src/work/iterator_bfs_dfs_demo.cc
author alpar
Sun, 14 Nov 2004 13:15:46 +0000
changeset 991 e619a466ca5d
parent 107 8d62f0072ff0
permissions -rw-r--r--
- Move template.h to doc/.
- Insert the license terms into the documentation.
- template.h now appears under the coding style documentation.
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#include <iostream>
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#include <vector>
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#include <string>
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#include <list_graph.hh>
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#include <bfs_iterator.hh>
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using namespace lemon;
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int main (int, char*[])
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{
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  typedef ListGraph::NodeIt NodeIt;
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  typedef ListGraph::EdgeIt EdgeIt;
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  typedef ListGraph::EachNodeIt EachNodeIt;
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  typedef ListGraph::EachEdgeIt EachEdgeIt;
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  typedef ListGraph::OutEdgeIt OutEdgeIt;
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  typedef ListGraph::InEdgeIt InEdgeIt;
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  typedef ListGraph::SymEdgeIt SymEdgeIt;
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  ListGraph G;
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  NodeIt s=G.addNode();
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  NodeIt v1=G.addNode();
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  NodeIt v2=G.addNode();
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  NodeIt v3=G.addNode();
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  NodeIt v4=G.addNode();
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  NodeIt t=G.addNode();
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  G.addEdge(s, v1);
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  G.addEdge(s, v2);
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  G.addEdge(v1, v2);
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  G.addEdge(v2, v1);
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  G.addEdge(v1, v3);
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  G.addEdge(v3, v2);
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  G.addEdge(v2, v4);
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  G.addEdge(v4, v3);
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  G.addEdge(v3, t);
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  G.addEdge(v4, t);
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  std::cout << "bfs and dfs demo on the directed graph" << std::endl;
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  for(EachNodeIt i=G.first<EachNodeIt>(); i.valid(); ++i) { 
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    std::cout << i << ": ";
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    std::cout << "out edges: ";
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    for(OutEdgeIt j=G.first<OutEdgeIt>(i); j.valid(); ++j) 
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      std::cout << j << " ";
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    std::cout << "in edges: ";
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    for(InEdgeIt j=G.first<InEdgeIt>(i); j.valid(); ++j) 
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      std::cout << j << " ";
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    std::cout << std::endl;
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  }
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  //std::cout << std::endl;
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  //EachNodeIt u1=G.first<EachNodeIt>();
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  //EachEdgeIt u=G.first<EachEdgeIt>();
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  //OutEdgeIt u=G.first<OutEdgeIt>(s);
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  //InEdgeIt u=G.first<InEdgeIt>(s);
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  //SymEdgeIt u=G.first<SymEdgeIt>(s);
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  //OutEdgeIt u=G.first<OutEdgeIt>(s);
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  //EachNodeIt u=G.first<EachNodeIt>();
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  //EachEdgeIt u=G.first<EachEdgeIt>();
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  //OutEdgeIt u=G.first<OutEdgeIt>(s);
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  //InEdgeIt u=G.first<InEdgeIt>(s);
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  //SymEdgeIt u=G.first<SymEdgeIt>(s);
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  //u=G.first(s);
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  //u=G.first_ize(s, OutEdgeIt());
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  //std::cout << "ize " << u << std::endl;
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  /*
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  {
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    std::cout << "iterator bfs demo..." << std::endl;
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    NodePropertyVector<ListGraph, bool> reached(G, false);
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    reached.set(s, true);
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    std::queue<ListGraph::OutEdgeIt> bfs_queue;
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    bfs_queue.push(G.firstOutEdge(G.firstNode()));
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    BfsIterator< ListGraph, ListGraph::OutEdgeIt, NodePropertyVector<ListGraph, bool> > bfs(G, bfs_queue, reached);
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    for ( ; !bfs.finished(); ++bfs) {
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      if (OutEdgeIt(bfs).valid()) {
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	std::cout << "OutEdgeIt: " << bfs; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << G.bNode(bfs) << " ";
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      } else { 
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	std::cout << "OutEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (bfs.bNodeIsNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (bfs.aNodeIsExamined()) { 
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	std::cout << "aNodeIsExamined ";
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      } else { 
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	std::cout << "aNodeIsNotExamined ";
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      } 
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      std::cout<<std::endl;
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    }
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  }
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  {
