2024-05-07 09:25:05 +02:00
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class ListNode(var `val`: Int) {
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var next: ListNode? = null
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}
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fun toListNode(vararg xs: Int): ListNode? {
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if (xs.isEmpty()) {
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return null
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}
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val dummy = ListNode(0)
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var node = dummy
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for (x in xs) {
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val next = ListNode(x)
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node.next = next
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node = next
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}
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return dummy.next
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}
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2024-05-17 18:23:38 +02:00
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fun linkedListEquals(
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head: ListNode?,
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xs: List<Int>,
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): Boolean {
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2024-05-07 09:25:05 +02:00
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var node = head
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for ((i, x) in xs.withIndex()) {
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if (node == null) {
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println("[DEBUG] $x is expected at index $i in the linked list, but is not present")
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return false
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} else if (node.`val` != x) {
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println("[DEBUG] $x is expected at index $i in the linked list, but ${node.`val`} is present")
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return false
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}
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node = node.next
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}
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if (node != null) {
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println("[DEBUG] Linked list is longer than expected")
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}
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return node == null
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}
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class Solution {
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fun doubleIt(head: ListNode?): ListNode? {
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val dummyHead = ListNode(0)
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dummyHead.next = head
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val (newHead, carry) = doubleItRec(dummyHead)
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if (newHead!!.`val` > 0) {
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return newHead
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}
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return newHead.next
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}
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private fun doubleItRec(node: ListNode?): Pair<ListNode?, Int> {
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if (node == null) {
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return null to 0
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}
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val (nextHead, carry) = doubleItRec(node.next)
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val current = carry + 2 * node.`val`
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val newNode = ListNode(current % 10)
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newNode.next = nextHead
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return newNode to current / 10
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}
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}
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fun main() {
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val s = Solution()
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check(linkedListEquals(s.doubleIt(toListNode(1, 8, 9)), listOf(3, 7, 8)))
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check(linkedListEquals(s.doubleIt(toListNode(9, 9, 9)), listOf(1, 9, 9, 8)))
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check(linkedListEquals(s.doubleIt(toListNode(0)), listOf(0)))
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}
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