#undef DEBUG_DUMP
module GHC.IO (
hWaitForInput, hGetChar, hGetLine, hGetContents, hPutChar, hPutStr,
commitBuffer',
hGetcBuffered,
hGetBuf, hGetBufNonBlocking, hPutBuf, hPutBufNonBlocking, slurpFile,
memcpy_ba_baoff,
memcpy_ptr_baoff,
memcpy_baoff_ba,
memcpy_baoff_ptr,
) where
import Foreign
import Foreign.C
import System.IO.Error
import Data.Maybe
import Control.Monad
import System.Posix.Internals
import GHC.Enum
import GHC.Base
import GHC.IOBase
import GHC.Handle
import GHC.Real
import GHC.Num
import GHC.Show
import GHC.List
import GHC.Exception ( ioError, catch )
#ifdef mingw32_HOST_OS
import GHC.Conc
#endif
hWaitForInput :: Handle -> Int -> IO Bool
hWaitForInput h msecs = do
wantReadableHandle "hWaitForInput" h $ \ handle_ -> do
let ref = haBuffer handle_
buf <- readIORef ref
if not (bufferEmpty buf)
then return True
else do
if msecs < 0
then do buf' <- fillReadBuffer (haFD handle_) True
(haIsStream handle_) buf
writeIORef ref buf'
return True
else do r <- throwErrnoIfMinus1Retry "hWaitForInput" $
fdReady (haFD handle_) 0
(fromIntegral msecs)
(fromIntegral $ fromEnum $ haIsStream handle_)
return (r /= 0)
foreign import ccall safe "fdReady"
fdReady :: CInt -> CInt -> CInt -> CInt -> IO CInt
hGetChar :: Handle -> IO Char
hGetChar handle =
wantReadableHandle "hGetChar" handle $ \handle_ -> do
let fd = haFD handle_
ref = haBuffer handle_
buf <- readIORef ref
if not (bufferEmpty buf)
then hGetcBuffered fd ref buf
else do
case haBufferMode handle_ of
LineBuffering -> do
new_buf <- fillReadBuffer fd True (haIsStream handle_) buf
hGetcBuffered fd ref new_buf
BlockBuffering _ -> do
new_buf <- fillReadBuffer fd True (haIsStream handle_) buf
hGetcBuffered fd ref new_buf
NoBuffering -> do
let raw = bufBuf buf
r <- readRawBuffer "hGetChar" fd (haIsStream handle_) raw 0 1
if r == 0
then ioe_EOF
else do (c,_) <- readCharFromBuffer raw 0
return c
hGetcBuffered fd ref buf@Buffer{ bufBuf=b, bufRPtr=r, bufWPtr=w }
= do (c,r) <- readCharFromBuffer b r
let new_buf | r == w = buf{ bufRPtr=0, bufWPtr=0 }
| otherwise = buf{ bufRPtr=r }
writeIORef ref new_buf
return c
hGetLine :: Handle -> IO String
hGetLine h = do
m <- wantReadableHandle "hGetLine" h $ \ handle_ -> do
case haBufferMode handle_ of
NoBuffering -> return Nothing
LineBuffering -> do
l <- hGetLineBuffered handle_
return (Just l)
BlockBuffering _ -> do
l <- hGetLineBuffered handle_
return (Just l)
case m of
Nothing -> hGetLineUnBuffered h
Just l -> return l
hGetLineBuffered :: Handle__ -> IO String
hGetLineBuffered handle_ = do
let ref = haBuffer handle_
buf <- readIORef ref
hGetLineBufferedLoop handle_ ref buf []
hGetLineBufferedLoop :: Handle__ -> IORef Buffer -> Buffer -> [String]
-> IO String
hGetLineBufferedLoop handle_ ref
buf@Buffer{ bufRPtr=r, bufWPtr=w, bufBuf=raw } xss =
let
loop raw r
| r == w = return (False, w)
| otherwise = do
(c,r') <- readCharFromBuffer raw r
if c == '\n'
then return (True, r)
