module Transform where
import UU.Scanner.Position(Pos)
import CommonTypes (ConstructorIdent,Identifier)
import UU.Scanner.Position (Pos)
import Patterns (Pattern)
import Expression (Expression)
import CommonTypes
import Macro --marcos
import Control.Monad(mplus,mzero)
import Data.List (partition, nub,intersperse, union)
import Data.Maybe
import qualified Data.Map as Map
import Data.Map (Map)
import Data.Set as Set (Set, member, union, toList, fromList, empty, singleton, member, unions, size, fold, intersection, difference, insert, elems)
import qualified Data.Sequence as Seq
import Data.Sequence(Seq, (><))
import UU.Scanner.Position(noPos)
import ConcreteSyntax
import AbstractSyntax
import ErrorMessages
import Patterns (Patterns,Pattern(..))
import Expression (Expression(..))
import HsToken
import RhsCheck
import Debug.Trace
import Control.Monad.Identity (Identity)
import qualified Control.Monad.Identity
type DefinedSets = Map Identifier (Set NontermIdent)
type FieldMap = [(Identifier, Type)]
type DataTypes = Map.Map NontermIdent (Map.Map ConstructorIdent FieldMap)
type AttrName = (Identifier,Identifier)
type RuleInfo = (Maybe Identifier, [AttrName]->Pattern, Expression, [AttrName], Bool, String, Bool, Bool)
type SigInfo = (Identifier,Type)
type UniqueInfo = (Identifier,Identifier)
type AugmentInfo = (Identifier,Expression)
type AroundInfo = (Identifier,Expression)
type MergeInfo = (Identifier, Identifier, [Identifier], Expression)
checkDuplicate :: (Identifier -> Identifier -> Error)
-> Identifier -> val -> Map Identifier val -> (Map Identifier val,Seq Error)
checkDuplicate dupError key val m
= case Map.lookupIndex key m of
Just ix -> let (key',_) = Map.elemAt ix m
in (m,Seq.singleton (dupError key key'))
Nothing -> (Map.insert key val m,Seq.empty)
checkDuplicates :: (Identifier -> Identifier -> Error)
-> [(Identifier, val)] -> Map Identifier val -> (Map Identifier val,Seq Error)
checkDuplicates dupError new m = foldErrors check m new
where check = uncurry (checkDuplicate dupError)
foldErrors :: (b -> t -> (t, Seq Error)) -> t -> [b] -> (t, Seq Error)
foldErrors f n xs = foldl g (n,Seq.empty) xs
where g ~(e,es) x = let (e',es') = f x e
in (e', es >< es')
checkForDuplicates :: (Identifier -> Identifier -> Error) -> [Identifier] -> [Error]
checkForDuplicates _ [] = []
checkForDuplicates err (x:xs) = let (same,other) = partition (equalId x) xs
in map (err x) same ++ checkForDuplicates err other
equalId :: Identifier -> Identifier -> Bool
equalId x y = getName x == getName y
type RulesAndErrors = ([Rule], Seq Error)
type SigsAndErrors = ([TypeSig], Seq Error)
type InstsAndErrors = ([(Identifier, Type)], Seq Error)
type UniquesAndErrors = (Map Identifier Identifier, Seq Error)
type AugmentsAndErrors = (Map Identifier [Expression], Seq Error)
type AroundsAndErrors = (Map Identifier [Expression], Seq Error)
type MergesAndErrors = (Map Identifier (Identifier, [Identifier], Expression), Seq Error)
type AttrOverwrite = Map AttrName Bool
type AccumRuleCheck = (RulesAndErrors, AttrOverwrite)
type AccumDefiCheck = (Seq Error, AttrOverwrite, [AttrName], [AttrName])
checkRules :: Map NontermIdent (Attributes, Attributes) -> DataTypes ->
Map NontermIdent (Map ConstructorIdent [Identifier]) -> Map NontermIdent (Map ConstructorIdent [SigInfo]) ->
Map NontermIdent (Map ConstructorIdent [MergeInfo]) ->
NontermIdent -> ConstructorIdent -> [RuleInfo] -> RulesAndErrors
checkRules attributes fields allinsts allsigs _ nt con rs
= let fieldmap :: FieldMap
fieldmap = (_LHS, NT nt [] False) : (_LOC, NT nullIdent [] False) : (_INST, NT nullIdent [] False) : (_FIRST, NT nullIdent [] False) : (_LAST, NT nullIdent [] False)
: Map.findWithDefault [] con (Map.findWithDefault Map.empty nt fields)
++ mapMaybe (\instNm -> lookup instNm sigs >>= \tp -> return (instNm, tp)) (Map.findWithDefault [] con (Map.findWithDefault Map.empty nt allinsts))
sigs = Map.findWithDefault [] con (Map.findWithDefault Map.empty nt allsigs)
hasAttrib f tp attr = Map.member attr (f (Map.findWithDefault (Map.empty,Map.empty) tp attributes))
checkRule :: RuleInfo -> AccumRuleCheck -> AccumRuleCheck
checkRule (mbNm, pat,ex,as,owrt,str, pur, eager) ((r1,e1),m1)
= let (e2,m2,u2,_) = foldr (checkDefi owrt) (e1,m1,[],[]) as
in ( (Rule mbNm (pat u2) ex owrt str True pur False Nothing eager : r1, e2), m2)
checkDefi :: Bool -> AttrName -> AccumDefiCheck -> AccumDefiCheck
checkDefi owrt fa@(field,attr) (e,m,u,bs)
= case lookup field fieldmap
of Just (NT tp _ _) ->
let tp' = maybe tp id (deforestedNt tp)
in if field == _LOC || field == _INST || field == _FIRST || field == _LAST
|| hasAttrib (if getName field==getName _LHS then snd else fst) tp' attr
then case Map.lookupIndex fa m of
Just ix -> let ((_,attr2),b) = Map.elemAt ix m
in if b && not (fa `elem` bs)
then ( e, Map.insert fa owrt m, fa:u, fa:bs)
else (((Seq.<|)) (DupRule nt con field attr2 attr) e, m, fa:u, bs)
Nothing -> ( e, Map.insert fa owrt m, u, fa:bs)
else (((Seq.<|)) (SuperfluousRule nt con field attr) e, m, fa:u, bs)
_ -> (((Seq.<|)) (UndefChild nt con field) e, m, fa:u, bs )
in fst (foldr checkRule (([],Seq.empty),Map.empty) rs)
checkRuleNames :: NontermIdent -> ConstructorIdent -> [RuleInfo] -> Seq Error
checkRuleNames nt con
= fst . foldr checkRule (Seq.empty, Set.empty)
where
checkRule (Just nm,_,_,_,_,_,_,_) (errs, nms)
| nm `Set.member` nms = (DupRuleName nt con nm Seq.<| errs, nms)
| otherwise = (errs, Set.insert nm nms)
checkRule (Nothing,_,_,_,_,_,_,_) inp = inp
checkSigs :: NontermIdent -> ConstructorIdent -> [SigInfo] -> SigsAndErrors
checkSigs nt con sis
= let checkSig (ide,typ) (sigs,errs)
= if ide `elem` map (\(TypeSig n _)-> n) sigs
then (sigs, ((Seq.<|)) (DupSig nt con ide) errs)
else (TypeSig ide typ:sigs, errs)
in foldr checkSig ([],Seq.empty) sis
checkInsts :: Set NontermIdent -> Map NontermIdent (Map ConstructorIdent [SigInfo]) -> DataTypes -> NontermIdent -> ConstructorIdent -> [Identifier] -> InstsAndErrors
checkInsts allNts sigMap _ nt con
= foldr (\inst (insts, errs) ->
maybe (insts, Seq.singleton (MissingInstSig nt con inst) >< errs)
(\info@(k, NT nm args _) ->
case findInst k insts of
Just k' -> (insts, Seq.singleton (DupChild nt con k k') >< errs)
Nothing -> case nm `Set.member` allNts of
True -> (info : insts, errs)
False | take 2 (getName nm) == "T_" -> let nm' = Ident (drop 2 (getName nm)) (getPos nm)
info' = (k, NT nm' args True)
in case nm' `Set.member` allNts of
True -> (info' : insts, errs)
False -> (insts, Seq.singleton (UndefNont nm') >< errs)
| otherwise -> (insts, Seq.singleton (UndefNont nm) >< errs)
)
$ findSig inst
) ([], Seq.empty)
where
sigs = Map.findWithDefault [] con (Map.findWithDefault Map.empty nt sigMap)
findSig name
= do tp@(NT _ _ _) <- lookup name sigs
return (name, tp)
findInst _ [] = Nothing
findInst k ((k', _): r)
| k == k' = Just k'
| otherwise = findInst k r
checkUniques :: Map NontermIdent (Attributes, Attributes) -> NontermIdent -> ConstructorIdent -> [UniqueInfo] -> UniquesAndErrors
checkUniques allAttrs nt con uniques
= let checkUnique (ident,ref) (us,errs)
= if ident `Map.member` us
then (us, ((Seq.<|)) (DupUnique nt con ident) errs)
else if Map.member ref inhs && Map.member ref syns
then (Map.insert ident ref us, errs)
else (us, ((Seq.<|)) (MissingUnique nt ref) errs)
(inhs,syns) = Map.findWithDefault (Map.empty,Map.empty) nt allAttrs
in foldr checkUnique (Map.empty, Seq.empty) uniques
checkAugments :: Map NontermIdent (Attributes, Attributes) -> NontermIdent -> ConstructorIdent -> [AugmentInfo] -> AugmentsAndErrors
checkAugments allAttrs nt _ augments
= let checkAugment (ident,expr) (as,errs)
= if ident `Map.member` as
then (Map.update (\vs -> Just (vs ++ [expr])) ident as, errs)
else if Map.member ident syns
then (Map.insert ident [expr] as, errs)
else (as, ((Seq.<|)) (MissingSyn nt ident) errs)
(_,syns) = Map.findWithDefault (Map.empty,Map.empty) nt allAttrs
in foldr checkAugment (Map.empty, Seq.empty) augments
checkArounds :: DataTypes -> NontermIdent -> ConstructorIdent -> [AroundInfo] -> AroundsAndErrors
checkArounds fieldMap nt con arounds
= let checkAround (ident,expr) (as,errs)
= if ident `Map.member` as
then (Map.update (\vs -> Just (vs ++ [expr])) ident as, errs)
else case lookup ident fields of
Just (NT _ _ _) -> (Map.insert ident [expr] as, errs)
_ -> (as, ((Seq.<|)) (UndefChild nt con ident) errs)
fields = Map.findWithDefault [] con (Map.findWithDefault Map.empty nt fieldMap)
in foldr checkAround (Map.empty, Seq.empty) arounds
checkMerges :: Set NontermIdent -> Map NontermIdent (Map ConstructorIdent [Identifier]) -> DataTypes -> NontermIdent -> ConstructorIdent -> [MergeInfo] -> MergesAndErrors
checkMerges allNts allInsts fieldMap _ con merges
= let checkMerge (target,nt,sources,expr) (m,errs)
= let fields = Map.findWithDefault [] con (Map.findWithDefault Map.empty nt fieldMap)
insts = Map.findWithDefault [] con (Map.findWithDefault Map.empty nt allInsts)
allFields = insts ++ map fst fields
in if target `Map.member` m
then (m, DupChild nt con target (fst $ Map.elemAt (Map.findIndex target m) m) Seq.<| errs)
else if target `elem` allFields
then (m, DupChild nt con target (head $ filter (== target) allFields) Seq.<| errs)
else let missing = filter (\s -> not (s `elem` allFields)) sources
in if null missing
then if nt `Set.member` allNts
then (Map.insert target (nt, sources, expr) m, errs)
else (m, UndefNont nt Seq.<| errs)
else (m, (Seq.fromList $ map (UndefChild nt con) missing) Seq.>< errs)
in foldr checkMerge (Map.empty, Seq.empty) merges
unionunionplusplus :: Map NontermIdent (Map ConstructorIdent [a]) -> Map NontermIdent (Map ConstructorIdent [a]) -> Map NontermIdent (Map ConstructorIdent [a])
unionunionplusplus = Map.unionWith (Map.unionWith (++))
mkUniqueRules :: Options -> Map NontermIdent (Map ConstructorIdent [RuleInfo]) -> DataTypes -> Map NontermIdent (Map ConstructorIdent [(Identifier, Type)]) -> Map NontermIdent (Attributes,Attributes) -> NontermIdent -> ConstructorIdent -> Map Identifier Identifier -> [Rule]
mkUniqueRules opts allRules allFields allInsts allAttrDecls nt con usMap
= map apply groups
where
fields = Map.findWithDefault [] con (Map.findWithDefault Map.empty nt allFields)
++ Map.findWithDefault [] con (Map.findWithDefault Map.empty nt allInsts)
attrDefs = let projectDefs (_,_,_,defs,_,_,_,_) = defs
in concatMap projectDefs $ Map.findWithDefault [] con $ Map.findWithDefault Map.empty nt allRules
groups = Map.assocs $ Map.foldrWithKey (\i r m -> Map.insertWith (++) r [i] m) Map.empty usMap
apply (ref,us) = mkRule ref (findOutField ref) us
findOutField ref = case [ chld | (chld, NT tp _ _) <- fields, tp `hasSyn` ref] of
[] -> _LHS
(x:_) -> x
hasSyn tp ref = Map.member ref $ snd $ Map.findWithDefault (Map.empty,Map.empty) tp allAttrDecls
mkRule ref outFld locAttrs
= let locs = filter (not . existsLoc) locAttrs
outAttr = attr outFld ref
defs = (if hasOut then [] else [outAttr]) ++ [attr _LOC u | u <- locs ]
pat = Product noPos defs
rhs = Expression noPos $ wrap ref $ foldr gencase (finalout hasOut locs) locs
rul = Rule Nothing pat rhs False "-- generated by the unique rule mechanism." False True False Nothing False
hasOut = exists outAttr
exists (Alias fld a _) = (fld,a) `elem` attrDefs
exists _ = False
existsLoc nm = exists (attr _LOC nm)
in rul
attr fld a = Alias fld a (Underscore noPos)
gencase nm outp
= h ("case " ++ uniqueDispenser opts ++ " __cont of { (__cont, " ++ getName nm ++ ") -> ") ++ outp ++ h "}"
h s = [HsToken s noPos]
finalout noGenCont us = h ("(" ++ concat (intersperse "," ( (if noGenCont then [] else ["__cont"]) ++ map getName us)) ++ ")")
wrap ref inp = h "let __cont = " ++ [AGField _LHS ref noPos Nothing] ++ h " in seq __cont ( " ++ inp ++ h " )"
flattenDatas :: DataTypes -> Map NontermIdent (Set NontermIdent)
flattenDatas ds = Map.map flatten ds
where flatten cs = Set.fromList [ nt | (_, NT nt _ _) <- concatMap snd (Map.toList cs)]
reachableFrom :: Map NontermIdent (Set NontermIdent) -> Set NontermIdent -> Set NontermIdent
reachableFrom table = reach
where reach nts = let nts' = Set.unions (nts : [ ns | nt <- Set.toList nts
, let ns = Map.findWithDefault Set.empty nt table ])
in if Set.size nts' > Set.size nts
then reach nts'
else nts
invert :: Map NontermIdent (Set NontermIdent) -> Map NontermIdent (Set NontermIdent)
invert = foldr inv Map.empty . Map.toList
where inv (x,ns) m = fold (\n m' -> Map.insertWith Set.union n (Set.singleton x) m') m ns
path :: Map NontermIdent (Set NontermIdent) -> NontermIdent -> NontermIdent -> Set NontermIdent
path table from to = let children = Map.findWithDefault Set.empty from table
forward = reachableFrom table children
backward = reachableFrom (invert table)
(Set.singleton to)
in Set.intersection forward backward
extract :: String -> [String]
extract s = case dropWhile isSeparator s of
"" -> []
s' -> w : extract s''
where (w, s'') = break isSeparator s'
isSeparator :: Char -> Bool
isSeparator x = x == '_'
pragmaMapUnion :: PragmaMap -> PragmaMap -> PragmaMap
pragmaMapUnion = Map.unionWith (Map.unionWith Set.union)
pragmaMapSingle :: NontermIdent -> ConstructorIdent -> Set Identifier -> PragmaMap
pragmaMapSingle nt con nms = Map.singleton nt (Map.singleton con nms)
orderMapUnion :: AttrOrderMap -> AttrOrderMap -> AttrOrderMap
orderMapUnion = Map.unionWith (Map.unionWith Set.union)
orderMapSingle :: NontermIdent -> ConstructorIdent -> Set Dependency -> AttrOrderMap
orderMapSingle nt con deps = Map.singleton nt (Map.singleton con deps)
mergeParams :: ParamMap -> ParamMap -> ParamMap
mergeParams = Map.unionWith (++)
mergeCtx :: ContextMap -> ContextMap -> ContextMap
mergeCtx
= Map.unionWith nubconcat
where nubconcat a b = nub (a ++ b)
mergeQuant :: QuantMap -> QuantMap -> QuantMap
mergeQuant = Map.unionWith (++)
mergeDerivings :: Derivings -> Derivings -> Derivings
mergeDerivings m1 m2 = foldr (\(n,cs) m -> Map.insertWith Set.union n cs m) m2 (Map.toList m1)
merge ::(Ord k, Ord k1) => Map k (Map k1 a) -> Map k (Map k1 a) -> Map k (Map k1 a)
merge x y = foldr f y (Map.toList x)
where f ~(k,v) m = Map.insertWith (Map.union) k v m
checkAttrs :: DataTypes -> [NontermIdent] -> [(Identifier, a)] -> [(Identifier, b)] -> Map NontermIdent (Map Identifier a, Map Identifier b) -> (Map NontermIdent (Map Identifier a, Map Identifier b), Seq Error)
checkAttrs allFields nts inherited synthesized decls' = foldErrors check decls' nts where
check nt decls | not (nt `Map.member` allFields) = (decls,Seq.singleton(UndefNont nt))
| otherwise = let (inh,syn) = Map.findWithDefault (Map.empty,Map.empty) nt decls
(inh',einh) = checkDuplicates (DupInhAttr nt) inherited inh
(syn',esyn) = checkDuplicates (DupSynAttr nt) synthesized syn
in (Map.insert nt (inh',syn') decls,einh >< esyn)
addSelf :: Ord k1 => k1 -> Map k1 (Map k a, Attributes) -> Map k1 (Map k a, Attributes)
addSelf name atMap = let (eInh,eSyn) = Map.findWithDefault(Map.empty,Map.empty) name atMap
in Map.insert name (eInh, Map.insert (Ident "self" noPos) Self eSyn)atMap
flipmplus = flip mplus
makeType :: Set NontermIdent -> Type -> Type
makeType nts tp@(NT x _ _) | Set.member x nts = tp
| otherwise = Haskell (typeToHaskellString Nothing [] tp)
makeType _ tp = tp
constructGrammar :: Set NontermIdent
-> ParamMap
-> Map NontermIdent (Map ConstructorIdent (Set Identifier))
-> DataTypes
-> Map NontermIdent [ConstructorIdent]
-> Map NontermIdent (Map ConstructorIdent [Type])
-> Map NontermIdent (Attributes, Attributes)
-> Map NontermIdent (Map Identifier (String, String, String))
-> Derivings
-> Set NontermIdent
-> Map NontermIdent (Map ConstructorIdent [Rule])
-> Map NontermIdent (Map ConstructorIdent [TypeSig])
-> Map NontermIdent (Map ConstructorIdent [(Identifier, Type)])
-> TypeSyns
-> PragmaMap
-> AttrOrderMap
-> ContextMap
-> QuantMap
-> UniqueMap
-> Map NontermIdent (Map ConstructorIdent (Map Identifier [Expression]))
-> Map NontermIdent (Map ConstructorIdent (Map Identifier [Expression]))
-> Map NontermIdent (Map ConstructorIdent (Map Identifier (Identifier, [Identifier], Expression)))
-> Map NontermIdent (Map ConstructorIdent MaybeMacro)
-> Grammar
constructGrammar _ ntParams prodParams gram prodOrder constraints attrs uses derivings wrap allrules tsigs allinsts tsyns pragmaMap orderMap contextMap quantMap uniqueMap augmentsMap aroundsMap mergeMap macros =
let gr = [ (nt,alts) | (nt,alts) <- Map.toList gram]
nonts = map nont gr
nont (nt,alts) = let (inh,syn) = Map.findWithDefault (Map.empty,Map.empty) nt attrs
rmap = Map.findWithDefault Map.empty nt allrules
tsmap = Map.findWithDefault Map.empty nt tsigs
instsmap = Map.findWithDefault Map.empty nt allinsts
params = Map.findWithDefault [] nt ntParams
mergemap = Map.findWithDefault Map.empty nt mergeMap
macromap = Map.findWithDefault Map.empty nt macros
csmap = Map.findWithDefault Map.empty nt constraints
psmap = Map.findWithDefault Map.empty nt prodParams
prs = Map.findWithDefault [] nt prodOrder
alt con =
let flds = Map.findWithDefault [] con alts
rules = Map.findWithDefault [] con rmap
tsigs' = Map.findWithDefault [] con tsmap
insts = Map.findWithDefault [] con instsmap
merges = [ (n, NT t [] False) | (n, (t, _, _)) <- Map.assocs $ maybe Map.empty id (Map.lookup con mergemap) ]
cs = Map.findWithDefault [] con csmap
ps = Set.elems $ Map.findWithDefault Set.empty con psmap
mbMacro = Map.findWithDefault Nothing con macromap
cldrn = map child (flds ++ filter (not . existsAsField) insts ++ merges)
child (nm, tp) =
let tpI = if existsAsInst nm
then fromJust $ lookup nm insts
else tp
virt = if existsAsInst nm
then case lookup nm flds of
Just tp' -> ChildReplace tp'
Nothing -> ChildAttr
else if existsAsMerge nm
then ChildAttr
else ChildSyntax
in Child nm tpI virt
existsAsInst nm = maybe False (const True) (lookup nm insts)
existsAsField (nm,_) = maybe False (const True) (lookup nm flds)
existsAsMerge nm = maybe False (const True) (lookup nm merges)
in Production con ps cs cldrn rules tsigs' mbMacro
in Nonterminal nt params inh syn (map alt prs)
in Grammar tsyns uses derivings wrap nonts pragmaMap orderMap ntParams contextMap quantMap uniqueMap augmentsMap aroundsMap mergeMap
mapUnionWithSetUnion :: Map NontermIdent (Set ConstructorIdent) -> Map NontermIdent (Set ConstructorIdent) -> Map NontermIdent (Set ConstructorIdent)
mapUnionWithSetUnion = Map.unionWith Set.union
mapUnionWithPlusPlus :: Map BlockInfo [a] -> Map BlockInfo [a] -> Map BlockInfo [a]
mapUnionWithPlusPlus = Map.unionWith (++)
data Inh_AG = Inh_AG { options_Inh_AG :: (Options) }
data Syn_AG = Syn_AG { agi_Syn_AG :: ((Set NontermIdent, DataTypes, Map NontermIdent (Attributes, Attributes))), blocks_Syn_AG :: (Blocks), constructorTypeMap_Syn_AG :: (Map NontermIdent ConstructorType), errors_Syn_AG :: (Seq Error), moduleDecl_Syn_AG :: (Maybe (String,String,String)), output_Syn_AG :: (Grammar), pragmas_Syn_AG :: (Options -> Options) }
wrap_AG :: T_AG -> Inh_AG -> (Syn_AG )
wrap_AG (T_AG act) (Inh_AG _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_AG_vIn1 _lhsIoptions
(T_AG_vOut1 _lhsOagi _lhsOblocks _lhsOconstructorTypeMap _lhsOerrors _lhsOmoduleDecl _lhsOoutput _lhsOpragmas) <- return (inv_AG_s2 sem arg)
return (Syn_AG _lhsOagi _lhsOblocks _lhsOconstructorTypeMap _lhsOerrors _lhsOmoduleDecl _lhsOoutput _lhsOpragmas)
)
sem_AG :: AG -> T_AG
sem_AG ( AG elems_ ) = sem_AG_AG ( sem_Elems elems_ )
newtype T_AG = T_AG {
attach_T_AG :: Identity (T_AG_s2 )
}
newtype T_AG_s2 = C_AG_s2 {
inv_AG_s2 :: (T_AG_v1 )
}
data T_AG_s3 = C_AG_s3
type T_AG_v1 = (T_AG_vIn1 ) -> (T_AG_vOut1 )
data T_AG_vIn1 = T_AG_vIn1 (Options)
data T_AG_vOut1 = T_AG_vOut1 ((Set NontermIdent, DataTypes, Map NontermIdent (Attributes, Attributes))) (Blocks) (Map NontermIdent ConstructorType) (Seq Error) (Maybe (String,String,String)) (Grammar) (Options -> Options)
sem_AG_AG :: T_Elems -> T_AG
sem_AG_AG arg_elems_ = T_AG (return st2) where
st2 = let
v1 :: T_AG_v1
v1 = \ (T_AG_vIn1 _lhsIoptions) -> ( let
_elemsX20 = Control.Monad.Identity.runIdentity (attach_T_Elems (arg_elems_))
(T_Elems_vOut19 _elemsIattrDecls _elemsIattrOrderCollect _elemsIattrs _elemsIblocks _elemsIcollectedArounds _elemsIcollectedAugments _elemsIcollectedConParams _elemsIcollectedConstraints _elemsIcollectedConstructorsMap _elemsIcollectedFields _elemsIcollectedInsts _elemsIcollectedMacros _elemsIcollectedMerges _elemsIcollectedNames _elemsIcollectedRules _elemsIcollectedSetNames _elemsIcollectedSigs _elemsIcollectedUniques _elemsIconstructorTypeMap _elemsIctxCollect _elemsIdefSets _elemsIderivings _elemsIerrors _elemsImoduleDecl _elemsIparamsCollect _elemsIpragmas _elemsIquantCollect _elemsIsemPragmasCollect _elemsItypeSyns _elemsIuseMap _elemsIwrappers) = inv_Elems_s20 _elemsX20 (T_Elems_vIn19 _elemsOallAttrDecls _elemsOallAttrs _elemsOallConstructors _elemsOallFields _elemsOallNonterminals _elemsOattrDecls _elemsOattrs _elemsOdefSets _elemsOdefinedSets _elemsOoptions)
_lhsOoutput :: Grammar
_lhsOoutput = rule0 _allAttrDecls _allConParams _allConstraints _allFields _allMacros _allNonterminals _checkedArounds _checkedAugments _checkedInsts _checkedMerges _checkedRules _checkedSigs _checkedUniques _elemsIattrOrderCollect _elemsIctxCollect _elemsIderivings _elemsIparamsCollect _elemsIquantCollect _elemsIsemPragmasCollect _elemsItypeSyns _elemsIuseMap _elemsIwrappers _lhsIoptions _prodOrder
_prodOrder = rule1 _elemsIcollectedFields
_allFields = rule2 _elemsIcollectedFields
_allConstraints = rule3 _elemsIcollectedConstraints
_allConParams = rule4 _elemsIcollectedConParams
_allConstrs = rule5 _elemsIcollectedFields
_allRules = rule6 _elemsIcollectedRules
_allSigs = rule7 _allAttrDecls _elemsIcollectedSigs _elemsIcollectedUniques
_allInsts = rule8 _elemsIcollectedInsts
_allUniques = rule9 _elemsIcollectedUniques
_allAugments = rule10 _elemsIcollectedAugments
_allArounds = rule11 _elemsIcollectedArounds
_allMerges = rule12 _elemsIcollectedMerges
_augmentSigs = rule13 _allAugments
_allRulesErrs = rule14 _allAttrDecls _allFields _allInsts _allMerges _allRules _allSigs
_allNamesErrs = rule15 _allRules
_allSigsErrs = rule16 _allSigs
_allInstsErrs = rule17 _allFields _allInsts _allNonterminals _allSigs
_allUniquesErrs = rule18 _allAttrDecls _allUniques
_allAugmentErrs = rule19 _allAttrDecls _allAugments
_allAroundsErrs = rule20 _allArounds _allFields
_allMergesErrs = rule21 _allFields _allInsts _allMerges _allNonterminals
_checkedRulesPre = rule22 _allRulesErrs
_checkedSigs = rule23 _allSigsErrs _augmentSigs
_checkedInsts = rule24 _allInstsErrs
_checkedUniques = rule25 _allUniquesErrs
_checkedAugments = rule26 _allAugmentErrs
_checkedArounds = rule27 _allAroundsErrs
_checkedRules = rule28 _allAttrDecls _allFields _allRules _checkedInsts _checkedRulesPre _checkedUniques _lhsIoptions
_checkedMerges = rule29 _allMergesErrs
_errs1 = rule30 _elemsItypeSyns
_errs2 = rule31 _allFields
_errs3 = rule32 ()
_errs4 = rule33 _allRulesErrs
_errs5 = rule34 _allSigsErrs
_errs6 = rule35 _allInstsErrs
_errs7 = rule36 _allUniquesErrs
_errs8 = rule37 _allAugmentErrs
_errs9 = rule38 _allAroundsErrs
_errs10 = rule39 _allNamesErrs
_errs11 = rule40 _allMergesErrs
_lhsOerrors :: Seq Error
_lhsOerrors = rule41 _elemsIerrors _errs1 _errs10 _errs11 _errs2 _errs3 _errs4 _errs5 _errs6 _errs7 _errs8 _errs9
_allNonterminals = rule42 _elemsIcollectedNames _elemsIcollectedSetNames
_elemsOallConstructors = rule43 _elemsIcollectedConstructorsMap
_elemsOdefSets = rule44 _allNonterminals
_elemsOdefinedSets = rule45 _elemsIdefSets
_elemsOattrDecls = rule46 ()
_allAttrDecls = rule47 _allNonterminals _elemsIattrDecls _lhsIoptions
_allMacros = rule48 _elemsIcollectedMacros
_lhsOagi :: (Set NontermIdent, DataTypes, Map NontermIdent (Attributes, Attributes))
_lhsOagi = rule49 _allAttrs _allFields _allNonterminals
_allAttrs = rule50 _allNonterminals _elemsIattrs _lhsIoptions
_elemsOattrs = rule51 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule52 _elemsIblocks
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule53 _elemsIconstructorTypeMap
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule54 _elemsImoduleDecl
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule55 _elemsIpragmas
_elemsOallAttrDecls = rule56 _allAttrDecls
_elemsOallAttrs = rule57 _allAttrs
_elemsOallFields = rule58 _allFields
_elemsOallNonterminals = rule59 _allNonterminals
_elemsOoptions = rule60 _lhsIoptions
__result_ = T_AG_vOut1 _lhsOagi _lhsOblocks _lhsOconstructorTypeMap _lhsOerrors _lhsOmoduleDecl _lhsOoutput _lhsOpragmas
in __result_ )
in C_AG_s2 v1
