mirror of https://github.com/voidlizard/hbs2
FUCKED
This commit is contained in:
parent
8671608f98
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@ -14,7 +14,8 @@ import HBS2.Defaults
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import HBS2.Events
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import HBS2.Net.Proto.Service
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import HBS2.Net.Proto.Sessions
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import HBS2.Data.Bundle
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import HBS2.Data.Types.SignedBox
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import HBS2.Base58
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import HBS2.Data.Types.Peer
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@ -57,16 +58,20 @@ import Data.Either
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import Data.Maybe
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import Data.ByteString.Lazy qualified as LBS
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import Data.ByteString.Lazy (ByteString)
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import Data.Vector qualified as V
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import Data.ByteString qualified as BS
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import Data.List qualified as L
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import Data.Coerce
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import Numeric
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import UnliftIO
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import Control.Concurrent.STM qualified as STM
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import UnliftIO.Concurrent
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import System.Random
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import Lens.Micro.Platform
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import Streaming.Prelude qualified as S
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data DownloadError e =
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DownloadStuckError HashRef (Peer e)
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| StorageError
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@ -400,6 +405,7 @@ downloadFromPeerRec t bu0 cache env h0 peer = do
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pure $ Right ()
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downloadFromPeer :: forall e t cache m . ( e ~ L4Proto
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, MonadUnliftIO m
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, IsTimeout t
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@ -499,7 +505,7 @@ downloadFromPeer t bu cache env h peer = liftIO $ withPeerM env do
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blk <- readTVarIO _sBlockChunks2
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let rs = LBS.concat $ IntMap.elems blk
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ha <- putBlock sto rs
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ha <- enqueueBlock sto rs
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-- let ha = Just $ hashObject @HbSync rs
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@ -539,6 +545,542 @@ data S2 =
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| S2FetchBlock (Hash HbSync)
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| S2Exit
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newtype KnownSize = KnownSize Integer
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instance BlockSizeCache e KnownSize where
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cacheBlockSize _ _ _ _ = pure ()
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findBlockSize (KnownSize s) _ _ = pure (Just s)
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downloadDispatcher2 :: forall e m . ( e ~ L4Proto
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, MonadUnliftIO m
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)
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=> SomeBrains e
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-> PeerEnv e
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-> m ()
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downloadDispatcher2 brains e = do
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let blkInfoLock = 5 :: Timeout 'Seconds
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let blkWaitLock = 60 :: Timeout 'Seconds
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let workloadFactor = 2.5
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sto <- withPeerM e getStorage
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let downT = 16
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let sizeT = 4
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inQ <- newTVarIO mempty
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sizeRQ <- newTQueueIO
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checkQ <- newTQueueIO
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-- inQ <- withDownload env0 $ asks (view blockInQ)
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-- checkQ <- withDownload env0 $ asks (view blockCheckQ)
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sizeQ <- newTQueueIO
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fetchQ <- newTQueueIO
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parseQ <- newTQueueIO
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-- sizeRQ <- withDownload env0 $ asks (view blockSizeRecvQ)
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-- FIXME: cleanup-nonce
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nonces <- newTVarIO (mempty :: HashMap (Peer e) PeerNonce)
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-- FIXME: cleanup-busy
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busy <- newTVarIO (mempty :: HashMap PeerNonce Double)
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rates <- newTVarIO (mempty :: IntMap.IntMap [(Peer e,PeerNonce)])
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fetchH <- newTVarIO (mempty :: HashSet (Hash HbSync))
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sizes <- newTVarIO (mempty :: HashMap (Peer e, Hash HbSync) (Maybe Integer, TimeSpec))
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sizeReq <- newTVarIO (mempty :: HashMap (Hash HbSync) TimeSpec)
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seen <- newTVarIO (mempty :: HashMap (Hash HbSync) Int)
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peerz <- newTVarIO ( mempty :: HashMap (Peer e) BurstMachine)
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defBurst <- liftIO $ newBurstMachine 0.5 256 (Just 50) 0.05 0.10
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liftIO $ withPeerM e do
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subscribe @e DownloadReqKey $ \(DownloadReqData h) -> do
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here <- hasBlock sto h <&> isJust
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unless here do
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atomically $ modifyTVar inQ (HM.insert h ())
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atomically $ writeTQueue sizeQ h
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flip runContT pure do
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-- UPDATE-STATS-LOOP
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void $ ContT $ withAsync $ updateRates e rates nonces
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void $ ContT $ withAsync $ forever do
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pips <- withPeerM e $ getKnownPeers @e <&> HS.fromList
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for_ pips $ \p -> do
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here <- readTVarIO peerz <&> HM.member p
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unless here do
