結果
問題 | No.1647 Travel in Mitaru city 2 |
ユーザー | haruki_K |
提出日時 | 2021-08-14 01:29:09 |
言語 | C++17 (gcc 12.3.0 + boost 1.83.0) |
結果 |
AC
|
実行時間 | 94 ms / 2,500 ms |
コード長 | 7,254 bytes |
コンパイル時間 | 2,461 ms |
コンパイル使用メモリ | 215,784 KB |
実行使用メモリ | 30,312 KB |
最終ジャッジ日時 | 2024-10-13 03:26:33 |
合計ジャッジ時間 | 8,767 ms |
ジャッジサーバーID (参考情報) |
judge3 / judge5 |
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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 | 2 ms
5,248 KB |
testcase_01 | AC | 1 ms
5,248 KB |
testcase_02 | AC | 2 ms
5,248 KB |
testcase_03 | AC | 2 ms
5,248 KB |
testcase_04 | AC | 2 ms
5,248 KB |
testcase_05 | AC | 2 ms
5,248 KB |
testcase_06 | AC | 2 ms
5,248 KB |
testcase_07 | AC | 3 ms
5,248 KB |
testcase_08 | AC | 82 ms
28,132 KB |
testcase_09 | AC | 72 ms
25,600 KB |
testcase_10 | AC | 80 ms
28,144 KB |
testcase_11 | AC | 56 ms
19,808 KB |
testcase_12 | AC | 57 ms
19,064 KB |
testcase_13 | AC | 63 ms
20,232 KB |
testcase_14 | AC | 84 ms
28,400 KB |
testcase_15 | AC | 79 ms
28,468 KB |
testcase_16 | AC | 73 ms
27,192 KB |
testcase_17 | AC | 55 ms
20,852 KB |
testcase_18 | AC | 56 ms
19,924 KB |
testcase_19 | AC | 70 ms
26,404 KB |
testcase_20 | AC | 68 ms
24,260 KB |
testcase_21 | AC | 72 ms
27,288 KB |
testcase_22 | AC | 79 ms
29,268 KB |
testcase_23 | AC | 88 ms
29,508 KB |
testcase_24 | AC | 75 ms
25,268 KB |
testcase_25 | AC | 78 ms
27,584 KB |
testcase_26 | AC | 84 ms
29,520 KB |
testcase_27 | AC | 82 ms
29,460 KB |
testcase_28 | AC | 84 ms
30,308 KB |
testcase_29 | AC | 94 ms
30,312 KB |
testcase_30 | AC | 80 ms
28,392 KB |
testcase_31 | AC | 88 ms
30,180 KB |
testcase_32 | AC | 76 ms
28,772 KB |
testcase_33 | AC | 72 ms
25,960 KB |
testcase_34 | AC | 86 ms
30,308 KB |
testcase_35 | AC | 79 ms
27,368 KB |
testcase_36 | AC | 92 ms
30,184 KB |
testcase_37 | AC | 94 ms
30,184 KB |
testcase_38 | AC | 79 ms
23,708 KB |
testcase_39 | AC | 66 ms
20,516 KB |
testcase_40 | AC | 73 ms
23,228 KB |
testcase_41 | AC | 65 ms
21,392 KB |
testcase_42 | AC | 74 ms
23,504 KB |
testcase_43 | AC | 2 ms
5,248 KB |
testcase_44 | AC | 5 ms
7,904 KB |
testcase_45 | AC | 52 ms
14,848 KB |
testcase_46 | AC | 57 ms
14,976 KB |
testcase_47 | AC | 48 ms
14,840 KB |
testcase_48 | AC | 63 ms
14,848 KB |
testcase_49 | AC | 49 ms
14,848 KB |
testcase_50 | AC | 47 ms
14,836 KB |
ソースコード
// >>> TEMPLATES #include <bits/stdc++.h> using namespace std; using ll = long long; using ld = long double; using i32 = int32_t; using i64 = int64_t; using u32 = uint32_t; using u64 = uint64_t; #define int ll #define rep(i, n) for (int i = 0; i < (int)(n); i++) #define rep1(i, n) for (int i = 1; i <= (int)(n); i++) #define repR(i, n) for (int i = (int)(n)-1; i >= 0; i--) #define rep1R(i, n) for (int i = (int)(n); i >= 1; i--) #define loop(i, a, B) for (int i = a; i B; i++) #define loopR(i, a, B) for (int i = a; i B; i--) #define all(x) begin(x), end(x) #define allR(x) rbegin(x), rend(x) #define rng(x, l, r) begin(x) + (l), begin(x) + (r) #define pb push_back #define eb emplace_back #define fst first #define snd second template <class