%
-% (c) The GRASP/AQUA Project, Glasgow University, 1992-1996
+% (c) The GRASP/AQUA Project, Glasgow University, 1992-1998
%
\section[RnSource]{Main pass of renamer}
\begin{code}
-#include "HsVersions.h"
-
-module RnSource ( rnDecl, rnHsType ) where
+module RnSource (
+ rnSrcDecls, addTcgDUs,
+ rnTyClDecls, checkModDeprec,
+ rnBindGroups, rnBindGroupsAndThen
+ ) where
-IMP_Ubiq()
-IMPORT_DELOOPER(RnLoop) -- *check* the RnPass/RnExpr/RnBinds loop-breaking
+#include "HsVersions.h"
import HsSyn
-import HsDecls ( HsIdInfo(..) )
-import HsPragmas
-import HsTypes ( getTyVarName )
-import RdrHsSyn
+import RdrName ( RdrName, isRdrDataCon, rdrNameOcc, elemLocalRdrEnv )
+import RdrHsSyn ( extractGenericPatTyVars )
import RnHsSyn
-import HsCore
-
-import RnBinds ( rnTopBinds, rnMethodBinds )
-import RnEnv ( bindTyVarsRn, lookupRn, lookupOccRn, lookupImplicitOccRn, bindLocalsRn,
- lookupOptionalOccRn, newDfunName,
- listType_RDR, tupleType_RDR )
-import RnMonad
-
-import Name ( Name, isLocallyDefined, isTvOcc, pprNonSym,
- Provenance,
- SYN_IE(NameSet), unionNameSets, emptyNameSet, mkNameSet, unitNameSet,
- elemNameSet
+import RnExpr ( rnLExpr )
+import RnTypes ( rnLHsType, rnHsSigType, rnHsTypeFVs, rnContext )
+import RnBinds ( rnTopBinds, rnBinds, rnMethodBinds,
+ rnBindsAndThen, renameSigs, checkSigs )
+import RnEnv ( lookupTopBndrRn, lookupTopFixSigNames,
+ lookupLocatedTopBndrRn, lookupLocatedOccRn,
+ lookupOccRn, newLocalsRn,
+ bindLocatedLocalsFV, bindPatSigTyVarsFV,
+ bindTyVarsRn, extendTyVarEnvFVRn,
+ bindLocalNames, newIPNameRn,
+ checkDupNames, mapFvRn,
+ unknownNameErr
)
-import ErrUtils ( addErrLoc, addShortErrLocLine, addShortWarnLocLine )
-import FiniteMap ( emptyFM, lookupFM, addListToFM_C )
-import Id ( GenId{-instance NamedThing-} )
-import IdInfo ( IdInfo, StrictnessInfo(..), FBTypeInfo, DemandInfo, ArgUsageInfo )
-import SpecEnv ( SpecEnv )
-import CoreUnfold ( Unfolding(..), SimpleUnfolding )
-import MagicUFs ( MagicUnfoldingFun )
-import PrelInfo ( derivingOccurrences, evalClass_RDR, numClass_RDR )
-import ListSetOps ( unionLists, minusList )
-import Maybes ( maybeToBool, catMaybes )
-import Bag ( emptyBag, unitBag, consBag, unionManyBags, unionBags, listToBag, bagToList )
-import Outputable ( Outputable(..){-instances-} )
---import PprStyle -- ToDo:rm
-import Pretty
-import SrcLoc ( SrcLoc )
--- import TyCon ( TyCon{-instance NamedThing-} )
-import Unique ( Unique )
-import UniqSet ( SYN_IE(UniqSet) )
-import UniqFM ( UniqFM, lookupUFM )
-import Util ( isIn, isn'tIn, thenCmp, removeDups, cmpPString,
- panic, assertPanic{- , pprTrace ToDo:rm-} )
+import TcRnMonad
+
+import BasicTypes ( TopLevelFlag(..) )
+import HscTypes ( FixityEnv, FixItem(..),
+ Deprecations, Deprecs(..), DeprecTxt, plusDeprecs )
+import Class ( FunDep )
+import Name ( Name )
+import NameSet
+import NameEnv
+import Outputable
+import SrcLoc ( Located(..), unLoc, getLoc )
+import CmdLineOpts ( DynFlag(..) )
+ -- Warn of unused for-all'd tyvars
+import Maybes ( seqMaybe )
+import Maybe ( catMaybes, isNothing )
\end{code}
-rnDecl `renames' declarations.
+@rnSourceDecl@ `renames' declarations.
It simultaneously performs dependency analysis and precedence parsing.
It also does the following error checks:
\begin{enumerate}
\item
Checks that tyvars are used properly. This includes checking
for undefined tyvars, and tyvars in contexts that are ambiguous.
+(Some of this checking has now been moved to module @TcMonoType@,
+since we don't have functional dependency information at this point.)
\item
Checks that all variable occurences are defined.
\item
-Checks the (..) etc constraints in the export list.
+Checks the @(..)@ etc constraints in the export list.
\end{enumerate}
-%*********************************************************
-%* *
-\subsection{Value declarations}
-%* *
-%*********************************************************
-
\begin{code}
-rnDecl :: RdrNameHsDecl -> RnMS s RenamedHsDecl
+rnSrcDecls :: HsGroup RdrName -> RnM (TcGblEnv, HsGroup Name)
+
+rnSrcDecls (HsGroup { hs_valds = [HsBindGroup binds sigs _],
+ hs_tyclds = tycl_decls,
+ hs_instds = inst_decls,
+ hs_fixds = fix_decls,
+ hs_depds = deprec_decls,
+ hs_fords = foreign_decls,
+ hs_defds = default_decls,
+ hs_ruleds = rule_decls })
+
+ = do { -- Deal with deprecations (returns only the extra deprecations)
+ deprecs <- rnSrcDeprecDecls deprec_decls ;
+ updGblEnv (\gbl -> gbl { tcg_deprecs = tcg_deprecs gbl `plusDeprecs` deprecs })
+ $ do {
+
+ -- Deal with top-level fixity decls
+ -- (returns the total new fixity env)
+ fix_env <- rnSrcFixityDecls fix_decls ;
+ updGblEnv (\gbl -> gbl { tcg_fix_env = fix_env })
+ $ do {
+
+ -- Rename other declarations
+ traceRn (text "Start rnmono") ;
+ (rn_val_decls, bind_dus) <- rnTopBinds binds sigs ;
+ traceRn (text "finish rnmono" <+> ppr rn_val_decls) ;
+
+ -- You might think that we could build proper def/use information
+ -- for type and class declarations, but they can be involved
+ -- in mutual recursion across modules, and we only do the SCC
+ -- analysis for them in the type checker.
+ -- So we content ourselves with gathering uses only; that
+ -- means we'll only report a declaration as unused if it isn't
+ -- mentioned at all. Ah well.
