Only storing single socket in AnimGraphConnections and simplified wiring logic.
parent
28eca48a61
commit
cd56efca3d
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@ -62,7 +62,8 @@ void AnimGraphBlendTree::UpdateOrderedNodesRecursive(int node_index) {
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}
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}
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void AnimGraphBlendTree::MarkActiveInputs(const std::vector<AnimGraphConnection>& input_connections) {
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void AnimGraphBlendTree::MarkActiveInputs(
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const std::vector<AnimGraphConnection>& input_connections) {
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for (size_t i = 0, n = m_nodes.size(); i < n; i++) {
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if (m_nodes[i]->m_tick_number != m_tick_number) {
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m_nodes[i]->m_state = AnimNodeEvalState::Deactivated;
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@ -93,8 +94,7 @@ void AnimGraphBlendTree::MarkActiveInputs(const std::vector<AnimGraphConnection>
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const AnimGraphConnection& input =
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m_node_input_connections[node_index][j];
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if (input.m_source_node != nullptr
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&& input.m_target_socket.m_type
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!= SocketType::SocketTypeAnimation) {
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&& input.m_socket.m_type != SocketType::SocketTypeAnimation) {
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input.m_source_node->m_state = AnimNodeEvalState::Activated;
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}
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}
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@ -102,7 +102,8 @@ void AnimGraphBlendTree::MarkActiveInputs(const std::vector<AnimGraphConnection>
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}
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}
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void AnimGraphBlendTree::CalcSyncTrack(const std::vector<AnimGraphConnection>& input_connections) {
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void AnimGraphBlendTree::CalcSyncTrack(
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const std::vector<AnimGraphConnection>& input_connections) {
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for (size_t i = m_eval_ordered_nodes.size() - 1; i >= 0; i--) {
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AnimNode* node = m_eval_ordered_nodes[i];
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if (node->m_state == AnimNodeEvalState::Deactivated) {
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@ -162,54 +163,10 @@ void AnimGraphBlendTree::PropagateTimeToNodeInputs(const AnimNode* node) {
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// Only propagate time updates via animation sockets.
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if (input_node != nullptr
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&& node_input_connections[i].m_target_socket.m_type
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&& node_input_connections[i].m_socket.m_type
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== SocketType::SocketTypeAnimation
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&& input_node->m_state == AnimNodeEvalState::Activated) {
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input_node->UpdateTime(node_time_last, node_time_now);
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}
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}
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}
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Socket* AnimGraphBlendTree::GetInputSocket(const std::string& name) {
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for (size_t i = 0, n = m_node_output_connections[1].size(); i < n; i++) {
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AnimGraphConnection& connection = m_node_output_connections[1][i];
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if (connection.m_source_socket.m_name == name) {
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return &connection.m_source_socket;
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}
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}
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return nullptr;
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}
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Socket* AnimGraphBlendTree::GetOutputSocket(const std::string& name) {
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for (size_t i = 0, n = m_node_input_connections[0].size(); i < n; i++) {
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AnimGraphConnection& connection = m_node_input_connections[0][i];
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if (connection.m_target_socket.m_name == name) {
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return &connection.m_target_socket;
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}
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}
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return nullptr;
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}
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const Socket* AnimGraphBlendTree::GetInputSocket(const std::string& name) const {
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for (size_t i = 0, n = m_node_output_connections[1].size(); i < n; i++) {
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const AnimGraphConnection& connection = m_node_output_connections[1][i];
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if (connection.m_source_socket.m_name == name) {
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return &connection.m_source_socket;
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}
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}
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return nullptr;
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}
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const Socket* AnimGraphBlendTree::GetOutputSocket(const std::string& name) const {
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for (size_t i = 0, n = m_node_input_connections[0].size(); i < n; i++) {
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const AnimGraphConnection& connection = m_node_input_connections[0][i];
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if (connection.m_target_socket.m_name == name) {
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return &connection.m_target_socket;
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}
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}
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return nullptr;
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}
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@ -5,6 +5,8 @@
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#ifndef ANIMTESTBED_ANIMGRAPHBLENDTREE_H
