Files
oak-editor/app/audio/audiomanager.cpp
T
Mike-Solar 6229381426 version: derive from git tag/commit hash; drop audio playback debug logs
Version is no longer hardcoded: at configure time CMake uses the tag
name when HEAD is exactly on a tag (leading "v" stripped), otherwise
the first 8 hex digits of the commit hash. When git is unavailable
(e.g. source tarball) it falls back to the contents of version.txt,
which is now the single place to bump the release version.

Also remove the temporary qDebug() flood in the audio playback path
(ViewerWidget::QueueNextAudioBuffer / ReceivedAudioBufferForPlayback,
AudioManager::PushToOutput).
2026-07-17 21:10:13 +08:00

458 lines
11 KiB
C++

/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 Olive Team
Modifications Copyright (C) 2025 mikesolar
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
***/
#include "audiomanager.h"
#ifdef PA_HAS_JACK
#include <pa_jack.h>
#endif
#include <QApplication>
#include "config/config.h"
namespace olive
{
AudioManager *AudioManager::instance_ = nullptr;
void AudioManager::CreateInstance()
{
if (instance_ == nullptr) {
instance_ = new AudioManager();
}
}
void AudioManager::DestroyInstance()
{
delete instance_;
instance_ = nullptr;
}
AudioManager *AudioManager::instance()
{
return instance_;
}
void AudioManager::SetOutputNotifyInterval(int n)
{
output_buffer_->set_notify_interval(n);
}
int OutputCallback(const void *input, void *output, unsigned long frameCount,
const PaStreamCallbackTimeInfo *timeInfo,
PaStreamCallbackFlags statusFlags, void *userData)
{
PreviewAudioDevice *device = static_cast<PreviewAudioDevice *>(userData);
qint64 max_read = frameCount * device->bytes_per_frame();
qint64 read_count =
device->read(reinterpret_cast<char *>(output), max_read);
if (read_count < max_read) {
memset(reinterpret_cast<uint8_t *>(output) + read_count, 0,
max_read - read_count);
}
return paContinue;
}
int InputCallback(const void *input, void *output, unsigned long frameCount,
const PaStreamCallbackTimeInfo *timeInfo,
PaStreamCallbackFlags statusFlags, void *userData)
{
FFmpegEncoder *f = static_cast<FFmpegEncoder *>(userData);
AudioParams our_params = f->params().audio_params();
our_params.set_format(
f->params().audio_params().format().to_packed_equivalent());
f->WriteAudioData(our_params, reinterpret_cast<const uint8_t **>(&input),
frameCount);
return paContinue;
}
bool AudioManager::PushToOutput(const AudioParams &params,
const QByteArray &samples, QString *error)
{
if (output_device_ == paNoDevice) {
if (error)
*error = tr("No output device is set");
return false;
}
if (output_params_ != params || output_stream_ == nullptr) {
output_params_ = params;
CloseOutputStream();
PaStreamParameters p = GetPortAudioParams(params, output_device_);
PaError r = Pa_OpenStream(&output_stream_, nullptr, &p,
output_params_.sample_rate(),
paFramesPerBufferUnspecified, paNoFlag,
OutputCallback, output_buffer_);
if (r != paNoError) {
// Unhandled error
//qCritical() << "Failed to open output stream:" << Pa_GetErrorText(r);
qCritical() << "AudioManager::PushToOutput: Pa_OpenStream failed:"
<< Pa_GetErrorText(r);
if (error)
*error = Pa_GetErrorText(r);
return false;
}
qDebug() << "AudioManager::PushToOutput: opened stream with"
<< params.channel_count() << "channels";
output_buffer_->set_bytes_per_frame(output_params_.samples_to_bytes(1));
}
output_buffer_->write(samples);
if (!Pa_IsStreamActive(output_stream_)) {
PaError r = Pa_StartStream(output_stream_);
qDebug() << "AudioManager::PushToOutput: Pa_StartStream returned"
