415 lines
9.4 KiB
C++
415 lines
9.4 KiB
C++
/***
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Olive - Non-Linear Video Editor
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Copyright (C) 2019 Olive Team
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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 "node.h"
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#include <QDebug>
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Node::Node() :
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last_processed_time_(-1),
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can_be_deleted_(true)
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{
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}
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QString Node::Category()
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{
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// Return an empty category for any nodes that don't use one
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return QString();
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}
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QString Node::Description()
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{
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// Return an empty string by default
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return QString();
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}
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void Node::Release()
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{
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}
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void Node::Retranslate()
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{
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}
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void Node::AddParameter(NodeParam *param)
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{
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// Ensure no other param with this ID has been added to this Node (since that defeats the purpose)
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Q_ASSERT(!HasParamWithID(param->id()));
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param->setParent(this);
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params_.append(param);
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connect(param, SIGNAL(EdgeAdded(NodeEdgePtr)), this, SIGNAL(EdgeAdded(NodeEdgePtr)));
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connect(param, SIGNAL(EdgeRemoved(NodeEdgePtr)), this, SIGNAL(EdgeRemoved(NodeEdgePtr)));
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if (param->type() == NodeParam::kInput) {
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connect(param, SIGNAL(ValueChanged(rational, rational)), this, SLOT(InputChanged(rational, rational)));
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connect(param, SIGNAL(EdgeAdded(NodeEdgePtr)), this, SLOT(InputConnectionChanged(NodeEdgePtr)));
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connect(param, SIGNAL(EdgeRemoved(NodeEdgePtr)), this, SLOT(InputConnectionChanged(NodeEdgePtr)));
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}
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}
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void Node::RemoveParameter(NodeParam *param)
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{
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params_.removeAll(param);
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delete param;
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}
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void Node::InvalidateCache(const rational &start_range, const rational &end_range, NodeInput *from)
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{
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Q_UNUSED(from)
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ClearCachedValuesInParameters(start_range, end_range);
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SendInvalidateCache(start_range, end_range);
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}
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void Node::SendInvalidateCache(const rational &start_range, const rational &end_range)
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{
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// Loop through all parameters (there should be no children that are not NodeParams)
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foreach (NodeParam* param, params_) {
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// If the Node is an output, relay the signal to any Nodes that are connected to it
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if (param->type() == NodeParam::kOutput) {
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QVector<NodeEdgePtr> edges = param->edges();
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foreach (NodeEdgePtr edge, edges) {
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NodeInput* connected_input = edge->input();
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Node* connected_node = connected_input->parent();
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// Send clear cache signal to the Node
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connected_node->InvalidateCache(start_range, end_range, connected_input);
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}
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}
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}
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}
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void Node::Lock()
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{
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lock_.lock();
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}
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void Node::Unlock()
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{
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lock_.unlock();
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}
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void Node::CopyInputs(Node *source, Node *destination)
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{
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Q_ASSERT(source->id() == destination->id());
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const QList<NodeParam*>& src_param = source->params_;
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const QList<NodeParam*>& dst_param = destination->params_;
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for (int i=0;i<src_param.size();i++) {
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if (src_param.at(i)->type() == NodeParam::kInput) {
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NodeInput* src = static_cast<NodeInput*>(src_param.at(i));
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if (src->dependent()) {
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NodeInput* dst = static_cast<NodeInput*>(dst_param.at(i));
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NodeInput::CopyValues(src, dst);
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}
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}
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}
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}
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bool Node::CanBeDeleted()
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{
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return can_be_deleted_;
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}
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void Node::SetCanBeDeleted(bool s)
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{
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can_be_deleted_ = s;
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}
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rational Node::LastProcessedTime()
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{
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rational t;
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Lock();
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t = last_processed_time_;
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Unlock();
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return t;
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}
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NodeOutput *Node::LastProcessedOutput()
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{
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NodeOutput* o;
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Lock();
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o = last_processed_parameter_;
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Unlock();
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return o;
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}
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void Node::ClearCachedValuesInParameters(const rational &start_range, const rational &end_range)
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{
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Q_UNUSED(start_range)
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Q_UNUSED(end_range)
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// Loop through all parameters and clear cached values
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foreach (NodeParam* param, params_) {
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//if (param->LastRequestedTime() >= start_range && param->LastRequestedTime() <= end_range) {
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param->ClearCachedValue();
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//}
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}
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}
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QVariant Node::Run(NodeOutput* output, const rational& in, const rational &out)
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{
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run_lock_.lock();
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QVariant v = Value(output, in, out);
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run_lock_.unlock();
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return v;
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}
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const QList<NodeParam *>& Node::parameters()
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{
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return params_;
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}
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int Node::IndexOfParameter(NodeParam *param)
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{
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return children().indexOf(param);
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}
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/**
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* @brief Recursively collects dependencies of Node `n` and appends them to QList `list`
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*
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* @param traverse
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*
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* TRUE to recursively traverse each node for a complete dependency graph. FALSE to return only the immediate
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* dependencies.