else loop raw r'
in do
(eol, off) <- loop raw r
#ifdef DEBUG_DUMP
puts ("hGetLineBufferedLoop: r=" ++ show r ++ ", w=" ++ show w ++ ", off=" ++ show off ++ "\n")
#endif
xs <- unpack raw r off
if eol
then do if (w == off + 1)
then writeIORef ref buf{ bufRPtr=0, bufWPtr=0 }
else writeIORef ref buf{ bufRPtr = off + 1 }
return (concat (reverse (xs:xss)))
else do
maybe_buf <- maybeFillReadBuffer (haFD handle_) True (haIsStream handle_)
buf{ bufWPtr=0, bufRPtr=0 }
case maybe_buf of
Nothing -> do
writeIORef ref buf{ bufRPtr=0, bufWPtr=0 }
let str = concat (reverse (xs:xss))
if not (null str)
then return str
else ioe_EOF
Just new_buf ->
hGetLineBufferedLoop handle_ ref new_buf (xs:xss)
maybeFillReadBuffer fd is_line is_stream buf
= catch
(do buf <- fillReadBuffer fd is_line is_stream buf
return (Just buf)
)
(\e -> do if isEOFError e
then return Nothing
else ioError e)
unpack :: RawBuffer -> Int -> Int -> IO [Char]
unpack buf r 0 = return ""
unpack buf (I# r) (I# len) = IO $ \s -> unpack [] (len -# 1#) s
where
unpack acc i s
| i <# r = (# s, acc #)
| otherwise =
case readCharArray# buf i s of
(# s, ch #) -> unpack (C# ch : acc) (i -# 1#) s
hGetLineUnBuffered :: Handle -> IO String
hGetLineUnBuffered h = do
c <- hGetChar h
if c == '\n' then
return ""
else do
l <- getRest
return (c:l)
where
getRest = do
c <-
catch
(hGetChar h)
(\ err -> do
if isEOFError err then
return '\n'
else
ioError err)
if c == '\n' then
return ""
else do
s <- getRest
return (c:s)
hGetContents :: Handle -> IO String
hGetContents handle =
withHandle "hGetContents" handle $ \handle_ ->
case haType handle_ of
ClosedHandle -> ioe_closedHandle
SemiClosedHandle -> ioe_closedHandle
AppendHandle -> ioe_notReadable
WriteHandle -> ioe_notReadable
_ -> do xs <- lazyRead handle
return (handle_{ haType=SemiClosedHandle}, xs )
lazyRead :: Handle -> IO String
lazyRead handle =
unsafeInterleaveIO $
withHandle "lazyRead" handle $ \ handle_ -> do
case haType handle_ of
ClosedHandle -> return (handle_, "")
SemiClosedHandle -> lazyRead' handle handle_
_ -> ioException
(IOError (Just handle) IllegalOperation "lazyRead"
"illegal handle type" Nothing)
lazyRead' h handle_ = do
let ref = haBuffer handle_
fd = haFD handle_
buf <- readIORef ref
if not (bufferEmpty buf)
then lazyReadHaveBuffer h handle_ fd ref buf
else do
case haBufferMode handle_ of
NoBuffering -> do
let raw = bufBuf buf
r <- readRawBuffer "lazyRead" fd (haIsStream handle_) raw 0 1
if r == 0
then do (handle_,_) <- hClose_help handle_
return (handle_, "")
else do (c,_) <- readCharFromBuffer raw 0
rest <- lazyRead h
return (handle_, c : rest)
LineBuffering -> lazyReadBuffered h handle_ fd ref buf
BlockBuffering _ -> lazyReadBuffered h handle_ fd ref buf
lazyReadBuffered h handle_ fd ref buf = do
catch
(do buf <- fillReadBuffer fd True (haIsStream handle_) buf
lazyReadHaveBuffer h handle_ fd ref buf
)
(\e -> do (handle_,_) <- hClose_help handle_
