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684 lines
12 KiB
C++
684 lines
12 KiB
C++
#ifndef TOPOLOGY
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#define TOPOLOGY
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/**************************************************************************/
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/* File: topology.hh */
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/* Author: Joachim Schoeberl */
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/* Date: 27. Apr. 01 */
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/**************************************************************************/
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/*
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Mesh topology
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(Elements, Faces, Edges, Vertices
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*/
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class MeshTopology
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{
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const Mesh & mesh;
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bool buildedges;
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bool buildfaces;
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MoveableArray<INDEX_2> edge2vert;
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MoveableArray<INDEX_4> face2vert;
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MoveableArray<int[12]> edges;
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MoveableArray<int[6]> faces;
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MoveableArray<int[4]> surfedges;
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MoveableArray<int> segedges;
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MoveableArray<int> surffaces;
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MoveableArray<INDEX_2> surf2volelement;
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MoveableArray<int> face2surfel;
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TABLE<int,PointIndex::BASE> *vert2element;
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TABLE<int,PointIndex::BASE> *vert2surfelement;
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TABLE<int,PointIndex::BASE> *vert2segment;
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int timestamp;
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public:
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int GetNSurfedges() const {return surfedges.Size();}
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MeshTopology (const Mesh & amesh);
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~MeshTopology ();
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void SetBuildEdges (bool be)
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{ buildedges = be; }
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void SetBuildFaces (bool bf)
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{ buildfaces = bf; }
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bool HasEdges () const
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{ return buildedges; }
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bool HasFaces () const
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{ return buildfaces; }
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void Update();
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int GetNEdges () const { return edge2vert.Size(); }
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int GetNFaces () const { return face2vert.Size(); }
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static inline int GetNVertices (ELEMENT_TYPE et);
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static inline int GetNPoints (ELEMENT_TYPE et);
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static inline int GetNEdges (ELEMENT_TYPE et);
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static inline int GetNFaces (ELEMENT_TYPE et);
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static const Point3d * GetVertices (ELEMENT_TYPE et);
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inline static const ELEMENT_EDGE * GetEdges1 (ELEMENT_TYPE et);
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inline static const ELEMENT_EDGE * GetEdges0 (ELEMENT_TYPE et);
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inline static const ELEMENT_FACE * GetFaces1 (ELEMENT_TYPE et);
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inline static const ELEMENT_FACE * GetFaces0 (ELEMENT_TYPE et);
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int GetSegmentEdge (int segnr) const { return abs(segedges[segnr-1]); }
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int GetSegmentEdgeOrientation (int segnr) const { return sgn(segedges[segnr-1]); }
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void GetSegmentEdge (int segnr, int & enr, int & orient) const
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{
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enr = abs(segedges.Get(segnr));
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orient = segedges.Get(segnr) > 0 ? 1 : -1;
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}
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void GetElementEdges (int elnr, Array<int> & edges) const;
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void GetElementFaces (int elnr, Array<int> & faces, bool withorientation = false) const;
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void GetElementEdgeOrientations (int elnr, Array<int> & eorient) const;
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void GetElementFaceOrientations (int elnr, Array<int> & forient) const;
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int GetElementEdges (int elnr, int * edges, int * orient) const;
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int GetElementFaces (int elnr, int * faces, int * orient) const;
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void GetFaceVertices (int fnr, Array<int> & vertices) const;
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void GetFaceVertices (int fnr, int * vertices) const;
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void GetEdgeVertices (int enr, int & v1, int & v2) const;
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const int * GetEdgeVerticesPtr (int enr) const { return &edge2vert[enr][0]; }
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const int * GetFaceVerticesPtr (int fnr) const { return &face2vert[fnr][0]; }
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void GetFaceEdges (int fnr, Array<int> & edges, bool withorientation = false) const;
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ELEMENT_TYPE GetFaceType (int fnr) const;
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void GetSurfaceElementEdges (int elnr, Array<int> & edges) const;
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int GetSurfaceElementFace (int elnr) const;
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void GetSurfaceElementEdgeOrientations (int elnr, Array<int> & eorient) const;
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int GetSurfaceElementFaceOrientation (int elnr) const;
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int GetSurfaceElementEdges (int elnr, int * edges, int * orient) const;
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const int * GetElementEdgesPtr (int elnr) const { return &edges[elnr][0]; }
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const int * GetSurfaceElementEdgesPtr (int selnr) const { return &surfedges[selnr][0]; }
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const int * GetSegmentElementEdgesPtr (int selnr) const { return &segedges[selnr]; }
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const int * GetElementFacesPtr (int elnr) const { return &faces[elnr][0]; }
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const int * GetSurfaceElementFacesPtr (int selnr) const { return &surffaces[selnr]; }
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void GetSurface2VolumeElement (int selnr, int & elnr1, int & elnr2) const
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{
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elnr1 = surf2volelement.Get(selnr)[0];
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elnr2 = surf2volelement.Get(selnr)[1];
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}
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int GetFace2SurfaceElement (int fnr) const { return face2surfel[fnr-1]; }
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void GetVertexElements (int vnr, Array<int> & elements) const;
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FlatArray<int> GetVertexElements (int vnr) const;
