{-# LANGUAGE TypeFamilies, MultiParamTypeClasses, FlexibleContexts #-}
module Simulation.Aivika.Trans.Experiment.Types where
import Control.Monad
import Control.Exception
import Data.Maybe
import Data.Monoid
import Data.Either
import GHC.Conc (getNumCapabilities)
import Simulation.Aivika.Trans
data Experiment m = 
  Experiment { forall (m :: * -> *). Experiment m -> Specs m
experimentSpecs         :: Specs m,
               
               forall (m :: * -> *). Experiment m -> ResultTransform m
experimentTransform     :: ResultTransform m,
               
               forall (m :: * -> *). Experiment m -> ResultLocalisation
experimentLocalisation  :: ResultLocalisation,
               
               forall (m :: * -> *). Experiment m -> Int
experimentRunCount      :: Int,
               
               forall (m :: * -> *). Experiment m -> String
experimentTitle         :: String,
               
               forall (m :: * -> *). Experiment m -> String
experimentDescription   :: String,
               
               forall (m :: * -> *). Experiment m -> Bool
experimentVerbose       :: Bool,
               
               forall (m :: * -> *). Experiment m -> IO Int
experimentNumCapabilities :: IO Int
               
               
             }
defaultExperiment :: Experiment m
defaultExperiment :: forall (m :: * -> *). Experiment m
defaultExperiment =
  Experiment { experimentSpecs :: Specs m
experimentSpecs         = Double -> Double -> Double -> Method -> GeneratorType m -> Specs m
forall (m :: * -> *).
Double -> Double -> Double -> Method -> GeneratorType m -> Specs m
Specs Double
0 Double
10 Double
0.01 Method
RungeKutta4 GeneratorType m
forall (m :: * -> *). GeneratorType m
SimpleGenerator,
               experimentTransform :: ResultTransform m
experimentTransform     = ResultTransform m
forall a. a -> a
id,
               experimentLocalisation :: ResultLocalisation
experimentLocalisation  = ResultLocalisation
englishResultLocalisation,
               experimentRunCount :: Int
experimentRunCount      = Int
1,
               experimentTitle :: String
experimentTitle         = String
"Simulation Experiment",
               experimentDescription :: String
experimentDescription   = String
"",
               experimentVerbose :: Bool
experimentVerbose       = Bool
True,
               experimentNumCapabilities :: IO Int
experimentNumCapabilities = IO Int
getNumCapabilities }
class ExperimentMonadProviding r (m :: * -> *) where
  
  type ExperimentMonad r m :: * -> *
type ExperimentMonadTry r m a = ExperimentMonad r m (Either SomeException a)
class ExperimentMonadProviding r m => ExperimentRendering r m where
  
  data ExperimentContext r m :: *
  
  type ExperimentEnvironment r m :: *
  
  prepareExperiment :: Experiment m -> r -> ExperimentMonad r m (ExperimentEnvironment r m)
  
  
  renderExperiment :: Experiment m -> r -> [ExperimentReporter r m] -> ExperimentEnvironment r m -> ExperimentMonad r m ()
  
  onExperimentCompleted :: Experiment m -> r -> ExperimentEnvironment r m -> ExperimentMonad r m () 
  
  onExperimentFailed :: Exception e => Experiment m -> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
data ExperimentGenerator r m = 
  ExperimentGenerator { forall r (m :: * -> *).
ExperimentGenerator r m
-> Experiment m
-> r
-> ExperimentEnvironment r m
-> ExperimentMonad r m (ExperimentReporter r m)
generateReporter :: Experiment m -> r -> ExperimentEnvironment r m -> ExperimentMonad r m (ExperimentReporter r m)
                        
                      }
class ExperimentRendering r m => ExperimentView v r m where
  
  
  outputView :: v m -> ExperimentGenerator r m
data ExperimentData m =
  ExperimentData { forall (m :: * -> *). ExperimentData m -> Results m
experimentResults :: Results m,
                   
                   forall (m :: * -> *). ExperimentData m -> ResultPredefinedSignals m
experimentPredefinedSignals :: ResultPredefinedSignals m
                   