rule0 = \ _allAttrDecls _allConParams _allConstraints _allFields _allMacros _allNonterminals _checkedArounds _checkedAugments _checkedInsts _checkedMerges _checkedRules _checkedSigs _checkedUniques ((_elemsIattrOrderCollect) :: AttrOrderMap) ((_elemsIctxCollect) :: ContextMap) ((_elemsIderivings) :: Derivings) ((_elemsIparamsCollect) :: ParamMap) ((_elemsIquantCollect) :: QuantMap) ((_elemsIsemPragmasCollect) :: PragmaMap) ((_elemsItypeSyns) :: TypeSyns) ((_elemsIuseMap) :: Map NontermIdent (Map Identifier (String,String,String))) ((_elemsIwrappers) :: Set NontermIdent) ((_lhsIoptions) :: Options) _prodOrder ->
constructGrammar _allNonterminals
_elemsIparamsCollect
_allConParams
_allFields
_prodOrder
_allConstraints
_allAttrDecls
_elemsIuseMap
_elemsIderivings
(if wrappers _lhsIoptions then _allNonterminals else _elemsIwrappers)
_checkedRules
_checkedSigs
_checkedInsts
_elemsItypeSyns
_elemsIsemPragmasCollect
_elemsIattrOrderCollect
_elemsIctxCollect
_elemsIquantCollect
_checkedUniques
_checkedAugments
_checkedArounds
_checkedMerges
_allMacros
rule1 = \ ((_elemsIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ->
let f (nt,con,_) = Map.insertWith g nt [con]
g [con] lst | con `elem` lst = lst
| otherwise = con : lst
g _ _ = error "This is not possible"
in foldr f Map.empty _elemsIcollectedFields
rule2 = \ ((_elemsIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ->
let f (nt,con,fm) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con fm)
in foldr f (Map.empty) _elemsIcollectedFields
rule3 = \ ((_elemsIcollectedConstraints) :: [(NontermIdent, ConstructorIdent, [Type])]) ->
let f (nt,con,fm) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con fm)
in foldr f (Map.empty) _elemsIcollectedConstraints
rule4 = \ ((_elemsIcollectedConParams) :: [(NontermIdent, ConstructorIdent, Set Identifier)]) ->
let f (nt,con,fm) = Map.insertWith (Map.unionWith Set.union) nt (Map.singleton con fm)
in foldr f (Map.empty) _elemsIcollectedConParams
rule5 = \ ((_elemsIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ->
let f (nt,con,_) = Map.insertWith (++) nt [con]
in foldr f (Map.empty) _elemsIcollectedFields
rule6 = \ ((_elemsIcollectedRules) :: [ (NontermIdent, ConstructorIdent, RuleInfo)]) ->
let f (nt,con,r) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con [r])
in foldr f (Map.empty) _elemsIcollectedRules
rule7 = \ _allAttrDecls ((_elemsIcollectedSigs) :: [ (NontermIdent, ConstructorIdent, SigInfo) ]) ((_elemsIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ->
let f (nt,con,t) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con [t])
typeof nt r = Map.findWithDefault (Haskell "<unknown>") r $ fst $ Map.findWithDefault (Map.empty,Map.empty) nt _allAttrDecls
in foldr f (Map.empty) ( _elemsIcollectedSigs
++ [ (nt, con, (ident,typeof nt ref)) | (nt, con, us) <- _elemsIcollectedUniques, (ident,ref) <- us ]
)
rule8 = \ ((_elemsIcollectedInsts) :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]) ->
let f (nt,con,is) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con is)
in foldr f (Map.empty) _elemsIcollectedInsts
rule9 = \ ((_elemsIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ->
let f (nt,con,us) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con us)
in foldr f (Map.empty) _elemsIcollectedUniques
rule10 = \ ((_elemsIcollectedAugments) :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ->
let f (nt,con,as) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con as)
in foldr f Map.empty _elemsIcollectedAugments
rule11 = \ ((_elemsIcollectedArounds) :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ->
let f (nt,con,as) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con as)
in foldr f Map.empty _elemsIcollectedArounds
rule12 = \ ((_elemsIcollectedMerges) :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ->
let f (nt,con,as) = Map.insertWith (Map.unionWith (++)) nt (Map.singleton con as)
in foldr f Map.empty _elemsIcollectedMerges
rule13 = \ _allAugments ->
let gen _ = []
in Map.map (Map.map gen) _allAugments
rule14 = \ _allAttrDecls _allFields _allInsts _allMerges _allRules _allSigs ->
Map.mapWithKey (Map.mapWithKey . (checkRules _allAttrDecls _allFields _allInsts _allSigs _allMerges )) _allRules
rule15 = \ _allRules ->
Map.mapWithKey (Map.mapWithKey . checkRuleNames) _allRules
rule16 = \ _allSigs ->
Map.mapWithKey (Map.mapWithKey . (checkSigs )) _allSigs
rule17 = \ _allFields _allInsts _allNonterminals _allSigs ->
Map.mapWithKey (Map.mapWithKey . (checkInsts _allNonterminals _allSigs _allFields )) _allInsts
rule18 = \ _allAttrDecls _allUniques ->
Map.mapWithKey (Map.mapWithKey . (checkUniques _allAttrDecls )) _allUniques
rule19 = \ _allAttrDecls _allAugments ->
Map.mapWithKey (Map.mapWithKey . (checkAugments _allAttrDecls )) _allAugments
rule20 = \ _allArounds _allFields ->
Map.mapWithKey (Map.mapWithKey . (checkArounds _allFields )) _allArounds
rule21 = \ _allFields _allInsts _allMerges _allNonterminals ->
Map.mapWithKey (Map.mapWithKey . (checkMerges _allNonterminals _allInsts _allFields )) _allMerges
rule22 = \ _allRulesErrs ->
Map.map (Map.map fst) _allRulesErrs
rule23 = \ _allSigsErrs _augmentSigs ->
Map.map (Map.map fst) _allSigsErrs `unionunionplusplus` _augmentSigs
rule24 = \ _allInstsErrs ->
Map.map (Map.map fst) _allInstsErrs
rule25 = \ _allUniquesErrs ->
Map.map (Map.map fst) _allUniquesErrs
rule26 = \ _allAugmentErrs ->
Map.map (Map.map fst) _allAugmentErrs
rule27 = \ _allAroundsErrs ->
Map.map (Map.map fst) _allAroundsErrs
rule28 = \ _allAttrDecls _allFields _allRules _checkedInsts _checkedRulesPre _checkedUniques ((_lhsIoptions) :: Options) ->
Map.unionWith (Map.unionWith (++)) _checkedRulesPre (Map.mapWithKey (Map.mapWithKey . (mkUniqueRules _lhsIoptions _allRules _allFields _checkedInsts _allAttrDecls )) _checkedUniques )
rule29 = \ _allMergesErrs ->
Map.map (Map.map fst) _allMergesErrs
rule30 = \ ((_elemsItypeSyns) :: TypeSyns) ->
let f = checkForDuplicates (DupSynonym)
in Seq.fromList . f . map fst $ _elemsItypeSyns
rule31 = \ _allFields ->
let g nt (con,fm) = checkForDuplicates (DupChild nt con) (map fst fm)
f (nt,cfm) = concat . map (g nt) . Map.toList $ cfm
in Seq.fromList . concat . map f . Map.toList $ _allFields
rule32 = \ (_ :: ()) ->
let
in Seq.empty
rule33 = \ _allRulesErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allRulesErrs
rule34 = \ _allSigsErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allSigsErrs
rule35 = \ _allInstsErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allInstsErrs
rule36 = \ _allUniquesErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allUniquesErrs
rule37 = \ _allAugmentErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allAugmentErrs
rule38 = \ _allAroundsErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allAroundsErrs
rule39 = \ _allNamesErrs ->
let f m s = Map.fold ((><)) s m
in Map.fold f Seq.empty _allNamesErrs
rule40 = \ _allMergesErrs ->
let f m s = Map.fold ((><) . snd) s m
in Map.fold f Seq.empty _allMergesErrs
rule41 = \ ((_elemsIerrors) :: Seq Error) _errs1 _errs10 _errs11 _errs2 _errs3 _errs4 _errs5 _errs6 _errs7 _errs8 _errs9 ->
_elemsIerrors >< _errs1 >< _errs2 >< _errs3 >< _errs4 >< _errs5 >< _errs6 >< _errs7 >< _errs8 >< _errs9 >< _errs10 >< _errs11
rule42 = \ ((_elemsIcollectedNames) :: Set Identifier) ((_elemsIcollectedSetNames) :: Set Identifier) ->
_elemsIcollectedNames `Set.difference` _elemsIcollectedSetNames
rule43 = \ ((_elemsIcollectedConstructorsMap) :: Map NontermIdent (Set ConstructorIdent)) ->
_elemsIcollectedConstructorsMap
rule44 = \ _allNonterminals ->
Map.fromList (map (\x->(x,(Set.singleton x, Set.empty))) (Set.toList _allNonterminals ))
rule45 = \ ((_elemsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
Map.map fst _elemsIdefSets
rule46 = \ (_ :: ()) ->
Map.empty
rule47 = \ _allNonterminals ((_elemsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ((_lhsIoptions) :: Options) ->
if withSelf _lhsIoptions
then foldr addSelf _elemsIattrDecls (Set.toList _allNonterminals )
else _elemsIattrDecls
rule48 = \ ((_elemsIcollectedMacros) :: [(NontermIdent, ConstructorIdent, MaybeMacro)]) ->
let f (nt,con,m) = Map.insertWith (Map.union) nt (Map.singleton con m)
in foldr f (Map.empty) _elemsIcollectedMacros
rule49 = \ _allAttrs _allFields _allNonterminals ->
(_allNonterminals ,_allFields ,_allAttrs )
rule50 = \ _allNonterminals ((_elemsIattrs) :: Map NontermIdent (Attributes, Attributes)) ((_lhsIoptions) :: Options) ->
if withSelf _lhsIoptions
then foldr addSelf _elemsIattrs (Set.toList _allNonterminals )
else _elemsIattrs
rule51 = \ (_ :: ()) ->
Map.empty
rule52 = \ ((_elemsIblocks) :: Blocks) ->
_elemsIblocks
rule53 = \ ((_elemsIconstructorTypeMap) :: Map NontermIdent ConstructorType) ->
_elemsIconstructorTypeMap
rule54 = \ ((_elemsImoduleDecl) :: Maybe (String,String,String)) ->
_elemsImoduleDecl
rule55 = \ ((_elemsIpragmas) :: Options -> Options) ->
_elemsIpragmas
rule56 = \ _allAttrDecls ->
_allAttrDecls
rule57 = \ _allAttrs ->
_allAttrs
rule58 = \ _allFields ->
_allFields
rule59 = \ _allNonterminals ->
_allNonterminals
rule60 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
data Inh_Alt = Inh_Alt { allConstructors_Inh_Alt :: (Map NontermIdent (Set ConstructorIdent)), allNonterminals_Inh_Alt :: (Set NontermIdent), nts_Inh_Alt :: (Set NontermIdent) }
data Syn_Alt = Syn_Alt { collectedConParams_Syn_Alt :: ([(NontermIdent, ConstructorIdent, Set Identifier)]), collectedConstraints_Syn_Alt :: ([(NontermIdent, ConstructorIdent, [Type])]), collectedConstructorNames_Syn_Alt :: (Set ConstructorIdent), collectedFields_Syn_Alt :: ([(NontermIdent, ConstructorIdent, FieldMap)]), collectedMacros_Syn_Alt :: ([(NontermIdent, ConstructorIdent, MaybeMacro)]) }
wrap_Alt :: T_Alt -> Inh_Alt -> (Syn_Alt )
wrap_Alt (T_Alt act) (Inh_Alt _lhsIallConstructors _lhsIallNonterminals _lhsInts) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Alt_vIn4 _lhsIallConstructors _lhsIallNonterminals _lhsInts
(T_Alt_vOut4 _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros) <- return (inv_Alt_s5 sem arg)
return (Syn_Alt _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros)
)
sem_Alt :: Alt -> T_Alt
sem_Alt ( Alt pos_ names_ tyvars_ fields_ macro_ ) = sem_Alt_Alt pos_ ( sem_ConstructorSet names_ ) tyvars_ ( sem_Fields fields_ ) macro_
newtype T_Alt = T_Alt {
attach_T_Alt :: Identity (T_Alt_s5 )
}
newtype T_Alt_s5 = C_Alt_s5 {
inv_Alt_s5 :: (T_Alt_v4 )
}
data T_Alt_s6 = C_Alt_s6
type T_Alt_v4 = (T_Alt_vIn4 ) -> (T_Alt_vOut4 )
data T_Alt_vIn4 = T_Alt_vIn4 (Map NontermIdent (Set ConstructorIdent)) (Set NontermIdent) (Set NontermIdent)
data T_Alt_vOut4 = T_Alt_vOut4 ([(NontermIdent, ConstructorIdent, Set Identifier)]) ([(NontermIdent, ConstructorIdent, [Type])]) (Set ConstructorIdent) ([(NontermIdent, ConstructorIdent, FieldMap)]) ([(NontermIdent, ConstructorIdent, MaybeMacro)])
sem_Alt_Alt :: (Pos) -> T_ConstructorSet -> ([Identifier]) -> T_Fields -> (MaybeMacro) -> T_Alt
sem_Alt_Alt _ arg_names_ arg_tyvars_ arg_fields_ arg_macro_ = T_Alt (return st5) where
st5 = let
v4 :: T_Alt_v4
v4 = \ (T_Alt_vIn4 _lhsIallConstructors _lhsIallNonterminals _lhsInts) -> ( let
_namesX14 = Control.Monad.Identity.runIdentity (attach_T_ConstructorSet (arg_names_))
_fieldsX26 = Control.Monad.Identity.runIdentity (attach_T_Fields (arg_fields_))
(T_ConstructorSet_vOut13 _namesIcollectedConstructorNames _namesIconstructors _namesIerrors) = inv_ConstructorSet_s14 _namesX14 (T_ConstructorSet_vIn13 )
(T_Fields_vOut25 _fieldsIcollectedConstraints _fieldsIcollectedFields) = inv_Fields_s26 _fieldsX26 (T_Fields_vIn25 _fieldsOallNonterminals)
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule61 _fieldsIcollectedFields _lhsIallConstructors _lhsInts _namesIconstructors
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule62 _fieldsIcollectedConstraints _lhsIallConstructors _lhsInts _namesIconstructors
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule63 _lhsIallConstructors _lhsInts _namesIconstructors arg_tyvars_
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule64 _lhsIallConstructors _lhsInts _namesIconstructors arg_macro_
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule65 _namesIcollectedConstructorNames
_fieldsOallNonterminals = rule66 _lhsIallNonterminals
__result_ = T_Alt_vOut4 _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros
in __result_ )
in C_Alt_s5 v4
rule61 = \ ((_fieldsIcollectedFields) :: [(Identifier, Type)]) ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ((_lhsInts) :: Set NontermIdent) ((_namesIconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ->
[ (nt, con, _fieldsIcollectedFields)
| nt <- Set.toList _lhsInts
, con <- Set.toList (_namesIconstructors (Map.findWithDefault Set.empty nt _lhsIallConstructors))
]
rule62 = \ ((_fieldsIcollectedConstraints) :: [Type]) ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ((_lhsInts) :: Set NontermIdent) ((_namesIconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ->
[ (nt, con, _fieldsIcollectedConstraints)
| nt <- Set.toList _lhsInts
, con <- Set.toList (_namesIconstructors (Map.findWithDefault Set.empty nt _lhsIallConstructors))
]
rule63 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ((_lhsInts) :: Set NontermIdent) ((_namesIconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) tyvars_ ->
[ (nt, con, Set.fromList tyvars_)
| nt <- Set.toList _lhsInts
, con <- Set.toList (_namesIconstructors (Map.findWithDefault Set.empty nt _lhsIallConstructors))
]
rule64 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ((_lhsInts) :: Set NontermIdent) ((_namesIconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) macro_ ->
[ (nt, con, macro_)
| nt <- Set.toList _lhsInts
, con <- Set.toList (_namesIconstructors (Map.findWithDefault Set.empty nt _lhsIallConstructors))
]
rule65 = \ ((_namesIcollectedConstructorNames) :: Set ConstructorIdent) ->
_namesIcollectedConstructorNames
rule66 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
data Inh_Alts = Inh_Alts { allConstructors_Inh_Alts :: (Map NontermIdent (Set ConstructorIdent)), allNonterminals_Inh_Alts :: (Set NontermIdent), nts_Inh_Alts :: (Set NontermIdent) }
data Syn_Alts = Syn_Alts { collectedConParams_Syn_Alts :: ([(NontermIdent, ConstructorIdent, Set Identifier)]), collectedConstraints_Syn_Alts :: ([(NontermIdent, ConstructorIdent, [Type])]), collectedConstructorNames_Syn_Alts :: (Set ConstructorIdent), collectedFields_Syn_Alts :: ([(NontermIdent, ConstructorIdent, FieldMap)]), collectedMacros_Syn_Alts :: ([(NontermIdent, ConstructorIdent, MaybeMacro)]) }
wrap_Alts :: T_Alts -> Inh_Alts -> (Syn_Alts )
wrap_Alts (T_Alts act) (Inh_Alts _lhsIallConstructors _lhsIallNonterminals _lhsInts) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Alts_vIn7 _lhsIallConstructors _lhsIallNonterminals _lhsInts
(T_Alts_vOut7 _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros) <- return (inv_Alts_s8 sem arg)
return (Syn_Alts _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros)
)
sem_Alts :: Alts -> T_Alts
sem_Alts list = Prelude.foldr sem_Alts_Cons sem_Alts_Nil (Prelude.map sem_Alt list)
newtype T_Alts = T_Alts {
attach_T_Alts :: Identity (T_Alts_s8 )
}
newtype T_Alts_s8 = C_Alts_s8 {
inv_Alts_s8 :: (T_Alts_v7 )
}
data T_Alts_s9 = C_Alts_s9
type T_Alts_v7 = (T_Alts_vIn7 ) -> (T_Alts_vOut7 )
data T_Alts_vIn7 = T_Alts_vIn7 (Map NontermIdent (Set ConstructorIdent)) (Set NontermIdent) (Set NontermIdent)
data T_Alts_vOut7 = T_Alts_vOut7 ([(NontermIdent, ConstructorIdent, Set Identifier)]) ([(NontermIdent, ConstructorIdent, [Type])]) (Set ConstructorIdent) ([(NontermIdent, ConstructorIdent, FieldMap)]) ([(NontermIdent, ConstructorIdent, MaybeMacro)])
sem_Alts_Cons :: T_Alt -> T_Alts -> T_Alts
sem_Alts_Cons arg_hd_ arg_tl_ = T_Alts (return st8) where
st8 = let
v7 :: T_Alts_v7
v7 = \ (T_Alts_vIn7 _lhsIallConstructors _lhsIallNonterminals _lhsInts) -> ( let
_hdX5 = Control.Monad.Identity.runIdentity (attach_T_Alt (arg_hd_))
_tlX8 = Control.Monad.Identity.runIdentity (attach_T_Alts (arg_tl_))
(T_Alt_vOut4 _hdIcollectedConParams _hdIcollectedConstraints _hdIcollectedConstructorNames _hdIcollectedFields _hdIcollectedMacros) = inv_Alt_s5 _hdX5 (T_Alt_vIn4 _hdOallConstructors _hdOallNonterminals _hdOnts)
(T_Alts_vOut7 _tlIcollectedConParams _tlIcollectedConstraints _tlIcollectedConstructorNames _tlIcollectedFields _tlIcollectedMacros) = inv_Alts_s8 _tlX8 (T_Alts_vIn7 _tlOallConstructors _tlOallNonterminals _tlOnts)
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule67 _hdIcollectedConParams _tlIcollectedConParams
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule68 _hdIcollectedConstraints _tlIcollectedConstraints
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule69 _hdIcollectedConstructorNames _tlIcollectedConstructorNames
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule70 _hdIcollectedFields _tlIcollectedFields
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule71 _hdIcollectedMacros _tlIcollectedMacros
_hdOallConstructors = rule72 _lhsIallConstructors
_hdOallNonterminals = rule73 _lhsIallNonterminals
_hdOnts = rule74 _lhsInts
_tlOallConstructors = rule75 _lhsIallConstructors
_tlOallNonterminals = rule76 _lhsIallNonterminals
_tlOnts = rule77 _lhsInts
__result_ = T_Alts_vOut7 _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros
in __result_ )
in C_Alts_s8 v7
rule67 = \ ((_hdIcollectedConParams) :: [(NontermIdent, ConstructorIdent, Set Identifier)]) ((_tlIcollectedConParams) :: [(NontermIdent, ConstructorIdent, Set Identifier)]) ->
_hdIcollectedConParams ++ _tlIcollectedConParams
rule68 = \ ((_hdIcollectedConstraints) :: [(NontermIdent, ConstructorIdent, [Type])]) ((_tlIcollectedConstraints) :: [(NontermIdent, ConstructorIdent, [Type])]) ->
_hdIcollectedConstraints ++ _tlIcollectedConstraints
rule69 = \ ((_hdIcollectedConstructorNames) :: Set ConstructorIdent) ((_tlIcollectedConstructorNames) :: Set ConstructorIdent) ->
_hdIcollectedConstructorNames `Set.union` _tlIcollectedConstructorNames
rule70 = \ ((_hdIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ((_tlIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ->
_hdIcollectedFields ++ _tlIcollectedFields
rule71 = \ ((_hdIcollectedMacros) :: [(NontermIdent, ConstructorIdent, MaybeMacro)]) ((_tlIcollectedMacros) :: [(NontermIdent, ConstructorIdent, MaybeMacro)]) ->
_hdIcollectedMacros ++ _tlIcollectedMacros
rule72 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ->
_lhsIallConstructors
rule73 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule74 = \ ((_lhsInts) :: Set NontermIdent) ->
_lhsInts
rule75 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ->
_lhsIallConstructors
rule76 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule77 = \ ((_lhsInts) :: Set NontermIdent) ->
_lhsInts
sem_Alts_Nil :: T_Alts
sem_Alts_Nil = T_Alts (return st8) where
st8 = let
v7 :: T_Alts_v7
v7 = \ (T_Alts_vIn7 _lhsIallConstructors _lhsIallNonterminals _lhsInts) -> ( let
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule78 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule79 ()
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule80 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule81 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule82 ()
__result_ = T_Alts_vOut7 _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorNames _lhsOcollectedFields _lhsOcollectedMacros
in __result_ )
in C_Alts_s8 v7
rule78 = \ (_ :: ()) ->
[]
rule79 = \ (_ :: ()) ->
[]
rule80 = \ (_ :: ()) ->
Set.empty
rule81 = \ (_ :: ()) ->
[]
rule82 = \ (_ :: ()) ->
[]
data Inh_Attrs = Inh_Attrs { allFields_Inh_Attrs :: (DataTypes), allNonterminals_Inh_Attrs :: (Set NontermIdent), attrDecls_Inh_Attrs :: (Map NontermIdent (Attributes, Attributes)), attrs_Inh_Attrs :: (Map NontermIdent (Attributes, Attributes)), nts_Inh_Attrs :: (Set NontermIdent), options_Inh_Attrs :: (Options) }
data Syn_Attrs = Syn_Attrs { attrDecls_Syn_Attrs :: (Map NontermIdent (Attributes, Attributes)), attrs_Syn_Attrs :: (Map NontermIdent (Attributes, Attributes)), errors_Syn_Attrs :: (Seq Error), useMap_Syn_Attrs :: (Map NontermIdent (Map Identifier (String,String,String))) }
wrap_Attrs :: T_Attrs -> Inh_Attrs -> (Syn_Attrs )
wrap_Attrs (T_Attrs act) (Inh_Attrs _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsInts _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Attrs_vIn10 _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsInts _lhsIoptions
(T_Attrs_vOut10 _lhsOattrDecls _lhsOattrs _lhsOerrors _lhsOuseMap) <- return (inv_Attrs_s11 sem arg)
return (Syn_Attrs _lhsOattrDecls _lhsOattrs _lhsOerrors _lhsOuseMap)
)
sem_Attrs :: Attrs -> T_Attrs
sem_Attrs ( Attrs pos_ inh_ chn_ syn_ ) = sem_Attrs_Attrs pos_ inh_ chn_ syn_
newtype T_Attrs = T_Attrs {
attach_T_Attrs :: Identity (T_Attrs_s11 )
}
newtype T_Attrs_s11 = C_Attrs_s11 {
inv_Attrs_s11 :: (T_Attrs_v10 )
}
data T_Attrs_s12 = C_Attrs_s12
type T_Attrs_v10 = (T_Attrs_vIn10 ) -> (T_Attrs_vOut10 )
data T_Attrs_vIn10 = T_Attrs_vIn10 (DataTypes) (Set NontermIdent) (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (Set NontermIdent) (Options)
data T_Attrs_vOut10 = T_Attrs_vOut10 (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (Seq Error) (Map NontermIdent (Map Identifier (String,String,String)))
sem_Attrs_Attrs :: (Pos) -> (AttrNames) -> (AttrNames) -> (AttrNames) -> T_Attrs
sem_Attrs_Attrs _ arg_inh_ arg_chn_ arg_syn_ = T_Attrs (return st11) where
st11 = let
v10 :: T_Attrs_v10
v10 = \ (T_Attrs_vIn10 _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsInts _lhsIoptions) -> ( let
(_attrDecls,_errors) = rule83 _inherited _lhsIallFields _lhsIattrDecls _lhsInts _synthesized
(_inherited,_synthesized,_useMap) = rule84 _lhsIallNonterminals arg_chn_ arg_inh_ arg_syn_
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule85 _lhsInts _useMap
_errors1 = rule86 _lhsIoptions arg_chn_ arg_inh_ arg_syn_
_lhsOerrors :: Seq Error
_lhsOerrors = rule87 _errors _errors1
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule88 _inherited _lhsIattrs _lhsInts _synthesized
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule89 _attrDecls
__result_ = T_Attrs_vOut10 _lhsOattrDecls _lhsOattrs _lhsOerrors _lhsOuseMap
in __result_ )
in C_Attrs_s11 v10
rule83 = \ _inherited ((_lhsIallFields) :: DataTypes) ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ((_lhsInts) :: Set NontermIdent) _synthesized ->
checkAttrs _lhsIallFields (Set.toList _lhsInts) _inherited _synthesized _lhsIattrDecls
rule84 = \ ((_lhsIallNonterminals) :: Set NontermIdent) chn_ inh_ syn_ ->
let splitAttrs xs = unzip [ ((n,makeType _lhsIallNonterminals t),(n,ud))
| (n,t,ud) <- xs
]
(inh,_) = splitAttrs inh_
(chn,uses1) = splitAttrs chn_
(syn,uses2) = splitAttrs syn_
isUse (_,(e1,e2,_)) = not (null e1 || null e2)
in (inh++chn,chn++syn, Map.fromList (Prelude.filter isUse (uses1++uses2)))
rule85 = \ ((_lhsInts) :: Set NontermIdent) _useMap ->
Map.fromList (zip (Set.toList _lhsInts) (repeat _useMap))
rule86 = \ ((_lhsIoptions) :: Options) chn_ inh_ syn_ ->
if checkParseTy _lhsIoptions
then let attrs = inh_ ++ syn_ ++ chn_
items = map (\(ident,tp,_) -> (getPos ident, tp)) attrs
errs = map check items
check (pos,Haskell s) =
let ex = Expression pos tks
tks = [tk]
tk = HsToken s pos
in Seq.fromList $ checkTy ex
check _ = Seq.empty
in foldr (Seq.><) Seq.empty errs
else Seq.empty
rule87 = \ _errors _errors1 ->
_errors Seq.>< _errors1
rule88 = \ _inherited ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ((_lhsInts) :: Set NontermIdent) _synthesized ->
let ins decls nt = if Map.member nt decls
then Map.update (\(inh,syn) -> Just ( Map.union inh $ Map.fromList _inherited
, Map.union syn $ Map.fromList _synthesized)) nt decls
else Map.insert nt (Map.fromList _inherited, Map.fromList _synthesized) decls
in foldl ins _lhsIattrs (Set.toList _lhsInts)
rule89 = \ _attrDecls ->
_attrDecls
data Inh_ConstructorSet = Inh_ConstructorSet { }
data Syn_ConstructorSet = Syn_ConstructorSet { collectedConstructorNames_Syn_ConstructorSet :: (Set ConstructorIdent), constructors_Syn_ConstructorSet :: ((Set ConstructorIdent->Set ConstructorIdent)), errors_Syn_ConstructorSet :: (Seq Error) }
wrap_ConstructorSet :: T_ConstructorSet -> Inh_ConstructorSet -> (Syn_ConstructorSet )
wrap_ConstructorSet (T_ConstructorSet act) (Inh_ConstructorSet ) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_ConstructorSet_vIn13
(T_ConstructorSet_vOut13 _lhsOcollectedConstructorNames _lhsOconstructors _lhsOerrors) <- return (inv_ConstructorSet_s14 sem arg)
return (Syn_ConstructorSet _lhsOcollectedConstructorNames _lhsOconstructors _lhsOerrors)
)
