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sheet7/jacobi.template/cuthill_mckee_ordering.cpp
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sheet7/jacobi.template/cuthill_mckee_ordering.cpp
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//=======================================================================
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// Copyright 1997, 1998, 1999, 2000 University of Notre Dame.
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// Authors: Andrew Lumsdaine, Lie-Quan Lee, Jeremy G. Siek
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//
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// This file is part of the Boost Graph Library
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//
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// You should have received a copy of the License Agreement for the
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// Boost Graph Library along with the software; see the file LICENSE.
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// If not, contact Office of Research, University of Notre Dame, Notre
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// Dame, IN 46556.
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//
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// Permission to modify the code and to distribute modified code is
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// granted, provided the text of this NOTICE is retained, a notice that
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// the code was modified is included with the above COPYRIGHT NOTICE and
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// with the COPYRIGHT NOTICE in the LICENSE file, and that the LICENSE
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// file is distributed with the modified code.
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//
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// LICENSOR MAKES NO REPRESENTATIONS OR WARRANTIES, EXPRESS OR IMPLIED.
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// By way of example, but not limitation, Licensor MAKES NO
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// REPRESENTATIONS OR WARRANTIES OF MERCHANTABILITY OR FITNESS FOR ANY
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// PARTICULAR PURPOSE OR THAT THE USE OF THE LICENSED SOFTWARE COMPONENTS
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// OR DOCUMENTATION WILL NOT INFRINGE ANY PATENTS, COPYRIGHTS, TRADEMARKS
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// OR OTHER RIGHTS.
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// Modyfied 2019 by Gundolf Haase, University of Graz
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//=======================================================================
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#include "cuthill_mckee_ordering.h"
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#include <boost/config.hpp>
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#include <boost/graph/adjacency_list.hpp>
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#include <boost/graph/bandwidth.hpp>
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#include <boost/graph/cuthill_mckee_ordering.hpp>
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#include <boost/graph/properties.hpp>
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#include <iostream>
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#include <vector>
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/*
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Sample Output
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original bandwidth: 8
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Reverse Cuthill-McKee ordering starting at: 6
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8 3 0 9 2 5 1 4 7 6
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bandwidth: 4
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Reverse Cuthill-McKee ordering starting at: 0
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9 1 4 6 7 2 8 5 3 0
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bandwidth: 4
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Reverse Cuthill-McKee ordering:
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0 8 5 7 3 6 4 2 1 9
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bandwidth: 4
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*/
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/*
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int main(int, char *[])
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{
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using namespace boost;
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using namespace std;
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typedef adjacency_list<vecS, vecS, undirectedS,
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property<vertex_color_t, default_color_type,
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property<vertex_degree_t, int> > > Graph;
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typedef graph_traits<Graph>::vertex_descriptor Vertex;
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typedef graph_traits<Graph>::vertices_size_type size_type;
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typedef std::pair<std::size_t, std::size_t> Pair;
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Pair edges[14] = { Pair(0, 3), //a-d
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Pair(0, 5), //a-f
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Pair(1, 2), //b-c
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Pair(1, 4), //b-e
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Pair(1, 6), //b-g
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Pair(1, 9), //b-j
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Pair(2, 3), //c-d
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Pair(2, 4), //c-e
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Pair(3, 5), //d-f
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Pair(3, 8), //d-i
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Pair(4, 6), //e-g
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Pair(5, 6), //f-g
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Pair(5, 7), //f-h
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Pair(6, 7)
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}; //g-h
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Graph G(10);
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for (int i = 0; i < 14; ++i)
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add_edge(edges[i].first, edges[i].second, G);
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graph_traits<Graph>::vertex_iterator ui, ui_end;
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property_map<Graph, vertex_degree_t>::type deg = get(vertex_degree, G);
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for (boost::tie(ui, ui_end) = vertices(G); ui != ui_end; ++ui)
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deg[*ui] = degree(*ui, G);
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property_map<Graph, vertex_index_t>::type
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index_map = get(vertex_index, G);
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std::cout << "original bandwidth: " << bandwidth(G) << std::endl;
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std::vector<Vertex> inv_perm(num_vertices(G));
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std::vector<size_type> perm(num_vertices(G));
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{
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Vertex s = vertex(6, G);
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//reverse cuthill_mckee_ordering
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cuthill_mckee_ordering(G, s, inv_perm.rbegin(), get(vertex_color, G),
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get(vertex_degree, G));
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cout << "Reverse Cuthill-McKee ordering starting at: " << s << endl;
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cout << " ";
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for (std::vector<Vertex>::const_iterator i = inv_perm.begin();
