#define _CRT_SECURE_NO_WARNINGS #include #include #include #include #include #include #include #include #include #include #include #include #include //#include "util.h" using namespace std; typedef long long lint; typedef unsigned long long ull; typedef pair Pii; #define PI 3.14159265358979323846 #define EPS 1e-6 #define MIN(a,b) ((a)<(b)?(a):(b)) #define MAX(a,b) ((a)>(b)?(a):(b)) #define FOR(i,a,b) for (int i=(a);i<(b);i++) #define RFOR(i,a,b) for (int i=(b)-1;i>=(a);i--) #define REP(i,n) for (int i=0;i<(n);i++) #define RREP(i,n) for (int i=(n)-1;i>=0;i--) template ostream& operator << (ostream& ostr, const vector<_Ty>& v) { if (v.empty()) { cout << "{ }"; return ostr; } cout << "{" << v.front(); for (auto itr = ++v.begin(); itr != v.end(); itr++) { cout << ", " << *itr; } cout << "}"; return ostr; } template ostream& operator << (ostream& ostr, const pair<_KTy, _Ty>& m) { cout << "{" << m.first << ", " << m.second << "}"; return ostr; } template ostream& operator << (ostream& ostr, const map<_KTy, _Ty>& m) { if (m.empty()) { cout << "{ }"; return ostr; } cout << "{" << *m.begin(); for (auto itr = ++m.begin(); itr != m.end(); itr++) { cout << ", " << *itr; } cout << "}"; return ostr; } template ostream& operator << (ostream& ostr, const set<_Ty>& s) { if (s.empty()) { cout << "{ }"; return ostr; } cout << "{" << *(s.begin()); for (auto itr = ++s.begin(); itr != s.end(); itr++) { cout << ", " << *itr; } cout << "}"; return ostr; } //n % (x^3 - x) void rem(vector n) { vector p(4); p[0] = 1; p[1] = 0; p[2] = -1; p[3] = 0; for (int i = 0; i <= n.size() - p.size(); i++) { int q = n[i]; for (int j = 0; j < p.size(); j++) { n[i + j] -= p[j] * q; } cout << n << endl; } auto itr = n.end() - 3; if (itr[0] != 0) cout << 2 << endl << itr[0] << " " << itr[1] << " " << itr[2] << endl; else if (itr[1] != 0) cout << 1 << endl << itr[1] << " " << itr[2] << endl; else cout << 0 << endl << itr[2] << endl; } int yuki0040() { int D; cin >> D; vector n(D + 1); for (int i = 0; i <= D; i++) cin >> n[i]; rem(n); return 0; } int main() { //clock_t start, end; //start = clock(); yuki0040(); //end = clock(); //printf("%d msec.\n", end - start); return 0; }