40ecf58d4b
This does not change the overall license of the git-annex program, which was already AGPL due to a number of sources files being AGPL already. Legally speaking, I'm adding a new license under which these files are now available; I already released their current contents under the GPL license. Now they're dual licensed GPL and AGPL. However, I intend for all my future changes to these files to only be released under the AGPL license, and I won't be tracking the dual licensing status, so I'm simply changing the license statement to say it's AGPL. (In some cases, others wrote parts of the code of a file and released it under the GPL; but in all cases I have contributed a significant portion of the code in each file and it's that code that is getting the AGPL license; the GPL license of other contributors allows combining with AGPL code.)
292 lines
9.1 KiB
Haskell
292 lines
9.1 KiB
Haskell
{- git-annex hashing backends
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-
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- Copyright 2011-2019 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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{-# LANGUAGE CPP #-}
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{-# LANGUAGE OverloadedStrings #-}
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module Backend.Hash (
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backends,
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testKeyBackend,
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) where
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import Annex.Common
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import qualified Annex
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import Types.Key
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import Types.Backend
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import Types.KeySource
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import Utility.Hash
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import qualified Data.ByteString as S
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import qualified Data.ByteString.Char8 as S8
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import qualified Data.ByteString.Lazy as L
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import Data.Char
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data Hash
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= MD5Hash
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| SHA1Hash
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| SHA2Hash HashSize
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| SHA3Hash HashSize
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| SkeinHash HashSize
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#if MIN_VERSION_cryptonite(0,23,0)
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| Blake2bHash HashSize
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| Blake2sHash HashSize
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| Blake2spHash HashSize
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#endif
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{- Order is slightly significant; want SHA256 first, and more general
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- sizes earlier. -}
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hashes :: [Hash]
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hashes = concat
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[ map (SHA2Hash . HashSize) [256, 512, 224, 384]
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, map (SHA3Hash . HashSize) [256, 512, 224, 384]
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, map (SkeinHash . HashSize) [256, 512]
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#if MIN_VERSION_cryptonite(0,23,0)
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, map (Blake2bHash . HashSize) [256, 512, 160, 224, 384]
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, map (Blake2sHash . HashSize) [256, 160, 224]
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, map (Blake2spHash . HashSize) [256, 224]
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#endif
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, [SHA1Hash]
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, [MD5Hash]
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]
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{- The SHA256E backend is the default, so genBackendE comes first. -}
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backends :: [Backend]
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backends = concatMap (\h -> [genBackendE h, genBackend h]) hashes
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genBackend :: Hash -> Backend
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genBackend hash = Backend
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{ backendVariety = hashKeyVariety hash (HasExt False)
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, getKey = keyValue hash
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, verifyKeyContent = Just $ checkKeyChecksum hash
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, canUpgradeKey = Just needsUpgrade
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, fastMigrate = Just trivialMigrate
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, isStableKey = const True
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}
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genBackendE :: Hash -> Backend
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genBackendE hash = (genBackend hash)
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{ backendVariety = hashKeyVariety hash (HasExt True)
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, getKey = keyValueE hash
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}
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hashKeyVariety :: Hash -> HasExt -> KeyVariety
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hashKeyVariety MD5Hash he = MD5Key he
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hashKeyVariety SHA1Hash he = SHA1Key he
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hashKeyVariety (SHA2Hash size) he = SHA2Key size he
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hashKeyVariety (SHA3Hash size) he = SHA3Key size he
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hashKeyVariety (SkeinHash size) he = SKEINKey size he
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#if MIN_VERSION_cryptonite(0,23,0)
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hashKeyVariety (Blake2bHash size) he = Blake2bKey size he
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hashKeyVariety (Blake2sHash size) he = Blake2sKey size he
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hashKeyVariety (Blake2spHash size) he = Blake2spKey size he
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#endif
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{- A key is a hash of its contents. -}
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keyValue :: Hash -> KeySource -> Annex (Maybe Key)
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keyValue hash source = do
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let file = contentLocation source
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filesize <- liftIO $ getFileSize file
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s <- hashFile hash file
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return $ Just $ stubKey
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{ keyName = encodeBS s
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, keyVariety = hashKeyVariety hash (HasExt False)
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, keySize = Just filesize
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}
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{- Extension preserving keys. -}
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keyValueE :: Hash -> KeySource -> Annex (Maybe Key)
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keyValueE hash source = keyValue hash source >>= maybe (return Nothing) addE
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where
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addE k = do
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maxlen <- annexMaxExtensionLength <$> Annex.getGitConfig
