cee12f6a2f
sync, assist, import: Allow -m option to be specified multiple times, to provide additional paragraphs for the commit message. The option parser didn't allow multiple -m before, so there is no risk of behavior change breaking something that was for some reason using multiple -m already. Pass through to git commands, so that the method used to assemble the paragrahs is whatever git does. Which might conceivably change in the future. Note that git commit-tree has supported -m since git 1.7.7. commitTree was probably not using it since it predates that version. Since the configure script prevents building git-annex with git older than 2.1, there is no risk that it's not supported now. Sponsored-by: Nicholas Golder-Manning on Patreon
1105 lines
39 KiB
Haskell
1105 lines
39 KiB
Haskell
{- git-annex import from remotes
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-
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- Copyright 2019-2024 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 OverloadedStrings #-}
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module Annex.Import (
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ImportTreeConfig(..),
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ImportCommitConfig(..),
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buildImportCommit,
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buildImportTrees,
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recordImportTree,
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canImportKeys,
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ImportResult(..),
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Imported,
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importChanges,
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importKeys,
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makeImportMatcher,
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getImportableContents,
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) where
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import Annex.Common
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import Types.Import
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import qualified Types.Remote as Remote
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import Git.Types
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import Git.Tree
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import Git.Sha
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import Git.FilePath
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import Git.History
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import qualified Git.DiffTree
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import qualified Git.Ref
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import qualified Git.Branch
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import qualified Annex
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import Annex.Link
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import Annex.LockFile
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import Annex.Content
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import Annex.Export
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import Annex.RemoteTrackingBranch
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import Annex.HashObject
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import Annex.Transfer
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import Annex.CheckIgnore
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import Annex.CatFile
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import Annex.VectorClock
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import Command
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import Backend
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import Types.Key
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import Types.KeySource
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import Messages.Progress
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import Utility.DataUnits
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import Utility.Metered
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import Utility.Hash (sha1s)
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import Logs.Import
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import Logs.Export
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import Logs.Location
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import Logs.PreferredContent
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import Types.FileMatcher
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import Annex.FileMatcher
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import qualified Utility.Matcher
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import qualified Database.Export as Export
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import qualified Database.ContentIdentifier as CIDDb
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import qualified Logs.ContentIdentifier as CIDLog
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import Backend.Utilities
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import Control.Concurrent.STM
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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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import qualified System.FilePath.Posix.ByteString as Posix
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import qualified System.FilePath.ByteString as P
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import qualified Data.ByteArray.Encoding as BA
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{- Configures how to build an import tree. -}
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data ImportTreeConfig
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= ImportTree
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-- ^ Import the tree as-is from the remote.
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| ImportSubTree TopFilePath Sha
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-- ^ Import a tree from the remote and graft it into a subdirectory
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-- of the existing tree whose Sha is provided, replacing anything
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-- that was there before.
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deriving (Show)
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{- Configures how to build an import commit. -}
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data ImportCommitConfig = ImportCommitConfig
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{ importCommitTracking :: Maybe Sha
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-- ^ Current commit on the remote tracking branch.
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, importCommitMode :: Git.Branch.CommitMode
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, importCommitMessages :: [String]
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}
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{- Buils a commit for an import from a special remote.
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-
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- When there are no changes to make (importCommitTracking
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- already matches what was imported), returns Nothing.
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-
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- After importing from a remote, exporting the same thing back to the
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- remote should be a no-op. So, the export log and database are
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- updated to reflect the imported tree.
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-
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- This does not download any content from a remote. But since it needs the
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- Key of imported files to be known, its caller will have to first download
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- new files in order to generate keys for them.
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-}
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buildImportCommit
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:: Remote
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-> ImportTreeConfig
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-> ImportCommitConfig
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-> Imported
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-> Annex (Maybe Ref)
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buildImportCommit remote importtreeconfig importcommitconfig imported =
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case importCommitTracking importcommitconfig of
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Nothing -> go Nothing
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Just trackingcommit -> inRepo (Git.Ref.tree trackingcommit) >>= \case
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Nothing -> go Nothing
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Just _ -> go (Just trackingcommit)
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where
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go trackingcommit = do
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(importedtree, updatestate) <- recordImportTree remote importtreeconfig imported
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buildImportCommit' remote importcommitconfig trackingcommit importedtree >>= \case
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Just finalcommit -> do
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updatestate
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return (Just finalcommit)
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Nothing -> return Nothing
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{- Builds a tree for an import from a special remote.
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-
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- Also returns an action that can be used to update
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- all the other state to record the import.
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-}
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recordImportTree
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:: Remote
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-> ImportTreeConfig
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-> Imported
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-> Annex (History Sha, Annex ())
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recordImportTree remote importtreeconfig imported = do
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importedtree@(History finaltree _) <- buildImportTrees basetree subdir imported
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return (importedtree, updatestate finaltree)
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where
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basetree = case importtreeconfig of
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ImportTree -> emptyTree
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ImportSubTree _ sha -> sha
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subdir = case importtreeconfig of
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ImportTree -> Nothing
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ImportSubTree dir _ -> Just dir
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updatestate finaltree = do
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importedtree <- case subdir of
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Nothing -> pure finaltree
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Just dir ->
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let subtreeref = Ref $
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fromRef' finaltree
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<> ":"
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<> getTopFilePath dir
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in fromMaybe emptyTree
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<$> inRepo (Git.Ref.tree subtreeref)
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updateexportdb importedtree
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oldexport <- updateexportlog importedtree
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updatelocationlog oldexport importedtree
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updateexportdb importedtree = do
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db <- Export.openDb (Remote.uuid remote)
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Export.writeLockDbWhile db $ do
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prevtree <- liftIO $ fromMaybe emptyTree
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<$> Export.getExportTreeCurrent db
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when (importedtree /= prevtree) $ do
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Export.updateExportDb db prevtree importedtree
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liftIO $ Export.recordExportTreeCurrent db importedtree
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Export.closeDb db
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updateexportlog importedtree = do
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oldexport <- getExport (Remote.uuid remote)
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recordExport (Remote.uuid remote) importedtree $ ExportChange
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{ oldTreeish = exportedTreeishes oldexport
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, newTreeish = importedtree
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}
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return oldexport
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-- downloadImport takes care of updating the location log
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-- for the local repo when keys are downloaded, and also updates
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-- the location log for the remote for keys that are present in it.
