- app/ no longer includes engine C++ headers nor holds engine C++ types: engine access goes through the oakengine C ABI plus C++ wrappers (oakutil/oaknode.h, oakutil/oakvideo.h) and app-local mirror types (tooltypes, trackreferencehandle, timelinecommonapp, keyframetypes, subtitleapp, serializedlayoutinfoapp, nodevaluehandle, sliderdisplaytypeapp) - engine: new C ABI functions for block/track/clip/transition navigation and predicates, links, caches, waveform/playback, disk folder, sequence_track_list, node_free, footage_is_valid, block_get_track, get_brush; loadotio/saveotio ported to the current engine API - OTIO is now a required dependency: CI and CD build it on every platform, FindOpenTimelineIO fixed for OTIO 0.16/0.19 (the old deps include requirement silently disabled OTIO everywhere), runtime libraries are bundled into packages and copied next to macOS binaries (oak_copy_otio_runtime) - fix ProjectViewModel drag&drop mime read/write size mismatch (segfault) - unify color label naming (k_olive -> "Oak") in the app-side mirror - docs: OTIO required, FFmpeg minimum corrected to 6.0 (en/zh) - gtest suite: 1925 passed, 0 failed
324 lines
9.1 KiB
C++
324 lines
9.1 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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#include "keyframeproperties.h"
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#include <QDialogButtonBox>
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#include <QGridLayout>
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#include "common/keyframetypes.h"
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#include "oakengine/node.h"
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#include "olive/core/util/timecodefunctions.h"
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namespace olive
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{
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namespace
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{
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Rational keyframe_rational_time(const oak::Keyframe &key)
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{
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int64_t num = 0, den = 1;
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key.time(&num, &den);
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return Rational(int(num), int(den));
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}
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// Selected keyframes grouped by owning input (node/id/element), with
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// times converted to the facade's frame timestamps. The dialog's
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// per-property writes go through the facade as ONE undoable command per
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// group (usually just one).
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struct KeyGroup {
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OakEngineNode *node;
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QString input;
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int element;
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QVector<int64_t> times;
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QVector<int> tracks;
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};
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QVector<KeyGroup> group_keys(const QVector<oak::Keyframe> &keys)
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{
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QVector<KeyGroup> groups;
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for (const oak::Keyframe &item : keys) {
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OakEngineNode *node = item.node().handle();
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int g = 0;
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for (; g < groups.size(); g++) {
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if (groups.at(g).node == node &&
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groups.at(g).input == item.input_id() &&
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groups.at(g).element == item.element()) {
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break;
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}
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}
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if (g == groups.size()) {
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groups.append({ node, item.input_id(), item.element(),
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{}, {} });
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}
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int tbn = 0, tbd = 0;
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oakengine_node_frame_time_base(node, &tbn, &tbd);
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groups[g].times.append(Timecode::time_to_timestamp(
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keyframe_rational_time(item), Rational(tbn, tbd), Timecode::k_round));
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groups[g].tracks.append(item.track());
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}
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return groups;
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}
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} // namespace
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KeyframePropertiesDialog::KeyframePropertiesDialog(
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const QVector<oak::Keyframe> &keys, const Rational &timebase,
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QWidget *parent)
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: QDialog(parent)
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, keys_(keys)
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, timebase_(timebase)
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{
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setWindowTitle(tr("Keyframe Properties"));
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QGridLayout *layout = new QGridLayout(this);
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int row = 0;
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layout->addWidget(new QLabel("Time:"), row, 0);
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time_slider_ = new RationalSlider();
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time_slider_->set_display_type(slider::k_time);
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time_slider_->set_timebase(timebase_);
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layout->addWidget(time_slider_, row, 1);
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row++;
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layout->addWidget(new QLabel("Type:"), row, 0);
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type_select_ = new QComboBox();
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connect(type_select_, SIGNAL(currentIndexChanged(int)), this,
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SLOT(key_type_changed(int)));
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layout->addWidget(type_select_, row, 1);
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row++;
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// Bezier handles
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bezier_group_ = new QGroupBox();
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QGridLayout *bezier_group_layout = new QGridLayout(bezier_group_);
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bezier_group_layout->addWidget(new QLabel(tr("In:")), 0, 0);
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bezier_in_x_slider_ = new FloatSlider();
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bezier_group_layout->addWidget(bezier_in_x_slider_, 0, 1);
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bezier_in_y_slider_ = new FloatSlider();
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bezier_group_layout->addWidget(bezier_in_y_slider_, 0, 2);
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bezier_group_layout->addWidget(new QLabel(tr("Out:")), 1, 0);
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bezier_out_x_slider_ = new FloatSlider();
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bezier_group_layout->addWidget(bezier_out_x_slider_, 1, 1);
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bezier_out_y_slider_ = new FloatSlider();
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bezier_group_layout->addWidget(bezier_out_y_slider_, 1, 2);
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layout->addWidget(bezier_group_, row, 0, 1, 2);
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bool all_same_time = true;
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bool can_set_time = true;
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bool all_same_type = true;
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bool all_same_bezier_in_x = true;
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bool all_same_bezier_in_y = true;
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bool all_same_bezier_out_x = true;
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bool all_same_bezier_out_y = true;
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for (int i = 0; i < keys_.size(); i++) {
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if (i > 0) {
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const oak::Keyframe &prev_key = keys_.at(i - 1);
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const oak::Keyframe &this_key = keys_.at(i);
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// Determine if the keyframes are all the same time or not
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if (all_same_time) {
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all_same_time = (keyframe_rational_time(prev_key) ==
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keyframe_rational_time(this_key));
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}
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// Determine if the keyframes are all the same type
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if (all_same_type) {
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all_same_type = (prev_key.type() == this_key.type());
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}
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// Check all four bezier control points
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if (all_same_bezier_in_x) {
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all_same_bezier_in_x = (prev_key.bezier_point(0).x() ==
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this_key.bezier_point(0).x());
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}
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if (all_same_bezier_in_y) {
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all_same_bezier_in_y = (prev_key.bezier_point(0).y() ==
