531 lines
26 KiB
C++
531 lines
26 KiB
C++
/*************************************************************************/
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/* renderer_storage.h */
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/*************************************************************************/
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/* This file is part of: */
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/* GODOT ENGINE */
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/* https://godotengine.org */
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/*************************************************************************/
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/* Copyright (c) 2007-2022 Juan Linietsky, Ariel Manzur. */
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/* Copyright (c) 2014-2022 Godot Engine contributors (cf. AUTHORS.md). */
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/* */
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/* Permission is hereby granted, free of charge, to any person obtaining */
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/* a copy of this software and associated documentation files (the */
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/* "Software"), to deal in the Software without restriction, including */
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/* without limitation the rights to use, copy, modify, merge, publish, */
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/* distribute, sublicense, and/or sell copies of the Software, and to */
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/* permit persons to whom the Software is furnished to do so, subject to */
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/* the following conditions: */
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/* */
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/* The above copyright notice and this permission notice shall be */
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/* included in all copies or substantial portions of the Software. */
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/* */
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/* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, */
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/* EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF */
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/* MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.*/
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/* IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY */
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/* CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, */
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/* TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE */
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/* SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. */
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/*************************************************************************/
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#ifndef RENDERINGSERVERSTORAGE_H
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#define RENDERINGSERVERSTORAGE_H
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#include "servers/rendering_server.h"
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class RendererStorage {
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Color default_clear_color;
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public:
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enum DependencyChangedNotification {
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DEPENDENCY_CHANGED_AABB,
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DEPENDENCY_CHANGED_MATERIAL,
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DEPENDENCY_CHANGED_MESH,
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DEPENDENCY_CHANGED_MULTIMESH,
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DEPENDENCY_CHANGED_MULTIMESH_VISIBLE_INSTANCES,
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DEPENDENCY_CHANGED_PARTICLES,
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DEPENDENCY_CHANGED_DECAL,
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DEPENDENCY_CHANGED_SKELETON_DATA,
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DEPENDENCY_CHANGED_SKELETON_BONES,
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DEPENDENCY_CHANGED_LIGHT,
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DEPENDENCY_CHANGED_LIGHT_SOFT_SHADOW_AND_PROJECTOR,
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DEPENDENCY_CHANGED_REFLECTION_PROBE,
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};
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struct DependencyTracker;
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struct Dependency {
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void changed_notify(DependencyChangedNotification p_notification);
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void deleted_notify(const RID &p_rid);
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~Dependency();
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private:
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friend struct DependencyTracker;
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Map<DependencyTracker *, uint32_t> instances;
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};
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struct DependencyTracker {
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void *userdata = nullptr;
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typedef void (*ChangedCallback)(DependencyChangedNotification, DependencyTracker *);
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typedef void (*DeletedCallback)(const RID &, DependencyTracker *);
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ChangedCallback changed_callback = nullptr;
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DeletedCallback deleted_callback = nullptr;
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void update_begin() { // call before updating dependencies
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instance_version++;
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}
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void update_dependency(Dependency *p_dependency) { //called internally, can't be used directly, use update functions in Storage
