smesh/src/SMESH/SMESH_Mesh.hxx

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// SMESH SMESH : implementaion of SMESH idl descriptions
//
// Copyright (C) 2003 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
// CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
//
// This library is free software; you can redistribute it and/or
// modify it under the terms of the GNU Lesser General Public
// License as published by the Free Software Foundation; either
// version 2.1 of the License.
//
// This library 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
// Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public
// License along with this library; if not, write to the Free Software
// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
//
// See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
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//
//
//
// File : SMESH_Mesh.hxx
// Author : Paul RASCLE, EDF
// Module : SMESH
// $Header$
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#ifndef _SMESH_MESH_HXX_
#define _SMESH_MESH_HXX_
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#include "SMESH_SMESH.hxx"
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#include "SMESH_Hypothesis.hxx"
//#include "SMESH_subMesh.hxx"
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#include "SMESHDS_Document.hxx"
#include "SMESHDS_Mesh.hxx"
#include "SMESHDS_Command.hxx"
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#include "SMDSAbs_ElementType.hxx"
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//#include "NMTTools_IndexedDataMapOfShapeIndexedMapOfShape.hxx"
#include "SMESH_IndexedDataMapOfShapeIndexedMapOfShape.hxx"
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#include "Utils_SALOME_Exception.hxx"
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#include <TopExp.hxx>
#include <TopExp_Explorer.hxx>
#include <TopoDS.hxx>
#include <TopoDS_Iterator.hxx>
#include <TopoDS_Compound.hxx>
#include <TopoDS_CompSolid.hxx>
#include <TopoDS_Solid.hxx>
#include <TopoDS_Shell.hxx>
#include <TopoDS_Face.hxx>
#include <TopoDS_Wire.hxx>
#include <TopoDS_Edge.hxx>
#include <TopoDS_Vertex.hxx>
#include <TopoDS_Shape.hxx>
#include <TopTools_IndexedMapOfShape.hxx>
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#include <TopTools_IndexedDataMapOfShapeListOfShape.hxx>
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#include <vector>
#include <list>
#include <map>
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#include <string>
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#include <iostream>
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class SMESH_Gen;
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class SMESH_Group;
class TopTools_ListOfShape;
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class SMESH_subMesh;
class SMESH_HypoFilter;
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class TopoDS_Solid;
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typedef SMESH_IndexedDataMapOfShapeIndexedMapOfShape IndexedMapOfChain;
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class SMESH_EXPORT SMESH_Mesh
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{
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public:
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SMESH_Mesh(int theLocalId,
int theStudyId,
SMESH_Gen* theGen,
bool theIsEmbeddedMode,
SMESHDS_Document* theDocument);
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virtual ~SMESH_Mesh();
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/*!
* \brief Set geometry to be meshed
*/
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void ShapeToMesh(const TopoDS_Shape & aShape);
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/*!
* \brief Return geometry to be meshed. (It may be a PseudoShape()!)
*/
TopoDS_Shape GetShapeToMesh() const;
/*!
* \brief Return true if there is a geometry to be meshed, not PseudoShape()
*/
bool HasShapeToMesh() const { return _isShapeToMesh; }
/*!
* \brief Return a solid which is returned by GetShapeToMesh() if
* a real geometry to be meshed was not set
*/
static const TopoDS_Solid& PseudoShape();
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int UNVToMesh(const char* theFileName);
/*!
