module TcForeign
        ( tcForeignImports
        , tcForeignExports
        
        , isForeignImport, isForeignExport
        , tcFImport, tcFExport
        , tcForeignImports'
        , tcCheckFIType, checkCTarget, checkForeignArgs, checkForeignRes
        , normaliseFfiType
        , nonIOok, mustBeIO
        , checkSafe, noCheckSafe
        , tcForeignExports'
        , tcCheckFEType
        ) where
#include "HsVersions.h"
import GhcPrelude
import HsSyn
import TcRnMonad
import TcHsType
import TcExpr
import TcEnv
import FamInst
import FamInstEnv
import Coercion
import Type
import ForeignCall
import ErrUtils
import Id
import Name
import RdrName
import DataCon
import TyCon
import TcType
import PrelNames
import DynFlags
import Outputable
import Platform
import SrcLoc
import Bag
import Hooks
import qualified GHC.LanguageExtensions as LangExt
import Control.Monad
import Data.Maybe
isForeignImport :: LForeignDecl name -> Bool
isForeignImport (L _ (ForeignImport {})) = True
isForeignImport _                        = False
isForeignExport :: LForeignDecl name -> Bool
isForeignExport (L _ (ForeignExport {})) = True
isForeignExport _                        = False
normaliseFfiType :: Type -> TcM (Coercion, Type, Bag GlobalRdrElt)
normaliseFfiType ty
    = do fam_envs <- tcGetFamInstEnvs
         normaliseFfiType' fam_envs ty
normaliseFfiType' :: FamInstEnvs -> Type -> TcM (Coercion, Type, Bag GlobalRdrElt)
normaliseFfiType' env ty0 = go initRecTc ty0
  where
    go :: RecTcChecker -> Type -> TcM (Coercion, Type, Bag GlobalRdrElt)
    go rec_nts ty
      | Just ty' <- tcView ty     
      = go rec_nts ty'
      | Just (tc, tys) <- splitTyConApp_maybe ty
      = go_tc_app rec_nts tc tys
      | (bndrs, inner_ty) <- splitForAllTyVarBndrs ty
      , not (null bndrs)
      = do (coi, nty1, gres1) <- go rec_nts inner_ty
           return ( mkHomoForAllCos (binderVars bndrs) coi
                  , mkForAllTys bndrs nty1, gres1 )
      | otherwise 
      = return (mkRepReflCo ty, ty, emptyBag)
    go_tc_app :: RecTcChecker -> TyCon -> [Type]
              -> TcM (Coercion, Type, Bag GlobalRdrElt)
    go_tc_app rec_nts tc tys
        
        
        | tc_key `elem` [ioTyConKey, funPtrTyConKey, funTyConKey]
                  
                  
        = children_only
        | isNewTyCon tc         
        , Just rec_nts' <- checkRecTc rec_nts tc
                   
                   
                   
                   
                   
                   
        = do { rdr_env <- getGlobalRdrEnv
             ; case checkNewtypeFFI rdr_env tc of
                 Nothing  -> nothing
                 Just gre -> do { (co', ty', gres) <- go rec_nts' nt_rhs
                                ; return (mkTransCo nt_co co', ty', gre `consBag` gres) } }
        | isFamilyTyCon tc              
        , (co, ty) <- normaliseTcApp env Representational tc tys
        , not (isReflexiveCo co)
        = do (co', ty', gres) <- go rec_nts ty
             return (mkTransCo co co', ty', gres)
        | otherwise
        = nothing 
        where
          tc_key = getUnique tc
          children_only
            = do xs <- mapM (go rec_nts) tys
                 let (cos, tys', gres) = unzip3 xs
                        
