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[tools/medcoupling.git] / src / INTERP_KERNEL / Barycentric3DIntersectorP1P1.txx
1 // Copyright (C) 2007-2024  CEA, EDF
2 //
3 // This library is free software; you can redistribute it and/or
4 // modify it under the terms of the GNU Lesser General Public
5 // License as published by the Free Software Foundation; either
6 // version 2.1 of the License, or (at your option) any later version.
7 //
8 // This library is distributed in the hope that it will be useful,
9 // but WITHOUT ANY WARRANTY; without even the implied warranty of
10 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
11 // Lesser General Public License for more details.
12 //
13 // You should have received a copy of the GNU Lesser General Public
14 // License along with this library; if not, write to the Free Software
15 // Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307 USA
16 //
17 // See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
18 //
19 // Author : Anthony Geay (CEA/DEN)
20
21 #ifndef __BARYCENTRIC3DINTERSECTORP1P1_TXX__
22 #define __BARYCENTRIC3DINTERSECTORP1P1_TXX__
23
24 #include "Barycentric3DIntersectorP1P1.hxx"
25 #include "Intersector3DP1P1.txx"
26 #include "MeshUtils.hxx"
27
28 namespace INTERP_KERNEL
29 {
30
31   /**
32    * Constructor creating object from target cell global number 
33    * 
34    * @param targetMesh  mesh containing the target elements
35    * @param srcMesh     mesh containing the source elements
36    */
37   template<class MyMeshType, class MyMatrix>
38   Barycentric3DIntersectorP1P1<MyMeshType,MyMatrix>::Barycentric3DIntersectorP1P1(const MyMeshType& targetMesh, const MyMeshType& srcMesh, double precision):
39     Intersector3DP1P1<MyMeshType,MyMatrix>(targetMesh,srcMesh),_precision(precision)
40   {
41   }
42
43   template<class MyMeshType, class MyMatrix>
44   Barycentric3DIntersectorP1P1<MyMeshType,MyMatrix>::~Barycentric3DIntersectorP1P1()
45   {
46   }
47
48   /**
49    * @param targetCell in C mode.
50    * @param srcCells in C mode.
51    */
52   template<class MyMeshType, class MyMatrix>
53   void Barycentric3DIntersectorP1P1<MyMeshType,MyMatrix>::intersectCells(ConnType targetCell, const std::vector<ConnType>& srcCells, MyMatrix& res)
54   {
55     std::vector<double> CoordsT;
56     const ConnType *startOfCellNodeConnT=Intersector3DP1P1<MyMeshType,MyMatrix>::getStartConnOfTargetCell(targetCell);
57     Intersector3DP1P1<MyMeshType,MyMatrix>::getRealTargetCoordinates(OTT<ConnType,numPol>::indFC(targetCell),CoordsT);
58     std::size_t nbOfNodesT=CoordsT.size()/SPACEDIM;
59     const double *coordsS=Intersector3DP1P1<MyMeshType,MyMatrix>::_src_mesh.getCoordinatesPtr();
60     for(std::size_t nodeIdT=0;nodeIdT<nbOfNodesT;nodeIdT++)
61       {
62         typename MyMatrix::value_type& resRow=res[OTT<ConnType,numPol>::ind2C(startOfCellNodeConnT[nodeIdT])];
63         if(!resRow.empty())
64           continue;
65         for(typename std::vector<ConnType>::const_iterator iterCellS=srcCells.begin();iterCellS!=srcCells.end();iterCellS++)
66           {
67             NormalizedCellType tS=Intersector3DP1P1<MyMeshType,MyMatrix>::_src_mesh.getTypeOfElement(OTT<ConnType,numPol>::indFC(*iterCellS));
68             if(tS!=NORM_TETRA4)
69               throw INTERP_KERNEL::Exception("Invalid source cell detected for meshdim==3. Only TETRA4 supported !");
70             const CellModel& cmTypeS=CellModel::GetCellModel(tS);
71             //
72             std::vector<ConnType> connOfCurCellS;
73             Intersector3DP1P1<MyMeshType,MyMatrix>::getConnOfSourceCell(OTT<ConnType,numPol>::indFC(*iterCellS),connOfCurCellS);
74             if( PointLocatorAlgos<MyMeshType>::isElementContainsPointAlg3D(&CoordsT[nodeIdT*SPACEDIM],&connOfCurCellS[0],ToConnType(connOfCurCellS.size()),coordsS,cmTypeS,_precision) )
75               {
76                 double resLoc[4];
77                 std::vector<double> localCoordsS;
78                 Intersector3DP1P1<MyMeshType,MyMatrix>::getRealSourceCoordinates(OTT<ConnType,numPol>::indFC(*iterCellS),localCoordsS);
79                 std::vector<const double*> eap(4);
80                 eap[0]=&localCoordsS[0]; eap[1]=&localCoordsS[3]; eap[2]=&localCoordsS[6]; eap[3]=&localCoordsS[9];
81                 barycentric_coords(eap,&CoordsT[nodeIdT*SPACEDIM],resLoc);
82                 const ConnType *startOfCellNodeConnS=Intersector3DP1P1<MyMeshType,MyMatrix>::getStartConnOfSourceCell(*iterCellS);
83                 for(int nodeIdS=0;nodeIdS<4;nodeIdS++)
84                   {
85                     if(fabs(resLoc[nodeIdS])>_precision)
86                       {
87                         ConnType curNodeSInCmode=OTT<ConnType,numPol>::coo2C(startOfCellNodeConnS[nodeIdS]);
88                         resRow.insert(std::make_pair(OTT<ConnType,numPol>::indFC(curNodeSInCmode),resLoc[nodeIdS]));
89                       }
90                   }
91               }
92           }
93       }
94   }
95 }
96
97 #endif