CSES - Datatähti 2025 alku - Results
Submission details
Task:Niitty
Sender:nikke5
Submission time:2024-11-07 21:38:32 +0200
Language:C++ (C++11)
Status:READY
Result:0
Feedback
groupverdictscore
#10
#20
#30
#40
#50
#60
Test results
testverdicttimegroup
#1--1, 2, 3, 4, 5, 6details
#2--1, 2, 3, 4, 5, 6details
#3ACCEPTED0.01 s1, 2, 3, 4, 5, 6details
#40.00 s1, 2, 3, 4, 5, 6details
#5ACCEPTED0.00 s1, 2, 3, 4, 5, 6details
#6--2, 3, 4, 5, 6details
#7--2, 3, 4, 5, 6details
#8ACCEPTED0.09 s2, 3, 4, 5, 6details
#9ACCEPTED0.01 s2, 3, 4, 5, 6details
#10--3, 4, 5, 6details
#11--3, 4, 5, 6details
#12--3, 4, 5, 6details
#13--3, 4, 5, 6details
#14--4, 5, 6details
#15--4, 5, 6details
#16--4, 5, 6details
#17--4, 5, 6details
#18--5, 6details
#19--5, 6details
#20--5, 6details
#21--5, 6details
#22--6details
#23--6details
#24--6details
#25--6details

Compiler report

input/code.cpp: In function 'void createRects(int)':
input/code.cpp:52:15: warning: comparison of integer expressions of different signedness: 'int' and 'std::vector<std::vector<flower> >::size_type' {aka 'long unsigned int'} [-Wsign-compare]
   52 |     if (level == flist.size()){
      |         ~~~~~~^~~~~~~~~~~~~~~
input/code.cpp:64:27: warning: comparison of integer expressions of different signedness: 'int' and 'std::vector<flower>::size_type' {aka 'long unsigned int'} [-Wsign-compare]
   64 |         for (int i = 0; i < flist[level-1].size(); i++)
      |                         ~~^~~~~~~~~~~~~~~~~~~~~~~
input/code.cpp:88:22: warning: comparison of integer expressions of different signedness: 'int' and 'std::vector<flower>::size_type' {aka 'long unsigned int'} [-Wsign-compare]
   88 |     for (int i = 0; i<flist[level].size(); i++){ // LOOP THE CURRENT LEVEL (FLOWER TYPE)
      |                     ~^~~~~~~~~~~~~~~~~~~~

Code

#include <iostream>
#include <cmath>
#include <vector>
#include <algorithm>
#include <string>
#include <sstream>
#include <chrono>
#include <iomanip>
#include <algorithm>

typedef long long ll;
using namespace std;

struct flower{

    int x, y;

    int id;
    // int listIt;


    
};

vector<vector<flower>> flist;

int idList[200] = {0};

vector<vector<int>> rectList; 

vector<int> currentX, currentY;

void findSmallestRect(vector<int> X, vector<int> Y, vector<int> &p) 
{ 
    // find Xmax and Xmin 
    int Xmax = *max_element(X.begin(), X.end()); 
    int Xmin = *min_element(X.begin(), X.end()); 
  
    // find Ymax and Ymin 
    int Ymax = *max_element(Y.begin(), Y.end()); 
    int Ymin = *min_element(Y.begin(), Y.end()); 
  
    // print all four coordinates 
    p[0] = Xmin;
    p[1] = Xmax;
    p[2] = Ymin;
    p[3] = Ymax;
} 

void createRects(int level){

    if (level == flist.size()){
        vector<int> EndCoords(4); // Pienimmän mahdollisen suorakulmion koordinaatit järjestyksessä; XMax, Xmin, Ymax, Ymin.

        findSmallestRect(currentX, currentY, EndCoords);

        rectList.push_back(vector<int>());

        for (int i = 0; i < 4; i++)
        {
            rectList[rectList.size()-1].push_back(EndCoords[i]);
        }

        for (int i = 0; i < flist[level-1].size(); i++)
        { // LOOP THE CURRENT LEVEL (FLOWER TYPE)
            currentX.push_back(flist[level-1][i].x);
            currentY.push_back(flist[level-1][i].y);

