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Topological_Sort.cpp
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Topological_Sort.cpp
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#include <iostream>
#include <stack>
#include <vector>
using namespace std;
class Graph {
int numVertex;
vector<int> *adj;
public:
// Constructor to initialise graph
Graph(int numVertex) {
this->numVertex = numVertex;
adj = new vector<int> [numVertex];
}
// Function to add edge between source and destination
void addEdge(int src, int dest) {
adj[src].push_back(dest);
}
void topologicalSort();
void topologicalSortUtil(int vertex, vector<bool> &visited, stack<int> &Stack);
};
void Graph::topologicalSortUtil(int vertex, vector<bool> &visited, stack<int> &Stack) {
visited[vertex] = true;
for(int i = 0; i < adj[vertex].size(); i++) {
if(!visited[adj[vertex][i]]) {
topologicalSortUtil(adj[vertex][i], visited, Stack);
}
}
Stack.push(vertex);
}
void Graph::topologicalSort() {
stack<int> Stack;
vector<bool> visited(numVertex, false);
for(int i = 0; i < numVertex; i++) {
if(!visited[i]) {
topologicalSortUtil(i, visited, Stack);
}
}
while(!Stack.empty()) {
cout<<Stack.top()<<" ";
Stack.pop();
}
}
int main() {
Graph graph(6);
graph.addEdge(5, 2);
graph.addEdge(5, 0);
graph.addEdge(4, 0);
graph.addEdge(4, 1);
graph.addEdge(2, 3);
graph.addEdge(3, 1);
cout<<"Topological Sort: ";
graph.topologicalSort();
return 0;
}
/* Output
Topological Sort: 5 4 2 3 1 0
*/