Apply clang format as proposed in T53211. For details on usage and instructions for migrating branches without conflicts, see: https://wiki.blender.org/wiki/Tools/ClangFormat
		
			
				
	
	
		
			349 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			349 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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 * The Original Code is Copyright (C) 2009 Blender Foundation.
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 * All rights reserved.
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 */
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/** \file
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 * \ingroup RNA
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 */
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#include <stdlib.h>
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#include <stdio.h>
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#include "RNA_define.h"
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#include "DNA_customdata_types.h"
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#include "BLI_sys_types.h"
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#include "BLI_utildefines.h"
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#include "rna_internal.h" /* own include */
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#ifdef RNA_RUNTIME
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#  include "DNA_mesh_types.h"
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#  include "BKE_mesh.h"
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#  include "BKE_mesh_tangent.h"
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#  include "BKE_mesh_mapping.h"
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#  include "BKE_mesh_runtime.h"
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#  include "ED_mesh.h"
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static const char *rna_Mesh_unit_test_compare(struct Mesh *mesh, struct Mesh *mesh2)
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{
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  const char *ret = BKE_mesh_cmp(mesh, mesh2, FLT_EPSILON * 60);
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  if (!ret)
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    ret = "Same";
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  return ret;
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}
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static void rna_Mesh_create_normals_split(Mesh *mesh)
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{
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  if (!CustomData_has_layer(&mesh->ldata, CD_NORMAL)) {
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    CustomData_add_layer(&mesh->ldata, CD_NORMAL, CD_CALLOC, NULL, mesh->totloop);
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    CustomData_set_layer_flag(&mesh->ldata, CD_NORMAL, CD_FLAG_TEMPORARY);
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  }
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}
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static void rna_Mesh_free_normals_split(Mesh *mesh)
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{
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  CustomData_free_layers(&mesh->ldata, CD_NORMAL, mesh->totloop);
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}
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static void rna_Mesh_calc_tangents(Mesh *mesh, ReportList *reports, const char *uvmap)
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{
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  float(*r_looptangents)[4];
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  if (CustomData_has_layer(&mesh->ldata, CD_MLOOPTANGENT)) {
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    r_looptangents = CustomData_get_layer(&mesh->ldata, CD_MLOOPTANGENT);
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    memset(r_looptangents, 0, sizeof(float[4]) * mesh->totloop);
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  }
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  else {
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    r_looptangents = CustomData_add_layer(
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        &mesh->ldata, CD_MLOOPTANGENT, CD_CALLOC, NULL, mesh->totloop);
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    CustomData_set_layer_flag(&mesh->ldata, CD_MLOOPTANGENT, CD_FLAG_TEMPORARY);
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  }
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  /* Compute loop normals if needed. */
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  if (!CustomData_has_layer(&mesh->ldata, CD_NORMAL)) {
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    BKE_mesh_calc_normals_split(mesh);
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  }
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  BKE_mesh_calc_loop_tangent_single(mesh, uvmap, r_looptangents, reports);
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}
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static void rna_Mesh_free_tangents(Mesh *mesh)
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{
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  CustomData_free_layers(&mesh->ldata, CD_MLOOPTANGENT, mesh->totloop);
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}
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static void rna_Mesh_calc_looptri(Mesh *mesh)
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{
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  BKE_mesh_runtime_looptri_ensure(mesh);
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}
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static void rna_Mesh_calc_smooth_groups(
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    Mesh *mesh, bool use_bitflags, int *r_poly_group_len, int **r_poly_group, int *r_group_total)
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{
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  *r_poly_group_len = mesh->totpoly;
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  *r_poly_group = BKE_mesh_calc_smoothgroups(mesh->medge,
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                                             mesh->totedge,
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                                             mesh->mpoly,
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                                             mesh->totpoly,
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                                             mesh->mloop,
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                                             mesh->totloop,
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                                             r_group_total,
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                                             use_bitflags);
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}
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static void rna_Mesh_normals_split_custom_do(Mesh *mesh,
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                                             float (*custom_loopnors)[3],
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                                             const bool use_vertices)
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{
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  if (use_vertices) {
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    BKE_mesh_set_custom_normals_from_vertices(mesh, custom_loopnors);
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  }
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  else {
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    BKE_mesh_set_custom_normals(mesh, custom_loopnors);
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  }
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}
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static void rna_Mesh_normals_split_custom_set(Mesh *mesh,
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                                              ReportList *reports,
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                                              int normals_len,
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                                              float *normals)
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{
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  float(*loopnors)[3] = (float(*)[3])normals;
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  const int numloops = mesh->totloop;
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  if (normals_len != numloops * 3) {
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    BKE_reportf(reports,
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                RPT_ERROR,
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                "Number of custom normals is not number of loops (%f / %d)",
