Submission details
Task:Hypyt
Sender:viiviP
Submission time:2025-11-04 19:46:51 +0200
Language:C++ (C++17)
Status:READY
Result:0
Feedback
groupverdictscore
#10
#20
#30
#40
#50
Test results
testverdicttimegroup
#1ACCEPTED0.00 s1, 2, 3, 4, 5details
#20.00 s1, 2, 3, 4, 5details
#30.00 s1, 2, 3, 4, 5details
#40.00 s1, 2, 3, 4, 5details
#5ACCEPTED0.00 s1, 2, 3, 4, 5details
#60.44 s2, 5details
#70.27 s2, 5details
#80.13 s2, 5details
#90.47 s3, 4, 5details
#100.46 s3, 4, 5details
#110.46 s3, 4, 5details
#120.51 s4, 5details
#130.48 s4, 5details
#140.47 s4, 5details
#15--5details
#160.83 s5details
#170.64 s5details
#180.57 s5details
#190.53 s5details
#200.54 s5details
#210.50 s5details
#22ACCEPTED0.00 s1, 2, 3, 4, 5details
#23ACCEPTED0.00 s1, 2, 3, 4, 5details
#24ACCEPTED0.50 s5details
#25ACCEPTED0.44 s5details
#26--5details
#27ACCEPTED0.50 s5details

Code

#include <iostream>
#include <bits/stdc++.h>
typedef long long ll;
using namespace std;


int n, m, q;
int main() {
    //ios_base::sync_with_stdio(0);
    //cin.tie(0);
    //cout.tie(0);
    cin >> n>>m>>q;
    vector<vector<char>> r(n+1, vector<char>(m+1));
    vector<vector<pair<int, int>>>v(n+1); //v[rivi_id].push_back({rivi_id, x}) //vieruslista
    vector<vector<int>> e(n+1, vector<int>(n+1,1e9)); //etäisyydet e[i][j] etäisyys i:riviltä j:riville
    vector<vector<pair<vector<int>, vector<int>>>> p(n+1, vector<pair<vector<int>,vector<int>>>(n+1));
    for (int i =1; i<=n;i++) {
        string s;
        cin>>s;
        for (int j = 1; j<=m;j++) {
            r[i][j] = s[j-1];
            if (r[i][j] == '.') {

            }
        }
    }
    //vierusmatriisi
    for (int i = 1; i<=n;i++) {
        e[i][i] = 0;
        for (int j = 1;j<=m;j++) {
            if (r[i][j] == '.') {
                for (int k = 1; k<=n;k++) {
                    if (r[k][j] == '.' && k != i) {
                        v[i].push_back({k, j});
                        e[i][k] = 2; //voi vähentää lopussa 1 jos samassa sarakkeessa
                        p[i][k].first.push_back(j);
                        p[i][k].second.push_back(j);
                    }    
                }
            }
        }
    }
    
