CSES - Datatähti 2025 alku - Results
Submission details
Task:Robotti
Sender:Onni
Submission time:2024-10-29 21:22:37 +0200
Language:Rust (2021)
Status:READY
Result:100
Feedback
groupverdictscore
#1ACCEPTED30
#2ACCEPTED70
Test results
testverdicttimegroup
#1ACCEPTED0.00 s1, 2details
#2ACCEPTED0.00 s1, 2details
#3ACCEPTED0.00 s1, 2details
#4ACCEPTED0.00 s1, 2details
#5ACCEPTED0.00 s1, 2details
#6ACCEPTED0.00 s1, 2details
#7ACCEPTED0.00 s1, 2details
#8ACCEPTED0.00 s1, 2details
#9ACCEPTED0.00 s1, 2details
#10ACCEPTED0.00 s1, 2details
#11ACCEPTED0.00 s1, 2details
#12ACCEPTED0.00 s2details
#13ACCEPTED0.00 s2details
#14ACCEPTED0.00 s2details
#15ACCEPTED0.00 s2details
#16ACCEPTED0.00 s2details
#17ACCEPTED0.00 s2details
#18ACCEPTED0.00 s2details
#19ACCEPTED0.01 s2details
#20ACCEPTED0.01 s2details
#21ACCEPTED0.00 s2details
#22ACCEPTED0.00 s2details
#23ACCEPTED0.01 s2details
#24ACCEPTED0.01 s2details

Code

use std::io::{ self, BufRead };
fn main() {
let stdin = io::stdin();
let mut lines = stdin.lock().lines();
let _ = lines.next().unwrap().unwrap().trim();
let building: Vec<char> = lines.next().unwrap().unwrap().chars().collect();
let mut robot_pos = 0;
let mut coins_collected = 0;
let mut steps = 0;
for (i, &c) in building.iter().enumerate() {
if c == 'R' {
robot_pos = i;
break;
}
}
let coin_positions: Vec<usize> = building
.iter()
.enumerate()
.filter_map(|(i, &c)| if c == '*' { Some(i) } else { None })
.collect();
let mut left_index = coin_positions
.iter()
.position(|&pos| pos > robot_pos)
.unwrap_or(coin_positions.len());
let mut right_index = left_index;
while left_index > 0 || right_index < coin_positions.len() {
let left_distance = if left_index > 0 {
Some(robot_pos - coin_positions[left_index - 1])
} else {
None
};
let right_distance = if right_index < coin_positions.len() {
Some(coin_positions[right_index] - robot_pos)
} else {
None
};
match (left_distance, right_distance) {
(Some(ld), Some(rd)) => {
if ld < rd {
robot_pos = coin_positions[left_index - 1];
left_index -= 1;
steps += ld;
} else if rd < ld {
robot_pos = coin_positions[right_index];
right_index += 1;
steps += rd;
} else {
break;
}
}
(Some(ld), None) => {
robot_pos = coin_positions[left_index - 1];
left_index -= 1;
steps += ld;
}
(None, Some(rd)) => {
robot_pos = coin_positions[right_index];
right_index += 1;
steps += rd;
}
(None, None) => {
break;
}
}
coins_collected += 1;
}
println!("{} {}", steps, coins_collected);
}

Test details

Test 1

Group: 1, 2

Verdict: ACCEPTED

input
1
R

correct output
0 0

user output
0 0

Test 2

Group: 1, 2

Verdict: ACCEPTED

input
10
...R......

correct output
0 0

user output
0 0

Test 3

Group: 1, 2

Verdict: ACCEPTED

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

correct output
12 5

user output
12 5

Test 4

Group: 1, 2

Verdict: ACCEPTED

input
10
***R******

correct output
0 0

user output
0 0

Test 5

Group: 1, 2

Verdict: ACCEPTED

input
1000
R................................

correct output
947 9

user output
947 9

Test 6

Group: 1, 2

Verdict: ACCEPTED

input
1000
.................................

correct output
886 9

user output
886 9

Test 7

Group: 1, 2

Verdict: ACCEPTED

input
1000
.....*..*....**..**..*......*....

correct output
1287 400

user output
1287 400

Test 8

Group: 1, 2

Verdict: ACCEPTED

input
1000
************.*****************...

correct output
0 0

user output
0 0

Test 9

Group: 1, 2

Verdict: ACCEPTED

input
1000
******************************...

correct output
0 0

user output
0 0

Test 10

Group: 1, 2

Verdict: ACCEPTED

input
1000
R*****************************...

correct output
999 999

user output
999 999

Test 11

Group: 1, 2

Verdict: ACCEPTED

input
1000
******************************...

correct output
999 999

user output
999 999

Test 12

Group: 2

Verdict: ACCEPTED

input
10000
.......**........*...........*...

correct output
10971 999

user output
10971 999

Test 13

Group: 2

Verdict: ACCEPTED

input
10000
*..*....*......*.....*..*........

correct output
9999 999

user output
9999 999

Test 14

Group: 2

Verdict: ACCEPTED

input
10000
*.*.*...**.*...*....**.**.**.....

correct output
18766 5000

user output
18766 5000

Test 15

Group: 2

Verdict: ACCEPTED

input
10000
R*****************************...

correct output
9999 9999

user output
9999 9999

Test 16

Group: 2

Verdict: ACCEPTED

input
10000
******************************...

correct output
9999 9999

user output
9999 9999

Test 17

Group: 2

Verdict: ACCEPTED

input
200000
.................................

correct output
0 0

user output
0 0

Test 18

Group: 2

Verdict: ACCEPTED

input
200000
.................................

correct output
299934 10000

user output
299934 10000

Test 19

Group: 2

Verdict: ACCEPTED

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

correct output
299998 100000

user output
299998 100000

Test 20

Group: 2

Verdict: ACCEPTED

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

correct output
0 0

user output
0 0

Test 21

Group: 2

Verdict: ACCEPTED

input
200000
R................................

correct output
133765 3

user output
133765 3

Test 22

Group: 2

Verdict: ACCEPTED

input
200000
R................................

correct output
199982 5000

user output
199982 5000

Test 23

Group: 2

Verdict: ACCEPTED

input
200000
R*****************************...

correct output
199999 199999

user output
199999 199999

Test 24

Group: 2

Verdict: ACCEPTED

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

correct output
199999 199999

user output
199999 199999