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    std::cout << "iterator dfs demo..." << std::endl;
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    NodePropertyVector<ListGraph, bool> reached(G, false);
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    reached.set(s, true);
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    std::stack<ListGraph::OutEdgeIt> dfs_stack;
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    dfs_stack.push(G.firstOutEdge(G.firstNode()));
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    DfsIterator< ListGraph, ListGraph::OutEdgeIt, NodePropertyVector<ListGraph, bool> > dfs(G, dfs_stack, reached);
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    for(; !dfs.finished(); ++dfs) {
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      if (OutEdgeIt(dfs).valid()) {
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	std::cout << "OutEdgeIt: " << dfs; 
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	std::cout << " aNode: " << G.aNode(dfs); 
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	std::cout << " bNode: " << G.bNode(dfs) << " ";
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      } else { 
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	std::cout << "OutEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(dfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (dfs.bNodeIsNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (dfs.aNodeIsLeaved()) { 
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	std::cout << "aNodeIsLeaved ";
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      } else { 
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	std::cout << "aNodeIsNotLeaved ";
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      } 
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      std::cout<<std::endl;
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    }
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    if (OutEdgeIt(dfs).valid()) {
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      std::cout << "OutEdgeIt: " << dfs; 
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      std::cout << " aNode: " << G.aNode(dfs); 
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      std::cout << " bNode: " << G.bNode(dfs) << " ";
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    } else { 
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      std::cout << "OutEdgeIt: " << "invalid"; 
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      std::cout << " aNode: " << G.aNode(dfs); 
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      std::cout << " bNode: " << "invalid" << " ";
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    }
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    if (dfs.bNodeIsNewlyReached()) { 
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      std::cout << "bNodeIsNewlyReached ";
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    } else { 
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      std::cout << "bNodeIsNotNewlyReached ";
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    } 
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    if (dfs.aNodeIsLeaved()) { 
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      std::cout << "aNodeIsLeaved ";
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    } else { 
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      std::cout << "aNodeIsNotLeaved ";
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    } 
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    std::cout<<std::endl;
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  }
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  */
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  {
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    std::cout << "iterator bfs demo 1 ..." << std::endl;
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    ListGraph::NodeMap<bool> reached(G, false);
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    reached.set(s, true);
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    std::queue<ListGraph::OutEdgeIt> bfs_queue;
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    bfs_queue.push(G.first<OutEdgeIt>(s));
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    BfsIterator1< ListGraph, ListGraph::OutEdgeIt, ListGraph::NodeMap<bool> > bfs(G, bfs_queue, reached);
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    while (!bfs.finished()) {
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      if (OutEdgeIt(bfs).valid()) {
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	std::cout << "OutEdgeIt: " << bfs; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << G.bNode(bfs) << " ";
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      } else { 
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	std::cout << "OutEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (bfs.bNodeIsNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (bfs.aNodeIsExamined()) { 
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	std::cout << "aNodeIsExamined ";
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      } else { 
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	std::cout << "aNodeIsNotExamined ";
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      } 
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      std::cout<<std::endl;
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      bfs.next();
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    }
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  }
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  {
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    std::cout << "iterator bfs demo 2 ..." << std::endl;
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    //ListGraph::NodeMap<bool> reached(G, false);
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    //reached.set(s, true);
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    //std::queue<ListGraph::OutEdgeIt> bfs_queue;
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    //bfs_queue.push(G.first<OutEdgeIt>(s));
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    BfsIterator2< ListGraph, ListGraph::OutEdgeIt, ListGraph::NodeMap<bool> > bfs(G);
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    bfs.pushAndSetReached(s);
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    while (!bfs.finished()) {
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      if (OutEdgeIt(bfs).valid()) {
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	std::cout << "OutEdgeIt: " << bfs; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << G.bNode(bfs) << " ";
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      } else { 
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	std::cout << "OutEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (bfs.isBNodeNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (bfs.isANodeExamined()) { 
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	std::cout << "aNodeIsExamined ";
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      } else { 
