leetcode-month2-week6

Merge Sorted Array

package ygy.test.week6;

/**
 * Created by guoyao on 2017/10/7.
 */
public class MergeSortedArray {

    public static void main(String[] args) {

    }


    //从大到小的倒序排序
    public static void merge(int[] nums1, int m, int[] nums2, int n) {
        int i=m-1, j=n-1, k=m+n-1;
        while (i>-1 && j>-1) nums1[k--]= (nums1[i]>nums2[j]) ? nums1[i--] : nums2[j--];
        while (j>-1)         nums1[k--]=nums2[j--];
    }
}

Remove Duplicates from Sorted List

package ygy.test.week6;

/**
 * Created by guoyao on 2017/10/7.
 */
public class RemoveDuplicatesfromSortedList {

    public static void main(String[] args) {
        ListNode l1=new ListNode(1);
        ListNode l2=new ListNode(1);
        ListNode l3=new ListNode(1);
        l1.next = l2 ;
        l2.next = l3 ;
        ListNode new_l1=deleteDuplicates(l1);
        System.out.println(" -------------------------- ");
        do {
            System.out.println(new_l1.val);
            new_l1=new_l1.next;
        }while (new_l1 != null );
    }


    public static ListNode deleteDuplicates(ListNode head) {
        if (head == null) {
            return  null ;
        }
        ListNode dummyHead = new ListNode(0);
        dummyHead.next = head ;
        ListNode tempNode = head ;
        int temp = head.val;
        head = head.next ;
        while (head!= null ) {
            if (head.val != temp) {
                tempNode = head ;
                temp = head.val ;
                head = head.next ;
                continue;
            }
            tempNode.next = head.next ;
            head = head.next ;
        }
        return  dummyHead.next ;
    }


    //leetcode answer
    public static ListNode deleteDuplicates_2(ListNode head) {
        ListNode current = head;
        while (current != null && current.next != null) {
            if (current.next.val == current.val) {
                current.next = current.next.next;
            } else {
                current = current.next;
            }
        }
        return head;
    }
}


/**
 * Definition for singly-linked list.
 */
class ListNode {
    int val;
    ListNode next;

    ListNode(int x) {
        val=x;
    }
}

Same Tree

package ygy.test.week6;

/**
 * Created by guoyao on 2017/10/8.
 */
public class SameTree {

    public static void main(String[] args) {

    }

    /**
     * Given two binary trees, write a function to check if they are equal or not.
     * <p>
     * Two binary trees are considered equal if they are structurally identical and the nodes have the same value.
     */

    public static boolean isSameTree(TreeNode p, TreeNode q) {
        if (p == null && q == null)  return true;
        if(p == null || q == null) return false;

        if(p.val == q.val)
            return isSameTree(p.left, q.left) && isSameTree(p.right, q.right);

        return false;
    }


}

/**
 * Definition for a binary tree node.
 */

class TreeNode {
    int val;
    TreeNode left;
    TreeNode right;

    TreeNode(int x) {
        val=x;
    }
}

Symmetric Tree

package ygy.test.week6;

/**
 * Created by guoyao on 2017/10/8.
 */
public class SymmetricTree {

    public static void main(String[] args) {

    }

    /**
     * Given a binary tree, check whether it is a mirror of itself (ie, symmetric around its center).
     *          1
              / \
             2   2
           / \ / \
         3  4 4  3
     */
    public static boolean isSymmetric(TreeNode root) {
        return root == null || isSymmetricSameTree(root.left, root.right);
    }

    public static boolean isSymmetricSameTree(TreeNode p, TreeNode q) {
        if (p == null && q == null)  return true;
        if(p == null || q == null) return false;

        if(p.val == q.val)
            return isSymmetricSameTree(p.left, q.right) && isSymmetricSameTree(p.right, q.left);
        return false;

    }
}


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