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276 lines
9.1 KiB
Haskell
276 lines
9.1 KiB
Haskell
{-|
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UNIX Filesystem Driver
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-}
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module Urbit.Vere.Clay
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( clay
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, clay'
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)
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where
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import Urbit.Arvo
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import Urbit.King.App
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import Urbit.Prelude
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import Urbit.Vere.Pier.Types
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import Conduit
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import RIO.Directory
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import RIO.FilePath
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import qualified Data.Conduit.Combinators as CC
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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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--------------------------------------------------------------------------------
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data ClayDrv = ClayDrv
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{ cdMountPoints :: TVar (Map Desk (Map FilePath Int))
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}
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deskToPath :: Desk -> FilePath
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deskToPath (Desk (Cord t)) = unpack t
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-- | The hard coded mime type of every file.
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textPlain :: Path
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textPlain = Path [(MkKnot "text"), (MkKnot "plain")]
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-- | Filter for dotfiles, tempfiles and backup files.
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validClaySyncPath :: FilePath -> Bool
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validClaySyncPath fp = hasPeriod && notTildeFile && notDotFile && notDoubleHash
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where
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fileName = takeFileName fp
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hasPeriod = elem '.' fileName
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notTildeFile = not $ "~" `isSuffixOf` fileName
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notDotFile = not $ "." `isPrefixOf` fileName
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notDoubleHash =
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not $ ("#" `isPrefixOf` fileName) && ("#" `isSuffixOf` fileName)
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{-|
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Returns a list of the result of running a function on each valid
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file in the directory fp. Runnable in IO.
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-}
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foreachFileIn :: (MonadUnliftIO m)
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=> FilePath -> (FilePath -> (ResourceT m) a) -> m [a]
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foreachFileIn fp fun =
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runConduitRes $ (sourceDirectoryDeep False fp)
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.| filterC validClaySyncPath
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.| CC.mapM fun
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.| sinkList
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{-|
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Note: Vere just reuses +mug, but since the actual hash function is
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an implementation detail which doesn't leave the io driver, we just
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use the standard hash.
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-}
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getHashOfFile :: (MonadIO m) => FilePath -> m (FilePath, Int)
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getHashOfFile fp = do
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bs <- readFile fp
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let !h = hash bs
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pure (fp, h)
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{-|
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Takes an initial snapshot of the filesystem, recording what files exist and
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what their hashes are.
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-}
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takeFilesystemSnapshot :: FilePath -> RIO e (Map FilePath Int)
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takeFilesystemSnapshot fp = do
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exists <- doesDirectoryExist fp
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if not exists then
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pure M.empty
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else
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M.fromList <$> foreachFileIn fp getHashOfFile
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{-|
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Check an existing filepath against a snapshot of files that existed on disk
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the last time we checked. Returns Either (unchanged) (new file data).
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-}
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checkFileForUpdates :: (MonadIO m)
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=> Map FilePath Int -> FilePath
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-> m (Either FilePath (FilePath, Mime, Int))
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checkFileForUpdates snapshot fp = do
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bs <- readFile fp
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let !newHash = hash bs
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pure $ case lookup fp snapshot of
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-- text/plain is the hardcoded mime type of every file sent to clay.
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Nothing -> Right (fp, (Mime textPlain (File (Octs bs))), newHash)
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Just i -> if i == newHash then Left fp
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else Right (fp, (Mime textPlain (File (Octs bs))), newHash)
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{-|
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Given a previous snapshot of the filesystem, produces a list of changes
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-}
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buildActionListFromDifferences :: FilePath -> Map FilePath Int
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-> RIO e [(FilePath, Maybe (Mime, Int))]
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buildActionListFromDifferences fp snapshot = do
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checks <- foreachFileIn fp (checkFileForUpdates snapshot)
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let changedItems = rights checks <&> \(fp, m, i) -> (fp, Just (m, i))
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let existsSet = S.fromList $ flip map checks $ \case
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Left fp -> fp
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Right (fp, _, _) -> fp
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let deletedSet = S.difference (M.keysSet snapshot) existsSet
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let deletedItems = (toList deletedSet) <&> \x -> (x, Nothing)
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pure $ sort (deletedItems ++ changedItems)
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--------------------------------------------------------------------------------
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_boatFailed :: e -> WorkError -> IO ()
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_boatFailed env _ = runRIO env $ do
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pure () -- TODO What can we do?
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clay'
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:: HasPierEnv e
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=> RIO e ([Ev], RAcquire e (DriverApi SyncEf))
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clay' = do
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ventQ :: TQueue EvErr <- newTQueueIO
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env <- ask
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let (bornEvs, startDriver) = clay env (writeTQueue ventQ)
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let runDriver = do
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diOnEffect <- startDriver
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let diEventSource = fmap RRWork <$> tryReadTQueue ventQ
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pure (DriverApi {..})
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pure (bornEvs, runDriver)
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clay
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:: forall e
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. (HasPierConfig e, HasLogFunc e, HasKingId e)
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=> e
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-> (EvErr -> STM ())
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-> ([Ev], RAcquire e (SyncEf -> IO ()))
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clay env plan =
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(initialEvents, runSync)
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where
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king = fromIntegral (env ^. kingIdL)
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boatEv = EvBlip $ BlipEvBoat $ BoatEvBoat () ()
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-- TODO: In the case of -A, we need to read all the data from the
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-- specified directory and shove it into an %into event.
