smesh/src/SMESH/SMESH_Mesh.cxx

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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.opencascade.org/SALOME/ or email : webmaster.salome@opencascade.org
//
//
//
// File : SMESH_Mesh.cxx
// Author : Paul RASCLE, EDF
// Module : SMESH
// $Header$
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#include "SMESH_Mesh.hxx"
#include "SMESH_subMesh.hxx"
#include "SMESH_Gen.hxx"
#include "SMESH_Hypothesis.hxx"
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#include "SMESH_Group.hxx"
#include "SMESHDS_Group.hxx"
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#include "SMESHDS_Script.hxx"
#include "SMDS_MeshVolume.hxx"
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#include "utilities.h"
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#include "DriverMED_W_SMESHDS_Mesh.h"
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#include "DriverDAT_W_SMDS_Mesh.h"
#include "DriverUNV_W_SMDS_Mesh.h"
#include "DriverSTL_W_SMDS_Mesh.h"
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#include "DriverMED_R_SMESHDS_Mesh.h"
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#include "DriverUNV_R_SMDS_Mesh.h"
#include "DriverSTL_R_SMDS_Mesh.h"
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#include <TCollection_AsciiString.hxx>
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#include <memory>
#include <TopTools_ListOfShape.hxx>
#include <TopExp.hxx>
#include <TopTools_ListIteratorOfListOfShape.hxx>
#include "Utils_ExceptHandlers.hxx"
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#ifdef _DEBUG_
static int MYDEBUG = 0;
#else
static int MYDEBUG = 0;
#endif
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//=============================================================================
/*!
*
*/
//=============================================================================
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SMESH_Mesh::SMESH_Mesh(int localId, int studyId, SMESH_Gen * gen, SMESHDS_Document * myDocument)
: _groupId( 0 )
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{
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INFOS("SMESH_Mesh::SMESH_Mesh(int localId)");
_id = localId;
_studyId = studyId;
_gen = gen;
_myDocument = myDocument;
_idDoc = _myDocument->NewMesh();
_myMeshDS = _myDocument->GetMesh(_idDoc);
_isShapeToMesh = false;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
SMESH_Mesh::~SMESH_Mesh()
{
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INFOS("SMESH_Mesh::~SMESH_Mesh");
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// delete groups
map < int, SMESH_Group * >::iterator itg;
for (itg = _mapGroup.begin(); itg != _mapGroup.end(); itg++) {
SMESH_Group *aGroup = (*itg).second;
delete aGroup;
}
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}
//=============================================================================
/*!
*
*/
//=============================================================================
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void SMESH_Mesh::ShapeToMesh(const TopoDS_Shape & aShape){
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if(MYDEBUG) MESSAGE("SMESH_Mesh::ShapeToMesh");
if (_isShapeToMesh)
throw
SALOME_Exception(LOCALIZED
("a shape to mesh as already been defined"));
_isShapeToMesh = true;
_myMeshDS->ShapeToMesh(aShape);
// NRI : 24/02/03
//EAP: 1/9/04 TopExp::MapShapes(aShape, _subShapes); USE the same map of _myMeshDS
}
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//=======================================================================
//function : UNVToMesh
//purpose :
//=======================================================================
int SMESH_Mesh::UNVToMesh(const char* theFileName)
{
if(MYDEBUG) MESSAGE("UNVToMesh - theFileName = "<<theFileName);