sem_ConstructorSet :: ConstructorSet -> T_ConstructorSet
sem_ConstructorSet ( CName name_ ) = sem_ConstructorSet_CName name_
sem_ConstructorSet ( CUnion set1_ set2_ ) = sem_ConstructorSet_CUnion ( sem_ConstructorSet set1_ ) ( sem_ConstructorSet set2_ )
sem_ConstructorSet ( CDifference set1_ set2_ ) = sem_ConstructorSet_CDifference ( sem_ConstructorSet set1_ ) ( sem_ConstructorSet set2_ )
sem_ConstructorSet ( CAll ) = sem_ConstructorSet_CAll
newtype T_ConstructorSet = T_ConstructorSet {
attach_T_ConstructorSet :: Identity (T_ConstructorSet_s14 )
}
newtype T_ConstructorSet_s14 = C_ConstructorSet_s14 {
inv_ConstructorSet_s14 :: (T_ConstructorSet_v13 )
}
data T_ConstructorSet_s15 = C_ConstructorSet_s15
type T_ConstructorSet_v13 = (T_ConstructorSet_vIn13 ) -> (T_ConstructorSet_vOut13 )
data T_ConstructorSet_vIn13 = T_ConstructorSet_vIn13
data T_ConstructorSet_vOut13 = T_ConstructorSet_vOut13 (Set ConstructorIdent) ((Set ConstructorIdent->Set ConstructorIdent)) (Seq Error)
sem_ConstructorSet_CName :: (ConstructorIdent) -> T_ConstructorSet
sem_ConstructorSet_CName arg_name_ = T_ConstructorSet (return st14) where
st14 = let
v13 :: T_ConstructorSet_v13
v13 = \ (T_ConstructorSet_vIn13 ) -> ( let
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule90 arg_name_
_lhsOconstructors :: (Set ConstructorIdent->Set ConstructorIdent)
_lhsOconstructors = rule91 arg_name_
_lhsOerrors :: Seq Error
_lhsOerrors = rule92 ()
__result_ = T_ConstructorSet_vOut13 _lhsOcollectedConstructorNames _lhsOconstructors _lhsOerrors
in __result_ )
in C_ConstructorSet_s14 v13
rule90 = \ name_ ->
Set.singleton name_
rule91 = \ name_ ->
\_ -> Set.singleton name_
rule92 = \ (_ :: ()) ->
Seq.empty
sem_ConstructorSet_CUnion :: T_ConstructorSet -> T_ConstructorSet -> T_ConstructorSet
sem_ConstructorSet_CUnion arg_set1_ arg_set2_ = T_ConstructorSet (return st14) where
st14 = let
v13 :: T_ConstructorSet_v13
v13 = \ (T_ConstructorSet_vIn13 ) -> ( let
_set1X14 = Control.Monad.Identity.runIdentity (attach_T_ConstructorSet (arg_set1_))
_set2X14 = Control.Monad.Identity.runIdentity (attach_T_ConstructorSet (arg_set2_))
(T_ConstructorSet_vOut13 _set1IcollectedConstructorNames _set1Iconstructors _set1Ierrors) = inv_ConstructorSet_s14 _set1X14 (T_ConstructorSet_vIn13 )
(T_ConstructorSet_vOut13 _set2IcollectedConstructorNames _set2Iconstructors _set2Ierrors) = inv_ConstructorSet_s14 _set2X14 (T_ConstructorSet_vIn13 )
_lhsOconstructors :: (Set ConstructorIdent->Set ConstructorIdent)
_lhsOconstructors = rule93 _set1Iconstructors _set2Iconstructors
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule94 _set1IcollectedConstructorNames _set2IcollectedConstructorNames
_lhsOerrors :: Seq Error
_lhsOerrors = rule95 _set1Ierrors _set2Ierrors
__result_ = T_ConstructorSet_vOut13 _lhsOcollectedConstructorNames _lhsOconstructors _lhsOerrors
in __result_ )
in C_ConstructorSet_s14 v13
rule93 = \ ((_set1Iconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ((_set2Iconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ->
\ds -> _set1Iconstructors ds `Set.union` _set2Iconstructors ds
rule94 = \ ((_set1IcollectedConstructorNames) :: Set ConstructorIdent) ((_set2IcollectedConstructorNames) :: Set ConstructorIdent) ->
_set1IcollectedConstructorNames `Set.union` _set2IcollectedConstructorNames
rule95 = \ ((_set1Ierrors) :: Seq Error) ((_set2Ierrors) :: Seq Error) ->
_set1Ierrors Seq.>< _set2Ierrors
sem_ConstructorSet_CDifference :: T_ConstructorSet -> T_ConstructorSet -> T_ConstructorSet
sem_ConstructorSet_CDifference arg_set1_ arg_set2_ = T_ConstructorSet (return st14) where
st14 = let
v13 :: T_ConstructorSet_v13
v13 = \ (T_ConstructorSet_vIn13 ) -> ( let
_set1X14 = Control.Monad.Identity.runIdentity (attach_T_ConstructorSet (arg_set1_))
_set2X14 = Control.Monad.Identity.runIdentity (attach_T_ConstructorSet (arg_set2_))
(T_ConstructorSet_vOut13 _set1IcollectedConstructorNames _set1Iconstructors _set1Ierrors) = inv_ConstructorSet_s14 _set1X14 (T_ConstructorSet_vIn13 )
(T_ConstructorSet_vOut13 _set2IcollectedConstructorNames _set2Iconstructors _set2Ierrors) = inv_ConstructorSet_s14 _set2X14 (T_ConstructorSet_vIn13 )
_lhsOconstructors :: (Set ConstructorIdent->Set ConstructorIdent)
_lhsOconstructors = rule96 _set1Iconstructors _set2Iconstructors
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule97 _set1IcollectedConstructorNames _set2IcollectedConstructorNames
_lhsOerrors :: Seq Error
_lhsOerrors = rule98 _set1Ierrors _set2Ierrors
__result_ = T_ConstructorSet_vOut13 _lhsOcollectedConstructorNames _lhsOconstructors _lhsOerrors
in __result_ )
in C_ConstructorSet_s14 v13
rule96 = \ ((_set1Iconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ((_set2Iconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ->
\ds -> _set1Iconstructors ds `Set.difference` _set2Iconstructors ds
rule97 = \ ((_set1IcollectedConstructorNames) :: Set ConstructorIdent) ((_set2IcollectedConstructorNames) :: Set ConstructorIdent) ->
_set1IcollectedConstructorNames `Set.union` _set2IcollectedConstructorNames
rule98 = \ ((_set1Ierrors) :: Seq Error) ((_set2Ierrors) :: Seq Error) ->
_set1Ierrors Seq.>< _set2Ierrors
sem_ConstructorSet_CAll :: T_ConstructorSet
sem_ConstructorSet_CAll = T_ConstructorSet (return st14) where
st14 = let
v13 :: T_ConstructorSet_v13
v13 = \ (T_ConstructorSet_vIn13 ) -> ( let
_lhsOconstructors :: (Set ConstructorIdent->Set ConstructorIdent)
_lhsOconstructors = rule99 ()
_lhsOcollectedConstructorNames :: Set ConstructorIdent
_lhsOcollectedConstructorNames = rule100 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule101 ()
__result_ = T_ConstructorSet_vOut13 _lhsOcollectedConstructorNames _lhsOconstructors _lhsOerrors
in __result_ )
in C_ConstructorSet_s14 v13
rule99 = \ (_ :: ()) ->
\ds -> ds
rule100 = \ (_ :: ()) ->
Set.empty
rule101 = \ (_ :: ()) ->
Seq.empty
data Inh_Elem = Inh_Elem { allAttrDecls_Inh_Elem :: (Map NontermIdent (Attributes, Attributes)), allAttrs_Inh_Elem :: (Map NontermIdent (Attributes, Attributes)), allConstructors_Inh_Elem :: (Map NontermIdent (Set ConstructorIdent)), allFields_Inh_Elem :: (DataTypes), allNonterminals_Inh_Elem :: (Set NontermIdent), attrDecls_Inh_Elem :: (Map NontermIdent (Attributes, Attributes)), attrs_Inh_Elem :: (Map NontermIdent (Attributes, Attributes)), defSets_Inh_Elem :: (Map Identifier (Set NontermIdent,Set Identifier)), definedSets_Inh_Elem :: (DefinedSets), options_Inh_Elem :: (Options) }
data Syn_Elem = Syn_Elem { attrDecls_Syn_Elem :: (Map NontermIdent (Attributes, Attributes)), attrOrderCollect_Syn_Elem :: (AttrOrderMap), attrs_Syn_Elem :: (Map NontermIdent (Attributes, Attributes)), blocks_Syn_Elem :: (Blocks), collectedArounds_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]), collectedAugments_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]), collectedConParams_Syn_Elem :: ([(NontermIdent, ConstructorIdent, Set Identifier)]), collectedConstraints_Syn_Elem :: ([(NontermIdent, ConstructorIdent, [Type])]), collectedConstructorsMap_Syn_Elem :: (Map NontermIdent (Set ConstructorIdent)), collectedFields_Syn_Elem :: ([(NontermIdent, ConstructorIdent, FieldMap)]), collectedInsts_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, [Identifier]) ]), collectedMacros_Syn_Elem :: ([(NontermIdent, ConstructorIdent, MaybeMacro)]), collectedMerges_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]), collectedNames_Syn_Elem :: (Set Identifier), collectedRules_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, RuleInfo)]), collectedSetNames_Syn_Elem :: (Set Identifier), collectedSigs_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, SigInfo) ]), collectedUniques_Syn_Elem :: ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]), constructorTypeMap_Syn_Elem :: (Map NontermIdent ConstructorType), ctxCollect_Syn_Elem :: (ContextMap), defSets_Syn_Elem :: (Map Identifier (Set NontermIdent,Set Identifier)), derivings_Syn_Elem :: (Derivings), errors_Syn_Elem :: (Seq Error), moduleDecl_Syn_Elem :: (Maybe (String,String,String)), paramsCollect_Syn_Elem :: (ParamMap), pragmas_Syn_Elem :: (Options -> Options), quantCollect_Syn_Elem :: (QuantMap), semPragmasCollect_Syn_Elem :: (PragmaMap), typeSyns_Syn_Elem :: (TypeSyns), useMap_Syn_Elem :: (Map NontermIdent (Map Identifier (String,String,String))), wrappers_Syn_Elem :: (Set NontermIdent) }
wrap_Elem :: T_Elem -> Inh_Elem -> (Syn_Elem )
wrap_Elem (T_Elem act) (Inh_Elem _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions
(T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers) <- return (inv_Elem_s17 sem arg)
return (Syn_Elem _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers)
)
sem_Elem :: Elem -> T_Elem
sem_Elem ( Data pos_ contype_ ctx_ names_ params_ attrs_ alts_ ext_ ) = sem_Elem_Data pos_ contype_ ctx_ ( sem_NontSet names_ ) params_ ( sem_Attrs attrs_ ) ( sem_Alts alts_ ) ext_
sem_Elem ( Type pos_ ctx_ name_ params_ type_ ) = sem_Elem_Type pos_ ctx_ name_ params_ type_
sem_Elem ( Attr pos_ ctx_ names_ quants_ attrs_ ) = sem_Elem_Attr pos_ ctx_ ( sem_NontSet names_ ) quants_ ( sem_Attrs attrs_ )
sem_Elem ( Sem pos_ ctx_ names_ attrs_ quants_ alts_ ) = sem_Elem_Sem pos_ ctx_ ( sem_NontSet names_ ) ( sem_Attrs attrs_ ) quants_ ( sem_SemAlts alts_ )
sem_Elem ( Txt pos_ kind_ mbNt_ lines_ ) = sem_Elem_Txt pos_ kind_ mbNt_ lines_
sem_Elem ( Set pos_ name_ merge_ set_ ) = sem_Elem_Set pos_ name_ merge_ ( sem_NontSet set_ )
sem_Elem ( Deriving pos_ set_ classes_ ) = sem_Elem_Deriving pos_ ( sem_NontSet set_ ) classes_
sem_Elem ( Wrapper pos_ set_ ) = sem_Elem_Wrapper pos_ ( sem_NontSet set_ )
sem_Elem ( Nocatas pos_ set_ ) = sem_Elem_Nocatas pos_ ( sem_NontSet set_ )
sem_Elem ( Pragma pos_ names_ ) = sem_Elem_Pragma pos_ names_
sem_Elem ( Module pos_ name_ exports_ imports_ ) = sem_Elem_Module pos_ name_ exports_ imports_
newtype T_Elem = T_Elem {
attach_T_Elem :: Identity (T_Elem_s17 )
}
newtype T_Elem_s17 = C_Elem_s17 {
inv_Elem_s17 :: (T_Elem_v16 )
}
data T_Elem_s18 = C_Elem_s18
type T_Elem_v16 = (T_Elem_vIn16 ) -> (T_Elem_vOut16 )
data T_Elem_vIn16 = T_Elem_vIn16 (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Set ConstructorIdent)) (DataTypes) (Set NontermIdent) (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (Map Identifier (Set NontermIdent,Set Identifier)) (DefinedSets) (Options)
data T_Elem_vOut16 = T_Elem_vOut16 (Map NontermIdent (Attributes, Attributes)) (AttrOrderMap) (Map NontermIdent (Attributes, Attributes)) (Blocks) ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ([(NontermIdent, ConstructorIdent, Set Identifier)]) ([(NontermIdent, ConstructorIdent, [Type])]) (Map NontermIdent (Set ConstructorIdent)) ([(NontermIdent, ConstructorIdent, FieldMap)]) ([ (NontermIdent, ConstructorIdent, [Identifier]) ]) ([(NontermIdent, ConstructorIdent, MaybeMacro)]) ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) (Set Identifier) ([ (NontermIdent, ConstructorIdent, RuleInfo)]) (Set Identifier) ([ (NontermIdent, ConstructorIdent, SigInfo) ]) ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) (Map NontermIdent ConstructorType) (ContextMap) (Map Identifier (Set NontermIdent,Set Identifier)) (Derivings) (Seq Error) (Maybe (String,String,String)) (ParamMap) (Options -> Options) (QuantMap) (PragmaMap) (TypeSyns) (Map NontermIdent (Map Identifier (String,String,String))) (Set NontermIdent)
sem_Elem_Data :: (Pos) -> (ConstructorType) -> (ClassContext) -> T_NontSet -> ([Identifier]) -> T_Attrs -> T_Alts -> (Bool) -> T_Elem
sem_Elem_Data _ arg_contype_ arg_ctx_ arg_names_ arg_params_ arg_attrs_ arg_alts_ _ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_namesX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_names_))
_attrsX11 = Control.Monad.Identity.runIdentity (attach_T_Attrs (arg_attrs_))
_altsX8 = Control.Monad.Identity.runIdentity (attach_T_Alts (arg_alts_))
(T_NontSet_vOut28 _namesIcollectedNames _namesIerrors _namesInontSet) = inv_NontSet_s29 _namesX29 (T_NontSet_vIn28 _namesOallFields _namesOallNonterminals _namesOdefinedSets)
(T_Attrs_vOut10 _attrsIattrDecls _attrsIattrs _attrsIerrors _attrsIuseMap) = inv_Attrs_s11 _attrsX11 (T_Attrs_vIn10 _attrsOallFields _attrsOallNonterminals _attrsOattrDecls _attrsOattrs _attrsOnts _attrsOoptions)
(T_Alts_vOut7 _altsIcollectedConParams _altsIcollectedConstraints _altsIcollectedConstructorNames _altsIcollectedFields _altsIcollectedMacros) = inv_Alts_s8 _altsX8 (T_Alts_vIn7 _altsOallConstructors _altsOallNonterminals _altsOnts)
_altsOnts = rule102 _namesInontSet
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule103 _altsIcollectedConstructorNames _namesInontSet
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule104 _namesInontSet arg_params_
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule105 _namesInontSet arg_ctx_
_attrsOnts = rule106 _namesInontSet
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule107 _namesIcollectedNames arg_contype_
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule108 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule109 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule110 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule111 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule112 _altsIcollectedConParams
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule113 _altsIcollectedConstraints
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule114 _altsIcollectedFields
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule115 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule116 _altsIcollectedMacros
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule117 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule118 _namesIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule119 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule120 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule121 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule122 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule123 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule124 _attrsIerrors _namesIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule125 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule126 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule127 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule128 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule129 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule130 _attrsIuseMap
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule131 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule132 _attrsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule133 _attrsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule134 _lhsIdefSets
_namesOallFields = rule135 _lhsIallFields
_namesOallNonterminals = rule136 _lhsIallNonterminals
_namesOdefinedSets = rule137 _lhsIdefinedSets
_attrsOallFields = rule138 _lhsIallFields
_attrsOallNonterminals = rule139 _lhsIallNonterminals
_attrsOattrDecls = rule140 _lhsIattrDecls
_attrsOattrs = rule141 _lhsIattrs
_attrsOoptions = rule142 _lhsIoptions
_altsOallConstructors = rule143 _lhsIallConstructors
_altsOallNonterminals = rule144 _lhsIallNonterminals
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule102 = \ ((_namesInontSet) :: Set NontermIdent) ->
_namesInontSet
rule103 = \ ((_altsIcollectedConstructorNames) :: Set ConstructorIdent) ((_namesInontSet) :: Set NontermIdent) ->
Map.fromList
[ (n, _altsIcollectedConstructorNames)
| n <- Set.toList _namesInontSet
]
rule104 = \ ((_namesInontSet) :: Set NontermIdent) params_ ->
if null params_
then Map.empty
else Map.fromList [(nt, params_) | nt <- Set.toList _namesInontSet]
rule105 = \ ((_namesInontSet) :: Set NontermIdent) ctx_ ->
if null ctx_
then Map.empty
else Map.fromList [(nt, ctx_) | nt <- Set.toList _namesInontSet]
rule106 = \ ((_namesInontSet) :: Set NontermIdent) ->
_namesInontSet
rule107 = \ ((_namesIcollectedNames) :: Set Identifier) contype_ ->
Set.fold (\nm mp -> Map.insert nm contype_ mp) Map.empty _namesIcollectedNames
rule108 = \ (_ :: ()) ->
Map.empty
rule109 = \ (_ :: ()) ->
Map.empty
rule110 = \ (_ :: ()) ->
[]
rule111 = \ (_ :: ()) ->
[]
rule112 = \ ((_altsIcollectedConParams) :: [(NontermIdent, ConstructorIdent, Set Identifier)]) ->
_altsIcollectedConParams
rule113 = \ ((_altsIcollectedConstraints) :: [(NontermIdent, ConstructorIdent, [Type])]) ->
_altsIcollectedConstraints
rule114 = \ ((_altsIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ->
_altsIcollectedFields
rule115 = \ (_ :: ()) ->
[]
rule116 = \ ((_altsIcollectedMacros) :: [(NontermIdent, ConstructorIdent, MaybeMacro)]) ->
_altsIcollectedMacros
rule117 = \ (_ :: ()) ->
[]
rule118 = \ ((_namesIcollectedNames) :: Set Identifier) ->
_namesIcollectedNames
rule119 = \ (_ :: ()) ->
[]
rule120 = \ (_ :: ()) ->
Set.empty
rule121 = \ (_ :: ()) ->
[]
rule122 = \ (_ :: ()) ->
[]
rule123 = \ (_ :: ()) ->
Map.empty
rule124 = \ ((_attrsIerrors) :: Seq Error) ((_namesIerrors) :: Seq Error) ->
_namesIerrors Seq.>< _attrsIerrors
rule125 = \ (_ :: ()) ->
mzero
rule126 = \ (_ :: ()) ->
id
rule127 = \ (_ :: ()) ->
Map.empty
rule128 = \ (_ :: ()) ->
Map.empty
rule129 = \ (_ :: ()) ->
[]
rule130 = \ ((_attrsIuseMap) :: Map NontermIdent (Map Identifier (String,String,String))) ->
_attrsIuseMap
rule131 = \ (_ :: ()) ->
Set.empty
rule132 = \ ((_attrsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_attrsIattrDecls
rule133 = \ ((_attrsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_attrsIattrs
rule134 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule135 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule136 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule137 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule138 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule139 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule140 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule141 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule142 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
rule143 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ->
_lhsIallConstructors
rule144 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
sem_Elem_Type :: (Pos) -> (ClassContext) -> (NontermIdent) -> ([Identifier]) -> (ComplexType) -> T_Elem
sem_Elem_Type arg_pos_ arg_ctx_ arg_name_ arg_params_ arg_type_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule145 _expanded arg_name_
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule146 arg_name_
_expanded = rule147 _argType arg_name_ arg_params_ arg_pos_
_argType = rule148 _lhsIallNonterminals arg_type_
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule149 _argType arg_name_
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule150 arg_name_ arg_params_
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule151 arg_ctx_ arg_name_
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule152 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule153 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule154 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule155 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule156 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule157 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule158 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule159 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule160 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule161 ()
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule162 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule163 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule164 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule165 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule166 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule167 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule168 ()
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule169 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule170 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule171 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule172 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule173 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule174 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule175 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule176 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule177 _lhsIdefSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule145 = \ _expanded name_ ->
map (\(x,y)->(name_, x, y)) _expanded
rule146 = \ name_ ->
Set.singleton name_
rule147 = \ _argType name_ params_ pos_ ->
case _argType of
List tp -> [(Ident "Cons" pos_, [(Ident "hd" pos_, tp)
,(Ident "tl" pos_, NT name_ (map getName params_) False)
]
)
,(Ident "Nil" pos_, [])
]
Maybe tp -> [(Ident "Just" pos_, [(Ident "just" pos_, tp)
]
)
,(Ident "Nothing" pos_, [])
]
Either tp1 tp2 -> [
(Ident "Left" pos_, [(Ident "left" pos_, tp1) ])
, (Ident "Right" pos_, [(Ident "right" pos_, tp2) ])
]
Map tp1 tp2 -> [ (Ident "Entry" pos_, [ (Ident "key" pos_, tp1)
, (Ident "val" pos_, tp2)
, (Ident "tl" pos_, NT name_ (map getName params_) False)
])
, (Ident "Nil" pos_, [])
]
IntMap tp -> [ (Ident "Entry" pos_, [ (Ident "key" pos_, Haskell "Int")
, (Ident "val" pos_, tp)
, (Ident "tl" pos_, NT name_ (map getName params_) False)
])
, (Ident "Nil" pos_, [])
]
OrdSet tp -> [ (Ident "Entry" pos_, [ (Ident "val" pos_, tp)
, (Ident "tl" pos_, NT name_ (map getName params_) False) ])
, (Ident "Nil" pos_, [])
]
IntSet -> [ (Ident "Entry" pos_, [ (Ident "val" pos_, Haskell "Int")
, (Ident "tl" pos_, NT name_ (map getName params_) False) ])
, (Ident "Nil" pos_, [])
]
Tuple xs -> [(Ident "Tuple" pos_, xs)]
rule148 = \ ((_lhsIallNonterminals) :: Set NontermIdent) type_ ->
case type_ of
Maybe tp -> Maybe ( makeType _lhsIallNonterminals tp)
Either tp1 tp2 -> Either ( makeType _lhsIallNonterminals tp1) (makeType _lhsIallNonterminals tp2)
List tp -> List ( makeType _lhsIallNonterminals tp)
Tuple xs -> Tuple [(f,makeType _lhsIallNonterminals tp) | (f,tp) <- xs]
Map tp1 tp2 -> Map ( makeType _lhsIallNonterminals tp1) (makeType _lhsIallNonterminals tp2)
IntMap tp -> IntMap ( makeType _lhsIallNonterminals tp)
OrdSet tp -> OrdSet ( makeType _lhsIallNonterminals tp)
IntSet -> IntSet
rule149 = \ _argType name_ ->
[(name_,_argType)]
rule150 = \ name_ params_ ->
if null params_
then Map.empty
else Map.singleton name_ params_
rule151 = \ ctx_ name_ ->
if null ctx_
then Map.empty
else Map.singleton name_ ctx_
rule152 = \ (_ :: ()) ->
Map.empty
rule153 = \ (_ :: ()) ->
Map.empty
rule154 = \ (_ :: ()) ->
[]
rule155 = \ (_ :: ()) ->
[]
rule156 = \ (_ :: ()) ->
[]
rule157 = \ (_ :: ()) ->
[]
rule158 = \ (_ :: ()) ->
Map.empty
rule159 = \ (_ :: ()) ->
[]
rule160 = \ (_ :: ()) ->
[]
rule161 = \ (_ :: ()) ->
[]
rule162 = \ (_ :: ()) ->
[]
rule163 = \ (_ :: ()) ->
Set.empty
rule164 = \ (_ :: ()) ->
[]
rule165 = \ (_ :: ()) ->
[]
rule166 = \ (_ :: ()) ->
Map.empty
rule167 = \ (_ :: ()) ->
Map.empty
rule168 = \ (_ :: ()) ->
Seq.empty
rule169 = \ (_ :: ()) ->
mzero
rule170 = \ (_ :: ()) ->
id
rule171 = \ (_ :: ()) ->
Map.empty
rule172 = \ (_ :: ()) ->
Map.empty
rule173 = \ (_ :: ()) ->
Map.empty
rule174 = \ (_ :: ()) ->
Set.empty
rule175 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule176 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule177 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
sem_Elem_Attr :: (Pos) -> (ClassContext) -> T_NontSet -> ([String]) -> T_Attrs -> T_Elem
sem_Elem_Attr _ arg_ctx_ arg_names_ arg_quants_ arg_attrs_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_namesX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_names_))
_attrsX11 = Control.Monad.Identity.runIdentity (attach_T_Attrs (arg_attrs_))
(T_NontSet_vOut28 _namesIcollectedNames _namesIerrors _namesInontSet) = inv_NontSet_s29 _namesX29 (T_NontSet_vIn28 _namesOallFields _namesOallNonterminals _namesOdefinedSets)
(T_Attrs_vOut10 _attrsIattrDecls _attrsIattrs _attrsIerrors _attrsIuseMap) = inv_Attrs_s11 _attrsX11 (T_Attrs_vIn10 _attrsOallFields _attrsOallNonterminals _attrsOattrDecls _attrsOattrs _attrsOnts _attrsOoptions)
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule178 _namesInontSet arg_ctx_
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule179 _namesInontSet arg_quants_
_attrsOnts = rule180 _namesInontSet
