// Created on: 1996-03-29 // Created by: Laurent BOURESCHE // Copyright (c) 1996-1999 Matra Datavision // Copyright (c) 1999-2014 OPEN CASCADE SAS // // This file is part of Open CASCADE Technology software library. // // This library is free software; you can redistribute it and/or modify it under // the terms of the GNU Lesser General Public License version 2.1 as published // by the Free Software Foundation, with special exception defined in the file // OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT // distribution for complete text of the license and disclaimer of any warranty. // // Alternatively, this file may be used under the terms of Open CASCADE // commercial license or contractual agreement. #ifndef _Law_Composite_HeaderFile #define _Law_Composite_HeaderFile #include #include #include #include #include #include #include #include #include class Law_Function; class Standard_OutOfRange; class Law_Composite; DEFINE_STANDARD_HANDLE(Law_Composite, Law_Function) //! Loi composite constituee d une liste de lois de //! ranges consecutifs. //! Cette implementation un peu lourde permet de reunir //! en une seule loi des portions de loi construites de //! facon independantes (par exemple en interactif) et //! de lancer le walking d un coup a l echelle d une //! ElSpine. //! CET OBJET REPOND DONC A UN PROBLEME D IMPLEMENTATION //! SPECIFIQUE AUX CONGES!!! class Law_Composite : public Law_Function { public: //! Construct an empty Law Standard_EXPORT Law_Composite(); //! Construct an empty, trimmed Law Standard_EXPORT Law_Composite(const Standard_Real First, const Standard_Real Last, const Standard_Real Tol); Standard_EXPORT GeomAbs_Shape Continuity() const Standard_OVERRIDE; //! Returns the number of intervals for continuity //! . May be one if Continuity(me) >= Standard_EXPORT Standard_Integer NbIntervals (const GeomAbs_Shape S) const Standard_OVERRIDE; //! Stores in the parameters bounding the intervals of continuity . //! The array must provide enough room to accommodate for the parameters, //! i.e. T.Length() > NbIntervals() Standard_EXPORT void Intervals (TColStd_Array1OfReal& T, const GeomAbs_Shape S) const Standard_OVERRIDE; //! Returns the value at parameter X. Standard_EXPORT Standard_Real Value (const Standard_Real X) Standard_OVERRIDE; //! Returns the value and the first derivative at parameter X. Standard_EXPORT void D1 (const Standard_Real X, Standard_Real& F, Standard_Real& D) Standard_OVERRIDE; //! Returns the value, first and second derivatives //! at parameter X. Standard_EXPORT void D2 (const Standard_Real X, Standard_Real& F, Standard_Real& D, Standard_Real& D2) Standard_OVERRIDE; //! Returns a law equivalent of between //! parameters and . is used to //! test for 3d points confusion. //! It is usfule to determines the derivatives //! in these values and if //! the Law is not Cn. Standard_EXPORT Handle(Law_Function) Trim (const Standard_Real PFirst, const Standard_Real PLast, const Standard_Real Tol) const Standard_OVERRIDE; //! Returns the parametric bounds of the function. Standard_EXPORT void Bounds (Standard_Real& PFirst, Standard_Real& PLast) Standard_OVERRIDE; //! Returns the elementary function of the composite used //! to compute at parameter W. Standard_EXPORT Handle(Law_Function)& ChangeElementaryLaw (const Standard_Real W); Standard_EXPORT Law_Laws& ChangeLaws(); Standard_EXPORT Standard_Boolean IsPeriodic() const; Standard_EXPORT void SetPeriodic(); DEFINE_STANDARD_RTTIEXT(Law_Composite,Law_Function) private: //! Set the current function. Standard_EXPORT void Prepare (Standard_Real& W); Standard_Real first; Standard_Real last; Handle(Law_Function) curfunc; Law_Laws funclist; Standard_Boolean periodic; Standard_Real TFirst; Standard_Real TLast; Standard_Real PTol; }; #endif // _Law_Composite_HeaderFile