Submission #978406

# Submission time Handle Problem Language Result Execution time Memory
978406 2024-05-09T07:57:09 Z Bodisha Mecho (IOI09_mecho) C++17
19 / 100
1000 ms 7816 KB
#include <bits/stdc++.h>
#define MAX_N 801

using namespace std;

int n, s;
char grid[MAX_N][MAX_N];
bool visited[MAX_N][MAX_N];
int beed[MAX_N][MAX_N];
int steps[MAX_N][MAX_N];

bool check(int t) {
    pair<int, int> mecho_pos, home_pos;
    for(int i = 0; i < n; i++) {
        for(int j = 0; j < n; j++) {
            visited[i][j] = false;
            steps[i][j] = n * n;
            if(grid[i][j] == 'M') {
                mecho_pos = {i, j};
            }
            if(grid[i][j] == 'D') {
                home_pos = {i, j};
            }
        }
    }
    queue<pair<int, int>> q;
    visited[mecho_pos.first][mecho_pos.second] = true;
    steps[mecho_pos.first][mecho_pos.second] = 0;
    q.push(mecho_pos);
    while(!q.empty()) {
        pair<int, int> curr = q.front(); 
        q.pop();
        if(curr.first + 1 < n && !visited[curr.first + 1][curr.second] && (grid[curr.first + 1][curr.second] == 'G' || grid[curr.first + 1][curr.second] == 'M' || grid[curr.first + 1][curr.second] == 'D')) {
            visited[curr.first + 1][curr.second] = true;
            steps[curr.first + 1][curr.second] = steps[curr.first][curr.second] + 1;
            q.push({curr.first + 1, curr.second});
        }
        if(curr.first - 1 >= 0 && !visited[curr.first - 1][curr.second] && (grid[curr.first - 1][curr.second] == 'G' || grid[curr.first - 1][curr.second] == 'M' || grid[curr.first - 1][curr.second] == 'D')) {
            visited[curr.first - 1][curr.second] = true;
            steps[curr.first - 1][curr.second] = steps[curr.first][curr.second] + 1;
            q.push({curr.first - 1, curr.second});
        }
        if(curr.second + 1 < n && !visited[curr.first][curr.second + 1] && (grid[curr.first][curr.second + 1] == 'G' || grid[curr.first][curr.second + 1] == 'M' || grid[curr.first][curr.second + 1] == 'D')) {
            visited[curr.first][curr.second + 1] = true;
            steps[curr.first][curr.second + 1] = steps[curr.first][curr.second] + 1;
            q.push({curr.first, curr.second + 1});
        }
        if(curr.second - 1 >= 0 && !visited[curr.first][curr.second - 1] && (grid[curr.first][curr.second - 1] == 'G' || grid[curr.first][curr.second - 1] == 'M' || grid[curr.first][curr.second - 1] == 'D')) {
            visited[curr.first][curr.second - 1] = true;
            steps[curr.first][curr.second - 1] = steps[curr.first][curr.second] + 1;
            q.push({curr.first, curr.second - 1});
        }
    }
    for(int i = 0; i < n; i++) {
        for(int j = 0; j < n; j++) {
            visited[i][j] = false;
        }
    }
    if(t + 1 > beed[mecho_pos.first][mecho_pos.second]) {
        return false;
    }
    queue<pair<pair<int, int>, int>> newq;
    visited[mecho_pos.first][mecho_pos.second] = true;
    newq.push({mecho_pos, 0});
    while(!newq.empty()) {
        pair<pair<int, int>, int> curr = newq.front(); 
        newq.pop();
        int tmp = t + 1 + ((curr.second + 1) / (s + 1));
        if(curr.first.first + 1 < n && tmp <= beed[curr.first.first + 1][curr.first.second] && !visited[curr.first.first + 1][curr.first.second] && (grid[curr.first.first + 1][curr.first.second] == 'G' || grid[curr.first.first + 1][curr.first.second] == 'M' || grid[curr.first.first + 1][curr.first.second] == 'D')) {
            visited[curr.first.first + 1][curr.first.second] = true;
            newq.push({{curr.first.first + 1, curr.first.second}, curr.second + 1});
        }
        if(curr.first.first - 1 >= 0 && tmp <= beed[curr.first.first - 1][curr.first.second] && !visited[curr.first.first - 1][curr.second] && (grid[curr.first.first - 1][curr.first.second] == 'G' || grid[curr.first.first - 1][curr.first.second] == 'M' || grid[curr.first.first - 1][curr.first.second] == 'D')) {
            visited[curr.first.first - 1][curr.first.second] = true;
            newq.push({{curr.first.first - 1, curr.first.second}, curr.second + 1});
        }
        if(curr.first.second + 1 < n && tmp <= beed[curr.first.first][curr.first.second + 1] && !visited[curr.first.first][curr.first.second + 1] && (grid[curr.first.first][curr.first.second + 1] == 'G' || grid[curr.first.first][curr.first.second + 1] == 'M' || grid[curr.first.first][curr.first.second + 1] == 'D')) {
            visited[curr.first.first][curr.first.second + 1] = true;
            newq.push({{curr.first.first, curr.first.second + 1}, curr.second + 1});
        }
        if(curr.first.second - 1 >= 0 && tmp <= beed[curr.first.first][curr.first.second - 1] && !visited[curr.first.first][curr.first.second - 1] && (grid[curr.first.first][curr.first.second - 1] == 'G' || grid[curr.first.first][curr.first.second - 1] == 'M' || grid[curr.first.first][curr.first.second - 1] == 'D')) {
            visited[curr.first.first][curr.first.second - 1] = true;
            newq.push({{curr.first.first, curr.first.second - 1}, curr.second + 1});
        }
    }
    return visited[home_pos.first + 1][home_pos.second] || visited[home_pos.first - 1][home_pos.second] || visited[home_pos.first - 1][home_pos.second] || visited[home_pos.first][home_pos.second + 1] || visited[home_pos.first][home_pos.second - 1];
}

