Files
oak-editor/app/widget/timelinewidget/timelinewidget.cpp
T
itsmattkc d99a8e9005 timeline: refactored "replace with gap" command fixed bug
Fixes an unfortunate bug that restored blocks in the wrong order and leads
to a segfault if you continue undoing beyond that point.
2020-08-20 13:40:58 +10:00

1573 lines
45 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 "timelinewidget.h"
#include <cfloat>
#include <QSplitter>
#include <QVBoxLayout>
#include <QtMath>
#include "core.h"
#include "common/range.h"
#include "common/timecodefunctions.h"
#include "dialog/sequence/sequence.h"
#include "node/block/transition/transition.h"
#include "tool/tool.h"
#include "trackview/trackview.h"
#include "widget/menu/menu.h"
#include "widget/menu/menushared.h"
#include "widget/nodeview/nodeviewundo.h"
OLIVE_NAMESPACE_ENTER
TimelineWidget::TimelineWidget(QWidget *parent) :
TimeBasedWidget(true, true, parent),
rubberband_(QRubberBand::Rectangle, this),
active_tool_(nullptr),
use_audio_time_units_(false)
{
QVBoxLayout* vert_layout = new QVBoxLayout(this);
vert_layout->setSpacing(0);
vert_layout->setMargin(0);
QHBoxLayout* ruler_and_time_layout = new QHBoxLayout();
vert_layout->addLayout(ruler_and_time_layout);
timecode_label_ = new TimeSlider();
timecode_label_->SetAlignment(Qt::AlignCenter);
timecode_label_->setVisible(false);
connect(timecode_label_, &TimeSlider::ValueChanged, this, &TimelineWidget::SetTimeAndSignal);
ruler_and_time_layout->addWidget(timecode_label_);
ruler_and_time_layout->addWidget(ruler());
ruler()->SetSnapService(this);
// Create list of TimelineViews - these MUST correspond to the ViewType enum
view_splitter_ = new QSplitter(Qt::Vertical);
view_splitter_->setChildrenCollapsible(false);
vert_layout->addWidget(view_splitter_);
// Video view
views_.append(new TimelineAndTrackView(Qt::AlignBottom));
// Audio view
views_.append(new TimelineAndTrackView(Qt::AlignTop));
// Create tools
tools_.resize(OLIVE_NAMESPACE::Tool::kCount);
tools_.fill(nullptr);
tools_.replace(OLIVE_NAMESPACE::Tool::kPointer, new PointerTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kEdit, new EditTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kRipple, new RippleTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kRolling, new RollingTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kRazor, new RazorTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kSlip, new SlipTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kSlide, new SlideTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kZoom, new ZoomTool(this));
tools_.replace(OLIVE_NAMESPACE::Tool::kTransition, new TransitionTool(this));
//tools_.replace(OLIVE_NAMESPACE::Tool::kRecord, new PointerTool(this)); FIXME: Implement
tools_.replace(OLIVE_NAMESPACE::Tool::kAdd, new AddTool(this));
import_tool_ = new ImportTool(this);
// We add this to the list to make deleting all tools easier, it should never get accessed through the list under
// normal circumstances (but *technically* its index would be Tool::kCount)
tools_.append(import_tool_);
// Global scrollbar
connect(scrollbar(), &QScrollBar::valueChanged, ruler(), &TimeRuler::SetScroll);
connect(views_.first()->view()->horizontalScrollBar(), &QScrollBar::rangeChanged, scrollbar(), &QScrollBar::setRange);
vert_layout->addWidget(scrollbar());
connect(ruler(), &TimeRuler::TimeChanged, this, &TimelineWidget::SetViewTimestamp);
foreach (TimelineAndTrackView* tview, views_) {
TimelineView* view = tview->view();
view->setHorizontalScrollBarPolicy(Qt::ScrollBarAlwaysOff);
view->setVerticalScrollBarPolicy(Qt::ScrollBarAlwaysOn);
view->SetSnapService(this);
view_splitter_->addWidget(tview);
ConnectTimelineView(view);
connect(view->horizontalScrollBar(), &QScrollBar::valueChanged, ruler(), &TimeRuler::SetScroll);
connect(view, &TimelineView::ScaleChanged, this, &TimelineWidget::SetScale);
connect(view, &TimelineView::TimeChanged, this, &TimelineWidget::ViewTimestampChanged);
connect(view, &TimelineView::customContextMenuRequested, this, &TimelineWidget::ShowContextMenu);
connect(scrollbar(), &QScrollBar::valueChanged, view->horizontalScrollBar(), &QScrollBar::setValue);
connect(view->horizontalScrollBar(), &QScrollBar::valueChanged, scrollbar(), &QScrollBar::setValue);
connect(view, &TimelineView::RequestCenterScrollOnPlayhead, this, &TimelineWidget::CenterScrollOnPlayhead);
connect(view, &TimelineView::MousePressed, this, &TimelineWidget::ViewMousePressed);
connect(view, &TimelineView::MouseMoved, this, &TimelineWidget::ViewMouseMoved);
connect(view, &TimelineView::MouseReleased, this, &TimelineWidget::ViewMouseReleased);
connect(view, &TimelineView::MouseDoubleClicked, this, &TimelineWidget::ViewMouseDoubleClicked);
connect(view, &TimelineView::DragEntered, this, &TimelineWidget::ViewDragEntered);
connect(view, &TimelineView::DragMoved, this, &TimelineWidget::ViewDragMoved);
connect(view, &TimelineView::DragLeft, this, &TimelineWidget::ViewDragLeft);
connect(view, &TimelineView::DragDropped, this, &TimelineWidget::ViewDragDropped);
connect(tview->splitter(), &QSplitter::splitterMoved, this, &TimelineWidget::UpdateHorizontalSplitters);
