/
githubmirror
/
hello-algo
Обзор
Документация
Войти
/
githubmirror
/
hello-algo
Код
Запросы
0
Пакеты
0
Релизы
0
Аналитика
Безопасность
main
en/codes/cpp/chapter_graph/graph_bfs.cpp
59 строк
2 KB
Yudong Jin
Translate all code to English (#1836)
31 дек 2025, 02:44
Не верифицирован
31 дек 2025, 02:44
2778a6f
Код
Авторство
О чём код?
/** * File: graph_bfs.cpp * Created Time: 2023-03-02 * Author: krahets (krahets@163.com) */ #include "../utils/common.hpp" #include "./graph_adjacency_list.cpp" /* Breadth-first traversal */ // Use adjacency list to represent the graph, in order to obtain all adjacent vertices of a specified vertex vector<Vertex *> graphBFS(GraphAdjList &graph, Vertex *startVet) { // Vertex traversal sequence vector<Vertex *> res; // Hash set for recording vertices that have been visited unordered_set<Vertex *> visited = {startVet}; // Queue used to implement BFS queue<Vertex *> que; que.push(startVet); // Starting from vertex vet, loop until all vertices are visited while (!que.empty()) { Vertex *vet = que.front(); que.pop(); // Dequeue the front vertex res.push_back(vet); // Record visited vertex // Traverse all adjacent vertices of this vertex for (auto adjVet : graph.adjList[vet]) { if (visited.count(adjVet)) continue; // Skip vertices that have been visited que.push(adjVet); // Only enqueue unvisited vertices visited.emplace(adjVet); // Mark this vertex as visited } } // Return vertex traversal sequence return res; } /* Driver Code */ int main() { /* Add edge */ vector<Vertex *> v = valsToVets({0, 1, 2, 3, 4, 5, 6, 7, 8, 9}); vector<vector<Vertex *>> edges = {{v[0], v[1]}, {v[0], v[3]}, {v[1], v[2]}, {v[1], v[4]}, {v[2], v[5]}, {v[3], v[4]}, {v[3], v[6]}, {v[4], v[5]}, {v[4], v[7]}, {v[5], v[8]}, {v[6], v[7]}, {v[7], v[8]}}; GraphAdjList graph(edges); cout << "\nAfter initialization, graph is\\n"; graph.print(); /* Breadth-first traversal */ vector<Vertex *> res = graphBFS(graph, v[0]); cout << "\nBreadth-first traversal (BFS) vertex sequence is" << endl; printVector(vetsToVals(res)); // Free memory for (Vertex *vet : v) { delete vet; } return 0; }