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newBum <- liftIO $ newBurstMachine 0.5 256 (Just 50) 0.05 0.10
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atomically $ modifyTVar peerz (HM.insert p newBum)
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atomically do
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modifyTVar peerz ( HM.filterWithKey (\k _ -> HS.member k pips))
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pause @Seconds 5
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void $ ContT $ withAsync do
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forever do
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pause @'Seconds 120
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atomically do
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q <- readTVar inQ
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let isInQ x = HM.member x q
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modifyTVar' fetchH (HS.filter isInQ)
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modifyTVar' sizeReq (HM.filterWithKey (curry (isInQ . fst)))
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modifyTVar' sizes (HM.filterWithKey (curry (isInQ . snd . fst)))
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modifyTVar' seen (HM.filterWithKey (curry (isInQ . fst)))
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livePeers <- readTVar rates <&> mconcat . IntMap.elems
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let liveNonce = HS.fromList (fmap snd livePeers)
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let livePeer = HS.fromList (fmap fst livePeers)
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modifyTVar' busy (HM.filterWithKey (\x _ -> HS.member x liveNonce))
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modifyTVar' nonces (HM.filterWithKey (\x _ -> HS.member x livePeer))
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replicateM_ downT $ ContT $ withAsync do
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forever do
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blk <- atomically $ readTQueue checkQ
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here <- hasBlock sto blk <&> isJust
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if not here then do
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atomically $ writeTQueue sizeQ blk
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else do
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atomically $ writeTQueue parseQ blk
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void $ ContT $ withAsync $ liftIO $ withPeerM e do
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forever do
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blk <- atomically $ readTQueue parseQ
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blks <- findMissedBlocks sto (HashRef blk)
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for_ blks $ \b -> do
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addDownload @e (Just blk) (fromHashRef b)
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processBlock blk
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atomically $ modifyTVar inQ (HM.delete (coerce blk))
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replicateM_ 1 $ ContT $ withAsync do
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forever do
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-- pause @'Seconds 0.25
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items <- atomically do
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peekTQueue sizeRQ >> STM.flushTQueue sizeRQ
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now <- getTimeCoarse
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todo <- atomically do
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w <- for items $ \(p,h,s) -> do
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modifyTVar sizes (HM.insert (p,h) (s, now))
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readTVar nonces <&> HM.lookup p >>= \case
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Nothing -> pure ()
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Just nonce -> setBusySTM nonce busy (Just (setFactor 0 (0.01-)))
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pure h
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for (L.nub w) pure
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for_ todo $ \b -> do
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here <- hasBlock sto b <&> isJust
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already <- atomically do
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readTVar fetchH <&> HS.member b
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when (not here && not already) do
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atomically $ writeTQueue fetchQ b
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replicateM_ sizeT $ ContT $ withAsync do
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-- TODO: trim-sizeReq
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let blocks = readTVarIO sizeReq <&> HM.keys <&> fmap (,2)
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polling (Polling 1 1) blocks $ \h -> do
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pips <- readTVarIO nonces <&> HM.keys
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s <- readTVarIO sizes <&> HM.toList
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for_ pips $ \p -> do
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here <- lookupSizeIO sizes p h <&> isRight
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if here then do
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atomically $ modifyTVar sizeReq (HM.delete h)
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else
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withPeerM e $ request p (GetBlockSize @e h)
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replicateM_ sizeT $ ContT $ withAsync do
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forever do
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blk <- atomically do
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readTVar rates <&> not . IntMap.null >>= STM.check
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readTQueue sizeQ
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debug $ green "PEER SIZE THREAD" <+> pretty blk
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r <- readTVarIO rates <&> IntMap.toDescList
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<&> foldMap snd
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answ <- for r $ \(p,nonce) -> do
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lookupSizeIO sizes p blk >>= \case
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-- уже спрашивали, отрицает
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Left{} -> do
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npi <- newPeerInfo
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PeerInfo{..} <- withPeerM e $ fetch True npi (PeerInfoKey p) id
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atomically do
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setBusySTM nonce busy (Just (setFactor 0 (+(-0.01))))
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modifyTVar _peerDownloadMiss succ
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modifyTVar seen (HM.insertWith (+) blk 1)
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modifyTVar sizeReq (HM.delete blk)
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debug $ red "NONE:" <+> pretty p <+> pretty blk
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pure 0
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-- уже спрашивали, ответил
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Right (Just w) -> do
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atomically do
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setBusySTM nonce busy (Just (setFactor 0 (+(-0.01))))
