Files
oak-editor/app/audio/audiomanager.cpp
T
2021-10-01 17:25:43 -07:00

276 lines
7.2 KiB
C++

/***
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;
void AudioManager::CreateInstance()
{
if (instance_ == nullptr) {
instance_ = new AudioManager();
}
}
void AudioManager::DestroyInstance()
{
delete instance_;
instance_ = nullptr;
}
AudioManager *AudioManager::instance()
{
return instance_;
}
void AudioManager::RefreshDevices()
{
}
bool AudioManager::IsRefreshingOutputs()
{
return is_refreshing_outputs_;
}
bool AudioManager::IsRefreshingInputs()
{
return is_refreshing_inputs_;
}
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;
}
void AudioManager::PushToOutput(const AudioParams &params, const QByteArray &samples)
{
if (output_params_ != params || output_stream_ == nullptr) {
output_params_ = params;
CloseOutputStream();
PaStreamParameters p;
p.channelCount = output_params_.channel_count();
p.device = output_device_;
p.hostApiSpecificStreamInfo = nullptr;
p.sampleFormat = GetPortAudioSampleFormat(output_params_.format());
p.suggestedLatency = Pa_GetDeviceInfo(output_device_)->defaultLowOutputLatency;
Pa_OpenStream(&output_stream_, nullptr, &p, output_params_.sample_rate(), paFramesPerBufferUnspecified, paNoFlag, OutputCallback, output_buffer_);
output_buffer_->set_bytes_per_frame(output_params_.samples_to_bytes(1));
}
output_buffer_->write(samples);
if (!Pa_IsStreamActive(output_stream_)) {
Pa_StartStream(output_stream_);
}
}
void AudioManager::ClearBufferedOutput()
{
output_buffer_->clear();
}
PaSampleFormat AudioManager::GetPortAudioSampleFormat(AudioParams::Format fmt)
{
switch (fmt) {
case AudioParams::kFormatUnsigned8:
return paUInt8;
case AudioParams::kFormatSigned16:
return paInt16;
case AudioParams::kFormatSigned32:
return paInt32;
case AudioParams::kFormatFloat32:
return paFloat32;
case AudioParams::kFormatSigned64:
case AudioParams::kFormatFloat64:
case AudioParams::kFormatInvalid:
case AudioParams::kFormatCount:
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)
{
qInfo() << "Setting output audio device to" << Pa_GetDeviceInfo(device)->name;
output_device_ = device;
CloseOutputStream();
/*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::SetInputDevice(PaDeviceIndex device)
{
qInfo() << "Setting input audio device to" << Pa_GetDeviceInfo(device)->name;
input_device_ = device;
}
AudioManager::AudioManager() :
is_refreshing_inputs_(false),
is_refreshing_outputs_(false),
output_stream_(nullptr)
{
//RefreshDevices();
Pa_Initialize();
SetOutputDevice(Pa_GetDefaultOutputDevice());
SetInputDevice(Pa_GetDefaultInputDevice());
output_buffer_ = new PreviewAudioDevice(this);
output_buffer_->open(PreviewAudioDevice::ReadWrite);
connect(output_buffer_, &PreviewAudioDevice::Notify, this, &AudioManager::OutputNotify);
}
AudioManager::~AudioManager()
{
CloseOutputStream();
Pa_Terminate();
}
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_ == paNoDevice
|| (!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();*/
}
}