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https://github.com/krahets/hello-algo.git
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7cdfa03e68
* feat(kotlin):new kotlin support files * fix(kotlin): reviewed the formatting, comments and so on. * fix(kotlin): fix the indentation and format * feat(kotlin): Add kotlin code for the backtraking chapter. * fix(kotlin): fix incorrect output of preorder_traversal_iii_template.kt file * fix(kotlin): simplify kotlin codes * fix(kotlin): modify n_queens.kt for consistency. * feat(kotlin): add kotlin code for computational complexity. * fix(kotlin): remove iteration folder. * fix(kotlin): remove n_queens.kt file out of folder. * fix(kotlin): remove some folders. * style(kotlin): modified two chapters. * feat(kotlin): add kotlin code for divide and conquer. * Update build_tree.kt * Update hanota.kt * Delete codes/kotlin/chapter_backtracking directory * Delete codes/kotlin/chapter_computational_complexity directory * Delete codes/kotlin/chapter_divide_and_conquer directory * feat(kotlin): add kotlin code for divide and conquer. * Update hanota.kt
56 lines
1.5 KiB
Kotlin
56 lines
1.5 KiB
Kotlin
/**
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* File: hanota.kt
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* Created Time: 2024-1-25
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* Author: curtishd (1023632660@qq.com)
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*/
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package chapter_divide_and_conquer.hanota
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/* 移动一个圆盘 */
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fun move(src: MutableList<Int>, tar: MutableList<Int>) {
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// 从 src 顶部拿出一个圆盘
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val pan: Int = src.removeAt(src.size - 1)
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// 将圆盘放入 tar 顶部
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tar.add(pan)
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}
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/* 求解汉诺塔问题 f(i) */
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fun dfs(i: Int, src: MutableList<Int>, buf: MutableList<Int>, tar: MutableList<Int>) {
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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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fun solveHanota(A: MutableList<Int>, B: MutableList<Int>, C: MutableList<Int>) {
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val 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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fun main() {
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// 列表尾部是柱子顶部
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val A: MutableList<Int> = ArrayList(mutableListOf(5, 4, 3, 2, 1))
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val B: MutableList<Int> = ArrayList()
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val C: MutableList<Int> = ArrayList()
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println("初始状态下:")
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println("A = $A")
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println("B = $B")
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println("C = $C")
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solveHanota(A, B, C)
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println("圆盘移动完成后:")
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println("A = $A")
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println("B = $B")
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println("C = $C")
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}
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