Submission #66163386


Source Code Expand

#include <bits/stdc++.h>
namespace suisen {
    template <class T> bool chmin(T& x, const T& y) { return y >= x ? false : (x = y, true); }
    template <class T> bool chmax(T& x, const T& y) { return y <= x ? false : (x = y, true); }
    template <class T> constexpr int pow_m1(T n) { return -(n & 1) | 1; }
    template <class T> constexpr T fld(const T x, const T y) { T q = x / y, r = x % y; return q - ((x ^ y) < 0 and (r != 0)); }
    template <class T> constexpr T cld(const T x, const T y) { T q = x / y, r = x % y; return q + ((x ^ y) > 0 and (r != 0)); }
}
namespace suisen::macro {
#define IMPL_REPITER(cond) auto& begin() { return *this; } auto end() { return nullptr; } auto& operator*() { return _val; } auto& operator++() { return _val += _step, *this; } bool operator!=(std::nullptr_t) { return cond; }
    template <class Int, class IntL = Int, class IntStep = Int, std::enable_if_t<(std::is_signed_v<Int> == std::is_signed_v<IntL>), std::nullptr_t> = nullptr> struct rep_impl {
        Int _val; const Int _end, _step;
        rep_impl(Int n) : rep_impl(0, n) {}
        rep_impl(IntL l, Int r, IntStep step = 1) : _val(l), _end(r), _step(step) {}
        IMPL_REPITER((_val < _end))
    };
    template <class Int, class IntL = Int, class IntStep = Int, std::enable_if_t<(std::is_signed_v<Int> == std::is_signed_v<IntL>), std::nullptr_t> = nullptr> struct rrep_impl {
        Int _val; const Int _end, _step;
        rrep_impl(Int n) : rrep_impl(0, n) {}
        rrep_impl(IntL l, Int r) : _val(r - 1), _end(l), _step(-1) {}
        rrep_impl(IntL l, Int r, IntStep step) : _val(l + fld<Int>(r - l - 1, step) * step), _end(l), _step(-step) {}
        IMPL_REPITER((_val >= _end))
    };
    template <class Int, class IntStep = Int> struct repinf_impl {
        Int _val; const Int _step;
        repinf_impl(Int l, IntStep step = 1) : _val(l), _step(step) {}
        IMPL_REPITER((true))
    };
#undef IMPL_REPITER
}

#include <iostream>

#include <limits>
#include <type_traits>

namespace suisen {
    template <typename ...Constraints> using constraints_t = std::enable_if_t<std::conjunction_v<Constraints...>, std::nullptr_t>;

    template <typename T, typename = std::nullptr_t> struct bitnum { static constexpr int value = 0; };
    template <typename T> struct bitnum<T, constraints_t<std::is_integral<T>>> { static constexpr int value = std::numeric_limits<std::make_unsigned_t<T>>::digits; };
    template <typename T> static constexpr int bitnum_v = bitnum<T>::value;
    template <typename T, size_t n> struct is_nbit { static constexpr bool value = bitnum_v<T> == n; };
    template <typename T, size_t n> static constexpr bool is_nbit_v = is_nbit<T, n>::value;

    template <typename T, typename = std::nullptr_t> struct safely_multipliable { using type = T; };
    template <typename T> struct safely_multipliable<T, constraints_t<std::is_signed<T>, is_nbit<T, 32>>> { using type = long long; };
    template <typename T> struct safely_multipliable<T, constraints_t<std::is_signed<T>, is_nbit<T, 64>>> { using type = __int128_t; };
    template <typename T> struct safely_multipliable<T, constraints_t<std::is_unsigned<T>, is_nbit<T, 32>>> { using type = unsigned long long; };
    template <typename T> struct safely_multipliable<T, constraints_t<std::is_unsigned<T>, is_nbit<T, 64>>> { using type = __uint128_t; };
    template <typename T> using safely_multipliable_t = typename safely_multipliable<T>::type;

    template <typename T, typename = void> struct rec_value_type { using type = T; };
    template <typename T> struct rec_value_type<T, std::void_t<typename T::value_type>> {
        using type = typename rec_value_type<typename T::value_type>::type;
    };
    template <typename T> using rec_value_type_t = typename rec_value_type<T>::type;