return (handle_, "")
)
lazyReadHaveBuffer h handle_ fd ref buf = do
more <- lazyRead h
writeIORef ref buf{ bufRPtr=0, bufWPtr=0 }
s <- unpackAcc (bufBuf buf) (bufRPtr buf) (bufWPtr buf) more
return (handle_, s)
unpackAcc :: RawBuffer -> Int -> Int -> [Char] -> IO [Char]
unpackAcc buf r 0 acc = return acc
unpackAcc buf (I# r) (I# len) acc = IO $ \s -> unpack acc (len -# 1#) s
where
unpack acc i s
| i <# r = (# s, acc #)
| otherwise =
case readCharArray# buf i s of
(# s, ch #) -> unpack (C# ch : acc) (i -# 1#) s
hPutChar :: Handle -> Char -> IO ()
hPutChar handle c = do
c `seq` return ()
wantWritableHandle "hPutChar" handle $ \ handle_ -> do
let fd = haFD handle_
case haBufferMode handle_ of
LineBuffering -> hPutcBuffered handle_ True c
BlockBuffering _ -> hPutcBuffered handle_ False c
NoBuffering ->
with (castCharToCChar c) $ \buf -> do
writeRawBufferPtr "hPutChar" fd (haIsStream handle_) buf 0 1
return ()
hPutcBuffered handle_ is_line c = do
let ref = haBuffer handle_
buf <- readIORef ref
let w = bufWPtr buf
w' <- writeCharIntoBuffer (bufBuf buf) w c
let new_buf = buf{ bufWPtr = w' }
if bufferFull new_buf || is_line && c == '\n'
then do
flushed_buf <- flushWriteBuffer (haFD handle_) (haIsStream handle_) new_buf
writeIORef ref flushed_buf
else do
writeIORef ref new_buf
hPutChars :: Handle -> [Char] -> IO ()
hPutChars handle [] = return ()
hPutChars handle (c:cs) = hPutChar handle c >> hPutChars handle cs
hPutStr :: Handle -> String -> IO ()
hPutStr handle str = do
buffer_mode <- wantWritableHandle "hPutStr" handle
(\ handle_ -> do getSpareBuffer handle_)
case buffer_mode of
(NoBuffering, _) -> do
hPutChars handle str
(LineBuffering, buf) -> do
writeLines handle buf str
(BlockBuffering _, buf) -> do
writeBlocks handle buf str
getSpareBuffer :: Handle__ -> IO (BufferMode, Buffer)
getSpareBuffer Handle__{haBuffer=ref,
haBuffers=spare_ref,
haBufferMode=mode}
= do
case mode of
NoBuffering -> return (mode, error "no buffer!")
_ -> do
bufs <- readIORef spare_ref
buf <- readIORef ref
case bufs of
BufferListCons b rest -> do
writeIORef spare_ref rest
return ( mode, newEmptyBuffer b WriteBuffer (bufSize buf))
BufferListNil -> do
new_buf <- allocateBuffer (bufSize buf) WriteBuffer
return (mode, new_buf)
writeLines :: Handle -> Buffer -> String -> IO ()
writeLines hdl Buffer{ bufBuf=raw, bufSize=len } s =
let
shoveString :: Int -> [Char] -> IO ()
shoveString n cs | n == len = do
new_buf <- commitBuffer hdl raw len n True False
writeLines hdl new_buf cs
shoveString n [] = do
commitBuffer hdl raw len n False True
return ()
shoveString n (c:cs) = do
n' <- writeCharIntoBuffer raw n c
if (c == '\n')
then do
new_buf <- commitBuffer hdl raw len n' True False
writeLines hdl new_buf cs
else
shoveString n' cs
in
shoveString 0 s
writeBlocks :: Handle -> Buffer -> String -> IO ()
writeBlocks hdl Buffer{ bufBuf=raw, bufSize=len } s =
let
shoveString :: Int -> [Char] -> IO ()
