hello-algo/codes/javascript/chapter_graph/graph_dfs.js
Yudong Jin e720aa2d24
feat: Revised the book (#978)
* Sync recent changes to the revised Word.

* Revised the preface chapter

* Revised the introduction chapter

* Revised the computation complexity chapter

* Revised the chapter data structure

* Revised the chapter array and linked list

* Revised the chapter stack and queue

* Revised the chapter hashing

* Revised the chapter tree

* Revised the chapter heap

* Revised the chapter graph

* Revised the chapter searching

* Reivised the sorting chapter

* Revised the divide and conquer chapter

* Revised the chapter backtacking

* Revised the DP chapter

* Revised the greedy chapter

* Revised the appendix chapter

* Revised the preface chapter doubly

* Revised the figures
2023-12-02 06:21:34 +08:00

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/**
* File: graph_dfs.js
* Created Time: 2023-02-21
* Author: Zhuo Qinyue (1403450829@qq.com)
*/
const { Vertex } = require('../modules/Vertex');
const { GraphAdjList } = require('./graph_adjacency_list');
/* 深度优先遍历 DFS */
// 使用邻接表来表示图,以便获取指定顶点的所有邻接顶点
function dfs(graph, visited, res, vet) {
res.push(vet); // 记录访问顶点
visited.add(vet); // 标记该顶点已被访问
// 遍历该顶点的所有邻接顶点
for (const adjVet of graph.adjList.get(vet)) {
if (visited.has(adjVet)) {
continue; // 跳过已被访问的顶点
}
// 递归访问邻接顶点
dfs(graph, visited, res, adjVet);
}
}
/* 深度优先遍历 DFS */
// 使用邻接表来表示图,以便获取指定顶点的所有邻接顶点
function graphDFS(graph, startVet) {
// 顶点遍历序列
const res = [];
// 哈希表,用于记录已被访问过的顶点
const visited = new Set();
dfs(graph, visited, res, startVet);
return res;
}
/* Driver Code */
/* 初始化无向图 */
const v = Vertex.valsToVets([0, 1, 2, 3, 4, 5, 6]);
const edges = [
[v[0], v[1]],
[v[0], v[3]],
[v[1], v[2]],
[v[2], v[5]],
[v[4], v[5]],
[v[5], v[6]],
];
const graph = new GraphAdjList(edges);
console.log('\n初始化后图为');
graph.print();
/* 深度优先遍历 DFS */
const res = graphDFS(graph, v[0]);
console.log('\n深度优先遍历DFS顶点序列为');
console.log(Vertex.vetsToVals(res));