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                (float)normals_len / 3.0f,
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                numloops);
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    return;
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  }
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  rna_Mesh_normals_split_custom_do(mesh, loopnors, false);
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  DEG_id_tag_update(&mesh->id, 0);
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}
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static void rna_Mesh_normals_split_custom_set_from_vertices(Mesh *mesh,
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                                                            ReportList *reports,
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                                                            int normals_len,
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                                                            float *normals)
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{
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  float(*vertnors)[3] = (float(*)[3])normals;
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  const int numverts = mesh->totvert;
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  if (normals_len != numverts * 3) {
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    BKE_reportf(reports,
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                RPT_ERROR,
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                "Number of custom normals is not number of vertices (%f / %d)",
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                (float)normals_len / 3.0f,
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                numverts);
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    return;
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  }
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  rna_Mesh_normals_split_custom_do(mesh, vertnors, true);
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  DEG_id_tag_update(&mesh->id, 0);
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}
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static void rna_Mesh_transform(Mesh *mesh, float *mat, bool shape_keys)
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{
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  BKE_mesh_transform(mesh, (float(*)[4])mat, shape_keys);
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  DEG_id_tag_update(&mesh->id, 0);
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}
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static void rna_Mesh_flip_normals(Mesh *mesh)
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{
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  BKE_mesh_polygons_flip(mesh->mpoly, mesh->mloop, &mesh->ldata, mesh->totpoly);
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  BKE_mesh_tessface_clear(mesh);
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  BKE_mesh_calc_normals(mesh);
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  BKE_mesh_runtime_clear_geometry(mesh);
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  DEG_id_tag_update(&mesh->id, 0);
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}
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static void rna_Mesh_split_faces(Mesh *mesh, bool free_loop_normals)
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{
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  BKE_mesh_split_faces(mesh, free_loop_normals != 0);
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}
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static void rna_Mesh_update_gpu_tag(Mesh *mesh)
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{
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  BKE_mesh_batch_cache_dirty_tag(mesh, BKE_MESH_BATCH_DIRTY_ALL);
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}
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static void rna_Mesh_count_selected_items(Mesh *mesh, int r_count[3])
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{
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  BKE_mesh_count_selected_items(mesh, r_count);
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}
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#else
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void RNA_api_mesh(StructRNA *srna)
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{
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  FunctionRNA *func;
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  PropertyRNA *parm;
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  const int normals_array_dim[] = {1, 3};
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  func = RNA_def_function(srna, "transform", "rna_Mesh_transform");
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  RNA_def_function_ui_description(func,
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                                  "Transform mesh vertices by a matrix "
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                                  "(Warning: inverts normals if matrix is negative)");
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  parm = RNA_def_float_matrix(func, "matrix", 4, 4, NULL, 0.0f, 0.0f, "", "Matrix", 0.0f, 0.0f);
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  RNA_def_parameter_flags(parm, 0, PARM_REQUIRED);
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  RNA_def_boolean(func, "shape_keys", 0, "", "Transform Shape Keys");
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  func = RNA_def_function(srna, "flip_normals", "rna_Mesh_flip_normals");
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  RNA_def_function_ui_description(func,
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                                  "Invert winding of all polygons "
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                                  "(clears tessellation, does not handle custom normals)");
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  func = RNA_def_function(srna, "calc_normals", "BKE_mesh_calc_normals");
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  RNA_def_function_ui_description(func, "Calculate vertex normals");
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  func = RNA_def_function(srna, "create_normals_split", "rna_Mesh_create_normals_split");
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  RNA_def_function_ui_description(func, "Empty split vertex normals");
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  func = RNA_def_function(srna, "calc_normals_split", "BKE_mesh_calc_normals_split");
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  RNA_def_function_ui_description(func,
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                                  "Calculate split vertex normals, which preserve sharp edges");
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  func = RNA_def_function(srna, "free_normals_split", "rna_Mesh_free_normals_split");
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  RNA_def_function_ui_description(func, "Free split vertex normals");
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  func = RNA_def_function(srna, "split_faces", "rna_Mesh_split_faces");
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  RNA_def_function_ui_description(func, "Split faces based on the edge angle");
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  RNA_def_boolean(
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      func, "free_loop_normals", 1, "Free Loop Notmals", "Free loop normals custom data layer");
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  func = RNA_def_function(srna, "calc_tangents", "rna_Mesh_calc_tangents");
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  RNA_def_function_flag(func, FUNC_USE_REPORTS);
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  RNA_def_function_ui_description(
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      func,
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      "Compute tangents and bitangent signs, to be used together with the split normals "
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      "to get a complete tangent space for normal mapping "
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      "(split normals are also computed if not yet present)");
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  parm = RNA_def_string(func,
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                        "uvmap",
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                        NULL,
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                        MAX_CUSTOMDATA_LAYER_NAME,
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                        "",
