smesh/src/SMESH/SMESH_Gen.cxx

770 lines
25 KiB
C++
Raw Normal View History

2009-02-17 10:27:49 +05:00
// Copyright (C) 2007-2008 CEA/DEN, EDF R&D, OPEN CASCADE
2003-07-10 16:13:42 +06:00
//
2009-02-17 10:27:49 +05:00
// Copyright (C) 2003-2007 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
2004-12-01 15:48:31 +05:00
// 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
//
2009-02-17 10:27:49 +05:00
// See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
2003-07-10 16:13:42 +06:00
//
2009-02-17 10:27:49 +05:00
// SMESH SMESH : implementaion of SMESH idl descriptions
2003-07-10 16:13:42 +06:00
// File : SMESH_Gen.cxx
// Author : Paul RASCLE, EDF
// Module : SMESH
2003-05-19 19:18:36 +06:00
#include "SMESH_Gen.hxx"
#include "SMESH_subMesh.hxx"
#include "SMESH_HypoFilter.hxx"
#include "SMESHDS_Document.hxx"
2003-05-19 19:18:36 +06:00
#include "SMDS_MeshElement.hxx"
#include "SMDS_MeshNode.hxx"
2004-06-18 14:55:35 +06:00
#include "utilities.h"
#include "OpUtil.hxx"
2004-12-01 15:48:31 +05:00
#include "Utils_ExceptHandlers.hxx"
2003-05-19 19:18:36 +06:00
#include <gp_Pnt.hxx>
#include <BRep_Tool.hxx>
2004-06-18 14:55:35 +06:00
#include <TopTools_ListOfShape.hxx>
#include <TopTools_ListIteratorOfListOfShape.hxx>
2003-05-19 19:18:36 +06:00
2004-12-01 15:48:31 +05:00
using namespace std;
2003-05-19 19:18:36 +06:00
//=============================================================================
/*!
* default constructor:
*/
//=============================================================================
SMESH_Gen::SMESH_Gen()
{
MESSAGE("SMESH_Gen::SMESH_Gen");
_localId = 0;
2004-06-18 14:55:35 +06:00
_hypId = 0;
2009-02-17 10:27:49 +05:00
_segmentation = 10;
2003-05-19 19:18:36 +06:00
}
//=============================================================================
/*!
2004-12-01 15:48:31 +05:00
*
2003-05-19 19:18:36 +06:00
*/
//=============================================================================
SMESH_Gen::~SMESH_Gen()
{
MESSAGE("SMESH_Gen::~SMESH_Gen");
2003-05-19 19:18:36 +06:00
}
//=============================================================================
/*!
2004-12-01 15:48:31 +05:00
*
2003-05-19 19:18:36 +06:00
*/
//=============================================================================
2004-06-18 14:55:35 +06:00
/*SMESH_Hypothesis *SMESH_Gen::CreateHypothesis(const char *anHyp, int studyId)
throw(SALOME_Exception)
2003-05-19 19:18:36 +06:00
{
MESSAGE("CreateHypothesis("<<anHyp<<","<<studyId<<")");
// Get studyContext, create it if it does'nt exist, with a SMESHDS_Document
2003-05-19 19:18:36 +06:00
StudyContextStruct *myStudyContext = GetStudyContext(studyId);
2003-05-19 19:18:36 +06:00
// create a new hypothesis object, store its ref. in studyContext
2003-05-19 19:18:36 +06:00
SMESH_Hypothesis *myHypothesis = _hypothesisFactory.Create(anHyp, studyId);
int hypId = myHypothesis->GetID();
myStudyContext->mapHypothesis[hypId] = myHypothesis;
SCRUTE(studyId);
SCRUTE(hypId);
2003-05-19 19:18:36 +06:00
// store hypothesis in SMESHDS document
2003-05-19 19:18:36 +06:00
myStudyContext->myDocument->AddHypothesis(myHypothesis);
return myHypothesis;
2004-06-18 14:55:35 +06:00
}*/
2003-05-19 19:18:36 +06:00
//=============================================================================
/*!
