331 lines
9.1 KiB
C
331 lines
9.1 KiB
C
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// Copyright (c) 2000
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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)
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//
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// $URL: https://github.com/CGAL/cgal/blob/v5.1/Cartesian_kernel/include/CGAL/Cartesian/Iso_cuboid_3.h $
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// $Id: Iso_cuboid_3.h 0779373 2020-03-26T13:31:46+01:00 Sébastien Loriot
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// SPDX-License-Identifier: LGPL-3.0-or-later OR LicenseRef-Commercial
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//
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//
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// Author(s) : Herve Bronnimann
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#ifndef CGAL_CARTESIAN_ISO_CUBOID_3_H
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#define CGAL_CARTESIAN_ISO_CUBOID_3_H
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#include <CGAL/array.h>
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#include <CGAL/Handle_for.h>
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#include <CGAL/Cartesian/predicates_on_points_3.h>
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namespace CGAL {
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template < class R_ >
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class Iso_cuboidC3
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{
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typedef typename R_::FT FT;
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typedef typename R_::Iso_cuboid_3 Iso_cuboid_3;
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typedef typename R_::Point_3 Point_3;
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typedef typename R_::Aff_transformation_3 Aff_transformation_3;
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typedef typename R_::Construct_point_3 Construct_point_3;
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typedef std::array<Point_3, 2> Rep;
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typedef typename R_::template Handle<Rep>::type Base;
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Base base;
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public:
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typedef R_ R;
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Iso_cuboidC3() {}
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Iso_cuboidC3(const Point_3 &p, const Point_3 &q, int)
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: base(CGAL::make_array(p, q))
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{
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// I have to remove the assertions, because of Cartesian_converter.
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// CGAL_kernel_assertion(p.x()<=q.x());
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// CGAL_kernel_assertion(p.y()<=q.y());
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// CGAL_kernel_assertion(p.z()<=q.z());
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}
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Iso_cuboidC3(const Point_3 &p, const Point_3 &q)
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{
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Construct_point_3 construct_point_3;
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FT minx, maxx, miny, maxy, minz, maxz;
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if (p.x() < q.x()) { minx = p.x(); maxx = q.x(); }
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else { minx = q.x(); maxx = p.x(); }
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if (p.y() < q.y()) { miny = p.y(); maxy = q.y(); }
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else { miny = q.y(); maxy = p.y(); }
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if (p.z() < q.z()) { minz = p.z(); maxz = q.z(); }
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else { minz = q.z(); maxz = p.z(); }
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base = Rep(CGAL::make_array(construct_point_3(minx, miny, minz),
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construct_point_3(maxx, maxy, maxz)));
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}
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Iso_cuboidC3(const Point_3 &left, const Point_3 &right,
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const Point_3 &bottom, const Point_3 &top,
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const Point_3 &far_, const Point_3 &close)
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: base(CGAL::make_array(Construct_point_3()(left.x(), bottom.y(), far_.z()),
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Construct_point_3()(right.x(), top.y(), close.z())))
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{
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CGAL_kernel_precondition(!less_x(right, left));
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CGAL_kernel_precondition(!less_y(top, bottom));
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CGAL_kernel_precondition(!less_z(close, far_));
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}
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Iso_cuboidC3(const FT& min_x, const FT& min_y, const FT& min_z,
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const FT& max_x, const FT& max_y, const FT& max_z)
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: base(CGAL::make_array(Construct_point_3()(min_x, min_y, min_z),
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Construct_point_3()(max_x, max_y, max_z)))
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{
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CGAL_kernel_precondition(min_x <= max_x);
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CGAL_kernel_precondition(min_y <= max_y);
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CGAL_kernel_precondition(min_z <= max_z);
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}
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Iso_cuboidC3(const FT& min_hx, const FT& min_hy, const FT& min_hz,
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const FT& max_hx, const FT& max_hy, const FT& max_hz,
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const FT& hw)
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{
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if (hw == FT(1))
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base = Rep(CGAL::make_array(Construct_point_3()(min_hx, min_hy, min_hz),
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Construct_point_3()(max_hx, max_hy, max_hz)));
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else
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base = Rep(CGAL::make_array(Construct_point_3()(min_hx/hw, min_hy/hw, min_hz/hw),
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Construct_point_3()(max_hx/hw, max_hy/hw, max_hz/hw)));
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}
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typename R::Boolean operator==(const Iso_cuboidC3& s) const;
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typename R::Boolean operator!=(const Iso_cuboidC3& s) const;
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const Point_3 & min BOOST_PREVENT_MACRO_SUBSTITUTION () const
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{
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return get_pointee_or_identity(base)[0];
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}
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const Point_3 & max BOOST_PREVENT_MACRO_SUBSTITUTION () const
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{
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return get_pointee_or_identity(base)[1];
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}
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Point_3 vertex(int i) const;
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Point_3 operator[](int i) const;
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Iso_cuboid_3 transform(const Aff_transformation_3 &t) const
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{
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return Iso_cuboidC3(t.transform((this->min)()), t.transform((this->max)()));
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}
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Bounded_side bounded_side(const Point_3& p) const;
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typename R::Boolean has_on(const Point_3& p) const;
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typename R::Boolean has_on_boundary(const Point_3& p) const;
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typename R::Boolean has_on_bounded_side(const Point_3& p) const;
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typename R::Boolean has_on_unbounded_side(const Point_3& p) const;
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typename R::Boolean is_degenerate() const;
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const FT & xmin() const;
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const FT & ymin() const;
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const FT & zmin() const;
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const FT & xmax() const;
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const FT & ymax() const;
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const FT & zmax() const;
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const FT & min_coord(int i) const;
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const FT & max_coord(int i) const;
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FT volume() const;
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};
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template < class R >
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CGAL_KERNEL_INLINE
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typename R::Boolean
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Iso_cuboidC3<R>::operator==(const Iso_cuboidC3<R>& r) const
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{ // FIXME : predicate
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if (CGAL::identical(base, r.base))
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return true;
