mirror of https://github.com/voidlizard/hbs2
656 lines
18 KiB
Haskell
656 lines
18 KiB
Haskell
{-# OPTIONS_GHC -fno-warn-orphans #-}
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{-# Language UndecidableInstances #-}
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{-# Language AllowAmbiguousTypes #-}
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{-# Language ImplicitParams #-}
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module BlockDownloadNew where
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import HBS2.Prelude.Plated
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import HBS2.Clock
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import HBS2.OrDie
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import HBS2.Data.Detect
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import HBS2.Hash
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import HBS2.Merkle
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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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import HBS2.Data.Types.Refs
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import HBS2.Actors.Peer
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import HBS2.Peer.Proto.Peer
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import HBS2.Peer.Proto.BlockInfo
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import HBS2.Peer.Proto.BlockChunks
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import HBS2.Peer.Brains
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import HBS2.Storage
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import HBS2.Storage.Operations.Missed
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import HBS2.Misc.PrettyStuff
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import HBS2.Clock
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import HBS2.Net.Auth.Schema
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import HBS2.Peer.RPC.Internal.Types
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import HBS2.Peer.RPC.API.Peer
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import HBS2.Net.Messaging.TCP
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import PeerTypes
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import PeerInfo
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import Control.Monad.Trans.Maybe
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import Control.Monad.Trans.Cont
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import Control.Concurrent.STM (flushTQueue,retry)
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import Data.Map qualified as Map
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import Data.Map (Map)
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import Data.HashPSQ qualified as HPSQ
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import Data.HashPSQ ( HashPSQ(..) )
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import Data.HashMap.Strict (HashMap)
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import Data.HashMap.Strict qualified as HM
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import Data.HashSet (HashSet)
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import Data.HashSet qualified as HS
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import Data.IntMap qualified as IntMap
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import Data.IntMap (IntMap)
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import Data.List.Split qualified as Split
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import Data.Text qualified as Text
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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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| UnknownPeerError (Peer e)
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| InternalError Int
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| PeerMissBlockError HashRef (Peer e)
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| PeerBlockHashMismatch (Peer e)
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| PeerRequestTimeout (Peer e)
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| Incomplete HashRef
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deriving stock (Generic,Typeable)
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instance Pretty (Peer e) => Show (DownloadError e) where
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show (DownloadStuckError h p) = show $ parens $ "DownloadStuck" <+> pretty h <+> pretty p
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show (UnknownPeerError p) = show $ parens $ "UnknownPeerError" <+> pretty p
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show (PeerMissBlockError h p) = show $ parens $ "PeerMissBlockError" <+> pretty h <+> pretty p
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show (PeerRequestTimeout p) = show $ parens $ "PeerRequestTimeout" <+> pretty p
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show (PeerBlockHashMismatch p) = show $ parens $ "PeerBlockHashMismatch" <+> pretty p
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show StorageError = show "StorageError"
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show (InternalError n) = show $ parens "InternalError" <+> pretty n
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show (Incomplete h) = show $ parens "Incomplete" <+> pretty h
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instance (Typeable e, Pretty (Peer e)) => Exception (DownloadError e)
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class BlockSizeCache e cache where
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cacheBlockSize :: forall m . MonadUnliftIO m
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=> cache
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-> PubKey 'Sign (Encryption e)
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-> Hash HbSync
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-> Integer
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-> m ()
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findBlockSize :: forall m . MonadUnliftIO m
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=> cache
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-> PubKey 'Sign (Encryption e)
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-> Hash HbSync
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-> m (Maybe Integer)
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instance BlockSizeCache e () where
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cacheBlockSize _ _ _ _ = pure ()
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findBlockSize _ _ _ = pure Nothing
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instance BlockSizeCache e (SomeBrains e) where
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cacheBlockSize = brainsCacheBlockSize @e
