CSES - Datatähti 2024 alku - Results
Submission details
Task:Uolevin kalansaalis
Sender:cppbetter
Submission time:2023-11-03 21:48:00 +0200
Language:C++ (C++20)
Status:READY
Result:37
Feedback
groupverdictscore
#1ACCEPTED37
#20
Test results
testverdicttimegroup
#1ACCEPTED0.44 s1, 2details
#2ACCEPTED0.44 s1, 2details
#3ACCEPTED0.44 s1, 2details
#4ACCEPTED0.44 s1, 2details
#5ACCEPTED0.44 s1, 2details
#6ACCEPTED0.44 s1, 2details
#7ACCEPTED0.44 s1, 2details
#8ACCEPTED0.45 s1, 2details
#9ACCEPTED0.44 s1, 2details
#10ACCEPTED0.45 s1, 2details
#11ACCEPTED0.45 s1, 2details
#12ACCEPTED0.44 s1, 2details
#13ACCEPTED0.44 s1, 2details
#14ACCEPTED0.45 s1, 2details
#15ACCEPTED0.44 s1, 2details
#16--2details
#17--2details
#18--2details
#19--2details
#20--2details
#21--2details
#22--2details
#23--2details
#24--2details

Code

#include <iostream>
#include <vector>
#include <cassert>
//#define TEST
#ifdef TEST
#define PRINTDBG(x) cout << x
#else
#define PRINTDBG(x)
#endif
using namespace std;
vector<char> v = {};
vector<int> memu = {};
vector<int> memd = {};
int n, m;
char getv(int x, int y)
{
#ifdef TEST
assert(x >= 0 && y >= 0);
assert(x < n && y < m);
#endif
return v[x + y * n];
}
void setv(int x, int y, char c)
{
#ifdef TEST
assert(x >= 0 && y >= 0);
assert(x < n && y < m);
#endif
v[x + y * n] = c;
}
int getmemu(int x, int y, int T )
{
#ifdef TEST
assert(m / 2 >= T);
assert(x >= 0 && y >= 0);
assert(x < n && y < m);
#endif
return memu[x + y * n + T * m * n];
}
void setmemu(int x, int y, int T, int val)
{
#ifdef TEST
assert(m / 2 >= T);
assert(x >= 0 && y >= 0);
assert(x < n && y < m);
#endif
memu[x + y * n + T * m * n] = val;
}
int getmemd(int x, int y, int T)
{
#ifdef TEST
assert(m / 2 >= T);
assert(x >= 0 && y >= 0);
assert(x < n && y < m);
#endif
return memd[x + y * n + T * m * n];
}
void setmemd(int x, int y, int T, int val)
{
#ifdef TEST
assert(m / 2 >= T);
assert(x >= 0 && y >= 0);
assert(x < n && y < m);
#endif
memd[x + y * n + T * m * n] = val;
}
int largestFact(int n)
{
for (int i = n/2; i > 1; i--)
{
if (n % i == 0)
{
return i;
}
}
return -1;
}
int trigD(int a, int b, int T);
int trigU(int a, int b, int T)
{
// Check if out of bounds
if (b + T > m)
return 0;
if(0 + a - ((T + b) / 2 - (b + 1) / 2) < 0 )
return 0;
if (T + a - ((T + b) / 2 - (b + 1) / 2) > n)
return 0;
int vl = 0;
if (T == 1)
{
//setv(a, b, 'U');
if (getv(a,b) == 'K')
vl += 10;
else if (getv(a, b) == 'H')
vl -= 1;
return vl;
}
if (T < m / 2 && getmemu(a, b, T) != INT32_MIN)
return getmemu(a, b, T);
int l = largestFact(T);
// Prime ugh...
if (l == -1)
{
vl += trigU(a, b, T - 1);
for (int x = 0; x < T; x++)
{
int yP = T - 1 + b;
int xP = x + a - ((yP + 1) / 2 - (b + 1) / 2);
//setv(xP, yP, 'U');
if (xP >= n || xP < 0 || yP >= m || yP < 0)
return 0;
if (getv(xP, yP) == 'K')
vl += 10;
