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/*
* ***** BEGIN GPL LICENSE BLOCK *****
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*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
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*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* 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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*
* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
* All rights reserved.
*
* The Original Code is: all of this file.
*
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* Contributor(s): (mar-2001 nzc)
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*
* ***** END GPL LICENSE BLOCK *****
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*/
#ifndef __BKE_MESH_H__
#define __BKE_MESH_H__
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/** \file BKE_mesh.h
* \ingroup bke
*/
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/***/
struct ID;
struct BoundBox;
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struct DispList;
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struct EdgeHash;
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struct ListBase;
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struct BMEditMesh;
struct BMesh;
struct Main;
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struct Mesh;
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struct MPoly;
struct MLoop;
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struct MFace;
struct MEdge;
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struct MVert;
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struct MDeformVert;
- convert all DerivedMesh map functions to use index based mapping (instead of Edit{Vert,Edge,Face} pointers) - dropped convertToDispListMeshMapped (whew, glad of it too) - added DerivedMesh drawMappedFaces function - dropped EM suffix for DerivedMesh functions, it was neither particularly correct nor descriptive - converted test_index_mface to test_index_face that also corrects MCol and TFace. Good thing we had three versions of this routine, you never know when one might burn down. - removed flipnorm_mesh, not used anymore (and was incorrect to boot) - Getting face select to work with modifiers turned out to be much more complicated than expected. Reworked mapping architecture for modifiers - basically elements in a DispListMesh are now required to be stored in an order that corresponds exactly to original ordering. MVert/MEdge/MFace all have a new flag ME_XXX_STEPINDEX that is set on each element that is set on the first derived element of each original element. I can't say the code to follow these requirements for subsurf is particularly transparent, but on the upside it is a reasonably consistent and simple system that is memory efficient and allows keeping the DispListMesh structure. - rewrote mirror modifier to be simpler/conform to new requirements for mapped DispListMesh structure. This also means that mirror interacts much better with incremental subsurf calculation (it used to recalc one entire side on any topology change, now it generally avoids that). - added EM_{init,free}_index_arrays and EM_get_{vert,edge,face}_for_index functions to handle mapping indices back into appropriate EditMesh structures. - bug fix, make edges didn't recalc object data - bug fix, initial image assignment to TFace's didn't recalc object data - new feature, added circle select support for FACESELECT - bug fix, creating new faces in editmode duplicated the TFACE active flag - but there should only be one active tface - bug fix, possible crash when deleting all faces in faceselect mode on mesh with tfaces... Still todo: TFace edge drawing is still not always correct in face mode, in particular with a mirror modifier when mesh has edges (and no preceeding subsurf). Have not yet decided how to deal with this. Best solution is probably to do switch to meshes all having MEdge's, in which case I can get rid of TFace edge flags (and need to recalc modifiers on tface selection change).
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struct MCol;
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struct Object;
Added custom vertex/edge/face data for meshes: All data layers, including MVert/MEdge/MFace, are now managed as custom data layers. The pointers like Mesh.mvert, Mesh.dvert or Mesh.mcol are still used of course, but allocating, copying or freeing these arrays should be done through the CustomData API. Work in progress documentation on this is here: http://mediawiki.blender.org/index.php/BlenderDev/BlenderArchitecture/CustomData Replaced TFace by MTFace: This is the same struct, except that it does not contain color, that now always stays separated in MCol. This was not a good design decision to begin with, and it is needed for adding multiple color layers later. Note that this does mean older Blender versions will not be able to read UV coordinates from the next release, due to an SDNA limitation. Removed DispListMesh: This now fully replaced by DerivedMesh. To provide access to arrays of vertices, edges and faces, like DispListMesh does. The semantics of the DerivedMesh.getVertArray() and similar functions were changed to return a pointer to an array if one exists, or otherwise allocate a temporary one. On releasing the DerivedMesh, this temporary array will be removed automatically. Removed ssDM and meshDM DerivedMesh backends: The ssDM backend was for DispListMesh, so that became obsolete automatically. The meshDM backend was replaced by the custom data backend, that now figures out which layers need to be modified, and only duplicates those. This changes code in many places, and overall removes 2514 lines of code. So, there's a good chance this might break some stuff, although I've been testing it for a few days now. The good news is, adding multiple color and uv layers should now become easy.
