module Data.Pool.Introspection
(
Pool
, LocalPool
, newPool
, PoolConfig
, defaultPoolConfig
, setNumStripes
, Resource(..)
, Acquisition(..)
, withResource
, takeResource
, tryWithResource
, tryTakeResource
, putResource
, destroyResource
, destroyAllResources
) where
import Control.Concurrent
import Control.Exception
import GHC.Clock
import GHC.Generics (Generic)
import Data.Pool.Internal
data Resource a = Resource
{ forall a. Resource a -> a
resource :: a
, forall a. Resource a -> Int
stripeNumber :: !Int
, forall a. Resource a -> Int
availableResources :: !Int
, forall a. Resource a -> Acquisition
acquisition :: !Acquisition
, forall a. Resource a -> Double
acquisitionTime :: !Double
, forall a. Resource a -> Maybe Double
creationTime :: !(Maybe Double)
} deriving (Resource a -> Resource a -> Bool
forall a. Eq a => Resource a -> Resource a -> Bool
forall a. (a -> a -> Bool) -> (a -> a -> Bool) -> Eq a
/= :: Resource a -> Resource a -> Bool
$c/= :: forall a. Eq a => Resource a -> Resource a -> Bool
== :: Resource a -> Resource a -> Bool
$c== :: forall a. Eq a => Resource a -> Resource a -> Bool
Eq, Int -> Resource a -> ShowS
forall a. Show a => Int -> Resource a -> ShowS
forall a. Show a => [Resource a] -> ShowS
forall a. Show a => Resource a -> String
forall a.
(Int -> a -> ShowS) -> (a -> String) -> ([a] -> ShowS) -> Show a
showList :: [Resource a] -> ShowS
$cshowList :: forall a. Show a => [Resource a] -> ShowS
show :: Resource a -> String
$cshow :: forall a. Show a => Resource a -> String
showsPrec :: Int -> Resource a -> ShowS
$cshowsPrec :: forall a. Show a => Int -> Resource a -> ShowS
Show, forall a.
(forall x. a -> Rep a x) -> (forall x. Rep a x -> a) -> Generic a
forall a x. Rep (Resource a) x -> Resource a
forall a x. Resource a -> Rep (Resource a) x
$cto :: forall a x. Rep (Resource a) x -> Resource a
$cfrom :: forall a x. Resource a -> Rep (Resource a) x
Generic)
data Acquisition
= Immediate
| Delayed
deriving (Acquisition -> Acquisition -> Bool
forall a. (a -> a -> Bool) -> (a -> a -> Bool) -> Eq a
/= :: Acquisition -> Acquisition -> Bool
$c/= :: Acquisition -> Acquisition -> Bool
== :: Acquisition -> Acquisition -> Bool
$c== :: Acquisition -> Acquisition -> Bool
Eq, Int -> Acquisition -> ShowS
[Acquisition] -> ShowS
Acquisition -> String
forall a.
(Int -> a -> ShowS) -> (a -> String) -> ([a] -> ShowS) -> Show a
showList :: [Acquisition] -> ShowS
$cshowList :: [Acquisition] -> ShowS
show :: Acquisition -> String
$cshow :: Acquisition -> String
showsPrec :: Int -> Acquisition -> ShowS
$cshowsPrec :: Int -> Acquisition -> ShowS
Show, forall x. Rep Acquisition x -> Acquisition
forall x. Acquisition -> Rep Acquisition x
forall a.
