Files
oak-editor/app/task/export/export.cpp
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2026-01-16 21:22:05 +08:00

299 lines
8.0 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 "export.h"
#include "node/color/colormanager/colormanager.h"
namespace olive
{
ExportTask::ExportTask(ViewerOutput *viewer_node, ColorManager *color_manager,
const EncodingParams &params)
: params_(params)
{
// Create a copy of the project
copier_ = new ProjectCopier(this);
copier_->SetProject(viewer_node->project());
set_viewer(copier_->GetCopy(viewer_node));
color_manager_ = copier_->GetCopiedProject()->color_manager();
// Adjust video params to have no divider
VideoParams vp = viewer_node->GetVideoParams();
vp.set_divider(1);
vp.set_time_base(params.video_params().time_base());
vp.set_frame_rate(params.video_params().frame_rate());
set_video_params(vp);
set_audio_params(viewer_node->GetAudioParams());
SetTitle(tr("Exporting \"%1\"").arg(viewer_node->GetLabel()));
SetNativeProgressSignallingEnabled(false);
}
bool ExportTask::Run()
{
// For safety, if we're overwriting, we save to a temporary filename and then only overwrite it
// at the end
QString real_filename = params_.filename();
if (QFileInfo::exists(params_.filename())) {
// Generate a filename that definitely doesn't exist
params_.SetFilename(
FileFunctions::GetSafeTemporaryFilename(real_filename));
}
// If we're exporting to a sidecar subtitle file, disable the subtitles in the main encoder
bool subtitles_enabled = params_.subtitles_enabled();
EncodingParams sidecar_params = params_;
if (subtitles_enabled && params_.subtitles_are_sidecar()) {
params_.DisableSubtitles();
}
encoder_ = std::shared_ptr<Encoder>(Encoder::CreateFromParams(params_));
if (!encoder_) {
SetError(tr("Failed to create encoder"));
return false;
}
if (!encoder_->Open()) {
SetError(tr("Failed to open file: %1").arg(encoder_->GetError()));
return false;
}
if (subtitles_enabled && params_.subtitles_are_sidecar()) {
// Construct sidecar params
sidecar_params.DisableVideo();
sidecar_params.DisableAudio();
QString sidecar_filename;
{
QFileInfo fi(real_filename);
sidecar_filename = fi.completeBaseName();
sidecar_filename.append('.');
sidecar_filename.append(ExportFormat::GetExtension(
sidecar_params.subtitle_sidecar_fmt()));
sidecar_filename = fi.dir().filePath(sidecar_filename);
}
sidecar_params.SetFilename(sidecar_filename);
subtitle_encoder_ = std::shared_ptr<Encoder>(Encoder::CreateFromFormat(
sidecar_params.subtitle_sidecar_fmt(), sidecar_params));
if (!subtitle_encoder_) {
SetError(tr("Failed to create subtitle encoder"));
return false;
}
if (!subtitle_encoder_->Open()) {
SetError(tr("Failed to open subtitle sidecar file: %1")
.arg(sidecar_filename));
return false;
}
} else {
subtitle_encoder_ = encoder_;
}
if (params_.has_custom_range()) {
// Render custom range only
export_range_ = params_.custom_range();
} else {
// Render entire sequence
export_range_ = TimeRange(0, viewer()->GetLength());
}
frame_time_ = 0;
QSize video_force_size;
QMatrix4x4 video_force_matrix;
if (params_.video_enabled()) {
// If a transformation matrix is applied to this video, create it here
if (video_params().width() != params_.video_params().width() ||
video_params().height() != params_.video_params().height()) {
video_force_size = QSize(params_.video_params().width(),
params_.video_params().height());
if (params_.video_scaling_method() != EncodingParams::kStretch) {
video_force_matrix = EncodingParams::GenerateMatrix(
params_.video_scaling_method(), video_params().width(),
video_params().height(), params_.video_params().width(),