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struct MTFace;
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struct VecNor;
Added custom vertex/edge/face data for meshes: All data layers, including MVert/MEdge/MFace, are now managed as custom data layers. The pointers like Mesh.mvert, Mesh.dvert or Mesh.mcol are still used of course, but allocating, copying or freeing these arrays should be done through the CustomData API. Work in progress documentation on this is here: http://mediawiki.blender.org/index.php/BlenderDev/BlenderArchitecture/CustomData Replaced TFace by MTFace: This is the same struct, except that it does not contain color, that now always stays separated in MCol. This was not a good design decision to begin with, and it is needed for adding multiple color layers later. Note that this does mean older Blender versions will not be able to read UV coordinates from the next release, due to an SDNA limitation. Removed DispListMesh: This now fully replaced by DerivedMesh. To provide access to arrays of vertices, edges and faces, like DispListMesh does. The semantics of the DerivedMesh.getVertArray() and similar functions were changed to return a pointer to an array if one exists, or otherwise allocate a temporary one. On releasing the DerivedMesh, this temporary array will be removed automatically. Removed ssDM and meshDM DerivedMesh backends: The ssDM backend was for DispListMesh, so that became obsolete automatically. The meshDM backend was replaced by the custom data backend, that now figures out which layers need to be modified, and only duplicates those. This changes code in many places, and overall removes 2514 lines of code. So, there's a good chance this might break some stuff, although I've been testing it for a few days now. The good news is, adding multiple color and uv layers should now become easy.
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struct CustomData;
struct DerivedMesh;
struct Scene;
struct MLoopUV;
struct UvVertMap;
struct UvMapVert;
struct UvElementMap;
struct UvElement;
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#ifdef __cplusplus
extern "C" {
#endif
struct BMesh *BKE_mesh_to_bmesh(struct Mesh *me, struct Object *ob);
/*
* this function recreates a tessellation.
* returns number of tessellation faces.
*
* use_poly_origindex sets whether or not the tessellation faces' origindex
* layer should point to original poly indices or real poly indices.
*
* use_face_origindex sets the tessellation faces' origindex layer
* to point to the tessellation faces themselves, not the polys.
*
* if both of the above are 0, it'll use the indices of the mpolys of the MPoly
* data in pdata, and ignore the origindex layer altogether.
*/
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int BKE_mesh_recalc_tessellation(struct CustomData *fdata, struct CustomData *ldata, struct CustomData *pdata,
struct MVert *mvert,
int totface, int totloop, int totpoly,
const bool do_face_normals);
/* for forwards compat only quad->tri polys to mface, skip ngons.
*/
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int BKE_mesh_mpoly_to_mface(struct CustomData *fdata, struct CustomData *ldata,
struct CustomData *pdata, int totface, int totloop, int totpoly);
/*calculates a face normal.*/
void BKE_mesh_calc_poly_normal(struct MPoly *mpoly, struct MLoop *loopstart,
struct MVert *mvarray, float no[3]);
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void BKE_mesh_calc_poly_normal_coords(struct MPoly *mpoly, struct MLoop *loopstart,
const float (*vertex_coords)[3], float no[3]);
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void BKE_mesh_calc_poly_center(struct MPoly *mpoly, struct MLoop *loopstart,
struct MVert *mvarray, float cent[3]);
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float BKE_mesh_calc_poly_area(struct MPoly *mpoly, struct MLoop *loopstart,
struct MVert *mvarray, const float polynormal[3]);
void BKE_mesh_calc_poly_angles(struct MPoly *mpoly, struct MLoop *loopstart,
struct MVert *mvarray, float angles[]);
void BKE_mesh_calc_relative_deform(
const struct MPoly *mpoly, const int totpoly,
