99cb3e75f1
Special remote programs that use GETCONFIG/SETCONFIG are recommended to implement it. The description is not yet used, but will be useful later when adding a way to make initremote list all accepted configs. configParser now takes a RemoteConfig parameter. Normally, that's not needed, because configParser returns a parter, it does not parse it itself. But, it's needed to look at externaltype and work out what external remote program to run for LISTCONFIGS. Note that, while externalUUID is changed to a Maybe UUID, checkExportSupported used to use NoUUID. The code that now checks for Nothing used to behave in some undefined way if the external program made requests that triggered it. Also, note that in externalSetup, once it generates external, it parses the RemoteConfig strictly. That generates a ParsedRemoteConfig, which is thrown away. The reason it's ok to throw that away, is that, if the strict parse succeeded, the result must be the same as the earlier, lenient parse. initremote of an external special remote now runs the program three times. First for LISTCONFIGS, then EXPORTSUPPORTED, and again LISTCONFIGS+INITREMOTE. It would not be hard to eliminate at least one of those, and it should be possible to only run the program once.
267 lines
9.5 KiB
Haskell
267 lines
9.5 KiB
Haskell
{- git-annex assistant daemon status
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-
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- Copyright 2012 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 Assistant.DaemonStatus where
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import Assistant.Common
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import Assistant.Alert.Utility
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import Utility.Tmp
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import Utility.NotificationBroadcaster
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import Types.Transfer
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import Logs.Transfer
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import Logs.Trust
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import Utility.TimeStamp
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import qualified Remote
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import qualified Types.Remote as Remote
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import Config.DynamicConfig
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import Annex.SpecialRemote.Config
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import Control.Concurrent.STM
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import System.Posix.Types
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import Data.Time.Clock.POSIX
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import qualified Data.Map.Strict as M
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import qualified Data.Set as S
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getDaemonStatus :: Assistant DaemonStatus
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getDaemonStatus = (atomically . readTVar) <<~ daemonStatusHandle
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modifyDaemonStatus_ :: (DaemonStatus -> DaemonStatus) -> Assistant ()
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modifyDaemonStatus_ a = modifyDaemonStatus $ \s -> (a s, ())
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modifyDaemonStatus :: (DaemonStatus -> (DaemonStatus, b)) -> Assistant b
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modifyDaemonStatus a = do
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dstatus <- getAssistant daemonStatusHandle
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liftIO $ do
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(s, b) <- atomically $ do
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r@(!s, _) <- a <$> readTVar dstatus
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writeTVar dstatus s
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return r
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sendNotification $ changeNotifier s
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return b
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{- Returns a function that updates the lists of syncable remotes
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- and other associated information. -}
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calcSyncRemotes :: Annex (DaemonStatus -> DaemonStatus)
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calcSyncRemotes = do
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rs <- filterM (liftIO . getDynamicConfig . remoteAnnexSync . Remote.gitconfig)
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=<< (concat . Remote.byCost <$> Remote.remoteList)
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alive <- trustExclude DeadTrusted (map Remote.uuid rs)
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let good r = Remote.uuid r `elem` alive
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let syncable = filter good rs
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contentremotes <- filterM (not <$$> liftIO . getDynamicConfig . remoteAnnexIgnore . Remote.gitconfig) $
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filter (\r -> Remote.uuid r /= NoUUID) syncable
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let (exportremotes, dataremotes) = partition (exportTree . Remote.config) contentremotes
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return $ \dstatus -> dstatus
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{ syncRemotes = syncable
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, syncGitRemotes = filter Remote.gitSyncableRemote syncable
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, syncDataRemotes = dataremotes
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, exportRemotes = exportremotes
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, downloadRemotes = contentremotes
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, syncingToCloudRemote = any iscloud contentremotes
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}
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where
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iscloud r = not (Remote.readonly r) && Remote.availability r == Remote.GloballyAvailable
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{- Updates the syncRemotes list from the list of all remotes in Annex state. -}
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updateSyncRemotes :: Assistant ()
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updateSyncRemotes = do
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modifyDaemonStatus_ =<< liftAnnex calcSyncRemotes
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status <- getDaemonStatus
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liftIO $ sendNotification $ syncRemotesNotifier status
