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oak-editor/app/widget/timelinewidget/tool/pointer.cpp
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/***
Olive - Non-Linear Video Editor
Copyright (C) 2022 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 <QDebug>
#include <QToolTip>
#include "common/clamp.h"
#include "common/qtutils.h"
#include "common/range.h"
#include "common/timecodefunctions.h"
#include "config/config.h"
#include "core.h"
#include "node/block/gap/gap.h"
#include "node/block/transition/transition.h"
#include "pointer.h"
#include "widget/nodeview/nodeviewundo.h"
#include "widget/timelinewidget/undo/timelineundopointer.h"
#include "widget/timeruler/timeruler.h"
namespace olive {
PointerTool::PointerTool(TimelineWidget *parent) :
TimelineTool(parent),
movement_allowed_(true),
trimming_allowed_(true),
track_movement_allowed_(true),
gap_trimming_allowed_(false),
can_rubberband_select_(false),
rubberband_selecting_(false)
{
}
void PointerTool::MousePress(TimelineViewMouseEvent *event)
{
const Track::Reference& track_ref = event->GetTrack();
// Determine if item clicked on is selectable
clicked_item_ = parent()->GetItemAtScenePos(event->GetCoordinates());
ClipBlock *clip_clicked_item = dynamic_cast<ClipBlock*>(clicked_item_);
can_rubberband_select_ = false;
bool selectable_item = (clicked_item_
&& !parent()->GetTrackFromReference(track_ref)->IsLocked());
if (selectable_item) {
// Cache the clip's type for use later
drag_track_type_ = track_ref.type();
// If we haven't started dragging yet, we'll initiate a drag here
// Record where the drag started in timeline coordinates
drag_start_ = event->GetCoordinates();
// Determine whether we're trimming or moving based on the position of the cursor
drag_movement_mode_ = IsCursorInTrimHandle(clicked_item_,
event->GetSceneX());
// If we're not in a trim mode, we must be in a move mode (provided the tool allows movement and
// the block is not a gap)
if (drag_movement_mode_ == Timeline::kNone
&& movement_allowed_
&& !dynamic_cast<GapBlock*>(clicked_item_)) {
drag_movement_mode_ = Timeline::kMove;
}
// If this item is already selected, no further selection needs to be made
if (parent()->IsBlockSelected(clicked_item_)) {
// Collect item deselections
QVector<Block*> deselected_blocks;
// If shift is held, deselect it
if (event->GetModifiers() & Qt::ShiftModifier) {
parent()->RemoveSelection(clicked_item_);
deselected_blocks.append(clicked_item_);
// If not holding alt, deselect all links as well
if (clip_clicked_item && !(event->GetModifiers() & Qt::AltModifier)) {
parent()->SetBlockLinksSelected(clip_clicked_item, false);
deselected_blocks.append(clip_clicked_item->block_links());
}
}
parent()->SignalDeselectedBlocks(deselected_blocks);
return;
}
}
// If not holding shift, deselect all clips
if (!(event->GetModifiers() & Qt::ShiftModifier)) {
parent()->DeselectAll();
}
if (selectable_item) {
// Collect item selections
QVector<Block*> selected_blocks;
// Select this item
parent()->AddSelection(clicked_item_);
selected_blocks.append(clicked_item_);
// If not holding alt, select all links as well
if (clip_clicked_item && !(event->GetModifiers() & Qt::AltModifier)) {
parent()->SetBlockLinksSelected(clip_clicked_item, true);
selected_blocks.append(clip_clicked_item->block_links());
}
parent()->SignalSelectedBlocks(selected_blocks);
}
can_rubberband_select_ = (event->GetButton() == Qt::LeftButton // Only rubberband select from the primary mouse button
&& (!selectable_item || drag_movement_mode_ == Timeline::kNone)); // And if no item was selected OR the item isn't draggable
if (can_rubberband_select_) {
drag_global_start_ = QCursor::pos();
}
// If we click anywhere other than a marker, deselect all markers
