X-Git-Url: http://git.megacz.com/?a=blobdiff_plain;f=compiler%2Fvectorise%2FVectUtils.hs;h=5d03521889cff7e045455ca2dbbba302d88f1c2d;hb=2e4068a25fb7b0905c264b51843e41fd328f0ed3;hp=545460d1d5321d631a685f3eb3b0807809bb8dce;hpb=544f0afeea1c2f9ee146bd0a6a3583fee0acad5a;p=ghc-hetmet.git diff --git a/compiler/vectorise/VectUtils.hs b/compiler/vectorise/VectUtils.hs index 545460d..5d03521 100644 --- a/compiler/vectorise/VectUtils.hs +++ b/compiler/vectorise/VectUtils.hs @@ -1,28 +1,40 @@ module VectUtils ( collectAnnTypeBinders, collectAnnTypeArgs, isAnnTypeArg, + collectAnnValBinders, + mkDataConTag, splitClosureTy, - mkPADictType, mkPArrayType, - paDictArgType, paDictOfType, - paMethod, lengthPA, replicatePA, emptyPA, - polyAbstract, polyApply, - lookupPArrayFamInst, - hoistExpr, takeHoisted + + TyConRepr(..), mkTyConRepr, + mkToPRepr, mkToArrPRepr, mkFromPRepr, mkFromArrPRepr, + mkPADictType, mkPArrayType, mkPReprType, + + parrayCoerce, parrayReprTyCon, parrayReprDataCon, mkVScrut, + prDictOfType, prCoerce, + paDictArgType, paDictOfType, paDFunType, + paMethod, lengthPA, replicatePA, emptyPA, liftPA, + polyAbstract, polyApply, polyVApply, + hoistBinding, hoistExpr, hoistPolyVExpr, takeHoisted, + buildClosure, buildClosures, + mkClosureApp ) where #include "HsVersions.h" +import VectCore import VectMonad import DsUtils import CoreSyn import CoreUtils +import Coercion import Type import TypeRep import TyCon -import DataCon ( dataConWrapId ) +import DataCon import Var import Id ( mkWildId ) import MkId ( unwrapFamInstScrut ) +import Name ( Name ) import PrelNames import TysWiredIn import BasicTypes ( Boxity(..) ) @@ -30,7 +42,8 @@ import BasicTypes ( Boxity(..) ) import Outputable import FastString -import Control.Monad ( liftM, zipWithM_ ) +import Data.List ( zipWith4 ) +import Control.Monad ( liftM, liftM2, zipWithM_ ) collectAnnTypeArgs :: AnnExpr b ann -> (AnnExpr b ann, [Type]) collectAnnTypeArgs expr = go expr [] @@ -44,43 +57,346 @@ collectAnnTypeBinders expr = go [] expr go bs (_, AnnLam b e) | isTyVar b = go (b:bs) e go bs e = (reverse bs, e) +collectAnnValBinders :: AnnExpr Var ann -> ([Var], AnnExpr Var ann) +collectAnnValBinders expr = go [] expr + where + go bs (_, AnnLam b e) | isId b = go (b:bs) e + go bs e = (reverse bs, e) + isAnnTypeArg :: AnnExpr b ann -> Bool isAnnTypeArg (_, AnnType t) = True isAnnTypeArg _ = False -isClosureTyCon :: TyCon -> Bool -isClosureTyCon tc = tyConName tc == closureTyConName +mkDataConTag :: DataCon -> CoreExpr +mkDataConTag dc = mkConApp intDataCon [mkIntLitInt $ dataConTag dc] -splitClosureTy :: Type -> (Type, Type) -splitClosureTy ty - | Just (tc, [arg_ty, res_ty]) <- splitTyConApp_maybe ty - , isClosureTyCon tc - = (arg_ty, res_ty) +splitUnTy :: String -> Name -> Type -> Type +splitUnTy s name ty + | Just (tc, [ty']) <- splitTyConApp_maybe ty + , tyConName tc == name + = ty' + + | otherwise = pprPanic s (ppr ty) + +splitBinTy :: String -> Name -> Type -> (Type, Type) +splitBinTy