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0022098: EDF 2036 SMESH: Create groups from none conected parts of a mesh
Move SMESH_ElementSearcher to from SMESH/SMESH_MeshEditor.hxx SMESHUtils/SMESH_MeshAlgos.hxx in order to make SMESH_ElementSearcher accessible from Controls/SMESH_Controls.cxx - static bool FaceNormal(const SMDS_MeshElement* F, gp_XYZ& normal, bool normalized=true); - static std::vector< const SMDS_MeshNode*> GetCommonNodes(const SMDS_MeshElement* e1, - const SMDS_MeshElement* e2);
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@ -314,45 +314,6 @@ double SMESH_Algo::EdgeLength(const TopoDS_Edge & E)
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return length;
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}
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//================================================================================
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/*!
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* \brief Calculate normal of a mesh face
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*/
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//================================================================================
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bool SMESH_Algo::FaceNormal(const SMDS_MeshElement* F, gp_XYZ& normal, bool normalized)
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{
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if ( !F || F->GetType() != SMDSAbs_Face )
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return false;
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normal.SetCoord(0,0,0);
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int nbNodes = F->IsQuadratic() ? F->NbNodes()/2 : F->NbNodes();
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for ( int i = 0; i < nbNodes-2; ++i )
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{
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gp_XYZ p[3];
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for ( int n = 0; n < 3; ++n )
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{
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const SMDS_MeshNode* node = F->GetNode( i + n );
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p[n].SetCoord( node->X(), node->Y(), node->Z() );
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}
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normal += ( p[2] - p[1] ) ^ ( p[0] - p[1] );
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}
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double size2 = normal.SquareModulus();
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bool ok = ( size2 > numeric_limits<double>::min() * numeric_limits<double>::min());
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if ( normalized && ok )
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normal /= sqrt( size2 );
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return ok;
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}
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/*
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* Moved to SMESH_MesherHelper
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*/
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// bool SMESH_Algo::IsReversedSubMesh (const TopoDS_Face& theFace,
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// SMESHDS_Mesh* theMeshDS)
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// {
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// }
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//================================================================================
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/*!
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* \brief Just return false as the algorithm does not hold parameters values
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@ -583,21 +544,6 @@ const SMDS_MeshNode* SMESH_Algo::VertexNode(const TopoDS_Vertex& V,
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return 0;
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}
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//=======================================================================
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//function : GetCommonNodes
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//purpose : Return nodes common to two elements
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//=======================================================================
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vector< const SMDS_MeshNode*> SMESH_Algo::GetCommonNodes(const SMDS_MeshElement* e1,
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const SMDS_MeshElement* e2)
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{
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vector< const SMDS_MeshNode*> common;
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for ( int i = 0 ; i < e1->NbNodes(); ++i )
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if ( e2->GetNodeIndex( e1->GetNode( i )) >= 0 )
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common.push_back( e1->GetNode( i ));
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return common;
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}
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//=======================================================================
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//function : GetMeshError
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//purpose : Finds topological errors of a sub-mesh
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@ -325,11 +325,6 @@ public:
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*/
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static double EdgeLength(const TopoDS_Edge & E);
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/*!
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* \brief Calculate normal of a mesh face
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*/
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static bool FaceNormal(const SMDS_MeshElement* F, gp_XYZ& normal, bool normalized=true);
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//static int NumberOfWires(const TopoDS_Shape& S);
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int NumberOfPoints(SMESH_Mesh& aMesh,const TopoDS_Wire& W);
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@ -356,12 +351,6 @@ public:
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*/
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static const SMDS_MeshNode* VertexNode(const TopoDS_Vertex& V, const SMESHDS_Mesh* meshDS);
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/*!
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* \brief Return nodes common to two elements
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*/
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static std::vector< const SMDS_MeshNode*> GetCommonNodes(const SMDS_MeshElement* e1,
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const SMDS_MeshElement* e2);
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enum EMeshError { MEr_OK = 0, MEr_HOLES, MEr_BAD_ORI, MEr_EMPTY };
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/*!
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