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when (syncingToCloudRemote status) $
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updateAlertMap $
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M.filter $ \alert ->
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alertName alert /= Just CloudRepoNeededAlert
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changeCurrentlyConnected :: (S.Set UUID -> S.Set UUID) -> Assistant ()
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changeCurrentlyConnected sm = do
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modifyDaemonStatus_ $ \ds -> ds
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{ currentlyConnectedRemotes = sm (currentlyConnectedRemotes ds)
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}
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v <- currentlyConnectedRemotes <$> getDaemonStatus
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debug [show v]
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liftIO . sendNotification =<< syncRemotesNotifier <$> getDaemonStatus
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updateScheduleLog :: Assistant ()
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updateScheduleLog =
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liftIO . sendNotification =<< scheduleLogNotifier <$> getDaemonStatus
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{- Load any previous daemon status file, and store it in a MVar for this
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- process to use as its DaemonStatus. Also gets current transfer status. -}
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startDaemonStatus :: Annex DaemonStatusHandle
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startDaemonStatus = do
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file <- fromRepo gitAnnexDaemonStatusFile
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status <- liftIO $
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flip catchDefaultIO (readDaemonStatusFile file) =<< newDaemonStatus
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transfers <- M.fromList <$> getTransfers
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addsync <- calcSyncRemotes
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liftIO $ atomically $ newTVar $ addsync $ status
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{ scanComplete = False
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, sanityCheckRunning = False
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, currentTransfers = transfers
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}
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{- Don't just dump out the structure, because it will change over time,
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- and parts of it are not relevant. -}
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writeDaemonStatusFile :: FilePath -> DaemonStatus -> IO ()
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writeDaemonStatusFile file status =
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viaTmp writeFile file =<< serialized <$> getPOSIXTime
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where
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serialized now = unlines
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[ "lastRunning:" ++ show now
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, "scanComplete:" ++ show (scanComplete status)
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, "sanityCheckRunning:" ++ show (sanityCheckRunning status)
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, "lastSanityCheck:" ++ maybe "" show (lastSanityCheck status)
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]
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readDaemonStatusFile :: FilePath -> IO DaemonStatus
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readDaemonStatusFile file = parse <$> newDaemonStatus <*> readFile file
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where
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parse status = foldr parseline status . lines
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parseline line status
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| key == "lastRunning" = parseval parsePOSIXTime $ \v ->
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status { lastRunning = Just v }
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| key == "scanComplete" = parseval readish $ \v ->
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status { scanComplete = v }
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| key == "sanityCheckRunning" = parseval readish $ \v ->
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status { sanityCheckRunning = v }
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| key == "lastSanityCheck" = parseval parsePOSIXTime $ \v ->
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status { lastSanityCheck = Just v }
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| otherwise = status -- unparsable line
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where
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(key, value) = separate (== ':') line
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parseval parser a = maybe status a (parser value)
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{- Checks if a time stamp was made after the daemon was lastRunning.
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-
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- Some slop is built in; this really checks if the time stamp was made
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- at least ten minutes after the daemon was lastRunning. This is to
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- ensure the daemon shut down cleanly, and deal with minor clock skew.
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-
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- If the daemon has never ran before, this always returns False.
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-}
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afterLastDaemonRun :: EpochTime -> DaemonStatus -> Bool
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afterLastDaemonRun timestamp status = maybe False (< t) (lastRunning status)
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where
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t = realToFrac (timestamp + slop) :: POSIXTime
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slop = fromIntegral tenMinutes
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tenMinutes :: Int
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tenMinutes = 10 * 60
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{- Mutates the transfer map. Runs in STM so that the transfer map can
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- be modified in the same transaction that modifies the transfer queue.