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-- That leaves updating the location log for the remote for keys
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-- that have had the last copy of their content removed from it.
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--
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-- This must run after the export database has been updated
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-- and flushed to disk, so it can query it.
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updatelocationlog oldexport finaltree = do
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let stillpresent db k = liftIO $ not . null
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<$> Export.getExportedLocation db k
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let updater db moldkey _newkey _ = case moldkey of
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Just oldkey | not (isGitShaKey oldkey) ->
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unlessM (stillpresent db oldkey) $
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logChange oldkey (Remote.uuid remote) InfoMissing
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_ -> noop
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-- When the remote is versioned, it still contains keys
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-- that are not present in the new tree.
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unless (Remote.versionedExport (Remote.exportActions remote)) $ do
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db <- Export.openDb (Remote.uuid remote)
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forM_ (exportedTreeishes oldexport) $ \oldtree ->
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Export.runExportDiffUpdater updater db oldtree finaltree
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Export.closeDb db
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buildImportCommit' :: Remote -> ImportCommitConfig -> Maybe Sha -> History Sha -> Annex (Maybe Sha)
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buildImportCommit' remote importcommitconfig mtrackingcommit imported@(History ti _) =
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case mtrackingcommit of
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Nothing -> Just <$> mkcommitsunconnected imported
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Just trackingcommit -> do
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-- Get history of tracking branch to at most
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-- one more level deep than what was imported,
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-- so we'll have enough history to compare,
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-- but not spend too much time getting it.
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let maxdepth = succ importeddepth
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inRepo (getHistoryToDepth maxdepth trackingcommit)
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>>= go trackingcommit
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where
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go _ Nothing = Just <$> mkcommitsunconnected imported
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go trackingcommit (Just h)
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-- If the tracking branch head is a merge commit
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-- and one side of the merge matches the history,
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-- nothing new needs to be committed.
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| t == ti && any sametodepth (S.toList s) = return Nothing
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-- If the tracking branch matches the history,
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-- nothing new needs to be committed.
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-- (This is unlikely to happen.)
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| sametodepth h' = return Nothing
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-- If the imported tree is unchanged,
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-- nothing new needs to be committed.
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| otherwise = getLastImportedTree remote >>= \case
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Just (LastImportedTree lasttree)
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| lasttree == ti -> return Nothing
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_ -> gencommit trackingcommit h
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where
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h'@(History t s) = mapHistory historyCommitTree h
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gencommit trackingcommit h = do
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importedcommit <- case getRemoteTrackingBranchImportHistory h of
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Nothing -> mkcommitsunconnected imported
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Just oldimported@(History oldhc _)
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| importeddepth == 1 ->
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mkcommitconnected imported oldimported
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| otherwise -> do
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let oldimportedtrees = mapHistory historyCommitTree oldimported
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mknewcommits oldhc oldimportedtrees imported
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ti' <- addBackExportExcluded remote ti
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Just <$> makeRemoteTrackingBranchMergeCommit'
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trackingcommit importedcommit ti'
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importeddepth = historyDepth imported
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sametodepth b = imported == truncateHistoryToDepth importeddepth b
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mkcommit parents tree = inRepo $ Git.Branch.commitTree
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(importCommitMode importcommitconfig)
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(importCommitMessages importcommitconfig)
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parents
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tree
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-- Start a new history of import commits, not connected to any
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-- prior import commits.
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mkcommitsunconnected (History importedtree hs) = do
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parents <- mapM mkcommitsunconnected (S.toList hs)
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mkcommit parents importedtree
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-- Commit the new history connected with the old history.
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-- Used when the import is not versioned, so the history depth is 1.
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mkcommitconnected (History importedtree _) (History oldhc _) = do
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let parents = [historyCommit oldhc]
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mkcommit parents importedtree
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-- Reuse the commits from the old imported History when possible.
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mknewcommits oldhc old new@(History importedtree hs)
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| old == new = return $ historyCommit oldhc
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| otherwise = do
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parents <- mapM (mknewcommits oldhc old) (S.toList hs)
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mkcommit parents importedtree
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{- Builds a history of git trees for an import.
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-
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- When a subdir is provided, the imported tree is grafted into
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- the basetree at that location, replacing any object that was there.
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-}
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buildImportTrees
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:: Ref
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-> Maybe TopFilePath
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-> Imported
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-> Annex (History Sha)
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buildImportTrees basetree msubdir (ImportedFull imported) =
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buildImportTreesGeneric convertImportTree basetree msubdir imported
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buildImportTrees basetree msubdir (ImportedDiff (LastImportedTree oldtree) imported) = do
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importtree <- if null (importableContents imported)
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then pure oldtree
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else applydiff
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repo <- Annex.gitRepo
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t <- withMkTreeHandle repo $
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graftImportTree basetree msubdir importtree
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-- Diffing is not currently implemented when the history is not empty.
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return (History t mempty)
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where
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applydiff = do
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let (removed, new) = partition isremoved
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(importableContents imported)
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newtreeitems <- catMaybes <$> mapM mktreeitem new
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let removedfiles = map (mkloc . fst) removed
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inRepo $ adjustTree
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(pure . Just)
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-- ^ keep files that are not added/removed the same
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newtreeitems
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(\_oldti newti -> newti)
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-- ^ prefer newly added version of file
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removedfiles
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oldtree
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mktreeitem (loc, DiffChanged v) =
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Just <$> mkImportTreeItem msubdir loc v
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mktreeitem (_, DiffRemoved) =
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pure Nothing
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mkloc = asTopFilePath . fromImportLocation
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isremoved (_, v) = v == DiffRemoved
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convertImportTree :: Maybe TopFilePath -> [(ImportLocation, Either Sha Key)] -> Annex Tree
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convertImportTree msubdir ls =
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treeItemsToTree <$> mapM (uncurry $ mkImportTreeItem msubdir) ls
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mkImportTreeItem :: Maybe TopFilePath -> ImportLocation -> Either Sha Key -> Annex TreeItem
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mkImportTreeItem msubdir loc v = case v of
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Right k -> do
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relf <- fromRepo $ fromTopFilePath topf
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symlink <- calcRepo $ gitAnnexLink relf k
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linksha <- hashSymlink symlink
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return $ TreeItem treepath (fromTreeItemType TreeSymlink) linksha
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Left sha ->
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return $ TreeItem treepath (fromTreeItemType TreeFile) sha
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where
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lf = fromImportLocation loc
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treepath = asTopFilePath lf
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topf = asTopFilePath $
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maybe lf (\sd -> getTopFilePath sd P.</> lf) msubdir
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{- Builds a history of git trees using ContentIdentifiers.
