mirror of
https://github.com/ilyakooo0/urbit.git
synced 2024-12-30 10:27:11 +03:00
662 lines
18 KiB
Haskell
662 lines
18 KiB
Haskell
{-# LANGUAGE TypeOperators #-}
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{-# LANGUAGE DefaultSignatures #-}
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module Noun.Poet where
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import ClassyPrelude hiding (fromList)
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import Control.Lens
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import Control.Applicative
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import Control.Monad
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import Noun
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import Noun.Atom
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import Noun.Pill
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import Data.Void
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import Data.Word
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import GHC.Natural
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import GHC.Generics hiding (from)
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import qualified GHC.Generics as GHC
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import Data.Typeable (Typeable)
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import RIO (decodeUtf8Lenient)
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import qualified Data.Char as C
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import qualified Control.Monad.Fail as Fail
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-- Types For Hoon Constructs ---------------------------------------------------
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{-|
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`Nullable a <-> ?@(~ a)`
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This is distinct from `unit`, since there is no tag on the non-atom
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case, therefore `a` must always be cell type.
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-}
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data Nullable a = Nil | NotNil a
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deriving (Eq, Ord, Show)
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newtype Tour = Tour [Char]
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deriving (Eq, Ord, Show)
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newtype Tape = Tape ByteString
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deriving newtype (Eq, Ord, Show, IsString)
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newtype Cord = Cord { unCord :: ByteString }
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deriving newtype (Eq, Ord, Show, IsString, NFData)
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-- Chars -----------------------------------------------------------------------
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instance ToNoun Char where
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toNoun = toNoun . (fromIntegral :: Int -> Word32) . C.ord
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instance FromNoun Char where
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parseNoun n = do
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w :: Word32 <- parseNoun n
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pure $ C.chr $ fromIntegral w
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-- Pretty Printing -------------------------------------------------------------
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type Tang = [Tank]
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data Tank
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= TLeaf Tape
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| TPlum Plum
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| TPalm (Tape, Tape, Tape, Tape) [Tank]
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| TRose (Tape, Tape, Tape) [Tank]
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deriving (Eq, Ord, Show)
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type Tile = Cord
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data WideFmt
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= WideFmt { delimit :: Tile, enclose :: Maybe (Tile, Tile) }
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deriving (Eq, Ord, Show)
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data TallFmt
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= TallFmt { intro :: Tile, indef :: Maybe (Tile, Tile) }
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deriving (Eq, Ord, Show)
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data PlumFmt
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= PlumFmt (Maybe WideFmt) (Maybe TallFmt)
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deriving (Eq, Ord, Show)
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data Plum
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= PAtom Cord
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| PPara Tile [Cord]
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| PTree PlumFmt [Plum]
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| PSbrk Plum
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deriving (Eq, Ord, Show)
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-- IResult ---------------------------------------------------------------------
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data IResult a = IError NounPath String | ISuccess a
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deriving (Eq, Show, Typeable, Functor, Foldable, Traversable)
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instance Applicative IResult where
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pure = ISuccess
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(<*>) = ap
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instance Fail.MonadFail IResult where
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fail err = traceM ("!" <> err <> "!") >> IError [] err
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instance Monad IResult where
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return = pure
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fail = Fail.fail
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ISuccess a >>= k = k a
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IError path err >>= _ = IError path err
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instance MonadPlus IResult where
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mzero = fail "mzero"
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mplus a@(ISuccess _) _ = a
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mplus _ b = b
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instance Alternative IResult where
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empty = mzero
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(<|>) = mplus
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instance Semigroup (IResult a) where
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(<>) = mplus
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instance Monoid (IResult a) where
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mempty = fail "mempty"
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mappend = (<>)
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-- Result ----------------------------------------------------------------------
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data Result a = Error String | Success a
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deriving (Eq, Show, Typeable, Functor, Foldable, Traversable)
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instance Applicative Result where
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pure = Success
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(<*>) = ap
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instance Fail.MonadFail Result where
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fail err = Error err
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instance Monad Result where
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return = pure
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fail = Fail.fail
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Success a >>= k = k a
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Error err >>= _ = Error err
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instance MonadPlus Result where
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mzero = fail "mzero"
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mplus a@(Success _) _ = a
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mplus _ b = b
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instance Alternative Result where
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empty = mzero
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(<|>) = mplus
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instance Semigroup (Result a) where
