2fd63f3cfa
transferkeys had used special FDs for communication, but that would be quite annoying to do in Windows. Instead, use stdin and stdout. But, to avoid commands like rsync stomping on them and messing up the communications channel, they're duplicated to a different handle; stdin is replaced with a null handle, and stdout is replaced with a copy of stderr. This should all work in windows too. Stopping in progress transfers may work on windows.. if the types unify anyway. ;) May need some more porting.
360 lines
10 KiB
Haskell
360 lines
10 KiB
Haskell
{- System.Process enhancements, including additional ways of running
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- processes, and logging.
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-
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- Copyright 2012 Joey Hess <joey@kitenet.net>
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-
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- Licensed under the GNU GPL version 3 or higher.
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-}
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{-# LANGUAGE CPP, Rank2Types #-}
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module Utility.Process (
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module X,
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CreateProcess,
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StdHandle(..),
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readProcess,
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readProcessEnv,
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writeReadProcessEnv,
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forceSuccessProcess,
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checkSuccessProcess,
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ignoreFailureProcess,
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createProcessSuccess,
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createProcessChecked,
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createBackgroundProcess,
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processTranscript,
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processTranscript',
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withHandle,
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withBothHandles,
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withQuietOutput,
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createProcess,
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startInteractiveProcess,
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stdinHandle,
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stdoutHandle,
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stderrHandle,
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devNull,
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) where
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import qualified System.Process
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import System.Process as X hiding (CreateProcess(..), createProcess, runInteractiveProcess, readProcess, readProcessWithExitCode, system, rawSystem, runInteractiveCommand, runProcess)
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import System.Process hiding (createProcess, readProcess)
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import System.Exit
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import System.IO
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import System.Log.Logger
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import Control.Concurrent
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import qualified Control.Exception as E
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import Control.Monad
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#ifndef mingw32_HOST_OS
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import System.Posix.IO
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#else
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import Control.Applicative
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#endif
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import Data.Maybe
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import Utility.Misc
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import Utility.Exception
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type CreateProcessRunner = forall a. CreateProcess -> ((Maybe Handle, Maybe Handle, Maybe Handle, ProcessHandle) -> IO a) -> IO a
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data StdHandle = StdinHandle | StdoutHandle | StderrHandle
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deriving (Eq)
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{- Normally, when reading from a process, it does not need to be fed any
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- standard input. -}
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readProcess :: FilePath -> [String] -> IO String
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readProcess cmd args = readProcessEnv cmd args Nothing
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readProcessEnv :: FilePath -> [String] -> Maybe [(String, String)] -> IO String
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readProcessEnv cmd args environ =
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withHandle StdoutHandle createProcessSuccess p $ \h -> do
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output <- hGetContentsStrict h
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hClose h
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return output
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where
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p = (proc cmd args)
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{ std_out = CreatePipe
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, env = environ
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}
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{- Runs an action to write to a process on its stdin,
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- returns its output, and also allows specifying the environment.
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-}
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writeReadProcessEnv
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:: FilePath
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-> [String]
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-> Maybe [(String, String)]
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-> (Maybe (Handle -> IO ()))
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-> (Maybe (Handle -> IO ()))
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-> IO String
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writeReadProcessEnv cmd args environ writestdin adjusthandle = do
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(Just inh, Just outh, _, pid) <- createProcess p
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maybe (return ()) (\a -> a inh) adjusthandle
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maybe (return ()) (\a -> a outh) adjusthandle
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-- fork off a thread to start consuming the output
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output <- hGetContents outh
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outMVar <- newEmptyMVar
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_ <- forkIO $ E.evaluate (length output) >> putMVar outMVar ()
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-- now write and flush any input
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maybe (return ()) (\a -> a inh >> hFlush inh) writestdin
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hClose inh -- done with stdin
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-- wait on the output
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takeMVar outMVar
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hClose outh
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-- wait on the process
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forceSuccessProcess p pid
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return output
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where
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p = (proc cmd args)
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{ std_in = CreatePipe
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, std_out = CreatePipe
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, std_err = Inherit
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, env = environ
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}
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{- Waits for a ProcessHandle, and throws an IOError if the process
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- did not exit successfully. -}
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forceSuccessProcess :: CreateProcess -> ProcessHandle -> IO ()
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forceSuccessProcess p pid = do
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code <- waitForProcess pid
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case code of
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ExitSuccess -> return ()
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ExitFailure n -> fail $ showCmd p ++ " exited " ++ show n
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{- Waits for a ProcessHandle and returns True if it exited successfully.