                 }
data ExperimentReporter r m =
  ExperimentReporter { forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterInitialise :: ExperimentMonad r m (),
                       
                       
                       forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterFinalise   :: ExperimentMonad r m (),
                       
                       
                       forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentData m -> Composite m ()
reporterSimulate   :: ExperimentData m -> Composite m (),
                       
                       forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentContext r m
reporterContext    :: ExperimentContext r m
                       
                     }
runExperiment_ :: (MonadDES m,
                   ExperimentRendering r m,
                   Monad (ExperimentMonad r m),
                   MonadException (ExperimentMonad r m))
                  => (m () -> ExperimentMonad r m a)
                  
                  -> Experiment m
                  
                  -> [ExperimentGenerator r m]
                  
                  -> r
                  
                  -> Simulation m (Results m)
                  
                  -> ExperimentMonadTry r m ()
{-# INLINABLE runExperiment_ #-}
runExperiment_ :: forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonadTry r m ()
runExperiment_ m () -> ExperimentMonad r m a
executor0 Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation =
  do Either SomeException ()
x <- ([m ()] -> ExperimentMonad r m ())
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonadTry r m ()
forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
([m ()] -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonadTry r m a
runExperimentWithExecutor [m ()] -> ExperimentMonad r m ()
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation
     Either SomeException () -> ExperimentMonadTry r m ()
forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (Either SomeException ()
x Either SomeException ()
-> Either SomeException () -> Either SomeException ()
forall a b.
Either SomeException a
-> Either SomeException b -> Either SomeException b
forall (m :: * -> *) a b. Monad m => m a -> m b -> m b
>> () -> Either SomeException ()
forall a. a -> Either SomeException a
forall (m :: * -> *) a. Monad m => a -> m a
return ())
       where executor :: [m ()] -> ExperimentMonad r m ()
executor = [ExperimentMonad r m a] -> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a.
(Foldable t, Monad m) =>
t (m a) -> m ()
sequence_ ([ExperimentMonad r m a] -> ExperimentMonad r m ())
-> ([m ()] -> [ExperimentMonad r m a])
-> [m ()]
-> ExperimentMonad r m ()
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (m () -> ExperimentMonad r m a)
-> [m ()] -> [ExperimentMonad r m a]
forall a b. (a -> b) -> [a] -> [b]
map m () -> ExperimentMonad r m a
executor0
runExperiment :: (MonadDES m,
                  ExperimentRendering r m,
                  Monad (ExperimentMonad r m),
                  MonadException (ExperimentMonad r m))
                 => (m () -> ExperimentMonad r m a)
                 
                 -> Experiment m
                 
                 -> [ExperimentGenerator r m]
                 
                 -> r
                 
                 -> Simulation m (Results m)
                 
                 -> ExperimentMonadTry r m [a]
{-# INLINABLE runExperiment #-}
runExperiment :: forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonadTry r m [a]
runExperiment m () -> ExperimentMonad r m a
executor0 = ([m ()] -> ExperimentMonad r m [a])
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonad r m (Either SomeException [a])
forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
([m ()] -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonadTry r m a
runExperimentWithExecutor [m ()] -> ExperimentMonad r m [a]
executor
  where executor :: [m ()] -> ExperimentMonad r m [a]
executor = [ExperimentMonad r m a] -> ExperimentMonad r m [a]
forall (t :: * -> *) (m :: * -> *) a.
(Traversable t, Monad m) =>
t (m a) -> m (t a)
forall (m :: * -> *) a. Monad m => [m a] -> m [a]
sequence ([ExperimentMonad r m a] -> ExperimentMonad r m [a])
-> ([m ()] -> [ExperimentMonad r m a])
-> [m ()]
-> ExperimentMonad r m [a]
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (m () -> ExperimentMonad r m a)
-> [m ()] -> [ExperimentMonad r m a]
forall a b. (a -> b) -> [a] -> [b]
map m () -> ExperimentMonad r m a
executor0
runExperimentWithExecutor :: (MonadDES m,
                              ExperimentRendering r m,
                              Monad (ExperimentMonad r m),
                              MonadException (ExperimentMonad r m))
                             => ([m ()] -> ExperimentMonad r m a)
                             