else if (getv(xP, yP) == 'H')
vl -= 1;
}
return vl;
}
for (int y = 0; y < T; y += l)
{
int yP = y + b;
int xP = 0 + a - ((yP + 1) / 2 - (b + 1) / 2);
for (int r = 0; r < y/l + 1; r++)
{
vl += trigU(xP + r*l, yP, l);
}
for (int r = 0; r < y / l; r++)
{
vl += trigD(xP + r * l + 1, yP, l - 1);
}
}
if(T < m / 2)
setmemu(a, b, T, vl);
return vl;
}
int trigD(int a, int b, int T)
{
// Check if out of bounds
if (b + T > m)
return 0;
if (a < 0)
return 0;
if (T + a > n)
return 0;
int vl = 0;
if (T == 1)
{
//setv(a, b, 'D');
if (getv(a, b) == 'K')
vl += 10;
else if (getv(a, b) == 'H')
vl -= 1;
return vl;
}
if (T < m / 2 && getmemd(a, b, T) != INT32_MIN)
return getmemd(a, b, T);
int l = largestFact(T);
// Prime ugh...
if (l == -1)
{
vl += trigD(a, b, T - 1);
for (int y = 0; y < T; y++)
{
int yP = (T - 1 - y) + b;
int xP = y + a + (yP / 2 - b / 2);
//setv(xP, yP, 'D');
if (xP >= n || xP < 0 || yP >= m || yP < 0)
return 0;
if (getv(xP, yP) == 'K')
vl += 10;
else if (getv(xP, yP) == 'H')
vl -= 1;
}
return vl;
}
for (int y = 0; y < T; y += l)
{
int yP = (T - 1 - y) + b - l + 1;
int xP = a + (yP / 2 - b / 2);
for (int r = 0; r < y / l + 1; r++)
{
vl += trigD(xP + r * l, yP, l);
}
for (int r = 0; r < y / l; r++)
{
vl += trigU(xP + (r + 1) * l - ((yP + 1) % 2), yP + 1, l - 1);
}
}
if (T < m / 2)
setmemd(a, b, T, vl);
return vl;
}
int main()
{
memu.resize(500 * 500 * 250);
memd.resize(500 * 500 * 250);
fill(memu.begin(), memu.end(), INT32_MIN);
fill(memd.begin(), memd.end(), INT32_MIN);
#ifndef TEST
int k;
cin >> m >> n >> k;
v.resize(m * n);
fill(v.begin(), v.end(), '0');
int t = 0;
for (int i = 0; i < k; i++)
{
int a, b;
char c;
cin >> a >> b >> c;
if (c == 'H')
t += 1;
else
t -= 10;
setv(b - 1, a - 1, c);
}
int bT = trigU(0, 0, 1);
// hahahr recursion go brrrrr
for (int a = 0; a < n; a++)
for (int b = 0; b < m; b++)
for (int T = 1; T <= m - b; T++)
{
//v[a][b] = T + '0';
bT = max(bT, trigU(a, b, T));
}
for (int a = 0; a < n; a++)
for (int b = 0; b < m; b++)
for (int T = 1; T <= m - b; T++)
{
//v[a][b] = T + '0';
bT = max(bT, trigD(a, b, T));
}
cout << t + bT;
cout << "\n";
//bool even = true;
//for (int b = 0; b < m; b++)
//{
// for (int a = 0; a < n; a++)
// cout << v[a][b] << " ";
//
// cout << "\n";
// if (even)
// cout << " ";
// even = !even;
//}
#else
n = 6;
m = 5;
v.resize(m * n);
fill(v.begin(), v.end(), '0');
for (int a = 0; a < n; a++)
for (int b = 0; b < m; b++)
for (int T = 1; T <= m - a; T++)
{
//v[a][b] = T + '0';
trigU(a, b, T);
}
for (int a = 0; a < n; a++)
for (int b = 0; b < m; b++)
for (int T = 1; T <= m - a; T++)
{
//v[a][b] = T + '0';
trigD(a, b, T);
}
//trigD(2, 1, 4);
bool even = true;
for (int b = 0; b < m; b++)
{
for (int a = 0; a < n; a++)
cout << getv(a,b) << " ";
cout << "\n";
if (even)
cout << " ";
even = !even;
}
cout << "\n";
#endif
return 0;
}