<< r << Pa_GetErrorText(r);
}
return true;
}
void AudioManager::ClearBufferedOutput()
{
output_buffer_->clear();
}
PaSampleFormat AudioManager::GetPortAudioSampleFormat(SampleFormat fmt)
{
switch (fmt) {
case SampleFormat::U8:
case SampleFormat::U8P:
return paUInt8;
case SampleFormat::S16:
case SampleFormat::S16P:
return paInt16;
case SampleFormat::S32:
case SampleFormat::S32P:
return paInt32;
case SampleFormat::F32:
case SampleFormat::F32P:
return paFloat32;
case SampleFormat::S64:
case SampleFormat::S64P:
case SampleFormat::F64:
case SampleFormat::F64P:
case SampleFormat::INVALID:
case SampleFormat::COUNT:
break;
}
return 0;
}
void AudioManager::CloseOutputStream()
{
if (output_stream_) {
if (Pa_IsStreamActive(output_stream_)) {
StopOutput();
}
Pa_CloseStream(output_stream_);
output_stream_ = nullptr;
}
}
void AudioManager::StopOutput()
{
// Abort the stream so playback stops immediately
if (output_stream_) {
Pa_AbortStream(output_stream_);
ClearBufferedOutput();
}
}
void AudioManager::SetOutputDevice(PaDeviceIndex device)
{
if (device == paNoDevice) {
qInfo() << "No output device found";
} else if (device < 0 || device >= Pa_GetDeviceCount()) {
qWarning() << "Invalid output audio device index:" << device;
} else {
qInfo() << "Setting output audio device to"
<< Pa_GetDeviceInfo(device)->name;
}
output_device_ = device;
CloseOutputStream();
emit OutputParamsChanged();
}
void AudioManager::SetInputDevice(PaDeviceIndex device)
{
if (device == paNoDevice) {
qInfo() << "No input device found";
} else if (device < 0 || device >= Pa_GetDeviceCount()) {
qWarning() << "Invalid input audio device index:" << device;
} else {
qInfo() << "Setting input audio device to"
<< Pa_GetDeviceInfo(device)->name;
}
input_device_ = device;
}
void AudioManager::HardReset()
{
CloseOutputStream();
Pa_Terminate();
Pa_Initialize();
}
bool AudioManager::StartRecording(const EncodingParams &params,
QString *error_str)
{
if (input_device_ == paNoDevice) {
return false;
}
input_encoder_ = new FFmpegEncoder(params);
if (!input_encoder_->Open()) {
qCritical() << "Failed to open encoder for recording";
return false;
}
PaStreamParameters p =
GetPortAudioParams(params.audio_params(), input_device_);
PaError r = Pa_OpenStream(&input_stream_, &p, nullptr,
params.audio_params().sample_rate(),
paFramesPerBufferUnspecified, paNoFlag,
InputCallback, input_encoder_);
if (r == paNoError) {
//const PaStreamInfo* info = Pa_GetStreamInfo(input_stream_);
r = Pa_StartStream(input_stream_);
if (r == paNoError) {
return true;
}
}
if (error_str) {
*error_str = Pa_GetErrorText(r);
}
StopRecording();
return false;
}
void AudioManager::StopRecording()
{
if (input_stream_) {
if (Pa_IsStreamActive(input_stream_)) {
Pa_StopStream(input_stream_);
}
Pa_CloseStream(input_stream_);
input_stream_ = nullptr;
}
if (input_encoder_) {
input_encoder_->Close();
delete input_encoder_;
input_encoder_ = nullptr;
}
}
#ifdef Q_OS_LINUX
static bool IsPreferredLinuxAudioHostApi(const PaHostApiInfo *info)
{
if (!info) {
return false;
}
const QString name = QString::fromLatin1(info->name);
return name.contains(QStringLiteral("PipeWire"), Qt::CaseInsensitive) ||
name.contains(QStringLiteral("JACK"), Qt::CaseInsensitive) ||
name.contains(QStringLiteral("PulseAudio"), Qt::CaseInsensitive);
}
static PaDeviceIndex GetPreferredLinuxAudioDevice(bool is_output_device)
{
// Prefer sound servers that provide mixing and desktop integration
// (PipeWire, JACK, PulseAudio) over plain ALSA defaults, which often
// fail to share the device on modern Linux desktops.
