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544 lines
15 KiB
C++
544 lines
15 KiB
C++
// SMESH SMESH : implementaion of SMESH idl descriptions
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//
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// Copyright (C) 2003 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
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// CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2.1 of the License.
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//
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// This library 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 GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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//
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// See http://www.opencascade.org/SALOME/ or email : webmaster.salome@opencascade.org
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//
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//
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//
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// File : SMESH_Mesh.cxx
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// Author : Paul RASCLE, EDF
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// Module : SMESH
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// $Header$
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#include "SMESH_Mesh.hxx"
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#include "SMESH_subMesh.hxx"
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#include "SMESH_Gen.hxx"
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#include "SMESH_Hypothesis.hxx"
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#include "SMESHDS_Script.hxx"
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#include "SMDS_MeshVolume.hxx"
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#include "utilities.h"
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#include "Mesh_Writer.h"
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#include "DriverMED_W_SMESHDS_Mesh.h"
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#include "DriverDAT_W_SMESHDS_Mesh.h"
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#include "DriverUNV_W_SMESHDS_Mesh.h"
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#include <TCollection_AsciiString.hxx>
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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SMESH_Mesh::SMESH_Mesh()
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{
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MESSAGE("SMESH_Mesh::SMESH_Mesh");
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_id = -1;
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ASSERT(0);
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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SMESH_Mesh::SMESH_Mesh(int localId,
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int studyId, SMESH_Gen * gen, SMESHDS_Document * myDocument)
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{
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MESSAGE("SMESH_Mesh::SMESH_Mesh(int localId)");
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_id = localId;
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_studyId = studyId;
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_gen = gen;
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_myDocument = myDocument;
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_idDoc = _myDocument->NewMesh();
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_myMeshDS = _myDocument->GetMesh(_idDoc);
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_isShapeToMesh = false;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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SMESH_Mesh::~SMESH_Mesh()
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{
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MESSAGE("SMESH_Mesh::~SMESH_Mesh");
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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void SMESH_Mesh::ShapeToMesh(const TopoDS_Shape & aShape)
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throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::ShapeToMesh");
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if (_isShapeToMesh)
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throw
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SALOME_Exception(LOCALIZED
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("a shape to mesh as already been defined"));
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_isShapeToMesh = true;
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_myMeshDS->ShapeToMesh(aShape);
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// NRI : 24/02/03
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TopExp::MapShapes(aShape, _subShapes);
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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bool SMESH_Mesh::AddHypothesis(const TopoDS_Shape & aSubShape,
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int anHypId) throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::AddHypothesis");
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StudyContextStruct *sc = _gen->GetStudyContext(_studyId);
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if (sc->mapHypothesis.find(anHypId) == sc->mapHypothesis.end())
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{
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MESSAGE("Hypothesis ID does not give an hypothesis");
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SCRUTE(_studyId);
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SCRUTE(anHypId);
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throw SALOME_Exception(LOCALIZED("hypothesis does not exist"));
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}
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SMESH_subMesh *subMesh = GetSubMesh(aSubShape);
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SMESH_Hypothesis *anHyp = sc->mapHypothesis[anHypId];
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int event;
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// shape
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if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
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event = SMESH_subMesh::ADD_HYP;
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else
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event = SMESH_subMesh::ADD_ALGO;
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int ret = subMesh->AlgoStateEngine(event, anHyp);
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// subShapes (only when shape is mainShape)
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TopoDS_Shape mainShape = _myMeshDS->ShapeToMesh();
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if (aSubShape.IsSame(mainShape))
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{
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if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
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event = SMESH_subMesh::ADD_FATHER_HYP;
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else
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event = SMESH_subMesh::ADD_FATHER_ALGO;
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subMesh->SubMeshesAlgoStateEngine(event, anHyp);
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}
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subMesh->DumpAlgoState(true);
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//SCRUTE(ret);
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return ret;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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bool SMESH_Mesh::RemoveHypothesis(const TopoDS_Shape & aSubShape,
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int anHypId)throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::RemoveHypothesis");
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StudyContextStruct *sc = _gen->GetStudyContext(_studyId);
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if (sc->mapHypothesis.find(anHypId) == sc->mapHypothesis.end())
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throw SALOME_Exception(LOCALIZED("hypothesis does not exist"));
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SMESH_subMesh *subMesh = GetSubMesh(aSubShape);
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SMESH_Hypothesis *anHyp = sc->mapHypothesis[anHypId];
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int hypType = anHyp->GetType();
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SCRUTE(hypType);
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int event;
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// shape
