https://app.codility.com/demo/results/trainingTNPDKU-EQB/
A positive integer D is a factor of a positive integer N if there exists an integer M such that N = D * M.
For example, 6 is a factor of 24, because M = 4 satisfies the above condition (24 = 6 * 4).
Write a function:
class Solution { public int solution(int N); }
that, given a positive integer N, returns the number of its factors.
For example, given N = 24, the function should return 8, because 24 has 8 factors, namely 1, 2, 3, 4, 6, 8, 12, 24. There are no other factors of 24.
Write an efficient algorithm for the following assumptions:
N is an integer within the range [1..2,147,483,647].
// you can also use imports, for example:
// import java.util.*;
// you can write to stdout for debugging purposes, e.g.
// System.out.println("this is a debug message");
import java.util.*;
class Solution {
public int solution(int N) {
int ans = 0;
if(N==1){return 1;}
for(long i=1; i*i<=N; i++){
if(i*i==N){
ans ++;
}
else if(N%i==0){
ans +=2;
}
}
return ans;
// Implement your solution here
}
}
단순히 약수의 수를 반환하는 문제인데,
반복문을 모두 돌면 시간복잡도 문제가 발생하여
i*i<=N 까지로 범위를 효율적으로 설정해주는 것과,
반복문에서 범위를 고려하여 INT대신 LONG으로 설정해주어야함