2004-12-01 15:48:31 +05:00
*
2003-05-19 19:18:36 +06:00
*/
//=============================================================================
SMESH_Mesh* SMESH_Gen::CreateMesh(int theStudyId, bool theIsEmbeddedMode)
throw(SALOME_Exception)
2003-05-19 19:18:36 +06:00
{
Unexpect aCatch(SalomeException);
MESSAGE("SMESH_Gen::CreateMesh");
2003-05-19 19:18:36 +06:00
// Get studyContext, create it if it does'nt exist, with a SMESHDS_Document
StudyContextStruct *aStudyContext = GetStudyContext(theStudyId);
2003-05-19 19:18:36 +06:00
// create a new SMESH_mesh object
SMESH_Mesh *aMesh = new SMESH_Mesh(_localId++,
theStudyId,
this,
theIsEmbeddedMode,
aStudyContext->myDocument);
aStudyContext->mapMesh[_localId] = aMesh;
2003-05-19 19:18:36 +06:00
return aMesh;
2003-05-19 19:18:36 +06:00
}
//=============================================================================
/*!
* Compute a mesh
2003-05-19 19:18:36 +06:00
*/
//=============================================================================
2009-02-17 10:27:49 +05:00
bool SMESH_Gen::Compute(SMESH_Mesh & aMesh,
const TopoDS_Shape & aShape,
const bool anUpward,
const ::MeshDimension aDim,
TSetOfInt* aShapesId)
2003-05-19 19:18:36 +06:00
{
2004-06-18 14:55:35 +06:00
MESSAGE("SMESH_Gen::Compute");
bool ret = true;
SMESH_subMesh *sm = aMesh.GetSubMesh(aShape);
const bool includeSelf = true;
const bool complexShapeFirst = true;
2004-06-18 14:55:35 +06:00
2009-02-17 10:27:49 +05:00
SMESH_subMeshIteratorPtr smIt;
if ( anUpward ) // is called from below code here
2004-06-18 14:55:35 +06:00
{
2009-02-17 10:27:49 +05:00
// -----------------------------------------------
// mesh all the subshapes starting from vertices
// -----------------------------------------------
smIt = sm->getDependsOnIterator(includeSelf, !complexShapeFirst);
while ( smIt->more() )
{
SMESH_subMesh* smToCompute = smIt->next();
2009-02-17 10:27:49 +05:00
// do not mesh vertices of a pseudo shape
const TopAbs_ShapeEnum aShType = smToCompute->GetSubShape().ShapeType();
if ( !aMesh.HasShapeToMesh() && aShType == TopAbs_VERTEX )
continue;
// check for preview dimension limitations
if ( aShapesId && GetShapeDim( aShType ) > (int)aDim )
{
// clear compute state to not show previous compute errors
// if preview invoked less dimension less than previous
smToCompute->ComputeStateEngine( SMESH_subMesh::CHECK_COMPUTE_STATE );
continue;
}
2004-06-18 14:55:35 +06:00
if (smToCompute->GetComputeState() == SMESH_subMesh::READY_TO_COMPUTE)
smToCompute->ComputeStateEngine( SMESH_subMesh::COMPUTE );
2004-06-18 14:55:35 +06:00
2009-02-17 10:27:49 +05:00
// we check all the submeshes here and detect if any of them failed to compute
if (smToCompute->GetComputeState() == SMESH_subMesh::FAILED_TO_COMPUTE)
2009-02-17 10:27:49 +05:00
ret = false;
else if ( aShapesId )
aShapesId->insert( smToCompute->GetId() );
}
2009-02-17 10:27:49 +05:00
return ret;
}
else
{
// -----------------------------------------------------------------
// apply algos that DO NOT require descretized boundaries and DO NOT
// support submeshes, starting from the most complex shapes
// and collect submeshes with algos that DO support submeshes
// -----------------------------------------------------------------
list< SMESH_subMesh* > smWithAlgoSupportingSubmeshes;
smIt = sm->getDependsOnIterator(includeSelf, complexShapeFirst);
while ( smIt->more() )
2004-06-18 14:55:35 +06:00
{
2009-02-17 10:27:49 +05:00
SMESH_subMesh* smToCompute = smIt->next();
if ( smToCompute->GetComputeState() != SMESH_subMesh::READY_TO_COMPUTE )
continue;
const TopoDS_Shape& aSubShape = smToCompute->GetSubShape();
const int aShapeDim = GetShapeDim( aSubShape );
