I'll be honest, this probably makes no noticeable difference at all. It should be faster and more efficient, but whether that translates into any tangible improvement is yet to be seen.
215 lines
6.2 KiB
C++
215 lines
6.2 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2021 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 "export.h"
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#include "common/timecodefunctions.h"
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#include "node/color/colormanager/colormanager.h"
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namespace olive {
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ExportTask::ExportTask(ViewerOutput *viewer_node,
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ColorManager* color_manager,
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const ExportParams& params) :
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RenderTask(viewer_node, params.video_params(), params.audio_params()),
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color_manager_(color_manager),
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params_(params)
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{
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SetTitle(tr("Exporting \"%1\"").arg(viewer_node->GetLabel()));
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}
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bool ExportTask::Run()
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{
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TimeRange range;
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// For safety, if we're overwriting, we save to a temporary filename and then only overwrite it
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// at the end
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QString real_filename = params_.filename();
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if (QFileInfo::exists(params_.filename())) {
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// Generate a filename that definitely doesn't exist
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params_.SetFilename(FileFunctions::GetSafeTemporaryFilename(real_filename));
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}
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encoder_ = Encoder::CreateFromID(params_.encoder(), params_);
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if (!encoder_) {
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SetError(tr("Failed to create encoder"));
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return false;
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}
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if (!encoder_->Open()) {
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SetError(tr("Failed to open file"));
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encoder_->deleteLater();
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return false;
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}
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if (params_.has_custom_range()) {
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// Render custom range only
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range = params_.custom_range();
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} else {
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// Render entire sequence
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range = TimeRange(0, viewer()->GetLength());
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}
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frame_time_ = 0;
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QSize video_force_size;
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QMatrix4x4 video_force_matrix;
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if (params_.video_enabled()) {
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// If a transformation matrix is applied to this video, create it here
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VideoParams vp = viewer()->GetVideoParams();
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if (vp.width() != params_.video_params().width()
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|| params_.video_params().height() != params_.video_params().height()) {
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video_force_size = QSize(params_.video_params().width(), params_.video_params().height());
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if (params_.video_scaling_method() != ExportParams::kStretch) {
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video_force_matrix = ExportParams::GenerateMatrix(params_.video_scaling_method(),
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vp.width(),
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vp.height(),
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params_.video_params().width(),
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params_.video_params().height());
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}
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} else {
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// Disables forcing size in the renderer
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video_force_size = QSize(0, 0);
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}
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// Create color processor
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color_processor_ = ColorProcessor::Create(color_manager_,
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color_manager_->GetReferenceColorSpace(),
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params_.color_transform());
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}
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// Start render process
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TimeRangeList video_range, audio_range;
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if (params_.video_enabled()) {
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video_range = {range};
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}
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if (params_.audio_enabled()) {
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audio_range = {range};
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}
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Render(color_manager_, video_range, audio_range, RenderMode::kOnline, nullptr,
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video_force_size, video_force_matrix, encoder_->GetDesiredPixelFormat(),
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color_processor_);
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bool success = true;
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encoder_->Close();
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if (!encoder_->GetError().isEmpty()) {
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SetError(encoder_->GetError());
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success = false;
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}
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delete encoder_;
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// If cancelled, delete the file we made, which is always a file we created since we write to a
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// temp file during the actual encoding process
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if (IsCancelled()) {
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QFile::remove(params_.filename());
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} else if (params_.filename() != real_filename) {
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// If we were writing to a temp file, overwrite now
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if (!FileFunctions::RenameFileAllowOverwrite(params_.filename(), real_filename)) {
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SetError(tr("Failed to overwrite \"%1\". Export has been saved as \"%2\" instead.")
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.arg(real_filename, params_.filename()));
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success = false;
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}
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}
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return success;
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}
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void ExportTask::FrameDownloaded(FramePtr f, const QByteArray &hash, const QVector<rational> ×, qint64 job_time)
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{
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Q_UNUSED(job_time)
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Q_UNUSED(hash)
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foreach (const rational& t, times) {
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rational actual_time = t;
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if (params_.has_custom_range()) {
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actual_time -= params_.custom_range().in();
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}
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time_map_.insert(actual_time, f);
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}
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forever {
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rational real_time = Timecode::timestamp_to_time(frame_time_,
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video_params().frame_rate_as_time_base());
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if (!time_map_.contains(real_time)) {
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break;
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}
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// Unfortunately this can't be done in another thread since the frames need to be sent
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// one after the other chronologically.
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encoder_->WriteFrame(time_map_.take(real_time), real_time);
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frame_time_++;
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}
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}
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void ExportTask::AudioDownloaded(const TimeRange &range, SampleBufferPtr samples, qint64 job_time)
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{
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Q_UNUSED(job_time)
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TimeRange adjusted_range = range;
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if (params_.has_custom_range()) {
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adjusted_range -= params_.custom_range().in();
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}
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if (adjusted_range.in() == audio_time_) {
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WriteAudioLoop(adjusted_range, samples);
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} else {
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audio_map_.insert(adjusted_range, samples);
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}
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}
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void ExportTask::WriteAudioLoop(const TimeRange& time, SampleBufferPtr samples)
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{
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encoder_->WriteAudio(samples);
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audio_time_ = time.out();
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for (auto it=audio_map_.begin(); it!=audio_map_.end(); it++) {
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TimeRange t = it.key();
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SampleBufferPtr s = it.value();
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if (t.in() == audio_time_) {
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// Erase from audio map since we're just about to write it
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audio_map_.erase(it);
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// Call recursively to write the next sample buffer
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WriteAudioLoop(t, s);
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// Break out of loop
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break;
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}
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}
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}
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}
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