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{- P2P protocol over HTTP, server state
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-
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- https://git-annex.branchable.com/design/p2p_protocol_over_http/
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-
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- Copyright 2024 Joey Hess <id@joeyh.name>
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-
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- Licensed under the GNU AGPL version 3 or higher.
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-}
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{-# LANGUAGE BangPatterns #-}
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module P2P.Http.State where
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import Annex.Common
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import P2P.Http.Types
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import qualified P2P.Protocol as P2P
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import P2P.IO
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import P2P.Annex
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import Annex.UUID
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import Annex.Concurrent
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import Servant
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import qualified Data.Map as M
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import Control.Concurrent.Async
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import Control.Concurrent.STM
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data P2PHttpServerState = P2PHttpServerState
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{ acquireP2PConnection :: AcquireP2PConnection
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, getServerMode :: GetServerMode
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, openLocks :: TMVar (M.Map LockID Locker)
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}
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mkP2PHttpServerState :: AcquireP2PConnection -> GetServerMode -> IO P2PHttpServerState
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mkP2PHttpServerState acquireconn getservermode = P2PHttpServerState
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<$> pure acquireconn
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<*> pure getservermode
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<*> newTMVarIO mempty
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withP2PConnection
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:: APIVersion v
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=> v
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-> P2PHttpServerState
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-> B64UUID ClientSide
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-> B64UUID ServerSide
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-> [B64UUID Bypass]
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-> (RunState -> P2PConnection -> Handler a)
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-> Handler a
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withP2PConnection apiver st cu su bypass connaction = do
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liftIO (acquireP2PConnection st cp) >>= \case
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Left (ConnectionFailed err) ->
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throwError err502 { errBody = encodeBL err }
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Left TooManyConnections ->
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throwError err503
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Right (runst, conn, releaseconn) ->
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connaction runst conn
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`finally` liftIO releaseconn
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where
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cp = ConnectionParams
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{ connectionProtocolVersion = protocolVersion apiver
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, connectionServerUUID = fromB64UUID su
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, connectionClientUUID = fromB64UUID cu
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, connectionBypass = map fromB64UUID bypass
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, connectionServerMode = P2P.ServeReadWrite -- XXX auth
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}
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type GetServerMode = IsSecure -> Maybe BasicAuthData -> Maybe P2P.ServerMode
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data ConnectionParams = ConnectionParams
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{ connectionProtocolVersion :: P2P.ProtocolVersion
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, connectionServerUUID :: UUID
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, connectionClientUUID :: UUID
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, connectionBypass :: [UUID]
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, connectionServerMode :: P2P.ServerMode
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}
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deriving (Show, Eq, Ord)
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data ConnectionProblem
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= ConnectionFailed String
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| TooManyConnections
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deriving (Show, Eq)
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type AcquireP2PConnection =
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ConnectionParams -> IO
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( Either ConnectionProblem
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( RunState
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, P2PConnection
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, IO () -- ^ release connection
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)
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)
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{- Runs P2P actions in the local repository only. -}
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-- TODO need worker pool, this can only service a single request at
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-- a time.
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-- TODO proxies
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-- TODO clusters
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withLocalP2PConnections :: (AcquireP2PConnection -> Annex a) -> Annex a
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withLocalP2PConnections a = do
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reqv <- liftIO newEmptyTMVarIO
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relv <- liftIO newEmptyTMVarIO
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asyncservicer <- liftIO . async =<< forkState (servicer reqv relv)
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a (acquireconn reqv) `finally` join (liftIO (wait asyncservicer))
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where
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acquireconn reqv connparams = do
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respvar <- newEmptyTMVarIO
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liftIO $ atomically $ putTMVar reqv (connparams, respvar)
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liftIO $ atomically $ takeTMVar respvar
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servicer reqv relv = do
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reqrel <- liftIO $
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atomically $
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(Right <$> takeTMVar reqv)
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`orElse`
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(Left <$> takeTMVar relv)
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case reqrel of
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Right (connparams, respvar) ->
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servicereq relv connparams respvar
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Left releaseconn -> releaseconn
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servicer reqv relv
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servicereq relv connparams respvar = do
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myuuid <- getUUID
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resp <- if connectionServerUUID connparams /= myuuid
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then return $ Left $ ConnectionFailed "unknown uuid"
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else do
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hdl1 <- liftIO newEmptyTMVarIO
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hdl2 <- liftIO newEmptyTMVarIO
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waitv1 <- liftIO newEmptyTMVarIO
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waitv2 <- liftIO newEmptyTMVarIO
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let h1 = P2PHandleTMVar hdl1 waitv1
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let h2 = P2PHandleTMVar hdl2 waitv2
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let serverconn = P2PConnection Nothing
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(const True) h1 h2
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(ConnIdent (Just "http server"))
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let clientconn = P2PConnection Nothing
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(const True) h2 h1
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(ConnIdent (Just "http client"))
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runst <- liftIO $ mkrunst connparams
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let server = P2P.serveOneCommandAuthed
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(connectionServerMode connparams)
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(connectionServerUUID connparams)
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let protorunner = void $
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runFullProto runst serverconn server
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asyncworker <- liftIO . async
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=<< forkState protorunner
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let releaseconn = atomically $ putTMVar relv $
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join (liftIO (wait asyncworker))
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return $ Right (runst, clientconn, releaseconn)
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liftIO $ atomically $ putTMVar respvar resp
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mkrunst connparams = do
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prototvar <- newTVarIO $ connectionProtocolVersion connparams
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mkRunState $ const $ Serving
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(connectionClientUUID connparams)
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Nothing
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prototvar
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data Locker = Locker
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{ lockerThread :: Async ()
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, lockerVar :: TMVar Bool
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-- ^ Left empty until the thread has taken the lock
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-- (or failed to do so), then True while the lock is held,
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-- and setting to False causes the lock to be released.
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}
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mkLocker :: IO () -> IO () -> IO (Maybe (Locker, LockID))
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mkLocker lock unlock = do
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lv <- newEmptyTMVarIO
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let setlocked = putTMVar lv
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tid <- async $
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tryNonAsync lock >>= \case
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Left _ -> do
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atomically $ setlocked False
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unlock
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Right () -> do
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atomically $ setlocked True
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atomically $ do
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v <- takeTMVar lv
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if v
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then retry
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else setlocked False
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unlock
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locksuccess <- atomically $ readTMVar lv
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if locksuccess
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then do
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lckid <- B64UUID <$> genUUID
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return (Just (Locker tid lv, lckid))
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else do
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wait tid
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return Nothing
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storeLock :: LockID -> Locker -> P2PHttpServerState -> IO ()
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storeLock lckid locker st = atomically $ do
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m <- takeTMVar (openLocks st)
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let !m' = M.insert lckid locker m
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putTMVar (openLocks st) m'
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dropLock :: LockID -> P2PHttpServerState -> IO ()
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dropLock lckid st = do
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v <- atomically $ do
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m <- takeTMVar (openLocks st)
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let (mlocker, !m') =
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M.updateLookupWithKey (\_ _ -> Nothing) lckid m
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putTMVar (openLocks st) m'
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case mlocker of
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Nothing -> return Nothing
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-- Signal to the locker's thread that it can release the lock.
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Just locker -> do
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_ <- swapTMVar (lockerVar locker) False
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return (Just locker)
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case v of
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Nothing -> return ()
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Just locker -> wait (lockerThread locker)
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