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package g2301_2400.s2343_query_kth_smallest_trimmed_number;
// #Medium #Array #String #Sorting #Heap_Priority_Queue #Divide_and_Conquer #Quickselect #Radix_Sort
// #2022_07_19_Time_52_ms_(75.00%)_Space_58.8_MB_(37.50%)
import java.util.ArrayList;
import java.util.Arrays;
import java.util.List;
public class Solution {
public int[] smallestTrimmedNumbers(String[] nums, int[][] queries) {
int numberOfDigits = nums[0].length();
int placeValue = numberOfDigits;
List list = new ArrayList<>(numberOfDigits);
while (--placeValue >= 0) {
countSort(nums, placeValue, numberOfDigits, list);
}
int[] op = new int[queries.length];
int i = 0;
for (int[] query : queries) {
int listIndex = query[1] - 1;
int place = query[0] - 1;
op[i++] = list.get(listIndex)[place];
}
return op;
}
private void countSort(String[] arr, int exp, int numberOfDigits, List list) {
int n = arr.length;
String[] output = new String[n];
int i;
int[] count = new int[10];
Arrays.fill(count, 0);
// Store count of occurrences in count[]
for (i = 0; i < n; i++) {
int digit = arr[i].charAt(exp) - '0';
count[digit]++;
}
for (i = 1; i < 10; i++) {
count[i] += count[i - 1];
}
// Build the output array
int[] op = new int[n];
for (i = n - 1; i >= 0; i--) {
int digit = arr[i].charAt(exp) - '0';
int place = count[digit] - 1;
output[place] = arr[i];
if (exp == numberOfDigits - 1) {
op[place] = i;
} else {
op[place] = list.get(list.size() - 1)[i];
}
count[digit]--;
}
list.add(op);
System.arraycopy(output, 0, arr, 0, n);
}
}
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