parent()->ruler()->DeselectAllMarkers();
}
void PointerTool::MouseMove(TimelineViewMouseEvent *event)
{
if (can_rubberband_select_) {
if (!rubberband_selecting_) {
// If we clicked an item but are rubberband selecting anyway, deselect it now
if (clicked_item_) {
parent()->RemoveSelection(clicked_item_);
parent()->SignalDeselectedBlocks({clicked_item_});
clicked_item_ = nullptr;
}
parent()->StartRubberBandSelect(drag_global_start_);
rubberband_selecting_ = true;
}
// Process rubberband select
parent()->MoveRubberBandSelect(true, !(event->GetModifiers() & Qt::AltModifier));
} else {
// Process drag
if (!dragging_) {
// Now that the cursor has moved, we will assume the intention is to drag
// Clear snap points
snap_points_.clear();
// If we're performing an action, we can initiate ghosts
if (drag_movement_mode_ != Timeline::kNone) {
InitiateDrag(clicked_item_, drag_movement_mode_, event->GetModifiers());
}
// Set dragging to true here so no matter what, the drag isn't re-initiated until it's completed
dragging_ = true;
}
if (dragging_ && !parent()->GetGhostItems().isEmpty()) {
// We're already dragging AND we have ghosts to work with
ProcessDrag(event->GetCoordinates());
}
}
}
void PointerTool::MouseRelease(TimelineViewMouseEvent *event)
{
if (rubberband_selecting_) {
// Finish rubberband select
parent()->EndRubberBandSelect();
rubberband_selecting_ = false;
return;
}
if (dragging_) {
// If we were dragging, process the end of the drag
if (!parent()->GetGhostItems().isEmpty()) {
FinishDrag(event);
}
// Clean up
parent()->ClearGhosts();
snap_points_.clear();
dragging_ = false;
}
}
void PointerTool::HoverMove(TimelineViewMouseEvent *event)
{
if (trimming_allowed_) {
// No dragging, but we still want to process cursors
Block* block_at_cursor = parent()->GetItemAtScenePos(event->GetCoordinates());
if (block_at_cursor) {
switch (IsCursorInTrimHandle(block_at_cursor, event->GetSceneX())) {
case Timeline::kTrimIn:
parent()->setCursor(Qt::SizeHorCursor);
break;
case Timeline::kTrimOut:
parent()->setCursor(Qt::SizeHorCursor);
break;
default:
parent()->unsetCursor();
}
} else {
parent()->unsetCursor();
}
} else {
parent()->unsetCursor();
}
}
void SetGhostToSlideMode(TimelineViewGhostItem* g)
{
g->SetCanMoveTracks(false);
g->SetData(TimelineViewGhostItem::kGhostIsSliding, true);
}
void PointerTool::InitiateDragInternal(Block *clicked_item,
Timeline::MovementMode trim_mode,
Qt::KeyboardModifiers modifiers,
bool dont_roll_trims,
bool allow_nongap_rolling,
bool slide_instead_of_moving)
{
// Get list of selected blocks
QVector<Block*> clips = parent()->GetSelectedBlocks();
if (trim_mode == Timeline::kMove) {
// Gaps are not allowed to move, and since we only allow moving one block type at a time,
// dragging a gap is a no-op
if (dynamic_cast<GapBlock*>(clicked_item)) {
return;
}
bool sliding_due_to_transition = false;
if (!slide_instead_of_moving) {
// If the user tries to move a transition without moving the clip it belongs to, we turn
// this into a slide
foreach (Block* block, clips) {
if (TransitionBlock* transit = dynamic_cast<TransitionBlock*>(block)) {
if (!CanTransitionMove(transit, clips)) {
slide_instead_of_moving = true;
break;
}
} else if (ClipBlock *clip = dynamic_cast<ClipBlock*>(block)) {
if ((clip->in_transition() && !CanTransitionMove(clip->in_transition(), clips))
|| (clip->out_transition() && !CanTransitionMove(clip->out_transition(), clips))) {
slide_instead_of_moving = true;
break;
}
}
}
sliding_due_to_transition = slide_instead_of_moving;
}
if (slide_instead_of_moving) {
// This is a slide. What we do here is move clips within their own track, between the clips
// that they're already next to. We don't allow changing tracks or changing the order of
// blocks.
