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LeetCode101.java
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81 lines (71 loc) · 2.37 KB
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import java.util.Queue;
import java.util.LinkedList;
import util.TreeNode;
public class LeetCode101 {
public static void main(String[] args) {
// 输入:root = [1,2,2,3,4,4,3]
// 输出:true
System.out.println(new Solution101_2().isSymmetric(TreeNode.buildTree(new Integer[] { 1, 2, 2, 3, 4, 4, 3 })));
// 输入:root = [1,2,2,null,3,null,3]
// 输出:false
System.out.println(
new Solution101_2().isSymmetric(TreeNode.buildTree(new Integer[] { 1, 2, 2, null, 3, null, 3 })));
}
}
class Solution101_1 {
public boolean isSymmetric(TreeNode root) {
Queue<Integer> queue = new LinkedList<Integer>();
dfs_offer(queue, root);
// System.out.println(queue);
return dfs_pop(queue, root);
}
public void dfs_offer(Queue<Integer> queue, TreeNode root) {
if (root == null) {
queue.offer(Integer.MAX_VALUE);
return;
}
queue.offer(root.val);
dfs_offer(queue, root.left);
dfs_offer(queue, root.right);
}
public boolean dfs_pop(Queue<Integer> queue, TreeNode root) {
if (root == null) {
if (queue.poll() == Integer.MAX_VALUE) {
return true;
} else {
return false;
}
}
if (queue.poll() == root.val) {
return dfs_pop(queue, root.right) && dfs_pop(queue, root.left);
} else {
return false;
}
}
}
class Solution101_2 {
public boolean isSymmetric(TreeNode root) {
if (root == null) {
return true;
}
// 调用递归函数,比较左节点,右节点
return dfs(root.left, root.right);
}
boolean dfs(TreeNode left, TreeNode right) {
// 递归的终止条件是两个节点都为空
// 或者两个节点中有一个为空
// 或者两个节点的值不相等
if (left == null && right == null) {
return true;
}
if (left == null || right == null) {
return false;
}
if (left.val != right.val) {
return false;
}
// 再递归的比较 左节点的左孩子 和 右节点的右孩子
// 以及比较 左节点的右孩子 和 右节点的左孩子
return dfs(left.left, right.right) && dfs(left.right, right.left);
}
}