const struct MLoop *mloop, const int totvert,
const float (*vert_cos_src)[3],
const float (*vert_cos_dst)[3],
const float (*vert_cos_org)[3],
float (*vert_cos_new)[3]);
/* Find the index of the loop in 'poly' which references vertex,
* returns -1 if not found */
int poly_find_loop_from_vert(const struct MPoly *poly,
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const struct MLoop *loopstart,
unsigned vert);
/* Fill 'adj_r' with the loop indices in 'poly' adjacent to the
* vertex. Returns the index of the loop matching vertex, or -1 if the
* vertex is not in 'poly' */
int poly_get_adj_loops_from_vert(unsigned adj_r[3], const struct MPoly *poly,
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const struct MLoop *mloop, unsigned vert);
/* Return the index of the edge vert that is not equal to 'v'. If
* neither edge vertex is equal to 'v', returns -1. */
int BKE_mesh_edge_other_vert(const struct MEdge *e, int v);
/* update the hide flag for edges and polys from the corresponding
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* flag in verts */
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void BKE_mesh_flush_hidden_from_verts(const struct MVert *mvert,
const struct MLoop *mloop,
struct MEdge *medge, int totedge,
struct MPoly *mpoly, int totpoly);
void BKE_mesh_flush_select_from_polys_ex(struct MVert *mvert, const int totvert,
struct MLoop *mloop,
struct MEdge *medge, const int totedge,
const struct MPoly *mpoly, const int totpoly);
void BKE_mesh_flush_select_from_polys(struct Mesh *me);
void BKE_mesh_flush_select_from_verts_ex(const struct MVert *mvert, const int totvert,
struct MLoop *mloop,
struct MEdge *medge, const int totedge,
struct MPoly *mpoly, const int totpoly);
void BKE_mesh_flush_select_from_verts(struct Mesh *me);
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void BKE_mesh_unlink(struct Mesh *me);
void BKE_mesh_free(struct Mesh *me, int unlink);
struct Mesh *BKE_mesh_add(struct Main *bmain, const char *name);
struct Mesh *BKE_mesh_copy_ex(struct Main *bmain, struct Mesh *me);
struct Mesh *BKE_mesh_copy(struct Mesh *me);
void BKE_mesh_update_customdata_pointers(struct Mesh *me, const bool do_ensure_tess_cd);
void BKE_mesh_make_local(struct Mesh *me);
void BKE_mesh_boundbox_calc(struct Mesh *me, float r_loc[3], float r_size[3]);
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void BKE_mesh_texspace_calc(struct Mesh *me);
float (*BKE_mesh_orco_verts_get(struct Object *ob))[3];
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void BKE_mesh_orco_verts_transform(struct Mesh *me, float (*orco)[3], int totvert, int invert);
int test_index_face(struct MFace *mface, struct CustomData *mfdata, int mfindex, int nr);
struct Mesh *BKE_mesh_from_object(struct Object *ob);
void BKE_mesh_assign_object(struct Object *ob, struct Mesh *me);
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void BKE_mesh_from_metaball(struct ListBase *lb, struct Mesh *me);
int BKE_mesh_nurbs_to_mdata(struct Object *ob, struct MVert **allvert, int *totvert,
struct MEdge **alledge, int *totedge, struct MLoop **allloop, struct MPoly **allpoly,
int *totloop, int *totpoly);
int BKE_mesh_nurbs_displist_to_mdata(struct Object *ob, struct ListBase *dispbase, struct MVert **allvert, int *_totvert,
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struct MEdge **alledge, int *_totedge, struct MLoop **allloop, struct MPoly **allpoly,
struct MLoopUV **alluv, int *_totloop, int *_totpoly);
void BKE_mesh_from_nurbs_displist(struct Object *ob, struct ListBase *dispbase, const bool use_orco_uv);
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void BKE_mesh_from_nurbs(struct Object *ob);
void BKE_mesh_to_curve_nurblist(struct DerivedMesh *dm, struct ListBase *nurblist, const int edge_users_test);
void BKE_mesh_to_curve(struct Scene *scene, struct Object *ob);
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void BKE_mesh_delete_material_index(struct Mesh *me, short index);
void BKE_mesh_smooth_flag_set(struct Object *meshOb, int enableSmooth);
void BKE_mesh_convert_mfaces_to_mpolys(struct Mesh *mesh);
