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			196 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
			
		
		
	
	
			196 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			Rust
		
	
	
	
	
	
/*
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 * File: binary_search_tree.rs
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 * Created Time: 2023-04-20
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 * Author: xBLACKICEx (xBLACKICE@outlook.com)、night-cruise (2586447362@qq.com)
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 */
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use hello_algo_rust::include::print_util;
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use std::cell::RefCell;
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use std::cmp::Ordering;
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use std::rc::Rc;
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use hello_algo_rust::include::TreeNode;
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type OptionTreeNodeRc = Option<Rc<RefCell<TreeNode>>>;
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/* 二元搜尋樹 */
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pub struct BinarySearchTree {
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    root: OptionTreeNodeRc,
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}
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impl BinarySearchTree {
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    /* 建構子 */
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    pub fn new() -> Self {
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        // 初始化空樹
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        Self { root: None }
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    }
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    /* 獲取二元樹根節點 */
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    pub fn get_root(&self) -> OptionTreeNodeRc {
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        self.root.clone()
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    }
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    /* 查詢節點 */
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    pub fn search(&self, num: i32) -> OptionTreeNodeRc {
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        let mut cur = self.root.clone();
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        // 迴圈查詢,越過葉節點後跳出
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        while let Some(node) = cur.clone() {
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            match num.cmp(&node.borrow().val) {
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                // 目標節點在 cur 的右子樹中
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                Ordering::Greater => cur = node.borrow().right.clone(),
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                // 目標節點在 cur 的左子樹中
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                Ordering::Less => cur = node.borrow().left.clone(),
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                // 找到目標節點,跳出迴圈
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                Ordering::Equal => break,
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            }
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        }
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        // 返回目標節點
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        cur
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    }
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    /* 插入節點 */
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    pub fn insert(&mut self, num: i32) {
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        // 若樹為空,則初始化根節點
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        if self.root.is_none() {
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            self.root = Some(TreeNode::new(num));
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            return;
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        }
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        let mut cur = self.root.clone();
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        let mut pre = None;
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        // 迴圈查詢,越過葉節點後跳出
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        while let Some(node) = cur.clone() {
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            match num.cmp(&node.borrow().val) {
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                // 找到重複節點,直接返回
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                Ordering::Equal => return,
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                // 插入位置在 cur 的右子樹中
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                Ordering::Greater => {
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                    pre = cur.clone();
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                    cur = node.borrow().right.clone();
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                }
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                // 插入位置在 cur 的左子樹中
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                Ordering::Less => {
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                    pre = cur.clone();
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                    cur = node.borrow().left.clone();
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                }
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            }
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        }
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        // 插入節點
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        let pre = pre.unwrap();
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        let node = Some(TreeNode::new(num));
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        if num > pre.borrow().val {
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            pre.borrow_mut().right = node;
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        } else {
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            pre.borrow_mut().left = node;
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        }
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    }
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    /* 刪除節點 */
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    pub fn remove(&mut self, num: i32) {
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        // 若樹為空,直接提前返回
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        if self.root.is_none() {
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            return;
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        }
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        let mut cur = self.root.clone();
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        let mut pre = None;
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        // 迴圈查詢,越過葉節點後跳出
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        while let Some(node) = cur.clone() {
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            match num.cmp(&node.borrow().val) {
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                // 找到待刪除節點,跳出迴圈
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                Ordering::Equal => break,
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                // 待刪除節點在 cur 的右子樹中
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                Ordering::Greater => {
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                    pre = cur.clone();
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                    cur = node.borrow().right.clone();
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                }
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                // 待刪除節點在 cur 的左子樹中
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                Ordering::Less => {
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                    pre = cur.clone();
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                    cur = node.borrow().left.clone();
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                }
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            }
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        }
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        // 若無待刪除節點,則直接返回
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        if cur.is_none() {
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            return;
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        }
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        let cur = cur.unwrap();
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        let (left_child, right_child) = (cur.borrow().left.clone(), cur.borrow().right.clone());
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        match (left_child.clone(), right_child.clone()) {
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            // 子節點數量 = 0 or 1
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            (None, None) | (Some(_), None) | (None, Some(_)) => {
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                // 當子節點數量 = 0 / 1 時, child = nullptr / 該子節點
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                let child = left_child.or(right_child);
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                let pre = pre.unwrap();
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                // 刪除節點 cur
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                if !Rc::ptr_eq(&cur, self.root.as_ref().unwrap()) {
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                    let left = pre.borrow().left.clone();
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                    if left.is_some() && Rc::ptr_eq(left.as_ref().unwrap(), &cur) {
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                        pre.borrow_mut().left = child;
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                    } else {
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                        pre.borrow_mut().right = child;
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                    }
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                } else {
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                    // 若刪除節點為根節點,則重新指定根節點
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                    self.root = child;
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                }
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            }
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            // 子節點數量 = 2
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            (Some(_), Some(_)) => {
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                // 獲取中序走訪中 cur 的下一個節點
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                let mut tmp = cur.borrow().right.clone();
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                while let Some(node) = tmp.clone() {
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                    if node.borrow().left.is_some() {
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                        tmp = node.borrow().left.clone();
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                    } else {
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                        break;
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                    }
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                }
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                let tmp_val = tmp.unwrap().borrow().val;
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                // 遞迴刪除節點 tmp
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                self.remove(tmp_val);
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                // 用 tmp 覆蓋 cur
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                cur.borrow_mut().val = tmp_val;
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            }
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        }
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    }
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}
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/* Driver Code */
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fn main() {
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    /* 初始化二元搜尋樹 */
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    let mut bst = BinarySearchTree::new();
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    // 請注意,不同的插入順序會生成不同的二元樹,該序列可以生成一個完美二元樹
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    let nums = [8, 4, 12, 2, 6, 10, 14, 1, 3, 5, 7, 9, 11, 13, 15];
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    for &num in &nums {
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        bst.insert(num);
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    }
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    println!("\n初始化的二元樹為\n");
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    print_util::print_tree(bst.get_root().as_ref().unwrap());
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    /* 查詢結點 */
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    let node = bst.search(7);
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    println!(
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        "\n查詢到的節點物件為 {:?},節點值 = {}",
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        node.clone().unwrap(),
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        node.clone().unwrap().borrow().val
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    );
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    /* 插入節點 */
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    bst.insert(16);
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    println!("\n插入節點 16 後,二元樹為\n");
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    print_util::print_tree(bst.get_root().as_ref().unwrap());
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    /* 刪除節點 */
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    bst.remove(1);
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    println!("\n刪除節點 1 後,二元樹為\n");
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    print_util::print_tree(bst.get_root().as_ref().unwrap());
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    bst.remove(2);
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    println!("\n刪除節點 2 後,二元樹為\n");
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    print_util::print_tree(bst.get_root().as_ref().unwrap());
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    bst.remove(4);
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    println!("\n刪除節點 4 後,二元樹為\n");
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    print_util::print_tree(bst.get_root().as_ref().unwrap());
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}
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