s name ty + | Just (tc, [ty1, ty2]) <- splitTyConApp_maybe ty + , tyConName tc == name + = (ty1, ty2) - | otherwise = pprPanic "splitClosureTy" (ppr ty) + | otherwise = pprPanic s (ppr ty) -isPArrayTyCon :: TyCon -> Bool -isPArrayTyCon tc = tyConName tc == parrayTyConName +splitFixedTyConApp :: TyCon -> Type -> [Type] +splitFixedTyConApp tc ty + | Just (tc', tys) <- splitTyConApp_maybe ty + , tc == tc' + = tys + + | otherwise = pprPanic "splitFixedTyConApp" (ppr tc <+> ppr ty) + +splitEmbedTy :: Type -> Type +splitEmbedTy = splitUnTy "splitEmbedTy" embedTyConName + +splitClosureTy :: Type -> (Type, Type) +splitClosureTy = splitBinTy "splitClosureTy" closureTyConName splitPArrayTy :: Type -> Type -splitPArrayTy ty - | Just (tc, [arg_ty]) <- splitTyConApp_maybe ty - , isPArrayTyCon tc - = arg_ty +splitPArrayTy = splitUnTy "splitPArrayTy" parrayTyConName - | otherwise = pprPanic "splitPArrayTy" (ppr ty) +mkBuiltinTyConApp :: (Builtins -> TyCon) -> [Type] -> VM Type +mkBuiltinTyConApp get_tc tys + = do + tc <- builtin get_tc + return $ mkTyConApp tc tys -mkPADictType :: Type -> VM Type -mkPADictType ty +mkBuiltinTyConApps :: (Builtins -> TyCon) -> [Type] -> Type -> VM Type +mkBuiltinTyConApps get_tc tys ty = do - tc <- builtin paDictTyCon - return $ TyConApp tc [ty] + tc <- builtin get_tc + return $ foldr (mk tc) ty tys + where + mk tc ty1 ty2 = mkTyConApp tc [ty1,ty2] + +mkBuiltinTyConApps1 :: (Builtins -> TyCon) -> Type -> [Type] -> VM Type +mkBuiltinTyConApps1 get_tc dft [] = return dft +mkBuiltinTyConApps1 get_tc dft tys + = do + tc <- builtin get_tc + case tys of + [] -> pprPanic "mkBuiltinTyConApps1" (ppr tc) + _ -> return $ foldr1 (mk tc) tys + where + mk tc ty1 ty2 = mkTyConApp tc [ty1,ty2] + +data TyConRepr = TyConRepr { + repr_tyvars :: [TyVar] + , repr_tys :: [[Type]] + + , repr_embed_tys :: [[Type]] + , repr_prod_tycons :: [Maybe TyCon] + , repr_prod_tys :: [Type] + , repr_sum_tycon :: Maybe TyCon + , repr_type :: Type + } + +mkTyConRepr :: TyCon -> VM TyConRepr +mkTyConRepr vect_tc + = do + embed_tys <- mapM (mapM mkEmbedType) rep_tys + prod_tycons <- mapM (mk_tycon prodTyCon) rep_tys + sum_tycon <- mk_tycon sumTyCon rep_tys + + let prod_tys = zipWith mk_tc_app_maybe prod_tycons embed_tys + + return $ TyConRepr { + repr_tyvars = tyvars + , repr_tys = rep_tys + + , repr_embed_tys = embed_tys + , repr_prod_tycons = prod_tycons + , repr_prod_tys = prod_tys + , repr_sum_tycon = sum_tycon + , repr_type = mk_tc_app_maybe sum_tycon prod_tys + } + where + tyvars = tyConTyVars vect_tc + data_cons = tyConDataCons vect_tc + rep_tys = map dataConRepArgTys data_cons + + mk_tycon get_tc tys + | n > 1 = builtin (Just . get_tc n) + | otherwise = return Nothing + where n = length tys + + mk_tc_app_maybe Nothing [] = unitTy + mk_tc_app_maybe Nothing [ty] = ty + mk_tc_app_maybe (Just tc) tys = mkTyConApp tc tys + +{- +mkPRepr :: [[Type]] -> VM Type +mkPRepr tys + = do + embed_tc <- builtin embedTyCon + sum_tcs <- builtins