mirror of https://github.com/CGAL/cgal
634 lines
18 KiB
C++
634 lines
18 KiB
C++
#ifndef CGAL_COMBINATORIAL_MAP_INSERTIONS_H
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#define CGAL_COMBINATORIAL_MAP_INSERTIONS_H
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namespace CGAL {
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/** @file Combinatorial_map_insertions.h
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* Insertion operations on combinatorial map.
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*/
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/** Insert a vertex in a given edge.
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* @param amap the used combinatorial map.
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* @param adart a dart of the edge (!=NULL && !=null_dart_handle).
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* @return a dart of the new vertex.
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*/
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template<class CMap>
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typename CMap::Dart_handle
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insert_cell_0_in_cell_1(CMap& amap, typename CMap::Dart_handle adart)
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{
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CGAL_assertion(adart != NULL && adart!=CMap::null_dart_handle);
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typename CMap::Dart_handle d1, d2;
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int mark = amap.get_new_mark();
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// 1) We store all the darts of the edge.
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std::deque<typename CMap::Dart_handle> vect;
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{
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for ( typename CMap::template Dart_of_cell_range<1>::iterator it=
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amap.template darts_of_cell<1>(adart).begin();
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it != amap.template darts_of_cell<1>(adart).end(); ++it )
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vect.push_back(it);
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}
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// 2) For each dart of the cell, we modify link of neighbors.
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typename std::deque<typename CMap::Dart_handle>::iterator it = vect.begin();
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for (; it != vect.end(); ++it)
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{
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d1 = amap.create_dart();
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if (!(*it)->is_free(1))
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{ amap.basic_link_beta_1(d1, (*it)->beta(1)); }
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for ( unsigned int dim=2; dim<=CMap::dimension; ++dim )
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{
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if (!(*it)->is_free(dim) && amap.is_marked((*it)->beta(dim), mark))
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{
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amap.basic_link_beta_for_involution((*it)->beta(dim), d1, dim);
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amap.basic_link_beta_for_involution(*it, (*it)->beta(dim)->
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template beta<1>(), dim);
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}
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}
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amap.link_beta_1(*it, d1);
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// TODO remove this group, and use link_beta instead ?
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//amap.group_all_dart_attributes_except(*it, d1, 1);
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amap.mark(*it, mark);
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}
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for (it = vect.begin(); it != vect.end(); ++it)
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{ amap.unmark(*it, mark); }
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amap.free_mark(mark);
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internal::Degroup_attribute_functor_run<CMap, 1>::
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run(&amap, adart, adart->beta(1));
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// CGAL_expensive_postcondition( amap.is_valid() );
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return adart->beta(1);
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}
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/** Insert a vertex in the given 2-cell which is splitted in triangles,
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* once for each inital edge of the facet.
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* @param amap the used combinatorial map.
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* @param adart a dart of the facet to triangulate.
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* @return A dart incident to the new vertex.
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*/
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// TODO revoir toute la gestion des attributs
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// (utilisation correcte des link avec/sans la maj)
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template < class CMap >
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typename CMap::Dart_handle
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insert_cell_0_in_cell_2(CMap& amap, typename CMap::Dart_handle adart)
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{
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CGAL_assertion(adart != NULL && adart!=CMap::null_dart_handle);
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typename CMap::Dart_handle first = adart, prev = NULL, cur = NULL;
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typename CMap::Dart_handle n1 = NULL, n2 = NULL;
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typename CMap::Dart_handle nn1 = NULL, nn2 = NULL;
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// If the facet is open, we search the dart 0-free
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while (!first->is_free(0) && first->beta(0) != adart)
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first = first->beta(0);
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// Stack of couple of dart and dimension for which
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// we must call on_split functor
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std::deque<typename CMap::Dart_handle> modified_darts;
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// Mark used to mark darts already treated.