    template <typename T> class is_iterable {
        template <typename T_> static auto test(T_ e) -> decltype(e.begin(), e.end(), std::true_type{});
        static std::false_type test(...);
    public:
        static constexpr bool value = decltype(test(std::declval<T>()))::value;
    };
    template <typename T> static constexpr bool is_iterable_v = is_iterable<T>::value;
    template <typename T> class is_writable {
        template <typename T_> static auto test(T_ e) -> decltype(std::declval<std::ostream&>() << e, std::true_type{});
        static std::false_type test(...);
    public:
        static constexpr bool value = decltype(test(std::declval<T>()))::value;
    };
    template <typename T> static constexpr bool is_writable_v = is_writable<T>::value;
    template <typename T> class is_readable {
        template <typename T_> static auto test(T_ e) -> decltype(std::declval<std::istream&>() >> e, std::true_type{});
        static std::false_type test(...);
    public:
        static constexpr bool value = decltype(test(std::declval<T>()))::value;
    };
    template <typename T> static constexpr bool is_readable_v = is_readable<T>::value;
} // namespace suisen
namespace suisen::io {
    template <typename IStream, std::enable_if_t<std::conjunction_v<std::is_base_of<std::istream, std::remove_reference_t<IStream>>, std::negation<std::is_const<std::remove_reference_t<IStream>>>>, std::nullptr_t> = nullptr>
    struct InputStream {
    private:
        using istream_type = std::remove_reference_t<IStream>;
        IStream is;
        struct { InputStream* is; template <typename T> operator T() { T e; *is >> e; return e; } } _reader{ this };
    public:
        template <typename IStream_> InputStream(IStream_ &&is) : is(std::move(is)) {}
        template <typename IStream_> InputStream(IStream_ &is) : is(is) {}
        template <typename T> InputStream& operator>>(T& e) {
            if constexpr (suisen::is_readable_v<T>) is >> e; else _read(e);
            return *this;
        }
        auto read() { return _reader; }
        template <typename Head, typename... Tail>
        void read(Head& head, Tail &...tails) { ((*this >> head) >> ... >> tails); }
        istream_type& get_stream() { return is; }
    private:
        static __uint128_t _stou128(const std::string& s) {
            __uint128_t ret = 0;
            for (char c : s) if ('0' <= c and c <= '9') ret = 10 * ret + c - '0';
            return ret;
        }
        static __int128_t _stoi128(const std::string& s) { return (s[0] == '-' ? -1 : +1) * _stou128(s); }

        void _read(__uint128_t& v) { v = _stou128(std::string(_reader)); }
        void _read(__int128_t& v) { v = _stoi128(std::string(_reader)); }
        template <typename T, typename U>
        void _read(std::pair<T, U>& a) { *this >> a.first >> a.second; }
        template <size_t N = 0, typename ...Args>
        void _read(std::tuple<Args...>& a) { if constexpr (N < sizeof...(Args)) *this >> std::get<N>(a), _read<N + 1>(a); }
        template <typename Iterable, std::enable_if_t<suisen::is_iterable_v<Iterable>, std::nullptr_t> = nullptr>
        void _read(Iterable& a) { for (auto& e : a) *this >> e; }
    };
    template <typename IStream>
    InputStream(IStream &&) -> InputStream<IStream>;
    template <typename IStream>
    InputStream(IStream &) -> InputStream<IStream&>;

    InputStream cin{ std::cin };

    auto read() { return cin.read(); }
    template <typename Head, typename... Tail>
    void read(Head& head, Tail &...tails) { cin.read(head, tails...); }
} // namespace suisen::io
namespace suisen { using io::read; } // namespace suisen