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initialEvents = [boatEv]
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runSync :: RAcquire e (SyncEf -> IO ())
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runSync = handleEffect <$> mkRAcquire start stop
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start :: RIO e ClayDrv
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start = ClayDrv <$> newTVarIO mempty
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stop c = pure ()
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handleEffect :: ClayDrv -> SyncEf -> IO ()
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handleEffect cd = runRIO env . \case
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SyncEfHill _ mountPoints -> do
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logInfo $ displayShow ("(clay) known mount points:", mountPoints)
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pierPath <- view pierPathL
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mountPairs <- flip mapM mountPoints $ \desk -> do
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ss <- takeFilesystemSnapshot (pierPath </> (deskToPath desk))
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pure (desk, ss)
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atomically $ writeTVar (cdMountPoints cd) (M.fromList mountPairs)
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SyncEfDirk p desk -> do
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logInfo $ displayShow ("(clay) dirk:", p, desk)
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m <- atomically $ readTVar (cdMountPoints cd)
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let snapshot = M.findWithDefault M.empty desk m
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pierPath <- view pierPathL
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let dir = pierPath </> deskToPath desk
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actions <- buildActionListFromDifferences dir snapshot
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logInfo $ displayShow ("(clay) dirk actions: ", actions)
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let !intoList = map (actionsToInto dir) actions
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let syncEv = EvBlip
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$ BlipEvSync
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$ SyncEvInto (Some (king, ())) desk False intoList
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let syncFailed _ = pure ()
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atomically $ plan (EvErr syncEv syncFailed)
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atomically $ modifyTVar'
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(cdMountPoints cd)
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(applyActionsToMountPoints desk actions)
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SyncEfErgo p desk actions -> do
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logInfo $ displayShow ("(clay) ergo:", p, desk, actions)
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m <- atomically $ readTVar (cdMountPoints cd)
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let mountPoint = M.findWithDefault M.empty desk m
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pierPath <- view pierPathL
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let dir = pierPath </> deskToPath desk
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let hashedActions = map (calculateActionHash dir) actions
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for_ hashedActions (performAction mountPoint)
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atomically $ modifyTVar'
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(cdMountPoints cd)
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(applyActionsToMountPoints desk hashedActions)
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SyncEfOgre p desk -> do
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logInfo $ displayShow ("(clay) ogre:", p, desk)
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pierPath <- view pierPathL
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removeDirectoryRecursive $ pierPath </> deskToPath desk
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atomically $ modifyTVar' (cdMountPoints cd) (M.delete desk)
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-- Change the structures off of the event into something we can work with
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-- in Unix.
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calculateActionHash :: FilePath -> (Path, Maybe Mime)
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-> (FilePath, Maybe (Mime, Int))
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calculateActionHash base (p, Nothing) = (base </> pathToFilePath p, Nothing)
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calculateActionHash base (p, Just (Mime t f)) =
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(base </> pathToFilePath p, Just ((Mime t f), (hash $ unOcts $ unFile f)))
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-- Performs the actions on the actual filesystem
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performAction :: (Map FilePath Int) -> (FilePath, Maybe (Mime, Int))
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-> RIO e ()
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performAction m (fp, Nothing) = do
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logInfo $ displayShow ("(clay) deleting file ", fp)
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removeFile fp
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performAction m (fp, Just ((Mime _ (File (Octs bs)), hash)))
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| skip = logInfo $
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displayShow ("(clay) skipping unchanged file update " , fp)
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| otherwise = do
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logInfo $ displayShow ("(clay) updating file " , fp)
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createDirectoryIfMissing True $ takeDirectory fp
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writeFile fp bs
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where
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skip = case M.lookup fp m of
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Nothing -> False
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Just i -> i == hash
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-- Apply the actions to our internal snapshots
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applyActionsToMountPoints :: Desk
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-> [(FilePath, Maybe (Mime, Int))]
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-> (Map Desk (Map FilePath Int))
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-> (Map Desk (Map FilePath Int))
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applyActionsToMountPoints desk actions m = M.alter change desk m
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where
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change (Just fileMap) = Just (foldl' applySyncAction fileMap actions)
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change Nothing = change (Just M.empty)
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-- Applies the sync mutations specified.
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applySyncAction :: (Map FilePath Int)
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-> (FilePath, Maybe (Mime, Int))
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-> (Map FilePath Int)
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applySyncAction m (fp, Nothing) = M.delete fp m
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applySyncAction m (fp, (Just (_, h))) = M.insert fp h m
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-- Changes an action list item into a form injectable into Urbit
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actionsToInto :: FilePath -> (FilePath, Maybe (Mime, Int))
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-> (Path, Maybe Mime)
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actionsToInto prefix (fp, mybData) = (p, mybOutData)
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where
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p = filePathToPath strippedFp
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strippedFp = case stripPrefix prefix fp of
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Nothing -> error "Impossible missing prefix"
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Just x -> x
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mybOutData = case mybData of
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Nothing -> Nothing
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Just (m, i) -> Just m
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