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https://github.com/krahets/hello-algo.git
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e720aa2d24
* 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
66 lines
1.5 KiB
C++
66 lines
1.5 KiB
C++
/**
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* File: hanota.cpp
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* Created Time: 2023-07-17
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* Author: Krahets (krahets@163.com)
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*/
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#include "../utils/common.hpp"
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/* 移动一个圆盘 */
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void move(vector<int> &src, vector<int> &tar) {
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// 从 src 顶部拿出一个圆盘
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int pan = src.back();
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src.pop_back();
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// 将圆盘放入 tar 顶部
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tar.push_back(pan);
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}
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/* 求解汉诺塔问题 f(i) */
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void dfs(int i, vector<int> &src, vector<int> &buf, vector<int> &tar) {
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// 若 src 只剩下一个圆盘,则直接将其移到 tar
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if (i == 1) {
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move(src, tar);
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return;
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}
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// 子问题 f(i-1) :将 src 顶部 i-1 个圆盘借助 tar 移到 buf
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dfs(i - 1, src, tar, buf);
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// 子问题 f(1) :将 src 剩余一个圆盘移到 tar
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move(src, tar);
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// 子问题 f(i-1) :将 buf 顶部 i-1 个圆盘借助 src 移到 tar
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dfs(i - 1, buf, src, tar);
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}
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/* 求解汉诺塔问题 */
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void solveHanota(vector<int> &A, vector<int> &B, vector<int> &C) {
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int n = A.size();
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// 将 A 顶部 n 个圆盘借助 B 移到 C
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dfs(n, A, B, C);
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}
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/* Driver Code */
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int main() {
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// 列表尾部是柱子顶部
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vector<int> A = {5, 4, 3, 2, 1};
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vector<int> B = {};
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vector<int> C = {};
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cout << "初始状态下:\n";
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cout << "A =";
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printVector(A);
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cout << "B =";
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printVector(B);
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cout << "C =";
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printVector(C);
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solveHanota(A, B, C);
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cout << "圆盘移动完成后:\n";
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cout << "A =";
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printVector(A);
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cout << "B =";
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printVector(B);
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cout << "C =";
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printVector(C);
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return 0;
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}
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