184 lines
5.0 KiB
Haskell
184 lines
5.0 KiB
Haskell
{-# OPTIONS_GHC -fno-warn-orphans #-}
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{-# LANGUAGE UndecidableInstances #-}
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{-# LANGUAGE AllowAmbiguousTypes #-}
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{-# LANGUAGE PatternSynonyms #-}
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{-# LANGUAGE ScopedTypeVariables #-}
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module Data.Config.Suckless.Syntax
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( Syntax(..)
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, Id(..)
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, Literal(..)
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, HasContext
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, C(..)
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, Context(..)
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, IsContext(..)
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, IsLiteral(..)
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, pattern SymbolVal
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, pattern ListVal
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, pattern LitIntVal
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, pattern LitStrVal
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, pattern LitBoolVal
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, pattern LitScientificVal
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)
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where
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import Data.Data
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import Data.Kind
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import Data.String
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import Data.Text (Text)
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import Data.Scientific
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import GHC.Generics (Generic(..))
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import Data.Maybe
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-- import GHC.Generics( Fixity(..) )
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-- import Data.Data as Data
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import Data.Aeson
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import Data.Aeson.Key
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import Data.Aeson.KeyMap qualified as Aeson
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import Data.Vector qualified as V
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import Data.Traversable (forM)
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import Prettyprinter
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pattern SymbolVal :: Id -> Syntax c
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pattern SymbolVal v <- Symbol _ v
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-- pattern LitVal :: forall {c}. Id -> Li
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pattern LitIntVal :: Integer -> Syntax c
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pattern LitIntVal v <- Literal _ (LitInt v)
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pattern LitScientificVal :: Scientific -> Syntax c
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pattern LitScientificVal v <- Literal _ (LitScientific v)
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pattern LitStrVal :: Text -> Syntax c
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pattern LitStrVal v <- Literal _ (LitStr v)
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pattern LitBoolVal :: Bool -> Syntax c
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pattern LitBoolVal v <- Literal _ (LitBool v)
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pattern ListVal :: [Syntax c] -> Syntax c
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pattern ListVal v <- List _ v
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data family Context c :: Type
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class IsContext c where
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noContext :: Context c
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data instance Context () = EmptyContext
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instance IsContext () where
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noContext = EmptyContext
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class HasContext c a where
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class IsLiteral a where
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mkLit :: a -> Literal
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newtype Id =
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Id Text
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deriving newtype (IsString,Pretty)
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deriving stock (Data,Generic,Show,Eq,Ord)
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data Literal =
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LitStr Text
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| LitInt Integer
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| LitScientific Scientific
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| LitBool Bool
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deriving stock (Eq,Ord,Data,Generic,Show)
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instance IsLiteral Text where
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mkLit = LitStr
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instance IsLiteral Bool where
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mkLit = LitBool
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instance IsLiteral Integer where
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mkLit = LitInt
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data C = C
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deriving stock (Eq,Ord,Show,Data,Typeable,Generic)
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-- simple, yet sufficient context
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-- Integer may be offset, maybe line number,
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-- token number, whatever
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-- it's up to parser to use this context for
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-- error printing, etc
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newtype instance (Context C) =
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SimpleContext { fromSimpleContext :: Maybe Integer }
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deriving stock (Eq,Ord,Show,Data,Typeable,Generic)
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instance IsContext C where
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noContext = SimpleContext Nothing
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data Syntax c
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= List (Context c) [Syntax c]
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| Symbol (Context c) Id
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| Literal (Context c) Literal
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deriving stock (Generic,Typeable)
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instance Eq (Syntax c) where
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(==) (Literal _ a) (Literal _ b) = a == b
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(==) (Symbol _ a) (Symbol _ b) = a == b
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(==) (List _ a) (List _ b) = a == b
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(==) _ _ = False
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deriving instance (Data c, Data (Context c)) => Data (Syntax c)
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instance Pretty (Syntax c) where
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pretty (Literal _ ast) = pretty ast
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pretty (Symbol _ s) = pretty s
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pretty (List _ (x:xs)) = parens $ align $ sep ( fmap pretty (x:xs) )
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pretty (List _ []) = parens mempty
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instance Pretty Literal where
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pretty = \case
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LitStr s -> dquotes (pretty s)
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LitInt i -> pretty i
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LitScientific v -> viaShow v
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LitBool b | b -> "#t"
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| otherwise -> "#f"
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instance ToJSON Literal where
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toJSON (LitStr s) = String s
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toJSON (LitInt i) = Number (fromInteger i)
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toJSON (LitScientific s) = Number s
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toJSON (LitBool b) = Bool b
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instance ToJSON (Syntax c) where
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toJSON (Symbol _ (Id "#nil")) = Null
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toJSON (Symbol _ (Id s)) = String s
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toJSON (Literal _ l) = toJSON l
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toJSON (List _ items) =
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case items of
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(Symbol _ "object" : rest) ->
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object $ mapMaybe pairToKeyValue rest
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_ -> Array . V.fromList $ fmap toJSON items
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where
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pairToKeyValue :: Syntax c -> Maybe (Key, Value)
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pairToKeyValue (List _ [SymbolVal (Id k), SymbolVal ":", v]) = Just (fromText k .= toJSON v)
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pairToKeyValue (List _ [LitStrVal k, SymbolVal ":", v]) = Just (fromText k .= toJSON v)
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pairToKeyValue _ = Nothing
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instance IsContext c => FromJSON (Syntax c) where
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parseJSON (String t) = pure $ Literal noContext (LitStr t)
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parseJSON (Number n)
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| isInteger n = pure $ Literal noContext (LitInt (floor n))
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| otherwise = pure $ Literal noContext (LitScientific n)
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parseJSON (Bool b) = pure $ Literal noContext (LitBool b)
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parseJSON (Array a) = List noContext <$> mapM parseJSON (V.toList a)
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parseJSON (Object o) = do
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pairs <- forM (Aeson.toList o) $ \(key, value) -> do
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valueSyntax <- parseJSON value
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pure $ List noContext [ Symbol noContext (Id (toText key))
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, Symbol noContext ":"
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, valueSyntax
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]
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pure $ List noContext (Symbol noContext (Id "object") : pairs)
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parseJSON _ = fail "Cannot parse JSON to Syntax"
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