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule181 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule182 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule183 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule184 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule185 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule186 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule187 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule188 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule189 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule190 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule191 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule192 _namesIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule193 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule194 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule195 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule196 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule197 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule198 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule199 _attrsIerrors _namesIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule200 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule201 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule202 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule203 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule204 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule205 _attrsIuseMap
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule206 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule207 _attrsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule208 _attrsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule209 _lhsIdefSets
_namesOallFields = rule210 _lhsIallFields
_namesOallNonterminals = rule211 _lhsIallNonterminals
_namesOdefinedSets = rule212 _lhsIdefinedSets
_attrsOallFields = rule213 _lhsIallFields
_attrsOallNonterminals = rule214 _lhsIallNonterminals
_attrsOattrDecls = rule215 _lhsIattrDecls
_attrsOattrs = rule216 _lhsIattrs
_attrsOoptions = rule217 _lhsIoptions
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule178 = \ ((_namesInontSet) :: Set NontermIdent) ctx_ ->
if null ctx_
then Map.empty
else Map.fromList [(nt, ctx_) | nt <- Set.toList _namesInontSet]
rule179 = \ ((_namesInontSet) :: Set NontermIdent) quants_ ->
if null quants_
then Map.empty
else Map.fromList [(nt, quants_) | nt <- Set.toList _namesInontSet]
rule180 = \ ((_namesInontSet) :: Set NontermIdent) ->
_namesInontSet
rule181 = \ (_ :: ()) ->
Map.empty
rule182 = \ (_ :: ()) ->
Map.empty
rule183 = \ (_ :: ()) ->
[]
rule184 = \ (_ :: ()) ->
[]
rule185 = \ (_ :: ()) ->
[]
rule186 = \ (_ :: ()) ->
[]
rule187 = \ (_ :: ()) ->
Map.empty
rule188 = \ (_ :: ()) ->
[]
rule189 = \ (_ :: ()) ->
[]
rule190 = \ (_ :: ()) ->
[]
rule191 = \ (_ :: ()) ->
[]
rule192 = \ ((_namesIcollectedNames) :: Set Identifier) ->
_namesIcollectedNames
rule193 = \ (_ :: ()) ->
[]
rule194 = \ (_ :: ()) ->
Set.empty
rule195 = \ (_ :: ()) ->
[]
rule196 = \ (_ :: ()) ->
[]
rule197 = \ (_ :: ()) ->
Map.empty
rule198 = \ (_ :: ()) ->
Map.empty
rule199 = \ ((_attrsIerrors) :: Seq Error) ((_namesIerrors) :: Seq Error) ->
_namesIerrors Seq.>< _attrsIerrors
rule200 = \ (_ :: ()) ->
mzero
rule201 = \ (_ :: ()) ->
Map.empty
rule202 = \ (_ :: ()) ->
id
rule203 = \ (_ :: ()) ->
Map.empty
rule204 = \ (_ :: ()) ->
[]
rule205 = \ ((_attrsIuseMap) :: Map NontermIdent (Map Identifier (String,String,String))) ->
_attrsIuseMap
rule206 = \ (_ :: ()) ->
Set.empty
rule207 = \ ((_attrsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_attrsIattrDecls
rule208 = \ ((_attrsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_attrsIattrs
rule209 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule210 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule211 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule212 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule213 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule214 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule215 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule216 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule217 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
sem_Elem_Sem :: (Pos) -> (ClassContext) -> T_NontSet -> T_Attrs -> ([String]) -> T_SemAlts -> T_Elem
sem_Elem_Sem _ arg_ctx_ arg_names_ arg_attrs_ arg_quants_ arg_alts_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_namesX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_names_))
_attrsX11 = Control.Monad.Identity.runIdentity (attach_T_Attrs (arg_attrs_))
_altsX41 = Control.Monad.Identity.runIdentity (attach_T_SemAlts (arg_alts_))
(T_NontSet_vOut28 _namesIcollectedNames _namesIerrors _namesInontSet) = inv_NontSet_s29 _namesX29 (T_NontSet_vIn28 _namesOallFields _namesOallNonterminals _namesOdefinedSets)
(T_Attrs_vOut10 _attrsIattrDecls _attrsIattrs _attrsIerrors _attrsIuseMap) = inv_Attrs_s11 _attrsX11 (T_Attrs_vIn10 _attrsOallFields _attrsOallNonterminals _attrsOattrDecls _attrsOattrs _attrsOnts _attrsOoptions)
(T_SemAlts_vOut40 _altsIattrOrderCollect _altsIcollectedArounds _altsIcollectedAugments _altsIcollectedInsts _altsIcollectedMerges _altsIcollectedRules _altsIcollectedSigs _altsIcollectedUniques _altsIerrors _altsIsemPragmasCollect) = inv_SemAlts_s41 _altsX41 (T_SemAlts_vIn40 _altsOallAttrDecls _altsOallAttrs _altsOallFields _altsOnts _altsOoptions)
_altsOnts = rule218 _namesInontSet
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule219 _namesInontSet arg_ctx_
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule220 _namesInontSet arg_quants_
_attrsOnts = rule221 _namesInontSet
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule222 _altsIattrOrderCollect
_lhsOblocks :: Blocks
_lhsOblocks = rule223 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule224 _altsIcollectedArounds
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule225 _altsIcollectedAugments
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule226 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule227 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule228 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule229 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule230 _altsIcollectedInsts
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule231 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule232 _altsIcollectedMerges
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule233 _namesIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule234 _altsIcollectedRules
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule235 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule236 _altsIcollectedSigs
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule237 _altsIcollectedUniques
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule238 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule239 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule240 _altsIerrors _attrsIerrors _namesIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule241 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule242 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule243 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule244 _altsIsemPragmasCollect
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule245 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule246 _attrsIuseMap
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule247 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule248 _attrsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule249 _attrsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule250 _lhsIdefSets
_namesOallFields = rule251 _lhsIallFields
_namesOallNonterminals = rule252 _lhsIallNonterminals
_namesOdefinedSets = rule253 _lhsIdefinedSets
_attrsOallFields = rule254 _lhsIallFields
_attrsOallNonterminals = rule255 _lhsIallNonterminals
_attrsOattrDecls = rule256 _lhsIattrDecls
_attrsOattrs = rule257 _lhsIattrs
_attrsOoptions = rule258 _lhsIoptions
_altsOallAttrDecls = rule259 _lhsIallAttrDecls
_altsOallAttrs = rule260 _lhsIallAttrs
_altsOallFields = rule261 _lhsIallFields
_altsOoptions = rule262 _lhsIoptions
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule218 = \ ((_namesInontSet) :: Set NontermIdent) ->
_namesInontSet
rule219 = \ ((_namesInontSet) :: Set NontermIdent) ctx_ ->
if null ctx_
then Map.empty
else Map.fromList [(nt, ctx_) | nt <- Set.toList _namesInontSet]
rule220 = \ ((_namesInontSet) :: Set NontermIdent) quants_ ->
if null quants_
then Map.empty
else Map.fromList [(nt, quants_) | nt <- Set.toList _namesInontSet]
rule221 = \ ((_namesInontSet) :: Set NontermIdent) ->
_namesInontSet
rule222 = \ ((_altsIattrOrderCollect) :: AttrOrderMap) ->
_altsIattrOrderCollect
rule223 = \ (_ :: ()) ->
Map.empty
rule224 = \ ((_altsIcollectedArounds) :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ->
_altsIcollectedArounds
rule225 = \ ((_altsIcollectedAugments) :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ->
_altsIcollectedAugments
rule226 = \ (_ :: ()) ->
[]
rule227 = \ (_ :: ()) ->
[]
rule228 = \ (_ :: ()) ->
Map.empty
rule229 = \ (_ :: ()) ->
[]
rule230 = \ ((_altsIcollectedInsts) :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]) ->
_altsIcollectedInsts
rule231 = \ (_ :: ()) ->
[]
rule232 = \ ((_altsIcollectedMerges) :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ->
_altsIcollectedMerges
rule233 = \ ((_namesIcollectedNames) :: Set Identifier) ->
_namesIcollectedNames
rule234 = \ ((_altsIcollectedRules) :: [ (NontermIdent, ConstructorIdent, RuleInfo)]) ->
_altsIcollectedRules
rule235 = \ (_ :: ()) ->
Set.empty
rule236 = \ ((_altsIcollectedSigs) :: [ (NontermIdent, ConstructorIdent, SigInfo) ]) ->
_altsIcollectedSigs
rule237 = \ ((_altsIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ->
_altsIcollectedUniques
rule238 = \ (_ :: ()) ->
Map.empty
rule239 = \ (_ :: ()) ->
Map.empty
rule240 = \ ((_altsIerrors) :: Seq Error) ((_attrsIerrors) :: Seq Error) ((_namesIerrors) :: Seq Error) ->
_namesIerrors Seq.>< _attrsIerrors Seq.>< _altsIerrors
rule241 = \ (_ :: ()) ->
mzero
rule242 = \ (_ :: ()) ->
Map.empty
rule243 = \ (_ :: ()) ->
id
rule244 = \ ((_altsIsemPragmasCollect) :: PragmaMap) ->
_altsIsemPragmasCollect
rule245 = \ (_ :: ()) ->
[]
rule246 = \ ((_attrsIuseMap) :: Map NontermIdent (Map Identifier (String,String,String))) ->
_attrsIuseMap
rule247 = \ (_ :: ()) ->
Set.empty
rule248 = \ ((_attrsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_attrsIattrDecls
rule249 = \ ((_attrsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_attrsIattrs
rule250 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule251 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule252 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule253 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule254 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule255 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule256 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule257 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule258 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
rule259 = \ ((_lhsIallAttrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrDecls
rule260 = \ ((_lhsIallAttrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrs
rule261 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule262 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
sem_Elem_Txt :: (Pos) -> (BlockKind) -> (Maybe NontermIdent) -> ([String]) -> T_Elem
sem_Elem_Txt arg_pos_ arg_kind_ arg_mbNt_ arg_lines_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_blockInfo = rule263 arg_kind_ arg_mbNt_
_blockValue = rule264 arg_lines_ arg_pos_
_lhsOblocks :: Blocks
_lhsOblocks = rule265 _blockInfo _blockValue
_lhsOerrors :: Seq Error
_lhsOerrors = rule266 _lhsIoptions arg_lines_ arg_pos_
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule267 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule268 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule269 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule270 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule271 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule272 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule273 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule274 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule275 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule276 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule277 ()
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule278 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule279 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule280 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule281 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule282 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule283 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule284 ()
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule285 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule286 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule287 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule288 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule289 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule290 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule291 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule292 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule293 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule294 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule295 _lhsIdefSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule263 = \ kind_ mbNt_ ->
( kind_
, mbNt_
)
rule264 = \ lines_ pos_ ->
[(lines_, pos_)]
rule265 = \ _blockInfo _blockValue ->
Map.singleton _blockInfo _blockValue
rule266 = \ ((_lhsIoptions) :: Options) lines_ pos_ ->
if checkParseBlock _lhsIoptions
then let ex = Expression pos_ tks
tks = [tk]
tk = HsToken (unlines lines_) pos_
in Seq.fromList $ checkBlock $ ex
else Seq.empty
rule267 = \ (_ :: ()) ->
Map.empty
rule268 = \ (_ :: ()) ->
[]
rule269 = \ (_ :: ()) ->
[]
rule270 = \ (_ :: ()) ->
[]
rule271 = \ (_ :: ()) ->
[]
rule272 = \ (_ :: ()) ->
Map.empty
rule273 = \ (_ :: ()) ->
[]
rule274 = \ (_ :: ()) ->
[]
rule275 = \ (_ :: ()) ->
[]
rule276 = \ (_ :: ()) ->
[]
rule277 = \ (_ :: ()) ->
Set.empty
rule278 = \ (_ :: ()) ->
[]
rule279 = \ (_ :: ()) ->
Set.empty
rule280 = \ (_ :: ()) ->
[]
rule281 = \ (_ :: ()) ->
[]
rule282 = \ (_ :: ()) ->
Map.empty
rule283 = \ (_ :: ()) ->
Map.empty
rule284 = \ (_ :: ()) ->
Map.empty
rule285 = \ (_ :: ()) ->
mzero
rule286 = \ (_ :: ()) ->
Map.empty
rule287 = \ (_ :: ()) ->
id
rule288 = \ (_ :: ()) ->
Map.empty
rule289 = \ (_ :: ()) ->
Map.empty
rule290 = \ (_ :: ()) ->
[]
rule291 = \ (_ :: ()) ->
Map.empty
rule292 = \ (_ :: ()) ->
Set.empty
rule293 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule294 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule295 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
sem_Elem_Set :: (Pos) -> (NontermIdent) -> (Bool) -> T_NontSet -> T_Elem
sem_Elem_Set _ arg_name_ arg_merge_ arg_set_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_setX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set_))
(T_NontSet_vOut28 _setIcollectedNames _setIerrors _setInontSet) = inv_NontSet_s29 _setX29 (T_NontSet_vIn28 _setOallFields _setOallNonterminals _setOdefinedSets)
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule296 arg_name_
(_defSets2,_errs) = rule297 _lhsIallNonterminals _lhsIdefSets _setIcollectedNames _setInontSet arg_merge_ arg_name_
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule298 _defSets2
_lhsOerrors :: Seq Error
_lhsOerrors = rule299 _errs _setIerrors
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule300 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule301 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule302 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule303 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule304 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule305 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule306 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule307 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule308 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule309 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule310 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule311 _setIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule312 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule313 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule314 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule315 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule316 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule317 ()
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule318 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule319 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule320 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule321 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule322 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule323 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule324 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule325 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule326 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule327 _lhsIattrs
_setOallFields = rule328 _lhsIallFields
_setOallNonterminals = rule329 _lhsIallNonterminals
_setOdefinedSets = rule330 _lhsIdefinedSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule296 = \ name_ ->
Set.singleton name_
rule297 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ((_setIcollectedNames) :: Set Identifier) ((_setInontSet) :: Set NontermIdent) merge_ name_ ->
let allUsedNames = Set.unions [ maybe (Set.singleton n)
snd
(Map.lookup n _lhsIdefSets)
| n <- Set.toList _setIcollectedNames
]
(nontSet,e1) | Set.member name_ allUsedNames
= (Set.empty, Seq.singleton(CyclicSet name_))
| otherwise = (_setInontSet, Seq.empty)
(res, e2) = let toAdd = (nontSet,Set.insert name_ allUsedNames)
un (a,b) (c,d) = (a `Set.union` c, b `Set.union` d)
in if Set.member name_ _lhsIallNonterminals || not merge_
then checkDuplicate DupSet name_ toAdd _lhsIdefSets
else (Map.insertWith un name_ toAdd _lhsIdefSets, Seq.empty)
in (res, e1 Seq.>< e2)
rule298 = \ _defSets2 ->
_defSets2
rule299 = \ _errs ((_setIerrors) :: Seq Error) ->
_errs >< _setIerrors
rule300 = \ (_ :: ()) ->
Map.empty
rule301 = \ (_ :: ()) ->
Map.empty
rule302 = \ (_ :: ()) ->
[]
rule303 = \ (_ :: ()) ->
[]
rule304 = \ (_ :: ()) ->
[]
rule305 = \ (_ :: ()) ->
[]
rule306 = \ (_ :: ()) ->
Map.empty
rule307 = \ (_ :: ()) ->
[]
rule308 = \ (_ :: ()) ->
[]
rule309 = \ (_ :: ()) ->
[]
rule310 = \ (_ :: ()) ->
[]
rule311 = \ ((_setIcollectedNames) :: Set Identifier) ->
_setIcollectedNames
rule312 = \ (_ :: ()) ->
[]
rule313 = \ (_ :: ()) ->
[]
rule314 = \ (_ :: ()) ->
[]
rule315 = \ (_ :: ()) ->
Map.empty
rule316 = \ (_ :: ()) ->
Map.empty
rule317 = \ (_ :: ()) ->
Map.empty
rule318 = \ (_ :: ()) ->
mzero
rule319 = \ (_ :: ()) ->
Map.empty
rule320 = \ (_ :: ()) ->
id
rule321 = \ (_ :: ()) ->
Map.empty
rule322 = \ (_ :: ()) ->
Map.empty
rule323 = \ (_ :: ()) ->
[]
rule324 = \ (_ :: ()) ->
Map.empty
rule325 = \ (_ :: ()) ->
Set.empty
rule326 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule327 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule328 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule329 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule330 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_Elem_Deriving :: (Pos) -> T_NontSet -> ([NontermIdent]) -> T_Elem
sem_Elem_Deriving _ arg_set_ arg_classes_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_setX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set_))
(T_NontSet_vOut28 _setIcollectedNames _setIerrors _setInontSet) = inv_NontSet_s29 _setX29 (T_NontSet_vIn28 _setOallFields _setOallNonterminals _setOdefinedSets)
_lhsOderivings :: Derivings
_lhsOderivings = rule331 _setInontSet arg_classes_
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule332 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule333 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule334 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule335 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule336 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule337 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule338 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule339 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule340 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule341 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule342 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule343 _setIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule344 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule345 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule346 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule347 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule348 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule349 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule350 _setIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule351 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule352 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule353 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule354 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule355 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule356 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule357 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule358 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule359 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule360 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule361 _lhsIdefSets
_setOallFields = rule362 _lhsIallFields
_setOallNonterminals = rule363 _lhsIallNonterminals
_setOdefinedSets = rule364 _lhsIdefinedSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule331 = \ ((_setInontSet) :: Set NontermIdent) classes_ ->
Map.fromList [(nt,Set.fromList classes_) | nt <- Set.toList _setInontSet]
rule332 = \ (_ :: ()) ->
Map.empty
rule333 = \ (_ :: ()) ->
Map.empty
rule334 = \ (_ :: ()) ->
[]
rule335 = \ (_ :: ()) ->
[]
rule336 = \ (_ :: ()) ->
[]
rule337 = \ (_ :: ()) ->
[]
rule338 = \ (_ :: ()) ->
Map.empty
rule339 = \ (_ :: ()) ->
[]
rule340 = \ (_ :: ()) ->
[]
rule341 = \ (_ :: ()) ->
[]
rule342 = \ (_ :: ()) ->
[]
rule343 = \ ((_setIcollectedNames) :: Set Identifier) ->
_setIcollectedNames
rule344 = \ (_ :: ()) ->
[]
rule345 = \ (_ :: ()) ->
Set.empty
rule346 = \ (_ :: ()) ->
[]
rule347 = \ (_ :: ()) ->
[]
rule348 = \ (_ :: ()) ->
Map.empty
rule349 = \ (_ :: ()) ->
Map.empty
rule350 = \ ((_setIerrors) :: Seq Error) ->
_setIerrors
rule351 = \ (_ :: ()) ->
mzero
rule352 = \ (_ :: ()) ->
Map.empty
rule353 = \ (_ :: ()) ->
id
rule354 = \ (_ :: ()) ->
Map.empty
rule355 = \ (_ :: ()) ->
Map.empty
rule356 = \ (_ :: ()) ->
[]
rule357 = \ (_ :: ()) ->
Map.empty
rule358 = \ (_ :: ()) ->
Set.empty
rule359 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule360 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule361 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule362 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule363 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule364 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_Elem_Wrapper :: (Pos) -> T_NontSet -> T_Elem
sem_Elem_Wrapper _ arg_set_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_setX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set_))
(T_NontSet_vOut28 _setIcollectedNames _setIerrors _setInontSet) = inv_NontSet_s29 _setX29 (T_NontSet_vIn28 _setOallFields _setOallNonterminals _setOdefinedSets)
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule365 _setInontSet