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#define ANIMTESTBED_ANIMGRAPHBLENDTREE_H
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#include <algorithm>
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#include "AnimNode.h"
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//
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@ -17,6 +19,17 @@ struct AnimGraphBlendTree : public AnimNode {
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std::vector<AnimNode*> m_eval_ordered_nodes;
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std::vector<std::vector<AnimGraphConnection> > m_node_input_connections;
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std::vector<std::vector<AnimGraphConnection> > m_node_output_connections;
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[[nodiscard]] const std::vector<AnimGraphConnection>&
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GetGraphInputConnections() const {
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return m_node_output_connections[1];
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}
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[[nodiscard]] const std::vector<AnimGraphConnection>&
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GetGraphOutputConnections() const {
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return m_node_input_connections[0];
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}
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std::vector<AnimData*> m_animdata_blocks;
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NodeDescriptorBase* m_node_descriptor = nullptr;
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char* m_input_buffer = nullptr;
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@ -80,9 +93,6 @@ struct AnimGraphBlendTree : public AnimNode {
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}
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}
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Socket* GetInputSocket(const std::string& name);
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Socket* GetOutputSocket(const std::string& name);
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const Socket* GetInputSocket(const std::string& name) const;
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const Socket* GetOutputSocket(const std::string& name) const;
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@ -96,17 +106,22 @@ struct AnimGraphBlendTree : public AnimNode {
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void SetInput(const char* name, T* value_ptr) {
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m_node_descriptor->SetOutput(name, value_ptr);
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std::vector<size_t> connected_node_indices;
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for (int i = 0; i < m_node_output_connections[1].size(); i++) {
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const AnimGraphConnection& graph_input_connection =
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m_node_output_connections[1][i];
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if (graph_input_connection.m_source_socket.m_name == name) {
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*graph_input_connection.m_target_socket.m_reference.ptr_ptr = value_ptr;
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if (graph_input_connection.m_source_socket_name == name) {
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*graph_input_connection.m_socket.m_reference.ptr_ptr = value_ptr;
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}
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}
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}
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/** Sets the address that is used for the specified AnimGraph output Socket.
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*
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* We update the pointer of the outputting node. We also have to ensure that
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* all usages of that output use the same pointer.
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*
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* @tparam T Type of the Socket.
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* @param name Name of the Socket.
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@ -114,45 +129,41 @@ struct AnimGraphBlendTree : public AnimNode {
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*/
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template <typename T>
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void SetOutput(const char* name, T* value_ptr) {
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m_node_descriptor->SetInput(name, value_ptr);
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const auto& graph_output_connection = std::find_if(
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GetGraphOutputConnections().begin(),
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GetGraphOutputConnections().end(),
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[&name](const AnimGraphConnection& connection) {
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return connection.m_target_socket_name == name;
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});
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for (int i = 0; i < m_node_input_connections[0].size(); i++) {
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const AnimGraphConnection& graph_output_connection =
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m_node_input_connections[0][i];
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if (graph_output_connection == GetGraphOutputConnections().end()) {
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std::cerr << "Error: could not find graph connection to output socket "
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<< name << "." << std::endl;
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return;
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}
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if (graph_output_connection.m_target_socket.m_name == name) {
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if (graph_output_connection.m_source_node == m_nodes[1]
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&& graph_output_connection.m_target_node == m_nodes[0]) {
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std::cerr
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<< "Error: cannot set output for direct graph input to graph "
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"output connections. Use GetOutptPtr for output instead!"
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<< std::endl;
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if (graph_output_connection->m_source_node == m_nodes[1]
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&& graph_output_connection->m_target_node == m_nodes[0]) {
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std::cerr << "Error: cannot set output for direct graph input to graph "
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"output connections. Use GetOutptPtr for output instead!"
