2 % (c) The AQUA Project, Glasgow University, 1996-1998
4 \section[RnHsSyn]{Specialisations of the @HsSyn@ syntax for the renamer}
9 charTyCon_name, listTyCon_name, parrTyCon_name, tupleTyCon_name,
10 extractHsTyVars, extractHsTyNames, extractHsTyNames_s,
11 extractFunDepNames, extractHsCtxtTyNames, extractHsPredTyNames,
14 hsSigsFVs, hsSigFVs, conDeclFVs, bangTyFVs,
19 #include "HsVersions.h"
22 import Class ( FunDep )
23 import TysWiredIn ( tupleTyCon, listTyCon, parrTyCon, charTyCon )
24 import Name ( Name, getName, isTyVarName )
26 import BasicTypes ( Boxity )
27 import SrcLoc ( Located(..), unLoc )
30 %************************************************************************
32 \subsection{Free variables}
34 %************************************************************************
36 These free-variable finders returns tycons and classes too.
39 charTyCon_name, listTyCon_name, parrTyCon_name :: Name
40 charTyCon_name = getName charTyCon
41 listTyCon_name = getName listTyCon
42 parrTyCon_name = getName parrTyCon
44 tupleTyCon_name :: Boxity -> Int -> Name
45 tupleTyCon_name boxity n = getName (tupleTyCon boxity n)
47 extractHsTyVars :: LHsType Name -> NameSet
48 extractHsTyVars x = filterNameSet isTyVarName (extractHsTyNames x)
50 extractFunDepNames :: FunDep Name -> NameSet
51 extractFunDepNames (ns1, ns2) = mkNameSet ns1 `unionNameSets` mkNameSet ns2
53 extractHsTyNames :: LHsType Name -> NameSet
57 getl (L _ ty) = get ty
59 get (HsAppTy ty1 ty2) = getl ty1 `unionNameSets` getl ty2
60 get (HsListTy ty) = unitNameSet listTyCon_name `unionNameSets` getl ty
61 get (HsPArrTy ty) = unitNameSet parrTyCon_name `unionNameSets` getl ty
62 get (HsTupleTy con tys) = extractHsTyNames_s tys
63 get (HsFunTy ty1 ty2) = getl ty1 `unionNameSets` getl ty2
64 get (HsPredTy p) = extractHsPredTyNames p
65 get (HsOpTy ty1 op ty2) = getl ty1 `unionNameSets` getl ty2 `unionNameSets` unitNameSet (unLoc op)
66 get (HsParTy ty) = getl ty
67 get (HsBangTy _ ty) = getl ty
68 get (HsNumTy n) = emptyNameSet
69 get (HsTyVar tv) = unitNameSet tv
70 get (HsSpliceTy _) = emptyNameSet -- Type splices mention no type variables
71 get (HsKindSig ty k) = getl ty
73 ctxt ty) = (extractHsCtxtTyNames ctxt
74 `unionNameSets` getl ty)
76 mkNameSet (hsLTyVarNames tvs)
77 get (HsDocTy ty _) = getl ty
79 extractHsTyNames_s :: [LHsType Name] -> NameSet
80 extractHsTyNames_s tys = foldr (unionNameSets . extractHsTyNames) emptyNameSet tys
82 extractHsCtxtTyNames :: LHsContext Name -> NameSet
83 extractHsCtxtTyNames (L _ ctxt)
84 = foldr (unionNameSets . extractHsPredTyNames . unLoc) emptyNameSet ctxt
86 -- You don't import or export implicit parameters,
87 -- so don't mention the IP names
88 extractHsPredTyNames (HsClassP cls tys)
89 = unitNameSet cls `unionNameSets` extractHsTyNames_s tys
90 extractHsPredTyNames (HsEqualP ty1 ty2)
91 = extractHsTyNames ty1 `unionNameSets` extractHsTyNames ty2
92 extractHsPredTyNames (HsIParam n ty)
97 %************************************************************************
99 \subsection{Free variables of declarations}
101 %************************************************************************
103 Return the Names that must be in scope if we are to use this declaration.
104 In all cases this is set up for interface-file declarations:
105 - for class decls we ignore the bindings
106 - for instance decls likewise, plus the pragmas
107 - for rule decls, we ignore HsRules
108 - for data decls, we ignore derivings
110 *** See "THE NAMING STORY" in HsDecls ****
114 hsSigsFVs :: [LSig Name] -> FreeVars
115 hsSigsFVs sigs = plusFVs (map (hsSigFVs.unLoc) sigs)
117 hsSigFVs (TypeSig v ty) = extractHsTyNames ty
118 hsSigFVs (SpecInstSig ty) = extractHsTyNames ty
119 hsSigFVs (SpecSig v ty inl) = extractHsTyNames ty
120 hsSigFVs other = emptyFVs
123 conDeclFVs (L _ (ConDecl { con_qvars = tyvars, con_cxt = context,
124 con_details = details, con_res = res_ty}))
125 = delFVs (map hsLTyVarName tyvars) $
126 extractHsCtxtTyNames context `plusFV`
127 conDetailsFVs details `plusFV`
130 conResTyFVs ResTyH98 = emptyFVs
131 conResTyFVs (ResTyGADT ty) = extractHsTyNames ty
133 conDetailsFVs (PrefixCon btys) = plusFVs (map bangTyFVs btys)
134 conDetailsFVs (InfixCon bty1 bty2) = bangTyFVs bty1 `plusFV` bangTyFVs bty2
135 conDetailsFVs (RecCon flds) = plusFVs [bangTyFVs bty | (HsRecField _ bty _) <- flds]
137 bangTyFVs bty = extractHsTyNames (getBangType bty)
141 %************************************************************************
143 \subsection{A few functions on generic defintions
145 %************************************************************************
147 These functions on generics are defined over Matches Name, which is
148 why they are here and not in HsMatches.
151 maybeGenericMatch :: LMatch Name -> Maybe (HsType Name, LMatch Name)
152 -- Tells whether a Match is for a generic definition
153 -- and extract the type from a generic match and put it at the front
155 maybeGenericMatch (L loc (Match (L _ (TypePat (L _ ty)) : pats) sig_ty grhss))
156 = Just (ty, L loc (Match pats sig_ty grhss))
158 maybeGenericMatch other_match = Nothing