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Within LTS Haskell 24.36 (ghc-9.10.3)
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showsBinaryWith :: (Int -> a -> ShowS) -> (Int -> b -> ShowS) -> String -> Int -> a -> b -> ShowSbase Data.Functor.Classes showsBinaryWith sp1 sp2 n d x y produces the string representation of a binary data constructor with name n and arguments x and y, in precedence context d.
showsPrec1 :: (Show1 f, Show a) => Int -> f a -> ShowSbase Data.Functor.Classes Lift the standard showsPrec and showList functions through the type constructor.
showsPrec2 :: (Show2 f, Show a, Show b) => Int -> f a b -> ShowSbase Data.Functor.Classes Lift the standard showsPrec function through the type constructor.
showsUnary :: Show a => String -> Int -> a -> ShowSbase Data.Functor.Classes Deprecated: Use showsUnaryWith to define liftShowsPrec
showsUnary1 :: (Show1 f, Show a) => String -> Int -> f a -> ShowSbase Data.Functor.Classes Deprecated: Use showsUnaryWith to define liftShowsPrec
showsUnaryWith :: (Int -> a -> ShowS) -> String -> Int -> a -> ShowSbase Data.Functor.Classes showsUnaryWith sp n d x produces the string representation of a unary data constructor with name n and argument x, in precedence context d.
showsTypeRep :: TypeRep -> ShowSbase Data.Typeable Show a type representation
showVersion :: Version -> Stringbase Data.Version Provides one possible concrete representation for Version. For a version with versionBranch = [1,2,3] and versionTags = ["tag1","tag2"], the output will be 1.2.3-tag1-tag2.
showBin :: Integral a => a -> ShowSbase Numeric Show non-negative Integral numbers in base 2.
showEFloat :: RealFloat a => Maybe Int -> a -> ShowSbase Numeric Show a signed RealFloat value using scientific (exponential) notation (e.g. 2.45e2, 1.5e-3). In the call showEFloat digs val, if digs is Nothing, the value is shown to full precision; if digs is Just d, then at most d digits after the decimal point are shown.