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<< std::endl;
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return;
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}
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return;
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}
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*graph_output_connection.m_source_socket.m_reference.ptr_ptr =
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value_ptr;
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size_t output_node_index =
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GetAnimNodeIndex(graph_output_connection->m_source_node);
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// Make sure all other output connections of this pin use the same output pointer
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int source_node_index =
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GetAnimNodeIndex(graph_output_connection.m_source_node);
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for (int j = 0; j < m_node_output_connections[source_node_index].size();
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j++) {
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const AnimGraphConnection& source_output_connection =
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m_node_output_connections[source_node_index][j];
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if (source_output_connection.m_target_node == m_nodes[0]) {
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continue;
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}
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if (source_output_connection.m_source_socket.m_name
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== graph_output_connection.m_source_socket.m_name) {
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*source_output_connection.m_target_socket.m_reference.ptr_ptr =
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value_ptr;
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}
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}
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const std::vector<AnimGraphConnection>& node_output_connections =
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m_node_output_connections[output_node_index];
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for (const AnimGraphConnection& connection : node_output_connections) {
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if (connection.m_source_socket_name
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== graph_output_connection->m_source_socket_name) {
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*connection.m_socket.m_reference.ptr_ptr = value_ptr;
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}
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}
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*graph_output_connection->m_socket.m_reference.ptr_ptr = value_ptr;
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}
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/** Returns the address that is used for the specified AnimGraph output Socket.
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@ -169,9 +180,9 @@ struct AnimGraphBlendTree : public AnimNode {
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for (int i = 0; i < m_node_input_connections[0].size(); i++) {
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const AnimGraphConnection& graph_output_connection =
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m_node_input_connections[0][i];
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if (graph_output_connection.m_target_socket.m_name == name) {
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return static_cast<float*>(
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*graph_output_connection.m_source_socket.m_reference.ptr_ptr);
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if (graph_output_connection.m_target_socket_name == name) {
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return static_cast<T*>(
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*graph_output_connection.m_socket.m_reference.ptr_ptr);
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}
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}
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@ -179,18 +190,24 @@ struct AnimGraphBlendTree : public AnimNode {
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}
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void* GetInputPtr(const std::string& name) const {
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const Socket* input_socket = GetInputSocket(name);
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if (input_socket != nullptr) {
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return input_socket->m_reference.ptr;
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const std::vector<AnimGraphConnection> graph_input_connections =
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GetGraphInputConnections();
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for (const AnimGraphConnection& connection : graph_input_connections) {
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if (connection.m_source_socket_name == name) {
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return connection.m_socket.m_reference.ptr;
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}
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}
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return nullptr;
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}
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void* GetOutputPtr(const std::string& name) const {
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const Socket* input_socket = GetOutputSocket(name);
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if (input_socket != nullptr) {
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return input_socket->m_reference.ptr;
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const std::vector<AnimGraphConnection> graph_output_connections =
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GetGraphOutputConnections();
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for (const AnimGraphConnection& connection : graph_output_connections) {
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if (connection.m_source_socket_name == name) {
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return connection.m_socket.m_reference.ptr;
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}
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}
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return nullptr;
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@ -213,7 +230,7 @@ struct AnimGraphBlendTree : public AnimNode {
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const std::vector<AnimGraphConnection>& input_connection =
