module Data.ByteArray.Pack
    ( Packer
    , Result(..)
    , fill
    , pack
      
      
    , putWord8
    , putWord16
    , putWord32
    , putStorable
    , putBytes
    , fillList
    , fillUpWith
      
    , skip
    , skipStorable
    ) where
import           Data.Word
import           Foreign.Ptr
import           Foreign.Storable
import           Data.Memory.Internal.Imports ()
import           Data.Memory.Internal.Compat
import           Data.Memory.PtrMethods
import           Data.ByteArray.Pack.Internal
import           Data.ByteArray (ByteArray, ByteArrayAccess, MemView(..))
import qualified Data.ByteArray as B
fill :: ByteArray byteArray => Int -> Packer a -> Either String byteArray
fill len packing = unsafeDoIO $ do
    (val, out) <- B.allocRet len $ \ptr -> runPacker_ packing (MemView ptr len)
    case val of
        PackerMore _ (MemView _ r)
            | r == 0    -> return $ Right out
            | otherwise -> return $ Left ("remaining unpacked bytes " ++ show r ++ " at the end of buffer")
        PackerFail err  -> return $ Left err
pack :: ByteArray byteArray => Packer a -> Int -> Either String byteArray
pack packing len = fill len packing
{-# DEPRECATED pack "use fill instead" #-}
fillUpWithWord8' :: Word8 -> Packer ()
fillUpWithWord8' w = Packer $ \(MemView ptr size) -> do
    memSet ptr w size
    return $ PackerMore () (MemView (ptr `plusPtr` size) 0)
putStorable :: Storable storable => storable -> Packer ()
putStorable s = actionPacker (sizeOf s) (\ptr -> poke (castPtr ptr) s)
putBytes :: ByteArrayAccess ba => ba -> Packer ()
putBytes bs
    | neededLength == 0 = return ()
    | otherwise         =
        actionPacker neededLength $ \dstPtr -> B.withByteArray bs $ \srcPtr ->
            memCopy dstPtr srcPtr neededLength
  where
    neededLength = B.length bs
skip :: Int -> Packer ()
skip n = actionPacker n (\_ -> return ())
skipStorable :: Storable storable => storable -> Packer ()
skipStorable = skip . sizeOf
fillUpWith :: Storable storable => storable -> Packer ()
fillUpWith s = fillList $ repeat s
{-# RULES "fillUpWithWord8" forall s . fillUpWith s = fillUpWithWord8' s #-}
{-# NOINLINE fillUpWith #-}
fillList :: Storable storable => [storable] -> Packer ()
fillList []     = return ()
fillList (x:xs) = putStorable x >> fillList xs
putWord8 :: Word8 -> Packer ()
putWord8 = putStorable
{-# INLINE putWord8 #-}
putWord16 :: Word16 -> Packer ()
putWord16 = putStorable
{-# INLINE putWord16 #-}
putWord32 :: Word32 -> Packer ()
putWord32 = putStorable
{-# INLINE putWord32 #-}