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dependencies.insert(p_dependency);
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p_dependency->instances[this] = instance_version;
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}
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void update_end() { //call after updating dependencies
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List<Pair<Dependency *, Map<DependencyTracker *, uint32_t>::Element *>> to_clean_up;
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for (Set<Dependency *>::Element *E = dependencies.front(); E; E = E->next()) {
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Dependency *dep = E->get();
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Map<DependencyTracker *, uint32_t>::Element *F = dep->instances.find(this);
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ERR_CONTINUE(!F);
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if (F->get() != instance_version) {
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Pair<Dependency *, Map<DependencyTracker *, uint32_t>::Element *> p;
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p.first = dep;
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p.second = F;
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to_clean_up.push_back(p);
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}
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}
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while (to_clean_up.size()) {
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to_clean_up.front()->get().first->instances.erase(to_clean_up.front()->get().second);
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dependencies.erase(to_clean_up.front()->get().first);
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to_clean_up.pop_front();
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}
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}
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void clear() { // clear all dependencies
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for (Set<Dependency *>::Element *E = dependencies.front(); E; E = E->next()) {
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Dependency *dep = E->get();
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dep->instances.erase(this);
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}
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dependencies.clear();
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}
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~DependencyTracker() { clear(); }
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private:
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friend struct Dependency;
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uint32_t instance_version = 0;
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Set<Dependency *> dependencies;
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};
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/* MESH API */
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virtual RID mesh_allocate() = 0;
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virtual void mesh_initialize(RID p_rid) = 0;
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virtual void mesh_set_blend_shape_count(RID p_mesh, int p_blend_shape_count) = 0;
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/// Returns stride
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virtual void mesh_add_surface(RID p_mesh, const RS::SurfaceData &p_surface) = 0;
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virtual int mesh_get_blend_shape_count(RID p_mesh) const = 0;
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virtual void mesh_set_blend_shape_mode(RID p_mesh, RS::BlendShapeMode p_mode) = 0;
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virtual RS::BlendShapeMode mesh_get_blend_shape_mode(RID p_mesh) const = 0;
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virtual void mesh_surface_update_vertex_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
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virtual void mesh_surface_update_attribute_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
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virtual void mesh_surface_update_skin_region(RID p_mesh, int p_surface, int p_offset, const Vector<uint8_t> &p_data) = 0;
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virtual void mesh_surface_set_material(RID p_mesh, int p_surface, RID p_material) = 0;
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virtual RID mesh_surface_get_material(RID p_mesh, int p_surface) const = 0;
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virtual RS::SurfaceData mesh_get_surface(RID p_mesh, int p_surface) const = 0;
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virtual int mesh_get_surface_count(RID p_mesh) const = 0;
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virtual void mesh_set_custom_aabb(RID p_mesh, const AABB &p_aabb) = 0;
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virtual AABB mesh_get_custom_aabb(RID p_mesh) const = 0;
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virtual AABB mesh_get_aabb(RID p_mesh, RID p_skeleton = RID()) = 0;
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virtual void mesh_set_shadow_mesh(RID p_mesh, RID p_shadow_mesh) = 0;
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virtual void mesh_clear(RID p_mesh) = 0;
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virtual bool mesh_needs_instance(RID p_mesh, bool p_has_skeleton) = 0;
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/* MESH INSTANCE */
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virtual RID mesh_instance_create(RID p_base) = 0;
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virtual void mesh_instance_set_skeleton(RID p_mesh_instance, RID p_skeleton) = 0;
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virtual void mesh_instance_set_blend_shape_weight(RID p_mesh_instance, int p_shape, float p_weight) = 0;
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virtual void mesh_instance_check_for_update(RID p_mesh_instance) = 0;
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virtual void update_mesh_instances() = 0;
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/* MULTIMESH API */
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virtual RID multimesh_allocate() = 0;
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virtual void multimesh_initialize(RID p_rid) = 0;
