module VectType ( vectTyCon, vectType, vectTypeEnv,
- PAInstance, painstInstance, buildPADict )
+ PAInstance, buildPADict )
where
#include "HsVersions.h"
import VectMonad
import VectUtils
+import VectCore
import HscTypes ( TypeEnv, extendTypeEnvList, typeEnvTyCons )
import CoreSyn
import Outputable
import Control.Monad ( liftM, liftM2, zipWithM, zipWithM_ )
-import Data.List ( inits, tails )
+import Data.List ( inits, tails, zipWith4 )
-- ----------------------------------------------------------------------------
-- Types
type TyConGroup = ([TyCon], UniqSet TyCon)
data PAInstance = PAInstance {
- painstInstance :: Instance
+ painstDFun :: Var
+ , painstOrigTyCon :: TyCon
, painstVectTyCon :: TyCon
, painstArrTyCon :: TyCon
}
-vectTypeEnv :: TypeEnv -> VM (TypeEnv, [FamInst], [PAInstance])
+vectTypeEnv :: TypeEnv -> VM (TypeEnv, [FamInst], [(Var, CoreExpr)])
vectTypeEnv env
= do
cs <- readGEnv $ mk_map . global_tycons
vect_tcs = keep_tcs ++ new_tcs
parr_tcs <- zipWithM buildPArrayTyCon orig_tcs vect_tcs
- pa_insts <- zipWithM buildPAInstance vect_tcs parr_tcs
+ dfuns <- mapM mkPADFun vect_tcs
+ defTyConPAs (zip vect_tcs dfuns)
+ binds <- sequence (zipWith4 buildTyConBindings orig_tcs vect_tcs parr_tcs dfuns)
let all_new_tcs = new_tcs ++ parr_tcs
++ [ADataCon dc | tc <- all_new_tcs
, dc <- tyConDataCons tc])
- return (new_env, map mkLocalFamInst parr_tcs, pa_insts)
+ return (new_env, map mkLocalFamInst parr_tcs, concat binds)
where
tycons = typeEnvTyCons env
groups = tyConGroups tycons
buildPArrayDataCon orig_name vect_tc repr_tc
= do
dc_name <- cloneName mkPArrayDataConOcc orig_name
- shape_ty <- mkPArrayType intTy -- FIXME: we want to unbox this!
+ shape <- tyConShape vect_tc
repr_tys <- mapM mkPArrayType types
wrk_name <- cloneName mkDataConWorkerOcc dc_name
wrp_name <- cloneName mkDataConWrapperOcc dc_name
let ids = mkDataConIds wrp_name wrk_name data_con
data_con = mkDataCon dc_name
False
- (MarkedStrict : map (const NotMarkedStrict) repr_tys)
+ (shapeStrictness shape ++ map (const NotMarkedStrict) repr_tys)
[]
(tyConTyVars vect_tc)
[]
[]
[]
- (shape_ty : repr_tys)
+ (shapeReprTys shape ++ repr_tys)
repr_tc
[]
ids
types = [ty | dc <- tyConDataCons vect_tc
, ty <- dataConRepArgTys dc]
-buildPAInstance :: TyCon -> TyCon -> VM PAInstance
-buildPAInstance vect_tc arr_tc
+mkPADFun :: TyCon -> VM Var
+mkPADFun vect_tc
+ = newExportedVar (mkPADFunOcc $ getOccName vect_tc) =<< paDFunType vect_tc
+
+data Shape = Shape {
+ shapeReprTys :: [Type]
+ , shapeStrictness :: [StrictnessMark]
+ , shapeLength :: [CoreExpr] -> VM CoreExpr
+ , shapeReplicate :: CoreExpr -> CoreExpr -> VM [CoreExpr]
+ }
+
+tyConShape :: TyCon -> VM Shape
+tyConShape vect_tc
+ | isProductTyCon vect_tc
+ = return $ Shape {
+ shapeReprTys = [intPrimTy]
+ , shapeStrictness = [NotMarkedStrict]
+ , shapeLength = \[len] -> return len
+ , shapeReplicate = \len _ -> return [len]
+ }
+
+ | otherwise
= do
- pa <- builtin paClass
- let inst_ty = mkForAllTys tvs
- . (mkFunTys $ mkPredTys [ClassP pa [ty] | ty <- arg_tys])