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-
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- These are not the final trees that are generated by the import, which
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- use Keys. The purpose of these trees is to allow quickly determining
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- which files in the import have changed, and which are unchanged, to
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- avoid needing to look up the Keys for unchanged ContentIdentifiers.
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- When the import has a large number of files, that can be slow.
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-}
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buildContentIdentifierTree
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:: ImportableContentsChunkable Annex (ContentIdentifier, ByteSize)
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-> Annex (History Sha, M.Map Sha (ContentIdentifier, ByteSize))
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buildContentIdentifierTree importable = do
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mv <- liftIO $ newTVarIO M.empty
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r <- buildImportTreesGeneric (convertContentIdentifierTree mv) emptyTree Nothing importable
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m <- liftIO $ atomically $ readTVar mv
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return (r, m)
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{- For speed, and to avoid bloating the repository, the ContentIdentifiers
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- are not actually checked into git, instead a sha1 hash is calculated
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- internally.
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-}
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convertContentIdentifierTree
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:: TVar (M.Map Sha (ContentIdentifier, ByteSize))
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-> Maybe TopFilePath
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-> [(ImportLocation, (ContentIdentifier, ByteSize))]
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-> Annex Tree
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convertContentIdentifierTree mv _ ls = do
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let (tis, ml) = unzip (map mktreeitem ls)
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liftIO $ atomically $ modifyTVar' mv $
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M.union (M.fromList ml)
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return (treeItemsToTree tis)
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where
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mktreeitem (loc, v@((ContentIdentifier cid), _sz)) =
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(TreeItem p mode sha1, (sha1, v))
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where
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p = asTopFilePath (fromImportLocation loc)
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mode = fromTreeItemType TreeFile
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-- Note that this hardcodes sha1, even if git has started
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-- defaulting to some other checksum method. That should be
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-- ok, hopefully. This checksum never needs to be verified
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-- by git, which is why this does not bother to prefix the
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-- cid with its length, like git would.
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sha1 = Ref $ BA.convertToBase BA.Base16 $ sha1s cid
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buildImportTreesGeneric
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:: (Maybe TopFilePath -> [(ImportLocation, v)] -> Annex Tree)
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-> Ref
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-> Maybe TopFilePath
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-> ImportableContentsChunkable Annex v
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-> Annex (History Sha)
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buildImportTreesGeneric converttree basetree msubdir (ImportableContentsComplete importable) = do
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repo <- Annex.gitRepo
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withMkTreeHandle repo $ buildImportTreesGeneric' converttree basetree msubdir importable
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buildImportTreesGeneric converttree basetree msubdir importable@(ImportableContentsChunked {}) = do
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repo <- Annex.gitRepo
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withMkTreeHandle repo $ \hdl ->
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History
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<$> go hdl
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<*> buildImportTreesHistory converttree basetree msubdir
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(importableHistoryComplete importable) hdl
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where
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go hdl = do
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tree <- gochunks [] (importableContentsChunk importable) hdl
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importtree <- liftIO $ recordTree' hdl tree
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graftImportTree basetree msubdir importtree hdl
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gochunks l c hdl = do
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let subdir = importChunkSubDir $ importableContentsSubDir c
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-- Full directory prefix where the sub tree is located.
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let fullprefix = asTopFilePath $ case msubdir of
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Nothing -> subdir
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Just d -> getTopFilePath d Posix.</> subdir
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Tree ts <- converttree (Just fullprefix) $
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map (\(p, i) -> (mkImportLocation p, i))
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(importableContentsSubTree c)
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-- Record this subtree before getting next chunk, this
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-- avoids buffering all the chunks into memory.
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tc <- liftIO $ recordSubTree hdl $
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NewSubTree (asTopFilePath subdir) ts
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importableContentsNextChunk c >>= \case
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Nothing -> return (Tree (tc:l))
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Just c' -> gochunks (tc:l) c' hdl
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buildImportTreesGeneric'
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:: (Maybe TopFilePath -> [(ImportLocation, v)] -> Annex Tree)
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-> Ref
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-> Maybe TopFilePath
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-> ImportableContents v
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-> MkTreeHandle
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-> Annex (History Sha)
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buildImportTreesGeneric' converttree basetree msubdir importable hdl = History
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<$> buildImportTree converttree basetree msubdir (importableContents importable) hdl
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<*> buildImportTreesHistory converttree basetree msubdir (importableHistory importable) hdl
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buildImportTree
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:: (Maybe TopFilePath -> [(ImportLocation, v)] -> Annex Tree)
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-> Ref
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-> Maybe TopFilePath
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-> [(ImportLocation, v)]
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-> MkTreeHandle
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-> Annex Sha
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buildImportTree converttree basetree msubdir ls hdl = do
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importtree <- liftIO . recordTree' hdl =<< converttree msubdir ls
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graftImportTree basetree msubdir importtree hdl
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graftImportTree
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:: Ref
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-> Maybe TopFilePath
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-> Sha
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-> MkTreeHandle
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-> Annex Sha
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graftImportTree basetree msubdir tree hdl = case msubdir of
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Nothing -> return tree
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Just subdir -> inRepo $ \repo ->
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graftTree' tree subdir basetree repo hdl
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|
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buildImportTreesHistory
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:: (Maybe TopFilePath -> [(ImportLocation, v)] -> Annex Tree)
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-> Ref
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-> Maybe TopFilePath
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-> [ImportableContents v]
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-> MkTreeHandle
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-> Annex (S.Set (History Sha))
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buildImportTreesHistory converttree basetree msubdir history hdl = S.fromList
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<$> mapM (\ic -> buildImportTreesGeneric' converttree basetree msubdir ic hdl) history
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|
|
canImportKeys :: Remote -> Bool -> Bool
|
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canImportKeys remote importcontent =
|
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importcontent || isJust (Remote.importKey ia)
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where
|
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ia = Remote.importActions remote
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|
|
-- Result of an import. ImportUnfinished indicates that some file failed to
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-- be imported. Running again should resume where it left off.
