module DsMeta( dsBracket ) where
#include "HsVersions.h"
import GhcPrelude
import DsExpr ( dsExpr )
import MatchLit
import DsMonad
import qualified Language.Haskell.TH as TH
import GHC.Hs
import PrelNames
import qualified OccName( isDataOcc, isVarOcc, isTcOcc )
import Module
import Id
import Name hiding( isVarOcc, isTcOcc, varName, tcName )
import THNames
import NameEnv
import TcType
import TyCon
import TysWiredIn
import CoreSyn
import MkCore
import CoreUtils
import SrcLoc
import Unique
import BasicTypes
import Outputable
import Bag
import DynFlags
import FastString
import ForeignCall
import Util
import Maybes
import MonadUtils
import Data.ByteString ( unpack )
import Control.Monad
import Data.List
dsBracket :: HsBracket GhcRn -> [PendingTcSplice] -> DsM CoreExpr
dsBracket brack splices
= dsExtendMetaEnv new_bit (do_brack brack)
where
new_bit = mkNameEnv [(n, DsSplice (unLoc e))
| PendingTcSplice n e <- splices]
do_brack (VarBr _ _ n) = do { MkC e1 <- lookupOcc n ; return e1 }
do_brack (ExpBr _ e) = do { MkC e1 <- repLE e ; return e1 }
do_brack (PatBr _ p) = do { MkC p1 <- repTopP p ; return p1 }
do_brack (TypBr _ t) = do { MkC t1 <- repLTy t ; return t1 }
do_brack (DecBrG _ gp) = do { MkC ds1 <- repTopDs gp ; return ds1 }
do_brack (DecBrL {}) = panic "dsBracket: unexpected DecBrL"
do_brack (TExpBr _ e) = do { MkC e1 <- repLE e ; return e1 }
do_brack (XBracket nec) = noExtCon nec
repTopP :: LPat GhcRn -> DsM (Core TH.PatQ)
repTopP pat = do { ss <- mkGenSyms (collectPatBinders pat)
; pat' <- addBinds ss (repLP pat)
; wrapGenSyms ss pat' }
repTopDs :: HsGroup GhcRn -> DsM (Core (TH.Q [TH.Dec]))
repTopDs group@(HsGroup { hs_valds = valds
, hs_splcds = splcds
, hs_tyclds = tyclds
, hs_derivds = derivds
, hs_fixds = fixds
, hs_defds = defds
, hs_fords = fords
, hs_warnds = warnds
, hs_annds = annds
, hs_ruleds = ruleds
, hs_docs = docs })
= do { let { bndrs = hsScopedTvBinders valds
++ hsGroupBinders group
++ hsPatSynSelectors valds
; instds = tyclds >>= group_instds } ;
ss <- mkGenSyms bndrs ;
decls <- addBinds ss (
do { val_ds <- rep_val_binds valds
; _ <- mapM no_splice splcds
; tycl_ds <- mapM repTyClD (tyClGroupTyClDecls tyclds)
; role_ds <- mapM repRoleD (concatMap group_roles tyclds)
; kisig_ds <- mapM repKiSigD (concatMap group_kisigs tyclds)
; inst_ds <- mapM repInstD instds
; deriv_ds <- mapM repStandaloneDerivD derivds
; fix_ds <- mapM repFixD fixds
; _ <- mapM no_default_decl defds
; for_ds <- mapM repForD fords
; _ <- mapM no_warn (concatMap (wd_warnings . unLoc)
warnds)
; ann_ds <- mapM repAnnD annds
; rule_ds <- mapM repRuleD (concatMap (rds_rules . unLoc)
ruleds)
; _ <- mapM no_doc docs
; return (de_loc $ sort_by_loc $
val_ds ++ catMaybes tycl_ds ++ role_ds
++ kisig_ds
++ (concat fix_ds)
++ inst_ds ++ rule_ds ++ for_ds
++ ann_ds ++ deriv_ds) }) ;
decl_ty <- lookupType decQTyConName ;
let { core_list = coreList' decl_ty decls } ;
dec_ty <- lookupType decTyConName ;
q_decs <- repSequenceQ dec_ty core_list ;
wrapGenSyms ss q_decs
}
where
no_splice (dL->L loc _)
= notHandledL loc "Splices within declaration brackets" empty
no_default_decl (dL->L loc decl)
= notHandledL loc "Default declarations" (ppr decl)
no_warn (dL->L loc (Warning _ thing _))
= notHandledL loc "WARNING and DEPRECATION pragmas" $
text "Pragma for declaration of" <+> ppr thing
no_warn _ = panic "repTopDs"
no_doc (dL->L loc _)
= notHandledL loc "Haddock documentation" empty
repTopDs (XHsGroup nec) = noExtCon nec
hsScopedTvBinders :: HsValBinds GhcRn -> [Name]
hsScopedTvBinders binds
= concatMap get_scoped_tvs sigs
where
sigs = case binds of
ValBinds _ _ sigs -> sigs
XValBindsLR (NValBinds _ sigs) -> sigs
get_scoped_tvs :: LSig GhcRn -> [Name]
get_scoped_tvs (dL->L _ signature)
| TypeSig _ _ sig <- signature
= get_scoped_tvs_from_sig (hswc_body sig)
| ClassOpSig _ _ _ sig <- signature
= get_scoped_tvs_from_sig sig
| PatSynSig _ _ sig <- signature
= get_scoped_tvs_from_sig sig
| otherwise
= []
where
get_scoped_tvs_from_sig sig
| HsIB { hsib_ext = implicit_vars
, hsib_body = hs_ty } <- sig
, (explicit_vars, _) <- splitLHsForAllTyInvis hs_ty
= implicit_vars ++ hsLTyVarNames explicit_vars
get_scoped_tvs_from_sig (XHsImplicitBndrs nec)
= noExtCon nec
repTyClD :: LTyClDecl GhcRn -> DsM (Maybe (SrcSpan, Core TH.DecQ))
repTyClD (dL->L loc (FamDecl { tcdFam = fam })) = liftM Just $
repFamilyDecl (L loc fam)
repTyClD (dL->L loc (SynDecl { tcdLName = tc, tcdTyVars = tvs, tcdRhs = rhs }))
= do { tc1 <- lookupLOcc tc
; dec <- addTyClTyVarBinds tvs $ \bndrs ->
repSynDecl tc1 bndrs rhs
; return (Just (loc, dec)) }
repTyClD (dL->L loc (DataDecl { tcdLName = tc
, tcdTyVars = tvs
, tcdDataDefn = defn }))
= do { tc1 <- lookupLOcc tc
; dec <- addTyClTyVarBinds tvs $ \bndrs ->
repDataDefn tc1 (Left bndrs) defn
; return (Just (loc, dec)) }
repTyClD (dL->L loc (ClassDecl { tcdCtxt = cxt, tcdLName = cls,
tcdTyVars = tvs, tcdFDs = fds,
tcdSigs = sigs, tcdMeths = meth_binds,
tcdATs = ats, tcdATDefs = atds }))
= do { cls1 <- lookupLOcc cls
; dec <- addTyVarBinds tvs $ \bndrs ->
do { cxt1 <- repLContext cxt
; (ss, sigs_binds) <- rep_sigs_binds sigs meth_binds
; fds1 <- repLFunDeps fds
; ats1 <- repFamilyDecls ats
; atds1 <- mapM (repAssocTyFamDefaultD . unLoc) atds
; decls1 <- coreList decQTyConName (ats1 ++ atds1 ++ sigs_binds)
; decls2 <- repClass cxt1 cls1 bndrs fds1 decls1
; wrapGenSyms ss decls2 }
; return $ Just (loc, dec)
}
repTyClD _ = panic "repTyClD"
repRoleD :: LRoleAnnotDecl GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repRoleD (dL->L loc (RoleAnnotDecl _ tycon roles))
= do { tycon1 <- lookupLOcc tycon
; roles1 <- mapM repRole roles
; roles2 <- coreList roleTyConName roles1
; dec <- repRoleAnnotD tycon1 roles2
; return (loc, dec) }
repRoleD _ = panic "repRoleD"
repKiSigD :: LStandaloneKindSig GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repKiSigD (dL->L loc kisig) =
case kisig of
StandaloneKindSig _ v ki -> rep_ty_sig kiSigDName loc ki v
XStandaloneKindSig nec -> noExtCon nec
repDataDefn :: Core TH.Name
-> Either (Core [TH.TyVarBndrQ])
(Core (Maybe [TH.TyVarBndrQ]), Core TH.TypeQ)
-> HsDataDefn GhcRn
-> DsM (Core TH.DecQ)
repDataDefn tc opts
(HsDataDefn { dd_ND = new_or_data, dd_ctxt = cxt, dd_kindSig = ksig
, dd_cons = cons, dd_derivs = mb_derivs })
= do { cxt1 <- repLContext cxt
; derivs1 <- repDerivs mb_derivs
; case (new_or_data, cons) of
(NewType, [con]) -> do { con' <- repC con
; ksig' <- repMaybeLTy ksig
; repNewtype cxt1 tc opts ksig' con'
derivs1 }
(NewType, _) -> failWithDs (text "Multiple constructors for newtype:"
<+> pprQuotedList
(getConNames $ unLoc $ head cons))
(DataType, _) -> do { ksig' <- repMaybeLTy ksig
; consL <- mapM repC cons
; cons1 <- coreList conQTyConName consL
; repData cxt1 tc opts ksig' cons1
derivs1 }
}
repDataDefn _ _ (XHsDataDefn nec) = noExtCon nec
repSynDecl :: Core TH.Name -> Core [TH.TyVarBndrQ]
-> LHsType GhcRn
-> DsM (Core TH.DecQ)
repSynDecl tc bndrs ty
= do { ty1 <- repLTy ty
; repTySyn tc bndrs ty1 }
repFamilyDecl :: LFamilyDecl GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repFamilyDecl decl@(dL->L loc (FamilyDecl { fdInfo = info
, fdLName = tc
, fdTyVars = tvs
, fdResultSig = dL->L _ resultSig
, fdInjectivityAnn = injectivity }))
= do { tc1 <- lookupLOcc tc
; let mkHsQTvs :: [LHsTyVarBndr GhcRn] -> LHsQTyVars GhcRn
mkHsQTvs tvs = HsQTvs { hsq_ext = []
, hsq_explicit = tvs }
resTyVar = case resultSig of
TyVarSig _ bndr -> mkHsQTvs [bndr]
_ -> mkHsQTvs []
; dec <- addTyClTyVarBinds tvs $ \bndrs ->
addTyClTyVarBinds resTyVar $ \_ ->
case info of
ClosedTypeFamily Nothing ->
notHandled "abstract closed type family" (ppr decl)
ClosedTypeFamily (Just eqns) ->
do { eqns1 <- mapM (repTyFamEqn . unLoc) eqns
; eqns2 <- coreList tySynEqnQTyConName eqns1
; result <- repFamilyResultSig resultSig
; inj <- repInjectivityAnn injectivity
; repClosedFamilyD tc1 bndrs result inj eqns2 }
OpenTypeFamily ->
do { result <- repFamilyResultSig resultSig
; inj <- repInjectivityAnn injectivity
; repOpenFamilyD tc1 bndrs result inj }
DataFamily ->
do { kind <- repFamilyResultSigToMaybeKind resultSig
; repDataFamilyD tc1 bndrs kind }
; return (loc, dec)
}
repFamilyDecl _ = panic "repFamilyDecl"
repFamilyResultSig :: FamilyResultSig GhcRn -> DsM (Core TH.FamilyResultSigQ)
repFamilyResultSig (NoSig _) = repNoSig
repFamilyResultSig (KindSig _ ki) = do { ki' <- repLTy ki
; repKindSig ki' }
repFamilyResultSig (TyVarSig _ bndr) = do { bndr' <- repTyVarBndr bndr
; repTyVarSig bndr' }
repFamilyResultSig (XFamilyResultSig nec) = noExtCon nec
repFamilyResultSigToMaybeKind :: FamilyResultSig GhcRn
-> DsM (Core (Maybe TH.KindQ))
repFamilyResultSigToMaybeKind (NoSig _) =
do { coreNothing kindQTyConName }
repFamilyResultSigToMaybeKind (KindSig _ ki) =
do { ki' <- repLTy ki
; coreJust kindQTyConName ki' }
repFamilyResultSigToMaybeKind _ = panic "repFamilyResultSigToMaybeKind"
repInjectivityAnn :: Maybe (LInjectivityAnn GhcRn)
-> DsM (Core (Maybe TH.InjectivityAnn))
repInjectivityAnn Nothing =
do { coreNothing injAnnTyConName }
repInjectivityAnn (Just (dL->L _ (InjectivityAnn lhs rhs))) =
do { lhs' <- lookupBinder (unLoc lhs)
; rhs1 <- mapM (lookupBinder . unLoc) rhs
; rhs2 <- coreList nameTyConName rhs1