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findBlockSize = brainsFindBlockSize @e
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queryBlockSizeFromPeer :: forall e cache m . ( e ~ L4Proto
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, MonadUnliftIO m
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, BlockSizeCache e cache
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)
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=> cache
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-> PeerEnv e
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-> Hash HbSync
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-> Peer e
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-> m (Either (DownloadError e) (Maybe Integer))
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queryBlockSizeFromPeer cache e h peer = do
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what <- try @_ @(DownloadError e) $ liftIO $ withPeerM e do
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flip runContT pure $ callCC \exit -> do
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PeerData{..} <- lift $ find (KnownPeerKey peer) id
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>>= orThrow (UnknownPeerError peer)
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s <- lift $ findBlockSize @e cache _peerSignKey h
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debug $ "FOUND CACHED VALUE" <+> pretty h <+> pretty s
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maybe none (exit . Just) s
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lift do
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sizeQ <- newTQueueIO
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subscribe @e (BlockSizeEventKey peer) $ \case
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BlockSizeEvent (that, hx, sz) | hx == h -> do
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atomically $ writeTQueue sizeQ (Just sz)
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cacheBlockSize @e cache _peerSignKey h sz
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_ -> do
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atomically $ writeTQueue sizeQ Nothing
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request peer (GetBlockSize @e h)
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race ( pause defBlockInfoTimeout ) (atomically $ readTQueue sizeQ )
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>>= orThrow (PeerRequestTimeout peer)
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case what of
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Left{} -> pure $ Left (PeerRequestTimeout peer)
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Right x -> pure (Right x)
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data BurstMachine =
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BurstMachine
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{ _buTimeout :: Double
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, _buBurstMax :: Int
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, _buStepUp :: Double
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, _buStepDown :: Double
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, _buCurrent :: TVar Double
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, _buErrors :: TVar Int
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}
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burstMachineAddErrors :: MonadUnliftIO m => BurstMachine -> Int -> m ()
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burstMachineAddErrors BurstMachine{..} n =
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atomically $ modifyTVar _buErrors (+n)
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newBurstMachine :: MonadUnliftIO m
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=> Double -- ^ timeout
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-> Int -- ^ max burst
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-> Maybe Int -- ^ start burst
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-> Double -- ^ step up
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-> Double -- ^ step down
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-> m BurstMachine
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newBurstMachine t0 buMax buStart up' down' = do
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BurstMachine t0 buMax up down
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<$> newTVarIO bu0
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<*> newTVarIO 0
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where
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bu0 = realToFrac $ fromMaybe (max 2 (buMax `div` 2)) buStart
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down = min 0.85 down'
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up = min 0.5 up'
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getCurrentBurst :: MonadUnliftIO m => BurstMachine -> m Int
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getCurrentBurst BurstMachine{..} = readTVarIO _buCurrent <&> round
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runBurstMachine :: MonadUnliftIO m
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=> BurstMachine
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-> m ()
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runBurstMachine BurstMachine{..} = do
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bu0 <- readTVarIO _buCurrent <&> realToFrac
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let buMax = realToFrac _buBurstMax
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let down = _buStepDown
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let up = _buStepUp
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_dEdT <- newTVarIO 0.00
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_rates <- newTVarIO (mempty :: Map Double Double)
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_buMaxReal <- newTVarIO buMax
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pause @'Seconds (realToFrac _buTimeout)
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flip runContT pure do
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void $ ContT $ withAsync do
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forever do
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pause @'Seconds (realToFrac _buTimeout * 10)
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atomically do
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e <- headDef bu0 . Map.elems <$> readTVar _rates
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nrates <- readTVar _rates <&> take 100 . Map.toList
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writeTVar _rates (Map.fromList nrates)