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data ImportResult t
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= ImportFinished t
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| ImportUnfinished
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|
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data Diffed t
|
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= DiffChanged t
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| DiffRemoved
|
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deriving (Eq)
|
|
|
|
data Imported
|
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= ImportedFull (ImportableContentsChunkable Annex (Either Sha Key))
|
|
| ImportedDiff LastImportedTree (ImportableContents (Diffed (Either Sha Key)))
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|
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newtype LastImportedTree = LastImportedTree Sha
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|
|
|
{- Diffs between the previous and current ContentIdentifier trees, and
|
|
- runs importKeys on only the changed files.
|
|
-
|
|
- This will download the same content as if importKeys were run on all
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- files, but this speeds it up significantly when there are a lot of files
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- and only a few have changed. importKeys has to look up each
|
|
- ContentIdentifier to see if a Key is known for it. This avoids doing
|
|
- that lookup on files that have not changed.
|
|
-
|
|
- Diffing is not currently implemented when there is a History.
|
|
-}
|
|
importChanges
|
|
:: Remote
|
|
-> ImportTreeConfig
|
|
-> Bool
|
|
-> Bool
|
|
-> ImportableContentsChunkable Annex (ContentIdentifier, ByteSize)
|
|
-> Annex (ImportResult Imported)
|
|
importChanges remote importtreeconfig importcontent thirdpartypopulated importablecontents = do
|
|
((History currcidtree currhistory), cidtreemap) <- buildContentIdentifierTree importablecontents
|
|
-- diffimport below does not handle history, so when there is
|
|
-- history, do a full import.
|
|
if not (S.null currhistory)
|
|
then fullimport currcidtree
|
|
else do
|
|
getContentIdentifierTree (Remote.uuid remote) >>= \case
|
|
Nothing -> fullimport currcidtree
|
|
Just prevcidtree -> candiffimport prevcidtree >>= \case
|
|
Nothing -> fullimport currcidtree
|
|
Just lastimportedtree -> diffimport cidtreemap prevcidtree currcidtree lastimportedtree
|
|
where
|
|
remember = recordContentIdentifierTree (Remote.uuid remote)
|
|
|
|
-- In order to use a diff, the previous ContentIdentifier tree must
|
|
-- not have been garbage collected. Which can happen since there
|
|
-- are no git refs to it.
|
|
--
|
|
-- Also, a tree must have been imported before, and that tree must
|
|
-- also have not been garbage collected (which is less likely to
|
|
-- happen due to the remote tracking branch).
|
|
candiffimport prevcidtree =
|
|
catObjectMetaData prevcidtree >>= \case
|
|
Nothing -> return Nothing
|
|
Just _ -> getLastImportedTree remote >>= \case
|
|
Nothing -> return Nothing
|
|
Just lastimported@(LastImportedTree t) ->
|
|
ifM (isJust <$> catObjectMetaData t)
|
|
( return (Just lastimported)
|
|
, return Nothing
|
|
)
|
|
|
|
fullimport currcidtree =
|
|
importKeys remote importtreeconfig importcontent thirdpartypopulated importablecontents >>= \case
|
|
ImportUnfinished -> return ImportUnfinished
|
|
ImportFinished r -> do
|
|
remember currcidtree
|
|
return $ ImportFinished $ ImportedFull r
|
|
|
|
diffimport cidtreemap prevcidtree currcidtree lastimportedtree = do
|
|
(diff, cleanup) <- inRepo $ Git.DiffTree.diffTreeRecursive
|
|
prevcidtree
|
|
currcidtree
|
|
let (removed, changed) = partition isremoval diff
|
|
let mkicchanged ti = do
|
|
v <- M.lookup (Git.DiffTree.dstsha ti) cidtreemap
|
|
return (mkloc ti, v)
|
|
let ic = ImportableContentsComplete $ ImportableContents
|
|
{ importableContents = mapMaybe mkicchanged changed
|
|
, importableHistory = []
|
|
}
|
|
importKeys remote importtreeconfig importcontent thirdpartypopulated ic >>= \case
|
|
ImportUnfinished -> do
|
|
void $ liftIO cleanup
|
|
return ImportUnfinished
|
|
ImportFinished (ImportableContentsComplete ic') ->
|
|
liftIO cleanup >>= \case
|
|
False -> return ImportUnfinished
|
|
True -> do
|
|
remember currcidtree
|
|
return $ ImportFinished $
|
|
ImportedDiff lastimportedtree
|
|
(mkdiff ic' removed)
|
|
-- importKeys is not passed ImportableContentsChunked
|
|
-- above, so it cannot return it
|
|
ImportFinished (ImportableContentsChunked {}) -> error "internal"
|
|
|
|
isremoval ti = Git.DiffTree.dstsha ti `elem` nullShas
|
|
|
|
mkloc = mkImportLocation . getTopFilePath . Git.DiffTree.file
|
|
|
|
mkdiff ic removed = ImportableContents
|
|
{ importableContents = diffremoved ++ diffchanged
|
|
, importableHistory = []
|
|
}
|
|
where
|
|
diffchanged = map
|
|
(\(loc, v) -> (loc, DiffChanged v))
|
|
(importableContents ic)
|
|
diffremoved = map
|
|
(\ti -> (mkloc ti, DiffRemoved))
|
|
removed
|
|
|
|
{- Gets the tree that was last imported from the remote
|
|
- (or exported to it if an export happened after the last import).
