Files
oak-editor/app/node/output/viewer/viewer.cpp
T
itsmattkc ec8b046f02 viewer: implemented basic deinterlace
Implements a very basic GLSL deinterlace that simply halves the vertical
resolution and then interpolates between the fields. This can be toggled
on or off.

The reasons for being so basic is:
- Speed, very quick code running in OpenGL
- It would seem the highest quality deinterlacers are temporally based
  which doesn't make much sense for the viewer, particularly since we can't
  double the frame rate since our timecode is fixed to the frames.

Higher quality interlacing/deinterlacing will be present in the actual
renderer.
2020-08-11 02:02:50 +10:00

305 lines
8.2 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 "viewer.h"
#include "node/traverser.h"
OLIVE_NAMESPACE_ENTER
ViewerOutput::ViewerOutput() :
video_frame_cache_(this),
audio_playback_cache_(this),
operation_stack_(0)
{
texture_input_ = new NodeInput("tex_in", NodeInput::kTexture);
AddInput(texture_input_);
samples_input_ = new NodeInput("samples_in", NodeInput::kSamples);
AddInput(samples_input_);
// Create TrackList instances
track_inputs_.resize(Timeline::kTrackTypeCount);
track_lists_.resize(Timeline::kTrackTypeCount);
for (int i=0;i<Timeline::kTrackTypeCount;i++) {
// Create track input
NodeInputArray* track_input = new NodeInputArray(QStringLiteral("track_in_%1").arg(i), NodeParam::kAny);
AddInput(track_input);
disconnect(track_input, &NodeInputArray::SubParamEdgeAdded, this, &ViewerOutput::InputConnectionChanged);
disconnect(track_input, &NodeInputArray::SubParamEdgeRemoved, this, &ViewerOutput::InputConnectionChanged);
track_inputs_.replace(i, track_input);
TrackList* list = new TrackList(this, static_cast<Timeline::TrackType>(i), track_input);
track_lists_.replace(i, list);
connect(list, &TrackList::TrackListChanged, this, &ViewerOutput::UpdateTrackCache);
connect(list, &TrackList::LengthChanged, this, &ViewerOutput::VerifyLength);
connect(list, &TrackList::BlockAdded, this, &ViewerOutput::TrackListAddedBlock);
connect(list, &TrackList::BlockRemoved, this, &ViewerOutput::BlockRemoved);
connect(list, &TrackList::TrackAdded, this, &ViewerOutput::TrackListAddedTrack);
connect(list, &TrackList::TrackRemoved, this, &ViewerOutput::TrackRemoved);
connect(list, &TrackList::TrackHeightChanged, this, &ViewerOutput::TrackHeightChangedSlot);
}
// Create UUID for this node
uuid_ = QUuid::createUuid();
}
Node *ViewerOutput::copy() const
{
return new ViewerOutput();
}
QString ViewerOutput::Name() const
{
return tr("Viewer");
}
QString ViewerOutput::id() const
{
return QStringLiteral("org.olivevideoeditor.Olive.vieweroutput");
}
QList<Node::CategoryID> ViewerOutput::Category() const
{
return {kCategoryOutput};
}
QString ViewerOutput::Description() const
{
return tr("Interface between a Viewer panel and the node system.");
}
void ViewerOutput::ShiftVideoCache(const rational &from, const rational &to)
{
video_frame_cache_.Shift(from, to);
}
void ViewerOutput::ShiftAudioCache(const rational &from, const rational &to)
{
audio_playback_cache_.Shift(from, to);
foreach (TrackOutput* track, track_lists_.at(Timeline::kTrackTypeAudio)->GetTracks()) {
QMutexLocker locker(track->waveform_lock());
track->waveform().Shift(from, to);
}
}
void ViewerOutput::ShiftCache(const rational &from, const rational &to)
{
ShiftVideoCache(from, to);
ShiftAudioCache(from, to);
}
void ViewerOutput::InvalidateCache(const TimeRange &range, NodeInput *from, NodeInput *source)
{
emit GraphChangedFrom(source);
if (operation_stack_ == 0) {
if (from == texture_input_ || from == samples_input_) {
TimeRange invalidated_range(qMax(rational(), range.in()),
qMin(GetLength(), range.out()));
if (invalidated_range.in() != invalidated_range.out()) {
if (from == texture_input_) {
video_frame_cache_.Invalidate(invalidated_range);
} else {
audio_playback_cache_.Invalidate(invalidated_range);
}
}
}
VerifyLength();
}
Node::InvalidateCache(range, from, source);