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- Note that using this with createProcessChecked will throw away
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- the Bool, and is only useful to ignore the exit code of a process,
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- while still waiting for it. -}
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checkSuccessProcess :: ProcessHandle -> IO Bool
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checkSuccessProcess pid = do
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code <- waitForProcess pid
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return $ code == ExitSuccess
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ignoreFailureProcess :: ProcessHandle -> IO Bool
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ignoreFailureProcess pid = do
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void $ waitForProcess pid
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return True
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{- Runs createProcess, then an action on its handles, and then
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- forceSuccessProcess. -}
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createProcessSuccess :: CreateProcessRunner
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createProcessSuccess p a = createProcessChecked (forceSuccessProcess p) p a
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{- Runs createProcess, then an action on its handles, and then
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- a checker action on its exit code, which must wait for the process. -}
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createProcessChecked :: (ProcessHandle -> IO b) -> CreateProcessRunner
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createProcessChecked checker p a = do
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t@(_, _, _, pid) <- createProcess p
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r <- tryNonAsync $ a t
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_ <- checker pid
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either E.throw return r
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{- Leaves the process running, suitable for lazy streaming.
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- Note: Zombies will result, and must be waited on. -}
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createBackgroundProcess :: CreateProcessRunner
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createBackgroundProcess p a = a =<< createProcess p
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{- Runs a process, optionally feeding it some input, and
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- returns a transcript combining its stdout and stderr, and
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- whether it succeeded or failed. -}
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processTranscript :: String -> [String] -> (Maybe String) -> IO (String, Bool)
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processTranscript cmd opts input = processTranscript' cmd opts Nothing input
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processTranscript' :: String -> [String] -> Maybe [(String, String)] -> (Maybe String) -> IO (String, Bool)
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#ifndef mingw32_HOST_OS
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{- This implementation interleves stdout and stderr in exactly the order
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- the process writes them. -}
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processTranscript' cmd opts environ input = do
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(readf, writef) <- createPipe
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readh <- fdToHandle readf
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writeh <- fdToHandle writef
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p@(_, _, _, pid) <- createProcess $
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(proc cmd opts)
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{ std_in = if isJust input then CreatePipe else Inherit
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, std_out = UseHandle writeh
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, std_err = UseHandle writeh
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, env = environ
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}
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hClose writeh
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get <- mkreader readh
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-- now write and flush any input
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case input of
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Just s -> do
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let inh = stdinHandle p
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unless (null s) $ do
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hPutStr inh s
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hFlush inh
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hClose inh
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Nothing -> return ()
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transcript <- get
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ok <- checkSuccessProcess pid
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return (transcript, ok)
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#else
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{- This implementation for Windows puts stderr after stdout. -}
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processTranscript' cmd opts environ input = do
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p@(_, _, _, pid) <- createProcess $
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(proc cmd opts)
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{ std_in = if isJust input then CreatePipe else Inherit
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, std_out = CreatePipe
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, std_err = CreatePipe
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, env = environ
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}
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getout <- mkreader (stdoutHandle p)
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geterr <- mkreader (stderrHandle p)
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case input of
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Just s -> do
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let inh = stdinHandle p
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unless (null s) $ do
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hPutStr inh s
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hFlush inh
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hClose inh
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Nothing -> return ()
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transcript <- (++) <$> getout <*> geterr
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ok <- checkSuccessProcess pid
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return (transcript, ok)
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#endif
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where
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mkreader h = do
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s <- hGetContents h
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v <- newEmptyMVar
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void $ forkIO $ do
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void $ E.evaluate (length s)
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putMVar v ()
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return $ do
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takeMVar v
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return s
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{- Runs a CreateProcessRunner, on a CreateProcess structure, that
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- is adjusted to pipe only from/to a single StdHandle, and passes
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- the resulting Handle to an action. -}
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withHandle
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:: StdHandle
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-> CreateProcessRunner
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-> CreateProcess
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-> (Handle -> IO a)
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-> IO a