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this_key.bezier_point(0).y());
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}
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if (all_same_bezier_out_x) {
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all_same_bezier_out_x = (prev_key.bezier_point(1).x() ==
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this_key.bezier_point(1).x());
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}
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if (all_same_bezier_out_y) {
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all_same_bezier_out_y = (prev_key.bezier_point(1).y() ==
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this_key.bezier_point(1).y());
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}
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}
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// Determine if any keyframes are on the same track (in which case we can't set the time)
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if (can_set_time) {
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for (int j = 0; j < keys_.size(); j++) {
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if (i != j && keys_.at(j).track() == keys_.at(i).track()) {
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can_set_time = false;
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break;
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}
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}
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}
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if (!all_same_time && !all_same_type && !can_set_time &&
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!all_same_bezier_in_x && !all_same_bezier_in_y &&
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!all_same_bezier_out_x && !all_same_bezier_out_y) {
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break;
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}
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}
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if (all_same_time) {
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time_slider_->set_value(keyframe_rational_time(keys_.front()));
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} else {
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time_slider_->set_tristate();
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}
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time_slider_->setEnabled(can_set_time);
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if (!all_same_type) {
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// If all keyframes aren't the same type, add an empty item
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type_select_->addItem(QStringLiteral("--"), -1);
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// Ensure UI updates for the index being 0
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key_type_changed(0);
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}
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// Item data uses the facade easing order (oak::Keyframe::type()):
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// 0 = linear, 1 = bezier, 2 = hold.
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type_select_->addItem(tr("Linear"), KeyframeTypes::k_facade_linear);
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type_select_->addItem(tr("Hold"), KeyframeTypes::k_facade_hold);
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type_select_->addItem(tr("Bezier"), KeyframeTypes::k_facade_bezier);
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if (all_same_type) {
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// If all keyframes are the same type, set it here
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for (int i = 0; i < type_select_->count(); i++) {
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if (type_select_->itemData(i).toInt() == keys_.front().type()) {
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type_select_->setCurrentIndex(i);
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// Ensure UI updates for this index
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key_type_changed(i);
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break;
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}
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}
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}
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set_up_bezier_slider(bezier_in_x_slider_, all_same_bezier_in_x,
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keys_.front().bezier_point(0).x());
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set_up_bezier_slider(bezier_in_y_slider_, all_same_bezier_in_y,
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keys_.front().bezier_point(0).y());
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set_up_bezier_slider(bezier_out_x_slider_, all_same_bezier_out_x,
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keys_.front().bezier_point(1).x());
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set_up_bezier_slider(bezier_out_y_slider_, all_same_bezier_out_y,
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keys_.front().bezier_point(1).y());
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row++;
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QDialogButtonBox *buttons =
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new QDialogButtonBox(QDialogButtonBox::Ok | QDialogButtonBox::Cancel);
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buttons->setCenterButtons(true);
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layout->addWidget(buttons, row, 0, 1, 2);
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connect(buttons, &QDialogButtonBox::accepted, this, &QDialog::accept);
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connect(buttons, &QDialogButtonBox::rejected, this, &QDialog::reject);
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}
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void KeyframePropertiesDialog::accept()
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{
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const Rational new_time = time_slider_->get_value();
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const int new_type = type_select_->currentData().toInt();
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const QVector<KeyGroup> groups = group_keys(keys_);
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if (new_type > -1) {
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// new_type is already in the facade's easing order (linear 0 /
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// bezier 1 / hold 2), so it can be passed straight through.
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foreach (const KeyGroup &g, groups) {
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oakengine_node_keyframes_set_type_many(
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g.node,
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g.input.toUtf8().constData(), g.element, g.times.constData(),
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g.tracks.data(), g.times.size(), new_type);
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}
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}
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if (bezier_group_->isEnabled()) {
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foreach (const KeyGroup &g, groups) {
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oakengine_node_keyframes_set_bezier_many(
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g.node,
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g.input.toUtf8().constData(), g.element, g.times.constData(),
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g.tracks.data(), g.times.size(),
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bezier_in_x_slider_->get_value(),
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bezier_in_y_slider_->get_value(),
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bezier_out_x_slider_->get_value(),
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bezier_out_y_slider_->get_value());
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}
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}
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// Time moves go LAST: the facade addresses keyframes by time, so the
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// type/bezier writes above must happen while the keys still sit at
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// the times the groups were built from.
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if (time_slider_->isEnabled() && !time_slider_->is_tristate()) {
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foreach (const KeyGroup &g, groups) {
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OakEngineNode *handle = g.node;
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int tbn = 0, tbd = 0;
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oakengine_node_frame_time_base(handle, &tbn, &tbd);
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oakengine_node_keyframes_set_time_many(
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handle, g.input.toUtf8().constData(), g.element,
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g.times.constData(), g.tracks.data(), g.times.size(),
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Timecode::time_to_timestamp(new_time, Rational(tbn, tbd),
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Timecode::k_round));
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}
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}
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QDialog::accept();
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}
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void KeyframePropertiesDialog::set_up_bezier_slider(FloatSlider *slider,
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bool all_same, double value)
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{
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if (all_same) {
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slider->set_value(value);
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} else {
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slider->set_tristate();
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}
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}
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void KeyframePropertiesDialog::key_type_changed(int index)
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{
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bezier_group_->setEnabled(type_select_->itemData(index) ==
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KeyframeTypes::k_facade_bezier);
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}
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}
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