|
|
-}
|
|
getLastImportedTree :: Remote -> Annex (Maybe LastImportedTree)
|
|
getLastImportedTree remote = do
|
|
db <- Export.openDb (Remote.uuid remote)
|
|
mtree <- liftIO $ Export.getExportTreeCurrent db
|
|
Export.closeDb db
|
|
return (LastImportedTree <$> mtree)
|
|
|
|
{- Downloads all new ContentIdentifiers, or when importcontent is False,
|
|
- generates Keys without downloading.
|
|
-
|
|
- Generates either a Key or a git Sha, depending on annex.largefiles.
|
|
- But when importcontent is False, it cannot match on annex.largefiles
|
|
- (or generate a git Sha), so always generates Keys.
|
|
-
|
|
- Supports concurrency when enabled.
|
|
-
|
|
- Note that, when a ContentIdentifier has been imported before,
|
|
- generates the same thing that was imported before, so annex.largefiles
|
|
- is not reapplied.
|
|
-}
|
|
importKeys
|
|
:: Remote
|
|
-> ImportTreeConfig
|
|
-> Bool
|
|
-> Bool
|
|
-> ImportableContentsChunkable Annex (ContentIdentifier, ByteSize)
|
|
-> Annex (ImportResult (ImportableContentsChunkable Annex (Either Sha Key)))
|
|
importKeys remote importtreeconfig importcontent thirdpartypopulated importablecontents = do
|
|
unless (canImportKeys remote importcontent) $
|
|
giveup "This remote does not support importing without downloading content."
|
|
-- This map is used to remember content identifiers that
|
|
-- were just imported, before they have necessarily been
|
|
-- stored in the database. This way, if the same content
|
|
-- identifier appears multiple times in the
|
|
-- importablecontents (eg when it has a history),
|
|
-- they will only be imported once.
|
|
cidmap <- liftIO $ newTVarIO M.empty
|
|
-- When concurrency is enabled, this set is needed to
|
|
-- avoid two threads both importing the same content identifier.
|
|
importing <- liftIO $ newTVarIO S.empty
|
|
withciddb $ \db -> do
|
|
db' <- CIDDb.needsUpdateFromLog db
|
|
>>= maybe (pure db) (CIDDb.updateFromLog db)
|
|
(prepclock (run cidmap importing db'))
|
|
where
|
|
-- When not importing content, reuse the same vector
|
|
-- clock for all state that's recorded. This can save
|
|
-- a little bit of disk space. Individual file downloads
|
|
-- while downloading take too long for this optimisation
|
|
-- to be safe to do.
|
|
prepclock a
|
|
| importcontent = a
|
|
| otherwise = reuseVectorClockWhile a
|
|
|
|
withciddb a = do
|
|
cidlck <- calcRepo' gitAnnexContentIdentifierLock
|
|
withExclusiveLock cidlck $
|
|
bracket CIDDb.openDb CIDDb.closeDb a
|
|
|
|
run cidmap importing db = do
|
|
largematcher <- largeFilesMatcher
|
|
case importablecontents of
|
|
ImportableContentsComplete ic ->
|
|
go False largematcher cidmap importing db ic >>= return . \case
|
|
Nothing -> ImportUnfinished
|
|
Just v -> ImportFinished $ ImportableContentsComplete v
|
|
ImportableContentsChunked {} -> do
|
|
c <- gochunked db (importableContentsChunk importablecontents)
|
|
gohistory largematcher cidmap importing db (importableHistoryComplete importablecontents) >>= return . \case
|
|
Nothing -> ImportUnfinished
|
|
Just h -> ImportFinished $ ImportableContentsChunked
|
|
{ importableContentsChunk = c
|
|
, importableHistoryComplete = h
|
|
}
|
|
|
|
go oldversion largematcher cidmap importing db (ImportableContents l h) = do
|
|
jobs <- forM l $ \i ->
|
|
if thirdpartypopulated
|
|
then Left <$> thirdpartypopulatedimport db i
|
|
else startimport cidmap importing db i oldversion largematcher
|
|
l' <- liftIO $ forM jobs $
|
|
either pure (atomically . takeTMVar)
|
|
if any isNothing l'
|
|
then return Nothing
|
|
else gohistory largematcher cidmap importing db h >>= return . \case
|
|
Nothing -> Nothing
|
|
Just h' -> Just $ ImportableContents (catMaybes l') h'
|
|
|
|
gohistory largematcher cidmap importing db h = do
|
|
h' <- mapM (go True largematcher cidmap importing db) h
|
|
if any isNothing h'
|
|
then return Nothing
|
|
else return $ Just $ catMaybes h'
|
|
|
|
gochunked db c
|
|
-- Downloading cannot be done when chunked, since only
|
|
-- the first chunk is processed before returning.
|
|
| importcontent = giveup "importKeys does not support downloading chunked import"
|
|
-- Chunked import is currently only used by thirdpartypopulated
|
|
-- remotes.
|
|
| not thirdpartypopulated = giveup "importKeys does not support chunked import when not thirdpartypopulated"
|
|
| otherwise = do
|
|
l <- forM (importableContentsSubTree c) $ \(loc, i) -> do
|
|
let loc' = importableContentsChunkFullLocation (importableContentsSubDir c) loc
|
|
thirdpartypopulatedimport db (loc', i) >>= return . \case
|
|
Just (_loc, k) -> Just (loc, k)
|
|
Nothing -> Nothing
|
|
return $ ImportableContentsChunk
|
|
{ importableContentsSubDir = importableContentsSubDir c
|
|
, importableContentsSubTree = catMaybes l
|
|
, importableContentsNextChunk =
|
|
importableContentsNextChunk c >>= \case
|
|
Nothing -> return Nothing
|
|
Just c' -> withciddb $ \db' ->
|
|
prepclock $
|
|
Just <$> gochunked db' c'
|
|
}
|
|
|
|
waitstart importing cid = liftIO $ atomically $ do
|
|
s <- readTVar importing
|
|
if S.member cid s
|
|
then retry
|
|
else writeTVar importing $ S.insert cid s
|
|
|
|
signaldone importing cid = liftIO $ atomically $ do
|
|
s <- readTVar importing
|
|
writeTVar importing $ S.delete cid s
|
|
|
|
startimport cidmap importing db i@(loc, (cid, _sz)) oldversion largematcher = getcidkey cidmap db cid >>= \case
|
|
(k:ks) ->
|
|
-- If the same content was imported before
|
|
-- yielding multiple different keys, it's not clear
|
|
-- which is best to use this time, so pick the
|
|
-- first in the list. But, if any of them is a
|
|
-- git sha, use it, because the content must
|
|
-- be included in the git repo then.