+ (rn_tycl_decls, src_fvs1)
+ <- mapFvRn (wrapLocFstM rnTyClDecl) tycl_decls ;
+ (rn_inst_decls, src_fvs2)
+ <- mapFvRn (wrapLocFstM rnSrcInstDecl) inst_decls ;
+ (rn_rule_decls, src_fvs3)
+ <- mapFvRn (wrapLocFstM rnHsRuleDecl) rule_decls ;
+ (rn_foreign_decls, src_fvs4)
+ <- mapFvRn (wrapLocFstM rnHsForeignDecl) foreign_decls ;
+ (rn_default_decls, src_fvs5)
+ <- mapFvRn (wrapLocFstM rnDefaultDecl) default_decls ;
+
+ let {
+ rn_group = HsGroup { hs_valds = rn_val_decls,
+ hs_tyclds = rn_tycl_decls,
+ hs_instds = rn_inst_decls,
+ hs_fixds = [],
+ hs_depds = [],
+ hs_fords = rn_foreign_decls,
+ hs_defds = rn_default_decls,
+ hs_ruleds = rn_rule_decls } ;
+
+ other_fvs = plusFVs [src_fvs1, src_fvs2, src_fvs3,
+ src_fvs4, src_fvs5] ;
+ src_dus = bind_dus `plusDU` usesOnly other_fvs
+ } ;
+
+ traceRn (text "finish rnSrc" <+> ppr rn_group) ;
+ tcg_env <- getGblEnv ;
+ return (tcg_env `addTcgDUs` src_dus, rn_group)
+ }}}
+
+rnTyClDecls :: [LTyClDecl RdrName] -> RnM [LTyClDecl Name]
+rnTyClDecls tycl_decls = do
+ (decls', fvs) <- mapFvRn (wrapLocFstM rnTyClDecl) tycl_decls
+ return decls'
+
+addTcgDUs :: TcGblEnv -> DefUses -> TcGblEnv
+addTcgDUs tcg_env dus = tcg_env { tcg_dus = tcg_dus tcg_env `plusDU` dus }
+\end{code}
-rnDecl (ValD binds) = rnTopBinds binds `thenRn` \ new_binds ->
- returnRn (ValD new_binds)
+%*********************************************************
+%* *
+ Source-code fixity declarations
+%* *
+%*********************************************************
-rnDecl (SigD (IfaceSig name ty id_infos loc))
- = pushSrcLocRn loc $
- lookupRn name `thenRn` \ name' ->
- rnHsType ty `thenRn` \ ty' ->
- mapRn rnIdInfo id_infos `thenRn` \ id_infos' ->
- returnRn (SigD (IfaceSig name' ty' id_infos' loc))
+\begin{code}
+rnSrcFixityDecls :: [LFixitySig RdrName] -> RnM FixityEnv
+rnSrcFixityDecls fix_decls
+ = getGblEnv `thenM` \ gbl_env ->
+ foldlM rnFixityDecl (tcg_fix_env gbl_env)
+ fix_decls `thenM` \ fix_env ->
+ traceRn (text "fixity env" <+> pprFixEnv fix_env) `thenM_`
+ returnM fix_env
+
+rnFixityDecl :: FixityEnv -> LFixitySig RdrName -> RnM FixityEnv
+rnFixityDecl fix_env (L loc (FixitySig rdr_name fixity))
+ = addSrcSpan loc $
+ -- GHC extension: look up both the tycon and data con
+ -- for con-like things
+ -- If neither are in scope, report an error; otherwise
+ -- add both to the fixity env
+ addLocM lookupTopFixSigNames rdr_name `thenM` \ names ->
+ if null names then
+ addLocErr rdr_name unknownNameErr `thenM_`
+ returnM fix_env
+ else
+ foldlM add fix_env names
+ where
+ add fix_env name
+ = case lookupNameEnv fix_env name of
+ Just (FixItem _ _ loc')
+ -> addLocErr rdr_name (dupFixityDecl loc') `thenM_`
+ returnM fix_env
+ Nothing -> returnM (extendNameEnv fix_env name fix_item)
+ where
+ fix_item = FixItem (rdrNameOcc (unLoc rdr_name)) fixity
+ (getLoc rdr_name)
+
+pprFixEnv :: FixityEnv -> SDoc
+pprFixEnv env
+ = pprWithCommas (\ (FixItem n f _) -> ppr f <+> ppr n)
+ (nameEnvElts env)
+
+dupFixityDecl loc rdr_name
+ = vcat [ptext SLIT("Multiple fixity declarations for") <+> quotes (ppr rdr_name),
+ ptext SLIT("also at ") <+> ppr loc
+ ]
\end{code}
+
%*********************************************************
-%* *
-\subsection{Type declarations}
-%* *
+%* *
+ Source-code deprecations declarations
+%* *
%*********************************************************
-@rnTyDecl@ uses the `global name function' to create a new type
-declaration in which local names have been replaced by their original
-names, reporting any unknown names.
-
-Renaming type variables is a pain. Because they now contain uniques,
-it is necessary to pass in an association list which maps a parsed
-tyvar to its Name representation. In some cases (type signatures of
-values), it is even necessary to go over the type first in order to
-get the set of tyvars used by it, make an assoc list, and then go over
-it again to rename the tyvars! However, we can also do some scoping
-checks at the same time.
+For deprecations, all we do is check that the names are in scope.
+It's only imported deprecations, dealt with in RnIfaces, that we
+gather them together.
\begin{code}
-rnDecl (TyD (TyData context tycon tyvars condecls derivings pragmas src_loc))
- = pushSrcLocRn src_loc $
- lookupRn tycon `thenRn` \ tycon' ->
- bindTyVarsRn "data declaration" tyvars $ \ tyvars' ->
- rnContext context `thenRn` \ context' ->
- mapRn rnConDecl condecls `thenRn` \ condecls' ->
- rnDerivs derivings `thenRn` \ derivings' ->
- ASSERT(isNoDataPragmas pragmas)
- returnRn (TyD (TyData context' tycon' tyvars' condecls' derivings' noDataPragmas src_loc))
-
-rnDecl (TyD (TyNew context tycon tyvars condecl derivings pragmas src_loc))
- = pushSrcLocRn src_loc $
- lookupRn tycon `thenRn` \ tycon' ->
- bindTyVarsRn "newtype declaration" tyvars $ \ tyvars' ->
- rnContext context `thenRn` \ context' ->
- rnConDecl condecl `thenRn` \ condecl' ->
- rnDerivs derivings `thenRn` \ derivings' ->
- ASSERT(isNoDataPragmas pragmas)
- returnRn (TyD (TyNew context' tycon' tyvars' condecl' derivings' noDataPragmas src_loc))
-
-rnDecl (TyD (TySynonym name tyvars ty src_loc))
- = pushSrcLocRn src_loc $
- lookupRn name `thenRn` \ name' ->
- bindTyVarsRn "type declaration" tyvars $ \ tyvars' ->
- rnHsType ty `thenRn` \ ty' ->
- returnRn (TyD (TySynonym name' tyvars' ty' src_loc))
+rnSrcDeprecDecls :: [LDeprecDecl RdrName] -> RnM Deprecations
+rnSrcDeprecDecls []
+ = returnM NoDeprecs
+
+rnSrcDeprecDecls decls
+ = mappM (addLocM rn_deprec) decls `thenM` \ pairs ->
+ returnM (DeprecSome (mkNameEnv (catMaybes pairs)))
+ where
+ rn_deprec (Deprecation rdr_name txt)
+ = lookupTopBndrRn rdr_name `thenM` \ name ->
+ returnM (Just (name, (rdrNameOcc rdr_name, txt)))
+
+checkModDeprec :: Maybe DeprecTxt -> Deprecations
+-- Check for a module deprecation; done once at top level
+checkModDeprec Nothing = NoDeprecs
+checkModDeprec (Just txt) = DeprecAll txt
\end{code}
%*********************************************************
%* *
-\subsection{Class declarations}
+\subsection{Source code declarations}
%* *
%*********************************************************
-@rnClassDecl@ uses the `global name function' to create a new
-class declaration in which local names have been replaced by their
-original names, reporting any unknown names.
