X-Git-Url: http://git.megacz.com/?a=blobdiff_plain;f=compiler%2Fvectorise%2FVectorise%2FExp.hs;h=4e07086fd83eff5ce17b6cd0a309dc075b350ed7;hb=f0c2b5e857841103e5431b698a9eb853aea399b0;hp=7831c93e6b45e8857c9620db5ecd1e434d768e51;hpb=907fa8af43e420e59ad1b78623f0ffe445c09e87;p=ghc-hetmet.git diff --git a/compiler/vectorise/Vectorise/Exp.hs b/compiler/vectorise/Vectorise/Exp.hs index 7831c93..4e07086 100644 --- a/compiler/vectorise/Vectorise/Exp.hs +++ b/compiler/vectorise/Vectorise/Exp.hs @@ -22,7 +22,7 @@ import Var import VarEnv import VarSet import Id -import BasicTypes +import BasicTypes( isLoopBreaker ) import Literal import TysWiredIn import TysPrim @@ -197,13 +197,32 @@ vectScalarLam args body = tycon == intTyCon || tycon == floatTyCon || tycon == doubleTyCon + || tycon == boolTyCon | otherwise = False is_scalar vs (Var v) = v `elemVarSet` vs is_scalar _ e@(Lit _) = is_scalar_ty $ exprType e - is_scalar vs (App e1 e2) = is_scalar vs e1 && is_scalar vs e2 - is_scalar _ _ = False + + is_scalar _ (App (Var v) (Lit lit)) + | Just con <- isDataConId_maybe v = con `elem` [intDataCon, floatDataCon, doubleDataCon] + + is_scalar vs (App e1 e2) = is_scalar vs e1 && is_scalar vs e2 + is_scalar vs (Let (NonRec b letExpr) body) + = is_scalar vs letExpr && is_scalar (extendVarSet vs b) body + is_scalar vs (Let (Rec bnds) body) + = let vs' = extendVarSetList vs (map fst bnds) + in all (is_scalar vs') (map snd bnds) && is_scalar vs' body + is_scalar vs (Case e eId ty alts) + = let vs' = extendVarSet vs eId + in is_scalar_ty ty && + is_scalar vs' e && + (all (is_scalar_alt vs') alts) + + is_scalar _ e = False + + is_scalar_alt vs (_, bs, e) + = is_scalar (extendVarSetList vs bs) e -- A scalar function has to actually compute something. Without the check, -- we would treat (\(x :: Int) -> x) as a scalar function and lift it to @@ -211,8 +230,14 @@ vectScalarLam args body -- (\n# x -> x) which is what we want. uses funs (Var v) = v `elemVarSet` funs uses funs (App e1 e2) = uses funs e1 || uses funs e2 + uses funs (Let (NonRec b letExpr) body) + = uses funs letExpr || uses funs body + uses funs (Case e eId ty alts) + = uses funs e || any (uses_alt funs) alts uses _ _ = False + uses_alt funs (_, bs, e) + = uses funs e -- | Vectorise a lambda abstraction. vectLam