cgal/Triangulation_3/include/CGAL/Regular_triangulation_cell_...

167 lines
6.2 KiB
C++

// Copyright (c) 2004 INRIA Sophia-Antipolis (France).
// All rights reserved.
//
// This file is part of CGAL (www.cgal.org).
// You can redistribute it and/or modify it under the terms of the GNU
// General Public License as published by the Free Software Foundation,
// either version 3 of the License, or (at your option) any later version.
//
// Licensees holding a valid commercial license may use this file in
// accordance with the commercial license agreement provided with the software.
//
// This file is provided AS IS with NO WARRANTY OF ANY KIND, INCLUDING THE
// WARRANTY OF DESIGN, MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
//
// $URL$
// $Id$
// SPDX-License-Identifier: GPL-3.0+
//
// Author(s) : Christophe Delage <christophe.delage@sophia.inria.fr>
// cell of a triangulation of any dimension <=3
// with hidden points (for the regular triangulation)
#ifndef CGAL_REGULAR_TRIANGULATION_CELL_BASE_3_H
#define CGAL_REGULAR_TRIANGULATION_CELL_BASE_3_H
#include <CGAL/license/Triangulation_3.h>
#include <CGAL/assertions.h>
#include <CGAL/Hidden_point_memory_policy.h>
#include <CGAL/Triangulation_cell_base_3.h>
#include <boost/type_traits/is_same.hpp>
#include <boost/utility/enable_if.hpp>
#include <list>
namespace CGAL {
template < typename GT,
typename Cb = Triangulation_cell_base_3<GT >,
typename Memory_policy = Keep_hidden_points,
typename C = std::list<typename GT::Weighted_point_3> >
class Regular_triangulation_cell_base_3
: public Cb
{
public:
typedef typename Cb::Vertex_handle Vertex_handle;
typedef typename Cb::Cell_handle Cell_handle;
typedef GT Geom_traits;
typedef typename Geom_traits::Point_3 Point_3;
typedef typename Geom_traits::Weighted_point_3 Point;
typedef C Point_container;
typedef typename Point_container::iterator Point_iterator;
typedef typename Point_container::const_iterator Point_const_iterator;
template < typename TDS2 >
struct Rebind_TDS {
typedef typename Cb::template Rebind_TDS<TDS2>::Other Cb2;
typedef Regular_triangulation_cell_base_3<GT, Cb2, Memory_policy, C> Other;
};
Regular_triangulation_cell_base_3()
: Cb() {}
Regular_triangulation_cell_base_3(Vertex_handle v0,
Vertex_handle v1,
Vertex_handle v2,
Vertex_handle v3)
: Cb(v0, v1, v2, v3) {}
Regular_triangulation_cell_base_3(Vertex_handle v0,
Vertex_handle v1,
Vertex_handle v2,
Vertex_handle v3,
Cell_handle n0,
Cell_handle n1,
Cell_handle n2,
Cell_handle n3)
: Cb(v0, v1, v2, v3, n0, n1, n2, n3) {}
// because we can't use default templates in ansi...
Point_iterator hidden_points_begin()
{ return hidden_points_begin_internal<Memory_policy>(); }
Point_iterator hidden_points_end()
{ return hidden_points_end_internal<Memory_policy>(); }
// const versions
Point_const_iterator hidden_points_begin() const
{ return hidden_points_begin_internal<Memory_policy>(); }
Point_const_iterator hidden_points_end() const
{ return hidden_points_end_internal<Memory_policy>(); }
void hide_point(const Point& p)
{ hide_point_internal<Memory_policy>(p); }
void unhide_point(const Point_iterator pit)
{ unhide_point_internal<Memory_policy>(pit); }
// Memory_policy is Tag_true -------------------------------------------------
template<typename Tag>
Point_iterator hidden_points_begin_internal(typename boost::enable_if_c<Tag::value>::type* = NULL)
{ return _hidden.begin(); }
template<typename Tag>
Point_iterator hidden_points_end_internal(typename boost::enable_if_c<Tag::value>::type* = NULL)
{ return _hidden.end(); }
template<typename Tag>
Point_const_iterator hidden_points_begin_internal(typename boost::enable_if_c<Tag::value>::type* = NULL) const
{ return _hidden.begin(); }
template<typename Tag>
Point_const_iterator hidden_points_end_internal(typename boost::enable_if_c<Tag::value>::type* = NULL) const
{ return _hidden.end(); }
template<typename Tag>
void hide_point_internal(const Point& p, typename boost::enable_if_c<Tag::value>::type* = NULL)
{ _hidden.push_back(p); }
template<typename Tag>
void unhide_point_internal(const Point_iterator pit, typename boost::enable_if_c<Tag::value>::type* = NULL)
{ _hidden.erase(pit); }
// Memory_policy is Tag_false ------------------------------------------------
template<typename Tag>
Point_iterator hidden_points_begin_internal(typename boost::disable_if_c<Tag::value>::type* = NULL)
{ return hidden_points_end(); }
template<typename Tag>
Point_iterator hidden_points_end_internal(typename boost::disable_if_c<Tag::value>::type* = NULL)
{ return _hidden.end(); }
// const versions
template<typename Tag>
Point_const_iterator hidden_points_begin_internal(typename boost::disable_if_c<Tag::value>::type* = NULL) const
{ return hidden_points_end(); }
template<typename Tag>
Point_const_iterator hidden_points_end_internal(typename boost::disable_if_c<Tag::value>::type* = NULL) const
{ return _hidden.end(); }
template<typename Tag>
void hide_point_internal(const Point&, typename boost::disable_if_c<Tag::value>::type* = NULL)
{ }
template<typename Tag>
void unhide_point_internal(const Point_iterator, typename boost::disable_if_c<Tag::value>::type* = NULL)
{ }
template<typename GT_>
Point_3 weighted_circumcenter(const GT_& gt) const
{
return gt.construct_weighted_circumcenter_3_object()(this->vertex(0)->point(),
this->vertex(1)->point(),
this->vertex(2)->point(),
this->vertex(3)->point());
}
Point_3 weighted_circumcenter() const
{
return weighted_circumcenter(Geom_traits());
}
private:
Point_container _hidden;
};
} //namespace CGAL
#endif // CGAL_REGULAR_TRIANGULATION_CELL_BASE_3_H