; injAnn <- rep2 injectivityAnnName [unC lhs', unC rhs2]
; coreJust injAnnTyConName injAnn }
repFamilyDecls :: [LFamilyDecl GhcRn] -> DsM [Core TH.DecQ]
repFamilyDecls fds = liftM de_loc (mapM repFamilyDecl fds)
repAssocTyFamDefaultD :: TyFamDefltDecl GhcRn -> DsM (Core TH.DecQ)
repAssocTyFamDefaultD = repTyFamInstD
repLFunDeps :: [LHsFunDep GhcRn] -> DsM (Core [TH.FunDep])
repLFunDeps fds = repList funDepTyConName repLFunDep fds
repLFunDep :: LHsFunDep GhcRn -> DsM (Core TH.FunDep)
repLFunDep (dL->L _ (xs, ys))
= do xs' <- repList nameTyConName (lookupBinder . unLoc) xs
ys' <- repList nameTyConName (lookupBinder . unLoc) ys
repFunDep xs' ys'
repInstD :: LInstDecl GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repInstD (dL->L loc (TyFamInstD { tfid_inst = fi_decl }))
= do { dec <- repTyFamInstD fi_decl
; return (loc, dec) }
repInstD (dL->L loc (DataFamInstD { dfid_inst = fi_decl }))
= do { dec <- repDataFamInstD fi_decl
; return (loc, dec) }
repInstD (dL->L loc (ClsInstD { cid_inst = cls_decl }))
= do { dec <- repClsInstD cls_decl
; return (loc, dec) }
repInstD _ = panic "repInstD"
repClsInstD :: ClsInstDecl GhcRn -> DsM (Core TH.DecQ)
repClsInstD (ClsInstDecl { cid_poly_ty = ty, cid_binds = binds
, cid_sigs = sigs, cid_tyfam_insts = ats
, cid_datafam_insts = adts
, cid_overlap_mode = overlap
})
= addSimpleTyVarBinds tvs $
do { cxt1 <- repLContext cxt
; inst_ty1 <- repLTy inst_ty
; (ss, sigs_binds) <- rep_sigs_binds sigs binds
; ats1 <- mapM (repTyFamInstD . unLoc) ats
; adts1 <- mapM (repDataFamInstD . unLoc) adts
; decls1 <- coreList decQTyConName (ats1 ++ adts1 ++ sigs_binds)
; rOver <- repOverlap (fmap unLoc overlap)
; decls2 <- repInst rOver cxt1 inst_ty1 decls1
; wrapGenSyms ss decls2 }
where
(tvs, cxt, inst_ty) = splitLHsInstDeclTy ty
repClsInstD (XClsInstDecl nec) = noExtCon nec
repStandaloneDerivD :: LDerivDecl GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repStandaloneDerivD (dL->L loc (DerivDecl { deriv_strategy = strat
, deriv_type = ty }))
= do { dec <- addSimpleTyVarBinds tvs $
do { cxt' <- repLContext cxt
; strat' <- repDerivStrategy strat
; inst_ty' <- repLTy inst_ty
; repDeriv strat' cxt' inst_ty' }
; return (loc, dec) }
where
(tvs, cxt, inst_ty) = splitLHsInstDeclTy (dropWildCards ty)
repStandaloneDerivD _ = panic "repStandaloneDerivD"
repTyFamInstD :: TyFamInstDecl GhcRn -> DsM (Core TH.DecQ)
repTyFamInstD (TyFamInstDecl { tfid_eqn = eqn })
= do { eqn1 <- repTyFamEqn eqn
; repTySynInst eqn1 }
repTyFamEqn :: TyFamInstEqn GhcRn -> DsM (Core TH.TySynEqnQ)
repTyFamEqn (HsIB { hsib_ext = var_names
, hsib_body = FamEqn { feqn_tycon = tc_name
, feqn_bndrs = mb_bndrs
, feqn_pats = tys
, feqn_fixity = fixity
, feqn_rhs = rhs }})
= do { tc <- lookupLOcc tc_name
; let hs_tvs = HsQTvs { hsq_ext = var_names
, hsq_explicit = fromMaybe [] mb_bndrs }
; addTyClTyVarBinds hs_tvs $ \ _ ->
do { mb_bndrs1 <- repMaybeList tyVarBndrQTyConName
repTyVarBndr
mb_bndrs
; tys1 <- case fixity of
Prefix -> repTyArgs (repNamedTyCon tc) tys
Infix -> do { (HsValArg t1: HsValArg t2: args) <- checkTys tys
; t1' <- repLTy t1
; t2' <- repLTy t2
; repTyArgs (repTInfix t1' tc t2') args }
; rhs1 <- repLTy rhs
; repTySynEqn mb_bndrs1 tys1 rhs1 } }
where checkTys :: [LHsTypeArg GhcRn] -> DsM [LHsTypeArg GhcRn]
checkTys tys@(HsValArg _:HsValArg _:_) = return tys
checkTys _ = panic "repTyFamEqn:checkTys"
repTyFamEqn (XHsImplicitBndrs nec) = noExtCon nec
repTyFamEqn (HsIB _ (XFamEqn nec)) = noExtCon nec
repTyArgs :: DsM (Core TH.TypeQ) -> [LHsTypeArg GhcRn] -> DsM (Core TH.TypeQ)
repTyArgs f [] = f
repTyArgs f (HsValArg ty : as) = do { f' <- f
; ty' <- repLTy ty
; repTyArgs (repTapp f' ty') as }
repTyArgs f (HsTypeArg _ ki : as) = do { f' <- f
; ki' <- repLTy ki
; repTyArgs (repTappKind f' ki') as }
repTyArgs f (HsArgPar _ : as) = repTyArgs f as
repDataFamInstD :: DataFamInstDecl GhcRn -> DsM (Core TH.DecQ)
repDataFamInstD (DataFamInstDecl { dfid_eqn =
(HsIB { hsib_ext = var_names
, hsib_body = FamEqn { feqn_tycon = tc_name
, feqn_bndrs = mb_bndrs
, feqn_pats = tys
, feqn_fixity = fixity
, feqn_rhs = defn }})})
= do { tc <- lookupLOcc tc_name
; let hs_tvs = HsQTvs { hsq_ext = var_names
, hsq_explicit = fromMaybe [] mb_bndrs }
; addTyClTyVarBinds hs_tvs $ \ _ ->
do { mb_bndrs1 <- repMaybeList tyVarBndrQTyConName
repTyVarBndr
mb_bndrs
; tys1 <- case fixity of
Prefix -> repTyArgs (repNamedTyCon tc) tys
Infix -> do { (HsValArg t1: HsValArg t2: args) <- checkTys tys
; t1' <- repLTy t1
; t2' <- repLTy t2
; repTyArgs (repTInfix t1' tc t2') args }
; repDataDefn tc (Right (mb_bndrs1, tys1)) defn } }
where checkTys :: [LHsTypeArg GhcRn] -> DsM [LHsTypeArg GhcRn]
checkTys tys@(HsValArg _: HsValArg _: _) = return tys
checkTys _ = panic "repDataFamInstD:checkTys"
repDataFamInstD (DataFamInstDecl (XHsImplicitBndrs nec))
= noExtCon nec
repDataFamInstD (DataFamInstDecl (HsIB _ (XFamEqn nec)))
= noExtCon nec
repForD :: Located (ForeignDecl GhcRn) -> DsM (SrcSpan, Core TH.DecQ)
repForD (dL->L loc (ForeignImport { fd_name = name, fd_sig_ty = typ
, fd_fi = CImport (dL->L _ cc)
(dL->L _ s) mch cis _ }))
= do MkC name' <- lookupLOcc name
MkC typ' <- repHsSigType typ
MkC cc' <- repCCallConv cc
MkC s' <- repSafety s
cis' <- conv_cimportspec cis
MkC str <- coreStringLit (static ++ chStr ++ cis')
dec <- rep2 forImpDName [cc', s', str, name', typ']
return (loc, dec)
where
conv_cimportspec (CLabel cls)
= notHandled "Foreign label" (doubleQuotes (ppr cls))
conv_cimportspec (CFunction DynamicTarget) = return "dynamic"
conv_cimportspec (CFunction (StaticTarget _ fs _ True))
= return (unpackFS fs)
conv_cimportspec (CFunction (StaticTarget _ _ _ False))
= panic "conv_cimportspec: values not supported yet"
conv_cimportspec CWrapper = return "wrapper"
raw_cconv = cc == PrimCallConv || cc == JavaScriptCallConv
static = case cis of
CFunction (StaticTarget _ _ _ _) | not raw_cconv -> "static "
_ -> ""
chStr = case mch of
Just (Header _ h) | not raw_cconv -> unpackFS h ++ " "
_ -> ""
repForD decl = notHandled "Foreign declaration" (ppr decl)
repCCallConv :: CCallConv -> DsM (Core TH.Callconv)
repCCallConv CCallConv = rep2 cCallName []
repCCallConv StdCallConv = rep2 stdCallName []
repCCallConv CApiConv = rep2 cApiCallName []
repCCallConv PrimCallConv = rep2 primCallName []
repCCallConv JavaScriptCallConv = rep2 javaScriptCallName []
repSafety :: Safety -> DsM (Core TH.Safety)
repSafety PlayRisky = rep2 unsafeName []
repSafety PlayInterruptible = rep2 interruptibleName []
repSafety PlaySafe = rep2 safeName []
repFixD :: LFixitySig GhcRn -> DsM [(SrcSpan, Core TH.DecQ)]
repFixD (dL->L loc (FixitySig _ names (Fixity _ prec dir)))
= do { MkC prec' <- coreIntLit prec
; let rep_fn = case dir of
InfixL -> infixLDName
InfixR -> infixRDName
InfixN -> infixNDName
; let do_one name
= do { MkC name' <- lookupLOcc name
; dec <- rep2 rep_fn [prec', name']
; return (loc,dec) }
; mapM do_one names }
repFixD _ = panic "repFixD"
repRuleD :: LRuleDecl GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repRuleD (dL->L loc (HsRule { rd_name = n
, rd_act = act
, rd_tyvs = ty_bndrs
, rd_tmvs = tm_bndrs
, rd_lhs = lhs
, rd_rhs = rhs }))
= do { rule <- addHsTyVarBinds (fromMaybe [] ty_bndrs) $ \ ex_bndrs ->
do { let tm_bndr_names = concatMap ruleBndrNames tm_bndrs
; ss <- mkGenSyms tm_bndr_names
; rule <- addBinds ss $
do { ty_bndrs' <- case ty_bndrs of
Nothing -> coreNothingList tyVarBndrQTyConName
Just _ -> coreJustList tyVarBndrQTyConName
ex_bndrs
; tm_bndrs' <- repList ruleBndrQTyConName
repRuleBndr
tm_bndrs
; n' <- coreStringLit $ unpackFS $ snd $ unLoc n
; act' <- repPhases act
; lhs' <- repLE lhs
; rhs' <- repLE rhs
; repPragRule n' ty_bndrs' tm_bndrs' lhs' rhs' act' }
; wrapGenSyms ss rule }
; return (loc, rule) }
repRuleD _ = panic "repRuleD"
ruleBndrNames :: LRuleBndr GhcRn -> [Name]
ruleBndrNames (dL->L _ (RuleBndr _ n)) = [unLoc n]
ruleBndrNames (dL->L _ (RuleBndrSig _ n sig))
| HsWC { hswc_body = HsIB { hsib_ext = vars }} <- sig
= unLoc n : vars
ruleBndrNames (dL->L _ (RuleBndrSig _ _ (HsWC _ (XHsImplicitBndrs _))))
= panic "ruleBndrNames"
ruleBndrNames (dL->L _ (RuleBndrSig _ _ (XHsWildCardBndrs _)))
= panic "ruleBndrNames"
ruleBndrNames (dL->L _ (XRuleBndr nec)) = noExtCon nec
ruleBndrNames _ = panic "ruleBndrNames: Impossible Match"
repRuleBndr :: LRuleBndr GhcRn -> DsM (Core TH.RuleBndrQ)
repRuleBndr (dL->L _ (RuleBndr _ n))
= do { MkC n' <- lookupLBinder n
; rep2 ruleVarName [n'] }
repRuleBndr (dL->L _ (RuleBndrSig _ n sig))
= do { MkC n' <- lookupLBinder n
; MkC ty' <- repLTy (hsSigWcType sig)
; rep2 typedRuleVarName [n', ty'] }
repRuleBndr _ = panic "repRuleBndr"
repAnnD :: LAnnDecl GhcRn -> DsM (SrcSpan, Core TH.DecQ)
repAnnD (dL->L loc (HsAnnotation _ _ ann_prov (dL->L _ exp)))
= do { target <- repAnnProv ann_prov
; exp' <- repE exp
; dec <- repPragAnn target exp'
; return (loc, dec) }
repAnnD _ = panic "repAnnD"
repAnnProv :: AnnProvenance Name -> DsM (Core TH.AnnTarget)
repAnnProv (ValueAnnProvenance (dL->L _ n))
= do { MkC n' <- globalVar n
; rep2 valueAnnotationName [ n' ] }
repAnnProv (TypeAnnProvenance (dL->L _ n))
= do { MkC n' <- globalVar n
; rep2 typeAnnotationName [ n' ] }
repAnnProv ModuleAnnProvenance
= rep2 moduleAnnotationName []
repC :: LConDecl GhcRn -> DsM (Core TH.ConQ)
