2020-16 part 2 in haskell
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								2020/16-Ticket_Translation/example2
									
										
									
									
									
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								2020/16-Ticket_Translation/example2
									
										
									
									
									
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					departure class: 0-1 or 4-19
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					departure row: 0-5 or 8-19
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					seat: 0-13 or 16-19
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					your ticket:
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					11,12,13
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					nearby tickets:
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					3,9,18
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					15,1,5
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					5,14,9
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								2020/16-Ticket_Translation/second.hs
									
										
									
									
									
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								2020/16-Ticket_Translation/second.hs
									
										
									
									
									
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					-- requires cabal install --lib megaparsec parser-combinators
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					module Main (main) where
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					import Control.Monad (void, when)
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					import Data.List (foldl', isPrefixOf, transpose)
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					import Data.Map qualified as M
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					import Data.Void (Void)
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					import Text.Megaparsec
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					import Text.Megaparsec.Char
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					import System.Exit (die)
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					exampleExpectedOutput = 132
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					data Range = Range { field :: String
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					                   , ll :: Int
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					                   , lh :: Int
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					                   , hl :: Int
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					                   , hh :: Int
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					                   } deriving (Show)
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					type Ticket = [Int]
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					data Input = Input { ranges :: [Range]
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					                   , myTicket :: Ticket
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					                   , nearbyTickets :: [Ticket]
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					                   } deriving (Show)
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					type Parser = Parsec Void String
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					parseInt :: Parser Int
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					parseInt = do
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					  n <- some digitChar
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					  void $ optional (char ',')
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					  return $ read n
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					parseRange :: Parser Range
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					parseRange = do
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					  f <- some (letterChar <|> char ' ')
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					  void $ string ": "
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					  ll <- parseInt
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					  void $ char '-'
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					  lh <- parseInt
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					  void $ string " or "
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					  hl <- parseInt
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					  void $ char '-'
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					  hh <- parseInt
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					  void $ char '\n'
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					  return $ Range f ll lh hl hh
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					parseTicket :: Parser Ticket
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					parseTicket = some parseInt <* char '\n'
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					parseInput' :: Parser Input
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					parseInput' = do
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					  r <- some parseRange
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					  void $ string "\nyour ticket:\n"
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					  t <- parseTicket
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					  void $ string "\nnearby tickets:\n"
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					  nts <- some parseTicket
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					  void eof
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					  return $ Input r t nts
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					parseInput :: String -> IO Input
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					parseInput filename = do
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					  input <- readFile filename
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					  case runParser parseInput' filename input of
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					    Left bundle -> die $ errorBundlePretty bundle
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					    Right ops -> return ops
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					filterInvalid :: Input -> Input
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					filterInvalid (Input ranges ticket nearbyTickets) = Input ranges ticket (foldl' compute' [] nearbyTickets)
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					  where
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					    compute' :: [Ticket] -> Ticket -> [Ticket]
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					    compute' acc nt
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					      | and $ map isValid nt = nt : acc
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					      | otherwise = acc
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					    isValid :: Int -> Bool
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					    isValid n = or $ map (isValid' n) ranges
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					    isValid' :: Int -> Range -> Bool
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					    isValid' n (Range{ll, lh, hl, hh}) = (n >= ll && n <= lh) || (n >= hl && n <= hh)
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					compute' :: Input -> Int
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					compute' Input{ranges, myTicket, nearbyTickets} = product . map (myTicket !!) . map snd . filter importantRange . snd $ iterate (potentialFieldIDsByRange, [])
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					  where
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					    importantRange :: (Range, Int) -> Bool
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					    importantRange (Range{field}, _) = isPrefixOf "departure" field
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					    nearbyTicketsByField = transpose nearbyTickets
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					    iterate :: ([(Range, [Int])], [(Range, Int)]) -> ([(Range, [Int])], [(Range, Int)])
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					    iterate ([], res) = ([], res)
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					    iterate ((r, [i]):ps, res) = iterate (map (removeID i) ps, (r, i):res)
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					    iterate (p:ps, res) = iterate (ps ++ [p], res)
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					    removeID :: Int -> (Range, [Int]) -> (Range, [Int])
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					    removeID i (r, l) = (r, filter (/= i) l)
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					    potentialFieldIDsByRange :: [(Range, [Int])]
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					    potentialFieldIDsByRange = zip ranges $ map (getMatchingFieldIDs myTicket nearbyTicketsByField) ranges
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					    getMatchingFieldIDs :: Ticket -> [Ticket] -> Range -> [Int]
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					    getMatchingFieldIDs [] [] _ = []
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					    getMatchingFieldIDs (_:ts) (fields:fieldss) range
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					      | and (map (match range) fields) = myId : getMatchingFieldIDs ts fieldss range
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					      | otherwise = getMatchingFieldIDs ts fieldss range
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					      where
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					        myId :: Int
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					        myId = (length myTicket) - (length ts) - 1
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					    match :: Range -> Int -> Bool
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					    match Range{ll, lh, hl, hh} n = (n >= ll && n <= lh) || (n >= hl && n <= hh)
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					compute :: Input -> Int
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					compute input = compute' $ filterInvalid input
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					main :: IO ()
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					main = do
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					  example <- parseInput "example2"
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					  let exampleOutput = compute example
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					  when  (exampleOutput /= exampleExpectedOutput)  (die $ "example failed: got " ++ show exampleOutput ++ " instead of " ++ show exampleExpectedOutput)
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					  input <- parseInput "input"
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					  print $ compute input
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