if(_isShapeToMesh)
throw SALOME_Exception(LOCALIZED("a shape to mesh as already been defined"));
_isShapeToMesh = true;
DriverUNV_R_SMDS_Mesh myReader;
myReader.SetMesh(_myMeshDS);
myReader.SetFile(theFileName);
myReader.SetMeshId(-1);
myReader.Perform();
if(MYDEBUG){
MESSAGE("MEDToMesh - _myMeshDS->NbNodes() = "<<_myMeshDS->NbNodes());
MESSAGE("MEDToMesh - _myMeshDS->NbEdges() = "<<_myMeshDS->NbEdges());
MESSAGE("MEDToMesh - _myMeshDS->NbFaces() = "<<_myMeshDS->NbFaces());
MESSAGE("MEDToMesh - _myMeshDS->NbVolumes() = "<<_myMeshDS->NbVolumes());
}
return 1;
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}
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//=======================================================================
//function : MEDToMesh
//purpose :
//=======================================================================
int SMESH_Mesh::MEDToMesh(const char* theFileName, const char* theMeshName)
{
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if(MYDEBUG) MESSAGE("MEDToMesh - theFileName = "<<theFileName<<", mesh name = "<<theMeshName);
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if(_isShapeToMesh)
throw SALOME_Exception(LOCALIZED("a shape to mesh as already been defined"));
_isShapeToMesh = true;
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DriverMED_R_SMESHDS_Mesh myReader;
myReader.SetMesh(_myMeshDS);
myReader.SetMeshId(-1);
myReader.SetFile(theFileName);
myReader.SetMeshName(theMeshName);
Driver_Mesh::Status status = myReader.Perform();
if(MYDEBUG){
MESSAGE("MEDToMesh - _myMeshDS->NbNodes() = "<<_myMeshDS->NbNodes());
MESSAGE("MEDToMesh - _myMeshDS->NbEdges() = "<<_myMeshDS->NbEdges());
MESSAGE("MEDToMesh - _myMeshDS->NbFaces() = "<<_myMeshDS->NbFaces());
MESSAGE("MEDToMesh - _myMeshDS->NbVolumes() = "<<_myMeshDS->NbVolumes());
}
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// Reading groups (sub-meshes are out of scope of MED import functionality)
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list<string> aGroupNames = myReader.GetGroupNames();
if(MYDEBUG) MESSAGE("MEDToMesh - Nb groups = "<<aGroupNames.size());
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int anId;
for ( list<string>::iterator it = aGroupNames.begin(); it != aGroupNames.end(); it++ ) {
SMESH_Group* aGroup = AddGroup( SMDSAbs_All, it->c_str(), anId );
if ( aGroup ) {
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if(MYDEBUG) MESSAGE("MEDToMesh - group added: "<<it->c_str());
SMESHDS_Group* aGroupDS = dynamic_cast<SMESHDS_Group*>( aGroup->GetGroupDS() );
if ( aGroupDS ) {
aGroupDS->SetStoreName( it->c_str() );
myReader.GetGroup( aGroupDS );
}
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}
}
return (int) status;
}
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//=======================================================================
//function : STLToMesh
//purpose :
//=======================================================================
int SMESH_Mesh::STLToMesh(const char* theFileName)
{
if(MYDEBUG) MESSAGE("UNVToMesh - theFileName = "<<theFileName);
if(_isShapeToMesh)
throw SALOME_Exception(LOCALIZED("a shape to mesh as already been defined"));
_isShapeToMesh = true;
DriverSTL_R_SMDS_Mesh myReader;
myReader.SetMesh(_myMeshDS);
myReader.SetFile(theFileName);
myReader.SetMeshId(-1);
myReader.Perform();
if(MYDEBUG){
MESSAGE("MEDToMesh - _myMeshDS->NbNodes() = "<<_myMeshDS->NbNodes());
MESSAGE("MEDToMesh - _myMeshDS->NbEdges() = "<<_myMeshDS->NbEdges());
MESSAGE("MEDToMesh - _myMeshDS->NbFaces() = "<<_myMeshDS->NbFaces());
MESSAGE("MEDToMesh - _myMeshDS->NbVolumes() = "<<_myMeshDS->NbVolumes());
}
return 1;
}
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//=============================================================================
/*!
