dejafu/tasty-dejafu/Test/Tasty/DejaFu.hs

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{-# LANGUAGE CPP #-}
{-# LANGUAGE FlexibleContexts #-}
{-# LANGUAGE FlexibleInstances #-}
{-# LANGUAGE GADTs #-}
{-# LANGUAGE RankNTypes #-}
{-# LANGUAGE TypeSynonymInstances #-}
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#if __GLASGOW_HASKELL__ >= 800
-- Impredicative polymorphism checks got stronger in GHC 8, breaking
-- the use of 'unsafeCoerce' below.
{-# LANGUAGE ImpredicativeTypes #-}
#endif
-- |
-- Module : Test.Tasty.DejaFu
-- Copyright : (c) 2016 Michael Walker
-- License : MIT
-- Maintainer : Michael Walker <mike@barrucadu.co.uk>
-- Stability : stable
-- Portability : CPP, FlexibleContexts, FlexibleInstances, GADTs, ImpredicativeTypes, RankNTypes, TypeSynonymInstances
--
-- This module allows using Deja Fu predicates with Tasty to test the
-- behaviour of concurrent systems.
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module Test.Tasty.DejaFu
( -- * Unit testing
-- | This is supported by the 'IsTest' instances for 'ConcST' and
-- 'ConcIO'. These instances try all executions, reporting as
-- failures the cases which return a 'Just' string.
--
-- @instance Typeable t => IsTest (ConcST t (Maybe String))@
-- @instance IsTest (ConcIO (Maybe String))@
-- @instance IsOption Bounds@
-- @instance IsOption MemType@
-- * Property testing
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testAuto
, testDejafu
, testDejafus
, testAutoWay
, testDejafuWay
, testDejafusWay
-- ** @IO@
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, testAutoIO
, testDejafuIO
, testDejafusIO
, testAutoWayIO
, testDejafuWayIO
, testDejafusWayIO
-- ** Re-exports
, Way(..)
, Bounds(..)
, MemType(..)
-- * Refinement property testing
, testProperty
-- ** Re-exports
, R.Sig(..)
, R.RefinementProperty
, R.Testable(..)
, R.Listable(..)
, R.expectFailure
, R.refines, (R.=>=)
, R.strictlyRefines, (R.->-)
, R.equivalentTo, (R.===)
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) where
import Control.Monad.ST (runST)
import Data.Char (toUpper)
import qualified Data.Foldable as F
import Data.List (intercalate, intersperse)
import Data.Proxy (Proxy(..))
import Data.Tagged (Tagged(..))
import Data.Typeable (Typeable)
import System.Random (StdGen, mkStdGen)
import Test.DejaFu hiding (Testable(..))
import qualified Test.DejaFu.Conc as Conc
import qualified Test.DejaFu.Refinement as R
import qualified Test.DejaFu.SCT as SCT
import Test.Tasty (TestName, TestTree, testGroup)
import Test.Tasty.Options (IsOption(..), OptionDescription(..),
lookupOption)
import Test.Tasty.Providers (IsTest(..), singleTest, testFailed,
testPassed)
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-- Can't put the necessary forall in the @IsTest ConcST t@
-- instance :(
import Unsafe.Coerce (unsafeCoerce)
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runSCTst :: Way -> MemType -> (forall t. Conc.ConcST t a) -> [(Either Failure a, Conc.Trace)]
runSCTst way memtype conc = runST (SCT.runSCT way memtype conc)
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runSCTio :: Way -> MemType -> Conc.ConcIO a -> IO [(Either Failure a, Conc.Trace)]
runSCTio = SCT.runSCT
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--------------------------------------------------------------------------------
-- Tasty-style unit testing
-- | @since 0.3.0.0
instance Typeable t => IsTest (Conc.ConcST t (Maybe String)) where
testOptions = Tagged concOptions
run options conc callback = do
let memtype = lookupOption options :: MemType
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let way = lookupOption options :: Way
let runSCTst' :: Conc.ConcST t (Maybe String) -> [(Either Failure (Maybe String), Conc.Trace)]
runSCTst' = unsafeCoerce $ runSCTst way memtype
let traces = runSCTst' conc
run options (ConcTest traces assertableP) callback
-- | @since 0.3.0.0
instance IsTest (Conc.ConcIO (Maybe String)) where
testOptions = Tagged concOptions
run options conc callback = do
let memtype = lookupOption options
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let way = lookupOption options
let traces = runSCTio way memtype conc
run options (ConcIOTest traces assertableP) callback
concOptions :: [OptionDescription]
concOptions =
[ Option (Proxy :: Proxy MemType)
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, Option (Proxy :: Proxy Way)
]
assertableP :: Predicate (Maybe String)
assertableP = alwaysTrue $ \r -> case r of
Right (Just _) -> False
_ -> True
-- | @since 0.3.0.0
instance IsOption MemType where
defaultValue = defaultMemType
parseValue = shortName . map toUpper where
shortName "SC" = Just SequentialConsistency
shortName "TSO" = Just TotalStoreOrder
shortName "PSO" = Just PartialStoreOrder
shortName _ = Nothing
optionName = Tagged "memory-model"
optionHelp = Tagged "The memory model to use. This should be one of \"sc\", \"tso\", or \"pso\"."
