2012-05-23 14:56:01 +01:00
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#include <limits>
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#include <fstream>
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#include "ElimGraph.h"
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ElimHeuristic ElimGraph::elimHeuristic = MIN_NEIGHBORS;
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ElimGraph::ElimGraph (const vector<Factor*>& factors)
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{
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < factors.size(); i++) {
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2012-05-23 14:56:01 +01:00
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if (factors[i] == 0) { // if contained just one var with evidence
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continue;
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}
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const VarIds& vids = factors[i]->arguments();
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2012-05-24 22:55:20 +01:00
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for (size_t j = 0; j < vids.size() - 1; j++) {
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2012-05-23 14:56:01 +01:00
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EgNode* n1 = getEgNode (vids[j]);
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if (n1 == 0) {
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n1 = new EgNode (vids[j], factors[i]->range (j));
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addNode (n1);
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}
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2012-05-24 22:55:20 +01:00
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for (size_t k = j + 1; k < vids.size(); k++) {
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2012-05-23 14:56:01 +01:00
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EgNode* n2 = getEgNode (vids[k]);
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if (n2 == 0) {
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n2 = new EgNode (vids[k], factors[i]->range (k));
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addNode (n2);
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}
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if (neighbors (n1, n2) == false) {
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addEdge (n1, n2);
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}
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}
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}
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if (vids.size() == 1) {
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if (getEgNode (vids[0]) == 0) {
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addNode (new EgNode (vids[0], factors[i]->range (0)));
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}
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}
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}
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}
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ElimGraph::~ElimGraph (void)
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{
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < nodes_.size(); i++) {
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2012-05-23 14:56:01 +01:00
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delete nodes_[i];
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}
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}
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VarIds
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ElimGraph::getEliminatingOrder (const VarIds& exclude)
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{
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VarIds elimOrder;
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unmarked_.reserve (nodes_.size());
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < nodes_.size(); i++) {
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2012-05-23 14:56:01 +01:00
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if (Util::contains (exclude, nodes_[i]->varId()) == false) {
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unmarked_.insert (nodes_[i]);
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}
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}
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2012-05-24 22:55:20 +01:00
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size_t nrVarsToEliminate = nodes_.size() - exclude.size();
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for (size_t i = 0; i < nrVarsToEliminate; i++) {
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2012-05-23 14:56:01 +01:00
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EgNode* node = getLowestCostNode();
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unmarked_.remove (node);
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const EGNeighs& neighs = node->neighbors();
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2012-05-24 22:55:20 +01:00
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for (size_t j = 0; j < neighs.size(); j++) {
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2012-05-23 14:56:01 +01:00
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neighs[j]->removeNeighbor (node);
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}
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elimOrder.push_back (node->varId());
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connectAllNeighbors (node);
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}
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return elimOrder;
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}
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void
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ElimGraph::print (void) const
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{
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < nodes_.size(); i++) {
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2012-05-23 14:56:01 +01:00
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cout << "node " << nodes_[i]->label() << " neighs:" ;
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EGNeighs neighs = nodes_[i]->neighbors();
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2012-05-24 22:55:20 +01:00
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for (size_t j = 0; j < neighs.size(); j++) {
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2012-05-23 14:56:01 +01:00
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cout << " " << neighs[j]->label();
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}
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cout << endl;
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}
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}
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void
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ElimGraph::exportToGraphViz (
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const char* fileName,
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bool showNeighborless,
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const VarIds& highlightVarIds) const
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{
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ofstream out (fileName);
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if (!out.is_open()) {
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cerr << "error: cannot open file to write at " ;
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cerr << "Markov::exportToDotFile()" << endl;
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abort();
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}
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out << "strict graph {" << endl;
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < nodes_.size(); i++) {
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2012-05-23 14:56:01 +01:00
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if (showNeighborless || nodes_[i]->neighbors().size() != 0) {
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out << '"' << nodes_[i]->label() << '"' << endl;
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}
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}
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < highlightVarIds.size(); i++) {
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2012-05-23 14:56:01 +01:00
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EgNode* node =getEgNode (highlightVarIds[i]);
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if (node) {
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out << '"' << node->label() << '"' ;
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out << " [shape=box3d]" << endl;
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} else {
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cout << "error: invalid variable id: " << highlightVarIds[i] << endl;
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abort();
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}
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}
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < nodes_.size(); i++) {
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2012-05-23 14:56:01 +01:00
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EGNeighs neighs = nodes_[i]->neighbors();
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2012-05-24 22:55:20 +01:00
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for (size_t j = 0; j < neighs.size(); j++) {
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2012-05-23 14:56:01 +01:00
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out << '"' << nodes_[i]->label() << '"' << " -- " ;
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out << '"' << neighs[j]->label() << '"' << endl;
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}
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}
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out << "}" << endl;
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out.close();
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}
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VarIds
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ElimGraph::getEliminationOrder (
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const vector<Factor*> factors,
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VarIds excludedVids)
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{
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ElimGraph graph (factors);
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// graph.print();
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// graph.exportToGraphViz ("_egg.dot");
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return graph.getEliminatingOrder (excludedVids);
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}
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void
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ElimGraph::addNode (EgNode* n)
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{
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nodes_.push_back (n);
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n->setIndex (nodes_.size() - 1);
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varMap_.insert (make_pair (n->varId(), n));
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}
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EgNode*
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ElimGraph::getEgNode (VarId vid) const
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{
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unordered_map<VarId, EgNode*>::const_iterator it;
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it = varMap_.find (vid);
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return (it != varMap_.end()) ? it->second : 0;
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}
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EgNode*
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ElimGraph::getLowestCostNode (void) const
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{
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EgNode* bestNode = 0;
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unsigned minCost = std::numeric_limits<unsigned>::max();
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unsigned cost = 0;
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EGNeighs::const_iterator it;
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switch (elimHeuristic) {
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case MIN_NEIGHBORS: {
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for (it = unmarked_.begin(); it != unmarked_.end(); ++ it) {
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cost = getNeighborsCost (*it);
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if (cost < minCost) {
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bestNode = *it;
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minCost = cost;
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}
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}}
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break;
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case MIN_WEIGHT:
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//cost = getWeightCost (unmarked_[i]);
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break;
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case MIN_FILL:
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//cost = getFillCost (unmarked_[i]);
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break;
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case WEIGHTED_MIN_FILL:
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//cost = getWeightedFillCost (unmarked_[i]);
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break;
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default:
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assert (false);
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}
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assert (bestNode);
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return bestNode;
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}
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void
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ElimGraph::connectAllNeighbors (const EgNode* n)
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{
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const EGNeighs& neighs = n->neighbors();
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if (neighs.size() > 0) {
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2012-05-24 22:55:20 +01:00
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for (size_t i = 0; i < neighs.size() - 1; i++) {
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for (size_t j = i + 1; j < neighs.size(); j++) {
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2012-05-23 14:56:01 +01:00
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if ( ! neighbors (neighs[i], neighs[j])) {
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addEdge (neighs[i], neighs[j]);
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}
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}
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}
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}
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}
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