Submission details
Task:Tulkki
Sender:jokeri2222
Submission time:2025-11-04 14:28:37 +0200
Language:Python3 (CPython3)
Status:READY
Result:44
Feedback
groupverdictscore
#1ACCEPTED12
#2ACCEPTED32
#30
Test results
testverdicttimegroup
#1ACCEPTED0.02 s1, 2, 3details
#2ACCEPTED0.02 s1, 2, 3details
#3ACCEPTED0.02 s1, 2, 3details
#4ACCEPTED0.02 s1, 2, 3details
#5ACCEPTED0.03 s1, 2, 3details
#6ACCEPTED0.03 s1, 2, 3details
#7ACCEPTED0.02 s2, 3details
#8ACCEPTED0.02 s2, 3details
#9ACCEPTED0.02 s2, 3details
#10ACCEPTED0.02 s2, 3details
#11ACCEPTED0.02 s2, 3details
#12ACCEPTED0.02 s2, 3details
#13ACCEPTED0.02 s3details
#14ACCEPTED0.02 s3details
#15--3details
#16ACCEPTED0.04 s3details
#17--3details
#18--3details

Code

nth_index = lambda l, item, n: [idx for idx, elem in enumerate(l) if elem == item][n-1]

program = []
commands = [
    "PRINT",
    "CLEAR",
    "INCREASE",
    "REPEAT"
]

for i in range(1000):
    try:
        _input = input().replace("TIMES", "")
    except:
        break
    if _input == "\\r":
        break
    sub_prog = list(filter(lambda s: s, _input.split("#")[0].split(" ")))
    if sub_prog:
        program.extend(sub_prog)


stack = []
counter = 0
for i, sub in enumerate(program):
    if sub == "(":
        stack.append(f"({counter}")
        counter+=1
    if sub == ")":
        loop_start_idx = nth_index(program, "(", len(stack))
        loop_start = stack.pop(-1)
        program[loop_start_idx]=loop_start
        program[i]=f"){loop_start[1:]}"


output = []
VARS = {}
def CLEAR(_, var, _2):
    VARS[var]=0
    return _
def INCREASE(_, var, _2):
    VARS[var]+=1
    return _
def PRINT(_, var, _2):
    output.append(VARS[var])
    return _
def REPEAT(index_of_code, var_times, _loop_idx):
    _command_used = ""
    _end_idx = program.index(f"){_loop_idx}")
    for _ in range(VARS[var_times]):
        _next_idx = index_of_code
        for _i, _sub in enumerate(program[index_of_code:_end_idx+1]):
            _i+=index_of_code
            if _i < _next_idx:
                continue
            if _command_used:
                if _sub not in VARS.keys():
                    VARS[_sub] = 0
                next_loop_idx=_loop_idx
                if _command_used == "REPEAT":
                    next_loop_idx = int(program[_i + 1][1:])
                _next_idx = eval(f"{_command_used}({_i+1}, '{_sub}', {next_loop_idx})")
                _command_used = ""
            if _sub in commands:
                _command_used = _sub

    return _end_idx+1

command_used = ""
next_idx = -1
loop_idx = 0
for i, sub in enumerate(program):
    if i<next_idx:
        continue
    if command_used:
        if sub not in VARS.keys():
            VARS[sub] = 0
        if command_used=="REPEAT":
            loop_idx = int(program[i+1][1:])
        next_idx = eval(f"{command_used}({i+1}, '{sub}', {loop_idx})")
        command_used=""
    if sub in commands:
        command_used = sub

print(" ".join(map(str, output)))

Test details

Test 1 (public)

Group: 1, 2, 3

Verdict: ACCEPTED

input
PRINT X
INCREASE X
PRINT X
INCREASE X
PRINT X
...

correct output
0 1 2 0 

user output
0 1 2 0

Test 2 (public)

Group: 1, 2, 3

Verdict: ACCEPTED

input
INCREASE
X
# aybabtu
   PRINT    X
INCREASE # test
...

correct output
1 3 

user output
1 3

Test 3 (public)

Group: 1, 2, 3

Verdict: ACCEPTED

input
# Create number 3
INCREASE X
INCREASE X
INCREASE X

...

correct output

user output
3

Test 4 (public)

Group: 1, 2, 3

Verdict: ACCEPTED

input
INCREASE A
PRINT A
INCREASE B
PRINT B
INCREASE C
...

correct output
1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 ...

user output
1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 ...

Test 5 (public)

Group: 1, 2, 3

Verdict: ACCEPTED

input
INCREASE X
INCREASE X
INCREASE X
INCREASE X
INCREASE X
...

correct output
999 

user output
999

Test 6 (public)

Group: 1, 2, 3

Verdict: ACCEPTED

input
PRINT X
PRINT X
PRINT X
PRINT X
PRINT X
...

correct output
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 ...

user output
0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 ...

Test 7 (public)

Group: 2, 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
5 5 5 5 5 

user output
5 5 5 5 5

Test 8 (public)

Group: 2, 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
0 0 0 0 0 

user output
0 0 0 0 0

Test 9 (public)

Group: 2, 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
6 7 8 9 10 

user output
6 7 8 9 10

Test 10 (public)

Group: 2, 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
5 5 

user output
5 5

Test 11 (public)

Group: 2, 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
20 

user output
20

Test 12 (public)

Group: 2, 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A

INCREASE B
INCREASE B
...

correct output
42 

user output
42

Test 13 (public)

Group: 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
1 2 2 3 3 3 4 4 4 4 5 5 5 5 5 

user output
1 2 2 3 3 3 4 4 4 4 5 5 5 5 5

Test 14 (public)

Group: 3

Verdict: ACCEPTED

input
# Create number 3
INCREASE A INCREASE A INCREASE...

correct output
12 

user output
12

Test 15 (public)

Group: 3

Verdict:

input
INCREASE X
INCREASE X
INCREASE X
INCREASE X
INCREASE X
...

correct output
531441 

user output
(empty)

Test 16 (public)

Group: 3

Verdict: ACCEPTED

input
INCREASE A
INCREASE A
INCREASE A
INCREASE A
INCREASE A
...

correct output
1337 

user output
1337

Test 17 (public)

Group: 3

Verdict:

input
INCREASE A
INCREASE A

REPEAT A TIMES (
    REPEAT A TIMES (
...

correct output
1 2 1 2 1 1 3 4 3 4 3 4 3 4 3 ...

user output
(empty)

Test 18 (public)

Group: 3

Verdict:

input
# Efficient algorithm for find...

correct output
2 3 5 7 11 13 17 19 23 29 31 3...

user output
(empty)