repC (dL->L _ (ConDeclH98 { con_name = con
, con_forall = (dL->L _ False)
, con_mb_cxt = Nothing
, con_args = args }))
= repDataCon con args
repC (dL->L _ (ConDeclH98 { con_name = con
, con_forall = (dL->L _ is_existential)
, con_ex_tvs = con_tvs
, con_mb_cxt = mcxt
, con_args = args }))
= do { addHsTyVarBinds con_tvs $ \ ex_bndrs ->
do { c' <- repDataCon con args
; ctxt' <- repMbContext mcxt
; if not is_existential && isNothing mcxt
then return c'
else rep2 forallCName ([unC ex_bndrs, unC ctxt', unC c'])
}
}
repC (dL->L _ (ConDeclGADT { con_names = cons
, con_qvars = qtvs
, con_mb_cxt = mcxt
, con_args = args
, con_res_ty = res_ty }))
| isEmptyLHsQTvs qtvs
, Nothing <- mcxt
= repGadtDataCons cons args res_ty
| otherwise
= addTyVarBinds qtvs $ \ ex_bndrs ->
do { c' <- repGadtDataCons cons args res_ty
; ctxt' <- repMbContext mcxt
; if null (hsQTvExplicit qtvs) && isNothing mcxt
then return c'
else rep2 forallCName ([unC ex_bndrs, unC ctxt', unC c']) }
repC _ = panic "repC"
repMbContext :: Maybe (LHsContext GhcRn) -> DsM (Core TH.CxtQ)
repMbContext Nothing = repContext []
repMbContext (Just (dL->L _ cxt)) = repContext cxt
repSrcUnpackedness :: SrcUnpackedness -> DsM (Core TH.SourceUnpackednessQ)
repSrcUnpackedness SrcUnpack = rep2 sourceUnpackName []
repSrcUnpackedness SrcNoUnpack = rep2 sourceNoUnpackName []
repSrcUnpackedness NoSrcUnpack = rep2 noSourceUnpackednessName []
repSrcStrictness :: SrcStrictness -> DsM (Core TH.SourceStrictnessQ)
repSrcStrictness SrcLazy = rep2 sourceLazyName []
repSrcStrictness SrcStrict = rep2 sourceStrictName []
repSrcStrictness NoSrcStrict = rep2 noSourceStrictnessName []
repBangTy :: LBangType GhcRn -> DsM (Core (TH.BangTypeQ))
repBangTy ty = do
MkC u <- repSrcUnpackedness su'
MkC s <- repSrcStrictness ss'
MkC b <- rep2 bangName [u, s]
MkC t <- repLTy ty'
rep2 bangTypeName [b, t]
where
(su', ss', ty') = case unLoc ty of
HsBangTy _ (HsSrcBang _ su ss) ty -> (su, ss, ty)
_ -> (NoSrcUnpack, NoSrcStrict, ty)
repDerivs :: HsDeriving GhcRn -> DsM (Core [TH.DerivClauseQ])
repDerivs (dL->L _ clauses)
= repList derivClauseQTyConName repDerivClause clauses
repDerivClause :: LHsDerivingClause GhcRn
-> DsM (Core TH.DerivClauseQ)
repDerivClause (dL->L _ (HsDerivingClause
{ deriv_clause_strategy = dcs
, deriv_clause_tys = (dL->L _ dct) }))
= do MkC dcs' <- repDerivStrategy dcs
MkC dct' <- repList typeQTyConName (rep_deriv_ty . hsSigType) dct
rep2 derivClauseName [dcs',dct']
where
rep_deriv_ty :: LHsType GhcRn -> DsM (Core TH.TypeQ)
rep_deriv_ty ty = repLTy ty
repDerivClause _ = panic "repDerivClause"
rep_sigs_binds :: [LSig GhcRn] -> LHsBinds GhcRn
-> DsM ([GenSymBind], [Core TH.DecQ])
rep_sigs_binds sigs binds
= do { let tvs = concatMap get_scoped_tvs sigs
; ss <- mkGenSyms tvs
; sigs1 <- addBinds ss $ rep_sigs sigs
; binds1 <- addBinds ss $ rep_binds binds
; return (ss, de_loc (sort_by_loc (sigs1 ++ binds1))) }
rep_sigs :: [LSig GhcRn] -> DsM [(SrcSpan, Core TH.DecQ)]
rep_sigs = concatMapM rep_sig
rep_sig :: LSig GhcRn -> DsM [(SrcSpan, Core TH.DecQ)]
rep_sig (dL->L loc (TypeSig _ nms ty))
= mapM (rep_wc_ty_sig sigDName loc ty) nms
rep_sig (dL->L loc (PatSynSig _ nms ty))
= mapM (rep_patsyn_ty_sig loc ty) nms
rep_sig (dL->L loc (ClassOpSig _ is_deflt nms ty))
| is_deflt = mapM (rep_ty_sig defaultSigDName loc ty) nms
| otherwise = mapM (rep_ty_sig sigDName loc ty) nms
rep_sig d@(dL->L _ (IdSig {})) = pprPanic "rep_sig IdSig" (ppr d)
rep_sig (dL->L _ (FixSig {})) = return []
rep_sig (dL->L loc (InlineSig _ nm ispec))= rep_inline nm ispec loc
rep_sig (dL->L loc (SpecSig _ nm tys ispec))
= concatMapM (\t -> rep_specialise nm t ispec loc) tys
rep_sig (dL->L loc (SpecInstSig _ _ ty)) = rep_specialiseInst ty loc
rep_sig (dL->L _ (MinimalSig {})) = notHandled "MINIMAL pragmas" empty
rep_sig (dL->L _ (SCCFunSig {})) = notHandled "SCC pragmas" empty
rep_sig (dL->L loc (CompleteMatchSig _ _st cls mty))
= rep_complete_sig cls mty loc
rep_sig _ = panic "rep_sig"
rep_ty_sig :: Name -> SrcSpan -> LHsSigType GhcRn -> Located Name
-> DsM (SrcSpan, Core TH.DecQ)
rep_ty_sig mk_sig loc sig_ty nm
| HsIB { hsib_body = hs_ty } <- sig_ty
, (explicit_tvs, ctxt, ty) <- splitLHsSigmaTyInvis hs_ty
= do { nm1 <- lookupLOcc nm
; let rep_in_scope_tv tv = do { name <- lookupBinder (hsLTyVarName tv)
; repTyVarBndrWithKind tv name }
; th_explicit_tvs <- repList tyVarBndrQTyConName rep_in_scope_tv
explicit_tvs
; th_ctxt <- repLContext ctxt
; th_ty <- repLTy ty
; ty1 <- if null explicit_tvs && null (unLoc ctxt)
then return th_ty
else repTForall th_explicit_tvs th_ctxt th_ty
; sig <- repProto mk_sig nm1 ty1
; return (loc, sig) }
rep_ty_sig _ _ (XHsImplicitBndrs nec) _ = noExtCon nec
rep_patsyn_ty_sig :: SrcSpan -> LHsSigType GhcRn -> Located Name
-> DsM (SrcSpan, Core TH.DecQ)
rep_patsyn_ty_sig loc sig_ty nm
| HsIB { hsib_body = hs_ty } <- sig_ty
, (univs, reqs, exis, provs, ty) <- splitLHsPatSynTy hs_ty
= do { nm1 <- lookupLOcc nm
; let rep_in_scope_tv tv = do { name <- lookupBinder (hsLTyVarName tv)
; repTyVarBndrWithKind tv name }
; th_univs <- repList tyVarBndrQTyConName rep_in_scope_tv univs
; th_exis <- repList tyVarBndrQTyConName rep_in_scope_tv exis
; th_reqs <- repLContext reqs
; th_provs <- repLContext provs
; th_ty <- repLTy ty
; ty1 <- repTForall th_univs th_reqs =<<
repTForall th_exis th_provs th_ty
; sig <- repProto patSynSigDName nm1 ty1
; return (loc, sig) }
rep_patsyn_ty_sig _ (XHsImplicitBndrs nec) _ = noExtCon nec
rep_wc_ty_sig :: Name -> SrcSpan -> LHsSigWcType GhcRn -> Located Name
-> DsM (SrcSpan, Core TH.DecQ)
rep_wc_ty_sig mk_sig loc sig_ty nm
= rep_ty_sig mk_sig loc (hswc_body sig_ty) nm
rep_inline :: Located Name
-> InlinePragma
-> SrcSpan
-> DsM [(SrcSpan, Core TH.DecQ)]
rep_inline nm ispec loc
= do { nm1 <- lookupLOcc nm
; inline <- repInline $ inl_inline ispec
; rm <- repRuleMatch $ inl_rule ispec
; phases <- repPhases $ inl_act ispec
; pragma <- repPragInl nm1 inline rm phases
; return [(loc, pragma)]
}
rep_specialise :: Located Name -> LHsSigType GhcRn -> InlinePragma
-> SrcSpan
-> DsM [(SrcSpan, Core TH.DecQ)]
rep_specialise nm ty ispec loc
= do { nm1 <- lookupLOcc nm
; ty1 <- repHsSigType ty
; phases <- repPhases $ inl_act ispec
; let inline = inl_inline ispec
; pragma <- if noUserInlineSpec inline
then
repPragSpec nm1 ty1 phases
else
do { inline1 <- repInline inline
; repPragSpecInl nm1 ty1 inline1 phases }
; return [(loc, pragma)]
}
rep_specialiseInst :: LHsSigType GhcRn -> SrcSpan
-> DsM [(SrcSpan, Core TH.DecQ)]
rep_specialiseInst ty loc
= do { ty1 <- repHsSigType ty
; pragma <- repPragSpecInst ty1
; return [(loc, pragma)] }
repInline :: InlineSpec -> DsM (Core TH.Inline)
repInline NoInline = dataCon noInlineDataConName
repInline Inline = dataCon inlineDataConName
repInline Inlinable = dataCon inlinableDataConName
repInline spec = notHandled "repInline" (ppr spec)
repRuleMatch :: RuleMatchInfo -> DsM (Core TH.RuleMatch)
repRuleMatch ConLike = dataCon conLikeDataConName
repRuleMatch FunLike = dataCon funLikeDataConName
repPhases :: Activation -> DsM (Core TH.Phases)
repPhases (ActiveBefore _ i) = do { MkC arg <- coreIntLit i
; dataCon' beforePhaseDataConName [arg] }
repPhases (ActiveAfter _ i) = do { MkC arg <- coreIntLit i
; dataCon' fromPhaseDataConName [arg] }
repPhases _ = dataCon allPhasesDataConName
rep_complete_sig :: Located [Located Name]
-> Maybe (Located Name)
-> SrcSpan
-> DsM [(SrcSpan, Core TH.DecQ)]
rep_complete_sig (dL->L _ cls) mty loc
= do { mty' <- repMaybe nameTyConName lookupLOcc mty
; cls' <- repList nameTyConName lookupLOcc cls
; sig <- repPragComplete cls' mty'
; return [(loc, sig)] }
addSimpleTyVarBinds :: [Name]
-> DsM (Core (TH.Q a))
-> DsM (Core (TH.Q a))
addSimpleTyVarBinds names thing_inside
= do { fresh_names <- mkGenSyms names
; term <- addBinds fresh_names thing_inside
; wrapGenSyms fresh_names term }
addHsTyVarBinds :: [LHsTyVarBndr GhcRn]
-> (Core [TH.TyVarBndrQ] -> DsM (Core (TH.Q a)))
-> DsM (Core (TH.Q a))
addHsTyVarBinds exp_tvs thing_inside
= do { fresh_exp_names <- mkGenSyms (hsLTyVarNames exp_tvs)
; term <- addBinds fresh_exp_names $
do { kbs <- repList tyVarBndrQTyConName mk_tv_bndr
(exp_tvs `zip` fresh_exp_names)
; thing_inside kbs }
; wrapGenSyms fresh_exp_names term }
where
mk_tv_bndr (tv, (_,v)) = repTyVarBndrWithKind tv (coreVar v)
addTyVarBinds :: LHsQTyVars GhcRn
-> (Core [TH.TyVarBndrQ] -> DsM (Core (TH.Q a)))
-> DsM (Core (TH.Q a))
addTyVarBinds (HsQTvs { hsq_ext = imp_tvs
, hsq_explicit = exp_tvs })
thing_inside
= addSimpleTyVarBinds imp_tvs $
addHsTyVarBinds exp_tvs $
thing_inside
addTyVarBinds (XLHsQTyVars nec) _ = noExtCon nec
addTyClTyVarBinds :: LHsQTyVars GhcRn
-> (Core [TH.TyVarBndrQ] -> DsM (Core (TH.Q a)))
-> DsM (Core (TH.Q a))
addTyClTyVarBinds tvs m
= do { let tv_names = hsAllLTyVarNames tvs
; env <- dsGetMetaEnv
; freshNames <- mkGenSyms (filterOut (`elemNameEnv` env) tv_names)
; term <- addBinds freshNames $
do { kbs <- repList tyVarBndrQTyConName mk_tv_bndr
(hsQTvExplicit tvs)
; m kbs }
; wrapGenSyms freshNames term }
where
mk_tv_bndr :: LHsTyVarBndr GhcRn -> DsM (Core TH.TyVarBndrQ)
mk_tv_bndr tv = do { v <- lookupBinder (hsLTyVarName tv)
; repTyVarBndrWithKind tv v }
repTyVarBndrWithKind :: LHsTyVarBndr GhcRn