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m_node_input_connections[node_index];
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for (size_t i = 0, n = input_connection.size(); i < n; i++) {
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if (input_connection[i].m_target_socket.m_name == input_name) {
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if (input_connection[i].m_target_socket_name == input_name) {
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return input_connection[i].m_source_node;
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}
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}
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@ -262,13 +262,13 @@ SocketType GetSocketType() {
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struct AnimGraphConnection {
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AnimNode* m_source_node = nullptr;
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Socket m_source_socket;
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std::string m_source_socket_name = "";
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AnimNode* m_target_node = nullptr;
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Socket m_target_socket;
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std::string m_target_socket_name = "";
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Socket m_socket;
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bool m_crosses_hierarchy = false;
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};
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struct NodeDescriptorBase {
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std::vector<Socket> m_inputs;
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std::vector<Socket> m_outputs;
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@ -431,7 +431,8 @@ struct NodeDescriptorBase {
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return nullptr;
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}
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const Socket* FindSocket(const char* name, const std::vector<Socket>& sockets) const {
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const Socket* FindSocket(const char* name, const std::vector<Socket>& sockets)
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const {
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for (int i = 0, n = sockets.size(); i < n; i++) {
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if (sockets[i].m_name == name) {
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return &sockets[i];
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@ -32,12 +32,12 @@ struct Blend2Node : public AnimNode {
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continue;
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}
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if (input.m_target_socket.m_name == "Input0" && *i_blend_weight < 0.999) {
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if (input.m_target_socket_name == "Input0" && *i_blend_weight < 0.999) {
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input_node->m_state = AnimNodeEvalState::Activated;
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continue;
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}
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if (input.m_target_socket.m_name == "Input1" && *i_blend_weight > 0.001) {
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if (input.m_target_socket_name == "Input1" && *i_blend_weight > 0.001) {
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input_node->m_state = AnimNodeEvalState::Activated;
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continue;
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}
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@ -658,9 +658,15 @@ void AnimGraphResource::CreateBlendTreeConnectionInstances(
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// subgraph.
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AnimGraphConnection embedded_graph_activation_connection;
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embedded_graph_activation_connection.m_source_node = source_node;
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embedded_graph_activation_connection.m_source_socket = *source_socket;
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embedded_graph_activation_connection.m_source_socket_name =
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source_socket->m_name;
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embedded_graph_activation_connection.m_target_node = target_node;
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embedded_graph_activation_connection.m_target_socket = *target_socket;
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embedded_graph_activation_connection.m_target_socket_name =
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target_socket->m_name;
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// TODO: what to set the pointer to?!?
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embedded_graph_activation_connection.m_socket = *target_socket;
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instance.m_node_input_connections[connection.target_node_index].push_back(
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embedded_graph_activation_connection);
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instance.m_node_output_connections[connection.source_node_index]
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@ -702,7 +708,7 @@ void AnimGraphResource::CreateBlendTreeConnectionInstances(
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for (size_t j = 0; j < embeded_target_node_inputs.size(); j++) {
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AnimGraphConnection& embedded_target_connection =
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embeded_target_node_inputs[j];
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if (embedded_target_connection.m_source_socket.m_name
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if (embedded_target_connection.m_source_socket_name
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== target_socket->m_name) {
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embedded_target_connection.m_source_node = source_node;
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embedded_target_connection.m_crosses_hierarchy = true;
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@ -711,27 +717,35 @@ void AnimGraphResource::CreateBlendTreeConnectionInstances(
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// connection in the parent blend tree. That way
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// parent_tree.SetValue<>() correctly propagates the value to the
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// embedded node socket.