sumTyCon + prod_tcs <- builtins prodTyCon + + let mk_sum [] = unitTy + mk_sum [ty] = ty + mk_sum tys = mkTyConApp (sum_tcs $ length tys) tys + + mk_prod [] = unitTy + mk_prod [ty] = ty + mk_prod tys = mkTyConApp (prod_tcs $ length tys) tys + + mk_embed ty = mkTyConApp embed_tc [ty] + + return . mk_sum + . map (mk_prod . map mk_embed) + $ tys +-} + +mkToPRepr :: [[CoreExpr]] -> VM ([CoreExpr], Type) +mkToPRepr ess + = do + embed_tc <- builtin embedTyCon + embed_dc <- builtin embedDataCon + sum_tcs <- builtins sumTyCon + prod_tcs <- builtins prodTyCon + + let mk_sum [] = ([Var unitDataConId], unitTy) + mk_sum [(expr, ty)] = ([expr], ty) + mk_sum es = (zipWith mk_alt (tyConDataCons sum_tc) exprs, + mkTyConApp sum_tc tys) + where + (exprs, tys) = unzip es + sum_tc = sum_tcs (length es) + mk_alt dc expr = mkConApp dc (map Type tys ++ [expr]) + + mk_prod [] = (Var unitDataConId, unitTy) + mk_prod [(expr, ty)] = (expr, ty) + mk_prod es = (mkConApp prod_dc (map Type tys ++ exprs), + mkTyConApp prod_tc tys) + where + (exprs, tys) = unzip es + prod_tc = prod_tcs (length es) + [prod_dc] = tyConDataCons prod_tc + + mk_embed expr = (mkConApp embed_dc [Type ty, expr], + mkTyConApp embed_tc [ty]) + where ty = exprType expr + + return . mk_sum $ map (mk_prod . map mk_embed) ess + +mkToArrPRepr :: CoreExpr -> CoreExpr -> [[CoreExpr]] -> VM CoreExpr +mkToArrPRepr len sel ess + = do + embed_tc <- builtin embedTyCon + (embed_rtc, _) <- parrayReprTyCon (mkTyConApp embed_tc [unitTy]) + let [embed_rdc] = tyConDataCons embed_rtc + + let mk_sum [(expr, ty)] = return (expr, ty) + mk_sum es + = do + sum_tc <- builtin . sumTyCon $ length es + (sum_rtc, _) <- parrayReprTyCon (mkTyConApp sum_tc tys) + let [sum_rdc] = tyConDataCons sum_rtc + + return (mkConApp sum_rdc (map Type tys ++ (len : sel : exprs)), + mkTyConApp sum_tc tys) + where + (exprs, tys) = unzip es + + mk_prod [(expr, ty)] = return (expr, ty) + mk_prod es + = do + prod_tc <- builtin . prodTyCon $ length es + (prod_rtc, _) <- parrayReprTyCon (mkTyConApp prod_tc tys) + let [prod_rdc] = tyConDataCons prod_rtc + + return (mkConApp prod_rdc (map Type tys ++ (len : exprs)), + mkTyConApp prod_tc tys) + where + (exprs, tys) = unzip es + + mk_embed expr = (mkConApp embed_rdc [Type ty, expr], + mkTyConApp embed_tc [ty]) + where ty = splitPArrayTy (exprType expr) + + liftM fst (mk_sum =<< mapM (mk_prod . map mk_embed) ess) + +mkFromPRepr :: CoreExpr -> Type -> [([Var], CoreExpr)] -> VM CoreExpr +mkFromPRepr scrut res_ty alts + = do + embed_dc <- builtin embedDataCon + sum_tcs <- builtins sumTyCon + prod_tcs <- builtins prodTyCon + + let un_sum expr ty [(vars, res)] = un_prod expr ty vars res + un_sum expr ty bs + = do + ps <- mapM (newLocalVar FSLIT("p")) tys + bodies <- sequence + $ zipWith4 un_prod (map Var ps) tys vars rs + return . Case expr (mkWildId ty) res_ty + $ zipWith3 mk_alt sum_dcs ps bodies + where + (vars, rs) = unzip bs + tys = splitFixedTyConApp sum_tc ty + sum_tc = sum_tcs $ length