// Connect each view's scroll to each other
foreach (TimelineAndTrackView* other_tview, views_) {
TimelineView* other_view = other_tview->view();
if (view != other_view) {
connect(view->horizontalScrollBar(), &QScrollBar::valueChanged, other_view->horizontalScrollBar(), &QScrollBar::setValue);
}
}
}
// Split viewer 50/50
view_splitter_->setSizes({INT_MAX, INT_MAX});
// FIXME: Magic number
SetScale(90.0);
SetMaximumScale(TimelineViewBase::kMaximumScale);
SetAutoSetTimebase(false);
}
TimelineWidget::~TimelineWidget()
{
// Ensure no blocks are selected before any child widgets are destroyed (prevents corrupt ViewSelectionChanged() signal)
Clear();
qDeleteAll(tools_);
}
void TimelineWidget::Clear()
{
QList<Block*> deselected_blocks;
QMap<Block*, TimelineViewBlockItem*>::const_iterator iterator;
for (iterator=block_items_.begin(); iterator!=block_items_.end(); iterator++) {
if (iterator.value()->isSelected()) {
deselected_blocks.append(iterator.key());
}
delete iterator.value();
}
block_items_.clear();
emit BlocksDeselected(deselected_blocks);
SetTimebase(0);
}
void TimelineWidget::TimebaseChangedEvent(const rational &timebase)
{
TimeBasedWidget::TimebaseChangedEvent(timebase);
timecode_label_->SetTimebase(timebase);
timecode_label_->setVisible(!timebase.isNull());
QMap<Block*, TimelineViewBlockItem*>::const_iterator iterator;
for (iterator=block_items_.begin();iterator!=block_items_.end();iterator++) {
if (iterator.value()) {
iterator.value()->SetTimebase(timebase);
}
}
UpdateViewTimebases();
}
void TimelineWidget::resizeEvent(QResizeEvent *event)
{
TimeBasedWidget::resizeEvent(event);
// Update timecode label size
UpdateTimecodeWidthFromSplitters(views_.first()->splitter());
}
void TimelineWidget::TimeChangedEvent(const int64_t& timestamp)
{
SetViewTimestamp(timestamp);
timecode_label_->SetValue(timestamp);
}
void TimelineWidget::ScaleChangedEvent(const double &scale)
{
TimeBasedWidget::ScaleChangedEvent(scale);
QMap<Block*, TimelineViewBlockItem*>::const_iterator iterator;
for (iterator=block_items_.begin();iterator!=block_items_.end();iterator++) {
if (iterator.value()) {
iterator.value()->SetScale(scale);
}
}
foreach (TimelineViewGhostItem* ghost, ghost_items_) {
ghost->SetScale(scale);
}
foreach (TimelineAndTrackView* view, views_) {
view->view()->SetScale(scale);
}
}
void TimelineWidget::ConnectNodeInternal(ViewerOutput *n)
{
connect(n, &ViewerOutput::BlockAdded, this, &TimelineWidget::AddBlock);
connect(n, &ViewerOutput::BlockRemoved, this, &TimelineWidget::RemoveBlock);
connect(n, &ViewerOutput::TrackAdded, this, &TimelineWidget::AddTrack);
connect(n, &ViewerOutput::TrackRemoved, this, &TimelineWidget::RemoveTrack);
connect(n, &ViewerOutput::TimebaseChanged, this, &TimelineWidget::SetTimebase);
connect(n, &ViewerOutput::TrackHeightChanged, this, &TimelineWidget::TrackHeightChanged);
ruler()->SetPlaybackCache(n->video_frame_cache());
SetTimebase(n->video_params().time_base());
for (int i=0;i<views_.size();i++) {
Timeline::TrackType track_type = static_cast<Timeline::TrackType>(i);
TimelineView* view = views_.at(i)->view();
TrackList* track_list = n->track_list(track_type);
TrackView* track_view = views_.at(i)->track_view();
track_view->ConnectTrackList(track_list);
view->ConnectTrackList(track_list);
// Defer to the track to make all the block UI items necessary
foreach (TrackOutput* track, n->track_list(track_type)->GetTracks()) {
AddTrack(track, track_type);
}
}
}
void TimelineWidget::DisconnectNodeInternal(ViewerOutput *n)
{
disconnect(n, &ViewerOutput::BlockAdded, this, &TimelineWidget::AddBlock);
disconnect(n, &ViewerOutput::BlockRemoved, this, &TimelineWidget::RemoveBlock);
disconnect(n, &ViewerOutput::TrackAdded, this, &TimelineWidget::AddTrack);
disconnect(n, &ViewerOutput::TrackRemoved, this, &TimelineWidget::RemoveTrack);
disconnect(n, &ViewerOutput::TimebaseChanged, this, &TimelineWidget::SetTimebase);
disconnect(n, &ViewerOutput::TrackHeightChanged, this, &TimelineWidget::TrackHeightChanged);
ruler()->SetPlaybackCache(nullptr);
SetTimebase(0);
Clear();
foreach (TimelineAndTrackView* tview, views_) {
tview->track_view()->DisconnectTrackList();
tview->view()->ConnectTrackList(nullptr);
}
}
void TimelineWidget::CopyNodesToClipboardInternal(QXmlStreamWriter *writer, void* userdata)
{
writer->writeStartElement(QStringLiteral("timeline"));
// Cache the earliest in point so all copied clips have a "relative" in point that can be pasted anywhere
QList<TimelineViewBlockItem*>& selected = *static_cast<QList<TimelineViewBlockItem*>*>(userdata);
rational earliest_in = RATIONAL_MAX;
foreach (TimelineViewBlockItem* item, selected) {
Block* block = item->block();
earliest_in = qMin(earliest_in, block->in());
}
foreach (TimelineViewBlockItem* item, selected) {
Block* block = item->block();
writer->writeStartElement(QStringLiteral("block"));
writer->writeAttribute(QStringLiteral("ptr"), QString::number(reinterpret_cast<quintptr>(block)));
writer->writeAttribute(QStringLiteral("in"), (block->in() - earliest_in).toString());
TrackOutput* track = TrackOutput::TrackFromBlock(block);
if (track) {
writer->writeAttribute(QStringLiteral("tracktype"), QString::number(track->track_type()));
