/** * File: hanota.swift * Created Time: 2023-09-02 * Author: nuomi1 (nuomi1@qq.com) */ /* Move a disk */ func move(src: inout [Int], tar: inout [Int]) { // Take out a disk from the top of src let pan = src.popLast()! // Place the disk on top of tar tar.append(pan) } /* Solve the Tower of Hanoi problem f(i) */ func dfs(i: Int, src: inout [Int], buf: inout [Int], tar: inout [Int]) { // If there is only one disk left in src, move it directly to tar if i == 1 { move(src: &src, tar: &tar) return } // Subproblem f(i-1): move the top i-1 disks from src to buf using tar dfs(i: i - 1, src: &src, buf: &tar, tar: &buf) // Subproblem f(1): move the remaining disk from src to tar move(src: &src, tar: &tar) // Subproblem f(i-1): move the top i-1 disks from buf to tar using src dfs(i: i - 1, src: &buf, buf: &src, tar: &tar) } /* Solve the Tower of Hanoi problem */ func solveHanota(A: inout [Int], B: inout [Int], C: inout [Int]) { let n = A.count // The tail of the list is the top of the rod // Move top n disks from src to C using B dfs(i: n, src: &A, buf: &B, tar: &C) } @main enum Hanota { /* Driver Code */ static func main() { // The tail of the list is the top of the rod var A = [5, 4, 3, 2, 1] var B: [Int] = [] var C: [Int] = [] print("In initial state:") print("A = \(A)") print("B = \(B)") print("C = \(C)") solveHanota(A: &A, B: &B, C: &C) print("After disk movement is complete:") print("A = \(A)") print("B = \(B)") print("C = \(C)") } }