shoveString n cs | n == len = do
new_buf <- commitBuffer hdl raw len n True False
writeBlocks hdl new_buf cs
shoveString n [] = do
commitBuffer hdl raw len n False True
return ()
shoveString n (c:cs) = do
n' <- writeCharIntoBuffer raw n c
shoveString n' cs
in
shoveString 0 s
commitBuffer
:: Handle
-> RawBuffer -> Int
-> Int
-> Bool
-> Bool
-> IO Buffer
commitBuffer hdl raw sz@(I# _) count@(I# _) flush release = do
wantWritableHandle "commitAndReleaseBuffer" hdl $
commitBuffer' raw sz count flush release
commitBuffer' raw sz@(I# _) count@(I# _) flush release
handle_@Handle__{ haFD=fd, haBuffer=ref, haBuffers=spare_buf_ref } = do
#ifdef DEBUG_DUMP
puts ("commitBuffer: sz=" ++ show sz ++ ", count=" ++ show count
++ ", flush=" ++ show flush ++ ", release=" ++ show release ++"\n")
#endif
old_buf@Buffer{ bufBuf=old_raw, bufRPtr=r, bufWPtr=w, bufSize=size }
<- readIORef ref
buf_ret <-
if (not flush && (size w > count))
then do memcpy_baoff_ba old_raw (fromIntegral w) raw (fromIntegral count)
writeIORef ref old_buf{ bufWPtr = w + count }
return (newEmptyBuffer raw WriteBuffer sz)
else do flushed_buf <- flushWriteBuffer fd (haIsStream handle_) old_buf
let this_buf =
Buffer{ bufBuf=raw, bufState=WriteBuffer,
bufRPtr=0, bufWPtr=count, bufSize=sz }
if (not flush && sz == size && count /= sz)
then do
writeIORef ref this_buf
return flushed_buf
else do
flushWriteBuffer fd (haIsStream handle_) this_buf
writeIORef ref flushed_buf
if sz == size
then return (newEmptyBuffer raw WriteBuffer sz)
else allocateBuffer size WriteBuffer
case buf_ret of
Buffer{ bufSize=buf_ret_sz, bufBuf=buf_ret_raw } -> do
if release && buf_ret_sz == size
then do
spare_bufs <- readIORef spare_buf_ref
writeIORef spare_buf_ref
(BufferListCons buf_ret_raw spare_bufs)
return buf_ret
else
return buf_ret
hPutBuf :: Handle
-> Ptr a
-> Int
-> IO ()
hPutBuf h ptr count = do hPutBuf' h ptr count True; return ()
hPutBufNonBlocking
:: Handle
-> Ptr a
-> Int
-> IO Int
hPutBufNonBlocking h ptr count = hPutBuf' h ptr count False
hPutBuf':: Handle
-> Ptr a
-> Int
-> Bool
-> IO Int
hPutBuf' handle ptr count can_block
| count == 0 = return 0
| count < 0 = illegalBufferSize handle "hPutBuf" count
| otherwise =
wantWritableHandle "hPutBuf" handle $
\ handle_@Handle__{ haFD=fd, haBuffer=ref, haIsStream=is_stream } ->
bufWrite fd ref is_stream ptr count can_block
bufWrite fd ref is_stream ptr count can_block =
seq count $ seq fd $ do
old_buf@Buffer{ bufBuf=old_raw, bufRPtr=r, bufWPtr=w, bufSize=size }
<- readIORef ref
if (size w > count)
then do memcpy_baoff_ptr old_raw (fromIntegral w) ptr (fromIntegral count)
writeIORef ref old_buf{ bufWPtr = w + count }
return count
else do flushed_buf <- flushWriteBuffer fd is_stream old_buf
writeIORef ref flushed_buf
if count < size
then bufWrite fd ref is_stream ptr count can_block
else if can_block
then do writeChunk fd is_stream (castPtr ptr) count
return count