writer->writeAttribute(QStringLiteral("trackindex"), QString::number(track->Index()));
}
writer->writeEndElement();
}
writer->writeEndElement(); // timeline
}
void TimelineWidget::PasteNodesFromClipboardInternal(QXmlStreamReader *reader, void *userdata)
{
if (reader->name() == QStringLiteral("timeline")) {
QList<BlockPasteData>& paste_data = *static_cast<QList<BlockPasteData>*>(userdata);
while (XMLReadNextStartElement(reader)) {
if (reader->name() == QStringLiteral("block")) {
BlockPasteData bpd;
foreach (QXmlStreamAttribute attr, reader->attributes()) {
if (attr.name() == QStringLiteral("ptr")) {
bpd.ptr = attr.value().toULongLong();
} else if (attr.name() == QStringLiteral("in")) {
bpd.in = rational::fromString(attr.value().toString());
} else if (attr.name() == QStringLiteral("tracktype")) {
bpd.track_type = static_cast<Timeline::TrackType>(attr.value().toInt());
} else if (attr.name() == QStringLiteral("trackindex")) {
bpd.track_index = attr.value().toInt();
}
}
paste_data.append(bpd);
reader->skipCurrentElement();
}
}
} else {
NodeCopyPasteWidget::PasteNodesFromClipboardInternal(reader, userdata);
}
}
TimelineWidget::DraggedFootage TimelineWidget::FootageToDraggedFootage(Footage *f)
{
return DraggedFootage(f, f->get_enabled_stream_flags());
}
QList<TimelineWidget::DraggedFootage> TimelineWidget::FootageToDraggedFootage(QList<Footage *> footage)
{
QList<DraggedFootage> df;
foreach (Footage* f, footage) {
df.append(FootageToDraggedFootage(f));
}
return df;
}
rational TimelineWidget::GetToolTipTimebase() const
{
if (GetConnectedNode() && use_audio_time_units_) {
return GetConnectedNode()->audio_params().time_base();
}
return timebase();
}
void TimelineWidget::SelectAll()
{
QList<Block*> blocks_selected;
QMap<Block*, TimelineViewBlockItem*>::const_iterator i;
for (i=block_items_.constBegin(); i!=block_items_.end(); i++) {
if (!i.value()->isSelected()) {
i.value()->setSelected(true);
blocks_selected.append(i.key());
}
}
emit BlocksSelected(blocks_selected);
}
void TimelineWidget::DeselectAll()
{
QList<Block*> blocks_deselected;
QMap<Block*, TimelineViewBlockItem*>::const_iterator i;
for (i=block_items_.constBegin(); i!=block_items_.end(); i++) {
if (i.value()->isSelected()) {
i.value()->setSelected(false);
blocks_deselected.append(i.key());
}
}
emit BlocksDeselected(blocks_deselected);
}
void TimelineWidget::RippleToIn()
{
RippleTo(Timeline::kTrimIn);
}
void TimelineWidget::RippleToOut()
{
RippleTo(Timeline::kTrimOut);
}
void TimelineWidget::EditToIn()
{
EditTo(Timeline::kTrimIn);
}
void TimelineWidget::EditToOut()
{
EditTo(Timeline::kTrimOut);
}
void TimelineWidget::SplitAtPlayhead()
{
if (!GetConnectedNode()) {
return;
}
rational playhead_time = Timecode::timestamp_to_time(GetTimestamp(), timebase());
QList<TimelineViewBlockItem *> selected_blocks = GetSelectedBlocks();
// Prioritize blocks that are selected and overlap the playhead
QVector<Block*> blocks_to_split;
QVector<bool> block_is_selected;
bool some_blocks_are_selected = false;
// Get all blocks at the playhead
foreach (TrackOutput* track, GetConnectedNode()->GetTracks()) {
Block* b = track->BlockContainingTime(playhead_time);
if (b && b->type() == Block::kClip) {
bool selected = false;
// See if this block is selected
foreach (TimelineViewBlockItem* item, selected_blocks) {
if (item->block() == b) {
some_blocks_are_selected = true;
selected = true;
break;
}
}
blocks_to_split.append(b);
block_is_selected.append(selected);
}
}
// If some blocks are selected, we prioritize those and don't split the blocks that aren't
if (some_blocks_are_selected) {
for (int i=0;i<block_is_selected.size();i++) {
if (!block_is_selected.at(i)) {
blocks_to_split.removeAt(i);
block_is_selected.removeAt(i);
i--;
}
}
}
if (!blocks_to_split.isEmpty()) {
Core::instance()->undo_stack()->push(new BlockSplitPreservingLinksCommand(blocks_to_split, {playhead_time}));
}
}
void TimelineWidget::ReplaceBlocksWithGaps(const QList<Block *> &blocks,
bool remove_from_graph,
QUndoCommand *command)
{
foreach (Block* b, blocks) {
if (b->type() == Block::kGap) {
// No point in replacing a gap with a gap, and TrackReplaceBlockWithGapCommand will clear
// up any extraneous gaps
continue;
}
TrackOutput* original_track = TrackOutput::TrackFromBlock(b);
new TrackReplaceBlockWithGapCommand(original_track, b, command);
if (remove_from_graph) {
new BlockUnlinkAllCommand(b, command);
new NodeRemoveWithExclusiveDeps(static_cast<NodeGraph*>(b->parent()), b, command);
}
}
}
void TimelineWidget::DeleteSelected(bool ripple)
{
QList<TimelineViewBlockItem *> selected_list = GetSelectedBlocks();
QList<Block*> blocks_to_delete;
QList<TrackReference> tracks_affected;
foreach (TimelineViewBlockItem* item, selected_list) {
Block* b = item->block();
blocks_to_delete.append(b);
if (!tracks_affected.contains(item->Track())) {
tracks_affected.append(item->Track());
}
}
// No-op if nothing is selected
if (blocks_to_delete.isEmpty()) {
return;
}
QUndoCommand* command = new QUndoCommand();
QList<Block*> clips_to_delete;
QList<TransitionBlock*> transitions_to_delete;
foreach (Block* b, blocks_to_delete) {
