module Data.Text.Internal.Unsafe.Char
(
ord
, unsafeChr
, unsafeChr8
, unsafeChr32
, unsafeWrite
) where
import Control.Monad.ST (ST)
import Data.Bits ((.&.))
import Data.Text.Internal.Unsafe.Shift (shiftR)
import GHC.Exts (Char(..), Int(..), chr#, ord#, word2Int#)
import GHC.Word (Word8(..), Word16(..), Word32(..))
import qualified Data.Text.Array as A
import Data.Text.Internal.PrimCompat ( word8ToWord#, word16ToWord#, word32ToWord# )
#if defined(ASSERTS)
import GHC.Stack (HasCallStack)
#endif
ord :: Char -> Int
ord (C# c#) = I# (ord# c#)
unsafeChr :: Word16 -> Char
unsafeChr (W16# w#) = C# (chr# (word2Int# (word16ToWord# w#)))
unsafeChr8 :: Word8 -> Char
unsafeChr8 (W8# w#) = C# (chr# (word2Int# (word8ToWord# w#)))
unsafeChr32 :: Word32 -> Char
unsafeChr32 (W32# w#) = C# (chr# (word2Int# (word32ToWord# w#)))
unsafeWrite ::
#if defined(ASSERTS)
HasCallStack =>
#endif
A.MArray s -> Int -> Char -> ST s Int
unsafeWrite marr i c
| n < 0x10000 = do
A.unsafeWrite marr i (intToWord16 n)
return 1
| otherwise = do
A.unsafeWrite marr i lo
A.unsafeWrite marr (i+1) hi
return 2
where n = ord c
m = n 0x10000
lo = intToWord16 $ (m `shiftR` 10) + 0xD800
hi = intToWord16 $ (m .&. 0x3FF) + 0xDC00
intToWord16 :: Int -> Word16
intToWord16 = fromIntegral