if ( aShapeDim < 1 ) break;
2009-02-17 10:27:49 +05:00
// check for preview dimension limitations
if ( aShapesId && aShapeDim > (int)aDim )
continue;
SMESH_Algo* algo = GetAlgo( aMesh, aSubShape );
if ( algo && !algo->NeedDescretBoundary() )
{
if ( algo->SupportSubmeshes() )
smWithAlgoSupportingSubmeshes.push_back( smToCompute );
else
{
smToCompute->ComputeStateEngine( SMESH_subMesh::COMPUTE );
if ( aShapesId )
aShapesId->insert( smToCompute->GetId() );
}
}
2004-06-18 14:55:35 +06:00
}
2009-02-17 10:27:49 +05:00
// ------------------------------------------------------------
// compute submeshes under shapes with algos that DO NOT require
// descretized boundaries and DO support submeshes
// ------------------------------------------------------------
list< SMESH_subMesh* >::reverse_iterator subIt, subEnd;
subIt = smWithAlgoSupportingSubmeshes.rbegin();
subEnd = smWithAlgoSupportingSubmeshes.rend();
// start from lower shapes
for ( ; subIt != subEnd; ++subIt )
{
sm = *subIt;
2004-12-01 15:48:31 +05:00
2009-02-17 10:27:49 +05:00
// get a shape the algo is assigned to
TopoDS_Shape algoShape;
if ( !GetAlgo( aMesh, sm->GetSubShape(), & algoShape ))
continue; // strange...
2009-02-17 10:27:49 +05:00
// look for more local algos
smIt = sm->getDependsOnIterator(!includeSelf, !complexShapeFirst);
while ( smIt->more() )
{
SMESH_subMesh* smToCompute = smIt->next();
const TopoDS_Shape& aSubShape = smToCompute->GetSubShape();
const int aShapeDim = GetShapeDim( aSubShape );
//if ( aSubShape.ShapeType() == TopAbs_VERTEX ) continue;
if ( aShapeDim < 1 ) continue;
// check for preview dimension limitations
if ( aShapesId && GetShapeDim( aSubShape.ShapeType() ) > (int)aDim )
continue;
SMESH_HypoFilter filter( SMESH_HypoFilter::IsAlgo() );
filter
.And( SMESH_HypoFilter::IsApplicableTo( aSubShape ))
.And( SMESH_HypoFilter::IsMoreLocalThan( algoShape ));
if ( SMESH_Algo* subAlgo = (SMESH_Algo*) aMesh.GetHypothesis( aSubShape, filter, true )) {
SMESH_Hypothesis::Hypothesis_Status status;
if ( subAlgo->CheckHypothesis( aMesh, aSubShape, status ))
// mesh a lower smToCompute starting from vertices
Compute( aMesh, aSubShape, /*anUpward=*/true, aDim, aShapesId );
}
}
}
// ----------------------------------------------------------
// apply the algos that do not require descretized boundaries
// ----------------------------------------------------------
for ( subIt = smWithAlgoSupportingSubmeshes.rbegin(); subIt != subEnd; ++subIt )
if ( sm->GetComputeState() == SMESH_subMesh::READY_TO_COMPUTE)
{
const TopAbs_ShapeEnum aShType = sm->GetSubShape().ShapeType();
// check for preview dimension limitations
if ( aShapesId && GetShapeDim( aShType ) > (int)aDim )
continue;
sm->ComputeStateEngine( SMESH_subMesh::COMPUTE );
if ( aShapesId )
aShapesId->insert( sm->GetId() );
}
2009-02-17 10:27:49 +05:00
// -----------------------------------------------
// mesh the rest subshapes starting from vertices
// -----------------------------------------------
ret = Compute( aMesh, aShape, /*anUpward=*/true, aDim, aShapesId );
2004-12-01 15:48:31 +05:00
}
2004-12-17 16:07:35 +05:00
MESSAGE( "VSR - SMESH_Gen::Compute() finished, OK = " << ret);
return ret;
2004-06-18 14:55:35 +06:00
}
2003-05-19 19:18:36 +06:00
2004-06-18 14:55:35 +06:00
//=======================================================================
//function : checkConformIgnoredAlgos
2004-12-01 15:48:31 +05:00
//purpose :
2004-06-18 14:55:35 +06:00
//=======================================================================
2003-05-19 19:18:36 +06:00
2004-06-18 14:55:35 +06:00
static bool checkConformIgnoredAlgos(SMESH_Mesh& aMesh,