int main() {
    vector<pair<int, int>> hives;
    cin >> n >> s;
    for(int i = 0; i < n; i++) {
        string tmp;
        cin >> tmp;
        for(int j = 0; j < n; j++) {
            grid[i][j] = tmp[j];
            if(grid[i][j] == 'H') {
                hives.push_back({i, j});
            }
        }
    }
    queue<pair<int, int>> q;
    for(auto iter : hives) {
        visited[iter.first][iter.second] = true;
        beed[iter.first][iter.second] = 0;
        q.push(iter);
    }
    while(!q.empty()) {
        pair<int, int> curr = q.front(); 
        q.pop();
        if(curr.first + 1 < n && !visited[curr.first + 1][curr.second] && (grid[curr.first + 1][curr.second] == 'G' || grid[curr.first + 1][curr.second] == 'M')) {
            visited[curr.first + 1][curr.second] = true;
            beed[curr.first + 1][curr.second] = beed[curr.first][curr.second] + 1;
            q.push({curr.first + 1, curr.second});
        }
        if(curr.first - 1 >= 0 && !visited[curr.first - 1][curr.second] && (grid[curr.first - 1][curr.second] == 'G' || grid[curr.first - 1][curr.second] == 'M')) {
            visited[curr.first - 1][curr.second] = true;
            beed[curr.first - 1][curr.second] = beed[curr.first][curr.second] + 1;
            q.push({curr.first - 1, curr.second});
        }
        if(curr.second + 1 < n && !visited[curr.first][curr.second + 1] && (grid[curr.first][curr.second + 1] == 'G' || grid[curr.first][curr.second + 1] == 'M')) {
            visited[curr.first][curr.second + 1] = true;
            beed[curr.first][curr.second + 1] = beed[curr.first][curr.second] + 1;
            q.push({curr.first, curr.second + 1});
        }
        if(curr.second - 1 >= 0 && !visited[curr.first][curr.second - 1] && (grid[curr.first][curr.second - 1] == 'G' || grid[curr.first][curr.second - 1] == 'M')) {
            visited[curr.first][curr.second - 1] = true;
            beed[curr.first][curr.second - 1] = beed[curr.first][curr.second] + 1;
            q.push({curr.first, curr.second - 1});
        }
    }
    int l = 0, r = n * n;
    int ans = -1;
    // true true true ... (true) false false
    while(l <= r) {
        int mid = l + (r - l) / 2;
        if(check(mid)) {
            ans = mid;
            l = mid + 1;
        } else {
            r = mid - 1;
        }
    }
    cout << ans;
    return 0;
}
# Verdict Execution time Memory Grader output
1 Incorrect 1 ms 2392 KB Output isn't correct
2 Incorrect 1 ms 2392 KB Output isn't correct
3 Incorrect 0 ms 2396 KB Output isn't correct
4 Incorrect 1 ms 2396 KB Output isn't correct
5 Correct 1 ms 2396 KB Output is correct
6 Incorrect 1 ms 2396 KB Output isn't correct
7 Execution timed out 1037 ms 7072 KB Time limit exceeded
8 Incorrect 1 ms 2396 KB Output isn't correct
9 Correct 1 ms 2396 KB Output is correct
10 Incorrect 1 ms 2396 KB Output isn't correct
11 Incorrect 1 ms 2396 KB Output isn't correct
12 Correct 1 ms 4816 KB Output is correct
13 Correct 1 ms 2652 KB Output is correct
14 Incorrect 2 ms 4700 KB Output isn't correct
15 Incorrect 1 ms 2396 KB Output isn't correct
16 Correct 1 ms 2396 KB Output is correct
17 Incorrect 1 ms 2396 KB Output isn't correct
18 Correct 1 ms 2396 KB Output is correct
19 Incorrect 1 ms 2396 KB Output isn't correct
20 Correct 1 ms 2396 KB Output is correct
21 Incorrect 1 ms 2652 KB Output isn't correct