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target_socket = &embedded_target_connection.m_target_socket;
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target_socket = &embedded_target_connection.m_socket;
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}
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}
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}
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instance_connection.m_source_node = source_node;
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instance_connection.m_source_socket = *source_socket;
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instance_connection.m_source_socket_name = source_socket->m_name;
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instance_connection.m_target_node = target_node;
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instance_connection.m_target_socket = *target_socket;
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instance_connection.m_target_socket_name = target_socket->m_name;
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instance_connection.m_socket = *target_socket;
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if (connection.source_node_index == 1) {
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instance_connection.m_socket = *target_socket;
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} else if (connection.target_node_index == 0) {
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instance_connection.m_socket = *source_socket;
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} else {
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*target_socket->m_reference.ptr_ptr =
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&instance.m_connection_data_storage[connection_data_offset];
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*source_socket->m_reference.ptr_ptr =
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&instance.m_connection_data_storage[connection_data_offset];
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}
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instance.m_node_input_connections[connection.target_node_index].push_back(
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instance_connection);
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instance.m_node_output_connections[connection.source_node_index].push_back(
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instance_connection);
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source_node_descriptor->SetOutputUnchecked(
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connection.source_socket_name.c_str(),
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&instance.m_connection_data_storage[connection_data_offset]);
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target_node_descriptor->SetInputUnchecked(
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connection.target_socket_name.c_str(),
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&instance.m_connection_data_storage[connection_data_offset]);
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*instance_connection.m_socket.m_reference.ptr_ptr =
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&instance.m_connection_data_storage[connection_data_offset];
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if (source_socket->m_type == SocketType::SocketTypeAnimation) {
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instance.m_animdata_blocks.push_back(
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@ -5,21 +5,24 @@
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#include "AnimGraphStateMachine.h"
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bool AnimGraphStateMachine::Init(AnimGraphContext& context) {
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assert(false && !"Not yet implemented!");
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return false;
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}
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void AnimGraphStateMachine::MarkActiveInputs(const std::vector<AnimGraphConnection>& input_connections) {