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return (this->min)() == (r.min)() && (this->max)() == (r.max)();
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}
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template < class R >
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inline
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typename R::Boolean
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Iso_cuboidC3<R>::operator!=(const Iso_cuboidC3<R>& r) const
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{
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return !(*this == r);
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::xmin() const
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{
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return (this->min)().x();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::ymin() const
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{
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return (this->min)().y();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::zmin() const
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{
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return (this->min)().z();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::xmax() const
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{
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return (this->max)().x();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::ymax() const
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{
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return (this->max)().y();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::zmax() const
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{
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return (this->max)().z();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::min_coord(int i) const
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{
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CGAL_kernel_precondition( i == 0 || i == 1 || i == 2 );
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if (i == 0)
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return xmin();
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else if (i == 1)
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return ymin();
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else
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return zmin();
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}
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template < class R >
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inline
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const typename Iso_cuboidC3<R>::FT &
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Iso_cuboidC3<R>::max_coord(int i) const
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{
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CGAL_kernel_precondition( i == 0 || i == 1 || i == 2 );
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if (i == 0)
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return xmax();
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else if (i == 1)
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return ymax();
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else
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return zmax();
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}
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template < class R >
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CGAL_KERNEL_LARGE_INLINE
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typename Iso_cuboidC3<R>::Point_3
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Iso_cuboidC3<R>::vertex(int i) const
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{
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Construct_point_3 construct_point_3;
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switch (i%8)
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{
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case 0: return (this->min)();
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case 1: return construct_point_3((this->max)().hx(), (this->min)().hy(), (this->min)().hz());
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case 2: return construct_point_3((this->max)().hx(), (this->max)().hy(), (this->min)().hz());
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case 3: return construct_point_3((this->min)().hx(), (this->max)().hy(), (this->min)().hz());
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case 4: return construct_point_3((this->min)().hx(), (this->max)().hy(), (this->max)().hz());
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case 5: return construct_point_3((this->min)().hx(), (this->min)().hy(), (this->max)().hz());
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case 6: return construct_point_3((this->max)().hx(), (this->min)().hy(), (this->max)().hz());
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default: // case 7:
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return (this->max)();
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}
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}
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template < class R >
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inline
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typename Iso_cuboidC3<R>::Point_3
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Iso_cuboidC3<R>::operator[](int i) const
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{
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return vertex(i);
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}
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template < class R >
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inline
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typename Iso_cuboidC3<R>::FT
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Iso_cuboidC3<R>::volume() const
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{
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return (xmax()-xmin()) * (ymax()-ymin()) * (zmax()-zmin());
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}
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template < class R >
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CGAL_KERNEL_MEDIUM_INLINE
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Bounded_side
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Iso_cuboidC3<R>::
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bounded_side(const typename Iso_cuboidC3<R>::Point_3& p) const
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{
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if (strict_dominance(p, (this->min)()) && strict_dominance((this->max)(), p) )
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return ON_BOUNDED_SIDE;
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if (dominance(p, (this->min)()) && dominance((this->max)(), p))
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return ON_BOUNDARY;
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return ON_UNBOUNDED_SIDE;
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}
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template < class R >
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inline
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typename R::Boolean
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Iso_cuboidC3<R>::
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has_on_boundary(const typename Iso_cuboidC3<R>::Point_3& p) const
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{
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return bounded_side(p) == ON_BOUNDARY;
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}
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template < class R >
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inline
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typename R::Boolean
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Iso_cuboidC3<R>::
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has_on(const typename Iso_cuboidC3<R>::Point_3& p) const
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{
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return bounded_side(p) == ON_BOUNDARY;
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}
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template < class R >
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inline
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typename R::Boolean
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Iso_cuboidC3<R>::
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has_on_bounded_side(const typename Iso_cuboidC3<R>::Point_3& p) const
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{
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return bounded_side(p) == ON_BOUNDED_SIDE;
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}
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template < class R >
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CGAL_KERNEL_INLINE
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typename R::Boolean
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Iso_cuboidC3<R>::
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has_on_unbounded_side(const typename Iso_cuboidC3<R>::Point_3& p)
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const
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{
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return bounded_side(p) == ON_UNBOUNDED_SIDE;
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}
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template < class R >
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CGAL_KERNEL_INLINE
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typename R::Boolean
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Iso_cuboidC3<R>::is_degenerate() const
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{ // FIXME : predicate
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return (this->min)().hx() == (this->max)().hx()
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|| (this->min)().hy() == (this->max)().hy()
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|| (this->min)().hz() == (this->max)().hz();
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}
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} //namespace CGAL
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#endif // CGAL_CARTESIAN_ISO_CUBOID_3_H
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