给定单链表的头节点 head
,将所有索引为奇数的节点和索引为偶数的节点分别组合在一起,然后返回重新排序的列表。
第一个节点的索引被认为是 奇数 , 第二个节点的索引为 偶数 ,以此类推。
请注意,偶数组和奇数组内部的相对顺序应该与输入时保持一致。
你必须在 O(1)
的额外空间复杂度和 O(n)
的时间复杂度下解决这个问题。
示例 1:
输入: head = [1,2,3,4,5] 输出: [1,3,5,2,4]
示例 2:
输入: head = [2,1,3,5,6,4,7] 输出: [2,3,6,7,1,5,4]
提示:
n ==
链表中的节点数0 <= n <= 104
-106 <= Node.val <= 106
# Definition for singly-linked list.
# class ListNode:
# def __init__(self, val=0, next=None):
# self.val = val
# self.next = next
class Solution:
def oddEvenList(self, head: ListNode) -> ListNode:
if head is None:
return head
odd, even = head, head.next
even_head = even
while even and even.next:
odd.next = even.next
odd = odd.next
even.next = odd.next
even = even.next
odd.next = even_head
return head
/**
* Definition for singly-linked list.
* public class ListNode {
* int val;
* ListNode next;
* ListNode() {}
* ListNode(int val) { this.val = val; }
* ListNode(int val, ListNode next) { this.val = val; this.next = next; }
* }
*/
class Solution {
public ListNode oddEvenList(ListNode head) {
if (head == null) {
return head;
}
ListNode odd = head, even = head.next;
ListNode evenHead = even;
while (even != null && even.next != null) {
odd.next = even.next;
odd = odd.next;
even.next = odd.next;
even = even.next;
}
odd.next = evenHead;
return head;
}
}
/**
* Definition for singly-linked list.
* class ListNode {
* val: number
* next: ListNode | null
* constructor(val?: number, next?: ListNode | null) {
* this.val = (val===undefined ? 0 : val)
* this.next = (next===undefined ? null : next)
* }
* }
*/
function oddEvenList(head: ListNode | null): ListNode | null {
if (head == null) return head;
let odd: ListNode = head,
even: ListNode = head.next;
let evenHead = even;
while (even != null && even.next != null) {
odd.next = even.next;
odd = odd.next;
even.next = odd.next;
even = even.next;
}
odd.next = evenHead;
return head;
}
/**
* Definition for singly-linked list.
* struct ListNode {
* int val;
* ListNode *next;
* ListNode() : val(0), next(nullptr) {}
* ListNode(int x) : val(x), next(nullptr) {}
* ListNode(int x, ListNode *next) : val(x), next(next) {}
* };
*/
class Solution {
public:
ListNode* oddEvenList(ListNode* head) {
if (!head) {
return head;
}
ListNode *odd = head, *even = head->next;
ListNode *evenHead = even;
while (even && even->next) {
odd->next = even->next;
odd = odd->next;
even->next = odd->next;
even = even->next;
}
odd->next = evenHead;
return head;
}
};
/**
* Definition for singly-linked list.
* type ListNode struct {
* Val int
* Next *ListNode
* }
*/
func oddEvenList(head *ListNode) *ListNode {
if head == nil {
return head
}
odd, even := head, head.Next
evenHead := even
for even != nil && even.Next != nil {
odd.Next = even.Next
odd = odd.Next
even.Next = odd.Next
even = even.Next
}
odd.Next = evenHead
return head
}