mirror of
https://github.com/unclechu/gRPC-haskell.git
synced 2024-11-23 03:29:42 +01:00
Fixes a concurrency bug wherein a thread (running beyond the maximum number of
pluckers) would register a CQ notification via grpc_server_request_registered_call prior to obtaining pluck permission, block on acquiring such permission, and thus miss notification of the server call. The bug can could be witnessed with particular interleavings by ensuring that GRPC_MAX_COMPLETION_QUEUE_PLUCKERS server threads are blocked on their own server call notifications, and then using the (GRPC_MAX_COMPLETION_QUEUE_PLUCKERS+1)th server thread to attempt to block on a notification for an additional server call. In order to fix this, we simply extended the pluck permission held window for serverRequestCall, and created a variant of pluck (called pluck') which assumes permission to pluck is already held by the calling thread.
This commit is contained in:
parent
96d12c1e6c
commit
72160cea89
5 changed files with 136 additions and 111 deletions
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@ -1,25 +1,21 @@
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{-# LANGUAGE LambdaCase #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# LANGUAGE LambdaCase #-}
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{-# LANGUAGE OverloadedStrings #-}
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{-# OPTIONS_GHC -fno-warn-missing-signatures #-}
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{-# OPTIONS_GHC -fno-warn-unused-binds #-}
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import Control.Monad
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import Network.GRPC.LowLevel
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import Network.GRPC.LowLevel.Call
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import qualified Network.GRPC.LowLevel.Client.Unregistered as U
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import System.Environment
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echoMethod = MethodName "/echo.Echo/DoEcho"
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unregistered c = do
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U.clientRequest c echoMethod 1 "hi" mempty
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_unregistered c = U.clientRequest c echoMethod 1 "hi" mempty
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registered c = do
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meth <- clientRegisterMethod c echoMethod Normal
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clientRequest c meth 1 "hi" mempty
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run f = withGRPC $ \g -> withClient g (ClientConfig "localhost" 50051 []) $ \c ->
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f c >>= \case
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main = withGRPC $ \g ->
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withClient g (ClientConfig "localhost" 50051 []) $ \c -> do
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rm <- clientRegisterMethod c echoMethod Normal
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replicateM_ 100000 $ clientRequest c rm 5 "hi" mempty >>= \case
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Left e -> error $ "Got client error: " ++ show e
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_ -> return ()
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main = replicateM_ 100 $ run $
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registered
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@ -5,10 +5,12 @@
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{-# OPTIONS_GHC -fno-warn-missing-signatures #-}
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{-# OPTIONS_GHC -fno-warn-unused-binds #-}
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import Control.Concurrent.Async (async, wait)
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import Control.Monad (forever)
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import Control.Concurrent
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import Control.Concurrent.Async
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import Control.Monad
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import Data.ByteString (ByteString)
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import Network.GRPC.LowLevel
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import Network.GRPC.LowLevel.Call
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import qualified Network.GRPC.LowLevel.Server.Unregistered as U
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import qualified Network.GRPC.LowLevel.Call.Unregistered as U
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@ -44,14 +46,18 @@ regMain = withGRPC $ \grpc -> do
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Left x -> putStrLn $ "registered call result error: " ++ show x
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Right _ -> return ()
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-- | loop to fork n times
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tputStrLn x = do
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tid <- myThreadId
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putStrLn $ "[" ++ show tid ++ "]: " ++ x
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regLoop :: Server -> RegisteredMethod 'Normal -> IO ()
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regLoop server method = forever $ do
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-- tputStrLn "about to block on call handler"
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result <- serverHandleNormalCall server method serverMeta $
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\_call reqBody _reqMeta -> return (reqBody, serverMeta, StatusOk,
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StatusDetails "")
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\_call reqBody _reqMeta ->
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return (reqBody, serverMeta, StatusOk, StatusDetails "")
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case result of
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Left x -> putStrLn $ "registered call result error: " ++ show x
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Left x -> error $! "registered call result error: " ++ show x
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Right _ -> return ()
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regMainThreaded :: IO ()
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@ -60,11 +66,10 @@ regMainThreaded = do
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let methods = [(MethodName "/echo.Echo/DoEcho", Normal)]
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withServer grpc (ServerConfig "localhost" 50051 methods []) $ \server -> do
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let method = head (normalMethods server)
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tid1 <- async $ regLoop server method
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tid2 <- async $ regLoop server method
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wait tid1
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wait tid2
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return ()
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tids <- replicateM 7 $ async $ do tputStrLn "starting handler"
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regLoop server method
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waitAnyCancel tids
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tputStrLn "finishing"
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main :: IO ()
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main = regMainThreaded
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@ -10,11 +10,12 @@
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-- implementation details to both are kept in
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-- `Network.GRPC.LowLevel.CompletionQueue.Internal`.