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void GetVertexSurfaceElements( int vnr, Array<int>& elements ) const;
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FlatArray<int> GetVertexSurfaceElements (int vnr) const;
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int GetVerticesEdge ( int v1, int v2) const;
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void GetSegmentVolumeElements ( int segnr, Array<int> & els ) const;
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void GetSegmentSurfaceElements ( int segnr, Array<int> & els ) const;
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};
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int MeshTopology :: GetNVertices (ELEMENT_TYPE et)
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{
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switch (et)
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{
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case SEGMENT:
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case SEGMENT3:
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return 2;
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case TRIG:
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case TRIG6:
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return 3;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return 4;
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case TET:
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case TET10:
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return 4;
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case PYRAMID:
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return 5;
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case PRISM:
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case PRISM12:
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return 6;
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case HEX:
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return 8;
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default:
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cerr << "Ng_ME_GetNVertices, illegal element type " << et << endl;
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}
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return 0;
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}
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int MeshTopology :: GetNPoints (ELEMENT_TYPE et)
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{
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switch (et)
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{
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case SEGMENT:
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return 2;
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case SEGMENT3:
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return 3;
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case TRIG:
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return 3;
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case TRIG6:
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return 6;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return 4;
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case TET:
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return 4;
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case TET10:
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return 10;
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case PYRAMID:
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return 5;
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case PRISM:
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case PRISM12:
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return 6;
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case HEX:
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return 8;
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default:
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cerr << "Ng_ME_GetNVertices, illegal element type " << et << endl;
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}
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return 0;
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}
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int MeshTopology :: GetNEdges (ELEMENT_TYPE et)
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{
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switch (et)
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{
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case SEGMENT:
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case SEGMENT3:
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return 1;
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case TRIG:
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case TRIG6:
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return 3;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return 4;
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case TET:
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case TET10:
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return 6;
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case PYRAMID:
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return 8;
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case PRISM:
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case PRISM12:
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return 9;
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case HEX:
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return 12;
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default:
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cerr << "Ng_ME_GetNEdges, illegal element type " << et << endl;
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}
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return 0;
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}
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int MeshTopology :: GetNFaces (ELEMENT_TYPE et)
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{
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switch (et)
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{
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case SEGMENT:
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case SEGMENT3:
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return 0;
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case TRIG:
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case TRIG6:
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return 1;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return 1;
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case TET:
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case TET10:
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return 4;
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case PYRAMID:
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return 5;
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case PRISM:
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case PRISM12:
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return 5;
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case HEX:
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return 6;
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default:
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cerr << "Ng_ME_GetNVertices, illegal element type " << et << endl;
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}
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return 0;
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}
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const ELEMENT_EDGE * MeshTopology :: GetEdges1 (ELEMENT_TYPE et)
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{
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static int segm_edges[1][2] =
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{ { 1, 2 }};
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static int trig_edges[3][2] =
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{ { 3, 1 },
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{ 2, 3 },
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{ 1, 2 }};
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static int quad_edges[4][2] =
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{ { 1, 2 },
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{ 3, 4 },
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{ 4, 1 },
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{ 2, 3 }};
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static int tet_edges[6][2] =
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{ { 4, 1 },
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{ 4, 2 },
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{ 4, 3 },
