265 lines
6.2 KiB
Idris
265 lines
6.2 KiB
Idris
module Quox.Pretty
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import Quox.Name
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import public Text.PrettyPrint.Prettyprinter.Doc
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import Text.PrettyPrint.Prettyprinter.Render.String
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import Text.PrettyPrint.Prettyprinter.Render.Terminal
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import public Data.String
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import Data.DPair
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import Data.SnocList
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import public Control.Monad.Identity
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import public Control.Monad.Reader
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import Derive.Prelude
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%default total
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%language ElabReflection
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%hide TT.Name
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public export
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record PrettyOpts where
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constructor MakePrettyOpts
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unicode, color : Bool
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public export
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defPrettyOpts : PrettyOpts
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defPrettyOpts = MakePrettyOpts {unicode = True, color = True}
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public export
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data HL
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= Delim
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| Free | TVar | TVarErr
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| Dim | DVar | DVarErr
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| Qty
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| Syntax
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| Tag
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%runElab derive "HL" [Eq, Ord, Show]
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public export
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data PPrec
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= Outer
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| AnnR -- right of "∷"
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| AnnL -- left of "∷"
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| Eq -- "_ ≡ _ : _"
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| InEq -- arguments of ≡
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| Times -- "_ × _"
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| InTimes -- arguments of ×
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-- ...
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| App -- term/dimension application
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| SApp -- substitution application
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| Arg -- argument to nonfix function
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%runElab derive "PPrec" [Eq, Ord, Show]
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export %inline
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hl : HL -> Doc HL -> Doc HL
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hl = annotate
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export %inline
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hl' : HL -> Doc HL -> Doc HL
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hl' h = hl h . unAnnotate
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export %inline
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hlF : Functor f => HL -> f (Doc HL) -> f (Doc HL)
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hlF = map . hl
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export %inline
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hlF' : Functor f => HL -> f (Doc HL) -> f (Doc HL)
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hlF' = map . hl'
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export %inline
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delims : Doc HL -> Doc HL -> Doc HL -> Doc HL
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delims l r doc = hl Delim l <+> doc <+> hl Delim r
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export %inline
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parens : Doc HL -> Doc HL
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parens = delims "(" ")"
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export %inline
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bracks : Doc HL -> Doc HL
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bracks = delims "[" "]"
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||| includes spaces inside the braces
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export %inline
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braces : Doc HL -> Doc HL
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braces doc = hl Delim "{" <++> doc <++> hl Delim "}"
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export %inline
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parensIf : Bool -> Doc HL -> Doc HL
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parensIf True = parens
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parensIf False = id
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export %inline
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comma : Doc HL
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comma = hl Delim ","
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export %inline
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asep : List (Doc a) -> Doc a
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asep = align . sep
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export
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separate' : Doc a -> List (Doc a) -> List (Doc a)
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separate' s [] = []
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separate' s [x] = [x]
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separate' s (x :: xs) = x <+> s :: separate' s xs
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export %inline
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separate : Doc a -> List (Doc a) -> Doc a
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separate s = sep . separate' s
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export %inline
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hseparate : Doc a -> List (Doc a) -> Doc a
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hseparate s = hsep . separate' s
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export %inline
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vseparate : Doc a -> List (Doc a) -> Doc a
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vseparate s = vsep . separate' s
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export %inline
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aseparate : Doc a -> List (Doc a) -> Doc a
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aseparate s = align . separate s
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public export
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record PrettyEnv where
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constructor MakePrettyEnv
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||| names of bound dimension variables
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dnames : SnocList BaseName
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||| names of bound term variables
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tnames : SnocList BaseName
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||| use non-ascii characters for syntax
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unicode : Bool
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||| surrounding precedence level
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prec : PPrec