22 Correct 1 ms 2652 KB Output is correct
23 Incorrect 1 ms 2652 KB Output isn't correct
24 Correct 1 ms 2652 KB Output is correct
25 Incorrect 2 ms 4696 KB Output isn't correct
26 Correct 1 ms 4700 KB Output is correct
27 Incorrect 2 ms 4700 KB Output isn't correct
28 Correct 2 ms 4696 KB Output is correct
29 Incorrect 2 ms 4832 KB Output isn't correct
30 Correct 2 ms 4828 KB Output is correct
31 Incorrect 2 ms 4700 KB Output isn't correct
32 Correct 1 ms 4700 KB Output is correct
33 Incorrect 24 ms 5272 KB Output isn't correct
34 Correct 19 ms 5212 KB Output is correct
35 Correct 341 ms 5456 KB Output is correct
36 Incorrect 34 ms 5352 KB Output isn't correct
37 Correct 23 ms 5352 KB Output is correct
38 Correct 365 ms 5408 KB Output is correct
39 Incorrect 39 ms 5212 KB Output isn't correct
40 Correct 28 ms 5208 KB Output is correct
41 Correct 396 ms 5596 KB Output is correct
42 Incorrect 49 ms 5484 KB Output isn't correct
43 Correct 37 ms 5480 KB Output is correct
44 Correct 522 ms 5880 KB Output is correct
45 Incorrect 62 ms 5468 KB Output isn't correct
46 Correct 41 ms 5468 KB Output is correct
47 Correct 520 ms 6016 KB Output is correct
48 Incorrect 72 ms 5760 KB Output isn't correct
49 Correct 50 ms 5720 KB Output is correct
50 Correct 582 ms 6108 KB Output is correct
51 Incorrect 84 ms 5976 KB Output isn't correct
52 Correct 58 ms 5976 KB Output is correct
53 Correct 594 ms 6484 KB Output is correct
54 Incorrect 98 ms 6084 KB Output isn't correct
55 Correct 68 ms 6232 KB Output is correct
56 Correct 557 ms 7012 KB Output is correct
57 Incorrect 113 ms 6464 KB Output isn't correct
58 Correct 77 ms 6236 KB Output is correct
59 Correct 499 ms 6780 KB Output is correct
60 Incorrect 133 ms 6492 KB Output isn't correct
61 Correct 88 ms 6488 KB Output is correct
62 Incorrect 357 ms 6960 KB Output isn't correct
63 Incorrect 280 ms 6700 KB Output isn't correct
64 Incorrect 285 ms 6488 KB Output isn't correct
65 Incorrect 281 ms 6488 KB Output isn't correct
66 Incorrect 275 ms 6996 KB Output isn't correct
67 Correct 288 ms 6492 KB Output is correct
68 Incorrect 218 ms 6724 KB Output isn't correct
69 Incorrect 221 ms 6480 KB Output isn't correct
70 Incorrect 215 ms 6744 KB Output isn't correct
71 Incorrect 218 ms 6748 KB Output isn't correct
72 Correct 212 ms 6748 KB Output is correct
73 Correct 460 ms 7816 KB Output is correct
74 Execution timed out 1041 ms 7200 KB Time limit exceeded
75 Execution timed out 1020 ms 7260 KB Time limit exceeded
76 Execution timed out 1033 ms 7252 KB Time limit exceeded
77 Execution timed out 1070 ms 7144 KB Time limit exceeded
78 Execution timed out 1040 ms 7400 KB Time limit exceeded
79 Execution timed out 1010 ms 7172 KB Time limit exceeded
80 Execution timed out 1072 ms 7148 KB Time limit exceeded
81 Execution timed out 1043 ms 7480 KB Time limit exceeded
82 Execution timed out 1047 ms 7140 KB Time limit exceeded
83 Incorrect 935 ms 6996 KB Output isn't correct
84 Correct 808 ms 7104 KB Output is correct
85 Incorrect 733 ms 6920 KB Output isn't correct
86 Incorrect 968 ms 7048 KB Output isn't correct
87 Correct 860 ms 7036 KB Output is correct
88 Execution timed out 1018 ms 6996 KB Time limit exceeded
89 Correct 966 ms 7060 KB Output is correct
90 Execution timed out 1012 ms 7024 KB Time limit exceeded
91 Correct 993 ms 7088 KB Output is correct
92 Execution timed out 1029 ms 7092 KB Time limit exceeded