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(<>) = mplus
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{-# INLINE (<>) #-}
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instance Monoid (Result a) where
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mempty = fail "mempty"
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mappend = (<>)
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-- "Parser" --------------------------------------------------------------------
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type Failure f r = NounPath -> String -> f r
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type Success a f r = a -> f r
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newtype Parser a = Parser {
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runParser :: forall f r. NounPath -> Failure f r -> Success a f r -> f r
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}
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instance Monad Parser where
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m >>= g = Parser $ \path kf ks -> let ks' a = runParser (g a) path kf ks
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in runParser m path kf ks'
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return = pure
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fail = Fail.fail
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instance Fail.MonadFail Parser where
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fail msg = Parser $ \path kf _ks -> kf (reverse path) msg
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instance Functor Parser where
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fmap f m = Parser $ \path kf ks -> let ks' a = ks (f a)
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in runParser m path kf ks'
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apP :: Parser (a -> b) -> Parser a -> Parser b
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apP d e = do
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b <- d
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b <$> e
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instance Applicative Parser where
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pure a = Parser $ \_path _kf ks -> ks a
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(<*>) = apP
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instance Alternative Parser where
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empty = fail "empty"
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(<|>) = mplus
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instance MonadPlus Parser where
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mzero = fail "mzero"
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mplus a b = Parser $ \path kf ks -> let kf' _ _ = runParser b path kf ks
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in runParser a path kf' ks
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instance Semigroup (Parser a) where
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(<>) = mplus
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instance Monoid (Parser a) where
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mempty = fail "mempty"
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mappend = (<>)
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-- Conversion ------------------------------------------------------------------
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class FromNoun a where
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parseNoun :: Noun -> Parser a
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class ToNoun a where
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toNoun :: a -> Noun
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default toNoun :: (Generic a, GToNoun (Rep a)) => a -> Noun
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toNoun = genericToNoun
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-- Generic Deriving ToNoun -----------------------------------------------------
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-- TODO Handle enums
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class GToNoun f where
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gToNoun :: f a -> Noun
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genericToNoun :: (Generic a, GToNoun (Rep a)) => a -> Noun
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genericToNoun = gToNoun . GHC.from
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--------------------------------------------------------------------------------
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instance GToNoun V1 where gToNoun _ = undefined
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instance GToNoun U1 where gToNoun U1 = Atom 0
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instance ToNoun a => GToNoun (K1 i a) where
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gToNoun = toNoun . unK1
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instance (GToNoun a, GToNoun b) => GToNoun (a :*: b) where
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gToNoun (x :*: y) = Cell (gToNoun x) (gToNoun y)
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instance (GToNoun a, GToNoun b) => GToNoun (a :+: b) where
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gToNoun (L1 x) = gToNoun x
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gToNoun (R1 x) = gToNoun x
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instance GToNoun a => GToNoun (S1 c a) where
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gToNoun x = gToNoun (unM1 x)
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instance GToNoun a => GToNoun (D1 c a) where
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gToNoun x = gToNoun (unM1 x)
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instance (GToNoun f, Constructor c) => GToNoun (C1 c f) where
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gToNoun x = Cell tag val
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where tag = toNoun (hsToHoon $ conName x)
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val = gToNoun (unM1 x)
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--------------------------------------------------------------------------------
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hsToHoon :: String -> Text
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hsToHoon = go []
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where
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go acc [] = pack $ intercalate "-" $ reverse acc
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go acc (c:cs) = go (elem:acc) remain
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where
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head = C.toLower c
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(tail, remain) = break C.isUpper cs
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elem = head:tail
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-- Copy-Pasta ------------------------------------------------------------------
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class HasConstructor (f :: * -> *) where
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gConsName :: f x -> String
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instance HasConstructor f => HasConstructor (D1 c f) where
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gConsName (M1 x) = gConsName x
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instance (HasConstructor x, HasConstructor y) => HasConstructor (x :+: y) where
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gConsName (L1 l) = gConsName l
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gConsName (R1 r) = gConsName r
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instance Constructor c => HasConstructor (C1 c f) where
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gConsName x = conName x
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consName :: (HasConstructor (Rep a), Generic a) => a -> String
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consName = gConsName . GHC.from
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--------------------------------------------------------------------------------
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int2Word :: Int -> Word
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int2Word = fromIntegral
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word2Int :: Word -> Int
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word2Int = fromIntegral
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instance ToNoun ByteString where
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toNoun bs = toNoun (int2Word (length bs), bs ^. from (pill . pillBS))
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instance ToNoun Text where -- XX TODO
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toNoun t = toNoun (Cord (encodeUtf8 t))