void BKE_mesh_do_versions_convert_mfaces_to_mpolys(struct Mesh *mesh);
void BKE_mesh_convert_mfaces_to_mpolys_ex(struct ID *id,
struct CustomData *fdata, struct CustomData *ldata, struct CustomData *pdata,
int totedge_i, int totface_i, int totloop_i, int totpoly_i,
struct MEdge *medge, struct MFace *mface,
int *totloop_r, int *totpoly_r,
struct MLoop **mloop_r, struct MPoly **mpoly_r);
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void BKE_mesh_calc_normals_tessface(struct MVert *mverts, int numVerts, struct MFace *mfaces, int numFaces, float (*faceNors_r)[3]);
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/* used for unit testing; compares two meshes, checking only
* differences we care about. should be usable with leaf's
* testing framework I get RNA work done, will use hackish
* testing code for now.*/
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const char *BKE_mesh_cmp(struct Mesh *me1, struct Mesh *me2, float thresh);
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struct BoundBox *BKE_mesh_boundbox_get(struct Object *ob);
void BKE_mesh_texspace_get(struct Mesh *me, float r_loc[3], float r_rot[3], float r_size[3]);
/* if old, it converts mface->edcode to edge drawflags */
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void BKE_mesh_make_edges(struct Mesh *me, int old);
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void BKE_mesh_strip_loose_faces(struct Mesh *me); /* Needed for compatibility (some old read code). */
void BKE_mesh_strip_loose_polysloops(struct Mesh *me);
void BKE_mesh_strip_loose_edges(struct Mesh *me);
/* Calculate vertex and face normals, face normals are returned in *faceNors_r if non-NULL
* and vertex normals are stored in actual mverts.
*/
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void BKE_mesh_calc_normals_mapping(
struct MVert *mverts, int numVerts,
struct MLoop *mloop, struct MPoly *mpolys, int numLoops, int numPolys, float (*polyNors_r)[3],
struct MFace *mfaces, int numFaces, int *origIndexFace, float (*faceNors_r)[3]);
/* extended version of 'BKE_mesh_calc_normals_poly' with option not to calc vertex normals */
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void BKE_mesh_calc_normals_mapping_ex(
struct MVert *mverts, int numVerts,
struct MLoop *mloop, struct MPoly *mpolys, int numLoops, int numPolys, float (*polyNors_r)[3],
struct MFace *mfaces, int numFaces, int *origIndexFace, float (*faceNors_r)[3],
const bool only_face_normals);
void BKE_mesh_calc_normals_poly(
struct MVert *mverts, int numVerts,
struct MLoop *mloop, struct MPoly *mpolys,
int numLoops, int numPolys, float (*polyNors_r)[3],
const bool only_face_normals);
void BKE_mesh_calc_normals(struct Mesh *me);
/* Return a newly MEM_malloc'd array of all the mesh vertex locations
* (_numVerts_r_ may be NULL) */
float (*BKE_mesh_vertexCos_get(struct Mesh *me, int *r_numVerts))[3];
/* map from uv vertex to face (for select linked, stitch, uv suburf) */
/* UvVertMap */
#define STD_UV_CONNECT_LIMIT 0.0001f
typedef struct UvVertMap {
struct UvMapVert **vert;
struct UvMapVert *buf;
} UvVertMap;
typedef struct UvMapVert {
struct UvMapVert *next;
unsigned int f;
unsigned char tfindex, separate, flag;
} UvMapVert;
/* UvElement stores per uv information so that we can quickly access information for a uv.
* it is actually an improved UvMapVert, including an island and a direct pointer to the face
* to avoid initializing face arrays */
typedef struct UvElement {
/* Next UvElement corresponding to same vertex */
struct UvElement *next;
/* Face the element belongs to */
struct BMLoop *l;
/* index in loop. */
unsigned short tfindex;
/* Whether this element is the first of coincident elements */
unsigned char separate;
/* general use flag */
unsigned char flag;
/* If generating element map with island sorting, this stores the island index */
unsigned short island;
} UvElement;
/* UvElementMap is a container for UvElements of a mesh. It stores some UvElements belonging to the
* same uv island in sequence and the number of uvs per island so it is possible to access all uvs
* belonging to an island directly by iterating through the buffer.