-
\begin{code}
-rnDecl (ClD (ClassDecl context cname tyvar sigs mbinds pragmas src_loc))
- = pushSrcLocRn src_loc $
- bindTyVarsRn "class declaration" [tyvar] $ \ [tyvar'] ->
- rnContext context `thenRn` \ context' ->
- lookupRn cname `thenRn` \ cname' ->
- mapRn (rn_op cname' (getTyVarName tyvar')) sigs `thenRn` \ sigs' ->
- rnMethodBinds mbinds `thenRn` \ mbinds' ->
- ASSERT(isNoClassPragmas pragmas)
- returnRn (ClD (ClassDecl context' cname' tyvar' sigs' mbinds' NoClassPragmas src_loc))
+rnDefaultDecl (DefaultDecl tys)
+ = mapFvRn (rnHsTypeFVs doc_str) tys `thenM` \ (tys', fvs) ->
+ returnM (DefaultDecl tys', fvs)
where
- rn_op clas clas_tyvar sig@(ClassOpSig op ty pragmas locn)
- = pushSrcLocRn locn $
- lookupRn op `thenRn` \ op_name ->
- rnHsType ty `thenRn` \ new_ty ->
- let
- (ctxt, op_ty) = case new_ty of
- HsForAllTy tvs ctxt op_ty -> (ctxt, op_ty)
- other -> ([], new_ty)
- ctxt_fvs = extractCtxtTyNames ctxt
- op_ty_fvs = extractHsTyNames op_ty -- Includes tycons/classes but we
- -- don't care about that
- in
- -- check that class tyvar appears in op_ty
- checkRn (clas_tyvar `elemNameSet` op_ty_fvs)
- (classTyVarNotInOpTyErr clas_tyvar sig)
- `thenRn_`
-
- -- check that class tyvar *doesn't* appear in the sig's context
- checkRn (not (clas_tyvar `elemNameSet` ctxt_fvs))
- (classTyVarInOpCtxtErr clas_tyvar sig)
- `thenRn_`
-
- ASSERT(isNoClassOpPragmas pragmas)
- returnRn (ClassOpSig op_name new_ty noClassOpPragmas locn)
+ doc_str = text "In a `default' declaration"
\end{code}
-
%*********************************************************
%* *
-\subsection{Instance declarations}
+ Bindings
%* *
%*********************************************************
+These chaps are here, rather than in TcBinds, so that there
+is just one hi-boot file (for RnSource). rnSrcDecls is part
+of the loop too, and it must be defined in this module.
+
\begin{code}
-rnDecl (InstD (InstDecl inst_ty mbinds uprags maybe_dfun_name src_loc))
- = pushSrcLocRn src_loc $
- rnHsType inst_ty `thenRn` \ inst_ty' ->
- rnMethodBinds mbinds `thenRn` \ mbinds' ->
- mapRn rn_uprag uprags `thenRn` \ new_uprags ->
- rn_dfun maybe_dfun_name `thenRn` \ dfun_name' ->
-
- returnRn (InstD (InstDecl inst_ty' mbinds' new_uprags dfun_name' src_loc))
- where
- rn_dfun Nothing = newDfunName src_loc `thenRn` \ n' ->
- returnRn (Just n')
- rn_dfun (Just n) = lookupOptionalOccRn n `thenRn` \ n' ->
- returnRn (Just n')
-
- rn_uprag (SpecSig op ty using locn)
- = pushSrcLocRn src_loc $
- lookupRn op `thenRn` \ op_name ->
- rnHsType ty `thenRn` \ new_ty ->
- rn_using using `thenRn` \ new_using ->
- returnRn (SpecSig op_name new_ty new_using locn)
-
- rn_uprag (InlineSig op locn)
- = pushSrcLocRn locn $
- lookupRn op `thenRn` \ op_name ->
- returnRn (InlineSig op_name locn)
-
- rn_uprag (DeforestSig op locn)
- = pushSrcLocRn locn $
- lookupRn op `thenRn` \ op_name ->
- returnRn (DeforestSig op_name locn)
-
- rn_uprag (MagicUnfoldingSig op str locn)
- = pushSrcLocRn locn $
- lookupRn op `thenRn` \ op_name ->
- returnRn (MagicUnfoldingSig op_name str locn)
-
- rn_using Nothing = returnRn Nothing
- rn_using (Just v) = lookupOccRn v `thenRn` \ new_v ->
- returnRn (Just new_v)
+rnBindGroups :: [HsBindGroup RdrName] -> RnM ([HsBindGroup Name], DefUses)
+-- This version assumes that the binders are already in scope
+-- It's used only in 'mdo'
+rnBindGropus []
+ = returnM ([], emptyDUs)
+rnBindGroups [HsBindGroup bind sigs _]
+ = rnBinds NotTopLevel bind sigs
+rnBindGroups b@[HsIPBinds bind]
+ = do addErr (badIpBinds b)
+ returnM ([], emptyDUs)
+rnBindGroups _
+ = panic "rnBindGroups"
+
+rnBindGroupsAndThen
+ :: [HsBindGroup RdrName]
+ -> ([HsBindGroup Name] -> RnM (result, FreeVars))
+ -> RnM (result, FreeVars)
+-- This version (a) assumes that the binding vars are not already in scope
+-- (b) removes the binders from the free vars of the thing inside
+-- The parser doesn't produce ThenBinds
+rnBindGroupsAndThen [] thing_inside
+ = thing_inside []
+rnBindGroupsAndThen [HsBindGroup bind sigs _] thing_inside
+ = rnBindsAndThen bind sigs $ \ groups -> thing_inside groups
+rnBindGroupsAndThen [HsIPBinds binds] thing_inside
+ = rnIPBinds binds `thenM` \ (binds',fv_binds) ->
+ thing_inside [HsIPBinds binds'] `thenM` \ (thing, fvs_thing) ->
+ returnM (thing, fvs_thing `plusFV` fv_binds)
+
+rnIPBinds [] = returnM ([], emptyFVs)
+rnIPBinds (bind : binds)
+ = wrapLocFstM rnIPBind bind `thenM` \ (bind', fvBind) ->
+ rnIPBinds binds `thenM` \ (binds',fvBinds) ->
+ returnM (bind' : binds', fvBind `plusFV` fvBinds)
+
+rnIPBind (IPBind n expr)
+ = newIPNameRn n `thenM` \ name ->
+ rnLExpr expr `thenM` \ (expr',fvExpr) ->
+ return (IPBind name expr', fvExpr)
+
+badIpBinds binds
+ = hang (ptext SLIT("Implicit-parameter bindings illegal in 'mdo':")) 4
+ (ppr binds)
\end{code}
+
%*********************************************************
%* *
-\subsection{Default declarations}
+\subsection{Foreign declarations}
%* *
%*********************************************************
\begin{code}
-rnDecl (DefD (DefaultDecl tys src_loc))
- = pushSrcLocRn src_loc $
- mapRn rnHsType tys `thenRn` \ tys' ->
- lookupImplicitOccRn numClass_RDR `thenRn_`
- returnRn (DefD (DefaultDecl tys' src_loc))
+rnHsForeignDecl (ForeignImport name ty spec isDeprec)
+ = lookupLocatedTopBndrRn name `thenM` \ name' ->
