Submission #921805

# Submission time Handle Problem Language Result Execution time Memory
921805 2024-02-04T10:38:27 Z danikoynov Shortcut (IOI16_shortcut) C++14
0 / 100
1 ms 600 KB
#include "shortcut.h"
#include <bits/stdc++.h>

using namespace std;
typedef long long ll;

const int maxn = 3010;
const ll inf = 1e18;
int n;
ll cpos[maxn], cs[maxn], pref[maxn], bef[maxn], aft[maxn];
ll l[maxn], d[maxn], c;

ll dist[maxn];
struct edge
{
    int to;
    ll w;

    edge(int _to = 0, ll _w = 0)
    {
        to = _to;
        w = _w;
    }

    bool operator < (const edge &e) const
    {
        return w > e.w;
    }
};

int used[maxn];

ll get_dist(int l, int r)
{
    if (l > r)
        swap(l, r);
    return pref[r - 1] - pref[l - 1];
}

const int maxlog = 21;

struct sparse_table
{
    ll dpos[maxlog][maxn];
    int lg[maxn];

    void build(vector < ll > values)
    {
        int len = values.size();
        for (int i = 1; i <= len; i ++)
        {
            lg[i] = lg[i / 2]  + 1;
            dpos[0][i] = values[i - 1];
        }

        for (int j = 1; j < lg[len]; j ++)
        {
            for (int i = 1; i <= len - (1 << j) + 1; i ++)
            {
                dpos[j][i] = dpos[j - 1][i + (1 << (j - 1))];
                if (dpos[j - 1][i] > dpos[j][i])
                    dpos[j][i] = dpos[j - 1][i];
            }
        }
    }

    ll query(int l, int r)
    {
        if (l > r)
            return 0;
        int mlog = lg[r - l + 1] - 1;
        ll ans = dpos[mlog][r - (1 << mlog) + 1];
        if (dpos[mlog][l] > ans)
            ans = dpos[mlog][l];
        return ans;
    }
};


struct point
{
    ll x, y;

    point(ll _x = 0, ll _y = 0)
    {
        x = _x;
        y = _y;
    }
};
struct rectangle
{
    point centre;
    ll diagonal;

    rectangle(point _centre = point(), ll _diagonal = 0)
    {
        centre = _centre;
        diagonal = _diagonal;
    }
};

ll pos[maxn];


struct event
{
    int type;
};

struct container
{
    set < pair < ll, ll > > st;

    void add(pair < ll, ll > cur)
    {

        st.insert(cur);        /**cout << "add" << endl;
        for (pair <ll, ll > ch : st)
        {
            cout << ch.first << " " << ch.second << endl;
        }*/
        set < pair < ll, ll > > :: iterator it;
        it = st.find(cur);
        if (it != st.begin() && prev(it) -> second <= cur.second)
        {
            st.erase(it);
            return;
        }

        while(true)
        {
            it = next(st.find(cur));
            if (it == st.end())
                break;

            if (cur.second <= it -> second)
                st.erase(it);
            else
                break;
        }

                /**cout << "result" << endl;
        for (pair <ll, ll > ch : st)
        {
            cout << ch.first << " " << ch.second << endl;
        }

        cout << "-----------" << endl;*/
    }

    ll query(ll x)
    {
            /**ll res = inf;
        for (pair < ll, ll > cur : st)
        {
            if (cur.first >= x)
            res = min(res, cur.second);
        }
        return res;*/
        set < pair < ll, ll > > :: iterator it = st.lower_bound({x, -inf});
        if (it == st.end())
            return inf;
        return it -> second;
    }

    void clear_container()
    {
        st.clear();
    }
};

container opt[4];

bool check(ll x)
{

    ll ct[4] = {inf, inf, inf, inf};
    /**
    0 - up up
    1 - up down
    2 - down up
    3 - down down
    */

    /**
    step -50
    step 1000000000000000000
    step 1000000000000000000
    step -37
    step 1000000000000000000
    step -34
    step -32
    step -31
    */
    /**
    step 1000000000000000000
step 90
step -6
step 42
step 56
step 63
step 66
step 68
step 69
*/
    for (int i = 0; i < 4; i ++)
        opt[i].clear_container();

    for (int i = n; i > 0; i --)
    {
        /// key - pref[i - 1] + d[i] > x
        /// key >= x + pref[i - 1] - d[i] + 1
        ct[0] = min(ct[0], x - d[i] - c + pos[i] + opt[0].query(x + pref[i - 1] - d[i] + 1));
        ///ct[0] = min(ct[0], x - d[i] - c + pos[i] + opt[0]);
        for (int j = i + 1; j <= n; j ++)
        {
            ll path = pref[j - 1] - pref[i - 1] + d[i] + d[j];
            if (path <= x)
                continue;

            /// |x[i] - x[l]| + |x[j] - x[r]| + d[i] + d[j] + c<= k
            /// |x[l] - x[i]| + |x[r] - x[j]| <= k - d[i] - d[j] - c