                             -> Experiment m
                             
                             -> [ExperimentGenerator r m]
                             
                             -> r
                             
                             -> Simulation m (Results m)
                             
                             -> ExperimentMonadTry r m a
{-# INLINABLE runExperimentWithExecutor #-}
runExperimentWithExecutor :: forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
([m ()] -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> ExperimentMonadTry r m a
runExperimentWithExecutor [m ()] -> ExperimentMonad r m a
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation =
  do let specs :: Specs m
specs      = Experiment m -> Specs m
forall (m :: * -> *). Experiment m -> Specs m
experimentSpecs Experiment m
e
         runCount :: Int
runCount   = Experiment m -> Int
forall (m :: * -> *). Experiment m -> Int
experimentRunCount Experiment m
e
     ExperimentEnvironment r m
env <- Experiment m
-> r -> ExperimentMonad r m (ExperimentEnvironment r m)
forall r (m :: * -> *).
ExperimentRendering r m =>
Experiment m
-> r -> ExperimentMonad r m (ExperimentEnvironment r m)
prepareExperiment Experiment m
e r
r
     let c1 :: ExperimentMonadTry r m a
c1 =
           do [ExperimentReporter r m]
reporters <- (ExperimentGenerator r m
 -> ExperimentMonad r m (ExperimentReporter r m))
-> [ExperimentGenerator r m]
-> ExperimentMonad r m [ExperimentReporter r m]
forall (t :: * -> *) (m :: * -> *) a b.
(Traversable t, Monad m) =>
(a -> m b) -> t a -> m (t b)
forall (m :: * -> *) a b. Monad m => (a -> m b) -> [a] -> m [b]
mapM (\ExperimentGenerator r m
x -> ExperimentGenerator r m
-> Experiment m
-> r
-> ExperimentEnvironment r m
-> ExperimentMonad r m (ExperimentReporter r m)
forall r (m :: * -> *).
ExperimentGenerator r m
-> Experiment m
-> r
-> ExperimentEnvironment r m
-> ExperimentMonad r m (ExperimentReporter r m)
generateReporter ExperimentGenerator r m
x Experiment m
e r
r ExperimentEnvironment r m
env)
                           [ExperimentGenerator r m]
generators
              [ExperimentReporter r m]
-> (ExperimentReporter r m -> ExperimentMonad r m ())
-> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ExperimentReporter r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterInitialise
              let simulate :: Simulation m ()
simulate =
                    do ResultPredefinedSignals m
signals <- Simulation m (ResultPredefinedSignals m)
forall (m :: * -> *).
MonadDES m =>
Simulation m (ResultPredefinedSignals m)
newResultPredefinedSignals
                       Results m
results <- Simulation m (Results m)
simulation
                       let d :: ExperimentData m
d = ExperimentData { experimentResults :: Results m
experimentResults = Experiment m -> ResultTransform m
forall (m :: * -> *). Experiment m -> ResultTransform m
experimentTransform Experiment m
e Results m
results,
                                                experimentPredefinedSignals :: ResultPredefinedSignals m
experimentPredefinedSignals = ResultPredefinedSignals m
signals }
                       ((), DisposableEvent m
fs) <- Dynamics m ((), DisposableEvent m)
-> Simulation m ((), DisposableEvent m)
forall (m :: * -> *) a. Dynamics m a -> Simulation m a
runDynamicsInStartTime (Dynamics m ((), DisposableEvent m)
 -> Simulation m ((), DisposableEvent m))
-> Dynamics m ((), DisposableEvent m)
-> Simulation m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   EventProcessing
-> Event m ((), DisposableEvent m)
-> Dynamics m ((), DisposableEvent m)
forall a. EventProcessing -> Event m a -> Dynamics m a
forall (m :: * -> *) a.
EventQueueing m =>
EventProcessing -> Event m a -> Dynamics m a
runEventWith EventProcessing
EarlierEvents (Event m ((), DisposableEvent m)
 -> Dynamics m ((), DisposableEvent m))
-> Event m ((), DisposableEvent m)
-> Dynamics m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   (Composite m ()
 -> DisposableEvent m -> Event m ((), DisposableEvent m))
-> DisposableEvent m
-> Composite m ()
-> Event m ((), DisposableEvent m)
forall a b c. (a -> b -> c) -> b -> a -> c
flip Composite m ()
-> DisposableEvent m -> Event m ((), DisposableEvent m)
forall (m :: * -> *) a.
Composite m a
-> DisposableEvent m -> Event m (a, DisposableEvent m)
runComposite DisposableEvent m
forall a. Monoid a => a
mempty (Composite m () -> Event m ((), DisposableEvent m))
-> Composite m () -> Event m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   [ExperimentReporter r m]
-> (ExperimentReporter r m -> Composite m ()) -> Composite m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ((ExperimentReporter r m -> Composite m ()) -> Composite m ())