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int treated = amap.get_new_mark();
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// Stack of marked darts
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std::stack<typename CMap::Dart_handle> tounmark;
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// Now we run through the facet
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for (CGAL::CMap_dart_iterator_basic_of_orbit<CMap,1> it(amap,first);
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it.cont();)
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{
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cur = it;
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++it;
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amap.mark(cur, treated);
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tounmark.push(cur);
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if ( cur!=first )
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{
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// TODO
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//if ( amap.template degroup_attribute_of_dart<2>(first, cur) )
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{
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// TODO Functor takiing a range, an attrib_handle, and that set
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// all the darts of the range to this handle
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/* for (typename CMap::template Dart_of_involution_range<1>::iterator
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it=template darts_of_involution<1>(dh2).begin(),
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itend=template darts_of_involution<1>(dh2).end(); it!=itend;
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++it)
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{
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}
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tosplit.push(internal::Couple_dart_and_dim
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<typename CMap::Dart_handle>
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(first,cur,2));*/
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}
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}
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if (!cur->is_free(0))
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{
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n1 = amap.create_dart();
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amap.link_beta_0(cur, n1);
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}
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else n1 = NULL;
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if (!cur->is_free(1))
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{
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n2 = amap.create_dart();
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amap.link_beta_1(cur, n2);
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}
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else n2 = NULL;
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if (n1 != NULL && n2 != NULL)
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amap.link_beta_0(n1, n2);
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if (n1 != NULL && prev != NULL)
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amap.template link_beta_for_involution<2>(prev, n1);
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for (unsigned int dim=3; dim<=CMap::dimension; ++dim)
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{
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if ( !adart->is_free(dim) )
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{
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if ( !amap.is_marked(cur->beta(dim), treated) )
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{
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if (n1!=NULL)
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{
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nn1=amap.create_dart();
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amap.link_beta_1(cur->beta(dim), nn1);
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amap.basic_link_beta_for_involution(n1, nn1, dim);
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}
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else nn1=NULL;
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if (n2!=NULL)
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{
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nn2=amap.create_dart();
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amap.link_beta_0(cur->beta(dim), nn2);
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amap.basic_link_beta_for_involution(n2, nn2, dim);
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}
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else nn2=NULL;
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if (nn1 != NULL && nn2 != NULL)
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amap.basic_link_beta_1(nn1, nn2);
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if (nn1 != NULL && prev != NULL)
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amap.basic_link_beta_for_involution(nn1, prev->beta(dim), 2);
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amap.mark(cur->beta(dim), treated);
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tounmark.push(cur->beta(dim));
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}
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else
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{
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if ( n1!=NULL )
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amap.basic_link_beta_for_involution(n1, cur->beta(dim)->beta(1), dim);
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if ( n2!=NULL )
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amap.basic_link_beta_for_involution(n2, cur->beta(dim)->beta(0), dim);
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}
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}
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}
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prev = n2;
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}
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if (n2 != NULL)
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{
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amap.template link_beta_for_involution<2>(first->beta(0), n2);
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for (unsigned int dim=3; dim<=CMap::dimension; ++dim)
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{
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if ( !adart->is_free(dim) )
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{
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amap.basic_link_beta_for_involution(first->beta(0)->beta(dim),
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n2->beta(dim), 2);
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}
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}
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}
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// Now we unmark all marked darts
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while ( !tounmark.empty() )
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{
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amap.unmark(tounmark.top(), treated);
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tounmark.pop();
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}
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CGAL_assertion(amap.is_whole_map_unmarked(treated));
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amap.free_mark(treated);
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/* TODO while ( !tosplit.empty() )
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{
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internal::Couple_dart_and_dim<typename CMap::Dart_handle> c=tosplit.top();
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tosplit.pop();
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internal::Call_split_functor<CMap, 2>::run(c.d1, c.d2);
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} */
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CGAL_expensive_postcondition( amap.is_valid() );
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return n1;
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}
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/** Insert a dangling edge in a 2-cell between given by a dart.
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* @param amap the used combinatorial map.
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* @param adart1 a first dart of the facet (!=NULL && !=null_dart_handle).
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* @return a dart of the new edge, not incident to the vertex of adart1.
