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#include <iostream>
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#include <cassert>
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#include "graph.h"
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int main()
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{
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Graph<int> g;
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assert(g.empty() == true);
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assert(g.numberOfVertices() == 0);
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assert(g.numberOfEdges() == 0);
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int a = 2;
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int b = 5;
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assert(g.addEdge(a, b) == false);
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assert(g.addVertex(a) == true);
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assert(g.addVertex(a) == false);
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assert(g.empty() == false);
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assert(g.numberOfVertices() == 1);
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{
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const std::vector<int*> v = g.vertices();
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assert(v.size() == 1);
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assert(*(v[0]) == 2);
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}
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assert(g.addEdge(a, b) == false);
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assert(g.addVertex(b) == true);
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assert(g.numberOfVertices() == 2);
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{
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const std::vector<int*> v = g.vertices();
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assert(v.size() == 2);
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assert(*(v[0]) == 2);
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assert(*(v[1]) == 5);
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}
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assert(g.numberOfEdges() == 0);
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assert(g.addEdge(a, b) == true);
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assert(g.numberOfEdges() == 1);
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{
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const std::vector<float> eb = g.edgesBetween(2, 5);
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assert(eb.size() == 1);
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assert(eb[0] == 0);
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}
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assert(g.edgesBetween(5, 2).size() == 0);
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assert(g.neighboursOf(2).size() == 1);
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{
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const std::vector<int*> n = g.neighboursOf(2);
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assert(n.size() == 1);
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assert(*(n[0]) == 5);
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}
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int c = 13;
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int d = 1;
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g.addVertex(d);
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g.addVertex(c);
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int vertices_array[] = {2, 5, 13, 1};
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std::vector<int> v(vertices_array, vertices_array + sizeof(vertices_array) / sizeof(int) );
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Graph<int>::iterator g_it;
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std::vector<int>::iterator v_it;
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for (g_it = g.begin(), v_it = v.begin();
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g_it != g.end();
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g_it++, v_it++)
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assert(*g_it == *v_it);
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assert(g.neighboursOf(5).size() == 0);
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Graph<int> g2;
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g.addVertex(1);
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g.addVertex(2);
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g.addVertex(3);
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g.addVertex(4);
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int vertices_array2[] = {1, 2, 3, 4};
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std::vector<int> v2(vertices_array2, vertices_array2 + sizeof(vertices_array2) / sizeof(int) );
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for (g_it = g2.begin(), v_it = v2.begin();
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g_it != g2.end();
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g_it++, v_it++)
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assert(*g_it == *v_it);
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return 0;
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}
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