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule366 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule367 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule368 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule369 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule370 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule371 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule372 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule373 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule374 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule375 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule376 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule377 _setIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule378 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule379 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule380 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule381 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule382 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule383 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule384 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule385 _setIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule386 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule387 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule388 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule389 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule390 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule391 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule392 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule393 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule394 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule395 _lhsIdefSets
_setOallFields = rule396 _lhsIallFields
_setOallNonterminals = rule397 _lhsIallNonterminals
_setOdefinedSets = rule398 _lhsIdefinedSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule365 = \ ((_setInontSet) :: Set NontermIdent) ->
_setInontSet
rule366 = \ (_ :: ()) ->
Map.empty
rule367 = \ (_ :: ()) ->
Map.empty
rule368 = \ (_ :: ()) ->
[]
rule369 = \ (_ :: ()) ->
[]
rule370 = \ (_ :: ()) ->
[]
rule371 = \ (_ :: ()) ->
[]
rule372 = \ (_ :: ()) ->
Map.empty
rule373 = \ (_ :: ()) ->
[]
rule374 = \ (_ :: ()) ->
[]
rule375 = \ (_ :: ()) ->
[]
rule376 = \ (_ :: ()) ->
[]
rule377 = \ ((_setIcollectedNames) :: Set Identifier) ->
_setIcollectedNames
rule378 = \ (_ :: ()) ->
[]
rule379 = \ (_ :: ()) ->
Set.empty
rule380 = \ (_ :: ()) ->
[]
rule381 = \ (_ :: ()) ->
[]
rule382 = \ (_ :: ()) ->
Map.empty
rule383 = \ (_ :: ()) ->
Map.empty
rule384 = \ (_ :: ()) ->
Map.empty
rule385 = \ ((_setIerrors) :: Seq Error) ->
_setIerrors
rule386 = \ (_ :: ()) ->
mzero
rule387 = \ (_ :: ()) ->
Map.empty
rule388 = \ (_ :: ()) ->
id
rule389 = \ (_ :: ()) ->
Map.empty
rule390 = \ (_ :: ()) ->
Map.empty
rule391 = \ (_ :: ()) ->
[]
rule392 = \ (_ :: ()) ->
Map.empty
rule393 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule394 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule395 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule396 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule397 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule398 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_Elem_Nocatas :: (Pos) -> T_NontSet -> T_Elem
sem_Elem_Nocatas _ arg_set_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_setX29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set_))
(T_NontSet_vOut28 _setIcollectedNames _setIerrors _setInontSet) = inv_NontSet_s29 _setX29 (T_NontSet_vIn28 _setOallFields _setOallNonterminals _setOdefinedSets)
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule399 _setInontSet
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule400 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule401 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule402 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule403 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule404 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule405 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule406 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule407 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule408 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule409 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule410 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule411 _setIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule412 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule413 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule414 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule415 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule416 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule417 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule418 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule419 _setIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule420 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule421 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule422 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule423 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule424 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule425 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule426 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule427 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule428 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule429 _lhsIdefSets
_setOallFields = rule430 _lhsIallFields
_setOallNonterminals = rule431 _lhsIallNonterminals
_setOdefinedSets = rule432 _lhsIdefinedSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule399 = \ ((_setInontSet) :: Set NontermIdent) ->
\o -> o { nocatas = _setInontSet `Set.union` nocatas o }
rule400 = \ (_ :: ()) ->
Map.empty
rule401 = \ (_ :: ()) ->
Map.empty
rule402 = \ (_ :: ()) ->
[]
rule403 = \ (_ :: ()) ->
[]
rule404 = \ (_ :: ()) ->
[]
rule405 = \ (_ :: ()) ->
[]
rule406 = \ (_ :: ()) ->
Map.empty
rule407 = \ (_ :: ()) ->
[]
rule408 = \ (_ :: ()) ->
[]
rule409 = \ (_ :: ()) ->
[]
rule410 = \ (_ :: ()) ->
[]
rule411 = \ ((_setIcollectedNames) :: Set Identifier) ->
_setIcollectedNames
rule412 = \ (_ :: ()) ->
[]
rule413 = \ (_ :: ()) ->
Set.empty
rule414 = \ (_ :: ()) ->
[]
rule415 = \ (_ :: ()) ->
[]
rule416 = \ (_ :: ()) ->
Map.empty
rule417 = \ (_ :: ()) ->
Map.empty
rule418 = \ (_ :: ()) ->
Map.empty
rule419 = \ ((_setIerrors) :: Seq Error) ->
_setIerrors
rule420 = \ (_ :: ()) ->
mzero
rule421 = \ (_ :: ()) ->
Map.empty
rule422 = \ (_ :: ()) ->
Map.empty
rule423 = \ (_ :: ()) ->
Map.empty
rule424 = \ (_ :: ()) ->
[]
rule425 = \ (_ :: ()) ->
Map.empty
rule426 = \ (_ :: ()) ->
Set.empty
rule427 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule428 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule429 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule430 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule431 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule432 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_Elem_Pragma :: (Pos) -> ([NontermIdent]) -> T_Elem
sem_Elem_Pragma _ arg_names_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule433 arg_names_
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule434 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule435 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule436 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule437 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule438 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule439 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule440 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule441 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule442 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule443 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule444 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule445 ()
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule446 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule447 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule448 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule449 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule450 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule451 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule452 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule453 ()
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule454 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule455 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule456 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule457 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule458 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule459 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule460 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule461 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule462 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule463 _lhsIdefSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule433 = \ names_ ->
let mk n o = case getName n of
"gencatas" -> o { folds = True }
"nogencatas" -> o { folds = False }
"gendatas" -> o { dataTypes = True }
"datarecords" -> o { dataRecords = True }
"nogendatas" -> o { dataTypes = False }
"gensems" -> o { semfuns = True }
"nogensems" -> o { semfuns = False }
"gentypesigs" -> o { typeSigs = True }
"nogentypesigs"-> o { typeSigs = False }
"nocycle" -> o { withCycle = False }
"cycle" -> o { withCycle = True }
"nostrictdata" -> o { strictData = False }
"strictdata" -> o { strictData = True }
"nostrictcase" -> o { strictCases = False }
"strictcase" -> o { strictCases = True }
"strictercase" -> o { strictCases = True, stricterCases = True }
"nostrictwrap" -> o { strictWrap = False }
"strictwrap" -> o { strictWrap = True }
"novisit" -> o { visit = False }
"visit" -> o { visit = True }
"nocase" -> o { cases = False }
"case" -> o { cases = True }
"noseq" -> o { withSeq = False }
"seq" -> o { withSeq = True }
"nounbox" -> o { unbox = False }
"unbox" -> o { unbox = True }
"bangpats" -> o { bangpats = True }
"breadthfirst" -> o { breadthFirst = True }
"breadthfirstStrict" -> o { breadthFirstStrict = True }
"nooptimize" -> o { cases = False , visit = False }
"optimize" -> o { cases = True , visit = True }
"strictsem" -> o { strictSems = True }
"gentraces" -> o { genTraces = True }
"genusetraces" -> o { genUseTraces = True }
"splitsems" -> o { splitSems = True }
"gencostcentres" -> o { genCostCentres = True }
"sepsemmods" -> sepSemModsOpt o
"genlinepragmas" -> o { genLinePragmas = True }
"newtypes" -> o { newtypes = True }
"nonewtypes" -> o { newtypes = False }
"nooptimizations" -> o { noOptimizations = True }
"kennedywarren" -> o { kennedyWarren = True }
"aspectag" -> o { genAspectAG = True }
'n':'o':'g':'r':'o':'u':'p':'_':atts
-> o { noGroup = extract atts ++ noGroup o }
"rename" -> o { rename = True }
"parallel" -> o { parallelInvoke = True }
"monadicwrappers" -> o { monadicWrappers = True }
"dummytokenvisit" -> o { dummyTokenVisit = True }
"tupleasdummytoken" -> o { tupleAsDummyToken = True }
"stateasdummytoken" -> o { tupleAsDummyToken = False }
"strictdummytoken" -> o { strictDummyToken = True }
"noperruletypesigs" -> o { noPerRuleTypeSigs = True }
"noperstatetypesigs" -> o { noPerStateTypeSigs = True }
"noeagerblackholing" -> o { noEagerBlackholing = True }
"noperrulecostcentres" -> o { noPerRuleCostCentres = True }
"nopervisitcostcentres" -> o { noPerVisitCostCentres = True }
"helpinlining" -> o { helpInlining = True }
"noinlinepragmas" -> o { noInlinePragmas = True }
"aggressiveinlinepragmas" -> o { aggressiveInlinePragmas = True }
"latehigherorderbindings" -> o { lateHigherOrderBinding = True }
"ocaml" -> ocamlOpt o
"cleanlang" -> cleanOpt o
s -> trace ("uuagc: ignoring unknown pragma: " ++ s) o
in \o -> foldr mk o names_
rule434 = \ (_ :: ()) ->
Map.empty
rule435 = \ (_ :: ()) ->
Map.empty
rule436 = \ (_ :: ()) ->
[]
rule437 = \ (_ :: ()) ->
[]
rule438 = \ (_ :: ()) ->
[]
rule439 = \ (_ :: ()) ->
[]
rule440 = \ (_ :: ()) ->
Map.empty
rule441 = \ (_ :: ()) ->
[]
rule442 = \ (_ :: ()) ->
[]
rule443 = \ (_ :: ()) ->
[]
rule444 = \ (_ :: ()) ->
[]
rule445 = \ (_ :: ()) ->
Set.empty
rule446 = \ (_ :: ()) ->
[]
rule447 = \ (_ :: ()) ->
Set.empty
rule448 = \ (_ :: ()) ->
[]
rule449 = \ (_ :: ()) ->
[]
rule450 = \ (_ :: ()) ->
Map.empty
rule451 = \ (_ :: ()) ->
Map.empty
rule452 = \ (_ :: ()) ->
Map.empty
rule453 = \ (_ :: ()) ->
Seq.empty
rule454 = \ (_ :: ()) ->
mzero
rule455 = \ (_ :: ()) ->
Map.empty
rule456 = \ (_ :: ()) ->
Map.empty
rule457 = \ (_ :: ()) ->
Map.empty
rule458 = \ (_ :: ()) ->
[]
rule459 = \ (_ :: ()) ->
Map.empty
rule460 = \ (_ :: ()) ->
Set.empty
rule461 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule462 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule463 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
sem_Elem_Module :: (Pos) -> (String) -> (String) -> (String) -> T_Elem
sem_Elem_Module _ arg_name_ arg_exports_ arg_imports_ = T_Elem (return st17) where
st17 = let
v16 :: T_Elem_v16
v16 = \ (T_Elem_vIn16 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule464 arg_exports_ arg_imports_ arg_name_
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule465 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule466 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule467 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule468 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule469 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule470 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule471 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule472 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule473 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule474 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule475 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule476 ()
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule477 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule478 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule479 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule480 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule481 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule482 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule483 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule484 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule485 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule486 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule487 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule488 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule489 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule490 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule491 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule492 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule493 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule494 _lhsIdefSets
__result_ = T_Elem_vOut16 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elem_s17 v16
rule464 = \ exports_ imports_ name_ ->
Just (name_, exports_, imports_)
rule465 = \ (_ :: ()) ->
Map.empty
rule466 = \ (_ :: ()) ->
Map.empty
rule467 = \ (_ :: ()) ->
[]
rule468 = \ (_ :: ()) ->
[]
rule469 = \ (_ :: ()) ->
[]
rule470 = \ (_ :: ()) ->
[]
rule471 = \ (_ :: ()) ->
Map.empty
rule472 = \ (_ :: ()) ->
[]
rule473 = \ (_ :: ()) ->
[]
rule474 = \ (_ :: ()) ->
[]
rule475 = \ (_ :: ()) ->
[]
rule476 = \ (_ :: ()) ->
Set.empty
rule477 = \ (_ :: ()) ->
[]
rule478 = \ (_ :: ()) ->
Set.empty
rule479 = \ (_ :: ()) ->
[]
rule480 = \ (_ :: ()) ->
[]
rule481 = \ (_ :: ()) ->
Map.empty
rule482 = \ (_ :: ()) ->
Map.empty
rule483 = \ (_ :: ()) ->
Map.empty
rule484 = \ (_ :: ()) ->
Seq.empty
rule485 = \ (_ :: ()) ->
Map.empty
rule486 = \ (_ :: ()) ->
id
rule487 = \ (_ :: ()) ->
Map.empty
rule488 = \ (_ :: ()) ->
Map.empty
rule489 = \ (_ :: ()) ->
[]
rule490 = \ (_ :: ()) ->
Map.empty
rule491 = \ (_ :: ()) ->
Set.empty
rule492 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule493 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule494 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
data Inh_Elems = Inh_Elems { allAttrDecls_Inh_Elems :: (Map NontermIdent (Attributes, Attributes)), allAttrs_Inh_Elems :: (Map NontermIdent (Attributes, Attributes)), allConstructors_Inh_Elems :: (Map NontermIdent (Set ConstructorIdent)), allFields_Inh_Elems :: (DataTypes), allNonterminals_Inh_Elems :: (Set NontermIdent), attrDecls_Inh_Elems :: (Map NontermIdent (Attributes, Attributes)), attrs_Inh_Elems :: (Map NontermIdent (Attributes, Attributes)), defSets_Inh_Elems :: (Map Identifier (Set NontermIdent,Set Identifier)), definedSets_Inh_Elems :: (DefinedSets), options_Inh_Elems :: (Options) }
data Syn_Elems = Syn_Elems { attrDecls_Syn_Elems :: (Map NontermIdent (Attributes, Attributes)), attrOrderCollect_Syn_Elems :: (AttrOrderMap), attrs_Syn_Elems :: (Map NontermIdent (Attributes, Attributes)), blocks_Syn_Elems :: (Blocks), collectedArounds_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]), collectedAugments_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]), collectedConParams_Syn_Elems :: ([(NontermIdent, ConstructorIdent, Set Identifier)]), collectedConstraints_Syn_Elems :: ([(NontermIdent, ConstructorIdent, [Type])]), collectedConstructorsMap_Syn_Elems :: (Map NontermIdent (Set ConstructorIdent)), collectedFields_Syn_Elems :: ([(NontermIdent, ConstructorIdent, FieldMap)]), collectedInsts_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, [Identifier]) ]), collectedMacros_Syn_Elems :: ([(NontermIdent, ConstructorIdent, MaybeMacro)]), collectedMerges_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]), collectedNames_Syn_Elems :: (Set Identifier), collectedRules_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, RuleInfo)]), collectedSetNames_Syn_Elems :: (Set Identifier), collectedSigs_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, SigInfo) ]), collectedUniques_Syn_Elems :: ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]), constructorTypeMap_Syn_Elems :: (Map NontermIdent ConstructorType), ctxCollect_Syn_Elems :: (ContextMap), defSets_Syn_Elems :: (Map Identifier (Set NontermIdent,Set Identifier)), derivings_Syn_Elems :: (Derivings), errors_Syn_Elems :: (Seq Error), moduleDecl_Syn_Elems :: (Maybe (String,String,String)), paramsCollect_Syn_Elems :: (ParamMap), pragmas_Syn_Elems :: (Options -> Options), quantCollect_Syn_Elems :: (QuantMap), semPragmasCollect_Syn_Elems :: (PragmaMap), typeSyns_Syn_Elems :: (TypeSyns), useMap_Syn_Elems :: (Map NontermIdent (Map Identifier (String,String,String))), wrappers_Syn_Elems :: (Set NontermIdent) }
wrap_Elems :: T_Elems -> Inh_Elems -> (Syn_Elems )
wrap_Elems (T_Elems act) (Inh_Elems _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Elems_vIn19 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions
(T_Elems_vOut19 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers) <- return (inv_Elems_s20 sem arg)
return (Syn_Elems _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers)
)
sem_Elems :: Elems -> T_Elems
sem_Elems list = Prelude.foldr sem_Elems_Cons sem_Elems_Nil (Prelude.map sem_Elem list)
newtype T_Elems = T_Elems {
attach_T_Elems :: Identity (T_Elems_s20 )
}
newtype T_Elems_s20 = C_Elems_s20 {
inv_Elems_s20 :: (T_Elems_v19 )
}
data T_Elems_s21 = C_Elems_s21
type T_Elems_v19 = (T_Elems_vIn19 ) -> (T_Elems_vOut19 )
data T_Elems_vIn19 = T_Elems_vIn19 (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Set ConstructorIdent)) (DataTypes) (Set NontermIdent) (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (Map Identifier (Set NontermIdent,Set Identifier)) (DefinedSets) (Options)
data T_Elems_vOut19 = T_Elems_vOut19 (Map NontermIdent (Attributes, Attributes)) (AttrOrderMap) (Map NontermIdent (Attributes, Attributes)) (Blocks) ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ([(NontermIdent, ConstructorIdent, Set Identifier)]) ([(NontermIdent, ConstructorIdent, [Type])]) (Map NontermIdent (Set ConstructorIdent)) ([(NontermIdent, ConstructorIdent, FieldMap)]) ([ (NontermIdent, ConstructorIdent, [Identifier]) ]) ([(NontermIdent, ConstructorIdent, MaybeMacro)]) ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) (Set Identifier) ([ (NontermIdent, ConstructorIdent, RuleInfo)]) (Set Identifier) ([ (NontermIdent, ConstructorIdent, SigInfo) ]) ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) (Map NontermIdent ConstructorType) (ContextMap) (Map Identifier (Set NontermIdent,Set Identifier)) (Derivings) (Seq Error) (Maybe (String,String,String)) (ParamMap) (Options -> Options) (QuantMap) (PragmaMap) (TypeSyns) (Map NontermIdent (Map Identifier (String,String,String))) (Set NontermIdent)
sem_Elems_Cons :: T_Elem -> T_Elems -> T_Elems
sem_Elems_Cons arg_hd_ arg_tl_ = T_Elems (return st20) where
st20 = let
v19 :: T_Elems_v19
v19 = \ (T_Elems_vIn19 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_hdX17 = Control.Monad.Identity.runIdentity (attach_T_Elem (arg_hd_))
_tlX20 = Control.Monad.Identity.runIdentity (attach_T_Elems (arg_tl_))
(T_Elem_vOut16 _hdIattrDecls _hdIattrOrderCollect _hdIattrs _hdIblocks _hdIcollectedArounds _hdIcollectedAugments _hdIcollectedConParams _hdIcollectedConstraints _hdIcollectedConstructorsMap _hdIcollectedFields _hdIcollectedInsts _hdIcollectedMacros _hdIcollectedMerges _hdIcollectedNames _hdIcollectedRules _hdIcollectedSetNames _hdIcollectedSigs _hdIcollectedUniques _hdIconstructorTypeMap _hdIctxCollect _hdIdefSets _hdIderivings _hdIerrors _hdImoduleDecl _hdIparamsCollect _hdIpragmas _hdIquantCollect _hdIsemPragmasCollect _hdItypeSyns _hdIuseMap _hdIwrappers) = inv_Elem_s17 _hdX17 (T_Elem_vIn16 _hdOallAttrDecls _hdOallAttrs _hdOallConstructors _hdOallFields _hdOallNonterminals _hdOattrDecls _hdOattrs _hdOdefSets _hdOdefinedSets _hdOoptions)
(T_Elems_vOut19 _tlIattrDecls _tlIattrOrderCollect _tlIattrs _tlIblocks _tlIcollectedArounds _tlIcollectedAugments _tlIcollectedConParams _tlIcollectedConstraints _tlIcollectedConstructorsMap _tlIcollectedFields _tlIcollectedInsts _tlIcollectedMacros _tlIcollectedMerges _tlIcollectedNames _tlIcollectedRules _tlIcollectedSetNames _tlIcollectedSigs _tlIcollectedUniques _tlIconstructorTypeMap _tlIctxCollect _tlIdefSets _tlIderivings _tlIerrors _tlImoduleDecl _tlIparamsCollect _tlIpragmas _tlIquantCollect _tlIsemPragmasCollect _tlItypeSyns _tlIuseMap _tlIwrappers) = inv_Elems_s20 _tlX20 (T_Elems_vIn19 _tlOallAttrDecls _tlOallAttrs _tlOallConstructors _tlOallFields _tlOallNonterminals _tlOattrDecls _tlOattrs _tlOdefSets _tlOdefinedSets _tlOoptions)
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule495 _hdIattrOrderCollect _tlIattrOrderCollect
_lhsOblocks :: Blocks
_lhsOblocks = rule496 _hdIblocks _tlIblocks
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule497 _hdIcollectedArounds _tlIcollectedArounds
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule498 _hdIcollectedAugments _tlIcollectedAugments
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule499 _hdIcollectedConParams _tlIcollectedConParams
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule500 _hdIcollectedConstraints _tlIcollectedConstraints
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule501 _hdIcollectedConstructorsMap _tlIcollectedConstructorsMap
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule502 _hdIcollectedFields _tlIcollectedFields
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule503 _hdIcollectedInsts _tlIcollectedInsts
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule504 _hdIcollectedMacros _tlIcollectedMacros
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule505 _hdIcollectedMerges _tlIcollectedMerges
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule506 _hdIcollectedNames _tlIcollectedNames
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule507 _hdIcollectedRules _tlIcollectedRules
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule508 _hdIcollectedSetNames _tlIcollectedSetNames
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule509 _hdIcollectedSigs _tlIcollectedSigs
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule510 _hdIcollectedUniques _tlIcollectedUniques
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule511 _hdIconstructorTypeMap _tlIconstructorTypeMap
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule512 _hdIctxCollect _tlIctxCollect
_lhsOderivings :: Derivings
_lhsOderivings = rule513 _hdIderivings _tlIderivings
_lhsOerrors :: Seq Error
_lhsOerrors = rule514 _hdIerrors _tlIerrors
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule515 _hdImoduleDecl _tlImoduleDecl
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule516 _hdIparamsCollect _tlIparamsCollect
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule517 _hdIpragmas _tlIpragmas
