353 lines
8.5 KiB
C
353 lines
8.5 KiB
C
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// Copyright (c) 2016
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// Utrecht University (The Netherlands),
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// ETH Zurich (Switzerland),
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// INRIA Sophia-Antipolis (France),
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// Max-Planck-Institute Saarbruecken (Germany),
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// and Tel-Aviv University (Israel). All rights reserved.
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//
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// This file is part of CGAL (www.cgal.org); you can redistribute it and/or
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// modify it under the terms of the GNU Lesser General Public License as
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// published by the Free Software Foundation; either version 3 of the License,
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// or (at your option) any later version.
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//
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// Licensees holding a valid commercial license may use this file in
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// accordance with the commercial license agreement provided with the software.
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//
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// This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
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// WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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//
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// $URL$
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// $Id$
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// SPDX-License-Identifier: LGPL-3.0+
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//
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//
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// Author(s) : Mariette Yvinec, Sylvain Pion
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#ifndef CGAL_WEIGHTED_POINT_2_H
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#define CGAL_WEIGHTED_POINT_2_H
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#include <CGAL/Origin.h>
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#include <CGAL/representation_tags.h>
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#include <CGAL/assertions.h>
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#include <boost/type_traits/is_same.hpp>
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#include <CGAL/Kernel/Return_base_tag.h>
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#include <CGAL/Bbox_2.h>
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#include <CGAL/Dimension.h>
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#include <CGAL/result_of.h>
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#include <CGAL/Point_2.h>
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namespace CGAL {
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template <class R_>
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class Weighted_point_2 : public R_::Kernel_base::Weighted_point_2
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{
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typedef typename R_::FT FT;
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typedef typename R_::FT RT;
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typedef Weighted_point_2<R_> Self;
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CGAL_static_assertion((boost::is_same<Self, typename R_::Weighted_point_2>::value));
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public:
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typedef Dimension_tag<2> Ambient_dimension;
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typedef Dimension_tag<0> Feature_dimension;
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typedef typename R_::Kernel_base::Weighted_point_2 Rep;
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typedef typename R_::Cartesian_const_iterator_2 Cartesian_const_iterator;
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typedef typename R_::Point_2 Point_2;
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typedef typename R_::Aff_transformation_2 Aff_transformation_2;
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typedef Point_2 Point;
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typedef FT Weight;
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typedef R_ R;
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const Rep& rep() const
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{
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return *this;
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}
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Rep& rep()
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{
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return *this;
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}
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Weighted_point_2() {}
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Weighted_point_2(const Origin& o)
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: Rep(typename R::Construct_weighted_point_2()(Return_base_tag(), o))
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{}
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Weighted_point_2(const Rep& p)
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: Rep(p) {}
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explicit
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Weighted_point_2(const Point_2& p)
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: Rep(typename R::Construct_weighted_point_2()(Return_base_tag(), p, 0))
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{}
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Weighted_point_2(const Point_2& p, const Weight& w)
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: Rep(typename R::Construct_weighted_point_2()(Return_base_tag(), p, w))
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{}
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Weighted_point_2(const FT& x, const FT& y)
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: Rep(typename R::Construct_weighted_point_2()(Return_base_tag(), x, y))
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{}
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typename cpp11::result_of<typename R::Construct_point_2( Weighted_point_2)>::type
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point() const
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{
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return typename R::Construct_point_2()(*this);
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}
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typename cpp11::result_of<typename R::Compute_weight_2( Weighted_point_2)>::type
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weight() const
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{
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return typename R::Compute_weight_2()(*this);
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}
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typename cpp11::result_of<typename R::Compute_x_2( Point_2)>::type
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x() const
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{
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return typename R::Compute_x_2()(point());
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}
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typename cpp11::result_of<typename R::Compute_y_2( Point_2)>::type
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y() const
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{
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return typename R::Compute_y_2()(point());
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}
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typename cpp11::result_of<typename R::Compute_hx_2( Point_2)>::type
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hx() const
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{
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return R().compute_hx_2_object()(point());
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}
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typename cpp11::result_of<typename R::Compute_hy_2( Point_2)>::type
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hy() const
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{
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return R().compute_hy_2_object()(point());
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}
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typename cpp11::result_of<typename R::Compute_hw_2( Point_2)>::type
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hw() const
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{
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return R().compute_hw_2_object()(point());
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}
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typename cpp11::result_of<typename R::Compute_x_2( Point_2)>::type
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cartesian(int i) const
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{
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CGAL_kernel_precondition( (i == 0) || (i == 1) );
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if (i==0) return x();
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return y();
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}
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RT
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homogeneous(int i) const
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{
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CGAL_kernel_precondition( (i >= 0) || (i <= 2) );
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if (i==0) return hx();
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if (i==1) return hy();
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return hw();
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}
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typename cpp11::result_of<typename R::Compute_x_2(Point_2)>::type
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operator[](int i) const
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{
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return cartesian(i);
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}
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Cartesian_const_iterator cartesian_begin() const
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{
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return typename R::Construct_cartesian_const_iterator_2()(point());
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}
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Cartesian_const_iterator cartesian_end() const
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{
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return typename R::Construct_cartesian_const_iterator_2()(point(),3);
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}
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int dimension() const
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{
