Files
oak-editor/app/node/output/timeline/timeline.cpp
T
itsmattkc 351d4a246e use NodeInputArray for tracks as well
These were introduced for the new Block system and make just as much sense for
the Track system. They've now been implemented for both.
2019-12-06 20:34:19 +11:00

199 lines
4.9 KiB
C++

/***
Olive - Non-Linear Video Editor
Copyright (C) 2019 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 "timeline.h"
#include <QDebug>
#include "node/block/gap/gap.h"
#include "node/graph.h"
#include "panel/timeline/timeline.h"
TimelineOutput::TimelineOutput()
{
// Create TrackList instances
track_inputs_.resize(kTrackTypeCount);
track_lists_.resize(kTrackTypeCount);
for (int i=0;i<kTrackTypeCount;i++) {
// Create track input
NodeInputArray* track_input = new NodeInputArray(QStringLiteral("track_in_%1").arg(i));
AddInput(track_input);
track_inputs_.replace(i, track_input);
TrackList* list = new TrackList(this, static_cast<TrackType>(i), track_input);
track_lists_.replace(i, list);
connect(list, SIGNAL(TrackListChanged()), this, SLOT(UpdateTrackCache()));
connect(list, SIGNAL(LengthChanged(const rational &)), this, SLOT(UpdateLength(const rational &)));
connect(list, SIGNAL(BlockAdded(Block*, int)), this, SLOT(TrackListAddedBlock(Block*, int)));
connect(list, SIGNAL(BlockRemoved(Block*)), this, SIGNAL(BlockRemoved(Block*)));
connect(list, SIGNAL(TrackAdded(TrackOutput*)), this, SLOT(TrackListAddedTrack(TrackOutput*)));
connect(list, SIGNAL(TrackRemoved(TrackOutput*)), this, SIGNAL(TrackRemoved(TrackOutput*)));
}
}
Node *TimelineOutput::copy() const
{
return new TimelineOutput();
}
QString TimelineOutput::Name() const
{
return tr("Timeline");
}
QString TimelineOutput::id() const
{
return "org.olivevideoeditor.Olive.timeline";
}
QString TimelineOutput::Category() const
{
return tr("Output");
}
QString TimelineOutput::Description() const
{
return tr("Node for communicating between a Timeline panel and the node graph.");
}
const rational &TimelineOutput::length() const
{
return length_;
}
const QVector<TrackOutput *>& TimelineOutput::Tracks() const
{
return track_cache_;
}
const rational &TimelineOutput::timeline_length() const
{
return length_;
}
const rational &TimelineOutput::timebase() const
{
return timebase_;
}
NodeValueTable TimelineOutput::Value(const NodeValueDatabase &value) const
{
NodeValueTable table = value.Merge();
table.Push(NodeParam::kRational, QVariant::fromValue(length()));
return table;
}
void TimelineOutput::UpdateTrackCache()
{
track_cache_.clear();
foreach (TrackList* list, track_lists_) {
QVector<TrackOutput*> track_list = list->Tracks();
foreach (TrackOutput* track, track_list) {
if (track) {
track_cache_.append(list->Tracks());
}
}
}
}
void TimelineOutput::UpdateLength(const rational &length)
{
// If this length is equal, no-op
if (length == length_) {
return;
}
// If this length is greater, this must be the new total length
if (length > length_) {
length_ = length;
emit LengthChanged(length_);
return;
}
// Otherwise, the new length is shorter and we'll have to manually determine what the new max length is
rational new_length = 0;
foreach (TrackList* list, track_lists_) {
new_length = qMax(new_length, list->TrackLength());
}
if (new_length != length_) {
length_ = new_length;
emit LengthChanged(length_);
}
}
void TimelineOutput::SetTimebase(const rational &timebase)
{
timebase_ = timebase;
emit TimebaseChanged(timebase_);
}
void TimelineOutput::Retranslate()
{
for (int i=0;i<track_inputs_.size();i++) {
QString input_name;
switch (static_cast<TrackType>(i)) {
case kTrackTypeVideo:
input_name = tr("Video Tracks");
break;
case kTrackTypeAudio:
input_name = tr("Audio Tracks");
break;
case kTrackTypeSubtitle:
input_name = tr("Subtitle Tracks");
break;
case kTrackTypeNone:
case kTrackTypeCount:
break;
}
if (!input_name.isEmpty())
track_inputs_.at(i)->set_name(input_name);
}
}
NodeInput *TimelineOutput::track_input(TrackType type) const
{
return track_inputs_.at(type);
}
TrackList *TimelineOutput::track_list(TrackType type) const
{
return track_lists_.at(type);
}
void TimelineOutput::TrackListAddedBlock(Block *block, int index)
{
TrackType type = static_cast<TrackList*>(sender())->TrackType();
emit BlockAdded(block, TrackReference(type, index));
}
void TimelineOutput::TrackListAddedTrack(TrackOutput *track)
{
TrackType type = static_cast<TrackList*>(sender())->TrackType();
emit TrackAdded(track, type);
}