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modifyTVar sizeReq (HM.delete blk)
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debug $ red "SIZE:" <+> pretty p <+> pretty blk <+> pretty w
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pure 1
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-- не спрашивали еще
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Right Nothing -> do
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(doReq, f) <- atomically do
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f <- lookupBusySTM nonce busy
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if f > workloadFactor then
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pure (False, f)
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else do
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setBusySTM nonce busy (Just (setFactor 0.01 (+0.01)))
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pure (True, f)
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debug $ green "BUSY" <+> pretty p <+> pretty f
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when doReq do
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debug $ red "SEND REQUEST FOR SIZE" <+> pretty p <+> pretty blk
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async $ do
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pause blkInfoLock
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atomically (setBusySTM nonce busy (Just (setFactor 0 (+(-0.01)))))
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withPeerM e $ request p (GetBlockSize @e blk)
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now <- getTimeCoarse
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atomically $ modifyTVar sizeReq (HM.insert blk now)
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pure 0
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if sum answ > 0 then do
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atomically do
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here <- readTVar fetchH <&> HS.member blk
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readTVar seen <&> HM.delete blk
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unless here $
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writeTQueue fetchQ blk
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else do
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howMany <- readTVarIO seen <&> (fromMaybe 0 . HM.lookup blk)
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pips <- readTVarIO nonces <&> HM.size
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-- FIXME: hardcode
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when (howMany < 10) do
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atomically $ writeTQueue sizeQ blk
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void $ ContT $ withAsync do
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-- FIXME: ban-time-hardcode
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let loosers = readTVarIO seen <&> fmap (,120) . HM.keys
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polling (Polling 1 10) loosers $ \it -> do
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atomically $ writeTQueue checkQ it
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atomically $ modifyTVar seen (HM.delete it)
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replicateM_ downT $ ContT $ withAsync do
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gen <- newStdGen
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forever do
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flip runContT pure $ callCC \exit -> do
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blk <- atomically $ readTQueue fetchQ
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atomically do
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modifyTVar fetchH (HS.insert blk)
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here <- hasBlock sto blk <&> isJust
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when here $ exit ()
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debug $ green "PEER DOWNLOAD THREAD" <+> pretty blk
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-- TODO: already-downloaded-possible
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let ws = round . (*trimFactor) <$> randomRs (0, 2.5) gen
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work <- lift $ race (pause @'Seconds 60) $ atomically do
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r0 <- readTVar rates <&> IntMap.toList
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bsy <- readTVar busy
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let bx nonce =
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round $ trimFactor * (1.75 / (1.0 + fromMaybe 0 (HM.lookup nonce bsy)))
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let w = [ (-(v + w0 + bx nonce), p)
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| (v, (w0, peers)) <- zip ws r0, p@(_,nonce) <- peers
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] & L.sortOn fst & fmap snd
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avail' <- for w $ \(peer,nonce) -> do
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p <- readTVar busy <&> HM.lookup nonce
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sz <- lookupSizeSTM sizes peer blk
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if p < Just workloadFactor then
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pure (Just (peer,nonce, sz))
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else
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pure Nothing
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let avail = catMaybes avail'
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STM.check (not $ L.null avail)
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found <- for avail $ \(pip, nonce, msz) -> case msz of
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Right (Just sz) -> do
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pure $ Just (blk, pip, nonce, sz)
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_ -> pure Nothing
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case headMay (catMaybes found) of
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Nothing -> do
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writeTQueue checkQ blk
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modifyTVar fetchH (HS.delete blk)
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pure Nothing
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Just what@(_,_,nonce,_) -> do
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setBusySTM nonce busy (Just (setFactor 1.0 (+1.0)))
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pure $ Just what
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case work of
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Right (Just (b,p,nonce,s)) -> do
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debug $ green "WORKER CHOOSEN" <+> pretty p <+> pretty blk <+> pretty s
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bum <- readTVarIO peerz <&> HM.findWithDefault defBurst p
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bu <- liftIO $ getCurrentBurst bum
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r <- lift $ race (pause @'Seconds 60) do
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downloadFromPeer (TimeoutSec 55) bu (KnownSize s) e (coerce blk) p
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atomically do
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setBusySTM nonce busy (Just (setFactor 0 (const 0)))
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npi <- newPeerInfo
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PeerInfo{..} <- withPeerM e $ fetch True npi (PeerInfoKey p) id
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debug $ green "DOWNLOAD DONE!" <+> pretty p <+> pretty blk <+> pretty s <+> pretty (isRight r)
