forked from GitHub/gf-core
Translating linearization functions to Haskell: move a common record type to PGF.Haskell
Move the Haskell representation of the common linearization type {s:T} to the
shared module PGF.Haskell, so that the same overloaded projection function
proj_s can be used for all concrete syntaxes.
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@@ -38,11 +38,16 @@ concrete2haskell opts gr cenv absname cnc modinfo =
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"--- Linearization types and linearization functions ---" $$
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vcat (map ppDef defs) $$ "" $$
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"--- Type classes for projection functions ---" $$
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vcat (map labelClass (S.toList (S.unions (map S.fromList rs)))) $$ "" $$
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vcat (map labelClass (S.toList labels)) $$ "" $$
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"--- Record types ---" $$
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vcat (map recordType rs)
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vcat (map recordType recs)
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where
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rs = S.toList (S.insert [ident2label (identS "s")] (records rhss))
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labels = S.difference (S.unions (map S.fromList recs)) common_labels
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recs = S.toList (S.difference (records rhss) common_records)
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common_records = S.fromList [[label_s]]
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common_labels = S.fromList [label_s]
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label_s = ident2label (identS "s")
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rhss = map (snd.snd) defs
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defs = sortBy (compare `on` fst) .
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concatMap (toHaskell gId gr absname cenv) .
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@@ -1,10 +1,14 @@
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-- | Auxiliary types and functions for use with grammars translated to Haskell
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-- with gf -output-format=haskell -haskell=concrete
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-- with @gf -output-format=haskell -haskell=concrete@
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{-# LANGUAGE MultiParamTypeClasses, FunctionalDependencies, FlexibleInstances #-}
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module PGF.Haskell where
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import Control.Applicative((<$>))
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import Data.Char(toUpper)
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import Data.List(isPrefixOf)
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import qualified Data.Map as M
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-- ** Concrete syntax
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-- | For enumerating parameter values used in tables
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class EnumAll a where enumAll :: [a]
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@@ -42,3 +46,17 @@ fromStr = from False False
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toUpper1 s = s
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pick alts def r = head ([str|(ps,str)<-alts,any (`isPrefixOf` r) ps]++[def])
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-- *** Common record types
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-- | Overloaded function to project the @s@ field from any record type
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class Has_s r a | r -> a where proj_s :: r -> a
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-- | Haskell representation of the GF record type @{s:t}@
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data R_s t = R_s t deriving (Eq,Ord,Show)
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instance (EnumAll t) => EnumAll (R_s t) where
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enumAll = (R_s <$> enumAll)
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instance Has_s (R_s t) t where proj_s (R_s t) = t
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-- | Coerce from any record type @{...,s:t,...}@ field to the supertype @{s:t}@
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to_R_s r = R_s (proj_s r)
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