            ///ct[0] = min(ct[0], x - d[i] - d[j] - c + pos[i] + pos[j]);
            ct[1] = min(ct[1], x - d[i] - d[j] - c + pos[i] - pos[j]);
            ct[2] = min(ct[2], x - d[i] - d[j] - c - pos[i] + pos[j]);
            ct[3] = min(ct[3], x - d[i] - d[j] - c - pos[i] - pos[j]);
        }
        opt[0].add({pref[i - 1] + d[i], - d[i] + pos[i]});
        ///opt[0] = min(opt[0], - d[i] - pos[i]);
    }

    ///cout << "step " << ct[0] << endl;



    /**for (int i = 1; i <= n; i ++)
        for (int j = 1; j <= n; j ++)
        {
            if (pos[i] + pos[j] <= ct[0] &&
                    pos[i] - pos[j] <= ct[1] &&
                    - pos[i] + pos[j] <= ct[2] &&
                    - pos[i] - pos[j] <= ct[3])
                return true;
        }
    return false;*/

    for (int i = 1; i <= n; i ++)
    {
        ll top = inf, bot = -inf;
        /// pos[i] + pos[j] <= ct[0] ---- pos[j] <= ct[0] - pos[i]
        top = min(top, ct[0] - pos[i]);
        /// pos[i] - pos[j] <= ct[1] --- pos[j] >= pos[i] - ct[1]
        bot = max(bot, pos[i] - ct[1]);
        /// - pos[i] + pos[j] <= ct[2] --- pos[j] <= ct[2] + pos[i]
        top = min(top, ct[2] + pos[i]);
        /// -pos[i] - pos[j] <= ct[3] --- pos[j] >= - ct[3] - pos[i]
        bot = max(bot, - ct[3] - pos[i]);
        int lf = 1, rf = n;
        while(lf <= rf)
        {
            int mf = (lf + rf) / 2;
            if (pos[mf] < bot)
                lf = mf + 1;
            else
                rf = mf - 1;
        }

        if (lf > n)
            continue;

        if (pos[lf] <= top)
            return true;

    }

    return false;




}


ll find_shortcut(int N, vector<int> L, vector<int> D, int C)
{
    n = N;
    c = C;
    for (int i = 0; i < n - 1; i ++)
        l[i + 1] = L[i];
    for (int i = 0; i < n; i ++)
        d[i + 1] = D[i];

    pos[1] = 0;
    for (int i = 2; i <= n; i ++)
    {

        pos[i] = pos[i - 1] + l[i - 1];

    }

    for (int i = 1; i <= n; i ++)
    {
        pref[i] = pref[i - 1] + l[i];
    }

    for (int i = 1; i <= n; i ++)
    {
        cpos[i] = cpos[i - 1] + l[i - 1];
        cpos[i] = max(cpos[i], d[i]);
        bef[i] = bef[i - 1];
        for (int j = 1; j < i; j ++)
        {
            bef[i] = max(bef[i], get_dist(i, j) + d[i] + d[j]);
        }
    }

    for (int i = n; i > 0; i --)
    {
        cs[i] = cs[i + 1] + l[i];
        cs[i] = max(cs[i], d[i]);
        aft[i] = aft[i + 1];
        for (int j = i + 1; j <= n; j ++)
        {
            aft[i] = max(aft[i], get_dist(i, j) + d[i] + d[j]);
        }
    }




    ll lf = 0, rf = inf;
    while(lf <= rf)
    {
        ll mf = (lf + rf) / 2;
        if (check(mf))
            rf = mf - 1;
        else
            lf = mf + 1;
    }


    return lf;
}
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -
# Verdict Execution time Memory Grader output
1 Correct 1 ms 344 KB n = 4, 80 is a correct answer
2 Correct 0 ms 348 KB n = 9, 110 is a correct answer
3 Correct 1 ms 344 KB n = 4, 21 is a correct answer
4 Correct 0 ms 348 KB n = 3, 4 is a correct answer
5 Correct 0 ms 348 KB n = 2, 62 is a correct answer
6 Correct 1 ms 348 KB n = 2, 3 is a correct answer
7 Correct 0 ms 344 KB n = 3, 29 is a correct answer
8 Correct 0 ms 348 KB n = 2, 3 is a correct answer
9 Correct 0 ms 444 KB n = 2, 3 is a correct answer
10 Correct 0 ms 344 KB n = 2, 2000000001 is a correct answer
11 Correct 0 ms 348 KB n = 2, 3000000000 is a correct answer
12 Correct 0 ms 344 KB n = 3, 3000000000 is a correct answer
13 Correct 0 ms 348 KB n = 3, 3000000000 is a correct answer
14 Correct 0 ms 348 KB n = 4, 3000000001 is a correct answer
15 Correct 0 ms 600 KB n = 4, 4000000000 is a correct answer
16 Incorrect 0 ms 348 KB n = 5, incorrect answer: jury 4000000000 vs contestant 3000000001
17 Halted 0 ms 0 KB -