mirror of
https://git.salome-platform.org/gitpub/modules/smesh.git
synced 2024-11-14 01:28:34 +05:00
95a58b5ecf
+ virtual SMESH::long_array* GetNbElementsByType();
609 lines
18 KiB
C++
609 lines
18 KiB
C++
// Copyright (C) 2007-2013 CEA/DEN, EDF R&D, OPEN CASCADE
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//
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// Copyright (C) 2003-2007 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.salome-platform.org/ or email : webmaster.salome@opencascade.com
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//
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// SMESH SMESH_I : idl implementation based on 'SMESH' unit's calsses
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// File : SMESH_subMesh_i.cxx
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// Author : Paul RASCLE, EDF
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// Module : SMESH
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//
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#include "SMESH_subMesh_i.hxx"
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#include "SMESH_Gen_i.hxx"
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#include "SMESH_Mesh_i.hxx"
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#include "SMESH_PreMeshInfo.hxx"
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#include "Utils_CorbaException.hxx"
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#include "utilities.h"
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#include "OpUtil.hxx"
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#include "Utils_ExceptHandlers.hxx"
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#include <TopoDS_Iterator.hxx>
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#include <TopExp_Explorer.hxx>
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using namespace std;
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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_subMesh_i::SMESH_subMesh_i()
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: SALOME::GenericObj_i( PortableServer::POA::_nil() )
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{
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MESSAGE("SMESH_subMesh_i::SMESH_subMesh_i default, not for use");
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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_subMesh_i::SMESH_subMesh_i( PortableServer::POA_ptr thePOA,
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SMESH_Gen_i* gen_i,
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SMESH_Mesh_i* mesh_i,
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int localId )
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: SALOME::GenericObj_i( thePOA )
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{
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_gen_i = gen_i;
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_mesh_i = mesh_i;
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_localId = localId;
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_preMeshInfo = NULL;
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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_subMesh_i::~SMESH_subMesh_i()
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{
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MESSAGE("SMESH_subMesh_i::~SMESH_subMesh_i");
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if ( _preMeshInfo ) delete _preMeshInfo;
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_preMeshInfo = NULL;
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}
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//=======================================================================
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//function : getSubMeshes
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//purpose : for a submesh on shape to which elements are not bound directly,
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// return submeshes containing elements
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//=======================================================================
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typedef list<SMESHDS_SubMesh*> TListOfSubMeshes;
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bool getSubMeshes(::SMESH_subMesh* theSubMesh,
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TListOfSubMeshes& theSubMeshList)
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{
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int size = theSubMeshList.size();
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SMESH_Mesh* aMesh = theSubMesh->GetFather();
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SMESHDS_Mesh* aMeshDS = aMesh->GetMeshDS();
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SMESHDS_SubMesh* aSubMeshDS = theSubMesh->GetSubMeshDS();
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// nodes can be bound to either vertex, edge, face or solid_or_shell
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TopoDS_Shape aShape = theSubMesh->GetSubShape();
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switch ( aShape.ShapeType() )
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{
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case TopAbs_SOLID: {
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// add submesh of solid itself
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aSubMeshDS = aMeshDS->MeshElements( aShape );
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if ( aSubMeshDS )
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theSubMeshList.push_back( aSubMeshDS );
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// and of the first shell
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TopExp_Explorer exp( aShape, TopAbs_SHELL );
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if ( exp.More() ) {
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aSubMeshDS = aMeshDS->MeshElements( exp.Current() );
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if ( aSubMeshDS )
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theSubMeshList.push_back( aSubMeshDS );
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}
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break;
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}
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case TopAbs_WIRE:
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case TopAbs_COMPOUND:
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case TopAbs_COMPSOLID: {
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// call getSubMeshes() for sub-shapes
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list<TopoDS_Shape> shapeList;
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shapeList.push_back( aShape );
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list<TopoDS_Shape>::iterator sh = shapeList.begin();
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for ( ; sh != shapeList.end(); ++sh ) {
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for ( TopoDS_Iterator it( *sh ); it.More(); it.Next() ) {
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if ( ::SMESH_subMesh* aSubMesh = aMesh->GetSubMeshContaining( it.Value() ))
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getSubMeshes( aSubMesh, theSubMeshList ); // add found submesh or explore deeper
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else
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// no submesh for a compound inside compound
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shapeList.push_back( it.Value() );
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}
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}
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// return only unique submeshes
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set<SMESHDS_SubMesh*> smSet;
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TListOfSubMeshes::iterator sm = theSubMeshList.begin();
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while ( sm != theSubMeshList.end() ) {
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if ( !smSet.insert( *sm ).second )
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sm = theSubMeshList.erase( sm );
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else
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++sm;
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}
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break;