//
// For slides to be legal, we make all blocks "contiguous". This means that only one series
// of blocks can move at a time and prevents.
QHash<Track*, Block*> earliest_block_on_track;
QHash<Track*, Block*> latest_block_on_track;
foreach (Block* this_block, clips) {
Block* current_earliest = earliest_block_on_track.value(this_block->track(), nullptr);
if (!current_earliest || this_block->in() < current_earliest->in()) {
earliest_block_on_track.insert(this_block->track(), this_block);
}
Block* current_latest = latest_block_on_track.value(this_block->track(), nullptr);
if (!current_latest || this_block->out() > current_earliest->out()) {
latest_block_on_track.insert(this_block->track(), this_block);
}
}
for (auto i=earliest_block_on_track.constBegin(); i!=earliest_block_on_track.constEnd(); i++) {
// Make a contiguous stream
Track* track = i.key();
Block* earliest = i.value();
Block* latest = latest_block_on_track.value(i.key());
// First we add the block that's out trimming, the one prior to the earliest
{
TimelineViewGhostItem* earliest_ghost;
bool slide_with_earliest_previous = true;
if (sliding_due_to_transition && earliest->previous()) {
if (TransitionBlock *transit = dynamic_cast<TransitionBlock *>(earliest)) {
if (earliest->previous() != transit->connected_out_block()) {
slide_with_earliest_previous = false;
}
} else if (ClipBlock *clip = dynamic_cast<ClipBlock*>(earliest)) {
if (earliest->previous() != clip->in_transition()) {
slide_with_earliest_previous = false;
}
}
}
if (earliest->previous() && slide_with_earliest_previous) {
earliest_ghost = AddGhostFromBlock(earliest->previous(), Timeline::kTrimOut);
} else {
earliest_ghost = AddGhostFromNull(earliest->in(), earliest->in(), track->ToReference(), Timeline::kTrimOut);
}
SetGhostToSlideMode(earliest_ghost);
}
// Then we add the block that's in trimming, the one after the latest
if (latest->next()) {
TimelineViewGhostItem* latest_ghost;
bool slide_with_latest_next = true;
if (sliding_due_to_transition) {
if (TransitionBlock *transit = dynamic_cast<TransitionBlock *>(latest)) {
if (latest->next() != transit->connected_in_block()) {
slide_with_latest_next = false;
}
} else if (ClipBlock *clip = dynamic_cast<ClipBlock*>(latest)) {
if (latest->next() != clip->out_transition()) {
slide_with_latest_next = false;
}
}
}
if (slide_with_latest_next) {
latest_ghost = AddGhostFromBlock(latest->next(), Timeline::kTrimIn);
} else {
latest_ghost = AddGhostFromNull(latest->out(), latest->out(), track->ToReference(), Timeline::kTrimIn);
}
SetGhostToSlideMode(latest_ghost);
}
// Finally, we add all of the moving blocks in between
Block* b = nullptr;
do {
// On first run-through, set to earliest only. From then on, set to the next of the last
// in the loop.
if (b) {
b = b->next();
} else {
b = earliest;
}
TimelineViewGhostItem* between_ghost = AddGhostFromBlock(b, Timeline::kMove);
SetGhostToSlideMode(between_ghost);
} while (b != latest);
}
} else {
// Prepare for a standard pointer move by creating ghosts for them and any related blocks
foreach (Block* block, clips) {
if (dynamic_cast<GapBlock*>(block)) {
continue;
}
// Create ghost for this block
auto ghost = AddGhostFromBlock(block, trim_mode, true);
Q_UNUSED(ghost)
if (ClipBlock *clip = dynamic_cast<ClipBlock*>(block)) {
if (clip->out_transition()) {
AddGhostFromBlock(clip->out_transition(), trim_mode, true);
}
if (clip->in_transition()) {
AddGhostFromBlock(clip->in_transition(), trim_mode, true);
}
}
}
}
} else {
// "Multi-trim" is trimming a clip on more than one track. Only the earliest (for in trimming)
// or latest (for out trimming) clip on each track can be trimmed. Therefore, it's only enabled
// if the clicked item is the earliest/latest on its track.