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atomically $ modifyTVar fetchH (HS.delete blk)
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case r of
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Right block -> do
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-- mh <- putBlock sto block
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atomically do
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modifyTVar _peerDownloaded succ
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modifyTVar _peerDownloadedBlk succ
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_ -> do
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debug $ red "DOWNLOAD FAILED / TIMEOUT"
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liftIO $ burstMachineAddErrors bum 1
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atomically do
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modifyTVar _peerDownloadFail succ
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modifyTVar _peerErrors succ
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writeTQueue checkQ blk
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_ -> do
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debug $ red "WAIT FOR PEERS TIMEOUT" <+> pretty blk
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atomically $ writeTVar busy mempty
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forever do
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pause @'Seconds 5
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wip <- readTVarIO inQ <&> HM.size
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notice $ yellow "wip" <+> pretty wip
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where
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trimFactor :: Double
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trimFactor = 100
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setFactor d f = \case
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Nothing -> Just d
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Just v -> Just (g v)
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where
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g y = f y & max 0
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setBusySTM nonce busy = \case
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Nothing -> modifyTVar busy (HM.delete nonce)
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Just fn -> modifyTVar busy (HM.alter fn nonce)
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lookupBusySTM nonce busy =
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readTVar busy <&> fromMaybe 0 . HM.lookup nonce
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lookupSizeSTM sizes p h = do
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readTVar sizes
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<&> HM.lookup (p,h)
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<&> \case
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Nothing -> Right Nothing
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Just (Just x,_) -> Right (Just x)
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Just (Nothing,_) -> Left ()
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lookupSizeIO sizes p h = do
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atomically $ lookupSizeSTM sizes p h
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processBlock :: forall e s m . ( MonadIO m
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, MyPeer e
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, ForSignedBox s
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, s ~ Encryption e
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, HasPeerLocator e m
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, m ~ PeerM e IO
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)
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=> Hash HbSync
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-> m ()
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processBlock h = do
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sto <- withPeerM e getStorage
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let parent = Just h
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block <- liftIO $ getBlock sto h
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let bt = tryDetect h <$> block
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-- FIXME: если блок нашёлся, то удаляем его из wip
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-- when (isJust bt) (deleteBlockFromQ h)
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let handleHrr (hrr :: Either (Hash HbSync) [HashRef]) = do
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case hrr of
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Left hx -> addDownload @e parent hx
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Right hr -> do
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for_ hr $ \(HashRef blk) -> do
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-- debug $ pretty blk
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here <- liftIO (hasBlock sto blk) <&> isJust
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if here then do
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pure ()
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-- debug $ "block" <+> pretty blk <+> "is already here"
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-- unless (h == blk) do
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-- processBlock blk -- NOTE: хуже не стало
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-- FIXME: fugure out if it's really required
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else do
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addDownload @e parent blk
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case bt of
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Nothing -> addDownload @e mzero h
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Just (SeqRef (SequentialRef n (AnnotatedHashRef a' b))) -> do
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maybe1 a' none $ \a -> do
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debug $ "GOT AnnotatedHashRef" <+> pretty a
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processBlock (fromHashRef a)
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addDownload @e parent (fromHashRef b)
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Just (AnnRef (AnnotatedHashRef ann hx)) -> do
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maybe1 ann none $ addDownload @e parent . fromHashRef
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addDownload @e parent (fromHashRef hx)
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Just (MerkleAnn ann) -> do
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case _mtaMeta ann of
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NoMetaData -> pure ()
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ShortMetadata {} -> pure ()
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AnnHashRef hx -> addDownload @e parent hx
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case _mtaCrypt ann of
|
||||
NullEncryption -> pure ()
|
||||
CryptAccessKeyNaClAsymm h -> addDownload @e parent h
|
||||
EncryptGroupNaClSymm h _ -> addDownload @e parent h
|
||||
|
||||
trace $ "GOT WRAPPED MERKLE. requesting nodes/leaves" <+> pretty h
|
||||
walkMerkleTree (_mtaTree ann) (liftIO . getBlock sto) handleHrr
|
||||
|
||||
Just (Merkle{}) -> do
|
||||
trace $ "GOT MERKLE. requesting nodes/leaves" <+> pretty h
|
||||
walkMerkle h (liftIO . getBlock sto) handleHrr
|
||||
|
||||
Just (Blob{}) -> do
|
||||
-- NOTE: bundle-ref-detection-note
|
||||
-- добавлять обработку BundleRefValue в tryDetect
|
||||
-- слишком накладно, т.к. требует большого количества
|
||||
-- констрейнтов, которые не предполагались там
|
||||
-- изначально. Как временная мера -- пробуем Bundle
|
||||
-- обнаруживать здесь.
