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aleidibio.hs
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import Data.List (intercalate)
import Data.List.NonEmpty (NonEmpty ((:|)), (<|))
import qualified Data.List.NonEmpty as NE
main :: IO ()
main = interact (formatOutput . solve . parseInput)
-- helpers for parsing
splitOn' :: Char -> String -> NonEmpty String
splitOn' sep s = case s of { [] -> "" :| []; (part : remainder) -> if part == sep then "" <| splitOn' sep remainder else let head :| tail = splitOn' sep remainder in (part : head) :| tail}
splitOn :: Char -> String -> [String]
splitOn sep s = NE.toList (splitOn' sep s)
-- Define input and output here
type Input = (Int, Int, Int)
type Output = Int
formatOutput :: Output -> String
formatOutput solution = show solution ++ "\n"
parseInput :: String -> Input
parseInput rawInput =
let l = lines rawInput
in (read $ l !! 0, read $ l !! 1, read $ l !! 2)
solve :: Input -> Output
solve (a, b, c) = c - (a + b)