const QStringList preferred_host_apis = {
QStringLiteral("PipeWire"),
QStringLiteral("JACK"),
QStringLiteral("PulseAudio"),
};
for (const QString &preferred : preferred_host_apis) {
for (PaHostApiIndex i = 0, end = Pa_GetHostApiCount(); i < end; i++) {
const PaHostApiInfo *info = Pa_GetHostApiInfo(i);
if (!info) {
continue;
}
const QString name = QString::fromLatin1(info->name);
if (name.contains(preferred, Qt::CaseInsensitive)) {
PaDeviceIndex dev = is_output_device ? info->defaultOutputDevice :
info->defaultInputDevice;
if (dev != paNoDevice) {
return dev;
}
}
}
}
return is_output_device ? Pa_GetDefaultOutputDevice() :
Pa_GetDefaultInputDevice();
}
#endif
PaDeviceIndex AudioManager::FindConfigDeviceByName(bool is_output_device)
{
QString entry = is_output_device ? QStringLiteral("AudioOutput") :
QStringLiteral("AudioInput");
return FindDeviceByName(OLIVE_CONFIG_STR(entry).toString(),
is_output_device);
}
PaDeviceIndex AudioManager::FindDeviceByName(const QString &s,
bool is_output_device)
{
PaDeviceIndex exact_match = paNoDevice;
if (!s.isEmpty()) {
for (PaDeviceIndex i = 0, end = Pa_GetDeviceCount(); i < end; i++) {
const PaDeviceInfo *device = Pa_GetDeviceInfo(i);
if (!device) {
continue;
}
if (((is_output_device && device->maxOutputChannels) ||
(!is_output_device && device->maxInputChannels)) &&
!s.compare(device->name)) {
exact_match = i;
break;
}
}
}
#ifdef Q_OS_LINUX
// Even if the user/config picked a device by name, upgrade to a preferred
// host API (PipeWire/JACK/PulseAudio) when one is available. This avoids
// getting stuck on an ALSA device that cannot share the hardware.
if (exact_match != paNoDevice) {
const PaDeviceInfo *matched_info = Pa_GetDeviceInfo(exact_match);
if (matched_info) {
const PaHostApiInfo *host_api =
Pa_GetHostApiInfo(matched_info->hostApi);
if (IsPreferredLinuxAudioHostApi(host_api)) {
// Keep an explicit choice that already uses a preferred API.
return exact_match;
}
// Upgrade a non-preferred (e.g. ALSA) match to a preferred backend
// when one is available.
PaDeviceIndex preferred =
GetPreferredLinuxAudioDevice(is_output_device);
if (preferred != paNoDevice) {
qInfo() << "Overriding saved audio device" << s
<< "with preferred Linux audio device"
<< Pa_GetDeviceInfo(preferred)->name;
return preferred;
}
// No preferred backend available; keep the saved device.
return exact_match;
}
}
return GetPreferredLinuxAudioDevice(is_output_device);
#else
if (exact_match != paNoDevice) {
return exact_match;
}
return is_output_device ? Pa_GetDefaultOutputDevice() :
Pa_GetDefaultInputDevice();
#endif
}
PaStreamParameters AudioManager::GetPortAudioParams(const AudioParams &params,
PaDeviceIndex device)
{
PaStreamParameters p;
p.channelCount = params.channel_count();
p.device = device;
p.hostApiSpecificStreamInfo = nullptr;
p.sampleFormat = GetPortAudioSampleFormat(params.format());
if (device >= 0 && device < Pa_GetDeviceCount()) {
p.suggestedLatency = Pa_GetDeviceInfo(device)->defaultLowOutputLatency;
} else {
p.suggestedLatency = 0;
}
return p;
}
AudioManager::AudioManager()
: output_stream_(nullptr)
, input_stream_(nullptr)
, input_encoder_(nullptr)
{
#ifdef PA_HAS_JACK
// PortAudio doesn't do a strcpy, so we need a const char that's readily accessible (i.e. not
// a QString converted to UTF-8)
PaJack_SetClientName("Oak Video Editor");
#endif
Pa_Initialize();
// Get device from config
PaDeviceIndex output_device = FindConfigDeviceByName(true);
PaDeviceIndex input_device = FindConfigDeviceByName(false);
qDebug() << "AudioManager: selected output device index=" << output_device
<< "input device index=" << input_device;
SetOutputDevice(output_device);
SetInputDevice(input_device);
output_buffer_ = new PreviewAudioDevice(this);
output_buffer_->open(PreviewAudioDevice::ReadWrite);
connect(output_buffer_, &PreviewAudioDevice::Notify, this,
&AudioManager::OutputNotify);
}
AudioManager::~AudioManager()
{
CloseOutputStream();
Pa_Terminate();
}
}