*
*/
//=============================================================================
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SMESH_Hypothesis::Hypothesis_Status
SMESH_Mesh::AddHypothesis(const TopoDS_Shape & aSubShape,
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int anHypId ) throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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if(MYDEBUG) MESSAGE("SMESH_Mesh::AddHypothesis");
SMESH_subMesh *subMesh = GetSubMesh(aSubShape);
SMESHDS_SubMesh *subMeshDS = subMesh->GetSubMeshDS();
if ( subMeshDS && subMeshDS->IsComplexSubmesh() )
{
// return the worst but not fatal state of all group memebers
SMESH_Hypothesis::Hypothesis_Status aBestRet, aWorstNotFatal, ret;
aBestRet = SMESH_Hypothesis::HYP_BAD_DIM;
aWorstNotFatal = SMESH_Hypothesis::HYP_OK;
for ( TopoDS_Iterator itS ( aSubShape ); itS.More(); itS.Next())
{
ret = AddHypothesis( itS.Value(), anHypId );
if ( !SMESH_Hypothesis::IsStatusFatal( ret ) && ret > aWorstNotFatal )
aWorstNotFatal = ret;
if ( ret < aBestRet )
aBestRet = ret;
}
if ( SMESH_Hypothesis::IsStatusFatal( aBestRet ))
return aBestRet;
return aWorstNotFatal;
}
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StudyContextStruct *sc = _gen->GetStudyContext(_studyId);
if (sc->mapHypothesis.find(anHypId) == sc->mapHypothesis.end())
{
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if(MYDEBUG) MESSAGE("Hypothesis ID does not give an hypothesis");
if(MYDEBUG) {
SCRUTE(_studyId);
SCRUTE(anHypId);
}
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throw SALOME_Exception(LOCALIZED("hypothesis does not exist"));
}
SMESH_Hypothesis *anHyp = sc->mapHypothesis[anHypId];
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if(MYDEBUG) SCRUTE( anHyp->GetName() );
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int event;
bool isGlobalHyp = IsMainShape( aSubShape );
// NotConformAllowed can be only global
if ( !isGlobalHyp )
{
string hypName = anHyp->GetName();
if ( hypName == "NotConformAllowed" )
{
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if(MYDEBUG) MESSAGE( "Hypotesis <NotConformAllowed> can be only global" );
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return SMESH_Hypothesis::HYP_INCOMPATIBLE;
}
}
// shape
if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
event = SMESH_subMesh::ADD_HYP;
else
event = SMESH_subMesh::ADD_ALGO;
SMESH_Hypothesis::Hypothesis_Status ret = subMesh->AlgoStateEngine(event, anHyp);
// subShapes
if (!SMESH_Hypothesis::IsStatusFatal(ret) &&
!subMesh->IsApplicableHypotesis( anHyp )) // is added on father
{
if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
event = SMESH_subMesh::ADD_FATHER_HYP;
else
event = SMESH_subMesh::ADD_FATHER_ALGO;
SMESH_Hypothesis::Hypothesis_Status ret2 =
subMesh->SubMeshesAlgoStateEngine(event, anHyp);
if (ret2 > ret)
ret = ret2;
}
subMesh->DumpAlgoState(true);
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if(MYDEBUG) SCRUTE(ret);
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return ret;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
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SMESH_Hypothesis::Hypothesis_Status
SMESH_Mesh::RemoveHypothesis(const TopoDS_Shape & aSubShape,
int anHypId)throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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if(MYDEBUG) MESSAGE("SMESH_Mesh::RemoveHypothesis");
SMESH_subMesh *subMesh = GetSubMesh(aSubShape);
SMESHDS_SubMesh *subMeshDS = subMesh->GetSubMeshDS();
if ( subMeshDS && subMeshDS->IsComplexSubmesh() )
{
// return the worst but not fatal state of all group memebers
SMESH_Hypothesis::Hypothesis_Status aBestRet, aWorstNotFatal, ret;
aBestRet = SMESH_Hypothesis::HYP_BAD_DIM;
aWorstNotFatal = SMESH_Hypothesis::HYP_OK;
for ( TopoDS_Iterator itS ( aSubShape ); itS.More(); itS.Next())
{
ret = RemoveHypothesis( itS.Value(), anHypId );
if ( !SMESH_Hypothesis::IsStatusFatal( ret ) && ret > aWorstNotFatal )
aWorstNotFatal = ret;
if ( ret < aBestRet )
aBestRet = ret;
}
if ( SMESH_Hypothesis::IsStatusFatal( aBestRet ))
return aBestRet;
return aWorstNotFatal;
}