- $ mkPredTy (ClassP pa [mkTyConApp vect_tc arg_tys])
+ repr_ty <- mkPArrayType intTy -- FIXME: we want to unbox this
+ return $ Shape {
+ shapeReprTys = [repr_ty]
+ , shapeStrictness = [MarkedStrict]
+ , shapeLength = \[sel] -> lengthPA sel
+ , shapeReplicate = \len n -> do
+ e <- replicatePA len n
+ return [e]
+ }
- dfun <- newExportedVar (mkPADFunOcc $ getOccName vect_tc) inst_ty
+buildTyConBindings :: TyCon -> TyCon -> TyCon -> Var -> VM [(Var, CoreExpr)]
+buildTyConBindings orig_tc vect_tc arr_tc dfun
+ = do
+ shape <- tyConShape vect_tc
+ sequence_ (zipWith4 (vectDataConWorker shape vect_tc arr_tc arr_dc)
+ orig_dcs
+ vect_dcs
+ (inits repr_tys)
+ (tails repr_tys))
+ dict <- buildPADict shape vect_tc arr_tc dfun
+ binds <- takeHoisted
+ return $ (dfun, dict) : binds
+ where
+ orig_dcs = tyConDataCons orig_tc
+ vect_dcs = tyConDataCons vect_tc
+ [arr_dc] = tyConDataCons arr_tc
- return $ PAInstance {
- painstInstance = mkLocalInstance dfun NoOverlap
- , painstVectTyCon = vect_tc
- , painstArrTyCon = arr_tc
- }
+ repr_tys = map dataConRepArgTys vect_dcs
+
+vectDataConWorker :: Shape -> TyCon -> TyCon -> DataCon
+ -> DataCon -> DataCon -> [[Type]] -> [[Type]]
+ -> VM ()
+vectDataConWorker shape vect_tc arr_tc arr_dc orig_dc vect_dc pre (dc_tys : post)
+ = do
+ clo <- closedV
+ . inBind orig_worker
+ . polyAbstract tvs $ \abstract ->
+ liftM (abstract . vectorised)
+ $ buildClosures tvs [] dc_tys res_ty (liftM2 (,) mk_vect mk_lift)
+
+ worker <- cloneId mkVectOcc orig_worker (exprType clo)
+ hoistBinding worker clo
+ defGlobalVar orig_worker worker
+ return ()
where
- tvs = tyConTyVars arr_tc
+ tvs = tyConTyVars vect_tc
arg_tys = mkTyVarTys tvs
-
-buildPADict :: PAInstance -> VM [(Var, CoreExpr)]
-buildPADict (PAInstance {
- painstInstance = inst
- , painstVectTyCon = vect_tc
- , painstArrTyCon = arr_tc })
- = localV . abstractOverTyVars (tyConTyVars arr_tc) $ \abstract ->
+ res_ty = mkTyConApp vect_tc arg_tys
+
+ orig_worker = dataConWorkId orig_dc
+
+ mk_vect = return . mkConApp vect_dc $ map Type arg_tys
+ mk_lift = do
+ len <- newLocalVar FSLIT("n") intPrimTy
+ arr_tys <- mapM mkPArrayType dc_tys
+ args <- mapM (newLocalVar FSLIT("xs")) arr_tys
+ shapes <- shapeReplicate shape
+ (Var len)
+ (mkDataConTag vect_dc)
+
+ empty_pre <- mapM emptyPA (concat pre)
+ empty_post <- mapM emptyPA (concat post)
+
+ return . mkLams (len : args)
+ . wrapFamInstBody arr_tc arg_tys
+ . mkConApp arr_dc
+ $ map Type arg_tys ++ shapes
+ ++ empty_pre
+ ++ map Var args
+ ++ empty_post
+
+buildPADict :: Shape -> TyCon -> TyCon -> Var -> VM CoreExpr
+buildPADict shape vect_tc arr_tc dfun
+ = polyAbstract tvs $ \abstract ->
do
- meth_binds <- mapM (mk_method abstract) paMethods
- let meth_vars = map (Var . fst) meth_binds
- meth_exprs <- mapM (`applyToTypes` arg_tys) meth_vars
+ meth_binds <- mapM (mk_method shape) paMethods
+ let meth_exprs = map (Var . fst) meth_binds
- pa_dc <- builtin paDictDataCon
+ pa_dc <- builtin paDataCon
let dict = mkConApp pa_dc (Type (mkTyConApp vect_tc arg_tys) : meth_exprs)