}
void ViewerOutput::set_video_params(const VideoParams &video)
{
bool size_changed = video_params_.width() != video.width() || video_params_.height() != video.height();
bool timebase_changed = video_params_.time_base() != video.time_base();
bool pixel_aspect_changed = video_params_.pixel_aspect_ratio() != video.pixel_aspect_ratio();
bool interlacing_changed = video_params_.interlacing() != video.interlacing();
video_params_ = video;
if (size_changed) {
emit SizeChanged(video_params_.width(), video_params_.height());
}
if (pixel_aspect_changed) {
emit PixelAspectChanged(video_params_.pixel_aspect_ratio());
}
if (interlacing_changed) {
emit InterlacingChanged(video_params_.interlacing());
}
if (timebase_changed) {
video_frame_cache_.SetTimebase(video_params_.time_base());
emit TimebaseChanged(video_params_.time_base());
}
emit VideoParamsChanged();
}
void ViewerOutput::set_audio_params(const AudioParams &audio)
{
audio_params_ = audio;
emit AudioParamsChanged();
}
rational ViewerOutput::GetLength()
{
return last_length_;
}
QVector<TrackOutput *> ViewerOutput::GetUnlockedTracks() const
{
QVector<TrackOutput*> tracks = GetTracks();
for (int i=0;i<tracks.size();i++) {
if (tracks.at(i)->IsLocked()) {
tracks.removeAt(i);
i--;
}
}
return tracks;
}
void ViewerOutput::UpdateTrackCache()
{
track_cache_.clear();
foreach (TrackList* list, track_lists_) {
foreach (TrackOutput* track, list->GetTracks()) {
track_cache_.append(track);
}
}
}
void ViewerOutput::VerifyLength()
{
NodeTraverser traverser;
rational video_length;
if (texture_input_->is_connected()) {
NodeValueTable t = traverser.GenerateTable(texture_input_->get_connected_node(), 0, 0);
video_length = t.Get(NodeParam::kNumber, "length").value<rational>();
}
rational audio_length;
if (samples_input_->is_connected()) {
NodeValueTable t = traverser.GenerateTable(samples_input_->get_connected_node(), 0, 0);
audio_length = t.Get(NodeParam::kNumber, "length").value<rational>();
}
video_length = qMax(video_length, track_lists_.at(Timeline::kTrackTypeVideo)->GetTotalLength());
audio_length = qMax(audio_length, track_lists_.at(Timeline::kTrackTypeAudio)->GetTotalLength());
rational subtitle_length = track_lists_.at(Timeline::kTrackTypeSubtitle)->GetTotalLength();
video_frame_cache_.SetLength(video_length);
audio_playback_cache_.SetLength(audio_length);
rational real_length = qMax(subtitle_length, qMax(video_length, audio_length));
if (real_length != last_length_) {
last_length_ = real_length;
emit LengthChanged(last_length_);
}
}
void ViewerOutput::Retranslate()
{
Node::Retranslate();
texture_input_->set_name(tr("Texture"));
samples_input_->set_name(tr("Samples"));
for (int i=0;i<track_inputs_.size();i++) {
QString input_name;
switch (static_cast<Timeline::TrackType>(i)) {
case Timeline::kTrackTypeVideo:
input_name = tr("Video Tracks");
break;
case Timeline::kTrackTypeAudio:
input_name = tr("Audio Tracks");
break;
case Timeline::kTrackTypeSubtitle:
input_name = tr("Subtitle Tracks");
break;
case Timeline::kTrackTypeNone:
case Timeline::kTrackTypeCount:
break;
}
if (!input_name.isEmpty()) {
track_inputs_.at(i)->set_name(input_name);
}
}
}
void ViewerOutput::set_media_name(const QString &name)
{
media_name_ = name;
emit MediaNameChanged(media_name_);
}
void ViewerOutput::BeginOperation()
{
operation_stack_++;
Node::BeginOperation();
}
void ViewerOutput::EndOperation()
{
operation_stack_--;
Node::EndOperation();
}
void ViewerOutput::TrackListAddedBlock(Block *block, int index)
{
Timeline::TrackType type = static_cast<TrackList*>(sender())->type();
emit BlockAdded(block, TrackReference(type, index));
}
void ViewerOutput::TrackListAddedTrack(TrackOutput *track)
{
Timeline::TrackType type = static_cast<TrackList*>(sender())->type();
emit TrackAdded(track, type);
}
void ViewerOutput::TrackHeightChangedSlot(int index, int height)
{
emit TrackHeightChanged(static_cast<TrackList*>(sender())->type(), index, height);
}
OLIVE_NAMESPACE_EXIT