The macro defined namespaces confused the hell out of lupdate and more or less broke translations permanently. Looks like the only way we can do it is to have a hardcoded namespace, which goes against my instinct, but honestly how likely is it that we'll change the namespace anyway (I guess forks might want to do it, but that's their problem ;) )
199 lines
4.7 KiB
C++
199 lines
4.7 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2020 Olive Team
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#include "audioparams.h"
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extern "C" {
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#include <libavformat/avformat.h>
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}
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#include <QCoreApplication>
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namespace olive {
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const QVector<int> AudioParams::kSupportedSampleRates = {
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8000, // 8000 Hz
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11025, // 11025 Hz
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16000, // 16000 Hz
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22050, // 22050 Hz
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24000, // 24000 Hz
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32000, // 32000 Hz
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44100, // 44100 Hz
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48000, // 48000 Hz
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88200, // 88200 Hz
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96000 // 96000 Hz
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};
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const QVector<uint64_t> AudioParams::kSupportedChannelLayouts = {
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AV_CH_LAYOUT_MONO,
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AV_CH_LAYOUT_STEREO,
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AV_CH_LAYOUT_2_1,
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AV_CH_LAYOUT_5POINT1,
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AV_CH_LAYOUT_7POINT1
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};
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const AudioParams::Format AudioParams::kInternalFormat = AudioParams::kFormatFloat32;
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qint64 AudioParams::time_to_bytes(const double &time) const
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{
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Q_ASSERT(is_valid());
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return qint64(time_to_samples(time)) * channel_count() * bytes_per_sample_per_channel();
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}
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bool AudioParams::operator==(const AudioParams &other) const
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{
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return (format() == other.format()
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&& sample_rate() == other.sample_rate()
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&& channel_layout() == other.channel_layout());
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}
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bool AudioParams::operator!=(const AudioParams &other) const
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{
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return !(*this == other);
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}
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QAudioFormat::SampleType AudioParams::GetQtSampleType(AudioParams::Format format)
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{
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switch (format) {
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case kFormatUnsigned8:
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return QAudioFormat::UnSignedInt;
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case kFormatSigned16:
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case kFormatSigned32:
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case kFormatSigned64:
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return QAudioFormat::SignedInt;
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case kFormatFloat32:
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case kFormatFloat64:
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return QAudioFormat::Float;
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case kFormatInvalid:
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case kFormatCount:
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break;
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}
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return QAudioFormat::Unknown;
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}
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qint64 AudioParams::time_to_bytes(const rational &time) const
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{
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return time_to_bytes(time.toDouble());
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}
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qint64 AudioParams::time_to_samples(const double &time) const
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{
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Q_ASSERT(is_valid());
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return qRound64(time * sample_rate());
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}
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qint64 AudioParams::time_to_samples(const rational &time) const
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{
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return time_to_samples(time.toDouble());
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}
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qint64 AudioParams::samples_to_bytes(const qint64 &samples) const
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{
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Q_ASSERT(is_valid());
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return samples * channel_count() * bytes_per_sample_per_channel();
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}
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rational AudioParams::samples_to_time(const qint64 &samples) const
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{
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return rational(samples, sample_rate());
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}
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qint64 AudioParams::bytes_to_samples(const qint64 &bytes) const
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{
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Q_ASSERT(is_valid());
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return bytes / (channel_count() * bytes_per_sample_per_channel());
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}
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rational AudioParams::bytes_to_time(const qint64 &bytes) const
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{
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Q_ASSERT(is_valid());
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return samples_to_time(bytes_to_samples(bytes));
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}
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int AudioParams::channel_count() const
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{
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return av_get_channel_layout_nb_channels(channel_layout());
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}
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int AudioParams::bytes_per_sample_per_channel() const
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{
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switch (format_) {
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case kFormatUnsigned8:
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return 1;
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case kFormatSigned16:
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return 2;
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case kFormatSigned32:
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case kFormatFloat32:
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return 4;
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case kFormatSigned64:
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case kFormatFloat64:
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return 8;
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case kFormatInvalid:
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case kFormatCount:
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break;
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}
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return 0;
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}
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int AudioParams::bits_per_sample() const
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{
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return bytes_per_sample_per_channel() * 8;
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}
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bool AudioParams::is_valid() const
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{
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return (sample_rate() > 0
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&& channel_layout() > 0
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&& format_ > kFormatInvalid
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&& format_ < kFormatCount);
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}
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QString AudioParams::SampleRateToString(const int &sample_rate)
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{
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return QCoreApplication::translate("AudioParams", "%1 Hz").arg(sample_rate);
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}
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QString AudioParams::ChannelLayoutToString(const uint64_t &layout)
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{
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switch (layout) {
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case AV_CH_LAYOUT_MONO:
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return QCoreApplication::translate("AudioParams", "Mono");
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case AV_CH_LAYOUT_STEREO:
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return QCoreApplication::translate("AudioParams", "Stereo");
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case AV_CH_LAYOUT_2_1:
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return QCoreApplication::translate("AudioParams", "2.1");
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case AV_CH_LAYOUT_5POINT1:
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return QCoreApplication::translate("AudioParams", "5.1");
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case AV_CH_LAYOUT_7POINT1:
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return QCoreApplication::translate("AudioParams", "7.1");
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default:
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return QCoreApplication::translate("AudioParams", "Unknown (0x%1)").arg(layout, 1, 16);
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}
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}
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}
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