mirror of https://github.com/CGAL/cgal
Extract CGAL::Trisegment_2 from _aux.h (needs to be documented for concepts)
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// Copyright (c) 2005-2008 Fernando Luis Cacciola Carballal.
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// 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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// $URL$
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// $Id$
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// SPDX-License-Identifier: GPL-3.0-or-later OR LicenseRef-Commercial
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//
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// Author(s) : Fernando Cacciola <fernando_cacciola@ciudad.com.ar>
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//
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#ifndef CGAL_SLS_TRISEGMENT_H
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#define CGAL_SLS_TRISEGMENT_H
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#include <CGAL/license/Straight_skeleton_2.h>
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#include <boost/intrusive_ptr.hpp>
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#include <limits>
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#include <iostream>
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namespace CGAL {
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enum Trisegment_collinearity
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{
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TRISEGMENT_COLLINEARITY_NONE
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, TRISEGMENT_COLLINEARITY_01
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, TRISEGMENT_COLLINEARITY_12
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, TRISEGMENT_COLLINEARITY_02
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, TRISEGMENT_COLLINEARITY_ALL
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} ;
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inline char const* trisegment_collinearity_to_string( Trisegment_collinearity c )
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{
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switch ( c )
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{
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case TRISEGMENT_COLLINEARITY_NONE : return "<>" ;
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case TRISEGMENT_COLLINEARITY_01 : return "<0,1>" ;
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case TRISEGMENT_COLLINEARITY_12 : return "<1,2>" ;
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case TRISEGMENT_COLLINEARITY_02 : return "<0,2>" ;
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case TRISEGMENT_COLLINEARITY_ALL : return "<0,1,2>" ;
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}
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return "!!UNKNOWN COLLINEARITY!!" ;
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}
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namespace internal
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{
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template <>
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struct Minmax_traits< Trisegment_collinearity >
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{
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static const Trisegment_collinearity min = TRISEGMENT_COLLINEARITY_NONE;
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static const Trisegment_collinearity max = TRISEGMENT_COLLINEARITY_ALL;
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};
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}
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template<class K, typename Segment>
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class Trisegment_2
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: public Ref_counted_base
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{
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typedef Trisegment_2<K, Segment> Self;
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public:
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typedef boost::intrusive_ptr<Trisegment_2> Self_ptr ;
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Trisegment_2 ( Segment const& aE0
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, Segment const& aE1
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, Segment const& aE2
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, Trisegment_collinearity aCollinearity
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, std::size_t aID
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)
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: mID(aID)
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{
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mCollinearity = aCollinearity ;
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mE[0] = aE0 ;
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mE[1] = aE1 ;
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mE[2] = aE2 ;
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switch ( mCollinearity )
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{
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case TRISEGMENT_COLLINEARITY_01:
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mCSIdx=0; mNCSIdx=2; break ;
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case TRISEGMENT_COLLINEARITY_12:
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mCSIdx=1; mNCSIdx=0; break ;
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case TRISEGMENT_COLLINEARITY_02:
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mCSIdx=0; mNCSIdx=1; break ;
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case TRISEGMENT_COLLINEARITY_ALL:
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mCSIdx = mNCSIdx = (std::numeric_limits<unsigned>::max)(); break ;
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case TRISEGMENT_COLLINEARITY_NONE:
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mCSIdx = mNCSIdx = (std::numeric_limits<unsigned>::max)(); break ;
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}
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}
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std::size_t& id() { return mID; }
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const std::size_t& id() const { return mID; }
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static Trisegment_2 null() { return Self_ptr() ; }
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Trisegment_collinearity collinearity() const { return mCollinearity ; }
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Segment const& e( unsigned idx ) const { CGAL_precondition(idx<3) ; return mE[idx] ; }
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Segment const& e0() const { return e(0) ; }
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Segment const& e1() const { return e(1) ; }
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Segment const& e2() const { return e(2) ; }
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// If 2 out of the 3 edges are collinear they can be reclassified as 1 collinear edge (any of the 2) and 1 non-collinear.
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// These methods returns the edges according to that classification.
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// PRECONDITION: Exactly 2 out of 3 edges are collinear
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Segment const& collinear_edge () const { return e(mCSIdx) ; }
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Segment const& non_collinear_edge() const { return e(mNCSIdx) ; }
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Segment const& other_collinear_edge() const
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{
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switch ( mCollinearity )
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{
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case TRISEGMENT_COLLINEARITY_01:
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return e(1);
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case TRISEGMENT_COLLINEARITY_12:
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return e(2);
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case TRISEGMENT_COLLINEARITY_02:
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return e(2);
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}
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}
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Self_ptr child_l() const { return mChildL ; }
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Self_ptr child_r() const { return mChildR ; }
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void set_child_l( Self_ptr const& aChild ) { mChildL = aChild ; }
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void set_child_r( Self_ptr const& aChild ) { mChildR = aChild ; }
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enum SEED_ID { LEFT, RIGHT, UNKNOWN } ;
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// Indicates which of the seeds is collinear for a normal collinearity case.
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// PRECONDITION: The collinearity is normal.
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SEED_ID degenerate_seed_id() const
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{
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Trisegment_collinearity c = collinearity();
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return c == TRISEGMENT_COLLINEARITY_01 ? LEFT : c == TRISEGMENT_COLLINEARITY_12 ? RIGHT : UNKNOWN ;
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}
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friend std::ostream& operator << ( std::ostream& os, Self const& aTrisegment )
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{
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return os << "[" << s2str(aTrisegment.e0())
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<< " " << s2str(aTrisegment.e1())
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<< " " << s2str(aTrisegment.e2())
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<< " " << trisegment_collinearity_to_string(aTrisegment.collinearity())
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<< "]";
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}
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friend std::ostream& operator << ( std::ostream& os, Self_ptr const& aPtr )
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{
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recursive_print(os,aPtr,0);
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return os ;
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}
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static void recursive_print ( std::ostream& os, Self_ptr const& aTriPtr, int aDepth )
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{
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os << "\n" ;
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for ( int i = 0 ; i < aDepth ; ++ i )
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os << " " ;
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if ( aTriPtr )
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{
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os << *aTriPtr ;
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if ( aTriPtr->child_l() )
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recursive_print(os,aTriPtr->child_l(),aDepth+1);
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if ( aTriPtr->child_r() )
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recursive_print(os,aTriPtr->child_r(),aDepth+1);
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}
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else
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{
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os << "{null}" ;
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}
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}
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private :
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std::size_t mID;
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Segment mE[3];
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Trisegment_collinearity mCollinearity ;
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unsigned mCSIdx, mNCSIdx ;
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Self_ptr mChildL ;
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Self_ptr mChildR ;
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} ;
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} // end namespace CGAL
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#endif // CGAL_SLS_TRISEGMENT_H
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