Warnings on vc14 were eliminated
[occt.git] / src / BRepBlend / BRepBlend_SurfPointEvolRadInv.hxx
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42cf5bc1 1// Created on: 1997-07-29
2// Created by: Jerome LEMONIER
3// Copyright (c) 1997-1999 Matra Datavision
4// Copyright (c) 1999-2014 OPEN CASCADE SAS
5//
6// This file is part of Open CASCADE Technology software library.
7//
8// This library is free software; you can redistribute it and/or modify it under
9// the terms of the GNU Lesser General Public License version 2.1 as published
10// by the Free Software Foundation, with special exception defined in the file
11// OCCT_LGPL_EXCEPTION.txt. Consult the file LICENSE_LGPL_21.txt included in OCCT
12// distribution for complete text of the license and disclaimer of any warranty.
13//
14// Alternatively, this file may be used under the terms of Open CASCADE
15// commercial license or contractual agreement.
16
17#ifndef _BRepBlend_SurfPointEvolRadInv_HeaderFile
18#define _BRepBlend_SurfPointEvolRadInv_HeaderFile
19
20#include <Standard.hxx>
21#include <Standard_DefineAlloc.hxx>
22#include <Standard_Handle.hxx>
23
24#include <gp_Pnt.hxx>
25#include <Standard_Real.hxx>
26#include <Standard_Integer.hxx>
27#include <Blend_SurfPointFuncInv.hxx>
28#include <Standard_Boolean.hxx>
29#include <math_Vector.hxx>
30class Adaptor3d_HSurface;
31class Adaptor3d_HCurve;
32class Law_Function;
33class math_Matrix;
34class gp_Pnt;
35
36
37//! Function of reframing between a point and a surface.
38//! This function is used to find a solution on a done
39//! point of the curve when using SurfRstConsRad or
40//! CSConstRad...
41//! The vector <X> used in Value, Values and Derivatives
42//! methods has to be the vector of the parametric
43//! coordinates w, U, V where w is the parameter on the
44//! guide line, U,V are the parametric coordinates of a
45//! point on the partner surface.
46class BRepBlend_SurfPointEvolRadInv : public Blend_SurfPointFuncInv
47{
48public:
49
50 DEFINE_STANDARD_ALLOC
51
52
53 Standard_EXPORT BRepBlend_SurfPointEvolRadInv(const Handle(Adaptor3d_HSurface)& S, const Handle(Adaptor3d_HCurve)& C, const Handle(Law_Function)& Evol);
54
55 Standard_EXPORT void Set (const Standard_Integer Choix);
56
57 //! returns 3.
58 Standard_EXPORT Standard_Integer NbEquations() const;
59
60 //! computes the values <F> of the Functions for the
61 //! variable <X>.
62 //! Returns True if the computation was done successfully,
63 //! False otherwise.
64 Standard_EXPORT Standard_Boolean Value (const math_Vector& X, math_Vector& F);
65
66 //! returns the values <D> of the derivatives for the
67 //! variable <X>.
68 //! Returns True if the computation was done successfully,
69 //! False otherwise.
70 Standard_EXPORT Standard_Boolean Derivatives (const math_Vector& X, math_Matrix& D);
71
72 //! returns the values <F> of the functions and the derivatives
73 //! <D> for the variable <X>.
74 //! Returns True if the computation was done successfully,
75 //! False otherwise.
76 Standard_EXPORT Standard_Boolean Values (const math_Vector& X, math_Vector& F, math_Matrix& D);
77
78 //! Set the Point on which a solution has to be found.
79 Standard_EXPORT void Set (const gp_Pnt& P);
80
81 //! Returns in the vector Tolerance the parametric tolerance
82 //! for each of the 3 variables;
83 //! Tol is the tolerance used in 3d space.
84 Standard_EXPORT void GetTolerance (math_Vector& Tolerance, const Standard_Real Tol) const;
85
86 //! Returns in the vector InfBound the lowest values allowed
87 //! for each of the 3 variables.
88 //! Returns in the vector SupBound the greatest values allowed
89 //! for each of the 3 variables.
90 Standard_EXPORT void GetBounds (math_Vector& InfBound, math_Vector& SupBound) const;
91
92 //! Returns Standard_True if Sol is a zero of the function.
93 //! Tol is the tolerance used in 3d space.
94 Standard_EXPORT Standard_Boolean IsSolution (const math_Vector& Sol, const Standard_Real Tol);
95
96
97
98
99protected:
100
101
102
103
104
105private:
106
107
108
109 Handle(Adaptor3d_HSurface) surf;
110 Handle(Adaptor3d_HCurve) curv;
111 gp_Pnt point;
112 Standard_Real ray;
113 Standard_Integer choix;
114 Handle(Law_Function) tevol;
115 Standard_Real sg1;
116
117
118};
119
120
121
122
123
124
125
126#endif // _BRepBlend_SurfPointEvolRadInv_HeaderFile