This is a complete rewrite of the derived node tree data structure. It is a much thinner abstraction about `NodeTreeRef` than before. This gives the user of the derived node tree more control and allows for greater introspection capabilities (e.g. before muted nodes were completely abstracted away; this was convenient, but came with limitations). Another nice benefit of the new structure is that it is much cheaper to build, because it does not inline all nodes and sockets in nested node groups. Differential Revision: https://developer.blender.org/D10620
258 lines
9.0 KiB
C++
258 lines
9.0 KiB
C++
/*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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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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*
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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, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*/
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#include "DNA_modifier_types.h"
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#include "BKE_node_ui_storage.hh"
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#include "DEG_depsgraph_query.h"
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#include "NOD_geometry_exec.hh"
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#include "NOD_type_callbacks.hh"
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#include "node_geometry_util.hh"
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namespace blender::nodes {
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void GeoNodeExecParams::error_message_add(const NodeWarningType type, std::string message) const
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{
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bNodeTree *btree_cow = node_->btree();
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BLI_assert(btree_cow != nullptr);
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if (btree_cow == nullptr) {
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return;
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}
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bNodeTree *btree_original = (bNodeTree *)DEG_get_original_id((ID *)btree_cow);
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const NodeTreeEvaluationContext context(*self_object_, *modifier_);
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BKE_nodetree_error_message_add(
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*btree_original, context, *node_->bnode(), type, std::move(message));
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}
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const bNodeSocket *GeoNodeExecParams::find_available_socket(const StringRef name) const
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{
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for (const InputSocketRef *socket : node_->inputs()) {
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if (socket->is_available() && socket->name() == name) {
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return socket->bsocket();
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}
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}
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return nullptr;
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}
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ReadAttributePtr GeoNodeExecParams::get_input_attribute(const StringRef name,
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const GeometryComponent &component,
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const AttributeDomain domain,
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const CustomDataType type,
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const void *default_value) const
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{
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const bNodeSocket *found_socket = this->find_available_socket(name);
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BLI_assert(found_socket != nullptr); /* There should always be available socket for the name. */
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if (found_socket == nullptr) {
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return component.attribute_get_constant_for_read(domain, type, default_value);
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}
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if (found_socket->type == SOCK_STRING) {
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const std::string name = this->get_input<std::string>(found_socket->identifier);
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/* Try getting the attribute without the default value. */
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ReadAttributePtr attribute = component.attribute_try_get_for_read(name, domain, type);
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if (attribute) {
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return attribute;
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}
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/* If the attribute doesn't exist, use the default value and output an error message
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* (except when the field is empty, to avoid spamming error messages, and not when
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* the domain is empty and we don't expect an attribute anyway). */
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if (!name.empty() && component.attribute_domain_size(domain) != 0) {
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this->error_message_add(NodeWarningType::Error,
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TIP_("No attribute with name \"") + name + "\"");
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}
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return component.attribute_get_constant_for_read(domain, type, default_value);
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}
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if (found_socket->type == SOCK_FLOAT) {
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const float value = this->get_input<float>(found_socket->identifier);
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return component.attribute_get_constant_for_read_converted(
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domain, CD_PROP_FLOAT, type, &value);
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}
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if (found_socket->type == SOCK_VECTOR) {
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const float3 value = this->get_input<float3>(found_socket->identifier);
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return component.attribute_get_constant_for_read_converted(
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domain, CD_PROP_FLOAT3, type, &value);
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}
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if (found_socket->type == SOCK_RGBA) {
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const Color4f value = this->get_input<Color4f>(found_socket->identifier);
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return component.attribute_get_constant_for_read_converted(
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domain, CD_PROP_COLOR, type, &value);
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}
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BLI_assert(false);
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return component.attribute_get_constant_for_read(domain, type, default_value);
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}
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CustomDataType GeoNodeExecParams::get_input_attribute_data_type(
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const StringRef name,
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const GeometryComponent &component,
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const CustomDataType default_type) const
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{
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const bNodeSocket *found_socket = this->find_available_socket(name);
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BLI_assert(found_socket != nullptr); /* There should always be available socket for the name. */
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if (found_socket == nullptr) {
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return default_type;
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}
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if (found_socket->type == SOCK_STRING) {
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const std::string name = this->get_input<std::string>(found_socket->identifier);
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ReadAttributePtr attribute = component.attribute_try_get_for_read(name);
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if (!attribute) {
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return default_type;
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}
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return attribute->custom_data_type();
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}
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if (found_socket->type == SOCK_FLOAT) {
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return CD_PROP_FLOAT;
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}
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if (found_socket->type == SOCK_VECTOR) {
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return CD_PROP_FLOAT3;
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}
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if (found_socket->type == SOCK_RGBA) {
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return CD_PROP_COLOR;
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}
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if (found_socket->type == SOCK_BOOLEAN) {
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return CD_PROP_BOOL;
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}
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BLI_assert(false);
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return default_type;
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}
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/**
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* If any of the corresponding input sockets are attributes instead of single values,
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* use the highest priority attribute domain from among them.