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if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
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event = SMESH_subMesh::REMOVE_HYP;
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else
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event = SMESH_subMesh::REMOVE_ALGO;
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int ret = subMesh->AlgoStateEngine(event, anHyp);
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// subShapes (only when shape is mainShape)
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TopoDS_Shape mainShape = _myMeshDS->ShapeToMesh();
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if (aSubShape.IsSame(mainShape))
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{
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if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
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event = SMESH_subMesh::REMOVE_FATHER_HYP;
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else
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event = SMESH_subMesh::REMOVE_FATHER_ALGO;
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subMesh->SubMeshesAlgoStateEngine(event, anHyp);
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}
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subMesh->DumpAlgoState(true);
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SCRUTE(ret);
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return ret;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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SMESHDS_Mesh * SMESH_Mesh::GetMeshDS()
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{
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return _myMeshDS;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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const list<const SMESHDS_Hypothesis*>&
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SMESH_Mesh::GetHypothesisList(const TopoDS_Shape & aSubShape)
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throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::GetHypothesisList");
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_subShapeHypothesisList.clear();
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const list<const SMESHDS_Hypothesis*>& listHyp =
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_myMeshDS->GetHypothesis(aSubShape);
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list<const SMESHDS_Hypothesis*>::const_iterator it=listHyp.begin();
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while (it!=listHyp.end())
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{
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const SMESHDS_Hypothesis *anHyp = *it;
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_subShapeHypothesisList.push_back(anHyp);
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it++;
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}
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return _subShapeHypothesisList;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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const list<SMESHDS_Command*> & SMESH_Mesh::GetLog() throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::GetLog");
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return _myMeshDS->GetScript()->GetCommands();
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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void SMESH_Mesh::ClearLog() throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::ClearLog");
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_myMeshDS->GetScript()->Clear();
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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int SMESH_Mesh::GetId()
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{
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MESSAGE("SMESH_Mesh::GetId");
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return _id;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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SMESH_Gen *SMESH_Mesh::GetGen()
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{
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return _gen;
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}
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//=============================================================================
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/*!
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* Get or Create the SMESH_subMesh object implementation
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*/
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//=============================================================================
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SMESH_subMesh *SMESH_Mesh::GetSubMesh(const TopoDS_Shape & aSubShape)
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throw(SALOME_Exception)
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{
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//MESSAGE("SMESH_Mesh::GetSubMesh");
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SMESH_subMesh *aSubMesh;
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int index = _subShapes.FindIndex(aSubShape);
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if (_mapSubMesh.find(index) != _mapSubMesh.end())
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{
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aSubMesh = _mapSubMesh[index];
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}
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else
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{
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aSubMesh = new SMESH_subMesh(index, this, _myMeshDS, aSubShape);
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_mapSubMesh[index] = aSubMesh;
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}
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/* NRI 24/02/2003
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* int index = -1;
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* if (_subShapes.Contains(aSubShape))
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* {
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* index = _subShapes.FindIndex(aSubShape);
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* ASSERT(_mapSubMesh.find(index) != _mapSubMesh.end());
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* aSubMesh = _mapSubMesh[index];
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* //MESSAGE("found submesh " << index);
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* }
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* else
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* {
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* index = _subShapes.Add(aSubShape);
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* aSubMesh = new SMESH_subMesh(index, this, _myMeshDS, aSubShape);
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* _mapSubMesh[index] = aSubMesh;
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* //MESSAGE("created submesh " << index);
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* }
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*/
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return aSubMesh;
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}
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//=============================================================================
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/*!
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* Get the SMESH_subMesh object implementation. Dont create it, return null
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* if it does not exist.
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*/
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//=============================================================================
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//
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// * Given a subShape, find if there is a subMesh associated to this subShape
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// * or to a collection of shapes containing this subShape. Collection =
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// * compsolid, shell, wire.
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// *
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// * WARNING : with arg = compsolid, shell or wire returns always NULL.
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// * with a face inside a shell, and submesh created for both, if arg is face,
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// * returns first created submesh of the two.
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// * subMesh is not created, return may be NULL.
