419 lines
12 KiB
Idris
419 lines
12 KiB
Idris
module Quox.Syntax.Term.Pretty
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import Quox.Syntax.Term.Base
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import Quox.Syntax.Term.Split
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import Quox.Syntax.Term.Subst
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import Quox.Context
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import Quox.Pretty
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import Data.Vect
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%default total
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export %inline
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typeD, arrowD, darrowD, timesD, lamD, eqndD, dlamD, annD, natD :
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Pretty.HasEnv m => m (Doc HL)
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typeD = hlF Syntax $ ifUnicode "★" "Type"
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arrowD = hlF Delim $ ifUnicode "→" "->"
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darrowD = hlF Delim $ ifUnicode "⇒" "=>"
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timesD = hlF Delim $ ifUnicode "×" "**"
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lamD = hlF Syntax $ ifUnicode "λ" "fun"
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eqndD = hlF Delim $ ifUnicode "≡" "=="
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dlamD = hlF Syntax $ ifUnicode "δ" "dfun"
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annD = hlF Delim $ ifUnicode "∷" "::"
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natD = hlF Syntax $ ifUnicode "ℕ" "Nat"
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export %inline
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eqD, colonD, commaD, semiD, caseD, typecaseD, returnD,
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ofD, dotD, zeroD, succD, coeD, compD : Doc HL
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eqD = hl Syntax "Eq"
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colonD = hl Delim ":"
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commaD = hl Delim ","
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semiD = hl Delim ";"
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caseD = hl Syntax "case"
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typecaseD = hl Syntax "type-case"
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ofD = hl Syntax "of"
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returnD = hl Syntax "return"
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dotD = hl Delim "."
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zeroD = hl Syntax "zero"
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succD = hl Syntax "succ"
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coeD = hl Syntax "coe"
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compD = hl Syntax "compD"
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export
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prettyUnivSuffix : Pretty.HasEnv m => Universe -> m (Doc HL)
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prettyUnivSuffix l =
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ifUnicode (pretty $ pack $ map sub $ unpack $ show l) (pretty l)
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where
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sub : Char -> Char
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sub c = case c of
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'0' => '₀'; '1' => '₁'; '2' => '₂'; '3' => '₃'; '4' => '₄'
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'5' => '₅'; '6' => '₆'; '7' => '₇'; '8' => '₈'; '9' => '₉'; _ => c
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export
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prettyUniverse : Universe -> Doc HL
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prettyUniverse = hl Syntax . pretty
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public export
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data WithQty a = MkWithQty Qty a
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export
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PrettyHL a => PrettyHL (WithQty a) where
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prettyM (MkWithQty q x) = do
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q <- pretty0M q
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x <- withPrec Arg $ prettyM x
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pure $ hcat [q, dotD, x]
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public export
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data Binder a = MkBinder BaseName a
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export
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PrettyHL a => PrettyHL (Binder a) where
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prettyM (MkBinder x ty) = do
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x <- pretty0M $ TV x
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ty <- align <$> pretty0M ty
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pure $ parens $ sep [hsep [x, colonD], ty]
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export
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prettyBindType : PrettyHL a => PrettyHL b =>
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Pretty.HasEnv m =>
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Maybe Qty -> BaseName -> a -> Doc HL -> b -> m (Doc HL)
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prettyBindType q x s arr t = do
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bind <- case q of
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Nothing => pretty0M $ MkBinder x s
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Just q => pretty0M $ MkWithQty q $ MkBinder x s
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t <- withPrec AnnR $ under T x $ prettyM t
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parensIfM AnnR $ hang 2 $ bind <++> arr <%%> t
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export
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prettyArm : PrettyHL a => Pretty.HasEnv m =>
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BinderSort -> SnocList BaseName -> Doc HL -> a -> m (Doc HL)
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prettyArm sort xs pat body = do
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body <- withPrec Outer $ unders sort xs $ prettyM body
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pure $ hang 2 $ sep [pat <++> !darrowD, body]
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export
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prettyLams : PrettyHL a => Pretty.HasEnv m =>
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Maybe (Doc HL) -> BinderSort -> SnocList BaseName -> a ->
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m (Doc HL)
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prettyLams lam sort names body = do
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let var = case sort of T => TVar; D => DVar
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header <- sequence $ [hlF var $ prettyM x | x <- toList names]