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modifyTVar _buMaxReal (max e)
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void $ ContT $ withAsync do
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forever do
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pause @'Seconds 600
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atomically $ writeTVar _buMaxReal buMax
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void $ ContT $ withAsync do
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forever do
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pause @'Seconds (realToFrac _buTimeout * 2.0)
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ddt <- readTVarIO _dEdT
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when (ddt <= 0) do
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atomically do
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buMaxReal <- readTVar _buMaxReal
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current <- readTVar _buCurrent
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let new = min buMaxReal (current * (1.0 + up))
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writeTVar _buCurrent new
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flip fix 0 $ \next e1 -> do
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let dt = realToFrac _buTimeout
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eNew <- atomically do
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e2 <- readTVar _buErrors
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current <- readTVar _buCurrent
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new <- if e2 > e1 then do
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let d = max 2.0 (current * (1.0 - down))
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nrates <- readTVar _rates <&> drop 3 . Map.toList
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let newFucked = maybe d snd (headMay nrates)
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writeTVar _rates (Map.fromList nrates)
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pure newFucked
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else
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pure current -- $ min buMaxReal (current * (1.0 + up))
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writeTVar _buErrors 0
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writeTVar _buCurrent new
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let dedt = realToFrac (e2 - e1) / realToFrac dt
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writeTVar _dEdT (realToFrac dedt)
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modifyTVar _rates ( Map.insertWith max dedt current )
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pure e2
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pause @'Seconds dt
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next eNew
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data S =
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SInit
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| SFetchQ
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| SFetchPost (Hash HbSync) ByteString
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| SCheckBefore
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| SCheckAfter
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-- | downloads block with dependencies recursively
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downloadFromPeerRec :: forall e t cache m . ( e ~ L4Proto
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, MonadUnliftIO m
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, IsTimeout t
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, BlockSizeCache e cache
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)
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=> Timeout t
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-> Int
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-> cache
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-> PeerEnv e
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-> Hash HbSync
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-> Peer e
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-> m (Either (DownloadError e) ())
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downloadFromPeerRec t bu0 cache env h0 peer = do
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sto <- withPeerM env getStorage
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p <- newTQueueIO
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q <- newTQueueIO
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qq <- newTQueueIO
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toq <- newTVarIO ( mempty :: [Int] )
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bm <- newBurstMachine 0.5 256 (Just bu0) 0.05 0.10
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flip runContT pure do
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ContT $ withAsync $ forever do
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join $ atomically (readTQueue p)
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ContT $ withAsync $ forever do
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h <- atomically (readTQueue qq)
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void $ queryBlockSizeFromPeer cache env h peer
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pause @'Seconds 1.5
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ContT $ withAsync $ flip fix 10000000 $ \next m0 -> do
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txs <- readTVarIO toq <&> L.take 1000
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let m1 = fromMaybe m0 $ median txs
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when ( m1 > m0 ) $ burstMachineAddErrors bm 1
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pause @'Seconds 3
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next m1
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ContT $ withAsync $ runBurstMachine bm
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flip fix SInit $ \next -> \case
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SInit -> do
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debug "SInit"
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atomically $ writeTQueue q h0
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next SCheckBefore
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SCheckBefore -> do
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here <- hasBlock sto h0 <&> isJust
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if here then next SCheckAfter else next SFetchQ
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SFetchQ -> do
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debug "SFetchQ"
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done <- atomically do