params_.video_params().height());
}
} else {
// Disables forcing size in the renderer
video_force_size = QSize(0, 0);
}
// Create color processor
color_processor_ = ColorProcessor::Create(
color_manager_, color_manager_->GetReferenceColorSpace(),
params_.color_transform());
}
// Start render process
TimeRangeList video_range, audio_range;
TimeRange subtitle_range;
if (params_.video_enabled()) {
if (export_range_.in() > 0) {
export_range_.set_in(Timecode::snap_time_to_timebase(
export_range_.in(), video_params().frame_rate_as_time_base()));
}
video_range = { export_range_ };
}
if (params_.audio_enabled()) {
audio_range = { export_range_ };
}
if (subtitles_enabled) {
subtitle_range = export_range_;
}
Render(color_manager_, video_range, audio_range, subtitle_range,
RenderMode::kOnline, nullptr, video_force_size, video_force_matrix,
encoder_->GetDesiredPixelFormat(), VideoParams::kRGBAChannelCount,
color_processor_);
bool success = true;
encoder_->Close();
if (!encoder_->GetError().isEmpty()) {
SetError(encoder_->GetError());
success = false;
}
if (subtitle_encoder_ != encoder_) {
subtitle_encoder_->Close();
if (!subtitle_encoder_->GetError().isEmpty()) {
SetError(subtitle_encoder_->GetError());
success = false;
}
}
// If cancelled, delete the file we made, which is always a file we created since we write to a
// temp file during the actual encoding process
if (IsCancelled()) {
QFile::remove(params_.filename());
} else if (params_.filename() != real_filename) {
// If we were writing to a temp file, overwrite now
if (!FileFunctions::RenameFileAllowOverwrite(params_.filename(),
real_filename)) {
SetError(
tr("Failed to overwrite \"%1\". Export has been saved as \"%2\" instead.")
.arg(real_filename, params_.filename()));
success = false;
}
}
return success;
}
bool ExportTask::FrameDownloaded(FramePtr f, const rational &time)
{
rational actual_time = time - export_range_.in();
time_map_.insert(actual_time, f);
while (!IsCancelled()) {
rational real_time = Timecode::timestamp_to_time(
frame_time_, video_params().frame_rate_as_time_base());
if (!time_map_.contains(real_time)) {
break;
}
// Unfortunately this can't be done in another thread since the frames need to be sent
// one after the other chronologically.
if (!encoder_->WriteFrame(time_map_.take(real_time), real_time)) {
SetError(encoder_->GetError());
return false;
}
frame_time_++;
emit ProgressChanged(double(frame_time_) /
double(GetTotalNumberOfFrames()));
}
return true;
}
bool ExportTask::AudioDownloaded(const TimeRange &range,
const SampleBuffer &samples)
{
TimeRange adjusted_range = range - export_range_.in();
if (adjusted_range.in() == audio_time_) {
if (!WriteAudioLoop(adjusted_range, samples)) {
return false;
}
} else {
audio_map_.insert(adjusted_range, samples);
}
return true;
}
bool ExportTask::EncodeSubtitle(const SubtitleBlock *sub)
{
if (!subtitle_encoder_->WriteSubtitle(sub)) {
SetError(subtitle_encoder_->GetError());
return false;
} else {
return true;
}
}
bool ExportTask::WriteAudioLoop(const TimeRange &time,
const SampleBuffer &samples)
{
if (!encoder_->WriteAudio(samples)) {
SetError(encoder_->GetError());
return false;
}
audio_time_ = time.out();
for (auto it = audio_map_.begin(); it != audio_map_.end(); it++) {
TimeRange t = it.key();
SampleBuffer s = it.value();
if (t.in() == audio_time_) {
// Erase from audio map since we're just about to write it
audio_map_.erase(it);
// Call recursively to write the next sample buffer
if (!WriteAudioLoop(t, s)) {
return false;
}
// Break out of loop
break;
}
}
return true;
}
}