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oak-editor/nodes/node.cpp
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/***
Olive - Non-Linear Video Editor
Copyright (C) 2019 Olive Team
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
***/
#include "node.h"
#include <QCheckBox>
#include <QGridLayout>
#include <QXmlStreamReader>
#include <QXmlStreamWriter>
#include <QMessageBox>
#include <QOpenGLContext>
#include <QDir>
#include <QPainter>
#include <QtMath>
#include <QMenu>
#include <QApplication>
#include <QFileDialog>
#include "panels/panels.h"
#include "panels/viewer.h"
#include "ui/viewerwidget.h"
#include "ui/collapsiblewidget.h"
#include "panels/project.h"
#include "undo/undo.h"
#include "timeline/sequence.h"
#include "timeline/clip.h"
#include "panels/timeline.h"
#include "panels/effectcontrols.h"
#include "panels/grapheditor.h"
#include "global/debug.h"
#include "global/path.h"
#include "ui/mainwindow.h"
#include "ui/menu.h"
#include "global/math.h"
#include "global/clipboard.h"
#include "global/config.h"
#include "effects/transition.h"
#include "undo/undostack.h"
#include "rendering/shadergenerators.h"
#include "global/timing.h"
#include "nodes/nodes.h"
#include "effects/effectloaders.h"
QVector<NodePtr> olive::node_library;
Node::Node(Clip* c) :
parent_clip(c),
flags_(0),
shader_program_(nullptr),
texture(0),
tex_width_(0),
tex_height_(0),
isOpen(false),
bound(false),
iterations(1),
enabled_(true),
expanded_(true),
texture_ctx(nullptr)
{
}
Node::~Node() {
if (isOpen) {
close();
}
// Clear graph editor if it's using one of these rows
if (panel_graph_editor != nullptr) {
for (int i=0;i<row_count();i++) {
if (row(i) == panel_graph_editor->get_row()) {
panel_graph_editor->set_row(nullptr);
break;
}
}
}
}
QString Node::category()
{
return QString();
}
bool Node::IsCreatable()
{
return true;
}
void Node::AddRow(EffectRow *row)
{
row->setParent(this);
rows.append(row);
}
int Node::IndexOfRow(EffectRow *row)
{
return rows.indexOf(row);
}
void Node::copy_field_keyframes(NodePtr e) {
for (int i=0;i<rows.size();i++) {
EffectRow* row = rows.at(i);
EffectRow* copy_row = e->rows.at(i);
copy_row->SetKeyframingInternal(row->IsKeyframing());
for (int j=0;j<row->FieldCount();j++) {
// Get field from this (the source) effect
EffectField* field = row->Field(j);
// Get field from the destination effect
EffectField* copy_field = copy_row->Field(j);
// Copy keyframes between effects
copy_field->keyframes = field->keyframes;
// Copy persistet data between effects
copy_field->persistent_data_ = field->persistent_data_;
}
}
}
EffectRow* Node::row(int i) {
return rows.at(i);
}
int Node::row_count() {
return rows.size();
}
EffectGizmo *Node::add_gizmo(int type) {
EffectGizmo* gizmo = new EffectGizmo(this, type);
gizmos.append(gizmo);
return gizmo;
}
EffectGizmo *Node::gizmo(int i) {
return gizmos.at(i);
}
int Node::gizmo_count() {
return gizmos.size();
}
QVector<NodeEdgePtr> Node::GetAllEdges()
{
QVector<NodeEdgePtr> edges;
for (int i=0;i<row_count();i++) {
edges.append(row(i)->edges());
}
return edges;
}
void Node::refresh() {}
void Node::FieldChanged() {
// Update the UI if a field has been modified, but don't both if this effect is inactive
if (parent_clip != nullptr) {
update_ui(false);
}
}
void Node::delete_self() {
olive::undo_stack.push(new EffectDeleteCommand(this));
update_ui(true);
}
void Node::move_up() {
int index_of_effect = parent_clip->IndexOfEffect(this);
if (index_of_effect == 0) {
return;
}
MoveEffectCommand* command = new MoveEffectCommand();
command->clip = parent_clip;
command->from = index_of_effect;
command->to = command->from - 1;
