mirror of
https://github.com/krahets/hello-algo.git
synced 2024-12-24 10:36:29 +08:00
Merge pull request #113 from justin-tse/master
Add the TypeScript code and docs for Chapter of Tree
This commit is contained in:
commit
02de01607b
8 changed files with 616 additions and 11 deletions
172
codes/typescript/chapter_tree/binary_search_tree.ts
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172
codes/typescript/chapter_tree/binary_search_tree.ts
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@ -0,0 +1,172 @@
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/**
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* File: binary_search_tree.ts
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* Created Time: 2022-12-14
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* Author: Justin (xiefahit@gmail.com)
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*/
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import { TreeNode } from '../module/TreeNode';
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import { printTree } from '../module/PrintUtil';
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/* 二叉搜索树 */
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let root: TreeNode | null;
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function BinarySearchTree(nums: number[]): void {
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nums.sort((a, b) => a - b); // 排序数组
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root = buildTree(nums, 0, nums.length - 1); // 构建二叉搜索树
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}
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/* 获取二叉树根结点 */
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function getRoot(): TreeNode | null {
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return root;
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}
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/* 构建二叉搜索树 */
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function buildTree(nums: number[], i: number, j: number): TreeNode | null {
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if (i > j) {
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return null;
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}
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// 将数组中间结点作为根结点
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let mid = Math.floor((i + j) / 2);
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let root = new TreeNode(nums[mid]);
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// 递归建立左子树和右子树
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root.left = buildTree(nums, i, mid - 1);
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root.right = buildTree(nums, mid + 1, j);
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return root;
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}
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/* 查找结点 */
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function search(num: number): TreeNode | null {
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let cur = root;
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// 循环查找,越过叶结点后跳出
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while (cur !== null) {
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if (cur.val < num) {
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cur = cur.right; // 目标结点在 root 的右子树中
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} else if (cur.val > num) {
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cur = cur.left; // 目标结点在 root 的左子树中
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} else {
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break; // 找到目标结点,跳出循环
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}
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}
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// 返回目标结点
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return cur;
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}
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/* 插入结点 */
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function insert(num: number): TreeNode | null {
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// 若树为空,直接提前返回
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if (root === null) {
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return null;
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}
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let cur = root,
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pre: TreeNode | null = null;
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// 循环查找,越过叶结点后跳出
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while (cur !== null) {
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if (cur.val === num) {
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return null; // 找到重复结点,直接返回
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}
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pre = cur;
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if (cur.val < num) {
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cur = cur.right as TreeNode; // 插入位置在 root 的右子树中
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} else {
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cur = cur.left as TreeNode; // 插入位置在 root 的左子树中
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}
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}
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// 插入结点 val
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let node = new TreeNode(num);
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if (pre!.val < num) {
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pre!.right = node;
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} else {
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pre!.left = node;
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}
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return node;
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}
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/* 删除结点 */
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function remove(num: number): TreeNode | null {
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// 若树为空,直接提前返回
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if (root === null) {
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return null;
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}
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let cur = root,
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pre: TreeNode | null = null;
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// 循环查找,越过叶结点后跳出
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while (cur !== null) {
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// 找到待删除结点,跳出循环
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if (cur.val === num) {
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break;
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}
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pre = cur;
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if (cur.val < num) {
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cur = cur.right as TreeNode; // 待删除结点在 root 的右子树中
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} else {
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cur = cur.left as TreeNode; // 待删除结点在 root 的左子树中
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}
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}
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// 若无待删除结点,则直接返回
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if (cur === null) {
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return null;
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}
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// 子结点数量 = 0 or 1
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if (cur.left === null || cur.right === null) {
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// 当子结点数量 = 0 / 1 时, child = null / 该子结点
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let child = cur.left !== null ? cur.left : cur.right;
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// 删除结点 cur
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if (pre!.left === cur) {
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pre!.left = child;
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} else {
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pre!.right = child;
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}
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}
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// 子结点数量 = 2
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else {
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// 获取中序遍历中 cur 的下一个结点
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let next = min(cur.right);
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let tmp = next!.val;
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// 递归删除结点 nex
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remove(next!.val);
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// 将 nex 的值复制给 cur
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cur.val = tmp;
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}
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return cur;
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}
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/* 获取最小结点 */
