test/graph_test.cc
author Peter Kovacs <kpeter@inf.elte.hu>
Tue, 11 Aug 2009 22:52:35 +0200
changeset 767 11c946fa8d13
parent 375 2d87dbd7f8c8
child 736 2e20aad15754
child 997 761fe0846f49
permissions -rw-r--r--
Simplify comparisons in min mean cycle classes (#179)
using extreme INF values instead of bool flags.
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/* -*- mode: C++; indent-tabs-mode: nil; -*-
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 *
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 * This file is a part of LEMON, a generic C++ optimization library.
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 *
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 * Copyright (C) 2003-2009
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 * Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport
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 * (Egervary Research Group on Combinatorial Optimization, EGRES).
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 *
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 * Permission to use, modify and distribute this software is granted
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 * provided that this copyright notice appears in all copies. For
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 * precise terms see the accompanying LICENSE file.
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 *
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 * This software is provided "AS IS" with no warranty of any kind,
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 * express or implied, and with no claim as to its suitability for any
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 * purpose.
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 *
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 */
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#include <lemon/concepts/graph.h>
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#include <lemon/list_graph.h>
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#include <lemon/smart_graph.h>
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#include <lemon/full_graph.h>
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#include <lemon/grid_graph.h>
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#include <lemon/hypercube_graph.h>
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#include "test_tools.h"
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#include "graph_test.h"
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using namespace lemon;
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using namespace lemon::concepts;
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template <class Graph>
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void checkGraphBuild() {
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  TEMPLATE_GRAPH_TYPEDEFS(Graph);
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  Graph G;
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  checkGraphNodeList(G, 0);
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  checkGraphEdgeList(G, 0);
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  checkGraphArcList(G, 0);
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  Node
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    n1 = G.addNode(),
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    n2 = G.addNode(),
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    n3 = G.addNode();
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 0);
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  checkGraphArcList(G, 0);
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  Edge e1 = G.addEdge(n1, n2);
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  check((G.u(e1) == n1 && G.v(e1) == n2) || (G.u(e1) == n2 && G.v(e1) == n1),
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        "Wrong edge");
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 1);
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  checkGraphArcList(G, 2);
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  checkGraphIncEdgeArcLists(G, n1, 1);
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  checkGraphIncEdgeArcLists(G, n2, 1);
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  checkGraphIncEdgeArcLists(G, n3, 0);
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  checkGraphConEdgeList(G, 1);
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  checkGraphConArcList(G, 2);
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  Edge e2 = G.addEdge(n2, n1),
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       e3 = G.addEdge(n2, n3);
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 3);
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  checkGraphArcList(G, 6);
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  checkGraphIncEdgeArcLists(G, n1, 2);
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  checkGraphIncEdgeArcLists(G, n2, 3);
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  checkGraphIncEdgeArcLists(G, n3, 1);
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  checkGraphConEdgeList(G, 3);
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  checkGraphConArcList(G, 6);
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  checkArcDirections(G);
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  checkNodeIds(G);
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  checkArcIds(G);
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  checkEdgeIds(G);
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  checkGraphNodeMap(G);
