----------------------------------------------------------------------------- -- -- Module : Language.PureScript.Ide.Util -- Description : Generally useful functions and conversions -- Copyright : Christoph Hegemann 2016 -- License : MIT (http://opensource.org/licenses/MIT) -- -- Maintainer : Christoph Hegemann -- Stability : experimental -- -- | -- Generally useful functions ----------------------------------------------------------------------------- {-# LANGUAGE OverloadedStrings #-} module Language.PureScript.Ide.Util ( identifierFromIdeDeclaration , unwrapMatch , unwrapPositioned , unwrapPositionedRef , completionFromMatch , encodeT , decodeT , discardAnn , withEmptyAnn , valueOperatorAliasT , typeOperatorAliasT , module Language.PureScript.Ide.Conversions ) where import Protolude hiding (decodeUtf8, encodeUtf8) import Data.Aeson import qualified Data.Text as T import Data.Text.Lazy.Encoding (decodeUtf8, encodeUtf8) import qualified Language.PureScript as P import Language.PureScript.Ide.Types import Language.PureScript.Ide.Conversions identifierFromIdeDeclaration :: IdeDeclaration -> Text identifierFromIdeDeclaration d = case d of IdeValue name _ -> runIdentT name IdeType name _ -> runProperNameT name IdeTypeSynonym name _ -> runProperNameT name IdeDataConstructor name _ _ -> runProperNameT name IdeTypeClass name -> runProperNameT name IdeValueOperator op _ _ _ _ -> runOpNameT op IdeTypeOperator op _ _ _ _ -> runOpNameT op discardAnn :: IdeDeclarationAnn -> IdeDeclaration discardAnn (IdeDeclarationAnn _ d) = d withEmptyAnn :: IdeDeclaration -> IdeDeclarationAnn withEmptyAnn = IdeDeclarationAnn emptyAnn unwrapMatch :: Match a -> a unwrapMatch (Match (_, ed)) = ed completionFromMatch :: Match IdeDeclarationAnn -> Completion completionFromMatch (Match (m, IdeDeclarationAnn ann decl)) = Completion {..} where (complIdentifier, complExpandedType) = case decl of IdeValue name type' -> (runIdentT name, prettyTypeT type') IdeType name kind -> (runProperNameT name, toS (P.prettyPrintKind kind)) IdeTypeSynonym name kind -> (runProperNameT name, prettyTypeT kind) IdeDataConstructor name _ type' -> (runProperNameT name, prettyTypeT type') IdeTypeClass name -> (runProperNameT name, "class") IdeValueOperator op ref precedence associativity typeP -> (runOpNameT op, maybe (showFixity precedence associativity (valueOperatorAliasT ref) op) prettyTypeT typeP) IdeTypeOperator op ref precedence associativity kind -> (runOpNameT op, maybe (showFixity precedence associativity (typeOperatorAliasT ref) op) (toS . P.prettyPrintKind) kind) complModule = runModuleNameT m complType = maybe complExpandedType prettyTypeT (annTypeAnnotation ann) complLocation = annLocation ann complDocumentation = Nothing showFixity p a r o = let asso = case a of P.Infix -> "infix" P.Infixl -> "infixl" P.Infixr -> "infixr" in T.unwords [asso, show p, r, "as", runOpNameT o] valueOperatorAliasT :: P.Qualified (Either P.Ident (P.ProperName 'P.ConstructorName)) -> Text valueOperatorAliasT i = toS (P.showQualified (either P.runIdent P.runProperName) i) typeOperatorAliasT :: P.Qualified (P.ProperName 'P.TypeName) -> Text typeOperatorAliasT i = toS (P.showQualified P.runProperName i) encodeT :: (ToJSON a) => a -> Text encodeT = toS . decodeUtf8 . encode decodeT :: (FromJSON a) => Text -> Maybe a decodeT = decode . encodeUtf8 . toS unwrapPositioned :: P.Declaration -> P.Declaration unwrapPositioned (P.PositionedDeclaration _ _ x) = unwrapPositioned x unwrapPositioned x = x unwrapPositionedRef :: P.DeclarationRef -> P.DeclarationRef unwrapPositionedRef (P.PositionedDeclarationRef _ _ x) = unwrapPositionedRef x unwrapPositionedRef x = x