ray_3.h
来自「CGAL is a collaborative effort of severa」· C头文件 代码 · 共 238 行
H
238 行
// Copyright (c) 2000 Utrecht University (The Netherlands),// ETH Zurich (Switzerland), Freie Universitaet Berlin (Germany),// INRIA Sophia-Antipolis (France), Martin-Luther-University Halle-Wittenberg// (Germany), Max-Planck-Institute Saarbruecken (Germany), RISC Linz (Austria),// and Tel-Aviv University (Israel). 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 Lesser General Public License as// published by the Free Software Foundation; version 2.1 of the License.// See the file LICENSE.LGPL distributed with CGAL.//// 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.//// $Source: /CVSROOT/CGAL/Packages/Cartesian_kernel/include/CGAL/Cartesian/Ray_3.h,v $// $Revision: 1.35 $ $Date: 2004/02/19 19:38:58 $// $Name: $//// Author(s) : Andreas Fabri#ifndef CGAL_CARTESIAN_RAY_3_H#define CGAL_CARTESIAN_RAY_3_H#include <CGAL/Twotuple.h>CGAL_BEGIN_NAMESPACEtemplate < class R_ >class RayC3{ typedef typename R_::FT FT; typedef typename R_::Point_3 Point_3; typedef typename R_::Direction_3 Direction_3; typedef typename R_::Vector_3 Vector_3; typedef typename R_::Line_3 Line_3; typedef typename R_::Ray_3 Ray_3; typedef typename R_::Aff_transformation_3 Aff_transformation_3; typedef Twotuple<Point_3> Rep; typedef typename R_::template Handle<Rep>::type Base; Base base;public: typedef R_ R; RayC3() {} RayC3(const Point_3 &sp, const Point_3 &secondp) : base(sp, secondp) {} RayC3(const Point_3 &sp, const Vector_3 &v) : base(sp, sp + v) {} RayC3(const Point_3 &sp, const Direction_3 &d) : base(sp, sp + d.to_vector()) {} RayC3(const Point_3 &sp, const Line_3 &l) : base(sp, sp + l.to_vector()) {} bool operator==(const RayC3 &r) const; bool operator!=(const RayC3 &r) const; const Point_3 & start() const; const Point_3 & source() const { return get(base).e0; } const Point_3 & second_point() const { return get(base).e1; } Point_3 point(int i) const; Direction_3 direction() const; Vector_3 to_vector() const; Line_3 supporting_line() const; Ray_3 opposite() const; Ray_3 transform(const Aff_transformation_3 &t) const { return RayC3<R>(t.transform(source()), t.transform(second_point())); } bool is_degenerate() const; bool has_on(const Point_3 &p) const; bool collinear_has_on(const Point_3 &p) const;};template < class R >inlineboolRayC3<R>::operator==(const RayC3<R> &r) const{ if (CGAL::identical(base, r.base)) return true; return source() == r.source() && direction() == r.direction();}template < class R >inlineboolRayC3<R>::operator!=(const RayC3<R> &r) const{ return !(*this == r);}template < class R >inlineconst typename RayC3<R>::Point_3 &RayC3<R>::start() const{ return source();}template < class R >CGAL_KERNEL_INLINEtypename RayC3<R>::Point_3RayC3<R>::point(int i) const{ CGAL_kernel_precondition( i >= 0 ); if (i == 0) return source(); if (i == 1) return second_point(); return source() + FT(i) * (second_point() - source());}template < class R >inlinetypename RayC3<R>::Vector_3RayC3<R>::to_vector() const{ return second_point() - source();}template < class R >inlinetypename RayC3<R>::Direction_3RayC3<R>::direction() const{ return Direction_3( second_point() - source() );}template < class R >inlinetypename RayC3<R>::Line_3RayC3<R>::supporting_line() const{ return Line_3(*this);}template < class R >inlinetypename RayC3<R>::Ray_3RayC3<R>::opposite() const{ return RayC3<R>( source(), - direction() );}template < class R >boolRayC3<R>::has_on(const typename RayC3<R>::Point_3 &p) const{ return (p == source()) || ( collinear(source(), p, second_point()) && ( Direction_3(p - source()) == direction() ));}template < class R >inlineboolRayC3<R>::is_degenerate() const{ return source() == second_point();}template < class R >inlineboolRayC3<R>::collinear_has_on(const typename RayC3<R>::Point_3 &p) const{ CGAL_kernel_exactness_precondition( collinear(source(), p, second_point()) ); Comparison_result cx = compare_x(source(), second_point()); if (cx != EQUAL) return cx != compare_x(p, source()); Comparison_result cy = compare_y(source(), second_point()); if (cy != EQUAL) return cy != compare_y(p, source()); Comparison_result cz = compare_z(source(), second_point()); if (cz != EQUAL) return cz != compare_z(p, source()); return true; // p == source()}#ifndef CGAL_NO_OSTREAM_INSERT_RAYC3template < class R >std::ostream &operator<<(std::ostream &os, const RayC3<R> &r){ switch(os.iword(IO::mode)) { case IO::ASCII : return os << r.start() << ' ' << r.direction(); case IO::BINARY : return os<< r.start() << r.direction(); default: return os << "RayC3(" << r.start() << ", " << r.direction() << ")"; }}#endif // CGAL_NO_OSTREAM_INSERT_RAYC3#ifndef CGAL_NO_ISTREAM_EXTRACT_RAYC3template < class R >std::istream &operator>>(std::istream &is, RayC3<R> &r){ typename R::Point_3 p; typename R::Direction_3 d; is >> p >> d; if (is) r = RayC3<R>(p, d); return is;}#endif // CGAL_NO_ISTREAM_EXTRACT_RAYC3CGAL_END_NAMESPACE#endif // CGAL_CARTESIAN_RAY_3_H
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