(forall x. a -> Rep a x) -> (forall x. Rep a x -> a) -> Generic a
$cto :: forall x. Rep Acquisition x -> Acquisition
$cfrom :: forall x. Acquisition -> Rep Acquisition x
Generic)
withResource :: Pool a -> (Resource a -> IO r) -> IO r
withResource :: forall a r. Pool a -> (Resource a -> IO r) -> IO r
withResource Pool a
pool Resource a -> IO r
act = forall b. ((forall a. IO a -> IO a) -> IO b) -> IO b
mask forall a b. (a -> b) -> a -> b
$ \forall a. IO a -> IO a
unmask -> do
(Resource a
res, LocalPool a
localPool) <- forall a. Pool a -> IO (Resource a, LocalPool a)
takeResource Pool a
pool
r
r <- forall a. IO a -> IO a
unmask (Resource a -> IO r
act Resource a
res) forall a b. IO a -> IO b -> IO a
`onException` forall a. Pool a -> LocalPool a -> a -> IO ()
destroyResource Pool a
pool LocalPool a
localPool (forall a. Resource a -> a
resource Resource a
res)
forall a. LocalPool a -> a -> IO ()
putResource LocalPool a
localPool (forall a. Resource a -> a
resource Resource a
res)
forall (f :: * -> *) a. Applicative f => a -> f a
pure r
r
takeResource :: Pool a -> IO (Resource a, LocalPool a)
takeResource :: forall a. Pool a -> IO (Resource a, LocalPool a)
takeResource Pool a
pool = forall a. IO a -> IO a
mask_ forall a b. (a -> b) -> a -> b
$ do
Double
t1 <- IO Double
getMonotonicTime
LocalPool a
lp <- forall a. SmallArray (LocalPool a) -> IO (LocalPool a)
getLocalPool (forall a. Pool a -> SmallArray (LocalPool a)
localPools Pool a
pool)
Stripe a
stripe <- forall a. MVar a -> IO a
takeMVar (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp)
if forall a. Stripe a -> Int
available Stripe a
stripe forall a. Eq a => a -> a -> Bool
== Int
0
then do
MVar (Maybe a)
q <- forall a. IO (MVar a)
newEmptyMVar
forall a. MVar a -> a -> IO ()
putMVar (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp) forall a b. (a -> b) -> a -> b
$! Stripe a
stripe { queueR :: Queue a
queueR = forall a. MVar (Maybe a) -> Queue a -> Queue a
Queue MVar (Maybe a)
q (forall a. Stripe a -> Queue a
queueR Stripe a
stripe) }
forall a. MVar (Stripe a) -> MVar (Maybe a) -> IO (Maybe a)
waitForResource (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp) MVar (Maybe a)
q forall (m :: * -> *) a b. Monad m => m a -> (a -> m b) -> m b
>>= \case
Just a
a -> do
Double
t2 <- IO Double
getMonotonicTime
let res :: Resource a
res = Resource
{ resource :: a
resource = a
a
, stripeNumber :: Int
stripeNumber = forall a. LocalPool a -> Int
stripeId LocalPool a
lp
, availableResources :: Int
availableResources = Int
0
, acquisition :: Acquisition
acquisition = Acquisition
Delayed
, acquisitionTime :: Double
acquisitionTime = Double
t2 forall a. Num a => a -> a -> a
- Double
t1
, creationTime :: Maybe Double
creationTime = forall a. Maybe a
Nothing
}
forall (f :: * -> *) a. Applicative f => a -> f a
pure (Resource a
res, LocalPool a
lp)
Maybe a
Nothing -> do
Double
t2 <- IO Double
getMonotonicTime
a
a <- forall a. PoolConfig a -> IO a
createResource (forall a. Pool a -> PoolConfig a
poolConfig Pool a
pool) forall a b. IO a -> IO b -> IO a
`onException` forall a. MVar (Stripe a) -> IO ()
restoreSize (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp)
Double
t3 <- IO Double
getMonotonicTime
let res :: Resource a
res = Resource
{ resource :: a
resource = a
a
, stripeNumber :: Int
stripeNumber = forall a. LocalPool a -> Int
stripeId LocalPool a
lp
, availableResources :: Int
availableResources = Int
0
, acquisition :: Acquisition
acquisition = Acquisition
Delayed
, acquisitionTime :: Double
acquisitionTime = Double
t2 forall a. Num a => a -> a -> a
- Double
t1
, creationTime :: Maybe Double
creationTime = forall a. a -> Maybe a
Just forall a b. (a -> b) -> a -> b
$! Double
t3 forall a. Num a => a -> a -> a
- Double
t2
}
forall (f :: * -> *) a. Applicative f => a -> f a
pure (Resource a
res, LocalPool a
lp)
else forall a.
Pool a
-> Double
-> LocalPool a
-> Stripe a
-> IO (Resource a, LocalPool a)
takeAvailableResource Pool a
pool Double
t1 LocalPool a
lp Stripe a
stripe
tryWithResource :: Pool a -> (Resource a -> IO r) -> IO (Maybe r)
tryWithResource :: forall a r. Pool a -> (Resource a -> IO r) -> IO (Maybe r)
tryWithResource Pool a
pool Resource a -> IO r
act = forall b. ((forall a. IO a -> IO a) -> IO b) -> IO b
mask forall a b. (a -> b) -> a -> b
$ \forall a. IO a -> IO a
unmask -> forall a. Pool a -> IO (Maybe (Resource a, LocalPool a))
tryTakeResource Pool a
pool forall (m :: * -> *) a b. Monad m => m a -> (a -> m b) -> m b
>>= \case
Just (Resource a
res, LocalPool a
localPool) -> do
r
r <- forall a. IO a -> IO a
unmask (Resource a -> IO r
act Resource a
res) forall a b. IO a -> IO b -> IO a
`onException` forall a. Pool a -> LocalPool a -> a -> IO ()
destroyResource Pool a
pool LocalPool a
localPool (forall a. Resource a -> a
resource Resource a
res)
forall a. LocalPool a -> a -> IO ()
putResource LocalPool a
localPool (forall a. Resource a -> a
resource Resource a
res)
forall (f :: * -> *) a. Applicative f => a -> f a
pure (forall a. a -> Maybe a
Just r
r)
Maybe (Resource a, LocalPool a)
Nothing -> forall (f :: * -> *) a. Applicative f => a -> f a
pure forall a. Maybe a
Nothing
tryTakeResource :: Pool a -> IO (Maybe (Resource a, LocalPool a))
tryTakeResource :: forall a. Pool a -> IO (Maybe (Resource a, LocalPool a))
tryTakeResource Pool a
pool = forall a. IO a -> IO a
mask_ forall a b. (a -> b) -> a -> b
$ do
Double
t1 <- IO Double
getMonotonicTime
LocalPool a
lp <- forall a. SmallArray (LocalPool a) -> IO (LocalPool a)
getLocalPool (forall a. Pool a -> SmallArray (LocalPool a)
localPools Pool a
pool)
Stripe a
stripe <- forall a. MVar a -> IO a
takeMVar (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp)
if forall a. Stripe a -> Int
available Stripe a
stripe forall a. Eq a => a -> a -> Bool
== Int
0
then do
forall a. MVar a -> a -> IO ()
putMVar (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp) Stripe a
stripe
forall (f :: * -> *) a. Applicative f => a -> f a
pure forall a. Maybe a
Nothing
else forall a. a -> Maybe a
Just forall (f :: * -> *) a b. Functor f => (a -> b) -> f a -> f b
<$> forall a.