olive::undo_stack.push(command);
panel_effect_controls->Reload();
panel_sequence_viewer->viewer_widget()->frame_update();
}
void Node::move_down() {
int index_of_effect = parent_clip->IndexOfEffect(this);
if (index_of_effect == parent_clip->effects.size()-1) {
return;
}
MoveEffectCommand* command = new MoveEffectCommand();
command->clip = parent_clip;
command->from = index_of_effect;
command->to = command->from + 1;
olive::undo_stack.push(command);
panel_effect_controls->Reload();
panel_sequence_viewer->viewer_widget()->frame_update();
}
void Node::save_to_file() {
// save effect settings to file
QString file = QFileDialog::getSaveFileName(olive::MainWindow,
tr("Save Effect Settings"),
QString(),
tr("Effect XML Settings %1").arg("(*.xml)"));
// if the user picked a file
if (!file.isEmpty()) {
// ensure file ends with .xml extension
if (!file.endsWith(".xml", Qt::CaseInsensitive)) {
file.append(".xml");
}
QFile file_handle(file);
if (file_handle.open(QFile::WriteOnly)) {
file_handle.write(save_to_string());
file_handle.close();
} else {
QMessageBox::critical(olive::MainWindow,
tr("Save Settings Failed"),
tr("Failed to open \"%1\" for writing.").arg(file),
QMessageBox::Ok);
}
}
}
void Node::load_from_file() {
// load effect settings from file
QString file = QFileDialog::getOpenFileName(olive::MainWindow,
tr("Load Effect Settings"),
QString(),
tr("Effect XML Settings %1").arg("(*.xml)"));
// if the user picked a file
if (!file.isEmpty()) {
QFile file_handle(file);
if (file_handle.open(QFile::ReadOnly)) {
olive::undo_stack.push(new SetEffectData(this, file_handle.readAll()));
file_handle.close();
update_ui(false);
} else {
QMessageBox::critical(olive::MainWindow,
tr("Load Settings Failed"),
tr("Failed to open \"%1\" for reading.").arg(file),
QMessageBox::Ok);
}
}
}
bool Node::AlwaysUpdate()
{
return false;
}
bool Node::IsEnabled() {
return enabled_;
}
bool Node::IsExpanded()
{
return expanded_;
}
void Node::SetExpanded(bool e)
{
expanded_ = e;
}
void Node::SetPos(const QPointF &pos)
{
pos_ = pos;
}
void Node::SetEnabled(bool b) {
enabled_ = b;
emit EnabledChanged(b);
}
void Node::load(QXmlStreamReader& stream) {
/*
int row_count = 0;
QString tag = stream.name().toString();
while (!stream.atEnd() && !(stream.name() == tag && stream.isEndElement())) {
stream.readNext();
if (stream.name() == "row" && stream.isStartElement()) {
if (row_count < rows.size()) {
EffectRow* row = rows.at(row_count);
while (!stream.atEnd() && !(stream.name() == "row" && stream.isEndElement())) {
stream.readNext();
// read field
if (stream.name() == "field" && stream.isStartElement()) {
int field_number = -1;
// match field using ID
for (int k=0;k<stream.attributes().size();k++) {
const QXmlStreamAttribute& attr = stream.attributes().at(k);
if (attr.name() == "id") {
for (int l=0;l<row->FieldCount();l++) {
if (row->Field(l)->id() == attr.value()) {
field_number = l;
break;
}
}
break;
}
}
if (field_number > -1) {
EffectField* field = row->Field(field_number);
// get current field value
for (int k=0;k<stream.attributes().size();k++) {
const QXmlStreamAttribute& attr = stream.attributes().at(k);
if (attr.name() == "value") {
field->persistent_data_ = field->ConvertStringToValue(attr.value().toString());
break;
}
}
while (!stream.atEnd() && !(stream.name() == "field" && stream.isEndElement())) {
stream.readNext();
// read keyframes
if (stream.name() == "key" && stream.isStartElement()) {
row->SetKeyframingInternal(true);
EffectKeyframe key;
for (int k=0;k<stream.attributes().size();k++) {
const QXmlStreamAttribute& attr = stream.attributes().at(k);
if (attr.name() == "value") {