if (b->type() == Block::kClip) {
clips_to_delete.append(b);
} else if (b->type() == Block::kTransition) {
transitions_to_delete.append(static_cast<TransitionBlock*>(b));
}
}
// For transitions, remove them but extend their attached blocks to fill their place
foreach (TransitionBlock* transition, transitions_to_delete) {
new TransitionRemoveCommand(TrackOutput::TrackFromBlock(transition),
transition,
command);
new NodeRemoveWithExclusiveDeps(static_cast<NodeGraph*>(GetConnectedNode()->parent()),
transition,
command);
}
// Replace clips with gaps (effectively deleting them)
ReplaceBlocksWithGaps(clips_to_delete, true, command);
// Insert ripple command now that it's all cleaned up gaps
if (ripple) {
TimeRangeList range_list;
foreach (Block* b, blocks_to_delete) {
range_list.InsertTimeRange(TimeRange(b->in(), b->out()));
}
new TimelineRippleDeleteGapsAtRegionsCommand(GetConnectedNode(), range_list, command);
}
Core::instance()->undo_stack()->pushIfHasChildren(command);
}
void TimelineWidget::IncreaseTrackHeight()
{
if (!GetConnectedNode()) {
return;
}
QVector<TrackOutput*> all_tracks = GetConnectedNode()->GetTracks();
// Increase the height of each track by one "unit"
foreach (TrackOutput* t, all_tracks) {
t->SetTrackHeight(t->GetTrackHeight() + t->GetTrackHeightIncrement());
}
}
void TimelineWidget::DecreaseTrackHeight()
{
if (!GetConnectedNode()) {
return;
}
QVector<TrackOutput*> all_tracks = GetConnectedNode()->GetTracks();
// Decrease the height of each track by one "unit"
foreach (TrackOutput* t, all_tracks) {
t->SetTrackHeight(qMax(t->GetTrackHeight() - t->GetTrackHeightIncrement(), t->GetTrackHeightMinimum()));
}
}
void TimelineWidget::InsertFootageAtPlayhead(const QList<Footage*>& footage)
{
import_tool_->PlaceAt(footage, GetTime(), true);
}
void TimelineWidget::OverwriteFootageAtPlayhead(const QList<Footage *> &footage)
{
import_tool_->PlaceAt(footage, GetTime(), false);
}
void TimelineWidget::ToggleLinksOnSelected()
{
QList<TimelineViewBlockItem*> sel = GetSelectedBlocks();
QList<Block*> blocks;
bool link = true;
foreach (TimelineViewBlockItem* item, sel) {
// Only clips can be linked
if (item->block()->type() != Block::kClip) {
continue;
}
// Prioritize unlinking, if any block has links, assume we're unlinking
if (link && item->block()->HasLinks()) {
link = false;
}
blocks.append(item->block());
}
if (link) {
Core::instance()->undo_stack()->push(new BlockLinkManyCommand(blocks, true));
} else {
Core::instance()->undo_stack()->push(new BlockLinkManyCommand(blocks, false));
}
}
void TimelineWidget::CopySelected(bool cut)
{
if (!GetConnectedNode()) {
return;
}
QList<TimelineViewBlockItem*> selected = GetSelectedBlocks();
if (selected.isEmpty()) {
return;
}
QList<Node*> selected_nodes;
foreach (TimelineViewBlockItem* item, selected) {
Node* block = item->block();
selected_nodes.append(block);
QList<Node*> deps = block->GetDependencies();
foreach (Node* d, deps) {
if (!selected_nodes.contains(d)) {
selected_nodes.append(d);
}
}
}
CopyNodesToClipboard(selected_nodes, &selected);
if (cut) {
DeleteSelected();
}
}
void TimelineWidget::Paste(bool insert)
{
if (!GetConnectedNode()) {
return;
}
QUndoCommand* command = new QUndoCommand();
QList<BlockPasteData> paste_data;
QList<Node*> pasted = PasteNodesFromClipboard(static_cast<Sequence*>(GetConnectedNode()->parent()), command, &paste_data);
rational paste_start = GetTime();
if (insert) {
rational paste_end = GetTime();
foreach (const BlockPasteData& bpd, paste_data) {
foreach (Node* n, pasted) {
if (n->property("xml_ptr") == bpd.ptr) {
paste_end = qMax(paste_end, paste_start + bpd.in + static_cast<Block*>(n)->length());
break;
}
}
}
if (paste_end != paste_start) {
InsertGapsAt(paste_start, paste_end - paste_start, command);
}
}
foreach (const BlockPasteData& bpd, paste_data) {
foreach (Node* n, pasted) {
if (n->property("xml_ptr") == bpd.ptr) {
qDebug() << "Placing" << n;
new TrackPlaceBlockCommand(GetConnectedNode()->track_list(bpd.track_type),
bpd.track_index,
static_cast<Block*>(n),
paste_start + bpd.in,
command);
break;
}
}
}
Core::instance()->undo_stack()->pushIfHasChildren(command);
}
void TimelineWidget::DeleteInToOut(bool ripple)
{
if (!GetConnectedNode()
|| !GetConnectedTimelinePoints()
|| !GetConnectedTimelinePoints()->workarea()->enabled()) {
return;
}
QUndoCommand* command = new QUndoCommand();
if (ripple) {
new TimelineRippleRemoveAreaCommand(GetConnectedNode(),
GetConnectedTimelinePoints()->workarea()->in(),
GetConnectedTimelinePoints()->workarea()->out(),
command);
} else {
QVector<TrackOutput*> unlocked_tracks = GetConnectedNode()->GetUnlockedTracks();
foreach (TrackOutput* track, unlocked_tracks) {
GapBlock* gap = new GapBlock();
gap->set_length_and_media_out(GetConnectedTimelinePoints()->workarea()->length());
new NodeAddCommand(static_cast<NodeGraph*>(track->parent()),
gap,
command);
new TrackPlaceBlockCommand(GetConnectedNode()->track_list(track->track_type()),
track->Index(),
gap,
GetConnectedTimelinePoints()->workarea()->in(),
command);
}
}
// Clear workarea after this
new WorkareaSetEnabledCommand(GetTimelinePointsProject(),
GetConnectedTimelinePoints(),
false,
command);