bool multitrim_enabled = IsClipTrimmable(clicked_item, clips, trim_mode);
// Create ghosts for trimming
for (Block* clip_item : clips) {
if (clip_item != clicked_item
&& (!multitrim_enabled || !IsClipTrimmable(clip_item, clips, trim_mode))) {
// Either multitrim is disabled or this clip is NOT the earliest/latest in its track. We
// won't include it.
continue;
}
Block* block = clip_item;
// Create ghost for this block
TimelineViewGhostItem* ghost = AddGhostFromBlock(block, trim_mode);
// If this side of the clip has a transition, we treat it more like a slide for that
// transition than a trim/roll
bool treat_trim_as_slide = false;
ClipBlock *cb = dynamic_cast<ClipBlock*>(block);
if (cb) {
// See if this clip has a transition attached, and move it with the trim if so
TransitionBlock* connected_transition;
// Get appropriate transition for the side of the clip
if (trim_mode == Timeline::kTrimIn) {
connected_transition = cb->in_transition();
} else {
connected_transition = cb->out_transition();
}
if (connected_transition) {
// We found a transition, we'll make this a "slide" action
TimelineViewGhostItem* transition_ghost = AddGhostFromBlock(connected_transition, Timeline::kMove);
// This will in effect be a slide with the transition moving between two other blocks
SetGhostToSlideMode(ghost);
SetGhostToSlideMode(transition_ghost);
treat_trim_as_slide = true;
// Further processing will apply to this transition rather than the clip
block = connected_transition;
}
}
// Standard pointer trimming in reality is a "roll" edit with an adjacent gap (one that may
// or may not exist already)
if (!dont_roll_trims) {
Block* adjacent = nullptr;
// Determine which block is adjacent
if (trim_mode == Timeline::kTrimIn) {
adjacent = block->previous();
} else {
adjacent = block->next();
}
// See if we can roll the adjacent or if we'll need to create our own gap
if (!dynamic_cast<GapBlock*>(block)
&& !allow_nongap_rolling && adjacent && !dynamic_cast<GapBlock*>(adjacent)
&& !(dynamic_cast<TransitionBlock*>(block)
&& ((trim_mode == Timeline::kTrimIn && static_cast<TransitionBlock*>(block)->connected_out_block() == adjacent)
|| (trim_mode == Timeline::kTrimOut && static_cast<TransitionBlock*>(block)->connected_in_block() == adjacent)))) {
adjacent = nullptr;
}
Timeline::MovementMode flipped_mode = FlipTrimMode(trim_mode);
QVector<TimelineViewGhostItem*> adjacent_ghosts;
if (adjacent) {
adjacent_ghosts.append(AddGhostFromBlock(adjacent, flipped_mode));
// Select adjacent's links if applicable
// FIXME: The check for `clips.size() == 1` may not be necessary, but I don't know yet.
// I'm only including it to prevent any potentially unintended behavior.
