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!!!
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| Law_Composite () |
| Construct an empty Law.
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| Law_Composite (const Standard_Real First, const Standard_Real Last, const Standard_Real Tol) |
| Construct an empty, trimmed Law.
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GeomAbs_Shape | Continuity () const override |
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Standard_Integer | NbIntervals (const GeomAbs_Shape S) const override |
| Returns the number of intervals for continuity . May be one if Continuity(me) >=
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void | Intervals (TColStd_Array1OfReal &T, const GeomAbs_Shape S) const override |
| Stores in <T> the parameters bounding the intervals of continuity . The array must provide enough room to accommodate for the parameters, i.e. T.Length() > NbIntervals()
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Standard_Real | Value (const Standard_Real X) override |
| Returns the value at parameter X.
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void | D1 (const Standard_Real X, Standard_Real &F, Standard_Real &D) override |
| Returns the value and the first derivative at parameter X.
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void | D2 (const Standard_Real X, Standard_Real &F, Standard_Real &D, Standard_Real &D2) override |
| Returns the value, first and second derivatives at parameter X.
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Handle< Law_Function > | Trim (const Standard_Real PFirst, const Standard_Real PLast, const Standard_Real Tol) const override |
| Returns a law equivalent of <me> between parameters <First> and <Last>. <Tol> is used to test for 3d points confusion. It is usfule to determines the derivatives in these values <First> and <Last> if the Law is not Cn.
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void | Bounds (Standard_Real &PFirst, Standard_Real &PLast) override |
| Returns the parametric bounds of the function.
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Handle< Law_Function > & | ChangeElementaryLaw (const Standard_Real W) |
| Returns the elementary function of the composite used to compute at parameter W.
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Law_Laws & | ChangeLaws () |
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Standard_Boolean | IsPeriodic () const |
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void | SetPeriodic () |
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Public Member Functions inherited from Standard_Transient |
| Standard_Transient () |
| Empty constructor.
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| Standard_Transient (const Standard_Transient &) |
| Copy constructor – does nothing.
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Standard_Transient & | operator= (const Standard_Transient &) |
| Assignment operator, needed to avoid copying reference counter.
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virtual | ~Standard_Transient () |
| Destructor must be virtual.
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virtual const opencascade::handle< Standard_Type > & | DynamicType () const |
| Returns a type descriptor about this object.
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Standard_Boolean | IsInstance (const opencascade::handle< Standard_Type > &theType) const |
| Returns a true value if this is an instance of Type.
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Standard_Boolean | IsInstance (const Standard_CString theTypeName) const |
| Returns a true value if this is an instance of TypeName.
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Standard_Boolean | IsKind (const opencascade::handle< Standard_Type > &theType) const |
| Returns true if this is an instance of Type or an instance of any class that inherits from Type. Note that multiple inheritance is not supported by OCCT RTTI mechanism.
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Standard_Boolean | IsKind (const Standard_CString theTypeName) const |
| Returns true if this is an instance of TypeName or an instance of any class that inherits from TypeName. Note that multiple inheritance is not supported by OCCT RTTI mechanism.
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Standard_Transient * | This () const |
| Returns non-const pointer to this object (like const_cast). For protection against creating handle to objects allocated in stack or call from constructor, it will raise exception Standard_ProgramError if reference counter is zero.
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Standard_Integer | GetRefCount () const noexcept |
| Get the reference counter of this object.
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void | IncrementRefCounter () noexcept |
| Increments the reference counter of this object.
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Standard_Integer | DecrementRefCounter () noexcept |
| Decrements the reference counter of this object; returns the decremented value.
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virtual void | Delete () const |
| Memory deallocator for transient classes.
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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!!!