Automated with clang-tidy readability-identifier-naming (config added to .clang-tidy) plus scripted passes, per the updated rules now documented in CONTRIBUTING.md: - types (class/struct/enum/alias/template params): PascalCase - functions, variables, members: snake_case (incl. rational -> Rational) - private/protected members: trailing underscore; static member variables likewise (instance_, available_themes_) - constants and enum values: snake_case (kLinear -> k_linear, F32P -> f32p); ALL_CAPS reserved for macros - macros: OAK_ prefix (OLIVE_ADD_TEST/OLIVE_ASSERT/OLIVE_CONFIG -> OAK_ADD_TEST/OAK_ASSERT/OAK_CONFIG, GL_PREAMBLE -> OAK_GL_PREAMBLE, include guards -> OAK_*) - file names: all lowercase (Current/Plugin/OliveHost/OliveClip/ OlivePluginInstance -> current/plugin/olivehost/oliveclip/ oliveplugininstance) - getters share the member name sans underscore, setters set_foo() - Qt and third-party (OpenFX) virtual overrides and framework callbacks keep their original names (exempt in .clang-tidy) Manual follow-ups required where automation could not reach: - string-based QMetaObject/SIGNAL/SLOT references updated to renamed methods (AddTask, CreatedFile, DeleteSpecificFile, moveSelectionUp, ...) - macro bodies referencing renamed methods (OLIVE_CONFIG, NODE_DEFAULT_DESTRUCTOR, MANAGEDDISPLAYWIDGET_*) - self-shadowing locals renamed where signals/methods became same-named (size_changed, worker_count, selected_items, import param, filters) - third_party OFX member/namespace usages restored (OFX::Host::*, _created, _clipPrefsDirty, createInstance, clearPersistentMessage) - STL protocol aliases restored (const_iterator) with .clang-tidy ignore rules; qHash overloads restored Full build and test suite pass: ctest 4/4, ~1960 gtest cases green.
493 lines
11 KiB
C++
493 lines
11 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2022 Olive Team
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Modifications Copyright (C) 2025 mikesolar
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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***/
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#ifndef OAK_TIMEBASEDVIEWSELECTIONMANAGER_H
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#define OAK_TIMEBASEDVIEWSELECTIONMANAGER_H
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#include <QGraphicsView>
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#include <QMouseEvent>
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#include <QRubberBand>
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#include <QToolTip>
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#include "common/qtutils.h"
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#include "timebasedview.h"
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#include "timebasedwidget.h"
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#include "widget/timetarget/timetarget.h"
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namespace olive
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{
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template <typename T> class TimeBasedViewSelectionManager {
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public:
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TimeBasedViewSelectionManager(TimeBasedView *view)
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: view_(view)
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, rubberband_(nullptr)
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, snap_mask_(TimeBasedWidget::k_snap_all)
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{
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}
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void set_snap_mask(TimeBasedWidget::SnapMask e)
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{
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snap_mask_ = e;
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}
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void clear_drawn_objects()
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{
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drawn_objects_.clear();
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}
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void declare_drawn_object(T *object, const QRectF &rect)
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{
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QRectF r(view_->unscale_point(rect.topLeft()),
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view_->unscale_point(rect.bottomRight()));
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drawn_objects_.push_back({ object, r });
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}
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bool select(T *key)
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{
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Q_ASSERT(key);
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if (!is_selected(key)) {
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selected_.push_back(key);
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return true;
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}
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return false;
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}
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bool deselect(T *key)
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{
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Q_ASSERT(key);
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auto it = std::find(selected_.cbegin(), selected_.cend(), key);
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if (it == selected_.cend()) {
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return false;
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} else {
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selected_.erase(it);
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return true;
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}
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}
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void clear_selection()
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{
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selected_.clear();
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}
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bool is_selected(T *key) const
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{
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return std::find(selected_.cbegin(), selected_.cend(), key) !=
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selected_.cend();
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}
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const std::vector<T *> &get_selected_objects() const
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{
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return selected_;
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}
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void set_timebase(const Rational &tb)
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{
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timebase_ = tb;
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}
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T *get_object_at_point(const QPointF &scene_pt)
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{
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// Iterate in reverse order because the objects drawn later will appear on top to the user
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QPointF unscaled = view_->unscale_point(scene_pt);
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for (auto it = drawn_objects_.crbegin(); it != drawn_objects_.crend();
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it++) {
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const DrawnObject &kp = *it;
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if (kp.second.contains(unscaled)) {
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return kp.first;
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}
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}
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return nullptr;
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}
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T *get_object_at_point(const QPoint &pt)
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{
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return get_object_at_point(view_->mapToScene(pt));
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}
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T *mouse_press(QMouseEvent *event)
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{
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T *key_under_cursor = nullptr;
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if (event->button() == Qt::LeftButton ||
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event->button() == Qt::RightButton) {
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// See if there's a keyframe in this position
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key_under_cursor = get_object_at_point(event->pos());
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bool holding_shift = event->modifiers() & Qt::ShiftModifier;
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if (!key_under_cursor || !is_selected(key_under_cursor)) {
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if (!holding_shift) {
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// If not already selecting and not holding shift, clear the current selection
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clear_selection();
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}
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// Add item to selection, either nothing if shift wasn't held, or the existing selection
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if (key_under_cursor) {
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select(key_under_cursor);
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view_->SelectionManagerSelectEvent(key_under_cursor);
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}
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} else if (holding_shift) {
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// If selected and holding shift, de-select this item but do nothing else
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deselect(key_under_cursor);
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view_->SelectionManagerDeselectEvent(key_under_cursor);
