mirror of
https://github.com/urbit/shrub.git
synced 2024-12-21 01:41:37 +03:00
485 lines
14 KiB
Haskell
485 lines
14 KiB
Haskell
{-# OPTIONS_GHC -Wwarn #-}
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{-
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- TODO: `recvLen` is not big-endian safe.
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-}
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module Vere.Serf ( Serf, SerfState
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, run, shutdown, kill
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, replay, bootFromSeq, snapshot
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, collectFX
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, Config(..), Flags, Flag(..)
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) where
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import UrbitPrelude hiding (fail)
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import Arvo
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import Control.Monad.Fail (fail)
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import Data.Conduit
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import Data.Void
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import Noun
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import System.Process
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import Vere.Pier.Types
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import Data.Bits (setBit)
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import Control.Concurrent (threadDelay)
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import Data.ByteString (hGet)
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import Data.ByteString.Unsafe (unsafeUseAsCString)
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import Foreign.Marshal.Alloc (alloca)
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import Foreign.Ptr (castPtr)
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import Foreign.Storable (peek, poke)
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import System.Directory (createDirectoryIfMissing)
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import System.Exit (ExitCode)
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import qualified Data.ByteString.Unsafe as BS
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import qualified Data.Text as T
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import qualified System.IO.Error as IO
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import qualified System.IO as IO
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import qualified Urbit.Time as Time
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import qualified Vere.Log as Log
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-- Serf Config -----------------------------------------------------------------
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type Flags = [Flag]
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data Flag
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= DebugRam
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| DebugCpu
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| CheckCorrupt
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| CheckFatal
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| Verbose
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| DryRun
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| Quiet
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| Hashless
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| Trace
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deriving (Eq, Ord, Show, Enum, Bounded)
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compileFlags :: [Flag] -> Word
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compileFlags = foldl' (\acc flag -> setBit acc (fromEnum flag)) 0
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data Config = Config FilePath [Flag]
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deriving (Show)
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debug msg = putStrLn ("[DEBUG]\t" <> msg)
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serf msg = putStrLn ("[SERF]\t" <> msg)
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-- Types -----------------------------------------------------------------------
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data SerfState = SerfState
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{ ssNextEv :: EventId
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, ssLastMug :: Mug
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}
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deriving (Eq, Ord, Show)
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data Serf = Serf
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{ sendHandle :: Handle
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, recvHandle :: Handle
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, errThread :: Async ()
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, process :: ProcessHandle
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, sState :: MVar SerfState
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}
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data ShipId = ShipId Ship Bool
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deriving (Eq, Ord, Show)
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type Play = Maybe (EventId, Mug, ShipId)
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data Plea
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= PPlay Play
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| PWork Work
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| PDone EventId Mug FX
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| PStdr EventId Cord
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| PSlog EventId Word32 Tank
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deriving (Eq, Show)
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type GetJobs = EventId -> Word64 -> IO (Vector Job)
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type ReplacementEv = Job
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type WorkResult = (SerfState, FX)
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type SerfResp = Either ReplacementEv WorkResult
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data SerfExn
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= BadComputeId EventId WorkResult
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| BadReplacementId EventId ReplacementEv
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| UnexpectedPlay EventId Play
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| BadPleaAtom Atom
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| BadPleaNoun Noun [Text] Text
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| ReplacedEventDuringReplay EventId ReplacementEv
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| ReplacedEventDuringBoot EventId ReplacementEv
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| EffectsDuringBoot EventId FX
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| SerfConnectionClosed
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| UnexpectedPleaOnNewShip Plea
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| InvalidInitialPlea Plea
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deriving (Show)
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-- Instances -------------------------------------------------------------------
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instance Exception SerfExn
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deriveNoun ''ShipId
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deriveNoun ''Plea
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-- Utils -----------------------------------------------------------------------
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printTank :: Word32 -> Tank -> IO ()
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printTank pri = \case
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Leaf (Tape s) -> serf ("[tank] " <> s)
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t -> serf ("[tank] " <> tshow (pri, t))