key.data = field->ConvertStringToValue(attr.value().toString());
} else if (attr.name() == "frame") {
key.time = attr.value().toLong();
} else if (attr.name() == "type") {
key.type = attr.value().toInt();
} else if (attr.name() == "prehx") {
key.pre_handle_x = attr.value().toDouble();
} else if (attr.name() == "prehy") {
key.pre_handle_y = attr.value().toDouble();
} else if (attr.name() == "posthx") {
key.post_handle_x = attr.value().toDouble();
} else if (attr.name() == "posthy") {
key.post_handle_y = attr.value().toDouble();
}
}
field->keyframes.append(key);
}
}
field->Changed();
}
}
}
} else {
qCritical() << "Too many rows for effect" << id << ". Project might be corrupt. (Got" << row_count << ", expected <" << rows.size()-1 << ")";
}
row_count++;
} else if (stream.isStartElement()) {
custom_load(stream);
}
}
*/
}
void Node::custom_load(QXmlStreamReader &) {}
void Node::save(QXmlStreamWriter& stream) {
/*
stream.writeAttribute("name", meta->category + "/" + meta->name);
stream.writeAttribute("enabled", QString::number(IsEnabled()));
for (int i=0;i<rows.size();i++) {
EffectRow* row = rows.at(i);
if (row->IsSavable()) {
stream.writeStartElement("row"); // row
for (int j=0;j<row->FieldCount();j++) {
EffectField* field = row->Field(j);
if (!field->id().isEmpty()) {
stream.writeStartElement("field"); // field
stream.writeAttribute("id", field->id());
stream.writeAttribute("value", field->ConvertValueToString(field->persistent_data_));
for (int k=0;k<field->keyframes.size();k++) {
const EffectKeyframe& key = field->keyframes.at(k);
stream.writeStartElement("key");
stream.writeAttribute("value", field->ConvertValueToString(key.data));
stream.writeAttribute("frame", QString::number(key.time));
stream.writeAttribute("type", QString::number(key.type));
stream.writeAttribute("prehx", QString::number(key.pre_handle_x));
stream.writeAttribute("prehy", QString::number(key.pre_handle_y));
stream.writeAttribute("posthx", QString::number(key.post_handle_x));
stream.writeAttribute("posthy", QString::number(key.post_handle_y));
stream.writeEndElement(); // key
}
stream.writeEndElement(); // field
}
}
stream.writeEndElement(); // row
}
}
*/
}
void Node::load_from_string(const QByteArray &s) {
// clear existing keyframe data
for (int i=0;i<rows.size();i++) {
EffectRow* row = rows.at(i);
row->SetKeyframingInternal(false);
for (int j=0;j<row->FieldCount();j++) {
EffectField* field = row->Field(j);
field->keyframes.clear();
}
}
// write settings with xml writer
QXmlStreamReader stream(s);
bool found_id = false;
while (!stream.atEnd()) {
stream.readNext();
// find the effect opening tag
if (stream.name() == "effect" && stream.isStartElement()) {
// check the name to see if it matches this effect
const QXmlStreamAttributes& attributes = stream.attributes();
for (int i=0;i<attributes.size();i++) {
const QXmlStreamAttribute& attr = attributes.at(i);
if (attr.name() == "id") {
load(stream);
found_id = true;
break;
}
}
// we've found what we're looking for
break;
}
}
if (!found_id) {
QMessageBox::critical(olive::MainWindow,
tr("Load Settings Failed"),
tr("This settings file doesn't match this effect."),
QMessageBox::Ok);
}
}
QByteArray Node::save_to_string() {
QByteArray save_data;
// write settings to string with xml writer
QXmlStreamWriter stream(&save_data);
stream.writeStartDocument();
stream.writeStartElement("effect");
// pass off to standard saving function
save(stream);
stream.writeEndElement(); // effect
stream.writeEndDocument();
return save_data;
}
bool Node::is_open() {
return isOpen;
}
void Node::validate_meta_path() {
/*
if (!meta->path.isEmpty() || (shader_vert_path_.isEmpty() && shader_frag_path_.isEmpty())) return;