namespace suisen::io {
    template <typename OStream, std::enable_if_t<std::conjunction_v<std::is_base_of<std::ostream, std::remove_reference_t<OStream>>, std::negation<std::is_const<std::remove_reference_t<OStream>>>>, std::nullptr_t> = nullptr>
    struct OutputStream {
    private:
        using ostream_type = std::remove_reference_t<OStream>;
        OStream os;
    public:
        template <typename OStream_> OutputStream(OStream_ &&os) : os(std::move(os)) {}
        template <typename OStream_> OutputStream(OStream_ &os) : os(os) {}
        template <typename T> OutputStream& operator<<(const T& e) {
            if constexpr (suisen::is_writable_v<T>) os << e; else _print(e);
            return *this;
        }
        void print() { *this << '\n'; }
        template <typename Head, typename... Tail>
        void print(const Head& head, const Tail &...tails) { *this << head, ((*this << ' ' << tails), ...), *this << '\n'; }
        template <typename Iterable, std::enable_if_t<suisen::is_iterable_v<Iterable>, std::nullptr_t> = nullptr>
        void print_all(const Iterable& v, std::string sep = " ", std::string end = "\n") {
            for (auto it = v.begin(); it != v.end();) if (*this << *it; ++it != v.end()) *this << sep;
            *this << end;
        }
        ostream_type& get_stream() { return os; }
    private:
        void _print(__uint128_t value) {
            char buffer[41], *d = std::end(buffer);
            do *--d = '0' + (value % 10), value /= 10; while (value);
            os.rdbuf()->sputn(d, std::end(buffer) - d);
        }
        void _print(__int128_t value) {
            if (value < 0) *this << '-';
            _print(__uint128_t(value < 0 ? -value : value));
        }
        template <typename T, typename U>
        void _print(const std::pair<T, U>& a) { *this << a.first << ' ' << a.second; }
        template <size_t N = 0, typename ...Args>
        void _print(const std::tuple<Args...>& a) {
            if constexpr (N < std::tuple_size_v<std::tuple<Args...>>) {
                if constexpr (N) *this << ' ';
                *this << std::get<N>(a), _print<N + 1>(a);
            }
        }
        template <typename Iterable, std::enable_if_t<suisen::is_iterable_v<Iterable>, std::nullptr_t> = nullptr>
        void _print(const Iterable& a) { print_all(a, " ", ""); }
    };
    template <typename OStream_>
    OutputStream(OStream_ &&) -> OutputStream<OStream_>;
    template <typename OStream_>
    OutputStream(OStream_ &) -> OutputStream<OStream_&>;

    OutputStream cout{ std::cout }, cerr{ std::cerr };

    template <typename... Args>
    void print(const Args &... args) { cout.print(args...); }
    template <typename Iterable, std::enable_if_t<suisen::is_iterable_v<Iterable>, std::nullptr_t> = nullptr>
    void print_all(const Iterable& v, const std::string& sep = " ", const std::string& end = "\n") { cout.print_all(v, sep, end); }
} // namespace suisen::io
namespace suisen { using io::print, io::print_all; } // namespace suisen

namespace suisen {
    template <class T, class ToKey, class CompKey = std::less<>, std::enable_if_t<std::conjunction_v<std::is_invocable<ToKey, T>, std::is_invocable_r<bool, CompKey, std::invoke_result_t<ToKey, T>, std::invoke_result_t<ToKey, T>>>, std::nullptr_t> = nullptr>
    auto comparator(const ToKey& to_key, const CompKey& comp_key = std::less<>()) {
        return [=](const T& x, const T& y) { return comp_key(to_key(x), to_key(y)); };
    }
    template <class Compare, std::enable_if_t<std::is_invocable_r_v<bool, Compare, int, int>, std::nullptr_t> = nullptr>
    std::vector<int> sorted_indices(int n, const Compare& compare) {
        std::vector<int> p(n);
        return std::iota(p.begin(), p.end(), 0), std::sort(p.begin(), p.end(), compare), p;
    }
    template <class ToKey, std::enable_if_t<std::is_invocable_v<ToKey, int>, std::nullptr_t> = nullptr>
    std::vector<int> sorted_indices(int n, const ToKey& to_key) { return sorted_indices(n, comparator<int>(to_key)); }
    template <class T, class Comparator>
    auto priority_queue_with_comparator(const Comparator& comparator) { return std::priority_queue<T, std::vector<T>, Comparator>{ comparator }; }
    template <class Iterable, std::enable_if_t<suisen::is_iterable_v<Iterable>, std::nullptr_t> = nullptr>
    void sort_unique_erase(Iterable& a) { std::sort(a.begin(), a.end()), a.erase(std::unique(a.begin(), a.end()), a.end()); }

