--- Vectorisation monad
-
-data Builtins = Builtins {
- parrayTyCon :: TyCon
- , paTyCon :: TyCon
- , closureTyCon :: TyCon
- , mkClosureVar :: Var
- , applyClosureVar :: Var
- , mkClosurePVar :: Var
- , applyClosurePVar :: Var
- , closurePAVar :: Var
- , lengthPAVar :: Var
- , replicatePAVar :: Var
- }
-
-initBuiltins :: DsM Builtins
-initBuiltins
- = do
- parrayTyCon <- dsLookupTyCon parrayTyConName
- paTyCon <- dsLookupTyCon paTyConName
- closureTyCon <- dsLookupTyCon closureTyConName
-
- mkClosureVar <- dsLookupGlobalId mkClosureName
- applyClosureVar <- dsLookupGlobalId applyClosureName
- mkClosurePVar <- dsLookupGlobalId mkClosurePName
- applyClosurePVar <- dsLookupGlobalId applyClosurePName
- closurePAVar <- dsLookupGlobalId closurePAName
- lengthPAVar <- dsLookupGlobalId lengthPAName
- replicatePAVar <- dsLookupGlobalId replicatePAName
-
- return $ Builtins {
- parrayTyCon = parrayTyCon
- , paTyCon = paTyCon
- , closureTyCon = closureTyCon
- , mkClosureVar = mkClosureVar
- , applyClosureVar = applyClosureVar
- , mkClosurePVar = mkClosurePVar
- , applyClosurePVar = applyClosurePVar
- , closurePAVar = closurePAVar
- , lengthPAVar = lengthPAVar
- , replicatePAVar = replicatePAVar
- }
+-- Bindings
+
+vectBndr :: Var -> VM (Var, Var)
+vectBndr v
+ = do
+ vty <- vectType (idType v)
+ lty <- mkPArrayType vty
+ let vv = v `Id.setIdType` vty
+ lv = v `Id.setIdType` lty
+ updLEnv (mapTo vv lv)
+ return (vv, lv)
+ where
+ mapTo vv lv env = env { local_vars = extendVarEnv (local_vars env) v (Var vv, Var lv) }
+
+vectBndrIn :: Var -> VM a -> VM (Var, Var, a)
+vectBndrIn v p
+ = localV
+ $ do
+ (vv, lv) <- vectBndr v
+ x <- p
+ return (vv, lv, x)
+
+vectBndrsIn :: [Var] -> VM a -> VM ([Var], [Var], a)
+vectBndrsIn vs p
+ = localV
+ $ do
+ (vvs, lvs) <- mapAndUnzipM vectBndr vs
+ x <- p
+ return (vvs, lvs, x)
+
+-- ----------------------------------------------------------------------------
+-- Expressions
+
+capply :: (CoreExpr, CoreExpr) -> (CoreExpr, CoreExpr) -> VM (CoreExpr, CoreExpr)
+capply (vfn, lfn) (varg, larg)
+ = do
+ apply <- builtin applyClosureVar
+ applyP <- builtin applyClosurePVar
+ return (mkApps (Var apply) [Type arg_ty, Type res_ty, vfn, varg],
+ mkApps (Var applyP) [Type arg_ty, Type res_ty, lfn, larg])
+ where
+ fn_ty = exprType vfn
+ (arg_ty, res_ty) = splitClosureTy fn_ty
+
+vectVar :: CoreExpr -> Var -> VM (CoreExpr, CoreExpr)
+vectVar lc v
+ = do
+ r <- lookupVar v
+ case r of
+ Local es -> return es
+ Global vexpr -> do
+ lexpr <- replicatePA vexpr lc
+ return (vexpr, lexpr)
+
+vectPolyVar :: CoreExpr -> Var -> [Type] -> VM (CoreExpr, CoreExpr)
+vectPolyVar lc v tys
+ = do
+ r <- lookupVar v
+ case r of
