TcHsSyn.hs 63.6 KB
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{-
(c) The University of Glasgow 2006
(c) The AQUA Project, Glasgow University, 1996-1998

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TcHsSyn: Specialisations of the @HsSyn@ syntax for the typechecker
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This module is an extension of @HsSyn@ syntax, for use in the type
checker.
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-}
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{-# LANGUAGE CPP #-}

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module TcHsSyn (
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        mkHsConApp, mkHsDictLet, mkHsApp,
        hsLitType, hsLPatType, hsPatType,
        mkHsAppTy, mkSimpleHsAlt,
        nlHsIntLit,
        shortCutLit, hsOverLitName,
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        conLikeResTy,
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        -- re-exported from TcMonad
        TcId, TcIdSet,

        zonkTopDecls, zonkTopExpr, zonkTopLExpr,
        zonkTopBndrs, zonkTyBndrsX,
        emptyZonkEnv, mkEmptyZonkEnv, mkTyVarZonkEnv,
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        zonkTcTypeToType, zonkTcTypeToTypes, zonkTyVarOcc,
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  ) where

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#include "HsVersions.h"
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import HsSyn
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import Id
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import TcRnMonad
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import PrelNames
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import TypeRep     -- We can see the representation of types
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import TcType
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import RdrName ( RdrName, rdrNameOcc )
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import TcMType ( defaultKindVarToStar, zonkQuantifiedTyVar, writeMetaTyVar )
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import TcEvidence
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import Coercion
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import TysPrim
import TysWiredIn
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import Type
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import ConLike
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import DataCon
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import Name
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import NameSet
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import Var
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import VarSet
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import VarEnv
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import DynFlags
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import Literal
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import BasicTypes
import Maybes
import SrcLoc
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import Bag
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import FastString
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import Outputable
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import Util
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#if __GLASGOW_HASKELL__ < 709
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import Data.Traversable ( traverse )
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#endif
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{-
************************************************************************
*                                                                      *
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\subsection[mkFailurePair]{Code for pattern-matching and other failures}
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*                                                                      *
************************************************************************
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Note: If @hsLPatType@ doesn't bear a strong resemblance to @exprType@,
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then something is wrong.
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-}

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hsLPatType :: OutPat Id -> Type
hsLPatType (L _ pat) = hsPatType pat

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hsPatType :: Pat Id -> Type
hsPatType (ParPat pat)                = hsLPatType pat
hsPatType (WildPat ty)                = ty
hsPatType (VarPat var)                = idType var
hsPatType (BangPat pat)               = hsLPatType pat
hsPatType (LazyPat pat)               = hsLPatType pat
hsPatType (LitPat lit)                = hsLitType lit
hsPatType (AsPat var _)               = idType (unLoc var)
hsPatType (ViewPat _ _ ty)            = ty
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hsPatType (ListPat _ ty Nothing)      = mkListTy ty
hsPatType (ListPat _ _ (Just (ty,_))) = ty
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hsPatType (PArrPat _ ty)              = mkPArrTy ty
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hsPatType (TuplePat _ bx tys)         = mkTupleTy bx tys
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hsPatType (ConPatOut { pat_con = L _ con, pat_arg_tys = tys })
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                                      = conLikeResTy con tys
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hsPatType (SigPatOut _ ty)            = ty
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hsPatType (NPat (L _ lit) _ _)        = overLitType lit
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hsPatType (NPlusKPat id _ _ _)        = idType (unLoc id)
hsPatType (CoPat _ _ ty)              = ty
hsPatType p                           = pprPanic "hsPatType" (ppr p)
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hsLitType :: HsLit -> TcType
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hsLitType (HsChar _ _)       = charTy
hsLitType (HsCharPrim _ _)   = charPrimTy
hsLitType (HsString _ _)     = stringTy
hsLitType (HsStringPrim _ _) = addrPrimTy
hsLitType (HsInt _ _)        = intTy
hsLitType (HsIntPrim _ _)    = intPrimTy
hsLitType (HsWordPrim _ _)   = wordPrimTy
hsLitType (HsInt64Prim _ _)  = int64PrimTy
hsLitType (HsWord64Prim _ _) = word64PrimTy
hsLitType (HsInteger _ _ ty) = ty
hsLitType (HsRat _ ty)       = ty
hsLitType (HsFloatPrim _)    = floatPrimTy
hsLitType (HsDoublePrim _)   = doublePrimTy
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-- Overloaded literals. Here mainly because it uses isIntTy etc
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shortCutLit :: DynFlags -> OverLitVal -> TcType -> Maybe (HsExpr TcId)
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shortCutLit dflags (HsIntegral src i) ty
  | isIntTy ty  && inIntRange  dflags i = Just (HsLit (HsInt src i))
  | isWordTy ty && inWordRange dflags i
                                   = Just (mkLit wordDataCon (HsWordPrim src i))
  | isIntegerTy ty = Just (HsLit (HsInteger src i ty))
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  | otherwise = shortCutLit dflags (HsFractional (integralFractionalLit i)) ty
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        -- The 'otherwise' case is important
        -- Consider (3 :: Float).  Syntactically it looks like an IntLit,
        -- so we'll call shortCutIntLit, but of course it's a float
        -- This can make a big difference for programs with a lot of
        -- literals, compiled without -O
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shortCutLit _ (HsFractional f) ty
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  | isFloatTy ty  = Just (mkLit floatDataCon  (HsFloatPrim f))
  | isDoubleTy ty = Just (mkLit doubleDataCon (HsDoublePrim f))
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  | otherwise     = Nothing