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StudyContextStruct *sc = _gen->GetStudyContext(_studyId);
if (sc->mapHypothesis.find(anHypId) == sc->mapHypothesis.end())
throw SALOME_Exception(LOCALIZED("hypothesis does not exist"));
SMESH_Hypothesis *anHyp = sc->mapHypothesis[anHypId];
int hypType = anHyp->GetType();
if(MYDEBUG) SCRUTE(hypType);
int event;
// shape
if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
event = SMESH_subMesh::REMOVE_HYP;
else
event = SMESH_subMesh::REMOVE_ALGO;
SMESH_Hypothesis::Hypothesis_Status ret = subMesh->AlgoStateEngine(event, anHyp);
// subShapes
if (!SMESH_Hypothesis::IsStatusFatal(ret) &&
!subMesh->IsApplicableHypotesis( anHyp )) // is removed from father
{
if (anHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
event = SMESH_subMesh::REMOVE_FATHER_HYP;
else
event = SMESH_subMesh::REMOVE_FATHER_ALGO;
SMESH_Hypothesis::Hypothesis_Status ret2 =
subMesh->SubMeshesAlgoStateEngine(event, anHyp);
if (ret2 > ret) // more severe
ret = ret2;
}
subMesh->DumpAlgoState(true);
if(MYDEBUG) SCRUTE(ret);
return ret;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
SMESHDS_Mesh * SMESH_Mesh::GetMeshDS()
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{
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return _myMeshDS;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
const list<const SMESHDS_Hypothesis*>&
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SMESH_Mesh::GetHypothesisList(const TopoDS_Shape & aSubShape) const
throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
return _myMeshDS->GetHypothesis(aSubShape);
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}
//=============================================================================
/*!
*
*/
//=============================================================================
const list<SMESHDS_Command*> & SMESH_Mesh::GetLog() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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if(MYDEBUG) MESSAGE("SMESH_Mesh::GetLog");
return _myMeshDS->GetScript()->GetCommands();
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}
//=============================================================================
/*!
*
*/
//=============================================================================
void SMESH_Mesh::ClearLog() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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if(MYDEBUG) MESSAGE("SMESH_Mesh::ClearLog");
_myMeshDS->GetScript()->Clear();
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}
//=============================================================================
/*!
*
*/
//=============================================================================
int SMESH_Mesh::GetId()
{
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if(MYDEBUG) MESSAGE("SMESH_Mesh::GetId");
return _id;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
SMESH_Gen *SMESH_Mesh::GetGen()
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{
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return _gen;
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}
//=============================================================================
/*!
* Get or Create the SMESH_subMesh object implementation
*/
//=============================================================================
SMESH_subMesh *SMESH_Mesh::GetSubMesh(const TopoDS_Shape & aSubShape)
throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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SMESH_subMesh *aSubMesh;
int index = _myMeshDS->ShapeToIndex(aSubShape);
// for submeshes on GEOM Group
if ( !index && aSubShape.ShapeType() == TopAbs_COMPOUND ) {
TopoDS_Iterator it( aSubShape );
if ( it.More() )
index = _myMeshDS->AddCompoundSubmesh( aSubShape, it.Value().ShapeType() );
}
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if (_mapSubMesh.find(index) != _mapSubMesh.end())
{
aSubMesh = _mapSubMesh[index];
}
else
{
aSubMesh = new SMESH_subMesh(index, this, _myMeshDS, aSubShape);
_mapSubMesh[index] = aSubMesh;
}
return aSubMesh;
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}
//=============================================================================
/*!