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key_under_cursor = nullptr;
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}
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}
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return key_under_cursor;
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}
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bool is_dragging() const
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{
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return !dragging_.empty();
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}
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void drag_start(T *initial_item, QMouseEvent *event,
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TimeTargetObject *target = nullptr)
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{
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if (event->button() != Qt::LeftButton) {
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return;
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}
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time_target_ = target;
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initial_drag_item_ = initial_item;
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dragging_.resize(selected_.size());
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if constexpr (std::is_same_v<T, TimelineMarker>) {
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snap_points_.resize(selected_.size() * 2);
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} else {
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snap_points_.resize(selected_.size());
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}
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if (target) {
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time_targets_.resize(snap_points_.size());
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memset(time_targets_.data(), 0,
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time_targets_.size() * sizeof(Node *));
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} else {
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time_targets_.clear();
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}
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for (size_t i = 0; i < selected_.size(); i++) {
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T *obj = selected_.at(i);
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if constexpr (std::is_same_v<T, TimelineMarker>) {
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dragging_[i] = obj->time().in();
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snap_points_[i] = obj->time().in();
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snap_points_[i + selected_.size()] = obj->time().out();
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if (target) {
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time_targets_[i] = time_targets_[i + selected_.size()] =
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QtUtils::get_parent_of_type<Node>(obj);
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}
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} else {
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dragging_[i] = obj->time();
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snap_points_[i] = obj->time();
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if (target) {
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time_targets_[i] = QtUtils::get_parent_of_type<Node>(obj);
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}
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}
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}
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drag_mouse_start_ =
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view_->unscale_point(view_->mapToScene(event->pos()));
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}
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void snap_points(Rational *movement)
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{
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std::vector<Rational> copy = snap_points_;
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if (time_target_) {
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for (size_t i = 0; i < copy.size(); i++) {
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if (Node *parent = time_targets_[i]) {
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copy[i] = time_target_->get_adjusted_time(
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parent, time_target_->get_time_target(), copy[i],
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Node::k_transform_towards_output);
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}
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}
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}
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if (Core::instance()->snapping() && view_->get_snap_service()) {
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view_->get_snap_service()->snap_point(copy, movement, snap_mask_);
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}
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}
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void unsnap()
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{
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if (view_->get_snap_service()) {
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view_->get_snap_service()->hide_snaps();
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}
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}
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void drag_move(const QPoint &local_pos,
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const QString &tip_format = QString())
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{
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Rational time_diff =
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view_->scene_to_time_no_grid(view_->mapToScene(local_pos).x() -
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view_->scale_point(drag_mouse_start_).x());
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// Snap points
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Rational presnap_time_diff = time_diff;
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snap_points(&time_diff);
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// Validate snapping
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if (Core::instance()->snapping() && view_->get_snap_service()) {
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for (size_t i = 0; i < selected_.size(); i++) {
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Rational proposed_time = dragging_.at(i) + time_diff;
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T *sel = selected_.at(i);
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if (sel->has_sibling_at_time(proposed_time)) {
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// Unsnap
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time_diff = presnap_time_diff;
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if (view_->get_snap_service()) {
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view_->get_snap_service()->hide_snaps();
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}
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break;
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}
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}
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}
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// Validate movement
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for (size_t i = 0; i < selected_.size(); i++) {
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Rational proposed_time = dragging_.at(i) + time_diff;
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T *sel = selected_.at(i);
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// Magic number: use interval of 1ms to avoid collisions
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Rational adj(1, 1000);
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if (dragging_.at(i) < proposed_time) {
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// Negate adjustment value if origin is less than proposed time
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adj = -adj;
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}
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bool loop;
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do {
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loop = false;
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while (sel->has_sibling_at_time(proposed_time)) {
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proposed_time += adj;
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unsnap();
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}
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if (proposed_time < 0) {
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// Prevent any object from going below zero
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proposed_time = 0;
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unsnap();
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// Setting our proposed time to zero may (re)introduce a conflict that we just avoided
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// with the sibling check above, so we request it to happen again. To avoid a negative
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// adj bringing us back below zero, we force adj to positive so it'll only nudge higher
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adj = qAbs(adj);
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loop = true;
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}
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} while (loop);
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time_diff = proposed_time - dragging_.at(i);
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}
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// Apply movement
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for (size_t i = 0; i < selected_.size(); i++) {
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selected_.at(i)->set_time(dragging_.at(i) + time_diff);
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}
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// Show information about this keyframe
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Rational display_time;
