/*** Olive - Non-Linear Video Editor Copyright (C) 2022 Olive Team Modifications Copyright (C) 2025 mikesolar 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 . ***/ #include "timebasedwidget.h" #include #include "common/autoscroll.h" #include "common/range.h" #include "config/config.h" #include "core.h" #include "common/current.h" #include "dialog/markerproperties/markerpropertiesdialog.h" #include "node/project/sequence/sequence.h" #include "timeline/timelineundoworkarea.h" #include "widget/timeruler/timeruler.h" namespace olive { TimeBasedWidget::TimeBasedWidget(bool ruler_text_visible, bool ruler_cache_status_visible, QWidget *parent) : TimelineScaledWidget(parent) , viewer_node_(nullptr) , auto_max_scrollbar_(false) , toggle_show_all_(false) , auto_set_timebase_(true) , workarea_(nullptr) , markers_(nullptr) { scrollbar_ = new ResizableTimelineScrollBar(Qt::Horizontal, this); connect(scrollbar_, &ResizableScrollBar::resize_began, this, &TimeBasedWidget::scroll_bar_resize_began); connect(scrollbar_, &ResizableScrollBar::resize_moved, this, &TimeBasedWidget::scroll_bar_resize_moved); ruler_ = new TimeRuler(ruler_text_visible, ruler_cache_status_visible, this); connect_timeline_view(ruler_); ruler()->set_snap_service(this); connect(ruler(), &TimeRuler::drag_moved, this, static_cast( &TimeBasedWidget::set_catch_up_scroll_value)); connect(ruler(), &TimeRuler::drag_released, this, static_cast( &TimeBasedWidget::stop_catch_up_scroll_timer)); catchup_scroll_timer_ = new QTimer(this); catchup_scroll_timer_->setInterval(250); // Hardcoded 1/4 scroll limit value connect(catchup_scroll_timer_, &QTimer::timeout, this, &TimeBasedWidget::catch_up_timer_timeout); } void TimeBasedWidget::set_scale_and_center_on_playhead(const double &scale) { SetScale(scale); // Zoom towards the playhead // (using a hacky singleShot so the scroll occurs after the scene and its scrollbars have updated) QTimer::singleShot(0, this, &TimeBasedWidget::center_scroll_on_playhead); } ViewerOutput *TimeBasedWidget::get_connected_node() const { return viewer_node_.data(); } void TimeBasedWidget::connect_viewer_node(ViewerOutput *node) { // Ignore no-op if (viewer_node_ == node) { return; } // Set viewer node ViewerOutput *old = viewer_node_.data(); viewer_node_ = node; if (viewer_node_) { Current::getInstance().setCurrentVideoParams( viewer_node_->get_video_params()); Current::getInstance().setCurrentAudioParams( viewer_node_->get_audio_params()); } else { Current::getInstance().setCurrentVideoParams(VideoParams()); Current::getInstance().setCurrentAudioParams(AudioParams()); } if (old) { // Call potential derivative functions for disconnecting the viewer node DisconnectNodeEvent(old); // Disconnect length changed signal disconnect(old, &ViewerOutput::length_changed, this, &TimeBasedWidget::update_maximum_scroll); disconnect(old, &ViewerOutput::removed_from_graph, this, &TimeBasedWidget::connected_node_removed_from_graph); disconnect(old, &ViewerOutput::playhead_changed, this, &TimeBasedWidget::playhead_time_changed); // Disconnect rate change signals if they were connected disconnect(old, &ViewerOutput::frame_rate_changed, this, &TimeBasedWidget::auto_update_timebase); disconnect(old, &ViewerOutput::sample_rate_changed, this, &TimeBasedWidget::auto_update_timebase); // Reset timebase to null SetTimebase(Rational()); // Disconnect ruler and scrollbar from timeline points connect_work_area(nullptr); connect_markers(nullptr); } // Call derivatives for (TimeBasedView *view : timeline_views_) { view->set_viewer_node(viewer_node_.data()); } ConnectedNodeChangeEvent(viewer_node_.data()); if (viewer_node_) { // Connect length changed signal connect(viewer_node_.data(), &ViewerOutput::length_changed, this, &TimeBasedWidget::update_maximum_scroll); connect(viewer_node_.data(), &ViewerOutput::removed_from_graph, this, &TimeBasedWidget::connected_node_removed_from_graph); connect(viewer_node_.data(), &ViewerOutput::playhead_changed, this, &TimeBasedWidget::playhead_time_changed); // Connect ruler and scrollbar to timeline points connect_work_area(viewer_node_->get_work_area()); connect_markers(viewer_node_->get_markers()); // If we're setting the timebase, set it automatically based on the video and audio parameters if (auto_set_timebase_) { auto_update_timebase(); connect(viewer_node_.data(), &ViewerOutput::frame_rate_changed, this, &TimeBasedWidget::auto_update_timebase); connect(viewer_node_.data(), &ViewerOutput::sample_rate_changed, this, &TimeBasedWidget::auto_update_timebase); } // Call derivatives ConnectNodeEvent(viewer_node_.data()); } update_maximum_scroll(); emit connected_node_changed(old, node); } void TimeBasedWidget::connect_work_area(TimelineWorkArea *workarea) { workarea_ = workarea; ruler()->set_work_area(workarea); scrollbar_->connect_work_area(workarea); } void TimeBasedWidget::connect_markers(TimelineMarkerList *markers) { markers_ = markers; ruler()->set_markers(markers); scrollbar_->connect_markers(markers); } void TimeBasedWidget::update_maximum_scroll() { Rational length = (viewer_node_) ? viewer_node_->get_length() : 0; if (auto_max_scrollbar_) { scrollbar_->setMaximum( std::max(0, int(std::ceil(time_to_scene(length)) - width()))); } foreach (TimeBasedView *base, timeline_views_) { base->set_end_time(length); } } void TimeBasedWidget::scroll_bar_resize_began(int current_bar_width, bool top_handle) { QScrollBar *bar = static_cast(sender()); scrollbar_start_width_ = current_bar_width; scrollbar_start_value_ = bar->value(); scrollbar_start_scale_ = get_scale(); scrollbar_top_handle_ = top_handle; } void TimeBasedWidget::scroll_bar_resize_moved(int movement) { ResizableScrollBar *bar = static_cast(sender()); // Negate movement for the top handle if (scrollbar_top_handle_) { movement = -movement; } // The user wants the bar to be this size int proposed_size = scrollbar_start_width_ + movement; double ratio = double(scrollbar_start_width_) / double(proposed_size); if (ratio > 0) { SetScale(scrollbar_start_scale_ * ratio); if (scrollbar_top_handle_) { int viewable_area; if (timeline_views_.isEmpty()) { viewable_area = width(); } else { viewable_area = timeline_views_.first()->width(); } bar->setValue((scrollbar_start_value_ + viewable_area) * ratio - viewable_area); } else { bar->setValue(scrollbar_start_value_ * ratio); } } } void TimeBasedWidget::page_scroll_to_playhead() { if (get_connected_node()) { page_scroll_internal( qRound(time_to_scene(get_connected_node()->get_playhead())), true); } } void TimeBasedWidget::catch_up_scroll_to_playhead() { if (get_connected_node()) { catch_up_scroll_to_point( qRound(time_to_scene(get_connected_node()->get_playhead()))); } } void TimeBasedWidget::catch_up_scroll_to_point(int point) { page_scroll_internal(point, false); } void TimeBasedWidget::catch_up_timer_timeout() { for (auto it = catchup_scroll_values_.cbegin(); it != catchup_scroll_values_.cend(); it++) { QScrollBar *sb = it.key(); const CatchUpScrollData &d = it.value(); page_scroll_internal(sb, d.maximum, sb->value() + d.value, false); } SendCatchUpScrollEvent(); } void