|
|
let v = case mapMaybe keyGitSha (k:ks) of
|
|
(sha:_) -> Left sha
|
|
[] -> Right k
|
|
in return $ Left $ Just (loc, v)
|
|
[] -> do
|
|
job <- liftIO $ newEmptyTMVarIO
|
|
let ai = ActionItemOther (Just (QuotedPath (fromImportLocation loc)))
|
|
let si = SeekInput []
|
|
let importaction = starting ("import " ++ Remote.name remote) ai si $ do
|
|
when oldversion $
|
|
showNote "old version"
|
|
tryNonAsync (importordownload cidmap i largematcher) >>= \case
|
|
Left e -> next $ do
|
|
warning (UnquotedString (show e))
|
|
liftIO $ atomically $
|
|
putTMVar job Nothing
|
|
return False
|
|
Right r -> next $ do
|
|
liftIO $ atomically $
|
|
putTMVar job r
|
|
return True
|
|
commandAction $ bracket_
|
|
(waitstart importing cid)
|
|
(signaldone importing cid)
|
|
importaction
|
|
return (Right job)
|
|
|
|
thirdpartypopulatedimport db (loc, (cid, sz)) =
|
|
case Remote.importKey ia of
|
|
Nothing -> return Nothing
|
|
Just importkey ->
|
|
tryNonAsync (importkey loc cid sz nullMeterUpdate) >>= \case
|
|
Right (Just k) -> do
|
|
recordcidkeyindb db cid k
|
|
logChange k (Remote.uuid remote) InfoPresent
|
|
return $ Just (loc, Right k)
|
|
Right Nothing -> return Nothing
|
|
Left e -> do
|
|
warning (UnquotedString (show e))
|
|
return Nothing
|
|
|
|
importordownload cidmap (loc, (cid, sz)) largematcher = do
|
|
f <- locworktreefile loc
|
|
matcher <- largematcher f
|
|
-- When importing a key is supported, always use it rather
|
|
-- than downloading and retrieving a key, to avoid
|
|
-- generating trees with different keys for the same content.
|
|
let act = if importcontent
|
|
then case Remote.importKey ia of
|
|
Nothing -> dodownload
|
|
Just _ -> if Utility.Matcher.introspect matchNeedsFileContent (fst matcher)
|
|
then dodownload
|
|
else doimport
|
|
else doimport
|
|
act cidmap (loc, (cid, sz)) f matcher
|
|
|
|
doimport cidmap (loc, (cid, sz)) f matcher =
|
|
case Remote.importKey ia of
|
|
Nothing -> error "internal" -- checked earlier
|
|
Just importkey -> do
|
|
when (Utility.Matcher.introspect matchNeedsFileContent (fst matcher)) $
|
|
giveup "annex.largefiles configuration examines file contents, so cannot import without content."
|
|
let mi = MatchingInfo ProvidedInfo
|
|
{ providedFilePath = Just f
|
|
, providedKey = Nothing
|
|
, providedFileSize = Just sz
|
|
, providedMimeType = Nothing
|
|
, providedMimeEncoding = Nothing
|
|
, providedLinkType = Nothing
|
|
}
|
|
islargefile <- checkMatcher' matcher mi mempty
|
|
metered Nothing sz bwlimit $ const $ if islargefile
|
|
then doimportlarge importkey cidmap loc cid sz f
|
|
else doimportsmall cidmap loc cid sz
|
|
|
|
doimportlarge importkey cidmap loc cid sz f p =
|
|
tryNonAsync importer >>= \case
|
|
Right (Just (k, True)) -> return $ Just (loc, Right k)
|
|
Right _ -> return Nothing
|
|
Left e -> do
|
|
warning (UnquotedString (show e))
|
|
return Nothing
|
|
where
|
|
importer = do
|
|
-- Don't display progress when generating
|
|
-- key, if the content will later be
|
|
-- downloaded, which is a more expensive
|
|
-- operation generally.
|
|
let p' = if importcontent then nullMeterUpdate else p
|
|
importkey loc cid sz p' >>= \case
|
|
Nothing -> return Nothing
|
|
Just k -> checkSecureHashes k >>= \case
|
|
Nothing -> do
|
|
recordcidkey cidmap cid k
|
|
logChange k (Remote.uuid remote) InfoPresent
|
|
if importcontent
|
|
then getcontent k
|
|
else return (Just (k, True))
|
|
Just msg -> giveup (msg ++ " to import")
|
|
|
|
getcontent :: Key -> Annex (Maybe (Key, Bool))
|
|
getcontent k = do
|
|
let af = AssociatedFile (Just f)
|
|
let downloader p' tmpfile = do
|
|
_ <- Remote.retrieveExportWithContentIdentifier
|
|
ia loc [cid] (fromRawFilePath tmpfile)
|
|
(Left k)
|
|
(combineMeterUpdate p' p)
|
|
ok <- moveAnnex k af tmpfile
|
|
when ok $
|
|
logStatus k InfoPresent
|
|
return (Just (k, ok))
|
|
checkDiskSpaceToGet k Nothing Nothing $
|
|
notifyTransfer Download af $
|
|
download' (Remote.uuid remote) k af Nothing stdRetry $ \p' ->
|
|
withTmp k $ downloader p'
|
|
|
|
-- The file is small, so is added to git, so while importing
|
|
-- without content does not retrieve annexed files, it does
|
|
-- need to retrieve this file.
