dust3d/thirdparty/cgal/CGAL-5.1/include/CGAL/certified_numeric_predicates.h

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// Copyright (c) 2006-2008 Fernando Luis Cacciola Carballal. All rights reserved.
//
// This file is part of CGAL (www.cgal.org)
//
// $URL: https://github.com/CGAL/cgal/blob/v5.1/Straight_skeleton_2/include/CGAL/certified_numeric_predicates.h $
// $Id: certified_numeric_predicates.h 0779373 2020-03-26T13:31:46+01:00 Sébastien Loriot
// SPDX-License-Identifier: LGPL-3.0-or-later OR LicenseRef-Commercial
//
// Author(s) : Fernando Cacciola <fernando_cacciola@ciudad.com.ar>
//
#ifndef CGAL_CERTIFIED_NUMERIC_PREDICATES_H
#define CGAL_CERTIFIED_NUMERIC_PREDICATES_H
#include <CGAL/number_utils.h>
#include <CGAL/Interval_arithmetic.h>
#include <CGAL/Uncertain.h>
namespace CGAL {
inline Uncertain<bool> logical_or ( Uncertain<bool> a, Uncertain<bool> b ) { return a | b ; }
inline Uncertain<bool> logical_and( Uncertain<bool> a, Uncertain<bool> b ) { return a & b ; }
inline Uncertain<bool> logical_or ( Uncertain<bool> a, Uncertain<bool> b, Uncertain<bool> c ) { return a | b | c ; }
inline Uncertain<bool> logical_and( Uncertain<bool> a, Uncertain<bool> b, Uncertain<bool> c ) { return a & b & c ; }
template <class NT>
inline Uncertain<bool> certified_is_zero(const NT& x)
{
return CGAL_NTS is_valid(x) ? make_uncertain(CGAL_NTS is_zero(x)) : Uncertain<bool>::indeterminate() ;
}
template <class NT>
inline Uncertain<bool> certified_is_not_zero(const NT& x)
{
return CGAL_NTS is_valid(x) ? make_uncertain(!CGAL_NTS is_zero(x)) : Uncertain<bool>::indeterminate() ;
}
template <class NT>
inline Uncertain<bool> certified_is_one(const NT& x)
{
return CGAL_NTS is_valid(x) ? make_uncertain(CGAL_NTS is_one(x) ) : Uncertain<bool>::indeterminate() ;
}
template <class NT>
inline Uncertain<bool> certified_is_negative(const NT& x)
{
return CGAL_NTS is_valid(x) ? make_uncertain(CGAL_NTS is_negative(x) ) : Uncertain<bool>::indeterminate() ;
}
template <class NT>
inline Uncertain<bool> certified_is_positive(const NT& x)
{
return CGAL_NTS is_valid(x) ? make_uncertain(CGAL_NTS is_positive(x) ) : Uncertain<bool>::indeterminate() ;
}
template <class NT>
inline Uncertain<Sign> certified_sign(const NT& x)
{
return CGAL_NTS is_valid(x) ? make_uncertain(CGAL_NTS sign(x)) : Uncertain<Sign>::indeterminate() ;
}
template <class NT1, class NT2>
inline Uncertain<Comparison_result> certified_compare(const NT1& n1, const NT2& n2)
{
return CGAL_NTS is_valid(n1) && CGAL_NTS is_valid(n2) ? make_uncertain(CGAL_NTS compare(n1,n2))
: Uncertain<Comparison_result>::indeterminate() ;
}
inline Uncertain<bool> certified_is_smaller( Uncertain<Comparison_result> c )
{
return c == SMALLER;
}
inline Uncertain<bool> certified_is_equal( Uncertain<Comparison_result> c )
{
return c == EQUAL;
}
inline Uncertain<bool> certified_is_larger( Uncertain<Comparison_result> c )
{
return c == LARGER;
}
inline Uncertain<bool> certified_is_smaller_or_equal( Uncertain<Comparison_result> c )
{
return logical_or( c == SMALLER , c == EQUAL ) ;
}
inline Uncertain<bool> certified_is_larger_or_equal( Uncertain<Comparison_result> c )
{
return logical_or( c == LARGER , c == EQUAL ) ;
}
template <class NT1, class NT2>
inline Uncertain<bool> certified_is_smaller(const NT1& n1, const NT2& n2)
{
return certified_is_smaller(certified_compare(n1,n2));
}
template <class NT1, class NT2>
inline Uncertain<bool> certified_is_equal(const NT1& n1, const NT2& n2)
{
return certified_is_equal(certified_compare(n1,n2));
}
template <class NT1, class NT2>
inline Uncertain<bool> certified_is_larger(const NT1& n1, const NT2& n2)
{
return certified_is_larger(certified_compare(n1,n2));
}
template <class NT1, class NT2>
inline Uncertain<bool> certified_is_smaller_or_equal(const NT1& n1, const NT2& n2)
{
return certified_is_smaller_or_equal(certified_compare(n1,n2)) ;
}
template <class NT1, class NT2>
inline Uncertain<bool> certified_is_larger_or_equal(const NT1& n1, const NT2& n2)
{
return certified_is_larger_or_equal(certified_compare(n1,n2)) ;
}
template <class NT>
inline Uncertain<Sign> certified_sign_of_determinant2x2( const NT& a00
, const NT& a01
, const NT& a10
, const NT& a11
)
{
return certified_compare(a00*a11, a10*a01) ;
}
} // end namespace CGAL
#endif // CGAL_CERTIFIED_NUMERIC_PREDICATES_H