if (clips.size() == 1 && !(modifiers & Qt::AltModifier)) {
if (ClipBlock *adjacent_clip = dynamic_cast<ClipBlock*>(adjacent)) {
for (Block *adjacent_link : adjacent_clip->block_links()) {
adjacent_ghosts.append(AddGhostFromBlock(adjacent_link, flipped_mode));
}
}
}
} else if (trim_mode == Timeline::kTrimIn || block->next()) {
rational null_ghost_pos = (trim_mode == Timeline::kTrimIn) ? block->in() : block->out();
adjacent_ghosts.append(AddGhostFromNull(null_ghost_pos, null_ghost_pos, clip_item->track()->ToReference(), flipped_mode));
}
// If we have an adjacent block (for any reason), this is a roll edit and the adjacent is
// expected to fill the remaining space (no gap needs to be created)
ghost->SetData(TimelineViewGhostItem::kTrimIsARollEdit, static_cast<bool>(adjacent));
for (TimelineViewGhostItem *adjacent_ghost : adjacent_ghosts) {
if (adjacent_ghost) {
if (treat_trim_as_slide) {
// We're sliding a transition rather than a pure trim/roll
SetGhostToSlideMode(adjacent_ghost);
} else if (dynamic_cast<GapBlock*>(block)) {
ghost->SetData(TimelineViewGhostItem::kTrimShouldBeIgnored, true);
} else {
adjacent_ghost->SetData(TimelineViewGhostItem::kTrimShouldBeIgnored, true);
}
}
}
}
}
}
}
bool PointerTool::CanTransitionMove(TransitionBlock *transit, const QVector<Block *> &clips)
{
Block *out = transit->connected_out_block();
Block *in = transit->connected_in_block();
if ((out && !clips.contains(out)) || (in && !clips.contains(in))) {
return false;
}
return true;
}
void PointerTool::ProcessDrag(const TimelineCoordinate &mouse_pos)
{
// Calculate track movement
int track_movement = track_movement_allowed_
? mouse_pos.GetTrack().index() - drag_start_.GetTrack().index()
: 0;
// Determine frame movement
rational time_movement = mouse_pos.GetFrame() - drag_start_.GetFrame();
// Validate movement (enforce all ghosts moving in legal ways)
time_movement = ValidateTimeMovement(time_movement);
time_movement = ValidateInTrimming(time_movement);
time_movement = ValidateOutTrimming(time_movement);
// Perform snapping if enabled (adjusts time_movement if it's close to any potential snap points)
if (Core::instance()->snapping()) {
parent()->SnapPoint(snap_points_, &time_movement);
time_movement = ValidateTimeMovement(time_movement);
time_movement = ValidateInTrimming(time_movement);
time_movement = ValidateOutTrimming(time_movement);
}
// Validate ghosts that are being moved (clips from other track types do NOT get moved)
if (track_movement != 0) {
QVector<TimelineViewGhostItem*> validate_track_ghosts = parent()->GetGhostItems();
for (int i=0;i<validate_track_ghosts.size();i++) {
if (validate_track_ghosts.at(i)->GetTrack().type() != drag_track_type_) {
validate_track_ghosts.removeAt(i);
i--;
}
}
track_movement = ValidateTrackMovement(track_movement, validate_track_ghosts);
}
// Perform movement
foreach (TimelineViewGhostItem* ghost, parent()->GetGhostItems()) {
switch (ghost->GetMode()) {
case Timeline::kNone:
break;
case Timeline::kTrimIn:
ghost->SetInAdjustment(time_movement);
ghost->SetMediaInAdjustment(time_movement);
break;
case Timeline::kTrimOut:
ghost->SetOutAdjustment(time_movement);
break;
case Timeline::kMove:
{
ghost->SetInAdjustment(time_movement);
ghost->SetOutAdjustment(time_movement);
// Track movement is only legal for moving, not for trimming
// Also, we only move the clips on the same track type that the drag started from
if (ghost->GetTrack().type() == drag_track_type_) {
ghost->SetTrackAdjustment(track_movement);
}
break;
}
}
}
// Regenerate tooltip and force it to update (otherwise the tooltip won't move as written in the
// documentation, and could get in the way of the cursor)