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shortCutLit _ (HsIsString src s) ty
  | isStringTy ty = Just (HsLit (HsString src s))
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  | otherwise     = Nothing

mkLit :: DataCon -> HsLit -> HsExpr Id
mkLit con lit = HsApp (nlHsVar (dataConWrapId con)) (nlHsLit lit)

------------------------------
hsOverLitName :: OverLitVal -> Name
-- Get the canonical 'fromX' name for a particular OverLitVal
hsOverLitName (HsIntegral {})   = fromIntegerName
hsOverLitName (HsFractional {}) = fromRationalName
hsOverLitName (HsIsString {})   = fromStringName
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{-
************************************************************************
*                                                                      *
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\subsection[BackSubst-HsBinds]{Running a substitution over @HsBinds@}
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*                                                                      *
************************************************************************
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The rest of the zonking is done *after* typechecking.
The main zonking pass runs over the bindings
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 a) to convert TcTyVars to TyVars etc, dereferencing any bindings etc
 b) convert unbound TcTyVar to Void
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 c) convert each TcId to an Id by zonking its type
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The type variables are converted by binding mutable tyvars to immutable ones
and then zonking as normal.
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The Ids are converted by binding them in the normal Tc envt; that
way we maintain sharing; eg an Id is zonked at its binding site and they
all occurrences of that Id point to the common zonked copy
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It's all pretty boring stuff, because HsSyn is such a large type, and
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the environment manipulation is tiresome.
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-}
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type UnboundTyVarZonker = TcTyVar-> TcM Type
        -- How to zonk an unbound type variable
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        -- Note [Zonking the LHS of a RULE]

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data ZonkEnv
  = ZonkEnv
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      UnboundTyVarZonker
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      (TyVarEnv TyVar)          --
      (IdEnv    Var)            -- What variables are in scope
        -- Maps an Id or EvVar to its zonked version; both have the same Name
        -- Note that all evidence (coercion variables as well as dictionaries)
        --      are kept in the ZonkEnv
        -- Only *type* abstraction is done by side effect
        -- Is only consulted lazily; hence knot-tying

instance Outputable ZonkEnv where
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  ppr (ZonkEnv _ _ty_env var_env) = vcat (map ppr (varEnvElts var_env))


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emptyZonkEnv :: ZonkEnv
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emptyZonkEnv = mkEmptyZonkEnv zonkTypeZapping

mkEmptyZonkEnv :: UnboundTyVarZonker -> ZonkEnv
mkEmptyZonkEnv zonker = ZonkEnv zonker emptyVarEnv emptyVarEnv
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extendIdZonkEnv :: ZonkEnv -> [Var] -> ZonkEnv
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extendIdZonkEnv (ZonkEnv zonk_ty ty_env id_env) ids
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  = ZonkEnv zonk_ty ty_env (extendVarEnvList id_env [(id,id) | id <- ids])
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extendIdZonkEnv1 :: ZonkEnv -> Var -> ZonkEnv
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extendIdZonkEnv1 (ZonkEnv zonk_ty ty_env id_env) id
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  = ZonkEnv zonk_ty ty_env (extendVarEnv id_env id id)
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extendTyZonkEnv1 :: ZonkEnv -> TyVar -> ZonkEnv
extendTyZonkEnv1 (ZonkEnv zonk_ty ty_env id_env) ty
  = ZonkEnv zonk_ty (extendVarEnv ty_env ty ty) id_env

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mkTyVarZonkEnv :: [TyVar] -> ZonkEnv
mkTyVarZonkEnv tvs = ZonkEnv zonkTypeZapping (mkVarEnv [(tv,tv) | tv <- tvs]) emptyVarEnv

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setZonkType :: ZonkEnv -> UnboundTyVarZonker -> ZonkEnv
setZonkType (ZonkEnv _ ty_env id_env) zonk_ty = ZonkEnv zonk_ty ty_env id_env
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zonkEnvIds :: ZonkEnv -> [Id]
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zonkEnvIds (ZonkEnv _ _ id_env) = varEnvElts id_env
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zonkIdOcc :: ZonkEnv -> TcId -> Id
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-- Ids defined in this module should be in the envt;
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-- ignore others.  (Actually, data constructors are also
-- not LocalVars, even when locally defined, but that is fine.)
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-- (Also foreign-imported things aren't currently in the ZonkEnv;
--  that's ok because they don't need zonking.)
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--
-- Actually, Template Haskell works in 'chunks' of declarations, and
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-- an earlier chunk won't be in the 'env' that the zonking phase
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-- carries around.  Instead it'll be in the tcg_gbl_env, already fully
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-- zonked.  There's no point in looking it up there (except for error
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-- checking), and it's not conveniently to hand; hence the simple
-- 'orElse' case in the LocalVar branch.
--
-- Even without template splices, in module Main, the checking of
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-- 'main' is done as a separate chunk.
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zonkIdOcc (ZonkEnv _zonk_ty _ty_env env) id
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  | isLocalVar id = lookupVarEnv env id `orElse` id
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  | otherwise     = id
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zonkIdOccs :: ZonkEnv -> [TcId] -> [Id]
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zonkIdOccs env ids = map (zonkIdOcc env) ids
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-- zonkIdBndr is used *after* typechecking to get the Id's type
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-- to its final form.  The TyVarEnv give
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zonkIdBndr :: ZonkEnv -> TcId -> TcM Id
zonkIdBndr env id
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  = do ty' <- zonkTcTypeToType env (idType id)
       return (Id.setIdType id ty')
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zonkIdBndrs :: ZonkEnv -> [TcId] -> TcM [Id]
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zonkIdBndrs env ids = mapM (zonkIdBndr env) ids
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zonkTopBndrs :: [TcId] -> TcM [Id]
zonkTopBndrs ids = zonkIdBndrs emptyZonkEnv ids
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zonkFieldOcc :: ZonkEnv -> FieldOcc TcId -> TcM (FieldOcc Id)
zonkFieldOcc env (FieldOcc lbl sel) = fmap (FieldOcc lbl) $ zonkIdBndr env sel