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{-# LANGUAGE LambdaCase #-}
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{-# LANGUAGE MultiWayIf #-}
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{-# LANGUAGE RecordWildCards #-}
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{-# LANGUAGE LambdaCase #-}
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{-# LANGUAGE MultiWayIf #-}
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{-# LANGUAGE PolyKinds #-}
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{-# LANGUAGE RecordWildCards #-}
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{-# LANGUAGE ScopedTypeVariables #-}
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{-# LANGUAGE TupleSections #-}
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{-# LANGUAGE TupleSections #-}
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module Network.GRPC.LowLevel.CompletionQueue
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( CompletionQueue
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@ -33,31 +34,34 @@ module Network.GRPC.LowLevel.CompletionQueue
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)
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where
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import Control.Concurrent.STM (atomically, check)
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import Control.Concurrent.STM.TVar (newTVarIO, readTVar,
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writeTVar)
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import Control.Exception (bracket)
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import Control.Monad.Trans.Class (MonadTrans(lift))
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import Control.Monad.Trans.Except
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import Control.Monad (liftM2)
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import Control.Concurrent.STM (atomically,
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check)
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import Control.Concurrent.STM.TVar (newTVarIO,
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readTVar,
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writeTVar)
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import Control.Exception (bracket)
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import Control.Monad (liftM2)
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import Control.Monad.Managed
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import Data.IORef (newIORef)
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import Data.List (intersperse)
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import Foreign.Marshal.Alloc (free, malloc)
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import Foreign.Ptr (Ptr, nullPtr)
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import Foreign.Storable (Storable, peek)
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import qualified Network.GRPC.Unsafe as C
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import qualified Network.GRPC.Unsafe.Constants as C
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import qualified Network.GRPC.Unsafe.Metadata as C
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import qualified Network.GRPC.Unsafe.Op as C
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import qualified Network.GRPC.Unsafe.Time as C
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import System.Clock (getTime, Clock(..))
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import System.Timeout (timeout)
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import Control.Monad.Trans.Class (MonadTrans (lift))
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import Control.Monad.Trans.Except
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import Data.IORef (newIORef)
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import Data.List (intersperse)
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import Foreign.Marshal.Alloc (free, malloc)
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import Foreign.Ptr (Ptr, nullPtr)
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import Foreign.Storable (Storable, peek)
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import qualified Network.GRPC.Unsafe as C
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import qualified Network.GRPC.Unsafe.Constants as C
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import qualified Network.GRPC.Unsafe.Metadata as C
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import qualified Network.GRPC.Unsafe.Op as C
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import qualified Network.GRPC.Unsafe.Time as C
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import System.Clock (Clock (..),
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getTime)
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import System.Timeout (timeout)
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import Network.GRPC.LowLevel.Call
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import Network.GRPC.LowLevel.GRPC
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import Network.GRPC.LowLevel.CompletionQueue.Internal
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import qualified Network.GRPC.Unsafe.ByteBuffer as C
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import Network.GRPC.LowLevel.GRPC
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import qualified Network.GRPC.Unsafe.ByteBuffer as C
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withCompletionQueue :: GRPC -> (CompletionQueue -> IO a) -> IO a
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withCompletionQueue grpc = bracket (createCompletionQueue grpc)
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withPermission Push cq $ fmap throwIfCallError $ do
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grpcDebug $ "startBatch: calling grpc_call_start_batch with pointers: "
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++ show call ++ " " ++ show opArray
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grpcDebug "About to enter grpc_call_start_batch"
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res <- C.grpcCallStartBatch call opArray opArraySize tag C.reserved
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grpcDebug "Returned from grpc_call_start_batch"
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grpcDebug "startBatch: grpc_call_start_batch call returned."
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return res
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shutdownCompletionQueue :: CompletionQueue -> IO (Either GRPCIOError ())
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shutdownCompletionQueue CompletionQueue{..} = do
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atomically $ writeTVar shuttingDown True
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atomically $ readTVar currentPushers >>= \x -> check (x == 0)
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atomically $ readTVar currentPluckers >>= \x -> check (x == 0)
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atomically $ do
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readTVar currentPushers >>= check . (==0)
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readTVar currentPluckers >>= check . (==0)
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--drain the queue
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C.grpcCompletionQueueShutdown unsafeCQ
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loopRes <- timeout (5*10^(6::Int)) drainLoop
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-> CompletionQueue
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-> RegisteredMethod mt
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-> IO (Either GRPCIOError ServerCall)
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serverRequestCall s cq@CompletionQueue{.. } RegisteredMethod{..} =
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serverRequestCall s cq@CompletionQueue{.. } rm =
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-- NB: The method type dictates whether or not a payload is present, according
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-- to the payloadHandling function. We do not allocate a buffer for the
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-- payload when it is not present.