QList<QString> effects_paths = get_effects_paths();
const QString& test_fn = shader_vert_path_.isEmpty() ? shader_frag_path_ : shader_vert_path_;
for (int i=0;i<effects_paths.size();i++) {
if (QFileInfo::exists(effects_paths.at(i) + "/" + test_fn)) {
for (int j=0;j<olive::effects.size();j++) {
if (&olive::effects.at(j) == meta) {
olive::effects[j].path = effects_paths.at(i);
return;
}
}
return;
}
}
*/
}
void Node::open() {
/*
if (isOpen) {
qWarning() << "Tried to open an effect that was already open";
close();
}
if (olive::runtime_config.shaders_are_enabled && (Flags() & ShaderFlag)) {
if (QOpenGLContext::currentContext() == nullptr) {
qWarning() << "No current context to create a shader program for - will retry next repaint";
} else {
validate_meta_path();
QString frag_shader_str;
QString frag_file_url = QDir(file).filePath(shader_frag_path_);
QFile frag_file(frag_file_url);
if (frag_file.open(QFile::ReadOnly)) {
frag_shader_str = frag_file.readAll();
frag_file.close();
} else {
qWarning() << "Failed to open" << frag_file_url;
}
if (!frag_shader_str.isEmpty()) {
QString shader_func;
if (!shader_function_name_.isEmpty()) {
shader_func = shader_function_name_;
} else {
shader_func = "process";
}
shader_program_ = olive::shader::GetPipeline(shader_func, frag_shader_str);
}
isOpen = true;
}
} else {
isOpen = true;
}
*/
isOpen = true;
}
void Node::close() {
if (!isOpen) {
qWarning() << "Tried to close an effect that was already closed";
}
delete_texture();
shader_program_ = nullptr;
isOpen = false;
}
bool Node::is_shader_linked() {
return shader_program_ != nullptr && shader_program_->isLinked();
}
QOpenGLShaderProgram *Node::GetShaderPipeline()
{
return shader_program_.get();
}
int Node::Flags()
{
return flags_;
}
void Node::SetFlags(int flags)
{
flags_ = flags;
}
int Node::getIterations() {
return iterations;
}
void Node::setIterations(int i) {
iterations = i;
}
const QPointF &Node::pos()
{
return pos_;
}
void Node::process_image(double, uint8_t *, uint8_t *, int){}
NodePtr Node::copy(Clip *c) {
NodePtr copy = Create(c);
copy->SetEnabled(IsEnabled());
copy_field_keyframes(copy);
return copy;
}
void Node::process_shader(double timecode, GLTextureCoords&, int iteration) {
/*
shader_program_->bind();
shader_program_->setUniformValue("resolution", parent_clip->media_width(), parent_clip->media_height());
shader_program_->setUniformValue("time", GLfloat(timecode));
shader_program_->setUniformValue("iteration", iteration);
for (int i=0;i<rows.size();i++) {
EffectRow* row = rows.at(i);
for (int j=0;j<row->FieldCount();j++) {
EffectField* field = row->Field(j);
if (!field->id().isEmpty()) {
switch (field->type()) {
case EffectField::EFFECT_FIELD_DOUBLE:
{
DoubleField* double_field = static_cast<DoubleField*>(field);
shader_program_->setUniformValue(double_field->id().toUtf8().constData(),
GLfloat(double_field->GetDoubleAt(timecode)));
}
break;
case EffectField::EFFECT_FIELD_COLOR:
{
ColorField* color_field = static_cast<ColorField *>(field);
shader_program_->setUniformValue(
color_field->id().toUtf8().constData(),
GLfloat(color_field->GetColorAt(timecode).redF()),
GLfloat(color_field->GetColorAt(timecode).greenF()),
GLfloat(color_field->GetColorAt(timecode).blueF())
);
}
break;
case EffectField::EFFECT_FIELD_BOOL:
shader_program_->setUniformValue(field->id().toUtf8().constData(), field->GetValueAt(timecode).toBool());
break;
case EffectField::EFFECT_FIELD_COMBO:
shader_program_->setUniformValue(field->id().toUtf8().constData(), field->GetValueAt(timecode).toInt());
break;
// can you even send a string to a uniform value?
