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oak-editor/app/audio/audiomanager.cpp
T

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7.9 KiB
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/***
Olive - Non-Linear Video Editor
Copyright (C) 2021 Olive Team
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"
#include <QApplication>
#include "config/config.h"
namespace olive {
AudioManager* AudioManager::instance_ = nullptr;
QString AudioManager::GetAudioBackendName(AudioManager::Backend b)
{
switch (b) {
case kAudioBackendQt:
return tr("Qt");
case kAudioBackendCount:
break;
}
return tr("Unknown");
}
void AudioManager::CreateInstance()
{
if (instance_ == nullptr) {
instance_ = new AudioManager();
}
}
void AudioManager::DestroyInstance()
{
delete instance_;
instance_ = nullptr;
}
AudioManager *AudioManager::instance()
{
return instance_;
}
void AudioManager::RefreshDevices()
{
if (!is_refreshing_outputs_) {
QFutureWatcher< QList<QAudioDeviceInfo> >* output_watcher = new QFutureWatcher< QList<QAudioDeviceInfo> >();
connect(output_watcher, &QFutureWatcher< QList<QAudioDeviceInfo> >::finished, this, &AudioManager::OutputDevicesRefreshed);
output_watcher->setFuture(QtConcurrent::run(QAudioDeviceInfo::availableDevices, QAudio::AudioOutput));
is_refreshing_outputs_ = true;
}
if (!is_refreshing_inputs_) {
QFutureWatcher< QList<QAudioDeviceInfo> >* input_watcher = new QFutureWatcher< QList<QAudioDeviceInfo> >();
connect(input_watcher, &QFutureWatcher< QList<QAudioDeviceInfo> >::finished, this, &AudioManager::InputDevicesRefreshed);
input_watcher->setFuture(QtConcurrent::run(QAudioDeviceInfo::availableDevices, QAudio::AudioInput));
is_refreshing_inputs_ = true;
}
}
bool AudioManager::IsRefreshingOutputs()
{
return is_refreshing_outputs_;
}
bool AudioManager::IsRefreshingInputs()
{
return is_refreshing_inputs_;
}
void AudioManager::PushToOutput(const QByteArray &samples)
{
output_manager_->Push(samples);
emit OutputPushed(samples);
}
void AudioManager::StartOutput(AudioPlaybackCache *cache, qint64 offset, int playback_speed)
{
// Create device
QIODevice* device = cache->CreatePlaybackDevice();
// Move to output manager's thread
device->moveToThread(&output_thread_);
// Queue to output manger in other thread
QMetaObject::invokeMethod(output_manager_,
"PullFromDevice",
Qt::QueuedConnection,
Q_ARG(QIODevice*, device),
Q_ARG(qint64, offset),
Q_ARG(int, playback_speed));
emit OutputDeviceStarted(cache, offset, playback_speed);
}
void AudioManager::StopOutput()
{
QMetaObject::invokeMethod(output_manager_,
"ResetToPushMode",
Qt::QueuedConnection);
emit Stopped();
}
void AudioManager::SetOutputDevice(const QAudioDeviceInfo &info)
{
qInfo() << "Setting output audio device to" << info.deviceName();
StopOutput();
output_device_info_ = info;
if (output_params_.is_valid()) {
QAudioFormat format;
format.setSampleRate(output_params_.sample_rate());
format.setChannelCount(output_params_.channel_count());
format.setCodec("audio/pcm");
format.setByteOrder(QAudioFormat::LittleEndian);
format.setSampleSize(output_params_.bits_per_sample());
format.setSampleType(AudioParams::GetQtSampleType(output_params_.format()));
if (info.isFormatSupported(format)) {
QMetaObject::invokeMethod(output_manager_,
"SetOutputDevice",
Qt::QueuedConnection,
Q_ARG(const QAudioDeviceInfo&, info),
Q_ARG(const QAudioFormat&, format));
output_is_set_ = true;
} else {