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instance FromNoun Text where -- XX TODO
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parseNoun n = do
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Cord c <- parseNoun n
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pure (decodeUtf8Lenient c)
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instance FromNoun ByteString where
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parseNoun x = do
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(word2Int -> len, atom) <- parseNoun x
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let bs = atom ^. pill . pillBS
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pure $ case compare (length bs) len of
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EQ -> bs
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LT -> bs <> replicate (len - length bs) 0
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GT -> take len bs
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--------------------------------------------------------------------------------
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newtype Term = MkTerm Text
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deriving newtype (Eq, Ord, Show)
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instance ToNoun Term where -- XX TODO
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toNoun (MkTerm t) = toNoun (Cord (encodeUtf8 t))
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instance FromNoun Term where -- XX TODO
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parseNoun n = do
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Cord c <- parseNoun n
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pure (MkTerm (decodeUtf8Lenient c))
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--------------------------------------------------------------------------------
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newtype Knot = MkKnot Text
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deriving newtype (Eq, Ord, Show)
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instance ToNoun Knot where -- XX TODO
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toNoun (MkKnot t) = toNoun (Cord (encodeUtf8 t))
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instance FromNoun Knot where -- XX TODO
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parseNoun n = do
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Cord c <- parseNoun n
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pure (MkKnot (decodeUtf8Lenient c))
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--------------------------------------------------------------------------------
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--------------------------------------------------------------------------------
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fromNoun :: FromNoun a => Noun -> Maybe a
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fromNoun n = runParser (parseNoun n) [] onFail onSuccess
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where
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onFail p m = Nothing
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onSuccess x = Just x
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fromNounErr :: FromNoun a => Noun -> Either Text a
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fromNounErr n = runParser (parseNoun n) [] onFail onSuccess
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where
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onFail p m = Left (pack m)
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onSuccess x = Right x
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_Poet :: (ToNoun a, FromNoun a) => Prism' Noun a
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_Poet = prism' toNoun fromNoun
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-- Trivial Conversion ----------------------------------------------------------
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instance ToNoun Void where
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toNoun = absurd
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instance FromNoun Void where
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parseNoun = fail "Can't produce void"
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instance ToNoun Noun where
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toNoun = id
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instance FromNoun Noun where
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parseNoun = pure
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-- Loobean Conversion ----------------------------------------------------------
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instance ToNoun Bool where
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toNoun True = Atom 0
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toNoun False = Atom 1
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instance FromNoun Bool where
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parseNoun (Atom 0) = pure True
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parseNoun (Atom 1) = pure False
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parseNoun (Cell _ _) = fail "expecting a bool, but got a cell"
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parseNoun (Atom a) = fail ("expecting a bool, but got " <> show a)
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-- Atom Conversion -------------------------------------------------------------
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instance ToNoun Atom where
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toNoun = Atom
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instance FromNoun Atom where
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parseNoun (Cell _ _) = fail "Expecting an atom, but got a cell"
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parseNoun (Atom a) = pure a
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-- Natural Conversion-----------------------------------------------------------
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instance ToNoun Natural where toNoun = toNoun . MkAtom
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instance FromNoun Natural where parseNoun = fmap unAtom . parseNoun
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instance ToNoun Integer where
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toNoun = toNoun . (fromIntegral :: Integer -> Natural)
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instance FromNoun Integer where
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parseNoun = fmap ((fromIntegral :: Natural -> Integer) . unAtom) . parseNoun
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-- Word Conversion -------------------------------------------------------------
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atomToWord :: forall a. (Bounded a, Integral a) => Atom -> Parser a
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atomToWord atom = do
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if atom > fromIntegral (maxBound :: a)
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then fail "Atom doesn't fit in fixed-size word"
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else pure (fromIntegral atom)
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wordToNoun :: Integral a => a -> Noun
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wordToNoun = Atom . fromIntegral
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nounToWord :: forall a. (Bounded a, Integral a) => Noun -> Parser a
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nounToWord = parseNoun >=> atomToWord
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instance ToNoun Word where toNoun = wordToNoun
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instance ToNoun Word8 where toNoun = wordToNoun
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instance ToNoun Word16 where toNoun = wordToNoun
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instance ToNoun Word32 where toNoun = wordToNoun
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instance ToNoun Word64 where toNoun = wordToNoun
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instance FromNoun Word where parseNoun = nounToWord
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instance FromNoun Word8 where parseNoun = nounToWord
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instance FromNoun Word16 where parseNoun = nounToWord
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instance FromNoun Word32 where parseNoun = nounToWord
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instance FromNoun Word64 where parseNoun = nounToWord
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-- Nullable Conversion ---------------------------------------------------------
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-- TODO Consider enforcing that `a` must be a cell.