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zonkEvBndrsX :: ZonkEnv -> [EvVar] -> TcM (ZonkEnv, [Var])
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zonkEvBndrsX = mapAccumLM zonkEvBndrX
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zonkEvBndrX :: ZonkEnv -> EvVar -> TcM (ZonkEnv, EvVar)
-- Works for dictionaries and coercions
zonkEvBndrX env var
  = do { var' <- zonkEvBndr env var
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       ; return (extendIdZonkEnv1 env var', var') }
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zonkEvBndr :: ZonkEnv -> EvVar -> TcM EvVar
-- Works for dictionaries and coercions
-- Does not extend the ZonkEnv
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zonkEvBndr env var
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  = do { let var_ty = varType var
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       ; ty <-
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           {-# SCC "zonkEvBndr_zonkTcTypeToType" #-}
           zonkTcTypeToType env var_ty
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       ; return (setVarType var ty) }
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zonkEvVarOcc :: ZonkEnv -> EvVar -> EvVar
zonkEvVarOcc env v = zonkIdOcc env v
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zonkTyBndrsX :: ZonkEnv -> [TyVar] -> TcM (ZonkEnv, [TyVar])
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zonkTyBndrsX = mapAccumLM zonkTyBndrX
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zonkTyBndrX :: ZonkEnv -> TyVar -> TcM (ZonkEnv, TyVar)
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-- This guarantees to return a TyVar (not a TcTyVar)
-- then we add it to the envt, so all occurrences are replaced
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zonkTyBndrX env tv
  = do { ki <- zonkTcTypeToType env (tyVarKind tv)
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       ; let tv' = mkTyVar (tyVarName tv) ki
       ; return (extendTyZonkEnv1 env tv', tv') }
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zonkTopExpr :: HsExpr TcId -> TcM (HsExpr Id)
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zonkTopExpr e = zonkExpr emptyZonkEnv e

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zonkTopLExpr :: LHsExpr TcId -> TcM (LHsExpr Id)
zonkTopLExpr e = zonkLExpr emptyZonkEnv e

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zonkTopDecls :: Bag EvBind
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             -> LHsBinds TcId
             -> Maybe (Located [LIE RdrName])
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             -> NameSet
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             -> [LRuleDecl TcId] -> [LVectDecl TcId] -> [LTcSpecPrag] -> [LForeignDecl TcId]
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             -> TcM ([Id],
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                     Bag EvBind,
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                     LHsBinds Id,
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                     [LForeignDecl Id],
                     [LTcSpecPrag],
                     [LRuleDecl    Id],
                     [LVectDecl    Id])
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zonkTopDecls ev_binds binds export_ies sig_ns rules vects imp_specs fords
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  = do  { (env1, ev_binds') <- zonkEvBinds emptyZonkEnv ev_binds
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         -- Warn about missing signatures
         -- Do this only when we we have a type to offer
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        ; warn_missing_sigs <- woptM Opt_WarnMissingSigs
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        ; warn_only_exported <- woptM Opt_WarnMissingExportedSigs
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        ; let export_occs  = maybe emptyBag
                                   (listToBag . map (rdrNameOcc . ieName . unLoc) . unLoc)
                                   export_ies
              sig_warn
                | warn_only_exported = topSigWarnIfExported export_occs sig_ns
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                | warn_missing_sigs  = topSigWarn sig_ns
                | otherwise          = noSigWarn
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        ; (env2, binds') <- zonkRecMonoBinds env1 sig_warn binds
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                        -- Top level is implicitly recursive
        ; rules' <- zonkRules env2 rules
        ; vects' <- zonkVects env2 vects
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        ; specs' <- zonkLTcSpecPrags env2 imp_specs
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        ; fords' <- zonkForeignExports env2 fords
        ; return (zonkEnvIds env2, ev_binds', binds', fords', specs', rules', vects') }
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---------------------------------------------
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zonkLocalBinds :: ZonkEnv -> HsLocalBinds TcId -> TcM (ZonkEnv, HsLocalBinds Id)
zonkLocalBinds env EmptyLocalBinds
  = return (env, EmptyLocalBinds)