rational tooltip_timebase = parent()->GetTimebaseForTrackType(drag_start_.GetTrack().type());
QToolTip::hideText();
QToolTip::showText(QCursor::pos(),
Timecode::time_to_timecode(time_movement,
tooltip_timebase,
Core::instance()->GetTimecodeDisplay(),
true),
parent());
}
struct GhostBlockPair {
TimelineViewGhostItem* ghost;
Block* block;
};
void PointerTool::FinishDrag(TimelineViewMouseEvent *event)
{
QList<GhostBlockPair> blocks_moving;
QList<GhostBlockPair> blocks_sliding;
QList<GhostBlockPair> blocks_trimming;
// Sort ghosts depending on which ones are trimming, which are moving, and which are sliding
foreach (TimelineViewGhostItem* ghost, parent()->GetGhostItems()) {
if (ghost->HasBeenAdjusted()) {
Block* b = Node::ValueToPtr<Block>(ghost->GetData(TimelineViewGhostItem::kAttachedBlock));
if (ghost->GetData(TimelineViewGhostItem::kGhostIsSliding).toBool()) {
blocks_sliding.append({ghost, b});
} else if (ghost->GetMode() == Timeline::kMove) {
blocks_moving.append({ghost, b});
} else if (Timeline::IsATrimMode(ghost->GetMode())) {
blocks_trimming.append({ghost, b});
}
}
}
if (blocks_moving.isEmpty()
&& blocks_trimming.isEmpty()
&& blocks_sliding.isEmpty()) {
// No blocks were adjusted, so nothing to do
return;
}
MultiUndoCommand* command = new MultiUndoCommand();
if (!blocks_trimming.isEmpty()) {
foreach (const GhostBlockPair& p, blocks_trimming) {
TimelineViewGhostItem* ghost = p.ghost;
if (!ghost->GetData(TimelineViewGhostItem::kTrimShouldBeIgnored).toBool()) {
// Must be an ordinary trim/roll
BlockTrimCommand* c = new BlockTrimCommand(parent()->GetTrackFromReference(ghost->GetAdjustedTrack()),
p.block,
ghost->GetAdjustedLength(),
ghost->GetMode());
if (event->GetModifiers() & Qt::ControlModifier) {
}
c->SetTrimIsARollEdit(ghost->GetData(TimelineViewGhostItem::kTrimIsARollEdit).toBool());
command->add_child(c);
}
}
if (blocks_moving.isEmpty() && blocks_sliding.isEmpty()) {
// Trim selections (deferring to moving/sliding blocks when necessary)
TimelineWidgetSelections new_sel = parent()->GetSelections();
TimelineViewGhostItem* reference_ghost = blocks_trimming.first().ghost;
if (reference_ghost->GetMode() == Timeline::kTrimIn) {
new_sel.TrimIn(reference_ghost->GetInAdjustment());
} else {
new_sel.TrimOut(reference_ghost->GetOutAdjustment());
}
command->add_child(new TimelineWidget::SetSelectionsCommand(parent(), new_sel, parent()->GetSelections()));
}
}
if (!blocks_moving.isEmpty()) {
// See if we're duplicated because ALT is held (only moved blocks can duplicate)
bool duplicate_clips = (event->GetModifiers() & Qt::AltModifier);
bool inserting = (event->GetModifiers() & Qt::ControlModifier);
// If we're not duplicating, "remove" the clips and replace them with gaps
if (!duplicate_clips) {
QVector<Block*> blocks_to_delete(blocks_moving.size());
for (int i=0; i<blocks_moving.size(); i++) {
blocks_to_delete[i] = blocks_moving.at(i).block;
}
parent()->ReplaceBlocksWithGaps(blocks_to_delete, false, command, false);
}
if (inserting) {
// If we're inserting, ripple everything at the destination with gaps
InsertGapsAtGhostDestination(command);
}
QMap<Node*, Node*> relinks;
// Now we can re-add each clip
foreach (const GhostBlockPair& p, blocks_moving) {
Block* block = p.block;
if (duplicate_clips) {
// Duplicate rather than move
// Place the copy instead of the original block
Block *new_block = static_cast<Block*>(Node::CopyNodeInGraph(block, command));
relinks.insert(block, new_block);
block = new_block;
if (ClipBlock *new_clip = dynamic_cast<ClipBlock*>(block)) {
new_clip->AddCachePassthroughFrom(static_cast<ClipBlock*>(p.block));
}
}
const Track::Reference& track_ref = p.ghost->GetAdjustedTrack();