            // cout << flist[level][i].idC << ", ";
            findSmallestRect(currentX, currentY, EndCoords);

            rectList.push_back(vector<int>());

            for (int i = 0; i < 4; i++)
            {
                rectList[rectList.size() - 1].push_back(EndCoords[i]);
            }

            currentX.pop_back();
            currentY.pop_back();
        }

        // cout << rectList[rectList.size() - 1][0] << ", " << rectList[rectList.size() - 1][1] << ", " << rectList[rectList.size() - 1][2] << ", " << rectList[rectList.size() - 1][3] << "\n";
        // cout << "\n";
        return;
    }

    for (int i = 0; i<flist[level].size(); i++){ // LOOP THE CURRENT LEVEL (FLOWER TYPE)
        currentX.push_back(flist[level][i].x);
        currentY.push_back(flist[level][i].y);

        // cout << flist[level][i].idC << ", ";

        createRects(level + 1);

        currentX.pop_back();
        currentY.pop_back();
    }

}


int main(){

    ios_base::sync_with_stdio(0);
    cin.tie(0);

    fill_n(idList, 200, -1);

    int n;

    cin >> n;
    cin.ignore(1,'\n');

    int id = 0;
    vector<string> sI;

    for (int y = n-1; y>=0; y--){

        
        sI.push_back(string());
        getline(cin, sI[sI.size()-1]);

    }

    int c = n-1;

    for (int y = n - 1; y >= 0; y--)
    {
        
        string s = sI[c];

        c--;

        for (int x = 0; x < n; x++)
        {
            flower f;
            f.x = x;
            f.y = y;

            if (idList[(int)s[x]] == -1)
            {
                idList[(int)s[x]] = id;
                flist.push_back(vector<flower>());
                id++;
            }

            f.id = idList[(int)s[x]];

            // f.listIt = flist[f.id].size();
            flist[f.id].push_back(f);
        }
    }

    // vector<vector<char>> visualization;

    

    // for (int y = 0; y<n; y++){
    //     visualization.push_back(vector<char>());
    //     for(int x = 0; x<n; x++){
    //         visualization[y].push_back(sI[y][x]);
    //     }
    // }

    

    // sort(flist.begin(), flist.end(), [](const vector<flower> & a, const vector<flower> & b){ return a.size() < b.size(); }); // JÄRJESTÄ LISTA HARVINAISIMMASTA YLEISIMPÄÄN

    
    createRects(0);



    sort(rectList.begin(), rectList.end());

    auto it
        = unique(rectList.begin(), rectList.end());


    rectList.erase(it, rectList.end());


    // int v = 0;
    // int overlap = 0;

    // for (int i = 0; i<rectList.size(); i++){ // LISÄÄ KAIKKIEN SUORAKULMIEN VASTAUKSET VASTAUKSEEN
    //     for (int j = 0; j < 4; j++)
    //     {
    //         cout << rectList[i][j] << ", ";
    //     }
    //     cout << "\n";

    //     for (int y = rectList[i][2]; y <= rectList[i][3]; y++)
    //     {
    //         for (int x = rectList[i][0]; x <= rectList[i][1]; x++)
    //         {
    //             cout << visualization[y][x] << " ";
    //         }
    //         cout << "\n";
    //     }
    // }

    cout << rectList.size();



}

Test details

Test 1

Group: 1, 2, 3, 4, 5, 6

Verdict:

input
10
TNCTNPNTPC
NPPNTNTPTP
NTNTTCNTCT
NPCPNPPNTT
...

correct output
2035

user output
(empty)

Test 2

Group: 1, 2, 3, 4, 5, 6

Verdict:

input
10
NFWQLWNWYS
DZOQJVXFPJ
CNHXPXMCQD
QRTBVNLTQC
...

correct output
9

user output
(empty)

Test 3

Group: 1, 2, 3, 4, 5, 6

Verdict: ACCEPTED

input
10
XXXXXXXXXX
XXXXXXXXXX
XXXXXXXXXX
XXXXXXXXXX
...

correct output
3025

user output
3025

Test 4

Group: 1, 2, 3, 4, 5, 6

Verdict:

input
10
FFFFFFFFFF
FFFFFCFFFF
FFFFFFJFFF
FFFFFFFFFF
...