    template <size_t D> struct Dim : std::array<int, D> {
        template <typename ...Ints> Dim(const Ints& ...ns) : std::array<int, D>::array{ static_cast<int>(ns)... } {}
    };
    template <typename ...Ints> Dim(const Ints& ...) -> Dim<sizeof...(Ints)>;
    template <class T, size_t D, size_t I = 0>
    auto ndvec(const Dim<D> &ns, const T& value = {}) {
        if constexpr (I + 1 < D) {
            return std::vector(ns[I], ndvec<T, D, I + 1>(ns, value));
        } else {
            return std::vector<T>(ns[I], value);
        }
    }
}
namespace suisen {
    using int128 = __int128_t;
    using uint128 = __uint128_t;
    template <class T> using min_priority_queue = std::priority_queue<T, std::vector<T>, std::greater<T>>;
    template <class T> using max_priority_queue = std::priority_queue<T, std::vector<T>, std::less<T>>;
}
namespace suisen { const std::string Yes = "Yes", No = "No", YES = "YES", NO = "NO"; }

#ifdef LOCAL
#  define debug(...) debug_impl(#__VA_ARGS__, __VA_ARGS__)
template <class H, class... Ts> void debug_impl(const char* s, const H& h, const Ts&... t) {
    suisen::io::cerr << "[\033[32mDEBUG\033[m] " << s << ": " << h, ((suisen::io::cerr << ", " << t), ..., (suisen::io::cerr << "\n"));
}
#else
#  define debug(...) void(0)
#endif
#define FOR(e, v) for (auto &&e : v)
#define CFOR(e, v) for (const auto &e : v)
#define REP(i, ...) CFOR(i, suisen::macro::rep_impl(__VA_ARGS__))
#define RREP(i, ...) CFOR(i, suisen::macro::rrep_impl(__VA_ARGS__))
#define REPINF(i, ...) CFOR(i, suisen::macro::repinf_impl(__VA_ARGS__))
#define LOOP(n) for ([[maybe_unused]] const auto& _ : suisen::macro::rep_impl(n))
#define ALL(iterable) std::begin(iterable), std::end(iterable)

using namespace suisen;
using namespace std;
struct io_setup {
    io_setup(int precision = 20) {
        std::ios::sync_with_stdio(false), std::cin.tie(nullptr);
        std::cout << std::fixed << std::setprecision(precision);
    }
} io_setup_{};

constexpr int iinf = std::numeric_limits<int>::max() / 2;
constexpr long long linf = std::numeric_limits<long long>::max() / 2;

void solve() {
    int n;
    read(n);
    vector<int> a(n), b(n);
    read(a, b);

    if (accumulate(ALL(a), 0) != accumulate(ALL(b), 0)) {
        print(No);
        return;
    }

    vector<pair<int, int>> fp1{
        {0, 1},
        {1, 2},
        {0, 2},
        {1, 2}
    };
    auto fm1 = fp1;
    reverse(ALL(fm1));

    vector<pair<int, int>> sp1{
        {0, 1},
        {0, 2},
        {0, 1},
        {1, 2}
    };
    auto sm1 = sp1;
    reverse(ALL(sm1));

    vector<pair<int, int>> ops;
    auto op = [&](int i, int j) {
        ops.emplace_back(i + 1, j + 1);
        swap(a[i], a[j]);
        --a[i];
        ++a[j];
    };
    auto f = [&](const vector<pair<int, int>>& d, int i, int j, int k) {
        array<int, 3> g{i, j, k};
        for (auto [s, t] : d) {
            op(g[s], g[t]);
        }
    };

    if (n == 2) {
        if (a == b) {
            print(Yes);
            print(0);
        } else {
            op(0, 1);
            if (a == b) {
                print(Yes);
                print(1);
                print(1, 2);
            } else {
                print(No);
            }
        }
        return;
    }

    if (n >= 3) {
        for (int i = 0; i + 3 <= n; ++i) {
            while (a[i] < b[i]) {
                int j = i + 1;
                while (j + 1 < n - 1 and a[j] < b[j]) ++j;
                f(fp1, i, j, n - 1);
            }
            while (a[i] > b[i]) {
                int j = i + 1;
                while (j + 1 < n - 1 and a[j] > b[j]) ++j;
                f(fm1, i, j, n - 1);
            }
        }
        debug(a);
        debug(b);
        while (a[n - 1] < b[n - 1]) f(sp1, n - 3, n - 2, n - 1);
        while (a[n - 1] > b[n - 1]) f(sm1, n - 3, n - 2, n - 1);
    }

    debug(a);
    debug(b);

    print(Yes);
    print(ops.size());
    for (auto [i, j] : ops) {
        print(i, j);
    }

    return;