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{ 1, 2 },
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{ 1, 3 },
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{ 2, 3 }};
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static int prism_edges[9][2] =
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{ { 3, 1 },
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{ 1, 2 },
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{ 3, 2 },
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{ 6, 4 },
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{ 4, 5 },
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{ 6, 5 },
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{ 3, 6 },
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{ 1, 4 },
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{ 2, 5 }};
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static int pyramid_edges[8][2] =
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{ { 1, 2 },
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{ 2, 3 },
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{ 1, 4 },
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{ 4, 3 },
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{ 1, 5 },
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{ 2, 5 },
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{ 3, 5 },
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{ 4, 5 }};
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static int hex_edges[12][2] =
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{
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{ 1, 2 },
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{ 3, 4 },
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{ 4, 1 },
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{ 2, 3 },
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{ 5, 6 },
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{ 7, 8 },
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{ 8, 5 },
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{ 6, 7 },
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{ 1, 5 },
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{ 2, 6 },
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{ 3, 7 },
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{ 4, 8 },
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};
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switch (et)
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{
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case SEGMENT:
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case SEGMENT3:
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return segm_edges;
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case TRIG:
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case TRIG6:
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return trig_edges;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return quad_edges;
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case TET:
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case TET10:
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return tet_edges;
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case PYRAMID:
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return pyramid_edges;
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case PRISM:
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case PRISM12:
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return prism_edges;
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case HEX:
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return hex_edges;
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default:
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cerr << "Ng_ME_GetEdges, illegal element type " << et << endl;
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}
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return 0;
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}
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const ELEMENT_EDGE * MeshTopology :: GetEdges0 (ELEMENT_TYPE et)
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{
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static int segm_edges[1][2] =
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{ { 0, 1 }};
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static int trig_edges[3][2] =
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{ { 2, 0 },
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{ 1, 2 },
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{ 0, 1 }};
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static int quad_edges[4][2] =
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{ { 0, 1 },
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{ 2, 3 },
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{ 3, 0 },
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{ 1, 2 }};
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static int tet_edges[6][2] =
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{ { 3, 0 },
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{ 3, 1 },
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{ 3, 2 },
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{ 0, 1 },
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{ 0, 2 },
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{ 1, 2 }};
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static int prism_edges[9][2] =
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{ { 2, 0 },
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{ 0, 1 },
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{ 2, 1 },
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{ 5, 3 },
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{ 3, 4 },
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{ 5, 4 },
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{ 2, 5 },
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{ 0, 3 },
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{ 1, 4 }};
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static int pyramid_edges[8][2] =
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{ { 0, 1 },
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{ 1, 2 },
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{ 0, 3 },
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{ 3, 2 },
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{ 0, 4 },
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{ 1, 4 },
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{ 2, 4 },
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{ 3, 4 }};
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static int hex_edges[12][2] =
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{
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{ 0, 1 },
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{ 2, 3 },
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{ 3, 0 },
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{ 1, 2 },
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{ 4, 5 },
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{ 6, 7 },
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{ 7, 4 },
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{ 5, 6 },
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{ 0, 4 },
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{ 1, 5 },
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{ 2, 6 },
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{ 3, 7 },
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};
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switch (et)
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{
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case SEGMENT:
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case SEGMENT3:
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return segm_edges;
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case TRIG:
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case TRIG6:
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return trig_edges;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return quad_edges;
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case TET:
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case TET10:
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return tet_edges;
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case PYRAMID:
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return pyramid_edges;
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case PRISM:
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case PRISM12:
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return prism_edges;
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case HEX:
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return hex_edges;