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-- | @since 0.5.0.0
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instance IsOption Way where
defaultValue = defaultWay
parseValue = shortName . map toUpper where
shortName "SYSTEMATICALLY" = Just (Systematically defaultBounds)
shortName "RANDOMLY" = Just (Randomly (mkStdGen 42) 100 1)
shortName _ = Nothing
optionName = Tagged "way"
optionHelp = Tagged "The execution method to use. This should be one of \"systematically\" or \"randomly\"."
--------------------------------------------------------------------------------
-- DejaFu-style unit testing
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-- | Automatically test a computation. In particular, look for
-- deadlocks, uncaught exceptions, and multiple return values.
--
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-- This uses the 'Conc' monad for testing, which is an instance of
-- 'MonadConc'. If you need to test something which also uses
-- 'MonadIO', use 'testAutoIO'.
--
-- @since 0.2.0.0
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testAuto :: (Eq a, Show a)
=> (forall t. Conc.ConcST t a)
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-- ^ The computation to test
-> TestTree
testAuto = testAutoWay defaultWay defaultMemType
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-- | Variant of 'testAuto' which tests a computation under a given
-- execution way and memory model.
--
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-- @since 0.5.0.0
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testAutoWay :: (Eq a, Show a)
=> Way
-- ^ How to execute the concurrent program.
-> MemType
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-- ^ The memory model to use for non-synchronised @CRef@ operations.
-> (forall t. Conc.ConcST t a)
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-- ^ The computation to test
-> TestTree
testAutoWay way memtype conc = testDejafusWay way memtype conc autocheckCases
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-- | Variant of 'testAuto' for computations which do 'IO'.
--
-- @since 0.2.0.0
testAutoIO :: (Eq a, Show a) => Conc.ConcIO a -> TestTree
testAutoIO = testAutoWayIO defaultWay defaultMemType
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-- | Variant of 'testAutoWay' for computations which do 'IO'.
--
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-- @since 0.5.0.0
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testAutoWayIO :: (Eq a, Show a)
=> Way -> MemType -> Conc.ConcIO a -> TestTree
testAutoWayIO way memtype concio =
testDejafusWayIO way memtype concio autocheckCases
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-- | Predicates for the various autocheck functions.
autocheckCases :: Eq a => [(TestName, Predicate a)]
autocheckCases =
[("Never Deadlocks", representative deadlocksNever)
, ("No Exceptions", representative exceptionsNever)
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, ("Consistent Result", alwaysSame)
]
-- | Check that a predicate holds.
--
-- @since 0.2.0.0
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testDejafu :: Show a
=> (forall t. Conc.ConcST t a)
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-- ^ The computation to test
-> TestName
-- ^ The name of the test.
-> Predicate a
-- ^ The predicate to check
-> TestTree
testDejafu = testDejafuWay defaultWay defaultMemType
-- | Variant of 'testDejafu' which takes a way to execute the program
-- and a memory model.
--
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-- @since 0.5.0.0
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testDejafuWay :: Show a
=> Way
-- ^ How to execute the concurrent program.
-> MemType
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-- ^ The memory model to use for non-synchronised @CRef@ operations.
-> (forall t. Conc.ConcST t a)
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-- ^ The computation to test
-> TestName
-- ^ The name of the test.
-> Predicate a
-- ^ The predicate to check
-> TestTree
testDejafuWay way memtype conc name p =
testDejafusWay way memtype conc [(name, p)]
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-- | Variant of 'testDejafu' which takes a collection of predicates to
-- test. This will share work between the predicates, rather than
-- running the concurrent computation many times for each predicate.
--
-- @since 0.2.0.0
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testDejafus :: Show a
=> (forall t. Conc.ConcST t a)
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-- ^ The computation to test
-> [(TestName, Predicate a)]
-- ^ The list of predicates (with names) to check
-> TestTree
testDejafus = testDejafusWay defaultWay defaultMemType
-- | Variant of 'testDejafus' which takes a way to execute the program
-- and a memory model.
--
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-- @since 0.5.0.0
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testDejafusWay :: Show a
=> Way
-- ^ How to execute the concurrent program.
-> MemType
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-- ^ The memory model to use for non-synchronised @CRef@ operations.
-> (forall t. Conc.ConcST t a)
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-- ^ The computation to test
-> [(TestName, Predicate a)]
-- ^ The list of predicates (with names) to check
-> TestTree
testDejafusWay = testst
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-- | Variant of 'testDejafu' for computations which do 'IO'.
--
-- @since 0.2.0.0
testDejafuIO :: Show a => Conc.ConcIO a -> TestName -> Predicate a -> TestTree
testDejafuIO = testDejafuWayIO defaultWay defaultMemType
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-- | Variant of 'testDejafuWay' for computations which do 'IO'.
