{-# LANGUAGE CPP, MagicHash, Rank2Types, TypeFamilies, TypeOperators #-}
module Data.Double.Conversion.Internal.TextBuilder
(
convert
) where
import Control.Monad (when)
#if MIN_VERSION_base(4,4,0)
import Control.Monad.ST.Unsafe (unsafeIOToST)
#else
import Control.Monad.ST (unsafeIOToST)
#endif
import Data.Double.Conversion.Internal.FFI (ForeignFloating)
import qualified Data.Text.Array as A
import Data.Text.Internal.Builder (Builder, writeN)
import Foreign.C.Types (CDouble, CFloat, CInt)
import GHC.Prim (MutableByteArray#)
import Control.Monad.ST (runST)
convert :: (RealFloat a, RealFloat b, b ~ ForeignFloating a) => String -> CInt
-> (forall s. b -> MutableByteArray# s -> IO CInt)
-> a -> Builder
{-# SPECIALIZE convert :: String -> CInt -> (forall s. CDouble -> MutableByteArray# s -> IO CInt) -> Double -> Builder #-}
{-# SPECIALIZE convert :: String -> CInt -> (forall s. CFloat -> MutableByteArray# s -> IO CInt) -> Float -> Builder #-}
{-# INLINABLE convert #-}
convert :: forall a b.
(RealFloat a, RealFloat b, b ~ ForeignFloating a) =>
String
-> CInt
-> (forall s. b -> MutableByteArray# s -> IO CInt)
-> a
-> Builder
convert String
func CInt
len forall s. b -> MutableByteArray# s -> IO CInt
act a
val = (forall s. ST s Builder) -> Builder
forall a. (forall s. ST s a) -> a
runST ((forall s. ST s Builder) -> Builder)
-> (forall s. ST s Builder) -> Builder
forall a b. (a -> b) -> a -> b
$ do
#if MIN_VERSION_text(2,0,0)
mTempArr@(A.MutableByteArray tempMArr) <- Int -> ST s (MArray s)
forall s. Int -> ST s (MArray s)
A.new (CInt -> Int
forall a b. (Integral a, Num b) => a -> b
fromIntegral CInt
len)
#else
mTempArr@(A.MArray tempMArr) <- A.new (fromIntegral len)
#endif
size <- unsafeIOToST $ act (realToFrac val) tempMArr
tempArr <- A.unsafeFreeze mTempArr
when (size == -1) .
error $ "Data.Double.Conversion.Text." ++ func ++
": conversion failed."
#if MIN_VERSION_text(2,0,0)
return $ writeN (fromIntegral size) $ \MArray s
mArr Int
_ -> Int -> MArray s -> Int -> Array -> Int -> ST s ()
forall s. Int -> MArray s -> Int -> Array -> Int -> ST s ()
A.copyI (CInt -> Int
forall a b. (Integral a, Num b) => a -> b
fromIntegral CInt
size) MArray s
mArr Int
0 Array
tempArr Int
0
#else
return $ writeN (fromIntegral size) $ \mArr _ -> A.copyI mArr 0 tempArr 0 (fromIntegral size)
#endif