Files
oak-editor/app/node/project/sequence/sequence.cpp
T
Mike-Solar 03d4087124 refactor: cut engine-to-UI include violations ahead of the liboakengine split
- slider DisplayType enums sink to node/sliderdisplaytype.h (canonical
  engine home); FloatSlider/RationalSlider alias them for compatibility
- DropWithoutSequenceBehavior enum sinks to common/dropworkflowbehavior.h
- Config errors now go through a registered ErrorHandler hook instead of
  QMessageBox with a MainWindow parent; the style default no longer
  depends on the UI style manager
- MainWindowLayoutInfo moves to node/project/serializer/ and its panel
  dependency is reduced to a plain std::map alias (PanelLayoutInfo),
  breaking the engine -> PanelWidget -> KDDockWidgets chain
- ProjectImportErrorDialog moves from task/ to dialog/projectimport/
- remove confirmed-redundant UI includes and give project.h/import.h/
  project.cpp the direct includes they were borrowing transitively
- project.h includes folder/sequence headers directly (it used both
  types in its own API all along)
2026-07-20 00:52:12 +08:00

201 lines
4.8 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 "sequence.h"
#include <QThread>
#include "ui/icons/icons.h"
#include "timeline/timelineundogeneral.h"
namespace olive
{
const QString Sequence::k_track_input_format = QStringLiteral("track_in_%1");
#define super ViewerOutput
Sequence::Sequence()
{
set_flag(k_is_item);
// Create TrackList instances
track_lists_.resize(Track::k_count);
for (int i = 0; i < Track::k_count; i++) {
// Create track input
QString track_input_id = k_track_input_format.arg(i);
add_input(track_input_id, NodeValue::k_none,
InputFlags(k_input_flag_not_keyframable | k_input_flag_array |
k_input_flag_hidden | k_input_flag_ignore_invalidations));
TrackList *list =
new TrackList(this, static_cast<Track::Type>(i), track_input_id);
track_lists_.replace(i, list);
connect(list, &TrackList::track_list_changed, this,
&Sequence::update_track_cache);
connect(list, &TrackList::length_changed, this, &Sequence::verify_length);
connect(list, &TrackList::track_added, this, &Sequence::track_added);
connect(list, &TrackList::track_removed, this, &Sequence::track_removed);
}
}
void Sequence::add_default_nodes(MultiUndoCommand *command)
{
// Create tracks and connect them to the viewer
UndoCommand *video_track_command =
new TimelineAddTrackCommand(track_list(Track::k_video));
UndoCommand *audio_track_command =
new TimelineAddTrackCommand(track_list(Track::k_audio));
if (command) {
command->add_child(video_track_command);
command->add_child(audio_track_command);
} else {
video_track_command->redo_now();
audio_track_command->redo_now();
delete video_track_command;
delete audio_track_command;
}
}
QVariant Sequence::data(const DataType &d) const
{
if (d == icon) {
return icon::sequence;
}
return super::data(d);
}
QVector<Track *> Sequence::get_unlocked_tracks() const
{
QVector<Track *> tracks = get_tracks();
for (int i = 0; i < tracks.size(); i++) {
if (tracks.at(i)->is_locked()) {
tracks.removeAt(i);
i--;
}
}
return tracks;
}
void Sequence::retranslate()
{
super::retranslate();
for (int i = 0; i < Track::k_count; i++) {
QString input_name;
switch (static_cast<Track::Type>(i)) {
case Track::k_video:
input_name = tr("Video Tracks");
break;
case Track::k_audio:
input_name = tr("Audio Tracks");
break;
case Track::k_subtitle:
input_name = tr("Subtitle Tracks");
break;
case Track::k_none:
case Track::k_count:
break;
}
if (!input_name.isEmpty()) {
set_input_name(k_track_input_format.arg(i), input_name);
}
}
}
void Sequence::invalidate_cache(const TimeRange &range, const QString &from,
int element, InvalidateCacheOptions options)
{
if (from == k_track_input_format.arg(Track::k_subtitle)) {
emit subtitles_changed(range);
}
super::invalidate_cache(range, from, element, options);
}
Rational Sequence::verify_length_internal(Track::Type type) const
{
if (!track_lists_.isEmpty()) {
switch (type) {
case Track::k_video:
return track_lists_.at(Track::k_video)->get_total_length();
case Track::k_audio:
return track_lists_.at(Track::k_audio)->get_total_length();
case Track::k_subtitle:
return track_lists_.at(Track::k_subtitle)->get_total_length();
case Track::k_none:
case Track::k_count:
break;
}
}
return 0;
}
void Sequence::InputConnectedEvent(const QString &input, int element,
Node *output)
{
foreach (TrackList *list, track_lists_) {
if (list->track_input() == input) {
// Return because we found our input
list->track_connected(output, element);
return;
}
}
super::InputConnectedEvent(input, element, output);
}
void Sequence::InputDisconnectedEvent(const QString &input, int element,
Node *output)
{
foreach (TrackList *list, track_lists_) {
if (list->track_input() == input) {
// Return because we found our input
list->track_disconnected(output, element);
return;
}
}
super::InputDisconnectedEvent(input, element, output);
}
void Sequence::update_track_cache()
{
track_cache_.clear();
foreach (TrackList *list, track_lists_) {
foreach (Track *track, list->get_tracks()) {
track_cache_.append(track);
}
}
}
}