                        
                     cos' = zipWith3 downgradeRole (tyConRoles tc)
                                     (repeat Representational) cos
                 return ( mkTyConAppCo Representational tc cos'
                        , mkTyConApp tc tys', unionManyBags gres)
          nt_co  = mkUnbranchedAxInstCo Representational (newTyConCo tc) tys []
          nt_rhs = newTyConInstRhs tc tys
          ty      = mkTyConApp tc tys
          nothing = return (mkRepReflCo ty, ty, emptyBag)
checkNewtypeFFI :: GlobalRdrEnv -> TyCon -> Maybe GlobalRdrElt
checkNewtypeFFI rdr_env tc
  | Just con <- tyConSingleDataCon_maybe tc
  , Just gre <- lookupGRE_Name rdr_env (dataConName con)
  = Just gre    
  | otherwise
  = Nothing
tcForeignImports :: [LForeignDecl GhcRn]
                 -> TcM ([Id], [LForeignDecl GhcTc], Bag GlobalRdrElt)
tcForeignImports decls
  = getHooked tcForeignImportsHook tcForeignImports' >>= ($ decls)
tcForeignImports' :: [LForeignDecl GhcRn]
                  -> TcM ([Id], [LForeignDecl GhcTc], Bag GlobalRdrElt)
tcForeignImports' decls
  = do { (ids, decls, gres) <- mapAndUnzip3M tcFImport $
                               filter isForeignImport decls
       ; return (ids, decls, unionManyBags gres) }
tcFImport :: LForeignDecl GhcRn
          -> TcM (Id, LForeignDecl GhcTc, Bag GlobalRdrElt)
tcFImport (L dloc fo@(ForeignImport { fd_name = L nloc nm, fd_sig_ty = hs_ty
                                    , fd_fi = imp_decl }))
  = setSrcSpan dloc $ addErrCtxt (foreignDeclCtxt fo)  $
    do { sig_ty <- tcHsSigType (ForSigCtxt nm) hs_ty
       ; (norm_co, norm_sig_ty, gres) <- normaliseFfiType sig_ty
       ; let
           
           
             (bndrs, res_ty)   = tcSplitPiTys norm_sig_ty
             arg_tys           = mapMaybe binderRelevantType_maybe bndrs
             id                = mkLocalId nm sig_ty
                 
                 
                 
       ; imp_decl' <- tcCheckFIType arg_tys res_ty imp_decl
          
          
       ; let fi_decl = ForeignImport { fd_name = L nloc id
                                     , fd_sig_ty = undefined
                                     , fd_i_ext = mkSymCo norm_co
                                     , fd_fi = imp_decl' }
       ; return (id, L dloc fi_decl, gres) }
tcFImport d = pprPanic "tcFImport" (ppr d)
tcCheckFIType :: [Type] -> Type -> ForeignImport -> TcM ForeignImport
tcCheckFIType arg_tys res_ty (CImport (L lc cconv) safety mh l@(CLabel _) src)
  
  = do checkCg checkCOrAsmOrLlvmOrInterp
       
       
       check (isFFILabelTy (mkFunTys arg_tys res_ty)) (illegalForeignTyErr Outputable.empty)
       cconv' <- checkCConv cconv
       return (CImport (L lc cconv') safety mh l src)
tcCheckFIType arg_tys res_ty (CImport (L lc cconv) safety mh CWrapper src) = do
        
        
        
        
    checkCg checkCOrAsmOrLlvmOrInterp
    cconv' <- checkCConv cconv
    case arg_tys of
        [arg1_ty] -> do checkForeignArgs isFFIExternalTy arg1_tys
                        checkForeignRes nonIOok  checkSafe isFFIExportResultTy res1_ty
                        checkForeignRes mustBeIO checkSafe (isFFIDynTy arg1_ty) res_ty
                  where
                     (arg1_tys, res1_ty) = tcSplitFunTys arg1_ty
        _ -> addErrTc (illegalForeignTyErr Outputable.empty (text "One argument expected"))
    return (CImport (L lc cconv') safety mh CWrapper src)
tcCheckFIType arg_tys res_ty idecl@(CImport (L lc cconv) (L ls safety) mh
                                            (CFunction target) src)
  | isDynamicTarget target = do 
      checkCg checkCOrAsmOrLlvmOrInterp
      cconv' <- checkCConv cconv
      case arg_tys of           
        []                ->
          addErrTc (illegalForeignTyErr Outputable.empty (text "At least one argument expected"))
        (arg1_ty:arg_tys) -> do
          dflags <- getDynFlags
          let curried_res_ty = mkFunTys arg_tys res_ty
          check (isFFIDynTy curried_res_ty arg1_ty)
                (illegalForeignTyErr argument)
          checkForeignArgs (isFFIArgumentTy dflags safety) arg_tys
          checkForeignRes nonIOok checkSafe (isFFIImportResultTy dflags) res_ty
      return $ CImport (L lc cconv') (L ls safety) mh (CFunction target) src
  | cconv == PrimCallConv = do
      dflags <- getDynFlags
      checkTc (xopt LangExt.GHCForeignImportPrim dflags)
              (text "Use GHCForeignImportPrim to allow `foreign import prim'.")
      checkCg checkCOrAsmOrLlvmOrInterp
      checkCTarget target
      checkTc (playSafe safety)
              (text "The safe/unsafe annotation should not be used with `foreign import prim'.")
      checkForeignArgs (isFFIPrimArgumentTy dflags) arg_tys
      