|
||||
pure ()
|
||||
|
||||
where
|
||||
unboxBundleRef (BundleRefValue box) = unboxSignedBox0 box
|
||||
|
||||
|
||||
|
||||
updateRates e rates nonces = withPeerM e do
|
||||
|
||||
let wRtt = 5
|
||||
let wUdp = 1.5
|
||||
let wTcp = 1.1
|
||||
let wS = 1.5
|
||||
let eps = 1e-8
|
||||
|
||||
forever do
|
||||
pause @'Seconds 20
|
||||
|
||||
new <- S.toList_ do
|
||||
withPeerM e $ forKnownPeers @e $ \peer pd -> do
|
||||
pinfo <- find (PeerInfoKey peer) id
|
||||
maybe1 pinfo none $ \pip -> do
|
||||
|
||||
let nonce = _peerOwnNonce pd
|
||||
|
||||
atomically $ modifyTVar nonces (HM.insert peer nonce)
|
||||
|
||||
sr <- readTVarIO (_peerDownloaded pip)
|
||||
er <- readTVarIO (_peerDownloadFail pip)
|
||||
|
||||
let s = (eps + realToFrac sr) / (eps + realToFrac (sr + er))
|
||||
|
||||
{- HLINT ignore "Functor law" -}
|
||||
rtt <- medianPeerRTT pip
|
||||
<&> fmap ( (/1e9) . realToFrac )
|
||||
<&> fromMaybe 1.0
|
||||
|
||||
let (udp,tcp) = case view sockType peer of
|
||||
UDP -> (0, wUdp * 1.0)
|
||||
TCP -> (wTcp * 1.0, 0)
|
||||
|
||||
let r = udp + tcp + wS*s
|
||||
lift $ S.yield (peer, nonce, (r, rtt))
|
||||
|
||||
let maxRtt = maximumDef 1.0 [ rtt | (_, _, (_, rtt)) <- new ]
|
||||
|
||||
let mkRate s rtt = round $ trimFactor * (s + wRtt * (1 / (1 + rtt / maxRtt)))
|
||||
|
||||
let newRates = [ (mkRate s rtt, [(p,nonce)] )
|
||||
| (p, nonce, (s, rtt)) <- new
|
||||
]
|
||||
|
||||
|
||||
atomically do
|
||||
writeTVar rates (IntMap.fromListWith (<>) newRates)
|
||||
|
||||
debug $ green "PEER RATES" <+> line <> vcat (fmap fmt newRates)
|
||||
|
||||
where
|
||||
fmt (r,prs) = pretty r <+> hcat (fmap (pretty . view _1) prs)
|
||||
|
||||
|
||||
downloadDispatcher :: forall e m . ( e ~ L4Proto
|
||||
, MonadUnliftIO m
|
||||
)
|
||||
|
@ -549,9 +1091,7 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
|
||||
let t0 = 10.00
|
||||
|
||||
pts <- newTVarIO ( mempty :: HashMap (Peer e) (Async ()) )
|
||||
|
||||
rq <- newTQueueIO
|
||||
pts <- newTVarIO ( mempty :: HashMap (Peer e) (Async (), TQueue (Hash HbSync,Integer)) )
|
||||
|
||||
let seenLimit = 1000
|
||||
|
||||
|
@ -563,14 +1103,12 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
|
||||
sizeCache <- newTVarIO ( HPSQ.empty :: HashPSQ (HashRef,Peer e) TimeSpec (Maybe Integer) )
|
||||
|
||||
sizeQ <- newTVarIO ( HPSQ.empty :: HashPSQ HashRef NominalDiffTime () )
|
||||
|
||||
sto <- withPeerM env getStorage
|
||||
|
||||
work <- newTQueueIO
|
||||
|
||||
ContT $ bracket none $ const do
|
||||
readTVarIO pts >>= mapM_ cancel
|
||||
readTVarIO pts >>= mapM_ (cancel . fst)
|
||||
atomically $ writeTVar pts mempty
|
||||
|
||||
ContT $ withAsync $ forever do
|
||||
|
@ -612,9 +1150,9 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