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withPermission Push cq . with allocs $ \(dead, call, pay, meta) -> do
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md <- peek meta
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tag <- newTag cq
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dbug $ "tag is " ++ show tag
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ce <- C.grpcServerRequestRegisteredCall s methodHandle call
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dead md pay unsafeCQ unsafeCQ tag
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dbug $ "callError: " ++ show ce
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runExceptT $ case ce of
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C.CallOk -> do
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ExceptT $ do
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r <- pluck cq tag Nothing
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dbug $ "pluck finished:" ++ show r
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return r
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lift $
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ServerCall
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<$> peek call
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<*> C.getAllMetadataArray md
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<*> (if havePay then toBS pay else return Nothing)
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<*> liftM2 (+) (getTime Monotonic) (C.timeSpec <$> peek dead)
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-- gRPC gives us a deadline that is just a delta, so we convert it
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-- to a proper deadline.
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_ -> throwE (GRPCIOCallError ce)
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dbug "pre-pluck block"
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withPermission Pluck cq $ do
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md <- peek meta
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tag <- newTag cq
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dbug $ "got pluck permission, registering call for tag=" ++ show tag
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ce <- C.grpcServerRequestRegisteredCall s (methodHandle rm) call dead md pay unsafeCQ unsafeCQ tag
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runExceptT $ case ce of
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C.CallOk -> do
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ExceptT $ do
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r <- pluck' cq tag Nothing
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dbug $ "pluck' finished:" ++ show r
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return r
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lift $
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ServerCall
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<$> peek call
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<*> C.getAllMetadataArray md
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<*> (if havePay then toBS pay else return Nothing)
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<*> liftM2 (+) (getTime Monotonic) (C.timeSpec <$> peek dead)
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-- gRPC gives us a deadline that is just a delta, so we convert
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-- it to a proper deadline.
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_ -> do
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lift $ dbug $ "Throwing callError: " ++ show ce
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throwE (GRPCIOCallError ce)
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where
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allocs = (,,,) <$> ptr <*> ptr <*> pay <*> md
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where
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ptr :: forall a. Storable a => Managed (Ptr a)
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ptr = managed (bracket malloc free)
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dbug = grpcDebug . ("serverRequestCall(R): " ++)
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havePay = payloadHandling methodType /= C.SrmPayloadNone
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havePay = payloadHandling (methodType rm) /= C.SrmPayloadNone
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toBS p = peek p >>= \bb@(C.ByteBuffer rawPtr) ->
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if | rawPtr == nullPtr -> return Nothing
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| otherwise -> Just <$> C.copyByteBufferToByteString bb
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@ -3,8 +3,11 @@
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module Network.GRPC.LowLevel.CompletionQueue.Internal where
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import Control.Concurrent.STM (atomically, retry)
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import Control.Concurrent.STM.TVar (TVar, modifyTVar', readTVar)
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import Control.Concurrent.STM.TVar (TVar, modifyTVar', readTVar,
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writeTVar)
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import Control.Monad.IO.Class
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import Control.Exception (bracket)
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import Control.Monad
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import Data.IORef (IORef, atomicModifyIORef')
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import Foreign.Ptr (nullPtr, plusPtr)
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import Network.GRPC.LowLevel.GRPC
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import qualified Network.GRPC.Unsafe.Constants as C
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import qualified Network.GRPC.Unsafe.Time as C
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import Debug.Trace
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-- NOTE: the concurrency requirements for a CompletionQueue are a little
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-- complicated. There are two read operations: next and pluck. We can either
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-- call next on a CQ or call pluck up to 'maxCompletionQueuePluckers' times
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-- | Safely brackets an operation that pushes work onto or plucks results from
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-- the given 'CompletionQueue'.