SMESH_subMesh* aSubMesh,
const SMESH_Algo* aGlobIgnoAlgo,
const SMESH_Algo* aLocIgnoAlgo,
bool & checkConform,
2005-11-14 14:11:54 +05:00
map<int, SMESH_subMesh*>& aCheckedMap,
list< SMESH_Gen::TAlgoStateError > & theErrors)
2004-06-18 14:55:35 +06:00
{
ASSERT( aSubMesh );
if ( aSubMesh->GetSubShape().ShapeType() == TopAbs_VERTEX)
return true;
bool ret = true;
const list<const SMESHDS_Hypothesis*>& listHyp =
aMesh.GetMeshDS()->GetHypothesis( aSubMesh->GetSubShape() );
list<const SMESHDS_Hypothesis*>::const_iterator it=listHyp.begin();
for ( ; it != listHyp.end(); it++)
{
const SMESHDS_Hypothesis * aHyp = *it;
if (aHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
continue;
const SMESH_Algo* algo = dynamic_cast<const SMESH_Algo*> (aHyp);
ASSERT ( algo );
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
if ( aLocIgnoAlgo ) // algo is hidden by a local algo of upper dim
{
INFOS( "Local <" << algo->GetName() << "> is hidden by local <"
<< aLocIgnoAlgo->GetName() << ">");
}
else
{
bool isGlobal = (aMesh.IsMainShape( aSubMesh->GetSubShape() ));
int dim = algo->GetDim();
int aMaxGlobIgnoDim = ( aGlobIgnoAlgo ? aGlobIgnoAlgo->GetDim() : -1 );
if ( dim < aMaxGlobIgnoDim )
{
// algo is hidden by a global algo
2004-12-01 15:48:31 +05:00
INFOS( ( isGlobal ? "Global" : "Local" )
2004-06-18 14:55:35 +06:00
<< " <" << algo->GetName() << "> is hidden by global <"
<< aGlobIgnoAlgo->GetName() << ">");
}
else if ( !algo->NeedDescretBoundary() && !isGlobal)
{
// local algo is not hidden and hides algos on sub-shapes
if (checkConform && !aSubMesh->IsConform( algo ))
{
ret = false;
checkConform = false; // no more check conformity
INFOS( "ERROR: Local <" << algo->GetName() <<
"> would produce not conform mesh: "
"<Not Conform Mesh Allowed> hypotesis is missing");
2005-11-14 14:11:54 +05:00
theErrors.push_back( SMESH_Gen::TAlgoStateError() );
theErrors.back().Set( SMESH_Hypothesis::HYP_NOTCONFORM, algo, false );
2004-06-18 14:55:35 +06:00
}
// sub-algos will be hidden by a local <algo>
const map<int, SMESH_subMesh*>& smMap = aSubMesh->DependsOn();
map<int, SMESH_subMesh*>::const_reverse_iterator revItSub;
bool checkConform2 = false;
2005-11-14 14:11:54 +05:00
for ( revItSub = smMap.rbegin(); revItSub != smMap.rend(); revItSub++)
2004-06-18 14:55:35 +06:00
{
checkConformIgnoredAlgos (aMesh, (*revItSub).second, aGlobIgnoAlgo,
2005-11-14 14:11:54 +05:00
algo, checkConform2, aCheckedMap, theErrors);
2004-06-18 14:55:35 +06:00
int key = (*revItSub).first;
SMESH_subMesh* sm = (*revItSub).second;
if ( aCheckedMap.find( key ) == aCheckedMap.end() )
{
aCheckedMap[ key ] = sm;
}
}
}
}
}
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
return ret;
}
2003-05-19 19:18:36 +06:00
2004-06-18 14:55:35 +06:00
//=======================================================================
//function : checkMissing
//purpose : notify on missing hypothesis
// Return false if algo or hipothesis is missing
//=======================================================================
static bool checkMissing(SMESH_Gen* aGen,
SMESH_Mesh& aMesh,
SMESH_subMesh* aSubMesh,
const int aTopAlgoDim,
bool* globalChecked,
const bool checkNoAlgo,
2005-11-14 14:11:54 +05:00
map<int, SMESH_subMesh*>& aCheckedMap,
list< SMESH_Gen::TAlgoStateError > & theErrors)
2003-05-19 19:18:36 +06:00
{
2004-06-18 14:55:35 +06:00
if ( aSubMesh->GetSubShape().ShapeType() == TopAbs_VERTEX)
return true;
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
//MESSAGE("=====checkMissing");
int ret = true;
SMESH_Algo* algo = 0;
switch (aSubMesh->GetAlgoState())
{
case SMESH_subMesh::NO_ALGO: {
if (checkNoAlgo)
{
// should there be any algo?
