de482c7eeb
The goal is that Database.Keys be able to use it; it can't use Annex.Content.Presence due to an import loop. Several other things also needed to be moved to Annex.Verify as a conseqence.
265 lines
8.6 KiB
Haskell
265 lines
8.6 KiB
Haskell
{- P2P protocol, Annex implementation
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-
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- Copyright 2016-2021 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 RankNTypes, FlexibleContexts #-}
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module P2P.Annex
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( RunState(..)
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, mkRunState
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, P2PConnection(..)
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, runFullProto
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) where
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import Annex.Common
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import Annex.Content
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import Annex.Transfer
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import Annex.ChangedRefs
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import P2P.Protocol
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import P2P.IO
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import Logs.Location
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import Types.NumCopies
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import Utility.Metered
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import Annex.Verify
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import Control.Monad.Free
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import Control.Concurrent.STM
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import qualified Data.ByteString as S
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-- Full interpreter for Proto, that can receive and send objects.
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runFullProto :: RunState -> P2PConnection -> Proto a -> Annex (Either ProtoFailure a)
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runFullProto runst conn = go
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where
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go :: RunProto Annex
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go (Pure v) = return (Right v)
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go (Free (Net n)) = runNet runst conn go n
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go (Free (Local l)) = runLocal runst go l
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runLocal :: RunState -> RunProto Annex -> LocalF (Proto a) -> Annex (Either ProtoFailure a)
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runLocal runst runner a = case a of
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TmpContentSize k next -> do
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tmp <- fromRepo $ gitAnnexTmpObjectLocation k
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size <- liftIO $ catchDefaultIO 0 $ getFileSize tmp
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runner (next (Len size))
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FileSize f next -> do
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size <- liftIO $ catchDefaultIO 0 $ getFileSize (toRawFilePath f)
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runner (next (Len size))
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ContentSize k next -> do
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let getsize = liftIO . catchMaybeIO . getFileSize
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size <- inAnnex' isJust Nothing getsize k
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runner (next (Len <$> size))
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ReadContent k af o sender next -> do
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let proceed c = do
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r <- tryNonAsync c
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case r of
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Left e -> return $ Left $ ProtoFailureException e
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Right (Left e) -> return $ Left e
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Right (Right ok) -> runner (next ok)
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-- If the content is not present, or the transfer doesn't
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-- run for any other reason, the sender action still must
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-- be run, so is given empty and Invalid data.
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let fallback = runner (sender mempty (return Invalid))
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v <- tryNonAsync $ prepSendAnnex k
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case v of
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Right (Just (f, checkchanged)) -> proceed $ do
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-- alwaysUpload to allow multiple uploads of the same key.
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let runtransfer ti = transfer alwaysUpload k af Nothing $ \p ->
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sinkfile f o checkchanged sender p ti
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checktransfer runtransfer fallback
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Right Nothing -> proceed fallback
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Left e -> return $ Left $ ProtoFailureException e
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StoreContent k af o l getb validitycheck next -> do
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-- This is the same as the retrievalSecurityPolicy of
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-- Remote.P2P and Remote.Git.
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let rsp = RetrievalAllKeysSecure
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v <- tryNonAsync $ do
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iv <- startVerifyKeyContentIncrementally DefaultVerify k
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let runtransfer ti =
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Right <$> transfer download' k af Nothing (\p ->
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logStatusAfter k $ getViaTmp rsp DefaultVerify k af $ \tmp ->
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storefile (fromRawFilePath tmp) o l getb iv validitycheck p ti)
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let fallback = return $ Left $
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ProtoFailureMessage "transfer already in progress, or unable to take transfer lock"
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checktransfer runtransfer fallback
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case v of
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Left e -> return $ Left $ ProtoFailureException e
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Right (Left e) -> return $ Left e
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Right (Right ok) -> runner (next ok)
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StoreContentTo dest iv o l getb validitycheck next -> do
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v <- tryNonAsync $ do
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let runtransfer ti = Right
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<$> storefile dest o l getb iv validitycheck nullMeterUpdate ti
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let fallback = return $ Left $
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ProtoFailureMessage "Transfer failed"
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checktransfer runtransfer fallback
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case v of
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Left e -> return $ Left $ ProtoFailureException e
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Right (Left e) -> return $ Left e
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Right (Right ok) -> runner (next ok)
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SetPresent k u next -> do
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v <- tryNonAsync $ logChange k u InfoPresent
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case v of
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Left e -> return $ Left $ ProtoFailureException e
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Right () -> runner next
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CheckContentPresent k next -> do
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v <- tryNonAsync $ inAnnex k
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case v of
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Left e -> return $ Left $ ProtoFailureException e
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Right result -> runner (next result)
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RemoveContent k next -> do
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let cleanup = do
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logStatus k InfoMissing
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return True
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v <- tryNonAsync $
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ifM (Annex.Content.inAnnex k)
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( lockContentForRemoval k cleanup $ \contentlock -> do
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removeAnnex contentlock
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cleanup
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, return True
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)
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case v of
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Left e -> return $ Left $ ProtoFailureException e
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Right result -> runner (next result)
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TryLockContent k protoaction next -> do
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v <- tryNonAsync $ lockContentShared k $ \verifiedcopy ->
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case verifiedcopy of
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LockedCopy _ -> runner (protoaction True)
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_ -> runner (protoaction False)
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-- If locking fails, lockContentShared throws an exception.