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virtual void multimesh_allocate_data(RID p_multimesh, int p_instances, RS::MultimeshTransformFormat p_transform_format, bool p_use_colors = false, bool p_use_custom_data = false) = 0;
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virtual int multimesh_get_instance_count(RID p_multimesh) const = 0;
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virtual void multimesh_set_mesh(RID p_multimesh, RID p_mesh) = 0;
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virtual void multimesh_instance_set_transform(RID p_multimesh, int p_index, const Transform3D &p_transform) = 0;
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virtual void multimesh_instance_set_transform_2d(RID p_multimesh, int p_index, const Transform2D &p_transform) = 0;
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virtual void multimesh_instance_set_color(RID p_multimesh, int p_index, const Color &p_color) = 0;
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virtual void multimesh_instance_set_custom_data(RID p_multimesh, int p_index, const Color &p_color) = 0;
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virtual RID multimesh_get_mesh(RID p_multimesh) const = 0;
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virtual Transform3D multimesh_instance_get_transform(RID p_multimesh, int p_index) const = 0;
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virtual Transform2D multimesh_instance_get_transform_2d(RID p_multimesh, int p_index) const = 0;
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virtual Color multimesh_instance_get_color(RID p_multimesh, int p_index) const = 0;
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virtual Color multimesh_instance_get_custom_data(RID p_multimesh, int p_index) const = 0;
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virtual void multimesh_set_buffer(RID p_multimesh, const Vector<float> &p_buffer) = 0;
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virtual Vector<float> multimesh_get_buffer(RID p_multimesh) const = 0;
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virtual void multimesh_set_visible_instances(RID p_multimesh, int p_visible) = 0;
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virtual int multimesh_get_visible_instances(RID p_multimesh) const = 0;
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virtual AABB multimesh_get_aabb(RID p_multimesh) const = 0;
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/* SKELETON API */
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virtual RID skeleton_allocate() = 0;
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virtual void skeleton_initialize(RID p_rid) = 0;
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virtual void skeleton_allocate_data(RID p_skeleton, int p_bones, bool p_2d_skeleton = false) = 0;
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virtual int skeleton_get_bone_count(RID p_skeleton) const = 0;
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virtual void skeleton_bone_set_transform(RID p_skeleton, int p_bone, const Transform3D &p_transform) = 0;
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virtual Transform3D skeleton_bone_get_transform(RID p_skeleton, int p_bone) const = 0;
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virtual void skeleton_bone_set_transform_2d(RID p_skeleton, int p_bone, const Transform2D &p_transform) = 0;
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virtual Transform2D skeleton_bone_get_transform_2d(RID p_skeleton, int p_bone) const = 0;
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virtual void skeleton_set_base_transform_2d(RID p_skeleton, const Transform2D &p_base_transform) = 0;
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/* Light API */
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virtual RID directional_light_allocate() = 0;
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virtual void directional_light_initialize(RID p_rid) = 0;
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virtual RID omni_light_allocate() = 0;
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virtual void omni_light_initialize(RID p_rid) = 0;
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virtual RID spot_light_allocate() = 0;
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virtual void spot_light_initialize(RID p_rid) = 0;
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virtual void light_set_color(RID p_light, const Color &p_color) = 0;
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virtual void light_set_param(RID p_light, RS::LightParam p_param, float p_value) = 0;
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virtual void light_set_shadow(RID p_light, bool p_enabled) = 0;
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virtual void light_set_projector(RID p_light, RID p_texture) = 0;
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virtual void light_set_negative(RID p_light, bool p_enable) = 0;
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virtual void light_set_cull_mask(RID p_light, uint32_t p_mask) = 0;
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virtual void light_set_distance_fade(RID p_light, bool p_enabled, float p_begin, float p_shadow, float p_length) = 0;
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virtual void light_set_reverse_cull_face_mode(RID p_light, bool p_enabled) = 0;
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virtual void light_set_bake_mode(RID p_light, RS::LightBakeMode p_bake_mode) = 0;
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virtual void light_set_max_sdfgi_cascade(RID p_light, uint32_t p_cascade) = 0;
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virtual void light_omni_set_shadow_mode(RID p_light, RS::LightOmniShadowMode p_mode) = 0;
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virtual void light_directional_set_shadow_mode(RID p_light, RS::LightDirectionalShadowMode p_mode) = 0;
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virtual void light_directional_set_blend_splits(RID p_light, bool p_enable) = 0;
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virtual bool light_directional_get_blend_splits(RID p_light) const = 0;
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virtual void light_directional_set_sky_mode(RID p_light, RS::LightDirectionalSkyMode p_mode) = 0;
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virtual RS::LightDirectionalSkyMode light_directional_get_sky_mode(RID p_light) const = 0;