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  checkGraphArcMap(G);
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  checkGraphEdgeMap(G);
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}
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template <class Graph>
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void checkGraphAlter() {
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  TEMPLATE_GRAPH_TYPEDEFS(Graph);
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  Graph G;
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  Node n1 = G.addNode(), n2 = G.addNode(),
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       n3 = G.addNode(), n4 = G.addNode();
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  Edge e1 = G.addEdge(n1, n2), e2 = G.addEdge(n2, n1),
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       e3 = G.addEdge(n2, n3), e4 = G.addEdge(n1, n4),
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       e5 = G.addEdge(n4, n3);
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  checkGraphNodeList(G, 4);
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  checkGraphEdgeList(G, 5);
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  checkGraphArcList(G, 10);
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  // Check changeU() and changeV()
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  if (G.u(e2) == n2) {
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    G.changeU(e2, n3);
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  } else {
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    G.changeV(e2, n3);
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  }
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  checkGraphNodeList(G, 4);
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  checkGraphEdgeList(G, 5);
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  checkGraphArcList(G, 10);
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  checkGraphIncEdgeArcLists(G, n1, 3);
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  checkGraphIncEdgeArcLists(G, n2, 2);
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  checkGraphIncEdgeArcLists(G, n3, 3);
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  checkGraphIncEdgeArcLists(G, n4, 2);
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  checkGraphConEdgeList(G, 5);
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  checkGraphConArcList(G, 10);
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  if (G.u(e2) == n1) {
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    G.changeU(e2, n2);
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  } else {
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    G.changeV(e2, n2);
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  }
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  checkGraphNodeList(G, 4);
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  checkGraphEdgeList(G, 5);
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  checkGraphArcList(G, 10);
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  checkGraphIncEdgeArcLists(G, n1, 2);
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  checkGraphIncEdgeArcLists(G, n2, 3);
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  checkGraphIncEdgeArcLists(G, n3, 3);
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  checkGraphIncEdgeArcLists(G, n4, 2);
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  checkGraphConEdgeList(G, 5);
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  checkGraphConArcList(G, 10);
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  // Check contract()
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  G.contract(n1, n4, false);
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 5);
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  checkGraphArcList(G, 10);
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  checkGraphIncEdgeArcLists(G, n1, 4);
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  checkGraphIncEdgeArcLists(G, n2, 3);
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  checkGraphIncEdgeArcLists(G, n3, 3);
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  checkGraphConEdgeList(G, 5);
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  checkGraphConArcList(G, 10);
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  G.contract(n2, n3);
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  checkGraphNodeList(G, 2);
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  checkGraphEdgeList(G, 3);
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  checkGraphArcList(G, 6);
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  checkGraphIncEdgeArcLists(G, n1, 4);
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  checkGraphIncEdgeArcLists(G, n2, 2);
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  checkGraphConEdgeList(G, 3);
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  checkGraphConArcList(G, 6);
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}
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template <class Graph>
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void checkGraphErase() {
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  TEMPLATE_GRAPH_TYPEDEFS(Graph);
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  Graph G;
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  Node n1 = G.addNode(), n2 = G.addNode(),
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       n3 = G.addNode(), n4 = G.addNode();