qWarning() << "Output format not supported by device";
}
}
}
void AudioManager::SetOutputParams(const AudioParams &params)
{
if (output_params_ != params) {
output_params_ = params;
QMetaObject::invokeMethod(output_manager_,
"SetParameters",
Qt::QueuedConnection,
OLIVE_NS_ARG(AudioParams, params));
// Refresh output device
SetOutputDevice(output_device_info_);
}
emit AudioParamsChanged(output_params_);
}
void AudioManager::SetInputDevice(const QAudioDeviceInfo &info)
{
input_ = std::unique_ptr<QAudioInput>(new QAudioInput(info, QAudioFormat(), this));
input_device_info_ = info;
}
const QList<QAudioDeviceInfo> &AudioManager::ListInputDevices()
{
return input_devices_;
}
const QList<QAudioDeviceInfo> &AudioManager::ListOutputDevices()
{
return output_devices_;
}
void AudioManager::ReverseBuffer(char *buffer, int buffer_size, int sample_size)
{
int half_buffer_sz = buffer_size / 2;
char* temp_buffer = new char[sample_size];
for (int src_index=0;src_index<half_buffer_sz;src_index+=sample_size) {
char* src_ptr = buffer + src_index;
char* dst_ptr = buffer + buffer_size - sample_size - src_index;
// Simple swap
memcpy(temp_buffer, src_ptr, static_cast<size_t>(sample_size));
memcpy(src_ptr, dst_ptr, static_cast<size_t>(sample_size));
memcpy(dst_ptr, temp_buffer, static_cast<size_t>(sample_size));
}
delete [] temp_buffer;
}
AudioManager::AudioManager() :
is_refreshing_inputs_(false),
is_refreshing_outputs_(false),
output_is_set_(false),
input_(nullptr),
input_file_(nullptr)
{
RefreshDevices();
output_thread_.start(QThread::TimeCriticalPriority);
output_manager_ = new AudioOutputManager();
output_manager_->moveToThread(&output_thread_);
connect(output_manager_, &AudioOutputManager::OutputNotified, this, &AudioManager::OutputNotified);
}
AudioManager::~AudioManager()
{
QMetaObject::invokeMethod(output_manager_, "deleteLater", Qt::BlockingQueuedConnection);
output_thread_.quit();
output_thread_.wait();
}
void AudioManager::OutputDevicesRefreshed()
{
QFutureWatcher< QList<QAudioDeviceInfo> >* watcher = static_cast<QFutureWatcher< QList<QAudioDeviceInfo> >*>(sender());
output_devices_ = watcher->result();
watcher->deleteLater();
is_refreshing_outputs_ = false;
QString preferred_audio_output = Config::Current()["AudioOutput"].toString();
if (!output_is_set_
|| (!preferred_audio_output.isEmpty() && output_device_info_.deviceName() != preferred_audio_output)) {
if (preferred_audio_output.isEmpty()) {
SetOutputDevice(QAudioDeviceInfo::defaultOutputDevice());
} else {
foreach (const QAudioDeviceInfo& info, output_devices_) {
if (info.deviceName() == preferred_audio_output) {
SetOutputDevice(info);
break;
}
}
}
}
emit OutputListReady();
}
void AudioManager::InputDevicesRefreshed()
{
QFutureWatcher< QList<QAudioDeviceInfo> >* watcher = static_cast<QFutureWatcher< QList<QAudioDeviceInfo> >*>(sender());
input_devices_ = watcher->result();
watcher->deleteLater();
is_refreshing_inputs_ = false;
QString preferred_audio_input = Config::Current()["AudioInput"].toString();
if (input_ == nullptr
|| (!preferred_audio_input.isEmpty() && input_device_info_.deviceName() != preferred_audio_input)) {
if (preferred_audio_input.isEmpty()) {
SetInputDevice(QAudioDeviceInfo::defaultInputDevice());
} else {
foreach (const QAudioDeviceInfo& info, input_devices_) {
if (info.deviceName() == preferred_audio_input) {
SetInputDevice(info);
break;
}
}
}
}
emit InputListReady();
}
}