+ Local (vexpr, lexpr) -> liftM2 (,) (mk_app vexpr) (mk_app lexpr)
+ Global poly -> do
+ vexpr <- mk_app poly
+ lexpr <- replicatePA vexpr lc
+ return (vexpr, lexpr)
+ where
+ mk_app e = applyToTypes e =<< mapM vectType tys
+
+vectPolyExpr :: CoreExpr -> CoreExprWithFVs -> VM (CoreExpr, CoreExpr)
+vectPolyExpr lc expr
+ = localV
+ . abstractOverTyVars tvs $ \mk_lams ->
+ -- FIXME: shadowing (tvs in lc)
+ do
+ (vmono, lmono) <- vectExpr lc mono
+ return $ (mk_lams vmono, mk_lams lmono)
+ where
+ (tvs, mono) = collectAnnTypeBinders expr
+
+vectExpr :: CoreExpr -> CoreExprWithFVs -> VM (CoreExpr, CoreExpr)
+vectExpr lc (_, AnnType ty)
+ = do
+ vty <- vectType ty
+ return (Type vty, Type vty)
+
+vectExpr lc (_, AnnVar v) = vectVar lc v
+
+vectExpr lc (_, AnnLit lit)
+ = do
+ let vexpr = Lit lit
+ lexpr <- replicatePA vexpr lc
+ return (vexpr, lexpr)
+
+vectExpr lc (_, AnnNote note expr)
+ = do
+ (vexpr, lexpr) <- vectExpr lc expr
+ return (Note note vexpr, Note note lexpr)
+
+vectExpr lc e@(_, AnnApp _ arg)
+ | isAnnTypeArg arg
+ = vectTyAppExpr lc fn tys
+ where
+ (fn, tys) = collectAnnTypeArgs e
+
+vectExpr lc (_, AnnApp fn arg)
+ = do
+ fn' <- vectExpr lc fn
+ arg' <- vectExpr lc arg
+ capply fn' arg'
+
+vectExpr lc (_, AnnCase expr bndr ty alts)
+ = panic "vectExpr: case"
+
+vectExpr lc (_, AnnLet (AnnNonRec bndr rhs) body)
+ = do
+ (vrhs, lrhs) <- vectPolyExpr lc rhs
+ (vbndr, lbndr, (vbody, lbody)) <- vectBndrIn bndr (vectExpr lc body)
+ return (Let (NonRec vbndr vrhs) vbody,
+ Let (NonRec lbndr lrhs) lbody)
+
+vectExpr lc (_, AnnLet (AnnRec prs) body)
+ = do
+ (vbndrs, lbndrs, (vrhss, vbody, lrhss, lbody)) <- vectBndrsIn bndrs vect
+ return (Let (Rec (zip vbndrs vrhss)) vbody,
+ Let (Rec (zip lbndrs lrhss)) lbody)
+ where
+ (bndrs, rhss) = unzip prs
+
+ vect = do
+ (vrhss, lrhss) <- mapAndUnzipM (vectExpr lc) rhss
+ (vbody, lbody) <- vectPolyExpr lc body
+ return (vrhss, vbody, lrhss, lbody)
+
+vectExpr lc e@(_, AnnLam bndr body)
+ | isTyVar bndr = pprPanic "vectExpr" (ppr $ deAnnotate e)
+
+vectExpr lc (fvs, AnnLam bndr body)
+ = do
+ tyvars <- localTyVars
+ info <- mkCEnvInfo fvs bndr body
+ (poly_vfn, poly_lfn) <- mkClosureFns info tyvars bndr body
+
+ vfn_var <- hoistExpr FSLIT("vfn") poly_vfn
+ lfn_var <- hoistExpr FSLIT("lfn") poly_lfn
+
+ let (venv, lenv) = mkClosureEnvs info lc
+
+ let env_ty = cenv_vty info
+
+ pa_dict <- paDictOfType env_ty
+
+ arg_ty <- vectType (varType bndr)
+ res_ty <- vectType (exprType $ deAnnotate body)
+
+ -- FIXME: move the functions to the top level
+ mono_vfn <- applyToTypes (Var vfn_var) (mkTyVarTys tyvars)
+ mono_lfn <- applyToTypes (Var lfn_var) (mkTyVarTys tyvars)
+
+ mk_clo <- builtin mkClosureVar
+ mk_cloP <- builtin mkClosurePVar