let missChk = readTVarIO blkQ <&> fmap tr . HPSQ.toList
|
||||
where tr (k,_,v) = (k, realToFrac v)
|
||||
|
||||
let shiftPrio = \case
|
||||
let shiftPrio t = \case
|
||||
Nothing -> ((), Nothing)
|
||||
Just (p,v) -> ((), Just (succ p, v * 1.10 ))
|
||||
Just (p,v) -> ((), Just (succ p, v * t ))
|
||||
|
||||
ContT $ withAsync $
|
||||
polling (Polling 1 1) missChk $ \h -> do
|
||||
|
@ -631,11 +1169,73 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
atomically $ modifyTVar sizeCache ( HPSQ.insert (h,p) now w )
|
||||
debug $ green "GOT SIZE" <+> pretty w <+> pretty h <+> pretty p
|
||||
|
||||
atomically $ modifyTVar blkQ ( snd . HPSQ.alter shiftPrio h )
|
||||
-- atomically $ modifyTVar blkQ ( snd . HPSQ.alter (shiftPrio 1.10) h )
|
||||
|
||||
|
||||
_wip <- newTVarIO ( mempty :: HashMap HashRef () )
|
||||
|
||||
ContT $ withAsync $ do
|
||||
let ws = readTVarIO _wip <&> fmap (,10) . HM.keys
|
||||
polling (Polling 1 1) ws $ \h -> do
|
||||
atomically $ modifyTVar _wip (HM.delete h)
|
||||
|
||||
ContT $ withAsync $ do
|
||||
|
||||
pause @'Seconds 10
|
||||
|
||||
_i <- newTVarIO 0
|
||||
|
||||
flip runContT pure $ forever do
|
||||
|
||||
blokz <- readTVarIO blkQ <&> fmap (view _1) . HPSQ.toList
|
||||
|
||||
flip runContT pure do
|
||||
|
||||
k <- for blokz $ \what -> callCC \next -> do
|
||||
|
||||
atomically $ modifyTVar _i succ
|
||||
i <- readTVarIO _i
|
||||
|
||||
here <- hasBlock sto (coerce what) <&> isJust
|
||||
|
||||
when here $ next 0
|
||||
|
||||
wip <- readTVarIO _wip <&> HM.member what
|
||||
|
||||
when wip $ next 0
|
||||
|
||||
holders <- readTVarIO sizeCache <&> HPSQ.toList
|
||||
|
||||
wip <- readTVarIO _wip
|
||||
|
||||
let jobs = [ (h,p,s)
|
||||
| ((h,p),_,Just s) <- holders
|
||||
, what == h
|
||||
, not (HM.member h wip)
|
||||
] & V.fromList
|
||||
|
||||
when ( V.null jobs ) $ next 0
|
||||
|
||||
let j = i `mod` V.length jobs
|
||||
let (h,p,s) = V.unsafeIndex jobs j
|
||||
worker <- readTVarIO pts <&> HM.lookup p
|
||||
|
||||
n <- maybe1 worker (pure 0) $ \(_,q) -> do
|
||||
atomically do
|
||||
modifyTVar _wip $ HM.insert what ()
|
||||
writeTQueue q (coerce h,s)
|
||||
pure 1
|
||||
|
||||
debug $ green "FOUND WORKER" <+> pretty p <+> pretty h
|
||||
pure n
|
||||
|
||||
when ( sum k == 0 ) do
|
||||
debug $ red "NOTHING"
|
||||
pause @'Seconds 0.1
|
||||
|
||||
ContT $ withAsync $ forever do
|
||||
polling (Polling 1 1) missChk $ \h -> do
|
||||
debug $ blue "CHECK MISSED BLOCKS" <+> pretty h
|
||||
-- debug $ blue "CHECK MISSED BLOCKS" <+> pretty h
|
||||
|
||||
missed <- findMissedBlocks sto h
|
||||
|
||||
|
@ -643,10 +1243,8 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
|
||||
atomically do
|
||||
for_ missed $ \hm -> modifyTVar blkQ (HPSQ.insert (coerce hm) 2 t0)
