Files
prism/plugin/Source/PluginProcessor.cpp
T
Boof2015 63ef5ffa0f Merge pull request #10 from Boof2015/VSTs
Add cross platform VSTs
2026-06-03 10:21:21 -04:00

123 lines
4.2 KiB
C++

#include "PluginProcessor.h"
#include "PluginEditor.h"
#include <cstring>
PrismSpectrumProcessor::PrismSpectrumProcessor()
: juce::AudioProcessor(BusesProperties()
.withInput("Input", juce::AudioChannelSet::stereo(), true)
.withOutput("Output", juce::AudioChannelSet::stereo(), true))
{
leftBuffer.assign((size_t) fifo.getTotalSize(), 0.0f);
rightBuffer.assign((size_t) fifo.getTotalSize(), 0.0f);
}
void PrismSpectrumProcessor::prepareToPlay(double sampleRate, int)
{
currentSampleRate.store(sampleRate);
fifo.reset();
}
bool PrismSpectrumProcessor::isBusesLayoutSupported(const BusesLayout& layouts) const
{
const auto& mainOut = layouts.getMainOutputChannelSet();
if (mainOut != juce::AudioChannelSet::mono() && mainOut != juce::AudioChannelSet::stereo())
return false;
// Analyzer passes audio through, so the input layout must match the output.
return mainOut == layouts.getMainInputChannelSet();
}
void PrismSpectrumProcessor::pushStereoToFifo(const float* left, const float* right, int num) noexcept
{
int start1, size1, start2, size2;
fifo.prepareToWrite(num, start1, size1, start2, size2);
if (size1 > 0)
{
std::memcpy(leftBuffer.data() + start1, left, (size_t) size1 * sizeof(float));
std::memcpy(rightBuffer.data() + start1, right, (size_t) size1 * sizeof(float));
}
if (size2 > 0)
{
std::memcpy(leftBuffer.data() + start2, left + size1, (size_t) size2 * sizeof(float));
std::memcpy(rightBuffer.data() + start2, right + size1, (size_t) size2 * sizeof(float));
}
fifo.finishedWrite(size1 + size2);
}
int PrismSpectrumProcessor::drainStereo(float* destLeft, float* destRight, int maxSamples) noexcept
{
const int num = juce::jmin(maxSamples, fifo.getNumReady());
int start1, size1, start2, size2;
fifo.prepareToRead(num, start1, size1, start2, size2);
if (size1 > 0)
{
std::memcpy(destLeft, leftBuffer.data() + start1, (size_t) size1 * sizeof(float));
std::memcpy(destRight, rightBuffer.data() + start1, (size_t) size1 * sizeof(float));
}
if (size2 > 0)
{
std::memcpy(destLeft + size1, leftBuffer.data() + start2, (size_t) size2 * sizeof(float));
std::memcpy(destRight + size1, rightBuffer.data() + start2, (size_t) size2 * sizeof(float));
}
fifo.finishedRead(size1 + size2);
return size1 + size2;
}
void PrismSpectrumProcessor::processBlock(juce::AudioBuffer<float>& buffer, juce::MidiBuffer&)
{
juce::ScopedNoDenormals noDenormals;
const int numSamples = buffer.getNumSamples();
const int numChannels = buffer.getNumChannels();
if (numSamples <= 0 || numChannels <= 0)
return;
const float* left = buffer.getReadPointer(0);
const float* right = numChannels >= 2 ? buffer.getReadPointer(1) : left;
pushStereoToFifo(left, right, numSamples);
// Pure analyzer: the audio buffer is left untouched (pass-through).
}
void PrismSpectrumProcessor::setSettingsJson(const juce::String& json)
{
const juce::ScopedLock sl(settingsLock);
settingsJson = json;
}
juce::String PrismSpectrumProcessor::getSettingsJson() const
{
const juce::ScopedLock sl(settingsLock);
return settingsJson;
}
void PrismSpectrumProcessor::getStateInformation(juce::MemoryBlock& destData)
{
const juce::String json = getSettingsJson();
destData.setSize(0);
destData.append(json.toRawUTF8(), json.getNumBytesAsUTF8());
}
void PrismSpectrumProcessor::setStateInformation(const void* data, int sizeInBytes)
{
if (data == nullptr || sizeInBytes <= 0)
return;
setSettingsJson(juce::String::fromUTF8(static_cast<const char*>(data), sizeInBytes));
// If the editor is already open (host restored state after opening it), push
// the settings to the UI now — the prismReady reply alone would have missed it.
if (auto* editor = dynamic_cast<PrismSpectrumEditor*>(getActiveEditor()))
editor->pushRestoreSettings();
}
juce::AudioProcessorEditor* PrismSpectrumProcessor::createEditor()
{
return new PrismSpectrumEditor(*this);
}
// This creates the plugin instance, called by the JUCE plugin wrappers.
juce::AudioProcessor* JUCE_CALLTYPE createPluginFilter()
{
return new PrismSpectrumProcessor();
}