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Copy pathfft_root_gen_naive.cpp
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fft_root_gen_naive.cpp
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#define _CRT_SECURE_NO_DEPRECATE
#pragma GCC optimize("O3")
#pragma GCC target("sse4")
#include "bits/stdc++.h"
//#include <ext/pb_ds/assoc_container.hpp>
//#include <ext/pb_ds/tree_policy.hpp>
using namespace std;
//using namespace __gnu_pbds;
#define int long long int
#define SYNC std::ios_base::sync_with_stdio(0);cin.tie(NULL);cout.tie(NULL);
#define FRE freopen("input.txt","r",stdin);freopen("output.txt","w",stdout);
typedef long double ld;
typedef pair<int,int> ii;
typedef pair<int,ii> iii;
typedef vector<int> vi;
typedef vector<ii> vii;
//typedef tree<int, null_type, less<int>, rb_tree_tag,
// tree_order_statistics_node_update>
// ost;
#define rep(i,l,r) for (int i = (l); i < (r); i++)
#define here cout << " Hey!!\n";
#define pb push_back
#define F first
#define S second
#define all(v) (v).begin(),(v).end()
#define sz(a) (int)((a).size())
#define sq(x) ((x)*(x))
template <typename T>
void etch(T V) {
for (auto x : V) cout << x << ' ' ;
cout << '\n';
}
vector<string> vec_splitter(string s) {
s += ',';
vector<string> res;
while(!s.empty()) {
res.push_back(s.substr(0, s.find(',')));
s = s.substr(s.find(',') + 1);
}
return res;
}
void debug_out(
vector<string> __attribute__ ((unused)) args,
__attribute__ ((unused)) int idx,
__attribute__ ((unused)) int LINE_NUM) { cerr << endl; }
template <typename Head, typename... Tail>
void debug_out(vector<string> args, int idx, int LINE_NUM, Head H, Tail... T) {
if(idx > 0) cerr << ", "; else cerr << "Line(" << LINE_NUM << ") ";
stringstream ss; ss << H;
cerr << args[idx] << " = " << ss.str();
debug_out(args, idx + 1, LINE_NUM, T...);
}
#ifndef ONLINE_JUDGE
#define debug(...) debug_out(vec_splitter(#__VA_ARGS__), 0, __LINE__, __VA_ARGS__)
#else
#define debug(...) 42
#endif
const int mod = 998244353;
const int N = 2e5+5;
const int INF = 1000111000111000111LL;
const ld EPS = 1e-12;
const ld PI = 3.141592653589793116;
const int root_pw = (1LL<<23);
int root, root_1;
int modular_exp(int base,int exp,int mod)
{
int ans =1;
while(exp)
{
if(exp%2) ans = ans%mod*base%mod;
base = (base%mod*base%mod)%mod;
exp/=2;
ans%=mod;
}
return ans;
}
int inv_mod(int base,int mod)
{
return modular_exp(base,mod-2,mod);
}
int generator (int p) {
for (int i = 2; i < p; i++) {
if (modular_exp(i, root_pw, mod) == 1) {
root = i;
root_1 = inv_mod(i, mod);
return i;
}
}
return -1;
}
int32_t main()
{
SYNC
cout << generator(mod);
return 0;
}