Gary Wang
cf90e2d70c
The final goal is actually still clone ShadowPlayer's spectrum visualization, tho.
124 lines
4.9 KiB
C++
124 lines
4.9 KiB
C++
// SPDX-FileCopyrightText: 2024 Gary Wang <git@blumia.net>
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//
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// SPDX-License-Identifier: MIT
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#include "fftspectrum.h"
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#include <QAudioBuffer>
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#if QT_VERSION >= QT_VERSION_CHECK(6, 8, 0)
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#include <QAudioBufferOutput>
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#endif // QT_VERSION >= QT_VERSION_CHECK(6, 8, 0)
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#include <QPainter>
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#include <kissfft.hh>
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FFTSpectrum::FFTSpectrum(QWidget* parent)
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: QWidget(parent)
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#if QT_VERSION >= QT_VERSION_CHECK(6, 8, 0)
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, m_audioBufferOutput(new QAudioBufferOutput(this))
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#endif // #if QT_VERSION >= QT_VERSION_CHECK(6, 8, 0)
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{
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#if QT_VERSION >= QT_VERSION_CHECK(6, 8, 0)
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connect(this, &FFTSpectrum::mediaPlayerChanged, this, [=]() {
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if (m_mediaPlayer) {
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m_mediaPlayer->setAudioBufferOutput(m_audioBufferOutput);
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}
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});
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connect(m_audioBufferOutput, &QAudioBufferOutput::audioBufferReceived, this, [=](const QAudioBuffer& buffer) {
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const QAudioFormat& fmt = buffer.format();
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const QAudioFormat::SampleFormat sampleFormat = fmt.sampleFormat();
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QAudioFormat::ChannelConfig channelConfig = fmt.channelConfig();
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const QFlags supportedChannelConfig({ QAudioFormat::ChannelConfigMono, QAudioFormat::ChannelConfigStereo });
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const int frameCount = buffer.frameCount();
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kissfft<float> fft(frameCount, false);
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std::vector<kissfft<float>::cpx_t> samples(frameCount);
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std::vector<kissfft<float>::cpx_t> mass(frameCount);
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if (sampleFormat == QAudioFormat::Int16 && supportedChannelConfig.testFlag(channelConfig)) {
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if (channelConfig == QAudioFormat::ChannelConfigMono) {
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const QAudioBuffer::S16M* data = buffer.constData<QAudioBuffer::S16M>();
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for (int i = 0; i < frameCount; ++i) {
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samples[i].real(data[i].value(QAudioFormat::FrontCenter) / float(32768));
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samples[i].imag(0);
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}
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} else {
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const QAudioBuffer::S16S* data = buffer.constData<QAudioBuffer::S16S>();
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for (int i = 0; i < frameCount; ++i) {
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samples[i].real(data[i].value(QAudioFormat::FrontLeft) / float(32768));
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samples[i].imag(0);
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}
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}
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} else if (sampleFormat == QAudioFormat::Int32 && supportedChannelConfig.testFlag(channelConfig)) {
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if (channelConfig == QAudioFormat::ChannelConfigMono) {
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const QAudioBuffer::S32M* data = buffer.constData<QAudioBuffer::S32M>();
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for (int i = 0; i < frameCount; ++i) {
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samples[i].real(data[i].value(QAudioFormat::FrontCenter) / float(2147483647));
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samples[i].imag(0);
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}
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} else {
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const QAudioBuffer::S32S* data = buffer.constData<QAudioBuffer::S32S>();
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for (int i = 0; i < frameCount; ++i) {
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samples[i].real(data[i].value(QAudioFormat::FrontLeft) / float(2147483647));
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samples[i].imag(0);
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}
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}
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} else if (sampleFormat == QAudioFormat::Float && supportedChannelConfig.testFlag(channelConfig)) {
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if (channelConfig == QAudioFormat::ChannelConfigMono) {
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const QAudioBuffer::F32M* data = buffer.constData<QAudioBuffer::F32M>();
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for (int i = 0; i < frameCount; ++i) {
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samples[i].real(data[i].value(QAudioFormat::FrontCenter));
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samples[i].imag(0);
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}
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} else {
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const QAudioBuffer::F32S* data = buffer.constData<QAudioBuffer::F32S>();
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for (int i = 0; i < frameCount; ++i) {
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samples[i].real(data[i].value(QAudioFormat::FrontLeft));
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samples[i].imag(0);
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}
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}
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} else {
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qWarning() << "Unsupported format or channel config:" << sampleFormat << channelConfig;
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return;
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}
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fft.transform(samples.data(), mass.data());
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m_freq.resize(frameCount);
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for (int i = 0; i < frameCount; i++) {
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m_freq[i] = sqrt(mass[i].real() * mass[i].real() + mass[i].imag() * mass[i].imag());
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}
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for (auto& val : m_freq) {
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val = log10(val + 1);
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}
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update();
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});
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#endif // QT_VERSION >= QT_VERSION_CHECK(6, 8, 0)
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resize(490, 420);
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}
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FFTSpectrum::~FFTSpectrum()
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{
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}
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void FFTSpectrum::setMediaPlayer(QMediaPlayer* player)
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{
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m_mediaPlayer = player;
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emit mediaPlayerChanged();
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}
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void FFTSpectrum::paintEvent(QPaintEvent* e)
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{
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QPainter painter(this);
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if (!m_freq.empty()) {
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int width = this->width();
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int height = this->height();
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int barWidth = std::max(1ULL, width / m_freq.size());
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for (int i = 0; i < m_freq.size(); i++) {
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int barHeight = static_cast<int>(sqrt(m_freq[i]) * height * 0.5);
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painter.fillRect(i * barWidth, height - barHeight, barWidth, barHeight, QColor(70, 130, 180, (int)(140 * m_freq[i]) + 90));
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}
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}
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}
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