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virtual RS::LightDirectionalShadowMode light_directional_get_shadow_mode(RID p_light) = 0;
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virtual RS::LightOmniShadowMode light_omni_get_shadow_mode(RID p_light) = 0;
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virtual bool light_has_shadow(RID p_light) const = 0;
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virtual bool light_has_projector(RID p_light) const = 0;
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virtual RS::LightType light_get_type(RID p_light) const = 0;
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virtual AABB light_get_aabb(RID p_light) const = 0;
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virtual float light_get_param(RID p_light, RS::LightParam p_param) = 0;
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virtual Color light_get_color(RID p_light) = 0;
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virtual RS::LightBakeMode light_get_bake_mode(RID p_light) = 0;
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virtual uint32_t light_get_max_sdfgi_cascade(RID p_light) = 0;
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virtual uint64_t light_get_version(RID p_light) const = 0;
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/* PROBE API */
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virtual RID reflection_probe_allocate() = 0;
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virtual void reflection_probe_initialize(RID p_rid) = 0;
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virtual void reflection_probe_set_update_mode(RID p_probe, RS::ReflectionProbeUpdateMode p_mode) = 0;
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virtual void reflection_probe_set_resolution(RID p_probe, int p_resolution) = 0;
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virtual void reflection_probe_set_intensity(RID p_probe, float p_intensity) = 0;
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virtual void reflection_probe_set_ambient_mode(RID p_probe, RS::ReflectionProbeAmbientMode p_mode) = 0;
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virtual void reflection_probe_set_ambient_color(RID p_probe, const Color &p_color) = 0;
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virtual void reflection_probe_set_ambient_energy(RID p_probe, float p_energy) = 0;
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virtual void reflection_probe_set_max_distance(RID p_probe, float p_distance) = 0;
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virtual void reflection_probe_set_extents(RID p_probe, const Vector3 &p_extents) = 0;
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virtual void reflection_probe_set_origin_offset(RID p_probe, const Vector3 &p_offset) = 0;
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virtual void reflection_probe_set_as_interior(RID p_probe, bool p_enable) = 0;
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virtual void reflection_probe_set_enable_box_projection(RID p_probe, bool p_enable) = 0;
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virtual void reflection_probe_set_enable_shadows(RID p_probe, bool p_enable) = 0;
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virtual void reflection_probe_set_cull_mask(RID p_probe, uint32_t p_layers) = 0;
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virtual void reflection_probe_set_mesh_lod_threshold(RID p_probe, float p_ratio) = 0;
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virtual AABB reflection_probe_get_aabb(RID p_probe) const = 0;
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virtual RS::ReflectionProbeUpdateMode reflection_probe_get_update_mode(RID p_probe) const = 0;
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virtual uint32_t reflection_probe_get_cull_mask(RID p_probe) const = 0;
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virtual Vector3 reflection_probe_get_extents(RID p_probe) const = 0;
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virtual Vector3 reflection_probe_get_origin_offset(RID p_probe) const = 0;
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virtual float reflection_probe_get_origin_max_distance(RID p_probe) const = 0;
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virtual bool reflection_probe_renders_shadows(RID p_probe) const = 0;
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virtual float reflection_probe_get_mesh_lod_threshold(RID p_probe) const = 0;
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virtual void base_update_dependency(RID p_base, DependencyTracker *p_instance) = 0;
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virtual void skeleton_update_dependency(RID p_base, DependencyTracker *p_instance) = 0;
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/* VOXEL GI API */
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virtual RID voxel_gi_allocate() = 0;
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virtual void voxel_gi_initialize(RID p_rid) = 0;
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virtual void voxel_gi_allocate_data(RID p_voxel_gi, const Transform3D &p_to_cell_xform, const AABB &p_aabb, const Vector3i &p_octree_size, const Vector<uint8_t> &p_octree_cells, const Vector<uint8_t> &p_data_cells, const Vector<uint8_t> &p_distance_field, const Vector<int> &p_level_counts) = 0;
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virtual AABB voxel_gi_get_bounds(RID p_voxel_gi) const = 0;
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virtual Vector3i voxel_gi_get_octree_size(RID p_voxel_gi) const = 0;
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virtual Vector<uint8_t> voxel_gi_get_octree_cells(RID p_voxel_gi) const = 0;
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virtual Vector<uint8_t> voxel_gi_get_data_cells(RID p_voxel_gi) const = 0;
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virtual Vector<uint8_t> voxel_gi_get_distance_field(RID p_voxel_gi) const = 0;
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virtual Vector<int> voxel_gi_get_level_counts(RID p_voxel_gi) const = 0;
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virtual Transform3D voxel_gi_get_to_cell_xform(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_dynamic_range(RID p_voxel_gi, float p_range) = 0;
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virtual float voxel_gi_get_dynamic_range(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_propagation(RID p_voxel_gi, float p_range) = 0;