TimeBasedWidget::SendCatchUpScrollEvent() { for (auto v : this->timeline_views_) { v->CatchUpScrollEvent(); } } void TimeBasedWidget::auto_update_timebase() { if (!viewer_node_) { SetTimebase(Rational()); return; } Rational video_tb = viewer_node_->get_video_params().frame_rate_as_time_base(); if (!video_tb.isNull()) { SetTimebase(video_tb); } else { Rational audio_tb = viewer_node_->get_audio_params().sample_rate_as_time_base(); if (!audio_tb.isNull()) { SetTimebase(audio_tb); } else { SetTimebase(Rational()); } } } void TimeBasedWidget::connected_node_removed_from_graph() { connect_viewer_node(nullptr); } TimeRuler *TimeBasedWidget::ruler() const { return ruler_; } ResizableTimelineScrollBar *TimeBasedWidget::scrollbar() const { return scrollbar_; } void TimeBasedWidget::TimebaseChangedEvent(const Rational &timebase) { TimelineScaledWidget::TimebaseChangedEvent(timebase); ruler_->set_timebase(timebase); scrollbar_->set_timebase(timebase); emit timebase_changed(timebase); } void TimeBasedWidget::ScaleChangedEvent(const double &scale) { TimelineScaledWidget::ScaleChangedEvent(scale); ruler_->set_scale(scale); scrollbar_->SetScale(scale); update_maximum_scroll(); QMetaObject::invokeMethod(this, &TimeBasedWidget::SendCatchUpScrollEvent, Qt::QueuedConnection); toggle_show_all_ = false; } void TimeBasedWidget::set_auto_max_scroll_bar(bool e) { auto_max_scrollbar_ = e; } void TimeBasedWidget::resizeEvent(QResizeEvent *event) { QWidget::resizeEvent(event); // Update horizontal scrollbar's page step to the width of the panel scrollbar()->setPageStep(scrollbar()->width()); update_maximum_scroll(); } void TimeBasedWidget::connect_timeline_view(TimeBasedView *base) { // Connect scale connect(base, &TimeBasedView::scale_changed, this, &TimeBasedWidget::SetScale); // Main scrollbar to view scrollbar and vice versa connect(scrollbar(), &QScrollBar::valueChanged, base->horizontalScrollBar(), &QScrollBar::setValue); connect(base->horizontalScrollBar(), &QScrollBar::valueChanged, scrollbar(), &QScrollBar::setValue); // Connect scrollbar to other scrollbars for (TimeBasedView *other : qAsConst(timeline_views_)) { connect(other->horizontalScrollBar(), &QScrollBar::valueChanged, base->horizontalScrollBar(), &QScrollBar::setValue); connect(base->horizontalScrollBar(), &QScrollBar::valueChanged, other->horizontalScrollBar(), &QScrollBar::setValue); } timeline_views_.append(base); } void TimeBasedWidget::set_catch_up_scroll_value(QScrollBar *b, int v, int maximum) { CatchUpScrollData &cudata = catchup_scroll_values_[b]; cudata.value = v; cudata.maximum = maximum; static const qint64 min_cooldown = 100; // Hardcoded 1/10 sec cooldown if (QDateTime::currentMSecsSinceEpoch() - cudata.last_forced >= min_cooldown) { QMetaObject::invokeMethod(this, &TimeBasedWidget::catch_up_timer_timeout, Qt::QueuedConnection); cudata.last_forced = QDateTime::currentMSecsSinceEpoch(); } if (!catchup_scroll_timer_->isActive()) { catchup_scroll_timer_->start(); } } void TimeBasedWidget::set_catch_up_scroll_value(int v) { set_catch_up_scroll_value(scrollbar_, v, ruler()->width()); } void TimeBasedWidget::stop_catch_up_scroll_timer(QScrollBar *b) { catchup_scroll_values_.remove(b); if (catchup_scroll_values_.empty()) { catchup_scroll_timer_->stop(); } } void TimeBasedWidget::playhead_time_changed(const Rational &time) { if (user_is_dragging_playhead()) { // If the user is dragging the playhead, we will simply nudge over and not use autoscroll rules. set_catch_up_scroll_value(qRound(time_to_scene(time)) - scrollbar_->value()); } else { // Otherwise, assume we jumped to this out of nowhere and must now autoscroll switch (static_cast( OAK_CONFIG("Autoscroll").toInt())) { case AutoScroll::k_none: // Do nothing break; case AutoScroll::k_page: QMetaObject::invokeMethod(this, "page_scroll_to_playhead", Qt::QueuedConnection); break; case AutoScroll::k_smooth: QMetaObject::invokeMethod(this, "center_scroll_on_playhead", Qt::QueuedConnection); break; } } TimeChangedEvent(time); } void TimeBasedWidget::SetTimebase(const Rational &timebase) { TimelineScaledWidget::set_timebase(timebase); } void TimeBasedWidget::SetScale(const double &scale) { // Simple QObject slot wrapper around TimelineScaledWidget::SetScale() TimelineScaledWidget::set_scale(scale); } void TimeBasedWidget::zoom_in() { set_scale_and_center_on_playhead(get_scale() * 2); } void TimeBasedWidget::zoom_out() { set_scale_and_center_on_playhead(get_scale() * 0.5); } void TimeBasedWidget::go_to_prev_cut() { // Cuts are only possible in sequences Sequence *sequence = dynamic_cast(viewer_node_.data()); if (!sequence) { return; } if (get_connected_node()->get_playhead().isNull()) { return; } Rational closest_cut = 0; for (Track *track : sequence->get_tracks()) { Rational this_track_closest_cut = 0; for (Block *block : track->blocks()) { if (block->out() < get_connected_node()->get_playhead()) { this_track_closest_cut = block->out(); } else { break; } } closest_cut = qMax(closest_cut, this_track_closest_cut); } get_connected_node()->set_playhead(closest_cut); } void TimeBasedWidget::go_to_next_cut() { // Cuts are only possible in sequences Sequence *sequence = dynamic_cast(viewer_node_.data()); if (!sequence) { return; } Rational closest_cut = RATIONAL_MAX; for (Track *track : sequence->get_tracks()) { Rational this_track_closest_cut = track->track_length(); if (this_track_closest_cut <= get_connected_node()->get_playhead()) { this_track_closest_cut = RATIONAL_MAX; } for (Block *block : track->blocks()) { if (block->in() > get_connected_node()->get_playhead()) { this_track_closest_cut = block->in(); break; } } closest_cut = qMin(closest_cut, this_track_closest_cut); } if (closest_cut < RATIONAL_MAX) { get_connected_node()->set_playhead(closest_cut); } } void TimeBasedWidget::go_to_start() { if (viewer_node_) { viewer_node_->set_playhead(0); } } void TimeBasedWidget::prev_frame() { if (viewer_node_) { Rational proposed_time = Timecode::snap_time_to_timebase( get_connected_node()->get_playhead() - timebase(), timebase(), Timecode::k_ceil); if (proposed_time == get_connected_node()->get_playhead()) { // Catch rounding error, assume this time is snapped and just subtract a timebase proposed_time -= timebase(); } viewer_node_->set_playhead(qMax(Rational(0), proposed_time)); } } void TimeBasedWidget::next_frame() { if (viewer_node_) { Rational proposed_time = Timecode::snap_time_to_timebase( get_connected_node()->get_playhead() + timebase(), timebase(), Timecode::k_floor); if (proposed_time == get_connected_node()->get_playhead()) { // Catch rounding error, assume this time is snapped and just add a timebase proposed_time += timebase(); } viewer_node_->set_playhead(proposed_time); } } void TimeBasedWidget::go_to_end() { if (viewer_node_) { viewer_node_->set_playhead(viewer_node_->get_length()); } } void TimeBasedWidget::center_scroll_on_playhead() { if (get_connected_node()) { scrollbar_->setValue( qRound(time_to_scene(get_connected_node()->get_playhead())) - scrollbar_->width() / 2); } } void TimeBasedWidget::set_auto_set_timebase(bool e) { auto_set_timebase_ = e; } void