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guardExn :: Exception e => Bool -> e -> IO ()
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guardExn ok = unless ok . throwIO
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fromJustExn :: Exception e => Maybe a -> e -> IO a
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fromJustExn Nothing exn = throwIO exn
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fromJustExn (Just x) exn = pure x
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fromRightExn :: Exception e => Either a b -> (a -> e) -> IO b
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fromRightExn (Left m) exn = throwIO (exn m)
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fromRightExn (Right x) _ = pure x
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-- Process Management ----------------------------------------------------------
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run :: Config -> Acquire Serf
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run config = mkAcquire (startUp config) tearDown
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startUp :: Config -> IO Serf
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startUp conf@(Config pierPath flags) = do
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debug "STARTING SERF"
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debug (tshow conf)
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(Just i, Just o, Just e, p) <- createProcess pSpec
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ss <- newEmptyMVar
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et <- async (readStdErr e)
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pure (Serf i o et p ss)
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where
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diskKey = ""
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config = show (compileFlags flags)
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args = [pierPath, diskKey, config]
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pSpec = (proc "urbit-worker" args)
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{ std_in = CreatePipe
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, std_out = CreatePipe
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, std_err = CreatePipe
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}
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readStdErr :: Handle -> IO ()
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readStdErr h =
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untilEOFExn $ do
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ln <- IO.hGetLine h
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serf ("[stderr] " <> T.strip (pack ln))
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where
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eofMsg = "[Serf.readStdErr] serf stderr closed"
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untilEOFExn :: IO () -> IO ()
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untilEOFExn act = loop
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where
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loop = do
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IO.tryIOError act >>= \case
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Left exn | IO.isEOFError exn -> do debug eofMsg
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pure ()
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Left exn -> IO.ioError exn
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Right () -> loop
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tearDown :: Serf -> IO ()
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tearDown serf = do
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race_ waitThenKill (shutdownAndWait serf 0)
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where
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killedMsg =
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"[Serf.tearDown]: Serf didn't die when asked, killing it"
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waitThenKill = do
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threadDelay 1000000
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debug killedMsg
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terminateProcess (process serf)
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waitForExit :: Serf -> IO ExitCode
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waitForExit serf = waitForProcess (process serf)
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kill :: Serf -> IO ExitCode
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kill serf = terminateProcess (process serf) >> waitForExit serf
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shutdownAndWait :: Serf -> Word8 -> IO ExitCode
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shutdownAndWait serf code = do
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shutdown serf code
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waitForExit serf
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-- Basic Send and Receive Operations -------------------------------------------
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withWord64AsByteString :: Word64 -> (ByteString -> IO a) -> IO a
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withWord64AsByteString w k = do
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alloca $ \wp -> do
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poke wp w
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bs <- BS.unsafePackCStringLen (castPtr wp, 8)
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k bs
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sendLen :: Serf -> Int -> IO ()
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sendLen s i = do
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w <- evaluate (fromIntegral i :: Word64)
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withWord64AsByteString (fromIntegral i) (hPut (sendHandle s))
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sendOrder :: Serf -> Order -> IO ()
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sendOrder w o = do
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debug ("[Serf.sendOrder.toNoun] " <> tshow o)
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n <- evaluate (toNoun o)
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case o of
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OWork (DoWork (Work _ _ _ e)) -> do
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print (toNoun (e :: Ev))
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_ -> do
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pure ()
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debug ("[Serf.sendOrder.jam]")
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bs <- evaluate (jamBS n)
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debug ("[Serf.sendOrder.send]: " <> tshow (length bs))
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sendBytes w bs
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debug ("[Serf.sendOrder.sent]")
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sendBytes :: Serf -> ByteString -> IO ()
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sendBytes s bs = do
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debug "sendLen"
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sendLen s (length bs)
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debug "hFlush"
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hFlush (sendHandle s)
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debug "Flushed"
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threadDelay 10000 -- TODO WHY DOES THIS MATTER?????
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debug "hPut"
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hPut (sendHandle s) bs
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debug "hFlush"
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hFlush (sendHandle s)
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debug "Flushed"
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threadDelay 10000 -- TODO WHY DOES THIS MATTER?????
