Submission #829093

# Submission time Handle Problem Language Result Execution time Memory
829093 2023-08-18T03:58:59 Z roseanne_pcy Koala Game (APIO17_koala) C++14
47 / 100
58 ms 460 KB
#include "koala.h"
 
#include <bits/stdc++.h>
 
using namespace std;
 
typedef pair<int, int> ii;
typedef vector<int> vi;
typedef long long ll;
 
#define f first
#define s second
#define pb push_back
#define lb lower_bound
#define ub upper_bound
#define sz(x) (int)x.size()
#define all(x) begin(x), end(x)
 
const int MAXN = 105;
 
int play[MAXN];
int res[MAXN];
int tmp[MAXN];

int calls = 0;
 
void reset(int n) {
    for (int i = 0; i< n; i++) {
        play[i] = res[i] = 0;
    }
}
 
int minValue(int N, int W) {
    int n = N;
    play[0] = 1;
    playRound(play, res);
    for (int i = 0; i < n; i++) {
        if (res[i] == 0) {
            return i;
        }
    }
    reset(N);
    play[1] = 1;
    playRound(play, res);
    for (int i = 0; i < n; i++) {
        if (res[i] == 0) {
            return i;
        }
    }
    return -1;
}
 
int maxValue(int N, int W) {
    int n = N;
    for (int i = 0; i < n; i++) {
        play[i] = 1;
    }
    playRound(play, res);
    set <int> pots;
    for (int i = 0; i< n; i++) {
        if (res[i] > 0) {
            pots.insert(i);
        }
    }
 
    int times = 3;
    while(times--) {  
        reset(N);
        for (int x : pots) {
            play[x] = W/(pots.size());
        }
 
        playRound(play, res);
 
        set <int> newpots;
        for (int i = 0; i< n; i++) {
            if (res[i] > 0 && (pots.find(i) != pots.end())) {
                newpots.insert(i);
            }
        }
        pots = newpots;
    }
    return *(pots.begin());
}
 
int greaterValue(int N, int W) {
    int n = N;
    int lo = 1, hi = 9;
    while (lo < hi) {
        int mid = (lo+hi)/2;
        reset(n);
        play[0] = play[1] = mid;
        for (int i = 2; i< n; i++) {
            play[i] = 0;
        }
        playRound(play, res);
        if (res[0] != res[1]) {
            if (res[0] > res[1]) {
                return 0;
            } else {
                return 1;
            }
        } else {
            if (res[0] == 0) {
                hi = mid-1;
            } else {
                lo = mid+1;
            }
        }
    }
}
 
bool isLessThan(int x, int y, int N) {
    int n = N;
    int lo = 1, hi = 14;
    while (lo < hi) {
        int mid = (lo+hi)/2;
        reset(n);
        play[x] = play[y] = mid;
        playRound(play, res);
        calls++;
        if (res[x] != res[y]) {
            if (res[x] > res[y]) {
                return false;
            } else {
                return true;
            }
        } else {
            if (res[x] == 0) {
                hi = mid-1;
            } else {
                lo = mid+1;
            }
        }
    }
}
 
void solveClassic(int *P, int L, int R, int N) {
    if (L == R) {
        return;
    }
    // printf("called %d %d\n", L, R);
    int mid = (L+R)/2;
    solveClassic(P, L, mid, N);
    solveClassic(P, mid+1, R, N);
 
    int i = L, j = mid+1;
    int cur = L;
    while(i <= mid && j <= R) {
        if(isLessThan(P[i], P[j], N)) {
            tmp[cur++] = P[i++];
        } else {
            tmp[cur++] = P[j++];
        }
    }
    while(i <= mid) {
        tmp[cur++] = P[i++];
    }
    while(j <= R) {
        tmp[cur++] = P[j++];
    }
 
    for (int i = L; i<= R; i++) {
        P[i] = tmp[i];
    }
 
    return;
}

void solve(int *P, int L, int R, int N, int W) {
    if (L == R) {
        return;
    }
    reset(N);
    for (int i = L; i <= R; i++) {
        play[P[i]] = W/(R-L+1);
    }
    playRound(play, res);
    calls++;
    vector<int> good, bad;
    for (int i = L; i <= R; i++) {
        if (res[P[i]] > 0) {
            good.push_back(P[i]);
        } else {
            bad.push_back(P[i]);
        }
    }
    if ((int) good.size() == 0 || (int) bad.size() == 0) {
        // printf("%d %d can't go\n", L, R);
        solveClassic(P, L, R, N);
        return;
    }


    int cur = L;
    for (int i = 0; i< (int) bad.size(); i++) {
        P[cur++] = bad[i];
    }
    for (int i = 0; i< (int) good.size(); i++) {
        P[cur++] = good[i];
    }
    solve(P, L, L+bad.size()-1, N, W);
    printf("solved %d %d: %d\n", L, L+bad.size()-1, calls);
    solve(P, L+bad.size(), R, N, W);
    printf("solved %d %d: %d\n", L+bad.size(), R, calls);
}