* Get the SMESH_subMesh object implementation. Dont create it, return null
* if it does not exist.
*/
//=============================================================================
SMESH_subMesh *SMESH_Mesh::GetSubMeshContaining(const TopoDS_Shape & aSubShape)
throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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bool isFound = false;
SMESH_subMesh *aSubMesh = NULL;
int index = _myMeshDS->ShapeToIndex(aSubShape);
if (_mapSubMesh.find(index) != _mapSubMesh.end())
{
aSubMesh = _mapSubMesh[index];
isFound = true;
}
if (!isFound)
aSubMesh = NULL;
return aSubMesh;
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}
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//=======================================================================
//function : IsUsedHypothesis
//purpose : Return True if anHyp is used to mesh aSubShape
//=======================================================================
bool SMESH_Mesh::IsUsedHypothesis(SMESHDS_Hypothesis * anHyp,
const TopoDS_Shape & aSubShape)
{
// check if anHyp is applicable to aSubShape
SMESH_subMesh * subMesh = GetSubMeshContaining( aSubShape );
if (!subMesh ||
!subMesh->IsApplicableHypotesis(static_cast<SMESH_Hypothesis*>(anHyp)))
return false;
SMESH_Algo *algo = _gen->GetAlgo(*this, aSubShape);
// algorithm
if (anHyp->GetType() > SMESHDS_Hypothesis::PARAM_ALGO)
return ( anHyp == algo );
// algorithm parameter
if (algo)
{
// look trough hypotheses used by algo
const list <const SMESHDS_Hypothesis * >&usedHyps =
algo->GetUsedHypothesis(*this, aSubShape);
list <const SMESHDS_Hypothesis * >::const_iterator itl;
for (itl = usedHyps.begin(); itl != usedHyps.end(); itl++)
if (anHyp == (*itl))
return true;
}
else
{
// look through all assigned hypotheses
{
const list <const SMESHDS_Hypothesis * >&usedHyps =
_myMeshDS->GetHypothesis( aSubShape );
list <const SMESHDS_Hypothesis * >::const_iterator itl;
for (itl = usedHyps.begin(); itl != usedHyps.end(); itl++)
if (anHyp == (*itl))
return true;
}
// on ancestors
TopTools_ListIteratorOfListOfShape it( GetAncestors( aSubShape ));
for (; it.More(); it.Next())
{
const list <const SMESHDS_Hypothesis * >&usedHyps =
_myMeshDS->GetHypothesis( aSubShape );
list <const SMESHDS_Hypothesis * >::const_iterator itl;
for (itl = usedHyps.begin(); itl != usedHyps.end(); itl++)
if (anHyp == (*itl))
return true;
}
}
return false;
}
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//=============================================================================
/*!