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SMESH_subMesh *SMESH_Mesh::GetSubMeshContaining(const TopoDS_Shape & aSubShape)
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throw(SALOME_Exception)
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{
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//MESSAGE("SMESH_Mesh::GetSubMeshContaining");
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bool isFound = false;
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SMESH_subMesh *aSubMesh = NULL;
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int index = _subShapes.FindIndex(aSubShape);
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if (_mapSubMesh.find(index) != _mapSubMesh.end())
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{
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aSubMesh = _mapSubMesh[index];
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isFound = true;
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}
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/* NRI 24/02/2003
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* int index = -1;
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* if (_subShapes.Contains(aSubShape))
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* {
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* index = _subShapes.FindIndex(aSubShape);
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* ASSERT(_mapSubMesh.find(index) != _mapSubMesh.end());
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* aSubMesh = _mapSubMesh[index];
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* isFound = true;
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* //MESSAGE("found submesh " << index);
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* }
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*/
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// map<int, SMESH_subMesh*>::iterator itsm;
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// for (itsm = _mapSubMesh.begin(); itsm != _mapSubMesh.end(); itsm++)
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// {
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// aSubMesh = (*itsm).second;
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// isFound = aSubMesh->Contains(aSubShape);
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// if (isFound) break;
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// }
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if (!isFound)
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aSubMesh = NULL;
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return aSubMesh;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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const list < SMESH_subMesh * >&
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SMESH_Mesh::GetSubMeshUsingHypothesis(SMESHDS_Hypothesis * anHyp)
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throw(SALOME_Exception)
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{
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MESSAGE("SMESH_Mesh::GetSubMeshUsingHypothesis");
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map < int, SMESH_subMesh * >::iterator itsm;
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_subMeshesUsingHypothesisList.clear();
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for (itsm = _mapSubMesh.begin(); itsm != _mapSubMesh.end(); itsm++)
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{
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SMESH_subMesh *aSubMesh = (*itsm).second;
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bool usesHyp = false;
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SMESH_Algo *algo = _gen->GetAlgo(*this, aSubMesh->GetSubShape());
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if (algo != NULL)
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{
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const list <const SMESHDS_Hypothesis * >&usedHyps
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= algo->GetUsedHypothesis(*this, aSubMesh->GetSubShape());
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list <const SMESHDS_Hypothesis * >::const_iterator itl;
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for (itl = usedHyps.begin(); itl != usedHyps.end(); itl++)
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if (anHyp == (*itl))
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{
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usesHyp = true;
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break;
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}
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}
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if (usesHyp)
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_subMeshesUsingHypothesisList.push_back(aSubMesh);
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}
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return _subMeshesUsingHypothesisList;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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void SMESH_Mesh::ExportMED(const char *file) throw(SALOME_Exception)
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{
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Mesh_Writer *myWriter = new DriverMED_W_SMESHDS_Mesh;
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myWriter->SetFile(string(file));
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myWriter->SetMesh(_myMeshDS);
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MESSAGE(" _idDoc " << _idDoc) myWriter->SetMeshId(_idDoc);
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myWriter->Add();
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}
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void SMESH_Mesh::ExportDAT(const char *file) throw(SALOME_Exception)
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{
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Mesh_Writer *myWriter = new DriverDAT_W_SMESHDS_Mesh;
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myWriter->SetFile(string(file));
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myWriter->SetMesh(_myMeshDS);
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myWriter->SetMeshId(_idDoc);
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myWriter->Add();
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}
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void SMESH_Mesh::ExportUNV(const char *file) throw(SALOME_Exception)
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{
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Mesh_Writer *myWriter = new DriverUNV_W_SMESHDS_Mesh;
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myWriter->SetFile(string(file));
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myWriter->SetMesh(_myMeshDS);
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myWriter->SetMeshId(_idDoc);
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myWriter->Add();
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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int SMESH_Mesh::NbNodes() throw(SALOME_Exception)
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{
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return _myMeshDS->NbNodes();
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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int SMESH_Mesh::NbEdges() throw(SALOME_Exception)
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{
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return _myMeshDS->NbEdges();
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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int SMESH_Mesh::NbFaces() throw(SALOME_Exception)
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{
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return _myMeshDS->NbFaces();
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}
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///////////////////////////////////////////////////////////////////////////////
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/// Return the number of 3 nodes faces in the mesh. This method run in O(n)
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///////////////////////////////////////////////////////////////////////////////
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int SMESH_Mesh::NbTriangles() throw(SALOME_Exception)
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{
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int Nb = 0;
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SMDS_Iterator<const SMDS_MeshFace*> * itFaces=_myMeshDS->facesIterator();
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while(itFaces->more()) if(itFaces->next()->NbNodes()==3) Nb++;
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delete itFaces;
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return Nb;
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}
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///////////////////////////////////////////////////////////////////////////////
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/// Return the number of 4 nodes faces in the mesh. This method run in O(n)
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///////////////////////////////////////////////////////////////////////////////
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int SMESH_Mesh::NbQuadrangles() throw(SALOME_Exception)
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{
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int Nb = 0;
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SMDS_Iterator<const SMDS_MeshFace*> * itFaces=_myMeshDS->facesIterator();
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while(itFaces->more()) if(itFaces->next()->NbNodes()==4) Nb++;
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delete itFaces;
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return Nb;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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int SMESH_Mesh::NbVolumes() throw(SALOME_Exception)
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{
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return _myMeshDS->NbVolumes();
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}
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int SMESH_Mesh::NbTetras() throw(SALOME_Exception)
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{
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int Nb = 0;
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SMDS_Iterator<const SMDS_MeshVolume*> * itVolumes=_myMeshDS->volumesIterator();
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while(itVolumes->more()) if(itVolumes->next()->NbNodes()==4) Nb++;
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delete itVolumes;
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return Nb;
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}
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int SMESH_Mesh::NbHexas() throw(SALOME_Exception)
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{
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int Nb = 0;
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SMDS_Iterator<const SMDS_MeshVolume*> * itVolumes=_myMeshDS->volumesIterator();
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while(itVolumes->more()) if(itVolumes->next()->NbNodes()==8) Nb++;
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delete itVolumes;
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return Nb;
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}
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//=============================================================================
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/*!
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*
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*/
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//=============================================================================
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int SMESH_Mesh::NbSubMesh() throw(SALOME_Exception)
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{
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return _myMeshDS->NbSubMesh();
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}
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