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virtual float voxel_gi_get_propagation(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_energy(RID p_voxel_gi, float p_energy) = 0;
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virtual float voxel_gi_get_energy(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_bias(RID p_voxel_gi, float p_bias) = 0;
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virtual float voxel_gi_get_bias(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_normal_bias(RID p_voxel_gi, float p_range) = 0;
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virtual float voxel_gi_get_normal_bias(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_interior(RID p_voxel_gi, bool p_enable) = 0;
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virtual bool voxel_gi_is_interior(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_use_two_bounces(RID p_voxel_gi, bool p_enable) = 0;
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virtual bool voxel_gi_is_using_two_bounces(RID p_voxel_gi) const = 0;
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virtual void voxel_gi_set_anisotropy_strength(RID p_voxel_gi, float p_strength) = 0;
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virtual float voxel_gi_get_anisotropy_strength(RID p_voxel_gi) const = 0;
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virtual uint32_t voxel_gi_get_version(RID p_probe) = 0;
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/* LIGHTMAP */
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virtual RID lightmap_allocate() = 0;
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virtual void lightmap_initialize(RID p_rid) = 0;
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virtual void lightmap_set_textures(RID p_lightmap, RID p_light, bool p_uses_spherical_haromics) = 0;
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virtual void lightmap_set_probe_bounds(RID p_lightmap, const AABB &p_bounds) = 0;
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virtual void lightmap_set_probe_interior(RID p_lightmap, bool p_interior) = 0;
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virtual void lightmap_set_probe_capture_data(RID p_lightmap, const PackedVector3Array &p_points, const PackedColorArray &p_point_sh, const PackedInt32Array &p_tetrahedra, const PackedInt32Array &p_bsp_tree) = 0;
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virtual PackedVector3Array lightmap_get_probe_capture_points(RID p_lightmap) const = 0;
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virtual PackedColorArray lightmap_get_probe_capture_sh(RID p_lightmap) const = 0;
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virtual PackedInt32Array lightmap_get_probe_capture_tetrahedra(RID p_lightmap) const = 0;
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virtual PackedInt32Array lightmap_get_probe_capture_bsp_tree(RID p_lightmap) const = 0;
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virtual AABB lightmap_get_aabb(RID p_lightmap) const = 0;
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virtual void lightmap_tap_sh_light(RID p_lightmap, const Vector3 &p_point, Color *r_sh) = 0;
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virtual bool lightmap_is_interior(RID p_lightmap) const = 0;
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virtual void lightmap_set_probe_capture_update_speed(float p_speed) = 0;
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virtual float lightmap_get_probe_capture_update_speed() const = 0;
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/* PARTICLES */
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virtual RID particles_allocate() = 0;
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virtual void particles_initialize(RID p_rid) = 0;
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virtual void particles_set_mode(RID p_particles, RS::ParticlesMode p_mode) = 0;
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virtual void particles_set_emitting(RID p_particles, bool p_emitting) = 0;
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virtual bool particles_get_emitting(RID p_particles) = 0;
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virtual void particles_set_amount(RID p_particles, int p_amount) = 0;
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virtual void particles_set_lifetime(RID p_particles, double p_lifetime) = 0;
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virtual void particles_set_one_shot(RID p_particles, bool p_one_shot) = 0;
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virtual void particles_set_pre_process_time(RID p_particles, double p_time) = 0;
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virtual void particles_set_explosiveness_ratio(RID p_particles, real_t p_ratio) = 0;
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virtual void particles_set_randomness_ratio(RID p_particles, real_t p_ratio) = 0;
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virtual void particles_set_custom_aabb(RID p_particles, const AABB &p_aabb) = 0;
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virtual void particles_set_speed_scale(RID p_particles, double p_scale) = 0;
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virtual void particles_set_use_local_coordinates(RID p_particles, bool p_enable) = 0;
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virtual void particles_set_process_material(RID p_particles, RID p_material) = 0;
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virtual RID particles_get_process_material(RID p_particles) const = 0;
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virtual void particles_set_fixed_fps(RID p_particles, int p_fps) = 0;
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virtual void particles_set_interpolate(RID p_particles, bool p_enable) = 0;
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virtual void particles_set_fractional_delta(RID p_particles, bool p_enable) = 0;
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virtual void particles_set_collision_base_size(RID p_particles, real_t p_size) = 0;
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virtual void particles_set_transform_align(RID p_particles, RS::ParticlesTransformAlign p_transform_align) = 0;
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virtual void particles_set_trails(RID p_particles, bool p_enable, double p_length) = 0;
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virtual void particles_set_trail_bind_poses(RID p_particles, const Vector<Transform3D> &p_bind_poses) = 0;