+ rnHsTypeFVs (fo_decl_msg name) ty `thenM` \ (ty', fvs) ->
+ returnM (ForeignImport name' ty' spec isDeprec, fvs)
+
+rnHsForeignDecl (ForeignExport name ty spec isDeprec)
+ = lookupLocatedOccRn name `thenM` \ name' ->
+ rnHsTypeFVs (fo_decl_msg name) ty `thenM` \ (ty', fvs) ->
+ returnM (ForeignExport name' ty' spec isDeprec, fvs )
+ -- NB: a foreign export is an *occurrence site* for name, so
+ -- we add it to the free-variable list. It might, for example,
+ -- be imported from another module
+
+fo_decl_msg name = ptext SLIT("In the foreign declaration for") <+> ppr name
\end{code}
+
%*********************************************************
%* *
-\subsection{Support code for type/data declarations}
+\subsection{Instance declarations}
%* *
%*********************************************************
\begin{code}
-rnDerivs :: Maybe [RdrName] -> RnMS s (Maybe [Name])
+rnSrcInstDecl (InstDecl inst_ty mbinds uprags)
+ -- Used for both source and interface file decls
+ = rnHsSigType (text "an instance decl") inst_ty `thenM` \ inst_ty' ->
-rnDerivs Nothing -- derivs not specified
- = lookupImplicitOccRn evalClass_RDR `thenRn_`
- returnRn Nothing
+ -- Rename the bindings
+ -- The typechecker (not the renamer) checks that all
+ -- the bindings are for the right class
+ let
+ meth_doc = text "In the bindings in an instance declaration"
+ meth_names = collectHsBindLocatedBinders mbinds
+ (inst_tyvars, _, cls,_) = splitHsInstDeclTy (unLoc inst_ty')
+ in
+ checkDupNames meth_doc meth_names `thenM_`
+ extendTyVarEnvForMethodBinds inst_tyvars (
+ -- (Slightly strangely) the forall-d tyvars scope over
+ -- the method bindings too
+ rnMethodBinds cls [] mbinds
+ ) `thenM` \ (mbinds', meth_fvs) ->
+ -- Rename the prags and signatures.
+ -- Note that the type variables are not in scope here,
+ -- so that instance Eq a => Eq (T a) where
+ -- {-# SPECIALISE instance Eq a => Eq (T [a]) #-}
+ -- works OK.
+ --
+ -- But the (unqualified) method names are in scope
+ let
+ binders = collectHsBindBinders mbinds'
+ in
+ bindLocalNames binders (renameSigs uprags) `thenM` \ uprags' ->
+ checkSigs (okInstDclSig (mkNameSet binders)) uprags' `thenM_`
-rnDerivs (Just ds)
- = lookupImplicitOccRn evalClass_RDR `thenRn_`
- mapRn rn_deriv ds `thenRn` \ derivs ->
- returnRn (Just derivs)
- where
- rn_deriv clas
- = lookupOccRn clas `thenRn` \ clas_name ->
-
- -- Now add extra "occurrences" for things that
- -- the deriving mechanism will later need in order to
- -- generate code for this class.
- case lookupUFM derivingOccurrences clas_name of
- Nothing -> addErrRn (derivingNonStdClassErr clas_name) `thenRn_`
- returnRn clas_name
-
- Just occs -> mapRn lookupImplicitOccRn occs `thenRn_`
- returnRn clas_name
+ returnM (InstDecl inst_ty' mbinds' uprags',
+ meth_fvs `plusFV` hsSigsFVs uprags'
+ `plusFV` extractHsTyNames inst_ty')
\end{code}
+For the method bindings in class and instance decls, we extend the
+type variable environment iff -fglasgow-exts
+
\begin{code}
-rnConDecl :: RdrNameConDecl -> RnMS s RenamedConDecl
-
-rnConDecl (ConDecl name tys src_loc)
- = pushSrcLocRn src_loc $
- lookupRn name `thenRn` \ new_name ->
- mapRn rnBangTy tys `thenRn` \ new_tys ->
- returnRn (ConDecl new_name new_tys src_loc)
-
-rnConDecl (ConOpDecl ty1 op ty2 src_loc)
- = pushSrcLocRn src_loc $
- lookupRn op `thenRn` \ new_op ->
- rnBangTy ty1 `thenRn` \ new_ty1 ->
- rnBangTy ty2 `thenRn` \ new_ty2 ->
- returnRn (ConOpDecl new_ty1 new_op new_ty2 src_loc)
-
-rnConDecl (NewConDecl name ty src_loc)
- = pushSrcLocRn src_loc $
- lookupRn name `thenRn` \ new_name ->
- rnHsType ty `thenRn` \ new_ty ->
- returnRn (NewConDecl new_name new_ty src_loc)
-
-rnConDecl (RecConDecl name fields src_loc)
- = pushSrcLocRn src_loc $
- lookupRn name `thenRn` \ new_name ->
- mapRn rnField fields `thenRn` \ new_fields ->
- returnRn (RecConDecl new_name new_fields src_loc)
-
-rnField (names, ty)
- = mapRn lookupRn names `thenRn` \ new_names ->
- rnBangTy ty `thenRn` \ new_ty ->
- returnRn (new_names, new_ty)
-
-rnBangTy (Banged ty)
- = rnHsType ty `thenRn` \ new_ty ->
- returnRn (Banged new_ty)
-
-rnBangTy (Unbanged ty)
- = rnHsType ty `thenRn` \ new_ty ->
- returnRn (Unbanged new_ty)
+extendTyVarEnvForMethodBinds tyvars thing_inside
+ = doptM Opt_GlasgowExts `thenM` \ opt_GlasgowExts ->
+ if opt_GlasgowExts then
+ extendTyVarEnvFVRn (map hsLTyVarName tyvars) thing_inside
+ else
+ thing_inside
\end{code}
%*********************************************************
%* *
-\subsection{Support code to rename types}
+\subsection{Rules}
%* *
%*********************************************************
\begin{code}
-rnHsType :: RdrNameHsType -> RnMS s RenamedHsType
+rnHsRuleDecl (HsRule rule_name act vars lhs rhs)
+ = bindPatSigTyVarsFV (collectRuleBndrSigTys vars) $
-rnHsType (HsForAllTy tvs ctxt ty)
- = rn_poly_help tvs ctxt ty
+ bindLocatedLocalsFV doc (map get_var vars) $ \ ids ->
+ mapFvRn rn_var (vars `zip` ids) `thenM` \ (vars', fv_vars) ->
-rnHsType full_ty@(HsPreForAllTy ctxt ty)
- = getNameEnv `thenRn` \ name_env ->
+ rnLExpr lhs `thenM` \ (lhs', fv_lhs) ->
+ rnLExpr rhs `thenM` \ (rhs', fv_rhs) ->
+ let
+ mb_bad = validRuleLhs ids lhs'
+ in
+ checkErr (isNothing mb_bad)
+ (badRuleLhsErr rule_name lhs' mb_bad) `thenM_`
let
- mentioned_tyvars = extractHsTyVars full_ty