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pe <- isEmptyTQueue p
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qe <- isEmptyTQueue q
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when (qe && not pe) retry
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-- when (not pe) retry
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pure qe
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if done then
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next SCheckAfter
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else do
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h <- atomically $ readTQueue q
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mbs <- getBlock sto h
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case mbs of
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Just bs -> next (SFetchPost h bs)
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Nothing -> none
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bu <- lift $ getCurrentBurst bm
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t0 <- getTimeCoarse
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w <- lift $ downloadFromPeer t bu cache env (coerce h) peer
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t1 <- getTimeCoarse
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let dt = toMicroSeconds $ TimeoutTS (t1 - t0)
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atomically $ modifyTVar toq ( dt : )
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case w of
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Right bs -> do
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next (SFetchPost h bs)
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Left e -> do
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lift $ burstMachineAddErrors bm 1
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err $ "DOWNLOAD ERROR" <+> viaShow e
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next SFetchQ
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SFetchPost h bs -> do
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debug $ "SFetchPost" <+> pretty h
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let parse = do
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let refs = extractBlockRefs h bs
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atomically $ mapM_ (writeTQueue q . coerce) refs
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mapM_ (atomically . writeTQueue qq . coerce) refs
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atomically $ writeTQueue p parse
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next SFetchQ
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SCheckAfter -> do
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debug "SCheckAfter"
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missed <- findMissedBlocks sto (HashRef h0)
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mapM_ (atomically . writeTQueue q . coerce) missed
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mapM_ (atomically . writeTQueue qq . coerce) missed
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unless (L.null missed) $ next SFetchQ
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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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, BlockSizeCache e cache
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)
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=> Timeout t
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-> Int
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-> cache
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-> PeerEnv e
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-> Hash HbSync
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-> Peer e
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-> m (Either (DownloadError e) ByteString)
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downloadFromPeer t bu cache env h peer = liftIO $ withPeerM env do
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pd@PeerData{..} <- find (KnownPeerKey peer) id
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>>= orThrow (UnknownPeerError peer)
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pinfo <- find (PeerInfoKey peer) id
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>>= orThrow (UnknownPeerError peer)
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rtt <- liftIO $ medianPeerRTT pinfo
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<&> fmap ((*1) . realToFrac)
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<&> fromMaybe 1000
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<&> (/1e6)
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let waity = 10 * rtt
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sto <- getStorage
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let chunkSize = defChunkSize
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flip runContT pure $ callCC \exit -> do
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size <- lift (findBlockSize @e cache _peerSignKey h)
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>>= maybe (queryBlockSize exit) pure
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coo <- genCookie (peer,h)
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let key = DownloadSessionKey (peer, coo)
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down@BlockDownload{..} <- newBlockDownload h
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let chuQ = _sBlockChunks
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let new = set sBlockChunkSize chunkSize
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. set sBlockSize (fromIntegral size)
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$ down
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lift $ update @e new key id
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let offsets = calcChunks size (fromIntegral chunkSize) :: [(Offset, Size)]
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let chunkNums = [ 0 .. pred (length offsets) ]
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let bursts = calcBursts bu chunkNums
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callCC $ \exit2 -> do
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_wx <- newTVarIO waity
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for_ bursts $ \(i,chunkN) -> do
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-- atomically $ flushTQueue chuQ
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let req = BlockChunks @e coo (BlockGetChunks h chunkSize (fromIntegral i) (fromIntegral chunkN))
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lift $ request peer req
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-- pause @'MilliSeconds ( rtt * 0.01 )