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  Edge e1 = G.addEdge(n1, n2), e2 = G.addEdge(n2, n1),
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       e3 = G.addEdge(n2, n3), e4 = G.addEdge(n1, n4),
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       e5 = G.addEdge(n4, n3);
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  // Check edge deletion
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  G.erase(e2);
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  checkGraphNodeList(G, 4);
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  checkGraphEdgeList(G, 4);
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  checkGraphArcList(G, 8);
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  checkGraphIncEdgeArcLists(G, n1, 2);
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  checkGraphIncEdgeArcLists(G, n2, 2);
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  checkGraphIncEdgeArcLists(G, n3, 2);
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  checkGraphIncEdgeArcLists(G, n4, 2);
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  checkGraphConEdgeList(G, 4);
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  checkGraphConArcList(G, 8);
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  // Check node deletion
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  G.erase(n3);
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 2);
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  checkGraphArcList(G, 4);
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  checkGraphIncEdgeArcLists(G, n1, 2);
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  checkGraphIncEdgeArcLists(G, n2, 1);
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  checkGraphIncEdgeArcLists(G, n4, 1);
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  checkGraphConEdgeList(G, 2);
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  checkGraphConArcList(G, 4);
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}
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template <class Graph>
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void checkGraphSnapshot() {
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  TEMPLATE_GRAPH_TYPEDEFS(Graph);
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  Graph G;
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  Node n1 = G.addNode(), n2 = G.addNode(), n3 = G.addNode();
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  Edge e1 = G.addEdge(n1, n2), e2 = G.addEdge(n2, n1),
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       e3 = G.addEdge(n2, n3);
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 3);
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  checkGraphArcList(G, 6);
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  typename Graph::Snapshot snapshot(G);
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  Node n = G.addNode();
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  G.addEdge(n3, n);
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  G.addEdge(n, n3);
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  G.addEdge(n3, n2);
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  checkGraphNodeList(G, 4);
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  checkGraphEdgeList(G, 6);
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  checkGraphArcList(G, 12);
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  snapshot.restore();
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  checkGraphNodeList(G, 3);
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  checkGraphEdgeList(G, 3);
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  checkGraphArcList(G, 6);
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  checkGraphIncEdgeArcLists(G, n1, 2);
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  checkGraphIncEdgeArcLists(G, n2, 3);
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  checkGraphIncEdgeArcLists(G, n3, 1);
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  checkGraphConEdgeList(G, 3);
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  checkGraphConArcList(G, 6);
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  checkNodeIds(G);
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  checkEdgeIds(G);
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  checkArcIds(G);
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  checkGraphNodeMap(G);
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  checkGraphEdgeMap(G);
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  checkGraphArcMap(G);
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  G.addNode();
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  snapshot.save(G);
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  G.addEdge(G.addNode(), G.addNode());
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  snapshot.restore();
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  checkGraphNodeList(G, 4);
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  checkGraphEdgeList(G, 3);
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  checkGraphArcList(G, 6);
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}
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void checkFullGraph(int num) {
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  typedef FullGraph Graph;
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  GRAPH_TYPEDEFS(Graph);
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  Graph G(num);
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  checkGraphNodeList(G, num);