- return $ (instanceDFunId inst, abstract dict) : meth_binds
+ body = Let (Rec meth_binds) dict
+ return . mkInlineMe $ abstract body
where
tvs = tyConTyVars arr_tc
arg_tys = mkTyVarTys tvs
- mk_method abstract (name, build)
+ mk_method shape (name, build)
= localV
$ do
- body <- liftM abstract $ build vect_tc arr_tc
- var <- newLocalVar name (exprType body)
+ body <- build shape vect_tc arr_tc
+ var <- newLocalVar name (exprType body)
return (var, mkInlineMe body)
paMethods = [(FSLIT("lengthPA"), buildLengthPA),
(FSLIT("replicatePA"), buildReplicatePA)]
-buildLengthPA :: TyCon -> TyCon -> VM CoreExpr
-buildLengthPA _ arr_tc
+buildLengthPA :: Shape -> TyCon -> TyCon -> VM CoreExpr
+buildLengthPA shape vect_tc arr_tc
= do
- arg <- newLocalVar FSLIT("xs") arg_ty
- shape <- newLocalVar FSLIT("sel") shape_ty
- body <- lengthPA (Var shape)
+ parr_ty <- mkPArrayType (mkTyConApp vect_tc arg_tys)
+ arg <- newLocalVar FSLIT("xs") parr_ty
+ shapes <- mapM (newLocalVar FSLIT("sh")) shape_tys
+ wilds <- mapM newDummyVar repr_tys
+ let scrut = unwrapFamInstScrut arr_tc arg_tys (Var arg)
+ scrut_ty = exprType scrut
+
+ body <- shapeLength shape (map Var shapes)
+
return . Lam arg
- $ Case (Var arg) (mkWildId arg_ty) intPrimTy
- [(DataAlt repr_dc, shape : map mkWildId repr_tys, body)]
+ $ Case scrut (mkWildId scrut_ty) intPrimTy
+ [(DataAlt repr_dc, shapes ++ wilds, body)]
where
- arg_ty = mkTyConApp arr_tc . mkTyVarTys $ tyConTyVars arr_tc
+ arg_tys = mkTyVarTys $ tyConTyVars arr_tc
[repr_dc] = tyConDataCons arr_tc
- shape_ty : repr_tys = dataConRepArgTys repr_dc
-
+
+ shape_tys = shapeReprTys shape
+ repr_tys = drop (length shape_tys) (dataConRepArgTys repr_dc)
-- data T = C0 t1 ... tm
-- ...
--
--
-buildReplicatePA :: TyCon -> TyCon -> VM CoreExpr
-buildReplicatePA vect_tc arr_tc
+buildReplicatePA :: Shape -> TyCon -> TyCon -> VM CoreExpr
+buildReplicatePA shape vect_tc arr_tc
= do
len_var <- newLocalVar FSLIT("n") intPrimTy
val_var <- newLocalVar FSLIT("x") val_ty
let len = Var len_var
val = Var val_var
- shape <- replicatePA len (ctr_num val)
+ shape_reprs <- shapeReplicate shape len (ctr_num val)
reprs <- liftM concat $ mapM (mk_comp_arrs len val) vect_dcs
-
+
return . mkLams [len_var, val_var]
- $ mkConApp arr_dc (map (Type . TyVarTy) (tyConTyVars arr_tc) ++ (shape : reprs))
+ . wrapFamInstBody arr_tc arg_tys
+ $ mkConApp arr_dc (map Type arg_tys ++ shape_reprs ++ reprs)
where
- val_ty = mkTyConApp vect_tc . mkTyVarTys $ tyConTyVars arr_tc
- wild = mkWildId val_ty
+ arg_tys = mkTyVarTys (tyConTyVars arr_tc)
+ val_ty = mkTyConApp vect_tc arg_tys
+ wild = mkWildId val_ty
vect_dcs = tyConDataCons vect_tc
[arr_dc] = tyConDataCons arr_tc
arr_ty <- mkPArrayType ty
return $ Case val wild arr_ty
- [(DataAlt dc, pre ++ (var : post), rep), (DEFAULT, [], empty)]
+ [(DEFAULT, [], empty), (DataAlt dc, pre ++ (var : post), rep)]
-- | Split the given tycons into two sets depending on whether they have to be
-- converted (first list) or not (second list). The first argument contains