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let ext = selectExtension maxlen (keyFilename source)
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return $ Just $ k
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{ keyName = keyName k <> encodeBS ext
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, keyVariety = hashKeyVariety hash (HasExt True)
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}
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selectExtension :: Maybe Int -> FilePath -> String
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selectExtension maxlen f
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| null es = ""
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| otherwise = intercalate "." ("":es)
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where
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es = filter (not . null) $ reverse $
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take 2 $ filter (all validInExtension) $
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takeWhile shortenough $
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reverse $ splitc '.' $ takeExtensions f
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shortenough e = length e <= fromMaybe maxExtensionLen maxlen
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maxExtensionLen :: Int
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maxExtensionLen = 4 -- long enough for "jpeg"
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{- A key's checksum is checked during fsck when it's content is present
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- except for in fast mode. -}
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checkKeyChecksum :: Hash -> Key -> FilePath -> Annex Bool
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checkKeyChecksum hash key file = catchIOErrorType HardwareFault hwfault $ do
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fast <- Annex.getState Annex.fast
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exists <- liftIO $ doesFileExist file
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case (exists, fast) of
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(True, False) -> do
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showAction "checksum"
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check <$> hashFile hash file
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_ -> return True
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where
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expected = decodeBS (keyHash key)
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check s
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| s == expected = True
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{- A bug caused checksums to be prefixed with \ in some
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- cases; still accept these as legal now that the bug has been
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- fixed. -}
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| '\\' : s == expected = True
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| otherwise = False
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hwfault e = do
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warning $ "hardware fault: " ++ show e
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return False
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keyHash :: Key -> S.ByteString
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keyHash = fst . splitKeyNameExtension
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validInExtension :: Char -> Bool
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validInExtension c
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| isAlphaNum c = True
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| c == '.' = True
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| otherwise = False
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{- Upgrade keys that have the \ prefix on their hash due to a bug, or
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- that contain non-alphanumeric characters in their extension.
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-
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- Also, for a while migrate from eg SHA256E to SHA256 resulted in a SHA256
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- key that contained an extension inside its keyName. Upgrade those
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- keys, removing the extension.
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-}
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needsUpgrade :: Key -> Bool
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needsUpgrade key = or
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[ "\\" `S8.isPrefixOf` keyHash key
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, any (not . validInExtension) (decodeBS $ snd $ splitKeyNameExtension key)
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, not (hasExt (keyVariety key)) && keyHash key /= keyName key
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]
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trivialMigrate :: Key -> Backend -> AssociatedFile -> Annex (Maybe Key)
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trivialMigrate oldkey newbackend afile = trivialMigrate' oldkey newbackend afile
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<$> (annexMaxExtensionLength <$> Annex.getGitConfig)
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trivialMigrate' :: Key -> Backend -> AssociatedFile -> Maybe Int -> Maybe Key
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trivialMigrate' oldkey newbackend afile maxextlen
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{- Fast migration from hashE to hash backend. -}
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| migratable && hasExt oldvariety = Just $ oldkey
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{ keyName = keyHash oldkey
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, keyVariety = newvariety
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}
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{- Fast migration from hash to hashE backend. -}
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| migratable && hasExt newvariety = case afile of
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AssociatedFile Nothing -> Nothing
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AssociatedFile (Just file) -> Just $ oldkey
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{ keyName = keyHash oldkey
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<> encodeBS (selectExtension maxextlen file)
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, keyVariety = newvariety
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}
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{- Upgrade to fix bad previous migration that created a
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- non-extension preserving key, with an extension
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- in its keyName. -}
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| newvariety == oldvariety && not (hasExt oldvariety) &&
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keyHash oldkey /= keyName oldkey = Just $ oldkey
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{ keyName = keyHash oldkey
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}
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| otherwise = Nothing
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where
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migratable = oldvariety /= newvariety
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&& sameExceptExt oldvariety newvariety
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oldvariety = keyVariety oldkey
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newvariety = backendVariety newbackend
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hashFile :: Hash -> FilePath -> Annex String
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hashFile hash file = liftIO $ do
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h <- hasher <$> L.readFile file
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-- Force full evaluation so file is read and closed.