    REP(n, 2, 5) {
        vector<pair<int, int>> ps(n);
        REP(i, n) {
            ps[i] = { i, 0 };
        }
        set<vector<pair<int, int>>> st;
        st.insert(ps);

        deque<vector<pair<int, int>>> dq;
        dq.push_back(ps);
        while (dq.size()) {
            auto a = dq.front();
            dq.pop_front();

            debug(a);

            REP(i, n) {
                REP(j, i + 1, n) {
                    swap(a[i], a[j]);
                    a[i].second -= 1;
                    a[j].second += 1;

                    if (st.find(a) == st.end()) {
                        st.insert(a);
                        dq.push_back(a);
                    }

                    a[j].second -= 1;
                    a[i].second += 1;
                    swap(a[i], a[j]);
                }
            }
        }

        cout << "n = " << n << endl;
        for (auto a : st) {
            REP(i, n) {
                auto [j, d] = a[i];
                cout << "A" << j;
                if (d) {
                    cout << (d > 0 ? "+" : "") << d;
                }
                if (i != n - 1) cout << ", ";
            }
            cout << "\n";
        }
        cout << endl;
    }
}

int main() {
    int test_case_num = 1;
    // read(test_case_num);
    LOOP(test_case_num) solve();
    return 0;
}

Submission Info

Submission Time
Task C - Error Swap
User suisen
Language C++ 20 (gcc 12.2)
Score 700
Code Size 17220 Byte
Status AC
Exec Time 3 ms
Memory 3676 KiB

