Files
oak-editor/app/widget/timelinewidget/tool/transition.cpp
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itsmattkc d7c5ac4b44 implement entire project in nodes
Project items are now represented directly in nodes opening up more versatility and possibilities. This is the first iteration of this and will be buggy. Need to test thoroughly.
2021-02-15 21:31:57 +11:00

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6.3 KiB
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/***
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 "widget/timelinewidget/timelinewidget.h"
#include "node/block/transition/crossdissolve/crossdissolvetransition.h"
#include "node/block/transition/transition.h"
#include "node/factory.h"
#include "transition.h"
#include "widget/nodeview/nodeviewundo.h"
#include "widget/timelinewidget/timelineundo.h"
namespace olive {
TransitionTool::TransitionTool(TimelineWidget *parent) :
AddTool(parent)
{
}
void TransitionTool::MousePress(TimelineViewMouseEvent *event)
{
const Track::Reference& track = event->GetTrack();
Track* t = parent()->GetTrackFromReference(track);
rational cursor_frame = event->GetFrame();
if (!t || t->IsLocked()) {
return;
}
Block* block_at_time = t->BlockAtTime(event->GetFrame());
if (!block_at_time || block_at_time->type() != Block::kClip) {
return;
}
// Determine which side of the clip the transition belongs to
rational transition_start_point;
Timeline::MovementMode trim_mode;
rational halfway_point = block_at_time->in() + block_at_time->length() / 2;
rational tenth_point = block_at_time->in() + block_at_time->length() / 10;
Block* other_block = nullptr;
if (cursor_frame < halfway_point) {
transition_start_point = block_at_time->in();
trim_mode = Timeline::kTrimIn;
if (cursor_frame < tenth_point
&& block_at_time->previous()
&& block_at_time->previous()->type() == Block::kClip) {
other_block = block_at_time->previous();
}
} else {
transition_start_point = block_at_time->out();
trim_mode = Timeline::kTrimOut;
dual_transition_ = (cursor_frame > block_at_time->length() - tenth_point);
if (cursor_frame > block_at_time->length() - tenth_point
&& block_at_time->next()
&& block_at_time->next()->type() == Block::kClip) {
other_block = block_at_time->next();
}
}
// Create ghost
ghost_ = new TimelineViewGhostItem();
ghost_->SetTrack(track);
ghost_->SetIn(transition_start_point);
ghost_->SetOut(transition_start_point);
ghost_->SetMode(trim_mode);
ghost_->SetData(TimelineViewGhostItem::kAttachedBlock, Node::PtrToValue(block_at_time));
dual_transition_ = (other_block);
if (other_block)
ghost_->SetData(TimelineViewGhostItem::kReferenceBlock, Node::PtrToValue(other_block));
parent()->AddGhost(ghost_);
snap_points_.append(transition_start_point);
// Set the drag start point
drag_start_point_ = cursor_frame;
}
void TransitionTool::MouseMove(TimelineViewMouseEvent *event)
{
if (!ghost_) {
return;
}
MouseMoveInternal(event->GetFrame(), dual_transition_);
}
void TransitionTool::MouseRelease(TimelineViewMouseEvent *event)
{
const Track::Reference& track = ghost_->GetTrack();
if (ghost_) {
if (!ghost_->GetAdjustedLength().isNull()) {
TransitionBlock* transition;
if (Core::instance()->GetSelectedTransition().isEmpty()) {
// Fallback if the user hasn't selected one yet
transition = new CrossDissolveTransition();
} else {
transition = static_cast<TransitionBlock*>(NodeFactory::CreateFromID(Core::instance()->GetSelectedTransition()));
}
MultiUndoCommand* command = new MultiUndoCommand();
// Place transition in place
command->add_child(new NodeAddCommand(static_cast<NodeGraph*>(parent()->GetConnectedNode()->parent()),
transition));
command->add_child(new TrackPlaceBlockCommand(sequence()->track_list(track.type()),
track.index(),
transition,
ghost_->GetAdjustedIn()));
if (dual_transition_) {
transition->set_length_and_media_out(ghost_->GetAdjustedLength());
transition->set_media_in(-ghost_->GetAdjustedLength()/2);
// Block mouse is hovering over
Block* active_block = Node::ValueToPtr<Block>(ghost_->GetData(TimelineViewGhostItem::kAttachedBlock));
// Block mouse is next to
Block* friend_block = Node::ValueToPtr<Block>(ghost_->GetData(TimelineViewGhostItem::kReferenceBlock));
// Use ghost mode to determine which block is which
Block* out_block = (ghost_->GetMode() == Timeline::kTrimIn) ? friend_block : active_block;
Block* in_block = (ghost_->GetMode() == Timeline::kTrimIn) ? active_block : friend_block;
// Connect block to transition
command->add_child(new NodeEdgeAddCommand(out_block,
NodeInput(transition, TransitionBlock::kOutBlockInput)));
command->add_child(new NodeEdgeAddCommand(in_block,
NodeInput(transition, TransitionBlock::kInBlockInput)));
} else {
Block* block_to_transition = Node::ValueToPtr<Block>(ghost_->GetData(TimelineViewGhostItem::kAttachedBlock));
QString transition_input_to_connect;
if (ghost_->GetMode() == Timeline::kTrimIn) {
transition->set_length_and_media_out(ghost_->GetAdjustedLength());
transition_input_to_connect = TransitionBlock::kInBlockInput;
} else {
transition->set_length_and_media_out(ghost_->GetAdjustedLength());
transition_input_to_connect = TransitionBlock::kOutBlockInput;
}
// Connect block to transition
command->add_child(new NodeEdgeAddCommand(block_to_transition,
NodeInput(transition, transition_input_to_connect)));
}
Core::instance()->undo_stack()->push(command);
}
parent()->ClearGhosts();
snap_points_.clear();
ghost_ = nullptr;
}
}
}