TimeBasedWidget::set_point(Timeline::MovementMode m, const Rational &time) { if (!viewer_node_) { return; } MultiUndoCommand *command = new MultiUndoCommand(); TimelineWorkArea *points = viewer_node_->get_work_area(); // Enable workarea if it isn't already enabled if (!points->enabled()) { command->add_child(new WorkareaSetEnabledCommand( viewer_node_->project(), points, true)); } // Determine our new range Rational in_point, out_point; if (m == Timeline::k_trim_in) { in_point = time; if (!points->enabled() || points->out() < in_point) { out_point = TimelineWorkArea::k_reset_out; } else { out_point = points->out(); } } else { out_point = time; if (!points->enabled() || points->in() > out_point) { in_point = TimelineWorkArea::k_reset_in; } else { in_point = points->in(); } } // Set workarea command->add_child( new WorkareaSetRangeCommand(points, TimeRange(in_point, out_point))); Core::instance()->undo_stack()->push(command, tr("Set In/Out Point")); } void TimeBasedWidget::reset_point(Timeline::MovementMode m) { if (!get_connected_node()) { return; } TimelineWorkArea *points = get_connected_node()->get_work_area(); if (!points->enabled()) { return; } TimeRange r = points->range(); if (m == Timeline::k_trim_in) { r.set_in(TimelineWorkArea::k_reset_in); } else { r.set_out(TimelineWorkArea::k_reset_out); } Core::instance()->undo_stack()->push(new WorkareaSetRangeCommand(points, r), tr("Reset In/Out Points")); } void TimeBasedWidget::page_scroll_internal(QScrollBar *bar, int maximum, int screen_position, bool whole_page_scroll) { int viewport_padding = maximum / 16; if (whole_page_scroll) { if (screen_position < bar->value()) { // Anchor the playhead to the RIGHT of where we scroll to bar->setValue(screen_position - maximum + viewport_padding); } else if (screen_position > bar->value() + maximum) { // Anchor the playhead to the LEFT of where we scroll to bar->setValue(screen_position - viewport_padding); } } else { // Just jump in increments if (screen_position < bar->value() + viewport_padding) { bar->setValue(bar->value() - viewport_padding); } else if (screen_position > bar->value() + maximum - viewport_padding) { bar->setValue(bar->value() + viewport_padding); } } } void TimeBasedWidget::page_scroll_internal(int screen_position, bool whole_page_scroll) { page_scroll_internal(scrollbar(), ruler()->width(), screen_position, whole_page_scroll); } bool TimeBasedWidget::user_is_dragging_playhead() const { foreach (TimeBasedView *view, timeline_views_) { if (view->is_dragging_playhead()) { return true; } } return false; } void TimeBasedWidget::set_in_at_playhead() { set_point(Timeline::k_trim_in, get_connected_node()->get_playhead()); } void TimeBasedWidget::set_out_at_playhead() { set_point(Timeline::k_trim_out, get_connected_node()->get_playhead()); } void TimeBasedWidget::reset_in() { reset_point(Timeline::k_trim_in); } void TimeBasedWidget::reset_out() { reset_point(Timeline::k_trim_out); } void TimeBasedWidget::clear_in_out_points() { if (!get_connected_node()) { return; } Core::instance()->undo_stack()->push( new WorkareaSetEnabledCommand(get_connected_node()->project(), get_connected_node()->get_work_area(), false), tr("Cleared In/Out Points")); } void TimeBasedWidget::set_marker() { if (!get_connected_node()) { return; } TimelineMarkerList *markers = get_connected_node()->get_markers(); if (TimelineMarker *existing = markers->get_marker_at_time(get_connected_node()->get_playhead())) { // We already have a marker here, so pop open the edit dialog MarkerPropertiesDialog mpd({ existing }, timebase(), this); mpd.exec(); } else { // Create a new marker and place it here int color; if (TimelineMarker *closest = markers->get_closest_marker_to_time( get_connected_node()->get_playhead())) { // Copy color of closest marker to this time color = closest->color(); } else { // Fallback to default color in preferences color = OAK_CONFIG("MarkerColor").toInt(); } TimelineMarker *marker = new TimelineMarker( color, TimeRange(get_connected_node()->get_playhead(), get_connected_node()->get_playhead())); if (OAK_CONFIG("SetNameWithMarker").toBool()) { MarkerPropertiesDialog mpd({ marker }, timebase(), this); if (mpd.exec() != QDialog::Accepted) { delete marker; marker = nullptr; } } if (marker) { Core::instance()->undo_stack()->push( new MarkerAddCommand(markers, marker), tr("Added Marker")); } } } void TimeBasedWidget::toggle_show_all() { if (!get_connected_node()) { return; } if (toggle_show_all_) { SetScale(toggle_show_all_old_scale_); scrollbar_->setValue(toggle_show_all_old_scroll_); // Don't have to set toggle_show_all_ because SetScale() will automatically set it to false } else { int w; if (timeline_views_.isEmpty()) { w = width(); } else { w = timeline_views_.first()->width(); } toggle_show_all_old_scale_ = get_scale(); toggle_show_all_old_scroll_ = scrollbar_->value(); set_scale_from_dimensions(w, get_connected_node()->get_length().to_double()); scrollbar_->setValue(0); // Must explicitly do this because SetScale() will automatically set this to false toggle_show_all_ = true; } } void TimeBasedWidget::go_to_in() { if (get_connected_node()) { if (get_connected_node()->get_work_area()->enabled()) { get_connected_node()->set_playhead( get_connected_node()->get_work_area()->in()); } else { go_to_start(); } } } void TimeBasedWidget::go_to_out() { if (get_connected_node()) { if (get_connected_node()->get_work_area()->enabled()) { get_connected_node()->set_playhead( get_connected_node()->get_work_area()->out()); } else { go_to_end(); } } } void TimeBasedWidget::delete_selected() { if (ruler_->has_items_selected()) { ruler_->delete_selected(); } } struct SnapData { Rational time; Rational movement; }; void attempt_snap(std::vector &snap_data, const std::vector &screen_pt, double compare_pt, const std::vector &start_times, const Rational &compare_time) { const qreal k_snap_range = 10; // FIXME: Hardcoded number for (size_t i = 0; i < screen_pt.size(); i++) { // Attempt snapping to clip out point if (in_range(screen_pt.at(i), compare_pt, k_snap_range)) { snap_data.push_back( { compare_time, compare_time - start_times.at(i) }); } } } bool TimeBasedWidget::snap_point(const std::vector &start_times, Rational *movement, SnapMask snap_points) { std::vector screen_pt(start_times.size()); for (size_t i = 0; i < start_times.size(); i++) { screen_pt[i] = time_to_scene(start_times.at(i) + *movement); } std::vector potential_snaps; if (snap_points & k_snap_to_playhead) { Rational playhead_abs_time = get_connected_node()->get_playhead(); qreal playhead_pos = time_to_scene(playhead_abs_time); attempt_snap(potential_snaps, screen_pt, playhead_pos, start_times, playhead_abs_time); } if ((snap_points & k_snap_to_clips) && get_snap_blocks()) { for (auto it = get_snap_blocks()->cbegin(); it != get_snap_blocks()->cend(); it++) { Block *b = *it; qreal rect_left = time_to_scene(b->in()); qreal rect_right = time_to_scene(b->out()); // Attempt snapping to clip in point attempt_snap(potential_snaps, screen_pt, rect_left, start_times, b->in()); // Attempt snapping to clip out point