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QOJ

IDProblemSubmitterResultTimeMemoryLanguageFile sizeSubmit timeJudge time
#798716#9792. Ogre SortMisuki#WA 0ms3872kbC++206.1kb2024-12-04 16:26:032024-12-04 16:26:11

Judging History

This is the latest submission verdict.

  • [2024-12-04 16:26:11]
  • Judged
  • Verdict: WA
  • Time: 0ms
  • Memory: 3872kb
  • [2024-12-04 16:26:03]
  • Submitted

answer

#include <algorithm>
#include <array>
#include <bitset>
#include <cassert>
#include <cctype>
#include <cfenv>
#include <cfloat>
#include <chrono>
#include <cinttypes>
#include <climits>
#include <cmath>
#include <complex>
#include <cstdarg>
#include <cstddef>
#include <cstdint>
#include <cstdio>
#include <cstdlib>
#include <cstring>
#include <deque>
#include <fstream>
#include <functional>
#include <initializer_list>
#include <iomanip>
#include <ios>
#include <iostream>
#include <istream>
#include <iterator>
#include <limits>
#include <list>
#include <map>
#include <memory>
#include <new>
#include <numeric>
#include <ostream>
#include <queue>
#include <random>
#include <set>
#include <sstream>
#include <stack>
#include <streambuf>
#include <string>
#include <tuple>
#include <type_traits>
#include <variant>
#include <bit>
#include <compare>
#include <concepts>
#include <numbers>
#include <ranges>
#include <span>

#define int ll
#define INT128_MAX (__int128)(((unsigned __int128) 1 << ((sizeof(__int128) * __CHAR_BIT__) - 1)) - 1)
#define INT128_MIN (-INT128_MAX - 1)

#define clock chrono::steady_clock::now().time_since_epoch().count()

using namespace std;

template<class T1, class T2>
ostream& operator<<(ostream& os, const pair<T1, T2> pr) {
  return os << pr.first << ' ' << pr.second;
}
template<class T, size_t N>
ostream& operator<<(ostream& os, const array<T, N> &arr) {
  for(size_t i = 0; T x : arr) {
    os << x;
    if (++i != N) os << ' ';
  }
  return os;
}
template<class T>
ostream& operator<<(ostream& os, const vector<T> &vec) {
  for(size_t i = 0; T x : vec) {
    os << x;
    if (++i != size(vec)) os << ' ';
  }
  return os;
}
template<class T>
ostream& operator<<(ostream& os, const set<T> &s) {
  for(size_t i = 0; T x : s) {
    os << x;
    if (++i != size(s)) os << ' ';
  }
  return os;
}
template<class T1, class T2>
ostream& operator<<(ostream& os, const map<T1, T2> &m) {
  for(size_t i = 0; pair<T1, T2> x : m) {
    os << x;
    if (++i != size(m)) os << ' ';
  }
  return os;
}

#ifdef DEBUG
#define dbg(...) cerr << '(', _do(#__VA_ARGS__), cerr << ") = ", _do2(__VA_ARGS__)
template<typename T> void _do(T &&x) { cerr << x; }
template<typename T, typename ...S> void _do(T &&x, S&&...y) { cerr << x << ", "; _do(y...); }
template<typename T> void _do2(T &&x) { cerr << x << endl; }
template<typename T, typename ...S> void _do2(T &&x, S&&...y) { cerr << x << ", "; _do2(y...); }
#else
#define dbg(...)
#endif

using ll = long long;
using ull = unsigned long long;
using ldb = long double;
using pii = pair<int, int>;
using pll = pair<ll, ll>;
//#define double ldb

template<typename T> using min_heap = priority_queue<T, vector<T>, greater<T>>;
template<typename T> using max_heap = priority_queue<T>;

template<ranges::forward_range rng, class T = ranges::range_value_t<rng>, class OP = plus<T>>
void pSum(rng &&v) {
  if (!v.empty())
    for(T p = v[0]; T &x : v | views::drop(1))
      x = p = OP()(p, x);
}
template<ranges::forward_range rng, class T = ranges::range_value_t<rng>, class OP>
void pSum(rng &&v, OP op) {
  if (!v.empty())
    for(T p = v[0]; T &x : v | views::drop(1))
      x = p = op(p, x);
}

template<ranges::forward_range rng>
void Unique(rng &v) {
  ranges::sort(v);
  v.resize(unique(v.begin(), v.end()) - v.begin());
}

template<ranges::random_access_range rng>
rng invPerm(rng p) {
  rng ret = p;
  for(int i = 0; i < ssize(p); i++)
    ret[p[i]] = i;
  return ret;
}

template<ranges::random_access_range rng, ranges::random_access_range rng2>
rng Permute(rng v, rng2 p) {
  rng ret = v;
  for(int i = 0; i < ssize(p); i++)
    ret[p[i]] = v[i];
  return ret;
}

template<bool directed>
vector<vector<int>> readGraph(int n, int m, int base) {
  vector<vector<int>> g(n);
  for(int i = 0; i < m; i++) {
    int u, v; cin >> u >> v;
    u -= base, v -= base;
    g[u].emplace_back(v);
    if constexpr (!directed)
      g[v].emplace_back(u);
  }
  return g;
}

