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francois |
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//------------------------------------------------------------
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//------------------------------------------------------------
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// MAGiC
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// Jean Christophe Cuillière et Vincent FRANCOIS
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// Département de Génie Mécanique - UQTR
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//------------------------------------------------------------
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// Le projet MAGIC est un projet de recherche du département
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// de génie mécanique de l'Université du Québec à
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// Trois Rivières
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// Les librairies ne peuvent être utilisées sans l'accord
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// des auteurs (contact : francois@uqtr.ca)
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//------------------------------------------------------------
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//------------------------------------------------------------
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//
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// OCC_fonction1.cpp
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//
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//------------------------------------------------------------
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//------------------------------------------------------------
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// COPYRIGHT 2000
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// Version du 02/03/2006 à 11H22
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//------------------------------------------------------------
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//------------------------------------------------------------
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#include "gestionversion.h"
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#ifdef BREP_OCC
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#pragma hdrstop
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#include "occ_fonction1.h"
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//---------------------------------------------------------------------------
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#pragma package(smart_init)
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//using namespace std;
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OCC_FONCTION1::OCC_FONCTION1()
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{
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}
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OCC_FONCTION1::~OCC_FONCTION1()
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{
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}
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void OCC_FONCTION1::OuvrirFichier(char* file ) //ouvrir un fichier .brep
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{
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Standard_Boolean result=BRepTools::Read(ashape,file,abuilder);
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if(!result) return;
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}
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void OCC_FONCTION1::OuvrirFichierStep(char* file)//ouvrir un fichier.step
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{
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reader.ReadFile(file);
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reader.NbRootsForTransfer();
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reader.TransferRoots();
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ashape = reader.OneShape();
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//Standard_Boolean result=BRepTools::Read(ashape,file,abuilder);
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//if(!result) return;
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}
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void OCC_FONCTION1::Sauvegarder(char* file)
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{
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Standard_Boolean result1=BRepTools::Write(ashape, file);
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if(!result1) return;
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}
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//******************************************************************************
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// identificateur CAS.CAD
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//******************************************************************************
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void OCC_FONCTION1::ajouterGeometrie(const TopoDS_Shape& shape)
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{
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/*if (shape.ShapeType() == TopAbs_VERTEX)
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{
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Handle(BRep_TVertex) TV = Handle(BRep_TVertex)::DownCast(shape.TShape());
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BRep_ListIteratorOfListOfPointRepresentation itrp(TV->Points());
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while (itrp.More())
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{
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const Handle(BRep_PointRepresentation)& PR = itrp.Value();
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if (PR->IsPointOnCurve())
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{
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curveset.Add(PR->Curve());
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}
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itrp.Next();
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}
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}
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else if (shape.ShapeType() == TopAbs_EDGE)
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{
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// Add the curve geometry
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Handle(BRep_TEdge) TE = Handle(BRep_TEdge)::DownCast(shape.TShape());
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BRep_ListIteratorOfListOfCurveRepresentation itrc(TE->Curves());
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while (itrc.More())
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{
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const Handle(BRep_CurveRepresentation)& CR = itrc.Value();
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if (CR->IsCurve3D())
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{
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if (!CR->Curve3D().IsNull())
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{
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curveset.Add(CR->Curve3D());
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}
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}
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itrc.More();
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}
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}
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else if (shape.ShapeType() == TopAbs_FACE)
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{
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// Add the surface geometry
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Handle(BRep_TFace) TF = Handle(BRep_TFace)::DownCast(shape.TShape());
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if (!TF->Surface().IsNull()) mySurfaces.Add(TF->Surface());
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}
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*/
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}
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int OCC_FONCTION1::GetID(const TopoDS_Shape &shape)
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{
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if (shape.IsNull()) return 0;
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myLocations.Add(shape.Location());
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TopoDS_Shape S2 = shape;
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S2.Location(TopLoc_Location());
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Standard_Integer index = myShapes.FindIndex(S2);
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if (index == 0)
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{
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ajouterGeometrie(S2);
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for (TopoDS_Iterator its(S2,Standard_False,Standard_False);its.More(); its.Next())
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GetID(its.Value());
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index = myShapes.Add(S2);
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}
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return index;
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}
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//******************************************************************************
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const TopoDS_Shape& OCC_FONCTION1::GetShape(const int id_shape)
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{
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GetID(ashape);
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return myShapes(id_shape);
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}
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//******************************************************************************
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#endif
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