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1360D.cpp
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1360D.cpp
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/*
~ Author : @tridib_2003
*/
#pragma GCC optimize("O3")
// #pragma GCC optimize("Ofast")
// #pragma GCC target("avx,avx2,fma")
#include<bits/stdc++.h>
using namespace std;
#include <ext/pb_ds/assoc_container.hpp>
using namespace __gnu_pbds;
typedef tree<int, null_type, less<int>, rb_tree_tag,
tree_order_statistics_node_update> indexed_set;
#define int long long
#define ull unsigned long long
#define PI 3.1415926535897932384626
#define MOD 1000000007 // 998244353
#define vi vector<int>
#define vb vector<bool>
#define vvi vector<vector<int> >
#define vll vector<long long>
#define pb push_back
#define eb emplace_back
#define mp(a, b) make_pair(a, b)
#define pii pair<int, int>
#define vpii vector<pair<int, int> >
#define mk(arr, n, type) type *arr = new type[n];
#define FOR(i, a, b) for (int(i) = (a); (i) < (b); ++(i))
#define RFOR(i, a, b) for (int(i) = (a)-1; (i) >= (b); --(i))
#define FORALL(i, a) for (auto& (i) : (a))
#define printall(a) for (auto& (i) : (a)) cout << i << ' '
#define print(a) cout << a << '\n'
#define rsort(a) sort((a).rbegin(), (a).rend())
#define w(x) int x; cin >> x; while(x--)
#define all(c) (c).begin(), (c).end()
#define sz(c) (int)(c).size()
#define pqmx priority_queue<int>
#define pqmn priority_queue<int, vector<int>, greater<int> >
#define max3(a, b, c) max((a), max((b), (c)))
#define min3(a, b, c) min((a), min((b), (c)))
#define mx_all(c) *max_element((c).begin(), (c).end())
#define mn_all(c) *min_element((c).begin(), (c).end())
#define lwr_b(c, a) lower_bound((c).begin(), (c).end(), (a)) - ((c).begin())
#define upr_b(c, a) upper_bound((c).begin(), (c).end(), (a)) - ((c).begin())
#define FIO ios::sync_with_stdio(false); cin.tie(0); cout.tie(0);
vector<int> factors;
void factorize(int n) {
for (int i = 1; i * i <= n; ++i) {
if (n % i == 0) {
factors.emplace_back(i);
if (i != (n / i))
factors.emplace_back(n / i);
}
}
}
void solve() {
int n, k;
cin >> n >> k;
if (n <= k) {
cout << 1;
return;
}
if (k == 1) {
cout << n;
return;
}
factors.clear();
factorize(n);
rsort(factors);
FOR (i, 0, sz(factors)) {
if (factors[i] > k)
continue;
if (n % factors[i] == 0) {
cout << n / factors[i];
return;
}
}
}
int32_t main() {
FIO;
int tc = 1;
cin >> tc;
while (tc--) {
solve();
cout << '\n';
}
return 0;
}