*
*/
//=============================================================================
const list < SMESH_subMesh * >&
SMESH_Mesh::GetSubMeshUsingHypothesis(SMESHDS_Hypothesis * anHyp)
throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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if(MYDEBUG) MESSAGE("SMESH_Mesh::GetSubMeshUsingHypothesis");
map < int, SMESH_subMesh * >::iterator itsm;
_subMeshesUsingHypothesisList.clear();
for (itsm = _mapSubMesh.begin(); itsm != _mapSubMesh.end(); itsm++)
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{
SMESH_subMesh *aSubMesh = (*itsm).second;
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if ( IsUsedHypothesis ( anHyp, aSubMesh->GetSubShape() ))
_subMeshesUsingHypothesisList.push_back(aSubMesh);
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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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//=============================================================================
void SMESH_Mesh::ExportMED(const char *file, const char* theMeshName, bool theAutoGroups) throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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DriverMED_W_SMESHDS_Mesh myWriter;
myWriter.SetFile ( file );
myWriter.SetMesh ( _myMeshDS );
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if ( !theMeshName )
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myWriter.SetMeshId ( _idDoc );
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else {
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myWriter.SetMeshId ( -1 );
myWriter.SetMeshName( theMeshName );
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}
if ( theAutoGroups ) {
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myWriter.AddGroupOfNodes();
myWriter.AddGroupOfEdges();
myWriter.AddGroupOfFaces();
myWriter.AddGroupOfVolumes();
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}
for ( map<int, SMESH_Group*>::iterator it = _mapGroup.begin(); it != _mapGroup.end(); it++ ) {
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SMESH_Group* aGroup = it->second;
SMESHDS_GroupBase* aGroupDS = aGroup->GetGroupDS();
if ( aGroupDS ) {
aGroupDS->SetStoreName( aGroup->GetName() );
myWriter.AddGroup( aGroupDS );
}
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}
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myWriter.Perform();
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}
void SMESH_Mesh::ExportDAT(const char *file) throw(SALOME_Exception)
{
Unexpect aCatch(SalomeException);
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DriverDAT_W_SMDS_Mesh myWriter;
myWriter.SetFile(string(file));
myWriter.SetMesh(_myMeshDS);
myWriter.SetMeshId(_idDoc);
myWriter.Perform();
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}
void SMESH_Mesh::ExportUNV(const char *file) throw(SALOME_Exception)
{
Unexpect aCatch(SalomeException);
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DriverUNV_W_SMDS_Mesh myWriter;
myWriter.SetFile(string(file));
myWriter.SetMesh(_myMeshDS);
myWriter.SetMeshId(_idDoc);
myWriter.Perform();
}
void SMESH_Mesh::ExportSTL(const char *file, const bool isascii) throw(SALOME_Exception)
{
Unexpect aCatch(SalomeException);
DriverSTL_W_SMDS_Mesh myWriter;
myWriter.SetFile(string(file));
myWriter.SetIsAscii( isascii );
myWriter.SetMesh(_myMeshDS);
myWriter.SetMeshId(_idDoc);
myWriter.Perform();
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}
//=============================================================================
/*!
*
*/
//=============================================================================
int SMESH_Mesh::NbNodes() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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return _myMeshDS->NbNodes();
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}
//=============================================================================
/*!
*
*/
//=============================================================================
int SMESH_Mesh::NbEdges() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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return _myMeshDS->NbEdges();
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}
//=============================================================================
/*!
*
*/
//=============================================================================
int SMESH_Mesh::NbFaces() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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return _myMeshDS->NbFaces();
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}
///////////////////////////////////////////////////////////////////////////////
/// Return the number of 3 nodes faces in the mesh. This method run in O(n)
///////////////////////////////////////////////////////////////////////////////
int SMESH_Mesh::NbTriangles() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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int Nb = 0;
SMDS_FaceIteratorPtr itFaces=_myMeshDS->facesIterator();
while(itFaces->more()) if(itFaces->next()->NbNodes()==3) Nb++;
return Nb;
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}
///////////////////////////////////////////////////////////////////////////////
/// Return the number of 4 nodes faces in the mesh. This method run in O(n)
///////////////////////////////////////////////////////////////////////////////
int SMESH_Mesh::NbQuadrangles() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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int Nb = 0;
SMDS_FaceIteratorPtr itFaces=_myMeshDS->facesIterator();
while(itFaces->more()) if(itFaces->next()->NbNodes()==4) Nb++;
return Nb;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
int SMESH_Mesh::NbVolumes() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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return _myMeshDS->NbVolumes();
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}
int SMESH_Mesh::NbTetras() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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int Nb = 0;
SMDS_VolumeIteratorPtr itVolumes=_myMeshDS->volumesIterator();
while(itVolumes->more()) if(itVolumes->next()->NbNodes()==4) Nb++;
return Nb;
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}
int SMESH_Mesh::NbHexas() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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int Nb = 0;
SMDS_VolumeIteratorPtr itVolumes=_myMeshDS->volumesIterator();
while(itVolumes->more()) if(itVolumes->next()->NbNodes()==8) Nb++;
return Nb;
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}
int SMESH_Mesh::NbPyramids() throw(SALOME_Exception)
{
Unexpect aCatch(SalomeException);
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int Nb = 0;
SMDS_VolumeIteratorPtr itVolumes=_myMeshDS->volumesIterator();
while(itVolumes->more()) if(itVolumes->next()->NbNodes()==5) Nb++;
return Nb;
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}
int SMESH_Mesh::NbPrisms() throw(SALOME_Exception)
{
Unexpect aCatch(SalomeException);
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int Nb = 0;
SMDS_VolumeIteratorPtr itVolumes=_myMeshDS->volumesIterator();
while(itVolumes->more()) if(itVolumes->next()->NbNodes()==6) Nb++;
return Nb;
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}
//=============================================================================
/*!