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t0 <- getTimeCoarse
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let watchdog = fix \next -> do
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wx <- readTVarIO _wx <&> realToFrac
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-- debug $ "WATCHDOG" <+> pretty wx <+> pretty waity
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r <- race (pause @'MilliSeconds (min wx waity)) do
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void $ atomically $ readTQueue chuQ
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either (const none) (const next) r
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r <- liftIO $ race watchdog do
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atomically do
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pieces <- readTVar _sBlockChunks2
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let done = and [ IntMap.member j pieces | j <- [i .. i + chunkN-1] ]
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unless done retry -- $ pause @'MilliSeconds ( 0.25 * rtt ) >> next
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atomically $ flushTQueue chuQ
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t1 <- getTimeCoarse
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atomically do
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wx0 <- readTVar _wx
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let wx1 = realToFrac (t1 - t0) * 100 / 1e6 -- millis
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writeTVar _wx wx1
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case r of
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Left{} -> exit2 (Left $ DownloadStuckError (HashRef h) peer)
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_ -> pure ()
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blk <- readTVarIO _sBlockChunks2
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let rs = LBS.concat $ IntMap.elems blk
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ha <- enqueueBlock sto rs
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-- let ha = Just $ hashObject @HbSync rs
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lift $ expire @e key
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case ha of
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Nothing -> pure $ Left StorageError
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Just h1 | h1 == h -> do
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pure $ Right rs
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Just h1 -> do
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delBlock sto h1
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pure $ Left (PeerBlockHashMismatch peer)
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where
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queryBlockSize exit = do
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what <- lift $ queryBlockSizeFromPeer cache env h peer
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case what of
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Left{} -> exit (Left (PeerRequestTimeout peer))
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Right Nothing -> exit (Left (PeerMissBlockError (HashRef h) peer))
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Right (Just s) -> pure s
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data S1 =
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S1Init
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| S1QuerySize (Hash HbSync)
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| S1CheckMissed (Hash HbSync)
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data S2 =
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S2Init (Hash HbSync)
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| S2CheckBlock1 (Hash HbSync) ByteString
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| S2CheckBlock2 (Hash HbSync)
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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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downloadDispatcher :: 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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downloadDispatcher brains env = flip runContT pure do
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let t0 = 10.00
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pts <- newTVarIO ( mempty :: HashMap (Peer e) (Async (), TQueue (Hash HbSync,Integer)) )
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let seenLimit = 1000
|
|
|
|
blkQ <- newTVarIO ( HPSQ.empty :: HashPSQ HashRef Int NominalDiffTime )
|
|
|
|
sto <- withPeerM env getStorage
|
|
|
|
work <- newTQueueIO
|
|
|
|
ContT $ bracket none $ const do
|
|
readTVarIO pts >>= mapM_ (cancel . fst)
|
|
atomically $ writeTVar pts mempty
|
|
|
|
liftIO $ withPeerM env do
|
|
subscribe @e DownloadReqKey $ \(DownloadReqData h) -> do
|
|
now <- getTimeCoarse
|
|
here <- hasBlock sto h <&> isJust
|
|
already <- readTVarIO blkQ <&> HPSQ.member (HashRef h)
|
|
unless (here || already) do
|
|
atomically $ modifyTVar blkQ (HPSQ.insert (HashRef h) 1 10)
|
|
debug $ green "New download request" <+> pretty h
|
|
|
|
ContT $ withAsync $ manageThreads pts
|
|
|
|
|
|
ContT $ withAsync do
|
|
let sq = readTVarIO blkQ <&> fmap (\(a,_,b) -> (a,b)) . HPSQ.toList
|
|
polling (Polling 1 1) sq $ \h -> do
|
|
pips <- readTVarIO pts <&> HM.keys
|
|
forConcurrently_ pips $ \p -> do
|
|
s <- queryBlockSizeFromPeer brains env (coerce h) p
|
|
case s of
|
|
Right x -> debug $ red "GOT SIZE FOR BLOCK" <+> pretty h <+> pretty x <+> pretty p
|
|
_ -> none
|
|
|
|
forever do
|
|
pause @'Seconds 10
|
|
size <- atomically $ readTVar blkQ <&> HPSQ.size
|
|
debug $ yellow $ "I'm download dispatcher"
|
|
debug $ yellow $ "wip:" <+> pretty size
|
|
|
|
where
|
|
|
|
manageThreads pts = withPeerM env $ forever do
|
|
pips <- getKnownPeers @e <&> HS.fromList
|
|
|
|
for_ pips $ \p -> do
|
|
here <- readTVarIO pts <&> HM.member p
|
|
unless here do
|
|
q <- newTQueueIO
|
|
a <- async $ peerDownloadLoop p q
|
|
atomically $ modifyTVar pts (HM.insert p (a,q))
|
|
|
|
debug $ "downloadDispatcher: knownPeer" <+> yellow (pretty p)
|
|
|
|
dead <- atomically do
|
|
total <- readTVar pts <&> HM.toList
|
|
|
|
what <- for total $ \(p,a) -> do
|
|
let pipExist = HS.member p pips
|
|
stillAlive <- pollSTM (fst a) <&> isNothing
|
|
|
|
if pipExist && stillAlive then do
|
|
pure $ Right (p,a)
|
|
else
|
|
pure $ Left (p,a)
|
|
|
|
writeTVar pts (HM.fromList (rights what))
|
|
pure $ lefts what
|
|
|
|
for_ dead $ \(p,a) -> do
|
|
cancel (fst a)
|
|
debug $ red "terminating peer loop" <+> pretty p
|
|
|
|
pause @'Seconds 5
|
|
|
|
peerDownloadLoop p q = do
|
|
bm <- liftIO $ newBurstMachine 0.5 256 (Just 50) 0.05 0.10
|
|
forever do
|
|
(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
|
|
|
|
|