-> (ExperimentReporter r m -> Composite m ()) -> Composite m ()
forall a b. (a -> b) -> a -> b
$ \ExperimentReporter r m
reporter ->
                                   ExperimentReporter r m -> ExperimentData m -> Composite m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentData m -> Composite m ()
reporterSimulate ExperimentReporter r m
reporter ExperimentData m
d
                       let m1 :: Simulation m ()
m1 =
                             Event m () -> Simulation m ()
forall (m :: * -> *) a. MonadDES m => Event m a -> Simulation m a
runEventInStopTime (Event m () -> Simulation m ()) -> Event m () -> Simulation m ()
forall a b. (a -> b) -> a -> b
$
                             () -> Event m ()
forall a. a -> Event m a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
                           m2 :: Simulation m ()
m2 =
                             Event m () -> Simulation m ()
forall (m :: * -> *) a. MonadDES m => Event m a -> Simulation m a
runEventInStopTime (Event m () -> Simulation m ()) -> Event m () -> Simulation m ()
forall a b. (a -> b) -> a -> b
$
                             DisposableEvent m -> Event m ()
forall (m :: * -> *). DisposableEvent m -> Event m ()
disposeEvent DisposableEvent m
fs
                           mh :: SimulationAbort -> m ()
mh (SimulationAbort String
e') =
                             () -> m ()
forall a. a -> m a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
                       Simulation m () -> Simulation m () -> Simulation m ()
forall (m :: * -> *) a b.
MonadException m =>
Simulation m a -> Simulation m b -> Simulation m a
finallySimulation (Simulation m ()
-> (SimulationAbort -> Simulation m ()) -> Simulation m ()
forall (m :: * -> *) e a.
(MonadException m, Exception e) =>
Simulation m a -> (e -> Simulation m a) -> Simulation m a
catchSimulation Simulation m ()
m1 SimulationAbort -> Simulation m ()
forall {m :: * -> *}. Monad m => SimulationAbort -> m ()
mh) Simulation m ()
m2
              a
a <- [m ()] -> ExperimentMonad r m a
executor ([m ()] -> ExperimentMonad r m a)
-> [m ()] -> ExperimentMonad r m a
forall a b. (a -> b) -> a -> b
$
                   Simulation m () -> Specs m -> Int -> [m ()]
forall (m :: * -> *) a.
MonadDES m =>
Simulation m a -> Specs m -> Int -> [m a]
runSimulations Simulation m ()
simulate Specs m
specs Int
runCount
              [ExperimentReporter r m]
-> (ExperimentReporter r m -> ExperimentMonad r m ())
-> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ExperimentReporter r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterFinalise
              Experiment m
-> r
-> [ExperimentReporter r m]
-> ExperimentEnvironment r m
-> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentRendering r m =>
Experiment m
-> r
-> [ExperimentReporter r m]
-> ExperimentEnvironment r m
-> ExperimentMonad r m ()
renderExperiment Experiment m
e r
r [ExperimentReporter r m]
reporters ExperimentEnvironment r m
env
              Experiment m
-> r -> ExperimentEnvironment r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentRendering r m =>
Experiment m
-> r -> ExperimentEnvironment r m -> ExperimentMonad r m ()
onExperimentCompleted Experiment m
e r
r ExperimentEnvironment r m
env
              Either SomeException a -> ExperimentMonadTry r m a
forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (a -> Either SomeException a
forall a b. b -> Either a b
Right a
a)
         ch :: SomeException -> ExperimentMonadTry r m a
ch z :: SomeException
z@(SomeException e
e') =
           do Experiment m
-> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
forall e.
Exception e =>
Experiment m
-> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
forall r (m :: * -> *) e.
(ExperimentRendering r m, Exception e) =>
Experiment m
-> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
onExperimentFailed Experiment m
e r
r ExperimentEnvironment r m
env e
e'
              Either SomeException a -> ExperimentMonadTry r m a
forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (SomeException -> Either SomeException a
forall a b. a -> Either a b
Left SomeException
z)
     ExperimentMonadTry r m a
-> (SomeException -> ExperimentMonadTry r m a)
-> ExperimentMonadTry r m a
forall e a.
Exception e =>
ExperimentMonad r m a
-> (e -> ExperimentMonad r m a) -> ExperimentMonad r m a
forall (m :: * -> *) e a.
(MonadException m, Exception e) =>
m a -> (e -> m a) -> m a
catchComp ExperimentMonadTry r m a
c1 SomeException -> ExperimentMonadTry r m a
ch
runExperimentByIndex :: (MonadDES m,
                         ExperimentRendering r m,
                         Monad (ExperimentMonad r m),
                         MonadException (ExperimentMonad r m))
                        => (m () -> ExperimentMonad r m a)
                        
