惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

F
Fortinet All Blogs
Recent Announcements
Recent Announcements
H
Help Net Security
Y
Y Combinator Blog
酷 壳 – CoolShell
酷 壳 – CoolShell
有赞技术团队
有赞技术团队
小众软件
小众软件
Last Week in AI
Last Week in AI
U
Unit 42
Google DeepMind News
Google DeepMind News
博客园 - 司徒正美
H
Hackread – Cybersecurity News, Data Breaches, AI and More
J
Java Code Geeks
Microsoft Security Blog
Microsoft Security Blog
G
Google Developers Blog
N
Netflix TechBlog - Medium
Blog — PlanetScale
Blog — PlanetScale
云风的 BLOG
云风的 BLOG
V
V2EX
博客园 - 聂微东
人人都是产品经理
人人都是产品经理
博客园 - 三生石上(FineUI控件)
阮一峰的网络日志
阮一峰的网络日志
爱范儿
爱范儿

博客园 - 北叶青藤

Find path from root to a target node in Binary Tree When Dijkstra Algorithm Should be Use? 1188. Design Bounded Blocking Queue 1115. Print FooBar Alternately 1114. Print in Order 1242. Web Crawler Multithreaded Python Multi-threading bot ip Log Rate Limiter Same Word of HTML Labels Most Frequent Call Chain remove prefix in a words list 1102. Path With Maximum Minimum Value Property Booking Optimizer minimum number 755. Pour Water Keyword Tagging in Reviews with Overlapping Matches Retryer Function Implementation 1125. Smallest Sufficient Team Print the terrain Split stay Task scheduling problem 滑雪问题 845. Longest Mountain in Array 723. Candy Crush 1539. Kth Missing Positive Number 1650. Lowest Common Ancestor of a Binary Tree III 424. Longest Repeating Character Replacement 843. Guess the Word 551. Student Attendance Record I
2096. Step-By-Step Directions From a Binary Tree Node to ...
北叶青藤 · 2026-07-23 · via 博客园 - 北叶青藤

ou are given the root of a binary tree with n nodes. Each node is uniquely assigned a value from 1 to n. You are also given an integer startValue representing the value of the start node s, and a different integer destValue representing the value of the destination node t.

Find the shortest path starting from node s and ending at node t. Generate step-by-step directions of such path as a string consisting of only the uppercase letters 'L', 'R', and 'U'. Each letter indicates a specific direction:

  • 'L' means to go from a node to its left child node.
  • 'R' means to go from a node to its right child node.
  • 'U' means to go from a node to its parent node.

Return the step-by-step directions of the shortest path from node s to node t.

Example 1:

Input: root = [5,1,2,3,null,6,4], startValue = 3, destValue = 6
Output: "UURL"
Explanation: The shortest path is: 3 → 1 → 5 → 2 → 6.

Example 2:

Input: root = [2,1], startValue = 2, destValue = 1
Output: "L"
Explanation: The shortest path is: 2 → 1.

Constraints:

  • The number of nodes in the tree is n.
  • 2 <= n <= 105
  • 1 <= Node.val <= n
  • All the values in the tree are unique.
  • 1 <= startValue, destValue <= n
  • startValue != destValue
# Definition for a binary tree node.
# class TreeNode:
#     def __init__(self, val=0, left=None, right=None):
#         self.val = val
#         self.left = left
#         self.right = right
class Solution:
    def getDirections(self, root, startValue, destValue):

        def lca(node):
            if not node:
                return None

            if node.val == startValue or node.val == destValue:
                return node

            left = lca(node.left)
            right = lca(node.right)

            if left and right:
                return node

            return left or right

        def findPath(node, target, path):
            if not node:
                return False

            if node.val == target:
                return True

            path.append("L")
            if findPath(node.left, target, path):
                return True
            path.pop()

            path.append("R")
            if findPath(node.right, target, path):
                return True
            path.pop()

            return False

        ancestor = lca(root)

        pathStart = []
        pathDest = []

        findPath(ancestor, startValue, pathStart)
        findPath(ancestor, destValue, pathDest)

        return "U" * len(pathStart) + "".join(pathDest)