case EffectField::EFFECT_FIELD_STRING:
case EffectField::EFFECT_FIELD_FONT:
case EffectField::EFFECT_FIELD_FILE:
case EffectField::EFFECT_FIELD_UI:
break;
}
}
}
}
shader_program_->release();
*/
}
void Node::process_coords(double, GLTextureCoords&, int) {}
GLuint Node::process_superimpose(QOpenGLContext* ctx, double timecode) {
bool dimensions_changed = false;
bool redrew_image = false;
int width = parent_clip->media_width();
int height = parent_clip->media_height();
if (width != img.width() || height != img.height()) {
img = QImage(width, height, QImage::Format_RGBA8888_Premultiplied);
dimensions_changed = true;
}
if (valueHasChanged(timecode) || dimensions_changed || AlwaysUpdate()) {
redraw(timecode);
redrew_image = true;
}
QOpenGLFunctions* f = ctx->functions();
if (texture == 0 || tex_width_ != img.width() || tex_height_ != img.height()) {
delete_texture();
tex_width_ = img.width();
tex_height_ = img.height();
// create texture object
f->glGenTextures(1, &texture);
f->glBindTexture(GL_TEXTURE_2D, texture);
// set texture filtering to bilinear
f->glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MIN_FILTER, GL_LINEAR);
f->glTexParameteri(GL_TEXTURE_2D, GL_TEXTURE_MAG_FILTER, GL_LINEAR);
f->glTexImage2D(
GL_TEXTURE_2D, 0, GL_RGBA8, tex_width_, tex_height_, 0, GL_RGBA, GL_UNSIGNED_BYTE, img.constBits()
);
f->glBindTexture(GL_TEXTURE_2D, 0);
redrew_image = false;
}
if (redrew_image) {
f->glBindTexture(GL_TEXTURE_2D, texture);
f->glTexSubImage2D(GL_TEXTURE_2D, 0, 0, 0, tex_width_, tex_height_, GL_RGBA, GL_UNSIGNED_BYTE, img.constBits());
f->glBindTexture(GL_TEXTURE_2D, 0);
}
return texture;
}
void Node::process_audio(double, double, float **, int, int, int) {}
void Node::gizmo_draw(double, GLTextureCoords &) {}
void Node::gizmo_move(EffectGizmo* gizmo, int x_movement, int y_movement, double timecode, bool done) {
// Loop through each gizmo to find `gizmo`
for (int i=0;i<gizmos.size();i++) {
if (gizmos.at(i) == gizmo) {
// If (!done && gizmo_dragging_actions_.isEmpty()), that means the drag just started and we're going to save
// the current state of the attach fields' keyframes in KeyframeDataChange objects to make the changes undoable
// by the user later.
if (!done && gizmo_dragging_actions_.isEmpty()) {
if (gizmo->x_field1 != nullptr) {
gizmo_dragging_actions_.append(new KeyframeDataChange(gizmo->x_field1));
}
if (gizmo->y_field1 != nullptr) {
gizmo_dragging_actions_.append(new KeyframeDataChange(gizmo->y_field1));
}
if (gizmo->x_field2 != nullptr) {
gizmo_dragging_actions_.append(new KeyframeDataChange(gizmo->x_field2));
}
if (gizmo->y_field2 != nullptr) {
gizmo_dragging_actions_.append(new KeyframeDataChange(gizmo->y_field2));
}
}
// Update the field values
if (gizmo->x_field1 != nullptr) {
gizmo->x_field1->SetValueAt(timecode,
gizmo->x_field1->GetDoubleAt(timecode) + x_movement*gizmo->x_field_multi1);
}
if (gizmo->y_field1 != nullptr) {
gizmo->y_field1->SetValueAt(timecode,
gizmo->y_field1->GetDoubleAt(timecode) + y_movement*gizmo->y_field_multi1);
}
if (gizmo->x_field2 != nullptr) {
gizmo->x_field2->SetValueAt(timecode,
gizmo->x_field2->GetDoubleAt(timecode) + x_movement*gizmo->x_field_multi2);
}
if (gizmo->y_field2 != nullptr) {
gizmo->y_field2->SetValueAt(timecode,
gizmo->y_field2->GetDoubleAt(timecode) + y_movement*gizmo->y_field_multi2);
}
// If (done && !gizmo_dragging_actions_.isEmpty()), that means the drag just ended and we're going to save
// the new state of the attach fields' keyframes in KeyframeDataChange objects to make the changes undoable
// by the user later.
if (done && !gizmo_dragging_actions_.isEmpty()) {
// Store all the KeyframeDataChange objects into a ComboAction to send to the undo stack (makes them all
// undoable together rather than having to be undone individually).