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*/
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template<class CMap>
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typename CMap::Dart_handle
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insert_dangling_cell_1_in_cell_2(CMap& amap, typename CMap::Dart_handle adart1)
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{
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CGAL_assertion(adart1!=NULL && adart1!=CMap::null_dart_handle);
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int mark1 = amap.get_new_mark();
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std::deque<typename CMap::Dart_handle> to_unmark;
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{
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for ( CMap_dart_iterator_basic_of_cell<CMap,0> it(amap,adart1,mark1);
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it.cont(); ++it )
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{
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to_unmark.push_back(it);
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amap.mark(it,mark1);
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}
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}
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typename CMap::Dart_handle d1 = NULL;
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typename CMap::Dart_handle d2 = NULL;
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unsigned int s1 = 0;
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int treated = amap.get_new_mark();
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CGAL::CMap_dart_iterator_of_involution<CMap,1> it1(amap,adart1);
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for ( ; it1.cont(); ++it1)
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{
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d1 = amap.create_dart();
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d2 = amap.create_dart();
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if ( amap.is_marked(it1, mark1) ) s1 = 0;
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else s1 = 1;
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if ( !it1->is_free(s1) )
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{
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if ( s1==0 ) amap.template link_beta<1>(it1->template beta<0>(), d2);
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else amap.template link_beta<0>(it1->template beta<1>(), d2);
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}
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if (s1==0)
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{
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amap.template link_beta<0>(it1, d1);
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amap.template link_beta<0>(d1,d2);
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}
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else
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{
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amap.template link_beta<1>(it1, d1);
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amap.template link_beta<1>(d1,d2);
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}
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amap.template link_beta_for_involution<2>(d1, d2);
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for ( unsigned int dim=3; dim<=CMap::dimension; ++dim)
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{
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if ( !it1->is_free(dim) &&
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amap.is_marked(it1->beta(dim), treated) )
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{
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amap.basic_link_beta_for_involution(it1->beta(dim)->beta_inv(s1), d1,
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dim);
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amap.basic_link_beta_for_involution
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(it1->beta(dim)->beta_inv(s1)->beta(2), d2, dim);
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}
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}
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amap.mark(it1,treated);
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}
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for ( it1.rewind(); it1.cont(); ++it1 )
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{ amap.unmark(it1,treated); }
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CGAL_assertion( amap.is_whole_map_unmarked(treated) );
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amap.free_mark(treated);
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typename std::deque<typename CMap::Dart_handle>::iterator it =
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to_unmark.begin();
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for (; it != to_unmark.end(); ++it)
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{ amap.unmark(*it, mark1); }
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CGAL_assertion( amap.is_whole_map_unmarked(mark1) );
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amap.free_mark(mark1);
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// CGAL_expensive_postcondition( amap.is_valid() );
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return adart1->beta(0);
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}
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/** Test if an edge can be inserted onto a 2-cell between two given darts.
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* @param amap the used combinatorial map.
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* @param adart1 a first dart.
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* @param adart2 a second dart.
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* @return true iff an edge can be inserted between adart1 and adart2.
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*/
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template < class CMap >
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bool is_insertable_cell_1_in_cell_2(const CMap& amap,
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typename CMap::Dart_const_handle adart1,
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typename CMap::Dart_const_handle adart2)
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{
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CGAL_assertion(adart1 != NULL && adart2 != NULL);
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if ( adart1==adart2 ) return false;
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for ( CMap_dart_const_iterator_of_orbit<CMap,1> it(amap,adart1);
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it.cont(); ++it )
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{
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if ( it==adart2 ) return true;
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}
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return false;
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}
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/** Insert an edge in a 2-cell between two given darts.
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* @param amap the used combinatorial map.
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* @param adart1 a first dart of the facet (!=NULL && !=null_dart_handle).
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* @param adart2 a second dart of the facet. If NULL insert a dangling edge.
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* @return a dart of the new edge, and not incident to the
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* same vertex than adart1.
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*/
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template<class CMap>
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typename CMap::Dart_handle
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insert_cell_1_in_cell_2(CMap& amap,
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typename CMap::Dart_handle adart1,
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typename CMap::Dart_handle adart2)
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{
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if ( adart2==NULL ) return insert_dangling_cell_1_in_cell_2(amap,adart1);
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CGAL_assertion(is_insertable_cell_1_in_cell_2<CMap>(amap, adart1, adart2));
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int m1 = amap.get_new_mark();
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CMap_dart_iterator_basic_of_involution<CMap,1>
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it1 = CMap_dart_iterator_basic_of_involution<CMap,1>(amap, adart1, m1);
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int m2 = amap.get_new_mark();
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CMap_dart_iterator_basic_of_involution<CMap,1>
