This is the initial merge from the geometry-nodes branch. Nodes: * Attribute Math * Boolean * Edge Split * Float Compare * Object Info * Point Distribute * Point Instance * Random Attribute * Random Float * Subdivision Surface * Transform * Triangulate It includes the initial evaluation of geometry node groups in the Geometry Nodes modifier. Notes on the Generic attribute access API The API adds an indirection for attribute access. That has the following benefits: * Most code does not have to care about how an attribute is stored internally. This is mainly necessary, because we have to deal with "legacy" attributes such as vertex weights and attributes that are embedded into other structs such as vertex positions. * When reading from an attribute, we generally don't care what domain the attribute is stored on. So we want to abstract away the interpolation that that adapts attributes from one domain to another domain (this is not actually implemented yet). Other possible improvements for later iterations include: * Actually implement interpolation between domains. * Don't use inheritance for the different attribute types. A single class for read access and one for write access might be enough, because we know all the ways in which attributes are stored internally. We don't want more different internal structures in the future. On the contrary, ideally we can consolidate the different storage formats in the future to reduce the need for this indirection. * Remove the need for heap allocations when creating attribute accessors. It includes commits from: * Dalai Felinto * Hans Goudey * Jacques Lucke * Léo Depoix
408 lines
13 KiB
C++
408 lines
13 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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/** \file
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* \ingroup bke
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*/
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#include "MEM_guardedalloc.h"
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#include "DNA_defaults.h"
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#include "DNA_material_types.h"
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#include "DNA_object_types.h"
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#include "DNA_pointcloud_types.h"
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#include "BLI_listbase.h"
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#include "BLI_math.h"
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#include "BLI_rand.h"
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#include "BLI_string.h"
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#include "BLI_utildefines.h"
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#include "BKE_anim_data.h"
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#include "BKE_customdata.h"
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#include "BKE_geometry_set.hh"
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#include "BKE_global.h"
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#include "BKE_idtype.h"
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#include "BKE_lib_id.h"
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#include "BKE_lib_query.h"
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#include "BKE_lib_remap.h"
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#include "BKE_main.h"
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#include "BKE_mesh_wrapper.h"
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#include "BKE_modifier.h"
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#include "BKE_object.h"
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#include "BKE_pointcloud.h"
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#include "BLT_translation.h"
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#include "DEG_depsgraph_query.h"
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#include "BLO_read_write.h"
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/* PointCloud datablock */
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static void pointcloud_random(PointCloud *pointcloud);
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const char *POINTCLOUD_ATTR_POSITION = "position";
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const char *POINTCLOUD_ATTR_RADIUS = "radius";
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static void pointcloud_init_data(ID *id)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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BLI_assert(MEMCMP_STRUCT_AFTER_IS_ZERO(pointcloud, id));
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MEMCPY_STRUCT_AFTER(pointcloud, DNA_struct_default_get(PointCloud), id);
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CustomData_reset(&pointcloud->pdata);
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CustomData_add_layer_named(&pointcloud->pdata,
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CD_PROP_FLOAT3,
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CD_CALLOC,
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nullptr,
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pointcloud->totpoint,
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POINTCLOUD_ATTR_POSITION);
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BKE_pointcloud_update_customdata_pointers(pointcloud);
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}
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static void pointcloud_copy_data(Main *UNUSED(bmain), ID *id_dst, const ID *id_src, const int flag)
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{
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PointCloud *pointcloud_dst = (PointCloud *)id_dst;
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const PointCloud *pointcloud_src = (const PointCloud *)id_src;
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pointcloud_dst->mat = static_cast<Material **>(MEM_dupallocN(pointcloud_dst->mat));
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const eCDAllocType alloc_type = (flag & LIB_ID_COPY_CD_REFERENCE) ? CD_REFERENCE : CD_DUPLICATE;
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CustomData_copy(&pointcloud_src->pdata,
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&pointcloud_dst->pdata,
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CD_MASK_ALL,
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alloc_type,
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pointcloud_dst->totpoint);
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BKE_pointcloud_update_customdata_pointers(pointcloud_dst);
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pointcloud_dst->batch_cache = nullptr;
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}
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static void pointcloud_free_data(ID *id)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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BKE_animdata_free(&pointcloud->id, false);
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BKE_pointcloud_batch_cache_free(pointcloud);
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CustomData_free(&pointcloud->pdata, pointcloud->totpoint);
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MEM_SAFE_FREE(pointcloud->mat);
