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// File generated by CPPExt (Value)
//
// Copyright (C) 1991 - 2000 by
// Matra Datavision SA. All rights reserved.
//
// Copyright (C) 2001 - 2004 by
// Open CASCADE SA. All rights reserved.
//
// This file is part of the Open CASCADE Technology software.
//
// This software may be distributed and/or modified under the terms and
// conditions of the Open CASCADE Public License as defined by Open CASCADE SA
// and appearing in the file LICENSE included in the packaging of this file.
//
// This software is distributed on an "AS IS" basis, without warranty of any
// kind, and Open CASCADE SA hereby disclaims all such warranties,
// including without limitation, any warranties of merchantability, fitness
// for a particular purpose or non-infringement. Please see the License for
// the specific terms and conditions governing rights and limitations under the
// License.
#ifndef _BRepOffsetAPI_MakeThickSolid_HeaderFile
#define _BRepOffsetAPI_MakeThickSolid_HeaderFile
#ifndef _BRepOffsetAPI_MakeOffsetShape_HeaderFile
#include <BRepOffsetAPI_MakeOffsetShape.hxx>
#endif
#ifndef _Standard_Real_HeaderFile
#include <Standard_Real.hxx>
#endif
#ifndef _BRepOffset_Mode_HeaderFile
#include <BRepOffset_Mode.hxx>
#endif
#ifndef _Standard_Boolean_HeaderFile
#include <Standard_Boolean.hxx>
#endif
#ifndef _GeomAbs_JoinType_HeaderFile
#include <GeomAbs_JoinType.hxx>
#endif
class TopoDS_Shape;
class TopTools_ListOfShape;
#ifndef _Standard_HeaderFile
#include <Standard.hxx>
#endif
#ifndef _Standard_Macro_HeaderFile
#include <Standard_Macro.hxx>
#endif
//! Describes functions to build hollowed solids. <br>
//! A hollowed solid is built from an initial solid and a set of <br>
//! faces on this solid, which are to be removed. The <br>
//! remaining faces of the solid become the walls of the <br>
//! hollowed solid, their thickness defined at the time of construction. <br>
//! the solid is built from an initial <br>
//! solid <S> and a set of faces {Fi} from <S>, <br>
//! builds a solid composed by two shells closed by <br>
//! the {Fi}. First shell <SS> is composed by all <br>
//! the faces of <S> expected {Fi}. Second shell is <br>
//! the offset shell of <SS>. <br>
//! A MakeThickSolid object provides a framework for: <br>
//! - defining the cross-section of a hollowed solid, <br>
//! - implementing the construction algorithm, and <br>
//! - consulting the result. <br>
class BRepOffsetAPI_MakeThickSolid : public BRepOffsetAPI_MakeOffsetShape {
public:
void* operator new(size_t,void* anAddress)
{
return anAddress;
}
void* operator new(size_t size)
{
return Standard::Allocate(size);
}
void operator delete(void *anAddress)
{
if (anAddress) Standard::Free((Standard_Address&)anAddress);
}
// Methods PUBLIC
//
Standard_EXPORT BRepOffsetAPI_MakeThickSolid();
//! Constructs a hollowed solid from <br>
//! the solid S by removing the set of faces ClosingFaces from S, where: <br>
//! Offset defines the thickness of the walls. Its sign indicates <br>
//! which side of the surface of the solid the hollowed shape is built on; <br>
//! Tol defines the tolerance criterion for coincidence in generated shapes; <br>
//! Mode defines the construction type of parallels applied to free <br>
//! edges of shape S. Currently, only one construction type is <br>
//! implemented, namely the one where the free edges do not generate <br>
//! parallels; this corresponds to the default value BRepOffset_Skin; <br>
//! Intersection specifies how the algorithm must work in order to <br>
//! limit the parallels to two adjacent shapes: <br>
//! if Intersection is false (default value), the intersection <br>
//! is calculated with the parallels to the two adjacent shapes, <br>
//! if Intersection is true, the intersection is calculated by <br>
//! taking account of all parallels generated; this computation <br>
//! method is more general as it avoids self-intersections <br>
//! generated in the offset shape from features of small dimensions <br>
//! on shape S, however this method has not been completely <br>
//! implemented and therefore is not recommended for use; <br>
//! SelfInter tells the algorithm whether a computation to <br>
//! eliminate self-intersections needs to be applied to the <br>
//! resulting shape. However, as this functionality is not yet <br>
//! implemented, you should use the default value (false); <br>
//! Join defines how to fill the holes that may appear between <br>
//! parallels to the two adjacent faces. It may take values <br>
//! GeomAbs_Arc or GeomAbs_Intersection: <br>
//! - if Join is equal to GeomAbs_Arc, then pipes are generated <br>
//! between two free edges of two adjacent parallels, <br>
//! and spheres are generated on "images" of vertices; <br>
//! it is the default value, <br>
//! - if Join is equal to GeomAbs_Intersection, <br>
//! then the parallels to the two adjacent faces are <br>
//! enlarged and intersected, so that there are no free <br>
//! edges on parallels to faces. <br>
//! Warnings <br>
//! Since the algorithm of MakeThickSolid is based on <br>
//! MakeOffsetShape algorithm, the warnings are the same as for <br>
//! MakeOffsetShape. <br>
Standard_EXPORT BRepOffsetAPI_MakeThickSolid(const TopoDS_Shape& S,const TopTools_ListOfShape& ClosingFaces,const Standard_Real Offset,const Standard_Real Tol,const BRepOffset_Mode Mode = BRepOffset_Skin,const Standard_Boolean Intersection = Standard_False,const Standard_Boolean SelfInter = Standard_False,const GeomAbs_JoinType Join = GeomAbs_Arc);
//! Builds the resulting shape (redefined from MakeOffsetShape). <br>
Standard_EXPORT virtual void Build() ;
//! Returns the list of shapes modified from the shape <br>
//! <S>. <br>
Standard_EXPORT virtual const TopTools_ListOfShape& Modified(const TopoDS_Shape& S) ;
protected:
// Methods PROTECTED
//
// Fields PROTECTED
//
private:
// Methods PRIVATE
//
// Fields PRIVATE
//
};
// other Inline functions and methods (like "C++: function call" methods)
//
#endif
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