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void AnimGraphStateMachine::MarkActiveInputs(
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const std::vector<AnimGraphConnection>& input_connections) {
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assert(false && !"Not yet implemented!");
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}
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void AnimGraphStateMachine::CalcSyncTrack(const std::vector<AnimGraphConnection>& input_connections) {
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void AnimGraphStateMachine::CalcSyncTrack(
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const std::vector<AnimGraphConnection>& input_connections) {
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assert(false && !"Not yet implemented!");
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}
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void AnimGraphStateMachine::UpdateTime(float time_last, float time_now) {
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assert(false && !"Not yet implemented!");
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}
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void AnimGraphStateMachine::Evaluate(AnimGraphContext& context) {
|
||||
|
||||
assert(false && !"Not yet implemented!");
|
||||
}
|
|
@ -56,7 +56,7 @@ struct AnimNode {
|
|||
for (const auto& input : input_connections) {
|
||||
AnimNode* input_node = input.m_source_node;
|
||||
if (input_node != nullptr
|
||||
&& input.m_source_socket.m_type == SocketType::SocketTypeAnimation
|
||||
&& input.m_socket.m_type == SocketType::SocketTypeAnimation
|
||||
&& input_node->m_state != AnimNodeEvalState::Deactivated) {
|
||||
m_sync_track = input_node->m_sync_track;
|
||||
return;
|
||||
|
|
|
@ -754,17 +754,14 @@ TEST_CASE_METHOD(
|
|||
CHECK(blend2_instance->i_input0 == anim_sampler_walk->o_output);
|
||||
CHECK(blend2_instance->i_input1 == anim_sampler_run->o_output);
|
||||
|
||||
const Socket* graph_output_socket =
|
||||
blend_tree_graph.GetOutputSocket("GraphOutput");
|
||||
AnimData* graph_output =
|
||||
static_cast<AnimData*>(*graph_output_socket->m_reference.ptr_ptr);
|
||||
AnimData* graph_output = static_cast<AnimData*>(
|
||||
blend_tree_graph.GetOutputPtr<AnimData>("GraphOutput"));
|
||||
|
||||
CHECK(
|
||||
graph_output->m_local_matrices.size()
|
||||
== graph_context.m_skeleton->num_soa_joints());
|
||||
|
||||
CHECK(
|
||||
blend2_instance->o_output == *graph_output_socket->m_reference.ptr_ptr);
|
||||
CHECK(blend2_instance->o_output == graph_output);
|
||||
}
|
||||
|
||||
graph_context.freeAnimations();
|
||||
|
@ -811,39 +808,40 @@ TEST_CASE("ResourceSaveLoadMathGraphInputs", "[AnimGraphResource]") {
|
|||
"GraphVec3Output",
|
||||
nullptr);
|
||||
|
||||
AnimNodeResource* graph_input_node = blend_tree_resource.GetGraphInputNode();
|
||||
graph_input_node->m_socket_accessor->RegisterOutput<float>(
|
||||
AnimNodeResource* graph_input_node_resource =
|
||||
blend_tree_resource.GetGraphInputNode();
|
||||
graph_input_node_resource->m_socket_accessor->RegisterOutput<float>(
|
||||
"GraphFloatInput",
|
||||
nullptr);
|
||||
|
||||
// Prepare graph inputs and outputs
|
||||
AnimNodeResource* float_to_vec3_node =
|
||||
AnimNodeResource* float_to_vec3_node_resource =
|
||||
blend_tree_resource.m_nodes[float_to_vec3_node_index];
|
||||
|
||||
REQUIRE(blend_tree_resource.ConnectSockets(
|
||||
graph_input_node,
|
||||
graph_input_node_resource,
|
||||
"GraphFloatInput",
|
||||
graph_output_node,
|
||||
"GraphFloatOutput"));
|
||||
|
||||
REQUIRE(blend_tree_resource.ConnectSockets(
|
||||
graph_input_node,
|
||||
graph_input_node_resource,
|
||||
"GraphFloatInput",
|
||||
float_to_vec3_node,
|
||||
float_to_vec3_node_resource,
|
||||
"Input0"));
|
||||
REQUIRE(blend_tree_resource.ConnectSockets(
|
||||
graph_input_node,
|
||||
graph_input_node_resource,
|
||||
"GraphFloatInput",
|
||||
float_to_vec3_node,
|
||||
float_to_vec3_node_resource,
|
||||
"Input1"));
|
||||
REQUIRE(blend_tree_resource.ConnectSockets(
|
||||
graph_input_node,
|
||||
graph_input_node_resource,