A, class B> constexpr auto mp(A &&a, B &&b) { return make_pair(forward<A>(a), forward<B>(b)); } template <class... T> constexpr auto mt(T&&... x) { return make_tuple(forward<T>(x)...); } template <class Int> auto constexpr inf_ = numeric_limits<Int>::max()/2-1; auto constexpr INF32 = inf_<int32_t>; auto constexpr INF64 = inf_<int64_t>; auto constexpr INF = inf_<int>; #ifdef LOCAL #include "debug.hpp" #else #define dump(...) (void)(0) #define say(x) (void)(0) #define debug if (0) #endif template <class T, class Comp> struct pque : priority_queue<T, vector<T>, Comp> { vector<T> &data() { return this->c; } void clear() { this->c.clear(); } }; template <class T> using pque_max = pque<T, less<T>>; template <class T> using pque_min = pque<T, greater<T>>; template <class T, class = typename T::iterator, enable_if_t<!is_same<T, string>::value, int> = 0> ostream& operator<<(ostream& os, T const& a) { bool f = true; for (auto const& x : a) os << (f ? "" : " ") << x, f = false; return os; } template <class T, size_t N, enable_if_t<!is_same<T, char>::value, int> = 0> ostream& operator<<(ostream& os, const T (&a)[N]) { bool f = true; for (auto const& x : a) os << (f ? "" : " ") << x, f = false; return os; } template <class T, class = decltype(begin(declval<T&>())), class = typename enable_if<!is_same<T, string>::value>::type> istream& operator>>(istream& is, T &a) { for (auto& x : a) is >> x; return is; } template <class T, class S> ostream& operator<<(ostream& os, pair<T, S> const& p) { return os << p.first << " " << p.second; } template <class T, class S> istream& operator>>(istream& is, pair<T, S>& p) { return is >> p.first >> p.second; } struct IOSetup { IOSetup() { cin.tie(nullptr); ios::sync_with_stdio(false); cout << fixed << setprecision(15); } } iosetup; template <class F> struct FixPoint : private F { constexpr FixPoint(F&& f) : F(forward<F>(f)) {} template <class... T> constexpr auto operator()(T&&... x) const { return F::operator()(*this, forward<T>(x)...); } }; struct MakeFixPoint { template <class F> constexpr auto operator|(F&& f) const { return FixPoint<F>(forward<F>(f)); } }; #define MFP MakeFixPoint()| #define def(name, ...) auto name = MFP [&](auto &&name, __VA_ARGS__) template <class T, size_t d> struct vec_impl { using type = vector<typename vec_impl<T, d-1>::type>; template <class... U> static type make_v(size_t n, U&&... x) { return type(n, vec_impl<T, d-1>::make_v(forward<U>(x)...)); } }; template <class T> struct vec_impl<T, 0> { using type = T; static type make_v(T const& x = {}) { return x; } }; template <class T, size_t d = 1> using vec = typename vec_impl<T, d>::type; template <class T, size_t d = 1, class... Args> auto make_v(Args&&... args) { return vec_impl<T, d>::make_v(forward<Args>(args)...); } template <class T> void quit(T const& x) { cout << x << endl; exit(0); } template <class T, class U> constexpr bool chmin(T& x, U const& y) { if (x > (T)y) { x = (T)y; return true; } return false; } template <class T, class U> constexpr bool chmax(T& x, U const& y) { if (x < (T)y) { x = (T)y; return true; } return false; } template <class It> constexpr auto sumof(It b, It e) { return accumulate(b, e, typename iterator_traits<It>::value_type{}); } template <class T> int sz(T const& x) { return x.size(); } template <class C, class T> int lbd(C const& v, T const& x) { return lower_bound(begin(v), end(v), x)-begin(v); } template <class C, class T> int ubd(C const& v, T const& x) { return upper_bound(begin(v), end(v), x)-begin(v); } constexpr int64_t mod(int64_t x, int64_t m) { assert(m > 0); return (x %= m) < 0 ? x+m : x; } constexpr int64_t div_floor(int64_t x, int64_t y) { assert(y != 0); return x/y - ((x^y) < 0 and x%y); } constexpr int64_t div_ceil(int64_t x, int64_t y) { assert(y != 0); return x/y + ((x^y) > 0 and x%y); } constexpr int dx[] = { 1, 0, -1, 0, 1, -1, -1, 1 }; constexpr int dy[] = { 0, 1, 0, -1, 1, 1, -1, -1 }; constexpr int popcnt(ll x) { return __builtin_popcountll(x); } mt19937_64 seed_{random_device{}()}; template <class Int> Int rand(Int a, Int b) { return uniform_int_distribution<Int>(a, b)(seed_); } i64 irand(i64 a, i64 b) { return rand<i64>(a, b); } // [a, b] u64 urand(u64 a, u64 b) { return rand<u64>(a, b); } // template <class It> void shuffle(It l, It r) { shuffle(l, r, seed_); } template <class T> vector<T> &operator--(vector<T> &v) { for (T &x : v) --x; return v; } template <class T> vector<T> &operator++(vector<T> &v) { for (T &x : v) ++x; return v; } // <<< // >>> find cycle (undirected graph) #ifndef EDGE_INFO #define EDGE_INFO constexpr int dest(int v) { return v; } template <class E, class = decltype(declval<E>().to)> constexpr int dest(E const& e) { return e.to; } constexpr int cost(int) { return 1; } template <class E, class = decltype(declval<E>().cost)> constexpr auto cost(E const& e) { return e.cost; } template <class E> using cost_t = decltype(cost(declval<E>())); #endif // returns empty if not found template <class E> vector<E> find_cycle(vector<vector<E>> const& g) { const int n = g.size(); vector<bool> used(n); vector<E> path, cycle; auto dfs = [&](auto dfs, int x, int p) -> bool { used[x] = true; int cnt = 0; for (auto const& e : g[x]) { const int y = dest(e); if (y == p and cnt++ == 0) continue; if (used[y]) { cycle.push_back(e); while (path.size() and dest(path.back()) != y) { cycle.push_back(path.back()); path.pop_back(); } reverse(cycle.begin(), cycle.end()); return true; } else { path.push_back(e); if (dfs(dfs, y, x)) return true; path.pop_back(); } } return false; }; rep (i, n) if (not used[i] and dfs(dfs, i, -1)) return cycle; return {}; } // <<< int32_t main() { int h, w, n; cin >> h >> w >> n; vector<int> x(n), y(n); rep (i, n) cin >> x[i] >> y[i], --x[i], --y[i]; struct edge { int to, id; }; vector<vector<edge>> g(h+w); rep (i, n) { int a = x[i], b = y[i] + h; g[a].pb({b, i}); g[b].pb({a, i}); } auto cyc = find_cycle(g); vector<int> ans; for (auto [to, id] : cyc) ans.eb(id); if (sz(ans) < 4) quit(-1); if (y[ans[0]] != y[ans[1]]) rotate(ans.begin(), ans.begin() + 1, ans.end()); cout << ans.size() << '\n'; cout << ++ans << '\n'; }