#include "SMESH_Gen.hxx"
#include "SMESH_subMesh.hxx"
+#include "SMESH_HypoFilter.hxx"
#include "SMDS_MeshElement.hxx"
#include "SMDS_MeshNode.hxx"
// notify if an algo missing hyp is attached to aSubMesh
algo = aGen->GetAlgo( aMesh, aSubMesh->GetSubShape() );
ASSERT( algo );
- bool isGlobalAlgo = aGen->IsGlobalAlgo( algo, aMesh );
- if (!isGlobalAlgo || !globalChecked[ algo->GetDim() ])
+ bool IsGlobalHypothesis = aGen->IsGlobalHypothesis( algo, aMesh );
+ if (!IsGlobalHypothesis || !globalChecked[ algo->GetDim() ])
{
- INFOS( "ERROR: " << (isGlobalAlgo ? "Global " : "Local ")
+ INFOS( "ERROR: " << (IsGlobalHypothesis ? "Global " : "Local ")
<< "<" << algo->GetName() << "> misses some hypothesis");
- if (isGlobalAlgo)
+ if (IsGlobalHypothesis)
globalChecked[ algo->GetDim() ] = true;
}
ret = false;
// re-start checking NO_ALGO state
ASSERT (algo);
bool isTopLocalAlgo =
- ( aTopAlgoDim <= algo->GetDim() && !aGen->IsGlobalAlgo( algo, aMesh ));
+ ( aTopAlgoDim <= algo->GetDim() && !aGen->IsGlobalHypothesis( algo, aMesh ));
if (!algo->NeedDescretBoundary() || isTopLocalAlgo)
{
bool checkNoAlgo2 = ( algo->NeedDescretBoundary() );
}
//=======================================================================
-//function : IsGlobalAlgo
+//function : IsGlobalHypothesis
//purpose : check if theAlgo is attached to the main shape
//=======================================================================
-bool SMESH_Gen::IsGlobalAlgo(const SMESH_Algo* theAlgo, SMESH_Mesh& aMesh)
+bool SMESH_Gen::IsGlobalHypothesis(const SMESH_Hypothesis* theHyp, SMESH_Mesh& aMesh)
{
- const SMESHDS_Mesh* meshDS = aMesh.GetMeshDS();
- TopoDS_Shape mainShape = meshDS->ShapeToMesh();
- const list<const SMESHDS_Hypothesis*>& listHyp = meshDS->GetHypothesis( mainShape );
- list<const SMESHDS_Hypothesis*>::const_iterator it=listHyp.begin();
- for ( ; it != listHyp.end(); it++)
- if ( *it == theAlgo )
- return true;
-
- return false;
-}
-
-
-//=======================================================================
-//function : getAlgoId
-//purpose : return algo ID or -1 if not found
-//=======================================================================
-
-static int getAlgo(const list<const SMESHDS_Hypothesis*>& theHypList,
- const int theAlgoDim,
- const int theAlgoShapeType)
-{
- list<const SMESHDS_Hypothesis*>::const_iterator it = theHypList.begin();
-
- int nb_algo = 0;
- int algo_id = -1;
-
- while (it!=theHypList.end())
- {
- const SMESH_Hypothesis *anHyp = static_cast< const SMESH_Hypothesis *>( *it );
- if (anHyp->GetType() > SMESHDS_Hypothesis::PARAM_ALGO &&
- anHyp->GetDim() == theAlgoDim &&
- ((anHyp->GetShapeType()) & (1 << theAlgoShapeType)))
- {
- nb_algo++;
- algo_id = anHyp->GetID();
- break;
- }
-
- //if (nb_algo > 1) return -1; // more than one algo
- it++;
- }
-
- return algo_id;
+ SMESH_HypoFilter filter( SMESH_HypoFilter::Is( theHyp ));
+ return aMesh.GetHypothesis( aMesh.GetMeshDS()->ShapeToMesh(), filter, false );
}
//=============================================================================
{
// MESSAGE("SMESH_Gen::GetAlgo");
- const SMESHDS_Mesh * meshDS = aMesh.GetMeshDS();
- int dim = GetShapeDim( aShape );