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}
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static void pointcloud_foreach_id(ID *id, LibraryForeachIDData *data)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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for (int i = 0; i < pointcloud->totcol; i++) {
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BKE_LIB_FOREACHID_PROCESS(data, pointcloud->mat[i], IDWALK_CB_USER);
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}
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}
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static void pointcloud_blend_write(BlendWriter *writer, ID *id, const void *id_address)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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if (pointcloud->id.us > 0 || BLO_write_is_undo(writer)) {
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CustomDataLayer *players = nullptr, players_buff[CD_TEMP_CHUNK_SIZE];
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CustomData_blend_write_prepare(
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&pointcloud->pdata, &players, players_buff, ARRAY_SIZE(players_buff));
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/* Write LibData */
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BLO_write_id_struct(writer, PointCloud, id_address, &pointcloud->id);
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BKE_id_blend_write(writer, &pointcloud->id);
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/* Direct data */
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CustomData_blend_write(
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writer, &pointcloud->pdata, players, pointcloud->totpoint, CD_MASK_ALL, &pointcloud->id);
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BLO_write_pointer_array(writer, pointcloud->totcol, pointcloud->mat);
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if (pointcloud->adt) {
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BKE_animdata_blend_write(writer, pointcloud->adt);
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}
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/* Remove temporary data. */
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if (players && players != players_buff) {
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MEM_freeN(players);
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}
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}
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}
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static void pointcloud_blend_read_data(BlendDataReader *reader, ID *id)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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BLO_read_data_address(reader, &pointcloud->adt);
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BKE_animdata_blend_read_data(reader, pointcloud->adt);
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/* Geometry */
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CustomData_blend_read(reader, &pointcloud->pdata, pointcloud->totpoint);
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BKE_pointcloud_update_customdata_pointers(pointcloud);
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/* Materials */
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BLO_read_pointer_array(reader, (void **)&pointcloud->mat);
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}
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static void pointcloud_blend_read_lib(BlendLibReader *reader, ID *id)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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for (int a = 0; a < pointcloud->totcol; a++) {
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BLO_read_id_address(reader, pointcloud->id.lib, &pointcloud->mat[a]);
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}
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}
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static void pointcloud_blend_read_expand(BlendExpander *expander, ID *id)
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{
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PointCloud *pointcloud = (PointCloud *)id;
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for (int a = 0; a < pointcloud->totcol; a++) {
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BLO_expand(expander, pointcloud->mat[a]);
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}
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}
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IDTypeInfo IDType_ID_PT = {
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/* id_code */ ID_PT,
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/* id_filter */ FILTER_ID_PT,
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/* main_listbase_index */ INDEX_ID_PT,
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/* struct_size */ sizeof(PointCloud),
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/* name */ "PointCloud",
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/* name_plural */ "pointclouds",
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/* translation_context */ BLT_I18NCONTEXT_ID_POINTCLOUD,
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/* flags */ 0,
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/* init_data */ pointcloud_init_data,
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/* copy_data */ pointcloud_copy_data,
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/* free_data */ pointcloud_free_data,
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/* make_local */ nullptr,
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/* foreach_id */ pointcloud_foreach_id,
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/* foreach_cache */ nullptr,
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/* blend_write */ pointcloud_blend_write,
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/* blend_read_data */ pointcloud_blend_read_data,
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/* blend_read_lib */ pointcloud_blend_read_lib,
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/* blend_read_expand */ pointcloud_blend_read_expand,
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/* blend_read_undo_preserve */ nullptr,
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};
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static void pointcloud_random(PointCloud *pointcloud)
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{
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pointcloud->totpoint = 400;
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CustomData_realloc(&pointcloud->pdata, pointcloud->totpoint);
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BKE_pointcloud_update_customdata_pointers(pointcloud);
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RNG *rng = BLI_rng_new(0);
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for (int i = 0; i < pointcloud->totpoint; i++) {
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pointcloud->co[i][0] = 2.0f * BLI_rng_get_float(rng) - 1.0f;
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pointcloud->co[i][1] = 2.0f * BLI_rng_get_float(rng) - 1.0f;
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pointcloud->co[i][2] = 2.0f * BLI_rng_get_float(rng) - 1.0f;