command->add_child(new TrackPlaceBlockCommand(sequence()->track_list(track_ref.type()),
track_ref.index(),
block,
p.ghost->GetAdjustedIn()));
}
if (!relinks.empty()) {
for (auto it=relinks.cbegin(); it!=relinks.cend(); it++) {
for (auto jt=it.key()->links().cbegin(); jt!=it.key()->links().cend(); jt++) {
Node *link = *jt;
Node *copy_link = relinks.value(link);
if (copy_link) {
command->add_child(new NodeLinkCommand(it.value(), copy_link, true));
}
}
}
}
// Adjust selections
TimelineWidgetSelections new_sel = parent()->GetSelections();
new_sel.ShiftTime(blocks_moving.first().ghost->GetInAdjustment());
new_sel.ShiftTracks(drag_track_type_, blocks_moving.first().ghost->GetTrackAdjustment());
command->add_child(new TimelineWidget::SetSelectionsCommand(parent(), new_sel, parent()->GetSelections()));
}
if (!blocks_sliding.isEmpty()) {
// Assume that the blocks are contiguous per track as set up in InitiateGhostsInternal()
// All we need to do is sort them by track and order them
QHash<Track::Reference, QList<Block*> > slide_info;
QHash<Track::Reference, Block*> in_adjacents;
QHash<Track::Reference, Block*> out_adjacents;
rational movement;
foreach (const GhostBlockPair& p, blocks_sliding) {
const Track::Reference& track = p.ghost->GetTrack();
switch (p.ghost->GetMode()) {
case Timeline::kNone:
break;
case Timeline::kMove:
{
// These all should have moved uniformly, so as long as this is set, it should be fine
movement = p.ghost->GetInAdjustment();
QList<Block*>& blocks_on_this_track = slide_info[track];
bool inserted = false;
for (int i=0;i<blocks_on_this_track.size();i++) {
if (blocks_on_this_track.at(i)->in() > p.block->in()) {
blocks_on_this_track.insert(i, p.block);
inserted = true;
break;
}
}
if (!inserted) {
blocks_on_this_track.append(p.block);
}
break;
}
case Timeline::kTrimIn:
out_adjacents.insert(track, p.block);
break;
case Timeline::kTrimOut:
in_adjacents.insert(track, p.block);
break;
}
}
if (!movement.isNull()) {
for (auto i=slide_info.constBegin(); i!=slide_info.constEnd(); i++) {
command->add_child(new TrackSlideCommand(parent()->GetTrackFromReference(i.key()),
i.value(),
in_adjacents.value(i.key()),
out_adjacents.value(i.key()),
movement));
}
// Adjust selections
TimelineWidgetSelections new_sel = parent()->GetSelections();
new_sel.ShiftTime(movement);
command->add_child(new TimelineWidget::SetSelectionsCommand(parent(), new_sel, parent()->GetSelections()));
}
}
Core::instance()->undo_stack()->pushIfHasChildren(command);
}
Timeline::MovementMode PointerTool::IsCursorInTrimHandle(Block *block, qreal cursor_x)
{
const double kTrimHandle = QtUtils::QFontMetricsWidth(parent()->fontMetrics(), "H");
double block_left = parent()->TimeToScene(block->in());
double block_right = parent()->TimeToScene(block->out());
double block_width = block_right - block_left;
// Block is too narrow, no trimming allowed
if (block_width <= kTrimHandle * 2) {
return Timeline::kNone;
}
if (trimming_allowed_ && cursor_x <= block_left + kTrimHandle) {
return Timeline::kTrimIn;
} else if (trimming_allowed_ && cursor_x >= block_right - kTrimHandle) {
return Timeline::kTrimOut;
} else {
return Timeline::kNone;
}
}
void PointerTool::InitiateDrag(Block *clicked_item, Timeline::MovementMode trim_mode, Qt::KeyboardModifiers modifiers)
{
InitiateDragInternal(clicked_item, trim_mode, modifiers, false, false, false);
}
TimelineViewGhostItem *PointerTool::GetExistingGhostFromBlock(Block *block)
{
foreach (TimelineViewGhostItem* ghost, parent()->GetGhostItems()) {
if (Node::ValueToPtr<Block>(ghost->GetData(TimelineViewGhostItem::kAttachedBlock)) == block) {
return ghost;
}
}
return nullptr;
}
//#define HIDE_GAP_GHOSTS
