232 lines
7.6 KiB
Haskell
232 lines
7.6 KiB
Haskell
{- git-annex command
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-
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- Copyright 2015-2019 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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module Command.Smudge where
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import Command
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import Annex.Content
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import Annex.Link
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import Annex.FileMatcher
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import Annex.Ingest
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import Annex.CatFile
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import Logs.Smudge
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import Logs.Location
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import qualified Database.Keys
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import qualified Git.BuildVersion
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import Git.FilePath
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import qualified Git
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import qualified Annex
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import Backend
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import Utility.Metered
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import Annex.InodeSentinal
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import Utility.InodeCache
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import Utility.ThreadScheduler
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import qualified Data.ByteString as S
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import qualified Data.ByteString.Lazy as L
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import Data.Time.Clock
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import Data.Time.Clock.POSIX
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cmd :: Command
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cmd = noCommit $ noMessages $
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command "smudge" SectionPlumbing
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"git smudge filter"
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paramFile (seek <$$> optParser)
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data SmudgeOptions = UpdateOption | SmudgeOptions
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{ smudgeFile :: FilePath
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, cleanOption :: Bool
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}
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optParser :: CmdParamsDesc -> Parser SmudgeOptions
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optParser desc = smudgeoptions <|> updateoption
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where
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smudgeoptions = SmudgeOptions
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<$> argument str ( metavar desc )
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<*> switch ( long "clean" <> help "clean filter" )
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updateoption = flag' UpdateOption
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( long "update" <> help "populate annexed worktree files" )
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seek :: SmudgeOptions -> CommandSeek
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seek (SmudgeOptions f False) = commandAction (smudge f)
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seek (SmudgeOptions f True) = commandAction (clean f)
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seek UpdateOption = commandAction update
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-- Smudge filter is fed git file content, and if it's a pointer to an
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-- available annex object, git expects it to output its content.
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--
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-- However, this does not do that. It outputs the pointer, and records
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-- the filename in the smudge log. Git hooks run after commands like checkout
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-- then run git annex smudge --update which populates the work tree files
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-- with annex content. This is done for several reasons:
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--
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-- * To support annex.thin
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-- * Because git currently buffers the whole object received from the
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-- smudge filter in memory, which is a problem with large files.
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smudge :: FilePath -> CommandStart
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smudge file = do
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b <- liftIO $ L.hGetContents stdin
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case parseLinkTargetOrPointerLazy b of
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Nothing -> noop
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Just k -> do
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topfile <- inRepo (toTopFilePath (toRawFilePath file))
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Database.Keys.addAssociatedFile k topfile
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void $ smudgeLog k topfile
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liftIO $ L.putStr b
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stop
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-- Clean filter is fed file content on stdin, decides if a file
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-- should be stored in the annex, and outputs a pointer to its
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-- injested content if so. Otherwise, the original content.
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clean :: FilePath -> CommandStart
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clean file = do
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b <- liftIO $ L.hGetContents stdin
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ifM fileoutsiderepo
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( liftIO $ L.hPut stdout b
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, case parseLinkTargetOrPointerLazy b of
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Just k -> do
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getMoveRaceRecovery k (toRawFilePath file)
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liftIO $ L.hPut stdout b
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Nothing -> do
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ic <- withTSDelta (liftIO . genInodeCache (toRawFilePath file))
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go ic b =<< catKeyFile (toRawFilePath file)
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gitMtimeWorkaround ic
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)
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stop
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where
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go ic b oldkey = ifM (shouldAnnex file ic oldkey)
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( do
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-- Before git 2.5, failing to consume all stdin here
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-- would cause a SIGPIPE and crash it.
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-- Newer git catches the signal and stops sending,
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-- which is much faster. (Also, git seems to forget
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-- to free memory when sending the file, so the
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-- less we let it send, the less memory it will waste.)
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if Git.BuildVersion.older "2.5"
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then L.length b `seq` return ()
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else liftIO $ hClose stdin
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-- Optimization for the case when the file is already
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-- annexed and is unmodified.
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case oldkey of
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Nothing -> doingest oldkey
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Just ko -> ifM (isUnmodifiedCheap ko (toRawFilePath file))
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( liftIO $ emitPointer ko
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, doingest oldkey
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)
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, liftIO $ L.hPut stdout b
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)
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doingest oldkey = do
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-- Look up the backend that was used for this file
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-- before, so that when git re-cleans a file its
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-- backend does not change.