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- Note that this does not send a notification of the change; that's left
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- to the caller. -}
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adjustTransfersSTM :: DaemonStatusHandle -> (TransferMap -> TransferMap) -> STM ()
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adjustTransfersSTM dstatus a = do
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s <- readTVar dstatus
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let !v = a (currentTransfers s)
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writeTVar dstatus $ s { currentTransfers = v }
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{- Checks if a transfer is currently running. -}
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checkRunningTransferSTM :: DaemonStatusHandle -> Transfer -> STM Bool
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checkRunningTransferSTM dstatus t = M.member t . currentTransfers
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<$> readTVar dstatus
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{- Alters a transfer's info, if the transfer is in the map. -}
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alterTransferInfo :: Transfer -> (TransferInfo -> TransferInfo) -> Assistant ()
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alterTransferInfo t a = updateTransferInfo' $ M.adjust a t
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{- Updates a transfer's info. Adds the transfer to the map if necessary,
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- or if already present, updates it while preserving the old transferTid,
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- transferPaused, and bytesComplete values, which are not written to disk. -}
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updateTransferInfo :: Transfer -> TransferInfo -> Assistant ()
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updateTransferInfo t info = updateTransferInfo' $ M.insertWith merge t info
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where
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merge new old = new
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{ transferTid = maybe (transferTid new) Just (transferTid old)
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, transferPaused = transferPaused new || transferPaused old
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, bytesComplete = maybe (bytesComplete new) Just (bytesComplete old)
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}
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updateTransferInfo' :: (TransferMap -> TransferMap) -> Assistant ()
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updateTransferInfo' a = notifyTransfer `after` modifyDaemonStatus_ update
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where
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update s = s { currentTransfers = a (currentTransfers s) }
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{- Removes a transfer from the map, and returns its info. -}
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removeTransfer :: Transfer -> Assistant (Maybe TransferInfo)
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removeTransfer t = notifyTransfer `after` modifyDaemonStatus remove
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where
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remove s =
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let (info, ts) = M.updateLookupWithKey
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(\_k _v -> Nothing)
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t (currentTransfers s)
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in (s { currentTransfers = ts }, info)
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{- Send a notification when a transfer is changed. -}
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notifyTransfer :: Assistant ()
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notifyTransfer = do
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dstatus <- getAssistant daemonStatusHandle
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liftIO $ sendNotification
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=<< transferNotifier <$> atomically (readTVar dstatus)
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{- Send a notification when alerts are changed. -}
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notifyAlert :: Assistant ()
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notifyAlert = do
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dstatus <- getAssistant daemonStatusHandle
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liftIO $ sendNotification
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=<< alertNotifier <$> atomically (readTVar dstatus)
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{- Returns the alert's identifier, which can be used to remove it. -}
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addAlert :: Alert -> Assistant AlertId
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addAlert alert = do
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notice [showAlert alert]
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notifyAlert `after` modifyDaemonStatus add
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where
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add s = (s { lastAlertId = i, alertMap = m }, i)
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where
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!i = nextAlertId $ lastAlertId s
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!m = mergeAlert i alert (alertMap s)
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removeAlert :: AlertId -> Assistant ()
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removeAlert i = updateAlert i (const Nothing)
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updateAlert :: AlertId -> (Alert -> Maybe Alert) -> Assistant ()
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updateAlert i a = updateAlertMap $ \m -> M.update a i m
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updateAlertMap :: (AlertMap -> AlertMap) -> Assistant ()
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updateAlertMap a = notifyAlert `after` modifyDaemonStatus_ update
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where
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update s =
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let !m = a (alertMap s)
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in s { alertMap = m }
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{- Displays an alert while performing an activity that returns True on
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- success.
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-
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- The alert is left visible afterwards, as filler.
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- Old filler is pruned, to prevent the map growing too large. -}
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alertWhile :: Alert -> Assistant Bool -> Assistant Bool
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alertWhile alert a = alertWhile' alert $ do
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r <- a
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return (r, r)
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{- Like alertWhile, but allows the activity to return a value too. -}
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alertWhile' :: Alert -> Assistant (Bool, a) -> Assistant a
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alertWhile' alert a = do
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let alert' = alert { alertClass = Activity }
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i <- addAlert alert'
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(ok, r) <- a
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updateAlertMap $ mergeAlert i $ makeAlertFiller ok alert'
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return r
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{- Displays an alert while performing an activity, then removes it. -}
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alertDuring :: Alert -> Assistant a -> Assistant a
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alertDuring alert a = do
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i <- addAlert $ alert { alertClass = Activity }
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removeAlert i `after` a
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