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Indices are stored as mcIdType type instead of int to support switch to 64bits indexing
[tools/medcoupling.git] / src / INTERP_KERNEL / PointLocator2DIntersector.txx
index f92063dd68a59bab2237ccd70ec7faa1cd848d21..2202206ff1be9ebca619cd4cd1786ed5aa928f4c 100644 (file)
@@ -1,4 +1,4 @@
-// Copyright (C) 2007-2014  CEA/DEN, EDF R&D
+// Copyright (C) 2007-2019  CEA/DEN, EDF R&D
 //
 // This library is free software; you can redistribute it and/or
 // modify it under the terms of the GNU Lesser General Public
@@ -38,9 +38,9 @@ namespace INTERP_KERNEL
 {
   INTERSECTOR_TEMPLATE
   PTLOC2D_INTERSECTOR::PointLocator2DIntersector(const MyMeshType& meshT, const MyMeshType& meshS,
-                                               double dimCaracteristic, double md3DSurf, double medianPlane,
+                                               double dimCaracteristic, double md3DSurf, double minDot3DSurf, double medianPlane,
                                                double precision, int orientation):
-    InterpType<MyMeshType,MyMatrix,PTLOC2D_INTERSECTOR >(meshT,meshS,dimCaracteristic, precision, md3DSurf, medianPlane, true, orientation, 0)
+    InterpType<MyMeshType,MyMatrix,PTLOC2D_INTERSECTOR >(meshT,meshS,dimCaracteristic, precision, md3DSurf, minDot3DSurf, medianPlane, true, orientation, 0)
   {
   }
   
@@ -118,16 +118,16 @@ namespace INTERP_KERNEL
                                                const double *             sourceTria,
                                                std::vector<double>&       res)
   {
-    throw INTERP_KERNEL::Exception("intersectGeoBary incompatible with PointLocator. Desactivate P1P0Bary to avoid the problem");
+    throw INTERP_KERNEL::Exception("intersectGeoBary incompatible with PointLocator. Deactivate P1P0Bary to avoid the problem");
     return 0.;
   }
 
   INTERSECTOR_TEMPLATE
   QuadraticPolygon *PTLOC2D_INTERSECTOR::buildPolygonFrom(const std::vector<double>& coords, NormalizedCellType type)
   {
-    int nbNodes=coords.size()/SPACEDIM;
+    std::size_t nbNodes=coords.size()/SPACEDIM;
     std::vector<Node *> nodes(nbNodes);
-    for(int i=0;i<nbNodes;i++)
+    for(std::size_t i=0;i<nbNodes;i++)
       nodes[i]=new Node(coords[i*SPACEDIM],coords[i*SPACEDIM+1]);
     if(!CellModel::GetCellModel(type).isQuadratic())
       return QuadraticPolygon::BuildLinearPolygon(nodes);