*/
typedef struct UvElementMap {
/* address UvElements by their vertex */
struct UvElement **vert;
/* UvElement Store */
struct UvElement *buf;
/* Total number of UVs in the layer. Useful to know */
int totalUVs;
/* Number of Islands in the mesh */
int totalIslands;
/* Stores the starting index in buf where each island begins */
int *islandIndices;
} UvElementMap;
/* invalid island index is max short. If any one has the patience
* to make that many islands, he can bite me :p */
#define INVALID_ISLAND 0xFFFF
UvVertMap *BKE_mesh_uv_vert_map_create(struct MPoly *mpoly, struct MLoop *mloop, struct MLoopUV *mloopuv,
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unsigned int totpoly, unsigned int totvert, int selected, float *limit);
UvMapVert *BKE_mesh_uv_vert_map_get_vert(UvVertMap *vmap, unsigned int v);
void BKE_mesh_uv_vert_map_free(UvVertMap *vmap);
/* Connectivity data */
typedef struct MeshElemMap {
int *indices;
int count;
} MeshElemMap;
typedef struct IndexNode {
struct IndexNode *next, *prev;
int index;
} IndexNode;
void BKE_mesh_vert_poly_map_create(MeshElemMap **map, int **mem,
const struct MPoly *mface, const struct MLoop *mloop,
int totvert, int totface, int totloop);
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void BKE_mesh_vert_edge_map_create(MeshElemMap **map, int **mem,
const struct MEdge *medge, int totvert, int totedge);
/* vertex level transformations & checks (no derived mesh) */
int BKE_mesh_minmax(struct Mesh *me, float r_min[3], float r_max[3]);
int BKE_mesh_center_median(struct Mesh *me, float cent[3]);
int BKE_mesh_center_bounds(struct Mesh *me, float cent[3]);
int BKE_mesh_center_centroid(struct Mesh *me, float cent[3]);
void BKE_mesh_translate(struct Mesh *me, const float offset[3], const bool do_keys);
/* mesh_validate.c */
/* XXX Loop v/e are unsigned, so using max uint_32 value as invalid marker... */
#define INVALID_LOOP_EDGE_MARKER 4294967295u
int BKE_mesh_validate_arrays(
struct Mesh *me,
struct MVert *mverts, unsigned int totvert,
struct MEdge *medges, unsigned int totedge,
struct MFace *mfaces, unsigned int totface,
struct MLoop *mloops, unsigned int totloop,
struct MPoly *mpolys, unsigned int totpoly,
struct MDeformVert *dverts, /* assume totvert length */
const bool do_verbose, const bool do_fixes);
int BKE_mesh_validate(struct Mesh *me, const int do_verbose);
int BKE_mesh_validate_dm(struct DerivedMesh *dm);
void BKE_mesh_calc_edges(struct Mesh *mesh, bool update, const bool select);
void BKE_mesh_ensure_navmesh(struct Mesh *me);
void BKE_mesh_tessface_calc(struct Mesh *mesh);
void BKE_mesh_tessface_ensure(struct Mesh *mesh);
void BKE_mesh_tessface_clear(struct Mesh *mesh);
/* Convert a triangle or quadrangle of loop/poly data to tessface data */
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void BKE_mesh_loops_to_mface_corners(struct CustomData *fdata, struct CustomData *ldata,
struct CustomData *pdata, int lindex[4], int findex,
const int polyindex, const int mf_len,
const int numTex, const int numCol, const int hasPCol, const int hasOrigSpace);
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void BKE_mesh_poly_edgehash_insert(struct EdgeHash *ehash, const struct MPoly *mp, const struct MLoop *mloop);
void BKE_mesh_do_versions_cd_flag_init(struct Mesh *mesh);
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#ifdef __cplusplus
}
#endif
#endif /* __BKE_MESH_H__ */