Files
oak-editor/app/node/output/track/tracklist.cpp
T
itsmattkc 75d4cd899b use hardcoded namespace
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 ;) )
2020-11-17 20:24:42 +11:00

278 lines
7.4 KiB
C++

/***
Olive - Non-Linear Video Editor
Copyright (C) 2020 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 "tracklist.h"
#include "node/factory.h"
#include "node/math/math/math.h"
#include "node/math/merge/merge.h"
#include "node/output/viewer/viewer.h"
namespace olive {
TrackList::TrackList(ViewerOutput *parent, const Timeline::TrackType &type, NodeInputArray *track_input) :
QObject(parent),
track_input_(track_input),
type_(type)
{
connect(track_input_, &NodeInputArray::SubParamEdgeAdded, this, &TrackList::TrackConnected);
connect(track_input_, &NodeInputArray::SubParamEdgeRemoved, this, &TrackList::TrackDisconnected);
}
const Timeline::TrackType &TrackList::type() const
{
return type_;
}
void TrackList::TrackAddedBlock(Block *block)
{
emit BlockAdded(block, static_cast<TrackOutput*>(sender())->Index());
}
void TrackList::TrackRemovedBlock(Block *block)
{
emit BlockRemoved(block);
}
const QVector<TrackOutput *> &TrackList::GetTracks() const
{
return track_cache_;
}
TrackOutput *TrackList::GetTrackAt(int index) const
{
if (index < track_cache_.size()) {
return track_cache_.at(index);
} else {
return nullptr;
}
}
const rational &TrackList::GetTotalLength() const
{
return total_length_;
}
int TrackList::GetTrackCount() const
{
return track_cache_.size();
}
TrackOutput* TrackList::AddTrack()
{
TrackOutput* track = new TrackOutput();
GetParentGraph()->AddNode(track);
track_input_->Append();
// Connect this track directly to this output
NodeParam::ConnectEdge(track->output(),
track_input_->At(track_input_->GetSize() - 1));
// Auto-merge with previous track
if (track_input_->GetSize() > 1) {
TrackOutput* last_track = nullptr;
for (int i=track_cache_.size()-1;i>=0;i--) {
TrackOutput* test_track = track_cache_.at(i);
if (test_track && test_track != track) {
last_track = test_track;
break;
}
}
if (last_track && last_track->output()->is_connected()) {
foreach (NodeEdgePtr edge, last_track->output()->edges()) {
if (!track_input_->ContainsSubParameter(edge->input())) {
switch (type_) {
case Timeline::kTrackTypeVideo:
{
MergeNode* blend = new MergeNode();
GetParentGraph()->AddNode(blend);
NodeParam::ConnectEdge(track->output(), blend->blend_in());
NodeParam::ConnectEdge(last_track->output(), blend->base_in());
NodeParam::ConnectEdge(blend->output(), edge->input());
break;
}
case Timeline::kTrackTypeAudio:
{
MathNode* add = new MathNode();
GetParentGraph()->AddNode(add);
NodeParam::ConnectEdge(track->output(), add->param_a_in());
NodeParam::ConnectEdge(last_track->output(), add->param_b_in());
NodeParam::ConnectEdge(add->output(), edge->input());
break;
}
default:
break;
}
}
}
}
}
return track;
}
void TrackList::RemoveTrack(QObject* new_parent)
{
if (track_cache_.isEmpty()) {
return;
}
TrackOutput* track = track_cache_.last();
GetParentGraph()->TakeNode(track);
if (!new_parent) {
delete track;
} else {
track->setParent(new_parent);
}
track_input_->RemoveLast();
}
void TrackList::TrackConnected(NodeEdgePtr edge)
{
int input_index = track_input_->IndexOfSubParameter(edge->input());
Q_ASSERT(input_index >= 0);
Node* connected_node = edge->output()->parentNode();
if (connected_node->IsTrack()) {
TrackOutput* connected_track = static_cast<TrackOutput*>(connected_node);
{
// Find "real" index
TrackOutput* next = nullptr;
for (int i=input_index+1; i<track_input_->GetSize(); i++) {
Node* that_track = track_input_->At(i)->get_connected_node();
if (that_track && that_track->IsTrack()) {
next = static_cast<TrackOutput*>(that_track);
break;
}
}
int track_index;
if (next) {
// Insert track before "next"
track_index = track_cache_.indexOf(next);
track_cache_.insert(track_index, connected_track);
} else {
// No "next", this track must come at the end
track_index = track_cache_.size();
track_cache_.append(connected_track);
}
// Update track indexes in the list (including this track)
UpdateTrackIndexesFrom(track_index);
}
connect(connected_track, &TrackOutput::BlockAdded, this, &TrackList::TrackAddedBlock);
connect(connected_track, &TrackOutput::BlockRemoved, this, &TrackList::TrackRemovedBlock);
connect(connected_track, &TrackOutput::TrackLengthChanged, this, &TrackList::UpdateTotalLength);
connect(connected_track, &TrackOutput::TrackHeightChangedInPixels, this, &TrackList::TrackHeightChangedSlot);
connected_track->set_track_type(type_);
emit TrackListChanged();
// This function must be called after the track is added to track_cache_, since it uses track_cache_ to determine
// the track's index
emit TrackAdded(connected_track);
UpdateTotalLength();
}
}
void TrackList::TrackDisconnected(NodeEdgePtr edge)
{
int track_index = track_input_->IndexOfSubParameter(edge->input());
Q_ASSERT(track_index >= 0);
Node* connected_node = edge->output()->parentNode();
if (connected_node->IsTrack()) {
TrackOutput* track = static_cast<TrackOutput*>(connected_node);
int index_of_track = track_cache_.indexOf(track);
track_cache_.removeAt(index_of_track);
// Update indices for all subsequent tracks
UpdateTrackIndexesFrom(index_of_track);
// Traverse through Tracks uncaching and disconnecting them
emit TrackRemoved(track);
track->SetIndex(-1);
track->set_track_type(Timeline::kTrackTypeNone);
disconnect(track, &TrackOutput::BlockAdded, this, &TrackList::TrackAddedBlock);
disconnect(track, &TrackOutput::BlockRemoved, this, &TrackList::TrackRemovedBlock);
disconnect(track, &TrackOutput::TrackLengthChanged, this, &TrackList::UpdateTotalLength);
disconnect(track, &TrackOutput::TrackHeightChangedInPixels, this, &TrackList::TrackHeightChangedSlot);
emit TrackListChanged();
UpdateTotalLength();
}
}
void TrackList::UpdateTrackIndexesFrom(int index)
{
for (int i=index; i<track_cache_.size(); i++) {
track_cache_.at(i)->SetIndex(i);
}
}
NodeGraph *TrackList::GetParentGraph() const
{
return static_cast<NodeGraph*>(parent()->parent());
}
void TrackList::UpdateTotalLength()
{
total_length_ = 0;
foreach (TrackOutput* track, track_cache_) {
if (track) {
total_length_ = qMax(total_length_, track->track_length());
}
}
emit LengthChanged(total_length_);
}
void TrackList::TrackHeightChangedSlot(int height)
{
emit TrackHeightChanged(static_cast<TrackOutput*>(sender())->Index(), height);
}
}