|
|
doimportsmall cidmap loc cid sz p = do
|
|
let downloader tmpfile = do
|
|
(k, _) <- Remote.retrieveExportWithContentIdentifier
|
|
ia loc [cid] (fromRawFilePath tmpfile)
|
|
(Right (mkkey tmpfile))
|
|
p
|
|
case keyGitSha k of
|
|
Just sha -> do
|
|
recordcidkey cidmap cid k
|
|
return sha
|
|
Nothing -> error "internal"
|
|
checkDiskSpaceToGet tmpkey Nothing Nothing $
|
|
withTmp tmpkey $ \tmpfile ->
|
|
tryNonAsync (downloader tmpfile) >>= \case
|
|
Right sha -> return $ Just (loc, Left sha)
|
|
Left e -> do
|
|
warning (UnquotedString (show e))
|
|
return Nothing
|
|
where
|
|
tmpkey = importKey cid sz
|
|
mkkey tmpfile = gitShaKey <$> hashFile tmpfile
|
|
|
|
dodownload cidmap (loc, (cid, sz)) f matcher = do
|
|
let af = AssociatedFile (Just f)
|
|
let downloader tmpfile p = do
|
|
(k, _) <- Remote.retrieveExportWithContentIdentifier
|
|
ia loc [cid] (fromRawFilePath tmpfile)
|
|
(Right (mkkey tmpfile))
|
|
p
|
|
case keyGitSha k of
|
|
Nothing -> do
|
|
ok <- moveAnnex k af tmpfile
|
|
when ok $ do
|
|
recordcidkey cidmap cid k
|
|
logStatus k InfoPresent
|
|
logChange k (Remote.uuid remote) InfoPresent
|
|
return (Right k, ok)
|
|
Just sha -> do
|
|
recordcidkey cidmap cid k
|
|
return (Left sha, True)
|
|
let rundownload tmpfile p = tryNonAsync (downloader tmpfile p) >>= \case
|
|
Right (v, True) -> return $ Just (loc, v)
|
|
Right (_, False) -> return Nothing
|
|
Left e -> do
|
|
warning (UnquotedString (show e))
|
|
return Nothing
|
|
checkDiskSpaceToGet tmpkey Nothing Nothing $
|
|
notifyTransfer Download af $
|
|
download' (Remote.uuid remote) tmpkey af Nothing stdRetry $ \p ->
|
|
withTmp tmpkey $ \tmpfile ->
|
|
metered (Just p) tmpkey bwlimit $
|
|
const (rundownload tmpfile)
|
|
where
|
|
tmpkey = importKey cid sz
|
|
|
|
mkkey tmpfile = do
|
|
let mi = MatchingFile FileInfo
|
|
{ matchFile = f
|
|
, contentFile = tmpfile
|
|
, matchKey = Nothing
|
|
}
|
|
islargefile <- checkMatcher' matcher mi mempty
|
|
if islargefile
|
|
then do
|
|
backend <- chooseBackend f
|
|
let ks = KeySource
|
|
{ keyFilename = f
|
|
, contentLocation = tmpfile
|
|
, inodeCache = Nothing
|
|
}
|
|
fst <$> genKey ks nullMeterUpdate backend
|
|
else gitShaKey <$> hashFile tmpfile
|
|
|
|
ia = Remote.importActions remote
|
|
|
|
bwlimit = remoteAnnexBwLimitDownload (Remote.gitconfig remote)
|
|
<|> remoteAnnexBwLimit (Remote.gitconfig remote)
|
|
|
|
locworktreefile loc = fromRepo $ fromTopFilePath $ asTopFilePath $
|
|
case importtreeconfig of
|
|
ImportTree -> fromImportLocation loc
|
|
ImportSubTree subdir _ ->
|
|
getTopFilePath subdir P.</> fromImportLocation loc
|
|
|
|
getcidkey cidmap db cid = liftIO $
|
|
-- Avoiding querying the database when it's empty speeds up
|
|
-- the initial import.
|
|
if CIDDb.databaseIsEmpty db
|
|
then getcidkeymap cidmap cid
|
|
else CIDDb.getContentIdentifierKeys db rs cid >>= \case
|
|
[] -> getcidkeymap cidmap cid
|
|
l -> return l
|
|
|
|
getcidkeymap cidmap cid =
|
|
atomically $ maybeToList . M.lookup cid <$> readTVar cidmap
|
|
|
|
recordcidkey cidmap cid k = do
|
|
liftIO $ atomically $ modifyTVar' cidmap $
|
|
M.insert cid k
|
|
-- Only record in log now; the database will be updated
|
|
-- later from the log, and the cidmap will be used for now.
|
|
recordcidkeyinlog cid k
|
|
|
|
recordcidkeyindb db cid k = do
|
|
liftIO $ CIDDb.recordContentIdentifier db rs cid k
|
|
recordcidkeyinlog cid k
|
|
|
|
recordcidkeyinlog cid k =
|
|
CIDLog.recordContentIdentifier rs cid k
|
|
|
|
rs = Remote.remoteStateHandle remote
|
|
|
|
{- Temporary key used for import of a ContentIdentifier while downloading
|
|
- content, before generating its real key. -}
|
|
importKey :: ContentIdentifier -> Integer -> Key
|
|
importKey (ContentIdentifier cid) size = mkKey $ \k -> k
|
|
{ keyName = genKeyName (decodeBS cid)
|
|
, keyVariety = OtherKey "CID"
|
|
, keySize = Just size
|
|
}
|
|
|
|
{-- Export omits non-preferred content from the tree stored on the
|
|
-- remote. So the import will normally have that content
|
|
-- omitted (unless something else added files with the same names to the
|
|
-- special remote).
|
|
--
|
|
-- That presents a problem: Merging the imported tree would result
|
|
-- in deletion of the files that were excluded from export.
|
|
-- To avoid that happening, this adds them back to the imported tree.
|
|
--}
|
|
addBackExportExcluded :: Remote -> Sha -> Annex Sha
|
|
addBackExportExcluded remote importtree =
|
|
getExportExcluded (Remote.uuid remote) >>= \case
|
|
[] -> return importtree
|
|
excludedlist -> inRepo $
|
|
adjustTree
|
|
-- don't remove any
|
|
(pure . Just)
|
|
excludedlist
|
|
-- if something was imported with the same
|
|
-- name as a file that was previously
|
|
-- excluded from import, use what was imported
|
|
(\imported _excluded -> imported)
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[]
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importtree
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{- Match the preferred content of the remote at import time.