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zonkLocalBinds _ (HsValBinds (ValBindsIn {}))
  = panic "zonkLocalBinds" -- Not in typechecker output

zonkLocalBinds env (HsValBinds vb@(ValBindsOut binds sigs))
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  = do  { warn_missing_sigs <- woptM Opt_WarnMissingLocalSigs
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        ; let sig_warn | not warn_missing_sigs = noSigWarn
                       | otherwise             = localSigWarn sig_ns
              sig_ns = getTypeSigNames vb
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        ; (env1, new_binds) <- go env sig_warn binds
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        ; return (env1, HsValBinds (ValBindsOut new_binds sigs)) }
  where
    go env _ []
      = return (env, [])
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    go env sig_warn ((r,b):bs)
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      = do { (env1, b')  <- zonkRecMonoBinds env sig_warn b
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           ; (env2, bs') <- go env1 sig_warn bs
           ; return (env2, (r,b'):bs') }
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zonkLocalBinds env (HsIPBinds (IPBinds binds dict_binds)) = do
    new_binds <- mapM (wrapLocM zonk_ip_bind) binds
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    let
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        env1 = extendIdZonkEnv env [ n | L _ (IPBind (Right n) _) <- new_binds]
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    (env2, new_dict_binds) <- zonkTcEvBinds env1 dict_binds
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    return (env2, HsIPBinds (IPBinds new_binds new_dict_binds))
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  where
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    zonk_ip_bind (IPBind n e)
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        = do n' <- mapIPNameTc (zonkIdBndr env) n
             e' <- zonkLExpr env e
             return (IPBind n' e')
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---------------------------------------------
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zonkRecMonoBinds :: ZonkEnv -> SigWarn -> LHsBinds TcId -> TcM (ZonkEnv, LHsBinds Id)
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zonkRecMonoBinds env sig_warn binds
 = fixM (\ ~(_, new_binds) -> do
        { let env1 = extendIdZonkEnv env (collectHsBindsBinders new_binds)
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        ; binds' <- zonkMonoBinds env1 sig_warn binds
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        ; return (env1, binds') })

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---------------------------------------------
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type SigWarn = Bool -> [Id] -> TcM ()
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     -- Missing-signature warning
     -- The Bool is True for an AbsBinds, False otherwise

noSigWarn :: SigWarn
noSigWarn _ _ = return ()

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topSigWarnIfExported :: Bag OccName -> NameSet -> SigWarn
topSigWarnIfExported exported sig_ns _ ids
  = mapM_ (topSigWarnIdIfExported exported sig_ns) ids

topSigWarnIdIfExported :: Bag OccName -> NameSet -> Id -> TcM ()
topSigWarnIdIfExported exported sig_ns id
  | getOccName id `elemBag` exported
  = topSigWarnId sig_ns id
  | otherwise
  = return ()

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topSigWarn :: NameSet -> SigWarn
topSigWarn sig_ns _ ids = mapM_ (topSigWarnId sig_ns) ids

topSigWarnId :: NameSet -> Id -> TcM ()
-- The NameSet is the Ids that *lack* a signature
-- We have to do it this way round because there are
-- lots of top-level bindings that are generated by GHC
-- and that don't have signatures
topSigWarnId sig_ns id
  | idName id `elemNameSet` sig_ns = warnMissingSig msg id
  | otherwise                      = return ()
  where
    msg = ptext (sLit "Top-level binding with no type signature:")

localSigWarn :: NameSet -> SigWarn
localSigWarn sig_ns is_abs_bind ids
  | not is_abs_bind = return ()
  | otherwise       = mapM_ (localSigWarnId sig_ns) ids

localSigWarnId :: NameSet -> Id -> TcM ()
-- NameSet are the Ids that *have* type signatures
localSigWarnId sig_ns id
  | not (isSigmaTy (idType id))    = return ()
  | idName id `elemNameSet` sig_ns = return ()
  | otherwise                      = warnMissingSig msg id
  where
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    msg = ptext (sLit "Polymorphic local binding with no type signature:")
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warnMissingSig :: SDoc -> Id -> TcM ()
warnMissingSig msg id
  = do  { env0 <- tcInitTidyEnv
        ; let (env1, tidy_ty) = tidyOpenType env0 (idType id)
        ; addWarnTcM (env1, mk_msg tidy_ty) }
  where
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    mk_msg ty = sep [ msg, nest 2 $ pprPrefixName (idName id) <+> dcolon <+> ppr ty ]
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---------------------------------------------
zonkMonoBinds :: ZonkEnv -> SigWarn -> LHsBinds TcId -> TcM (LHsBinds Id)
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zonkMonoBinds env sig_warn binds = mapBagM (zonk_lbind env sig_warn) binds

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zonk_lbind :: ZonkEnv -> SigWarn -> LHsBind TcId -> TcM (LHsBind Id)
zonk_lbind env sig_warn = wrapLocM (zonk_bind env sig_warn)
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zonk_bind :: ZonkEnv -> SigWarn -> HsBind TcId -> TcM (HsBind Id)
zonk_bind env sig_warn bind@(PatBind { pat_lhs = pat, pat_rhs = grhss, pat_rhs_ty = ty})
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  = do  { (_env, new_pat) <- zonkPat env pat            -- Env already extended
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        ; sig_warn False (collectPatBinders new_pat)
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        ; new_grhss <- zonkGRHSs env zonkLExpr grhss
        ; new_ty    <- zonkTcTypeToType env ty
        ; return (bind { pat_lhs = new_pat, pat_rhs = new_grhss, pat_rhs_ty = new_ty }) }
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zonk_bind env sig_warn (VarBind { var_id = var, var_rhs = expr, var_inline = inl })
  = do { new_var  <- zonkIdBndr env var
       ; sig_warn False [new_var]
       ; new_expr <- zonkLExpr env expr
       ; return (VarBind { var_id = new_var, var_rhs = new_expr, var_inline = inl }) }