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withHandle h creator p a = creator p' $ a . select
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where
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base = p
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{ std_in = Inherit
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, std_out = Inherit
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, std_err = Inherit
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}
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(select, p')
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| h == StdinHandle =
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(stdinHandle, base { std_in = CreatePipe })
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| h == StdoutHandle =
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(stdoutHandle, base { std_out = CreatePipe })
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| h == StderrHandle =
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(stderrHandle, base { std_err = CreatePipe })
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{- Like withHandle, but passes (stdin, stdout) handles to the action. -}
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withBothHandles
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:: CreateProcessRunner
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-> CreateProcess
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-> ((Handle, Handle) -> IO a)
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-> IO a
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withBothHandles creator p a = creator p' $ a . bothHandles
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where
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p' = p
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{ std_in = CreatePipe
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, std_out = CreatePipe
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, std_err = Inherit
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}
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{- Forces the CreateProcessRunner to run quietly;
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- both stdout and stderr are discarded. -}
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withQuietOutput
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:: CreateProcessRunner
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-> CreateProcess
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-> IO ()
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withQuietOutput creator p = withFile devNull WriteMode $ \nullh -> do
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let p' = p
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{ std_out = UseHandle nullh
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, std_err = UseHandle nullh
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}
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creator p' $ const $ return ()
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devNull :: FilePath
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#ifndef mingw32_HOST_OS
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devNull = "/dev/null"
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#else
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devNull = "NUL"
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#endif
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{- Extract a desired handle from createProcess's tuple.
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- These partial functions are safe as long as createProcess is run
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- with appropriate parameters to set up the desired handle.
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- Get it wrong and the runtime crash will always happen, so should be
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- easily noticed. -}
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type HandleExtractor = (Maybe Handle, Maybe Handle, Maybe Handle, ProcessHandle) -> Handle
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stdinHandle :: HandleExtractor
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stdinHandle (Just h, _, _, _) = h
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stdinHandle _ = error "expected stdinHandle"
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stdoutHandle :: HandleExtractor
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stdoutHandle (_, Just h, _, _) = h
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stdoutHandle _ = error "expected stdoutHandle"
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stderrHandle :: HandleExtractor
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stderrHandle (_, _, Just h, _) = h
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stderrHandle _ = error "expected stderrHandle"
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bothHandles :: (Maybe Handle, Maybe Handle, Maybe Handle, ProcessHandle) -> (Handle, Handle)
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bothHandles (Just hin, Just hout, _, _) = (hin, hout)
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bothHandles _ = error "expected bothHandles"
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{- Debugging trace for a CreateProcess. -}
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debugProcess :: CreateProcess -> IO ()
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debugProcess p = do
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debugM "Utility.Process" $ unwords
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[ action ++ ":"
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, showCmd p
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]
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where
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action
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| piped (std_in p) && piped (std_out p) = "chat"
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| piped (std_in p) = "feed"
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| piped (std_out p) = "read"
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| otherwise = "call"
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piped Inherit = False
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piped _ = True
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{- Shows the command that a CreateProcess will run. -}
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showCmd :: CreateProcess -> String
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showCmd = go . cmdspec
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where
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go (ShellCommand s) = s
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go (RawCommand c ps) = c ++ " " ++ show ps
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{- Starts an interactive process. Unlike runInteractiveProcess in
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- System.Process, stderr is inherited. -}
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startInteractiveProcess
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:: FilePath
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-> [String]
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-> Maybe [(String, String)]
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-> IO (ProcessHandle, Handle, Handle)
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startInteractiveProcess cmd args environ = do
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let p = (proc cmd args)
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{ std_in = CreatePipe
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, std_out = CreatePipe
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, std_err = Inherit
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, env = environ
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}
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(Just from, Just to, _, pid) <- createProcess p
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return (pid, to, from)
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{- Wrapper around System.Process function that does debug logging. -}
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createProcess :: CreateProcess -> IO (Maybe Handle, Maybe Handle, Maybe Handle, ProcessHandle)
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createProcess p = do
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debugProcess p
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System.Process.createProcess p
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