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let header = sep $ maybe header (:: header) lam
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parensIfM Outer =<< prettyArm sort names header body
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public export
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data TypeLine a = MkTypeLine BaseName a
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export
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PrettyHL a => PrettyHL (TypeLine a) where
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prettyM (MkTypeLine i ty) =
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map bracks $ withPrec Outer $ prettyLams Nothing D [< i] ty
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export
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prettyApps' : PrettyHL f => PrettyHL a => Pretty.HasEnv m =>
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f -> List (Maybe (Doc HL), a) -> m (Doc HL)
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prettyApps' fun args = do
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fun <- withPrec App $ prettyM fun
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args <- traverse prettyArg args
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parensIfM App $ hang 2 $ sep $ fun :: args
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where
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prettyArg : (Maybe (Doc HL), a) -> m (Doc HL)
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prettyArg (Nothing, arg) = withPrec Arg (prettyM arg)
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prettyArg (Just pfx, arg) = (hl Delim pfx <+>) <$> withPrec Arg (prettyM arg)
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export
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prettyApps : PrettyHL f => PrettyHL a => Pretty.HasEnv m =>
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Maybe (Doc HL) -> f -> List a -> m (Doc HL)
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prettyApps pfx f args = prettyApps' f (map (pfx,) args)
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export
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prettyTuple : PrettyHL a => Pretty.HasEnv m => List a -> m (Doc HL)
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prettyTuple = map (parens . align . separate commaD) . traverse prettyM
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export
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prettyArms : PrettyHL a => Pretty.HasEnv m =>
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BinderSort -> List (SnocList BaseName, Doc HL, a) -> m (Doc HL)
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prettyArms s =
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map (braces . aseparate semiD) .
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traverse (\(xs, l, r) => prettyArm s xs l r)
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export
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prettyCase' : (PrettyHL a, PrettyHL b, PrettyHL c, Pretty.HasEnv m) =>
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Doc HL -> a -> BaseName -> b ->
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List (SnocList BaseName, Doc HL, c) ->
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m (Doc HL)
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prettyCase' intro elim r ret arms = do
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elim <- pretty0M elim
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ret <- case r of
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Unused => pretty0M ret
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_ => prettyLams Nothing T [< r] ret
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arms <- prettyArms T arms
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pure $ asep [intro <++> elim, returnD <++> ret, ofD <++> arms]
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export
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prettyCase : (PrettyHL a, PrettyHL b, PrettyHL c, Pretty.HasEnv m) =>
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Qty -> a -> BaseName -> b ->
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List (SnocList BaseName, Doc HL, c) ->
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m (Doc HL)
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prettyCase pi elim r ret arms = do
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caseq <- (caseD <+>) <$> prettySuffix pi
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prettyCase' caseq elim r ret arms
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export
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escapeString : String -> String
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escapeString = concatMap esc1 . unpack where
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esc1 : Char -> String
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esc1 '"' = #"\""#
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esc1 '\\' = #"\\"#
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esc1 '\n' = #"\n"#
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esc1 c = singleton c
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export
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quoteTag : TagVal -> Doc HL
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quoteTag tag =
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if isName tag then fromString tag else
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hcat ["\"", fromString $ escapeString tag, "\""]
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export
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prettyTag : TagVal -> Doc HL
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prettyTag t = hl Tag $ "'" <+> quoteTag t
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export
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prettyTagBare : TagVal -> Doc HL
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prettyTagBare t = hl Tag $ quoteTag t
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export
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prettyBoxVal : PrettyHL a => Pretty.HasEnv m => a -> m (Doc HL)
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prettyBoxVal val = bracks <$> pretty0M val
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export
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prettyCompPat : Pretty.HasEnv m => Dim d -> DimConst -> BaseName -> m (Doc HL)
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prettyCompPat s e j = pure $
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hsep [parens (hsep [!(pretty0M s), hl Syntax "=", !(pretty0M e)]),
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!(pretty0M $ DV j)]
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export
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toNatLit : Term d n -> Maybe Nat
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toNatLit Zero = Just 0
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toNatLit (Succ n) = [|S $ toNatLit n|]
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toNatLit _ = Nothing