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instance ToNoun a => ToNoun (Nullable a) where
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toNoun Nil = Atom 0
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toNoun (NotNil x) = toNoun x
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instance FromNoun a => FromNoun (Nullable a) where
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parseNoun (Atom 0) = pure Nil
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parseNoun (Atom n) = fail ("Nullable: expected ?@(~ ^), but got " <> show n)
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parseNoun n = NotNil <$> parseNoun n
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-- Maybe is `unit` -------------------------------------------------------------
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-- TODO Consider enforcing that `a` must be a cell.
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instance ToNoun a => ToNoun (Maybe a) where
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toNoun Nothing = Atom 0
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toNoun (Just x) = Cell (Atom 0) (toNoun x)
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instance FromNoun a => FromNoun (Maybe a) where
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parseNoun = \case
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Atom 0 -> pure Nothing
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Atom n -> unexpected ("atom " <> show n)
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Cell (Atom 0) t -> Just <$> parseNoun t
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Cell n _ -> unexpected ("cell with head-atom " <> show n)
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where
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unexpected s = fail ("Expected unit value, but got " <> s)
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-- List Conversion -------------------------------------------------------------
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instance ToNoun a => ToNoun [a] where
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toNoun xs = fromList (toNoun <$> xs)
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instance FromNoun a => FromNoun [a] where
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parseNoun (Atom 0) = pure []
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parseNoun (Atom _) = fail "list terminated with non-null atom"
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parseNoun (Cell l r) = (:) <$> parseNoun l <*> parseNoun r
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-- Cord Conversion -------------------------------------------------------------
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instance ToNoun Cord where
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toNoun (Cord bs) = Atom (bs ^. from (pill . pillBS))
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instance FromNoun Cord where
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parseNoun n = do
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atom <- parseNoun n
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pure $ Cord (atom ^. pill . pillBS)
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-- Tank and Plum Conversion ----------------------------------------------------
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instance ToNoun WideFmt where toNoun (WideFmt x xs) = toNoun (x, xs)
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instance ToNoun TallFmt where toNoun (TallFmt x xs) = toNoun (x, xs)
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instance ToNoun PlumFmt where toNoun (PlumFmt wide tall) = toNoun (wide, tall)
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instance FromNoun WideFmt where parseNoun = fmap (uncurry WideFmt) . parseNoun
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instance FromNoun TallFmt where parseNoun = fmap (uncurry TallFmt) . parseNoun
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instance FromNoun PlumFmt where parseNoun = fmap (uncurry PlumFmt) . parseNoun
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instance ToNoun Plum where
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toNoun = \case
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PAtom cord -> toNoun cord
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PPara t cs -> toNoun (Cord "para", t, cs)
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PTree f ps -> toNoun (Cord "tree", f, ps)
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PSbrk p -> toNoun (Cord "sbrk", p)
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instance FromNoun Plum where
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parseNoun = undefined
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instance ToNoun Tank where
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toNoun = pure (Atom 0)
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instance FromNoun Tank where
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parseNoun _ = pure (TLeaf (Tape "TODO: Tank Parsing"))