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  checkGraphEdgeList(G, num * (num - 1) / 2);
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  for (NodeIt n(G); n != INVALID; ++n) {
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    checkGraphOutArcList(G, n, num - 1);
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    checkGraphInArcList(G, n, num - 1);
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    checkGraphIncEdgeList(G, n, num - 1);
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  }
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  checkGraphConArcList(G, num * (num - 1));
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  checkGraphConEdgeList(G, num * (num - 1) / 2);
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  checkArcDirections(G);
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  checkNodeIds(G);
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  checkArcIds(G);
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  checkEdgeIds(G);
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  checkGraphNodeMap(G);
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  checkGraphArcMap(G);
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  checkGraphEdgeMap(G);
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  for (int i = 0; i < G.nodeNum(); ++i) {
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    check(G.index(G(i)) == i, "Wrong index");
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  }
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  for (NodeIt u(G); u != INVALID; ++u) {
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    for (NodeIt v(G); v != INVALID; ++v) {
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      Edge e = G.edge(u, v);
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      Arc a = G.arc(u, v);
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      if (u == v) {
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        check(e == INVALID, "Wrong edge lookup");
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        check(a == INVALID, "Wrong arc lookup");
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      } else {
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        check((G.u(e) == u && G.v(e) == v) ||
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              (G.u(e) == v && G.v(e) == u), "Wrong edge lookup");
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        check(G.source(a) == u && G.target(a) == v, "Wrong arc lookup");
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      }
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    }
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  }
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}
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void checkConcepts() {
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  { // Checking graph components
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    checkConcept<BaseGraphComponent, BaseGraphComponent >();
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    checkConcept<IDableGraphComponent<>,
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      IDableGraphComponent<> >();
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    checkConcept<IterableGraphComponent<>,
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      IterableGraphComponent<> >();
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    checkConcept<MappableGraphComponent<>,
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      MappableGraphComponent<> >();
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  }
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  { // Checking skeleton graph
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    checkConcept<Graph, Graph>();
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  }
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  { // Checking ListGraph
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    checkConcept<Graph, ListGraph>();
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    checkConcept<AlterableGraphComponent<>, ListGraph>();
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    checkConcept<ExtendableGraphComponent<>, ListGraph>();
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    checkConcept<ClearableGraphComponent<>, ListGraph>();
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    checkConcept<ErasableGraphComponent<>, ListGraph>();
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  }
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  { // Checking SmartGraph
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    checkConcept<Graph, SmartGraph>();
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    checkConcept<AlterableGraphComponent<>, SmartGraph>();
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    checkConcept<ExtendableGraphComponent<>, SmartGraph>();
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    checkConcept<ClearableGraphComponent<>, SmartGraph>();
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  }
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  { // Checking FullGraph
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    checkConcept<Graph, FullGraph>();
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  }
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  { // Checking GridGraph
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    checkConcept<Graph, GridGraph>();
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  }
