/**
* Definition for binary tree
* struct TreeNode {
* int val;
* TreeNode *left;
* TreeNode *right;
* TreeNode(int x) : val(x), left(NULL), right(NULL) {}
* };
*/
class Solution {
public:
void treewalk(TreeNode *root,TreeNode *&pre,TreeNode *&first,TreeNode *&second)//注意引用
{
if(root==NULL) return;
treewalk(root->left,pre,first,second);
if(pre!=NULL&&(pre->val>root->val))
{
if(first==NULL)
first=pre;
second=root;
}
pre=root;
treewalk(root->right,pre,first,second);
}
void recoverTree(TreeNode *root) {
TreeNode *pre=NULL;
TreeNode *first=NULL;
TreeNode *second=NULL;
treewalk(root,pre,first,second);
int tmp=first->val;
first->val=second->val;
second->val=tmp;
}
};
* Definition for binary tree
* struct TreeNode {
* int val;
* TreeNode *left;
* TreeNode *right;
* TreeNode(int x) : val(x), left(NULL), right(NULL) {}
* };
*/
class Solution {
public:
void treewalk(TreeNode *root,TreeNode *&pre,TreeNode *&first,TreeNode *&second)//注意引用
{
if(root==NULL) return;
treewalk(root->left,pre,first,second);
if(pre!=NULL&&(pre->val>root->val))
{
if(first==NULL)
first=pre;
second=root;
}
pre=root;
treewalk(root->right,pre,first,second);
}
void recoverTree(TreeNode *root) {
TreeNode *pre=NULL;
TreeNode *first=NULL;
TreeNode *second=NULL;
treewalk(root,pre,first,second);
int tmp=first->val;
first->val=second->val;
second->val=tmp;
}
};