int shapeDim = SMESH_Gen::GetShapeDim( aSubMesh->GetSubShape() );
if (aTopAlgoDim > shapeDim)
{
MESSAGE( "ERROR: " << shapeDim << "D algorithm is missing" );
2004-06-18 14:55:35 +06:00
ret = false;
2005-11-14 14:11:54 +05:00
theErrors.push_back( SMESH_Gen::TAlgoStateError() );
theErrors.back().Set( SMESH_Hypothesis::HYP_MISSING, shapeDim, true );
2004-06-18 14:55:35 +06:00
}
}
return ret;
}
case SMESH_subMesh::MISSING_HYP: {
// notify if an algo missing hyp is attached to aSubMesh
algo = aGen->GetAlgo( aMesh, aSubMesh->GetSubShape() );
ASSERT( algo );
bool IsGlobalHypothesis = aGen->IsGlobalHypothesis( algo, aMesh );
if (!IsGlobalHypothesis || !globalChecked[ algo->GetDim() ])
2004-06-18 14:55:35 +06:00
{
TAlgoStateErrorName errName = SMESH_Hypothesis::HYP_MISSING;
SMESH_Hypothesis::Hypothesis_Status status;
algo->CheckHypothesis( aMesh, aSubMesh->GetSubShape(), status );
if ( status == SMESH_Hypothesis::HYP_BAD_PARAMETER ) {
MESSAGE( "ERROR: hypothesis of " << (IsGlobalHypothesis ? "Global " : "Local ")
<< "<" << algo->GetName() << "> has a bad parameter value");
errName = status;
} else if ( status == SMESH_Hypothesis::HYP_BAD_GEOMETRY ) {
MESSAGE( "ERROR: " << (IsGlobalHypothesis ? "Global " : "Local ")
<< "<" << algo->GetName() << "> assigned to mismatching geometry");
errName = status;
} else {
MESSAGE( "ERROR: " << (IsGlobalHypothesis ? "Global " : "Local ")
<< "<" << algo->GetName() << "> misses some hypothesis");
}
if (IsGlobalHypothesis)
2004-06-18 14:55:35 +06:00
globalChecked[ algo->GetDim() ] = true;
2005-11-14 14:11:54 +05:00
theErrors.push_back( SMESH_Gen::TAlgoStateError() );
theErrors.back().Set( errName, algo, IsGlobalHypothesis );
2004-06-18 14:55:35 +06:00
}
ret = false;
break;
}
case SMESH_subMesh::HYP_OK:
algo = aGen->GetAlgo( aMesh, aSubMesh->GetSubShape() );
ret = true;
break;
default: ASSERT(0);
}
// do not check under algo that hides sub-algos or
// re-start checking NO_ALGO state
ASSERT (algo);
bool isTopLocalAlgo =
( aTopAlgoDim <= algo->GetDim() && !aGen->IsGlobalHypothesis( algo, aMesh ));
2004-06-18 14:55:35 +06:00
if (!algo->NeedDescretBoundary() || isTopLocalAlgo)
{
bool checkNoAlgo2 = ( algo->NeedDescretBoundary() );
const map<int, SMESH_subMesh*>& subMeshes = aSubMesh->DependsOn();
map<int, SMESH_subMesh*>::const_iterator itsub;
for (itsub = subMeshes.begin(); itsub != subMeshes.end(); itsub++)
{
// sub-meshes should not be checked further more
int key = (*itsub).first;
SMESH_subMesh* sm = (*itsub).second;
if ( aCheckedMap.find( key ) == aCheckedMap.end() )
aCheckedMap[ key ] = sm;
if (isTopLocalAlgo)
{
//check algo on sub-meshes
int aTopAlgoDim2 = algo->GetDim();
if (!checkMissing (aGen, aMesh, sm, aTopAlgoDim2,
2005-11-14 14:11:54 +05:00
globalChecked, checkNoAlgo2, aCheckedMap, theErrors))
2004-06-18 14:55:35 +06:00
{
ret = false;
if (sm->GetAlgoState() == SMESH_subMesh::NO_ALGO )
checkNoAlgo2 = false;
}
}
}
}
return ret;
}
2003-05-19 19:18:36 +06:00
2004-06-18 14:55:35 +06:00
