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refactor 1354
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Lines changed: 14 additions & 19 deletions
Original file line numberDiff line numberDiff line change
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package com.fishercoder.solutions;
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3-
import java.util.Collections;
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import java.util.PriorityQueue;
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public class _1354 {
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public static class Solution1 {
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/**
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* 1. A good idea/trick to calculate the previous value of the largest number max: (2 * max - total).
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* 2. Use a PriorityQueue to store the elements in reverse order to help us get the largest element in O(1) time
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* 3. Also keep a variable of total sum
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* <p>
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* reference: https://leetcode.com/problems/construct-target-array-with-multiple-sums/discuss/510214/C%2B%2B-Reaching-Points-Work-Backwards
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* Use % is the key here to avoid TLE, a good test case for this is [1,1000000000]
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*/
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public boolean isPossible(int[] target) {
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PriorityQueue<Long> pq = new PriorityQueue<>(Collections.reverseOrder());
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long sum = 0L;
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for (int v : target) {
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sum += v;
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pq.offer((long) v);
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long sum = 0;
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PriorityQueue<Integer> maxHeap = new PriorityQueue<>((a, b) -> b - a);
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for (int i = 0; i < target.length; i++) {
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maxHeap.offer(target[i]);
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sum += target[i];
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}
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while (sum > pq.size()) {
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long max = pq.poll();
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Long prev = 2 * max - sum;
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if (prev < 1) {
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while (maxHeap.peek() != 1) {
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int max = maxHeap.poll();
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sum -= max;
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if (max <= sum || sum < 1) {
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return false;
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}
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pq.offer(prev);
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sum -= max;
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sum += prev;
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max %= sum;
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sum += max;
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maxHeap.offer(max);
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}
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return sum == pq.size();
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return true;
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}
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}
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}

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