      checkForeignRes nonIOok checkSafe (isFFIPrimResultTy dflags) res_ty
      return idecl
  | otherwise = do              
      checkCg checkCOrAsmOrLlvmOrInterp
      cconv' <- checkCConv cconv
      checkCTarget target
      dflags <- getDynFlags
      checkForeignArgs (isFFIArgumentTy dflags safety) arg_tys
      checkForeignRes nonIOok checkSafe (isFFIImportResultTy dflags) res_ty
      checkMissingAmpersand dflags arg_tys res_ty
      case target of
          StaticTarget _ _ _ False
           | not (null arg_tys) ->
              addErrTc (text "`value' imports cannot have function types")
          _ -> return ()
      return $ CImport (L lc cconv') (L ls safety) mh (CFunction target) src
checkCTarget :: CCallTarget -> TcM ()
checkCTarget (StaticTarget _ str _ _) = do
    checkCg checkCOrAsmOrLlvmOrInterp
    checkTc (isCLabelString str) (badCName str)
checkCTarget DynamicTarget = panic "checkCTarget DynamicTarget"
checkMissingAmpersand :: DynFlags -> [Type] -> Type -> TcM ()
checkMissingAmpersand dflags arg_tys res_ty
  | null arg_tys && isFunPtrTy res_ty &&
    wopt Opt_WarnDodgyForeignImports dflags
  = addWarn (Reason Opt_WarnDodgyForeignImports)
        (text "possible missing & in foreign import of FunPtr")
  | otherwise
  = return ()
tcForeignExports :: [LForeignDecl GhcRn]
             -> TcM (LHsBinds GhcTcId, [LForeignDecl GhcTcId], Bag GlobalRdrElt)
tcForeignExports decls =
  getHooked tcForeignExportsHook tcForeignExports' >>= ($ decls)
tcForeignExports' :: [LForeignDecl GhcRn]
             -> TcM (LHsBinds GhcTcId, [LForeignDecl GhcTcId], Bag GlobalRdrElt)
tcForeignExports' decls
  = foldlM combine (emptyLHsBinds, [], emptyBag) (filter isForeignExport decls)
  where
   combine (binds, fs, gres1) (L loc fe) = do
       (b, f, gres2) <- setSrcSpan loc (tcFExport fe)
       return (b `consBag` binds, L loc f : fs, gres1 `unionBags` gres2)
tcFExport :: ForeignDecl GhcRn
          -> TcM (LHsBind GhcTc, ForeignDecl GhcTc, Bag GlobalRdrElt)
tcFExport fo@(ForeignExport { fd_name = L loc nm, fd_sig_ty = hs_ty, fd_fe = spec })
  = addErrCtxt (foreignDeclCtxt fo) $ do
    sig_ty <- tcHsSigType (ForSigCtxt nm) hs_ty
    rhs <- tcPolyExpr (nlHsVar nm) sig_ty
    (norm_co, norm_sig_ty, gres) <- normaliseFfiType sig_ty
    spec' <- tcCheckFEType norm_sig_ty spec
           
           
           
           
    
    
    
    id  <- mkStableIdFromName nm sig_ty loc mkForeignExportOcc
    return ( mkVarBind id rhs
           , ForeignExport { fd_name = L loc id
                           , fd_sig_ty = undefined
                           , fd_e_ext = norm_co, fd_fe = spec' }
           , gres)
tcFExport d = pprPanic "tcFExport" (ppr d)
tcCheckFEType :: Type -> ForeignExport -> TcM ForeignExport
tcCheckFEType sig_ty (CExport (L l (CExportStatic esrc str cconv)) src) = do
    checkCg checkCOrAsmOrLlvm
    checkTc (isCLabelString str) (badCName str)
    cconv' <- checkCConv cconv
    checkForeignArgs isFFIExternalTy arg_tys
    checkForeignRes nonIOok noCheckSafe isFFIExportResultTy res_ty
    return (CExport (L l (CExportStatic esrc str cconv')) src)
  where
      