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule518 _hdIquantCollect _tlIquantCollect
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule519 _hdIsemPragmasCollect _tlIsemPragmasCollect
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule520 _hdItypeSyns _tlItypeSyns
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule521 _hdIuseMap _tlIuseMap
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule522 _hdIwrappers _tlIwrappers
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule523 _tlIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule524 _tlIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule525 _tlIdefSets
_hdOallAttrDecls = rule526 _lhsIallAttrDecls
_hdOallAttrs = rule527 _lhsIallAttrs
_hdOallConstructors = rule528 _lhsIallConstructors
_hdOallFields = rule529 _lhsIallFields
_hdOallNonterminals = rule530 _lhsIallNonterminals
_hdOattrDecls = rule531 _lhsIattrDecls
_hdOattrs = rule532 _lhsIattrs
_hdOdefSets = rule533 _lhsIdefSets
_hdOdefinedSets = rule534 _lhsIdefinedSets
_hdOoptions = rule535 _lhsIoptions
_tlOallAttrDecls = rule536 _lhsIallAttrDecls
_tlOallAttrs = rule537 _lhsIallAttrs
_tlOallConstructors = rule538 _lhsIallConstructors
_tlOallFields = rule539 _lhsIallFields
_tlOallNonterminals = rule540 _lhsIallNonterminals
_tlOattrDecls = rule541 _hdIattrDecls
_tlOattrs = rule542 _hdIattrs
_tlOdefSets = rule543 _hdIdefSets
_tlOdefinedSets = rule544 _lhsIdefinedSets
_tlOoptions = rule545 _lhsIoptions
__result_ = T_Elems_vOut19 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elems_s20 v19
rule495 = \ ((_hdIattrOrderCollect) :: AttrOrderMap) ((_tlIattrOrderCollect) :: AttrOrderMap) ->
_hdIattrOrderCollect `orderMapUnion` _tlIattrOrderCollect
rule496 = \ ((_hdIblocks) :: Blocks) ((_tlIblocks) :: Blocks) ->
_hdIblocks `mapUnionWithPlusPlus` _tlIblocks
rule497 = \ ((_hdIcollectedArounds) :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ((_tlIcollectedArounds) :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ->
_hdIcollectedArounds ++ _tlIcollectedArounds
rule498 = \ ((_hdIcollectedAugments) :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ((_tlIcollectedAugments) :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ->
_hdIcollectedAugments ++ _tlIcollectedAugments
rule499 = \ ((_hdIcollectedConParams) :: [(NontermIdent, ConstructorIdent, Set Identifier)]) ((_tlIcollectedConParams) :: [(NontermIdent, ConstructorIdent, Set Identifier)]) ->
_hdIcollectedConParams ++ _tlIcollectedConParams
rule500 = \ ((_hdIcollectedConstraints) :: [(NontermIdent, ConstructorIdent, [Type])]) ((_tlIcollectedConstraints) :: [(NontermIdent, ConstructorIdent, [Type])]) ->
_hdIcollectedConstraints ++ _tlIcollectedConstraints
rule501 = \ ((_hdIcollectedConstructorsMap) :: Map NontermIdent (Set ConstructorIdent)) ((_tlIcollectedConstructorsMap) :: Map NontermIdent (Set ConstructorIdent)) ->
_hdIcollectedConstructorsMap `mapUnionWithSetUnion` _tlIcollectedConstructorsMap
rule502 = \ ((_hdIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ((_tlIcollectedFields) :: [(NontermIdent, ConstructorIdent, FieldMap)]) ->
_hdIcollectedFields ++ _tlIcollectedFields
rule503 = \ ((_hdIcollectedInsts) :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]) ((_tlIcollectedInsts) :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]) ->
_hdIcollectedInsts ++ _tlIcollectedInsts
rule504 = \ ((_hdIcollectedMacros) :: [(NontermIdent, ConstructorIdent, MaybeMacro)]) ((_tlIcollectedMacros) :: [(NontermIdent, ConstructorIdent, MaybeMacro)]) ->
_hdIcollectedMacros ++ _tlIcollectedMacros
rule505 = \ ((_hdIcollectedMerges) :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ((_tlIcollectedMerges) :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ->
_hdIcollectedMerges ++ _tlIcollectedMerges
rule506 = \ ((_hdIcollectedNames) :: Set Identifier) ((_tlIcollectedNames) :: Set Identifier) ->
_hdIcollectedNames `Set.union` _tlIcollectedNames
rule507 = \ ((_hdIcollectedRules) :: [ (NontermIdent, ConstructorIdent, RuleInfo)]) ((_tlIcollectedRules) :: [ (NontermIdent, ConstructorIdent, RuleInfo)]) ->
_hdIcollectedRules ++ _tlIcollectedRules
rule508 = \ ((_hdIcollectedSetNames) :: Set Identifier) ((_tlIcollectedSetNames) :: Set Identifier) ->
_hdIcollectedSetNames `Set.union` _tlIcollectedSetNames
rule509 = \ ((_hdIcollectedSigs) :: [ (NontermIdent, ConstructorIdent, SigInfo) ]) ((_tlIcollectedSigs) :: [ (NontermIdent, ConstructorIdent, SigInfo) ]) ->
_hdIcollectedSigs ++ _tlIcollectedSigs
rule510 = \ ((_hdIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ((_tlIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ->
_hdIcollectedUniques ++ _tlIcollectedUniques
rule511 = \ ((_hdIconstructorTypeMap) :: Map NontermIdent ConstructorType) ((_tlIconstructorTypeMap) :: Map NontermIdent ConstructorType) ->
_hdIconstructorTypeMap `Map.union` _tlIconstructorTypeMap
rule512 = \ ((_hdIctxCollect) :: ContextMap) ((_tlIctxCollect) :: ContextMap) ->
_hdIctxCollect `mergeCtx` _tlIctxCollect
rule513 = \ ((_hdIderivings) :: Derivings) ((_tlIderivings) :: Derivings) ->
_hdIderivings `mergeDerivings` _tlIderivings
rule514 = \ ((_hdIerrors) :: Seq Error) ((_tlIerrors) :: Seq Error) ->
_hdIerrors Seq.>< _tlIerrors
rule515 = \ ((_hdImoduleDecl) :: Maybe (String,String,String)) ((_tlImoduleDecl) :: Maybe (String,String,String)) ->
_hdImoduleDecl `flipmplus` _tlImoduleDecl
rule516 = \ ((_hdIparamsCollect) :: ParamMap) ((_tlIparamsCollect) :: ParamMap) ->
_hdIparamsCollect `mergeParams` _tlIparamsCollect
rule517 = \ ((_hdIpragmas) :: Options -> Options) ((_tlIpragmas) :: Options -> Options) ->
_hdIpragmas . _tlIpragmas
rule518 = \ ((_hdIquantCollect) :: QuantMap) ((_tlIquantCollect) :: QuantMap) ->
_hdIquantCollect `mergeQuant` _tlIquantCollect
rule519 = \ ((_hdIsemPragmasCollect) :: PragmaMap) ((_tlIsemPragmasCollect) :: PragmaMap) ->
_hdIsemPragmasCollect `pragmaMapUnion` _tlIsemPragmasCollect
rule520 = \ ((_hdItypeSyns) :: TypeSyns) ((_tlItypeSyns) :: TypeSyns) ->
_hdItypeSyns ++ _tlItypeSyns
rule521 = \ ((_hdIuseMap) :: Map NontermIdent (Map Identifier (String,String,String))) ((_tlIuseMap) :: Map NontermIdent (Map Identifier (String,String,String))) ->
_hdIuseMap `merge` _tlIuseMap
rule522 = \ ((_hdIwrappers) :: Set NontermIdent) ((_tlIwrappers) :: Set NontermIdent) ->
_hdIwrappers `Set.union` _tlIwrappers
rule523 = \ ((_tlIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_tlIattrDecls
rule524 = \ ((_tlIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_tlIattrs
rule525 = \ ((_tlIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_tlIdefSets
rule526 = \ ((_lhsIallAttrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrDecls
rule527 = \ ((_lhsIallAttrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrs
rule528 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ->
_lhsIallConstructors
rule529 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule530 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule531 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule532 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule533 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
rule534 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule535 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
rule536 = \ ((_lhsIallAttrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrDecls
rule537 = \ ((_lhsIallAttrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrs
rule538 = \ ((_lhsIallConstructors) :: Map NontermIdent (Set ConstructorIdent)) ->
_lhsIallConstructors
rule539 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule540 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule541 = \ ((_hdIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_hdIattrDecls
rule542 = \ ((_hdIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_hdIattrs
rule543 = \ ((_hdIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_hdIdefSets
rule544 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule545 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
sem_Elems_Nil :: T_Elems
sem_Elems_Nil = T_Elems (return st20) where
st20 = let
v19 :: T_Elems_v19
v19 = \ (T_Elems_vIn19 _lhsIallAttrDecls _lhsIallAttrs _lhsIallConstructors _lhsIallFields _lhsIallNonterminals _lhsIattrDecls _lhsIattrs _lhsIdefSets _lhsIdefinedSets _lhsIoptions) -> ( let
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule546 ()
_lhsOblocks :: Blocks
_lhsOblocks = rule547 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule548 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule549 ()
_lhsOcollectedConParams :: [(NontermIdent, ConstructorIdent, Set Identifier)]
_lhsOcollectedConParams = rule550 ()
_lhsOcollectedConstraints :: [(NontermIdent, ConstructorIdent, [Type])]
_lhsOcollectedConstraints = rule551 ()
_lhsOcollectedConstructorsMap :: Map NontermIdent (Set ConstructorIdent)
_lhsOcollectedConstructorsMap = rule552 ()
_lhsOcollectedFields :: [(NontermIdent, ConstructorIdent, FieldMap)]
_lhsOcollectedFields = rule553 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule554 ()
_lhsOcollectedMacros :: [(NontermIdent, ConstructorIdent, MaybeMacro)]
_lhsOcollectedMacros = rule555 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule556 ()
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule557 ()
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule558 ()
_lhsOcollectedSetNames :: Set Identifier
_lhsOcollectedSetNames = rule559 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule560 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule561 ()
_lhsOconstructorTypeMap :: Map NontermIdent ConstructorType
_lhsOconstructorTypeMap = rule562 ()
_lhsOctxCollect :: ContextMap
_lhsOctxCollect = rule563 ()
_lhsOderivings :: Derivings
_lhsOderivings = rule564 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule565 ()
_lhsOmoduleDecl :: Maybe (String,String,String)
_lhsOmoduleDecl = rule566 ()
_lhsOparamsCollect :: ParamMap
_lhsOparamsCollect = rule567 ()
_lhsOpragmas :: Options -> Options
_lhsOpragmas = rule568 ()
_lhsOquantCollect :: QuantMap
_lhsOquantCollect = rule569 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule570 ()
_lhsOtypeSyns :: TypeSyns
_lhsOtypeSyns = rule571 ()
_lhsOuseMap :: Map NontermIdent (Map Identifier (String,String,String))
_lhsOuseMap = rule572 ()
_lhsOwrappers :: Set NontermIdent
_lhsOwrappers = rule573 ()
_lhsOattrDecls :: Map NontermIdent (Attributes, Attributes)
_lhsOattrDecls = rule574 _lhsIattrDecls
_lhsOattrs :: Map NontermIdent (Attributes, Attributes)
_lhsOattrs = rule575 _lhsIattrs
_lhsOdefSets :: Map Identifier (Set NontermIdent,Set Identifier)
_lhsOdefSets = rule576 _lhsIdefSets
__result_ = T_Elems_vOut19 _lhsOattrDecls _lhsOattrOrderCollect _lhsOattrs _lhsOblocks _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedConParams _lhsOcollectedConstraints _lhsOcollectedConstructorsMap _lhsOcollectedFields _lhsOcollectedInsts _lhsOcollectedMacros _lhsOcollectedMerges _lhsOcollectedNames _lhsOcollectedRules _lhsOcollectedSetNames _lhsOcollectedSigs _lhsOcollectedUniques _lhsOconstructorTypeMap _lhsOctxCollect _lhsOdefSets _lhsOderivings _lhsOerrors _lhsOmoduleDecl _lhsOparamsCollect _lhsOpragmas _lhsOquantCollect _lhsOsemPragmasCollect _lhsOtypeSyns _lhsOuseMap _lhsOwrappers
in __result_ )
in C_Elems_s20 v19
rule546 = \ (_ :: ()) ->
Map.empty
rule547 = \ (_ :: ()) ->
Map.empty
rule548 = \ (_ :: ()) ->
[]
rule549 = \ (_ :: ()) ->
[]
rule550 = \ (_ :: ()) ->
[]
rule551 = \ (_ :: ()) ->
[]
rule552 = \ (_ :: ()) ->
Map.empty
rule553 = \ (_ :: ()) ->
[]
rule554 = \ (_ :: ()) ->
[]
rule555 = \ (_ :: ()) ->
[]
rule556 = \ (_ :: ()) ->
[]
rule557 = \ (_ :: ()) ->
Set.empty
rule558 = \ (_ :: ()) ->
[]
rule559 = \ (_ :: ()) ->
Set.empty
rule560 = \ (_ :: ()) ->
[]
rule561 = \ (_ :: ()) ->
[]
rule562 = \ (_ :: ()) ->
Map.empty
rule563 = \ (_ :: ()) ->
Map.empty
rule564 = \ (_ :: ()) ->
Map.empty
rule565 = \ (_ :: ()) ->
Seq.empty
rule566 = \ (_ :: ()) ->
mzero
rule567 = \ (_ :: ()) ->
Map.empty
rule568 = \ (_ :: ()) ->
id
rule569 = \ (_ :: ()) ->
Map.empty
rule570 = \ (_ :: ()) ->
Map.empty
rule571 = \ (_ :: ()) ->
[]
rule572 = \ (_ :: ()) ->
Map.empty
rule573 = \ (_ :: ()) ->
Set.empty
rule574 = \ ((_lhsIattrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrDecls
rule575 = \ ((_lhsIattrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIattrs
rule576 = \ ((_lhsIdefSets) :: Map Identifier (Set NontermIdent,Set Identifier)) ->
_lhsIdefSets
data Inh_Field = Inh_Field { allNonterminals_Inh_Field :: (Set NontermIdent) }
data Syn_Field = Syn_Field { collectedConstraints_Syn_Field :: ([Type]), collectedFields_Syn_Field :: ([(Identifier, Type)]) }
wrap_Field :: T_Field -> Inh_Field -> (Syn_Field )
wrap_Field (T_Field act) (Inh_Field _lhsIallNonterminals) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Field_vIn22 _lhsIallNonterminals
(T_Field_vOut22 _lhsOcollectedConstraints _lhsOcollectedFields) <- return (inv_Field_s23 sem arg)
return (Syn_Field _lhsOcollectedConstraints _lhsOcollectedFields)
)
sem_Field :: Field -> T_Field
sem_Field ( FChild name_ tp_ ) = sem_Field_FChild name_ tp_
sem_Field ( FCtx tps_ ) = sem_Field_FCtx tps_
newtype T_Field = T_Field {
attach_T_Field :: Identity (T_Field_s23 )
}
newtype T_Field_s23 = C_Field_s23 {
inv_Field_s23 :: (T_Field_v22 )
}
data T_Field_s24 = C_Field_s24
type T_Field_v22 = (T_Field_vIn22 ) -> (T_Field_vOut22 )
data T_Field_vIn22 = T_Field_vIn22 (Set NontermIdent)
data T_Field_vOut22 = T_Field_vOut22 ([Type]) ([(Identifier, Type)])
sem_Field_FChild :: (Identifier) -> (Type) -> T_Field
sem_Field_FChild arg_name_ arg_tp_ = T_Field (return st23) where
st23 = let
v22 :: T_Field_v22
v22 = \ (T_Field_vIn22 _lhsIallNonterminals) -> ( let
_lhsOcollectedFields :: [(Identifier, Type)]
_lhsOcollectedFields = rule577 _lhsIallNonterminals arg_name_ arg_tp_
_lhsOcollectedConstraints :: [Type]
_lhsOcollectedConstraints = rule578 ()
__result_ = T_Field_vOut22 _lhsOcollectedConstraints _lhsOcollectedFields
in __result_ )
in C_Field_s23 v22
rule577 = \ ((_lhsIallNonterminals) :: Set NontermIdent) name_ tp_ ->
[(name_, makeType _lhsIallNonterminals tp_)]
rule578 = \ (_ :: ()) ->
[]
sem_Field_FCtx :: ([Type]) -> T_Field
sem_Field_FCtx arg_tps_ = T_Field (return st23) where
st23 = let
v22 :: T_Field_v22
v22 = \ (T_Field_vIn22 _lhsIallNonterminals) -> ( let
_lhsOcollectedConstraints :: [Type]
_lhsOcollectedConstraints = rule579 arg_tps_
_lhsOcollectedFields :: [(Identifier, Type)]
_lhsOcollectedFields = rule580 ()
__result_ = T_Field_vOut22 _lhsOcollectedConstraints _lhsOcollectedFields
in __result_ )
in C_Field_s23 v22
rule579 = \ tps_ ->
tps_
rule580 = \ (_ :: ()) ->
[]
data Inh_Fields = Inh_Fields { allNonterminals_Inh_Fields :: (Set NontermIdent) }
data Syn_Fields = Syn_Fields { collectedConstraints_Syn_Fields :: ([Type]), collectedFields_Syn_Fields :: ([(Identifier, Type)]) }
wrap_Fields :: T_Fields -> Inh_Fields -> (Syn_Fields )
wrap_Fields (T_Fields act) (Inh_Fields _lhsIallNonterminals) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Fields_vIn25 _lhsIallNonterminals
(T_Fields_vOut25 _lhsOcollectedConstraints _lhsOcollectedFields) <- return (inv_Fields_s26 sem arg)
return (Syn_Fields _lhsOcollectedConstraints _lhsOcollectedFields)
)
sem_Fields :: Fields -> T_Fields
sem_Fields list = Prelude.foldr sem_Fields_Cons sem_Fields_Nil (Prelude.map sem_Field list)
newtype T_Fields = T_Fields {
attach_T_Fields :: Identity (T_Fields_s26 )
}
newtype T_Fields_s26 = C_Fields_s26 {
inv_Fields_s26 :: (T_Fields_v25 )
}
data T_Fields_s27 = C_Fields_s27
type T_Fields_v25 = (T_Fields_vIn25 ) -> (T_Fields_vOut25 )
data T_Fields_vIn25 = T_Fields_vIn25 (Set NontermIdent)
data T_Fields_vOut25 = T_Fields_vOut25 ([Type]) ([(Identifier, Type)])
sem_Fields_Cons :: T_Field -> T_Fields -> T_Fields
sem_Fields_Cons arg_hd_ arg_tl_ = T_Fields (return st26) where
st26 = let
v25 :: T_Fields_v25
v25 = \ (T_Fields_vIn25 _lhsIallNonterminals) -> ( let
_hdX23 = Control.Monad.Identity.runIdentity (attach_T_Field (arg_hd_))
_tlX26 = Control.Monad.Identity.runIdentity (attach_T_Fields (arg_tl_))
(T_Field_vOut22 _hdIcollectedConstraints _hdIcollectedFields) = inv_Field_s23 _hdX23 (T_Field_vIn22 _hdOallNonterminals)
(T_Fields_vOut25 _tlIcollectedConstraints _tlIcollectedFields) = inv_Fields_s26 _tlX26 (T_Fields_vIn25 _tlOallNonterminals)
_lhsOcollectedConstraints :: [Type]
_lhsOcollectedConstraints = rule581 _hdIcollectedConstraints _tlIcollectedConstraints
_lhsOcollectedFields :: [(Identifier, Type)]
_lhsOcollectedFields = rule582 _hdIcollectedFields _tlIcollectedFields
_hdOallNonterminals = rule583 _lhsIallNonterminals
_tlOallNonterminals = rule584 _lhsIallNonterminals
__result_ = T_Fields_vOut25 _lhsOcollectedConstraints _lhsOcollectedFields
in __result_ )
in C_Fields_s26 v25
rule581 = \ ((_hdIcollectedConstraints) :: [Type]) ((_tlIcollectedConstraints) :: [Type]) ->
_hdIcollectedConstraints ++ _tlIcollectedConstraints
rule582 = \ ((_hdIcollectedFields) :: [(Identifier, Type)]) ((_tlIcollectedFields) :: [(Identifier, Type)]) ->
_hdIcollectedFields ++ _tlIcollectedFields
rule583 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule584 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
sem_Fields_Nil :: T_Fields
sem_Fields_Nil = T_Fields (return st26) where
st26 = let
v25 :: T_Fields_v25
v25 = \ (T_Fields_vIn25 _lhsIallNonterminals) -> ( let
_lhsOcollectedConstraints :: [Type]
_lhsOcollectedConstraints = rule585 ()
_lhsOcollectedFields :: [(Identifier, Type)]
_lhsOcollectedFields = rule586 ()
__result_ = T_Fields_vOut25 _lhsOcollectedConstraints _lhsOcollectedFields
in __result_ )
in C_Fields_s26 v25
rule585 = \ (_ :: ()) ->
[]
rule586 = \ (_ :: ()) ->
[]
data Inh_NontSet = Inh_NontSet { allFields_Inh_NontSet :: (DataTypes), allNonterminals_Inh_NontSet :: (Set NontermIdent), definedSets_Inh_NontSet :: (DefinedSets) }
data Syn_NontSet = Syn_NontSet { collectedNames_Syn_NontSet :: (Set Identifier), errors_Syn_NontSet :: (Seq Error), nontSet_Syn_NontSet :: (Set NontermIdent) }
wrap_NontSet :: T_NontSet -> Inh_NontSet -> (Syn_NontSet )
wrap_NontSet (T_NontSet act) (Inh_NontSet _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets
(T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet) <- return (inv_NontSet_s29 sem arg)
return (Syn_NontSet _lhsOcollectedNames _lhsOerrors _lhsOnontSet)
)
sem_NontSet :: NontSet -> T_NontSet
sem_NontSet ( NamedSet name_ ) = sem_NontSet_NamedSet name_
sem_NontSet ( All ) = sem_NontSet_All
sem_NontSet ( Union set1_ set2_ ) = sem_NontSet_Union ( sem_NontSet set1_ ) ( sem_NontSet set2_ )
sem_NontSet ( Intersect set1_ set2_ ) = sem_NontSet_Intersect ( sem_NontSet set1_ ) ( sem_NontSet set2_ )
sem_NontSet ( Difference set1_ set2_ ) = sem_NontSet_Difference ( sem_NontSet set1_ ) ( sem_NontSet set2_ )
sem_NontSet ( Path from_ to_ ) = sem_NontSet_Path from_ to_
newtype T_NontSet = T_NontSet {
attach_T_NontSet :: Identity (T_NontSet_s29 )
}
newtype T_NontSet_s29 = C_NontSet_s29 {
inv_NontSet_s29 :: (T_NontSet_v28 )
}
data T_NontSet_s30 = C_NontSet_s30
type T_NontSet_v28 = (T_NontSet_vIn28 ) -> (T_NontSet_vOut28 )
data T_NontSet_vIn28 = T_NontSet_vIn28 (DataTypes) (Set NontermIdent) (DefinedSets)
data T_NontSet_vOut28 = T_NontSet_vOut28 (Set Identifier) (Seq Error) (Set NontermIdent)
sem_NontSet_NamedSet :: (NontermIdent) -> T_NontSet
sem_NontSet_NamedSet arg_name_ = T_NontSet (return st29) where
st29 = let
v28 :: T_NontSet_v28
v28 = \ (T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) -> ( let
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule587 arg_name_
(_nontSet,_errors) = rule588 _lhsIdefinedSets arg_name_
_lhsOerrors :: Seq Error
_lhsOerrors = rule589 _errors
_lhsOnontSet :: Set NontermIdent
_lhsOnontSet = rule590 _nontSet
__result_ = T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet
in __result_ )
in C_NontSet_s29 v28
rule587 = \ name_ ->
Set.singleton name_
rule588 = \ ((_lhsIdefinedSets) :: DefinedSets) name_ ->
case Map.lookup name_ _lhsIdefinedSets of
Nothing -> (Set.empty, Seq.singleton (UndefNont name_))
Just set -> (set, Seq.empty)
rule589 = \ _errors ->
_errors
rule590 = \ _nontSet ->
_nontSet
sem_NontSet_All :: T_NontSet
sem_NontSet_All = T_NontSet (return st29) where
st29 = let
v28 :: T_NontSet_v28
v28 = \ (T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) -> ( let
_lhsOnontSet :: Set NontermIdent
_lhsOnontSet = rule591 _lhsIallNonterminals
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule592 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule593 ()
__result_ = T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet
in __result_ )
in C_NontSet_s29 v28
rule591 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule592 = \ (_ :: ()) ->
Set.empty
rule593 = \ (_ :: ()) ->
Seq.empty
sem_NontSet_Union :: T_NontSet -> T_NontSet -> T_NontSet
sem_NontSet_Union arg_set1_ arg_set2_ = T_NontSet (return st29) where
st29 = let
v28 :: T_NontSet_v28
v28 = \ (T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) -> ( let
_set1X29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set1_))
_set2X29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set2_))
(T_NontSet_vOut28 _set1IcollectedNames _set1Ierrors _set1InontSet) = inv_NontSet_s29 _set1X29 (T_NontSet_vIn28 _set1OallFields _set1OallNonterminals _set1OdefinedSets)
(T_NontSet_vOut28 _set2IcollectedNames _set2Ierrors _set2InontSet) = inv_NontSet_s29 _set2X29 (T_NontSet_vIn28 _set2OallFields _set2OallNonterminals _set2OdefinedSets)
_lhsOnontSet :: Set NontermIdent
_lhsOnontSet = rule594 _set1InontSet _set2InontSet
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule595 _set1IcollectedNames _set2IcollectedNames
_lhsOerrors :: Seq Error
_lhsOerrors = rule596 _set1Ierrors _set2Ierrors
_set1OallFields = rule597 _lhsIallFields
_set1OallNonterminals = rule598 _lhsIallNonterminals
_set1OdefinedSets = rule599 _lhsIdefinedSets
_set2OallFields = rule600 _lhsIallFields
_set2OallNonterminals = rule601 _lhsIallNonterminals
_set2OdefinedSets = rule602 _lhsIdefinedSets
__result_ = T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet
in __result_ )
in C_NontSet_s29 v28
rule594 = \ ((_set1InontSet) :: Set NontermIdent) ((_set2InontSet) :: Set NontermIdent) ->
Set.union _set1InontSet _set2InontSet
rule595 = \ ((_set1IcollectedNames) :: Set Identifier) ((_set2IcollectedNames) :: Set Identifier) ->
_set1IcollectedNames `Set.union` _set2IcollectedNames
rule596 = \ ((_set1Ierrors) :: Seq Error) ((_set2Ierrors) :: Seq Error) ->
_set1Ierrors Seq.>< _set2Ierrors
rule597 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule598 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule599 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule600 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule601 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule602 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_NontSet_Intersect :: T_NontSet -> T_NontSet -> T_NontSet
sem_NontSet_Intersect arg_set1_ arg_set2_ = T_NontSet (return st29) where
st29 = let
v28 :: T_NontSet_v28
v28 = \ (T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) -> ( let
_set1X29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set1_))
_set2X29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set2_))
(T_NontSet_vOut28 _set1IcollectedNames _set1Ierrors _set1InontSet) = inv_NontSet_s29 _set1X29 (T_NontSet_vIn28 _set1OallFields _set1OallNonterminals _set1OdefinedSets)
(T_NontSet_vOut28 _set2IcollectedNames _set2Ierrors _set2InontSet) = inv_NontSet_s29 _set2X29 (T_NontSet_vIn28 _set2OallFields _set2OallNonterminals _set2OdefinedSets)
_lhsOnontSet :: Set NontermIdent
_lhsOnontSet = rule603 _set1InontSet _set2InontSet
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule604 _set1IcollectedNames _set2IcollectedNames
_lhsOerrors :: Seq Error
_lhsOerrors = rule605 _set1Ierrors _set2Ierrors
_set1OallFields = rule606 _lhsIallFields
_set1OallNonterminals = rule607 _lhsIallNonterminals
_set1OdefinedSets = rule608 _lhsIdefinedSets
_set2OallFields = rule609 _lhsIallFields
_set2OallNonterminals = rule610 _lhsIallNonterminals
_set2OdefinedSets = rule611 _lhsIdefinedSets
__result_ = T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet
in __result_ )
in C_NontSet_s29 v28
rule603 = \ ((_set1InontSet) :: Set NontermIdent) ((_set2InontSet) :: Set NontermIdent) ->
Set.intersection _set1InontSet _set2InontSet
rule604 = \ ((_set1IcollectedNames) :: Set Identifier) ((_set2IcollectedNames) :: Set Identifier) ->
_set1IcollectedNames `Set.union` _set2IcollectedNames
rule605 = \ ((_set1Ierrors) :: Seq Error) ((_set2Ierrors) :: Seq Error) ->
