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- Added automated migration scripts for handle syntax, standard types, and macros - Deprecated legacy `Standard_*` types and macros in favor of native C++ equivalents - Introduced modern `occ` namespace with template-based type checking helpers - Enhanced NCollection macros to support variadic arguments for complex template types- Added automated migration scripts for handle syntax, standard types, and macros - Deprecated legacy `Standard_*` types and macros in favor of native C++ equivalents - Introduced modern `occ` namespace with template-based type checking helpers - Enhanced NCollection macros to support variadic arguments for complex template types
152 lines
6.5 KiB
C++
152 lines
6.5 KiB
C++
// Created on: 1996-07-12
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// Created by: Stagiaire Mary FABIEN
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// Copyright (c) 1996-1999 Matra Datavision
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// Copyright (c) 1999-2014 OPEN CASCADE SAS
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//
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// This file is part of Open CASCADE Technology software library.
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//
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// This library is free software; you can redistribute it and/or modify it under
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// the terms of the GNU Lesser General Public License version 2.1 as published
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// by the Free Software Foundation, with special exception defined in the file
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// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
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// distribution for complete text of the license and disclaimer of any warranty.
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//
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// Alternatively, this file may be used under the terms of Open CASCADE
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// commercial license or contractual agreement.
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#ifndef _BRepTools_NurbsConvertModification_HeaderFile
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#define _BRepTools_NurbsConvertModification_HeaderFile
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#include <Standard.hxx>
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#include <TopoDS_Shape.hxx>
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#include <NCollection_List.hxx>
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#include <Standard_Transient.hxx>
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#include <NCollection_IndexedDataMap.hxx>
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#include <BRepTools_CopyModification.hxx>
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#include <Standard_Real.hxx>
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#include <GeomAbs_Shape.hxx>
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class TopoDS_Face;
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class Geom_Surface;
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class TopLoc_Location;
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class TopoDS_Edge;
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class Geom_Curve;
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class TopoDS_Vertex;
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class gp_Pnt;
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class Geom2d_Curve;
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//! Defines a modification of the geometry by a Trsf
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//! from gp. All methods return True and transform the
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//! geometry.
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class BRepTools_NurbsConvertModification : public BRepTools_CopyModification
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{
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public:
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Standard_EXPORT BRepTools_NurbsConvertModification();
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//! Returns true if the face <F> has been
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//! modified. In this case, <S> is the new geometric
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//! support of the face, <L> the new location,<Tol>
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//! the new tolerance.<RevWires> has to be set to
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//! true when the modification reverses the
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//! normal of the surface. (the wires have to be
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//! reversed). <RevFace> has to be set to
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//! true if the orientation of the modified
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//! face changes in the shells which contain it.
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//! Here, <RevFace> will return true if the
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//! -- gp_Trsf is negative.
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Standard_EXPORT bool NewSurface(const TopoDS_Face& F,
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occ::handle<Geom_Surface>& S,
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TopLoc_Location& L,
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double& Tol,
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bool& RevWires,
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bool& RevFace) override;
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//! Returns true if the edge <E> has been
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//! modified. In this case, <C> is the new geometric
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//! support of the edge, <L> the new location, <Tol>
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//! the new tolerance. Otherwise, returns
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//! false, and <C>, <L>, <Tol> are not
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//! significant.
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Standard_EXPORT bool NewCurve(const TopoDS_Edge& E,
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occ::handle<Geom_Curve>& C,
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TopLoc_Location& L,
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double& Tol) override;
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//! Returns true if the vertex <V> has been
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//! modified. In this case, <P> is the new geometric
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//! support of the vertex, <Tol> the new tolerance.
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//! Otherwise, returns false, and <P>, <Tol>
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//! are not significant.
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Standard_EXPORT bool NewPoint(const TopoDS_Vertex& V, gp_Pnt& P, double& Tol) override;
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//! Returns true if the edge <E> has a new
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//! curve on surface on the face <F>.In this case, <C>
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//! is the new geometric support of the edge, <L> the
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//! new location, <Tol> the new tolerance.
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//! Otherwise, returns false, and <C>, <L>,
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//! <Tol> are not significant.
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Standard_EXPORT bool NewCurve2d(const TopoDS_Edge& E,
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const TopoDS_Face& F,
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const TopoDS_Edge& NewE,
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const TopoDS_Face& NewF,
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occ::handle<Geom2d_Curve>& C,
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double& Tol) override;
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//! Returns true if the Vertex <V> has a new
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//! parameter on the edge <E>. In this case, <P> is
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//! the parameter, <Tol> the new tolerance.
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//! Otherwise, returns false, and <P>, <Tol>
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//! are not significant.
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Standard_EXPORT bool NewParameter(const TopoDS_Vertex& V,
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const TopoDS_Edge& E,
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double& P,
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double& Tol) override;
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//! Returns the continuity of <NewE> between <NewF1>
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//! and <NewF2>.
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//!
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//! <NewE> is the new edge created from <E>. <NewF1>
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//! (resp. <NewF2>) is the new face created from <F1>
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//! (resp. <F2>).
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Standard_EXPORT GeomAbs_Shape Continuity(const TopoDS_Edge& E,
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const TopoDS_Face& F1,
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const TopoDS_Face& F2,
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const TopoDS_Edge& NewE,
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const TopoDS_Face& NewF1,
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const TopoDS_Face& NewF2) override;
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//! Returns true if the face has been modified according to changed triangulation.
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//! If the face has been modified:
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//! - theTri is a new triangulation on the face
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Standard_EXPORT bool NewTriangulation(const TopoDS_Face& theFace,
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occ::handle<Poly_Triangulation>& theTri) override;
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//! Returns true if the edge has been modified according to changed polygon.
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//! If the edge has been modified:
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//! - thePoly is a new polygon
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Standard_EXPORT bool NewPolygon(const TopoDS_Edge& theEdge,
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occ::handle<Poly_Polygon3D>& thePoly) override;
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//! Returns true if the edge has been modified according to changed polygon on triangulation.
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//! If the edge has been modified:
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//! - thePoly is a new polygon on triangulation
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Standard_EXPORT bool NewPolygonOnTriangulation(
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const TopoDS_Edge& theEdge,
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const TopoDS_Face& theFace,
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occ::handle<Poly_PolygonOnTriangulation>& thePoly) override;
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Standard_EXPORT const NCollection_List<TopoDS_Shape>& GetUpdatedEdges() const;
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DEFINE_STANDARD_RTTIEXT(BRepTools_NurbsConvertModification, BRepTools_CopyModification)
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private:
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NCollection_List<TopoDS_Shape> myled;
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NCollection_List<occ::handle<Standard_Transient>> mylcu;
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NCollection_IndexedDataMap<occ::handle<Standard_Transient>, occ::handle<Standard_Transient>>
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myMap;
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NCollection_List<TopoDS_Shape> myUpdatedEdges;
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};
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#endif // _BRepTools_NurbsConvertModification_HeaderFile
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