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

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// Copyright (c) 2007
// GeometryFactory (France),
// Utrecht University (The Netherlands),
// ETH Zurich (Switzerland),
// INRIA Sophia-Antipolis (France),
// Max-Planck-Institute Saarbruecken (Germany),
// and Tel-Aviv University (Israel). All rights reserved.
//
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// This file is part of CGAL (www.cgal.org)
//
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// $URL: https://github.com/CGAL/cgal/blob/v5.1/STL_Extension/include/CGAL/Iterator_transform.h $
// $Id: Iterator_transform.h 0779373 2020-03-26T13:31:46+01:00 Sébastien Loriot
// SPDX-License-Identifier: LGPL-3.0-or-later OR LicenseRef-Commercial
//
//
// Author(s) : Michael Hoffmann <hoffmann@inf.ethz.ch>
// Lutz Kettner <kettner@mpi-sb.mpg.de>
// Sylvain Pion
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// Fernando Cacciola <fernando.cacciola@geometryfactory.com>
#ifndef CGAL_ITERATOR_TRANSFORM_H
#define CGAL_ITERATOR_TRANSFORM_H 1
#include <CGAL/Iterator_project.h>
namespace CGAL {
template < class I, class Fct>
class Iterator_transform {
protected:
I nt; // The internal iterator.
public:
typedef Iterator_transform<I,Fct> Self;
typedef I Iterator; // base iterator
typedef std::iterator_traits<I> traits;
typedef typename traits::difference_type difference_type;
typedef typename traits::iterator_category iterator_category;
typedef typename traits::value_type base_value_type;
typedef typename traits::pointer base_pointer;
typedef typename traits::reference base_reference;
typedef typename Fct::argument_type argument_type;
typedef typename Fct::result_type value_type;
// This iterator returns rvalues by design (allowing the conversion function to return new objects)
typedef value_type reference;
// Use I_TYPE_MATCH_IF to find correct pointer type.
typedef I_TYPE_MATCH_IF< base_pointer, const base_value_type *,
const value_type *, value_type *> Match2;
typedef typename Match2::Result pointer;
// CREATION
// --------
Iterator_transform() {}
Iterator_transform( I j) : nt(j) {}
// make two iterators assignable if the underlying iterators are
template <class I2>
Iterator_transform( const Iterator_transform<I2,Fct>& i2)
: nt( i2.current_iterator()) {}
template <class I2>
Self& operator= ( const Iterator_transform<I2,Fct>& i2) {
nt = i2.current_iterator();
return *this;
}
// OPERATIONS Forward Category
// ---------------------------
Iterator current_iterator() const { return nt;}
bool operator==( const Self& i) const { return ( nt == i.nt); }
bool operator!=( const Self& i) const { return !(*this == i); }
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struct Proxy
{
Proxy(const reference r) : ref(r) {}
reference ref;
pointer operator->() { return &ref; }
};
Proxy operator->() const
{
return Proxy(Fct()(*nt));
}
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reference operator* () const
{
Fct fct;
return fct(*nt);
}
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Self& operator++() {
++nt;
return *this;
}
Self operator++(int) {
Self tmp = *this;
++*this;
return tmp;
}
// OPERATIONS Bidirectional Category
// ---------------------------------
Self& operator--() {
--nt;
return *this;
}
Self operator--(int) {
Self tmp = *this;
--*this;
return tmp;
}
// OPERATIONS Random Access Category
// ---------------------------------
Self& operator+=( difference_type n) {
nt += n;
return *this;
}
Self operator+( difference_type n) const {
Self tmp = *this;
return tmp += n;
}
Self& operator-=( difference_type n) {
return operator+=( -n);
}
Self operator-( difference_type n) const {
Self tmp = *this;
return tmp += -n;
}
difference_type operator-( const Self& i) const { return nt - i.nt; }
reference operator[]( difference_type n) const {
Self tmp = *this;
tmp += n;
return tmp.operator*();
}
bool operator< ( const Self& i) const { return ( nt < i.nt); }
bool operator> ( const Self& i) const { return i < *this; }
bool operator<=( const Self& i) const { return !(i < *this); }
bool operator>=( const Self& i) const { return !(*this < i); }
};
template < class Dist, class Fct, class I>
inline
Iterator_transform<I,Fct>
operator+( Dist n, Iterator_transform<I,Fct> i) {
return i += n;
}
} //namespace CGAL
#endif // CGAL_Iterator_transform_H //
// EOF //