The goal is to solve confusion of the "All rights reserved" for licensing
code under an open-source license.
The phrase "All rights reserved" comes from a historical convention that
required this phrase for the copyright protection to apply. This convention
is no longer relevant.
However, even though the phrase has no meaning in establishing the copyright
it has not lost meaning in terms of licensing.
This change makes it so code under the Blender Foundation copyright does
not use "all rights reserved". This is also how the GPL license itself
states how to apply it to the source code:
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software ...
This change does not change copyright notice in cases when the copyright
is dual (BF and an author), or just an author of the code. It also does
mot change copyright which is inherited from NaN Holding BV as it needs
some further investigation about what is the proper way to handle it.
235 lines
8.6 KiB
C++
235 lines
8.6 KiB
C++
/* SPDX-License-Identifier: GPL-2.0-or-later
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* Copyright 2022 Blender Foundation */
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/** \file
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* \ingroup depsgraph
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*/
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#include "intern/eval/deg_eval_visibility.h"
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#include "DNA_layer_types.h"
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#include "DNA_modifier_types.h"
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#include "DNA_object_types.h"
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#include "BLI_assert.h"
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#include "BLI_stack.h"
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#include "DEG_depsgraph.h"
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#include "intern/depsgraph.h"
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#include "intern/depsgraph_relation.h"
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#include "intern/node/deg_node.h"
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#include "intern/node/deg_node_component.h"
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#include "intern/node/deg_node_id.h"
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#include "intern/node/deg_node_operation.h"
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namespace blender::deg {
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void deg_evaluate_object_node_visibility(::Depsgraph *depsgraph, IDNode *id_node)
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{
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BLI_assert(GS(id_node->id_cow->name) == ID_OB);
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Depsgraph *graph = reinterpret_cast<Depsgraph *>(depsgraph);
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const Object *object = reinterpret_cast<const Object *>(id_node->id_cow);
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DEG_debug_print_eval(depsgraph, __func__, object->id.name, &object->id);
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const int required_flags = (graph->mode == DAG_EVAL_VIEWPORT) ? BASE_ENABLED_VIEWPORT :
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BASE_ENABLED_RENDER;
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const bool is_enabled = !graph->use_visibility_optimization ||
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object->base_flag & required_flags;
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if (id_node->is_enabled_on_eval != is_enabled) {
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id_node->is_enabled_on_eval = is_enabled;
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/* Tag dependency graph for changed visibility, so that it is updated on all dependencies prior
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* to a pass of an actual evaluation. */
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graph->need_update_nodes_visibility = true;
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}
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}
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void deg_evaluate_object_modifiers_mode_node_visibility(::Depsgraph *depsgraph, IDNode *id_node)
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{
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BLI_assert(GS(id_node->id_cow->name) == ID_OB);
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Depsgraph *graph = reinterpret_cast<Depsgraph *>(depsgraph);
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const Object *object = reinterpret_cast<const Object *>(id_node->id_cow);
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DEG_debug_print_eval(depsgraph, __func__, object->id.name, &object->id);
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if (BLI_listbase_is_empty(&object->modifiers)) {
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return;
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}
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const ModifierMode modifier_mode = (graph->mode == DAG_EVAL_VIEWPORT) ? eModifierMode_Realtime :
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eModifierMode_Render;
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const ComponentNode *geometry_component = id_node->find_component(NodeType::GEOMETRY);
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LISTBASE_FOREACH (ModifierData *, modifier, &object->modifiers) {
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OperationNode *modifier_node = geometry_component->find_operation(OperationCode::MODIFIER,
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modifier->name);
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BLI_assert_msg(modifier_node != nullptr,
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"Modifier node in depsgraph is not found. Likely due to missing "
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"DEG_relations_tag_update().");
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const bool modifier_enabled = !graph->use_visibility_optimization ||
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(modifier->mode & modifier_mode);
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const int mute_flag = modifier_enabled ? 0 : DEPSOP_FLAG_MUTE;
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if ((modifier_node->flag & DEPSOP_FLAG_MUTE) != mute_flag) {
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modifier_node->flag &= ~DEPSOP_FLAG_MUTE;
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modifier_node->flag |= mute_flag;
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graph->need_update_nodes_visibility = true;
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}
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}
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}
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void deg_graph_flush_visibility_flags(Depsgraph *graph)
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{
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enum {
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DEG_NODE_VISITED = (1 << 0),
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};
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for (IDNode *id_node : graph->id_nodes) {
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for (ComponentNode *comp_node : id_node->components.values()) {
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comp_node->possibly_affects_visible_id = id_node->is_visible_on_build;
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comp_node->affects_visible_id = id_node->is_visible_on_build && id_node->is_enabled_on_eval;
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/* Visibility component is always to be considered to have the same visibility as the
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* `id_node->is_visible_on_build`. This is because the visibility is to be evaluated
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* regardless of its current state as it might get changed due to animation. */
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if (comp_node->type == NodeType::VISIBILITY) {
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comp_node->affects_visible_id = id_node->is_visible_on_build;
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}
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/* Enforce "visibility" of the synchronization component.