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default:
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cerr << "Ng_ME_GetEdges, illegal element type " << et << endl;
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}
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return 0;
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}
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const ELEMENT_FACE * MeshTopology :: GetFaces1 (ELEMENT_TYPE et)
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{
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static const int trig_faces[1][4] =
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{ { 1, 2, 3, 0 } };
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static const int quad_faces[1][4] =
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{ { 1, 2, 3, 4 } };
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static const int tet_faces[4][4] =
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{ { 4, 2, 3, 0 },
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{ 4, 3, 1, 0 },
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{ 4, 1, 2, 0 },
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{ 1, 3, 2, 0 } };
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static const int prism_faces[5][4] =
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{
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{ 1, 3, 2, 0 },
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{ 4, 5, 6, 0 },
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{ 3, 1, 4, 6 },
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{ 1, 2, 5, 4 },
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{ 2, 3, 6, 5 }
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};
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static const int pyramid_faces[5][4] =
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{
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{ 1, 2, 5, 0 },
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{ 2, 3, 5, 0 },
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{ 3, 4, 5, 0 },
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{ 4, 1, 5, 0 },
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{ 1, 4, 3, 2 }
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};
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static const int hex_faces[6][4] =
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{
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{ 1, 4, 3, 2 },
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{ 5, 6, 7, 8 },
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{ 1, 2, 6, 5 },
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{ 2, 3, 7, 6 },
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{ 3, 4, 8, 7 },
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{ 4, 1, 5, 8 }
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};
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switch (et)
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{
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case TRIG:
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case TRIG6:
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return trig_faces;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return quad_faces;
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case TET:
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case TET10:
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return tet_faces;
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case PRISM:
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case PRISM12:
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return prism_faces;
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case PYRAMID:
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return pyramid_faces;
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case SEGMENT:
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case SEGMENT3:
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case HEX:
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return hex_faces;
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default:
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cerr << "Ng_ME_GetVertices, illegal element type " << et << endl;
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}
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return 0;
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}
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const ELEMENT_FACE * MeshTopology :: GetFaces0 (ELEMENT_TYPE et)
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{
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static const int trig_faces[1][4] =
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{ { 0, 1, 2, -1 } };
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static const int quad_faces[1][4] =
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{ { 0, 1, 2, 3 } };
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static const int tet_faces[4][4] =
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{ { 3, 1, 2, -1 },
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{ 3, 2, 0, -1 },
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{ 3, 0, 1, -1 },
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{ 0, 2, 1, -1 } };
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static const int prism_faces[5][4] =
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{
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{ 0, 2, 1, -1 },
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{ 3, 4, 5, -1 },
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{ 2, 0, 3, 5 },
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{ 0, 1, 4, 3 },
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{ 1, 2, 5, 4 }
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};
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static const int pyramid_faces[5][4] =
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{
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{ 0, 1, 4, -1 },
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{ 1, 2, 4, -1 },
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{ 2, 3, 4, -1 },
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{ 3, 0, 4, -1 },
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{ 0, 3, 2, 1 }
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};
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static const int hex_faces[6][4] =
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{
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{ 0, 3, 2, 1 },
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{ 4, 5, 6, 7 },
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{ 0, 1, 5, 4 },
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{ 1, 2, 6, 5 },
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{ 2, 3, 7, 6 },
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{ 3, 0, 4, 7 }
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};
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switch (et)
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{
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case TRIG:
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case TRIG6:
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return trig_faces;
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case QUAD:
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case QUAD6:
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case QUAD8:
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return quad_faces;
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case TET:
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case TET10:
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return tet_faces;
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case PRISM:
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case PRISM12:
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return prism_faces;
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case PYRAMID:
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return pyramid_faces;
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case SEGMENT:
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case SEGMENT3:
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case HEX:
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return hex_faces;
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default:
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cerr << "Ng_ME_GetVertices, illegal element type " << et << endl;
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}
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return 0;
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}
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#endif
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