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#pragma once
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#define _stprintf
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#define _CRT_SECURE_NO_WARNINGS
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#include<iostream>
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#include<fstream>
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#include<graphics.h>
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#include<string>
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#define LEFTBORDER 30
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#define TOPBORDER 50
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// def edge class
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class Edge {
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private:
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int VerAdj; // num of point
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int cost; // weight of edge
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Edge* link;
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public:
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Edge();
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// initialization
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Edge(int _veradj, int _cost, Edge* _link) : VerAdj(_veradj), cost(_cost), link(_link)
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{
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}
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int& get_VerAdj();
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int& get_cost();
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Edge*& get_link();
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};
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class Vertex {
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private:
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std::string VerName;
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std::string Description;
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Edge* adjacent; // to neighbor
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int mark; // NO
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int x, y; // position
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public:
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// initialization
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Vertex();
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std::string& get_VerName();
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std::string& get_Description();
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Edge*& get_adjacent();
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int& get_mark();
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int& get_x();
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int& get_y();
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};
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class Graph_List {
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private:
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Vertex* head;
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int graphsize; // summary of number of vertex
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int MaxCost;
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IMAGE* map;
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int insert_edge_do(int v1, int v2, int weight) {
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if (head[v1].get_adjacent() == NULL) {
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head[v1].get_adjacent() = new Edge(v2, weight, NULL);
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return 0; // 若邻接表为空,直接加入新边
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}
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Edge* p = head[v1].get_adjacent();
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Edge* pt = p;
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while ((p != NULL) && (p->get_VerAdj() < v2)) {
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pt = p;
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p = p->get_link();
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}
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if (p == NULL) {
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// 若到邻接表末端仍比v2小
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pt->get_link() = new Edge(v2, weight, NULL);
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return 0;
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}
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if (p == head[v1].get_adjacent() && p->get_VerAdj() > v2) { // 邻接第一个就比v2大
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Edge* q = new Edge(v2, weight, NULL);
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q->get_link() = p;
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head[v1].get_adjacent() = q;
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return 0;
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}
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if (p->get_VerAdj() == v2) {
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return -4; // 插入边已经存在,返回-4
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}
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if (p != head[v1].get_adjacent() && p->get_VerAdj() > v2) { // 正常在邻接表中
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Edge* q = new Edge(v2, weight, NULL);
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pt->get_link() = q;
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q->get_link() = p;
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return 0;
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}
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return 0;
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}
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int delete_edge_do(int v1, int v2) {
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Edge* p = head[v1].get_adjacent();
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if (p == NULL) {
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return -1; // 返回-1表示所删除的边不存在
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}
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if (p->get_VerAdj() == v2) { // 邻接表第一个就是v2
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head[v1].get_adjacent() = p->get_link();
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delete p;
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return 0;
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}
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Edge* pt = p;
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while (p) {
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if (p->get_VerAdj() == v2) {
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pt->get_link() = p->get_link();
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delete p;
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break;
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}
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pt = p;
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p = p->get_link();
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}
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if (p == NULL) { // 到邻接表末端仍未找到v2,则边不存在
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return -1;
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}
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return 0;
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}
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int delete_Graph_List() { // 删除内容
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for (int i = 0; i < graphsize; i++) {
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Edge* p = head[i].get_adjacent();
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Edge* q = p;
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while (p) {
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p = p->get_link();
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delete q;
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q = p;
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}
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}
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delete[] head;
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delete map;
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return 0;
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}
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public:
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int& get_MaxCost();
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Vertex* get_head();
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IMAGE* get_map();
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// 按代号查找在顶点表中的位置
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int get_index(int _mark);
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// 按名称查找在顶点表中的位置
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int get_index(std::string name);
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// 创建图
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int graph_con(std::fstream& file, char* mapname);
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// 构造函数,构造一个空图
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Graph_List();
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~Graph_List();
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// 返回节点总数
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int number_of_vertices()const;
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// 返回边的数目,不计重复边
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int number_of_edges()const;
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// 保存文件
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int save_file(char* filename);
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bool is_graph_empty();
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int get_weight(const int& v1, const int& v2);
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// 插入节点
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void insert_vertex(std::string _name, std::string _des, int _mark, int _x, int _y);
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// 插入边
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int insert_edge(int v1, int v2, int weight);
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// 删除边
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int delete_edge(int v2, int v1);
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// 删除节点
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int delete_vertex(const int& v);
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// 修改节点元素
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int modify_vertex(int v, std::string _n, std::string _des, int& _m, int& _x, int& _y);
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int dshortest_path(const int v, int*& path);
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// 最长路径
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int dlongest_path(const int v, int*& path);
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};
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