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private
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eterm : Term d n -> Exists (Term d)
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eterm = Evidence n
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parameters (showSubsts : Bool)
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mutual
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export covering
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[TermSubst] PrettyHL (Term d n) using ElimSubst
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where
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prettyM (TYPE l) =
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parensIfM App $ !typeD <+> hl Syntax !(prettyUnivSuffix l)
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prettyM (Pi qty s (S _ (N t))) = do
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dom <- pretty0M $ MkWithQty qty s
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cod <- withPrec AnnR $ prettyM t
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parensIfM AnnR $ asep [dom <++> !arrowD, cod]
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prettyM (Pi qty s (S [< x] (Y t))) =
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prettyBindType (Just qty) x s !arrowD t
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prettyM (Lam (S x t)) =
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let GotLams {names, body, _} = getLams' x t.term Refl in
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prettyLams (Just !lamD) T (toSnocList' names) body
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prettyM (Sig s (S _ (N t))) = do
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s <- withPrec InTimes $ prettyM s
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t <- withPrec Times $ prettyM t
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parensIfM Times $ asep [s <++> !timesD, t]
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prettyM (Sig s (S [< x] (Y t))) =
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prettyBindType Nothing x s !timesD t
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prettyM (Pair s t) =
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let GotPairs {init, last, _} = getPairs' [< s] t in
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prettyTuple $ toList $ init :< last
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prettyM (Enum tags) =
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pure $ delims "{" "}" . aseparate comma $ map prettyTagBare $
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Prelude.toList tags
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prettyM (Tag t) =
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pure $ prettyTag t
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prettyM (Eq (S _ (N ty)) l r) = do
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l <- withPrec InEq $ prettyM l
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r <- withPrec InEq $ prettyM r
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ty <- withPrec InEq $ prettyM ty
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parensIfM Eq $ asep [l <++> !eqndD, r <++> colonD, ty]
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prettyM (Eq (S [< i] (Y ty)) l r) = do
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prettyApps Nothing (L eqD)
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[epretty $ MkTypeLine i ty, epretty l, epretty r]
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prettyM (DLam (S i t)) =
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let GotDLams {names, body, _} = getDLams' i t.term Refl in
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prettyLams (Just !dlamD) D (toSnocList' names) body
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prettyM Nat = natD
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prettyM Zero = pure $ hl Syntax "0"
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prettyM (Succ n) =
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case toNatLit n of
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Just n => pure $ hl Syntax $ pretty $ S n
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Nothing => prettyApps Nothing (L succD) [n]
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prettyM (BOX pi ty) = do
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pi <- pretty0M pi
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ty <- pretty0M ty
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pure $ bracks $ hcat [pi, dotD, align ty]
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prettyM (Box val) = prettyBoxVal val
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prettyM (E e) = prettyM e
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prettyM (CloT s th) =
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if showSubsts then
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parensIfM SApp . hang 2 =<<
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[|withPrec SApp (prettyM s) <%> prettyTSubst th|]
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else
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prettyM $ pushSubstsWith' id th s
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prettyM (DCloT s th) =
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if showSubsts then
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parensIfM SApp . hang 2 =<<
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[|withPrec SApp (prettyM s) <%> prettyDSubst th|]
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else
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prettyM $ pushSubstsWith' th id s
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export covering
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[ElimSubst] PrettyHL (Elim d n) using TermSubst
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where
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prettyM (F x) =
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hl' Free <$> prettyM x
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prettyM (B i) =
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prettyVar TVar TVarErr (!ask).tnames i
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prettyM (e :@ s) =
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let GotArgs {fun, args, _} = getArgs' e [s] in
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prettyApps Nothing fun args
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prettyM (CasePair pi p (S [< r] ret) (S [< x, y] body)) = do
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pat <- parens . separate commaD <$> traverse (hlF TVar . prettyM) [x, y]
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prettyCase pi p r ret.term [([< x, y], pat, body.term)]
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prettyM (CaseEnum pi t (S [< r] ret) arms) =
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prettyCase pi t r ret.term
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[([<], prettyTag t, b) | (t, b) <- SortedMap.toList arms]
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prettyM (CaseNat pi pi' nat (S [< r] ret) zer (S [< s, ih] suc)) =