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function min(root: TreeNode | null): TreeNode | null {
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if (root === null) {
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return null;
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}
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// 循环访问左子结点,直到叶结点时为最小结点,跳出
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while (root.left !== null) {
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root = root.left;
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}
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return root;
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}
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/* Driver Code */
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/* 初始化二叉搜索树 */
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const nums = [1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15];
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BinarySearchTree(nums);
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console.log('\n初始化的二叉树为\n');
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printTree(getRoot());
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/* 查找结点 */
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let node = search(5);
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console.log('\n查找到的结点对象为 ' + node + ',结点值 = ' + node!.val);
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/* 插入结点 */
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node = insert(16);
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console.log('\n插入结点 16 后,二叉树为\n');
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printTree(getRoot());
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/* 删除结点 */
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remove(1);
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console.log('\n删除结点 1 后,二叉树为\n');
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printTree(getRoot());
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remove(2);
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console.log('\n删除结点 2 后,二叉树为\n');
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printTree(getRoot());
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remove(4);
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console.log('\n删除结点 4 后,二叉树为\n');
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printTree(getRoot());
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export {};
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35
codes/typescript/chapter_tree/binary_tree.ts
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35
codes/typescript/chapter_tree/binary_tree.ts
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/**
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* File: binary_tree.ts
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* Created Time: 2022-12-13
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* Author: Justin (xiefahit@gmail.com)
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*/
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import { TreeNode } from '../module/TreeNode';
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import { printTree } from '../module/PrintUtil';
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/* 初始化二叉树 */
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// 初始化结点
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let n1 = new TreeNode(1),
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n2 = new TreeNode(2),
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n3 = new TreeNode(3),
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n4 = new TreeNode(4),
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n5 = new TreeNode(5);
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// 构建引用指向(即指针)
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n1.left = n2;
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n1.right = n3;
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n2.left = n4;
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n2.right = n5;
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console.log('\n初始化二叉树\n');
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printTree(n1);
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/* 插入与删除结点 */
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const P = new TreeNode(0);
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// 在 n1 -> n2 中间插入结点 P
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n1.left = P;
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P.left = n2;
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console.log('\n插入结点 P 后\n');
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printTree(n1);
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// 删除结点 P
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n1.left = n2;
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console.log('\n删除结点 P 后\n');
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printTree(n1);
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39
codes/typescript/chapter_tree/binary_tree_bfs.ts
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39
codes/typescript/chapter_tree/binary_tree_bfs.ts
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/**
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* File: binary_tree_bfs.ts
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* Created Time: 2022-12-14
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* Author: Justin (xiefahit@gmail.com)
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*/
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import { type TreeNode } from '../module/TreeNode';
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import { arrToTree } from '../module/TreeNode';
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import { printTree } from '../module/PrintUtil';
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/* 层序遍历 */
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function hierOrder(root: TreeNode | null): number[] {
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// 初始化队列,加入根结点
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const queue = [root];
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// 初始化一个列表,用于保存遍历序列
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const list: number[] = [];
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while (queue.length) {
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let node = queue.shift() as TreeNode; // 队列出队
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list.push(node.val); // 保存结点
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if (node.left) {
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queue.push(node.left); // 左子结点入队
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}
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if (node.right) {
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queue.push(node.right); // 右子结点入队
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}
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}
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return list;
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}
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/* Driver Code */
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/* 初始化二叉树 */
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// 这里借助了一个从数组直接生成二叉树的函数
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var root = arrToTree([1, 2, 3, 4, 5, 6, 7, null, null, null, null, null, null, null, null]);
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console.log('\n初始化二叉树\n');
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printTree(root);
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/* 层序遍历 */
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const list = hierOrder(root);
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console.log('\n层序遍历的结点打印序列 = ' + list);
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67
codes/typescript/chapter_tree/binary_tree_dfs.ts
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67
codes/typescript/chapter_tree/binary_tree_dfs.ts
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/**
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* File: binary_tree_dfs.ts
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* Created Time: 2022-12-14
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* Author: Justin (xiefahit@gmail.com)
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*/
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import { type TreeNode } from '../module/TreeNode';
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import { arrToTree } from '../module/TreeNode';
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import { printTree } from '../module/PrintUtil';
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// 初始化列表,用于存储遍历序列
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const list: number[] = [];
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/* 前序遍历 */
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function preOrder(root: TreeNode | null): void {
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if (root === null) {
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return;
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}
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// 访问优先级:根结点 -> 左子树 -> 右子树
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list.push(root.val);
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preOrder(root.left);