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-
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- Only keyless tokens are supported, because the keys are not known
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- until an imported file is downloaded, which is too late to bother
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- excluding it from an import. So prunes any tokens in the preferred
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- content expression that need keys.
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-}
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makeImportMatcher :: Remote -> Annex (Either String (FileMatcher Annex))
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makeImportMatcher r = load preferredContentTokens >>= \case
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Nothing -> return $ Right (matchAll, matcherdesc)
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Just (Right v) -> return $ Right (v, matcherdesc)
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Just (Left err) -> return $ Left err
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where
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load t = M.lookup (Remote.uuid r) . fst
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<$> preferredRequiredMapsLoad' pruneImportMatcher t
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matcherdesc = MatcherDesc "preferred content"
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|
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pruneImportMatcher :: Utility.Matcher.Matcher (MatchFiles a) -> Utility.Matcher.Matcher (MatchFiles a)
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pruneImportMatcher = Utility.Matcher.pruneMatcher matchNeedsKey
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|
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{- Gets the ImportableContents from the remote.
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|
-
|
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- Filters out any paths that include a ".git" component, because git does
|
|
- not allow storing ".git" in a git repository. While it is possible to
|
|
- write a git tree that contains that, git will complain and refuse to
|
|
- check it out.
|
|
-
|
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- Filters out new things not matching the FileMatcher or that are
|
|
- gitignored. However, files that are already in git get imported
|
|
- regardless. (Similar to how git add behaves on gitignored files.)
|
|
- This avoids creating a remote tracking branch that, when merged,
|
|
- would delete the files.
|
|
-
|
|
- Throws exception if unable to contact the remote.
|
|
- Returns Nothing when there is no change since last time.
|
|
-}
|
|
getImportableContents :: Remote -> ImportTreeConfig -> CheckGitIgnore -> FileMatcher Annex -> Annex (Maybe (ImportableContentsChunkable Annex (ContentIdentifier, ByteSize)))
|
|
getImportableContents r importtreeconfig ci matcher = do
|
|
Remote.listImportableContents (Remote.importActions r) >>= \case
|
|
Just (ImportableContentsComplete ic) -> do
|
|
dbhandle <- opendbhandle
|
|
Just . ImportableContentsComplete
|
|
<$> filterunwanted dbhandle ic
|
|
Just (c@(ImportableContentsChunked {})) -> do
|
|
dbhandle <- opendbhandle
|
|
Just <$> filterunwantedchunked dbhandle c
|
|
Nothing -> return Nothing
|
|
where
|
|
filterunwanted dbhandle ic = ImportableContents
|
|
<$> filterM (wanted dbhandle) (importableContents ic)
|
|
<*> mapM (filterunwanted dbhandle) (importableHistory ic)
|
|
|
|
filterunwantedchunked dbhandle c = ImportableContentsChunked
|
|
<$> filterunwantedchunk dbhandle (importableContentsChunk c)
|
|
<*> mapM (filterunwanted dbhandle) (importableHistoryComplete c)
|
|
|
|
filterunwantedchunk dbhandle c = ImportableContentsChunk
|
|
<$> pure (importableContentsSubDir c)
|
|
<*> filterM (wantedunder dbhandle (importableContentsSubDir c))
|
|
(importableContentsSubTree c)
|
|
<*> pure (
|
|
importableContentsNextChunk c >>= \case
|
|
Nothing -> return Nothing
|
|
Just c' -> Just <$> filterunwantedchunk dbhandle c'
|
|
)
|
|
|
|
opendbhandle = do
|
|
h <- Export.openDb (Remote.uuid r)
|
|
void $ Export.updateExportTreeFromLog h
|
|
return h
|
|
|
|
wanted dbhandle (loc, (_cid, sz))
|
|
| ingitdir = pure False
|
|
| otherwise =
|
|
isknown <||> (matches <&&> notignored)
|
|
where
|
|
-- Checks, from least to most expensive.
|
|
ingitdir = ".git" `elem` Posix.splitDirectories (fromImportLocation loc)
|
|
matches = matchesImportLocation matcher loc sz
|
|
isknown = isKnownImportLocation dbhandle loc
|
|
notignored = notIgnoredImportLocation importtreeconfig ci loc
|
|
|
|
wantedunder dbhandle root (loc, v) =
|
|
wanted dbhandle (importableContentsChunkFullLocation root loc, v)
|
|
|
|
isKnownImportLocation :: Export.ExportHandle -> ImportLocation -> Annex Bool
|
|
isKnownImportLocation dbhandle loc = liftIO $
|
|
not . null <$> Export.getExportTreeKey dbhandle loc
|
|
|
|
matchesImportLocation :: FileMatcher Annex -> ImportLocation -> Integer -> Annex Bool
|
|
matchesImportLocation matcher loc sz = checkMatcher' matcher mi mempty
|
|
where
|
|
mi = MatchingInfo $ ProvidedInfo
|
|
{ providedFilePath = Just (fromImportLocation loc)
|
|
, providedKey = Nothing
|
|
, providedFileSize = Just sz
|
|
, providedMimeType = Nothing
|
|
, providedMimeEncoding = Nothing
|
|
, providedLinkType = Nothing
|
|
}
|
|
|
|
notIgnoredImportLocation :: ImportTreeConfig -> CheckGitIgnore -> ImportLocation -> Annex Bool
|
|
notIgnoredImportLocation importtreeconfig ci loc = not <$> checkIgnored ci f
|
|
where
|
|
f = case importtreeconfig of
|
|
ImportSubTree dir _ ->
|
|
getTopFilePath dir P.</> fromImportLocation loc
|
|
ImportTree ->
|
|
fromImportLocation loc
|