TimelineViewGhostItem* PointerTool::AddGhostFromBlock(Block* block, Timeline::MovementMode mode, bool check_if_exists)
{
// Ignore null blocks or blocks that aren't attached to a track because there's nothing we can
// do with either of those
if (!block || !block->track()) {
return nullptr;
}
TimelineViewGhostItem* ghost;
// Check if we've already made a ghost for this block
if (check_if_exists) {
if ((ghost = GetExistingGhostFromBlock(block))) {
return ghost;
}
}
// Otherwise, it's time to make a ghost for this block
ghost = TimelineViewGhostItem::FromBlock(block);
#ifdef HIDE_GAP_GHOSTS
if (block->type() == Block::kGap) {
ghost->SetInvisible(true);
}
#endif
AddGhostInternal(ghost, mode);
return ghost;
}
TimelineViewGhostItem* PointerTool::AddGhostFromNull(const rational &in, const rational &out, const Track::Reference& track, Timeline::MovementMode mode)
{
TimelineViewGhostItem* ghost = new TimelineViewGhostItem();
ghost->SetIn(in);
ghost->SetOut(out);
ghost->SetTrack(track);
#ifdef HIDE_GAP_GHOSTS
ghost->SetInvisible(true);
#endif
AddGhostInternal(ghost, mode);
return ghost;
}
void PointerTool::AddGhostInternal(TimelineViewGhostItem* ghost, Timeline::MovementMode mode)
{
ghost->SetMode(mode);
// Prepare snap points (optimizes snapping for later)
switch (mode) {
case Timeline::kMove:
snap_points_.push_back(ghost->GetIn());
snap_points_.push_back(ghost->GetOut());
break;
case Timeline::kTrimIn:
snap_points_.push_back(ghost->GetIn());
break;
case Timeline::kTrimOut:
snap_points_.push_back(ghost->GetOut());
break;
default:
break;
}
parent()->AddGhost(ghost);
}
bool PointerTool::IsClipTrimmable(Block *clip,
const QVector<Block*>& items,
const Timeline::MovementMode& mode)
{
foreach (Block* compare, items) {
if (clip->track() == compare->track()
&& clip != compare
&& ((compare->in() < clip->in() && mode == Timeline::kTrimIn)
|| (compare->out() > clip->out() && mode == Timeline::kTrimOut))) {
return false;
}
}
return true;
}
rational PointerTool::ValidateInTrimming(rational movement)
{
bool first_ghost = true;
foreach (TimelineViewGhostItem* ghost, parent()->GetGhostItems()) {
if (ghost->GetMode() != Timeline::kTrimIn) {
continue;
}
rational earliest_in = RATIONAL_MIN;
rational latest_in = ghost->GetOut();
rational ghost_timebase = parent()->GetTimebaseForTrackType(ghost->GetTrack().type());
// If the ghost must be at least one frame in size, limit the latest allowed in point
if (!ghost->CanHaveZeroLength()) {
latest_in -= ghost_timebase;
}
// Clamp adjusted value between the earliest and latest values
rational adjusted = ghost->GetIn() + movement;
rational clamped = clamp(adjusted, earliest_in, latest_in);
if (clamped != adjusted) {
movement = clamped - ghost->GetIn();
}
if (first_ghost) {
movement = SnapMovementToTimebase(ghost->GetIn(), movement, ghost_timebase);
first_ghost = false;
}
}
return movement;
}
rational PointerTool::ValidateOutTrimming(rational movement)
{
bool first_ghost = true;
foreach (TimelineViewGhostItem* ghost, parent()->GetGhostItems()) {
if (ghost->GetMode() != Timeline::kTrimOut) {
continue;
}
// Determine earliest and latest out points
rational earliest_out = ghost->GetIn();
rational ghost_timebase = parent()->GetTimebaseForTrackType(ghost->GetTrack().type());
if (!ghost->CanHaveZeroLength()) {
earliest_out += ghost_timebase;
}
rational latest_out = RATIONAL_MAX;
// Clamp adjusted value between the earliest and latest values
rational adjusted = ghost->GetOut() + movement;
rational clamped = clamp(adjusted, earliest_out, latest_out);
if (clamped != adjusted) {
movement = clamped - ghost->GetOut();
}
if (first_ghost) {
movement = SnapMovementToTimebase(ghost->GetOut(), movement, ghost_timebase);
first_ghost = false;
}
}
return movement;
}
}