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199 lines
7.1 KiB
C++
199 lines
7.1 KiB
C++
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// Copyright (C) 2007-2008 CEA/DEN, EDF R&D, OPEN CASCADE
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//
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// Copyright (C) 2003-2007 OPEN CASCADE, EADS/CCR, LIP6, CEA/DEN,
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// CEDRAT, EDF R&D, LEG, PRINCIPIA R&D, BUREAU VERITAS
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//
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// This library is free software; you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public
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// License as published by the Free Software Foundation; either
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// version 2.1 of the License.
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//
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// This library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public
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// License along with this library; if not, write to the Free Software
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// Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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//
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// See http://www.salome-platform.org/ or email : webmaster.salome@opencascade.com
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#ifndef _GEOMImpl_PipeTShapeDriver_HXX
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#define _GEOMImpl_PipeTShapeDriver_HXX
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#include <TFunction_Driver.hxx>
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#include "GEOMAlgo_State.hxx"
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#include <TopTools_ListOfShape.hxx>
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#include <TopTools_HSequenceOfShape.hxx>
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#include <TopTools_IndexedMapOfShape.hxx>
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#include <TopAbs_ShapeEnum.hxx>
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#include <TColStd_HSequenceOfInteger.hxx>
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#include <Handle_Geom_Surface.hxx>
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class Handle_Standard_Type;
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class GEOMImpl_PipeTShapeDriver;
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Standard_EXPORT Handle_Standard_Type& STANDARD_TYPE(GEOMImpl_PipeTShapeDriver);
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class Handle(GEOMImpl_PipeTShapeDriver) : public Handle(TFunction_Driver) {
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public:
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inline void* operator new(size_t,void* anAddress)
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{
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return anAddress;
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}
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inline void* operator new(size_t size)
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{
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return Standard::Allocate(size);
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}
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inline void operator delete(void *anAddress)
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{
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if (anAddress) Standard::Free((Standard_Address&)anAddress);
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}
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Handle(GEOMImpl_PipeTShapeDriver)():Handle(TFunction_Driver)() {}
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Handle(GEOMImpl_PipeTShapeDriver)(const Handle(GEOMImpl_PipeTShapeDriver)& aHandle) : Handle(TFunction_Driver)(aHandle)
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{}
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Handle(GEOMImpl_PipeTShapeDriver)(const GEOMImpl_PipeTShapeDriver* anItem) : Handle(TFunction_Driver)((TFunction_Driver *)anItem)
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{}
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Handle(GEOMImpl_PipeTShapeDriver)& operator=(const Handle(GEOMImpl_PipeTShapeDriver)& aHandle)
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{
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Assign(aHandle.Access());
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return *this;
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}
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Handle(GEOMImpl_PipeTShapeDriver)& operator=(const GEOMImpl_PipeTShapeDriver* anItem)
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{
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Assign((Standard_Transient *)anItem);
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return *this;
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}
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GEOMImpl_PipeTShapeDriver* operator->()
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{
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return (GEOMImpl_PipeTShapeDriver *)ControlAccess();
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}
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GEOMImpl_PipeTShapeDriver* operator->() const
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{
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return (GEOMImpl_PipeTShapeDriver *)ControlAccess();
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}
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Standard_EXPORT ~Handle(GEOMImpl_PipeTShapeDriver)() {};
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Standard_EXPORT static const Handle(GEOMImpl_PipeTShapeDriver) DownCast(const Handle(Standard_Transient)& AnObject);
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};
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class GEOMImpl_PipeTShapeDriver : public TFunction_Driver {
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public:
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inline void* operator new(size_t,void* anAddress)
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{
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return anAddress;
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}
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inline void* operator new(size_t size)
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{
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return Standard::Allocate(size);
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}
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inline void operator delete(void *anAddress)
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{
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if (anAddress) Standard::Free((Standard_Address&)anAddress);
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}
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// Methods PUBLIC
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//
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Standard_EXPORT GEOMImpl_PipeTShapeDriver();
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Standard_EXPORT virtual Standard_Integer Execute(TFunction_Logbook& log) const;
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Standard_EXPORT virtual void Validate(TFunction_Logbook&) const {}
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Standard_EXPORT Standard_Boolean MustExecute(const TFunction_Logbook&) const
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{
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return Standard_True;
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}
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Standard_EXPORT static const Standard_GUID& GetID();
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Standard_EXPORT ~GEOMImpl_PipeTShapeDriver() {};
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// Type management
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//
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Standard_EXPORT friend Handle_Standard_Type& GEOMImpl_PipeTShapeDriver_Type_();
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Standard_EXPORT const Handle(Standard_Type)& DynamicType() const
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{
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return STANDARD_TYPE(GEOMImpl_PipeTShapeDriver);
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}
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Standard_EXPORT Standard_Boolean IsKind(const Handle(Standard_Type)& AType) const
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{
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return (STANDARD_TYPE(GEOMImpl_PipeTShapeDriver) == AType || TFunction_Driver::IsKind(AType));
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}
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private:
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/*!