//=======================================================================
//function : CheckAlgoState
//purpose : notify on bad state of attached algos, return false
// if Compute() would fail because of some algo bad state
//=======================================================================
2003-05-19 19:18:36 +06:00
2004-06-18 14:55:35 +06:00
bool SMESH_Gen::CheckAlgoState(SMESH_Mesh& aMesh, const TopoDS_Shape& aShape)
2005-11-14 14:11:54 +05:00
{
list< TAlgoStateError > errors;
return GetAlgoState( aMesh, aShape, errors );
}
//=======================================================================
//function : GetAlgoState
//purpose : notify on bad state of attached algos, return false
// if Compute() would fail because of some algo bad state
// theErrors list contains problems description
//=======================================================================
bool SMESH_Gen::GetAlgoState(SMESH_Mesh& theMesh,
const TopoDS_Shape& theShape,
list< TAlgoStateError > & theErrors)
2004-06-18 14:55:35 +06:00
{
//MESSAGE("SMESH_Gen::CheckAlgoState");
bool ret = true;
bool hasAlgo = false;
2005-11-14 14:11:54 +05:00
SMESH_subMesh* sm = theMesh.GetSubMesh(theShape);
const SMESHDS_Mesh* meshDS = theMesh.GetMeshDS();
2004-06-18 14:55:35 +06:00
TopoDS_Shape mainShape = meshDS->ShapeToMesh();
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
// -----------------
// get global algos
// -----------------
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
const SMESH_Algo* aGlobAlgoArr[] = {0,0,0,0};
const list<const SMESHDS_Hypothesis*>& listHyp = meshDS->GetHypothesis( mainShape );
list<const SMESHDS_Hypothesis*>::const_iterator it=listHyp.begin();
for ( ; it != listHyp.end(); it++)
{
const SMESHDS_Hypothesis * aHyp = *it;
if (aHyp->GetType() == SMESHDS_Hypothesis::PARAM_ALGO)
continue;
const SMESH_Algo* algo = dynamic_cast<const SMESH_Algo*> (aHyp);
ASSERT ( algo );
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
int dim = algo->GetDim();
aGlobAlgoArr[ dim ] = algo;
hasAlgo = true;
}
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
// --------------------------------------------------------
// info on algos that will be ignored because of ones that
// don't NeedDescretBoundary() attached to super-shapes,
// check that a conform mesh will be produced
// --------------------------------------------------------
// find a global algo possibly hiding sub-algos
2004-06-18 14:55:35 +06:00
int dim;
const SMESH_Algo* aGlobIgnoAlgo = 0;
for (dim = 3; dim > 0; dim--)
{
if (aGlobAlgoArr[ dim ] &&
!aGlobAlgoArr[ dim ]->NeedDescretBoundary())
{
aGlobIgnoAlgo = aGlobAlgoArr[ dim ];
break;
}
}
const map<int, SMESH_subMesh*>& smMap = sm->DependsOn();
map<int, SMESH_subMesh*>::const_reverse_iterator revItSub = smMap.rbegin();
map<int, SMESH_subMesh*> aCheckedMap;
2005-11-14 14:11:54 +05:00
bool checkConform = ( !theMesh.IsNotConformAllowed() );
2004-06-18 14:55:35 +06:00
int aKey = 1;
SMESH_subMesh* smToCheck = sm;
2005-11-14 14:11:54 +05:00
// loop on theShape and its sub-shapes