|
||||
"GraphFloatInput",
|
||||
float_to_vec3_node,
|
||||
float_to_vec3_node_resource,
|
||||
"Input2"));
|
||||
|
||||
REQUIRE(blend_tree_resource.ConnectSockets(
|
||||
float_to_vec3_node,
|
||||
float_to_vec3_node_resource,
|
||||
"Output",
|
||||
graph_output_node,
|
||||
"GraphVec3Output"));
|
||||
|
@ -869,7 +867,7 @@ TEST_CASE("ResourceSaveLoadMathGraphInputs", "[AnimGraphResource]") {
|
|||
== graph_loaded_output_node->m_socket_accessor->m_inputs.size());
|
||||
|
||||
REQUIRE(
|
||||
graph_input_node->m_socket_accessor->m_outputs.size()
|
||||
graph_input_node_resource->m_socket_accessor->m_outputs.size()
|
||||
== graph_loaded_input_node->m_socket_accessor->m_outputs.size());
|
||||
|
||||
REQUIRE(
|
||||
|
@ -890,14 +888,17 @@ TEST_CASE("ResourceSaveLoadMathGraphInputs", "[AnimGraphResource]") {
|
|||
AnimGraphBlendTree blend_tree_node;
|
||||
graph_resource_loaded.CreateBlendTreeInstance(blend_tree_node);
|
||||
|
||||
REQUIRE(blend_tree_node.GetInputSocket("GraphFloatInput") != nullptr);
|
||||
REQUIRE(
|
||||
blend_tree_node.GetInputPtr("GraphFloatInput")
|
||||
== blend_tree_node.m_input_buffer);
|
||||
|
||||
float graph_float_input = 123.456f;
|
||||
blend_tree_node.SetInput("GraphFloatInput", &graph_float_input);
|
||||
|
||||
MathFloatToVec3Node* float_to_vec3_node =
|
||||
dynamic_cast<MathFloatToVec3Node*>(
|
||||
blend_tree_node.m_nodes[float_to_vec3_node_index]);
|
||||
|
||||
CHECK(float_to_vec3_node->i_input0 == &graph_float_input);
|
||||
CHECK(float_to_vec3_node->i_input1 == &graph_float_input);
|
||||
CHECK(float_to_vec3_node->i_input2 == &graph_float_input);
|
||||
|
||||
AND_WHEN("Evaluating Graph") {
|
||||
AnimGraphContext context;
|
||||
context.m_graph = nullptr;
|
||||
|
@ -928,6 +929,19 @@ TEST_CASE("ResourceSaveLoadMathGraphInputs", "[AnimGraphResource]") {
|
|||
}
|
||||
}
|
||||
|
||||
//
|
||||
// Graph:
|
||||
// Input: float GraphFloatInputSingle
|
||||
// Output: float GraphFloat0Output
|
||||
// float GraphFloat1Output
|
||||
// float GraphFloat1Output
|
||||
// Nodes: 2x Add Node
|
||||
// Connections:
|
||||
// - Direct GraphFloatInputSingle to GraphFQloat0Output
|
||||
// - Remaining wires such that
|
||||
// GraphFloat1Output -> GraphFLoatInputSingle * 2
|
||||
// GraphFloat1Output -> GraphFLoatInputSingle * 3
|
||||
//
|
||||
TEST_CASE("SimpleMathEvaluations", "[AnimGraphResource]") {
|
||||
AnimGraphResource graph_resource_origin;
|
||||
graph_resource_origin.m_name = "TestSimpleMathGraph";
|
||||
|
@ -1025,11 +1039,6 @@ TEST_CASE("SimpleMathEvaluations", "[AnimGraphResource]") {
|
|||
AnimGraphBlendTree blend_tree;
|
||||
graph_resource_loaded.CreateBlendTreeInstance(blend_tree);
|
||||
|
||||
REQUIRE(blend_tree.GetInputSocket("GraphFloatInput") != nullptr);
|
||||
REQUIRE(
|
||||
blend_tree.GetInputPtr("GraphFloatInput")
|
||||
== blend_tree.m_input_buffer);
|
||||
|
||||
float graph_float_input = 123.456f;
|
||||
blend_tree.SetInput("GraphFloatInput", &graph_float_input);
|
||||
|
||||
|
@ -1037,12 +1046,13 @@ TEST_CASE("SimpleMathEvaluations", "[AnimGraphResource]") {
|
|||
AnimGraphContext context;
|
||||
context.m_graph = nullptr;
|
||||
|
||||
float float1_output = -1.f;
|
||||
float float2_output = -1.f;
|
||||
|
||||
// float0 output is directly connected to the graph input, therefore
|
||||
// we have to get a ptr to the input data here.
|
||||
float* float0_output_ptr =
|
||||
blend_tree.GetOutputPtr<float>("GraphFloat0Output");
|
||||
float float1_output = -1.f;
|
||||
float float2_output = -1.f;
|
||||
|
||||
blend_tree.SetOutput("GraphFloat1Output", &float1_output);
|
||||
blend_tree.SetOutput("GraphFloat2Output", &float2_output);
|
||||
|
@ -1051,7 +1061,7 @@ TEST_CASE("SimpleMathEvaluations", "[AnimGraphResource]") {
|
|||
blend_tree.Evaluate(context);
|
||||
|
||||
THEN("output vector components equal the graph input vaulues") {
|
||||
CHECK(*float0_output_ptr == Approx(graph_float_input));
|
||||
CHECK(float0_output_ptr == &graph_float_input);
|
||||
CHECK(float1_output == Approx(graph_float_input * 2.f));
|
||||
REQUIRE_THAT(
|
||||
float2_output,
|
||||
|
|
Loading…
Reference in New Issue