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let oldbackend = maybe Nothing (maybeLookupBackendVariety . fromKey keyVariety) oldkey
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-- Can't restage associated files because git add
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-- runs this and has the index locked.
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let norestage = Restage False
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liftIO . emitPointer
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=<< postingest
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=<< (\ld -> ingest' oldbackend nullMeterUpdate ld Nothing norestage)
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=<< lockDown cfg file
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postingest (Just k, _) = do
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logStatus k InfoPresent
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return k
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postingest _ = error "could not add file to the annex"
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cfg = LockDownConfig
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{ lockingFile = False
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, hardlinkFileTmpDir = Nothing
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}
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-- git diff can run the clean filter on files outside the
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-- repository; can't annex those
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fileoutsiderepo = do
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repopath <- liftIO . absPath . fromRawFilePath
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=<< fromRepo Git.repoPath
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filepath <- liftIO $ absPath file
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return $ not $ dirContains repopath filepath
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-- If annex.largefiles is configured, matching files are added to the
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-- annex. But annex.gitaddtoannex can be set to false to disable that.
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--
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-- When annex.largefiles is not configured, files are normally not
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-- added to the annex, so will be added to git. But some heuristics
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-- are used to avoid bad behavior:
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--
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-- If the index already contains the file, preserve its annexed/not annexed
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-- state. This prevents accidental conversions.
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--
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-- Otherwise, when the file's inode is the same as one that was used for
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-- annexed content before, annex it. This handles cases such as renaming an
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-- unlocked annexed file followed by git add, which the user naturally
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-- expects to behave the same as git mv.
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shouldAnnex :: FilePath -> Maybe InodeCache -> Maybe Key -> Annex Bool
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shouldAnnex file mic moldkey = ifM (annexGitAddToAnnex <$> Annex.getGitConfig)
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( checkmatcher checkheuristics
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, checkheuristics
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)
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where
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checkmatcher d = do
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matcher <- largeFilesMatcher
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checkFileMatcher' matcher file d
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checkheuristics = case moldkey of
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Just _ -> return True
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Nothing -> checkknowninode
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checkknowninode = case mic of
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Nothing -> pure False
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Just ic -> Database.Keys.isInodeKnown ic =<< sentinalStatus
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emitPointer :: Key -> IO ()
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emitPointer = S.putStr . formatPointer
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-- Recover from a previous race between eg git mv and git-annex get.
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-- That could result in the file remaining a pointer file, while
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-- its content is present in the annex. Populate the pointer file.
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--
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-- This also handles the case where a copy of a pointer file is made,
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-- then git-annex gets the content, and later git add is run on
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-- the pointer copy. It will then be populated with the content.
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getMoveRaceRecovery :: Key -> RawFilePath -> Annex ()
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getMoveRaceRecovery k file = void $ tryNonAsync $
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whenM (inAnnex k) $ do
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obj <- calcRepo (gitAnnexLocation k)
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-- Cannot restage because git add is running and has
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-- the index locked.
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populatePointerFile (Restage False) k obj file >>= \case
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Nothing -> return ()
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Just ic -> Database.Keys.addInodeCaches k [ic]
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update :: CommandStart
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update = do
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updateSmudged (Restage True)
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stop
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updateSmudged :: Restage -> Annex ()
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updateSmudged restage = streamSmudged $ \k topf -> do
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f <- fromRepo (fromTopFilePath topf)
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whenM (inAnnex k) $ do
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obj <- calcRepo (gitAnnexLocation k)
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unlessM (isJust <$> populatePointerFile restage k obj f) $
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liftIO (isPointerFile f) >>= \case
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Just k' | k' == k -> toplevelWarning False $
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"unable to populate worktree file " ++ fromRawFilePath f
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_ -> noop
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-- If the mtime of a worktree file is too close to the mtime of the index
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-- file, git will distrust the index. Which results in it running
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-- the clean filter again later. While that's not normally a problem,
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--
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gitMtimeWorkaround :: Maybe InodeCache -> Annex ()
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gitMtimeWorkaround Nothing = noop
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gitMtimeWorkaround (Just ic) = liftIO $ do
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now <- getCurrentTime
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when (abs (diffUTCTime (posixSecondsToUTCTime (inodeCacheToMtime ic)) now) < 1) $ do
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threadDelaySeconds (Seconds 1)
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