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if constexpr (std::is_same_v<T, TimelineMarker>) {
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display_time = initial_drag_item_->time().in();
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} else {
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display_time = initial_drag_item_->time();
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}
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QString tip = QString::fromStdString(Timecode::time_to_timecode(
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display_time, timebase_, Core::instance()->get_timecode_display(),
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false));
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last_used_tip_format_ = tip_format;
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if (!tip_format.isEmpty()) {
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tip = tip_format.arg(tip);
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}
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QToolTip::hideText();
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QToolTip::showText(QCursor::pos(), tip);
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}
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void drag_stop(MultiUndoCommand *command)
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{
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QToolTip::hideText();
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for (size_t i = 0; i < selected_.size(); i++) {
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Rational current;
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if constexpr (std::is_same_v<T, TimelineMarker>) {
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current = selected_.at(i)->time().in();
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} else {
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current = selected_.at(i)->time();
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}
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command->add_child(
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new SetTimeCommand(selected_.at(i), current, dragging_.at(i)));
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}
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dragging_.clear();
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unsnap();
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}
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void rubber_band_start(QMouseEvent *event)
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{
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if (event->button() == Qt::LeftButton ||
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event->button() == Qt::RightButton) {
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rubberband_scene_start_ =
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view_->unscale_point(view_->mapToScene(event->pos()));
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rubberband_ = new QRubberBand(QRubberBand::Rectangle, view_);
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rubberband_->setGeometry(
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QRect(event->pos().x(), event->pos().y(), 0, 0));
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rubberband_->show();
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rubberband_preselected_ = selected_;
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}
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}
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void rubber_band_move(const QPoint &pos)
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{
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if (is_rubber_banding()) {
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QRectF band_rect = QRectF(view_->mapFromScene(view_->scale_point(
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rubberband_scene_start_)),
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pos)
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.normalized();
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rubberband_->setGeometry(band_rect.toRect());
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QPointF current = view_->unscale_point(view_->mapToScene(pos));
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QRectF scene_rect =
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QRectF(rubberband_scene_start_, current).normalized();
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selected_ = rubberband_preselected_;
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foreach (const DrawnObject &kp, drawn_objects_) {
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if (scene_rect.intersects(kp.second)) {
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select(kp.first);
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}
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}
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}
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}
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void rubber_band_stop()
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{
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if (is_rubber_banding()) {
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delete rubberband_;
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rubberband_ = nullptr;
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}
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}
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bool is_rubber_banding() const
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{
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return rubberband_;
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}
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void force_drag_update()
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{
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if (is_rubber_banding() || is_dragging()) {
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QPoint local_pos = view_->viewport()->mapFromGlobal(QCursor::pos());
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if (is_rubber_banding()) {
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rubber_band_move(local_pos);
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} else {
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drag_move(local_pos, last_used_tip_format_);
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}
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}
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}
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private:
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class SetTimeCommand : public UndoCommand {
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public:
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SetTimeCommand(T *key, const Rational &time)
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{
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key_ = key;
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new_time_ = time;
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old_time_ = key_->time();
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}
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SetTimeCommand(T *key, const Rational &new_time,
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const Rational &old_time)
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{
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key_ = key;
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new_time_ = new_time;
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old_time_ = old_time;
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}
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virtual Project *get_relevant_project() const override
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{
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return Project::get_project_from_object(key_);
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}
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protected:
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virtual void redo() override
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{
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key_->set_time(new_time_);
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}
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virtual void undo() override
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{
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key_->set_time(old_time_);
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}
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private:
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T *key_;
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Rational old_time_;
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Rational new_time_;
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};
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TimeBasedView *view_;
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using DrawnObject = QPair<T *, QRectF>;
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std::vector<DrawnObject> drawn_objects_;
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std::vector<T *> selected_;
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std::vector<Rational> dragging_;
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std::vector<Rational> snap_points_;
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std::vector<Node *> time_targets_;
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T *initial_drag_item_;
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QPointF drag_mouse_start_;
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Rational timebase_;
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QRubberBand *rubberband_;
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QPointF rubberband_scene_start_;
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std::vector<T *> rubberband_preselected_;
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TimeBasedWidget::SnapMask snap_mask_;
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TimeTargetObject *time_target_;
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QString last_used_tip_format_;
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};
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}
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#endif // OAK_TIMEBASEDVIEWSELECTIONMANAGER_H
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