168 lines
5.3 KiB
C
168 lines
5.3 KiB
C
/*
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* $Id$
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*
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* ***** BEGIN GPL/BL DUAL LICENSE BLOCK *****
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*
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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. The Blender
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* Foundation also sells licenses for use in proprietary software under
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* the Blender License. See http://www.blender.org/BL/ for information
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* about this.
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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., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*
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* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
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* All rights reserved.
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*
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* This is a new part of Blender.
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*
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* Contributor(s): Joseph Gilbert, Campbell Barton
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*
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* ***** END GPL/BL DUAL LICENSE BLOCK *****
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*/
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#include "Geometry.h"
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/* - Not needed for now though other geometry functions will probably need them
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#include "BLI_arithb.h"
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#include "BKE_utildefines.h"
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*/
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/* Used for PolyFill */
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#include "BKE_displist.h"
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#include "MEM_guardedalloc.h"
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#include "BLI_blenlib.h"
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/* needed for EXPP_ReturnPyObjError and EXPP_check_sequence_consistency */
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#include "gen_utils.h"
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/*-------------------------DOC STRINGS ---------------------------*/
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static char M_Geometry_doc[] = "The Blender Geometry module\n\n";
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static char M_Geometry_PolyFill_doc[] = "(veclist_list) - takes a list of polylines (each point a vector) and returns the point indicies for a polyline filled with triangles";
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/*-----------------------METHOD DEFINITIONS ----------------------*/
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struct PyMethodDef M_Geometry_methods[] = {
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{"PolyFill", ( PyCFunction ) M_Geometry_PolyFill, METH_VARARGS, M_Geometry_PolyFill_doc},
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{NULL, NULL, 0, NULL}
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};
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/*----------------------------MODULE INIT-------------------------*/
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PyObject *Geometry_Init(void)
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{
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PyObject *submodule;
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submodule = Py_InitModule3("Blender.Geometry",
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M_Geometry_methods, M_Geometry_doc);
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return (submodule);
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}
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/*----------------------------------Geometry.PolyFill() -------------------*/
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/* PolyFill function, uses Blenders scanfill to fill multiple poly lines */
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PyObject *M_Geometry_PolyFill( PyObject * self, PyObject * args )
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{
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PyObject *tri_list; /*return this list of tri's */
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PyObject *polyLineSeq, *polyLine, *polyVec;
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int i, len_polylines, len_polypoints;
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/* display listbase */
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ListBase dispbase={NULL, NULL};
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DispList *dl;
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float *fp; /*pointer to the array of malloced dl->verts to set the points from the vectors */
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int index, *dl_face, totpoints=0;
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dispbase.first= dispbase.last= NULL;
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if(!PyArg_ParseTuple ( args, "O", &polyLineSeq) || !PySequence_Check(polyLineSeq)) {
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return EXPP_ReturnPyObjError( PyExc_TypeError,
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"expected a sequence of poly lines" );
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}
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len_polylines = PySequence_Size( polyLineSeq );
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for( i = 0; i < len_polylines; ++i ) {
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polyLine= PySequence_GetItem( polyLineSeq, i );
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if (!PySequence_Check(polyLineSeq)) {
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freedisplist(&dispbase);
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Py_DECREF(polyLine);
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return EXPP_ReturnPyObjError( PyExc_TypeError,
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"expected a sequence of poly lines" );
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}
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len_polypoints= PySequence_Size( polyLine );
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if (len_polypoints>0) { /* dont bother adding edges as polylines */
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if (EXPP_check_sequence_consistency( polyLine, &vector_Type ) != 1) {
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freedisplist(&dispbase);
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Py_DECREF(polyLine);
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return EXPP_ReturnPyObjError( PyExc_TypeError,
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"expected a sequence of poly lines" );
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}
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dl= MEM_callocN(sizeof(DispList), "poly disp");
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BLI_addtail(&dispbase, dl);
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dl->type= DL_INDEX3;
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dl->nr= len_polypoints;
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dl->type= DL_POLY;
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dl->parts= 1; /* no faces, 1 edge loop */
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dl->col= 0; /* no material */
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dl->verts= fp= MEM_callocN( sizeof(float)*3*len_polypoints, "dl verts");
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dl->index= MEM_callocN(sizeof(int)*3*len_polypoints, "dl index");
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for( index = 0; index<len_polypoints; ++index, fp+=3) {
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polyVec= PySequence_GetItem( polyLine, index );
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fp[0] = ((VectorObject *)polyVec)->vec[0];
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fp[1] = ((VectorObject *)polyVec)->vec[1];
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if( ((VectorObject *)polyVec)->size > 2 )
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fp[2] = ((VectorObject *)polyVec)->vec[2];
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else
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fp[2]= 0.0f; /* if its a 2d vector then set the z to be zero */
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totpoints++;
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Py_DECREF(polyVec);
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}
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}
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Py_DECREF(polyLine);
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}
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if (totpoints) {
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/* now make the list to return */
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filldisplist(&dispbase, &dispbase);
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/* The faces are stored in a new DisplayList
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thats added to the head of the listbase */
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dl= dispbase.first;
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tri_list= PyList_New(dl->parts);
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if( !tri_list ) {
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freedisplist(&dispbase);
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return EXPP_ReturnPyObjError( PyExc_RuntimeError,
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"PyList_New() failed" );
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}
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index= 0;
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dl_face= dl->index;
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while(index < dl->parts) {
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PyList_SetItem(tri_list, index, Py_BuildValue("iii", dl_face[0], dl_face[1], dl_face[2]) );
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dl_face+= 3;
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index++;
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}
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freedisplist(&dispbase);
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} else {
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/* no points, do this so scripts dont barf */
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tri_list= PyList_New(0);
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}
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return tri_list;
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}
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