attempt_snap(potential_snaps, screen_pt, rect_right, start_times, b->out()); if (snap_points & k_snap_to_markers) { // Snap to clip markers too if (ClipBlock *clip = dynamic_cast(b)) { if (clip->connected_viewer()) { TimelineMarkerList *markers = clip->connected_viewer()->get_markers(); for (auto jt = markers->cbegin(); jt != markers->cend(); jt++) { TimelineMarker *marker = *jt; TimeRange marker_range = marker->time() + clip->in() - clip->media_in(); qreal marker_in_screen = time_to_scene(marker_range.in()); qreal marker_out_screen = time_to_scene(marker_range.out()); attempt_snap(potential_snaps, screen_pt, marker_in_screen, start_times, marker_range.in()); attempt_snap(potential_snaps, screen_pt, marker_out_screen, start_times, marker_range.out()); } } } } } } if ((snap_points & k_snap_to_markers) && ruler()->get_markers()) { for (auto it = ruler()->get_markers()->cbegin(); it != ruler()->get_markers()->cend(); it++) { TimelineMarker *m = *it; // Ignore selected markers if (std::find(ruler()->get_selected_markers().cbegin(), ruler()->get_selected_markers().cend(), m) != ruler()->get_selected_markers().cend()) { continue; } qreal marker_pos = time_to_scene(m->time().in()); attempt_snap(potential_snaps, screen_pt, marker_pos, start_times, m->time().in()); if (m->time().in() != m->time().out()) { marker_pos = time_to_scene(m->time().out()); attempt_snap(potential_snaps, screen_pt, marker_pos, start_times, m->time().out()); } } } if ((snap_points & k_snap_to_workarea) && ruler()->get_work_area() && ruler()->get_work_area()->enabled()) { const Rational &workarea_in = ruler()->get_work_area()->in(); const Rational &workarea_out = ruler()->get_work_area()->out(); attempt_snap(potential_snaps, screen_pt, time_to_scene(workarea_in), start_times, workarea_in); attempt_snap(potential_snaps, screen_pt, time_to_scene(workarea_out), start_times, workarea_out); } if ((snap_points & k_snap_to_keyframes) && get_snap_keyframes()) { for (auto it = get_snap_keyframes()->cbegin(); it != get_snap_keyframes()->cend(); it++) { const QVector &keys = (*it)->get_keyframes(); for (auto jt = keys.cbegin(); jt != keys.cend(); jt++) { NodeKeyframe *key = *jt; auto ignore = get_snap_ignore_keyframes(); if (ignore && std::find(ignore->cbegin(), ignore->cend(), key) != ignore->cend()) { continue; } Rational time = key->time(); if (const TimeTargetObject *target = get_keyframe_time_target()) { if (Node *parent = key->parent()) { time = target->get_adjusted_time( parent, target->get_time_target(), time, Node::k_transform_towards_output); } } qreal key_scene_pt = time_to_scene(time); attempt_snap(potential_snaps, screen_pt, key_scene_pt, start_times, time); } } } if (potential_snaps.empty()) { hide_snaps(); return false; } int closest_snap = 0; Rational closest_diff = qAbs(potential_snaps.at(0).movement - *movement); // Determine which snap point was the closest for (size_t 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 std::vector snap_times; foreach (const SnapData &d, potential_snaps) { if (d.movement == *movement) { snap_times.push_back(d.time); } } show_snaps(snap_times); return true; } void TimeBasedWidget::show_snaps(const std::vector ×) { foreach (TimeBasedView *view, timeline_views_) { view->enable_snap(times); } } void TimeBasedWidget::hide_snaps() { foreach (TimeBasedView *view, timeline_views_) { view->disable_snap(); } } bool TimeBasedWidget::copy_selected(bool cut) { if (ruler()->copy_selected(cut)) { return true; } return false; } bool TimeBasedWidget::paste() { if (ruler()->paste_markers()) { return true; } return false; } }