_set1Ierrors Seq.>< _set2Ierrors
rule606 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule607 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule608 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule609 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule610 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule611 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_NontSet_Difference :: T_NontSet -> T_NontSet -> T_NontSet
sem_NontSet_Difference arg_set1_ arg_set2_ = T_NontSet (return st29) where
st29 = let
v28 :: T_NontSet_v28
v28 = \ (T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) -> ( let
_set1X29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set1_))
_set2X29 = Control.Monad.Identity.runIdentity (attach_T_NontSet (arg_set2_))
(T_NontSet_vOut28 _set1IcollectedNames _set1Ierrors _set1InontSet) = inv_NontSet_s29 _set1X29 (T_NontSet_vIn28 _set1OallFields _set1OallNonterminals _set1OdefinedSets)
(T_NontSet_vOut28 _set2IcollectedNames _set2Ierrors _set2InontSet) = inv_NontSet_s29 _set2X29 (T_NontSet_vIn28 _set2OallFields _set2OallNonterminals _set2OdefinedSets)
_lhsOnontSet :: Set NontermIdent
_lhsOnontSet = rule612 _set1InontSet _set2InontSet
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule613 _set1IcollectedNames _set2IcollectedNames
_lhsOerrors :: Seq Error
_lhsOerrors = rule614 _set1Ierrors _set2Ierrors
_set1OallFields = rule615 _lhsIallFields
_set1OallNonterminals = rule616 _lhsIallNonterminals
_set1OdefinedSets = rule617 _lhsIdefinedSets
_set2OallFields = rule618 _lhsIallFields
_set2OallNonterminals = rule619 _lhsIallNonterminals
_set2OdefinedSets = rule620 _lhsIdefinedSets
__result_ = T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet
in __result_ )
in C_NontSet_s29 v28
rule612 = \ ((_set1InontSet) :: Set NontermIdent) ((_set2InontSet) :: Set NontermIdent) ->
Set.difference _set1InontSet _set2InontSet
rule613 = \ ((_set1IcollectedNames) :: Set Identifier) ((_set2IcollectedNames) :: Set Identifier) ->
_set1IcollectedNames `Set.union` _set2IcollectedNames
rule614 = \ ((_set1Ierrors) :: Seq Error) ((_set2Ierrors) :: Seq Error) ->
_set1Ierrors Seq.>< _set2Ierrors
rule615 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule616 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule617 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
rule618 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule619 = \ ((_lhsIallNonterminals) :: Set NontermIdent) ->
_lhsIallNonterminals
rule620 = \ ((_lhsIdefinedSets) :: DefinedSets) ->
_lhsIdefinedSets
sem_NontSet_Path :: (NontermIdent) -> (NontermIdent) -> T_NontSet
sem_NontSet_Path arg_from_ arg_to_ = T_NontSet (return st29) where
st29 = let
v28 :: T_NontSet_v28
v28 = \ (T_NontSet_vIn28 _lhsIallFields _lhsIallNonterminals _lhsIdefinedSets) -> ( let
_lhsOnontSet :: Set NontermIdent
_lhsOnontSet = rule621 _lhsIallFields arg_from_ arg_to_
_lhsOerrors :: Seq Error
_lhsOerrors = rule622 _lhsIallNonterminals arg_from_ arg_to_
_lhsOcollectedNames :: Set Identifier
_lhsOcollectedNames = rule623 ()
__result_ = T_NontSet_vOut28 _lhsOcollectedNames _lhsOerrors _lhsOnontSet
in __result_ )
in C_NontSet_s29 v28
rule621 = \ ((_lhsIallFields) :: DataTypes) from_ to_ ->
let table = flattenDatas _lhsIallFields
in path table from_ to_
rule622 = \ ((_lhsIallNonterminals) :: Set NontermIdent) from_ to_ ->
let check name | Set.member name _lhsIallNonterminals
= Seq.empty
| otherwise = Seq.singleton (UndefNont name)
in check from_ >< check to_
rule623 = \ (_ :: ()) ->
Set.empty
data Inh_Pattern = Inh_Pattern { }
data Syn_Pattern = Syn_Pattern { copy_Syn_Pattern :: (Pattern), definedAttrs_Syn_Pattern :: ([AttrName]), definedInsts_Syn_Pattern :: ([Identifier]), patunder_Syn_Pattern :: ([AttrName]->Pattern), stpos_Syn_Pattern :: (Pos) }
wrap_Pattern :: T_Pattern -> Inh_Pattern -> (Syn_Pattern )
wrap_Pattern (T_Pattern act) (Inh_Pattern ) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Pattern_vIn31
(T_Pattern_vOut31 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos) <- return (inv_Pattern_s32 sem arg)
return (Syn_Pattern _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos)
)
sem_Pattern :: Pattern -> T_Pattern
sem_Pattern ( Constr name_ pats_ ) = sem_Pattern_Constr name_ ( sem_Patterns pats_ )
sem_Pattern ( Product pos_ pats_ ) = sem_Pattern_Product pos_ ( sem_Patterns pats_ )
sem_Pattern ( Alias field_ attr_ pat_ ) = sem_Pattern_Alias field_ attr_ ( sem_Pattern pat_ )
sem_Pattern ( Irrefutable pat_ ) = sem_Pattern_Irrefutable ( sem_Pattern pat_ )
sem_Pattern ( Underscore pos_ ) = sem_Pattern_Underscore pos_
newtype T_Pattern = T_Pattern {
attach_T_Pattern :: Identity (T_Pattern_s32 )
}
newtype T_Pattern_s32 = C_Pattern_s32 {
inv_Pattern_s32 :: (T_Pattern_v31 )
}
data T_Pattern_s33 = C_Pattern_s33
type T_Pattern_v31 = (T_Pattern_vIn31 ) -> (T_Pattern_vOut31 )
data T_Pattern_vIn31 = T_Pattern_vIn31
data T_Pattern_vOut31 = T_Pattern_vOut31 (Pattern) ([AttrName]) ([Identifier]) ([AttrName]->Pattern) (Pos)
sem_Pattern_Constr :: (ConstructorIdent) -> T_Patterns -> T_Pattern
sem_Pattern_Constr arg_name_ arg_pats_ = T_Pattern (return st32) where
st32 = let
v31 :: T_Pattern_v31
v31 = \ (T_Pattern_vIn31 ) -> ( let
_patsX35 = Control.Monad.Identity.runIdentity (attach_T_Patterns (arg_pats_))
(T_Patterns_vOut34 _patsIcopy _patsIdefinedAttrs _patsIdefinedInsts _patsIpatunder) = inv_Patterns_s35 _patsX35 (T_Patterns_vIn34 )
_lhsOpatunder :: [AttrName]->Pattern
_lhsOpatunder = rule624 _patsIpatunder arg_name_
_lhsOstpos :: Pos
_lhsOstpos = rule625 arg_name_
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule626 _patsIdefinedAttrs
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule627 _patsIdefinedInsts
_copy = rule628 _patsIcopy arg_name_
_lhsOcopy :: Pattern
_lhsOcopy = rule629 _copy
__result_ = T_Pattern_vOut31 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos
in __result_ )
in C_Pattern_s32 v31
rule624 = \ ((_patsIpatunder) :: [AttrName]->Patterns) name_ ->
\us -> Constr name_ (_patsIpatunder us)
rule625 = \ name_ ->
getPos name_
rule626 = \ ((_patsIdefinedAttrs) :: [AttrName]) ->
_patsIdefinedAttrs
rule627 = \ ((_patsIdefinedInsts) :: [Identifier]) ->
_patsIdefinedInsts
rule628 = \ ((_patsIcopy) :: Patterns) name_ ->
Constr name_ _patsIcopy
rule629 = \ _copy ->
_copy
sem_Pattern_Product :: (Pos) -> T_Patterns -> T_Pattern
sem_Pattern_Product arg_pos_ arg_pats_ = T_Pattern (return st32) where
st32 = let
v31 :: T_Pattern_v31
v31 = \ (T_Pattern_vIn31 ) -> ( let
_patsX35 = Control.Monad.Identity.runIdentity (attach_T_Patterns (arg_pats_))
(T_Patterns_vOut34 _patsIcopy _patsIdefinedAttrs _patsIdefinedInsts _patsIpatunder) = inv_Patterns_s35 _patsX35 (T_Patterns_vIn34 )
_lhsOpatunder :: [AttrName]->Pattern
_lhsOpatunder = rule630 _patsIpatunder arg_pos_
_lhsOstpos :: Pos
_lhsOstpos = rule631 arg_pos_
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule632 _patsIdefinedAttrs
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule633 _patsIdefinedInsts
_copy = rule634 _patsIcopy arg_pos_
_lhsOcopy :: Pattern
_lhsOcopy = rule635 _copy
__result_ = T_Pattern_vOut31 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos
in __result_ )
in C_Pattern_s32 v31
rule630 = \ ((_patsIpatunder) :: [AttrName]->Patterns) pos_ ->
\us -> Product pos_ (_patsIpatunder us)
rule631 = \ pos_ ->
pos_
rule632 = \ ((_patsIdefinedAttrs) :: [AttrName]) ->
_patsIdefinedAttrs
rule633 = \ ((_patsIdefinedInsts) :: [Identifier]) ->
_patsIdefinedInsts
rule634 = \ ((_patsIcopy) :: Patterns) pos_ ->
Product pos_ _patsIcopy
rule635 = \ _copy ->
_copy
sem_Pattern_Alias :: (Identifier) -> (Identifier) -> T_Pattern -> T_Pattern
sem_Pattern_Alias arg_field_ arg_attr_ arg_pat_ = T_Pattern (return st32) where
st32 = let
v31 :: T_Pattern_v31
v31 = \ (T_Pattern_vIn31 ) -> ( let
_patX32 = Control.Monad.Identity.runIdentity (attach_T_Pattern (arg_pat_))
(T_Pattern_vOut31 _patIcopy _patIdefinedAttrs _patIdefinedInsts _patIpatunder _patIstpos) = inv_Pattern_s32 _patX32 (T_Pattern_vIn31 )
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule636 _patIdefinedAttrs arg_attr_ arg_field_
_lhsOpatunder :: [AttrName]->Pattern
_lhsOpatunder = rule637 _copy arg_attr_ arg_field_
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule638 _patIdefinedInsts arg_attr_ arg_field_
_lhsOstpos :: Pos
_lhsOstpos = rule639 arg_field_
_copy = rule640 _patIcopy arg_attr_ arg_field_
_lhsOcopy :: Pattern
_lhsOcopy = rule641 _copy
__result_ = T_Pattern_vOut31 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos
in __result_ )
in C_Pattern_s32 v31
rule636 = \ ((_patIdefinedAttrs) :: [AttrName]) attr_ field_ ->
(field_, attr_) : _patIdefinedAttrs
rule637 = \ _copy attr_ field_ ->
\us -> if ((field_,attr_) `elem` us) then Underscore noPos else _copy
rule638 = \ ((_patIdefinedInsts) :: [Identifier]) attr_ field_ ->
(if field_ == _INST then [attr_] else []) ++ _patIdefinedInsts
rule639 = \ field_ ->
getPos field_
rule640 = \ ((_patIcopy) :: Pattern) attr_ field_ ->
Alias field_ attr_ _patIcopy
rule641 = \ _copy ->
_copy
sem_Pattern_Irrefutable :: T_Pattern -> T_Pattern
sem_Pattern_Irrefutable arg_pat_ = T_Pattern (return st32) where
st32 = let
v31 :: T_Pattern_v31
v31 = \ (T_Pattern_vIn31 ) -> ( let
_patX32 = Control.Monad.Identity.runIdentity (attach_T_Pattern (arg_pat_))
(T_Pattern_vOut31 _patIcopy _patIdefinedAttrs _patIdefinedInsts _patIpatunder _patIstpos) = inv_Pattern_s32 _patX32 (T_Pattern_vIn31 )
_lhsOpatunder :: [AttrName]->Pattern
_lhsOpatunder = rule642 _patIpatunder
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule643 _patIdefinedAttrs
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule644 _patIdefinedInsts
_copy = rule645 _patIcopy
_lhsOcopy :: Pattern
_lhsOcopy = rule646 _copy
_lhsOstpos :: Pos
_lhsOstpos = rule647 _patIstpos
__result_ = T_Pattern_vOut31 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos
in __result_ )
in C_Pattern_s32 v31
rule642 = \ ((_patIpatunder) :: [AttrName]->Pattern) ->
\us -> Irrefutable (_patIpatunder us)
rule643 = \ ((_patIdefinedAttrs) :: [AttrName]) ->
_patIdefinedAttrs
rule644 = \ ((_patIdefinedInsts) :: [Identifier]) ->
_patIdefinedInsts
rule645 = \ ((_patIcopy) :: Pattern) ->
Irrefutable _patIcopy
rule646 = \ _copy ->
_copy
rule647 = \ ((_patIstpos) :: Pos) ->
_patIstpos
sem_Pattern_Underscore :: (Pos) -> T_Pattern
sem_Pattern_Underscore arg_pos_ = T_Pattern (return st32) where
st32 = let
v31 :: T_Pattern_v31
v31 = \ (T_Pattern_vIn31 ) -> ( let
_lhsOpatunder :: [AttrName]->Pattern
_lhsOpatunder = rule648 _copy
_lhsOstpos :: Pos
_lhsOstpos = rule649 arg_pos_
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule650 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule651 ()
_copy = rule652 arg_pos_
_lhsOcopy :: Pattern
_lhsOcopy = rule653 _copy
__result_ = T_Pattern_vOut31 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder _lhsOstpos
in __result_ )
in C_Pattern_s32 v31
rule648 = \ _copy ->
\_ -> _copy
rule649 = \ pos_ ->
pos_
rule650 = \ (_ :: ()) ->
[]
rule651 = \ (_ :: ()) ->
[]
rule652 = \ pos_ ->
Underscore pos_
rule653 = \ _copy ->
_copy
data Inh_Patterns = Inh_Patterns { }
data Syn_Patterns = Syn_Patterns { copy_Syn_Patterns :: (Patterns), definedAttrs_Syn_Patterns :: ([AttrName]), definedInsts_Syn_Patterns :: ([Identifier]), patunder_Syn_Patterns :: ([AttrName]->Patterns) }
wrap_Patterns :: T_Patterns -> Inh_Patterns -> (Syn_Patterns )
wrap_Patterns (T_Patterns act) (Inh_Patterns ) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_Patterns_vIn34
(T_Patterns_vOut34 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder) <- return (inv_Patterns_s35 sem arg)
return (Syn_Patterns _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder)
)
sem_Patterns :: Patterns -> T_Patterns
sem_Patterns list = Prelude.foldr sem_Patterns_Cons sem_Patterns_Nil (Prelude.map sem_Pattern list)
newtype T_Patterns = T_Patterns {
attach_T_Patterns :: Identity (T_Patterns_s35 )
}
newtype T_Patterns_s35 = C_Patterns_s35 {
inv_Patterns_s35 :: (T_Patterns_v34 )
}
data T_Patterns_s36 = C_Patterns_s36
type T_Patterns_v34 = (T_Patterns_vIn34 ) -> (T_Patterns_vOut34 )
data T_Patterns_vIn34 = T_Patterns_vIn34
data T_Patterns_vOut34 = T_Patterns_vOut34 (Patterns) ([AttrName]) ([Identifier]) ([AttrName]->Patterns)
sem_Patterns_Cons :: T_Pattern -> T_Patterns -> T_Patterns
sem_Patterns_Cons arg_hd_ arg_tl_ = T_Patterns (return st35) where
st35 = let
v34 :: T_Patterns_v34
v34 = \ (T_Patterns_vIn34 ) -> ( let
_hdX32 = Control.Monad.Identity.runIdentity (attach_T_Pattern (arg_hd_))
_tlX35 = Control.Monad.Identity.runIdentity (attach_T_Patterns (arg_tl_))
(T_Pattern_vOut31 _hdIcopy _hdIdefinedAttrs _hdIdefinedInsts _hdIpatunder _hdIstpos) = inv_Pattern_s32 _hdX32 (T_Pattern_vIn31 )
(T_Patterns_vOut34 _tlIcopy _tlIdefinedAttrs _tlIdefinedInsts _tlIpatunder) = inv_Patterns_s35 _tlX35 (T_Patterns_vIn34 )
_lhsOpatunder :: [AttrName]->Patterns
_lhsOpatunder = rule654 _hdIpatunder _tlIpatunder
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule655 _hdIdefinedAttrs _tlIdefinedAttrs
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule656 _hdIdefinedInsts _tlIdefinedInsts
_copy = rule657 _hdIcopy _tlIcopy
_lhsOcopy :: Patterns
_lhsOcopy = rule658 _copy
__result_ = T_Patterns_vOut34 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder
in __result_ )
in C_Patterns_s35 v34
rule654 = \ ((_hdIpatunder) :: [AttrName]->Pattern) ((_tlIpatunder) :: [AttrName]->Patterns) ->
\us -> (_hdIpatunder us) : (_tlIpatunder us)
rule655 = \ ((_hdIdefinedAttrs) :: [AttrName]) ((_tlIdefinedAttrs) :: [AttrName]) ->
_hdIdefinedAttrs ++ _tlIdefinedAttrs
rule656 = \ ((_hdIdefinedInsts) :: [Identifier]) ((_tlIdefinedInsts) :: [Identifier]) ->
_hdIdefinedInsts ++ _tlIdefinedInsts
rule657 = \ ((_hdIcopy) :: Pattern) ((_tlIcopy) :: Patterns) ->
(:) _hdIcopy _tlIcopy
rule658 = \ _copy ->
_copy
sem_Patterns_Nil :: T_Patterns
sem_Patterns_Nil = T_Patterns (return st35) where
st35 = let
v34 :: T_Patterns_v34
v34 = \ (T_Patterns_vIn34 ) -> ( let
_lhsOpatunder :: [AttrName]->Patterns
_lhsOpatunder = rule659 ()
_lhsOdefinedAttrs :: [AttrName]
_lhsOdefinedAttrs = rule660 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule661 ()
_copy = rule662 ()
_lhsOcopy :: Patterns
_lhsOcopy = rule663 _copy
__result_ = T_Patterns_vOut34 _lhsOcopy _lhsOdefinedAttrs _lhsOdefinedInsts _lhsOpatunder
in __result_ )
in C_Patterns_s35 v34
rule659 = \ (_ :: ()) ->
\_ -> []
rule660 = \ (_ :: ()) ->
[]
rule661 = \ (_ :: ()) ->
[]
rule662 = \ (_ :: ()) ->
[]
rule663 = \ _copy ->
_copy
data Inh_SemAlt = Inh_SemAlt { allAttrDecls_Inh_SemAlt :: (Map NontermIdent (Attributes, Attributes)), allAttrs_Inh_SemAlt :: (Map NontermIdent (Attributes, Attributes)), allFields_Inh_SemAlt :: (DataTypes), nts_Inh_SemAlt :: (Set NontermIdent), options_Inh_SemAlt :: (Options) }
data Syn_SemAlt = Syn_SemAlt { attrOrderCollect_Syn_SemAlt :: (AttrOrderMap), collectedArounds_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]), collectedAugments_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]), collectedInsts_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, [Identifier]) ]), collectedMerges_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]), collectedRules_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, RuleInfo)]), collectedSigs_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, SigInfo) ]), collectedUniques_Syn_SemAlt :: ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]), errors_Syn_SemAlt :: (Seq Error), semPragmasCollect_Syn_SemAlt :: (PragmaMap) }
wrap_SemAlt :: T_SemAlt -> Inh_SemAlt -> (Syn_SemAlt )
wrap_SemAlt (T_SemAlt act) (Inh_SemAlt _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_SemAlt_vIn37 _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions
(T_SemAlt_vOut37 _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect) <- return (inv_SemAlt_s38 sem arg)
return (Syn_SemAlt _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect)
)
sem_SemAlt :: SemAlt -> T_SemAlt
sem_SemAlt ( SemAlt pos_ constructorSet_ rules_ ) = sem_SemAlt_SemAlt pos_ ( sem_ConstructorSet constructorSet_ ) ( sem_SemDefs rules_ )
newtype T_SemAlt = T_SemAlt {
attach_T_SemAlt :: Identity (T_SemAlt_s38 )
}
newtype T_SemAlt_s38 = C_SemAlt_s38 {
inv_SemAlt_s38 :: (T_SemAlt_v37 )
}
data T_SemAlt_s39 = C_SemAlt_s39
type T_SemAlt_v37 = (T_SemAlt_vIn37 ) -> (T_SemAlt_vOut37 )
data T_SemAlt_vIn37 = T_SemAlt_vIn37 (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (DataTypes) (Set NontermIdent) (Options)
data T_SemAlt_vOut37 = T_SemAlt_vOut37 (AttrOrderMap) ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ([ (NontermIdent, ConstructorIdent, [Identifier]) ]) ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ([ (NontermIdent, ConstructorIdent, RuleInfo)]) ([ (NontermIdent, ConstructorIdent, SigInfo) ]) ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) (Seq Error) (PragmaMap)
sem_SemAlt_SemAlt :: (Pos) -> T_ConstructorSet -> T_SemDefs -> T_SemAlt
sem_SemAlt_SemAlt _ arg_constructorSet_ arg_rules_ = T_SemAlt (return st38) where
st38 = let
v37 :: T_SemAlt_v37
v37 = \ (T_SemAlt_vIn37 _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions) -> ( let
_constructorSetX14 = Control.Monad.Identity.runIdentity (attach_T_ConstructorSet (arg_constructorSet_))
_rulesX47 = Control.Monad.Identity.runIdentity (attach_T_SemDefs (arg_rules_))
(T_ConstructorSet_vOut13 _constructorSetIcollectedConstructorNames _constructorSetIconstructors _constructorSetIerrors) = inv_ConstructorSet_s14 _constructorSetX14 (T_ConstructorSet_vIn13 )
(T_SemDefs_vOut46 _rulesIaroundInfos _rulesIaugmentInfos _rulesIdefinedInsts _rulesIerrors _rulesImergeInfos _rulesIorderDepsCollect _rulesIpragmaNamesCollect _rulesIruleInfos _rulesIsigInfos _rulesIuniqueInfos) = inv_SemDefs_s47 _rulesX47 (T_SemDefs_vIn46 _rulesOoptions)
_pragmaNames = rule664 _rulesIpragmaNamesCollect
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule665 _coninfo _pragmaNames
_attrOrders = rule666 _coninfo _rulesIorderDepsCollect
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule667 _attrOrders
_coninfo = rule668 _constructorSetIconstructors _lhsIallFields _lhsInts
_lhsOerrors :: Seq Error
_lhsOerrors = rule669 _coninfo _rulesIerrors
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule670 _coninfo _rulesIruleInfos
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule671 _coninfo _rulesIsigInfos
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule672 _coninfo _rulesIdefinedInsts
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule673 _coninfo _rulesIuniqueInfos
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule674 _coninfo _rulesIaugmentInfos
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule675 _coninfo _rulesIaroundInfos
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule676 _coninfo _rulesImergeInfos
_rulesOoptions = rule677 _lhsIoptions
__result_ = T_SemAlt_vOut37 _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect
in __result_ )
in C_SemAlt_s38 v37
rule664 = \ ((_rulesIpragmaNamesCollect) :: [Identifier]) ->
Set.fromList _rulesIpragmaNamesCollect
rule665 = \ _coninfo _pragmaNames ->
foldr pragmaMapUnion Map.empty [ pragmaMapSingle nt con _pragmaNames
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule666 = \ _coninfo ((_rulesIorderDepsCollect) :: Set Dependency) ->
[ orderMapSingle nt con _rulesIorderDepsCollect
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule667 = \ _attrOrders ->
foldr orderMapUnion Map.empty _attrOrders
rule668 = \ ((_constructorSetIconstructors) :: (Set ConstructorIdent->Set ConstructorIdent)) ((_lhsIallFields) :: DataTypes) ((_lhsInts) :: Set NontermIdent) ->
[ (nt, conset, conkeys)
| nt <- Set.toList _lhsInts
, let conmap = Map.findWithDefault Map.empty nt _lhsIallFields
, let conkeys = Set.fromList (Map.keys conmap)
, let conset = _constructorSetIconstructors conkeys
]
rule669 = \ _coninfo ((_rulesIerrors) :: Seq Error) ->
Seq.fromList
[ UndefAlt nt con
| (nt, conset, conkeys) <- _coninfo
, con <- Set.toList (Set.difference conset conkeys)
]
Seq.>< _rulesIerrors
rule670 = \ _coninfo ((_rulesIruleInfos) :: [RuleInfo]) ->
[ (nt,con,r)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
, r <- _rulesIruleInfos
]
rule671 = \ _coninfo ((_rulesIsigInfos) :: [SigInfo]) ->
[ (nt,con,ts)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
, ts <- _rulesIsigInfos
]
rule672 = \ _coninfo ((_rulesIdefinedInsts) :: [Identifier]) ->
[ (nt,con,_rulesIdefinedInsts)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule673 = \ _coninfo ((_rulesIuniqueInfos) :: [UniqueInfo]) ->
[ (nt,con,_rulesIuniqueInfos)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule674 = \ _coninfo ((_rulesIaugmentInfos) :: [AugmentInfo]) ->
[ (nt, con, _rulesIaugmentInfos)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule675 = \ _coninfo ((_rulesIaroundInfos) :: [AroundInfo]) ->
[ (nt, con, _rulesIaroundInfos)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule676 = \ _coninfo ((_rulesImergeInfos) :: [MergeInfo]) ->
[ (nt, con, _rulesImergeInfos)
| (nt, conset, _) <- _coninfo
, con <- Set.toList conset
]
rule677 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
data Inh_SemAlts = Inh_SemAlts { allAttrDecls_Inh_SemAlts :: (Map NontermIdent (Attributes, Attributes)), allAttrs_Inh_SemAlts :: (Map NontermIdent (Attributes, Attributes)), allFields_Inh_SemAlts :: (DataTypes), nts_Inh_SemAlts :: (Set NontermIdent), options_Inh_SemAlts :: (Options) }
data Syn_SemAlts = Syn_SemAlts { attrOrderCollect_Syn_SemAlts :: (AttrOrderMap), collectedArounds_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]), collectedAugments_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]), collectedInsts_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, [Identifier]) ]), collectedMerges_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]), collectedRules_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, RuleInfo)]), collectedSigs_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, SigInfo) ]), collectedUniques_Syn_SemAlts :: ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]), errors_Syn_SemAlts :: (Seq Error), semPragmasCollect_Syn_SemAlts :: (PragmaMap) }
wrap_SemAlts :: T_SemAlts -> Inh_SemAlts -> (Syn_SemAlts )
wrap_SemAlts (T_SemAlts act) (Inh_SemAlts _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_SemAlts_vIn40 _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions
(T_SemAlts_vOut40 _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect) <- return (inv_SemAlts_s41 sem arg)
return (Syn_SemAlts _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect)
)
sem_SemAlts :: SemAlts -> T_SemAlts
sem_SemAlts list = Prelude.foldr sem_SemAlts_Cons sem_SemAlts_Nil (Prelude.map sem_SemAlt list)
newtype T_SemAlts = T_SemAlts {
attach_T_SemAlts :: Identity (T_SemAlts_s41 )
}
newtype T_SemAlts_s41 = C_SemAlts_s41 {
inv_SemAlts_s41 :: (T_SemAlts_v40 )
}
data T_SemAlts_s42 = C_SemAlts_s42
type T_SemAlts_v40 = (T_SemAlts_vIn40 ) -> (T_SemAlts_vOut40 )
data T_SemAlts_vIn40 = T_SemAlts_vIn40 (Map NontermIdent (Attributes, Attributes)) (Map NontermIdent (Attributes, Attributes)) (DataTypes) (Set NontermIdent) (Options)
data T_SemAlts_vOut40 = T_SemAlts_vOut40 (AttrOrderMap) ([ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ([ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ([ (NontermIdent, ConstructorIdent, [Identifier]) ]) ([ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ([ (NontermIdent, ConstructorIdent, RuleInfo)]) ([ (NontermIdent, ConstructorIdent, SigInfo) ]) ([ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) (Seq Error) (PragmaMap)
sem_SemAlts_Cons :: T_SemAlt -> T_SemAlts -> T_SemAlts
sem_SemAlts_Cons arg_hd_ arg_tl_ = T_SemAlts (return st41) where
st41 = let
v40 :: T_SemAlts_v40
v40 = \ (T_SemAlts_vIn40 _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions) -> ( let
_hdX38 = Control.Monad.Identity.runIdentity (attach_T_SemAlt (arg_hd_))
_tlX41 = Control.Monad.Identity.runIdentity (attach_T_SemAlts (arg_tl_))
(T_SemAlt_vOut37 _hdIattrOrderCollect _hdIcollectedArounds _hdIcollectedAugments _hdIcollectedInsts _hdIcollectedMerges _hdIcollectedRules _hdIcollectedSigs _hdIcollectedUniques _hdIerrors _hdIsemPragmasCollect) = inv_SemAlt_s38 _hdX38 (T_SemAlt_vIn37 _hdOallAttrDecls _hdOallAttrs _hdOallFields _hdOnts _hdOoptions)
(T_SemAlts_vOut40 _tlIattrOrderCollect _tlIcollectedArounds _tlIcollectedAugments _tlIcollectedInsts _tlIcollectedMerges _tlIcollectedRules _tlIcollectedSigs _tlIcollectedUniques _tlIerrors _tlIsemPragmasCollect) = inv_SemAlts_s41 _tlX41 (T_SemAlts_vIn40 _tlOallAttrDecls _tlOallAttrs _tlOallFields _tlOnts _tlOoptions)