*
*/
//=============================================================================
int SMESH_Mesh::NbSubMesh() throw(SALOME_Exception)
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{
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Unexpect aCatch(SalomeException);
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return _myMeshDS->NbSubMesh();
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}
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//=======================================================================
//function : IsNotConformAllowed
//purpose : check if a hypothesis alowing notconform mesh is present
//=======================================================================
bool SMESH_Mesh::IsNotConformAllowed() const
{
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if(MYDEBUG) MESSAGE("SMESH_Mesh::IsNotConformAllowed");
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const list<const SMESHDS_Hypothesis*>& listHyp =
_myMeshDS->GetHypothesis( _myMeshDS->ShapeToMesh() );
list<const SMESHDS_Hypothesis*>::const_iterator it=listHyp.begin();
while (it!=listHyp.end())
{
const SMESHDS_Hypothesis *aHyp = *it;
string hypName = aHyp->GetName();
if ( hypName == "NotConformAllowed" )
return true;
it++;
}
return false;
}
//=======================================================================
//function : IsMainShape
//purpose :
//=======================================================================
bool SMESH_Mesh::IsMainShape(const TopoDS_Shape& theShape) const
{
return theShape.IsSame(_myMeshDS->ShapeToMesh() );
}
//=============================================================================
/*!
*
*/
//=============================================================================
SMESH_Group* SMESH_Mesh::AddGroup (const SMDSAbs_ElementType theType,
const char* theName,
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int& theId,
const TopoDS_Shape& theShape)
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{
if (_mapGroup.find(_groupId) != _mapGroup.end())
return NULL;
theId = _groupId;
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SMESH_Group* aGroup = new SMESH_Group (theId, this, theType, theName, theShape);
GetMeshDS()->AddGroup( aGroup->GetGroupDS() );
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_mapGroup[_groupId++] = aGroup;
return aGroup;
}
//=============================================================================
/*!
*
*/
//=============================================================================
SMESH_Group* SMESH_Mesh::GetGroup (const int theGroupID)
{
if (_mapGroup.find(theGroupID) == _mapGroup.end())
return NULL;
return _mapGroup[theGroupID];
}
//=============================================================================
/*!
*
*/
//=============================================================================
list<int> SMESH_Mesh::GetGroupIds()
{
list<int> anIds;
for ( map<int, SMESH_Group*>::const_iterator it = _mapGroup.begin(); it != _mapGroup.end(); it++ )
anIds.push_back( it->first );
return anIds;
}
//=============================================================================
/*!
*
*/
//=============================================================================
void SMESH_Mesh::RemoveGroup (const int theGroupID)
{
if (_mapGroup.find(theGroupID) == _mapGroup.end())
return;
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GetMeshDS()->RemoveGroup( _mapGroup[theGroupID]->GetGroupDS() );
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_mapGroup.erase (theGroupID);
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delete _mapGroup[theGroupID];
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}
//=======================================================================
//function : GetAncestors
//purpose : return list of ancestors of theSubShape in the order
// that lower dimention shapes come first.
