forked from GitHub/gf-core
GF.Grammar.Printer now has a Terse mode which prints record types with lock fields with their corresponding abstract categories
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@@ -288,8 +288,8 @@ tcApp ge scope t =
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tcOverloadFailed t ttys =
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tcError ("Overload resolution failed" $$
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"term " <+> pp t $$
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"types" <+> vcat [pp ty | (_,ty) <- ttys])
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"of term " <+> pp t $$
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"with types" <+> vcat [ppTerm Terse 0 ty | (_,ty) <- ttys])
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tcPatt ge scope PW ty0 =
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@@ -425,7 +425,7 @@ checkLType gr g trm typ0 = do
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then checkLType gr ((bt,x,a):g) c b
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else do b' <- checkIn (pp "abs") $ substituteLType [(bt',z,Vr x)] b
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checkLType gr ((bt,x,a):g) c b'
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return $ (Abs bt x c', Prod bt' x a b')
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return $ (Abs bt x c', Prod bt' z a b')
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_ -> checkError $ "function type expected instead of" <+> ppType typ
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App f a -> do
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@@ -39,7 +39,7 @@ import qualified Data.Map as Map
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import qualified Data.Array.IArray as Array
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data TermPrintQual
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= Unqualified | Qualified | Internal
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= Terse | Unqualified | Qualified | Internal
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deriving Eq
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instance Pretty Grammar where
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@@ -229,7 +229,13 @@ ppTerm q d (R []) = pp "<>" -- to distinguish from {} empty RecType
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ppTerm q d (R xs) = braces (fsep (punctuate ';' [l <+>
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fsep [case mb_t of {Just t -> ':' <+> ppTerm q 0 t; Nothing -> empty},
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'=' <+> ppTerm q 0 e] | (l,(mb_t,e)) <- xs]))
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ppTerm q d (RecType xs)= braces (fsep (punctuate ';' [l <+> ':' <+> ppTerm q 0 t | (l,t) <- xs]))
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ppTerm q d (RecType xs)
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| q == Terse = case [cat | (l,_) <- xs, let (p,cat) = splitAt 5 (showIdent (label2ident l)), p == "lock_"] of
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[cat] -> pp cat
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_ -> doc
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| otherwise = doc
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where
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doc = braces (fsep (punctuate ';' [l <+> ':' <+> ppTerm q 0 t | (l,t) <- xs]))
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ppTerm q d (Typed e t) = '<' <> ppTerm q 0 e <+> ':' <+> ppTerm q 0 t <> '>'
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ppTerm q d (ImplArg e) = braces (ppTerm q 0 e)
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ppTerm q d (ELincat cat t) = prec d 4 ("lincat" <+> cat <+> ppTerm q 5 t)
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@@ -296,6 +302,7 @@ ppDDecl q (_,id,typ)
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ppQIdent :: TermPrintQual -> QIdent -> Doc
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ppQIdent q (m,id) =
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case q of
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Terse -> pp id
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Unqualified -> pp id
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Qualified -> m <> '.' <> id
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Internal -> m <> '.' <> id
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