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@@ -24,6 +24,8 @@ import Text.Printf (printf)
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mkCanon2lpgf :: Options -> SourceGrammar -> ModuleName -> IOE LPGF
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mkCanon2lpgf opts gr am = do
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-- ppCanonical canon
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-- dumpCanonical canon
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(an,abs) <- mkAbstract ab
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cncs <- mapM mkConcrete cncs
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let lpgf = LPGF {
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@@ -31,8 +33,6 @@ mkCanon2lpgf opts gr am = do
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L.abstract = abs,
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L.concretes = Map.fromList cncs
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}
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-- ppCanonical canon
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-- dumpCanonical canon
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-- dumpLPGF lpgf
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return lpgf
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where
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@@ -54,14 +54,14 @@ mkCanon2lpgf opts gr am = do
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(lf, _) <- val2lin linValue
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return (fi2i funId, lf)
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where
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-- Type information in return is only needed during projection, so we can be lazy about specifying it
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-- Type information in return is only needed during projection, so we can be lazy about specifying it (hence the Nothings)
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val2lin :: C.LinValue -> Either String (L.LinFun, Maybe C.LinType)
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val2lin lv = case lv of
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C.ConcatValue v1 v2 -> do
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(v1',t1) <- val2lin v1
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(v2',t2) <- val2lin v2
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return (L.LFConcat v1' v2', t1 <|> t2) -- surely t1 == t2
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return (L.LFConcat v1' v2', t1 <|> t2) -- NOTE surely t1 == t2
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C.LiteralValue ll -> case ll of
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C.FloatConstant f -> return (L.LFToken $ T.pack $ show f, Just C.FloatType)
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@@ -105,7 +105,7 @@ mkCanon2lpgf opts gr am = do
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C.RecordValue rrvs -> do
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let rrvs' = sortRecordRows rrvs
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ts <- sequence [ val2lin lv | C.RecordRow lid lv <- rrvs' ]
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return (L.LFTuple (map fst ts), Just $ C.RecordType (map (C.RecordRow undefined . fromJust . snd) ts))
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return (L.LFTuple (map fst ts), Just $ C.RecordType (map (C.RecordRow undefined . fromJust . snd) ts)) -- TODO remove undefined
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C.TableValue lt trvs | isRecordType lt -> go trvs
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where
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@@ -128,9 +128,16 @@ mkCanon2lpgf opts gr am = do
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C.VariantValue (vr:_) -> val2lin vr -- NOTE variants not supported, just pick first
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C.VarValue (C.VarValueId (C.Unqual v)) -> do
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-- lookup argument index
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ix <- eitherElemIndex (C.VarId v) varIds
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let typ = undefined -- TODO
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return (L.LFArgument (ix+1), Just typ)
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-- lookup type for function
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let (C.Abstract _ _ _ funs) = ab
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(C.Type args _) <- [ ftype | C.FunDef fid ftype <- funs, fid == funId ] `headOrLeft` printf "Cannot find type for: %s" v
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-- lookup category for argument
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let C.TypeBinding _ (C.Type _ (C.TypeApp catId _)) = args !! ix
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-- lookup lintype for category
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lt <- [ lt | C.LincatDef cid lt <- lincats, cid == catId ] `headOrLeft` printf "Cannot find type for: %s" (show catId)
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return (L.LFArgument (ix+1), Just lt)
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C.PreValue pts df -> do
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pts' <- forM pts $ \(pfxs, lv) -> do
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@@ -139,27 +146,15 @@ mkCanon2lpgf opts gr am = do
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(df', _) <- val2lin df
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return (L.LFPre pts' df', Nothing)
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-- specific case when lhs is variable into function
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C.Projection (C.VarValue (C.VarValueId (C.Unqual v))) lblId -> do
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-- lookup argument index
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argIx <- eitherElemIndex (C.VarId v) varIds
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-- lookup type for function
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let (C.Abstract _ _ _ funs) = ab
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(C.Type args _) <- [ ftype | C.FunDef fid ftype <- funs, fid == funId ] `headOrLeft` printf "Cannot find type for: %s" v
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-- lookup type for argument
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let C.TypeBinding _ (C.Type _ (C.TypeApp catId _)) = args !! argIx
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-- lookup label index in argument type
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rrs <- [ rrs | C.LincatDef cid (C.RecordType rrs) <- lincats, cid == catId ] `headOrLeft` printf "Cannot find type for: %s" (show catId)
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C.Projection v1 lblId -> do
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(v1', mtyp) <- val2lin v1
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-- find label index in argument type
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let Just (C.RecordType rrs) = mtyp
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let rrs' = [ lid | C.RecordRow lid _ <- rrs ]
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lblIx <- eitherElemIndex lblId rrs'
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return (L.LFProjection (L.LFArgument (argIx+1)) (L.LFInt (lblIx+1)), Nothing)
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-- C.Projection v1 (C.LabelId lbl) -> do -- TODO
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-- return L.LFEmpty
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-- v1' <- val2lin v1
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-- let lblIx = undefined
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-- return $ L.LFProjection v1' (L.LFInt (lblIx+1))
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-- lookup lintype for record row
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let C.RecordRow _ lt = rrs !! lblIx
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return (L.LFProjection v1' (L.LFInt (lblIx+1)), Just lt)
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C.Selection v1 v2 -> do
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(v1', t1) <- val2lin v1
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