git-annex/Annex/CopyFile.hs

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{- Copying files.
-
- Copyright 2011-2021 Joey Hess <id@joeyh.name>
-
- Licensed under the GNU AGPL version 3 or higher.
-}
{-# LANGUAGE CPP #-}
module Annex.CopyFile where
import Annex.Common
import Utility.Metered
import Utility.CopyFile
import Utility.FileMode
import Utility.Touch
import Types.Backend
import Control.Concurrent
import qualified Data.ByteString as S
import Data.Time.Clock.POSIX
-- To avoid the overhead of trying copy-on-write every time, it's tried
-- once and if it fails, is not tried again.
newtype CopyCoWTried = CopyCoWTried (MVar Bool)
newCopyCoWTried :: IO CopyCoWTried
newCopyCoWTried = CopyCoWTried <$> newEmptyMVar
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{- Copies a file is copy-on-write is supported. Otherwise, returns False. -}
tryCopyCoW :: CopyCoWTried -> FilePath -> FilePath -> MeterUpdate -> IO Bool
tryCopyCoW (CopyCoWTried copycowtried) src dest meterupdate =
-- If multiple threads reach this at the same time, they
-- will both try CoW, which is acceptable.
ifM (isEmptyMVar copycowtried)
( do
ok <- docopycow
void $ tryPutMVar copycowtried ok
return ok
, ifM (readMVar copycowtried)
( docopycow
, return False
)
)
where
docopycow = watchFileSize dest meterupdate $
copyCoW CopyTimeStamps src dest
data CopyMethod = CopiedCoW | Copied
{- Copies from src to dest, updating a meter. Preserves mode and mtime.
- Uses copy-on-write if it is supported. If the the destination already
- exists, an interruped copy will resume where it left off.
-
- The IncrementalVerifier is updated with the content of the file as it's
- being copied. But it is not finalized at the end.
-
- When copy-on-write is used, the IncrementalVerifier is not fed
- the content of the file, and verification using it will fail.
-
- Note that, when the destination file already exists, it's read both
- to start calculating the hash, and also to verify that its content is
- the same as the start of the source file. It's possible that the
- destination file was created from some other source file,
- (eg when isStableKey is false), and doing this avoids getting a
- corrupted file in such cases.
-}
fileCopier :: CopyCoWTried -> FilePath -> FilePath -> MeterUpdate -> Maybe IncrementalVerifier -> Annex CopyMethod
#ifdef mingw32_HOST_OS
fileCopier _ src dest meterupdate iv = docopy
#else
fileCopier copycowtried src dest meterupdate iv =
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ifM (liftIO $ tryCopyCoW copycowtried src dest meterupdate)
( do
-- Make sure the incremental verifier fails,
-- since we did not feed it.
liftIO $ maybe noop failIncremental iv
return CopiedCoW
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, docopy
)
#endif
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where
dest' = toRawFilePath dest
docopy = do
-- The file might have had the write bit removed,
-- so make sure we can write to it.
void $ liftIO $ tryIO $ allowWrite dest'
liftIO $ withBinaryFile dest ReadWriteMode $ \hdest ->
withBinaryFile src ReadMode $ \hsrc -> do
sofar <- compareexisting hdest hsrc zeroBytesProcessed
docopy' hdest hsrc sofar
-- Copy src mode and mtime.
mode <- liftIO $ fileMode <$> getFileStatus src
mtime <- liftIO $ utcTimeToPOSIXSeconds <$> getModificationTime src
liftIO $ setFileMode dest mode
liftIO $ touch dest' mtime False
return Copied
docopy' hdest hsrc sofar = do
s <- S.hGet hsrc defaultChunkSize
if s == S.empty
then return ()
else do
let sofar' = addBytesProcessed sofar (S.length s)
S.hPut hdest s
maybe noop (flip updateIncremental s) iv
meterupdate sofar'
docopy' hdest hsrc sofar'
-- Leaves hdest and hsrc seeked to wherever the two diverge,
-- so typically hdest will be seeked to end, and hsrc to the same
-- position.
compareexisting hdest hsrc sofar = do
s <- S.hGet hdest defaultChunkSize
if s == S.empty
then return sofar
else do
s' <- getnoshort (S.length s) hsrc
if s == s'
then do
maybe noop (flip updateIncremental s) iv
let sofar' = addBytesProcessed sofar (S.length s)
meterupdate sofar'
compareexisting hdest hsrc sofar'
else do
seekbefore hdest s
seekbefore hsrc s'
return sofar
seekbefore h s = hSeek h RelativeSeek (fromIntegral (-1*S.length s))
-- Like hGet, but never returns less than the requested number of
-- bytes, unless it reaches EOF.
getnoshort n h = do
s <- S.hGet h n
if S.length s == n || S.empty == s
then return s
else do
s' <- getnoshort (n - S.length s) h
return (s <> s')