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}
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default:
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if ( aSubMeshDS )
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theSubMeshList.push_back( aSubMeshDS );
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}
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return size < theSubMeshList.size();
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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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CORBA::Long SMESH_subMesh_i::GetNumberOfElements()
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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if ( _preMeshInfo )
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return _preMeshInfo->NbElements();
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if ( _mesh_i->_mapSubMesh.find( _localId ) == _mesh_i->_mapSubMesh.end() )
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return 0;
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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SMESHDS_SubMesh* aSubMeshDS = aSubMesh->GetSubMeshDS();
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int nbElems = aSubMeshDS ? aSubMeshDS->NbElements() : 0;
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// volumes are bound to shell
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TListOfSubMeshes smList;
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if ( nbElems == 0 && getSubMeshes( aSubMesh, smList ))
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{
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TListOfSubMeshes::iterator sm = smList.begin();
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for ( ; sm != smList.end(); ++sm )
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nbElems += (*sm)->NbElements();
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}
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return nbElems;
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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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CORBA::Long SMESH_subMesh_i::GetNumberOfNodes(CORBA::Boolean all)
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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if ( _mesh_i->_mapSubMesh.find( _localId ) == _mesh_i->_mapSubMesh.end() )
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return 0;
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if ( _preMeshInfo )
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{
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if ( all ) return _preMeshInfo->NbNodes();
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else _preMeshInfo->FullLoadFromFile();
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}
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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SMESHDS_SubMesh* aSubMeshDS = aSubMesh->GetSubMeshDS();
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if ( aSubMeshDS && aSubMeshDS->IsComplexSubmesh() )
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{
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// sub-mesh on a geom group, always return all nodes
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return aSubMeshDS->NbNodes();
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}
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if ( aSubMeshDS && !all )
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{
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// return anything we have
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return aSubMeshDS->NbNodes();
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}
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if ( all ) // get nodes from aSubMesh and all child sub-meshes
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{
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int nbNodes = 0;
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SMESH_subMeshIteratorPtr smIt = aSubMesh->getDependsOnIterator( /*includeSelf=*/true );
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while ( smIt->more() )
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{
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aSubMesh = smIt->next();
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if (( aSubMeshDS = aSubMesh->GetSubMeshDS() ))
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nbNodes += aSubMeshDS->NbNodes();
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}
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}
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return aSubMeshDS ? aSubMeshDS->NbNodes() : 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::long_array* SMESH_subMesh_i::GetElementsId()
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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SMESH::long_array_var aResult = new SMESH::long_array();
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if ( _mesh_i->_mapSubMesh.find( _localId ) == _mesh_i->_mapSubMesh.end() )
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return aResult._retn();
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if ( _preMeshInfo )
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_preMeshInfo->FullLoadFromFile();
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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SMESHDS_SubMesh* aSubMeshDS = aSubMesh->GetSubMeshDS();
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int nbElems = aSubMeshDS ? aSubMeshDS->NbElements() : 0;
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TListOfSubMeshes smList;
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if ( nbElems )
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smList.push_back( aSubMeshDS );
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// volumes are bound to shell
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if ( nbElems == 0 && getSubMeshes( aSubMesh, smList ))
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{
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TListOfSubMeshes::iterator sm = smList.begin();
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for ( ; sm != smList.end(); ++sm )
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nbElems += (*sm)->NbElements();
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}
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aResult->length( nbElems );
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if ( nbElems )
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{
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TListOfSubMeshes::iterator sm = smList.begin();
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for ( int i = 0; sm != smList.end(); sm++ )
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{
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SMDS_ElemIteratorPtr anIt = (*sm)->GetElements();
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for ( ; i < nbElems && anIt->more(); i++ )
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aResult[i] = anIt->next()->GetID();
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}
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}
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return aResult._retn();
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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::long_array* SMESH_subMesh_i::GetElementsByType( SMESH::ElementType theElemType )
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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SMESH::long_array_var aResult = new SMESH::long_array();
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if ( _mesh_i->_mapSubMesh.find( _localId ) == _mesh_i->_mapSubMesh.end() )
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return aResult._retn();
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if ( _preMeshInfo )
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_preMeshInfo->FullLoadFromFile();
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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SMESHDS_SubMesh* aSubMeshDS = aSubMesh->GetSubMeshDS();
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// PAL5440, return all nodes belonging to elements of submesh
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set<int> nodeIds;
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int nbElems = aSubMeshDS ? aSubMeshDS->NbElements() : 0;