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return (length h `seq` h)
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where
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hasher = case hash of
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MD5Hash -> md5Hasher
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SHA1Hash -> sha1Hasher
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SHA2Hash hashsize -> sha2Hasher hashsize
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SHA3Hash hashsize -> sha3Hasher hashsize
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SkeinHash hashsize -> skeinHasher hashsize
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#if MIN_VERSION_cryptonite(0,23,0)
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Blake2bHash hashsize -> blake2bHasher hashsize
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Blake2sHash hashsize -> blake2sHasher hashsize
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Blake2spHash hashsize -> blake2spHasher hashsize
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#endif
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sha2Hasher :: HashSize -> (L.ByteString -> String)
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sha2Hasher (HashSize hashsize)
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| hashsize == 256 = use sha2_256
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| hashsize == 224 = use sha2_224
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| hashsize == 384 = use sha2_384
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| hashsize == 512 = use sha2_512
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| otherwise = error $ "unsupported SHA size " ++ show hashsize
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where
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use hasher = show . hasher
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sha3Hasher :: HashSize -> (L.ByteString -> String)
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sha3Hasher (HashSize hashsize)
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| hashsize == 256 = show . sha3_256
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| hashsize == 224 = show . sha3_224
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| hashsize == 384 = show . sha3_384
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| hashsize == 512 = show . sha3_512
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| otherwise = error $ "unsupported SHA3 size " ++ show hashsize
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skeinHasher :: HashSize -> (L.ByteString -> String)
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skeinHasher (HashSize hashsize)
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| hashsize == 256 = show . skein256
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| hashsize == 512 = show . skein512
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| otherwise = error $ "unsupported SKEIN size " ++ show hashsize
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#if MIN_VERSION_cryptonite(0,23,0)
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blake2bHasher :: HashSize -> (L.ByteString -> String)
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blake2bHasher (HashSize hashsize)
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| hashsize == 256 = show . blake2b_256
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| hashsize == 512 = show . blake2b_512
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| hashsize == 160 = show . blake2b_160
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| hashsize == 224 = show . blake2b_224
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| hashsize == 384 = show . blake2b_384
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| otherwise = error $ "unsupported BLAKE2B size " ++ show hashsize
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blake2sHasher :: HashSize -> (L.ByteString -> String)
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blake2sHasher (HashSize hashsize)
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| hashsize == 256 = show . blake2s_256
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| hashsize == 160 = show . blake2s_160
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| hashsize == 224 = show . blake2s_224
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| otherwise = error $ "unsupported BLAKE2S size " ++ show hashsize
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blake2spHasher :: HashSize -> (L.ByteString -> String)
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blake2spHasher (HashSize hashsize)
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| hashsize == 256 = show . blake2sp_256
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| hashsize == 224 = show . blake2sp_224
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| otherwise = error $ "unsupported BLAKE2SP size " ++ show hashsize
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#endif
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sha1Hasher :: L.ByteString -> String
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sha1Hasher = show . sha1
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md5Hasher :: L.ByteString -> String
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md5Hasher = show . md5
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{- A varient of the SHA256E backend, for testing that needs special keys
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- that cannot collide with legitimate keys in the repository.
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-
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- This is accomplished by appending a special extension to the key,
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- that is not one that selectExtension would select (due to being too
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- long).
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-}
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testKeyBackend :: Backend
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testKeyBackend =
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let b = genBackendE (SHA2Hash (HashSize 256))
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in b { getKey = (fmap addE) <$$> getKey b }
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where
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addE k = k { keyName = keyName k <> longext }
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longext = ".this-is-a-test-key"
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