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给定一个完美二叉树,其所有叶子节点都在同一层,每个父节点都有两个子节点。二叉树定义如下:
struct Node {
int val;
Node *left;
Node *right;
Node *next;
}
填充它的每个 next 指针,让这个指针指向其下一个右侧节点。如果找不到下一个右侧节点,则将 next 指针设置为 NULL。
初始状态下,所有 next 指针都被设置为 NULL。
示例:
输入:{“KaTeX parse error: Expected '}', got 'EOF' at end of input: …":"1","left":{"id”:“2”,“left”:{“KaTeX parse error: Expected 'EOF', got '}' at position 53: …t":null,"val":4}̲,"next":null,"r…id”:“4”,“left”:null,“next”:null,“right”:null,“val”:5},“val”:2},“next”:null,“right”:{“KaTeX parse error: Expected '}', got 'EOF' at end of input: …":"5","left":{"id”:“6”,“left”:null,“next”:null,“right”:null,“val”:6},“next”:null,“right”:{"$id":“7”,“left”:null,“next”:null,“right”:null,“val”:7},“val”:3},“val”:1}
输出:{“KaTeX parse error: Expected '}', got 'EOF' at end of input: …":"1","left":{"id”:“2”,“left”:{“KaTeX parse error: Expected '}', got 'EOF' at end of input: …:null,"next":{"id”:“4”,“left”:null,“next”:{“KaTeX parse error: Expected '}', got 'EOF' at end of input: …:null,"next":{"id”:“6”,“left”:null,“next”:null,“right”:null,“val”:7},“right”:null,“val”:6},“right”:null,“val”:5},“right”:null,“val”:4},“next”:{“KaTeX parse error: Expected '}', got 'EOF' at end of input: …":"7","left":{"ref”:“5”},“next”:null,“right”:{“KaTeX parse error: Expected 'EOF', got '}' at position 9: ref":"6"}̲,"val":3},"righ…ref”:“4”},“val”:2},“next”:null,“right”:{"$ref":“7”},“val”:1}
解释:给定二叉树如图 A 所示,你的函数应该填充它的每个 next 指针,以指向其下一个右侧节点,如图 B 所示。
提示:
来源:力扣(LeetCode)
链接:https://leetcode-cn.com/problems/populating-next-right-pointers-in-each-node
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用next指针
/* // Definition for a Node. class Node { public: int val; Node* left; Node* right; Node* next; Node() : val(0), left(NULL), right(NULL), next(NULL) {} Node(int _val) : val(_val), left(NULL), right(NULL), next(NULL) {} Node(int _val, Node* _left, Node* _right, Node* _next) : val(_val), left(_left), right(_right), next(_next) {} }; */ class Solution { public: Node* connect(Node* root) { if(!root) return root; Node* leftmost = root; //层次遍历的最左侧节点 while(leftmost->left) //如果下一层还有 { Node* parent = leftmost; while(parent) //从左到右遍历这一层 { //建立next指针1:同一个父节点的两个子节点 parent->left->next = parent->right; 建立next指针2:不同父节点的两个子节点建立连接 if(parent->next) parent->right->next = parent->next->left; parent = parent->next; //进入这一层的下一个结点 } leftmost = leftmost->left; //进入下一层 } return root; } };
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