/*** Olive - Non-Linear Video Editor Copyright (C) 2021 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 . ***/ #include "keyframeviewbase.h" #include #include #include #include "dialog/keyframeproperties/keyframeproperties.h" #include "keyframeviewundo.h" #include "node/node.h" #include "widget/menu/menu.h" #include "widget/menu/menushared.h" #include "widget/nodeparamview/nodeparamviewundo.h" namespace olive { KeyframeViewBase::KeyframeViewBase(QWidget *parent) : TimeBasedView(parent), dragging_bezier_point_(nullptr), currently_autoselecting_(false), dragging_(false) { SetDefaultDragMode(RubberBandDrag); setContextMenuPolicy(Qt::CustomContextMenu); connect(this, &KeyframeViewBase::customContextMenuRequested, this, &KeyframeViewBase::ShowContextMenu); connect(scene(), &QGraphicsScene::selectionChanged, this, &KeyframeViewBase::AutoSelectKeyTimeNeighbors); } void KeyframeViewBase::Clear() { QMap::iterator iterator; for (iterator=item_map_.begin();iterator!=item_map_.end();iterator++) { delete iterator.value(); } item_map_.clear(); } void KeyframeViewBase::DeleteSelected() { MultiUndoCommand* command = new MultiUndoCommand(); QMap::const_iterator i; for (i=item_map_.constBegin(); i!=item_map_.constEnd(); i++) { if (i.value()->isSelected()) { command->add_child(new NodeParamRemoveKeyframeCommand(i.key())); } } Core::instance()->undo_stack()->pushIfHasChildren(command); } void KeyframeViewBase::AddKeyframesOfNode(Node *n) { foreach (const QString& i, n->inputs()) { AddKeyframesOfInput(n, i); } } void KeyframeViewBase::AddKeyframesOfInput(Node* n, const QString& input) { if (!n->IsInputKeyframable(input)) { return; } int arr_sz = n->InputArraySize(input); for (int i=-1; i& tracks = input.node()->GetKeyframeTracks(input); for (int i=0; i& tracks = ref.input().node()->GetKeyframeTracks(ref.input()); const NodeKeyframeTrack& t = tracks.at(ref.track()); foreach (NodeKeyframe* key, t) { AddKeyframe(key); } } void KeyframeViewBase::RemoveKeyframesOfNode(Node *n) { foreach (const QString& i, n->inputs()) { RemoveKeyframesOfInput(n, i); } } void KeyframeViewBase::RemoveKeyframesOfInput(Node* n, const QString& input) { if (!n->IsInputKeyframable(input)) { return; } int arr_sz = n->InputArraySize(input); for (int i=-1; i& tracks = input.node()->GetKeyframeTracks(input); for (int i=0; i& tracks = ref.input().node()->GetKeyframeTracks(ref.input()); const NodeKeyframeTrack& t = tracks.at(ref.track()); foreach (NodeKeyframe* key, t) { RemoveKeyframe(key); } } void KeyframeViewBase::SelectAll() { for (auto it=item_map_.cbegin(); it!=item_map_.cend(); it++) { it.value()->setSelected(true); } } void KeyframeViewBase::DeselectAll() { for (auto it=item_map_.cbegin(); it!=item_map_.cend(); it++) { it.value()->setSelected(false); } } void KeyframeViewBase::RemoveKeyframe(NodeKeyframe* key) { KeyframeAboutToBeRemoved(key); delete item_map_.take(key); } KeyframeViewItem *KeyframeViewBase::AddKeyframe(NodeKeyframe* key) { KeyframeViewItem* item = item_map_.value(key); if (!item) { item = new KeyframeViewItem(key); item->SetTimeTarget(GetTimeTarget()); item->SetScale(GetScale()); item_map_.insert(key, item); scene()->addItem(item); } return item; } void KeyframeViewBase::mousePressEvent(QMouseEvent *event) { QGraphicsItem* item_under_cursor = itemAt(event->pos()); if (HandPress(event) || (!item_under_cursor && PlayheadPress(event))) { return; } active_tool_ = Core::instance()->tool(); if (event->button() == Qt::LeftButton) { QGraphicsView::mousePressEvent(event); if (active_tool_ == Tool::kPointer) { if (item_under_cursor) { dragging_ = true; drag_start_ = mapToScene(event->pos()); // Determine what type of item is under the cursor dragging_bezier_point_ = dynamic_cast(item_under_cursor); if (dragging_bezier_point_) { dragging_bezier_point_start_ = dragging_bezier_point_->GetCorrespondingKeyframeHandle(); dragging_bezier_point_opposing_start_ = dragging_bezier_point_->key()->bezier_control(NodeKeyframe::get_opposing_bezier_type(dragging_bezier_point_->mode())); } else { QList selected_items = scene()->selectedItems(); selected_keys_.resize(selected_items.size()); initial_drag_item_ = static_cast(item_under_cursor); for (int i=0;i(selected_items.at(i)); selected_keys_.replace(i, {key, key->x(), GetAdjustedTime(key->key()->parent(), GetTimeTarget(), key->key()->time(), false), key->key()->value().toDouble()}); } } } } } } void KeyframeViewBase::mouseMoveEvent(QMouseEvent *event) { if (HandMove(event) || PlayheadMove(event)) { return; } if (event->buttons() & Qt::LeftButton) { QGraphicsView::mouseMoveEvent(event); if (dragging_) { // Calculate cursor difference and scale it QPointF mouse_diff_scaled = GetScaledCursorPos(mapToScene(event->pos()) - drag_start_); if (event->modifiers() & Qt::ShiftModifier) { // If holding shift, only move one axis mouse_diff_scaled.setY(0); } if (dragging_bezier_point_) { // Flip the mouse Y because bezier control points are drawn bottom to top, not top to bottom mouse_diff_scaled.setY(-mouse_diff_scaled.y()); QPointF new_bezier_pos = GenerateBezierControlPosition(dragging_bezier_point_->mode(), dragging_bezier_point_start_, mouse_diff_scaled); // If the user is NOT holding control, we set the other handle to the exact negative of this handle QPointF new_opposing_pos; NodeKeyframe::BezierType opposing_type = NodeKeyframe::get_opposing_bezier_type(dragging_bezier_point_->mode()); if (!(event->modifiers() & Qt::ControlModifier)) { new_opposing_pos = GenerateBezierControlPosition(opposing_type, dragging_bezier_point_opposing_start_, -mouse_diff_scaled); } else { new_opposing_pos = dragging_bezier_point_opposing_start_; } dragging_bezier_point_->key()->set_bezier_control(dragging_bezier_point_->mode(), new_bezier_pos); dragging_bezier_point_->key()->set_bezier_control(opposing_type, new_opposing_pos); emit Dragged(qRound(dragging_bezier_point_->x()), qRound(dragging_bezier_point_->y())); } else if (!selected_keys_.isEmpty()) { // Validate movement - ensure no keyframe goes above its max point or below its min point FloatSlider::DisplayType display_type = FloatSlider::kNormal; if (IsYAxisEnabled()) { foreach (const KeyframeItemAndTime& keypair, selected_keys_) { Node* node = keypair.key->key()->parent(); const QString& input = keypair.key->key()->input(); double new_val = keypair.value - mouse_diff_scaled.y(); double limited = new_val; if (node->HasInputProperty(input, QStringLiteral("min"))) { limited = qMax(limited, node->GetInputProperty(input, QStringLiteral("min")).toDouble()); } if (node->HasInputProperty(input, QStringLiteral("max"))) { limited = qMin(limited, node->GetInputProperty(input, QStringLiteral("max")).toDouble()); } if (limited != new_val) { mouse_diff_scaled.setY(keypair.value - limited); } } Node* initial_drag_input = initial_drag_item_->key()->parent(); const QString& initial_drag_input_id = initial_drag_item_->key()->input(); if (initial_drag_input->HasInputProperty(initial_drag_input_id, QStringLiteral("view"))) { display_type = static_cast(initial_drag_input->GetInputProperty(initial_drag_input_id, QStringLiteral("view")).toInt()); } } foreach (const KeyframeItemAndTime& keypair, selected_keys_) { rational node_time = GetAdjustedTime(GetTimeTarget(), keypair.key->key()->parent(), CalculateNewTimeFromScreen(keypair.time, mouse_diff_scaled.x()), true); keypair.key->key()->set_time(node_time); if (IsYAxisEnabled()) { keypair.key->key()->set_value(keypair.value - mouse_diff_scaled.y()); } } // Show information about this keyframe QString tip = Timecode::time_to_timecode(initial_drag_item_->key()->time(), timebase(), Core::instance()->GetTimecodeDisplay(), false); if (IsYAxisEnabled()) { bool ok; double num_value = initial_drag_item_->key()->value().toDouble(&ok); if (ok) { tip.append('\n'); tip.append(FloatSlider::ValueToString(num_value, display_type, 2, true)); } // Force viewport to update since Qt might try to optimize it out if the keyframe is // offscreen viewport()->update(); } QToolTip::hideText(); QToolTip::showText(QCursor::pos(), tip); emit Dragged(qRound(initial_drag_item_->x()), qRound(initial_drag_item_->y())); } } } } void KeyframeViewBase::mouseReleaseEvent(QMouseEvent *event) { if (HandRelease(event) || PlayheadRelease(event)) { return; } if (event->button() == Qt::LeftButton) { QGraphicsView::mouseReleaseEvent(event); if (dragging_) { if (dragging_bezier_point_) { MultiUndoCommand* command = new MultiUndoCommand(); // Create undo command with the current bezier point and the old one command->add_child(new KeyframeSetBezierControlPoint(dragging_bezier_point_->key(), dragging_bezier_point_->mode(), dragging_bezier_point_->key()->bezier_control(dragging_bezier_point_->mode()), dragging_bezier_point_start_)); if (!(event->modifiers() & Qt::ControlModifier)) { auto opposing_type = NodeKeyframe::get_opposing_bezier_type(dragging_bezier_point_->mode()); command->add_child(new KeyframeSetBezierControlPoint(dragging_bezier_point_->key(), opposing_type, dragging_bezier_point_->key()->bezier_control(opposing_type), dragging_bezier_point_opposing_start_)); } dragging_bezier_point_ = nullptr; Core::instance()->undo_stack()->push(command); } else if (!selected_keys_.isEmpty()) { MultiUndoCommand* command = new MultiUndoCommand(); foreach (const KeyframeItemAndTime& keypair, selected_keys_) { NodeKeyframe* item = keypair.key->key(); // Commit movement command->add_child(new NodeParamSetKeyframeTimeCommand(item, item->time(), keypair.time)); // Commit value if we're setting a value if (IsYAxisEnabled()) { command->add_child(new NodeParamSetKeyframeValueCommand(item, item->value(), keypair.value)); } } Core::instance()->undo_stack()->push(command); } selected_keys_.clear(); dragging_ = false; QToolTip::hideText(); } } } void KeyframeViewBase::ScaleChangedEvent(const double &scale) { TimeBasedView::ScaleChangedEvent(scale); for (auto iterator=item_map_.begin();iterator!=item_map_.end();iterator++) { iterator.value()->SetScale(scale); } } const QMap &KeyframeViewBase::item_map() const { return item_map_; } void KeyframeViewBase::KeyframeAboutToBeRemoved(NodeKeyframe *) { } void KeyframeViewBase::TimeTargetChangedEvent(Node *target) { QMap::const_iterator i; for (i=item_map_.begin();i!