correct output
12

user output
9

Test 5

Group: 1, 2, 3, 4, 5, 6

Verdict: ACCEPTED

input
1
X

correct output
1

user output
1

Test 6

Group: 2, 3, 4, 5, 6

Verdict:

input
20
BBCBUBOUOBBCUUBBCOUO
BOUCOOCUBCOOOCOBOCUO
UCCUUUOBCOCBCBUBUCOO
BUOBUCUCUOOBCOOUBUOO
...

correct output
38724

user output
(empty)

Test 7

Group: 2, 3, 4, 5, 6

Verdict:

input
20
CBGLSHGZHYZDWBNDBJUG
SMUXOJQYPXZDTMJUIWOJ
XIDSTNBGHKRKOVUVMINB
MTQGCFRUHQKALXRNCQGS
...

correct output
8334

user output
(empty)

Test 8

Group: 2, 3, 4, 5, 6

Verdict: ACCEPTED

input
20
KKKKKKKKKKKKKKKKKKKK
KKKKKKKKKKKKKKKKKKKK
KKKKKKKKKKKKKKKKKKKK
KKKKKKKKKKKKKKKKKKKK
...

correct output
44100

user output
44100

Test 9

Group: 2, 3, 4, 5, 6

Verdict: ACCEPTED

input
20
AAAAAAAAXAAAAAAAAAAA
AAAWAAAAAAAAAAAAAOAA
AAAAAAAAAAAAAAAAAPAA
AAAAAAAAKAAAAAAAAAAZ
...

correct output
18

user output
18

Test 10

Group: 3, 4, 5, 6

Verdict:

input
50
GRGREEEGREGXRXXEGXXREXGRRRGRRR...

correct output
1584665

user output
(empty)

Test 11

Group: 3, 4, 5, 6

Verdict:

input
50
AITIISJUHCCRZNKSDCNQKYSQRINFWJ...

correct output
1077746

user output
(empty)

Test 12

Group: 3, 4, 5, 6

Verdict:

input
50
OOOOOOOOOOOOOOOOOOOOOOOOOOOOOO...

correct output
1625625

user output
(empty)

Test 13

Group: 3, 4, 5, 6

Verdict:

input
50
FFFFFFFFFFFFFFFFFFFFFFFFFFFFFF...

correct output
1680

user output
(empty)

Test 14

Group: 4, 5, 6

Verdict:

input
100
NNCMDCDDCCNNNDNCMMNCDCDCCDCDNM...

correct output
25325366

user output
(empty)

Test 15

Group: 4, 5, 6

Verdict:

input
100
LIMQQIHASECROEVILNVULGWZJPPKOG...

correct output
22342463

user output
(empty)

Test 16

Group: 4, 5, 6

Verdict:

input
100
TTTTTTTTTTTTTTTTTTTTTTTTTTTTTT...

correct output
25502500

user output
(empty)

Test 17

Group: 4, 5, 6

Verdict:

input
100
QXQQQQQQQQQQQQQQQQQQQQQQQQQQQQ...

correct output
25650

user output
(empty)

Test 18

Group: 5, 6

Verdict:

input
200
NAANANMMKNKKAKMKMAKNKMNKMMNNAA...

correct output
403292767

user output
(empty)

Test 19

Group: 5, 6

Verdict:

input
200
OMYWATTLURKQPTKEFMGGYAOONXWVSC...

correct output
388111321

user output
(empty)

Test 20

Group: 5, 6

Verdict:

input
200
CCCCCCCCCCCCCCCCCCCCCCCCCCCCCC...

correct output
404010000

user output
(empty)

Test 21

Group: 5, 6

Verdict:

input
200
LLLLLLLLLLLLLLLLLHLLLLLLLLLLLL...

correct output
14159445

user output
(empty)

Test 22

Group: 6

Verdict:

input
500
VVHWVUHVHUWWWVUUUWVUUHUUWHWUVW...

correct output
15683003812

user output
(empty)

Test 23

Group: 6

Verdict:

input
500
OIMZGEQSBMBDSDXSWRFNKSGFEBBTJE...

correct output
15575906951

user output
(empty)

Test 24

Group: 6

Verdict:

input
500
IIIIIIIIIIIIIIIIIIIIIIIIIIIIII...

correct output
15687562500

user output
(empty)

Test 25

Group: 6

Verdict:

input
500
WWWWWWWWWWWWWWWWWWWWWWWWWWWWWW...

correct output
3058970930

user output
(empty)