ComboAction* ca = new ComboAction();
for (int j=0;j<gizmo_dragging_actions_.size();j++) {
// Set the current state of the keyframes as the "new" keyframes (the old values were set earlier when the
// KeyframeDataChange object was constructed).
gizmo_dragging_actions_.at(j)->SetNewKeyframes();
// Add this KeyframeDataChange object to the ComboAction
ca->append(gizmo_dragging_actions_.at(j));
}
olive::undo_stack.push(ca);
gizmo_dragging_actions_.clear();
}
break;
}
}
}
void Node::gizmo_world_to_screen(const QMatrix4x4& matrix, const QMatrix4x4& projection) {
for (int i=0;i<gizmos.size();i++) {
EffectGizmo* g = gizmos.at(i);
for (int j=0;j<g->get_point_count();j++) {
// Convert the world point from the gizmo into a screen point relative to the sequence's dimensions
QVector3D screen_pos = g->world_pos.at(j).project(matrix,
projection,
QRect(0,
0,
parent_clip->track()->sequence()->width,
parent_clip->track()->sequence()->height));
g->screen_pos[j] = QPoint(screen_pos.x(), parent_clip->track()->sequence()->height-screen_pos.y());
}
}
}
bool Node::are_gizmos_enabled() {
return (gizmos.size() > 0);
}
double Node::Now()
{
return playhead_to_clip_seconds(parent_clip, parent_clip->track()->sequence()->playhead);
}
long Node::NowInFrames()
{
return playhead_to_clip_frame(parent_clip, parent_clip->track()->sequence()->playhead);
}
void Node::redraw(double) {
/*
// run javascript
QPainter p(&img);
painter_wrapper.img = &img;
painter_wrapper.painter = &p;
jsEngine.globalObject().setProperty("painter", wrapper_obj);
jsEngine.globalObject().setProperty("width", parent_clip->media_width());
jsEngine.globalObject().setProperty("height", parent_clip->media_height());
for (int i=0;i<rows.size();i++) {
EffectRow* row = rows.at(i);
for (int j=0;j<row->fieldCount();j++) {
EffectField* field = row->field(j);
if (!field->id.isEmpty()) {
switch (field->type) {
case EffectField::EFFECT_FIELD_DOUBLE:
jsEngine.globalObject().setProperty(field->id, field->get_double_value(timecode));
break;
case EffectField::EFFECT_FIELD_COLOR:
jsEngine.globalObject().setProperty(field->id, field->get_color_value(timecode).name());
break;
case EffectField::EFFECT_FIELD_STRING:
jsEngine.globalObject().setProperty(field->id, field->get_string_value(timecode));
break;
case EffectField::EFFECT_FIELD_BOOL:
jsEngine.globalObject().setProperty(field->id, field->get_bool_value(timecode));
break;
case EffectField::EFFECT_FIELD_COMBO:
jsEngine.globalObject().setProperty(field->id, field->get_combo_index(timecode));
break;
case EffectField::EFFECT_FIELD_FONT:
jsEngine.globalObject().setProperty(field->id, field->get_font_name(timecode));
break;
}
}
}
}
jsEngine.evaluate(script);
*/
}
bool Node::valueHasChanged(double timecode) {
if (cachedValues.isEmpty()) {
for (int i=0;i<row_count();i++) {
EffectRow* crow = row(i);
for (int j=0;j<crow->FieldCount();j++) {
cachedValues.append(crow->Field(j)->GetValueAt(timecode));
}
}
return true;
} else {
bool changed = false;
int index = 0;
for (int i=0;i<row_count();i++) {
EffectRow* crow = row(i);
for (int j=0;j<crow->FieldCount();j++) {
EffectField* field = crow->Field(j);
if (cachedValues.at(index) != field->GetValueAt(timecode)) {
changed = true;
}
cachedValues[index] = field->GetValueAt(timecode);
index++;
}
}
return changed;
}
}
void Node::delete_texture() {
if (texture_ctx != nullptr) {
texture_ctx->functions()->glDeleteTextures(1, &texture);
texture = 0;
texture_ctx = nullptr;
}
}
int GetNodeLibraryIndexFromId(const QString& id) {
for (int i=0;i<olive::node_library.size();i++) {
if (olive::node_library.at(i)->id() == id) {
return i;
}
}
return -1;
}
/*
const EffectMeta* Node::GetMetaFromName(const QString& input) {
int split_index = input.indexOf('/');
QString category;
if (split_index > -1) {
category = input.left(split_index);
}
QString name = input.mid(split_index + 1);
for (int j=0;j<olive::effects.size();j++) {
if (olive::effects.at(j).name == name
&& (olive::effects.at(j).category == category
|| category.isEmpty())) {
return &olive::effects.at(j);
}
}
return nullptr;
}
*/