--
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-- @since 0.5.0.0
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testDejafuWayIO :: Show a
=> Way -> MemType -> Conc.ConcIO a -> TestName -> Predicate a -> TestTree
testDejafuWayIO way memtype concio name p =
testDejafusWayIO way memtype concio [(name, p)]
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-- | Variant of 'testDejafus' for computations which do 'IO'.
--
-- @since 0.2.0.0
testDejafusIO :: Show a => Conc.ConcIO a -> [(TestName, Predicate a)] -> TestTree
testDejafusIO = testDejafusWayIO defaultWay defaultMemType
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-- | Variant of 'dejafusWay' for computations which do 'IO'.
--
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-- @since 0.5.0.0
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testDejafusWayIO :: Show a
=> Way -> MemType -> Conc.ConcIO a -> [(TestName, Predicate a)] -> TestTree
testDejafusWayIO = testio
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-------------------------------------------------------------------------------
-- Refinement property testing
-- | Check a refinement property with a variety of seed values and
-- variable assignments.
--
-- @since unreleased
testProperty :: (R.Testable p, R.Listable (R.X p), Eq (R.X p), Show (R.X p), Show (R.O p))
=> TestName
-- ^ The name of the test.
-> p
-- ^ The property to check.
-> TestTree
testProperty = testprop
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--------------------------------------------------------------------------------
-- Tasty integration
data ConcTest where
ConcTest :: Show a => [(Either Failure a, Conc.Trace)] -> Predicate a -> ConcTest
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deriving Typeable
data ConcIOTest where
ConcIOTest :: Show a => IO [(Either Failure a, Conc.Trace)] -> Predicate a -> ConcIOTest
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deriving Typeable
data PropTest where
PropTest :: (R.Testable p, R.Listable (R.X p), Eq (R.X p), Show (R.X p), Show (R.O p)) => p -> PropTest
deriving Typeable
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instance IsTest ConcTest where
testOptions = pure []
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run _ (ConcTest traces p) _ =
let err = showErr $ p traces
in pure (if null err then testPassed "" else testFailed err)
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instance IsTest ConcIOTest where
testOptions = pure []
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run _ (ConcIOTest iotraces p) _ = do
traces <- iotraces
let err = showErr $ p traces
pure (if null err then testPassed "" else testFailed err)
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instance IsTest PropTest where
testOptions = pure []
run _ (PropTest p) _ = do
ce <- R.check' p
pure $ case ce of
Just c -> testFailed . init $ unlines
[ "*** Failure: " ++
(if null (R.failingArgs c) then "" else unwords (R.failingArgs c) ++ " ") ++
"(seed " ++ show (R.failingSeed c) ++ ")"
, " left: " ++ show (F.toList $ R.leftResults c)
, " right: " ++ show (F.toList $ R.rightResults c)
]
Nothing -> testPassed ""
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-- | Produce a Tasty 'TestTree' from a Deja Fu test.
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testst :: Show a
=> Way -> MemType -> (forall t. Conc.ConcST t a) -> [(TestName, Predicate a)] -> TestTree
testst way memtype conc tests = case map toTest tests of
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[t] -> t
ts -> testGroup "Deja Fu Tests" ts
where
toTest (name, p) = singleTest name $ ConcTest traces p
traces = runSCTst way memtype conc
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-- | Produce a Tasty 'Test' from an IO-using Deja Fu test.
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testio :: Show a
=> Way -> MemType -> Conc.ConcIO a -> [(TestName, Predicate a)] -> TestTree
testio way memtype concio tests = case map toTest tests of
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[t] -> t
ts -> testGroup "Deja Fu Tests" ts
where
toTest (name, p) = singleTest name $ ConcIOTest traces p
-- As with HUnit, constructing a test is side-effect free, so
-- sharing of traces can't happen here.
traces = runSCTio way memtype concio
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-- | Produce a Tasty 'TestTree' from a Deja Fu refinement property test.
testprop :: (R.Testable p, R.Listable (R.X p), Eq (R.X p), Show (R.X p), Show (R.O p))
=> TestName -> p -> TestTree
testprop name = singleTest name . PropTest
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-- | Convert a test result into an error message on failure (empty
-- string on success).
showErr :: Show a => Result a -> String
showErr res
| _pass res = ""
| otherwise = "Failed after " ++ show (_casesChecked res) ++ " cases:\n" ++ msg ++ unlines failures ++ rest where
msg = if null (_failureMsg res) then "" else _failureMsg res ++ "\n"
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failures = intersperse "" . map (\(r, t) -> indent $ either Conc.showFail show r ++ " " ++ Conc.showTrace t) . take 5 $ _failures res
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rest = if moreThan (_failures res) 5 then "\n\t..." else ""
-- | Check if a list has more than some number of elements.
moreThan :: [a] -> Int -> Bool
moreThan [] n = n < 0
moreThan _ 0 = True
moreThan (_:xs) n = moreThan xs (n-1)
-- | Indent every line of a string.
indent :: String -> String
indent = intercalate "\n" . map ('\t':) . lines