- forall_tyvars = filter not_in_scope mentioned_tyvars
- not_in_scope tv = case lookupFM name_env tv of
- Nothing -> True
- Just _ -> False
+ bad_vars = [var | var <- ids, not (var `elemNameSet` fv_lhs)]
in
- rn_poly_help (map UserTyVar forall_tyvars) ctxt ty
-
-rnHsType (MonoTyVar tyvar)
- = lookupOccRn tyvar `thenRn` \ tyvar' ->
- returnRn (MonoTyVar tyvar')
-
-rnHsType (MonoFunTy ty1 ty2)
- = andRn MonoFunTy (rnHsType ty1) (rnHsType ty2)
-
-rnHsType (MonoListTy _ ty)
- = lookupImplicitOccRn listType_RDR `thenRn` \ tycon_name ->
- rnHsType ty `thenRn` \ ty' ->
- returnRn (MonoListTy tycon_name ty')
-
-rnHsType (MonoTupleTy _ tys)
- = lookupImplicitOccRn (tupleType_RDR (length tys)) `thenRn` \ tycon_name ->
- mapRn rnHsType tys `thenRn` \ tys' ->
- returnRn (MonoTupleTy tycon_name tys')
-
-rnHsType (MonoTyApp name tys)
- = lookupOccRn name `thenRn` \ name' ->
- mapRn rnHsType tys `thenRn` \ tys' ->
- returnRn (MonoTyApp name' tys')
-
-rnHsType (MonoDictTy clas ty)
- = lookupOccRn clas `thenRn` \ clas' ->
- rnHsType ty `thenRn` \ ty' ->
- returnRn (MonoDictTy clas' ty')
-
-
-rn_poly_help :: [HsTyVar RdrName] -- Universally quantified tyvars
- -> RdrNameContext
- -> RdrNameHsType
- -> RnMS s RenamedHsType
-
-rn_poly_help tyvars ctxt ty
- = bindTyVarsRn "type signature" tyvars $ \ new_tyvars ->
- rnContext ctxt `thenRn` \ new_ctxt ->
- rnHsType ty `thenRn` \ new_ty ->
- returnRn (HsForAllTy new_tyvars new_ctxt new_ty)
+ mappM (addErr . badRuleVar rule_name) bad_vars `thenM_`
+ returnM (HsRule rule_name act vars' lhs' rhs',
+ fv_vars `plusFV` fv_lhs `plusFV` fv_rhs)
+ where
+ doc = text "In the transformation rule" <+> ftext rule_name
+
+ get_var (RuleBndr v) = v
+ get_var (RuleBndrSig v _) = v
+
+ rn_var (RuleBndr (L loc v), id)
+ = returnM (RuleBndr (L loc id), emptyFVs)
+ rn_var (RuleBndrSig (L loc v) t, id)
+ = rnHsTypeFVs doc t `thenM` \ (t', fvs) ->
+ returnM (RuleBndrSig (L loc id) t', fvs)
\end{code}
+Check the shape of a transformation rule LHS. Currently
+we only allow LHSs of the form @(f e1 .. en)@, where @f@ is
+not one of the @forall@'d variables. We also restrict the form of the LHS so
+that it may be plausibly matched. Basically you only get to write ordinary
+applications. (E.g. a case expression is not allowed: too elaborate.)
-\begin{code}
-rnContext :: RdrNameContext -> RnMS s RenamedContext
+NB: if you add new cases here, make sure you add new ones to TcRule.ruleLhsTvs
-rnContext ctxt
- = mapRn rn_ctxt ctxt `thenRn` \ result ->
- let
- (_, dup_asserts) = removeDups cmp_assert result
- in
- -- If this isn't an error, then it ought to be:
- mapRn (addWarnRn . dupClassAssertWarn result) dup_asserts `thenRn_`
- returnRn result
+\begin{code}
+validRuleLhs :: [Name] -> LHsExpr Name -> Maybe (HsExpr Name)
+-- Nothing => OK
+-- Just e => Not ok, and e is the offending expression
+validRuleLhs foralls lhs
+ = checkl lhs
where
- rn_ctxt (clas, ty)
- = lookupOccRn clas `thenRn` \ clas_name ->
- rnHsType ty `thenRn` \ ty' ->
- returnRn (clas_name, ty')
-
- cmp_assert (c1,ty1) (c2,ty2)
- = (c1 `cmp` c2) `thenCmp` (cmpHsType cmp ty1 ty2)
+ checkl (L loc e) = check e
+
+ check (OpApp e1 op _ e2) = checkl op `seqMaybe` checkl_e e1 `seqMaybe` checkl_e e2
+ check (HsApp e1 e2) = checkl e1 `seqMaybe` checkl_e e2
+ check (HsVar v) | v `notElem` foralls = Nothing
+ check other = Just other -- Failure
+
+ checkl_e (L loc e) = check_e e
+
+ check_e (HsVar v) = Nothing
+ check_e (HsPar e) = checkl_e e
+ check_e (HsLit e) = Nothing
+ check_e (HsOverLit e) = Nothing
+
+ check_e (OpApp e1 op _ e2) = checkl_e e1 `seqMaybe` checkl_e op `seqMaybe` checkl_e e2
+ check_e (HsApp e1 e2) = checkl_e e1 `seqMaybe` checkl_e e2
+ check_e (NegApp e _) = checkl_e e
+ check_e (ExplicitList _ es) = checkl_es es
+ check_e (ExplicitTuple es _) = checkl_es es
+ check_e other = Just other -- Fails
+
+ checkl_es es = foldr (seqMaybe . checkl_e) Nothing es
+
+badRuleLhsErr name lhs (Just bad_e)
+ = sep [ptext SLIT("Rule") <+> ftext name <> colon,
+ nest 4 (vcat [ptext SLIT("Illegal expression:") <+> ppr bad_e,
+ ptext SLIT("in left-hand side:") <+> ppr lhs])]
+ $$
+ ptext SLIT("LHS must be of form (f e1 .. en) where f is not forall'd")
+
+badRuleVar name var
+ = sep [ptext SLIT("Rule") <+> doubleQuotes (ftext name) <> colon,
+ ptext SLIT("Forall'd variable") <+> quotes (ppr var) <+>
+ ptext SLIT("does not appear on left hand side")]
\end{code}
%*********************************************************
%* *
-\subsection{IdInfo}
+\subsection{Type, class and iface sig declarations}
%* *
%*********************************************************
-\begin{code}
-rnIdInfo (HsStrictness strict)
- = rnStrict strict `thenRn` \ strict' ->
- returnRn (HsStrictness strict')
-
-rnIdInfo (HsUnfold expr) = rnCoreExpr expr `thenRn` \ expr' ->
- returnRn (HsUnfold expr')
-rnIdInfo (HsArity arity) = returnRn (HsArity arity)
-rnIdInfo (HsUpdate update) = returnRn (HsUpdate update)
-rnIdInfo (HsFBType fb) = returnRn (HsFBType fb)
-rnIdInfo (HsArgUsage au) = returnRn (HsArgUsage au)
-rnIdInfo (HsDeforest df) = returnRn (HsDeforest df)
-
-rnStrict (StrictnessInfo demands (Just worker))
- = lookupOptionalOccRn worker `thenRn` \ worker' ->
- returnRn (StrictnessInfo demands (Just worker'))
-
--- Boring, but necessary for the type checker.
