scale request timeout with speedup and pass it directly to function
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@ -65,6 +65,8 @@ readConfig = do
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, confJoinAttemptsInterval = 60 * 10^6 `div` speedup
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, confMaxNodeCacheAge = 600 / fromIntegral speedup
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, confResponsePurgeAge = 60 / fromIntegral speedup
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, confRequestTimeout = 5 * 10^6 `div` speedup
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, confRequestRetries = 3
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}
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sConf = ServiceConf {
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confSubscriptionExpiryTime = fromIntegral $ 2*3600 `div` speedup
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@ -488,10 +488,11 @@ requestJoin :: (NodeState a, Service s (RealNodeSTM s)) => a -- ^ cu
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requestJoin toJoinOn ownStateSTM = do
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ownState <- readTVarIO ownStateSTM
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prn <- readTVarIO $ parentRealNode ownState
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srcAddr <- confIP . nodeConfig <$> readTVarIO (parentRealNode ownState)
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nodeConf <- nodeConfig <$> readTVarIO (parentRealNode ownState)
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let srcAddr = confIP nodeConf
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bracket (mkSendSocket srcAddr (getDomain toJoinOn) (getDhtPort toJoinOn)) close (\sock -> do
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-- extract own state for getting request information
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responses <- sendRequestTo (\rid -> Request rid (toRemoteNodeState ownState) 1 True Join (Just JoinRequestPayload)) sock
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responses <- sendRequestTo (confRequestTimeout nodeConf) (confRequestRetries nodeConf) (\rid -> Request rid (toRemoteNodeState ownState) 1 True Join (Just JoinRequestPayload)) sock
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(cacheInsertQ, joinedState) <- atomically $ do
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stateSnap <- readTVar ownStateSTM
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let
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@ -584,10 +585,11 @@ sendQueryIdMessages targetID ns lParam targets = do
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-- create connected sockets to all query targets and use them for request handling
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srcAddr <- confIP . nodeConfig <$> readTVarIO (parentRealNode ns)
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nodeConf <- nodeConfig <$> readTVarIO (parentRealNode ns)
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let srcAddr = confIP nodeConf
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-- ToDo: make attempts and timeout configurable
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queryThreads <- mapM (\resultNode -> async $ bracket (mkSendSocket srcAddr (getDomain resultNode) (getDhtPort resultNode)) close (
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sendRequestTo (lookupMessage targetID ns Nothing)
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sendRequestTo (confRequestTimeout nodeConf) (confRequestRetries nodeConf) (lookupMessage targetID ns Nothing)
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)) targets
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-- ToDo: process results immediately instead of waiting for the last one to finish, see https://stackoverflow.com/a/38815224/9198613
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-- ToDo: exception handling, maybe log them
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@ -635,8 +637,9 @@ requestStabilise :: LocalNodeState s -- ^ sending node
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-> RemoteNodeState -- ^ neighbour node to send to
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-> IO (Either String ([RemoteNodeState], [RemoteNodeState])) -- ^ (predecessors, successors) of responding node
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requestStabilise ns neighbour = do
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srcAddr <- confIP . nodeConfig <$> readTVarIO (parentRealNode ns)
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responses <- bracket (mkSendSocket srcAddr (getDomain neighbour) (getDhtPort neighbour)) close (fmap Right . sendRequestTo (\rid ->
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nodeConf <- nodeConfig <$> readTVarIO (parentRealNode ns)
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let srcAddr = confIP nodeConf
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responses <- bracket (mkSendSocket srcAddr (getDomain neighbour) (getDhtPort neighbour)) close (fmap Right . sendRequestTo (confRequestTimeout nodeConf) (confRequestRetries nodeConf) (\rid ->
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Request {
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requestID = rid
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, sender = toRemoteNodeState ns
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@ -673,13 +676,14 @@ requestLeave :: LocalNodeState s
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-> RemoteNodeState -- target node
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-> IO (Either String ()) -- error or success
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requestLeave ns doMigration target = do
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srcAddr <- confIP . nodeConfig <$> readTVarIO (parentRealNode ns)
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let leavePayload = LeaveRequestPayload {
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nodeConf <- nodeConfig <$> readTVarIO (parentRealNode ns)
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let srcAddr = confIP nodeConf
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leavePayload = LeaveRequestPayload {
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leaveSuccessors = successors ns
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, leavePredecessors = predecessors ns
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, leaveDoMigration = doMigration
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}
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responses <- bracket (mkSendSocket srcAddr (getDomain target) (getDhtPort target)) close (fmap Right . sendRequestTo (\rid ->
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responses <- bracket (mkSendSocket srcAddr (getDomain target) (getDhtPort target)) close (fmap Right . sendRequestTo (confRequestTimeout nodeConf) (confRequestRetries nodeConf) (\rid ->
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Request {
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requestID = rid
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, sender = toRemoteNodeState ns
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@ -701,10 +705,11 @@ requestPing :: LocalNodeState s -- ^ sending node
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-> RemoteNodeState -- ^ node to be PINGed
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-> IO (Either String [RemoteNodeState]) -- ^ all active vServers of the pinged node
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requestPing ns target = do
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srcAddr <- confIP . nodeConfig <$> readTVarIO (parentRealNode ns)
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nodeConf <- nodeConfig <$> readTVarIO (parentRealNode ns)
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let srcAddr = confIP nodeConf
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responses <- bracket (mkSendSocket srcAddr (getDomain target) (getDhtPort target)) close
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(\sock -> do
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resp <- sendRequestTo (\rid ->
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resp <- sendRequestTo (confRequestTimeout nodeConf) (confRequestRetries nodeConf) (\rid ->
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Request {
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requestID = rid
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, sender = toRemoteNodeState ns
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@ -740,22 +745,14 @@ requestPing ns target = do
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) responses
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-- | 'sendRequestToWithParams' with default timeout and retries already specified.
