57b03630b3
These don't have importTree in their config, because they don't support tree import, but they do still support import, and do not support export or key/value modification.
269 lines
9.6 KiB
Haskell
269 lines
9.6 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, nonexportremotes) = partition (exportTree . Remote.config) contentremotes
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let isimport r = importTree (Remote.config r) || Remote.thirdPartyPopulated (Remote.remotetype r)
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let dataremotes = filter (not . isimport) nonexportremotes
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return $ \dstatus -> dstatus
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{ syncRemotes = syncable
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, syncGitRemotes = filter (Remote.gitSyncableRemoteType . Remote.remotetype) 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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