if (ripple) {
SetTimeAndSignal(Timecode::time_to_timestamp(GetConnectedTimelinePoints()->workarea()->in(),
timebase()));
}
Core::instance()->undo_stack()->push(command);
}
void TimelineWidget::ToggleSelectedEnabled()
{
QList<TimelineViewBlockItem*> items = GetSelectedBlocks();
if (items.isEmpty()) {
return;
}
QUndoCommand* command = new QUndoCommand();
foreach (TimelineViewBlockItem* i, items) {
new BlockEnableDisableCommand(i->block(),
!i->block()->is_enabled(),
command);
}
Core::instance()->undo_stack()->pushIfHasChildren(command);
}
QList<TimelineViewBlockItem *> TimelineWidget::GetSelectedBlocks()
{
QList<TimelineViewBlockItem *> list;
QMapIterator<Block*, TimelineViewBlockItem*> iterator(block_items_);
while (iterator.hasNext()) {
iterator.next();
TimelineViewBlockItem* item = iterator.value();
if (item && item->isSelected()) {
list.append(item);
}
}
return list;
}
void TimelineWidget::InsertGapsAt(const rational &earliest_point, const rational &insert_length, QUndoCommand *command)
{
for (int i=0;i<Timeline::kTrackTypeCount;i++) {
new TrackListInsertGaps(GetConnectedNode()->track_list(static_cast<Timeline::TrackType>(i)),
earliest_point,
insert_length,
command);
}
}
TrackOutput *TimelineWidget::GetTrackFromReference(const TrackReference &ref)
{
return GetConnectedNode()->track_list(ref.type())->GetTrackAt(ref.index());
}
int TimelineWidget::GetTrackY(const TrackReference &ref)
{
return views_.at(ref.type())->view()->GetTrackY(ref.index());
}
int TimelineWidget::GetTrackHeight(const TrackReference &ref)
{
return views_.at(ref.type())->view()->GetTrackHeight(ref.index());
}
void TimelineWidget::CenterOn(qreal scene_pos)
{
scrollbar()->setValue(qRound(scene_pos - scrollbar()->width()/2));
}
void TimelineWidget::ClearGhosts()
{
if (!ghost_items_.isEmpty()) {
foreach (TimelineViewGhostItem* ghost, ghost_items_) {
delete ghost;
}
ghost_items_.clear();
}
HideSnaps();
}
bool TimelineWidget::HasGhosts()
{
return !ghost_items_.isEmpty();
}
TimelineWidget::Tool *TimelineWidget::GetActiveTool()
{
return tools_.at(Core::instance()->tool());
}
void TimelineWidget::ViewMousePressed(TimelineViewMouseEvent *event)
{
active_tool_ = GetActiveTool();
if (GetConnectedNode() && active_tool_ != nullptr) {
active_tool_->MousePress(event);
}
if (event->GetButton() != Qt::LeftButton) {
// Suspend tool immediately if the cursor isn't the primary button
active_tool_->MouseRelease(event);
active_tool_ = nullptr;
}
}
void TimelineWidget::ViewMouseMoved(TimelineViewMouseEvent *event)
{
if (GetConnectedNode()) {
if (active_tool_) {
active_tool_->MouseMove(event);
} else {
// Mouse is not down, attempt a hover event
Tool* hover_tool = GetActiveTool();
if (hover_tool) {
hover_tool->HoverMove(event);
}
}
}
}
void TimelineWidget::ViewMouseReleased(TimelineViewMouseEvent *event)
{
if (GetConnectedNode() && active_tool_ != nullptr) {
active_tool_->MouseRelease(event);
active_tool_ = nullptr;
}
}
void TimelineWidget::ViewMouseDoubleClicked(TimelineViewMouseEvent *event)
{
if (GetConnectedNode() && active_tool_ != nullptr) {
active_tool_->MouseDoubleClick(event);
active_tool_ = nullptr;
}
}
void TimelineWidget::ViewDragEntered(TimelineViewMouseEvent *event)
{
import_tool_->DragEnter(event);
}
void TimelineWidget::ViewDragMoved(TimelineViewMouseEvent *event)
{
import_tool_->DragMove(event);
}
void TimelineWidget::ViewDragLeft(QDragLeaveEvent *event)
{
import_tool_->DragLeave(event);
}
void TimelineWidget::ViewDragDropped(TimelineViewMouseEvent *event)
{
import_tool_->DragDrop(event);
}
void TimelineWidget::AddBlock(Block *block, TrackReference track)
{
// Set up clip with view parameters (clip item will automatically size its rect accordingly)
TimelineViewBlockItem* item = new TimelineViewBlockItem(block);
item->SetYCoords(GetTrackY(track), GetTrackHeight(track));
item->SetScale(GetScale());
item->SetTrack(track);
item->SetTimebase(timebase());
// Add to list of clip items that can be iterated through
block_items_.insert(block, item);
// Add item to graphics scene
views_.at(track.type())->view()->scene()->addItem(item);
connect(block, &Block::Refreshed, this, &TimelineWidget::BlockRefreshed);
connect(block, &Block::LinksChanged, this, &TimelineWidget::BlockUpdated);
connect(block, &Block::LabelChanged, this, &TimelineWidget::BlockUpdated);
connect(block, &Block::EnabledChanged, this, &TimelineWidget::BlockUpdated);
}
void TimelineWidget::RemoveBlock(Block *block)
{
disconnect(block, &Block::Refreshed, this, &TimelineWidget::BlockRefreshed);
disconnect(block, &Block::LinksChanged, this, &TimelineWidget::BlockUpdated);
disconnect(block, &Block::LabelChanged, this, &TimelineWidget::BlockUpdated);
disconnect(block, &Block::EnabledChanged, this, &TimelineWidget::BlockUpdated);
TimelineViewBlockItem* item = block_items_.take(block);
if (item->isSelected()) {
// Sending a list of one item all the time is not very efficient
emit BlocksDeselected({block});
}
delete item;
}
void TimelineWidget::AddTrack(TrackOutput *track, Timeline::TrackType type)
{
foreach (Block* b, track->Blocks()) {
AddBlock(b, TrackReference(type, track->Index()));
}
connect(track, &TrackOutput::IndexChanged, this, &TimelineWidget::TrackIndexChanged);