-> Core TH.Name -> DsM (Core TH.TyVarBndrQ)
repTyVarBndrWithKind (dL->L _ (UserTyVar _ _)) nm
= repPlainTV nm
repTyVarBndrWithKind (dL->L _ (KindedTyVar _ _ ki)) nm
= repLTy ki >>= repKindedTV nm
repTyVarBndrWithKind _ _ = panic "repTyVarBndrWithKind"
repTyVarBndr :: LHsTyVarBndr GhcRn -> DsM (Core TH.TyVarBndrQ)
repTyVarBndr (dL->L _ (UserTyVar _ (dL->L _ nm)) )
= do { nm' <- lookupBinder nm
; repPlainTV nm' }
repTyVarBndr (dL->L _ (KindedTyVar _ (dL->L _ nm) ki))
= do { nm' <- lookupBinder nm
; ki' <- repLTy ki
; repKindedTV nm' ki' }
repTyVarBndr _ = panic "repTyVarBndr"
repLContext :: LHsContext GhcRn -> DsM (Core TH.CxtQ)
repLContext ctxt = repContext (unLoc ctxt)
repContext :: HsContext GhcRn -> DsM (Core TH.CxtQ)
repContext ctxt = do preds <- repList typeQTyConName repLTy ctxt
repCtxt preds
repHsSigType :: LHsSigType GhcRn -> DsM (Core TH.TypeQ)
repHsSigType (HsIB { hsib_ext = implicit_tvs
, hsib_body = body })
| (explicit_tvs, ctxt, ty) <- splitLHsSigmaTyInvis body
= addSimpleTyVarBinds implicit_tvs $
addHsTyVarBinds explicit_tvs $ \ th_explicit_tvs ->
do { th_ctxt <- repLContext ctxt
; th_ty <- repLTy ty
; if null explicit_tvs && null (unLoc ctxt)
then return th_ty
else repTForall th_explicit_tvs th_ctxt th_ty }
repHsSigType (XHsImplicitBndrs nec) = noExtCon nec
repHsSigWcType :: LHsSigWcType GhcRn -> DsM (Core TH.TypeQ)
repHsSigWcType (HsWC { hswc_body = sig1 })
= repHsSigType sig1
repHsSigWcType (XHsWildCardBndrs nec) = noExtCon nec
repLTys :: [LHsType GhcRn] -> DsM [Core TH.TypeQ]
repLTys tys = mapM repLTy tys
repLTy :: LHsType GhcRn -> DsM (Core TH.TypeQ)
repLTy ty = repTy (unLoc ty)
repForallT :: HsType GhcRn -> DsM (Core TH.TypeQ)
repForallT ty
| (tvs, ctxt, tau) <- splitLHsSigmaTyInvis (noLoc ty)
= addHsTyVarBinds tvs $ \bndrs ->
do { ctxt1 <- repLContext ctxt
; tau1 <- repLTy tau
; repTForall bndrs ctxt1 tau1
}
repTy :: HsType GhcRn -> DsM (Core TH.TypeQ)
repTy ty@(HsForAllTy { hst_fvf = fvf, hst_bndrs = tvs, hst_body = body }) =
case fvf of
ForallInvis -> repForallT ty
ForallVis -> addHsTyVarBinds tvs $ \bndrs ->
do body1 <- repLTy body
repTForallVis bndrs body1
repTy ty@(HsQualTy {}) = repForallT ty
repTy (HsTyVar _ _ (dL->L _ n))
| isLiftedTypeKindTyConName n = repTStar
| n `hasKey` constraintKindTyConKey = repTConstraint
| n `hasKey` funTyConKey = repArrowTyCon
| isTvOcc occ = do tv1 <- lookupOcc n
repTvar tv1
| isDataOcc occ = do tc1 <- lookupOcc n
repPromotedDataCon tc1
| n == eqTyConName = repTequality
| otherwise = do tc1 <- lookupOcc n
repNamedTyCon tc1
where
occ = nameOccName n
repTy (HsAppTy _ f a) = do
f1 <- repLTy f
a1 <- repLTy a
repTapp f1 a1
repTy (HsAppKindTy _ ty ki) = do
ty1 <- repLTy ty
ki1 <- repLTy ki
repTappKind ty1 ki1
repTy (HsFunTy _ f a) = do
f1 <- repLTy f
a1 <- repLTy a
tcon <- repArrowTyCon
repTapps tcon [f1, a1]
repTy (HsListTy _ t) = do
t1 <- repLTy t
tcon <- repListTyCon
repTapp tcon t1
repTy (HsTupleTy _ HsUnboxedTuple tys) = do
tys1 <- repLTys tys
tcon <- repUnboxedTupleTyCon (length tys)
repTapps tcon tys1
repTy (HsTupleTy _ _ tys) = do tys1 <- repLTys tys
tcon <- repTupleTyCon (length tys)
repTapps tcon tys1
repTy (HsSumTy _ tys) = do tys1 <- repLTys tys
tcon <- repUnboxedSumTyCon (length tys)
repTapps tcon tys1
repTy (HsOpTy _ ty1 n ty2) = repLTy ((nlHsTyVar (unLoc n) `nlHsAppTy` ty1)
`nlHsAppTy` ty2)
repTy (HsParTy _ t) = repLTy t
repTy (HsStarTy _ _) = repTStar
repTy (HsKindSig _ t k) = do
t1 <- repLTy t
k1 <- repLTy k
repTSig t1 k1
repTy (HsSpliceTy _ splice) = repSplice splice
repTy (HsExplicitListTy _ _ tys) = do
tys1 <- repLTys tys
repTPromotedList tys1
repTy (HsExplicitTupleTy _ tys) = do
tys1 <- repLTys tys
tcon <- repPromotedTupleTyCon (length tys)
repTapps tcon tys1
repTy (HsTyLit _ lit) = do
lit' <- repTyLit lit
repTLit lit'
repTy (HsWildCardTy _) = repTWildCard
repTy (HsIParamTy _ n t) = do
n' <- rep_implicit_param_name (unLoc n)
t' <- repLTy t
repTImplicitParam n' t'
repTy ty = notHandled "Exotic form of type" (ppr ty)
repTyLit :: HsTyLit -> DsM (Core TH.TyLitQ)
repTyLit (HsNumTy _ i) = do iExpr <- mkIntegerExpr i
rep2 numTyLitName [iExpr]
repTyLit (HsStrTy _ s) = do { s' <- mkStringExprFS s
; rep2 strTyLitName [s']
}
repMaybeLTy :: Maybe (LHsKind GhcRn)
-> DsM (Core (Maybe TH.TypeQ))
repMaybeLTy = repMaybe kindQTyConName repLTy
repRole :: Located (Maybe Role) -> DsM (Core TH.Role)
repRole (dL->L _ (Just Nominal)) = rep2 nominalRName []
repRole (dL->L _ (Just Representational)) = rep2 representationalRName []
repRole (dL->L _ (Just Phantom)) = rep2 phantomRName []
repRole (dL->L _ Nothing) = rep2 inferRName []
repRole _ = panic "repRole: Impossible Match"
repSplice :: HsSplice GhcRn -> DsM (Core a)
repSplice (HsTypedSplice _ _ n _) = rep_splice n
repSplice (HsUntypedSplice _ _ n _) = rep_splice n
repSplice (HsQuasiQuote _ n _ _ _) = rep_splice n
repSplice e@(HsSpliced {}) = pprPanic "repSplice" (ppr e)
repSplice e@(HsSplicedT {}) = pprPanic "repSpliceT" (ppr e)
repSplice (XSplice nec) = noExtCon nec
rep_splice :: Name -> DsM (Core a)
rep_splice splice_name
= do { mb_val <- dsLookupMetaEnv splice_name
; case mb_val of
Just (DsSplice e) -> do { e' <- dsExpr e
; return (MkC e') }
_ -> pprPanic "HsSplice" (ppr splice_name) }
repLEs :: [LHsExpr GhcRn] -> DsM (Core [TH.ExpQ])
repLEs es = repList expQTyConName repLE es
repLE :: LHsExpr GhcRn -> DsM (Core TH.ExpQ)
repLE (dL->L loc e) = putSrcSpanDs loc (repE e)
repE :: HsExpr GhcRn -> DsM (Core TH.ExpQ)
repE (HsVar _ (dL->L _ x)) =
do { mb_val <- dsLookupMetaEnv x
; case mb_val of
Nothing -> do { str <- globalVar x
; repVarOrCon x str }
Just (DsBound y) -> repVarOrCon x (coreVar y)
Just (DsSplice e) -> do { e' <- dsExpr e
; return (MkC e') } }
repE (HsIPVar _ n) = rep_implicit_param_name n >>= repImplicitParamVar
repE (HsOverLabel _ _ s) = repOverLabel s
repE e@(HsRecFld _ f) = case f of
Unambiguous x _ -> repE (HsVar noExtField (noLoc x))
Ambiguous{} -> notHandled "Ambiguous record selectors" (ppr e)
XAmbiguousFieldOcc{} -> notHandled "XAmbiguous record selectors" (ppr e)
repE (HsOverLit _ l) = do { a <- repOverloadedLiteral l; repLit a }
repE (HsLit _ l) = do { a <- repLiteral l; repLit a }
repE (HsLam _ (MG { mg_alts = (dL->L _ [m]) })) = repLambda m
repE (HsLamCase _ (MG { mg_alts = (dL->L _ ms) }))
= do { ms' <- mapM repMatchTup ms
; core_ms <- coreList matchQTyConName ms'
; repLamCase core_ms }
repE (HsApp _ x y) = do {a <- repLE x; b <- repLE y; repApp a b}
repE (HsAppType _ e t) = do { a <- repLE e
; s <- repLTy (hswc_body t)
; repAppType a s }
repE (OpApp _ e1 op e2) =
do { arg1 <- repLE e1;
arg2 <- repLE e2;
the_op <- repLE op ;
repInfixApp arg1 the_op arg2 }
repE (NegApp _ x _) = do
a <- repLE x
negateVar <- lookupOcc negateName >>= repVar
negateVar `repApp` a
repE (HsPar _ x) = repLE x
repE (SectionL _ x y) = do { a <- repLE x; b <- repLE y; repSectionL a b }
repE (SectionR _ x y) = do { a <- repLE x; b <- repLE y; repSectionR a b }
repE (HsCase _ e (MG { mg_alts = (dL->L _ ms) }))
= do { arg <- repLE e
; ms2 <- mapM repMatchTup ms
; core_ms2 <- coreList matchQTyConName ms2
; repCaseE arg core_ms2 }
repE (HsIf _ _ x y z) = do
a <- repLE x
b <- repLE y
c <- repLE z
repCond a b c
repE (HsMultiIf _ alts)
= do { (binds, alts') <- liftM unzip $ mapM repLGRHS alts
; expr' <- repMultiIf (nonEmptyCoreList alts')
; wrapGenSyms (concat binds) expr' }
repE (HsLet _ (dL->L _ bs) e) = do { (ss,ds) <- repBinds bs
; e2 <- addBinds ss (repLE e)
; z <- repLetE ds e2
; wrapGenSyms ss z }
repE e@(HsDo _ ctxt (dL->L _ sts))
| case ctxt of { DoExpr -> True; GhciStmtCtxt -> True; _ -> False }
= do { (ss,zs) <- repLSts sts;
e' <- repDoE (nonEmptyCoreList zs);
wrapGenSyms ss e' }
| ListComp <- ctxt
= do { (ss,zs) <- repLSts sts;
e' <- repComp (nonEmptyCoreList zs);
wrapGenSyms ss e' }
| MDoExpr <- ctxt
= do { (ss,zs) <- repLSts sts;
e' <- repMDoE (nonEmptyCoreList zs);
wrapGenSyms ss e' }
| otherwise
= notHandled "monad comprehension and [: :]" (ppr e)
repE (ExplicitList _ _ es) = do { xs <- repLEs es; repListExp xs }
repE (ExplicitTuple _ es boxity) =
let tupArgToCoreExp :: LHsTupArg GhcRn -> DsM (Core (Maybe TH.ExpQ))
tupArgToCoreExp a
| L _ (Present _ e) <- dL a = do { e' <- repLE e
; coreJust expQTyConName e' }
| otherwise = coreNothing expQTyConName
in do { args <- mapM tupArgToCoreExp es
; expQTy <- lookupType expQTyConName
; let maybeExpQTy = mkTyConApp maybeTyCon [expQTy]
listArg = coreList' maybeExpQTy args
; if isBoxed boxity
then repTup listArg
else repUnboxedTup listArg }
repE (ExplicitSum _ alt arity e)
= do { e1 <- repLE e
; repUnboxedSum e1 alt arity }
repE (RecordCon { rcon_con_name = c, rcon_flds = flds })
= do { x <- lookupLOcc c;
fs <- repFields flds;
repRecCon x fs }
repE (RecordUpd { rupd_expr = e, rupd_flds = flds })
= do { x <- repLE e;
fs <- repUpdFields flds;
repRecUpd x fs }
repE (ExprWithTySig _ e ty)
= do { e1 <- repLE e
; t1 <- repHsSigWcType ty
; repSigExp e1 t1 }
repE (ArithSeq _ _ aseq) =
case aseq of
From e -> do { ds1 <- repLE e; repFrom ds1 }
FromThen e1 e2 -> do
ds1 <- repLE e1
ds2 <- repLE e2
repFromThen ds1 ds2
FromTo e1 e2 -> do
ds1 <- repLE e1
ds2 <- repLE e2
repFromTo ds1 ds2
FromThenTo e1 e2 e3 -> do
ds1 <- repLE e1
ds2 <- repLE e2
ds3 <- repLE e3
repFromThenTo ds1 ds2 ds3