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  { // Checking HypercubeGraph
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    checkConcept<Graph, HypercubeGraph>();
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  }
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}
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template <typename Graph>
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void checkGraphValidity() {
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  TEMPLATE_GRAPH_TYPEDEFS(Graph);
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  Graph g;
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  Node
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    n1 = g.addNode(),
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    n2 = g.addNode(),
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    n3 = g.addNode();
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  Edge
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    e1 = g.addEdge(n1, n2),
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    e2 = g.addEdge(n2, n3);
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  check(g.valid(n1), "Wrong validity check");
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  check(g.valid(e1), "Wrong validity check");
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  check(g.valid(g.direct(e1, true)), "Wrong validity check");
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  check(!g.valid(g.nodeFromId(-1)), "Wrong validity check");
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  check(!g.valid(g.edgeFromId(-1)), "Wrong validity check");
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  check(!g.valid(g.arcFromId(-1)), "Wrong validity check");
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}
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template <typename Graph>
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void checkGraphValidityErase() {
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  TEMPLATE_GRAPH_TYPEDEFS(Graph);
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  Graph g;
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  Node
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    n1 = g.addNode(),
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    n2 = g.addNode(),
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    n3 = g.addNode();
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  Edge
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    e1 = g.addEdge(n1, n2),
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    e2 = g.addEdge(n2, n3);
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  check(g.valid(n1), "Wrong validity check");
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  check(g.valid(e1), "Wrong validity check");
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  check(g.valid(g.direct(e1, true)), "Wrong validity check");
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  g.erase(n1);
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  check(!g.valid(n1), "Wrong validity check");
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  check(g.valid(n2), "Wrong validity check");
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  check(g.valid(n3), "Wrong validity check");
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  check(!g.valid(e1), "Wrong validity check");
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  check(g.valid(e2), "Wrong validity check");
deba@149
   400
kpeter@171
   401
  check(!g.valid(g.nodeFromId(-1)), "Wrong validity check");
kpeter@171
   402
  check(!g.valid(g.edgeFromId(-1)), "Wrong validity check");
kpeter@171
   403
  check(!g.valid(g.arcFromId(-1)), "Wrong validity check");
deba@149
   404
}
deba@149
   405
deba@335
   406
void checkGridGraph(int width, int height) {
deba@335
   407
  typedef GridGraph Graph;
deba@335
   408
  GRAPH_TYPEDEFS(Graph);
deba@335
   409
  Graph G(width, height);
deba@57
   410
kpeter@336
   411
  check(G.width() == width, "Wrong column number");
kpeter@336
   412
  check(G.height() == height, "Wrong row number");
alpar@209
   413
deba@335
   414
  for (int i = 0; i < width; ++i) {
deba@335
   415
    for (int j = 0; j < height; ++j) {
deba@335
   416
      check(G.col(G(i, j)) == i, "Wrong column");
deba@335
   417
      check(G.row(G(i, j)) == j, "Wrong row");
deba@335
   418
      check(G.pos(G(i, j)).x == i, "Wrong column");
deba@335
   419
      check(G.pos(G(i, j)).y == j, "Wrong row");
kpeter@334
   420
    }
kpeter@334
   421
  }
deba@57
   422
deba@335
   423
  for (int j = 0; j < height; ++j) {
deba@335
   424
    for (int i = 0; i < width - 1; ++i) {
deba@335
   425
      check(G.source(G.right(G(i, j))) == G(i, j), "Wrong right");
deba@335
   426
      check(G.target(G.right(G(i, j))) == G(i + 1, j), "Wrong right");
kpeter@334
   427
    }
deba@335
   428
    check(G.right(G(width - 1, j)) == INVALID, "Wrong right");
kpeter@334
   429
  }
deba@57
   430
deba@335
   431
  for (int j = 0; j < height; ++j) {
deba@335
   432
    for (int i = 1; i < width; ++i) {
deba@335
   433
      check(G.source(G.left(G(i, j))) == G(i, j), "Wrong left");
deba@335
   434
      check(G.target(G.left(G(i, j))) == G(i - 1, j), "Wrong left");
kpeter@334
   435
    }
deba@335
   436
    check(G.left(G(0, j)) == INVALID, "Wrong left");
kpeter@334
   437
  }
deba@57
   438
deba@335
   439
  for (int i = 0; i < width; ++i) {
deba@335
   440
    for (int j = 0; j < height - 1; ++j) {
deba@335
   441
      check(G.source(G.up(G(i, j))) == G(i, j), "Wrong up");