connect(track, &TrackOutput::PreviewChanged, this, &TimelineWidget::TrackPreviewUpdated);
}
void TimelineWidget::RemoveTrack(TrackOutput *track)
{
disconnect(track, &TrackOutput::IndexChanged, this, &TimelineWidget::TrackIndexChanged);
disconnect(track, &TrackOutput::PreviewChanged, this, &TimelineWidget::TrackPreviewUpdated);
foreach (Block* b, track->Blocks()) {
RemoveBlock(b);
}
}
void TimelineWidget::TrackIndexChanged()
{
TrackOutput* track = static_cast<TrackOutput*>(sender());
TrackReference ref(track->track_type(), track->Index());
foreach (Block* b, track->Blocks()) {
TimelineViewBlockItem* item = block_items_.value(b);
item->SetYCoords(GetTrackY(ref), GetTrackHeight(ref));
item->SetTrack(ref);
}
}
void TimelineWidget::BlockRefreshed()
{
TimelineViewRect* rect = block_items_.value(static_cast<Block*>(sender()));
if (rect) {
rect->UpdateRect();
}
}
void TimelineWidget::BlockUpdated()
{
TimelineViewRect* rect = block_items_.value(static_cast<Block*>(sender()));
if (rect) {
rect->update();
}
}
void TimelineWidget::TrackPreviewUpdated()
{
QMap<Block*, TimelineViewBlockItem*>::const_iterator i;
TrackOutput* track = static_cast<TrackOutput*>(sender());
TrackReference track_ref(track->track_type(), track->Index());
for (i=block_items_.constBegin(); i!=block_items_.constEnd(); i++) {
if (i.value()->Track() == track_ref) {
i.value()->update();
}
}
}
void TimelineWidget::UpdateHorizontalSplitters()
{
QSplitter* sender_splitter = static_cast<QSplitter*>(sender());
foreach (TimelineAndTrackView* tview, views_) {
QSplitter* recv_splitter = tview->splitter();
if (recv_splitter != sender_splitter) {
recv_splitter->blockSignals(true);
recv_splitter->setSizes(sender_splitter->sizes());
recv_splitter->blockSignals(false);
}
}
UpdateTimecodeWidthFromSplitters(sender_splitter);
}
void TimelineWidget::UpdateTimecodeWidthFromSplitters(QSplitter* s)
{
timecode_label_->setFixedWidth(s->sizes().first() + s->handleWidth());
}
void TimelineWidget::TrackHeightChanged(Timeline::TrackType type, int index, int height)
{
Q_UNUSED(index)
Q_UNUSED(height)
QMap<Block*, TimelineViewBlockItem*>::const_iterator iterator;
TimelineView* view = views_.at(type)->view();
for (iterator=block_items_.begin();iterator!=block_items_.end();iterator++) {
TimelineViewBlockItem* block_item = iterator.value();
if (block_item->Track().type() == type) {
block_item->SetYCoords(view->GetTrackY(block_item->Track().index()),
view->GetTrackHeight(block_item->Track().index()));
}
}
}
void TimelineWidget::ShowContextMenu()
{
Menu menu(this);
QList<TimelineViewBlockItem*> selected = GetSelectedBlocks();
if (!selected.isEmpty()) {
MenuShared::instance()->AddItemsForEditMenu(&menu, true);
menu.addSeparator();
QAction* properties_action = menu.addAction(tr("Properties"));
connect(properties_action, &QAction::triggered, this, [this](){
QList<TimelineViewBlockItem*> block_items = GetSelectedBlocks();
QList<Node*> nodes;
foreach (TimelineViewBlockItem* i, block_items) {
nodes.append(i->block());
}
Core::instance()->LabelNodes(nodes);
});
}
if (selected.isEmpty()) {
QAction* toggle_audio_units = menu.addAction(tr("Use Audio Time Units"));
toggle_audio_units->setCheckable(true);
toggle_audio_units->setChecked(use_audio_time_units_);
connect(toggle_audio_units, &QAction::triggered, this, &TimelineWidget::SetUseAudioTimeUnits);
menu.addSeparator();
QAction* properties_action = menu.addAction(tr("Properties"));
connect(properties_action, &QAction::triggered, this, &TimelineWidget::ShowSequenceDialog);
}
menu.exec(QCursor::pos());
}
void TimelineWidget::DeferredScrollAction()
{
scrollbar()->setValue(deferred_scroll_value_);
}
void TimelineWidget::ShowSequenceDialog()
{
if (!GetConnectedNode()) {
return;
}
SequenceDialog sd(static_cast<Sequence*>(GetConnectedNode()->parent()), SequenceDialog::kExisting, this);
sd.exec();
}
void TimelineWidget::SetUseAudioTimeUnits(bool use)
{
use_audio_time_units_ = use;
// Update timebases
UpdateViewTimebases();
// Force update of the viewer timestamps
SetViewTimestamp(GetTimestamp());
}
void TimelineWidget::SetViewTimestamp(const int64_t &ts)
{
for (int i=0;i<views_.size();i++) {
TimelineAndTrackView* view = views_.at(i);
if (use_audio_time_units_ && i == Timeline::kTrackTypeAudio) {
view->view()->SetTime(Timecode::rescale_timestamp(ts,
timebase(),
GetConnectedNode()->audio_params().time_base()));
} else {
view->view()->SetTime(ts);
}
}
}
void TimelineWidget::ViewTimestampChanged(int64_t ts)
{
if (use_audio_time_units_ && sender() == views_.at(Timeline::kTrackTypeAudio)) {
ts = Timecode::rescale_timestamp(ts,
GetConnectedNode()->audio_params().time_base(),
timebase());
}
// Update all other views
SetViewTimestamp(ts);
ruler()->SetTime(ts);
emit TimeChanged(ts);
}
void TimelineWidget::AddGhost(TimelineViewGhostItem *ghost)
{
ghost->SetScale(GetScale());
ghost_items_.append(ghost);
views_.at(ghost->Track().type())->view()->scene()->addItem(ghost);
}
void TimelineWidget::UpdateViewTimebases()
{
for (int i=0;i<views_.size();i++) {
TimelineAndTrackView* view = views_.at(i);
if (use_audio_time_units_ && i == Timeline::kTrackTypeAudio) {