-rnStrict (StrictnessInfo demands Nothing) = returnRn (StrictnessInfo demands Nothing)
-rnStrict BottomGuaranteed = returnRn BottomGuaranteed
-rnStrict NoStrictnessInfo = returnRn NoStrictnessInfo
-\end{code}
+@rnTyDecl@ uses the `global name function' to create a new type
+declaration in which local names have been replaced by their original
+names, reporting any unknown names.
-UfCore expressions.
+Renaming type variables is a pain. Because they now contain uniques,
+it is necessary to pass in an association list which maps a parsed
+tyvar to its @Name@ representation.
+In some cases (type signatures of values),
+it is even necessary to go over the type first
+in order to get the set of tyvars used by it, make an assoc list,
+and then go over it again to rename the tyvars!
+However, we can also do some scoping checks at the same time.
\begin{code}
-rnCoreExpr (UfVar v)
- = lookupOptionalOccRn v `thenRn` \ v' ->
- returnRn (UfVar v')
-
-rnCoreExpr (UfLit lit) = returnRn (UfLit lit)
-
-rnCoreExpr (UfCon con args)
- = lookupOptionalOccRn con `thenRn` \ con' ->
- mapRn rnCoreArg args `thenRn` \ args' ->
- returnRn (UfCon con' args')
-
-rnCoreExpr (UfPrim prim args)
- = rnCorePrim prim `thenRn` \ prim' ->
- mapRn rnCoreArg args `thenRn` \ args' ->
- returnRn (UfPrim prim' args')
-
-rnCoreExpr (UfApp fun arg)
- = rnCoreExpr fun `thenRn` \ fun' ->
- rnCoreArg arg `thenRn` \ arg' ->
- returnRn (UfApp fun' arg')
-
-rnCoreExpr (UfCase scrut alts)
- = rnCoreExpr scrut `thenRn` \ scrut' ->
- rnCoreAlts alts `thenRn` \ alts' ->
- returnRn (UfCase scrut' alts')
-
-rnCoreExpr (UfSCC cc expr)
- = rnCoreExpr expr `thenRn` \ expr' ->
- returnRn (UfSCC cc expr')
-
-rnCoreExpr(UfCoerce coercion ty body)
- = rnCoercion coercion `thenRn` \ coercion' ->
- rnHsType ty `thenRn` \ ty' ->
- rnCoreExpr body `thenRn` \ body' ->
- returnRn (UfCoerce coercion' ty' body')
-
-rnCoreExpr (UfLam bndr body)
- = rnCoreBndr bndr $ \ bndr' ->
- rnCoreExpr body `thenRn` \ body' ->
- returnRn (UfLam bndr' body')
-
-rnCoreExpr (UfLet (UfNonRec bndr rhs) body)
- = rnCoreExpr rhs `thenRn` \ rhs' ->
- rnCoreBndr bndr $ \ bndr' ->
- rnCoreExpr body `thenRn` \ body' ->
- returnRn (UfLet (UfNonRec bndr' rhs') body')
-
-rnCoreExpr (UfLet (UfRec pairs) body)
- = rnCoreBndrs bndrs $ \ bndrs' ->
- mapRn rnCoreExpr rhss `thenRn` \ rhss' ->
- rnCoreExpr body `thenRn` \ body' ->
- returnRn (UfLet (UfRec (bndrs' `zip` rhss')) body')
+rnTyClDecl (ForeignType {tcdLName = name, tcdFoType = fo_type, tcdExtName = ext_name})
+ = lookupLocatedTopBndrRn name `thenM` \ name' ->
+ returnM (ForeignType {tcdLName = name', tcdFoType = fo_type, tcdExtName = ext_name},
+ emptyFVs)
+
+rnTyClDecl (TyData {tcdND = new_or_data, tcdCtxt = context, tcdLName = tycon,
+ tcdTyVars = tyvars, tcdCons = condecls,
+ tcdDerivs = derivs})
+ = lookupLocatedTopBndrRn tycon `thenM` \ tycon' ->
+ bindTyVarsRn data_doc tyvars $ \ tyvars' ->
+ rnContext data_doc context `thenM` \ context' ->
+ rn_derivs derivs `thenM` \ (derivs', deriv_fvs) ->
+ checkDupNames data_doc con_names `thenM_`
+ rnConDecls (unLoc tycon') condecls `thenM` \ condecls' ->
+ returnM (TyData {tcdND = new_or_data, tcdCtxt = context', tcdLName = tycon',
+ tcdTyVars = tyvars', tcdCons = condecls',
+ tcdDerivs = derivs'},
+ delFVs (map hsLTyVarName tyvars') $
+ extractHsCtxtTyNames context' `plusFV`
+ plusFVs (map conDeclFVs condecls') `plusFV`
+ deriv_fvs)
where
- (bndrs, rhss) = unzip pairs
-\end{code}
+ data_doc = text "In the data type declaration for" <+> quotes (ppr tycon)
+ con_names = [ n | L _ (ConDecl n _ _ _) <- condecls ]