- int shape_type = aShape.ShapeType();
- int algo_id = -1;
-
- algo_id = getAlgo( meshDS->GetHypothesis( aShape ), dim, shape_type );
+ SMESH_HypoFilter filter( SMESH_HypoFilter::IsAlgo() );
+ filter.And( filter.IsApplicableTo( aShape ));
- if (algo_id < 0)
- {
- // try ansestors
- TopTools_ListIteratorOfListOfShape ancIt( aMesh.GetAncestors( aShape ));
- for (; ancIt.More(); ancIt.Next())
- {
- const TopoDS_Shape& ancestor = ancIt.Value();
- algo_id = getAlgo( meshDS->GetHypothesis( ancestor ), dim, shape_type );
- if ( algo_id >= 0 )
- break;
- }
- if (algo_id < 0) return NULL;
- }
+ list <const SMESHDS_Hypothesis * > algoList;
+ aMesh.GetHypotheses( aShape, filter, algoList, true );
+ if (algoList.size() != 1 )
+ return NULL;
- ASSERT(_mapAlgo.find(algo_id) != _mapAlgo.end());
-
- return _mapAlgo[algo_id];
-
-// const SMESHDS_Hypothesis *theHyp = NULL;
-// SMESH_Algo *algo = NULL;
-// const SMESHDS_Mesh * meshDS = aMesh.GetMeshDS();
-// int hypType;
-// int hypId;
-// int algoDim;
-
-// // try shape first, then main shape
-
-// TopoDS_Shape mainShape = meshDS->ShapeToMesh();
-// const TopoDS_Shape *shapeToTry[2] = { &aShape, &mainShape };
-
-// for (int iShape = 0; iShape < 2; iShape++)
-// {
-// TopoDS_Shape tryShape = (*shapeToTry[iShape]);
-
-// const list<const SMESHDS_Hypothesis*>& listHyp =
-// meshDS->GetHypothesis(tryShape);
-// list<const SMESHDS_Hypothesis*>::const_iterator it=listHyp.begin();
-
-// int nb_algo = 0;
-// int shapeDim = GetShapeDim(aShape);
-// int typeOfShape = aShape.ShapeType();
-
-// while (it!=listHyp.end())
-// {
-// const SMESHDS_Hypothesis *anHyp = *it;
-// hypType = anHyp->GetType();
-// //SCRUTE(hypType);
-// if (hypType > SMESHDS_Hypothesis::PARAM_ALGO)
-// {
-// switch (hypType)
-// {
-// case SMESHDS_Hypothesis::ALGO_1D:
-// algoDim = 1;
-// break;
-// case SMESHDS_Hypothesis::ALGO_2D:
-// algoDim = 2;
-// break;
-// case SMESHDS_Hypothesis::ALGO_3D:
-// algoDim = 3;
-// break;
-// default:
-// algoDim = 0;
-// break;
-// }
-// //SCRUTE(algoDim);
-// //SCRUTE(shapeDim);
-// //SCRUTE(typeOfShape);
-// if (shapeDim == algoDim) // count only algos of shape dim.
-// { // discard algos for subshapes
-// hypId = anHyp->GetID(); // (of lower dim.)
-// ASSERT(_mapAlgo.find(hypId) != _mapAlgo.end());
-// SMESH_Algo *anAlgo = _mapAlgo[hypId];
-// //SCRUTE(anAlgo->GetShapeType());
-// //if (anAlgo->GetShapeType() == typeOfShape)
-// if ((anAlgo->GetShapeType()) & (1 << typeOfShape))
-// { // only specific TopoDS_Shape
-// nb_algo++;
-// theHyp = anHyp;
-// }
-// }
-// }
-// if (nb_algo > 1) return NULL; // more than one algo
-// it++;
-// }
-// if (nb_algo == 1) // one algo found : OK
-// break; // do not try a parent shape
-// }
-
-// if (!theHyp)
-// return NULL; // no algo found
-
-// hypType = theHyp->GetType();
-// hypId = theHyp->GetID();
-
-// ASSERT(_mapAlgo.find(hypId) != _mapAlgo.end());
-// algo = _mapAlgo[hypId];
-// //MESSAGE("Algo found " << algo->GetName() << " Id " << hypId);
-// return algo;
+ return const_cast<SMESH_Algo*> ( static_cast<const SMESH_Algo* >( algoList.front() ));
}
//=============================================================================