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public export
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HasEnv : (Type -> Type) -> Type
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HasEnv = MonadReader PrettyEnv
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export %inline
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ifUnicode : HasEnv m => (uni, asc : Lazy a) -> m a
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ifUnicode uni asc = if (!ask).unicode then [|uni|] else [|asc|]
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export %inline
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parensIfM : HasEnv m => PPrec -> Doc HL -> m (Doc HL)
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parensIfM d doc = pure $ parensIf ((!ask).prec > d) doc
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export %inline
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withPrec : HasEnv m => PPrec -> m a -> m a
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withPrec d = local {prec := d}
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public export data BinderSort = T | D
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export %inline
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unders : HasEnv m => BinderSort -> SnocList BaseName -> m a -> m a
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unders T xs = local {prec := Outer, tnames $= (++ xs)}
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unders D xs = local {prec := Outer, dnames $= (++ xs)}
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export %inline
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under : HasEnv m => BinderSort -> BaseName -> m a -> m a
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under t x = unders t [< x]
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public export
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interface PrettyHL a where
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prettyM : HasEnv m => a -> m (Doc HL)
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export %inline
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pretty0M : (PrettyHL a, HasEnv m) => a -> m (Doc HL)
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pretty0M = local {prec := Outer} . prettyM
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export %inline
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runPrettyWith : (unicode : Bool) -> (dnames, tnames : SnocList BaseName) ->
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Reader PrettyEnv a -> a
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runPrettyWith unicode dnames tnames act =
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let env = MakePrettyEnv {dnames, tnames, unicode, prec = Outer} in
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runReader env act
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export %inline
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runPretty : (unicode : Bool) -> Reader PrettyEnv a -> a
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runPretty unicode = runPrettyWith unicode [<] [<]
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export %inline
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pretty0With : PrettyHL a => (unicode : Bool) ->
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(dnames, tnames : SnocList BaseName) ->
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a -> Doc HL
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pretty0With {unicode, dnames, tnames} =
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runPrettyWith {unicode, dnames, tnames} . prettyM
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export %inline
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pretty0 : PrettyHL a => (unicode : Bool) -> a -> Doc HL
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pretty0 unicode = pretty0With unicode [<] [<]
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export
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(forall a. PrettyHL (f a)) => PrettyHL (Exists f) where
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prettyM x = prettyM x.snd
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export
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PrettyHL a => PrettyHL (Subset a b) where
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prettyM x = prettyM x.fst
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export PrettyHL BaseName where prettyM = pure . pretty . baseStr
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export PrettyHL Name where prettyM = pure . pretty . toDots
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export
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nameSeq : HL -> List Name -> Doc HL
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nameSeq h = hl h . asep . map (pretty0 False)
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export %inline
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prettyStr : PrettyHL a => (unicode : Bool) -> a -> String
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prettyStr unicode =
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let layout = layoutSmart (MkLayoutOptions (AvailablePerLine 80 0.8)) in
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renderString . layout . pretty0 unicode
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export
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termHL : HL -> AnsiStyle
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termHL Delim = neutral
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termHL TVar = color BrightYellow
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termHL TVarErr = color BrightYellow <+> underline
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termHL Dim = color BrightGreen
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termHL DVar = color BrightGreen
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termHL DVarErr = color BrightGreen <+> underline
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termHL Qty = color BrightMagenta
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termHL Free = color BrightBlue
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termHL Syntax = color BrightCyan
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termHL Tag = color BrightRed
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export %inline
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prettyIO : PrettyOpts -> PrettyHL a => a -> IO Unit
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prettyIO opts x =
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let reann = if opts.color then map termHL else unAnnotate in
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Terminal.putDoc $ reann $ pretty0 opts.unicode x
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export %inline
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prettyIODef : PrettyHL a => a -> IO Unit
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prettyIODef = prettyIO defPrettyOpts
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infixr 6 <%%>, <%>
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export %inline
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(<%%>) : Doc a -> Doc a -> Doc a
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a <%%> b = sep [a, b]
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export %inline
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(<%>) : Doc a -> Doc a -> Doc a
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a <%> b = cat [a, b]
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||| wrapper for names that pretty-prints highlighted as a `TVar`.
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public export data TVarName = TV BaseName
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export %inline PrettyHL TVarName where prettyM (TV x) = hlF TVar $ prettyM x
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||| wrapper for names that pretty-prints highlighted as a `DVar`.
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public export data DVarName = DV BaseName
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export %inline PrettyHL DVarName where prettyM (DV x) = hlF DVar $ prettyM x
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