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pointcloud->radius[i] = 0.05f * BLI_rng_get_float(rng);
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}
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BLI_rng_free(rng);
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}
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void *BKE_pointcloud_add(Main *bmain, const char *name)
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{
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PointCloud *pointcloud = static_cast<PointCloud *>(BKE_id_new(bmain, ID_PT, name));
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return pointcloud;
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}
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void *BKE_pointcloud_add_default(Main *bmain, const char *name)
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{
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PointCloud *pointcloud = static_cast<PointCloud *>(BKE_libblock_alloc(bmain, ID_PT, name, 0));
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pointcloud_init_data(&pointcloud->id);
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CustomData_add_layer_named(&pointcloud->pdata,
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CD_PROP_FLOAT,
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CD_CALLOC,
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nullptr,
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pointcloud->totpoint,
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POINTCLOUD_ATTR_RADIUS);
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pointcloud_random(pointcloud);
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return pointcloud;
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}
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PointCloud *BKE_pointcloud_new_nomain(const int totpoint)
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{
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PointCloud *pointcloud = static_cast<PointCloud *>(BKE_libblock_alloc(
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nullptr, ID_PT, BKE_idtype_idcode_to_name(ID_PT), LIB_ID_CREATE_LOCALIZE));
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pointcloud_init_data(&pointcloud->id);
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pointcloud->totpoint = totpoint;
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CustomData_add_layer_named(&pointcloud->pdata,
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CD_PROP_FLOAT,
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CD_CALLOC,
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nullptr,
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pointcloud->totpoint,
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POINTCLOUD_ATTR_RADIUS);
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pointcloud->totpoint = totpoint;
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CustomData_realloc(&pointcloud->pdata, pointcloud->totpoint);
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BKE_pointcloud_update_customdata_pointers(pointcloud);
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return pointcloud;
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}
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void BKE_pointcloud_minmax(const struct PointCloud *pointcloud, float r_min[3], float r_max[3])
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{
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float(*pointcloud_co)[3] = pointcloud->co;
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float *pointcloud_radius = pointcloud->radius;
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for (int a = 0; a < pointcloud->totpoint; a++) {
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float *co = pointcloud_co[a];
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float radius = (pointcloud_radius) ? pointcloud_radius[a] : 0.0f;
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const float co_min[3] = {co[0] - radius, co[1] - radius, co[2] - radius};
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const float co_max[3] = {co[0] + radius, co[1] + radius, co[2] + radius};
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DO_MIN(co_min, r_min);
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DO_MAX(co_max, r_max);
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}
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}
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BoundBox *BKE_pointcloud_boundbox_get(Object *ob)
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{
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BLI_assert(ob->type == OB_POINTCLOUD);
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if (ob->runtime.bb != nullptr && (ob->runtime.bb->flag & BOUNDBOX_DIRTY) == 0) {
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return ob->runtime.bb;
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}
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if (ob->runtime.bb == nullptr) {
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ob->runtime.bb = static_cast<BoundBox *>(MEM_callocN(sizeof(BoundBox), "pointcloud boundbox"));
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}
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blender::float3 min, max;
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INIT_MINMAX(min, max);
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if (ob->runtime.geometry_set_eval != nullptr) {
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ob->runtime.geometry_set_eval->compute_boundbox_without_instances(&min, &max);
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}
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else {
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const PointCloud *pointcloud = static_cast<PointCloud *>(ob->data);
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BKE_pointcloud_minmax(pointcloud, min, max);
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}
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BKE_boundbox_init_from_minmax(ob->runtime.bb, min, max);
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return ob->runtime.bb;
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}
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void BKE_pointcloud_update_customdata_pointers(PointCloud *pointcloud)
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{
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pointcloud->co = static_cast<float(*)[3]>(
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CustomData_get_layer_named(&pointcloud->pdata, CD_PROP_FLOAT3, POINTCLOUD_ATTR_POSITION));
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pointcloud->radius = static_cast<float *>(
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CustomData_get_layer_named(&pointcloud->pdata, CD_PROP_FLOAT, POINTCLOUD_ATTR_RADIUS));
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}
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bool BKE_pointcloud_customdata_required(PointCloud *UNUSED(pointcloud), CustomDataLayer *layer)
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{
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return layer->type == CD_PROP_FLOAT3 && STREQ(layer->name, POINTCLOUD_ATTR_POSITION);