deba@335
   442
      check(G.target(G.up(G(i, j))) == G(i, j + 1), "Wrong up");
kpeter@334
   443
    }
deba@335
   444
    check(G.up(G(i, height - 1)) == INVALID, "Wrong up");
kpeter@334
   445
  }
deba@228
   446
deba@335
   447
  for (int i = 0; i < width; ++i) {
deba@335
   448
    for (int j = 1; j < height; ++j) {
deba@335
   449
      check(G.source(G.down(G(i, j))) == G(i, j), "Wrong down");
deba@335
   450
      check(G.target(G.down(G(i, j))) == G(i, j - 1), "Wrong down");
kpeter@334
   451
    }
deba@335
   452
    check(G.down(G(i, 0)) == INVALID, "Wrong down");
kpeter@334
   453
  }
kpeter@334
   454
deba@335
   455
  checkGraphNodeList(G, width * height);
deba@335
   456
  checkGraphEdgeList(G, width * (height - 1) + (width - 1) * height);
deba@335
   457
  checkGraphArcList(G, 2 * (width * (height - 1) + (width - 1) * height));
kpeter@334
   458
deba@335
   459
  for (NodeIt n(G); n != INVALID; ++n) {
deba@335
   460
    int nb = 4;
deba@335
   461
    if (G.col(n) == 0) --nb;
deba@335
   462
    if (G.col(n) == width - 1) --nb;
deba@335
   463
    if (G.row(n) == 0) --nb;
deba@335
   464
    if (G.row(n) == height - 1) --nb;
kpeter@334
   465
deba@335
   466
    checkGraphOutArcList(G, n, nb);
deba@335
   467
    checkGraphInArcList(G, n, nb);
deba@335
   468
    checkGraphIncEdgeList(G, n, nb);
deba@335
   469
  }
kpeter@334
   470
deba@335
   471
  checkArcDirections(G);
kpeter@334
   472
deba@335
   473
  checkGraphConArcList(G, 2 * (width * (height - 1) + (width - 1) * height));
deba@335
   474
  checkGraphConEdgeList(G, width * (height - 1) + (width - 1) * height);
kpeter@334
   475
deba@335
   476
  checkNodeIds(G);
deba@335
   477
  checkArcIds(G);
deba@335
   478
  checkEdgeIds(G);
deba@335
   479
  checkGraphNodeMap(G);
deba@335
   480
  checkGraphArcMap(G);
deba@335
   481
  checkGraphEdgeMap(G);
kpeter@334
   482
kpeter@334
   483
}
deba@228
   484
kpeter@365
   485
void checkHypercubeGraph(int dim) {
kpeter@365
   486
  GRAPH_TYPEDEFS(HypercubeGraph);
kpeter@365
   487
kpeter@365
   488
  HypercubeGraph G(dim);
kpeter@365
   489
  checkGraphNodeList(G, 1 << dim);
alpar@372
   490
  checkGraphEdgeList(G, dim * (1 << (dim-1)));
kpeter@365
   491
  checkGraphArcList(G, dim * (1 << dim));
kpeter@365
   492
kpeter@365
   493
  Node n = G.nodeFromId(dim);
kpeter@365
   494
kpeter@365
   495
  for (NodeIt n(G); n != INVALID; ++n) {
kpeter@365
   496
    checkGraphIncEdgeList(G, n, dim);
kpeter@365
   497
    for (IncEdgeIt e(G, n); e != INVALID; ++e) {
kpeter@365
   498
      check( (G.u(e) == n &&
alpar@372
   499
              G.id(G.v(e)) == (G.id(n) ^ (1 << G.dimension(e)))) ||
kpeter@365
   500
             (G.v(e) == n &&
alpar@372
   501
              G.id(G.u(e)) == (G.id(n) ^ (1 << G.dimension(e)))),
kpeter@365
   502
             "Wrong edge or wrong dimension");
kpeter@365
   503
    }
kpeter@365
   504
kpeter@365
   505
    checkGraphOutArcList(G, n, dim);
kpeter@365
   506
    for (OutArcIt a(G, n); a != INVALID; ++a) {
kpeter@365
   507
      check(G.source(a) == n &&
alpar@372
   508
            G.id(G.target(a)) == (G.id(n) ^ (1 << G.dimension(a))),
kpeter@365
   509
            "Wrong arc or wrong dimension");
kpeter@365
   510
    }
kpeter@365
   511
kpeter@365
   512
    checkGraphInArcList(G, n, dim);
kpeter@365
   513
    for (InArcIt a(G, n); a != INVALID; ++a) {
kpeter@365
   514
      check(G.target(a) == n &&
alpar@372
   515
            G.id(G.source(a)) == (G.id(n) ^ (1 << G.dimension(a))),
kpeter@365
   516
            "Wrong arc or wrong dimension");
kpeter@365
   517
    }
kpeter@365
   518
  }
kpeter@365
   519
kpeter@365
   520
  checkGraphConArcList(G, (1 << dim) * dim);
alpar@372
   521
  checkGraphConEdgeList(G, dim * (1 << (dim-1)));
kpeter@365
   522
kpeter@365
   523
  checkArcDirections(G);
kpeter@365
   524
kpeter@365
   525
  checkNodeIds(G);
kpeter@365
   526
  checkArcIds(G);
kpeter@365
   527
  checkEdgeIds(G);
kpeter@365
   528
  checkGraphNodeMap(G);
kpeter@365
   529
  checkGraphArcMap(G);
kpeter@365
   530
  checkGraphEdgeMap(G);
kpeter@365
   531
}
deba@57
   532
deba@228
   533
void checkGraphs() {
kpeter@171
   534
  { // Checking ListGraph
kpeter@374
   535
    checkGraphBuild<ListGraph>();
kpeter@374
   536
    checkGraphAlter<ListGraph>();
kpeter@374
   537
    checkGraphErase<ListGraph>();
kpeter@374
   538
    checkGraphSnapshot<ListGraph>();
deba@228
   539
    checkGraphValidityErase<ListGraph>();
kpeter@171
   540
  }
kpeter@171
   541
  { // Checking SmartGraph
kpeter@374
   542
    checkGraphBuild<SmartGraph>();
kpeter@374
   543
    checkGraphSnapshot<SmartGraph>();
deba@228
   544
    checkGraphValidity<SmartGraph>();
kpeter@171
   545
  }
kpeter@365
   546
  { // Checking FullGraph
deba@353
   547
    checkFullGraph(7);
deba@353
   548
    checkFullGraph(8);
deba@353
   549
  }
kpeter@334
   550
  { // Checking GridGraph
deba@335
   551
    checkGridGraph(5, 8);
deba@335
   552
    checkGridGraph(8, 5);
deba@335
   553
    checkGridGraph(5, 5);
deba@335
   554
    checkGridGraph(0, 0);
deba@335
   555
    checkGridGraph(1, 1);
kpeter@334
   556
  }
kpeter@365
   557
  { // Checking HypercubeGraph
kpeter@365
   558
    checkHypercubeGraph(1);
kpeter@365
   559
    checkHypercubeGraph(2);
kpeter@365
   560
    checkHypercubeGraph(3);
kpeter@365
   561
    checkHypercubeGraph(4);
kpeter@365
   562
  }
kpeter@171
   563
}
kpeter@171
   564
deba@57
   565
int main() {
deba@228
   566
  checkConcepts();
deba@228
   567
  checkGraphs();
deba@57
   568
  return 0;
deba@57
   569
}