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// volumes may be bound to shell instead of solid
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TListOfSubMeshes smList;
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if ( nbElems == 0 && getSubMeshes( aSubMesh, smList ))
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{
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TListOfSubMeshes::iterator sm = smList.begin();
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for ( ; sm != smList.end(); ++sm )
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{
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if ( theElemType == SMESH::NODE )
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{
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SMDS_ElemIteratorPtr eIt = (*sm)->GetElements();
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if ( eIt->more() ) {
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while ( eIt->more() ) {
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const SMDS_MeshElement* anElem = eIt->next();
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SMDS_ElemIteratorPtr nIt = anElem->nodesIterator();
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while ( nIt->more() )
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nodeIds.insert( nIt->next()->GetID() );
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}
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} else {
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SMDS_NodeIteratorPtr nIt = (*sm)->GetNodes();
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while ( nIt->more() )
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nodeIds.insert( nIt->next()->GetID() );
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}
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}
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else
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{
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nbElems += (*sm)->NbElements();
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}
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}
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aSubMeshDS = 0;
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}
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else
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{
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if ( nbElems )
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smList.push_back( aSubMeshDS );
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}
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if ( theElemType == SMESH::NODE && aSubMeshDS )
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{
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SMDS_ElemIteratorPtr eIt = aSubMeshDS->GetElements();
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if ( eIt->more() ) {
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while ( eIt->more() ) {
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const SMDS_MeshElement* anElem = eIt->next();
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SMDS_ElemIteratorPtr nIt = anElem->nodesIterator();
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while ( nIt->more() )
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nodeIds.insert( nIt->next()->GetID() );
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}
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} else {
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SMDS_NodeIteratorPtr nIt = aSubMeshDS->GetNodes();
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while ( nIt->more() )
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nodeIds.insert( nIt->next()->GetID() );
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}
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}
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if ( theElemType == SMESH::NODE )
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aResult->length( nodeIds.size() );
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else
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aResult->length( nbElems );
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int i = 0, n = aResult->length();
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if ( theElemType == SMESH::NODE && !nodeIds.empty() ) {
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set<int>::iterator idIt = nodeIds.begin();
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for ( ; i < n && idIt != nodeIds.end() ; i++, idIt++ )
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aResult[i] = *idIt;
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}
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if ( theElemType != SMESH::NODE ) {
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TListOfSubMeshes::iterator sm = smList.begin();
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for ( i = 0; sm != smList.end(); sm++ )
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{
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aSubMeshDS = *sm;
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SMDS_ElemIteratorPtr anIt = aSubMeshDS->GetElements();
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while ( i < n && anIt->more() ) {
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const SMDS_MeshElement* anElem = anIt->next();
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if ( theElemType == SMESH::ALL || anElem->GetType() == (SMDSAbs_ElementType)theElemType )
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aResult[i++] = anElem->GetID();
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}
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}
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}
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aResult->length( i );
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return aResult._retn();
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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::long_array* SMESH_subMesh_i::GetNodesId()
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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SMESH::long_array_var aResult = GetElementsByType( SMESH::NODE );
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return aResult._retn();
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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::SMESH_Mesh_ptr SMESH_subMesh_i::GetFather()
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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return _mesh_i->_this();
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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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CORBA::Long SMESH_subMesh_i::GetId()
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{
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return _localId;
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}
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//=======================================================================
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//function : GetSubShape
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//purpose :
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//=======================================================================
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GEOM::GEOM_Object_ptr SMESH_subMesh_i::GetSubShape()
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throw (SALOME::SALOME_Exception)
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{
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Unexpect aCatch(SALOME_SalomeException);
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GEOM::GEOM_Object_var aShapeObj;
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try {
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if ( _mesh_i->_mapSubMesh.find( _localId ) != _mesh_i->_mapSubMesh.end()) {
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TopoDS_Shape S = _mesh_i->_mapSubMesh[ _localId ]->GetSubShape();
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if ( !S.IsNull() ) {
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aShapeObj = _gen_i->ShapeToGeomObject( S );
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//mzn: N7PAL16232, N7PAL16233
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//In some cases it's possible that GEOM_Client contains the shape same to S, but
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//with another orientation.