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* Otherwise return the default domain.
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*/
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AttributeDomain GeoNodeExecParams::get_highest_priority_input_domain(
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Span<std::string> names,
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const GeometryComponent &component,
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const AttributeDomain default_domain) const
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{
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Vector<AttributeDomain, 8> input_domains;
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for (const std::string &name : names) {
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const bNodeSocket *found_socket = this->find_available_socket(name);
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BLI_assert(found_socket != nullptr); /* A socket should be available socket for the name. */
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if (found_socket == nullptr) {
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continue;
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}
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if (found_socket->type == SOCK_STRING) {
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const std::string name = this->get_input<std::string>(found_socket->identifier);
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ReadAttributePtr attribute = component.attribute_try_get_for_read(name);
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if (attribute) {
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input_domains.append(attribute->domain());
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}
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}
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}
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if (input_domains.size() > 0) {
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return bke::attribute_domain_highest_priority(input_domains);
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}
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return default_domain;
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}
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void GeoNodeExecParams::check_extract_input(StringRef identifier,
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const CPPType *requested_type) const
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{
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bNodeSocket *found_socket = nullptr;
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for (const InputSocketRef *socket : node_->inputs()) {
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if (socket->identifier() == identifier) {
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found_socket = socket->bsocket();
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break;
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}
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}
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if (found_socket == nullptr) {
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std::cout << "Did not find an input socket with the identifier '" << identifier << "'.\n";
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std::cout << "Possible identifiers are: ";
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for (const InputSocketRef *socket : node_->inputs()) {
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if (socket->is_available()) {
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std::cout << "'" << socket->identifier() << "', ";
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}
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}
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std::cout << "\n";
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BLI_assert(false);
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}
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else if (found_socket->flag & SOCK_UNAVAIL) {
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std::cout << "The socket corresponding to the identifier '" << identifier
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<< "' is disabled.\n";
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BLI_assert(false);
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}
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else if (!input_values_.contains(identifier)) {
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std::cout << "The identifier '" << identifier
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<< "' is valid, but there is no value for it anymore.\n";
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std::cout << "Most likely it has been extracted before.\n";
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BLI_assert(false);
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}
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else if (requested_type != nullptr) {
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const CPPType &expected_type = *socket_cpp_type_get(*found_socket->typeinfo);
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if (*requested_type != expected_type) {
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std::cout << "The requested type '" << requested_type->name() << "' is incorrect. Expected '"
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<< expected_type.name() << "'.\n";
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BLI_assert(false);
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}
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}
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}
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void GeoNodeExecParams::check_set_output(StringRef identifier, const CPPType &value_type) const
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{
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bNodeSocket *found_socket = nullptr;
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for (const OutputSocketRef *socket : node_->outputs()) {
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if (socket->identifier() == identifier) {
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found_socket = socket->bsocket();
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break;
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}
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}
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if (found_socket == nullptr) {
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std::cout << "Did not find an output socket with the identifier '" << identifier << "'.\n";
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std::cout << "Possible identifiers are: ";
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for (const OutputSocketRef *socket : node_->outputs()) {
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if (socket->is_available()) {
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std::cout << "'" << socket->identifier() << "', ";
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}
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}
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std::cout << "\n";
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BLI_assert(false);
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}
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else if (found_socket->flag & SOCK_UNAVAIL) {
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std::cout << "The socket corresponding to the identifier '" << identifier
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<< "' is disabled.\n";
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BLI_assert(false);
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}
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else if (output_values_.contains(identifier)) {
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std::cout << "The identifier '" << identifier << "' has been set already.\n";
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BLI_assert(false);
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}
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else {
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const CPPType &expected_type = *socket_cpp_type_get(*found_socket->typeinfo);
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if (value_type != expected_type) {
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std::cout << "The value type '" << value_type.name() << "' is incorrect. Expected '"
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<< expected_type.name() << "'.\n";
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BLI_assert(false);
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}
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}
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}
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} // namespace blender::nodes
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