repE (HsSpliceE _ splice) = repSplice splice
repE (HsStatic _ e) = repLE e >>= rep2 staticEName . (:[]) . unC
repE (HsUnboundVar _ uv) = do
occ <- occNameLit (unboundVarOcc uv)
sname <- repNameS occ
repUnboundVar sname
repE e@(HsCoreAnn {}) = notHandled "Core annotations" (ppr e)
repE e@(HsSCC {}) = notHandled "Cost centres" (ppr e)
repE e@(HsTickPragma {}) = notHandled "Tick Pragma" (ppr e)
repE e = notHandled "Expression form" (ppr e)
repMatchTup :: LMatch GhcRn (LHsExpr GhcRn) -> DsM (Core TH.MatchQ)
repMatchTup (dL->L _ (Match { m_pats = [p]
, m_grhss = GRHSs _ guards (dL->L _ wheres) })) =
do { ss1 <- mkGenSyms (collectPatBinders p)
; addBinds ss1 $ do {
; p1 <- repLP p
; (ss2,ds) <- repBinds wheres
; addBinds ss2 $ do {
; gs <- repGuards guards
; match <- repMatch p1 gs ds
; wrapGenSyms (ss1++ss2) match }}}
repMatchTup _ = panic "repMatchTup: case alt with more than one arg"
repClauseTup :: LMatch GhcRn (LHsExpr GhcRn) -> DsM (Core TH.ClauseQ)
repClauseTup (dL->L _ (Match { m_pats = ps
, m_grhss = GRHSs _ guards (dL->L _ wheres) })) =
do { ss1 <- mkGenSyms (collectPatsBinders ps)
; addBinds ss1 $ do {
ps1 <- repLPs ps
; (ss2,ds) <- repBinds wheres
; addBinds ss2 $ do {
gs <- repGuards guards
; clause <- repClause ps1 gs ds
; wrapGenSyms (ss1++ss2) clause }}}
repClauseTup (dL->L _ (Match _ _ _ (XGRHSs nec))) = noExtCon nec
repClauseTup _ = panic "repClauseTup"
repGuards :: [LGRHS GhcRn (LHsExpr GhcRn)] -> DsM (Core TH.BodyQ)
repGuards [dL->L _ (GRHS _ [] e)]
= do {a <- repLE e; repNormal a }
repGuards other
= do { zs <- mapM repLGRHS other
; let (xs, ys) = unzip zs
; gd <- repGuarded (nonEmptyCoreList ys)
; wrapGenSyms (concat xs) gd }
repLGRHS :: LGRHS GhcRn (LHsExpr GhcRn)
-> DsM ([GenSymBind], (Core (TH.Q (TH.Guard, TH.Exp))))
repLGRHS (dL->L _ (GRHS _ [dL->L _ (BodyStmt _ e1 _ _)] e2))
= do { guarded <- repLNormalGE e1 e2
; return ([], guarded) }
repLGRHS (dL->L _ (GRHS _ ss rhs))
= do { (gs, ss') <- repLSts ss
; rhs' <- addBinds gs $ repLE rhs
; guarded <- repPatGE (nonEmptyCoreList ss') rhs'
; return (gs, guarded) }
repLGRHS _ = panic "repLGRHS"
repFields :: HsRecordBinds GhcRn -> DsM (Core [TH.Q TH.FieldExp])
repFields (HsRecFields { rec_flds = flds })
= repList fieldExpQTyConName rep_fld flds
where
rep_fld :: LHsRecField GhcRn (LHsExpr GhcRn)
-> DsM (Core (TH.Q TH.FieldExp))
rep_fld (dL->L _ fld) = do { fn <- lookupLOcc (hsRecFieldSel fld)
; e <- repLE (hsRecFieldArg fld)
; repFieldExp fn e }
repUpdFields :: [LHsRecUpdField GhcRn] -> DsM (Core [TH.Q TH.FieldExp])
repUpdFields = repList fieldExpQTyConName rep_fld
where
rep_fld :: LHsRecUpdField GhcRn -> DsM (Core (TH.Q TH.FieldExp))
rep_fld (dL->L l fld) = case unLoc (hsRecFieldLbl fld) of
Unambiguous sel_name _ -> do { fn <- lookupLOcc (cL l sel_name)
; e <- repLE (hsRecFieldArg fld)
; repFieldExp fn e }
_ -> notHandled "Ambiguous record updates" (ppr fld)
repLSts :: [LStmt GhcRn (LHsExpr GhcRn)] -> DsM ([GenSymBind], [Core TH.StmtQ])
repLSts stmts = repSts (map unLoc stmts)
repSts :: [Stmt GhcRn (LHsExpr GhcRn)] -> DsM ([GenSymBind], [Core TH.StmtQ])
repSts (BindStmt _ p e _ _ : ss) =
do { e2 <- repLE e
; ss1 <- mkGenSyms (collectPatBinders p)
; addBinds ss1 $ do {
; p1 <- repLP p;
; (ss2,zs) <- repSts ss
; z <- repBindSt p1 e2
; return (ss1++ss2, z : zs) }}
repSts (LetStmt _ (dL->L _ bs) : ss) =
do { (ss1,ds) <- repBinds bs
; z <- repLetSt ds
; (ss2,zs) <- addBinds ss1 (repSts ss)
; return (ss1++ss2, z : zs) }
repSts (BodyStmt _ e _ _ : ss) =
do { e2 <- repLE e
; z <- repNoBindSt e2
; (ss2,zs) <- repSts ss
; return (ss2, z : zs) }
repSts (ParStmt _ stmt_blocks _ _ : ss) =
do { (ss_s, stmt_blocks1) <- mapAndUnzipM rep_stmt_block stmt_blocks
; let stmt_blocks2 = nonEmptyCoreList stmt_blocks1
ss1 = concat ss_s
; z <- repParSt stmt_blocks2
; (ss2, zs) <- addBinds ss1 (repSts ss)
; return (ss1++ss2, z : zs) }
where
rep_stmt_block :: ParStmtBlock GhcRn GhcRn
-> DsM ([GenSymBind], Core [TH.StmtQ])
rep_stmt_block (ParStmtBlock _ stmts _ _) =
do { (ss1, zs) <- repSts (map unLoc stmts)
; zs1 <- coreList stmtQTyConName zs
; return (ss1, zs1) }
rep_stmt_block (XParStmtBlock nec) = noExtCon nec
repSts [LastStmt _ e _ _]
= do { e2 <- repLE e
; z <- repNoBindSt e2
; return ([], [z]) }
repSts (stmt@RecStmt{} : ss)
= do { let binders = collectLStmtsBinders (recS_stmts stmt)
; ss1 <- mkGenSyms binders
; (ss1_other,rss) <- addBinds ss1 $ repSts (map unLoc (recS_stmts stmt))
; MASSERT(sort ss1 == sort ss1_other)
; z <- repRecSt (nonEmptyCoreList rss)
; (ss2,zs) <- addBinds ss1 (repSts ss)
; return (ss1++ss2, z : zs) }
repSts [] = return ([],[])
repSts other = notHandled "Exotic statement" (ppr other)
repBinds :: HsLocalBinds GhcRn -> DsM ([GenSymBind], Core [TH.DecQ])
repBinds (EmptyLocalBinds _)
= do { core_list <- coreList decQTyConName []
; return ([], core_list) }
repBinds (HsIPBinds _ (IPBinds _ decs))
= do { ips <- mapM rep_implicit_param_bind decs
; core_list <- coreList decQTyConName
(de_loc (sort_by_loc ips))
; return ([], core_list)
}
repBinds b@(HsIPBinds _ XHsIPBinds {})
= notHandled "Implicit parameter binds extension" (ppr b)
repBinds (HsValBinds _ decs)
= do { let { bndrs = hsScopedTvBinders decs ++ collectHsValBinders decs }
; ss <- mkGenSyms bndrs
; prs <- addBinds ss (rep_val_binds decs)
; core_list <- coreList decQTyConName
(de_loc (sort_by_loc prs))
; return (ss, core_list) }
repBinds b@(XHsLocalBindsLR {}) = notHandled "Local binds extensions" (ppr b)
rep_implicit_param_bind :: LIPBind GhcRn -> DsM (SrcSpan, Core TH.DecQ)
rep_implicit_param_bind (dL->L loc (IPBind _ ename (dL->L _ rhs)))
= do { name <- case ename of
Left (dL->L _ n) -> rep_implicit_param_name n
Right _ ->
panic "rep_implicit_param_bind: post typechecking"
; rhs' <- repE rhs
; ipb <- repImplicitParamBind name rhs'
; return (loc, ipb) }
rep_implicit_param_bind (dL->L _ b@(XIPBind _))
= notHandled "Implicit parameter bind extension" (ppr b)
rep_implicit_param_bind _ = panic "rep_implicit_param_bind: Impossible Match"
rep_implicit_param_name :: HsIPName -> DsM (Core String)
rep_implicit_param_name (HsIPName name) = coreStringLit (unpackFS name)
rep_val_binds :: HsValBinds GhcRn -> DsM [(SrcSpan, Core TH.DecQ)]
rep_val_binds (XValBindsLR (NValBinds binds sigs))
= do { core1 <- rep_binds (unionManyBags (map snd binds))
; core2 <- rep_sigs sigs
; return (core1 ++ core2) }
rep_val_binds (ValBinds _ _ _)
= panic "rep_val_binds: ValBinds"
rep_binds :: LHsBinds GhcRn -> DsM [(SrcSpan, Core TH.DecQ)]
rep_binds = mapM rep_bind . bagToList
rep_bind :: LHsBind GhcRn -> DsM (SrcSpan, Core TH.DecQ)
rep_bind (dL->L loc (FunBind
{ fun_id = fn,
fun_matches = MG { mg_alts
= (dL->L _ [dL->L _ (Match
{ m_pats = []
, m_grhss = GRHSs _ guards
(dL->L _ wheres) }
)]) } }))
= do { (ss,wherecore) <- repBinds wheres
; guardcore <- addBinds ss (repGuards guards)
; fn' <- lookupLBinder fn
; p <- repPvar fn'
; ans <- repVal p guardcore wherecore
; ans' <- wrapGenSyms ss ans
; return (loc, ans') }
rep_bind (dL->L loc (FunBind { fun_id = fn
, fun_matches = MG { mg_alts = (dL->L _ ms) } }))
= do { ms1 <- mapM repClauseTup ms
; fn' <- lookupLBinder fn
; ans <- repFun fn' (nonEmptyCoreList ms1)
; return (loc, ans) }
rep_bind (dL->L _ (FunBind { fun_matches = XMatchGroup nec })) = noExtCon nec
rep_bind (dL->L loc (PatBind { pat_lhs = pat
, pat_rhs = GRHSs _ guards (dL->L _ wheres) }))
= do { patcore <- repLP pat
; (ss,wherecore) <- repBinds wheres
; guardcore <- addBinds ss (repGuards guards)
; ans <- repVal patcore guardcore wherecore
; ans' <- wrapGenSyms ss ans
; return (loc, ans') }
rep_bind (dL->L _ (PatBind _ _ (XGRHSs nec) _)) = noExtCon nec
rep_bind (dL->L _ (VarBind { var_id = v, var_rhs = e}))
= do { v' <- lookupBinder v
; e2 <- repLE e
; x <- repNormal e2
; patcore <- repPvar v'
; empty_decls <- coreList decQTyConName []
; ans <- repVal patcore x empty_decls
; return (srcLocSpan (getSrcLoc v), ans) }
rep_bind (dL->L _ (AbsBinds {})) = panic "rep_bind: AbsBinds"
rep_bind (dL->L loc (PatSynBind _ (PSB { psb_id = syn
, psb_args = args
, psb_def = pat
, psb_dir = dir })))
= do { syn' <- lookupLBinder syn
; dir' <- repPatSynDir dir
; ss <- mkGenArgSyms args
; patSynD' <- addBinds ss (
do { args' <- repPatSynArgs args
; pat' <- repLP pat
; repPatSynD syn' args' dir' pat' })
; patSynD'' <- wrapGenArgSyms args ss patSynD'
; return (loc, patSynD'') }
where
mkGenArgSyms :: HsPatSynDetails (Located Name) -> DsM [GenSymBind]
mkGenArgSyms (PrefixCon args) = mkGenSyms (map unLoc args)
mkGenArgSyms (InfixCon arg1 arg2) = mkGenSyms [unLoc arg1, unLoc arg2]
mkGenArgSyms (RecCon fields)
= do { let pats = map (unLoc . recordPatSynPatVar) fields
sels = map (unLoc . recordPatSynSelectorId) fields
; ss <- mkGenSyms sels
; return $ replaceNames (zip sels pats) ss }
replaceNames selsPats genSyms
= [ (pat, id) | (sel, id) <- genSyms, (sel', pat) <- selsPats
, sel == sel' ]
wrapGenArgSyms :: HsPatSynDetails (Located Name)
-> [GenSymBind] -> Core TH.DecQ -> DsM (Core TH.DecQ)
wrapGenArgSyms (RecCon _) _ dec = return dec
wrapGenArgSyms _ ss dec = wrapGenSyms ss dec
rep_bind (dL->L _ (PatSynBind _ (XPatSynBind nec)))
= noExtCon nec
rep_bind (dL->L _ (XHsBindsLR nec)) = noExtCon nec
rep_bind _ = panic "rep_bind: Impossible match!"
