Solve day 3 part 1
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module Puzzles.Day3 (puzzle) where
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import Data.Char (digitToInt)
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import Data.Foldable1
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import Data.List.NonEmpty (NonEmpty ((:|)), nonEmpty, some1)
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import Data.List.NonEmpty qualified as NE
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import Data.Maybe
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import Data.Text qualified as T
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import Data.Word
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import Puzzle
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import Text.Megaparsec
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import Text.Megaparsec.Char (digitChar, newline)
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puzzle :: Puzzle
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puzzle =
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Puzzle
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{ number = 3
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, parser = _
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, parser = flip sepEndBy newline $ Bank . fmap (fromIntegral . digitToInt) <$> some1 digitChar
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, parts =
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[ _
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[ T.show
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. sum
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. map (digitsToInt . fromMaybe (error "battery list too short") . maxBatteries)
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]
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}
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newtype Bank = Bank (NonEmpty Battery)
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deriving newtype (Eq, Ord, Show)
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newtype Battery = Battery Word8
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deriving newtype (Eq, Ord, Show, Num, Enum, Real, Integral)
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-- returns `Nothing` if list isn't long enough (>= 2)
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maxBatteries :: Bank -> Maybe (Battery, Battery)
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maxBatteries (Bank bs) = do
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(b1, i) <- findMax <$> nonEmpty (NE.init bs)
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bs' <- nonEmpty $ NE.drop (i + 1) bs
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let (b2, _) = findMax bs'
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pure (b1, b2)
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-- returns the leftmost element in case of a tie
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findMax :: (Ord a) => NonEmpty a -> (a, Int)
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findMax = foldl1' (\m x -> if fst x > fst m then x else m) . flip NE.zip (0 :| [1 ..])
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digitsToInt :: (Battery, Battery) -> Int
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digitsToInt (a, b) = fromIntegral $ 10 * a + b
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1
outputs/real/3/1
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1
outputs/real/3/1
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17376
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