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Mark all signals as ports or states when appropriate.
[matthijs/master-project/cλash.git]
/
Translator.hs
diff --git
a/Translator.hs
b/Translator.hs
index cccac4c08047178ec368a5a992d3c0eac48f4a0d..9cced3444d452607e3b8d35cc9b3ce631b6ee515 100644
(file)
--- a/
Translator.hs
+++ b/
Translator.hs
@@
-54,7
+54,7
@@
main =
--core <- GHC.compileToCoreSimplified "Adders.hs"
core <- GHC.compileToCoreSimplified "Adders.hs"
--liftIO $ printBinds (cm_binds core)
--core <- GHC.compileToCoreSimplified "Adders.hs"
core <- GHC.compileToCoreSimplified "Adders.hs"
--liftIO $ printBinds (cm_binds core)
- let binds = Maybe.mapMaybe (findBind (cm_binds core)) ["
sfull_adder
"]
+ let binds = Maybe.mapMaybe (findBind (cm_binds core)) ["
dff
"]
liftIO $ putStr $ prettyShow binds
-- Turn bind into VHDL
let (vhdl, sess) = State.runState (mkVHDL binds) (VHDLSession core 0 Map.empty)
liftIO $ putStr $ prettyShow binds
-- Turn bind into VHDL
let (vhdl, sess) = State.runState (mkVHDL binds) (VHDLSession core 0 Map.empty)
@@
-72,13
+72,7
@@
main =
modFuncs nameFlatFunction
modFuncs VHDL.createEntity
modFuncs VHDL.createArchitecture
modFuncs nameFlatFunction
modFuncs VHDL.createEntity
modFuncs VHDL.createArchitecture
- -- Extract the library units generated from all the functions in the
- -- session.
- funcs <- getFuncs
- let units = concat $ map VHDL.getLibraryUnits funcs
- return $ AST.DesignFile
- []
- units
+ VHDL.getDesignFile
findBind :: [CoreBind] -> String -> Maybe CoreBind
findBind binds lookfor =
findBind :: [CoreBind] -> String -> Maybe CoreBind
findBind binds lookfor =
@@
-188,7
+182,7
@@
nameFlatFunction hsfunc fdata =
-- Name the signals in all other functions
Just flatfunc ->
let s = flat_sigs flatfunc in
-- Name the signals in all other functions
Just flatfunc ->
let s = flat_sigs flatfunc in
- let s' = map (\(id, (SignalInfo Nothing
ty)) -> (id, SignalInfo (Just $ "sig_" ++ (show id))
ty)) s in
+ let s' = map (\(id, (SignalInfo Nothing
use ty)) -> (id, SignalInfo (Just $ "sig_" ++ (show id)) use
ty)) s in
let flatfunc' = flatfunc { flat_sigs = s' } in
setFlatFunc hsfunc flatfunc'
let flatfunc' = flatfunc { flat_sigs = s' } in
setFlatFunc hsfunc flatfunc'