void solve_subtask4(int N, int W, int *P) {
    for (int i = 0; i < N; i++) {
        P[i] = -1;
    }
    for (int i = 0; i < N; i++) {
        set<int> pots;
        for (int j = 0; j < N; j++) {
            pots.insert(j);
        }

        while(true) {
            int remcnt = 0;
            for (int x : pots) {
                if (P[x] == -1) {
                    remcnt++;
                }
            }
            if (remcnt == 1) {
                break;
            }
            reset(N);
            for (int x : pots) {
                if (P[x] == -1) {
                    play[x] = W/remcnt;
                }
            }
            playRound(play, res);
            set<int> newpots;
            for (int j = 0; j< N; j++) {
                if (res[j] > 0 && pots.find(j) != pots.end()) {
                    newpots.insert(j);
                }
            }
            pots = newpots;
        }
        set<int> newpots;
        for (int j: pots) {
            if (P[j] == -1) {
                newpots.insert(j);
            }
        }
        pots = newpots;
        P[*(pots.begin())] = N-i;
        // printf("%d: %d\n", *pots.begin(), N-i);
    }
}

void allValues(int N, int W, int *P) {
    for (int i = 0; i < N; i++) {
        P[i] = i;
    }
    if (W == 2*N) {
        solve_subtask4(N, W, P);
    } else {
        solve(P, 0, N-1, N, W);
        for (int i = 0; i < N; i++) {
            tmp[P[i]] = i;
        }
        for (int i = 0; i < N; i++) {
            P[i] = tmp[i] + 1;
        }
    }
}

Compilation message

koala.cpp: In function 'void solve(int*, int, int, int, int)':
koala.cpp:203:24: warning: format '%d' expects argument of type 'int', but argument 3 has type 'std::vector<int>::size_type' {aka 'long unsigned int'} [-Wformat=]
  203 |     printf("solved %d %d: %d\n", L, L+bad.size()-1, calls);
      |                       ~^            ~~~~~~~~~~~~~~
      |                        |                        |
      |                        int                      std::vector<int>::size_type {aka long unsigned int}
      |                       %ld
koala.cpp:205:21: warning: format '%d' expects argument of type 'int', but argument 2 has type 'std::vector<int>::size_type' {aka 'long unsigned int'} [-Wformat=]
  205 |     printf("solved %d %d: %d\n", L+bad.size(), R, calls);
      |                    ~^            ~~~~~~~~~~~~
      |                     |             |
      |                     int           std::vector<int>::size_type {aka long unsigned int}
      |                    %ld
koala.cpp: In function 'int greaterValue(int, int)':
koala.cpp:111:1: warning: control reaches end of non-void function [-Wreturn-type]
  111 | }
      | ^
koala.cpp: In function 'bool isLessThan(int, int, int)':
koala.cpp:136:1: warning: control reaches end of non-void function [-Wreturn-type]
  136 | }
      | ^
# Verdict Execution time Memory Grader output
1 Correct 3 ms 208 KB Output is correct
2 Correct 3 ms 208 KB Output is correct
3 Correct 3 ms 208 KB Output is correct
4 Correct 3 ms 208 KB Output is correct
# Verdict Execution time Memory Grader output
1 Correct 16 ms 320 KB Output is correct
2 Correct 11 ms 332 KB Output is correct
3 Correct 11 ms 328 KB Output is correct
4 Correct 11 ms 336 KB Output is correct
# Verdict Execution time Memory Grader output
1 Correct 58 ms 456 KB Output is correct
2 Correct 48 ms 324 KB Output is correct
3 Correct 47 ms 328 KB Output is correct
4 Correct 42 ms 460 KB Output is correct
5 Correct 42 ms 328 KB Output is correct
6 Correct 51 ms 328 KB Output is correct
7 Correct 50 ms 320 KB Output is correct
8 Correct 42 ms 340 KB Output is correct
9 Correct 41 ms 344 KB Output is correct
10 Correct 40 ms 336 KB Output is correct
# Verdict Execution time Memory Grader output
1 Correct 35 ms 316 KB Output is correct
2 Correct 32 ms 208 KB Output is correct
3 Correct 32 ms 208 KB Output is correct
4 Correct 32 ms 328 KB Output is correct
5 Correct 32 ms 320 KB Output is correct
6 Correct 32 ms 208 KB Output is correct
7 Correct 32 ms 300 KB Output is correct
8 Correct 35 ms 208 KB Output is correct
9 Correct 37 ms 300 KB Output is correct
10 Correct 32 ms 208 KB Output is correct
11 Correct 32 ms 304 KB Output is correct
12 Correct 30 ms 208 KB Output is correct
13 Correct 31 ms 208 KB Output is correct
14 Correct 32 ms 208 KB Output is correct
15 Correct 31 ms 316 KB Output is correct
16 Correct 31 ms 308 KB Output is correct
17 Correct 31 ms 320 KB Output is correct
18 Correct 39 ms 208 KB Output is correct
19 Correct 33 ms 332 KB Output is correct
20 Correct 32 ms 304 KB Output is correct
# Verdict Execution time Memory Grader output
1 Incorrect 6 ms 208 KB Output isn't correct
2 Halted 0 ms 0 KB -