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ID题目提交者结果用时内存语言文件大小提交时间测评时间
#757215#9548. The Foolucup-team3099#AC ✓2ms5060kbC++233.3kb2024-11-17 02:21:332024-11-17 02:21:33

Judging History

你现在查看的是最新测评结果

  • [2024-11-17 02:21:33]
  • 评测
  • 测评结果:AC
  • 用时:2ms
  • 内存:5060kb
  • [2024-11-17 02:21:33]
  • 提交

answer

#include <iostream>
#include <vector>
#include <chrono>
#include <random>
#include <cassert>

std::mt19937 rng((int) std::chrono::steady_clock::now().time_since_epoch().count());

int main() {
    std::ios_base::sync_with_stdio(false); std::cin.tie(NULL);
    int n, m, k;
    std::cin >> n >> m >> k;
    std::vector<std::vector<std::string>> mat(n, std::vector<std::string>(m));
    for(int i = 0; i < n; i++) {
        std::string line;
        std::cin >> line;
        for(int j = 0; j < m; j++) {
            mat[i][j] = line.substr(k * j, k);
        }
    }
    int diff[2] = {-1, -1};
    for(int i = 0; i < n; i++) {
        for(int j = 0; j < m; j++) {
            if(mat[i][j] != mat[0][0]) {
                if(diff[0] == -1) {
                    diff[0] = i, diff[1] = j;
                } else {
                    std::cout << "1 1\n";
                    return 0;
                }
            }
        }
    }
    if(diff[0] == -1) {
        diff[0] = diff[1] = 0;
    }
    std::cout << diff[0]+1 << ' ' << diff[1]+1 << '\n';
}

/*
NEVER FORGET TO:
    Look at the problem's constraints before coding.
How to cheese cf:
    Find a lower bound or upper bound for the problem. Have faith that it is the answer of the problem.
    If it isn't the answer, have more faith or change to another bound god by looking for a better bound.

    Trust guesses. Who has time to think? If people in div2 AC the problem it requires no proof since people don't prove things.

    You must draw cases. Thinking gets you nowhere, so draw cases and reach illogical conclusions from them.
    Sometimes drawing cases is bad because it takes too much time. Faster is to not think at all and just code a bruteforce solution.
    This is called "law of small numbers". If something works for small numbers, surely it works for big numbers.
    https://en.wikipedia.org/wiki/Faulty_generalization#Hasty_generalization don't mind the "faulty" part of it, in competitive programming mistakes are lightly punished
    Don't think about them being right or not, cf is a battle of intuition only.

    Be as stupid as possible in implementation. Trying to be smart is an easy way to get WA.

    Think about 2x2 cases for matrix problems and hope that everything works for the general case.

    Find a necessary condition and trust it to be sufficient. They're basically the same thing.

    Heuristics might speed up your code. Forget about complexity, it's only about ACing and not proving that your solution is good.

    For paths in a grid starting at (1, i) or something like that, assume that they never cross and do D&C

    Consider doing problems in reverse order of queries/updates

    For combinatorics problems, consider symmetry

    For problems that are similar to past problems, think about the differences betweem it and the current problem.
    Sometimes the difference makes no difference. Sometimes it does.

General strategy (MUST DO):
    Try to solve the problem with more restricted constraints.

About testing:
    Test n=1, a[i]=1, a[i]=n, etc. Basically, test low values. No need to test if pretests are strong, but if you get WA it's good.

This isn't a joke. Do it if you get stuck. It's shit practice in my opinion, but do it if you want AC.
*/

详细

Test #1:

score: 100
Accepted
time: 0ms
memory: 3612kb

input:

3 5 3
QWQQWQQWQQWQQWQ
QWQQWQQWQQWQQWQ
QWQQWQQWQQWQQwQ

output:

3 5

result:

ok single line: '3 5'

Test #2:

score: 0
Accepted
time: 0ms
memory: 3616kb

input:

2 2 1
LL
}L

output:

2 1

result:

ok single line: '2 1'

Test #3:

score: 0
Accepted
time: 0ms
memory: 3548kb

input:

2 2 10
u+gl<d'a9Bu+gl<d'a9B
)M0wM2_Z8!u+gl<d'a9B

output:

2 1

result:

ok single line: '2 1'

Test #4:

score: 0
Accepted
time: 0ms
memory: 3624kb

input:

2 2 10
ayspaufftvuaaavaaaaa
uaaavaaaaauaaavaaaaa

output:

1 1

result:

ok single line: '1 1'

Test #5:

score: 0
Accepted
time: 0ms
memory: 3616kb

input:

2 2 10
uaaavaaaaauaaavaaaaa
ayspaufftvuaaavaaaaa

output:

2 1

result:

ok single line: '2 1'

Test #6:

score: 0
Accepted
time: 0ms
memory: 3616kb

input:

2 2 10
uaaavaaaaaayspaufftv
uaaavaaaaauaaavaaaaa

output:

1 2

result:

ok single line: '1 2'

Test #7:

score: 0
Accepted
time: 0ms
memory: 3780kb

input:

2 2 10
uaaavaaaaauaaavaaaaa
uaaavaaaaaayspaufftv

output:

2 2

result:

ok single line: '2 2'

Test #8:

score: 0
Accepted
time: 0ms
memory: 3664kb

input:

2 2 10
aaarlaaaghaaaaanisaa
aaaaanisaaaaaaanisaa

output:

1 1

result:

ok single line: '1 1'

Test #9:

score: 0
Accepted
time: 0ms
memory: 3600kb

input:

2 2 10
aaaaanisaaaaaaanisaa
aaarlaaaghaaaaanisaa

output:

2 1

result:

ok single line: '2 1'

Test #10:

score: 0
Accepted
time: 0ms
memory: 3656kb

input:

2 2 10
aaaaanisaaaaarlaaagh
aaaaanisaaaaaaanisaa

output:

1 2

result:

ok single line: '1 2'

Test #11:

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

input:

2 2 10
aaaaanisaaaaaaanisaa
aaaaanisaaaaarlaaagh

output:

2 2

result:

ok single line: '2 2'

Test #12:

score: 0
Accepted
time: 1ms
memory: 4460kb

input:

200 199 1
ooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooooo
oooooooooooooooooooooooooooooooooooowooooooooooooooooooooooooooooooooooooooooooooooooooooo...

output:

2 37

result:

ok single line: '2 37'

Test #13:

score: 0
Accepted
time: 1ms
memory: 4420kb

input:

199 200 2
1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p1p...

output:

112 145

result:

ok single line: '112 145'

Test #14:

score: 0
Accepted
time: 1ms
memory: 5040kb

input:

199 199 3
"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-R"-...

output:

46 95

result:

ok single line: '46 95'

Test #15:

score: 0
Accepted
time: 1ms
memory: 5024kb

input:

200 200 4
^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^pm&^p...

output:

113 72

result:

ok single line: '113 72'

Test #16:

score: 0
Accepted
time: 2ms
memory: 4896kb

input:

200 200 5
kk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gAkk$gA...

output:

66 8

result:

ok single line: '66 8'

Test #17:

score: 0
Accepted
time: 1ms
memory: 4888kb

input:

200 200 6
5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q8w[R5Q...

output:

84 106

result:

ok single line: '84 106'

Test #18:

score: 0
Accepted
time: 1ms
memory: 4864kb

input:

200 200 7
N3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&e|5lN3&...

output:

80 103

result:

ok single line: '80 103'

Test #19:

score: 0
Accepted
time: 1ms
memory: 4940kb

input:

200 200 8
82`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482`|)e)482...

output:

5 68

result:

ok single line: '5 68'

Test #20:

score: 0
Accepted
time: 0ms
memory: 5060kb

input:

200 200 9
c[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[RzcCsKBc[...

output:

8 169

result:

ok single line: '8 169'

Test #21:

score: 0
Accepted
time: 1ms
memory: 4804kb

input:

200 200 10
,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@^,O.JYB0m@...

output:

58 91

result:

ok single line: '58 91'

Extra Test:

score: 0
Extra Test Passed