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it2 = CMap_dart_iterator_basic_of_involution<CMap,1>(amap, adart2, m2);
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int mark1 = amap.get_new_mark();
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std::deque<typename CMap::Dart_handle> to_unmark;
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{
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for ( CMap_dart_iterator_basic_of_cell<CMap,0> it(amap,adart1,mark1);
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it.cont(); ++it )
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{
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to_unmark.push_back(it);
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amap.mark(it,mark1);
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}
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}
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typename CMap::Dart_handle d1 = NULL;
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typename CMap::Dart_handle d2 = NULL;
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unsigned int s1 = 0;
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int treated = amap.get_new_mark();
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for ( ; it1.cont(); ++it1, ++it2)
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{
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CGAL_assertion (it2.cont() );
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d1 = amap.create_dart();
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d2 = amap.create_dart();
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if ( amap.is_marked(it1, mark1) ) s1 = 0;
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else s1 = 1;
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if ( !it1->is_free(s1) )
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{
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if ( s1==0 ) amap.basic_link_beta_1(it1->template beta<0>(), d2);
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else amap.link_beta_0(it1->template beta<1>(), d2);
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}
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if ( !it2->is_free(s1) )
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{
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if ( s1==0 ) amap.basic_link_beta_1(it2->template beta<0>(), d1);
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else amap.link_beta_0(it2->template beta<1>(), d1);
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}
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if ( s1==0 )
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{
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amap.link_beta_0(it1, d1);
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amap.link_beta_0(it2, d2);
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}
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else
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{
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amap.basic_link_beta_1(it1, d1);
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amap.basic_link_beta_1(it2, d2);
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}
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amap.link_beta_for_involution(d2, d1, 2);
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for ( unsigned int dim=3; dim<=CMap::dimension; ++dim)
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{
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if ( !it1->is_free(dim) &&
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amap.is_marked(it1->beta(dim), treated) )
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{
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amap.basic_link_beta_for_involution
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(it1->beta(dim)->beta_inv(s1), d1, dim);
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amap.basic_link_beta_for_involution
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(it1->beta(dim)->beta_inv(s1)->beta(2), d2, dim);
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}
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}
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amap.mark(it1,treated);
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}
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internal::Degroup_attribute_functor_run<CMap, 2>::
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run(&amap, d1, d2);
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amap.negate_mark(m1);
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amap.negate_mark(m2);
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it1.rewind(); it2.rewind();
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for ( ; it1.cont(); ++it1, ++it2)
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{
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amap.mark(it1,m1);
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amap.unmark(it1,treated);
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amap.mark(it2,m2);
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}
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amap.negate_mark(m1);
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amap.negate_mark(m2);
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CGAL_assertion( amap.is_whole_map_unmarked(m1) );
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CGAL_assertion( amap.is_whole_map_unmarked(m2) );
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CGAL_assertion( amap.is_whole_map_unmarked(treated) );
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amap.free_mark(m1);
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amap.free_mark(m2);
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amap.free_mark(treated);
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typename std::deque<typename CMap::Dart_handle>::iterator it =
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to_unmark.begin();
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for (; it != to_unmark.end(); ++it)
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{ amap.unmark(*it, mark1); }
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CGAL_assertion( amap.is_whole_map_unmarked(mark1) );
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amap.free_mark(mark1);
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// CGAL_expensive_postcondition( amap.is_valid() );
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return adart1->template beta<0>();
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}
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/** Test if a 2-cell can be inserted onto a given 3-cell along
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* a path of edges.
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* @param amap the used combinatorial map.
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* @param afirst iterator on the begining of the path.
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* @param alast iterator on the end of the path.
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* @return true iff a 2-cell can be inserted along the path.
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*/
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template <class CMap, class InputIterator>
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bool is_insertable_cell_2_in_cell_3(const CMap& amap,
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InputIterator afirst,
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InputIterator alast)
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{
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CGAL_static_assertion( CMap::dimension>= 3 );
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// The path must have at least one dart.
|
|
if (afirst==alast) return false;
|
|
typename CMap::Dart_const_handle prec = NULL;
|
|
typename CMap::Dart_const_handle od = NULL;
|
|
|
|
for (InputIterator it(afirst); it!=alast; ++it)
|
|
{
|
|
// The path must contain only non empty darts.
|
|
if (*it == NULL || *it==CMap::null_dart_handle) return false;
|
|
|
|
// Two consecutive darts of the path must belong to two edges
|
|
// incident to the same vertex of the same volume.
|
|
if (prec != NULL)
|
|
{
|
|
od = prec->other_extremity();
|
|
if ( od==CMap::null_dart_handle ) return false;
|
|
|
|
// of and *it must belong to the same vertex of the same volume
|
|
if ( !belong_to_same_cell<CMap, 0, 2>(amap, od, *it) )
|
|
return false;
|
|
}
|
|
prec = *it;
|
|
}
|
|
|
|
// The path must be closed.
|
|
od = prec->other_extremity();
|
|
if ( od==CMap::null_dart_handle ) return false;
|
|
|
|
if (!belong_to_same_cell<CMap, 0, 2>(amap, od, *afirst))
|
|
return false;
|
|
|
|
return true;
|
|
}
|
|
|
|
/** Insert a 2-cell in a given 3-cell along a path of darts.
|
|
* @param amap the used combinatorial map.
|
|
* @param afirst iterator on the begining of the path.
|
|
* @param alast iterator on the end of the path.
|
|
* @return a dart of the new 2-cell.