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*
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* This component is never connected to other ID nodes, and hence can not be handled in the
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* same way as other components needed for evaluation. It is only needed for proper
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* evaluation of the ID node it belongs to.
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*
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* The design is such that the synchronization is supposed to happen whenever any part of the
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* ID changed/evaluated. Here we mark the component as "visible" so that genetic recalc flag
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* flushing and scheduling will handle the component in a generic manner. */
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if (comp_node->type == NodeType::SYNCHRONIZATION) {
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comp_node->possibly_affects_visible_id = true;
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comp_node->affects_visible_id = true;
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}
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}
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}
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BLI_Stack *stack = BLI_stack_new(sizeof(OperationNode *), "DEG flush layers stack");
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for (OperationNode *op_node : graph->operations) {
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op_node->custom_flags = 0;
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op_node->num_links_pending = 0;
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for (Relation *rel : op_node->outlinks) {
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if ((rel->from->type == NodeType::OPERATION) && (rel->flag & RELATION_FLAG_CYCLIC) == 0) {
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++op_node->num_links_pending;
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}
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}
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if (op_node->num_links_pending == 0) {
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BLI_stack_push(stack, &op_node);
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op_node->custom_flags |= DEG_NODE_VISITED;
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}
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}
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while (!BLI_stack_is_empty(stack)) {
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OperationNode *op_node;
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BLI_stack_pop(stack, &op_node);
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/* Flush flags to parents. */
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for (Relation *rel : op_node->inlinks) {
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if (rel->from->type == NodeType::OPERATION) {
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const OperationNode *op_to = reinterpret_cast<const OperationNode *>(rel->to);
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const ComponentNode *comp_to = op_to->owner;
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/* Ignore the synchronization target.
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* It is always visible and should not affect on other components. */
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if (comp_to->type == NodeType::SYNCHRONIZATION) {
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continue;
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}
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OperationNode *op_from = reinterpret_cast<OperationNode *>(rel->from);
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ComponentNode *comp_from = op_from->owner;
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op_from->flag |= (op_to->flag & OperationFlag::DEPSOP_FLAG_AFFECTS_VISIBILITY);
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if (rel->flag & RELATION_NO_VISIBILITY_CHANGE) {
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continue;
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}
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const bool target_possibly_affects_visible_id = comp_to->possibly_affects_visible_id;
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bool target_affects_visible_id = comp_to->affects_visible_id;
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/* This is a bit arbitrary but the idea here is following:
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*
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* - When another object is used by a disabled modifier we do not want that object to
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* be considered needed for evaluation.
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*
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* - However, we do not want to take mute flag during visibility propagation within the
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* same object. Otherwise drivers and transform dependencies of the geometry component
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* entry component might not be properly handled.
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*
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* This code works fine for muting modifiers, but might need tweaks when mute is used for
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* something else. */
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if (comp_from != comp_to && (op_to->flag & DEPSOP_FLAG_MUTE)) {
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target_affects_visible_id = false;
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}
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/* Visibility component forces all components of the current ID to be considered as
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* affecting directly visible. */
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if (comp_from->type == NodeType::VISIBILITY) {
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const IDNode *id_node_from = comp_from->owner;
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if (target_possibly_affects_visible_id) {
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for (ComponentNode *comp_node : id_node_from->components.values()) {
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comp_node->possibly_affects_visible_id |= target_possibly_affects_visible_id;
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}
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}
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if (target_affects_visible_id) {
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for (ComponentNode *comp_node : id_node_from->components.values()) {
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comp_node->affects_visible_id |= target_affects_visible_id;
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}
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}
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}
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else {
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comp_from->possibly_affects_visible_id |= target_possibly_affects_visible_id;
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comp_from->affects_visible_id |= target_affects_visible_id;
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}
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}
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}
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/* Schedule parent nodes. */
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for (Relation *rel : op_node->inlinks) {
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if (rel->from->type == NodeType::OPERATION) {
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OperationNode *op_from = (OperationNode *)rel->from;
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if ((rel->flag & RELATION_FLAG_CYCLIC) == 0) {
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BLI_assert(op_from->num_links_pending > 0);
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--op_from->num_links_pending;
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}
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if ((op_from->num_links_pending == 0) && (op_from->custom_flags & DEG_NODE_VISITED) == 0) {
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BLI_stack_push(stack, &op_from);
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op_from->custom_flags |= DEG_NODE_VISITED;
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}
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}
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}
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}
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BLI_stack_free(stack);
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graph->need_update_nodes_visibility = false;
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}
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void deg_graph_flush_visibility_flags_if_needed(Depsgraph *graph)
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{
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if (!graph->need_update_nodes_visibility) {
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return;
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}
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deg_graph_flush_visibility_flags(graph);
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}
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} // namespace blender::deg
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