結果
問題 | No.5016 Worst Mayor |
ユーザー | square1001 |
提出日時 | 2023-04-29 16:42:59 |
言語 | C++17 (gcc 12.3.0 + boost 1.83.0) |
結果 |
AC
|
実行時間 | 573 ms / 2,000 ms |
コード長 | 6,883 bytes |
コンパイル時間 | 1,250 ms |
コンパイル使用メモリ | 99,264 KB |
実行使用メモリ | 24,360 KB |
スコア | 24,128,959,541 |
平均クエリ数 | 400.00 |
最終ジャッジ日時 | 2023-04-29 16:43:32 |
合計ジャッジ時間 | 31,140 ms |
ジャッジサーバーID (参考情報) |
judge14 / judge16 |
純コード判定しない問題か言語 |
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テストケース
テストケース表示入力 | 結果 | 実行時間 実行使用メモリ |
---|---|---|
testcase_00 | AC | 521 ms
24,336 KB |
testcase_01 | AC | 538 ms
23,820 KB |
testcase_02 | AC | 514 ms
23,508 KB |
testcase_03 | AC | 536 ms
23,412 KB |
testcase_04 | AC | 512 ms
24,216 KB |
testcase_05 | AC | 494 ms
23,544 KB |
testcase_06 | AC | 518 ms
23,988 KB |
testcase_07 | AC | 513 ms
23,808 KB |
testcase_08 | AC | 514 ms
23,424 KB |
testcase_09 | AC | 531 ms
23,616 KB |
testcase_10 | AC | 528 ms
23,628 KB |
testcase_11 | AC | 513 ms
23,820 KB |
testcase_12 | AC | 506 ms
24,264 KB |
testcase_13 | AC | 511 ms
23,988 KB |
testcase_14 | AC | 542 ms
24,264 KB |
testcase_15 | AC | 514 ms
24,288 KB |
testcase_16 | AC | 513 ms
23,820 KB |
testcase_17 | AC | 526 ms
24,252 KB |
testcase_18 | AC | 532 ms
23,412 KB |
testcase_19 | AC | 500 ms
23,544 KB |
testcase_20 | AC | 506 ms
23,388 KB |
testcase_21 | AC | 523 ms
24,360 KB |
testcase_22 | AC | 497 ms
23,520 KB |
testcase_23 | AC | 556 ms
23,616 KB |
testcase_24 | AC | 513 ms
23,820 KB |
testcase_25 | AC | 525 ms
24,012 KB |
testcase_26 | AC | 524 ms
23,376 KB |
testcase_27 | AC | 543 ms
24,264 KB |
testcase_28 | AC | 515 ms
24,168 KB |
testcase_29 | AC | 532 ms
23,640 KB |
testcase_30 | AC | 541 ms
23,412 KB |
testcase_31 | AC | 521 ms
23,820 KB |
testcase_32 | AC | 503 ms
23,820 KB |
testcase_33 | AC | 512 ms
24,048 KB |
testcase_34 | AC | 517 ms
23,400 KB |
testcase_35 | AC | 492 ms
23,400 KB |
testcase_36 | AC | 526 ms
23,820 KB |
testcase_37 | AC | 529 ms
24,000 KB |
testcase_38 | AC | 573 ms
23,964 KB |
testcase_39 | AC | 534 ms
23,988 KB |
testcase_40 | AC | 518 ms
24,012 KB |
testcase_41 | AC | 518 ms
23,988 KB |
testcase_42 | AC | 520 ms
24,108 KB |
testcase_43 | AC | 517 ms
24,240 KB |
testcase_44 | AC | 539 ms
23,400 KB |
testcase_45 | AC | 536 ms
24,228 KB |
testcase_46 | AC | 499 ms
23,820 KB |
testcase_47 | AC | 529 ms
23,640 KB |
testcase_48 | AC | 530 ms
23,808 KB |
testcase_49 | AC | 551 ms
23,604 KB |
ソースコード