Judge Result

Set Name Sample All
Score / Max Score 0 / 0 700 / 700
Status
AC × 3
AC × 96
Set Name Test Cases
Sample example_00.txt, example_01.txt, example_02.txt
All example_00.txt, example_01.txt, example_02.txt, test_00.txt, test_01.txt, test_02.txt, test_03.txt, test_04.txt, test_05.txt, test_06.txt, test_07.txt, test_08.txt, test_09.txt, test_10.txt, test_11.txt, test_12.txt, test_13.txt, test_14.txt, test_15.txt, test_16.txt, test_17.txt, test_18.txt, test_19.txt, test_20.txt, test_21.txt, test_22.txt, test_23.txt, test_24.txt, test_25.txt, test_26.txt, test_27.txt, test_28.txt, test_29.txt, test_30.txt, test_31.txt, test_32.txt, test_33.txt, test_34.txt, test_35.txt, test_36.txt, test_37.txt, test_38.txt, test_39.txt, test_40.txt, test_41.txt, test_42.txt, test_43.txt, test_44.txt, test_45.txt, test_46.txt, test_47.txt, test_48.txt, test_49.txt, test_50.txt, test_51.txt, test_52.txt, test_53.txt, test_54.txt, test_55.txt, test_56.txt, test_57.txt, test_58.txt, test_59.txt, test_60.txt, test_61.txt, test_62.txt, test_63.txt, test_64.txt, test_65.txt, test_66.txt, test_67.txt, test_68.txt, test_69.txt, test_70.txt, test_71.txt, test_72.txt, test_73.txt, test_74.txt, test_75.txt, test_76.txt, test_77.txt, test_78.txt, test_79.txt, test_80.txt, test_81.txt, test_82.txt, test_83.txt, test_84.txt, test_85.txt, test_86.txt, test_87.txt, test_88.txt, test_89.txt, test_90.txt, test_91.txt, test_92.txt
Case Name Status Exec Time Memory
example_00.txt AC 1 ms 3444 KiB
example_01.txt AC 1 ms 3432 KiB
example_02.txt AC 1 ms 3480 KiB
test_00.txt AC 1 ms 3476 KiB
test_01.txt AC 1 ms 3460 KiB
test_02.txt AC 1 ms 3396 KiB
test_03.txt AC 1 ms 3388 KiB
test_04.txt AC 1 ms 3468 KiB
test_05.txt AC 1 ms 3436 KiB
test_06.txt AC 1 ms 3420 KiB
test_07.txt AC 1 ms 3492 KiB
test_08.txt AC 1 ms 3676 KiB
test_09.txt AC 1 ms 3476 KiB
test_10.txt AC 1 ms 3388 KiB
test_11.txt AC 1 ms 3444 KiB
test_12.txt AC 1 ms 3468 KiB
test_13.txt AC 1 ms 3640 KiB
test_14.txt AC 1 ms 3452 KiB
test_15.txt AC 1 ms 3504 KiB
test_16.txt AC 1 ms 3512 KiB
test_17.txt AC 1 ms 3524 KiB
test_18.txt AC 1 ms 3476 KiB
test_19.txt AC 1 ms 3452 KiB
test_20.txt AC 1 ms 3580 KiB
test_21.txt AC 1 ms 3440 KiB
test_22.txt AC 1 ms 3520 KiB
test_23.txt AC 1 ms 3360 KiB
test_24.txt AC 1 ms 3504 KiB
test_25.txt AC 1 ms 3488 KiB
test_26.txt AC 1 ms 3452 KiB
test_27.txt AC 1 ms 3548 KiB
test_28.txt AC 1 ms 3432 KiB
test_29.txt AC 1 ms 3488 KiB
test_30.txt AC 1 ms 3532 KiB
test_31.txt AC 1 ms 3444 KiB
test_32.txt AC 1 ms 3480 KiB
test_33.txt AC 1 ms 3444 KiB
test_34.txt AC 1 ms 3440 KiB
test_35.txt AC 1 ms 3540 KiB
test_36.txt AC 1 ms 3428 KiB
test_37.txt AC 1 ms 3416 KiB
test_38.txt AC 1 ms 3528 KiB
test_39.txt AC 1 ms 3432 KiB
test_40.txt AC 1 ms 3500 KiB
test_41.txt AC 1 ms 3412 KiB
test_42.txt AC 1 ms 3544 KiB
test_43.txt AC 1 ms 3540 KiB
test_44.txt AC 1 ms 3416 KiB
test_45.txt AC 1 ms 3540 KiB
test_46.txt AC 1 ms 3436 KiB
test_47.txt AC 1 ms 3448 KiB
test_48.txt AC 1 ms 3496 KiB
test_49.txt AC 1 ms 3428 KiB
test_50.txt AC 1 ms 3464 KiB
test_51.txt AC 1 ms 3528 KiB
test_52.txt AC 1 ms 3472 KiB
test_53.txt AC 1 ms 3324 KiB
test_54.txt AC 1 ms 3396 KiB
test_55.txt AC 1 ms 3400 KiB
test_56.txt AC 1 ms 3540 KiB
test_57.txt AC 1 ms 3480 KiB
test_58.txt AC 1 ms 3452 KiB
test_59.txt AC 1 ms 3384 KiB
test_60.txt AC 1 ms 3480 KiB
test_61.txt AC 2 ms 3596 KiB
test_62.txt AC 1 ms 3528 KiB
test_63.txt AC 2 ms 3608 KiB
test_64.txt AC 1 ms 3584 KiB
test_65.txt AC 1 ms 3608 KiB
test_66.txt AC 1 ms 3600 KiB
test_67.txt AC 1 ms 3568 KiB
test_68.txt AC 2 ms 3616 KiB
test_69.txt AC 1 ms 3524 KiB
test_70.txt AC 2 ms 3516 KiB
test_71.txt AC 2 ms 3528 KiB
test_72.txt AC 1 ms 3620 KiB
test_73.txt AC 1 ms 3544 KiB
test_74.txt AC 2 ms 3600 KiB
test_75.txt AC 1 ms 3552 KiB
test_76.txt AC 2 ms 3604 KiB
test_77.txt AC 2 ms 3608 KiB
test_78.txt AC 2 ms 3548 KiB
test_79.txt AC 2 ms 3612 KiB
test_80.txt AC 1 ms 3516 KiB
test_81.txt AC 3 ms 3588 KiB
test_82.txt AC 3 ms 3620 KiB
test_83.txt AC 3 ms 3592 KiB
test_84.txt AC 3 ms 3616 KiB
test_85.txt AC 3 ms 3668 KiB
test_86.txt AC 3 ms 3564 KiB
test_87.txt AC 3 ms 3556 KiB
test_88.txt AC 3 ms 3668 KiB
test_89.txt AC 3 ms 3556 KiB
test_90.txt AC 3 ms 3668 KiB
test_91.txt AC 3 ms 3616 KiB
test_92.txt AC 3 ms 3608 KiB