125 lines
		
	
	
		
			3.1 KiB
		
	
	
	
		
			Markdown
		
	
	
	
	
	
		
		
			
		
	
	
			125 lines
		
	
	
		
			3.1 KiB
		
	
	
	
		
			Markdown
		
	
	
	
	
	
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								---
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								title: Breadth First Search (BFS)
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								localeTitle: 广度优先搜索(BFS)
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								---
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								## 广度优先搜索(BFS)
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								广度优先搜索是最简单的图算法之一。它首先检查当前节点,然后通过将其后继添加到下一级别来扩展它,从而遍历图形。在移动到下一级别之前,对当前级别中的所有节点重复该过程。如果找到解决方案,搜索将停止。
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								### 可视化
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								### 评估
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								空间复杂度:O(n)
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								更糟糕的案例时间复杂性:O(n)
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								广度优先搜索在有限的节点集上完成,并且如果从一个节点移动到另一个节点的成本是恒定的则是最优的。
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								### BFS实现的C ++代码
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								```cpp
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								// Program to print BFS traversal from a given 
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								 // source vertex. BFS(int s) traverses vertices 
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								 // reachable from s. 
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								 #include<iostream> 
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								 #include <list> 
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								 using namespace std; 
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								 // This class represents a directed graph using 
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								 // adjacency list representation 
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								 class Graph 
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								 { 
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								    int V;    // No. of vertices 
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								    // Pointer to an array containing adjacency 
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								    // lists 
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								    list<int> *adj; 
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								 public: 
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								    Graph(int V);  // Constructor 
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								    // function to add an edge to graph 
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								    void addEdge(int v, int w); 
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								    // prints BFS traversal from a given source s 
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								    void BFS(int s); 
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								 }; 
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								 Graph::Graph(int V) 
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								 { 
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								    this->V = V; 
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								    adj = new list<int>[V]; 
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								 } 
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								 void Graph::addEdge(int v, int w) 
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								 { 
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								    adj[v].push_back(w); // Add w to v's list. 
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								 } 
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								 void Graph::BFS(int s) 
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								 { 
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								    // Mark all the vertices as not visited 
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								    bool *visited = new bool[V]; 
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								    for(int i = 0; i < V; i++) 
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								        visited[i] = false; 
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								    // Create a queue for BFS 
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								    list<int> queue; 
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								    // Mark the current node as visited and enqueue it 
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								    visited[s] = true; 
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								    queue.push_back(s); 
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								    // 'i' will be used to get all adjacent 
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								    // vertices of a vertex 
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								    list<int>::iterator i; 
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								    while(!queue.empty()) 
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								    { 
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								        // Dequeue a vertex from queue and print it 
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								        s = queue.front(); 
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								        cout << s << " "; 
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								        queue.pop_front(); 
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								        // Get all adjacent vertices of the dequeued 
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								        // vertex s. If a adjacent has not been visited, 
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								        // then mark it visited and enqueue it 
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								        for (i = adj[s].begin(); i != adj[s].end(); ++i) 
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								        { 
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								            if (!visited[*i]) 
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								            { 
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								                visited[*i] = true; 
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								                queue.push_back(*i); 
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								            } 
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								        } 
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								    } 
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								 } 
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								 // Driver program to test methods of graph class 
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								 int main() 
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								 { 
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								    // Create a graph given in the above diagram 
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								    Graph g(4); 
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								    g.addEdge(0, 1); 
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								    g.addEdge(0, 2); 
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								    g.addEdge(1, 2); 
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								    g.addEdge(2, 0); 
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								    g.addEdge(2, 3); 
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								    g.addEdge(3, 3); 
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								    cout << "Following is Breadth First Traversal " 
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								         << "(starting from vertex 2) \n"; 
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								    g.BFS(2); 
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								    return 0; 
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								 } 
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								```
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								#### 更多信息:
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								[图表](https://github.com/freecodecamp/guides/computer-science/data-structures/graphs/index.md)
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								[深度优先搜索(DFS)](https://github.com/freecodecamp/guides/tree/master/src/pages/algorithms/graph-algorithms/depth-first-search/index.md)
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