#include <array> #include <cmath> #include <string> #include <vector> #include <cassert> #include <iostream> #include <algorithm> using namespace std; class action { public: static constexpr int D = 14; static constexpr int ACTION_BUILD = 1; static constexpr int ACTION_LEVEL = 2; static constexpr int ACTION_MONEY = 3; int tp, id; action() : tp(-1), id(-1) {} action(int tp_) : tp(tp_), id(-1) { assert(tp == 2 || tp == 3); } action(int tp_, int id_) : tp(tp_), id(id_) { assert(tp == 1 && 0 <= id && id < D * (D - 1) * 2); } string to_string() const { assert(tp != -1); if (tp == 2 || tp == 3) { return std::to_string(tp); } int xa, ya, xb, yb; if (id < D * (D - 1)) { xa = id / D; ya = id % D; xb = xa + 1; yb = ya; } else { xa = (id - D * (D - 1)) / (D - 1); ya = (id - D * (D - 1)) % (D - 1); xb = xa; yb = ya + 1; } // output in 1-indexed return std::to_string(tp) + " " + std::to_string(xa + 1) + " " + std::to_string(ya + 1) + " " + std::to_string(xb + 1) + " " + std::to_string(yb + 1); } }; uint64_t seed = 123456789; uint64_t xorshift64() { seed ^= seed << 13; seed ^= seed >> 7; seed ^= seed << 17; return seed; } int main() { // step #1. initial input const int INF = 1012345678; const int D = action::D; int N, T; cin >> N >> T; vector<int> X(N), Y(N); for (int i = 0; i < N; i++) { int a, b, c, d; cin >> a >> b >> c >> d; X[i] = (a - 1) * D + (b - 1); Y[i] = (c - 1) * D + (d - 1); } // step #2. make graph-like list of citizens vector<int> deg(D * D); for (int i = 0; i < N; i++) { deg[X[i]] += 1; deg[Y[i]] += 1; } vector<vector<int> > G(D * D); for (int i = 0; i < N; i++) { if (deg[X[i]] > deg[Y[i]] || (deg[X[i]] == deg[Y[i]] && X[i] < Y[i])) { G[X[i]].push_back(Y[i]); } else { G[Y[i]].push_back(X[i]); } } int cnt = 0; for (int i = 0; i < D * D; i++) { if (deg[i] >= 1) { cnt += 1; } } // step #3. function to calculate score auto getdist = [&](const vector<int>& road) { vector<vector<int> > dist(D * D, vector<int>(D * D, INF)); vector<int> q1(D * D); vector<int> q2(D * D); for (int i = 0; i < D * D; i++) { dist[i][i] = 0; int ql1 = 0, qr1 = 1; int ql2 = 0, qr2 = 0; q1[0] = i; while (ql1 != qr1 || ql2 != qr2) { int c1 = (ql1 != qr1 ? q1[ql1] : INF); int c2 = (ql2 != qr2 ? q2[ql2] : INF); int pos = -1, curdist = 0; if (c1 <= c2) { curdist = (c1 >> 12); pos = (c1 & ((1 << 12) - 1)); ql1 += 1; } else { curdist = (c2 >> 12); pos = (c2 & ((1 << 12) - 1)); ql2 += 1; } int px = pos / D, py = pos % D; // direction 1: down if (px != D - 1 && road[px * D + py] == 0) { if (dist[i][pos + D] > curdist + 1000) { dist[i][pos + D] = curdist + 1000; q1[qr1++] = (dist[i][pos + D] << 12) | (pos + D); } } if (px != D - 1 && road[px * D + py] == 1) { if (dist[i][pos + D] > curdist + 223) { dist[i][pos + D] = curdist + 223; q2[qr2++] = (dist[i][pos + D] << 12) | (pos + D); } } // direction 2: up if (px != 0 && road[(px - 1) * D + py] == 0) { if (dist[i][pos - D] > curdist + 1000) { dist[i][pos - D] = curdist + 1000; q1[qr1++] = (dist[i][pos - D] << 12) | (pos - D); } } if (px != 0 && road[(px - 1) * D + py] == 1) { if (dist[i][pos - D] > curdist + 223) { dist[i][pos - D] = curdist + 223; q2[qr2++] = (dist[i][pos - D] << 12) | (pos - D); } } // direction 3: right if (py != D - 1 && road[D * (D - 1) + px * (D - 1) + py] == 0) { if (dist[i][pos + 1] > curdist + 1000) { dist[i][pos + 1] = curdist + 1000; q1[qr1++] = (dist[i][pos + 1] << 12) | (pos + 1); } } if (py != D - 1 && road[D * (D - 1) + px * (D - 1) + py] == 1) { if (dist[i][pos + 1] > curdist + 223) { dist[i][pos + 1] = curdist + 223; q2[qr2++] = (dist[i][pos + 1] << 12) | (pos + 1); } } // direction 4: left if (py != 0 && road[D * (D - 1) + px * (D - 1) + py - 1] == 0) { if (dist[i][pos - 1] > curdist + 1000) { dist[i][pos - 1] = curdist + 1000; q1[qr1++] = (dist[i][pos - 1] << 12) | (pos - 1); } } if (py != 0 && road[D * (D - 1) + px * (D - 1) + py - 1] == 1) { if (dist[i][pos - 1] > curdist + 223) { dist[i][pos - 1] = curdist + 223; q2[qr2++] = (dist[i][pos - 1] << 12) | (pos - 1); } } } } return dist; }; // step #4. process queries int current_money = 1000000; int current_level = 1; int current_score = 0; int used_roads = 0; bool flag = false; vector<int> road(D * (D - 1) * 2, 0); vector<vector<int> > dist = getdist(road); auto calc = [&](const vector<int>& road) { int answer = 0; for (int i = 0; i < N; i++) { answer += (dist[X[i]][Y[i]] * 287) % 1000; } return answer; }; for (int i = 0; i < T; i++) { int tmp1, tmp2; cin >> tmp1 >> tmp2; // decide action int required_money = int(10000000 / sqrt(current_level)); action a; if (i < 35) { a = action(action::ACTION_LEVEL); } else if (used_roads == 0 && current_money < required_money) { a = action(action::ACTION_MONEY); } else if (!flag) { if (current_money >= required_money) { int opt_choice = -1; int opt_score = -INF; for (int j = 0; j < D * (D - 1) * 2; j++) { if (road[j] == 0) { int va, vb; if (j < D * (D - 1)) { va = j; vb = j + D; } else { va = (j - D * (D - 1)) / (D - 1) * D + (j - D * (D - 1)) % (D - 1); vb = va + 1; } int subscore = 0; for (int k = 0; k < N; k++) { int d1 = dist[X[k]][Y[k]]; int d2 = dist[X[k]][va] + dist[Y[k]][vb] + 223; int d3 = dist[X[k]][vb] + dist[Y[k]][va] + 223; int d4 = min(d1, min(d2, d3)); subscore += (d4 * 287) % 1000; } if (opt_score < subscore) { opt_score = subscore; opt_choice = j; } } } if ((current_score * 60 + 50000) * (400 - i) > ((opt_score + 200) * 60 + 50000) * (400 - i - 1) - required_money) { flag = true; } else { a = action(action::ACTION_BUILD, opt_choice); used_roads += 1; } } else { a = action(action::ACTION_LEVEL); } } if (flag) { a = action(action::ACTION_MONEY); } // process action if (a.tp == action::ACTION_BUILD) { road[a.id] = 1; used_roads += 1; dist = getdist(road); current_money -= required_money; current_score = calc(road); } if (a.tp == action::ACTION_LEVEL) { current_level += 1; } if (a.tp == action::ACTION_MONEY) { current_money += 50000; } current_money += current_score * 60; cout << a.to_string() << endl; cerr << "! " << i << ": level = " << current_level << ", money = " << current_money << ", score = " << current_score << endl; } return 0; }