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preOrder(root.right);
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}
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/* 中序遍历 */
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function inOrder(root: TreeNode | null): void {
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if (root === null) {
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return;
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}
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// 访问优先级:左子树 -> 根结点 -> 右子树
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inOrder(root.left);
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list.push(root.val);
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inOrder(root.right);
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}
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/* 后序遍历 */
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function postOrder(root: TreeNode | null): void {
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if (root === null) {
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return;
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}
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// 访问优先级:左子树 -> 右子树 -> 根结点
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postOrder(root.left);
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postOrder(root.right);
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list.push(root.val);
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}
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/* Driver Code */
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/* 初始化二叉树 */
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// 这里借助了一个从数组直接生成二叉树的函数
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const root = arrToTree([1, 2, 3, 4, 5, 6, 7, null, null, null, null, null, null, null, null]);
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console.log('\n初始化二叉树\n');
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printTree(root);
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/* 前序遍历 */
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list.length = 0;
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preOrder(root);
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console.log('\n前序遍历的结点打印序列 = ' + list);
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/* 中序遍历 */
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list.length = 0;
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inOrder(root);
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console.log('\n中序遍历的结点打印序列 = ' + list);
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/* 后序遍历 */
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list.length = 0;
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postOrder(root);
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console.log('\n后序遍历的结点打印序列 = ' + list);
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@ -1,11 +1,26 @@
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/*
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* File: PrintUtil.ts
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* Created Time: 2022-12-10
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* Created Time: 2022-12-13
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* Author: Justin (xiefahit@gmail.com)
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*/
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import ListNode from './ListNode';
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import { TreeNode } from './TreeNode';
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class Trunk {
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prev: Trunk | null;
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str: string;
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constructor(prev: Trunk | null, str: string) {
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this.prev = prev;
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this.str = str;
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}
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}
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/**
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* Print a linked list
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* @param head
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*/
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function printLinkedList(head: ListNode | null): void {
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const list: string[] = [];
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while (head !== null) {
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@ -15,4 +30,67 @@ function printLinkedList(head: ListNode | null): void {
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console.log(list.join(' -> '));
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}
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export { printLinkedList };
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/**
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* The interface of the tree printer
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* This tree printer is borrowed from TECHIE DELIGHT
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* https://www.techiedelight.com/c-program-print-binary-tree/
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* @param root
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*/
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function printTree(root: TreeNode | null) {
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printTreeHelper(root, null, false);
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}
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/**
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* Print a binary tree
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* @param root
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* @param prev
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* @param isLeft
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*/
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function printTreeHelper(root: TreeNode | null, prev: Trunk | null, isLeft: boolean) {
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if (root === null) {
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return;
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}
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let prev_str = ' ';
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const trunk = new Trunk(prev, prev_str);
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printTreeHelper(root.right, trunk, true);
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if (prev === null) {
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trunk.str = '———';
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} else if (isLeft) {
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trunk.str = '/———';
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prev_str = ' |';
|
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} else {
|
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trunk.str = '\\———';
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prev.str = prev_str;
|
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}
|
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showTrunks(trunk);
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console.log(' ' + root.val);
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if (prev) {
|
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prev.str = prev_str;
|
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}
|
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trunk.str = ' |';
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printTreeHelper(root.left, trunk, false);
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}
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/**
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* Helper function to print branches of the binary tree
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* @param p
|
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*/
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function showTrunks(p: Trunk | null) {
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if (p === null) {
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return;
|
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}
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showTrunks(p.prev);
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process.stdout.write(p.str);
|
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// ts-node to execute, we need to install type definitions for node
|
||||
// solve: npm i --save-dev @types/node
|
||||
// restart the vscode
|
||||
}
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|
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export { printLinkedList, printTree };
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|
|
51
codes/typescript/module/TreeNode.ts
Normal file
51
codes/typescript/module/TreeNode.ts
Normal file
|
@ -0,0 +1,51 @@
|
|||
/*
|
||||
* File: TreeNode.ts
|
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* Created Time: 2022-12-13
|
||||
* Author: Justin (xiefahit@gmail.com)
|
||||
*/
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/**
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* Definition for a binary tree node.
