// Copyright (c) 2000,2001 // Utrecht University (The Netherlands), // ETH Zurich (Switzerland), // INRIA Sophia-Antipolis (France), // Max-Planck-Institute Saarbruecken (Germany), // 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; 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: LGPL-3.0+ // // // Author(s) : Michael Seel #ifndef CGAL_SIMPLE_TRANSFORMATIONS_D_H #define CGAL_SIMPLE_TRANSFORMATIONS_D_H #include namespace CGAL { /*{\Moptions outfile=Simple_transformations.man}*/ /*{\Manpage{}{}{Simple Affine Transformations}{}}*/ template Point_d reflect(const Point_d& p, const Point_d& q) /*{\Mfunc returns |p| reflected at point |q|. }*/ { return Point_d(p + 2*(q-p)); } template Point_d reflect(const Point_d& p, const Line_d& l) /*{\Mfunc returns |p| reflected across line |l|.}*/ { // reflect point across line through r and s Point_d c = l.projection(p); return Point_d(p + 2*(c-p)); } template Sphere_d reflect(const Sphere_d& s, const Point_d& p) /*{\Mfunc returns |s| reflected across point |p|.}*/ { std::vector< Point_d > B(s.points_begin(),s.points_end()); typename std::vector< Point_d >::iterator it; for (it = B.begin(); it != B.end(); ++it) *it = reflect(*it,p); return Sphere_d(p.dimension(),B.begin(),B.end()); } template Sphere_d reflect(const Sphere_d& s, const Line_d& l) /*{\Mfunc returns |s| reflected across line |l|.}*/ { std::vector< Point_d > B(s.points_begin(),s.points_end()); typename std::vector< Point_d >::iterator it; for (it = B.begin(); it != B.end(); ++it) *it = reflect(*it,l); return Sphere_d(l.dimension(),B.begin(),B.end()); } template Segment_d reflect(const Segment_d& s, const Point_d& p) /*{\Mfunc returns |s| reflected across point |p|.}*/ { return Segment_d(reflect(s.point(0),p),reflect(s.point(1),p)); } template Segment_d reflect(const Segment_d& s, const Line_d& l) /*{\Mfunc returns |s| reflected across line |l|.}*/ { return Segment_d(reflect(s.point(0),l),reflect(s.point(1),l)); } template Ray_d reflect(const Ray_d& r, const Point_d& p) /*{\Mfunc returns |s| reflected across point |p|.}*/ { return Ray_d(reflect(r.point(0),p),reflect(r.point(1),p)); } template Ray_d reflect(const Ray_d& r, const Line_d& l) /*{\Mfunc returns |s| reflected across line |l|.}*/ { return Ray_d(reflect(r.point(0),l),reflect(r.point(1),l)); } template Line_d reflect(const Line_d& l, const Point_d& p) /*{\Mfunc returns |s| reflected across point |p|.}*/ { return Line_d(reflect(l.point(0),p),reflect(l.point(1),p)); } template Line_d reflect(const Line_d& s, const Line_d& l) /*{\Mfunc returns |s| reflected across line |l|.}*/ { return Line_d(reflect(s.point(0),l),reflect(s.point(1),l)); } } //namespace CGAL #endif // CGAL_SIMPLE_TRANSFORMATIONS_D_H