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if (aShapeObj->_is_nil())
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aShapeObj = _gen_i->ShapeToGeomObject( S.Reversed() );
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}
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}
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}
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catch(SALOME_Exception & S_ex) {
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THROW_SALOME_CORBA_EXCEPTION(S_ex.what(), SALOME::BAD_PARAM);
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}
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return aShapeObj._retn();
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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::long_array* SMESH_subMesh_i::GetIDs()
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{
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return GetElementsId();
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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::ElementType SMESH_subMesh_i::GetElementType( const CORBA::Long id, const bool iselem )
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throw (SALOME::SALOME_Exception)
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{
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if ( _preMeshInfo )
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_preMeshInfo->FullLoadFromFile();
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return GetFather()->GetElementType( id, iselem );
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}
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//=============================================================================
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/*
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* Returns number of mesh elements of each \a EntityType
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* @return array of number of elements per \a EntityType
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*/
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//=============================================================================
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SMESH::long_array* SMESH_subMesh_i::GetMeshInfo()
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{
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if ( _preMeshInfo )
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return _preMeshInfo->GetMeshInfo();
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SMESH::long_array_var aRes = new SMESH::long_array();
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aRes->length(SMESH::Entity_Last);
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for (int i = SMESH::Entity_Node; i < SMESH::Entity_Last; i++)
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aRes[i] = 0;
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// get number of nodes
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aRes[ SMESH::Entity_Node ] = GetNumberOfNodes(true);
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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// get statistic from child sub-meshes
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TListOfSubMeshes smList;
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if ( getSubMeshes( aSubMesh, smList ) )
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for ( TListOfSubMeshes::iterator sm = smList.begin(); sm != smList.end(); ++sm )
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SMESH_Mesh_i::CollectMeshInfo( (*sm)->GetElements(), aRes );
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return aRes._retn();
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}
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//=======================================================================
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/*
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* Returns number of mesh elements of each \a ElementType
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*/
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//=======================================================================
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SMESH::long_array* SMESH_subMesh_i::GetNbElementsByType()
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{
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SMESH::long_array_var aRes = new SMESH::long_array();
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aRes->length(SMESH::NB_ELEMENT_TYPES);
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for (int i = 0; i < SMESH::NB_ELEMENT_TYPES; i++)
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if ( _preMeshInfo )
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aRes[ i ] = _preMeshInfo->NbElements( SMDSAbs_ElementType( i ));
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else
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aRes[ i ] = 0;
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if ( !_preMeshInfo )
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{
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aRes[ SMESH::NODE ] = GetNumberOfNodes(true);
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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if ( SMESHDS_SubMesh* smDS = aSubMesh->GetSubMeshDS() )
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{
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SMDS_ElemIteratorPtr eIt = smDS->GetElements();
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if ( eIt->more() )
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aRes[ eIt->next()->GetType() ] = smDS->NbElements();
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}
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}
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return aRes._retn();
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}
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//=======================================================================
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//function : GetTypes
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//purpose : Returns types of elements it contains
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//=======================================================================
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SMESH::array_of_ElementType* SMESH_subMesh_i::GetTypes()
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{
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if ( _preMeshInfo )
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return _preMeshInfo->GetTypes();
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SMESH::array_of_ElementType_var types = new SMESH::array_of_ElementType;
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::SMESH_subMesh* aSubMesh = _mesh_i->_mapSubMesh[_localId];
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if ( SMESHDS_SubMesh* smDS = aSubMesh->GetSubMeshDS() )
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{
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SMDS_ElemIteratorPtr eIt = smDS->GetElements();
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if ( eIt->more() )
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{
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types->length( 1 );
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types[0] = SMESH::ElementType( eIt->next()->GetType());
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}
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else if ( smDS->GetNodes()->more() )
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{
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TopoDS_Shape shape = aSubMesh->GetSubShape();
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while ( !shape.IsNull() && shape.ShapeType() == TopAbs_COMPOUND )
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{
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TopoDS_Iterator it( shape );
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shape = it.More() ? it.Value() : TopoDS_Shape();
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}
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if ( !shape.IsNull() && shape.ShapeType() == TopAbs_VERTEX )
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{
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types->length( 1 );
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types[0] = SMESH::NODE;
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}
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}
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}
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return types._retn();
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}
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//=======================================================================
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//function : GetMesh
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//purpose : interface SMESH_IDSource
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//=======================================================================
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SMESH::SMESH_Mesh_ptr SMESH_subMesh_i::GetMesh()
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{
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return GetFather();
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}
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//=======================================================================
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//function : IsMeshInfoCorrect
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//purpose : * Returns false if GetMeshInfo() returns incorrect information that may
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// * happen if mesh data is not yet fully loaded from the file of study.
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//=======================================================================
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bool SMESH_subMesh_i::IsMeshInfoCorrect()
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{
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return _preMeshInfo ? _preMeshInfo->IsMeshInfoCorrect() : true;
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}
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