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182 lines
4.2 KiB
C++
182 lines
4.2 KiB
C++
//
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// Created by 李洋 on 2023/10/21.
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// 以邻接矩阵实现的INT图及其具体操作
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//
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#ifndef LEECODE_C_GRAPH_H
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#define LEECODE_C_GRAPH_H
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#include <vector>
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#include <set>
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#include <map>
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#include <queue>
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#include <random>
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#include <iostream>
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#include <stack>
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using namespace std;
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class Graph {
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public:
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int size;
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Graph(int n, bool direction) {
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this->size = n;
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G = vector<vector<int>>(size, vector<int>(size, 0));
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visited = vector<int>(size, 0);
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random_device rd;
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mt19937 gen(rd());
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uniform_int_distribution<int> dis(0, 1);
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if (!direction) {
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for (int i = 0; i < size; ++i) {
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for (int j = i + 1; j < size; ++j) {
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if (dis(gen)) {
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G[i][j] = 1;
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G[j][i] = 1;
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}
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}
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}
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} else {
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for (int i = 0; i < size; ++i) {
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for (int j = 0; j < size; ++j) {
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if (i == j) {
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continue;
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}
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if (dis(gen)) {
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G[i][j] = 1;
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}
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}
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}
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}
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}
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// 0 1 0 0 0 0
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// 1 0 1 1 0 0
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// 0 1 0 0 0 1
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// 0 1 0 0 0 0
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// 0 0 0 0 0 1
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// 0 0 1 0 1 0
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Graph(int x) {
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size = 6;
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G = vector<vector<int>>(size, vector<int>(size, 0));
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visited = vector<int>(size, 0);
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vector<vector<int>> Edges;
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if (x == 1) {
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Edges.push_back({0, 1});
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Edges.push_back({1, 2});
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Edges.push_back({1, 3});
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Edges.push_back({2, 5});
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Edges.push_back({4, 5});
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}
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if (x == 2) {
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}
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for (auto Edge: Edges) {
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G[Edge[0]][Edge[1]] = 1;
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G[Edge[1]][Edge[0]] = 1;
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}
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}
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Graph *GraphByEdge(vector<vector<int>> &Edges) {
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for (auto Edge: Edges) {
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vertex.insert(Edge[1]);
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vertex.insert(Edge[2]);
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}
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size = vertex.size();
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G = vector<vector<int>>(size, vector<int>(size, 0));
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for (auto Edge: Edges) {
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G[Edge[1]][Edge[2]] = 1;
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}
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return this;
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}
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void printG() {
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for (int i = 0; i < size; ++i) {
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for (int j = 0; j < size; ++j) {
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cout << G[i][j] << " ";
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}
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cout << endl;
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}
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}
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queue<int> DFS(int start) {
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queue<int> Q;
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stack<pair<int, int>> S;
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Q.push(start);
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S.emplace(start, -1);
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visited[0] = 1;
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while (!S.empty()) {
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auto temp = S.top();
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auto next = NextPoint(temp.first, temp.second);
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S.top().second = next;
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if (next == -1) {
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S.pop();
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continue;
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}
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if (visited[next]) {
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continue;
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}
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Q.push(next);
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visited[next] = 1;
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S.emplace(next, -1);
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}
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if (Q.size() != size) {
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// 将其他的点再进行DSF
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}
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return Q;
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}
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queue<int> BFS(int start) {
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queue<int> Q;
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queue<pair<int, int>> S;
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Q.push(start);
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S.emplace(start, -1);
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visited[0] = 1;
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while (!S.empty()) {
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auto temp = S.front();
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auto next = NextPoint(temp.first, temp.second);
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S.front().second = next;
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if (next == -1) {
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S.pop();
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continue;
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}
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if (visited[next]) {
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continue;
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}
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Q.push(next);
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visited[next] = 1;
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S.emplace(next, -1);
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}
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if (Q.size() != size) {
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// 将其他的点再进行BSF
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}
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return Q;
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}
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int NextPoint(int vex, int now) {
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auto row = G[vex];
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for (int i = now + 1; i < size; ++i) {
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if (row[i] != 0) {
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return i;
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}
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}
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return -1;
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}
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private:
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vector<vector<int>> G; // adjacent matrix
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vector<int> visited;
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set<int> vertex; // The collection of vertex
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set<set<int>> ccp; // The graph has multiple connected components.
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};
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#endif //LEECODE_C_GRAPH_H
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