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virtual void particles_restart(RID p_particles) = 0;
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virtual void particles_emit(RID p_particles, const Transform3D &p_transform, const Vector3 &p_velocity, const Color &p_color, const Color &p_custom, uint32_t p_emit_flags) = 0;
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virtual void particles_set_subemitter(RID p_particles, RID p_subemitter_particles) = 0;
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virtual bool particles_is_inactive(RID p_particles) const = 0;
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virtual void particles_set_draw_order(RID p_particles, RS::ParticlesDrawOrder p_order) = 0;
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virtual void particles_set_draw_passes(RID p_particles, int p_count) = 0;
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virtual void particles_set_draw_pass_mesh(RID p_particles, int p_pass, RID p_mesh) = 0;
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virtual void particles_request_process(RID p_particles) = 0;
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virtual AABB particles_get_current_aabb(RID p_particles) = 0;
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virtual AABB particles_get_aabb(RID p_particles) const = 0;
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virtual void particles_set_emission_transform(RID p_particles, const Transform3D &p_transform) = 0;
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virtual int particles_get_draw_passes(RID p_particles) const = 0;
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virtual RID particles_get_draw_pass_mesh(RID p_particles, int p_pass) const = 0;
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virtual void particles_set_view_axis(RID p_particles, const Vector3 &p_axis, const Vector3 &p_up_axis) = 0;
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virtual void particles_add_collision(RID p_particles, RID p_particles_collision_instance) = 0;
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virtual void particles_remove_collision(RID p_particles, RID p_particles_collision_instance) = 0;
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virtual void particles_set_canvas_sdf_collision(RID p_particles, bool p_enable, const Transform2D &p_xform, const Rect2 &p_to_screen, RID p_texture) = 0;
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virtual void update_particles() = 0;
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/* PARTICLES COLLISION */
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virtual RID particles_collision_allocate() = 0;
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virtual void particles_collision_initialize(RID p_rid) = 0;
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virtual void particles_collision_set_collision_type(RID p_particles_collision, RS::ParticlesCollisionType p_type) = 0;
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virtual void particles_collision_set_cull_mask(RID p_particles_collision, uint32_t p_cull_mask) = 0;
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virtual void particles_collision_set_sphere_radius(RID p_particles_collision, real_t p_radius) = 0; //for spheres
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virtual void particles_collision_set_box_extents(RID p_particles_collision, const Vector3 &p_extents) = 0; //for non-spheres
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virtual void particles_collision_set_attractor_strength(RID p_particles_collision, real_t p_strength) = 0;
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virtual void particles_collision_set_attractor_directionality(RID p_particles_collision, real_t p_directionality) = 0;
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virtual void particles_collision_set_attractor_attenuation(RID p_particles_collision, real_t p_curve) = 0;
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virtual void particles_collision_set_field_texture(RID p_particles_collision, RID p_texture) = 0; //for SDF and vector field, heightfield is dynamic
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virtual void particles_collision_height_field_update(RID p_particles_collision) = 0; //for SDF and vector field
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virtual void particles_collision_set_height_field_resolution(RID p_particles_collision, RS::ParticlesCollisionHeightfieldResolution p_resolution) = 0; //for SDF and vector field
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virtual AABB particles_collision_get_aabb(RID p_particles_collision) const = 0;
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virtual bool particles_collision_is_heightfield(RID p_particles_collision) const = 0;
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virtual RID particles_collision_get_heightfield_framebuffer(RID p_particles_collision) const = 0;
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/* FOG VOLUMES */
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virtual RID fog_volume_allocate() = 0;
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virtual void fog_volume_initialize(RID p_rid) = 0;
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virtual void fog_volume_set_shape(RID p_fog_volume, RS::FogVolumeShape p_shape) = 0;
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virtual void fog_volume_set_extents(RID p_fog_volume, const Vector3 &p_extents) = 0;
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virtual void fog_volume_set_material(RID p_fog_volume, RID p_material) = 0;
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virtual AABB fog_volume_get_aabb(RID p_fog_volume) const = 0;
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virtual RS::FogVolumeShape fog_volume_get_shape(RID p_fog_volume) const = 0;
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/* VISIBILITY NOTIFIER */
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virtual RID visibility_notifier_allocate() = 0;
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virtual void visibility_notifier_initialize(RID p_notifier) = 0;
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virtual void visibility_notifier_set_aabb(RID p_notifier, const AABB &p_aabb) = 0;
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virtual void visibility_notifier_set_callbacks(RID p_notifier, const Callable &p_enter_callbable, const Callable &p_exit_callable) = 0;