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i != inv_perm.end(); ++i)
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cout << index_map[*i] << " ";
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cout << endl;
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for (size_type c = 0; c != inv_perm.size(); ++c)
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perm[index_map[inv_perm[c]]] = c;
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std::cout << " bandwidth: "
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<< bandwidth(G, make_iterator_property_map(&perm[0], index_map, perm[0]))
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<< std::endl;
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}
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{
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Vertex s = vertex(0, G);
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//reverse cuthill_mckee_ordering
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cuthill_mckee_ordering(G, s, inv_perm.rbegin(), get(vertex_color, G),
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get(vertex_degree, G));
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cout << "Reverse Cuthill-McKee ordering starting at: " << s << endl;
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cout << " ";
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for (std::vector<Vertex>::const_iterator i = inv_perm.begin();
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i != inv_perm.end(); ++i)
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cout << index_map[*i] << " ";
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cout << endl;
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for (size_type c = 0; c != inv_perm.size(); ++c)
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perm[index_map[inv_perm[c]]] = c;
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std::cout << " bandwidth: "
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<< bandwidth(G, make_iterator_property_map(&perm[0], index_map, perm[0]))
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<< std::endl;
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}
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{
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//reverse cuthill_mckee_ordering
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cuthill_mckee_ordering(G, inv_perm.rbegin(), get(vertex_color, G),
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make_degree_map(G));
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cout << "Reverse Cuthill-McKee ordering:" << endl;
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cout << " ";
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for (std::vector<Vertex>::const_iterator i = inv_perm.begin();
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i != inv_perm.end(); ++i)
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cout << index_map[*i] << " ";
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cout << endl;
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for (size_type c = 0; c != inv_perm.size(); ++c)
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perm[index_map[inv_perm[c]]] = c;
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std::cout << " bandwidth: "
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<< bandwidth(G, make_iterator_property_map(&perm[0], index_map, perm[0]))
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<< std::endl;
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}
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return 0;
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}
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*/
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// ------------- Modifications by Gundolf Haase
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// std::vector<int> _edges; //!< edges of mesh (vertices ordered ascending)
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using namespace boost;
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using namespace std;
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typedef adjacency_list<vecS, vecS, undirectedS,
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property<vertex_color_t, default_color_type,
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property<vertex_degree_t, int> > > Graph;
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typedef graph_traits<Graph>::vertex_descriptor Vertex;
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typedef graph_traits<Graph>::vertices_size_type size_type;
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typedef std::pair<std::size_t, std::size_t> Pair;
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vector<int> cuthill_mckee_reordering(vector<int> const &_edges)
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{
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size_t const nnodes = *max_element(cbegin(_edges), cend(_edges)) + 1;
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cout << "NNODES = " << nnodes << endl;
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//size_t const nedges = _edges.size()/2;
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Graph G(nnodes);
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for (size_t i = 0; i < _edges.size(); i+=2)
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add_edge(_edges[i], _edges[i+1], G);
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graph_traits<Graph>::vertex_iterator ui, ui_end;
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property_map<Graph, vertex_degree_t>::type deg = get(vertex_degree, G);
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for (boost::tie(ui, ui_end) = vertices(G); ui != ui_end; ++ui)
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deg[*ui] = degree(*ui, G);
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property_map<Graph, vertex_index_t>::type
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index_map = get(vertex_index, G);
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std::cout << "original bandwidth: " << bandwidth(G) << std::endl;
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std::vector<Vertex> inv_perm(num_vertices(G));
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//std::vector<size_type> perm(num_vertices(G));
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std::vector<int> perm(num_vertices(G));
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{
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Vertex s = vertex(nnodes/2, G);
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//reverse cuthill_mckee_ordering
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cuthill_mckee_ordering(G, s, inv_perm.rbegin(), get(vertex_color, G),
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get(vertex_degree, G));
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//cout << "Reverse Cuthill-McKee ordering starting at: " << s << endl;
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//cout << " ";
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//for (std::vector<Vertex>::const_iterator i = inv_perm.begin(); i != inv_perm.end(); ++i)
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//cout << index_map[*i] << " ";
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//cout << endl;
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for (size_type c = 0; c != inv_perm.size(); ++c)
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perm[index_map[inv_perm[c]]] = c;
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std::cout << "improved bandwidth: "
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<< bandwidth(G, make_iterator_property_map(&perm[0], index_map, perm[0]))
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<< std::endl;
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}
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assert(perm.size()==nnodes);
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return perm;
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}
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// ------------- end Modifications
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