2004-06-18 14:55:35 +06:00
while ( smToCheck )
{
if ( smToCheck->GetSubShape().ShapeType() == TopAbs_VERTEX)
break;
if ( aCheckedMap.find( aKey ) == aCheckedMap.end() )
2005-11-14 14:11:54 +05:00
if (!checkConformIgnoredAlgos (theMesh, smToCheck, aGlobIgnoAlgo,
0, checkConform, aCheckedMap, theErrors))
2004-06-18 14:55:35 +06:00
ret = false;
if ( smToCheck->GetAlgoState() != SMESH_subMesh::NO_ALGO )
hasAlgo = true;
// next subMesh
if (revItSub != smMap.rend())
{
aKey = (*revItSub).first;
smToCheck = (*revItSub).second;
revItSub++;
}
else
{
smToCheck = 0;
}
}
// ----------------------------------------------------------------
// info on missing hypothesis and find out if all needed algos are
// well defined
// ----------------------------------------------------------------
//MESSAGE( "---info on missing hypothesis and find out if all needed algos are");
2004-12-01 15:48:31 +05:00
2004-06-18 14:55:35 +06:00
// find max dim of global algo
int aTopAlgoDim = 0;
for (dim = 3; dim > 0; dim--)
{
if (aGlobAlgoArr[ dim ])
{
aTopAlgoDim = dim;
break;
}
}
aCheckedMap.clear();
smToCheck = sm;
revItSub = smMap.rbegin();
bool checkNoAlgo = theMesh.HasShapeToMesh() ? bool( aTopAlgoDim ) : false;
2004-06-18 14:55:35 +06:00
bool globalChecked[] = { false, false, false, false };
2005-11-14 14:11:54 +05:00
// loop on theShape and its sub-shapes
2004-06-18 14:55:35 +06:00
while ( smToCheck )
{
if ( smToCheck->GetSubShape().ShapeType() == TopAbs_VERTEX)
break;
if ( aCheckedMap.find( aKey ) == aCheckedMap.end() )
2005-11-14 14:11:54 +05:00
if (!checkMissing (this, theMesh, smToCheck, aTopAlgoDim,
globalChecked, checkNoAlgo, aCheckedMap, theErrors))
2004-06-18 14:55:35 +06:00
{
ret = false;
if (smToCheck->GetAlgoState() == SMESH_subMesh::NO_ALGO )
checkNoAlgo = false;
}
// next subMesh
if (revItSub != smMap.rend())
{
aKey = (*revItSub).first;
smToCheck = (*revItSub).second;
revItSub++;
}
else
smToCheck = 0;
}
2005-11-14 14:11:54 +05:00
if ( !hasAlgo ) {
ret = false;
2004-06-18 14:55:35 +06:00
INFOS( "None algorithm attached" );
2005-11-14 14:11:54 +05:00
theErrors.push_back( TAlgoStateError() );
theErrors.back().Set( SMESH_Hypothesis::HYP_MISSING, 1, true );
2005-11-14 14:11:54 +05:00
}
2004-06-18 14:55:35 +06:00
2005-11-14 14:11:54 +05:00
return ret;
2004-06-18 14:55:35 +06:00
}
2003-05-19 19:18:36 +06:00
2004-06-18 14:55:35 +06:00
//=======================================================================
//function : IsGlobalHypothesis
2004-06-18 14:55:35 +06:00
//purpose : check if theAlgo is attached to the main shape
//=======================================================================
2003-05-19 19:18:36 +06:00
bool SMESH_Gen::IsGlobalHypothesis(const SMESH_Hypothesis* theHyp, SMESH_Mesh& aMesh)
2004-06-18 14:55:35 +06:00
{
SMESH_HypoFilter filter( SMESH_HypoFilter::Is( theHyp ));
return aMesh.GetHypothesis( aMesh.GetMeshDS()->ShapeToMesh(), filter, false );
2004-06-18 14:55:35 +06:00
}
//=============================================================================
/*!
