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https://github.com/GrammaticalFramework/gf-core.git
synced 2026-04-09 04:59:31 -06:00
Merge AId and App forms in GFCCRaw.
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@@ -9,7 +9,6 @@ data Grammar =
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data RExp =
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App CId [RExp]
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| AId CId
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| AInt Integer
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| AStr String
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| AFlt Double
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@@ -16,7 +16,7 @@ import Data.Map
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toGFCC :: Grammar -> GFCC
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toGFCC (Grm [
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App (CId "grammar") (AId a:cs),
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App (CId "grammar") (App a []:cs),
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App (CId "flags") gfs,
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ab@(
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App (CId "abstract") [
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@@ -26,7 +26,7 @@ toGFCC (Grm [
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App (CId "concrete") ccs
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]) = GFCC {
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absname = a,
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cncnames = [c | AId c <- cs],
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cncnames = [c | App c [] <- cs],
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gflags = fromAscList [(f,v) | App f [AStr v] <- gfs],
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abstract =
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let
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@@ -134,15 +134,15 @@ toHypo e = case e of
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toExp :: RExp -> Exp
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toExp e = case e of
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App fun [App (CId "B") xs, App (CId "X") exps] ->
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DTr [x | AId x <- xs] (AC fun) (lmap toExp exps)
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App (CId "App") [App fun [], App (CId "B") xs, App (CId "X") exps] ->
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DTr [x | App x [] <- xs] (AC fun) (lmap toExp exps)
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App (CId "Eq") eqs ->
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EEq [Equ (lmap toExp ps) (toExp v) | App (CId "E") (v:ps) <- eqs]
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App (CId "Var") [App i []] -> DTr [] (AV i) []
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AMet -> DTr [] (AM 0) []
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AInt i -> DTr [] (AI i) []
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AFlt i -> DTr [] (AF i) []
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AStr i -> DTr [] (AS i) []
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AId i -> DTr [] (AV i) []
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_ -> error $ "exp " ++ show e
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toTerm :: RExp -> Term
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@@ -153,10 +153,10 @@ toTerm e = case e of
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App (CId "P") [e,v] -> P (toTerm e) (toTerm v)
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App (CId "RP") [e,v] -> RP (toTerm e) (toTerm v) ----
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App (CId "W") [AStr s,v] -> W s (toTerm v)
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App (CId "A") [AInt i] -> V (fromInteger i)
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App f [] -> F f
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AInt i -> C (fromInteger i)
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AMet -> TM
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AId f -> F f
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App (CId "A") [AInt i] -> V (fromInteger i)
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AStr s -> K (KS s) ----
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_ -> error $ "term " ++ show e
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@@ -166,7 +166,7 @@ toTerm e = case e of
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fromGFCC :: GFCC -> Grammar
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fromGFCC gfcc0 = Grm [
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app "grammar" (AId (absname gfcc) : lmap AId (cncnames gfcc)),
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app "grammar" (App (absname gfcc) [] : lmap (flip App []) (cncnames gfcc)),
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app "flags" [App f [AStr v] | (f,v) <- toList (gflags gfcc `union` aflags agfcc)],
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app "abstract" [
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app "fun" [App f [fromType t,fromExp d] | (f,(t,d)) <- toList (funs agfcc)],
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@@ -202,10 +202,10 @@ fromHypo e = case e of
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fromExp :: Exp -> RExp
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fromExp e = case e of
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DTr xs (AC fun) exps ->
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App fun [App (CId "B") (lmap AId xs), App (CId "X") (lmap fromExp exps)]
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App (CId "App") [App fun [], App (CId "B") (lmap (flip App []) xs), App (CId "X") (lmap fromExp exps)]
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DTr [] (AV x) [] -> App (CId "Var") [App x []]
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DTr [] (AS s) [] -> AStr s
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DTr [] (AF d) [] -> AFlt d
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DTr [] (AV x) [] -> AId x
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DTr [] (AI i) [] -> AInt (toInteger i)
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DTr [] (AM _) [] -> AMet ----
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EEq eqs ->
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@@ -222,7 +222,7 @@ fromTerm e = case e of
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W s v -> app "W" [AStr s, fromTerm v]
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C i -> AInt (toInteger i)
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TM -> AMet
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F f -> AId f
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F f -> App f []
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V i -> App (CId "A") [AInt (toInteger i)]
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K (KS s) -> AStr s ----
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K (KP d vs) -> app "FV" (str d : [str v | Var v _ <- vs]) ----
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@@ -14,13 +14,12 @@ pGrammar :: P Grammar
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pGrammar = liftM Grm pTerms
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pTerms :: P [RExp]
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pTerms = liftM2 (:) pTerm pTerms <++ (skipSpaces >> return [])
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pTerms = liftM2 (:) (pTerm 1) pTerms <++ (skipSpaces >> return [])
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pTerm :: P RExp
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pTerm = skipSpaces >> (pApp <++ pId <++ pNum <++ pStr <++ pMeta)
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where pApp = between (char '(') (char ')')
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(liftM2 App pIdent pTerms)
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pId = liftM AId pIdent
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pTerm :: Int -> P RExp
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pTerm n = skipSpaces >> (pParen <++ pApp <++ pNum <++ pStr <++ pMeta)
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where pParen = between (char '(') (char ')') (pTerm 0)
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pApp = liftM2 App pIdent (if n == 0 then pTerms else return [])
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pStr = char '"' >> liftM AStr (manyTill (pEsc <++ get) (char '"'))
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-- FIXME: what escapes are used?
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pEsc = char '\\' >> get
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@@ -10,15 +10,14 @@ printTree g = prGrammar g ""
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prGrammar :: Grammar -> ShowS
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prGrammar (Grm xs) = prRExpList xs
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prRExp :: RExp -> ShowS
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prRExp (App x []) = showChar '(' . prCId x . showChar ')'
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prRExp (App x xs) = showChar '(' . prCId x . showChar ' '
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. prRExpList xs . showChar ')'
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prRExp (AId x) = prCId x
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prRExp (AInt x) = shows x
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prRExp (AStr x) = showChar '"' . concatS (map mkEsc x) . showChar '"'
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prRExp (AFlt x) = shows x -- FIXME: simpler format
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prRExp AMet = showChar '?'
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prRExp :: Int -> RExp -> ShowS
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prRExp _ (App x []) = prCId x
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prRExp n (App x xs) = p (prCId x . showChar ' ' . prRExpList xs)
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where p s = if n == 0 then s else showChar '(' . s . showChar ')'
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prRExp _ (AInt x) = shows x
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prRExp _ (AStr x) = showChar '"' . concatS (map mkEsc x) . showChar '"'
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prRExp _ (AFlt x) = shows x -- FIXME: simpler format
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prRExp _ AMet = showChar '?'
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mkEsc :: Char -> ShowS
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mkEsc s = case s of
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@@ -29,7 +28,7 @@ mkEsc s = case s of
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_ -> showChar s
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prRExpList :: [RExp] -> ShowS
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prRExpList = concatS . intersperse (showChar ' ') . map prRExp
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prRExpList = concatS . intersperse (showChar ' ') . map (prRExp 1)
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prCId :: CId -> ShowS
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prCId (CId x) = showString x
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