else writeChunkNonBlocking fd is_stream ptr count
writeChunk :: FD -> Bool -> Ptr CChar -> Int -> IO ()
writeChunk fd is_stream ptr bytes = loop 0 bytes
where
loop :: Int -> Int -> IO ()
loop _ bytes | bytes <= 0 = return ()
loop off bytes = do
r <- fromIntegral `liftM`
writeRawBufferPtr "writeChunk" fd is_stream ptr
off (fromIntegral bytes)
loop (off + r) (bytes r)
writeChunkNonBlocking :: FD -> Bool -> Ptr a -> Int -> IO Int
writeChunkNonBlocking fd is_stream ptr bytes = loop 0 bytes
where
loop :: Int -> Int -> IO Int
loop off bytes | bytes <= 0 = return off
loop off bytes = do
#ifndef mingw32_HOST_OS
ssize <- c_write fd (ptr `plusPtr` off) (fromIntegral bytes)
let r = fromIntegral ssize :: Int
if (r == 1)
then do errno <- getErrno
if (errno == eAGAIN || errno == eWOULDBLOCK)
then return off
else throwErrno "writeChunk"
else loop (off + r) (bytes r)
#else
(ssize, rc) <- asyncWrite (fromIntegral fd)
(fromIntegral $ fromEnum is_stream)
(fromIntegral bytes)
(ptr `plusPtr` off)
let r = fromIntegral ssize :: Int
if r == (1)
then ioError (errnoToIOError "hPutBufNonBlocking" (Errno (fromIntegral rc)) Nothing Nothing)
else loop (off + r) (bytes r)
#endif
hGetBuf :: Handle -> Ptr a -> Int -> IO Int
hGetBuf h ptr count
| count == 0 = return 0
| count < 0 = illegalBufferSize h "hGetBuf" count
| otherwise =
wantReadableHandle "hGetBuf" h $
\ handle_@Handle__{ haFD=fd, haBuffer=ref, haIsStream=is_stream } -> do
bufRead fd ref is_stream ptr 0 count
bufRead fd ref is_stream ptr so_far count =
seq fd $ seq so_far $ seq count $ do
buf@Buffer{ bufBuf=raw, bufWPtr=w, bufRPtr=r, bufSize=sz } <- readIORef ref
if bufferEmpty buf
then if count > sz
then do rest <- readChunk fd is_stream ptr count
return (so_far + rest)
else do mb_buf <- maybeFillReadBuffer fd True is_stream buf
case mb_buf of
Nothing -> return so_far
Just buf' -> do
writeIORef ref buf'
bufRead fd ref is_stream ptr so_far count
else do
let avail = w r
if (count == avail)
then do
memcpy_ptr_baoff ptr raw (fromIntegral r) (fromIntegral count)
writeIORef ref buf{ bufWPtr=0, bufRPtr=0 }
return (so_far + count)
else do
if (count < avail)
then do
memcpy_ptr_baoff ptr raw (fromIntegral r) (fromIntegral count)
writeIORef ref buf{ bufRPtr = r + count }
return (so_far + count)
else do
memcpy_ptr_baoff ptr raw (fromIntegral r) (fromIntegral avail)
writeIORef ref buf{ bufWPtr=0, bufRPtr=0 }
let remaining = count avail
so_far' = so_far + avail
ptr' = ptr `plusPtr` avail
if remaining < sz
then bufRead fd ref is_stream ptr' so_far' remaining
else do
rest <- readChunk fd is_stream ptr' remaining
return (so_far' + rest)
readChunk :: FD -> Bool -> Ptr a -> Int -> IO Int
readChunk fd is_stream ptr bytes = loop 0 bytes
where
loop :: Int -> Int -> IO Int
loop off bytes | bytes <= 0 = return off
loop off bytes = do
r <- fromIntegral `liftM`
readRawBufferPtr "readChunk" fd is_stream
(castPtr ptr) off (fromIntegral bytes)
if r == 0
then return off