-\begin{code}
-rnCoreBndr (UfValBinder name ty) thing_inside
- = rnHsType ty `thenRn` \ ty' ->
- bindLocalsRn "unfolding value" [name] $ \ [name'] ->
- thing_inside (UfValBinder name' ty')
-
-rnCoreBndr (UfTyBinder name kind) thing_inside
- = bindLocalsRn "unfolding tyvar" [name] $ \ [name'] ->
- thing_inside (UfTyBinder name' kind)
+ rn_derivs Nothing = returnM (Nothing, emptyFVs)
+ rn_derivs (Just ds) = rnContext data_doc ds `thenM` \ ds' ->
+ returnM (Just ds', extractHsCtxtTyNames ds')
-rnCoreBndr (UfUsageBinder name) thing_inside
- = bindLocalsRn "unfolding usage" [name] $ \ [name'] ->
- thing_inside (UfUsageBinder name')
-
-rnCoreBndrs bndrs thing_inside -- Expect them all to be ValBinders
- = mapRn rnHsType tys `thenRn` \ tys' ->
- bindLocalsRn "unfolding value" names $ \ names' ->
- thing_inside (zipWith UfValBinder names' tys')
- where
- names = map (\ (UfValBinder name _) -> name) bndrs
- tys = map (\ (UfValBinder _ ty) -> ty) bndrs
-\end{code}
-
-\begin{code}
-rnCoreArg (UfVarArg v) = lookupOptionalOccRn v `thenRn` \ v' -> returnRn (UfVarArg v')
-rnCoreArg (UfUsageArg u) = lookupOptionalOccRn u `thenRn` \ u' -> returnRn (UfUsageArg u')
-rnCoreArg (UfTyArg ty) = rnHsType ty `thenRn` \ ty' -> returnRn (UfTyArg ty')
-rnCoreArg (UfLitArg lit) = returnRn (UfLitArg lit)
-
-rnCoreAlts (UfAlgAlts alts deflt)
- = mapRn rn_alt alts `thenRn` \ alts' ->
- rnCoreDefault deflt `thenRn` \ deflt' ->
- returnRn (UfAlgAlts alts' deflt')
+rnTyClDecl (TySynonym {tcdLName = name, tcdTyVars = tyvars, tcdSynRhs = ty})
+ = lookupLocatedTopBndrRn name `thenM` \ name' ->
+ bindTyVarsRn syn_doc tyvars $ \ tyvars' ->
+ rnHsTypeFVs syn_doc ty `thenM` \ (ty', fvs) ->
+ returnM (TySynonym {tcdLName = name', tcdTyVars = tyvars',
+ tcdSynRhs = ty'},
+ delFVs (map hsLTyVarName tyvars') fvs)
where
- rn_alt (con, bndrs, rhs) = lookupOptionalOccRn con `thenRn` \ con' ->
- rnCoreBndrs bndrs $ \ bndrs' ->
- rnCoreExpr rhs `thenRn` \ rhs' ->
- returnRn (con', bndrs', rhs')
-
-rnCoreAlts (UfPrimAlts alts deflt)
- = mapRn rn_alt alts `thenRn` \ alts' ->
- rnCoreDefault deflt `thenRn` \ deflt' ->
- returnRn (UfPrimAlts alts' deflt')
+ syn_doc = text "In the declaration for type synonym" <+> quotes (ppr name)
+
+rnTyClDecl (ClassDecl {tcdCtxt = context, tcdLName = cname,
+ tcdTyVars = tyvars, tcdFDs = fds, tcdSigs = sigs,
+ tcdMeths = mbinds})
+ = lookupLocatedTopBndrRn cname `thenM` \ cname' ->
+
+ -- Tyvars scope over superclass context and method signatures
+ bindTyVarsRn cls_doc tyvars ( \ tyvars' ->
+ rnContext cls_doc context `thenM` \ context' ->
+ rnFds cls_doc fds `thenM` \ fds' ->
+ renameSigs sigs `thenM` \ sigs' ->
+ returnM (tyvars', context', fds', sigs')
+ ) `thenM` \ (tyvars', context', fds', sigs') ->
+
+ -- Check the signatures
+ -- First process the class op sigs (op_sigs), then the fixity sigs (non_op_sigs).
+ let
+ sig_rdr_names_w_locs = [op | L _ (Sig op _) <- sigs]
+ in
+ checkDupNames sig_doc sig_rdr_names_w_locs `thenM_`
+ checkSigs okClsDclSig sigs' `thenM_`
+ -- Typechecker is responsible for checking that we only
+ -- give default-method bindings for things in this class.
+ -- The renamer *could* check this for class decls, but can't
+ -- for instance decls.
+
+ -- The newLocals call is tiresome: given a generic class decl
+ -- class C a where
+ -- op :: a -> a
+ -- op {| x+y |} (Inl a) = ...
+ -- op {| x+y |} (Inr b) = ...
+ -- op {| a*b |} (a*b) = ...
+ -- we want to name both "x" tyvars with the same unique, so that they are
+ -- easy to group together in the typechecker.