view->view()->SetTimebase(GetConnectedNode()->audio_params().time_base());
} else {
view->view()->SetTimebase(timebase());
}
}
}
void TimelineWidget::SetViewBeamCursor(const TimelineCoordinate &coord)
{
foreach (TimelineAndTrackView* tview, views_) {
tview->view()->SetBeamCursor(coord);
}
}
void TimelineWidget::SetBlockLinksSelected(Block* block, bool selected)
{
TimelineViewBlockItem* link_item;
foreach (Block* link, block->linked_clips()) {
if ((link_item = block_items_[link]) != nullptr) {
link_item->setSelected(selected);
}
}
}
QVector<Timeline::EditToInfo> TimelineWidget::GetEditToInfo(const rational& playhead_time,
Timeline::MovementMode mode)
{
// Get list of unlocked tracks
QVector<TrackOutput*> tracks = GetConnectedNode()->GetUnlockedTracks();
// Create list to cache nearest times and the blocks at this point
QVector<Timeline::EditToInfo> info_list(tracks.size());
for (int i=0;i<tracks.size();i++) {
Timeline::EditToInfo info;
TrackOutput* track = tracks.at(i);
info.track = track;
Block* b;
// Determine what block is at this time (for "trim in", we want to catch blocks that start at
// the time, for "trim out" we don't)
if (mode == Timeline::kTrimIn) {
b = track->NearestBlockBeforeOrAt(playhead_time);
} else {
b = track->NearestBlockBefore(playhead_time);
}
// If we have a block here, cache how close it is to the track
if (b) {
rational this_track_closest_point;
if (mode == Timeline::kTrimIn) {
this_track_closest_point = b->in();
} else {
this_track_closest_point = b->out();
}
info.nearest_time = this_track_closest_point;
}
info.nearest_block = b;
info_list[i] = info;
}
return info_list;
}
void TimelineWidget::RippleTo(Timeline::MovementMode mode)
{
rational playhead_time = GetTime();
QVector<Timeline::EditToInfo> tracks = GetEditToInfo(playhead_time, mode);
if (tracks.isEmpty()) {
return;
}
// Find each track's nearest point and determine the overall timeline's nearest point
rational closest_point_to_playhead = (mode == Timeline::kTrimIn) ? rational() : RATIONAL_MAX;
foreach (const Timeline::EditToInfo& info, tracks) {
if (info.nearest_block) {
if (mode == Timeline::kTrimIn) {
closest_point_to_playhead = qMax(info.nearest_time, closest_point_to_playhead);
} else {
closest_point_to_playhead = qMin(info.nearest_time, closest_point_to_playhead);
}
}
}
// If we're not inserting gaps and the edit point is right on the nearest in point, we enter a
// single-frame mode where we remove one frame only
if (closest_point_to_playhead == playhead_time) {
if (mode == Timeline::kTrimIn) {
playhead_time += timebase();
} else {
playhead_time -= timebase();
}
}
// For standard rippling, we can cache here the region that will be rippled out
rational in_ripple = qMin(closest_point_to_playhead, playhead_time);
rational out_ripple = qMax(closest_point_to_playhead, playhead_time);
TimelineRippleRemoveAreaCommand* c = new TimelineRippleRemoveAreaCommand(GetConnectedNode(),
in_ripple,
out_ripple);
Core::instance()->undo_stack()->push(c);
// If we rippled, ump to where new cut is if applicable
if (mode == Timeline::kTrimIn) {
SetTimeAndSignal(Timecode::time_to_timestamp(closest_point_to_playhead, timebase()));
} else if (mode == Timeline::kTrimOut && closest_point_to_playhead == GetTime()) {
SetTimeAndSignal(Timecode::time_to_timestamp(playhead_time, timebase()));
}
}
void TimelineWidget::EditTo(Timeline::MovementMode mode)
{
const rational playhead_time = GetTime();
// Get list of unlocked tracks
QVector<Timeline::EditToInfo> tracks = GetEditToInfo(playhead_time, mode);
if (tracks.isEmpty()) {
return;
}
QUndoCommand* command = new QUndoCommand();
foreach (const Timeline::EditToInfo& info, tracks) {
if (info.nearest_block
&& info.nearest_block->type() != Block::kGap
&& info.nearest_time != playhead_time) {
rational new_len;
if (mode == Timeline::kTrimIn) {
new_len = playhead_time - info.nearest_time;
} else {
new_len = info.nearest_time - playhead_time;
}
new_len = info.nearest_block->length() - new_len;
new BlockTrimCommand(info.track,
info.nearest_block,
new_len,
mode,
command);
}
}
Core::instance()->undo_stack()->pushIfHasChildren(command);
}
void TimelineWidget::ShowSnap(const QList<rational> &times)
{
foreach (TimelineAndTrackView* tview, views_) {
tview->view()->EnableSnap(times);
}
}
void TimelineWidget::HideSnaps()
{
foreach (TimelineAndTrackView* tview, views_) {
tview->view()->DisableSnap();
}
}
QByteArray TimelineWidget::SaveSplitterState() const
{
return view_splitter_->saveState();
}
void TimelineWidget::RestoreSplitterState(const QByteArray &state)
{
view_splitter_->restoreState(state);
}
void TimelineWidget::StartRubberBandSelect(bool enable_selecting, bool select_links)
{
drag_origin_ = QCursor::pos();
rubberband_.show();
// We don't touch any blocks that are already selected. If you want these to be deselected by
// default, call DeselectAll() befoer calling StartRubberBandSelect()
foreach (TimelineViewBlockItem* block, block_items_) {
if (block->isSelected()) {
rubberband_already_selected_.append(block);
}
}
MoveRubberBandSelect(enable_selecting, select_links);
}
void TimelineWidget::MoveRubberBandSelect(bool enable_selecting, bool select_links)
