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public class TreeNode {
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public int val;
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public TreeNode left, right;
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public TreeNode(int val) {
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this.val = val;
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this.left = this.right = null;
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}
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}
/
public class Solution {
/*
*@param preorder : A list of integers that preorder traversal of a tree
*@param inorder : A list of integers that inorder traversal of a tree
*@return : Root of a tree
/
public TreeNode buildTree(int[] preorder, int[] inorder) {
// write your code here
vectorpre_l,pre_r,in_l,in_r;//定义这四个变量来存储左右子树的前序和中序序列 root=NULL;
TreeNode
int i=0;
int index=0;
if(!preorder.empty()||!inorder.empty())//如果序列中不为空,继续构建
{
root=new TreeNode(preorder[0]);for(i=0;i<inorder.size();i++) { if(preorder[0]==inorder[i]) { index=i;//找出分割中序序列的分割点,左边为左子树的,右边为有子树的 break; } } for(i=0;i<index;i++)//重新找出前面部分前中序列 { pre_l.push_back(preorder[i+1]); in_l.push_back(inorder[i]); } for(i=index+1;i<inorder.size();i++)//找出后面部分的前中序列 { pre_r.push_back(preorder[i]); in_r.push_back(inorder[i]); } //依次构建分割的部分,缩小区间,直至构建完 root->left=buildTree(pre_l,in_l); root->right=buildTree(pre_r,in_r); } return root;
}
};