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return 2;
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}
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Bbox_2 bbox() const
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{
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return R().construct_bbox_2_object()(point());
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}
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Weighted_point_2 transform(const Aff_transformation_2 &t) const
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{
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return Weighted_point_2(t.transform(point(),weight()));
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}
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};
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template <class R>
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inline
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bool
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operator==(const Origin& o, const Weighted_point_2<R>& p)
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{ return p == o; }
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template <class R>
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inline
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bool
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operator!=(const Origin& o, const Weighted_point_2<R>& p)
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{ return p != o; }
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template <class R>
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inline
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bool
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operator==(const Point_2<R>& bp, const Weighted_point_2<R>& p)
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{ return bp == p.point(); }
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template <class R>
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inline
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bool
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operator!=(const Point_2<R>& bp, const Weighted_point_2<R>& p)
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{ return bp != p.point(); }
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template <class R>
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inline
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bool
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operator==(const Weighted_point_2<R>& p, const Point_2<R>& bp)
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{ return bp == p.point(); }
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template <class R>
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inline
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bool
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operator!=(const Weighted_point_2<R>& p, const Point_2<R>& bp)
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{ return bp != p.point(); }
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template <class R>
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inline
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bool
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operator==(const Weighted_point_2<R>& p, const Weighted_point_2<R>& p2)
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{ return p.point() == p2.point(); }
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template <class R>
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inline
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bool
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operator!=(const Weighted_point_2<R>& p, const Weighted_point_2<R>& p2)
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{ return p.point() != p2.point(); }
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template <class R>
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inline
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bool
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operator<(const Weighted_point_2<R>& p, const Weighted_point_2<R>& q)
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{ return p.point() < q.point(); }
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template <class R >
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std::ostream&
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insert(std::ostream& os, const Weighted_point_2<R>& p,const Cartesian_tag&)
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{
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switch(get_mode(os)) {
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case IO::ASCII :
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return os << p.point() << ' ' << p.weight();
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case IO::BINARY :
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write(os, p.x());
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write(os, p.y());
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write(os, p.weight());
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return os;
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default:
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return os << "Weighted_pointC2(" << p.x() << ", " << p.y() << ", " << p.weight()<< ')';
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}
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}
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template <class R >
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std::ostream&
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insert(std::ostream& os, const Weighted_point_2<R>& p,const Homogeneous_tag&)
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{
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switch(get_mode(os))
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{
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case IO::ASCII :
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return os << p.point() << ' ' << p.weight();
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case IO::BINARY :
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os << p.point();
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write(os, p.weight());
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return os;
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default:
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return os << "Weighted_pointH2("
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<< p.hx() << ", "
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<< p.hy() << ", "
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<< p.hw() << ", "
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<< p.weight() << ')';
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}
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}
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template < class R >
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std::ostream&
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operator<<(std::ostream& os, const Weighted_point_2<R>& p)
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{
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return insert(os, p, typename R::Kernel_tag() );
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}
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template <class R >
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std::istream&
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extract(std::istream& is, Weighted_point_2<R>& p, const Cartesian_tag&)
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{
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typename R::FT x, y, weight;
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switch(get_mode(is)) {
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case IO::ASCII :
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is >> iformat(x) >> iformat(y) >> iformat(weight);
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break;
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case IO::BINARY :
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read(is, x);
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read(is, y);
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read(is, weight);
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break;
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default:
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std::cerr << "" << std::endl;
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std::cerr << "Stream must be in ascii or binary mode" << std::endl;
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break;
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}
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if (is)
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p = Weighted_point_2<R>(typename R::Point_2(x, y),weight);
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return is;
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}
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template <class R >
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std::istream&
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extract(std::istream& is, Weighted_point_2<R>& p, const Homogeneous_tag&)
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{
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typename R::RT hx, hy, hw;
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typename R::FT weight;
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switch(get_mode(is))
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{
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case IO::ASCII :
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is >> hx >> hy >> hw >> weight;
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break;
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case IO::BINARY :
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read(is, hx);
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read(is, hy);
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read(is, hw);
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read(is, weight);
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break;
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default:
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std::cerr << "" << std::endl;
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std::cerr << "Stream must be in ascii or binary mode" << std::endl;
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break;
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}
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if (is)
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p = Weighted_point_2<R>(typename R::Point_2(hx, hy, hw),weight);
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return is;
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}
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template < class R >
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std::istream&
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operator>>(std::istream& is, Weighted_point_2<R>& p)
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{
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return extract(is, p, typename R::Kernel_tag() );
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}
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} //namespace CGAL
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#endif // CGAL_WEIGHTED_POINT_2_H
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