{
QPoint rubberband_now = QCursor::pos();
rubberband_.setGeometry(QRect(mapFromGlobal(drag_origin_), mapFromGlobal(rubberband_now)).normalized());
if (!enable_selecting) {
return;
}
QList<QGraphicsItem*> new_selected_list;
// Determine all items in the rubberband
foreach (TimelineAndTrackView* tview, views_) {
TimelineView* view = tview->view();
// Map global mouse coordinates to viewport
QRect mapped_rect(view->viewport()->mapFromGlobal(drag_origin_),
view->viewport()->mapFromGlobal(rubberband_now));
// Normalize and get items in rect
QList<QGraphicsItem*> rubberband_items = view->items(mapped_rect.normalized());
new_selected_list.append(rubberband_items);
}
// Filter out any items that were already selected
if (!rubberband_already_selected_.isEmpty()) {
for (int i=0; i<new_selected_list.size(); i++) {
if (rubberband_already_selected_.contains(new_selected_list.at(i))) {
new_selected_list.removeAt(i);
i--;
}
}
}
foreach (QGraphicsItem* item, rubberband_now_selected_) {
item->setSelected(false);
}
// Cache limit because we append to this array in this loop and don't need to process those
int lim = new_selected_list.size();
for (int i=0;i<lim;i++) {
TimelineViewBlockItem* block_item = static_cast<TimelineViewBlockItem*>(new_selected_list.at(i));
if (block_item->block()->type() == Block::kGap) {
continue;
}
TrackOutput* t = GetTrackFromReference(block_item->Track());
if (t && t->IsLocked()) {
continue;
}
// Since new_selected_list is filtered by rubberband_already_selected_, this should certainly
// be deselected by now
block_item->setSelected(true);
if (select_links) {
// Select the block's links
Block* b = block_item->block();
// Add its links to the list
TimelineViewBlockItem* link_item;
foreach (Block* link, b->linked_clips()) {
if ((link_item = block_items_[link]) != nullptr) {
link_item->setSelected(true);
if (!new_selected_list.contains(link_item)
&& !rubberband_already_selected_.contains(link_item)) {
new_selected_list.append(link_item);
}
}
}
}
}
rubberband_now_selected_ = new_selected_list;
}
void TimelineWidget::EndRubberBandSelect()
{
rubberband_.hide();
// Emit any blocks that were newly selected
QList<Block*> selected_blocks;
foreach (QGraphicsItem* item, rubberband_now_selected_) {
selected_blocks.append(static_cast<TimelineViewBlockItem*>(item)->block());
}
emit BlocksSelected(selected_blocks);
rubberband_now_selected_.clear();
rubberband_already_selected_.clear();
}
struct SnapData {
rational time;
rational movement;
};
QList<SnapData> AttemptSnap(const QList<double>& screen_pt,
double compare_pt,
const QList<rational>& start_times,
const rational& compare_time) {
const qreal kSnapRange = 10; // FIXME: Hardcoded number
QList<SnapData> snap_data;
for (int i=0;i<screen_pt.size();i++) {
// Attempt snapping to clip out point
if (InRange(screen_pt.at(i), compare_pt, kSnapRange)) {
snap_data.append({compare_time, compare_time - start_times.at(i)});
}
}
return snap_data;
}
bool TimelineWidget::SnapPoint(QList<rational> start_times, rational* movement, int snap_points)
{
QList<double> screen_pt;
foreach (const rational& s, start_times) {
screen_pt.append(TimeToScene(s + *movement));
}
QList<SnapData> potential_snaps;
if (snap_points & kSnapToPlayhead) {
rational playhead_abs_time = GetTime();
qreal playhead_pos = TimeToScene(playhead_abs_time);
potential_snaps.append(AttemptSnap(screen_pt, playhead_pos, start_times, playhead_abs_time));
}
if (snap_points & kSnapToClips) {
QMap<Block*, TimelineViewBlockItem*>::const_iterator i;
for (i=block_items_.constBegin(); i!=block_items_.constEnd(); i++) {
TimelineViewBlockItem* item = i.value();
if (item) {
qreal rect_left = item->x();
qreal rect_right = rect_left + item->rect().width();
// Attempt snapping to clip in point
potential_snaps.append(AttemptSnap(screen_pt, rect_left, start_times, item->block()->in()));
// Attempt snapping to clip out point
potential_snaps.append(AttemptSnap(screen_pt, rect_right, start_times, item->block()->out()));
}
}
}
if ((snap_points & kSnapToMarkers) && GetConnectedTimelinePoints()) {
foreach (TimelineMarker* m, GetConnectedTimelinePoints()->markers()->list()) {
qreal marker_pos = TimeToScene(m->time().in());
potential_snaps.append(AttemptSnap(screen_pt, marker_pos, start_times, m->time().in()));
if (m->time().in() != m->time().out()) {
marker_pos = TimeToScene(m->time().out());
potential_snaps.append(AttemptSnap(screen_pt, marker_pos, start_times, m->time().out()));
}
}
}
if (potential_snaps.isEmpty()) {
HideSnaps();
return false;
}
int closest_snap = 0;
rational closest_diff = qAbs(potential_snaps.at(0).movement - *movement);
// Determine which snap point was the closest
for (int i=1; i<potential_snaps.size(); i++) {
rational this_diff = qAbs(potential_snaps.at(i).movement - *movement);
if (this_diff < closest_diff) {
closest_snap = i;
closest_diff = this_diff;
}
}
*movement = potential_snaps.at(closest_snap).movement;
// Find all points at this movement
QList<rational> snap_times;
foreach (const SnapData& d, potential_snaps) {
if (d.movement == *movement) {
snap_times.append(d.time);
}
}
ShowSnap(snap_times);
return true;
}
OLIVE_NAMESPACE_EXIT