      
    (bndrs, res_ty) = tcSplitPiTys sig_ty
    arg_tys         = mapMaybe binderRelevantType_maybe bndrs
checkForeignArgs :: (Type -> Validity) -> [Type] -> TcM ()
checkForeignArgs pred tys = mapM_ go tys
  where
    go ty = check (pred ty) (illegalForeignTyErr argument)
checkForeignRes :: Bool -> Bool -> (Type -> Validity) -> Type -> TcM ()
checkForeignRes non_io_result_ok check_safe pred_res_ty ty
  | Just (_, res_ty) <- tcSplitIOType_maybe ty
  =     
     check (pred_res_ty res_ty) (illegalForeignTyErr result)
  
  | not non_io_result_ok
  = addErrTc $ illegalForeignTyErr result (text "IO result type expected")
  | otherwise
  = do { dflags <- getDynFlags
       ; case pred_res_ty ty of
                
                
           NotValid msg -> addErrTc $ illegalForeignTyErr result msg
           
           _ | check_safe && safeInferOn dflags
               -> recordUnsafeInfer emptyBag
           
           _ | check_safe && safeLanguageOn dflags
               -> addErrTc (illegalForeignTyErr result safeHsErr)
           
           _ -> return () }
  where
    safeHsErr =
      text "Safe Haskell is on, all FFI imports must be in the IO monad"
nonIOok, mustBeIO :: Bool
nonIOok  = True
mustBeIO = False
checkSafe, noCheckSafe :: Bool
checkSafe   = True
noCheckSafe = False
checkCOrAsmOrLlvm :: HscTarget -> Validity
checkCOrAsmOrLlvm HscC    = IsValid
checkCOrAsmOrLlvm HscAsm  = IsValid
checkCOrAsmOrLlvm HscLlvm = IsValid
checkCOrAsmOrLlvm _
  = NotValid (text "requires unregisterised, llvm (-fllvm) or native code generation (-fasm)")
checkCOrAsmOrLlvmOrInterp :: HscTarget -> Validity
checkCOrAsmOrLlvmOrInterp HscC           = IsValid
checkCOrAsmOrLlvmOrInterp HscAsm         = IsValid
checkCOrAsmOrLlvmOrInterp HscLlvm        = IsValid
checkCOrAsmOrLlvmOrInterp HscInterpreted = IsValid
checkCOrAsmOrLlvmOrInterp _
  = NotValid (text "requires interpreted, unregisterised, llvm or native code generation")
checkCg :: (HscTarget -> Validity) -> TcM ()
checkCg check = do
    dflags <- getDynFlags
    let target = hscTarget dflags
    case target of
      HscNothing -> return ()
      _ ->
        case check target of
          IsValid      -> return ()
          NotValid err -> addErrTc (text "Illegal foreign declaration:" <+> err)
checkCConv :: CCallConv -> TcM CCallConv
checkCConv CCallConv    = return CCallConv
checkCConv CApiConv     = return CApiConv
checkCConv StdCallConv  = do dflags <- getDynFlags
                             let platform = targetPlatform dflags
                             if platformArch platform == ArchX86
                                 then return StdCallConv
                                 else do 
                                         when (wopt Opt_WarnUnsupportedCallingConventions dflags) $
                                             addWarnTc (Reason Opt_WarnUnsupportedCallingConventions)
                                                 (text "the 'stdcall' calling convention is unsupported on this platform," $$ text "treating as ccall")
                                         return CCallConv
checkCConv PrimCallConv = do addErrTc (text "The `prim' calling convention can only be used with `foreign import'")
                             return PrimCallConv
checkCConv JavaScriptCallConv = do dflags <- getDynFlags
                                   if platformArch (targetPlatform dflags) == ArchJavaScript
                                       then return JavaScriptCallConv
                                       else do addErrTc (text "The `javascript' calling convention is unsupported on this platform")
                                               return JavaScriptCallConv
check :: Validity -> (MsgDoc -> MsgDoc) -> TcM ()
check IsValid _             = return ()
check (NotValid doc) err_fn = addErrTc (err_fn doc)
illegalForeignTyErr :: SDoc -> SDoc -> SDoc
illegalForeignTyErr arg_or_res extra
  = hang msg 2 extra
  where
    msg = hsep [ text "Unacceptable", arg_or_res
               , text "type in foreign declaration:"]
argument, result :: SDoc
argument = text "argument"
result   = text "result"
badCName :: CLabelString -> MsgDoc
badCName target
  = sep [quotes (ppr target) <+> text "is not a valid C identifier"]
foreignDeclCtxt :: ForeignDecl GhcRn -> SDoc
foreignDeclCtxt fo
  = hang (text "When checking declaration:")
       2 (ppr fo)