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Deleting duplicate BFS and DFS files. (#164)
* Deleting duplicate file BFS. * deleting duplicate file DFS. * Rename P01_BreadthFirstSearch.py to BreadthFirstSearch.py * Rename P02_DepthFirstSearch.py to DepthFirstSearch.py
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class GRAPH:
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"""docstring for GRAPH"""
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def __init__(self, nodes):
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self.nodes = nodes
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self.graph = [[0]*nodes for i in range (nodes)]
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self.visited = [0]*nodes
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def show(self):
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for i in self.graph:
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for j in i:
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print(j, end=' ')
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print(' ')
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def bfs(self,v):
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visited = [False]*self.vertex
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visited[v - 1] = True
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print('%d visited' % (v))
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queue = [v - 1]
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while len(queue) > 0:
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v = queue[0]
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for u in range(self.vertex):
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if self.graph[v][u] == 1:
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if visited[u] is False:
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visited[u] = True
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queue.append(u)
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print('%d visited' % (u +1))
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queue.pop(0)
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g = Graph(10)
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g.add_edge(1,2)
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g.add_edge(1,3)
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g.add_edge(1,4)
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g.add_edge(2,5)
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g.add_edge(3,6)
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g.add_edge(3,7)
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g.add_edge(4,8)
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g.add_edge(5,9)
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g.add_edge(6,10)
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g.bfs(4)
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print(self.graph)
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def add_edge(self, i, j):
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self.graph[i][j]=1
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self.graph[j][i]=1
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def bfs(self, s):
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queue = [s]
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self.visited[s] = 1
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while len(queue)!= 0:
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x = queue.pop(0)
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print(x)
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for i in range(0, self.nodes):
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if self.graph[x][i] == 1 and self.visited[i] == 0:
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queue.append(i)
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self.visited[i] = 1
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n = int(input("Enter the number of Nodes : "))
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g = GRAPH(n)
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e = int(input("Enter the no of edges : "))
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print("Enter the edges (u v)")
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for i in range(0, e):
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u ,v = map(int, raw_input().split())
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g.add_edge(u, v)
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s = int(input("Enter the source node :"))
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g.bfs(s)
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class GRAPH:
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"""docstring for GRAPH"""
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def __init__(self, nodes):
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self.nodes=nodes
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self.graph=[[0]*nodes for i in range (nodes)]
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self.visited=[0]*nodes
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def show(self):
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print self.graph
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def add_edge(self, i, j):
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self.graph[i][j]=1
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self.graph[j][i]=1
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def dfs(self,s):
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self.visited[s]=1
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print(s)
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for i in range(0,self.nodes):
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if self.visited[i]==0 and self.graph[s][i]==1:
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self.dfs(i)
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n=int(input("Enter the number of Nodes : "))
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g=GRAPH(n)
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e=int(input("Enter the no of edges : "))
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print("Enter the edges (u v)")
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for i in range(0,e):
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u,v=map(int, raw_input().split())
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g.add_edge(u,v)
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s=int(input("Enter the source node :"))
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g.dfs(s)
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