    //for (int i = 1;i<=n;i++) {
    //    cout <<i<<":\n";
    //    for (auto p : v[i]) {
    //        cout <<p.first<<" "<<p.second<<"\n";
    //    }
    //}
    //cout<<"---\n";
    //FLOYD-WARSHALL
    for (int k = 1;k<=n;k++) { //välisolmu
        for (int i = 1;i<=n;i++) { //alkusolmu
            for (int j = 1;j<=n;j++) { //loppusolmu
                if (e[i][j] > e[i][k] + e[k][j]) {
                    e[i][j] = e[i][k] + e[k][j];
                    for (auto d : v[i]) {
                        if (d.first == k) {
                            //d.second sopiva x-koordinaatti
                            p[i][j].first.push_back(d.second);
                        }
                    }
                    for (auto d : v[k]) {
                        if (d.first == j) {
                            p[i][j].second.push_back(d.second);
                        }
                    }
                }
                //e[i][j] = min(e[i][j], e[i][k]+e[k][j]);
                //alku-x = sarake josta pääsee i:stä k:hon, loppu-x = sarake josta pääsee k:sta j:hin (ei kai väliä mikä sarake, koska ne ei kuitenkaan oo sama) 
                //tallenna kai kaikki mahdolliset alku- ja loppupisteet
            }
        }
    }
    for (int i = 0;i<q;i++) {
        int y1, x1, y2,x2;
        cin >>y1>>x1>>y2>>x2;
        //tarkista jos samaa saraketta
        if (y1 == y2 && x1 == x2) {
            cout <<"0\n";
        } else if (e[y1][y2] >= 1e9) {
            cout <<"-1\n";
        } else if (y1 == y2) {
            cout <<"1\n";
        } else {
            int ans = e[y1][y2];
            bool alku = false;
            bool loppu = false;
            for (auto j : p[y1][y2].first) {
                if (j == x1) {
                    alku = true;
                }
            } 
            for (auto j : p[y1][y2].second) {
                if (j == x2) {
                    loppu = true;
                }
            } 
            if (alku == false) {
                ans += 1;
            }             
            if (loppu == true) {
                ans -=1;
            }  
            cout <<ans <<"\n";
        }
            //cout << e[y1][y2]<<"\n";
    }

    
}

Test details

Test 1 (public)

Group: 1, 2, 3, 4, 5

Verdict: ACCEPTED

input
4 6 5
.*.***
*...**
*****.
*..*.*
...

correct output
1
0
3
3
-1

user output
1
0
3
3
-1

Test 2

Group: 1, 2, 3, 4, 5

Verdict:

input
10 10 10
..........
.....*....
........*.
*.*....*..
...

correct output
1
2
1
2
2
...

user output
1
1
1
2
2
...

Feedback: Incorrect character on line 2 col 1: expected "2", got "1"

Test 3

Group: 1, 2, 3, 4, 5

Verdict:

input
10 10 10
*...***.**
*****.*...
**..**.**.
..**.**.*.
...

correct output
1
2
2
1
2
...

user output
1
2
2
1
1
...

Feedback: Incorrect character on line 5 col 1: expected "2", got "1"

Test 4

Group: 1, 2, 3, 4, 5

Verdict:

input
10 10 10
***.*.****
**********
*.********
.*.***.**.
...

correct output
3
4
2
3
4
...

user output
3
4
2
3
3
...

Feedback: Incorrect character on line 5 col 1: expected "4", got "3"

Test 5

Group: 1, 2, 3, 4, 5

Verdict: ACCEPTED

input
10 10 1
.****.****
**.**..***
**********
*******..*
...

correct output
7

user output
7

Test 6

Group: 2, 5

Verdict:

input
250 250 250
.*...*.....*******..**...*.......

correct output
2
3
3
2
2
...

user output
1
3
3
2
2
...

Feedback: Incorrect character on line 1 col 1: expected "2", got "1"

Test 7

Group: 2, 5

Verdict:

input
250 250 250
...*......**.**.*.*..**..*..**...

correct output
2
2
2
2
3
...

user output
2
2
1
2
3
...

Feedback: Incorrect character on line 3 col 1: expected "2", got "1"

Test 8

Group: 2, 5

Verdict:

input
250 250 250
**..**..****.****.*.***.***..*...

correct output
2
3
3
3
3
...

user output
2
3
3
3
3
...

Feedback: Incorrect character on line 30 col 1: expected "2", got "1"

Test 9

Group: 3, 4, 5

Verdict:

input
40 40 200000
...*.**.*..*.............*.*.....

correct output
2
2
2
2
2
...

user output
2
2
1
2
1
...

Feedback: Incorrect character on line 3 col 1: expected "2", got "1"

Test 10

Group: 3, 4, 5

Verdict:

input
40 40 200000
**.**..*.*.*.******....****.*....

correct output
2
1
3
2
2
...

user output
1
1
3
1
2
...