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}
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/* Dependency Graph */
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PointCloud *BKE_pointcloud_new_for_eval(const PointCloud *pointcloud_src, int totpoint)
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{
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PointCloud *pointcloud_dst = static_cast<PointCloud *>(BKE_id_new_nomain(ID_PT, nullptr));
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CustomData_free(&pointcloud_dst->pdata, pointcloud_dst->totpoint);
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STRNCPY(pointcloud_dst->id.name, pointcloud_src->id.name);
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pointcloud_dst->mat = static_cast<Material **>(MEM_dupallocN(pointcloud_src->mat));
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pointcloud_dst->totcol = pointcloud_src->totcol;
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pointcloud_dst->totpoint = totpoint;
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CustomData_copy(
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&pointcloud_src->pdata, &pointcloud_dst->pdata, CD_MASK_ALL, CD_CALLOC, totpoint);
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BKE_pointcloud_update_customdata_pointers(pointcloud_dst);
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return pointcloud_dst;
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}
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PointCloud *BKE_pointcloud_copy_for_eval(struct PointCloud *pointcloud_src, bool reference)
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{
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int flags = LIB_ID_COPY_LOCALIZE;
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if (reference) {
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flags |= LIB_ID_COPY_CD_REFERENCE;
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}
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PointCloud *result = (PointCloud *)BKE_id_copy_ex(nullptr, &pointcloud_src->id, nullptr, flags);
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return result;
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}
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static void pointcloud_evaluate_modifiers(struct Depsgraph *depsgraph,
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struct Scene *scene,
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Object *object,
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GeometrySet &geometry_set)
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{
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/* Modifier evaluation modes. */
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const bool use_render = (DEG_get_mode(depsgraph) == DAG_EVAL_RENDER);
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const int required_mode = use_render ? eModifierMode_Render : eModifierMode_Realtime;
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ModifierApplyFlag apply_flag = use_render ? MOD_APPLY_RENDER : MOD_APPLY_USECACHE;
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const ModifierEvalContext mectx = {depsgraph, object, apply_flag};
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/* Get effective list of modifiers to execute. Some effects like shape keys
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* are added as virtual modifiers before the user created modifiers. */
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VirtualModifierData virtualModifierData;
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ModifierData *md = BKE_modifiers_get_virtual_modifierlist(object, &virtualModifierData);
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/* Evaluate modifiers. */
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for (; md; md = md->next) {
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const ModifierTypeInfo *mti = BKE_modifier_get_info((ModifierType)md->type);
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if (!BKE_modifier_is_enabled(scene, md, required_mode)) {
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continue;
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}
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if (mti->modifyPointCloud) {
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mti->modifyPointCloud(md, &mectx, &geometry_set);
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}
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}
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}
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void BKE_pointcloud_data_update(struct Depsgraph *depsgraph, struct Scene *scene, Object *object)
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{
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/* Free any evaluated data and restore original data. */
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BKE_object_free_derived_caches(object);
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/* Evaluate modifiers. */
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PointCloud *pointcloud = static_cast<PointCloud *>(object->data);
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GeometrySet geometry_set = GeometrySet::create_with_pointcloud(pointcloud,
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GeometryOwnershipType::ReadOnly);
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pointcloud_evaluate_modifiers(depsgraph, scene, object, geometry_set);
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/* Assign evaluated object. */
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PointCloud *dummy_pointcloud = BKE_pointcloud_new_nomain(0);
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BKE_object_eval_assign_data(object, &dummy_pointcloud->id, true);
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object->runtime.geometry_set_eval = new GeometrySet(geometry_set);
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}
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/* Draw Cache */
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void (*BKE_pointcloud_batch_cache_dirty_tag_cb)(PointCloud *pointcloud, int mode) = nullptr;
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void (*BKE_pointcloud_batch_cache_free_cb)(PointCloud *pointcloud) = nullptr;
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void BKE_pointcloud_batch_cache_dirty_tag(PointCloud *pointcloud, int mode)
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{
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if (pointcloud->batch_cache) {
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BKE_pointcloud_batch_cache_dirty_tag_cb(pointcloud, mode);
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}
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}
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void BKE_pointcloud_batch_cache_free(PointCloud *pointcloud)
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{
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if (pointcloud->batch_cache) {
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BKE_pointcloud_batch_cache_free_cb(pointcloud);
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}
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}
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