Pool a
-> Double
-> LocalPool a
-> Stripe a
-> IO (Resource a, LocalPool a)
takeAvailableResource Pool a
pool Double
t1 LocalPool a
lp Stripe a
stripe
takeAvailableResource
:: Pool a
-> Double
-> LocalPool a
-> Stripe a
-> IO (Resource a, LocalPool a)
takeAvailableResource :: forall a.
Pool a
-> Double
-> LocalPool a
-> Stripe a
-> IO (Resource a, LocalPool a)
takeAvailableResource Pool a
pool Double
t1 LocalPool a
lp Stripe a
stripe = case forall a. Stripe a -> [Entry a]
cache Stripe a
stripe of
[] -> do
let newAvailable :: Int
newAvailable = forall a. Stripe a -> Int
available Stripe a
stripe forall a. Num a => a -> a -> a
- Int
1
forall a. MVar a -> a -> IO ()
putMVar (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp) forall a b. (a -> b) -> a -> b
$! Stripe a
stripe { available :: Int
available = Int
newAvailable }
Double
t2 <- IO Double
getMonotonicTime
a
a <- forall a. PoolConfig a -> IO a
createResource (forall a. Pool a -> PoolConfig a
poolConfig Pool a
pool) forall a b. IO a -> IO b -> IO a
`onException` forall a. MVar (Stripe a) -> IO ()
restoreSize (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp)
Double
t3 <- IO Double
getMonotonicTime
let res :: Resource a
res = Resource
{ resource :: a
resource = a
a
, stripeNumber :: Int
stripeNumber = forall a. LocalPool a -> Int
stripeId LocalPool a
lp
, availableResources :: Int
availableResources = Int
newAvailable
, acquisition :: Acquisition
acquisition = Acquisition
Immediate
, acquisitionTime :: Double
acquisitionTime = Double
t2 forall a. Num a => a -> a -> a
- Double
t1
, creationTime :: Maybe Double
creationTime = forall a. a -> Maybe a
Just forall a b. (a -> b) -> a -> b
$! Double
t3 forall a. Num a => a -> a -> a
- Double
t2
}
forall (f :: * -> *) a. Applicative f => a -> f a
pure (Resource a
res, LocalPool a
lp)
Entry a
a Double
_ : [Entry a]
as -> do
let newAvailable :: Int
newAvailable = forall a. Stripe a -> Int
available Stripe a
stripe forall a. Num a => a -> a -> a
- Int
1
forall a. MVar a -> a -> IO ()
putMVar (forall a. LocalPool a -> MVar (Stripe a)
stripeVar LocalPool a
lp) forall a b. (a -> b) -> a -> b
$! Stripe a
stripe { available :: Int
available = Int
newAvailable, cache :: [Entry a]
cache = [Entry a]
as }
Double
t2 <- IO Double
getMonotonicTime
let res :: Resource a
res = Resource
{ resource :: a
resource = a
a
, stripeNumber :: Int
stripeNumber = forall a. LocalPool a -> Int
stripeId LocalPool a
lp
, availableResources :: Int
availableResources = Int
newAvailable
, acquisition :: Acquisition
acquisition = Acquisition
Immediate
, acquisitionTime :: Double
acquisitionTime = Double
t2 forall a. Num a => a -> a -> a
- Double
t1
, creationTime :: Maybe Double
creationTime = forall a. Maybe a
Nothing
}
forall (f :: * -> *) a. Applicative f => a -> f a
pure (Resource a
res, LocalPool a
lp)