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*/
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class TreeNode {
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val: number;
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left: TreeNode | null;
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right: TreeNode | null;
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||||
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constructor(val?: number, left?: TreeNode | null, right?: TreeNode | null) {
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this.val = val === undefined ? 0 : val; // 结点值
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this.left = left === undefined ? null : left; // 左子结点指针
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this.right = right === undefined ? null : right; // 右子结点指针
|
||||
}
|
||||
}
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||||
|
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/**
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* Generate a binary tree with an array
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* @param arr
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||||
* @return
|
||||
*/
|
||||
function arrToTree(arr: (number | null)[]): TreeNode | null {
|
||||
if (arr.length === 0) {
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return null;
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||||
}
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||||
|
||||
const root = new TreeNode(arr[0] as number);
|
||||
const queue = [root];
|
||||
let i = 1;
|
||||
while (queue.length) {
|
||||
let node = queue.shift() as TreeNode;
|
||||
if (arr[i] !== null) {
|
||||
node.left = new TreeNode(arr[i] as number);
|
||||
queue.push(node.left);
|
||||
}
|
||||
i++;
|
||||
if (arr[i] !== null) {
|
||||
node.right = new TreeNode(arr[i] as number);
|
||||
queue.push(node.right);
|
||||
}
|
||||
i++;
|
||||
}
|
||||
return root;
|
||||
}
|
||||
|
||||
export { TreeNode, arrToTree };
|
|
@ -132,7 +132,22 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_search_tree.ts"
|
||||
|
||||
/* 查找结点 */
|
||||
function search(num: number): TreeNode | null {
|
||||
let cur = root;
|
||||
// 循环查找,越过叶结点后跳出
|
||||
while (cur !== null) {
|
||||
if (cur.val < num) {
|
||||
cur = cur.right; // 目标结点在 root 的右子树中
|
||||
} else if (cur.val > num) {
|
||||
cur = cur.left; // 目标结点在 root 的左子树中
|
||||
} else {
|
||||
break; // 找到目标结点,跳出循环
|
||||
}
|
||||
}
|
||||
// 返回目标结点
|
||||
return cur;
|
||||
}
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
@ -280,7 +295,35 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_search_tree.ts"
|
||||
|
||||
/* 插入结点 */
|
||||
function insert(num: number): TreeNode | null {
|
||||
// 若树为空,直接提前返回
|
||||
if (root === null) {
|
||||
return null;
|
||||
}
|
||||
let cur = root,
|
||||
pre: TreeNode | null = null;
|
||||
// 循环查找,越过叶结点后跳出
|
||||
while (cur !== null) {
|
||||
if (cur.val === num) {
|
||||
return null; // 找到重复结点,直接返回
|
||||
}
|
||||
pre = cur;
|
||||
if (cur.val < num) {
|
||||
cur = cur.right as TreeNode; // 插入位置在 root 的右子树中
|
||||
} else {
|
||||
cur = cur.left as TreeNode; // 插入位置在 root 的左子树中
|
||||
}
|
||||
}
|
||||
// 插入结点 val
|
||||
let node = new TreeNode(num);
|
||||
if (pre!.val < num) {
|
||||
pre!.right = node;
|
||||
} else {
|
||||
pre!.left = node;
|
||||
}
|
||||
return node;
|
||||
}
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
@ -547,7 +590,54 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_search_tree.ts"
|
||||
|
||||
/* 删除结点 */
|
||||
function remove(num: number): TreeNode | null {
|
||||
// 若树为空,直接提前返回
|
||||
if (root === null) {
|
||||
return null;
|
||||
}
|
||||
let cur = root,
|
||||
pre: TreeNode | null = null;
|
||||
// 循环查找,越过叶结点后跳出
|
||||
while (cur !== null) {
|
||||
// 找到待删除结点,跳出循环
|
||||
if (cur.val === num) {
|
||||
break;
|
||||
}
|
||||
pre = cur;
|
||||
if (cur.val < num) {
|
||||
cur = cur.right as TreeNode; // 待删除结点在 root 的右子树中
|
||||
} else {
|
||||
cur = cur.left as TreeNode; // 待删除结点在 root 的左子树中
|
||||
}
|
||||
}
|
||||
// 若无待删除结点,则直接返回