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recvLen :: Serf -> IO Word64
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recvLen w = do
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bs <- hGet (recvHandle w) 8
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case length bs of
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8 -> unsafeUseAsCString bs (peek . castPtr)
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_ -> throwIO SerfConnectionClosed
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recvBytes :: Serf -> Word64 -> IO ByteString
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recvBytes w = do
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hGet (recvHandle w) . fromIntegral
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recvAtom :: Serf -> IO Atom
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recvAtom w = do
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len <- recvLen w
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bs <- recvBytes w len
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pure (packAtom bs)
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where
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packAtom :: ByteString -> Atom
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packAtom = view (from atomBytes)
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cordString :: Cord -> String
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cordString = unpack . cordText
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cordText :: Cord -> Text
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cordText = T.strip . unCord
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--------------------------------------------------------------------------------
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snapshot :: Serf -> SerfState -> IO ()
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snapshot serf SerfState{..} = sendOrder serf (OSave $ ssNextEv - 1)
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shutdown :: Serf -> Word8 -> IO ()
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shutdown serf code = sendOrder serf (OExit code)
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{-
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TODO Find a cleaner way to handle `PStdr` Pleas.
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-}
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recvPlea :: Serf -> IO Plea
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recvPlea w = do
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debug ("[Vere.Serf.recvPlea] waiting")
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a <- recvAtom w
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debug ("[Vere.Serf.recvPlea] got atom")
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n <- fromRightExn (cue a) (const $ BadPleaAtom a)
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p <- fromRightExn (fromNounErr n) (\(p,m) -> BadPleaNoun (traceShowId n) p m)
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case p of PStdr e msg -> do serf ("[stdr-plea] " <> cordText msg)
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recvPlea w
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PSlog _ pri t -> do printTank pri t
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recvPlea w
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_ -> do debug ("[Serf.recvPlea] Got " <> tshow p)
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pure p
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{-
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Waits for initial plea, and then sends boot IPC if necessary.
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-}
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handshake :: Serf -> LogIdentity -> IO SerfState
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handshake serf ident = do
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ss@SerfState{..} <- recvPlea serf >>= \case
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PPlay Nothing -> pure $ SerfState 1 (Mug 0)
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PPlay (Just (e, m, _)) -> pure $ SerfState e m
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x -> throwIO (InvalidInitialPlea x)
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when (ssNextEv == 1) $ do
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sendOrder serf (OBoot ident)
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pure ss
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sendWork :: Serf -> Job -> IO SerfResp
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sendWork w job =
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do
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sendOrder w (OWork job)
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res <- loop
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debug ("[Vere.Serf.sendWork] Got response")
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pure res
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where
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eId = jobId job
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produce :: WorkResult -> IO SerfResp
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produce (ss@SerfState{..}, o) = do
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guardExn (ssNextEv == (1+eId)) (BadComputeId eId (ss, o))
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pure $ Right (ss, o)
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replace :: ReplacementEv -> IO SerfResp
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replace job = do
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guardExn (jobId job == eId) (BadReplacementId eId job)
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pure (Left job)
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loop :: IO SerfResp
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loop = recvPlea w >>= \case
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PPlay p -> throwIO (UnexpectedPlay eId p)
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PDone i m o -> produce (SerfState (i+1) m, o)
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PWork work -> replace (DoWork work)
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PStdr _ cord -> serf ("[stdr-plea] " <> cordText cord) >> loop
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PSlog _ pri t -> printTank pri t >> loop
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--------------------------------------------------------------------------------
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doJob :: Serf -> Job -> IO (Job, SerfState, FX)
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doJob serf job = do
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sendWork serf job >>= \case
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Left replaced -> doJob serf replaced
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Right (ss, fx) -> pure (job, ss, fx)
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bootJob :: Serf -> Job -> IO (Job, SerfState)
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bootJob serf job = do
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doJob serf job >>= \case
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(job, ss, []) -> pure (job, ss)
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(job, ss, fx) -> throwIO (EffectsDuringBoot (jobId job) fx)
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replayJob :: Serf -> Job -> IO SerfState
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replayJob serf job = do
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sendWork serf job >>= \case
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Left replace -> throwIO (ReplacedEventDuringReplay (jobId job) replace)
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Right (ss, _) -> pure ss
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--------------------------------------------------------------------------------
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type BootSeqFn = EventId -> Mug -> Time.Wen -> Job
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data BootExn = ShipAlreadyBooted
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deriving stock (Eq, Ord, Show)
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deriving anyclass (Exception)
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bootFromSeq :: Serf -> BootSeq -> IO ([Job], SerfState)
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bootFromSeq serf (BootSeq ident nocks ovums) = do
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handshake serf ident >>= \case
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ss@(SerfState 1 (Mug 0)) -> loop [] ss bootSeqFns
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_ -> throwIO ShipAlreadyBooted
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where
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loop :: [Job] -> SerfState -> [BootSeqFn] -> IO ([Job], SerfState)
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loop acc ss = \case
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[] -> pure (reverse acc, ss)
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x:xs -> do wen <- Time.now
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job <- pure $ x (ssNextEv ss) (ssLastMug ss) wen
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(job, ss) <- bootJob serf job
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loop (job:acc) ss xs
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bootSeqFns :: [BootSeqFn]
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bootSeqFns = fmap muckNock nocks <> fmap muckOvum ovums
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where
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muckNock nok eId mug _ = RunNok $ LifeCyc eId mug nok
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muckOvum ov eId mug wen = DoWork $ Work eId mug wen ov
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{-
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The ship is booted, but it is behind. shove events to the worker
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until it is caught up.