repPatSynD :: Core TH.Name
-> Core TH.PatSynArgsQ
-> Core TH.PatSynDirQ
-> Core TH.PatQ
-> DsM (Core TH.DecQ)
repPatSynD (MkC syn) (MkC args) (MkC dir) (MkC pat)
= rep2 patSynDName [syn, args, dir, pat]
repPatSynArgs :: HsPatSynDetails (Located Name) -> DsM (Core TH.PatSynArgsQ)
repPatSynArgs (PrefixCon args)
= do { args' <- repList nameTyConName lookupLOcc args
; repPrefixPatSynArgs args' }
repPatSynArgs (InfixCon arg1 arg2)
= do { arg1' <- lookupLOcc arg1
; arg2' <- lookupLOcc arg2
; repInfixPatSynArgs arg1' arg2' }
repPatSynArgs (RecCon fields)
= do { sels' <- repList nameTyConName lookupLOcc sels
; repRecordPatSynArgs sels' }
where sels = map recordPatSynSelectorId fields
repPrefixPatSynArgs :: Core [TH.Name] -> DsM (Core TH.PatSynArgsQ)
repPrefixPatSynArgs (MkC nms) = rep2 prefixPatSynName [nms]
repInfixPatSynArgs :: Core TH.Name -> Core TH.Name -> DsM (Core TH.PatSynArgsQ)
repInfixPatSynArgs (MkC nm1) (MkC nm2) = rep2 infixPatSynName [nm1, nm2]
repRecordPatSynArgs :: Core [TH.Name]
-> DsM (Core TH.PatSynArgsQ)
repRecordPatSynArgs (MkC sels) = rep2 recordPatSynName [sels]
repPatSynDir :: HsPatSynDir GhcRn -> DsM (Core TH.PatSynDirQ)
repPatSynDir Unidirectional = rep2 unidirPatSynName []
repPatSynDir ImplicitBidirectional = rep2 implBidirPatSynName []
repPatSynDir (ExplicitBidirectional (MG { mg_alts = (dL->L _ clauses) }))
= do { clauses' <- mapM repClauseTup clauses
; repExplBidirPatSynDir (nonEmptyCoreList clauses') }
repPatSynDir (ExplicitBidirectional (XMatchGroup nec)) = noExtCon nec
repExplBidirPatSynDir :: Core [TH.ClauseQ] -> DsM (Core TH.PatSynDirQ)
repExplBidirPatSynDir (MkC cls) = rep2 explBidirPatSynName [cls]
repLambda :: LMatch GhcRn (LHsExpr GhcRn) -> DsM (Core TH.ExpQ)
repLambda (dL->L _ (Match { m_pats = ps
, m_grhss = GRHSs _ [dL->L _ (GRHS _ [] e)]
(dL->L _ (EmptyLocalBinds _)) } ))
= do { let bndrs = collectPatsBinders ps ;
; ss <- mkGenSyms bndrs
; lam <- addBinds ss (
do { xs <- repLPs ps; body <- repLE e; repLam xs body })
; wrapGenSyms ss lam }
repLambda (dL->L _ m) = notHandled "Guarded lambdas" (pprMatch m)
repLPs :: [LPat GhcRn] -> DsM (Core [TH.PatQ])
repLPs ps = repList patQTyConName repLP ps
repLP :: LPat GhcRn -> DsM (Core TH.PatQ)
repLP p = repP (unLoc p)
repP :: Pat GhcRn -> DsM (Core TH.PatQ)
repP (WildPat _) = repPwild
repP (LitPat _ l) = do { l2 <- repLiteral l; repPlit l2 }
repP (VarPat _ x) = do { x' <- lookupBinder (unLoc x); repPvar x' }
repP (LazyPat _ p) = do { p1 <- repLP p; repPtilde p1 }
repP (BangPat _ p) = do { p1 <- repLP p; repPbang p1 }
repP (AsPat _ x p) = do { x' <- lookupLBinder x; p1 <- repLP p
; repPaspat x' p1 }
repP (ParPat _ p) = repLP p
repP (ListPat Nothing ps) = do { qs <- repLPs ps; repPlist qs }
repP (ListPat (Just e) ps) = do { p <- repP (ListPat Nothing ps)
; e' <- repE (syn_expr e)
; repPview e' p}
repP (TuplePat _ ps boxed)
| isBoxed boxed = do { qs <- repLPs ps; repPtup qs }
| otherwise = do { qs <- repLPs ps; repPunboxedTup qs }
repP (SumPat _ p alt arity) = do { p1 <- repLP p
; repPunboxedSum p1 alt arity }
repP (ConPatIn dc details)
= do { con_str <- lookupLOcc dc
; case details of
PrefixCon ps -> do { qs <- repLPs ps; repPcon con_str qs }
RecCon rec -> do { fps <- repList fieldPatQTyConName rep_fld (rec_flds rec)
; repPrec con_str fps }
InfixCon p1 p2 -> do { p1' <- repLP p1;
p2' <- repLP p2;
repPinfix p1' con_str p2' }
}
where
rep_fld :: LHsRecField GhcRn (LPat GhcRn) -> DsM (Core (TH.Name,TH.PatQ))
rep_fld (dL->L _ fld) = do { MkC v <- lookupLOcc (hsRecFieldSel fld)
; MkC p <- repLP (hsRecFieldArg fld)
; rep2 fieldPatName [v,p] }
repP (NPat _ (dL->L _ l) Nothing _) = do { a <- repOverloadedLiteral l
; repPlit a }
repP (ViewPat _ e p) = do { e' <- repLE e; p' <- repLP p; repPview e' p' }
repP p@(NPat _ _ (Just _) _) = notHandled "Negative overloaded patterns" (ppr p)
repP (SigPat _ p t) = do { p' <- repLP p
; t' <- repLTy (hsSigWcType t)
; repPsig p' t' }
repP (SplicePat _ splice) = repSplice splice
repP other = notHandled "Exotic pattern" (ppr other)
sort_by_loc :: [(SrcSpan, a)] -> [(SrcSpan, a)]
sort_by_loc xs = sortBy comp xs
where comp x y = compare (fst x) (fst y)
de_loc :: [(a, b)] -> [b]
de_loc = map snd
type GenSymBind = (Name, Id)
mkGenSyms :: [Name] -> DsM [GenSymBind]
mkGenSyms ns = do { var_ty <- lookupType nameTyConName
; return [(nm, mkLocalId (localiseName nm) var_ty) | nm <- ns] }
addBinds :: [GenSymBind] -> DsM a -> DsM a
addBinds bs m = dsExtendMetaEnv (mkNameEnv [(n,DsBound id) | (n,id) <- bs]) m
lookupLBinder :: Located Name -> DsM (Core TH.Name)
lookupLBinder n = lookupBinder (unLoc n)
lookupBinder :: Name -> DsM (Core TH.Name)
lookupBinder = lookupOcc
lookupLOcc :: Located Name -> DsM (Core TH.Name)
lookupLOcc n = lookupOcc (unLoc n)
lookupOcc :: Name -> DsM (Core TH.Name)
lookupOcc n
= do { mb_val <- dsLookupMetaEnv n ;
case mb_val of
Nothing -> globalVar n
Just (DsBound x) -> return (coreVar x)
Just (DsSplice _) -> pprPanic "repE:lookupOcc" (ppr n)
}
globalVar :: Name -> DsM (Core TH.Name)
globalVar name
| isExternalName name
= do { MkC mod <- coreStringLit name_mod
; MkC pkg <- coreStringLit name_pkg
; MkC occ <- nameLit name
; rep2 mk_varg [pkg,mod,occ] }
| otherwise
= do { MkC occ <- nameLit name
; MkC uni <- coreIntegerLit (toInteger $ getKey (getUnique name))
; rep2 mkNameLName [occ,uni] }
where
mod = ASSERT( isExternalName name) nameModule name
name_mod = moduleNameString (moduleName mod)
name_pkg = unitIdString (moduleUnitId mod)
name_occ = nameOccName name
mk_varg | OccName.isDataOcc name_occ = mkNameG_dName
| OccName.isVarOcc name_occ = mkNameG_vName
| OccName.isTcOcc name_occ = mkNameG_tcName
| otherwise = pprPanic "DsMeta.globalVar" (ppr name)
lookupType :: Name
-> DsM Type
lookupType tc_name = do { tc <- dsLookupTyCon tc_name ;
return (mkTyConApp tc []) }
wrapGenSyms :: [GenSymBind]
-> Core (TH.Q a) -> DsM (Core (TH.Q a))
wrapGenSyms binds body@(MkC b)
= do { var_ty <- lookupType nameTyConName
; go var_ty binds }
where
[elt_ty] = tcTyConAppArgs (exprType b)
go _ [] = return body
go var_ty ((name,id) : binds)
= do { MkC body' <- go var_ty binds
; lit_str <- nameLit name
; gensym_app <- repGensym lit_str
; repBindQ var_ty elt_ty
gensym_app (MkC (Lam id body')) }
nameLit :: Name -> DsM (Core String)
nameLit n = coreStringLit (occNameString (nameOccName n))
occNameLit :: OccName -> DsM (Core String)
occNameLit name = coreStringLit (occNameString name)
newtype Core a = MkC CoreExpr
unC :: Core a -> CoreExpr
unC (MkC x) = x
rep2 :: Name -> [ CoreExpr ] -> DsM (Core a)
rep2 n xs = do { id <- dsLookupGlobalId n
; return (MkC (foldl' App (Var id) xs)) }
dataCon' :: Name -> [CoreExpr] -> DsM (Core a)
dataCon' n args = do { id <- dsLookupDataCon n
; return $ MkC $ mkCoreConApps id args }
dataCon :: Name -> DsM (Core a)
dataCon n = dataCon' n []
repPlit :: Core TH.Lit -> DsM (Core TH.PatQ)
repPlit (MkC l) = rep2 litPName [l]
repPvar :: Core TH.Name -> DsM (Core TH.PatQ)
repPvar (MkC s) = rep2 varPName [s]
repPtup :: Core [TH.PatQ] -> DsM (Core TH.PatQ)
repPtup (MkC ps) = rep2 tupPName [ps]
repPunboxedTup :: Core [TH.PatQ] -> DsM (Core TH.PatQ)
repPunboxedTup (MkC ps) = rep2 unboxedTupPName [ps]
repPunboxedSum :: Core TH.PatQ -> TH.SumAlt -> TH.SumArity -> DsM (Core TH.PatQ)
repPunboxedSum (MkC p) alt arity
= do { dflags <- getDynFlags
; rep2 unboxedSumPName [ p
, mkIntExprInt dflags alt
, mkIntExprInt dflags arity ] }
repPcon :: Core TH.Name -> Core [TH.PatQ] -> DsM (Core TH.PatQ)
repPcon (MkC s) (MkC ps) = rep2 conPName [s, ps]
repPrec :: Core TH.Name -> Core [(TH.Name,TH.PatQ)] -> DsM (Core TH.PatQ)
repPrec (MkC c) (MkC rps) = rep2 recPName [c,rps]
repPinfix :: Core TH.PatQ -> Core TH.Name -> Core TH.PatQ -> DsM (Core TH.PatQ)
repPinfix (MkC p1) (MkC n) (MkC p2) = rep2 infixPName [p1, n, p2]
repPtilde :: Core TH.PatQ -> DsM (Core TH.PatQ)
repPtilde (MkC p) = rep2 tildePName [p]
repPbang :: Core TH.PatQ -> DsM (Core TH.PatQ)
repPbang (MkC p) = rep2 bangPName [p]
repPaspat :: Core TH.Name -> Core TH.PatQ -> DsM (Core TH.PatQ)
repPaspat (MkC s) (MkC p) = rep2 asPName [s, p]
repPwild :: DsM (Core TH.PatQ)
repPwild = rep2 wildPName []
repPlist :: Core [TH.PatQ] -> DsM (Core TH.PatQ)
repPlist (MkC ps) = rep2 listPName [ps]
repPview :: Core TH.ExpQ -> Core TH.PatQ -> DsM (Core TH.PatQ)
repPview (MkC e) (MkC p) = rep2 viewPName [e,p]
repPsig :: Core TH.PatQ -> Core TH.TypeQ -> DsM (Core TH.PatQ)
repPsig (MkC p) (MkC t) = rep2 sigPName [p, t]
repVarOrCon :: Name -> Core TH.Name -> DsM (Core TH.ExpQ)
repVarOrCon vc str | isDataOcc (nameOccName vc) = repCon str
| otherwise = repVar str
repVar :: Core TH.Name -> DsM (Core TH.ExpQ)
repVar (MkC s) = rep2 varEName [s]
repCon :: Core TH.Name -> DsM (Core TH.ExpQ)
repCon (MkC s) = rep2 conEName [s]
repLit :: Core TH.Lit -> DsM (Core TH.ExpQ)
repLit (MkC c) = rep2 litEName [c]
repApp :: Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repApp (MkC x) (MkC y) = rep2 appEName [x,y]
repAppType :: Core TH.ExpQ -> Core TH.TypeQ -> DsM (Core TH.ExpQ)
repAppType (MkC x) (MkC y) = rep2 appTypeEName [x,y]
repLam :: Core [TH.PatQ] -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repLam (MkC ps) (MkC e) = rep2 lamEName [ps, e]
repLamCase :: Core [TH.MatchQ] -> DsM (Core TH.ExpQ)
repLamCase (MkC ms) = rep2 lamCaseEName [ms]
repTup :: Core [Maybe TH.ExpQ] -> DsM (Core TH.ExpQ)
repTup (MkC es) = rep2 tupEName [es]
repUnboxedTup :: Core [Maybe TH.ExpQ] -> DsM (Core TH.ExpQ)
repUnboxedTup (MkC es) = rep2 unboxedTupEName [es]
repUnboxedSum :: Core TH.ExpQ -> TH.SumAlt -> TH.SumArity -> DsM (Core TH.ExpQ)
repUnboxedSum (MkC e) alt arity
= do { dflags <- getDynFlags
; rep2 unboxedSumEName [ e
, mkIntExprInt dflags alt
, mkIntExprInt dflags arity ] }
repCond :: Core TH.ExpQ -> Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repCond (MkC x) (MkC y) (MkC z) = rep2 condEName [x,y,z]
repMultiIf :: Core [TH.Q (TH.Guard, TH.Exp)] -> DsM (Core TH.ExpQ)
repMultiIf (MkC alts) = rep2 multiIfEName [alts]
repLetE :: Core [TH.DecQ] -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repLetE (MkC ds) (MkC e) = rep2 letEName [ds, e]