+ extendTyVarEnvForMethodBinds tyvars' (
+ getLocalRdrEnv `thenM` \ name_env ->
+ let
+ meth_rdr_names_w_locs = collectHsBindLocatedBinders mbinds
+ gen_rdr_tyvars_w_locs =
+ [ tv | tv <- extractGenericPatTyVars mbinds,
+ not (unLoc tv `elemLocalRdrEnv` name_env) ]
+ in
+ checkDupNames meth_doc meth_rdr_names_w_locs `thenM_`
+ newLocalsRn gen_rdr_tyvars_w_locs `thenM` \ gen_tyvars ->
+ rnMethodBinds (unLoc cname') gen_tyvars mbinds
+ ) `thenM` \ (mbinds', meth_fvs) ->
+
+ returnM (ClassDecl { tcdCtxt = context', tcdLName = cname', tcdTyVars = tyvars',
+ tcdFDs = fds', tcdSigs = sigs', tcdMeths = mbinds'},
+ delFVs (map hsLTyVarName tyvars') $
+ extractHsCtxtTyNames context' `plusFV`
+ plusFVs (map extractFunDepNames (map unLoc fds')) `plusFV`
+ hsSigsFVs sigs' `plusFV`
+ meth_fvs)
where
- rn_alt (lit, rhs) = rnCoreExpr rhs `thenRn` \ rhs' ->
- returnRn (lit, rhs')
-
-rnCoreDefault UfNoDefault = returnRn UfNoDefault
-rnCoreDefault (UfBindDefault bndr rhs) = rnCoreBndr bndr $ \ bndr' ->
- rnCoreExpr rhs `thenRn` \ rhs' ->
- returnRn (UfBindDefault bndr' rhs')
-
-rnCoercion (UfIn n) = lookupOptionalOccRn n `thenRn` \ n' -> returnRn (UfIn n')
-rnCoercion (UfOut n) = lookupOptionalOccRn n `thenRn` \ n' -> returnRn (UfOut n')
-
-rnCorePrim (UfOtherOp op)
- = lookupOptionalOccRn op `thenRn` \ op' ->
- returnRn (UfOtherOp op')
-
-rnCorePrim (UfCCallOp str casm gc arg_tys res_ty)
- = mapRn rnHsType arg_tys `thenRn` \ arg_tys' ->
- rnHsType res_ty `thenRn` \ res_ty' ->
- returnRn (UfCCallOp str casm gc arg_tys' res_ty')
+ meth_doc = text "In the default-methods for class" <+> ppr cname
+ cls_doc = text "In the declaration for class" <+> ppr cname
+ sig_doc = text "In the signatures for class" <+> ppr cname
\end{code}
%*********************************************************
%* *
-\subsection{Errors}
+\subsection{Support code for type/data declarations}
%* *
%*********************************************************
\begin{code}
-derivingNonStdClassErr clas sty
- = ppCat [ppStr "non-standard class in deriving:", ppr sty clas]
+rnConDecls :: Name -> [LConDecl RdrName] -> RnM [LConDecl Name]
+rnConDecls tycon condecls
+ = -- Check that there's at least one condecl,
+ -- or else we're reading an interface file, or -fglasgow-exts
+ (if null condecls then
+ doptM Opt_GlasgowExts `thenM` \ glaExts ->
+ checkErr glaExts (emptyConDeclsErr tycon)
+ else returnM ()
+ ) `thenM_`
+ mappM (wrapLocM rnConDecl) condecls
+
+rnConDecl :: ConDecl RdrName -> RnM (ConDecl Name)
+rnConDecl (ConDecl name tvs cxt details)
+ = addLocM checkConName name `thenM_`
+ lookupLocatedTopBndrRn name `thenM` \ new_name ->
+
+ bindTyVarsRn doc tvs $ \ new_tyvars ->
+ rnContext doc cxt `thenM` \ new_context ->
+ rnConDetails doc details `thenM` \ new_details ->
+ returnM (ConDecl new_name new_tyvars new_context new_details)
+ where
+ doc = text "In the definition of data constructor" <+> quotes (ppr name)
-classTyVarNotInOpTyErr clas_tyvar sig sty
- = ppHang (ppBesides [ppStr "Class type variable `", ppr sty clas_tyvar, ppStr "' does not appear in method signature:"])
- 4 (ppr sty sig)
+rnConDetails doc (PrefixCon tys)
+ = mappM (rnLBangTy doc) tys `thenM` \ new_tys ->
+ returnM (PrefixCon new_tys)
-classTyVarInOpCtxtErr clas_tyvar sig sty
- = ppHang (ppBesides [ ppStr "Class type variable `", ppr sty clas_tyvar,
- ppStr "' present in method's local overloading context:"])
- 4 (ppr sty sig)
+rnConDetails doc (InfixCon ty1 ty2)
+ = rnLBangTy doc ty1 `thenM` \ new_ty1 ->
+ rnLBangTy doc ty2 `thenM` \ new_ty2 ->
+ returnM (InfixCon new_ty1 new_ty2)
-dupClassAssertWarn ctxt dups sty
- = ppHang (ppBesides [ppStr "Duplicate class assertion `", ppr sty dups, ppStr "' in context:"])
- 4 (ppr sty ctxt)
-\end{code}
+rnConDetails doc (RecCon fields)
+ = checkDupNames doc field_names `thenM_`
+ mappM (rnField doc) fields `thenM` \ new_fields ->
+ returnM (RecCon new_fields)
+ where
+ field_names = [fld | (fld, _) <- fields]
+rnField doc (name, ty)
+ = lookupLocatedTopBndrRn name `thenM` \ new_name ->
+ rnLBangTy doc ty `thenM` \ new_ty ->
+ returnM (new_name, new_ty)
+rnLBangTy doc = wrapLocM (rnBangTy doc)
+rnBangTy doc (BangType s ty)
+ = rnLHsType doc ty `thenM` \ new_ty ->
+ returnM (BangType s new_ty)
+-- This data decl will parse OK
+-- data T = a Int
+-- treating "a" as the constructor.
+-- It is really hard to make the parser spot this malformation.
+-- So the renamer has to check that the constructor is legal
+--
+-- We can get an operator as the constructor, even in the prefix form:
+-- data T = :% Int Int
+-- from interface files, which always print in prefix form
-=================== OLD STUFF ======================
+checkConName name = checkErr (isRdrDataCon name) (badDataCon name)
-%*********************************************************
-%* *
-\subsection{SPECIALIZE data pragmas}
-%* *
-%*********************************************************
+badDataCon name
+ = hsep [ptext SLIT("Illegal data constructor name"), quotes (ppr name)]
-\begin{pseudocode}
-rnSpecDataSig :: RdrNameSpecDataSig
- -> RnMS s RenamedSpecDataSig
-
-rnSpecDataSig (SpecDataSig tycon ty src_loc)
- = pushSrcLocRn src_loc $
- let
- tyvars = filter extractHsTyNames ty
- in
- mkTyVarNamesEnv src_loc tyvars `thenRn` \ (tv_env,_) ->
- lookupOccRn tycon `thenRn` \ tycon' ->
- rnHsType tv_env ty `thenRn` \ ty' ->
- returnRn (SpecDataSig tycon' ty' src_loc)
+emptyConDeclsErr tycon
+ = sep [quotes (ppr tycon) <+> ptext SLIT("has no constructors"),
+ nest 4 (ptext SLIT("(-fglasgow-exts permits this)"))]
+\end{code}
-\end{pseudocode}
%*********************************************************
%* *
-\subsection{@SPECIALIZE instance@ user-pragmas}
+\subsection{Support code to rename types}
%* *
%*********************************************************
-\begin{pseudocode}
-rnSpecInstSig :: RdrNameSpecInstSig
- -> RnMS s RenamedSpecInstSig
+\begin{code}
+rnFds :: SDoc -> [Located (FunDep RdrName)] -> RnM [Located (FunDep Name)]
+
+rnFds doc fds
+ = mappM (wrapLocM rn_fds) fds
+ where
+ rn_fds (tys1, tys2)
+ = rnHsTyVars doc tys1 `thenM` \ tys1' ->
+ rnHsTyVars doc tys2 `thenM` \ tys2' ->
+ returnM (tys1', tys2')
+
+rnHsTyVars doc tvs = mappM (rnHsTyvar doc) tvs
+rnHsTyvar doc tyvar = lookupOccRn tyvar
+\end{code}
-rnSpecInstSig (SpecInstSig clas ty src_loc)
- = pushSrcLocRn src_loc $
- let
- tyvars = extractHsTyNames is_tyvar_name ty
- in
- mkTyVarNamesEnv src_loc tyvars `thenRn` \ (tv_env,_) ->
- lookupOccRn clas `thenRn` \ new_clas ->
- rnHsType tv_env ty `thenRn` \ new_ty ->
- returnRn (SpecInstSig new_clas new_ty src_loc)
-\end{pseudocode}