vault backup: 2022-07-02 08:27:19
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@ -75,8 +75,7 @@ The in place insert is easier to understand, and simple to implement, using a ve
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### Solution
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I've referred to this guy: https://leetcode.com/problems/reverse-linked-list/discuss/58130/C%2B%2B-Iterative-and-Recursive
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This code is hard to understand.
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==TODO==: Make my own version
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Insertion, iteration
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```cpp
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class Solution {
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public:
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@ -99,27 +98,34 @@ public:
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```
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Recursion:
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==TODO== Needs revision!
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```cpp
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/**
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* Definition for singly-linked list.
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* struct ListNode {
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* int val;
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* ListNode *next;
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* ListNode() : val(0), next(nullptr) {}
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* ListNode(int x) : val(x), next(nullptr) {}
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* ListNode(int x, ListNode *next) : val(x), next(next) {}
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* };
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*/
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class Solution {
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public:
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ListNode *reverseList(ListNode *head) {
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// Base case: reached the end of list
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if (!head || !(head->next)) {
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// Recursion
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if (head == nullptr || head->next == nullptr) {
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// base case: return the tail
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return head;
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}
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// node is the end of the initial linked list, which stays the same
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ListNode *node = reverseList(head->next);
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// have to call itself before modifying, since head->next will point to
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// nullptr
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ListNode *newHead = reverseList(head->next);
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// move head after head->next
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// notice that the node before head still points to head!
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head->next->next = head;
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head->next = nullptr;
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// since the order is reversed, head->next now points to the tail of the linked list. This is the genius part of this algorithm
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head->next = NULL;
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return node;
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return newHead;
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}
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};
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```
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