2004-12-01 15:48:31 +05:00
*
2004-06-18 14:55:35 +06:00
*/
//=============================================================================
2003-05-19 19:18:36 +06:00
2009-02-17 10:27:49 +05:00
SMESH_Algo *SMESH_Gen::GetAlgo(SMESH_Mesh & aMesh,
const TopoDS_Shape & aShape,
TopoDS_Shape* assignedTo)
2004-06-18 14:55:35 +06:00
{
SMESH_HypoFilter filter( SMESH_HypoFilter::IsAlgo() );
filter.And( filter.IsApplicableTo( aShape ));
2004-06-18 14:55:35 +06:00
2009-02-17 10:27:49 +05:00
return (SMESH_Algo*) aMesh.GetHypothesis( aShape, filter, true, assignedTo );
2003-05-19 19:18:36 +06:00
}
//=============================================================================
/*!
2004-12-01 15:48:31 +05:00
*
2003-05-19 19:18:36 +06:00
*/
//=============================================================================
StudyContextStruct *SMESH_Gen::GetStudyContext(int studyId)
2003-05-19 19:18:36 +06:00
{
// Get studyContext, create it if it does'nt exist, with a SMESHDS_Document
if (_mapStudyContext.find(studyId) == _mapStudyContext.end())
{
_mapStudyContext[studyId] = new StudyContextStruct;
_mapStudyContext[studyId]->myDocument = new SMESHDS_Document(studyId);
}
StudyContextStruct *myStudyContext = _mapStudyContext[studyId];
2003-05-19 19:18:36 +06:00
// ASSERT(_mapStudyContext.find(studyId) != _mapStudyContext.end());
return myStudyContext;
2003-05-19 19:18:36 +06:00
}
2009-02-17 10:27:49 +05:00
// //=============================================================================
// /*!
// *
// */
// //=============================================================================
2003-05-19 19:18:36 +06:00
2009-02-17 10:27:49 +05:00
// void SMESH_Gen::Save(int studyId, const char *aUrlOfFile)
// {
// }
2003-05-19 19:18:36 +06:00
2009-02-17 10:27:49 +05:00
// //=============================================================================
// /*!
// *
// */
// //=============================================================================
2003-05-19 19:18:36 +06:00
2009-02-17 10:27:49 +05:00
// void SMESH_Gen::Load(int studyId, const char *aUrlOfFile)
// {
// }
2003-05-19 19:18:36 +06:00
2009-02-17 10:27:49 +05:00
// //=============================================================================
// /*!
// *
// */
// //=============================================================================
2003-05-19 19:18:36 +06:00
2009-02-17 10:27:49 +05:00
// void SMESH_Gen::Close(int studyId)
// {
// }
2003-05-19 19:18:36 +06:00
//=============================================================================
/*!
2004-12-01 15:48:31 +05:00
*
2003-05-19 19:18:36 +06:00
*/
//=============================================================================
2004-06-18 14:55:35 +06:00
int SMESH_Gen::GetShapeDim(const TopAbs_ShapeEnum & aShapeType)
2003-05-19 19:18:36 +06:00
{
static vector<int> dim;
if ( dim.empty() )
{
dim.resize( TopAbs_SHAPE, -1 );
2009-02-17 10:27:49 +05:00
dim[ TopAbs_COMPOUND ] = MeshDim_3D;
dim[ TopAbs_COMPSOLID ] = MeshDim_3D;
dim[ TopAbs_SOLID ] = MeshDim_3D;
dim[ TopAbs_SHELL ] = MeshDim_3D;
dim[ TopAbs_FACE ] = MeshDim_2D;
dim[ TopAbs_WIRE ] = MeshDim_1D;
dim[ TopAbs_EDGE ] = MeshDim_1D;
dim[ TopAbs_VERTEX ] = MeshDim_0D;
}
return dim[ aShapeType ];
2003-05-19 19:18:36 +06:00
}
2004-06-18 14:55:35 +06:00
//=============================================================================
/*!
*
*/
2004-06-18 14:55:35 +06:00
//=============================================================================
2004-06-18 14:55:35 +06:00
int SMESH_Gen::GetANewId()
{
//MESSAGE("SMESH_Gen::GetANewId");
return _hypId++;
}