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*/
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void GetDependenciesInternal(Node* n, QList<Node*>& list, bool traverse) {
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foreach (NodeParam* p, n->parameters()) {
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if (p->type() == NodeParam::kInput) {
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Node* connected = static_cast<NodeInput*>(p)->get_connected_node();
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if (connected != nullptr && !list.contains(connected)) {
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list.append(connected);
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if (traverse) {
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GetDependenciesInternal(connected, list, traverse);
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}
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}
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}
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}
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}
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QList<Node *> Node::GetDependencies()
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{
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QList<Node *> node_list;
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GetDependenciesInternal(this, node_list, true);
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return node_list;
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}
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QList<Node *> Node::GetExclusiveDependencies()
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{
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QList<Node*> deps = GetDependencies();
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// Filter out any dependencies that are used elsewhere
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for (int i=0;i<deps.size();i++) {
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QList<NodeParam*> params = deps.at(i)->params_;
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// See if any of this Node's outputs are used outside of this dep list
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for (int j=0;j<params.size();j++) {
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NodeParam* p = params.at(j);
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if (p->type() == NodeParam::kOutput) {
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QVector<NodeEdgePtr> edges = p->edges();
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for (int k=0;k<edges.size();k++) {
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NodeEdgePtr edge = edges.at(k);
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// If any edge goes to from an output here to an input of a Node that isn't in this dep list, it's NOT an
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// exclusive dependency
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if (deps.contains(edge->input()->parent())) {
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deps.removeAt(i);
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i--; // -1 since we just removed a Node in this list
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j = params.size(); // No need to keep looking at this Node's params
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break; // Or this param's edges
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}
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}
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}
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}
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}
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return deps;
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}
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QList<Node *> Node::GetImmediateDependencies()
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{
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QList<Node *> node_list;
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GetDependenciesInternal(this, node_list, false);
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return node_list;
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}
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QList<NodeDependency> Node::RunDependencies(NodeOutput *output, const rational &time)
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{
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Q_UNUSED(output)
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QList<NodeDependency> run_deps;
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foreach (NodeParam* p, params_) {
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if (p->type() == NodeParam::kInput) {
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NodeInput* input = static_cast<NodeInput*>(p);
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// Check if Node is dependent on this input or not
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if (input->dependent()) {
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NodeOutput* potential_dep = input->get_connected_output();
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if (potential_dep != nullptr) {
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run_deps.append(NodeDependency(potential_dep, time));
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}
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}
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}
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}
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return run_deps;
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}
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bool Node::OutputsTo(Node *n)
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{
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foreach (NodeParam* param, params_) {
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if (param->type() == NodeParam::kOutput) {
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QVector<NodeEdgePtr> edges = param->edges();
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foreach (NodeEdgePtr edge, edges) {
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if (edge->input()->parent() == n) {
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return true;
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}
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}
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}
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}
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return false;
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}
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bool Node::HasInputs()
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{
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return HasParamOfType(NodeParam::kInput, false);
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}
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bool Node::HasOutputs()
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{
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return HasParamOfType(NodeParam::kOutput, false);
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}
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bool Node::HasConnectedInputs()
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{
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return HasParamOfType(NodeParam::kInput, true);
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}
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bool Node::HasConnectedOutputs()
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{
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return HasParamOfType(NodeParam::kOutput, true);
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}
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void Node::DisconnectAll()
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{
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foreach (NodeParam* param, params_) {
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param->DisconnectAll();
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}
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}
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void Node::Hash(QCryptographicHash *hash, NodeOutput* from, const rational &time)
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{
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// Add this Node's ID
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hash->addData(id().toUtf8());
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// Add each value
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foreach (NodeParam* param, params_) {
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if (param->type() == NodeParam::kInput
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&& !param->IsConnected()
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&& static_cast<NodeInput*>(param)->dependent()) {
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// Get the value at this time
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QVariant v = static_cast<NodeInput*>(param)->get_value(time);
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hash->addData(NodeParam::ValueToBytes(param->data_type(), v));
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}
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}
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// Add each dependency node
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QList<NodeDependency> deps = RunDependencies(from, time);
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foreach (const NodeDependency& dep, deps) {
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// Hash the connected node
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dep.node()->parent()->Hash(hash, dep.node(), dep.time());
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}
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}
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QVariant Node::PtrToValue(void *ptr)
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{
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return reinterpret_cast<quintptr>(ptr);
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}
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bool Node::HasParamWithID(const QString &id)
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{
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foreach (NodeParam* p, params_)
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{
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if (p->id() == id)
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{
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return true;
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}
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}
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return false;
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}
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bool Node::HasParamOfType(NodeParam::Type type, bool must_be_connected)
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{
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foreach (NodeParam* p, params_) {
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if (p->type() == type
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&& (p->IsConnected() || !must_be_connected)) {
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return true;
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}
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}
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return false;
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}
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void Node::InputChanged(rational start, rational end)
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{
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InvalidateCache(start, end, static_cast<NodeInput*>(sender()));
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}
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void Node::InputConnectionChanged(NodeEdgePtr edge)
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{
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Q_UNUSED(edge)
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InvalidateCache(RATIONAL_MIN, RATIONAL_MAX, static_cast<NodeInput*>(sender()));
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}
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