zonk_bind env sig_warn bind@(FunBind { fun_id = L loc var, fun_matches = ms
                                     , fun_co_fn = co_fn })
  = do { new_var <- zonkIdBndr env var
       ; sig_warn False [new_var]
       ; (env1, new_co_fn) <- zonkCoFn env co_fn
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       ; new_ms <- zonkMatchGroup env1 zonkLExpr ms
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       ; return (bind { fun_id = L loc new_var, fun_matches = new_ms
                      , fun_co_fn = new_co_fn }) }

zonk_bind env sig_warn (AbsBinds { abs_tvs = tyvars, abs_ev_vars = evs
                                 , abs_ev_binds = ev_binds
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                                 , abs_exports = exports
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                                 , abs_binds = val_binds })
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  = ASSERT( all isImmutableTyVar tyvars )
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    do { (env0, new_tyvars) <- zonkTyBndrsX env tyvars
       ; (env1, new_evs) <- zonkEvBndrsX env0 evs
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       ; (env2, new_ev_binds) <- zonkTcEvBinds_s env1 ev_binds
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       ; (new_val_bind, new_exports) <- fixM $ \ ~(new_val_binds, _) ->
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         do { let env3 = extendIdZonkEnv env2 (collectHsBindsBinders new_val_binds)
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            ; new_val_binds <- zonkMonoBinds env3 noSigWarn val_binds
            ; new_exports   <- mapM (zonkExport env3) exports
            ; return (new_val_binds, new_exports) }
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       ; sig_warn True (map abe_poly new_exports)
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       ; return (AbsBinds { abs_tvs = new_tyvars, abs_ev_vars = new_evs
                          , abs_ev_binds = new_ev_binds
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                          , abs_exports = new_exports, abs_binds = new_val_bind }) }
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  where
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    zonkExport env (ABE{ abe_wrap = wrap, abe_poly = poly_id
                       , abe_mono = mono_id, abe_prags = prags })
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        = do new_poly_id <- zonkIdBndr env poly_id
             (_, new_wrap) <- zonkCoFn env wrap
             new_prags <- zonkSpecPrags env prags
             return (ABE{ abe_wrap = new_wrap, abe_poly = new_poly_id
                        , abe_mono = zonkIdOcc env mono_id
                        , abe_prags = new_prags })
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zonk_bind env _sig_warn (PatSynBind bind@(PSB { psb_id = L loc id
                                              , psb_args = details
                                              , psb_def = lpat
                                              , psb_dir = dir }))
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  = do { id' <- zonkIdBndr env id
       ; details' <- zonkPatSynDetails env details
       ;(env1, lpat') <- zonkPat env lpat
       ; (_env2, dir') <- zonkPatSynDir env1 dir
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       ; return $ PatSynBind $
                  bind { psb_id = L loc id'
                       , psb_args = details'
                       , psb_def = lpat'
                       , psb_dir = dir' } }
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zonkPatSynDetails :: ZonkEnv
                  -> HsPatSynDetails (Located TcId)
                  -> TcM (HsPatSynDetails (Located Id))
zonkPatSynDetails env = traverse (wrapLocM $ zonkIdBndr env)

