ebf9024136
the chapter of stack and queue, the chapter of tree.
180 lines
3.8 KiB
Go
180 lines
3.8 KiB
Go
// File: binary_search_tree.go
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// Created Time: 2022-11-26
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// Author: Reanon (793584285@qq.com)
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package chapter_tree
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import (
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"sort"
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. "github.com/krahets/hello-algo/pkg"
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)
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type BinarySearchTree struct {
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root *TreeNode
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}
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func NewBinarySearchTree(nums []int) *BinarySearchTree {
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// sorting array
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sort.Ints(nums)
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root := buildBinarySearchTree(nums, 0, len(nums)-1)
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return &BinarySearchTree{
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root: root,
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}
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}
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// GetRoot Get the root node of binary search tree
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func (bst *BinarySearchTree) GetRoot() *TreeNode {
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return bst.root
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}
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// GetMin Get node with the min value
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func (bst *BinarySearchTree) GetMin(node *TreeNode) *TreeNode {
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if node == nil {
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return node
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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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for node.Left != nil {
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node = node.Left
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}
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return node
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}
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// GetInorderNext Get node inorder next
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func (bst *BinarySearchTree) GetInorderNext(node *TreeNode) *TreeNode {
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if node == nil || node.Right == nil {
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return node
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}
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node = node.Right
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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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for node.Left != nil {
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node = node.Left
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}
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return node
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}
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/* 查找结点 */
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func (bst *BinarySearchTree) Search(num int) *TreeNode {
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node := bst.root
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// 循环查找,越过叶结点后跳出
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for node != nil {
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if node.Val < num {
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// 目标结点在 root 的右子树中
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node = node.Right
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} else if node.Val > num {
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// 目标结点在 root 的左子树中
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node = node.Left
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} else {
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// 找到目标结点,跳出循环
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break
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}
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}
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// 返回目标结点
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return node
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}
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/* 插入结点 */
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func (bst *BinarySearchTree) Insert(num int) *TreeNode {
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cur := bst.root
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// 若树为空,直接提前返回
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if cur == nil {
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return nil
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}
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// 待插入结点之前的结点位置
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var prev *TreeNode = nil
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// 循环查找,越过叶结点后跳出
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for cur != nil {
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if cur.Val == num {
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return nil
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}
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prev = cur
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if cur.Val < num {
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cur = cur.Right
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} else {
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cur = cur.Left
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}
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}
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// 插入结点
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node := NewTreeNode(num)
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if prev.Val < num {
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prev.Right = node
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} else {
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prev.Left = node
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}
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return cur
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}
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/* 删除结点 */
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func (bst *BinarySearchTree) Remove(num int) *TreeNode {
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cur := bst.root
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// 若树为空,直接提前返回
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if cur == nil {
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return nil
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}
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// 待删除结点之前的结点位置
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var prev *TreeNode = nil
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// 循环查找,越过叶结点后跳出
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for cur != nil {
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if cur.Val == num {
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break
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}
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prev = cur
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if cur.Val < num {
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// 待删除结点在右子树中
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cur = cur.Right
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} else {
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// 待删除结点在左子树中
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cur = cur.Left
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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 == nil {
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return nil
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}
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// 子结点数为 0 或 1
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if cur.Left == nil || cur.Right == nil {
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var child *TreeNode = nil
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// 取出待删除结点的子结点
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if cur.Left != nil {
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child = cur.Left
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} else {
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child = cur.Right
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}
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// 将子结点替换为待删除结点
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if prev.Left == cur {
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prev.Left = child
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} else {
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prev.Right = child
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}
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// 子结点数为 2
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} else {
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// 获取中序遍历中待删除结点 cur 的下一个结点
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next := bst.GetInorderNext(cur)
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temp := next.Val
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// 递归删除结点 next
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bst.Remove(next.Val)
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// 将 next 的值复制给 cur
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cur.Val = temp
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}
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return cur
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}
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// buildBinarySearchTree Build a binary search tree from array.
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func buildBinarySearchTree(nums []int, left, right int) *TreeNode {
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if left > right {
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return nil
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}
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// 将数组中间结点作为根结点
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middle := left + (right-left)>>1
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root := NewTreeNode(nums[middle])
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// 递归构建左子树和右子树
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root.Left = buildBinarySearchTree(nums, left, middle-1)
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root.Right = buildBinarySearchTree(nums, middle+1, right)
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return root
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}
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// Print binary search tree
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func (bst *BinarySearchTree) Print() {
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PrintTree(bst.root)
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}
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