* consult DriverMED_R_SMESHDS_Mesh::ReadStatus for returned value
*/
int MEDToMesh(const char* theFileName, const char* theMeshName);
int STLToMesh(const char* theFileName);
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SMESH_Hypothesis::Hypothesis_Status
AddHypothesis(const TopoDS_Shape & aSubShape, int anHypId)
throw(SALOME_Exception);
SMESH_Hypothesis::Hypothesis_Status
RemoveHypothesis(const TopoDS_Shape & aSubShape, int anHypId)
throw(SALOME_Exception);
const list <const SMESHDS_Hypothesis * >&
GetHypothesisList(const TopoDS_Shape & aSubShape) const
throw(SALOME_Exception);
const SMESH_Hypothesis * GetHypothesis(const TopoDS_Shape & aSubShape,
const SMESH_HypoFilter& aFilter,
const bool andAncestors) const;
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int GetHypotheses(const TopoDS_Shape & aSubShape,
const SMESH_HypoFilter& aFilter,
list <const SMESHDS_Hypothesis * >& aHypList,
const bool andAncestors) const;
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const list<SMESHDS_Command*> & GetLog() throw(SALOME_Exception);
void ClearLog() throw(SALOME_Exception);
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int GetId() { return _id; }
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SMESHDS_Mesh * GetMeshDS() { return _myMeshDS; }
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SMESH_Gen *GetGen() { return _gen; }
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SMESH_subMesh *GetSubMesh(const TopoDS_Shape & aSubShape)
throw(SALOME_Exception);
SMESH_subMesh *GetSubMeshContaining(const TopoDS_Shape & aSubShape)
throw(SALOME_Exception);
SMESH_subMesh *GetSubMeshContaining(const int aShapeID)
throw(SALOME_Exception);
void NotifySubMeshesHypothesisModification(const SMESH_Hypothesis* theChangedHyp);
// Say all submeshes that theChangedHyp has been modified
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const list < SMESH_subMesh * >&
GetSubMeshUsingHypothesis(SMESHDS_Hypothesis * anHyp)
throw(SALOME_Exception);
bool IsUsedHypothesis(SMESHDS_Hypothesis * anHyp,
const SMESH_subMesh * aSubMesh);
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// Return True if anHyp is used to mesh aSubShape
bool IsNotConformAllowed() const;
// check if a hypothesis alowing notconform mesh is present
bool IsMainShape(const TopoDS_Shape& theShape) const;
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const TopTools_ListOfShape& GetAncestors(const TopoDS_Shape& theSubShape) const;
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// return list of ancestors of theSubShape in the order
// that lower dimention shapes come first.
/*! Check group names for duplications.
* Consider maximum group name length stored in MED file.
*/
bool HasDuplicatedGroupNamesMED();
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void ExportMED(const char *file,
const char* theMeshName = NULL,
bool theAutoGroups = true,
int theVersion = 0)
throw(SALOME_Exception);
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void ExportDAT(const char *file) throw(SALOME_Exception);
void ExportUNV(const char *file) throw(SALOME_Exception);
void ExportSTL(const char *file, const bool isascii) throw(SALOME_Exception);
int NbNodes() throw(SALOME_Exception);
/*!
* ElementOrder points out entities of what order are requested
*/
enum ElementOrder {
ORDER_ANY, /*! entities of any order */
ORDER_LINEAR, /*! entities of 1st order */
ORDER_QUADRATIC /*! entities of 2nd order */
};
int NbEdges(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbFaces(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbTriangles(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbQuadrangles(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
int NbPolygons() throw(SALOME_Exception);
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int NbVolumes(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbTetras(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbHexas(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbPyramids(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
int NbPrisms(ElementOrder order = ORDER_ANY) throw(SALOME_Exception);
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int NbPolyhedrons() throw(SALOME_Exception);
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int NbSubMesh() throw(SALOME_Exception);
int NbGroup() const { return _mapGroup.size(); }
SMESH_Group* AddGroup (const SMDSAbs_ElementType theType,
const char* theName,
int& theId,
const TopoDS_Shape& theShape=TopoDS_Shape());
SMESH_Group* GetGroup (const int theGroupID);
list<int> GetGroupIds();
void RemoveGroup (const int theGroupID);
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SMDSAbs_ElementType GetElementType( const int id, const bool iselem );
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//
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ostream& Dump(ostream & save);
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private:
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protected:
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int _id; // id given by creator (unique within the creator instance)
int _studyId;
int _idDoc; // id given by SMESHDS_Document
int _groupId; // id generator for group objects
bool _isShapeToMesh;// set to true when a shape is given (only once)
list <SMESH_subMesh *> _subMeshesUsingHypothesisList;
SMESHDS_Document * _myDocument;
SMESHDS_Mesh * _myMeshDS;
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map <int, SMESH_subMesh *> _mapSubMesh;
map <int, SMESH_Group *> _mapGroup;
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SMESH_Gen * _gen;
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TopTools_IndexedDataMapOfShapeListOfShape _mapAncestors;
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protected:
SMESH_Mesh() {};
SMESH_Mesh(const SMESH_Mesh&) {};
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};
#endif