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withPermission :: CQOpType
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-> CompletionQueue
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-> IO (Either GRPCIOError a)
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-> IO (Either GRPCIOError a)
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withPermission op cq f =
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bracket acquire release doOp
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where acquire = atomically $ do
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isShuttingDown <- readTVar (shuttingDown cq)
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if isShuttingDown
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then return False
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else do currCount <- readTVar $ getCount op cq
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if currCount < getLimit op
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then modifyTVar' (getCount op cq) (+1) >> return True
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else retry
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doOp gotResource = if gotResource
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then f
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else return $ Left GRPCIOShutdown
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release gotResource =
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if gotResource
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then atomically $ modifyTVar' (getCount op cq) (subtract 1)
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else return ()
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-> CompletionQueue
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-> IO (Either GRPCIOError a)
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-> IO (Either GRPCIOError a)
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withPermission op cq act = bracket acquire release doOp
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where
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acquire = atomically $ do
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isShuttingDown <- readTVar (shuttingDown cq)
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if isShuttingDown
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then return False
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else do currCount <- readTVar (getCount op cq)
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if currCount < getLimit op
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then do
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writeTVar (getCount op cq) (currCount+1)
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return True
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else retry
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doOp gotResource =
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if gotResource then act else return (Left GRPCIOShutdown)
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release gotResource = when gotResource $
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atomically $ modifyTVar' (getCount op cq) (subtract 1)
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-- | Waits for the given number of seconds for the given tag to appear on the
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-- completion queue. Throws 'GRPCIOShutdown' if the completion queue is shutting
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-- 'serverRequestCall', this will block forever unless a timeout is given.
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pluck :: CompletionQueue -> C.Tag -> Maybe TimeoutSeconds
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-> IO (Either GRPCIOError ())
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pluck cq@CompletionQueue{..} tag waitSeconds = do
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grpcDebug $ "pluck: called with tag: " ++ show tag
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++ " and wait: " ++ show waitSeconds
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withPermission Pluck cq $
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case waitSeconds of
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Nothing -> C.withInfiniteDeadline go
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Just seconds -> C.withDeadlineSeconds seconds go
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where go deadline = do
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ev <- C.grpcCompletionQueuePluck unsafeCQ tag deadline C.reserved
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grpcDebug $ "pluck: finished. Event: " ++ show ev
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return $ if isEventSuccessful ev then Right () else eventToError ev
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pluck cq@CompletionQueue{..} tag mwait = do
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grpcDebug $ "pluck: called with tag=" ++ show tag ++ ",mwait=" ++ show mwait
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withPermission Pluck cq $ pluck' cq tag mwait
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-- Variant of pluck' which assumes pluck permission has been granted.
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pluck' :: CompletionQueue
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-> C.Tag
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-> Maybe TimeoutSeconds
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-> IO (Either GRPCIOError ())
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pluck' CompletionQueue{..} tag mwait =
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maybe C.withInfiniteDeadline C.withDeadlineSeconds mwait $ \dead -> do
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grpcDebug $ "pluck: blocking on grpc_completion_queue_pluck for tag=" ++ show tag
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ev <- C.grpcCompletionQueuePluck unsafeCQ tag dead C.reserved
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grpcDebug $ "pluck finished: " ++ show ev
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return $ if isEventSuccessful ev then Right () else eventToError ev
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-- | Translate 'C.Event' to an error. The caller is responsible for ensuring
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-- that the event actually corresponds to an error condition; a successful event
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maxWorkPushers = 100 --TODO: figure out what this should be.
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getCount :: CQOpType -> CompletionQueue -> TVar Int
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getCount Push = currentPushers
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getCount Push = currentPushers
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getCount Pluck = currentPluckers
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getLimit :: CQOpType -> Int
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getLimit Push = maxWorkPushers
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getLimit Push = maxWorkPushers
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getLimit Pluck = C.maxCompletionQueuePluckers
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@ -4,7 +4,7 @@
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module Network.GRPC.LowLevel.GRPC where
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import Control.Concurrent (threadDelay)
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import Control.Concurrent (threadDelay, myThreadId)
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import Control.Exception
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import Data.String (IsString)
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import qualified Data.ByteString as B
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grpcDebug :: String -> IO ()
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{-# INLINE grpcDebug #-}
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#ifdef DEBUG
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grpcDebug str = do tid <- myThreadId
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putStrLn $ (show tid) ++ ": " ++ str
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grpcDebug = grpcDebug'
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#else
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grpcDebug _ = return ()
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#endif
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grpcDebug' :: String -> IO ()
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{-# INLINE grpcDebug' #-}
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grpcDebug' str = do
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tid <- myThreadId
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putStrLn $ "[" ++ show tid ++ "]: " ++ str
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threadDelaySecs :: Int -> IO ()
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threadDelaySecs = threadDelay . (* 10^(6::Int))
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