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-- Let the peer know it failed.
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case v of
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Left _ -> runner $ do
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protoaction False
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next
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Right _ -> runner next
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WaitRefChange next -> case runst of
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Serving _ (Just h) _ -> do
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v <- tryNonAsync $ liftIO $ waitChangedRefs h
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case v of
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Left e -> return $ Left $ ProtoFailureException e
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Right changedrefs -> runner (next changedrefs)
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_ -> return $ Left $
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ProtoFailureMessage "change notification not available"
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UpdateMeterTotalSize m sz next -> do
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liftIO $ setMeterTotalSize m sz
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runner next
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RunValidityCheck checkaction next -> runner . next =<< checkaction
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where
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transfer mk k af sd ta = case runst of
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-- Update transfer logs when serving.
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-- Using noRetry because we're the sender.
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Serving theiruuid _ _ ->
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mk theiruuid k af sd noRetry ta noNotification
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-- Transfer logs are updated higher in the stack when
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-- a client.
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Client _ -> ta nullMeterUpdate
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resumefromoffset o incrementalverifier p h
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| o /= 0 = do
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p' <- case incrementalverifier of
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Just iv -> do
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go iv o
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return p
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_ -> return $ offsetMeterUpdate p (toBytesProcessed o)
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-- Make sure the handle is seeked to the offset.
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-- (Reading the file probably left it there
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-- when that was done, but let's be sure.)
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hSeek h AbsoluteSeek o
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return p'
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| otherwise = return p
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where
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go iv n
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| n == 0 = return ()
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| otherwise = do
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let c = if n > fromIntegral defaultChunkSize
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then defaultChunkSize
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else fromIntegral n
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b <- S.hGet h c
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updateIncremental iv b
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unless (b == S.empty) $
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go iv (n - fromIntegral (S.length b))
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storefile dest (Offset o) (Len l) getb incrementalverifier validitycheck p ti = do
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v <- runner getb
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case v of
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Right b -> do
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liftIO $ withBinaryFile dest ReadWriteMode $ \h -> do
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p' <- resumefromoffset o incrementalverifier p h
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let writechunk = case incrementalverifier of
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Nothing -> \c -> S.hPut h c
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Just iv -> \c -> do
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S.hPut h c
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updateIncremental iv c
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meteredWrite p' writechunk b
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indicatetransferred ti
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rightsize <- do
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sz <- liftIO $ getFileSize (toRawFilePath dest)
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return (toInteger sz == l + o)
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runner validitycheck >>= \case
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Right (Just Valid) -> case incrementalverifier of
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Just iv -> ifM (liftIO (finalizeIncremental iv) <&&> pure rightsize)
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( return (True, Verified)
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, return (False, UnVerified)
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)
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Nothing -> return (rightsize, UnVerified)
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Right (Just Invalid) | l == 0 ->
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-- Special case, for when
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-- content was not
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-- available to send,
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-- which is indicated by
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-- sending 0 bytes and
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-- Invalid.
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return (False, UnVerified)
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_ -> do
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-- Invalid, or old protocol
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-- version. Validity is not
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-- known. Force content
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-- verification.
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return (rightsize, MustVerify)
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Left e -> error $ describeProtoFailure e
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sinkfile f (Offset o) checkchanged sender p ti = bracket setup cleanup go
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where
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setup = liftIO $ openBinaryFile f ReadMode
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cleanup = liftIO . hClose
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go h = do
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let p' = offsetMeterUpdate p (toBytesProcessed o)
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when (o /= 0) $
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liftIO $ hSeek h AbsoluteSeek o
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b <- liftIO $ hGetContentsMetered h p'
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let validitycheck = local $ runValidityCheck $
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checkchanged >>= return . \case
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False -> Invalid
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True -> Valid
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r <- runner (sender b validitycheck)
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indicatetransferred ti
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return r
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-- This allows using actions like download and viaTmp
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-- that may abort a transfer, and clean up the protocol after them.
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--
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-- Runs an action that may make a transfer, passing a transfer
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-- indicator. The action should call indicatetransferred on it,
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-- only after it's actually sent/received the all data.
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--
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-- If the action ends without having called indicatetransferred,
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-- runs the fallback action, which can close the protoocol
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-- connection or otherwise clean up after the transfer not having
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-- occurred.
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--
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-- If the action throws an exception, the fallback is not run.
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checktransfer ta fallback = do
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ti <- liftIO $ newTVarIO False
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r <- ta ti
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ifM (liftIO $ atomically $ readTVar ti)
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( return r
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, fallback
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)
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indicatetransferred ti = liftIO $ atomically $ writeTVar ti True
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