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Running jobs asynchronously but yielding results in order
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module Utils.Concurrent (mkPipeline, launchNukes) where | |
import Control.Concurrent (threadDelay) | |
import Control.Concurrent.Async (Async, async, cancel, wait) | |
import Control.Concurrent.STM (TBQueue, atomically, newTBQueueIO, | |
readTBQueue, writeTBQueue) | |
import Control.Monad (forever, void) | |
import Control.Monad.IO.Class (MonadIO, liftIO) | |
import GHC.Natural (Natural) | |
runJobs :: TBQueue a -> TBQueue (Async b) -> (a -> IO b) -> IO () | |
runJobs inputs runningJobs work = forever $ do | |
input <- atomically $ readTBQueue inputs | |
runningJob <- async $ work input | |
atomically $ writeTBQueue runningJobs runningJob | |
orderJobs :: TBQueue (Async a) -> TBQueue a -> IO () | |
orderJobs jobs resQ = forever $ do | |
runningJob <- atomically $ readTBQueue jobs | |
res <- wait runningJob | |
atomically $ writeTBQueue resQ res | |
mkPipeline :: MonadIO m => | |
Natural -- ^ Bound for all queues | |
-> (a -> IO b) -- ^ Job to produce outputs from inputs | |
-> (b -> IO ()) -- ^ Job to make use of outputs | |
-> m (a -> m (), m ()) -- ^ Procedure for putting values onto the pipeline and cancellation | |
mkPipeline n job yield = do | |
ins <- liftIO $ newTBQueueIO n | |
jobs <- liftIO $ newTBQueueIO n | |
outs <- liftIO $ newTBQueueIO n | |
plumbing <- liftIO $ traverse async $ | |
[ runJobs ins jobs job | |
, orderJobs jobs outs | |
, forever $ do | |
out <- atomically $ readTBQueue outs | |
yield out | |
] | |
return $ | |
( liftIO . atomically . writeTBQueue ins | |
, liftIO . void $ traverse cancel plumbing | |
) | |
launchNukes :: MonadIO m => m () | |
launchNukes = do | |
(put, stop) <- mkPipeline 3 job putStrLn | |
let loop = do | |
n <- liftIO $ read <$> getLine | |
case n :: Int of | |
0 -> stop | |
_ -> do | |
put n | |
loop | |
in loop | |
where | |
job n = do | |
threadDelay $ n * 1000000 | |
putStrLn $ "Squaring number " <> show n | |
return $ "Number squared: " <> (show $ n * n) |
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