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-- Pair Conversion -------------------------------------------------------------
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instance ToNoun () where
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toNoun () = Atom 0
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instance FromNoun () where
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parseNoun (Atom 0) = pure ()
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parseNoun x = fail ("expecting `~`, but got " <> showNoun x)
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instance (ToNoun a, ToNoun b) => ToNoun (a, b) where
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toNoun (x, y) = Cell (toNoun x) (toNoun y)
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instance (FromNoun a, FromNoun b) => FromNoun (a, b) where
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parseNoun (Atom n) = fail ("expected a cell, but got an atom: " <> show n)
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parseNoun (Cell l r) = (,) <$> parseNoun l <*> parseNoun r
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-- Trel Conversion -------------------------------------------------------------
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instance (ToNoun a, ToNoun b, ToNoun c) => ToNoun (a, b, c) where
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toNoun (x, y, z) = toNoun (x, (y, z))
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instance (FromNoun a, FromNoun b, FromNoun c) => FromNoun (a, b, c) where
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parseNoun n = do
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(x, t) <- parseNoun n
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(y, z) <- parseNoun t
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pure (x, y, z)
|
|
|
|
|
|
-- Quad Conversion -------------------------------------------------------------
|
|
|
|
instance (ToNoun a, ToNoun b, ToNoun c, ToNoun d) => ToNoun (a, b, c, d) where
|
|
toNoun (p, q, r, s) = toNoun (p, (q, r, s))
|
|
|
|
instance (FromNoun a, FromNoun b, FromNoun c, FromNoun d)
|
|
=> FromNoun (a, b, c, d)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s) <- parseNoun tail
|
|
pure (p, q, r, s)
|
|
|
|
|
|
-- Pent Conversion ------------------------------------------------------------
|
|
|
|
instance (ToNoun a, ToNoun b, ToNoun c, ToNoun d, ToNoun e)
|
|
=> ToNoun (a, b, c, d, e) where
|
|
toNoun (p, q, r, s, t) = toNoun (p, (q, r, s, t))
|
|
|
|
instance (FromNoun a, FromNoun b, FromNoun c, FromNoun d, FromNoun e)
|
|
=> FromNoun (a, b, c, d, e)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s, t) <- parseNoun tail
|
|
pure (p, q, r, s, t)
|
|
|
|
|
|
-- Sext Conversion ------------------------------------------------------------
|
|
|
|
instance (ToNoun a, ToNoun b, ToNoun c, ToNoun d, ToNoun e, ToNoun f)
|
|
=> ToNoun (a, b, c, d, e, f) where
|
|
toNoun (p, q, r, s, t, u) = toNoun (p, (q, r, s, t, u))
|
|
|
|
instance ( FromNoun a, FromNoun b, FromNoun c, FromNoun d, FromNoun e
|
|
, FromNoun f
|
|
)
|
|
=> FromNoun (a, b, c, d, e, f)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s, t, u) <- parseNoun tail
|
|
pure (p, q, r, s, t, u)
|
|
|
|
instance ( FromNoun a, FromNoun b, FromNoun c, FromNoun d, FromNoun e
|
|
, FromNoun f, FromNoun g
|
|
)
|
|
=> FromNoun (a, b, c, d, e, f, g)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s, t, u, v) <- parseNoun tail
|
|
pure (p, q, r, s, t, u, v)
|
|
|
|
instance ( FromNoun a, FromNoun b, FromNoun c, FromNoun d, FromNoun e
|
|
, FromNoun f, FromNoun g, FromNoun h
|
|
)
|
|
=> FromNoun (a, b, c, d, e, f, g, h)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s, t, u, v, w) <- parseNoun tail
|
|
pure (p, q, r, s, t, u, v, w)
|
|
|
|
instance ( FromNoun a, FromNoun b, FromNoun c, FromNoun d, FromNoun e
|
|
, FromNoun f, FromNoun g, FromNoun h, FromNoun i
|
|
)
|
|
=> FromNoun (a, b, c, d, e, f, g, h, i)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s, t, u, v, w, x) <- parseNoun tail
|
|
pure (p, q, r, s, t, u, v, w, x)
|
|
|
|
instance ( FromNoun a, FromNoun b, FromNoun c, FromNoun d, FromNoun e
|
|
, FromNoun f, FromNoun g, FromNoun h, FromNoun i, FromNoun j
|
|
)
|
|
=> FromNoun (a, b, c, d, e, f, g, h, i, j)
|
|
where
|
|
parseNoun n = do
|
|
(p, tail) <- parseNoun n
|
|
(q, r, s, t, u, v, w, x, y) <- parseNoun tail
|
|
pure (p, q, r, s, t, u, v, w, x, y)
|
|
|
|
|
|
-- This Shouldn't Be Here ------------------------------------------------------
|
|
|
|
showAtom :: Atom -> String
|
|
showAtom 0 = "0"
|
|
showAtom a =
|
|
let mTerm = do
|
|
t <- fromNoun (Atom a)
|
|
let ok = \x -> (x=='-' || C.isAlphaNum x)
|
|
guard (all ok (t :: Text))
|
|
pure ("%" <> unpack t)
|
|
|
|
in case mTerm of
|
|
Nothing -> show a
|
|
Just st -> st
|
|
|
|
showNoun :: Noun -> String
|
|
showNoun = \case
|
|
Atom a -> showAtom a
|
|
Cell x y -> fmtCell (showNoun <$> (x : toTuple y))
|
|
where
|
|
fmtCell :: [String] -> String
|
|
fmtCell xs = "[" <> intercalate " " xs <> "]"
|
|
|
|
pPrintAtom :: Atom -> IO ()
|
|
pPrintAtom = putStrLn . pack . showAtom
|
|
|
|
pPrintNoun :: Noun -> IO ()
|
|
pPrintNoun = putStrLn . pack . showNoun
|