Feedback: Incorrect character on line 1 col 1: expected "2", got "1"

Test 11

Group: 3, 4, 5

Verdict:

input
40 40 200000
.*.*.**.*****.***.*.****.**.**...

correct output
3
3
3
3
3
...

user output
3
3
3
3
4
...

Feedback: Incorrect character on line 5 col 1: expected "3", got "4"

Test 12

Group: 4, 5

Verdict:

input
80 80 200000
*....**.***..****...*.....*......

correct output
2
2
2
2
2
...

user output
2
2
1
1
1
...

Feedback: Incorrect character on line 3 col 1: expected "2", got "1"

Test 13

Group: 4, 5

Verdict:

input
80 80 200000
.***.*..*.***..*****....**...*...

correct output
3
2
2
3
2
...

user output
3
2
2
3
2
...

Feedback: Incorrect character on line 8 col 1: expected "2", got "1"

Test 14

Group: 4, 5

Verdict:

input
80 80 200000
*******.*****.*..*..****...***...

correct output
2
3
1
2
2
...

user output
2
3
1
2
2
...

Feedback: Incorrect character on line 10 col 1: expected "2", got "1"

Test 15

Group: 5

Verdict:

input
250 250 200000
*....*..*..*..**..*.........**...

correct output
3
2
2
2
2
...

user output
(empty)

Test 16

Group: 5

Verdict:

input
250 250 200000
..*....*..*......*.**.*.*..***...

correct output
2
2
2
2
2
...

user output
2
1
1
2
2
...

Feedback: Incorrect character on line 2 col 1: expected "2", got "1"

Test 17

Group: 5

Verdict:

input
250 250 200000
*..*.*****.*********.****.****...

correct output
3
3
2
2
2
...

user output
3
3
1
2
2
...

Feedback: Incorrect character on line 3 col 1: expected "2", got "1"

Test 18

Group: 5

Verdict:

input
250 250 200000
*********.**********.******.**...

correct output
3
3
3
3
3
...

user output
3
3
3
3
3
...

Feedback: Incorrect character on line 35 col 1: expected "2", got "1"

Test 19

Group: 5

Verdict:

input
250 250 200000
.*****************************...

correct output
104
422
145
93
65
...

user output
104
422
146
93
67
...

Feedback: Incorrect character on line 3 col 3: expected "145", got "146"

Test 20

Group: 5

Verdict:

input
250 250 200000
..****************************...

correct output
57
155
38
65
98
...

user output
57
157
39
66
99
...

Feedback: Incorrect character on line 2 col 3: expected "155", got "157"

Test 21

Group: 5

Verdict:

input
250 250 200000
.*****************************...

correct output
498
498
498
498
498
...

user output
499
499
499
499
499
...

Feedback: Incorrect character on line 1 col 3: expected "498", got "499"

Test 22

Group: 1, 2, 3, 4, 5

Verdict: ACCEPTED

input
10 1 10
*
*
.
*
...

correct output
0
1
1
0
0
...

user output
0
1
1
0
0
...

Test 23

Group: 1, 2, 3, 4, 5

Verdict: ACCEPTED

input
1 10 10
........*.
1 7 1 10
1 4 1 7
1 5 1 1
...

correct output
1
1
1
1
1
...

user output
1
1
1
1
1
...

Test 24

Group: 5

Verdict: ACCEPTED

input
250 1 200000
*
.
*
.
...

correct output
1
1
1
1
1
...

user output
1
1
1
1
1
...

Test 25

Group: 5

Verdict: ACCEPTED

input
1 250 200000
*.*.*...*.*.**.***..**.*.*..**...

correct output
1
1
1
1
1
...

user output
1
1
1
1
1
...

Test 26

Group: 5

Verdict:

input
250 250 200000
.................................

correct output
2
2
2
2
2
...

user output
(empty)

Test 27

Group: 5

Verdict: ACCEPTED

input
250 250 200000
******************************...

correct output
0
0
0
0
0
...

user output
0
0
0
0
0
...