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deb81d4e12
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2 changed files with 15 additions and 15 deletions
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@ -5,6 +5,7 @@ module Day14 where
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import AoC
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import AoC
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import Data.Bits
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import Data.Bits
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import Data.List
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import Data.Map (Map)
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import Data.Map (Map)
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import qualified Data.Map as M
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import qualified Data.Map as M
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import Data.Maybe
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import Data.Maybe
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@ -26,7 +27,7 @@ parseMaskDecl :: ReadP Mask
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parseMaskDecl = do
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parseMaskDecl = do
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string "mask = "
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string "mask = "
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mask <- many1 (choice $ char <$> "01X")
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mask <- many1 (choice $ char <$> "01X")
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let extractMask c = foldl setBit zeroBits . map fst . filter ((==c) . snd) . enumerate 0 . reverse $ mask
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let extractMask c = foldl setBit zeroBits . findIndices (==c) . reverse $ mask
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return $ Mask { set = extractMask '1'
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return $ Mask { set = extractMask '1'
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, clear = extractMask '0'
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, clear = extractMask '0'
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, dontcare = extractMask 'X'
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, dontcare = extractMask 'X'
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@ -53,33 +53,32 @@ parseInput = do
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return $ Input {fields, myTicket, otherTickets }
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return $ Input {fields, myTicket, otherTickets }
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matchesAnyField :: [Field] -> Int -> Bool
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matchesAnyField :: [Field] -> Int -> Bool
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matchesAnyField fields n = any (n `S.member`) . map valids $ fields
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matchesAnyField fields n = any ((n `S.member`) . valids) fields
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iterateUntilDone :: (a -> Maybe a) -> a -> a
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iterateUntilNothing :: (a -> Maybe a) -> a -> a
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iterateUntilDone f x = case f x of
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iterateUntilNothing f x = maybe x (iterateUntilNothing f) $ f x
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Just x' -> iterateUntilDone f x'
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Nothing -> x
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data Resolve a = Resolved a | Choice (Set a) deriving (Show)
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data Resolve a = Resolved a | Choice (Set a) deriving (Show)
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resolve :: Ord a => [[a]] -> Maybe [a]
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resolve :: Ord a => [[a]] -> Maybe [a]
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resolve = sequence . map fromResolved . iterateUntilDone resolve' . map (Choice . S.fromList)
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resolve = sequence . map fromResolved . iterateUntilNothing resolve' . map (Choice . S.fromList)
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where fromResolved (Resolved x) = Just x
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where fromResolved (Resolved x) = Just x
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fromResolved _ = Nothing
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fromResolved _ = Nothing
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findSingletonChoice :: [Resolve a] -> Maybe (a, [Resolve a])
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findSingletonChoice :: [Resolve a] -> Maybe (a, [Resolve a])
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findSingletonChoice (c@(Choice s):xs) | S.size s == 1 = let [x] = S.elems s
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findSingletonChoice [] = Nothing
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in Just (x, Resolved x:xs)
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findSingletonChoice (x:xs) =
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| otherwise = (fmap.fmap) (c:) $ findSingletonChoice xs
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case x of
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findSingletonChoice (x:xs) = (fmap.fmap) (x:) $ findSingletonChoice xs
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Choice s | S.size s == 1 -> let [r] = S.elems s
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findSingletonChoice _ = Nothing
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in Just (r, Resolved r : xs)
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_ -> fmap (\(r, rest) -> (r, x:rest)) $ findSingletonChoice xs
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resolve' :: Ord a => [Resolve a] -> Maybe [Resolve a]
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resolve' :: Ord a => [Resolve a] -> Maybe [Resolve a]
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resolve' xs = do
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resolve' xs = do
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(x, xs') <- findSingletonChoice xs
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(r, xs') <- findSingletonChoice xs
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return $ map (dropChoice x) xs'
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return $ map (dropChoice r) xs'
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where dropChoice x (Choice s) = Choice (S.delete x s)
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where dropChoice x (Choice s) = Choice (S.delete x s)
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dropChoice _ r = r
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dropChoice _ y = y
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part1 :: Input -> Int
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part1 :: Input -> Int
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part1 Input { fields, otherTickets } = sum . filter (not . matchesAnyField fields) . concat $ otherTickets
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part1 Input { fields, otherTickets } = sum . filter (not . matchesAnyField fields) . concat $ otherTickets
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