cgal/Old_Packages/C2/include/CGAL/Cartesian/Segment_2.C

280 lines
5.9 KiB
C

// ======================================================================
//
// Copyright (c) 2000 The CGAL Consortium
//
// This software and related documentation is part of an INTERNAL release
// of the Computational Geometry Algorithms Library (CGAL). It is not
// intended for general use.
//
// ----------------------------------------------------------------------
//
// release :
// release_date :
//
// file : include/CGAL/Cartesian/Segment_2.C
// revision : $Revision$
// revision_date : $Date$
// author(s) : Andreas Fabri, Herve Bronnimann
// coordinator : INRIA Sophia-Antipolis (Mariette.Yvinec@sophia.inria.fr)
//
// ======================================================================
#ifndef CGAL_CARTESIAN_SEGMENT_2_C
#define CGAL_CARTESIAN_SEGMENT_2_C
#include <CGAL/Cartesian/predicates_on_points_2.h>
#ifndef CGAL_CARTESIAN_REDEFINE_NAMES_2_H
#define CGAL_CTAG
#endif
#ifdef CGAL_CFG_TYPENAME_BUG
#define typename
#endif
CGAL_BEGIN_NAMESPACE
template < class R >
CGAL_KERNEL_CTOR_INLINE
SegmentC2<R CGAL_CTAG>::SegmentC2()
{
new ( static_cast< void*>(ptr)) Twotuple<Point_2>();
}
template < class R >
CGAL_KERNEL_CTOR_INLINE
SegmentC2<R CGAL_CTAG>::SegmentC2(const SegmentC2<R CGAL_CTAG> &s)
: Handle_for<Twotuple<typename R::Point_2> >(s)
{}
template < class R >
CGAL_KERNEL_CTOR_INLINE
SegmentC2<R CGAL_CTAG>::
SegmentC2(const typename SegmentC2<R CGAL_CTAG>::Point_2 &sp,
const typename SegmentC2<R CGAL_CTAG>::Point_2 &ep)
{
new ( static_cast< void*>(ptr)) Twotuple<Point_2>(sp, ep);
}
template < class R >
inline
SegmentC2<R CGAL_CTAG>::~SegmentC2()
{}
template < class R >
inline
bool
SegmentC2<R CGAL_CTAG>::operator==(const SegmentC2<R CGAL_CTAG> &s) const
{
return source() == s.source() && target() == s.target();
}
template < class R >
inline
bool
SegmentC2<R CGAL_CTAG>::operator!=(const SegmentC2<R CGAL_CTAG> &s) const
{
return !(*this == s);
}
template < class R >
inline
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::source() const
{
return ptr->e0;
}
template < class R >
inline
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::target() const
{
return ptr->e1;
}
template < class R >
inline
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::start() const
{
return source();
}
template < class R >
inline
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::end() const
{
return target();
}
template < class R >
CGAL_KERNEL_INLINE
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::min() const
{
return lexicographically_xy_smaller(source(),target()) ? source() : target();
}
template < class R >
CGAL_KERNEL_INLINE
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::max() const
{
return lexicographically_xy_smaller(source(),target()) ? target() : source();
}
template < class R >
CGAL_KERNEL_INLINE
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::vertex(int i) const
{
return (i%2 == 0) ? source() : target();
}
template < class R >
CGAL_KERNEL_INLINE
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::point(int i) const
{
return (i%2 == 0) ? source() : target();
}
template < class R >
inline
typename SegmentC2<R CGAL_CTAG>::Point_2
SegmentC2<R CGAL_CTAG>::operator[](int i) const
{
return vertex(i);
}
template < class R >
CGAL_KERNEL_INLINE
typename SegmentC2<R CGAL_CTAG>::FT
SegmentC2<R CGAL_CTAG>::squared_length() const
{
return squared_distance(source(), target());
}
template < class R >
CGAL_KERNEL_INLINE
typename SegmentC2<R CGAL_CTAG>::Direction_2
SegmentC2<R CGAL_CTAG>::direction() const
{
return Direction_2( target() - source() );
}
template < class R >
inline
typename SegmentC2<R CGAL_CTAG>::Line_2
SegmentC2<R CGAL_CTAG>::supporting_line() const
{
return Line_2(*this);
}
template < class R >
inline
SegmentC2<R CGAL_CTAG>
SegmentC2<R CGAL_CTAG>::opposite() const
{
return SegmentC2<R CGAL_CTAG>(target(), source());
}
template < class R >
inline
SegmentC2<R CGAL_CTAG>
SegmentC2<R CGAL_CTAG>::
transform(const typename SegmentC2<R CGAL_CTAG>::Aff_transformation_2 &t) const
{
return SegmentC2<R CGAL_CTAG>(t.transform(source()), t.transform(target()));
}
template < class R >
CGAL_KERNEL_INLINE
Bbox_2
SegmentC2<R CGAL_CTAG>::bbox() const
{
return source().bbox() + target().bbox();
}
template < class R >
inline
bool
SegmentC2<R CGAL_CTAG>::is_degenerate() const
{
return source() == target();
}
template < class R >
CGAL_KERNEL_INLINE
bool
SegmentC2<R CGAL_CTAG>::is_horizontal() const
{
return y_equal(source(), target());
}
template < class R >
CGAL_KERNEL_INLINE
bool
SegmentC2<R CGAL_CTAG>::is_vertical() const
{
return x_equal(source(), target());
}
template < class R >
CGAL_KERNEL_INLINE
bool
SegmentC2<R CGAL_CTAG>::
has_on(const typename SegmentC2<R CGAL_CTAG>::Point_2 &p) const
{
return are_ordered_along_line(source(), p, target());
}
template < class R >
CGAL_KERNEL_MEDIUM_INLINE
bool
SegmentC2<R CGAL_CTAG>::
collinear_has_on(const typename SegmentC2<R CGAL_CTAG>::Point_2 &p) const
{
return collinear_are_ordered_along_line(source(), p, target());
}
#ifndef CGAL_NO_OSTREAM_INSERT_SEGMENTC2
template < class R >
std::ostream &
operator<<(std::ostream &os, const SegmentC2<R CGAL_CTAG> &s)
{
switch(os.iword(IO::mode)) {
case IO::ASCII :
return os << s.source() << ' ' << s.target();
case IO::BINARY :
return os << s.source() << s.target();
default:
return os << "SegmentC2(" << s.source() << ", " << s.target() << ")";
}
}
#endif // CGAL_NO_OSTREAM_INSERT_SEGMENTC2
#ifndef CGAL_NO_ISTREAM_EXTRACT_SEGMENTC2
template < class R >
std::istream &
operator>>(std::istream &is, SegmentC2<R CGAL_CTAG> &s)
{
typename SegmentC2<R CGAL_CTAG>::Point_2 p, q;
is >> p >> q;
s = SegmentC2<R CGAL_CTAG>(p, q);
return is;
}
#endif // CGAL_NO_ISTREAM_EXTRACT_SEGMENTC2
CGAL_END_NAMESPACE
#ifdef CGAL_CFG_TYPENAME_BUG
#undef typename
#endif
#endif // CGAL_CARTESIAN_SEGMENT_2_C