|
||||
if here then do
|
||||
when here do
|
||||
modifyTVar blkQ (HPSQ.delete (coerce h))
|
||||
else
|
||||
modifyTVar blkQ ( snd . HPSQ.alter shiftPrio h )
|
||||
|
||||
ContT $ withAsync (manageThreads pts)
|
||||
-- ContT $ withAsync (sizeQueryLoop pts rq down)
|
||||
|
@ -669,8 +1267,9 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
for_ pips $ \p -> do
|
||||
here <- readTVarIO pts <&> HM.member p
|
||||
unless here do
|
||||
a <- async $ peerDownloadLoop env p
|
||||
atomically $ modifyTVar pts (HM.insert p a)
|
||||
q <- newTQueueIO
|
||||
a <- async $ peerDownloadLoop p q
|
||||
atomically $ modifyTVar pts (HM.insert p (a,q))
|
||||
|
||||
debug $ "downloadDispatcher: knownPeer" <+> yellow (pretty p)
|
||||
|
||||
|
@ -679,7 +1278,7 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
|
||||
what <- for total $ \(p,a) -> do
|
||||
let pipExist = HS.member p pips
|
||||
stillAlive <- pollSTM a <&> isNothing
|
||||
stillAlive <- pollSTM (fst a) <&> isNothing
|
||||
|
||||
if pipExist && stillAlive then do
|
||||
pure $ Right (p,a)
|
||||
|
@ -690,26 +1289,22 @@ downloadDispatcher brains env = flip runContT pure do
|
|||
pure $ lefts what
|
||||
|
||||
for_ dead $ \(p,a) -> do
|
||||
cancel a
|
||||
cancel (fst a)
|
||||
debug $ red "terminating peer loop" <+> pretty p
|
||||
|
||||
pause @'Seconds 5
|
||||
|
||||
peerDownloadLoop env p = flip runContT pure do
|
||||
|
||||
sto <- withPeerM env getStorage
|
||||
|
||||
peerDownloadLoop p q = do
|
||||
bm <- liftIO $ newBurstMachine 0.5 256 (Just 50) 0.05 0.10
|
||||
|
||||
-- let blokz = atomically do
|
||||
-- d <- readTVar down <&> fromMaybe mempty . HM.lookup p
|
||||
-- pure $ HM.toList d
|
||||
|
||||
-- void $ ContT $ withAsync $ polling (Polling 1 1) blokz $ \h0 -> do
|
||||
-- debug $ "POLL BLOCK DOWNLOAD" <+> pretty h0
|
||||
|
||||
forever do
|
||||
pause @'Seconds 10
|
||||
debug $ yellow "Peer download loop" <+> pretty p
|
||||
(h,s) <- atomically $ readTQueue q
|
||||
bu <- getCurrentBurst bm
|
||||
blk <- downloadFromPeer (TimeoutSec 5) bu (KnownSize s) env (coerce h) p
|
||||
case blk of
|
||||
Left{} -> pure ()
|
||||
Right bs -> liftIO $ withPeerM env do
|
||||
let refs = extractBlockRefs h bs
|
||||
for_ refs $ \r -> do
|
||||
addDownload @e (Just (coerce h)) r
|
||||
|
||||
|
||||
|
|
|
@ -1197,7 +1197,7 @@ runPeer opts = respawnOnError opts $ do
|
|||
peerThread "pexLoop" (pexLoop @e brains tcp)
|
||||
|
||||
-- FIXME: new-download-loop
|
||||
peerThread "downloadDispatcher" (downloadDispatcher (SomeBrains brains) env)
|
||||
peerThread "downloadDispatcher" (downloadDispatcher2 (SomeBrains brains) env)
|
||||
|
||||
peerThread "fillPeerMeta" (fillPeerMeta tcp tcpProbeWait)
|
||||
|
||||
|
|
Loading…
Reference in New Issue