|
|
*/
|
|
template<class CMap, class InputIterator>
|
|
typename CMap::Dart_handle
|
|
insert_cell_2_in_cell_3(CMap& amap, InputIterator afirst, InputIterator alast)
|
|
{
|
|
CGAL_assertion(is_insertable_cell_2_in_cell_3(amap,afirst,alast));
|
|
|
|
typename CMap::Dart_handle prec = NULL, d = NULL, dd = NULL, first = NULL;
|
|
bool withBeta3 = false;
|
|
|
|
{
|
|
for (InputIterator it(afirst); it!=alast; ++it)
|
|
{
|
|
if (!(*it)->is_free(2)) withBeta3 = true;
|
|
}
|
|
}
|
|
|
|
{
|
|
for (InputIterator it(afirst); it!=alast; ++it)
|
|
{
|
|
d = amap.create_dart();
|
|
if (withBeta3)
|
|
{
|
|
dd = amap.create_dart();
|
|
amap.template basic_link_beta_for_involution<3>(d, dd);
|
|
}
|
|
|
|
if (prec != NULL)
|
|
{
|
|
amap.template link_beta<0>(prec, d);
|
|
if (withBeta3)
|
|
amap.template link_beta<1>(prec->template beta<3>(), dd);
|
|
}
|
|
else first = d;
|
|
|
|
if (!(*it)->is_free(2))
|
|
amap.template link_beta_for_involution<2>
|
|
((*it)->template beta<2>(), dd);
|
|
|
|
amap.template link_beta_for_involution<2>(*it, d);
|
|
|
|
prec = d;
|
|
}
|
|
}
|
|
|
|
amap.template link_beta<0>(prec, first);
|
|
if (withBeta3)
|
|
{
|
|
amap.template link_beta<1>(prec->template beta<3>(),
|
|
first->template beta<3>());
|
|
}
|
|
|
|
// Make copies of the new facet for dimension >=4
|
|
for ( unsigned int dim=4; dim<=CMap::dimension; ++dim )
|
|
{
|
|
if ( !first->is_free(dim) )
|
|
{
|
|
typename CMap::Dart_handle first2 = NULL;
|
|
prec = NULL;
|
|
for ( CMap_dart_iterator_of_orbit<CMap,1> it(amap, first);
|
|
it.cont(); ++it )
|
|
{
|
|
d = amap.create_dart();
|
|
amap.link_beta_for_involution(it->template beta<2>(), d, dim);
|
|
if ( withBeta3 )
|
|
{
|
|
dd = amap.create_dart();
|
|
amap.link_beta_for_involution
|
|
(it->template beta<2>()->template beta<3>(), dd, dim);
|
|
amap.template basic_link_beta_for_involution<3>(d, dd);
|
|
}
|
|
if ( prec!=NULL )
|
|
{
|
|
amap.link_beta_0(prec, d);
|
|
if ( withBeta3 )
|
|
{
|
|
amap.link_beta_1(prec->template beta<3>(), dd);
|
|
}
|
|
}
|
|
else first2 = prec;
|
|
|
|
for ( unsigned dim2=2; dim2<=CMap::dimension; ++dim2 )
|
|
{
|
|
if ( dim2+1!=dim && dim2!=dim && dim2!=dim+1 )
|
|
{
|
|
if ( !it->is_free(dim2) &&
|
|
it->beta(dim2)->is_free(dim) )
|
|
amap.basic_link_beta_for_involution(it->beta(dim2)->beta(dim),
|
|
d, dim2);
|
|
if ( withBeta3 && !it->beta(3)->is_free(dim2) &&
|
|
it->template beta<3>()->beta(dim2)->is_free(dim) )
|
|
amap.basic_link_beta_for_involution
|
|
(it->template beta<3>()->beta(dim2)->beta(dim), dd, dim2);
|
|
}
|
|
}
|
|
prec = d;
|
|
}
|
|
amap.template link_beta<0>( prec, first2 );
|
|
if ( withBeta3 )
|
|
{
|
|
amap.template link_beta<1>( prec->template beta<3>(),
|
|
first2->template beta<3>() );
|
|
}
|
|
}
|
|
}
|
|
|
|
// Degroup the attributes
|
|
if ( withBeta3 )
|
|
internal::Degroup_attribute_functor_run<CMap, 3>::
|
|
run(&amap, first, first->template beta<3>());
|
|
|
|
// CGAL_expensive_postcondition( amap.is_valid() );
|
|
|
|
return first;
|
|
}
|
|
|
|
} // namespace CGAL
|
|
|
|
#endif // CGAL_COMBINATORIAL_MAP_INSERTIONS_H
|