//=======================================================================
const TopTools_ListOfShape& SMESH_Mesh::GetAncestors(const TopoDS_Shape& theS)
{
if ( _mapAncestors.IsEmpty() )
{
// fill _mapAncestors
int desType, ancType;
for ( desType = TopAbs_EDGE; desType > TopAbs_COMPOUND; desType-- )
for ( ancType = desType - 1; ancType >= TopAbs_COMPOUND; ancType-- )
TopExp::MapShapesAndAncestors (_myMeshDS->ShapeToMesh(),
(TopAbs_ShapeEnum) desType,
(TopAbs_ShapeEnum) ancType,
_mapAncestors );
}
if ( _mapAncestors.Contains( theS ) )
return _mapAncestors.FindFromKey( theS );
static TopTools_ListOfShape emptyList;
return emptyList;
}
//=======================================================================
//function : Dump
//purpose : dumps contents of mesh to stream [ debug purposes ]
//=======================================================================
ostream& SMESH_Mesh::Dump(ostream& save)
{
save << "========================== Dump contents of mesh ==========================" << endl;
save << "1) Total number of nodes: " << NbNodes() << endl;
save << "2) Total number of edges: " << NbEdges() << endl;
save << "3) Total number of faces: " << NbFaces() << endl;
if ( NbFaces() > 0 ) {
int nb3 = NbTriangles();
int nb4 = NbQuadrangles();
save << "3.1.) Number of triangles: " << nb3 << endl;
save << "3.2.) Number of quadrangles: " << nb4 << endl;
if ( nb3 + nb4 != NbFaces() ) {
map<int,int> myFaceMap;
SMDS_FaceIteratorPtr itFaces=_myMeshDS->facesIterator();
while( itFaces->more( ) ) {
int nbNodes = itFaces->next()->NbNodes();
if ( myFaceMap.find( nbNodes ) == myFaceMap.end() )
myFaceMap[ nbNodes ] = 0;
myFaceMap[ nbNodes ] = myFaceMap[ nbNodes ] + 1;
}
save << "3.3.) Faces in detail: " << endl;
map <int,int>::iterator itF;
for (itF = myFaceMap.begin(); itF != myFaceMap.end(); itF++)
save << "--> nb nodes: " << itF->first << " - nb elemens: " << itF->second << endl;
}
}
save << "4) Total number of volumes: " << NbVolumes() << endl;
if ( NbVolumes() > 0 ) {
int nb8 = NbHexas();
int nb4 = NbTetras();
int nb5 = NbPyramids();
int nb6 = NbPrisms();
save << "4.1.) Number of hexahedrons: " << nb8 << endl;
save << "4.2.) Number of tetrahedrons: " << nb4 << endl;
save << "4.3.) Number of prisms: " << nb6 << endl;
save << "4.4.) Number of pyramides: " << nb5 << endl;
if ( nb8 + nb4 + nb5 + nb6 != NbVolumes() ) {
map<int,int> myVolumesMap;
SMDS_VolumeIteratorPtr itVolumes=_myMeshDS->volumesIterator();
while( itVolumes->more( ) ) {
int nbNodes = itVolumes->next()->NbNodes();
if ( myVolumesMap.find( nbNodes ) == myVolumesMap.end() )
myVolumesMap[ nbNodes ] = 0;
myVolumesMap[ nbNodes ] = myVolumesMap[ nbNodes ] + 1;
}
save << "4.5.) Volumes in detail: " << endl;
map <int,int>::iterator itV;
for (itV = myVolumesMap.begin(); itV != myVolumesMap.end(); itV++)
save << "--> nb nodes: " << itV->first << " - nb elemens: " << itV->second << endl;
}
}
save << "===========================================================================" << endl;
return save;
}