template<class T>
void setBit(T &msk, int bit, bool x) {
  msk = (msk & ~(T(1) << bit)) | (T(x) << bit);
}
template<class T> void flipBit(T &msk, int bit) { msk ^= T(1) << bit; }
template<class T> bool getBit(T msk, int bit) { return msk >> bit & T(1); }

template<class T>
T floorDiv(T a, T b) {
  if (b < 0) a *= -1, b *= -1;
  return a >= 0 ? a / b : (a - b + 1) / b;
}
template<class T>
T ceilDiv(T a, T b) {
  if (b < 0) a *= -1, b *= -1;
  return a >= 0 ? (a + b - 1) / b : a / b;
}

template<class T> bool chmin(T &a, T b) { return a > b ? a = b, 1 : 0; }
template<class T> bool chmax(T &a, T b) { return a < b ? a = b, 1 : 0; }

template<class T>
struct fenwickTree {
  const int size;
  vector<T> data;

  fenwickTree(int _size) : size(_size + 1), data(_size + 1) {}
  fenwickTree(vector<T> init) : size(ssize(init) + 1), data(ssize(init) + 1) {
    partial_sum(init.begin(), init.end(), data.begin() + 1);
    for(int i = size - 1; i > 0; i--)
      data[i] -= data[i - (i & (-i))];
  }

  void add(int i, T d) {
    for(i += 1; i < size; i += i & (-i))
      data[i] += d;
  }

  T query(int i) {
    T res = T(0);
    for(i += 1; i > 0; i -= i & (-i))
      res += data[i];
    return res;
  }

  T query(int l, int r) { //query [l, r)
    return query(r - 1) - query(l - 1);
  }
};

signed main() {
  ios::sync_with_stdio(false), cin.tie(NULL);

  int n; cin >> n;
  vector<int> a(n);
  for(int &x : a) { cin >> x; x--; }

  vector<int> b, c; //b: not fix, c: fix
  for(int i = 0, mx = -1; i < n; i++) {
    if (mx > a[i]) b.emplace_back(a[i]);
    else c.emplace_back(a[i]), mx = a[i];
  }

  ranges::sort(b), ranges::sort(c);
  vector<int> d = invPerm(a);
  fenwickTree<int> ft(vector<int>(n, 1));

  dbg(b, c);

  vector<pii> ans;
  int cost = 0;
  for(int x : b | views::reverse) {
    int y = ft.query(d[x]), z = (c.empty() or c[0] >= x) ? 1 : ft.query(d[*prev(ranges::lower_bound(c, x))]) + 1;
    ans.emplace_back(y, z);
    cost += z;
    ft.add(y, -1), ft.add(z, 1);
  }

  cout << cost << ' ' << ssize(ans) << '\n';
  for(auto [x, y] : ans) cout << x << ' ' << y << '\n';

  return 0;
}

Details

Tip: Click on the bar to expand more detailed information

Test #1:

score: 100
Accepted
time: 0ms
memory: 3872kb

input:

4
1 2 4 3

output:

3 1
4 3

result:

ok Participant's output is correct

Test #2:

score: 0
Accepted
time: 0ms
memory: 3636kb

input:

5
2 4 1 3 5

output:

3 2
4 2
4 1

result:

ok Participant's output is correct

Test #3:

score: 0
Accepted
time: 0ms
memory: 3644kb

input:

3
1 2 3

output:

0 0

result:

ok Participant's output is correct

Test #4:

score: 0
Accepted
time: 0ms
memory: 3576kb

input:

4
1 2 4 3

output:

3 1
4 3

result:

ok Participant's output is correct

Test #5:

score: 0
Accepted
time: 0ms
memory: 3592kb

input:

5
2 4 1 3 5

output:

3 2
4 2
4 1

result:

ok Participant's output is correct

Test #6:

score: 0
Accepted
time: 0ms
memory: 3840kb

input:

3
1 2 3

output:

0 0

result:

ok Participant's output is correct

Test #7:

score: 0
Accepted
time: 0ms
memory: 3612kb

input:

1
1

output:

0 0

result:

ok Participant's output is correct

Test #8:

score: 0
Accepted
time: 0ms
memory: 3800kb

input:

5
5 3 4 1 2

output:

4 4
3 1
3 1
5 1
5 1

result:

ok Participant's output is correct

Test #9:

score: 0
Accepted
time: 0ms
memory: 3584kb

input:

5
4 1 2 3 5

output:

3 3
4 1
4 1
4 1

result:

ok Participant's output is correct

Test #10:

score: 0
Accepted
time: 0ms
memory: 3576kb

input:

5
1 3 4 2 5

output:

2 1
4 2

result:

ok Participant's output is correct

Test #11:

score: -100
Wrong Answer
time: 0ms
memory: 3612kb

input:

5
1 4 5 2 3

output:

4 2
5 2
5 2

result:

wrong answer Integer parameter [name=participant answer] equals to 4, violates the range [0, 3]