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* \brief Create a T-Shape based on pipes
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* \param r1 - the internal radius of main pipe
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* \param w1 - the thickness main pipe
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* \param l1 - the half-length of main pipe
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* \param r2 - the internal radius of incident pipe
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* \param w2 - the thickness incident pipe
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* \param l2 - the half-length of main pipe
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* \retval TopoDS_Shape - Resulting shape
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*/
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TopoDS_Shape MakePipeTShape(double r1, double w1, double l1, double r2, double w2, double l2) const;
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/*!
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* \brief Create a quarter of a T-Shape based on pipes
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* \param r1 - the internal radius of main pipe
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* \param w1 - the thickness main pipe
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* \param l1 - the half-length of main pipe
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* \param r2 - the internal radius of incident pipe
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* \param w2 - the thickness incident pipe
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* \param l2 - the half-length of main pipe
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* \retval TopoDS_Shape - Resulting shape
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*/
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TopoDS_Shape MakeQuarterPipeTShape(double r1, double w1, double l1, double r2, double w2, double l2) const;
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//=======================================================================
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//function : GetShapesOnSurfaceIDs
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/*!
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* \brief Find IDs of subshapes complying with given status about surface
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* \param theSurface - the surface to check state of subshapes against
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* \param theShape - the shape to explore
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* \param theShapeType - type of subshape of theShape
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* \param theState - required state
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* \retval Handle(TColStd_HSequenceOfInteger) - IDs of found subshapes
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*/
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Handle(TColStd_HSequenceOfInteger)
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GetShapesOnSurfaceIDs(const Handle(Geom_Surface)& theSurface,
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const TopoDS_Shape& theShape,
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TopAbs_ShapeEnum theShapeType,
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GEOMAlgo_State theState) const;
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//=======================================================================
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//function : getShapesOnBoxIDs
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/*!
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* \brief Find IDs of subshapes complying with given status about surface
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* \param theBox - the box to check state of subshapes against
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* \param theShape - the shape to explore
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* \param theShapeType - type of subshape of theShape
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* \param theState - required state
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* \retval Handle(TColStd_HSequenceOfInteger) - IDs of found subshapes
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*/
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//=======================================================================
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Handle(TColStd_HSequenceOfInteger)
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GetShapesOnBoxIDs(const TopoDS_Shape& aBox,
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const TopoDS_Shape& aShape,
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const Standard_Integer theShapeType,
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GEOMAlgo_State theState) const;
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//=======================================================================
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//function : getCommonShapesOnCylinders
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//purpose : return the common edge between 2 cylindrical surfaces
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// along OX and OZ
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//=======================================================================
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void GetCommonShapesOnCylinders(const TopoDS_Shape& theShape,
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TopAbs_ShapeEnum theShapeType,
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double r, double r2,
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Handle(TopTools_HSequenceOfShape)& commonShapes) const;
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};
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#endif // _GEOMImpl_PipeTShapeDriver_HXX
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