zonkPatSynDir :: ZonkEnv -> HsPatSynDir TcId -> TcM (ZonkEnv, HsPatSynDir Id)
zonkPatSynDir env Unidirectional = return (env, Unidirectional)
zonkPatSynDir env ImplicitBidirectional = return (env, ImplicitBidirectional)
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zonkPatSynDir env (ExplicitBidirectional mg) = do
    mg' <- zonkMatchGroup env zonkLExpr mg
    return (env, ExplicitBidirectional mg')
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zonkSpecPrags :: ZonkEnv -> TcSpecPrags -> TcM TcSpecPrags
zonkSpecPrags _   IsDefaultMethod = return IsDefaultMethod
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zonkSpecPrags env (SpecPrags ps)  = do { ps' <- zonkLTcSpecPrags env ps
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                                       ; return (SpecPrags ps') }
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zonkLTcSpecPrags :: ZonkEnv -> [LTcSpecPrag] -> TcM [LTcSpecPrag]
zonkLTcSpecPrags env ps
  = mapM zonk_prag ps
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  where
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    zonk_prag (L loc (SpecPrag id co_fn inl))
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        = do { (_, co_fn') <- zonkCoFn env co_fn
             ; return (L loc (SpecPrag (zonkIdOcc env id) co_fn' inl)) }
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{-
************************************************************************
*                                                                      *
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\subsection[BackSubst-Match-GRHSs]{Match and GRHSs}
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*                                                                      *
************************************************************************
-}
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zonkMatchGroup :: ZonkEnv
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               -> (ZonkEnv -> Located (body TcId) -> TcM (Located (body Id)))
               -> MatchGroup TcId (Located (body TcId)) -> TcM (MatchGroup Id (Located (body Id)))
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zonkMatchGroup env zBody (MG { mg_alts = ms, mg_arg_tys = arg_tys, mg_res_ty = res_ty, mg_origin = origin })
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  = do  { ms' <- mapM (zonkMatch env zBody) ms
        ; arg_tys' <- zonkTcTypeToTypes env arg_tys
        ; res_ty'  <- zonkTcTypeToType env res_ty
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        ; return (MG { mg_alts = ms', mg_arg_tys = arg_tys', mg_res_ty = res_ty', mg_origin = origin }) }
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zonkMatch :: ZonkEnv
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          -> (ZonkEnv -> Located (body TcId) -> TcM (Located (body Id)))
          -> LMatch TcId (Located (body TcId)) -> TcM (LMatch Id (Located (body Id)))
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zonkMatch env zBody (L loc (Match mf pats _ grhss))
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  = do  { (env1, new_pats) <- zonkPats env pats
        ; new_grhss <- zonkGRHSs env1 zBody grhss
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        ; return (L loc (Match mf new_pats Nothing new_grhss)) }
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-------------------------------------------------------------------------
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zonkGRHSs :: ZonkEnv
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          -> (ZonkEnv -> Located (body TcId) -> TcM (Located (body Id)))
          -> GRHSs TcId (Located (body TcId)) -> TcM (GRHSs Id (Located (body Id)))
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zonkGRHSs env zBody (GRHSs grhss binds) = do
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    (new_env, new_binds) <- zonkLocalBinds env binds
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    let
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        zonk_grhs (GRHS guarded rhs)
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          = do (env2, new_guarded) <- zonkStmts new_env zonkLExpr guarded
               new_rhs <- zBody env2 rhs
               return (GRHS new_guarded new_rhs)
    new_grhss <- mapM (wrapLocM zonk_grhs) grhss
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    return (GRHSs new_grhss new_binds)
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{-
************************************************************************
*                                                                      *
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\subsection[BackSubst-HsExpr]{Running a zonkitution over a TypeCheckedExpr}
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*                                                                      *
************************************************************************
-}
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zonkLExprs :: ZonkEnv -> [LHsExpr TcId] -> TcM [LHsExpr Id]
zonkLExpr  :: ZonkEnv -> LHsExpr TcId   -> TcM (LHsExpr Id)
zonkExpr   :: ZonkEnv -> HsExpr TcId    -> TcM (HsExpr Id)
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zonkLExprs env exprs = mapM (zonkLExpr env) exprs
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zonkLExpr  env expr  = wrapLocM (zonkExpr env) expr
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zonkExpr env (HsVar id)
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  = return (HsVar (zonkIdOcc env id))
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zonkExpr _ (HsIPVar id)
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  = return (HsIPVar id)
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zonkExpr env (HsLit (HsRat f ty))
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  = do new_ty <- zonkTcTypeToType env ty
       return (HsLit (HsRat f new_ty))
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zonkExpr _ (HsLit lit)
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  = return (HsLit lit)
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zonkExpr env (HsOverLit lit)
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  = do  { lit' <- zonkOverLit env lit
        ; return (HsOverLit lit') }
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zonkExpr env (HsLam matches)
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  = do new_matches <- zonkMatchGroup env zonkLExpr matches
       return (HsLam new_matches)
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zonkExpr env (HsLamCase arg matches)
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  = do new_arg <- zonkTcTypeToType env arg
       new_matches <- zonkMatchGroup env zonkLExpr matches
       return (HsLamCase new_arg new_matches)
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zonkExpr env (HsApp e1 e2)
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  = do new_e1 <- zonkLExpr env e1
       new_e2 <- zonkLExpr env e2
       return (HsApp new_e1 new_e2)
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zonkExpr _ e@(HsRnBracketOut _ _)
  = pprPanic "zonkExpr: HsRnBracketOut" (ppr e)