|
||||
if (cur === null) {
|
||||
return null;
|
||||
}
|
||||
// 子结点数量 = 0 or 1
|
||||
if (cur.left === null || cur.right === null) {
|
||||
// 当子结点数量 = 0 / 1 时, child = null / 该子结点
|
||||
let child = cur.left !== null ? cur.left : cur.right;
|
||||
// 删除结点 cur
|
||||
if (pre!.left === cur) {
|
||||
pre!.left = child;
|
||||
} else {
|
||||
pre!.right = child;
|
||||
}
|
||||
}
|
||||
// 子结点数量 = 2
|
||||
else {
|
||||
// 获取中序遍历中 cur 的下一个结点
|
||||
let next = min(cur.right);
|
||||
let tmp = next!.val;
|
||||
// 递归删除结点 nex
|
||||
remove(next!.val);
|
||||
// 将 nex 的值复制给 cur
|
||||
cur.val = tmp;
|
||||
}
|
||||
return cur;
|
||||
}
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
|
|
@ -74,7 +74,18 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title=""
|
||||
/* 链表结点类 */
|
||||
class TreeNode {
|
||||
val: number;
|
||||
left: TreeNode | null;
|
||||
right: TreeNode | null;
|
||||
|
||||
constructor(val?: number, left?: TreeNode | null, right?: TreeNode | null) {
|
||||
this.val = val === undefined ? 0 : val; // 结点值
|
||||
this.left = left === undefined ? null : left; // 左子结点指针
|
||||
this.right = right === undefined ? null : right; // 右子结点指针
|
||||
}
|
||||
}
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
@ -215,7 +226,18 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_tree.ts"
|
||||
|
||||
/* 初始化二叉树 */
|
||||
// 初始化结点
|
||||
let n1 = new TreeNode(1),
|
||||
n2 = new TreeNode(2),
|
||||
n3 = new TreeNode(3),
|
||||
n4 = new TreeNode(4),
|
||||
n5 = new TreeNode(5);
|
||||
// 构建引用指向(即指针)
|
||||
n1.left = n2;
|
||||
n1.right = n3;
|
||||
n2.left = n4;
|
||||
n2.right = n5;
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
@ -273,7 +295,6 @@ comments: true
|
|||
p := NewTreeNode(0)
|
||||
n1.Left = p
|
||||
p.Left = n2
|
||||
|
||||
// 删除结点 P
|
||||
n1.Left = n2
|
||||
```
|
||||
|
@ -286,7 +307,6 @@ comments: true
|
|||
// 在 n1 -> n2 中间插入结点 P
|
||||
n1.left = P;
|
||||
P.left = n2;
|
||||
|
||||
// 删除结点 P
|
||||
n1.left = n2;
|
||||
```
|
||||
|
@ -294,7 +314,13 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_tree.ts"
|
||||
|
||||
/* 插入与删除结点 */
|
||||
const P = new TreeNode(0);
|
||||
// 在 n1 -> n2 中间插入结点 P
|
||||
n1.left = P;
|
||||
P.left = n2;
|
||||
// 删除结点 P
|
||||
n1.left = n2;
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
@ -423,7 +449,6 @@ comments: true
|
|||
queue.push(node.left); // 左子结点入队
|
||||
if (node.right)
|
||||
queue.push(node.right); // 右子结点入队
|
||||
|
||||
}
|
||||
return list;
|
||||
}
|
||||
|
@ -432,7 +457,24 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_tree_bfs.ts"
|
||||
|
||||
/* 层序遍历 */
|
||||
function hierOrder(root: TreeNode | null): number[] {
|
||||
// 初始化队列,加入根结点
|
||||
const queue = [root];
|
||||
// 初始化一个列表,用于保存遍历序列
|
||||
const list: number[] = [];
|
||||
while (queue.length) {
|
||||
let node = queue.shift() as TreeNode; // 队列出队
|
||||
list.push(node.val); // 保存结点
|
||||
if (node.left) {
|
||||
queue.push(node.left); // 左子结点入队
|
||||
}
|
||||
if (node.right) {
|
||||
queue.push(node.right); // 右子结点入队
|
||||
}
|
||||
}
|
||||
return list;
|
||||
}
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
@ -606,7 +648,38 @@ comments: true
|
|||
=== "TypeScript"
|
||||
|
||||
```typescript title="binary_tree_dfs.ts"
|
||||
/* 前序遍历 */
|
||||
function preOrder(root: TreeNode | null): void {
|
||||
if (root === null) {
|
||||
return;
|
||||
}
|
||||
// 访问优先级:根结点 -> 左子树 -> 右子树
|
||||
list.push(root.val);
|
||||
preOrder(root.left);
|
||||
preOrder(root.right);
|
||||
}
|
||||
|
||||
/* 中序遍历 */
|
||||
function inOrder(root: TreeNode | null): void {
|
||||
if (root === null) {
|
||||
return;
|
||||
}
|
||||
// 访问优先级:左子树 -> 根结点 -> 右子树
|
||||
inOrder(root.left);
|
||||
list.push(root.val);
|
||||
inOrder(root.right);
|
||||
}
|
||||
|
||||
/* 后序遍历 */
|
||||
function postOrder(root: TreeNode | null): void {
|
||||
if (root === null) {
|
||||
return;
|
||||
}
|
||||
// 访问优先级:左子树 -> 右子树 -> 根结点
|
||||
postOrder(root.left);
|
||||
postOrder(root.right);
|
||||
list.push(root.val);
|
||||
}
|
||||
```
|
||||
|
||||
=== "C"
|
||||
|
|
Loading…
Reference in a new issue