=item_map_.end();i++) { i.value()->SetTimeTarget(target); } } void KeyframeViewBase::ContextMenuEvent(Menu& m) { Q_UNUSED(m) } rational KeyframeViewBase::CalculateNewTimeFromScreen(const rational &old_time, double cursor_diff) { return rational::fromDouble(old_time.toDouble() + cursor_diff); } QPointF KeyframeViewBase::GenerateBezierControlPosition(const NodeKeyframe::BezierType mode, const QPointF &start_point, const QPointF &scaled_cursor_diff) { QPointF new_bezier_pos = start_point; new_bezier_pos += scaled_cursor_diff; // LIMIT bezier handles from overlapping each other if (mode == NodeKeyframe::kInHandle) { if (new_bezier_pos.x() > 0) { new_bezier_pos.setX(0); } } else { if (new_bezier_pos.x() < 0) { new_bezier_pos.setX(0); } } return new_bezier_pos; } QPointF KeyframeViewBase::GetScaledCursorPos(const QPointF &cursor_pos) { return QPointF(cursor_pos.x() / GetScale(), cursor_pos.y() / GetYScale()); } void KeyframeViewBase::ShowContextMenu() { Menu m; MenuShared::instance()->AddItemsForEditMenu(&m, false); QAction* linear_key_action = nullptr; QAction* bezier_key_action = nullptr; QAction* hold_key_action = nullptr; QList items = scene()->selectedItems(); if (!items.isEmpty()) { bool all_keys_are_same_type = true; NodeKeyframe::Type type = static_cast(items.first())->key()->type(); for (int i=1;i(items.at(i)); KeyframeViewItem* prev_item = static_cast(items.at(i-1)); if (key_item->key()->type() != prev_item->key()->type()) { all_keys_are_same_type = false; break; } } m.addSeparator(); linear_key_action = m.addAction(tr("Linear")); bezier_key_action = m.addAction(tr("Bezier")); hold_key_action = m.addAction(tr("Hold")); if (all_keys_are_same_type) { switch (type) { case NodeKeyframe::kLinear: linear_key_action->setChecked(true); break; case NodeKeyframe::kBezier: bezier_key_action->setChecked(true); break; case NodeKeyframe::kHold: hold_key_action->setChecked(true); break; } } } m.addSeparator(); AddSetScrollZoomsByDefaultActionToMenu(&m); m.addSeparator(); ContextMenuEvent(m); if (!items.isEmpty()) { m.addSeparator(); QAction* properties_action = m.addAction(tr("P&roperties")); connect(properties_action, &QAction::triggered, this, &KeyframeViewBase::ShowKeyframePropertiesDialog); } QAction* selected = m.exec(QCursor::pos()); // Process keyframe type changes if (!items.isEmpty()) { if (selected == linear_key_action || selected == bezier_key_action || selected == hold_key_action) { NodeKeyframe::Type new_type; if (selected == hold_key_action) { new_type = NodeKeyframe::kHold; } else if (selected == bezier_key_action) { new_type = NodeKeyframe::kBezier; } else { new_type = NodeKeyframe::kLinear; } MultiUndoCommand* command = new MultiUndoCommand(); foreach (QGraphicsItem* item, items) { command->add_child(new KeyframeSetTypeCommand(static_cast(item)->key(), new_type)); } Core::instance()->undo_stack()->pushIfHasChildren(command); } } } void KeyframeViewBase::ShowKeyframePropertiesDialog() { QList items = scene()->selectedItems(); QVector keys; foreach (QGraphicsItem* item, items) { keys.append(static_cast(item)->key()); } if (!keys.isEmpty()) { KeyframePropertiesDialog kd(keys, timebase(), this); kd.exec(); } } void KeyframeViewBase::AutoSelectKeyTimeNeighbors() { if (currently_autoselecting_ || IsYAxisEnabled()) { return; } // Prevents infinite loop currently_autoselecting_ = true; QList selected_items = scene()->selectedItems(); foreach (QGraphicsItem* g, selected_items) { KeyframeViewItem* key_item = static_cast(g); rational key_time = key_item->key()->time(); QVector keys = key_item->key()->parent()->GetKeyframesAtTime(key_item->key()->input(), key_time, key_item->key()->element()); foreach (NodeKeyframe* k, keys) { if (k == key_item->key()) { continue; } // Ensure this key is not already selected KeyframeViewItem* item = item_map_.value(k); item->setSelected(true); } } currently_autoselecting_ = false; } }