repCaseE :: Core TH.ExpQ -> Core [TH.MatchQ] -> DsM (Core TH.ExpQ)
repCaseE (MkC e) (MkC ms) = rep2 caseEName [e, ms]
repDoE :: Core [TH.StmtQ] -> DsM (Core TH.ExpQ)
repDoE (MkC ss) = rep2 doEName [ss]
repMDoE :: Core [TH.StmtQ] -> DsM (Core TH.ExpQ)
repMDoE (MkC ss) = rep2 mdoEName [ss]
repComp :: Core [TH.StmtQ] -> DsM (Core TH.ExpQ)
repComp (MkC ss) = rep2 compEName [ss]
repListExp :: Core [TH.ExpQ] -> DsM (Core TH.ExpQ)
repListExp (MkC es) = rep2 listEName [es]
repSigExp :: Core TH.ExpQ -> Core TH.TypeQ -> DsM (Core TH.ExpQ)
repSigExp (MkC e) (MkC t) = rep2 sigEName [e,t]
repRecCon :: Core TH.Name -> Core [TH.Q TH.FieldExp]-> DsM (Core TH.ExpQ)
repRecCon (MkC c) (MkC fs) = rep2 recConEName [c,fs]
repRecUpd :: Core TH.ExpQ -> Core [TH.Q TH.FieldExp] -> DsM (Core TH.ExpQ)
repRecUpd (MkC e) (MkC fs) = rep2 recUpdEName [e,fs]
repFieldExp :: Core TH.Name -> Core TH.ExpQ -> DsM (Core (TH.Q TH.FieldExp))
repFieldExp (MkC n) (MkC x) = rep2 fieldExpName [n,x]
repInfixApp :: Core TH.ExpQ -> Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repInfixApp (MkC x) (MkC y) (MkC z) = rep2 infixAppName [x,y,z]
repSectionL :: Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repSectionL (MkC x) (MkC y) = rep2 sectionLName [x,y]
repSectionR :: Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repSectionR (MkC x) (MkC y) = rep2 sectionRName [x,y]
repImplicitParamVar :: Core String -> DsM (Core TH.ExpQ)
repImplicitParamVar (MkC x) = rep2 implicitParamVarEName [x]
repGuarded :: Core [TH.Q (TH.Guard, TH.Exp)] -> DsM (Core TH.BodyQ)
repGuarded (MkC pairs) = rep2 guardedBName [pairs]
repNormal :: Core TH.ExpQ -> DsM (Core TH.BodyQ)
repNormal (MkC e) = rep2 normalBName [e]
repLNormalGE :: LHsExpr GhcRn -> LHsExpr GhcRn
-> DsM (Core (TH.Q (TH.Guard, TH.Exp)))
repLNormalGE g e = do g' <- repLE g
e' <- repLE e
repNormalGE g' e'
repNormalGE :: Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core (TH.Q (TH.Guard, TH.Exp)))
repNormalGE (MkC g) (MkC e) = rep2 normalGEName [g, e]
repPatGE :: Core [TH.StmtQ] -> Core TH.ExpQ -> DsM (Core (TH.Q (TH.Guard, TH.Exp)))
repPatGE (MkC ss) (MkC e) = rep2 patGEName [ss, e]
repBindSt :: Core TH.PatQ -> Core TH.ExpQ -> DsM (Core TH.StmtQ)
repBindSt (MkC p) (MkC e) = rep2 bindSName [p,e]
repLetSt :: Core [TH.DecQ] -> DsM (Core TH.StmtQ)
repLetSt (MkC ds) = rep2 letSName [ds]
repNoBindSt :: Core TH.ExpQ -> DsM (Core TH.StmtQ)
repNoBindSt (MkC e) = rep2 noBindSName [e]
repParSt :: Core [[TH.StmtQ]] -> DsM (Core TH.StmtQ)
repParSt (MkC sss) = rep2 parSName [sss]
repRecSt :: Core [TH.StmtQ] -> DsM (Core TH.StmtQ)
repRecSt (MkC ss) = rep2 recSName [ss]
repFrom :: Core TH.ExpQ -> DsM (Core TH.ExpQ)
repFrom (MkC x) = rep2 fromEName [x]
repFromThen :: Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repFromThen (MkC x) (MkC y) = rep2 fromThenEName [x,y]
repFromTo :: Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repFromTo (MkC x) (MkC y) = rep2 fromToEName [x,y]
repFromThenTo :: Core TH.ExpQ -> Core TH.ExpQ -> Core TH.ExpQ -> DsM (Core TH.ExpQ)
repFromThenTo (MkC x) (MkC y) (MkC z) = rep2 fromThenToEName [x,y,z]
repMatch :: Core TH.PatQ -> Core TH.BodyQ -> Core [TH.DecQ] -> DsM (Core TH.MatchQ)
repMatch (MkC p) (MkC bod) (MkC ds) = rep2 matchName [p, bod, ds]
repClause :: Core [TH.PatQ] -> Core TH.BodyQ -> Core [TH.DecQ] -> DsM (Core TH.ClauseQ)
repClause (MkC ps) (MkC bod) (MkC ds) = rep2 clauseName [ps, bod, ds]
repVal :: Core TH.PatQ -> Core TH.BodyQ -> Core [TH.DecQ] -> DsM (Core TH.DecQ)
repVal (MkC p) (MkC b) (MkC ds) = rep2 valDName [p, b, ds]
repFun :: Core TH.Name -> Core [TH.ClauseQ] -> DsM (Core TH.DecQ)
repFun (MkC nm) (MkC b) = rep2 funDName [nm, b]
repData :: Core TH.CxtQ -> Core TH.Name
-> Either (Core [TH.TyVarBndrQ])
(Core (Maybe [TH.TyVarBndrQ]), Core TH.TypeQ)
-> Core (Maybe TH.KindQ) -> Core [TH.ConQ] -> Core [TH.DerivClauseQ]
-> DsM (Core TH.DecQ)
repData (MkC cxt) (MkC nm) (Left (MkC tvs)) (MkC ksig) (MkC cons) (MkC derivs)
= rep2 dataDName [cxt, nm, tvs, ksig, cons, derivs]
repData (MkC cxt) (MkC _) (Right (MkC mb_bndrs, MkC ty)) (MkC ksig) (MkC cons)
(MkC derivs)
= rep2 dataInstDName [cxt, mb_bndrs, ty, ksig, cons, derivs]
repNewtype :: Core TH.CxtQ -> Core TH.Name
-> Either (Core [TH.TyVarBndrQ])
(Core (Maybe [TH.TyVarBndrQ]), Core TH.TypeQ)
-> Core (Maybe TH.KindQ) -> Core TH.ConQ -> Core [TH.DerivClauseQ]
-> DsM (Core TH.DecQ)
repNewtype (MkC cxt) (MkC nm) (Left (MkC tvs)) (MkC ksig) (MkC con)
(MkC derivs)
= rep2 newtypeDName [cxt, nm, tvs, ksig, con, derivs]
repNewtype (MkC cxt) (MkC _) (Right (MkC mb_bndrs, MkC ty)) (MkC ksig) (MkC con)
(MkC derivs)
= rep2 newtypeInstDName [cxt, mb_bndrs, ty, ksig, con, derivs]
repTySyn :: Core TH.Name -> Core [TH.TyVarBndrQ]
-> Core TH.TypeQ -> DsM (Core TH.DecQ)
repTySyn (MkC nm) (MkC tvs) (MkC rhs)
= rep2 tySynDName [nm, tvs, rhs]
repInst :: Core (Maybe TH.Overlap) ->
Core TH.CxtQ -> Core TH.TypeQ -> Core [TH.DecQ] -> DsM (Core TH.DecQ)
repInst (MkC o) (MkC cxt) (MkC ty) (MkC ds) = rep2 instanceWithOverlapDName
[o, cxt, ty, ds]
repDerivStrategy :: Maybe (LDerivStrategy GhcRn)
-> DsM (Core (Maybe TH.DerivStrategyQ))
repDerivStrategy mds =
case mds of
Nothing -> nothing
Just ds ->
case unLoc ds of
StockStrategy -> just =<< repStockStrategy
AnyclassStrategy -> just =<< repAnyclassStrategy
NewtypeStrategy -> just =<< repNewtypeStrategy
ViaStrategy ty -> do ty' <- repLTy (hsSigType ty)
via_strat <- repViaStrategy ty'
just via_strat
where
nothing = coreNothing derivStrategyQTyConName
just = coreJust derivStrategyQTyConName
repStockStrategy :: DsM (Core TH.DerivStrategyQ)
repStockStrategy = rep2 stockStrategyName []
repAnyclassStrategy :: DsM (Core TH.DerivStrategyQ)
repAnyclassStrategy = rep2 anyclassStrategyName []
repNewtypeStrategy :: DsM (Core TH.DerivStrategyQ)
repNewtypeStrategy = rep2 newtypeStrategyName []
repViaStrategy :: Core TH.TypeQ -> DsM (Core TH.DerivStrategyQ)
repViaStrategy (MkC t) = rep2 viaStrategyName [t]
repOverlap :: Maybe OverlapMode -> DsM (Core (Maybe TH.Overlap))
repOverlap mb =
case mb of
Nothing -> nothing
Just o ->
case o of
NoOverlap _ -> nothing
Overlappable _ -> just =<< dataCon overlappableDataConName
Overlapping _ -> just =<< dataCon overlappingDataConName
Overlaps _ -> just =<< dataCon overlapsDataConName
Incoherent _ -> just =<< dataCon incoherentDataConName
where
nothing = coreNothing overlapTyConName
just = coreJust overlapTyConName
repClass :: Core TH.CxtQ -> Core TH.Name -> Core [TH.TyVarBndrQ]
-> Core [TH.FunDep] -> Core [TH.DecQ]
-> DsM (Core TH.DecQ)
repClass (MkC cxt) (MkC cls) (MkC tvs) (MkC fds) (MkC ds)
= rep2 classDName [cxt, cls, tvs, fds, ds]
repDeriv :: Core (Maybe TH.DerivStrategyQ)
-> Core TH.CxtQ -> Core TH.TypeQ
-> DsM (Core TH.DecQ)
repDeriv (MkC ds) (MkC cxt) (MkC ty)
= rep2 standaloneDerivWithStrategyDName [ds, cxt, ty]
repPragInl :: Core TH.Name -> Core TH.Inline -> Core TH.RuleMatch
-> Core TH.Phases -> DsM (Core TH.DecQ)
repPragInl (MkC nm) (MkC inline) (MkC rm) (MkC phases)
= rep2 pragInlDName [nm, inline, rm, phases]
repPragSpec :: Core TH.Name -> Core TH.TypeQ -> Core TH.Phases
-> DsM (Core TH.DecQ)
repPragSpec (MkC nm) (MkC ty) (MkC phases)
= rep2 pragSpecDName [nm, ty, phases]
repPragSpecInl :: Core TH.Name -> Core TH.TypeQ -> Core TH.Inline
-> Core TH.Phases -> DsM (Core TH.DecQ)
repPragSpecInl (MkC nm) (MkC ty) (MkC inline) (MkC phases)
= rep2 pragSpecInlDName [nm, ty, inline, phases]
repPragSpecInst :: Core TH.TypeQ -> DsM (Core TH.DecQ)
repPragSpecInst (MkC ty) = rep2 pragSpecInstDName [ty]
repPragComplete :: Core [TH.Name] -> Core (Maybe TH.Name) -> DsM (Core TH.DecQ)
repPragComplete (MkC cls) (MkC mty) = rep2 pragCompleteDName [cls, mty]
repPragRule :: Core String -> Core (Maybe [TH.TyVarBndrQ])
-> Core [TH.RuleBndrQ] -> Core TH.ExpQ -> Core TH.ExpQ
-> Core TH.Phases -> DsM (Core TH.DecQ)
repPragRule (MkC nm) (MkC ty_bndrs) (MkC tm_bndrs) (MkC lhs) (MkC rhs) (MkC phases)
= rep2 pragRuleDName [nm, ty_bndrs, tm_bndrs, lhs, rhs, phases]
repPragAnn :: Core TH.AnnTarget -> Core TH.ExpQ -> DsM (Core TH.DecQ)
repPragAnn (MkC targ) (MkC e) = rep2 pragAnnDName [targ, e]
repTySynInst :: Core TH.TySynEqnQ -> DsM (Core TH.DecQ)
repTySynInst (MkC eqn)
= rep2 tySynInstDName [eqn]
repDataFamilyD :: Core TH.Name -> Core [TH.TyVarBndrQ]
-> Core (Maybe TH.KindQ) -> DsM (Core TH.DecQ)
repDataFamilyD (MkC nm) (MkC tvs) (MkC kind)
= rep2 dataFamilyDName [nm, tvs, kind]
repOpenFamilyD :: Core TH.Name
-> Core [TH.TyVarBndrQ]
-> Core TH.FamilyResultSigQ
-> Core (Maybe TH.InjectivityAnn)
-> DsM (Core TH.DecQ)
repOpenFamilyD (MkC nm) (MkC tvs) (MkC result) (MkC inj)
= rep2 openTypeFamilyDName [nm, tvs, result, inj]
repClosedFamilyD :: Core TH.Name
-> Core [TH.TyVarBndrQ]
-> Core TH.FamilyResultSigQ
-> Core (Maybe TH.InjectivityAnn)
-> Core [TH.TySynEqnQ]
-> DsM (Core TH.DecQ)
repClosedFamilyD (MkC nm) (MkC tvs) (MkC res) (MkC inj) (MkC eqns)
= rep2 closedTypeFamilyDName [nm, tvs, res, inj, eqns]
repTySynEqn :: Core (Maybe [TH.TyVarBndrQ]) ->
Core TH.TypeQ -> Core TH.TypeQ -> DsM (Core TH.TySynEqnQ)
repTySynEqn (MkC mb_bndrs) (MkC lhs) (MkC rhs)
= rep2 tySynEqnName [mb_bndrs, lhs, rhs]
repRoleAnnotD :: Core TH.Name -> Core [TH.Role] -> DsM (Core TH.DecQ)
repRoleAnnotD (MkC n) (MkC roles) = rep2 roleAnnotDName [n, roles]
repFunDep :: Core [TH.Name] -> Core [TH.Name] -> DsM (Core TH.FunDep)
repFunDep (MkC xs) (MkC ys) = rep2 funDepName [xs, ys]
repProto :: Name -> Core TH.Name -> Core TH.TypeQ -> DsM (Core TH.DecQ)
repProto mk_sig (MkC s) (MkC ty) = rep2 mk_sig [s, ty]
repImplicitParamBind :: Core String -> Core TH.ExpQ -> DsM (Core TH.DecQ)
repImplicitParamBind (MkC n) (MkC e) = rep2 implicitParamBindDName [n, e]
repCtxt :: Core [TH.PredQ] -> DsM (Core TH.CxtQ)
repCtxt (MkC tys) = rep2 cxtName [tys]
repDataCon :: Located Name
-> HsConDeclDetails GhcRn
-> DsM (Core TH.ConQ)
repDataCon con details
= do con' <- lookupLOcc con
repConstr details Nothing [con']
repGadtDataCons :: [Located Name]
-> HsConDeclDetails GhcRn
-> LHsType GhcRn
-> DsM (Core TH.ConQ)