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prettyCase pi nat r ret.term
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[([<], zeroD, eterm zer),
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([< s, ih], !succPat, eterm suc.term)]
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where
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succPat : m (Doc HL)
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succPat = case (ih, pi') of
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(Unused, Zero) => pure $ succD <++> !(pretty0M s)
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_ => pure $ asep [succD <++> !(pretty0M s) <+> comma,
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!(pretty0M $ MkWithQty pi' ih)]
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prettyM (CaseBox pi box (S [< r] ret) (S [< u] body)) =
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prettyCase pi box r ret.term
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[([< u], !(prettyBoxVal $ TV u), body.term)]
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prettyM (e :% d) =
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let GotDArgs {fun, args, _} = getDArgs' e [d] in
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prettyApps (Just "@") fun args
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prettyM (s :# a) = do
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s <- withPrec AnnL $ prettyM s
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a <- withPrec AnnR $ prettyM a
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parensIfM AnnR $ hang 2 $ s <++> !annD <%%> a
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prettyM (Coe (S [< i] ty) p q val) =
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let ty = case ty of
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Y ty => epretty $ MkTypeLine i ty
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N ty => epretty ty
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in
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prettyApps' (L coeD)
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[(Nothing, ty),
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(Just "@", epretty p),
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(Just "@", epretty q),
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(Nothing, epretty val)]
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prettyM (Comp ty p q val r (S [< z] zero) (S [< o] one)) = do
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apps <- prettyApps' (L compD)
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[(Nothing, epretty ty),
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(Just "@", epretty p),
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(Just "@", epretty q),
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(Nothing, epretty val)]
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arms <- prettyArms D
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[([< z], !(prettyCompPat r Zero z), zero.term),
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([< o], !(prettyCompPat r One o), one.term)]
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pure $ apps <++> arms
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prettyM (TypeCase ty ret arms def) = do
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arms <- traverse fromArm (toList arms)
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prettyCase' typecaseD ty Unused ret $
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arms ++ [([<], hl Syntax "_", eterm def)]
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where
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v : BaseName -> Doc HL
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v = pretty0 True . TV
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tyCasePat : (k : TyConKind) -> NContext (arity k) -> m (Doc HL)
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tyCasePat KTYPE [<] = typeD
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tyCasePat KPi [< a, b] = pure $ parens $ hsep [v a, !arrowD, v b]
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tyCasePat KSig [< a, b] = pure $ parens $ hsep [v a, !arrowD, v b]
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tyCasePat KEnum [<] = pure $ hl Syntax "{}"
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tyCasePat KEq vars = prettyApps Nothing (L eqD) $ map TV $ toList' vars
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tyCasePat KNat [<] = natD
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tyCasePat KBOX [< a] = pure $ bracks $ v a
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fromArm : TypeCaseArm d n ->
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m (SnocList BaseName, Doc HL, Exists (Term d))
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fromArm (k ** S ns t) =
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pure (toSnocList' ns, !(tyCasePat k ns), eterm t.term)
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prettyM (CloE e th) =
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if showSubsts then
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parensIfM SApp . hang 2 =<<
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[|withPrec SApp (prettyM e) <%> prettyTSubst th|]
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else
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prettyM $ pushSubstsWith' id th e
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prettyM (DCloE e th) =
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if showSubsts then
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parensIfM SApp . hang 2 =<<
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[|withPrec SApp (prettyM e) <%> prettyDSubst th|]
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else
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prettyM $ pushSubstsWith' th id e
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export covering
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prettyTSubst : Pretty.HasEnv m => TSubst d from to -> m (Doc HL)
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prettyTSubst s =
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prettySubstM (prettyM @{ElimSubst}) (!ask).tnames TVar "[" "]" s
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export covering %inline
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PrettyHL (Term d n) where prettyM = prettyM @{TermSubst False}
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export covering %inline
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PrettyHL (Elim d n) where prettyM = prettyM @{ElimSubst False}
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export covering
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prettyTerm : (unicode : Bool) ->
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(dnames : NContext d) -> (tnames : NContext n) ->
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Term d n -> Doc HL
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prettyTerm unicode dnames tnames term =
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pretty0With unicode (toSnocList' dnames) (toSnocList' tnames) term
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