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zonkExpr env (HsTcBracketOut body bs)
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  = do bs' <- mapM zonk_b bs
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       return (HsTcBracketOut body bs')
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  where
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    zonk_b (PendingTcSplice n e) = do e' <- zonkLExpr env e
                                      return (PendingTcSplice n e')
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zonkExpr _ (HsSpliceE s) = WARN( True, ppr s ) -- Should not happen
                           return (HsSpliceE s)
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zonkExpr env (OpApp e1 op fixity e2)
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  = do new_e1 <- zonkLExpr env e1
       new_op <- zonkLExpr env op
       new_e2 <- zonkLExpr env e2
       return (OpApp new_e1 new_op fixity new_e2)
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zonkExpr env (NegApp expr op)
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  = do new_expr <- zonkLExpr env expr
       new_op <- zonkExpr env op
       return (NegApp new_expr new_op)
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zonkExpr env (HsPar e)
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  = do new_e <- zonkLExpr env e
       return (HsPar new_e)
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zonkExpr env (SectionL expr op)
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  = do new_expr <- zonkLExpr env expr
       new_op   <- zonkLExpr env op
       return (SectionL new_expr new_op)
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zonkExpr env (SectionR op expr)
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  = do new_op   <- zonkLExpr env op
       new_expr <- zonkLExpr env expr
       return (SectionR new_op new_expr)
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zonkExpr env (ExplicitTuple tup_args boxed)
  = do { new_tup_args <- mapM zonk_tup_arg tup_args
       ; return (ExplicitTuple new_tup_args boxed) }
  where
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    zonk_tup_arg (L l (Present e)) = do { e' <- zonkLExpr env e
                                        ; return (L l (Present e')) }
    zonk_tup_arg (L l (Missing t)) = do { t' <- zonkTcTypeToType env t
                                        ; return (L l (Missing t')) }
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zonkExpr env (HsCase expr ms)
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  = do new_expr <- zonkLExpr env expr
       new_ms <- zonkMatchGroup env zonkLExpr ms
       return (HsCase new_expr new_ms)
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zonkExpr env (HsIf e0 e1 e2 e3)
  = do { new_e0 <- fmapMaybeM (zonkExpr env) e0
       ; new_e1 <- zonkLExpr env e1
       ; new_e2 <- zonkLExpr env e2
       ; new_e3 <- zonkLExpr env e3
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       ; return (HsIf new_e0 new_e1 new_e2 new_e3) }
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zonkExpr env (HsMultiIf ty alts)
  = do { alts' <- mapM (wrapLocM zonk_alt) alts
       ; ty'   <- zonkTcTypeToType env ty
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       ; return $ HsMultiIf ty' alts' }
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  where zonk_alt (GRHS guard expr)
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          = do { (env', guard') <- zonkStmts env zonkLExpr guard
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               ; expr'          <- zonkLExpr env' expr
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               ; return $ GRHS guard' expr' }
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zonkExpr env (HsLet binds expr)
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  = do (new_env, new_binds) <- zonkLocalBinds env binds
       new_expr <- zonkLExpr new_env expr
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       return (HsLet new_binds new_expr)
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zonkExpr env (HsDo do_or_lc stmts ty)
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  = do (_, new_stmts) <- zonkStmts env zonkLExpr stmts
       new_ty <- zonkTcTypeToType env ty
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       return (HsDo do_or_lc new_stmts new_ty)
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zonkExpr env (ExplicitList ty wit exprs)
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  = do new_ty <- zonkTcTypeToType env ty
       new_wit <- zonkWit env wit
       new_exprs <- zonkLExprs env exprs
       return (ExplicitList new_ty new_wit new_exprs)
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   where zonkWit _ Nothing = return Nothing
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         zonkWit env (Just fln) = do new_fln <- zonkExpr env fln
                                     return (Just new_fln)
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zonkExpr env (ExplicitPArr ty exprs)
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  = do new_ty <- zonkTcTypeToType env ty
       new_exprs <- zonkLExprs env exprs
       return (ExplicitPArr new_ty new_exprs)
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zonkExpr env (RecordCon data_con con_expr rbinds labels)
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  = do  { new_con_expr <- zonkExpr env con_expr
        ; new_rbinds   <- zonkRecFields env rbinds
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        ; return (RecordCon data_con new_con_expr new_rbinds labels) }
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zonkExpr env (RecordUpd expr rbinds cons in_tys out_tys req_wrap)
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  = do  { new_expr    <- zonkLExpr env expr
        ; new_in_tys  <- mapM (zonkTcTypeToType env) in_tys
        ; new_out_tys <- mapM (zonkTcTypeToType env) out_tys
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        ; new_rbinds  <- zonkRecUpdFields env rbinds
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        ; (_, new_recwrap) <- zonkCoFn env req_wrap
        ; return (RecordUpd new_expr new_rbinds cons new_in_tys new_out_tys
                              new_recwrap) }
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zonkExpr env (ExprWithTySigOut e ty)
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  = do { e' <- zonkLExpr env e
       ; return (ExprWithTySigOut e' ty) }

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zonkExpr _ (ExprWithTySig _ _ _) = panic "zonkExpr env:ExprWithTySig"
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zonkExpr env (ArithSeq expr wit info)
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  = do new_expr <- zonkExpr env expr
       new_wit <- zonkWit env wit
       new_info <- zonkArithSeq env info
       return (ArithSeq new_expr new_wit new_info)
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   where zonkWit _ Nothing = return Nothing
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         zonkWit env (Just fln) = do new_fln <- zonkExpr env fln
                                     return (Just new_fln)
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zonkExpr env (PArrSeq expr info)
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  = do new_expr <- zonkExpr env expr
       new_info <- zonkArithSeq env info
       return (PArrSeq new_expr new_info)
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zonkExpr env (HsSCC src lbl expr)
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  = do new_expr <- zonkLExpr env expr
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       return (HsSCC src lbl new_expr)
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zonkExpr env (HsTickPragma src info expr)
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  = do new_expr <- zonkLExpr env expr
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       return (HsTickPragma src info new_expr)
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-- hdaume: core annotations
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zonkExpr env (HsCoreAnn src lbl expr)
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  = do new_expr <- zonkLExpr env expr
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       return (HsCoreAnn src lbl new_expr)
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-- arrow notation extensions
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zonkExpr env (HsProc pat body)
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  = do  { (env1, new_pat) <- zonkPat env pat
        ; new_body <- zonkCmdTop env1 body
        ; return (HsProc new_pat new_body) }
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-- StaticPointers extension
zonkExpr env (HsStatic expr)
  = HsStatic <$> zonkLExpr env expr

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zonkExpr env (HsWrap co_fn expr)
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  = do (env1, new_co_fn) <- zonkCoFn env co_fn
       new_expr <- zonkExpr env1 expr
       return (HsWrap new_co_fn new_expr)
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zonkExpr _ (HsUnboundVar v)
  = return (HsUnboundVar v)
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zonkExpr _ expr = pprPanic "zonkExpr" (ppr expr)
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-------------------------------------------------------------------------

zonkLCmd  :: ZonkEnv -> LHsCmd TcId   -> TcM (LHsCmd Id)
zonkCmd   :: ZonkEnv -> HsCmd TcId    -> TcM (HsCmd Id)

