[Leetcode] 133. Clone Graph

Clone an undirected graph. Each node in the graph contains a label and a list of its neighbors.


OJ's undirected graph serialization:

Nodes are labeled uniquely.

We use  # as a separator for each node, and  , as a separator for node label and each neighbor of the node.

As an example, consider the serialized graph {0,1,2#1,2#2,2}.

The graph has a total of three nodes, and therefore contains three parts as separated by #.

  1. First node is labeled as 0. Connect node 0 to both nodes 1 and 2.
  2. Second node is labeled as 1. Connect node 1 to node 2.
  3. Third node is labeled as 2. Connect node 2 to node 2 (itself), thus forming a self-cycle.

Visually, the graph looks like the following:

       1
      / \
     /   \
    0 --- 2
         / \
         \_/
这道就单纯地考BFS DFS

/**
 * Definition for undirected graph.
 * class UndirectedGraphNode {
 *     int label;
 *     List<UndirectedGraphNode> neighbors;
 *     UndirectedGraphNode(int x) { label = x; neighbors = new ArrayList<UndirectedGraphNode>(); }
 * };
 */
import java.util.LinkedList;
import java.util.ArrayList;
import java.util.HashMap;
public class Solution {
    public UndirectedGraphNode cloneGraph(UndirectedGraphNode node) {
        if(node == null) return null;
        Queue<UndirectedGraphNode> queue = new LinkedList<UndirectedGraphNode>();
        UndirectedGraphNode newNode = new UndirectedGraphNode(node.label);
        HashMap<UndirectedGraphNode, UndirectedGraphNode> map = new HashMap<UndirectedGraphNode, UndirectedGraphNode>();
        queue.offer(node);
        map.put(node, newNode);
        while(!queue.isEmpty()){
            UndirectedGraphNode current = queue.poll();
            for(UndirectedGraphNode neighbor: current.neighbors){
                //If the neighbor hasn't been visited, we need to create a new one and add it to map
                if(!visited.containsKey(neighbor)){
                    newNode = new UndirectedGraphNode(neighbor.label);
                    visited.put(neighbor, newNode);
                    queue.offer(neighbor);
                }
                map.get(current).neighbors.add(map.get(neighbor));
            }
        }
        return map.get(newNode);
    }
}



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