bs + sum_dcs = tyConDataCons sum_tc + + mk_alt dc p body = (DataAlt dc, [p], body) + + un_prod expr ty [] r = return r + un_prod expr ty [var] r = return $ un_embed expr ty var r + un_prod expr ty vars r + = do + xs <- mapM (newLocalVar FSLIT("x")) tys + let body = foldr (\(e,t,v) r -> un_embed e t v r) r + $ zip3 (map Var xs) tys vars + return $ Case expr (mkWildId ty) res_ty + [(DataAlt prod_dc, xs, body)] + where + tys = splitFixedTyConApp prod_tc ty + prod_tc = prod_tcs $ length vars + [prod_dc] = tyConDataCons prod_tc + + un_embed expr ty var r + = Case expr (mkWildId ty) res_ty + [(DataAlt embed_dc, [var], r)] + + un_sum scrut (exprType scrut) alts + +mkFromArrPRepr :: CoreExpr -> Type -> Var -> Var -> [[Var]] -> CoreExpr + -> VM CoreExpr +mkFromArrPRepr scrut res_ty len sel vars res + = return (Var unitDataConId) + +mkEmbedType :: Type -> VM Type +mkEmbedType ty = mkBuiltinTyConApp embedTyCon [ty] + +mkClosureType :: Type -> Type -> VM Type +mkClosureType arg_ty res_ty = mkBuiltinTyConApp closureTyCon [arg_ty, res_ty] + +mkClosureTypes :: [Type] -> Type -> VM Type +mkClosureTypes = mkBuiltinTyConApps closureTyCon + +mkPReprType :: Type -> VM Type +mkPReprType ty = mkBuiltinTyConApp preprTyCon [ty] + +mkPADictType :: Type -> VM Type +mkPADictType ty = mkBuiltinTyConApp paTyCon [ty] mkPArrayType :: Type -> VM Type -mkPArrayType ty +mkPArrayType ty = mkBuiltinTyConApp parrayTyCon [ty] + +parrayCoerce :: TyCon -> [Type] -> CoreExpr -> VM CoreExpr +parrayCoerce repr_tc args expr + | Just arg_co <- tyConFamilyCoercion_maybe repr_tc + = do + parray <- builtin parrayTyCon + + let co = mkAppCoercion (mkTyConApp parray []) + (mkSymCoercion (mkTyConApp arg_co args)) + + return $ mkCoerce co expr + +parrayReprTyCon :: Type -> VM (TyCon, [Type]) +parrayReprTyCon ty = builtin parrayTyCon >>= (`lookupFamInst` [ty]) + +parrayReprDataCon :: Type -> VM (DataCon, [Type]) +parrayReprDataCon ty + = do + (tc, arg_tys) <- parrayReprTyCon ty + let [dc] = tyConDataCons tc + return (dc, arg_tys) + +mkVScrut :: VExpr -> VM (VExpr, TyCon, [Type]) +mkVScrut (ve, le) + = do + (tc, arg_tys) <- parrayReprTyCon (exprType ve) + return ((ve, unwrapFamInstScrut tc arg_tys le), tc, arg_tys) + +prDictOfType :: Type -> VM CoreExpr +prDictOfType orig_ty + | Just (tycon, ty_args) <- splitTyConApp_maybe orig_ty + = do + dfun <- traceMaybeV "prDictOfType" (ppr tycon) (lookupTyConPR tycon) + prDFunApply (Var dfun) ty_args + +prDFunApply :: CoreExpr -> [Type] -> VM CoreExpr +prDFunApply dfun tys + = do + args <- mapM mkDFunArg arg_tys + return $ mkApps mono_dfun args + where + mono_dfun = mkTyApps dfun tys + (arg_tys, _) = splitFunTys (exprType mono_dfun) + +mkDFunArg :: Type -> VM CoreExpr +mkDFunArg ty + | Just (tycon, [arg]) <- splitTyConApp_maybe ty + + = let name = tyConName tycon + + get_dict | name == paTyConName = paDictOfType + | name == prTyConName = prDictOfType + | otherwise = pprPanic "mkDFunArg" (ppr ty) + + in get_dict arg + +mkDFunArg ty = pprPanic "mkDFunArg" (ppr ty) + +prCoerce :: TyCon -> [Type] -> CoreExpr -> VM CoreExpr +prCoerce repr_tc args expr + | Just arg_co <- tyConFamilyCoercion_maybe repr_tc = do - tc <- builtin parrayTyCon - return $ TyConApp tc [ty] + pr_tc <- builtin prTyCon + + let co = mkAppCoercion (mkTyConApp pr_tc []) + (mkSymCoercion (mkTyConApp arg_co args)) + + return $ mkCoerce co expr paDictArgType :: TyVar -> VM (Maybe Type) paDictArgType tv = go (TyVarTy tv) (tyVarKind tv) @@ -116,11 +432,21 @@ paDictOfTyApp (TyVarTy tv) ty_args paDFunApply dfun ty_args paDictOfTyApp (TyConApp tc _) ty_args = do - pa_class <- builtin paClass - (dfun, ty_args') <- lookupInst pa_class [TyConApp tc ty_args] - paDFunApply (Var dfun) ty_args' + dfun <- traceMaybeV "paDictOfTyApp" (ppr tc) (lookupTyConPA tc) + paDFunApply (Var dfun) ty_args paDictOfTyApp ty ty_args = pprPanic "paDictOfTyApp" (ppr ty) +paDFunType :: TyCon -> VM Type +paDFunType tc + = do + margs <- mapM paDictArgType tvs + res <- mkPADictType (mkTyConApp tc arg_tys) + return . mkForAllTys tvs + $ mkFunTys [arg | Just arg <- margs] res + where + tvs = tyConTyVars tc + arg_tys = mkTyVarTys tvs + paDFunApply :: CoreExpr -> [Type] -> VM CoreExpr paDFunApply dfun tys = do @@ -146,6 +472,20 @@ replicatePA len x = liftM (`mkApps` [len,x]) emptyPA :: Type -> VM CoreExpr emptyPA = paMethod emptyPAVar +liftPA :: CoreExpr -> VM CoreExpr +liftPA x + = do + lc <- builtin liftingContext + replicatePA (Var lc) x + +newLocalVVar :: FastString -> Type -> VM VVar +newLocalVVar fs vty + = do + lty <- mkPArrayType vty + vv <- newLocalVar fs vty + lv <- newLocalVar fs lty + return (vv,lv) + polyAbstract :: [TyVar] -> ((CoreExpr -> CoreExpr) -> VM a) -> VM a polyAbstract tvs p = localV @@ -168,23 +508,38 @@ polyApply expr tys dicts <- mapM paDictOfType tys return $ expr `mkTyApps` tys `mkApps` dicts -lookupPArrayFamInst :: Type -> VM (TyCon, [Type]) -lookupPArrayFamInst ty = builtin parrayTyCon >>= (`lookupFamInst` [ty]) +polyVApply :: VExpr -> [Type] -> VM VExpr +polyVApply expr tys + = do + dicts <- mapM paDictOfType tys + return $ mapVect (\e -> e `mkTyApps` tys `mkApps` dicts) expr + +hoistBinding :: Var -> CoreExpr -> VM () +hoistBinding v e = updGEnv $ \env -> + env { global_bindings = (v,e) : global_bindings env } hoistExpr :: FastString -> CoreExpr -> VM Var hoistExpr fs expr = do var <- newLocalVar fs (exprType expr) - updGEnv $ \env -> - env { global_bindings = (var, expr) : global_bindings env } + hoistBinding var expr return var -hoistPolyExpr :: FastString -> [TyVar] -> CoreExpr -> VM CoreExpr -hoistPolyExpr fs tvs expr +hoistVExpr :: VExpr -> VM VVar +hoistVExpr (ve, le) = do - poly_expr <- closedV . polyAbstract tvs $ \abstract -> return (abstract expr) - fn <- hoistExpr fs poly_expr - polyApply (Var fn) (mkTyVarTys tvs) + fs <- getBindName + vv <- hoistExpr ('v' `consFS` fs) ve + lv <- hoistExpr ('l' `consFS` fs) le + return (vv, lv) + +hoistPolyVExpr :: [TyVar] -> VM VExpr -> VM VExpr +hoistPolyVExpr tvs p + = do + expr <- closedV . polyAbstract tvs $ \abstract -> + liftM (mapVect abstract) p + fn <- hoistVExpr expr + polyVApply (vVar fn) (mkTyVarTys tvs) takeHoisted :: VM [(Var, CoreExpr)] takeHoisted @@ -193,59 +548,79 @@ takeHoisted setGEnv $ env { global_bindings = [] } return $ global_bindings env - -mkClosure :: Type -> Type -> Type -> CoreExpr -> CoreExpr -> CoreExpr -> CoreExpr -> VM CoreExpr -mkClosure arg_ty res_ty env_ty pa_dict vfn lfn env +mkClosure :: Type -> Type -> Type -> VExpr -> VExpr -> VM VExpr +mkClosure arg_ty res_ty env_ty (vfn,lfn) (venv,lenv) = do - mk <- builtin mkClosureVar - return $ Var mk `mkTyApps` [arg_ty, res_ty, env_ty] `mkApps` [pa_dict, vfn, lfn, env] - -mkClosureP :: Type -> Type -> Type -> CoreExpr -> CoreExpr -> CoreExpr -> CoreExpr -> VM CoreExpr -mkClosureP arg_ty res_ty env_ty pa_dict vfn lfn env + dict <- paDictOfType env_ty + mkv <- builtin mkClosureVar + mkl <- builtin mkClosurePVar + return (Var mkv `mkTyApps` [arg_ty, res_ty, env_ty] `mkApps` [dict, vfn, lfn, venv], + Var mkl `mkTyApps` [arg_ty, res_ty, env_ty] `mkApps` [dict, vfn, lfn, lenv]) + +mkClosureApp :: VExpr -> VExpr -> VM VExpr +mkClosureApp (vclo, lclo) (varg, larg) + = do + vapply <- builtin applyClosureVar + lapply <- builtin applyClosurePVar + return (Var vapply `mkTyApps` [arg_ty, res_ty] `mkApps` [vclo, varg], + Var lapply `mkTyApps` [arg_ty, res_ty] `mkApps` [lclo, larg]) + where + (arg_ty, res_ty) = splitClosureTy (exprType vclo) + +buildClosures :: [TyVar] -> [VVar] -> [Type] -> Type -> VM VExpr -> VM VExpr +buildClosures tvs vars [] res_ty mk_body + = mk_body +buildClosures tvs vars [arg_ty] res_ty mk_body + = buildClosure tvs vars arg_ty res_ty mk_body +buildClosures tvs vars (arg_ty : arg_tys) res_ty mk_body = do - mk <- builtin mkClosurePVar - return $ Var mk `mkTyApps` [arg_ty, res_ty, env_ty] `mkApps` [pa_dict, vfn, lfn, env] + res_ty' <- mkClosureTypes arg_tys res_ty + arg <- newLocalVVar FSLIT("x") arg_ty + buildClosure tvs vars arg_ty res_ty' + . hoistPolyVExpr tvs + $ do + lc <- builtin liftingContext + clo <- buildClosures tvs (vars ++ [arg]) arg_tys res_ty mk_body + return $ vLams lc (vars ++ [arg]) clo -- (clo , aclo (Arr lc xs1 ... xsn) ) -- where -- f = \env v -> case env of -> e x1 ... xn v -- f^ = \env v -> case env of Arr l xs1 ... xsn -> e^ l x1 ... xn v - -buildClosure :: [TyVar] -> [(Var,Var)] -> (Var,Var) -> Var -> CoreExpr -> CoreExpr -> VM (CoreExpr, CoreExpr) -buildClosure tvs env (varg, larg) lv vbody lbody +-- +buildClosure :: [TyVar] -> [VVar] -> Type -> Type -> VM VExpr -> VM VExpr +buildClosure tvs vars arg_ty res_ty mk_body = do - let (venv_ty, venv, bind_venv) = mkVectEnv tys vs - (lenv, bind_lenv) <- mkLiftEnv (Var lv) tys ls - lenv_ty <- mkPArrayType venv_ty - - venv_bndr <- newLocalVar FSLIT("env") venv_ty - lenv_bndr <- newLocalVar FSLIT("env") lenv_ty - - let mono_vfn = mkLams [venv_bndr, varg] - . bind_venv (Var venv_bndr) - $ vbody `mkVarApps` vs `mkVarApps` [varg] - mono_lfn = mkLams [lenv_bndr, larg] - . bind_lenv (Var lenv_bndr) lv - $ lbody `mkVarApps` (lv:ls) `mkVarApps` [larg] - - vfn <- hoistPolyExpr FSLIT("vfn") tvs mono_vfn - lfn <- hoistPolyExpr FSLIT("lfn") tvs mono_lfn - - pa_dict <- paDictOfType venv_ty - - vclo <- mkClosure arg_ty res_ty venv_ty pa_dict vfn lfn venv - lclo <- mkClosureP arg_ty res_ty venv_ty pa_dict vfn lfn lenv - - return (vclo, lclo) - + (env_ty, env, bind) <- buildEnv vars + env_bndr <- newLocalVVar FSLIT("env") env_ty + arg_bndr <- newLocalVVar FSLIT("arg") arg_ty + + fn <- hoistPolyVExpr tvs + $ do + lc <- builtin liftingContext + body <- mk_body + body' <- bind (vVar env_bndr) + (vVarApps lc body (vars ++ [arg_bndr])) + return (vLamsWithoutLC [env_bndr, arg_bndr] body') + + mkClosure arg_ty res_ty env_ty fn env + +buildEnv :: [VVar] -> VM (Type, VExpr, VExpr -> VExpr -> VM VExpr) +buildEnv vvs + = do + lc <- builtin liftingContext + let (ty, venv, vbind) = mkVectEnv tys vs + (lenv, lbind) <- mkLiftEnv lc tys ls + return (ty, (venv, lenv), + \(venv,lenv) (vbody,lbody) -> + do + let vbody' = vbind venv vbody + lbody' <- lbind lenv lbody + return (vbody', lbody')) where - vs = map fst env - ls = map snd env - tys = map idType vs + (vs,ls) = unzip vvs + tys = map idType vs - arg_ty = idType varg - res_ty = exprType vbody - mkVectEnv :: [Type] -> [Var] -> (Type, CoreExpr, CoreExpr -> CoreExpr -> CoreExpr) mkVectEnv [] [] = (unitTy, Var unitDataConId, \env body -> body) mkVectEnv [ty] [v] = (ty, Var v, \env body -> Let (NonRec v env) body) @@ -255,29 +630,33 @@ mkVectEnv tys vs = (ty, mkCoreTup (map Var vs), where ty = mkCoreTupTy tys -mkLiftEnv :: CoreExpr -> [Type] -> [Var] - -> VM (CoreExpr, CoreExpr -> Var -> CoreExpr -> CoreExpr) +mkLiftEnv :: Var -> [Type] -> [Var] -> VM (CoreExpr, CoreExpr -> CoreExpr -> VM CoreExpr) mkLiftEnv lc [ty] [v] - = do - len <- lengthPA (Var v) - return (Var v, \env lv body -> Let (NonRec v env) - $ Case len lv (exprType body) [(DEFAULT, [], body)]) + = return (Var v, \env body -> + do + len <- lengthPA (Var v) + return . Let (NonRec v env) + $ Case len lc (exprType body) [(DEFAULT, [], body)]) -- NOTE: this transparently deals with empty environments mkLiftEnv lc tys vs = do - (env_tc, env_tyargs) <- lookupPArrayFamInst vty + (env_tc, env_tyargs) <- parrayReprTyCon vty let [env_con] = tyConDataCons env_tc env = Var (dataConWrapId env_con) - `mkTyApps` env_tyargs - `mkApps` (lc : map Var vs) - - bind env lv body = let scrut = unwrapFamInstScrut env_tc env_tyargs env - in - Case scrut (mkWildId (exprType scrut)) (exprType body) - [(DataAlt env_con, lv : vs, body)] + `mkTyApps` env_tyargs + `mkVarApps` (lc : vs) + + bind env body = let scrut = unwrapFamInstScrut env_tc env_tyargs env + in + return $ Case scrut (mkWildId (exprType scrut)) + (exprType body) + [(DataAlt env_con, lc : bndrs, body)] return (env, bind) where vty = mkCoreTupTy tys + bndrs | null vs = [mkWildId unitTy] + | otherwise = vs +