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	std::cout << "aNodeIsNotExamined ";
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      } 
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      std::cout<<std::endl;
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      ++bfs;
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    }
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  }
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  {
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    std::cout << "iterator dfs demo 1..." << std::endl;
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    ListGraph::NodeMap<bool> reached(G, false);
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    reached.set(s, true);
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    std::stack<ListGraph::OutEdgeIt> dfs_stack;
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    dfs_stack.push(G.first<OutEdgeIt>(s));
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    DfsIterator1< ListGraph, ListGraph::OutEdgeIt, ListGraph::NodeMap<bool> > dfs(G, dfs_stack, reached);
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    do {
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      dfs.next();
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      if (OutEdgeIt(dfs).valid()) {
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	std::cout << "OutEdgeIt: " << dfs; 
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	std::cout << " aNode: " << G.aNode(dfs); 
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	std::cout << " bNode: " << G.bNode(dfs) << " ";
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      } else { 
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	std::cout << "OutEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(dfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (dfs.bNodeIsNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (dfs.aNodeIsLeaved()) { 
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	std::cout << "aNodeIsLeaved ";
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      } else { 
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	std::cout << "aNodeIsNotLeaved ";
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      } 
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      std::cout<<std::endl;
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    } while (!dfs.finished());
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  }
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  {
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    std::cout << "iterator bfs demo from node 5 with replacing \n OutEdgeIt by InEdgeIt ..." << std::endl;
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    ListGraph::NodeMap<bool> reached(G, false);
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    reached.set(t, true);
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    std::queue<ListGraph::InEdgeIt> bfs_queue;
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    bfs_queue.push(G.first<InEdgeIt>(t));
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    BfsIterator1< ListGraph, ListGraph::InEdgeIt, ListGraph::NodeMap<bool> > bfs(G, bfs_queue, reached);
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    while (!bfs.finished()) {
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      if (InEdgeIt(bfs).valid()) {
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	std::cout << "InEdgeIt: " << bfs; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << G.bNode(bfs) << " ";
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      } else { 
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	std::cout << "InEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (bfs.bNodeIsNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (bfs.aNodeIsExamined()) { 
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	std::cout << "aNodeIsExamined ";
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      } else { 
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	std::cout << "aNodeIsNotExamined ";
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      } 
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      std::cout<<std::endl;
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      bfs.next();
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    }
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  }
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  {
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    std::cout << "the graph is considered as an undirected graph \n by replacing InEdgeIt by SymEdgeIt ..." << std::endl;
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    ListGraph::NodeMap<bool> reached(G, false);
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    reached.set(t, true);
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    std::queue<ListGraph::SymEdgeIt> bfs_queue;
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    bfs_queue.push(G.first<SymEdgeIt>(t));
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    BfsIterator1< ListGraph, ListGraph::SymEdgeIt, ListGraph::NodeMap<bool> > bfs(G, bfs_queue, reached);
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    while (!bfs.finished()) {
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      if (SymEdgeIt(bfs).valid()) {
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	std::cout << "SymEdgeIt: " << bfs; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << G.bNode(bfs) << " ";
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      } else { 
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	std::cout << "SymEdgeIt: " << "invalid"; 
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	std::cout << " aNode: " << G.aNode(bfs); 
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	std::cout << " bNode: " << "invalid" << " ";
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      }
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      if (bfs.bNodeIsNewlyReached()) { 
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	std::cout << "bNodeIsNewlyReached ";
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      } else { 
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	std::cout << "bNodeIsNotNewlyReached ";
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      } 
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      if (bfs.aNodeIsExamined()) { 
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	std::cout << "aNodeIsExamined ";
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      } else { 
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	std::cout << "aNodeIsNotExamined ";
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      } 
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      std::cout<<std::endl;
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      bfs.next();
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    }
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  }
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  return 0;
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}