repGadtDataCons cons details res_ty
= do cons' <- mapM lookupLOcc cons
repConstr details (Just res_ty) cons'
repConstr :: HsConDeclDetails GhcRn
-> Maybe (LHsType GhcRn)
-> [Core TH.Name]
-> DsM (Core TH.ConQ)
repConstr (PrefixCon ps) Nothing [con]
= do arg_tys <- repList bangTypeQTyConName repBangTy ps
rep2 normalCName [unC con, unC arg_tys]
repConstr (PrefixCon ps) (Just res_ty) cons
= do arg_tys <- repList bangTypeQTyConName repBangTy ps
res_ty' <- repLTy res_ty
rep2 gadtCName [ unC (nonEmptyCoreList cons), unC arg_tys, unC res_ty']
repConstr (RecCon ips) resTy cons
= do args <- concatMapM rep_ip (unLoc ips)
arg_vtys <- coreList varBangTypeQTyConName args
case resTy of
Nothing -> rep2 recCName [unC (head cons), unC arg_vtys]
Just res_ty -> do
res_ty' <- repLTy res_ty
rep2 recGadtCName [unC (nonEmptyCoreList cons), unC arg_vtys,
unC res_ty']
where
rep_ip (L _ ip) = mapM (rep_one_ip (cd_fld_type ip)) (cd_fld_names ip)
rep_one_ip :: LBangType GhcRn -> LFieldOcc GhcRn -> DsM (Core a)
rep_one_ip t n = do { MkC v <- lookupOcc (extFieldOcc $ unLoc n)
; MkC ty <- repBangTy t
; rep2 varBangTypeName [v,ty] }
repConstr (InfixCon st1 st2) Nothing [con]
= do arg1 <- repBangTy st1
arg2 <- repBangTy st2
rep2 infixCName [unC arg1, unC con, unC arg2]
repConstr (InfixCon {}) (Just _) _ =
panic "repConstr: infix GADT constructor should be in a PrefixCon"
repConstr _ _ _ =
panic "repConstr: invariant violated"
repTForall :: Core [TH.TyVarBndrQ] -> Core TH.CxtQ -> Core TH.TypeQ
-> DsM (Core TH.TypeQ)
repTForall (MkC tvars) (MkC ctxt) (MkC ty)
= rep2 forallTName [tvars, ctxt, ty]
repTForallVis :: Core [TH.TyVarBndrQ] -> Core TH.TypeQ
-> DsM (Core TH.TypeQ)
repTForallVis (MkC tvars) (MkC ty) = rep2 forallVisTName [tvars, ty]
repTvar :: Core TH.Name -> DsM (Core TH.TypeQ)
repTvar (MkC s) = rep2 varTName [s]
repTapp :: Core TH.TypeQ -> Core TH.TypeQ -> DsM (Core TH.TypeQ)
repTapp (MkC t1) (MkC t2) = rep2 appTName [t1, t2]
repTappKind :: Core TH.TypeQ -> Core TH.KindQ -> DsM (Core TH.TypeQ)
repTappKind (MkC ty) (MkC ki) = rep2 appKindTName [ty,ki]
repTapps :: Core TH.TypeQ -> [Core TH.TypeQ] -> DsM (Core TH.TypeQ)
repTapps f [] = return f
repTapps f (t:ts) = do { f1 <- repTapp f t; repTapps f1 ts }
repTSig :: Core TH.TypeQ -> Core TH.KindQ -> DsM (Core TH.TypeQ)
repTSig (MkC ty) (MkC ki) = rep2 sigTName [ty, ki]
repTequality :: DsM (Core TH.TypeQ)
repTequality = rep2 equalityTName []
repTPromotedList :: [Core TH.TypeQ] -> DsM (Core TH.TypeQ)
repTPromotedList [] = repPromotedNilTyCon
repTPromotedList (t:ts) = do { tcon <- repPromotedConsTyCon
; f <- repTapp tcon t
; t' <- repTPromotedList ts
; repTapp f t'
}
repTLit :: Core TH.TyLitQ -> DsM (Core TH.TypeQ)
repTLit (MkC lit) = rep2 litTName [lit]
repTWildCard :: DsM (Core TH.TypeQ)
repTWildCard = rep2 wildCardTName []
repTImplicitParam :: Core String -> Core TH.TypeQ -> DsM (Core TH.TypeQ)
repTImplicitParam (MkC n) (MkC e) = rep2 implicitParamTName [n, e]
repTStar :: DsM (Core TH.TypeQ)
repTStar = rep2 starKName []
repTConstraint :: DsM (Core TH.TypeQ)
repTConstraint = rep2 constraintKName []
repNamedTyCon :: Core TH.Name -> DsM (Core TH.TypeQ)
repNamedTyCon (MkC s) = rep2 conTName [s]
repTInfix :: Core TH.TypeQ -> Core TH.Name -> Core TH.TypeQ
-> DsM (Core TH.TypeQ)
repTInfix (MkC t1) (MkC name) (MkC t2) = rep2 infixTName [t1,name,t2]
repTupleTyCon :: Int -> DsM (Core TH.TypeQ)
repTupleTyCon i = do dflags <- getDynFlags
rep2 tupleTName [mkIntExprInt dflags i]
repUnboxedTupleTyCon :: Int -> DsM (Core TH.TypeQ)
repUnboxedTupleTyCon i = do dflags <- getDynFlags
rep2 unboxedTupleTName [mkIntExprInt dflags i]
repUnboxedSumTyCon :: TH.SumArity -> DsM (Core TH.TypeQ)
repUnboxedSumTyCon arity = do dflags <- getDynFlags
rep2 unboxedSumTName [mkIntExprInt dflags arity]
repArrowTyCon :: DsM (Core TH.TypeQ)
repArrowTyCon = rep2 arrowTName []
repListTyCon :: DsM (Core TH.TypeQ)
repListTyCon = rep2 listTName []
repPromotedDataCon :: Core TH.Name -> DsM (Core TH.TypeQ)
repPromotedDataCon (MkC s) = rep2 promotedTName [s]
repPromotedTupleTyCon :: Int -> DsM (Core TH.TypeQ)
repPromotedTupleTyCon i = do dflags <- getDynFlags
rep2 promotedTupleTName [mkIntExprInt dflags i]
repPromotedNilTyCon :: DsM (Core TH.TypeQ)
repPromotedNilTyCon = rep2 promotedNilTName []
repPromotedConsTyCon :: DsM (Core TH.TypeQ)
repPromotedConsTyCon = rep2 promotedConsTName []
repPlainTV :: Core TH.Name -> DsM (Core TH.TyVarBndrQ)
repPlainTV (MkC nm) = rep2 plainTVName [nm]
repKindedTV :: Core TH.Name -> Core TH.KindQ -> DsM (Core TH.TyVarBndrQ)
repKindedTV (MkC nm) (MkC ki) = rep2 kindedTVName [nm, ki]
repNoSig :: DsM (Core TH.FamilyResultSigQ)
repNoSig = rep2 noSigName []
repKindSig :: Core TH.KindQ -> DsM (Core TH.FamilyResultSigQ)
repKindSig (MkC ki) = rep2 kindSigName [ki]
repTyVarSig :: Core TH.TyVarBndrQ -> DsM (Core TH.FamilyResultSigQ)
repTyVarSig (MkC bndr) = rep2 tyVarSigName [bndr]
repLiteral :: HsLit GhcRn -> DsM (Core TH.Lit)
repLiteral (HsStringPrim _ bs)
= do dflags <- getDynFlags
word8_ty <- lookupType word8TyConName
let w8s = unpack bs
w8s_expr = map (\w8 -> mkCoreConApps word8DataCon
[mkWordLit dflags (toInteger w8)]) w8s
rep2 stringPrimLName [mkListExpr word8_ty w8s_expr]
repLiteral lit
= do lit' <- case lit of
HsIntPrim _ i -> mk_integer i
HsWordPrim _ w -> mk_integer w
HsInt _ i -> mk_integer (il_value i)
HsFloatPrim _ r -> mk_rational r
HsDoublePrim _ r -> mk_rational r
HsCharPrim _ c -> mk_char c
_ -> return lit
lit_expr <- dsLit lit'
case mb_lit_name of
Just lit_name -> rep2 lit_name [lit_expr]
Nothing -> notHandled "Exotic literal" (ppr lit)
where
mb_lit_name = case lit of
HsInteger _ _ _ -> Just integerLName
HsInt _ _ -> Just integerLName
HsIntPrim _ _ -> Just intPrimLName
HsWordPrim _ _ -> Just wordPrimLName
HsFloatPrim _ _ -> Just floatPrimLName
HsDoublePrim _ _ -> Just doublePrimLName
HsChar _ _ -> Just charLName
HsCharPrim _ _ -> Just charPrimLName
HsString _ _ -> Just stringLName
HsRat _ _ _ -> Just rationalLName
_ -> Nothing
mk_integer :: Integer -> DsM (HsLit GhcRn)
mk_integer i = do integer_ty <- lookupType integerTyConName
return $ HsInteger NoSourceText i integer_ty
mk_rational :: FractionalLit -> DsM (HsLit GhcRn)
mk_rational r = do rat_ty <- lookupType rationalTyConName
return $ HsRat noExtField r rat_ty
mk_string :: FastString -> DsM (HsLit GhcRn)
mk_string s = return $ HsString NoSourceText s
mk_char :: Char -> DsM (HsLit GhcRn)
mk_char c = return $ HsChar NoSourceText c
repOverloadedLiteral :: HsOverLit GhcRn -> DsM (Core TH.Lit)
repOverloadedLiteral (OverLit { ol_val = val})
= do { lit <- mk_lit val; repLiteral lit }
repOverloadedLiteral (XOverLit nec) = noExtCon nec
mk_lit :: OverLitVal -> DsM (HsLit GhcRn)
mk_lit (HsIntegral i) = mk_integer (il_value i)
mk_lit (HsFractional f) = mk_rational f
mk_lit (HsIsString _ s) = mk_string s
repNameS :: Core String -> DsM (Core TH.Name)
repNameS (MkC name) = rep2 mkNameSName [name]
repGensym :: Core String -> DsM (Core (TH.Q TH.Name))
repGensym (MkC lit_str) = rep2 newNameName [lit_str]
repBindQ :: Type -> Type
-> Core (TH.Q a) -> Core (a -> TH.Q b) -> DsM (Core (TH.Q b))
repBindQ ty_a ty_b (MkC x) (MkC y)
= rep2 bindQName [Type ty_a, Type ty_b, x, y]
repSequenceQ :: Type -> Core [TH.Q a] -> DsM (Core (TH.Q [a]))
repSequenceQ ty_a (MkC list)
= rep2 sequenceQName [Type ty_a, list]
repUnboundVar :: Core TH.Name -> DsM (Core TH.ExpQ)
repUnboundVar (MkC name) = rep2 unboundVarEName [name]
repOverLabel :: FastString -> DsM (Core TH.ExpQ)
repOverLabel fs = do
(MkC s) <- coreStringLit $ unpackFS fs
rep2 labelEName [s]
repList :: Name -> (a -> DsM (Core b))
-> [a] -> DsM (Core [b])
repList tc_name f args
= do { args1 <- mapM f args
; coreList tc_name args1 }
coreList :: Name
-> [Core a] -> DsM (Core [a])
coreList tc_name es
= do { elt_ty <- lookupType tc_name; return (coreList' elt_ty es) }
coreList' :: Type
-> [Core a] -> Core [a]
coreList' elt_ty es = MkC (mkListExpr elt_ty (map unC es ))
nonEmptyCoreList :: [Core a] -> Core [a]
nonEmptyCoreList [] = panic "coreList: empty argument"
nonEmptyCoreList xs@(MkC x:_) = MkC (mkListExpr (exprType x) (map unC xs))
coreStringLit :: String -> DsM (Core String)
coreStringLit s = do { z <- mkStringExpr s; return(MkC z) }
repMaybe :: Name -> (a -> DsM (Core b))
-> Maybe a -> DsM (Core (Maybe b))
repMaybe tc_name _ Nothing = coreNothing tc_name
repMaybe tc_name f (Just es) = coreJust tc_name =<< f es
coreNothing :: Name
-> DsM (Core (Maybe a))
coreNothing tc_name =
do { elt_ty <- lookupType tc_name; return (coreNothing' elt_ty) }
coreNothing' :: Type
-> Core (Maybe a)
coreNothing' elt_ty = MkC (mkNothingExpr elt_ty)
coreJust :: Name
-> Core a -> DsM (Core (Maybe a))
coreJust tc_name es
= do { elt_ty <- lookupType tc_name; return (coreJust' elt_ty es) }
coreJust' :: Type
-> Core a -> Core (Maybe a)
coreJust' elt_ty es = MkC (mkJustExpr elt_ty (unC es))
repMaybeList :: Name -> (a -> DsM (Core b))
-> Maybe [a] -> DsM (Core (Maybe [b]))
repMaybeList tc_name _ Nothing = coreNothingList tc_name
repMaybeList tc_name f (Just args)
= do { elt_ty <- lookupType tc_name
; args1 <- mapM f args
; return $ coreJust' (mkListTy elt_ty) (coreList' elt_ty args1) }
coreNothingList :: Name -> DsM (Core (Maybe [a]))
coreNothingList tc_name
= do { elt_ty <- lookupType tc_name
; return $ coreNothing' (mkListTy elt_ty) }
coreJustList :: Name -> Core [a] -> DsM (Core (Maybe [a]))
coreJustList tc_name args
= do { elt_ty <- lookupType tc_name
; return $ coreJust' (mkListTy elt_ty) args }
coreIntLit :: Int -> DsM (Core Int)
coreIntLit i = do dflags <- getDynFlags
return (MkC (mkIntExprInt dflags i))
coreIntegerLit :: Integer -> DsM (Core Integer)
coreIntegerLit i = fmap MkC (mkIntegerExpr i)
coreVar :: Id -> Core TH.Name
coreVar id = MkC (Var id)
notHandledL :: SrcSpan -> String -> SDoc -> DsM a
notHandledL loc what doc
| isGoodSrcSpan loc
= putSrcSpanDs loc $ notHandled what doc
| otherwise
= notHandled what doc
notHandled :: String -> SDoc -> DsM a
notHandled what doc = failWithDs msg
where
msg = hang (text what <+> text "not (yet) handled by Template Haskell")
2 doc