchDetector::addCallback(std::function<void(float)> callback) {
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juce::SpinLock::ScopedLockType scope(lock);
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callbacks.push_back(callback);
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return callbacks.size() - 1;
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}
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void PitchDetector::removeCallback(int index) {
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juce::SpinLock::ScopedLockType scope(lock);
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callbacks.erase(callbacks.begin() + index);
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}
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void PitchDetector::setSampleRate(float sampleRate) {
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this->sampleRate = sampleRate;
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}
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float PitchDetector::frequencyFromIndex(int index) {
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auto binWidth = sampleRate / fftSize;
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return index * binWidth;
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}
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