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Car.hs
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12
Car.hs
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import Data.Packed
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import Data.Maybe
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data Car = Car { chambers :: [Chamber] }
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data Chamber = MainChamber { upperPipe, lowerPipe :: Pipe } | AuxChamber { upperPipe, lowerPipe :: Pipe }
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data Pipe = Pipe { sections :: [Section] }
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data Section = Section { tank, inComp, outComp :: Int }
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data Fuel = Matrix Int
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110
Circuit.hs
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Circuit.hs
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import Data.Maybe
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import Text.ParserCombinators.ReadP
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import Data.List
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type Nat = Int
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gate0 :: (Nat, Nat) -> (Nat, Nat)
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gate0 (l,r) = (makef [0,2,1,1,0,2,2,1,0] (l,r), makef [2,2,2,2,0,1,2,1,0] (l,r))
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-- values for [(0,0),(0,1),(0,2),(1,0),(1,1),(1,2),(2,0),(2,1),(2,2)]
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makef l x = fromJust $ lookup x $ zip [(i,j) | i <- [0..2], j <- [0..2]] l
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data Circuit = Circuit { outPin :: Int, inPins :: [Int] } deriving (Eq)
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instance Show Circuit where
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show = showCircuit
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circfactory :: Circuit -> ([Nat], ([Nat], Nat) -> ([Nat], Nat))
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circfactory circ = (map (const 0) (inPins circ), next) where
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next (pins, inp) = (pint, if (-1 == outPin circ) then inp else pint !! (outPin circ)) where
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pint = work 0 [] pins
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work _ n [] = n
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work k n o@(a:b:t) = let (c,d) = gate0 (get k, get (k+1)) in work (k+2) (n ++ [c,d]) t where
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get x = let r = (inPins circ !! x) in if (-1 == r) then inp else (n ++ o) !! r
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showCircuit (Circuit op inpins) = (formatPin ip) ++ ":" ++ (joinWith "," (nodes inpins outpins)) ++ ":" ++ (formatPin op) where
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nodes :: [Nat] -> [Nat] -> [String]
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nodes [] [] = []
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nodes (a:b:i) (c:d:o) = ((formatPin a) ++ (formatPin b) ++ "0#" ++ (formatPin c) ++ (formatPin d)):nodes i o
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joinWith sep [] = []
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joinWith sep (x:xs) = (x ++) $ concat $ map (sep ++) xs
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(ip:outpins) = map snd $ sort $ zip (op:inpins) [-1..]
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formatPin p = if (-1 == p) then "X" else (show (p `div` 2)) ++ (if even p then "L" else "R")
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circ_from_perm (x:xs) = if (odd $ length xs) then error "Wrong pin count" else Circuit x xs
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readPlace :: ReadP Int
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readPlace = (char 'L' >> return 0) <++ (char 'R' >> return 1)
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readInt :: ReadP Int
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readInt = readS_to_P reads
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readPin :: ReadP Int
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readPin = (char 'X' >> return (-1)) <++ do
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i <- readInt
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p <- readPlace
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return $ (2*i) + p
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readNode :: ReadP [Int]
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readNode = do
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a <- readPin
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b <- readPin
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char '0'
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char '#'
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readPin
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readPin
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return [a,b]
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readNodes1 :: ReadP [Int]
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readNodes1 = (do
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char ','
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x <- readNode
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xl <- readNodes1
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return $ x ++ xl
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) <++ (return [])
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readNodes :: ReadP [Int]
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readNodes = (do
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x <- readNode
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xl <- readNodes1
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return $ x ++ xl
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) <++ (return [])
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readCircuit :: ReadP Circuit
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readCircuit = do
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readPin
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char ':'
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nodes <- readNodes
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char ':'
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outPin <- readPin
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return $ Circuit outPin nodes
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doparse p s = fst $ head $ readP_to_S p s
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parseCircuit s = doparse readCircuit s
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key_circuit = parseCircuit key_circuit_str
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key_circuit_str = "19L:12R13R0#1R12R,14R0L0#4R9L,9R10R0#3L8L,2L17R0#5L9R,15R1L0#10R13R,3L18R0#6L15L,5L11R0#13L12L,19R16R0#11R8R,2R7R0#11L10L,1R3R0#18L2L,8R4L0#16L2R,8L7L0#15R6R,6R0R0#14L0L,6L4R0#14R0R,12L13L0#17L1L,5R11L0#16R4L,10L15L0#17R7R,14L16L0#18R3R,9L17L0#19R5R,X18L0#X7L:19L"
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factory0 = parseCircuit "0L:X0R0#X0R:0L"
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execfactory :: (a, (a, Nat) -> (a, Nat)) -> [Nat] -> [Nat]
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execfactory (s, f) [] = []
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execfactory (s, f) (x:xs) = o:execfactory (t, f) xs where (t, o) = f (s, x)
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readstream :: String -> [Int]
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readstream = map (\c -> read [c] :: Int)
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input = readstream "01202101210201202"
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output = readstream "02120112100002120"
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key_input = [0,2,2,2,2,2,2,0,2,1,0,1,1,0,0,1,1]
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key = execfactory (circfactory key_circuit) key_input
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test0 = output == execfactory (circfactory factory0) input
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test_key_circ :: Circuit -> Bool
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test_key_circ circ = (key == execfactory (circfactory circ) input)
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56
circuits.txt
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56
circuits.txt
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0L:X0R0#X0R:0L
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02120112100002120
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0L:X0L0#0RX:0R
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22120221022022120
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0R:0LX0#0LX:0R
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22022022022022022
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0R:0RX0#X0L:0L
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01210221200001210
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2R:0L1L0#0L1L,0R2L0#0R2L,1RX0#1RX:2R
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22220121012022221
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0L:X1L0#X1L,0R1R0#0R1R:0L
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02012210002211022
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0R:0LX0#0LX:0R
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22022022022022022
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X::X
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01202101210201202
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0L:X0R0#0RX:0L
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checking node ( 0 , X0R0#0RX )
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inconsistent input connection
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( 0R , X , 0R )
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1R:X0R0#0RX:1R
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checking node ( 0 , X0R0#0RX )
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inconsistent input connection
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( X , 1R , 0L )
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0L:X0R0#X1R:1L
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checking node ( 0 , X0R0#X1R )
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inconsistent input connection
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( 0R , 1R , 0R )
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1L:X0R0#X1R:1L
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checking node ( 0 , X0R0#X1R )
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inconsistent input connection
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( X , 1L , 0L )
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0L:X0R0#X1R:1L
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checking node ( 0 , X0R0#X1R )
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inconsistent input connection
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( 0R , 1R , 0R )
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2L:X2R0#X2R:2L
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checking node ( 0 , X2R0#X2R )
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inconsistent input connection
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( X , 2L , 0L )
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