Test details

Test 1

Group: 1, 2

Verdict: ACCEPTED

input
5 6 13
1 1 K
5 1 K
2 2 H
4 2 H
...

correct output
-16

user output
-16

Test 2

Group: 1, 2

Verdict: ACCEPTED

input
5 6 7
1 5 K
4 6 K
2 4 H
2 5 H
...

correct output
0

user output
0

Test 3

Group: 1, 2

Verdict: ACCEPTED

input
5 6 7
5 5 K
2 6 K
2 4 H
2 5 H
...

correct output
0

user output
0

Test 4

Group: 1, 2

Verdict: ACCEPTED

input
10 10 51
3 3 H
6 3 H
9 5 H
5 10 H
...

correct output
50

user output
50

Test 5

Group: 1, 2

Verdict: ACCEPTED

input
10 10 52
3 5 H
3 1 H
9 6 H
2 8 H
...

correct output
40

user output
40

Test 6

Group: 1, 2

Verdict: ACCEPTED

input
10 10 60
6 10 H
2 8 H
5 8 H
8 10 H
...

correct output
-15

user output
-15

Test 7

Group: 1, 2

Verdict: ACCEPTED

input
10 10 60
4 7 H
7 4 H
4 10 H
3 6 H
...

correct output
60

user output
60

Test 8

Group: 1, 2

Verdict: ACCEPTED

input
10 10 40
9 9 H
5 10 H
5 6 H
4 9 H
...

correct output
2

user output
2

Test 9

Group: 1, 2

Verdict: ACCEPTED

input
1 1 0

correct output
0

user output
0

Test 10

Group: 1, 2

Verdict: ACCEPTED

input
1 1 1
1 1 K

correct output
0

user output
0

Test 11

Group: 1, 2

Verdict: ACCEPTED

input
1 1 1
1 1 H

correct output
0

user output
0

Test 12

Group: 1, 2

Verdict: ACCEPTED

input
10 5 32
10 3 H
4 4 H
3 3 H
5 4 H
...

correct output
20

user output
20

Test 13

Group: 1, 2

Verdict: ACCEPTED

input
5 10 32
5 9 H
2 4 H
2 9 H
2 5 H
...

correct output
28

user output
28

Test 14

Group: 1, 2

Verdict: ACCEPTED

input
10 10 100
2 9 H
5 4 H
5 9 K
6 1 K
...

correct output
-439

user output
-439

Test 15

Group: 1, 2

Verdict: ACCEPTED

input
10 10 100
8 9 H
5 10 H
5 4 H
3 9 H
...

correct output
88

user output
88

Test 16

Group: 2

Verdict:

input
500 500 125000
125 261 K
84 78 K
11 200 K
481 246 K
...

correct output
-624270

user output
(empty)

Test 17

Group: 2

Verdict:

input
500 500 125100
16 61 H
37 62 H
459 125 H
318 476 H
...

correct output
124020

user output
(empty)

Test 18

Group: 2

Verdict:

input
500 500 249999
22 214 H
356 145 H
341 29 H
393 262 H
...

correct output
249999

user output
(empty)

Test 19

Group: 2

Verdict:

input
500 500 32000
30 81 H
315 34 H
78 112 H
367 166 H
...

correct output
10126

user output
(empty)

Test 20

Group: 2

Verdict:

input
500 500 126745
164 390 H
126 331 H
164 126 H
55 92 H
...

correct output
-104692

user output
(empty)

Test 21

Group: 2

Verdict:

input
500 500 71200
106 191 H
314 189 H
482 485 H
344 401 H
...

correct output
-335853

user output
(empty)

Test 22

Group: 2

Verdict:

input
500 500 67772
421 277 H
428 470 H
169 142 H
256 345 H
...

correct output
-208567

user output
(empty)

Test 23

Group: 2

Verdict:

input
500 500 27434
366 481 H
38 22 H
126 107 H
135 169 H
...

correct output
-57100

user output
(empty)

Test 24

Group: 2

Verdict:

input
500 500 93982
183 13 H
463 230 H
264 351 H
399 290 H
...

correct output
-52800

user output
(empty)