zonkLCmd  env cmd  = wrapLocM (zonkCmd env) cmd

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zonkCmd env (HsCmdCast co cmd)
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  = do { co' <- zonkTcCoToCo env co
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       ; cmd' <- zonkCmd env cmd
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       ; return (HsCmdCast co' cmd') }
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zonkCmd env (HsCmdArrApp e1 e2 ty ho rl)
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  = do new_e1 <- zonkLExpr env e1
       new_e2 <- zonkLExpr env e2
       new_ty <- zonkTcTypeToType env ty
       return (HsCmdArrApp new_e1 new_e2 new_ty ho rl)
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zonkCmd env (HsCmdArrForm op fixity args)
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  = do new_op <- zonkLExpr env op
       new_args <- mapM (zonkCmdTop env) args
       return (HsCmdArrForm new_op fixity new_args)
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zonkCmd env (HsCmdApp c e)
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  = do new_c <- zonkLCmd env c
       new_e <- zonkLExpr env e
       return (HsCmdApp new_c new_e)
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zonkCmd env (HsCmdLam matches)
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  = do new_matches <- zonkMatchGroup env zonkLCmd matches
       return (HsCmdLam new_matches)
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zonkCmd env (HsCmdPar c)
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  = do new_c <- zonkLCmd env c
       return (HsCmdPar new_c)
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zonkCmd env (HsCmdCase expr ms)
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  = do new_expr <- zonkLExpr env expr
       new_ms <- zonkMatchGroup env zonkLCmd ms
       return (HsCmdCase new_expr new_ms)
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zonkCmd env (HsCmdIf eCond ePred cThen cElse)
  = do { new_eCond <- fmapMaybeM (zonkExpr env) eCond
       ; new_ePred <- zonkLExpr env ePred
       ; new_cThen <- zonkLCmd env cThen
       ; new_cElse <- zonkLCmd env cElse
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       ; return (HsCmdIf new_eCond new_ePred new_cThen new_cElse) }
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zonkCmd env (HsCmdLet binds cmd)
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  = do (new_env, new_binds) <- zonkLocalBinds env binds
       new_cmd <- zonkLCmd new_env cmd
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       return (HsCmdLet new_binds new_cmd)
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zonkCmd env (HsCmdDo stmts ty)
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  = do (_, new_stmts) <- zonkStmts env zonkLCmd stmts
       new_ty <- zonkTcTypeToType env ty
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       return (HsCmdDo new_stmts new_ty)
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zonkCmdTop :: ZonkEnv -> LHsCmdTop TcId -> TcM (LHsCmdTop Id)
zonkCmdTop env cmd = wrapLocM (zonk_cmd_top env) cmd

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zonk_cmd_top :: ZonkEnv -> HsCmdTop TcId -> TcM (HsCmdTop Id)
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zonk_cmd_top env (HsCmdTop cmd stack_tys ty ids)
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  = do new_cmd <- zonkLCmd env cmd
       new_stack_tys <- zonkTcTypeToType env stack_tys
       new_ty <- zonkTcTypeToType env ty
       new_ids <- mapSndM (zonkExpr env) ids
       return (HsCmdTop new_cmd new_stack_tys new_ty new_ids)
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-------------------------------------------------------------------------
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zonkCoFn :: ZonkEnv -> HsWrapper -> TcM (ZonkEnv, HsWrapper)
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zonkCoFn env WpHole   = return (env, WpHole)
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zonkCoFn env (WpCompose c1 c2) = do { (env1, c1') <- zonkCoFn env c1
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                                    ; (env2, c2') <- zonkCoFn env1 c2
                                    ; return (env2, WpCompose c1' c2') }
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zonkCoFn env (WpFun c1 c2 t1 t2) = do { (env1, c1') <- zonkCoFn env c1
                                      ; (env2, c2') <- zonkCoFn env1 c2
                                      ; t1'         <- zonkTcTypeToType env2 t1
                                      ; t2'         <- zonkTcTypeToType env2 t2
                                      ; return (env2, WpFun c1' c2' t1' t2') }
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zonkCoFn env (WpCast co) = do { co' <- zonkTcCoToCo env co
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                              ; return (env, WpCast co') }
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zonkCoFn env (WpEvLam ev)   = do { (env', ev') <- zonkEvBndrX env ev
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                                 ; return (env', WpEvLam ev') }
zonkCoFn env (WpEvApp arg)  = do { arg' <- zonkEvTerm env arg
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                                 ; return (env, WpEvApp arg') }
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zonkCoFn env (WpTyLam tv)   = ASSERT( isImmutableTyVar tv )
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                              do { (env', tv') <- zonkTyBndrX env tv
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                                 ; return (env', WpTyLam tv') }
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zonkCoFn env (WpTyApp ty)   = do { ty' <- zonkTcTypeToType env ty
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                                 ; return (env, WpTyApp ty') }
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zonkCoFn env (WpLet bs)     = do { (env1, bs') <- zonkTcEvBinds env bs
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                                 ; return (env1, WpLet bs') }
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-------------------------------------------------------------------------
zonkOverLit :: ZonkEnv -> HsOverLit TcId -> TcM (HsOverLit Id)
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zonkOverLit env lit@(OverLit { ol_witness = e, ol_type = ty })
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  = do  { ty' <- zonkTcTypeToType env ty
        ; e' <- zonkExpr env e
        ; return (lit { ol_witness = e', ol_type = ty' }) }
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-------------------------------------------------------------------------
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zonkArithSeq :: ZonkEnv -> ArithSeqInfo TcId -> TcM (ArithSeqInfo Id)
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zonkArithSeq env (From e)
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  = do new_e <- zonkLExpr env e
       return (From new_e)
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