// ~~ icebear ~~
#include <bits/stdc++.h>
using namespace std;
typedef long long ll;
typedef pair<int, int> ii;
typedef pair<int, ii> iii;
template<class T>
bool minimize(T &a, const T &b) {
if (a > b) return a = b, true;
return false;
}
template<class T>
bool maximize(T &a, const T &b) {
if (a < b) return a = b, true;
return false;
}
#define FOR(i,a,b) for(int i=(a); i<=(b); ++i)
#define FORR(i,a,b) for(int i=(a); i>=(b); --i)
#define REP(i, n) for(int i=0; i<(n); ++i)
#define RED(i, n) for(int i=(n)-1; i>=0; --i)
#define MASK(i) (1LL << (i))
#define BIT(S, i) (((S) >> (i)) & 1)
#define mp make_pair
#define pb push_back
#define fi first
#define se second
#define all(x) x.begin(), x.end()
#define task "coprime"
const int MOD = 1e9 + 7;
const int inf = 1e9 + 27092008;
const ll INF = 1e18 + 27092008;
const int N = 1e5 + 5;
const ll primes[] = {2, 3, 5, 7, 11};
const int MAX = MASK(5);
int n;
ll a[N];
vector<ll> compress;
int ft[MAX][N];
void update(int t, int x, int val) {
for(; x <= n; x += x & -x) maximize(ft[t][x], val);
}
int get(int t, int x) {
int ans = 0;
for(; x; x -= x & -x) maximize(ans, ft[t][x]);
return ans;
}
void init(void) {
cin >> n;
FOR(i, 1, n) cin >> a[i], compress.pb(a[i]);
sort(all(compress));
compress.resize(unique(all(compress)) - compress.begin());
}
void process(void) {
int res = 0;
FOR(i, 1, n) {
int mask = 0, mx = 0;
REP(j, 5) if (a[i] % primes[j] == 0)
mask |= MASK(j);
mask = (MAX - 1) ^ mask;
int p = upper_bound(all(compress), a[i]) - compress.begin();
for(int msk = mask; msk; msk = (msk - 1) & mask)
maximize(mx, get(msk, p - 1));
update((MAX - 1) ^ mask, p, mx + 1);
maximize(res, mx + 1);
}
cout << res;
}
int main() {
ios_base::sync_with_stdio(0);
cin.tie(0); cout.tie(0);
if (fopen(task".inp", "r")) {
freopen(task".inp", "r", stdin);
freopen(task".out", "w", stdout);
}
int tc = 1;
// cin >> tc;
while(tc--) {
init();
process();
}
return 0;
}
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