else loop (off + r) (bytes r)
hGetBufNonBlocking :: Handle -> Ptr a -> Int -> IO Int
hGetBufNonBlocking h ptr count
| count == 0 = return 0
| count < 0 = illegalBufferSize h "hGetBufNonBlocking" count
| otherwise =
wantReadableHandle "hGetBufNonBlocking" h $
\ handle_@Handle__{ haFD=fd, haBuffer=ref, haIsStream=is_stream } -> do
bufReadNonBlocking fd ref is_stream ptr 0 count
bufReadNonBlocking fd ref is_stream ptr so_far count =
seq fd $ seq so_far $ seq count $ do
buf@Buffer{ bufBuf=raw, bufWPtr=w, bufRPtr=r, bufSize=sz } <- readIORef ref
if bufferEmpty buf
then if count > sz
then do rest <- readChunkNonBlocking fd is_stream ptr count
return (so_far + rest)
else do buf' <- fillReadBufferWithoutBlocking fd is_stream buf
case buf' of { Buffer{ bufWPtr=w } ->
if (w == 0)
then return so_far
else do writeIORef ref buf'
bufReadNonBlocking fd ref is_stream ptr
so_far (min count w)
}
else do
let avail = w r
if (count == avail)
then do
memcpy_ptr_baoff ptr raw (fromIntegral r) (fromIntegral count)
writeIORef ref buf{ bufWPtr=0, bufRPtr=0 }
return (so_far + count)
else do
if (count < avail)
then do
memcpy_ptr_baoff ptr raw (fromIntegral r) (fromIntegral count)
writeIORef ref buf{ bufRPtr = r + count }
return (so_far + count)
else do
memcpy_ptr_baoff ptr raw (fromIntegral r) (fromIntegral avail)
writeIORef ref buf{ bufWPtr=0, bufRPtr=0 }
let remaining = count avail
so_far' = so_far + avail
ptr' = ptr `plusPtr` avail
if remaining < sz
then bufReadNonBlocking fd ref is_stream ptr' so_far' remaining
else do
rest <- readChunkNonBlocking fd is_stream ptr' remaining
return (so_far' + rest)
readChunkNonBlocking :: FD -> Bool -> Ptr a -> Int -> IO Int
readChunkNonBlocking fd is_stream ptr bytes = do
fromIntegral `liftM`
readRawBufferPtrNoBlock "readChunkNonBlocking" fd is_stream
(castPtr ptr) 0 (fromIntegral bytes)
slurpFile :: FilePath -> IO (Ptr (), Int)
slurpFile fname = do
handle <- openFile fname ReadMode
sz <- hFileSize handle
if sz > fromIntegral (maxBound::Int) then
ioError (userError "slurpFile: file too big")
else do
let sz_i = fromIntegral sz
if sz_i == 0 then return (nullPtr, 0) else do
chunk <- mallocBytes sz_i
r <- hGetBuf handle chunk sz_i
hClose handle
return (chunk, r)
foreign import ccall unsafe "__hscore_memcpy_src_off"
memcpy_ba_baoff :: RawBuffer -> RawBuffer -> CInt -> CSize -> IO (Ptr ())
foreign import ccall unsafe "__hscore_memcpy_src_off"
memcpy_ptr_baoff :: Ptr a -> RawBuffer -> CInt -> CSize -> IO (Ptr ())
foreign import ccall unsafe "__hscore_memcpy_dst_off"
memcpy_baoff_ba :: RawBuffer -> CInt -> RawBuffer -> CSize -> IO (Ptr ())
foreign import ccall unsafe "__hscore_memcpy_dst_off"
memcpy_baoff_ptr :: RawBuffer -> CInt -> Ptr a -> CSize -> IO (Ptr ())
illegalBufferSize :: Handle -> String -> Int -> IO a
illegalBufferSize handle fn sz =
ioException (IOError (Just handle)
InvalidArgument fn
("illegal buffer size " ++ showsPrec 9 sz [])
Nothing)