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virtual AABB visibility_notifier_get_aabb(RID p_notifier) const = 0;
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virtual void visibility_notifier_call(RID p_notifier, bool p_enter, bool p_deferred) = 0;
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//used from 2D and 3D
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virtual RID particles_collision_instance_create(RID p_collision) = 0;
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virtual void particles_collision_instance_set_transform(RID p_collision_instance, const Transform3D &p_transform) = 0;
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virtual void particles_collision_instance_set_active(RID p_collision_instance, bool p_active) = 0;
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/* RENDER TARGET */
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enum RenderTargetFlags {
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RENDER_TARGET_TRANSPARENT,
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RENDER_TARGET_DIRECT_TO_SCREEN,
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RENDER_TARGET_FLAG_MAX
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};
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virtual RID render_target_create() = 0;
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virtual void render_target_set_position(RID p_render_target, int p_x, int p_y) = 0;
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virtual void render_target_set_size(RID p_render_target, int p_width, int p_height, uint32_t p_view_count) = 0;
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virtual RID render_target_get_texture(RID p_render_target) = 0;
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virtual void render_target_set_external_texture(RID p_render_target, unsigned int p_texture_id) = 0;
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virtual void render_target_set_flag(RID p_render_target, RenderTargetFlags p_flag, bool p_value) = 0;
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virtual bool render_target_was_used(RID p_render_target) = 0;
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virtual void render_target_set_as_unused(RID p_render_target) = 0;
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virtual void render_target_request_clear(RID p_render_target, const Color &p_clear_color) = 0;
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virtual bool render_target_is_clear_requested(RID p_render_target) = 0;
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virtual Color render_target_get_clear_request_color(RID p_render_target) = 0;
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virtual void render_target_disable_clear_request(RID p_render_target) = 0;
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virtual void render_target_do_clear_request(RID p_render_target) = 0;
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virtual void render_target_set_sdf_size_and_scale(RID p_render_target, RS::ViewportSDFOversize p_size, RS::ViewportSDFScale p_scale) = 0;
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virtual Rect2i render_target_get_sdf_rect(RID p_render_target) const = 0;
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virtual void render_target_mark_sdf_enabled(RID p_render_target, bool p_enabled) = 0;
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virtual RS::InstanceType get_base_type(RID p_rid) const = 0;
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virtual bool free(RID p_rid) = 0;
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|
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virtual bool has_os_feature(const String &p_feature) const = 0;
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virtual void update_dirty_resources() = 0;
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|
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virtual void set_debug_generate_wireframes(bool p_generate) = 0;
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|
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virtual void update_memory_info() = 0;
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|
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virtual uint64_t get_rendering_info(RS::RenderingInfo p_info) = 0;
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virtual String get_video_adapter_name() const = 0;
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|
virtual String get_video_adapter_vendor() const = 0;
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virtual RenderingDevice::DeviceType get_video_adapter_type() const = 0;
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|
|
static RendererStorage *base_singleton;
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|
|
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void set_default_clear_color(const Color &p_color) {
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|
default_clear_color = p_color;
|
|
}
|
|
|
|
Color get_default_clear_color() const {
|
|
return default_clear_color;
|
|
}
|
|
#define TIMESTAMP_BEGIN() \
|
|
{ \
|
|
if (RSG::storage->capturing_timestamps) \
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|
RSG::storage->capture_timestamps_begin(); \
|
|
}
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|
|
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#define RENDER_TIMESTAMP(m_text) \
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|
{ \
|
|
if (RSG::storage->capturing_timestamps) \
|
|
RSG::storage->capture_timestamp(m_text); \
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|
}
|
|
|
|
bool capturing_timestamps = false;
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|
|
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virtual void capture_timestamps_begin() = 0;
|
|
virtual void capture_timestamp(const String &p_name) = 0;
|
|
virtual uint32_t get_captured_timestamps_count() const = 0;
|
|
virtual uint64_t get_captured_timestamps_frame() const = 0;
|
|
virtual uint64_t get_captured_timestamp_gpu_time(uint32_t p_index) const = 0;
|
|
virtual uint64_t get_captured_timestamp_cpu_time(uint32_t p_index) const = 0;
|
|
virtual String get_captured_timestamp_name(uint32_t p_index) const = 0;
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|
|
|
RendererStorage();
|
|
virtual ~RendererStorage() {}
|
|
};
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#endif // RENDERINGSERVERSTORAGE_H
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