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0023-merge-k-sorted-lists.java
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0023-merge-k-sorted-lists.java
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// Solution using Min Heap
// Time Complexity: O(n*log(k))
// Extra Space Complexity: O(k)
class Solution1 {
public ListNode mergeKLists(ListNode[] lists) {
if (lists == null || lists.length == 0) {
return null;
}
PriorityQueue<ListNode> queue = new PriorityQueue<>((a, b) -> a.val - b.val);
for (ListNode node : lists) {
if (node != null) {
queue.offer(node);
}
}
ListNode dummy = new ListNode(0);
ListNode current = dummy;
while (!queue.isEmpty()) {
ListNode node = queue.poll();
current.next = node;
current = current.next;
if (node.next != null) {
queue.offer(node.next);
}
}
return dummy.next;
}
}
// Solution using Iterative Merge Sort
// Time Complexity: O(n*log(k))
// Extra Space Complexity: O(1)
class Solution2 {
public ListNode mergeKLists(ListNode[] lists) {
int size = lists.length;
int interval = 1;
while (interval < size) {
for (int i = 0; i < size - interval; i += 2 * interval) {
lists[i] = merge(lists[i], lists[i + interval]);
}
interval *= 2;
}
return size > 0 ? lists[0] : null;
}
private ListNode merge(ListNode l1, ListNode l2) {
ListNode dummy = new ListNode(0);
ListNode curr = dummy;
while (l1 != null && l2 != null) {
if (l1.val <= l2.val) {
curr.next = l1;
l1 = l1.next;
} else {
curr.next = l2;
l2 = l2.next;
}
curr = curr.next;
}
if (l1 != null) {
curr.next = l1;
} else {
curr.next = l2;
}
return dummy.next;
}
}