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-- Generic function for sending a request over a connected socket and collecting the response.
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-- Serialises the message and tries to deliver its parts for a number of attempts within a default timeout.
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sendRequestTo :: (Integer -> FediChordMessage) -- ^ the message to be sent, still needing a requestID
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-> Socket -- ^ connected socket to use for sending
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-> IO (Set.Set FediChordMessage) -- ^ responses
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sendRequestTo = sendRequestToWithParams 5000 3
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-- | Generic function for sending a request over a connected socket and collecting the response.
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-- Serialises the message and tries to deliver its parts for a number of attempts within a specified timeout.
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sendRequestToWithParams :: Int -- ^ timeout in milliseconds
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-> Int -- ^ number of retries
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-> (Integer -> FediChordMessage) -- ^ the message to be sent, still needing a requestID
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-> Socket -- ^ connected socket to use for sending
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-> IO (Set.Set FediChordMessage) -- ^ responses
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sendRequestToWithParams timeoutMillis numAttempts msgIncomplete sock = do
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sendRequestTo :: Int -- ^ timeout in milliseconds
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-> Int -- ^ number of retries
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-> (Integer -> FediChordMessage) -- ^ the message to be sent, still needing a requestID
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-> Socket -- ^ connected socket to use for sending
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-> IO (Set.Set FediChordMessage) -- ^ responses
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sendRequestTo timeoutMillis numAttempts msgIncomplete sock = do
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-- give the message a random request ID
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randomID <- randomRIO (0, 2^32-1)
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let
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@ -764,7 +761,7 @@ sendRequestToWithParams timeoutMillis numAttempts msgIncomplete sock = do
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-- create a queue for passing received response messages back, even after a timeout
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responseQ <- newTBQueueIO $ 2*maximumParts -- keep room for duplicate packets
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-- start sendAndAck with timeout
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attempts numAttempts . timeout (timeoutMillis*1000) $ sendAndAck responseQ sock requests
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_ <- attempts numAttempts . timeout (timeoutMillis*1000) $ sendAndAck responseQ sock requests
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-- after timeout, check received responses, delete them from unacked message set/ map and rerun senAndAck with that if necessary.
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recvdParts <- atomically $ flushTBQueue responseQ
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pure $ Set.fromList recvdParts
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@ -223,10 +223,11 @@ tryBootstrapJoining nsSTM = do
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bootstrapQueryId :: LocalNodeStateSTM s -> (String, PortNumber) -> NodeID -> IO (Either String RemoteNodeState)
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bootstrapQueryId nsSTM (bootstrapHost, bootstrapPort) targetID = do
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ns <- readTVarIO nsSTM
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srcAddr <- confIP . nodeConfig <$> readTVarIO (parentRealNode ns)
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nodeConf <- nodeConfig <$> readTVarIO (parentRealNode ns)
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let srcAddr = confIP nodeConf
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bootstrapResponse <- bracket (mkSendSocket srcAddr bootstrapHost bootstrapPort) close (
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-- Initialise an empty cache only with the responses from a bootstrapping node
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fmap Right . sendRequestTo (lookupMessage targetID ns Nothing)
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fmap Right . sendRequestTo (confRequestTimeout nodeConf) (confRequestRetries nodeConf) (lookupMessage targetID ns Nothing)
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)
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`catch` (\e -> pure . Left $ "Error at bootstrap QueryId: " <> displayException (e :: IOException))
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@ -423,6 +423,10 @@ data FediChordConf = FediChordConf
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-- ^ maximum age of entries in the node cache, in milliseconds
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, confResponsePurgeAge :: POSIXTime
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-- ^ maximum age of message parts in response part cache, in seconds
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, confRequestTimeout :: Int
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-- ^ how long to wait until response has arrived, in milliseconds
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, confRequestRetries :: Int
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-- ^ how often re-sending a timed-out request can be retried
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}
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deriving (Show, Eq)
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