day3: Complete the second puzzle

AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAH
main
Tristan Daniël Maat 2021-12-04 00:56:51 +00:00
parent b13c001634
commit 1b7f5d83a0
Signed by: tlater
GPG Key ID: 49670FD774E43268
1 changed files with 30 additions and 7 deletions

View File

@ -1,23 +1,33 @@
import Control.Exception (assert)
import Data.Bits (bit)
import Data.Char (digitToInt)
import Data.List (group, maximumBy, minimumBy, sort,
transpose)
import Data.List (group, intersect, maximumBy, minimumBy,
sort, transpose)
import Data.Ord (comparing)
main :: IO ()
main = do
diagnostics <- getContents
putStrLn (solution1 diagnostics)
putStrLn (solution2 diagnostics)
solution1 :: String -> String
solution1 diagnostics = show (calcGamma * calcEpsilon)
where
calcGamma = listToBit (map most (parseDiagnostics diagnostics))
calcEpsilon = listToBit (map least (parseDiagnostics diagnostics))
calcGamma = listToBit (map most (transpose (parseDiagnostics diagnostics)))
calcEpsilon = listToBit (map least (transpose (parseDiagnostics diagnostics)))
solution2 :: String -> String
solution2 diagnostics = show (calcOxygen * calcCO2)
where
calcOxygen = listToBit (head (filterForLife most (parseDiagnostics diagnostics)))
calcCO2 = listToBit (head (filterForLife least (parseDiagnostics diagnostics)))
parseDiagnostics :: String -> [[Int]]
parseDiagnostics diagnostics = map (map digitToInt) (transpose (lines diagnostics))
parseDiagnostics diagnostics = map (map digitToInt) (lines diagnostics)
enumerate :: [a] -> [(Int, a)]
enumerate = zip [0..]
most :: [Int] -> Int
most = head . (maximumBy (comparing length)) . group . sort
@ -34,8 +44,18 @@ listToBit list = foldr (\b acc -> (acc + toBit b)) 0 (enumerate (reverse list))
toBit (i, b) = if b == 1
then bit i
else 0
enumerate :: [a] -> [(Int, a)]
enumerate = zip [0..]
filterForLife :: ([Int] -> Int) -> [[Int]] -> [[Int]]
filterForLife targetFilter list = foldl (filterNext) list [0..length(head list)-1]
where
filterNext :: [[Int]] -> Int-> [[Int]]
filterNext acc i = acc `intersect` filterIndex targetFilter acc i
filterIndex :: ([Int] -> Int) -> [[Int]] -> Int -> [[Int]]
filterIndex targetFilter list index = filter ((==filterTarget) . (!! index)) list
where
filterTarget :: Int
filterTarget = targetFilter ((transpose list) !! index)
-- Tests
@ -57,3 +77,6 @@ testInput1 = unlines [
test1 :: String
test1 = assert ((solution1 testInput1) == "198") "success"
test2 :: String
test2 = assert ((solution2 testInput1) == "230") "success"