Submission #224856

#TimeUsernameProblemLanguageResultExecution timeMemory
224856SorahISADrvca (COCI19_drvca)C++17
0 / 110
41 ms4204 KiB
// #pragma GCC target("avx2") #pragma GCC optimize("O3", "unroll-loops") // #include <bits/extc++.h> // using namespace __gnu_pbds; #include <bits/stdc++.h> using namespace std; #define int long long #define double long double // template <typename T> // using pbds_set = tree<T, null_type, less<T>, rb_tree_tag, tree_order_statistics_node_update>; using pii = pair<int, int>; template<typename T> using prior = priority_queue<T, vector<T>, greater<T>>; template<typename T> using Prior = priority_queue<T>; #define X first #define Y second #define ALL(x) (x).begin(), (x).end() #define eb emplace_back #define pb push_back #define fastIO() ios_base::sync_with_stdio(false); cin.tie(0); cout.tie(0) #define RANDOM() random_device __rd; \ mt19937 __gen = mt19937(__rd()); \ uniform_int_distribution<int> __dis(0, 1); \ auto rnd = bind(__dis, __gen); const int INF = 1E18; const int mod = 1E9 + 7; int n; vector<int> val, valA, valB; bool solve() { /* Four types of solve() : * A, A, A, ... * A, A, B, ... * A, B, A, ... * B, A, A, ... */ int diffA = valA[1] - valA[0]; for (int i = 3; i < n; ++i) { if (val[i] - valA.back() == diffA) valA.eb(val[i]); else valB.eb(val[i]); } if (valB.empty()) {valA.pop_back(), valB.eb(val[n-1]); return true;} if (valB.size() == 1) return true; int szB = valB.size(); int diffB = valB[1] - valB[0]; int fl = 1; for (int i = 1; i < szB and fl; ++i) { if (valB[i] - valB[i-1] != diffB) {fl = 0; break;} } if (fl) return true; valB.eb(valA.back()), valA.pop_back(), sort(ALL(valB)); ++szB; diffB = valB[1] - valB[0]; fl = 1; for (int i = 1; i < szB and fl; ++i) { if (valB[i] - valB[i-1] != diffB) {fl = 0; break;} } return fl; } int32_t main() { fastIO(); cin >> n; val.resize(n); for (auto &x : val) cin >> x; sort(ALL(val)); if (n == 2) { cout << 1 << "\n" << val[0] << "\n"; cout << 1 << "\n" << val[1] << "\n"; return 0; } /// A, A, A, ... /// valA.clear(), valB.clear(); valA.eb(val[0]), valA.eb(val[1]), valA.eb(val[2]); if (solve()) { cout << valA.size() << "\n"; for (auto x : valA) cout << x << " "; cout << "\n"; cout << valB.size() << "\n"; for (auto x : valB) cout << x << " "; cout << "\n"; return 0; } /// A, A, B, ... /// valA.clear(), valB.clear(); valA.eb(val[0]), valA.eb(val[1]), valB.eb(val[2]); if (solve()) { cout << valA.size() << "\n"; for (auto x : valA) cout << x << " "; cout << "\n"; cout << valB.size() << "\n"; for (auto x : valB) cout << x << " "; cout << "\n"; return 0; } /// A, B, A, ... /// valA.clear(), valB.clear(); valA.eb(val[0]), valB.eb(val[1]), valA.eb(val[2]); if (solve()) { cout << valA.size() << "\n"; for (auto x : valA) cout << x << " "; cout << "\n"; cout << valB.size() << "\n"; for (auto x : valB) cout << x << " "; cout << "\n"; return 0; } /// B, A, A, ... /// valA.clear(), valB.clear(); valB.eb(val[0]), valA.eb(val[1]), valA.eb(val[2]); if (solve()) { cout << valA.size() << "\n"; for (auto x : valA) cout << x << " "; cout << "\n"; cout << valB.size() << "\n"; for (auto x : valB) cout << x << " "; cout << "\n"; return 0; } cout << -1 << "\n"; return 0; }
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