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                        "Name of the UV map to use for tangent space computation");
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  func = RNA_def_function(srna, "free_tangents", "rna_Mesh_free_tangents");
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  RNA_def_function_ui_description(func, "Free tangents");
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  func = RNA_def_function(srna, "calc_loop_triangles", "rna_Mesh_calc_looptri");
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  RNA_def_function_ui_description(func,
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                                  "Calculate loop triangle tessellation (supports editmode too)");
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  func = RNA_def_function(srna, "calc_smooth_groups", "rna_Mesh_calc_smooth_groups");
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  RNA_def_function_ui_description(func, "Calculate smooth groups from sharp edges");
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  RNA_def_boolean(
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      func, "use_bitflags", false, "", "Produce bitflags groups instead of simple numeric values");
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  /* return values */
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  parm = RNA_def_int_array(func, "poly_groups", 1, NULL, 0, 0, "", "Smooth Groups", 0, 0);
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  RNA_def_parameter_flags(parm, PROP_DYNAMIC, PARM_OUTPUT);
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  parm = RNA_def_int(
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      func, "groups", 0, 0, INT_MAX, "groups", "Total number of groups", 0, INT_MAX);
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  RNA_def_parameter_flags(parm, 0, PARM_OUTPUT);
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  func = RNA_def_function(srna, "normals_split_custom_set", "rna_Mesh_normals_split_custom_set");
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  RNA_def_function_ui_description(func,
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                                  "Define custom split normals of this mesh "
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                                  "(use zero-vectors to keep auto ones)");
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  RNA_def_function_flag(func, FUNC_USE_REPORTS);
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  /* TODO, see how array size of 0 works, this shouldnt be used */
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  parm = RNA_def_float_array(func, "normals", 1, NULL, -1.0f, 1.0f, "", "Normals", 0.0f, 0.0f);
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  RNA_def_property_multi_array(parm, 2, normals_array_dim);
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  RNA_def_parameter_flags(parm, PROP_DYNAMIC, PARM_REQUIRED);
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  func = RNA_def_function(srna,
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                          "normals_split_custom_set_from_vertices",
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                          "rna_Mesh_normals_split_custom_set_from_vertices");
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  RNA_def_function_ui_description(
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      func,
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      "Define custom split normals of this mesh, from vertices' normals "
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      "(use zero-vectors to keep auto ones)");
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  RNA_def_function_flag(func, FUNC_USE_REPORTS);
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  /* TODO, see how array size of 0 works, this shouldnt be used */
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  parm = RNA_def_float_array(func, "normals", 1, NULL, -1.0f, 1.0f, "", "Normals", 0.0f, 0.0f);
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  RNA_def_property_multi_array(parm, 2, normals_array_dim);
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  RNA_def_parameter_flags(parm, PROP_DYNAMIC, PARM_REQUIRED);
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  func = RNA_def_function(srna, "update", "ED_mesh_update");
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  RNA_def_boolean(func, "calc_edges", 0, "Calculate Edges", "Force recalculation of edges");
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  RNA_def_boolean(func,
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                  "calc_edges_loose",
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                  0,
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                  "Calculate Loose Edges",
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                  "Calculate the loose state of each edge");
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  RNA_def_boolean(func,
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                  "calc_loop_triangles",
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                  0,
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                  "Calculate Triangules",
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                  "Force recalculation of triangle tessellation");
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  RNA_def_function_flag(func, FUNC_USE_CONTEXT);
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  RNA_def_function(srna, "update_gpu_tag", "rna_Mesh_update_gpu_tag");
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  func = RNA_def_function(srna, "unit_test_compare", "rna_Mesh_unit_test_compare");
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  RNA_def_pointer(func, "mesh", "Mesh", "", "Mesh to compare to");
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  /* return value */
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  parm = RNA_def_string(
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      func, "result", "nothing", 64, "Return value", "String description of result of comparison");
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  RNA_def_function_return(func, parm);
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  func = RNA_def_function(srna, "validate", "BKE_mesh_validate");
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  RNA_def_function_ui_description(func,
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                                  "Validate geometry, return True when the mesh has had "
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                                  "invalid geometry corrected/removed");
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  RNA_def_boolean(func, "verbose", false, "Verbose", "Output information about the errors found");
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  RNA_def_boolean(func,
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                  "clean_customdata",
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                  true,
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                  "Clean Custom Data",
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                  "Remove temp/cached custom-data layers, like e.g. normals...");
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  parm = RNA_def_boolean(func, "result", 0, "Result", "");
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  RNA_def_function_return(func, parm);
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  func = RNA_def_function(srna, "validate_material_indices", "BKE_mesh_validate_material_indices");
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  RNA_def_function_ui_description(
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      func,
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      "Validate material indices of polygons, return True when the mesh has had "
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      "invalid indices corrected (to default 0)");
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  parm = RNA_def_boolean(func, "result", 0, "Result", "");
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  RNA_def_function_return(func, parm);
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  func = RNA_def_function(srna, "count_selected_items", "rna_Mesh_count_selected_items ");
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  RNA_def_function_ui_description(func, "Return the number of selected items (vert, edge, face)");
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  parm = RNA_def_int_vector(func, "result", 3, NULL, 0, INT_MAX, "Result", NULL, 0, INT_MAX);
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  RNA_def_function_output(func, parm);
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}
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#endif
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