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule678 _hdIattrOrderCollect _tlIattrOrderCollect
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule679 _hdIcollectedArounds _tlIcollectedArounds
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule680 _hdIcollectedAugments _tlIcollectedAugments
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule681 _hdIcollectedInsts _tlIcollectedInsts
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule682 _hdIcollectedMerges _tlIcollectedMerges
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule683 _hdIcollectedRules _tlIcollectedRules
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule684 _hdIcollectedSigs _tlIcollectedSigs
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule685 _hdIcollectedUniques _tlIcollectedUniques
_lhsOerrors :: Seq Error
_lhsOerrors = rule686 _hdIerrors _tlIerrors
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule687 _hdIsemPragmasCollect _tlIsemPragmasCollect
_hdOallAttrDecls = rule688 _lhsIallAttrDecls
_hdOallAttrs = rule689 _lhsIallAttrs
_hdOallFields = rule690 _lhsIallFields
_hdOnts = rule691 _lhsInts
_hdOoptions = rule692 _lhsIoptions
_tlOallAttrDecls = rule693 _lhsIallAttrDecls
_tlOallAttrs = rule694 _lhsIallAttrs
_tlOallFields = rule695 _lhsIallFields
_tlOnts = rule696 _lhsInts
_tlOoptions = rule697 _lhsIoptions
__result_ = T_SemAlts_vOut40 _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect
in __result_ )
in C_SemAlts_s41 v40
rule678 = \ ((_hdIattrOrderCollect) :: AttrOrderMap) ((_tlIattrOrderCollect) :: AttrOrderMap) ->
_hdIattrOrderCollect `orderMapUnion` _tlIattrOrderCollect
rule679 = \ ((_hdIcollectedArounds) :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ((_tlIcollectedArounds) :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]) ->
_hdIcollectedArounds ++ _tlIcollectedArounds
rule680 = \ ((_hdIcollectedAugments) :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ((_tlIcollectedAugments) :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]) ->
_hdIcollectedAugments ++ _tlIcollectedAugments
rule681 = \ ((_hdIcollectedInsts) :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]) ((_tlIcollectedInsts) :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]) ->
_hdIcollectedInsts ++ _tlIcollectedInsts
rule682 = \ ((_hdIcollectedMerges) :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ((_tlIcollectedMerges) :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]) ->
_hdIcollectedMerges ++ _tlIcollectedMerges
rule683 = \ ((_hdIcollectedRules) :: [ (NontermIdent, ConstructorIdent, RuleInfo)]) ((_tlIcollectedRules) :: [ (NontermIdent, ConstructorIdent, RuleInfo)]) ->
_hdIcollectedRules ++ _tlIcollectedRules
rule684 = \ ((_hdIcollectedSigs) :: [ (NontermIdent, ConstructorIdent, SigInfo) ]) ((_tlIcollectedSigs) :: [ (NontermIdent, ConstructorIdent, SigInfo) ]) ->
_hdIcollectedSigs ++ _tlIcollectedSigs
rule685 = \ ((_hdIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ((_tlIcollectedUniques) :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]) ->
_hdIcollectedUniques ++ _tlIcollectedUniques
rule686 = \ ((_hdIerrors) :: Seq Error) ((_tlIerrors) :: Seq Error) ->
_hdIerrors Seq.>< _tlIerrors
rule687 = \ ((_hdIsemPragmasCollect) :: PragmaMap) ((_tlIsemPragmasCollect) :: PragmaMap) ->
_hdIsemPragmasCollect `pragmaMapUnion` _tlIsemPragmasCollect
rule688 = \ ((_lhsIallAttrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrDecls
rule689 = \ ((_lhsIallAttrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrs
rule690 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule691 = \ ((_lhsInts) :: Set NontermIdent) ->
_lhsInts
rule692 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
rule693 = \ ((_lhsIallAttrDecls) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrDecls
rule694 = \ ((_lhsIallAttrs) :: Map NontermIdent (Attributes, Attributes)) ->
_lhsIallAttrs
rule695 = \ ((_lhsIallFields) :: DataTypes) ->
_lhsIallFields
rule696 = \ ((_lhsInts) :: Set NontermIdent) ->
_lhsInts
rule697 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
sem_SemAlts_Nil :: T_SemAlts
sem_SemAlts_Nil = T_SemAlts (return st41) where
st41 = let
v40 :: T_SemAlts_v40
v40 = \ (T_SemAlts_vIn40 _lhsIallAttrDecls _lhsIallAttrs _lhsIallFields _lhsInts _lhsIoptions) -> ( let
_lhsOattrOrderCollect :: AttrOrderMap
_lhsOattrOrderCollect = rule698 ()
_lhsOcollectedArounds :: [ (NontermIdent, ConstructorIdent, [AroundInfo]) ]
_lhsOcollectedArounds = rule699 ()
_lhsOcollectedAugments :: [ (NontermIdent, ConstructorIdent, [AugmentInfo]) ]
_lhsOcollectedAugments = rule700 ()
_lhsOcollectedInsts :: [ (NontermIdent, ConstructorIdent, [Identifier]) ]
_lhsOcollectedInsts = rule701 ()
_lhsOcollectedMerges :: [ (NontermIdent, ConstructorIdent, [MergeInfo]) ]
_lhsOcollectedMerges = rule702 ()
_lhsOcollectedRules :: [ (NontermIdent, ConstructorIdent, RuleInfo)]
_lhsOcollectedRules = rule703 ()
_lhsOcollectedSigs :: [ (NontermIdent, ConstructorIdent, SigInfo) ]
_lhsOcollectedSigs = rule704 ()
_lhsOcollectedUniques :: [ (NontermIdent, ConstructorIdent, [UniqueInfo]) ]
_lhsOcollectedUniques = rule705 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule706 ()
_lhsOsemPragmasCollect :: PragmaMap
_lhsOsemPragmasCollect = rule707 ()
__result_ = T_SemAlts_vOut40 _lhsOattrOrderCollect _lhsOcollectedArounds _lhsOcollectedAugments _lhsOcollectedInsts _lhsOcollectedMerges _lhsOcollectedRules _lhsOcollectedSigs _lhsOcollectedUniques _lhsOerrors _lhsOsemPragmasCollect
in __result_ )
in C_SemAlts_s41 v40
rule698 = \ (_ :: ()) ->
Map.empty
rule699 = \ (_ :: ()) ->
[]
rule700 = \ (_ :: ()) ->
[]
rule701 = \ (_ :: ()) ->
[]
rule702 = \ (_ :: ()) ->
[]
rule703 = \ (_ :: ()) ->
[]
rule704 = \ (_ :: ()) ->
[]
rule705 = \ (_ :: ()) ->
[]
rule706 = \ (_ :: ()) ->
Seq.empty
rule707 = \ (_ :: ()) ->
Map.empty
data Inh_SemDef = Inh_SemDef { options_Inh_SemDef :: (Options) }
data Syn_SemDef = Syn_SemDef { aroundInfos_Syn_SemDef :: ([AroundInfo]), augmentInfos_Syn_SemDef :: ([AugmentInfo]), definedInsts_Syn_SemDef :: ([Identifier]), errors_Syn_SemDef :: (Seq Error), mergeInfos_Syn_SemDef :: ([MergeInfo]), orderDepsCollect_Syn_SemDef :: (Set Dependency), pragmaNamesCollect_Syn_SemDef :: ([Identifier]), ruleInfos_Syn_SemDef :: ([RuleInfo]), sigInfos_Syn_SemDef :: ([SigInfo]), uniqueInfos_Syn_SemDef :: ([UniqueInfo]) }
wrap_SemDef :: T_SemDef -> Inh_SemDef -> (Syn_SemDef )
wrap_SemDef (T_SemDef act) (Inh_SemDef _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_SemDef_vIn43 _lhsIoptions
(T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos) <- return (inv_SemDef_s44 sem arg)
return (Syn_SemDef _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos)
)
sem_SemDef :: SemDef -> T_SemDef
sem_SemDef ( Def pos_ mbName_ pattern_ rhs_ owrt_ pure_ eager_ ) = sem_SemDef_Def pos_ mbName_ ( sem_Pattern pattern_ ) rhs_ owrt_ pure_ eager_
sem_SemDef ( TypeDef pos_ ident_ tp_ ) = sem_SemDef_TypeDef pos_ ident_ tp_
sem_SemDef ( UniqueDef ident_ ref_ ) = sem_SemDef_UniqueDef ident_ ref_
sem_SemDef ( AugmentDef ident_ rhs_ ) = sem_SemDef_AugmentDef ident_ rhs_
sem_SemDef ( AroundDef ident_ rhs_ ) = sem_SemDef_AroundDef ident_ rhs_
sem_SemDef ( MergeDef target_ nt_ sources_ rhs_ ) = sem_SemDef_MergeDef target_ nt_ sources_ rhs_
sem_SemDef ( SemPragma names_ ) = sem_SemDef_SemPragma names_
sem_SemDef ( AttrOrderBefore before_ after_ ) = sem_SemDef_AttrOrderBefore before_ after_
newtype T_SemDef = T_SemDef {
attach_T_SemDef :: Identity (T_SemDef_s44 )
}
newtype T_SemDef_s44 = C_SemDef_s44 {
inv_SemDef_s44 :: (T_SemDef_v43 )
}
data T_SemDef_s45 = C_SemDef_s45
type T_SemDef_v43 = (T_SemDef_vIn43 ) -> (T_SemDef_vOut43 )
data T_SemDef_vIn43 = T_SemDef_vIn43 (Options)
data T_SemDef_vOut43 = T_SemDef_vOut43 ([AroundInfo]) ([AugmentInfo]) ([Identifier]) (Seq Error) ([MergeInfo]) (Set Dependency) ([Identifier]) ([RuleInfo]) ([SigInfo]) ([UniqueInfo])
sem_SemDef_Def :: (Pos) -> (Maybe Identifier) -> T_Pattern -> (Expression) -> (Bool) -> (Bool) -> (Bool) -> T_SemDef
sem_SemDef_Def _ arg_mbName_ arg_pattern_ arg_rhs_ arg_owrt_ arg_pure_ arg_eager_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_patternX32 = Control.Monad.Identity.runIdentity (attach_T_Pattern (arg_pattern_))
(T_Pattern_vOut31 _patternIcopy _patternIdefinedAttrs _patternIdefinedInsts _patternIpatunder _patternIstpos) = inv_Pattern_s32 _patternX32 (T_Pattern_vIn31 )
_lhsOerrors :: Seq Error
_lhsOerrors = rule708 _lhsIoptions arg_rhs_
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule709 _patternIdefinedAttrs _patternIpatunder _patternIstpos arg_eager_ arg_mbName_ arg_owrt_ arg_pure_ arg_rhs_
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule710 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule711 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule712 _patternIdefinedInsts
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule713 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule714 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule715 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule716 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule717 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule708 = \ ((_lhsIoptions) :: Options) rhs_ ->
if checkParseRhs _lhsIoptions
then Seq.fromList $ checkRhs rhs_
else Seq.empty
rule709 = \ ((_patternIdefinedAttrs) :: [AttrName]) ((_patternIpatunder) :: [AttrName]->Pattern) ((_patternIstpos) :: Pos) eager_ mbName_ owrt_ pure_ rhs_ ->
[ (mbName_, _patternIpatunder, rhs_, _patternIdefinedAttrs, owrt_, show _patternIstpos, pure_, eager_) ]
rule710 = \ (_ :: ()) ->
[]
rule711 = \ (_ :: ()) ->
[]
rule712 = \ ((_patternIdefinedInsts) :: [Identifier]) ->
_patternIdefinedInsts
rule713 = \ (_ :: ()) ->
[]
rule714 = \ (_ :: ()) ->
Set.empty
rule715 = \ (_ :: ()) ->
[]
rule716 = \ (_ :: ()) ->
[]
rule717 = \ (_ :: ()) ->
[]
sem_SemDef_TypeDef :: (Pos) -> (Identifier) -> (Type) -> T_SemDef
sem_SemDef_TypeDef arg_pos_ arg_ident_ arg_tp_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_lhsOerrors :: Seq Error
_lhsOerrors = rule718 _lhsIoptions arg_pos_ arg_tp_
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule719 arg_ident_ arg_tp_
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule720 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule721 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule722 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule723 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule724 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule725 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule726 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule727 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule718 = \ ((_lhsIoptions) :: Options) pos_ tp_ ->
if checkParseTy _lhsIoptions
then case tp_ of
Haskell s -> let ex = Expression pos_ tks
tks = [tk]
tk = HsToken s pos_
in Seq.fromList $ checkTy ex
_ -> Seq.empty
else Seq.empty
rule719 = \ ident_ tp_ ->
[ (ident_, tp_) ]
rule720 = \ (_ :: ()) ->
[]
rule721 = \ (_ :: ()) ->
[]
rule722 = \ (_ :: ()) ->
[]
rule723 = \ (_ :: ()) ->
[]
rule724 = \ (_ :: ()) ->
Set.empty
rule725 = \ (_ :: ()) ->
[]
rule726 = \ (_ :: ()) ->
[]
rule727 = \ (_ :: ()) ->
[]
sem_SemDef_UniqueDef :: (Identifier) -> (Identifier) -> T_SemDef
sem_SemDef_UniqueDef arg_ident_ arg_ref_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule728 arg_ident_ arg_ref_
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule729 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule730 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule731 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule732 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule733 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule734 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule735 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule736 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule737 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule728 = \ ident_ ref_ ->
[ (ident_, ref_) ]
rule729 = \ (_ :: ()) ->
[]
rule730 = \ (_ :: ()) ->
[]
rule731 = \ (_ :: ()) ->
[]
rule732 = \ (_ :: ()) ->
Seq.empty
rule733 = \ (_ :: ()) ->
[]
rule734 = \ (_ :: ()) ->
Set.empty
rule735 = \ (_ :: ()) ->
[]
rule736 = \ (_ :: ()) ->
[]
rule737 = \ (_ :: ()) ->
[]
sem_SemDef_AugmentDef :: (Identifier) -> (Expression) -> T_SemDef
sem_SemDef_AugmentDef arg_ident_ arg_rhs_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule738 arg_ident_ arg_rhs_
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule739 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule740 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule741 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule742 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule743 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule744 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule745 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule746 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule747 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule738 = \ ident_ rhs_ ->
[ (ident_, rhs_) ]
rule739 = \ (_ :: ()) ->
[]
rule740 = \ (_ :: ()) ->
[]
rule741 = \ (_ :: ()) ->
Seq.empty
rule742 = \ (_ :: ()) ->
[]
rule743 = \ (_ :: ()) ->
Set.empty
rule744 = \ (_ :: ()) ->
[]
rule745 = \ (_ :: ()) ->
[]
rule746 = \ (_ :: ()) ->
[]
rule747 = \ (_ :: ()) ->
[]
sem_SemDef_AroundDef :: (Identifier) -> (Expression) -> T_SemDef
sem_SemDef_AroundDef arg_ident_ arg_rhs_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule748 arg_ident_ arg_rhs_
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule749 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule750 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule751 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule752 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule753 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule754 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule755 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule756 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule757 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule748 = \ ident_ rhs_ ->
[ (ident_, rhs_) ]
rule749 = \ (_ :: ()) ->
[]
rule750 = \ (_ :: ()) ->
[]
rule751 = \ (_ :: ()) ->
Seq.empty
rule752 = \ (_ :: ()) ->
[]
rule753 = \ (_ :: ()) ->
Set.empty
rule754 = \ (_ :: ()) ->
[]
rule755 = \ (_ :: ()) ->
[]
rule756 = \ (_ :: ()) ->
[]
rule757 = \ (_ :: ()) ->
[]
sem_SemDef_MergeDef :: (Identifier) -> (Identifier) -> ([Identifier]) -> (Expression) -> T_SemDef
sem_SemDef_MergeDef arg_target_ arg_nt_ arg_sources_ arg_rhs_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_lhsOerrors :: Seq Error
_lhsOerrors = rule758 _lhsIoptions arg_rhs_
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule759 arg_nt_ arg_rhs_ arg_sources_ arg_target_
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule760 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule761 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule762 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule763 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule764 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule765 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule766 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule767 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule758 = \ ((_lhsIoptions) :: Options) rhs_ ->
if checkParseRhs _lhsIoptions
then Seq.fromList $ checkRhs rhs_
else Seq.empty
rule759 = \ nt_ rhs_ sources_ target_ ->
[ (target_, nt_, sources_, rhs_) ]
rule760 = \ (_ :: ()) ->
[]
rule761 = \ (_ :: ()) ->
[]
rule762 = \ (_ :: ()) ->
[]
rule763 = \ (_ :: ()) ->
Set.empty
rule764 = \ (_ :: ()) ->
[]
rule765 = \ (_ :: ()) ->
[]
rule766 = \ (_ :: ()) ->
[]
rule767 = \ (_ :: ()) ->
[]
sem_SemDef_SemPragma :: ([NontermIdent]) -> T_SemDef
sem_SemDef_SemPragma arg_names_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule768 arg_names_
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule769 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule770 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule771 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule772 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule773 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule774 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule775 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule776 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule777 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule768 = \ names_ ->
names_
rule769 = \ (_ :: ()) ->
[]
rule770 = \ (_ :: ()) ->
[]
rule771 = \ (_ :: ()) ->
[]
rule772 = \ (_ :: ()) ->
Seq.empty
rule773 = \ (_ :: ()) ->
[]
rule774 = \ (_ :: ()) ->
Set.empty
rule775 = \ (_ :: ()) ->
[]
rule776 = \ (_ :: ()) ->
[]
rule777 = \ (_ :: ()) ->
[]
sem_SemDef_AttrOrderBefore :: ([Occurrence]) -> ([Occurrence]) -> T_SemDef
sem_SemDef_AttrOrderBefore arg_before_ arg_after_ = T_SemDef (return st44) where
st44 = let
v43 :: T_SemDef_v43
v43 = \ (T_SemDef_vIn43 _lhsIoptions) -> ( let
_dependency = rule778 arg_after_ arg_before_
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule779 _dependency
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule780 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule781 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule782 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule783 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule784 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule785 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule786 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule787 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule788 ()
__result_ = T_SemDef_vOut43 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDef_s44 v43
rule778 = \ after_ before_ ->
[ Dependency b a | b <- before_, a <- after_ ]
rule779 = \ _dependency ->
Set.fromList _dependency
rule780 = \ (_ :: ()) ->
[]
rule781 = \ (_ :: ()) ->
[]
rule782 = \ (_ :: ()) ->
[]
rule783 = \ (_ :: ()) ->
Seq.empty
rule784 = \ (_ :: ()) ->
[]
rule785 = \ (_ :: ()) ->
[]
rule786 = \ (_ :: ()) ->
[]
rule787 = \ (_ :: ()) ->
[]
rule788 = \ (_ :: ()) ->
[]
data Inh_SemDefs = Inh_SemDefs { options_Inh_SemDefs :: (Options) }
data Syn_SemDefs = Syn_SemDefs { aroundInfos_Syn_SemDefs :: ([AroundInfo]), augmentInfos_Syn_SemDefs :: ([AugmentInfo]), definedInsts_Syn_SemDefs :: ([Identifier]), errors_Syn_SemDefs :: (Seq Error), mergeInfos_Syn_SemDefs :: ([MergeInfo]), orderDepsCollect_Syn_SemDefs :: (Set Dependency), pragmaNamesCollect_Syn_SemDefs :: ([Identifier]), ruleInfos_Syn_SemDefs :: ([RuleInfo]), sigInfos_Syn_SemDefs :: ([SigInfo]), uniqueInfos_Syn_SemDefs :: ([UniqueInfo]) }
wrap_SemDefs :: T_SemDefs -> Inh_SemDefs -> (Syn_SemDefs )
wrap_SemDefs (T_SemDefs act) (Inh_SemDefs _lhsIoptions) =
Control.Monad.Identity.runIdentity (
do sem <- act
let arg = T_SemDefs_vIn46 _lhsIoptions
(T_SemDefs_vOut46 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos) <- return (inv_SemDefs_s47 sem arg)
return (Syn_SemDefs _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos)
)
sem_SemDefs :: SemDefs -> T_SemDefs
sem_SemDefs list = Prelude.foldr sem_SemDefs_Cons sem_SemDefs_Nil (Prelude.map sem_SemDef list)
newtype T_SemDefs = T_SemDefs {
attach_T_SemDefs :: Identity (T_SemDefs_s47 )
}
newtype T_SemDefs_s47 = C_SemDefs_s47 {
inv_SemDefs_s47 :: (T_SemDefs_v46 )
}
data T_SemDefs_s48 = C_SemDefs_s48
type T_SemDefs_v46 = (T_SemDefs_vIn46 ) -> (T_SemDefs_vOut46 )
data T_SemDefs_vIn46 = T_SemDefs_vIn46 (Options)
data T_SemDefs_vOut46 = T_SemDefs_vOut46 ([AroundInfo]) ([AugmentInfo]) ([Identifier]) (Seq Error) ([MergeInfo]) (Set Dependency) ([Identifier]) ([RuleInfo]) ([SigInfo]) ([UniqueInfo])
sem_SemDefs_Cons :: T_SemDef -> T_SemDefs -> T_SemDefs
sem_SemDefs_Cons arg_hd_ arg_tl_ = T_SemDefs (return st47) where
st47 = let
v46 :: T_SemDefs_v46
v46 = \ (T_SemDefs_vIn46 _lhsIoptions) -> ( let
_hdX44 = Control.Monad.Identity.runIdentity (attach_T_SemDef (arg_hd_))
_tlX47 = Control.Monad.Identity.runIdentity (attach_T_SemDefs (arg_tl_))
(T_SemDef_vOut43 _hdIaroundInfos _hdIaugmentInfos _hdIdefinedInsts _hdIerrors _hdImergeInfos _hdIorderDepsCollect _hdIpragmaNamesCollect _hdIruleInfos _hdIsigInfos _hdIuniqueInfos) = inv_SemDef_s44 _hdX44 (T_SemDef_vIn43 _hdOoptions)
(T_SemDefs_vOut46 _tlIaroundInfos _tlIaugmentInfos _tlIdefinedInsts _tlIerrors _tlImergeInfos _tlIorderDepsCollect _tlIpragmaNamesCollect _tlIruleInfos _tlIsigInfos _tlIuniqueInfos) = inv_SemDefs_s47 _tlX47 (T_SemDefs_vIn46 _tlOoptions)
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule789 _hdIaroundInfos _tlIaroundInfos
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule790 _hdIaugmentInfos _tlIaugmentInfos
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule791 _hdIdefinedInsts _tlIdefinedInsts
_lhsOerrors :: Seq Error
_lhsOerrors = rule792 _hdIerrors _tlIerrors
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule793 _hdImergeInfos _tlImergeInfos
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule794 _hdIorderDepsCollect _tlIorderDepsCollect
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule795 _hdIpragmaNamesCollect _tlIpragmaNamesCollect
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule796 _hdIruleInfos _tlIruleInfos
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule797 _hdIsigInfos _tlIsigInfos
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule798 _hdIuniqueInfos _tlIuniqueInfos
_hdOoptions = rule799 _lhsIoptions
_tlOoptions = rule800 _lhsIoptions
__result_ = T_SemDefs_vOut46 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDefs_s47 v46
rule789 = \ ((_hdIaroundInfos) :: [AroundInfo]) ((_tlIaroundInfos) :: [AroundInfo]) ->
_hdIaroundInfos ++ _tlIaroundInfos
rule790 = \ ((_hdIaugmentInfos) :: [AugmentInfo]) ((_tlIaugmentInfos) :: [AugmentInfo]) ->
_hdIaugmentInfos ++ _tlIaugmentInfos
rule791 = \ ((_hdIdefinedInsts) :: [Identifier]) ((_tlIdefinedInsts) :: [Identifier]) ->
_hdIdefinedInsts ++ _tlIdefinedInsts
rule792 = \ ((_hdIerrors) :: Seq Error) ((_tlIerrors) :: Seq Error) ->
_hdIerrors Seq.>< _tlIerrors
rule793 = \ ((_hdImergeInfos) :: [MergeInfo]) ((_tlImergeInfos) :: [MergeInfo]) ->
_hdImergeInfos ++ _tlImergeInfos
rule794 = \ ((_hdIorderDepsCollect) :: Set Dependency) ((_tlIorderDepsCollect) :: Set Dependency) ->
_hdIorderDepsCollect `Set.union` _tlIorderDepsCollect
rule795 = \ ((_hdIpragmaNamesCollect) :: [Identifier]) ((_tlIpragmaNamesCollect) :: [Identifier]) ->
_hdIpragmaNamesCollect ++ _tlIpragmaNamesCollect
rule796 = \ ((_hdIruleInfos) :: [RuleInfo]) ((_tlIruleInfos) :: [RuleInfo]) ->
_hdIruleInfos ++ _tlIruleInfos
rule797 = \ ((_hdIsigInfos) :: [SigInfo]) ((_tlIsigInfos) :: [SigInfo]) ->
_hdIsigInfos ++ _tlIsigInfos
rule798 = \ ((_hdIuniqueInfos) :: [UniqueInfo]) ((_tlIuniqueInfos) :: [UniqueInfo]) ->
_hdIuniqueInfos ++ _tlIuniqueInfos
rule799 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
rule800 = \ ((_lhsIoptions) :: Options) ->
_lhsIoptions
sem_SemDefs_Nil :: T_SemDefs
sem_SemDefs_Nil = T_SemDefs (return st47) where
st47 = let
v46 :: T_SemDefs_v46
v46 = \ (T_SemDefs_vIn46 _lhsIoptions) -> ( let
_lhsOaroundInfos :: [AroundInfo]
_lhsOaroundInfos = rule801 ()
_lhsOaugmentInfos :: [AugmentInfo]
_lhsOaugmentInfos = rule802 ()
_lhsOdefinedInsts :: [Identifier]
_lhsOdefinedInsts = rule803 ()
_lhsOerrors :: Seq Error
_lhsOerrors = rule804 ()
_lhsOmergeInfos :: [MergeInfo]
_lhsOmergeInfos = rule805 ()
_lhsOorderDepsCollect :: Set Dependency
_lhsOorderDepsCollect = rule806 ()
_lhsOpragmaNamesCollect :: [Identifier]
_lhsOpragmaNamesCollect = rule807 ()
_lhsOruleInfos :: [RuleInfo]
_lhsOruleInfos = rule808 ()
_lhsOsigInfos :: [SigInfo]
_lhsOsigInfos = rule809 ()
_lhsOuniqueInfos :: [UniqueInfo]
_lhsOuniqueInfos = rule810 ()
__result_ = T_SemDefs_vOut46 _lhsOaroundInfos _lhsOaugmentInfos _lhsOdefinedInsts _lhsOerrors _lhsOmergeInfos _lhsOorderDepsCollect _lhsOpragmaNamesCollect _lhsOruleInfos _lhsOsigInfos _lhsOuniqueInfos
in __result_ )
in C_SemDefs_s47 v46
rule801 = \ (_ :: ()) ->
[]
rule802 = \ (_ :: ()) ->
[]
rule803 = \ (_ :: ()) ->
[]
rule804 = \ (_ :: ()) ->
Seq.empty
rule805 = \ (_ :: ()) ->
[]
rule806 = \ (_ :: ()) ->
Set.empty
rule807 = \ (_ :: ()) ->
[]
rule808 = \ (_ :: ()) ->
[]
rule809 = \ (_ :: ()) ->
[]
rule810 = \ (_ :: ()) ->
[]