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-}
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replayJobs :: Serf -> SerfState -> ConduitT Job Void IO SerfState
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replayJobs serf = go
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where
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go ss = await >>= maybe (pure ss) (liftIO . replayJob serf >=> go)
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replay :: Serf -> Log.EventLog -> IO SerfState
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replay serf log = do
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ss <- handshake serf (Log.identity log)
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runConduit $ Log.streamEvents log (ssNextEv ss)
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.| toJobs (Log.identity log) (ssNextEv ss)
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.| replayJobs serf ss
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toJobs :: LogIdentity -> EventId -> ConduitT ByteString Job IO ()
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toJobs ident eId =
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await >>= \case
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Nothing -> putStrLn "[toJobs] no more jobs" >> pure ()
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Just at -> do yield =<< liftIO (fromAtom at)
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putStrLn ("[toJobs] " <> tshow eId)
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toJobs ident (eId+1)
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where
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isNock = trace ("[toJobs] " <> show (eId, lifecycleLen ident))
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$ eId <= fromIntegral (lifecycleLen ident)
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fromAtom :: ByteString -> IO Job
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fromAtom bs | isNock = do
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noun <- cueBSExn bs
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(mug, nok) <- fromNounExn noun
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pure $ RunNok (LifeCyc eId mug nok)
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fromAtom bs = do
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noun <- cueBSExn bs
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(mug, wen, ovm) <- fromNounExn noun
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pure $ DoWork (Work eId mug wen ovm)
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-- Collect Effects for Parsing -------------------------------------------------
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collectFX :: Serf -> Log.EventLog -> IO ()
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collectFX serf log = do
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ss <- handshake serf (Log.identity log)
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let pax = "/home/benjamin/testnet-zod-fx"
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createDirectoryIfMissing True pax
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runConduit $ Log.streamEvents log (ssNextEv ss)
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.| toJobs (Log.identity log) (ssNextEv ss)
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.| doCollectFX serf ss
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.| persistFX pax
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persistFX :: FilePath -> ConduitT (EventId, FX) Void IO ()
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persistFX pax = await >>= \case
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Nothing -> pure ()
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Just (eId, fx) -> do
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writeFile (pax <> "/" <> show eId) (jamBS $ toNoun fx)
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persistFX pax
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doCollectFX :: Serf -> SerfState -> ConduitT Job (EventId, FX) IO ()
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doCollectFX serf = go
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where
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go :: SerfState -> ConduitT Job (EventId, FX) IO ()
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go ss = await >>= \case
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Nothing -> pure ()
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Just jb -> do
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jb <- pure $ replaceMug jb (ssLastMug ss)
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(_, ss, fx) <- liftIO (doJob serf jb)
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liftIO $ print (jobId jb)
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yield (jobId jb, fx)
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go ss
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replaceMug :: Job -> Mug -> Job
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replaceMug jb mug =
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case jb of
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DoWork (Work eId _ w o) -> DoWork (Work eId mug w o)
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RunNok (LifeCyc eId _ n) -> RunNok (LifeCyc eId mug n)
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