                        -> Experiment m
                        
                        -> [ExperimentGenerator r m]
                        
                        -> r
                        
                        -> Simulation m (Results m)
                        
                        -> Int
                        
                        -> ExperimentMonadTry r m a
{-# INLINABLE runExperimentByIndex #-}
runExperimentByIndex :: forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> Int
-> ExperimentMonadTry r m a
runExperimentByIndex m () -> ExperimentMonad r m a
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation Int
runIndex =
  do let specs :: Specs m
specs      = Experiment m -> Specs m
forall (m :: * -> *). Experiment m -> Specs m
experimentSpecs Experiment m
e
         runCount :: Int
runCount   = Experiment m -> Int
forall (m :: * -> *). Experiment m -> Int
experimentRunCount Experiment m
e
     ExperimentEnvironment r m
env <- Experiment m
-> r -> ExperimentMonad r m (ExperimentEnvironment r m)
forall r (m :: * -> *).
ExperimentRendering r m =>
Experiment m
-> r -> ExperimentMonad r m (ExperimentEnvironment r m)
prepareExperiment Experiment m
e r
r
     let c1 :: ExperimentMonadTry r m a
c1 =
           do [ExperimentReporter r m]
reporters <- (ExperimentGenerator r m
 -> ExperimentMonad r m (ExperimentReporter r m))
-> [ExperimentGenerator r m]
-> ExperimentMonad r m [ExperimentReporter r m]
forall (t :: * -> *) (m :: * -> *) a b.
(Traversable t, Monad m) =>
(a -> m b) -> t a -> m (t b)
forall (m :: * -> *) a b. Monad m => (a -> m b) -> [a] -> m [b]
mapM (\ExperimentGenerator r m
x -> ExperimentGenerator r m
-> Experiment m
-> r
-> ExperimentEnvironment r m
-> ExperimentMonad r m (ExperimentReporter r m)
forall r (m :: * -> *).
ExperimentGenerator r m
-> Experiment m
-> r
-> ExperimentEnvironment r m
-> ExperimentMonad r m (ExperimentReporter r m)
generateReporter ExperimentGenerator r m
x Experiment m
e r
r ExperimentEnvironment r m
env)
                           [ExperimentGenerator r m]
generators
              [ExperimentReporter r m]
-> (ExperimentReporter r m -> ExperimentMonad r m ())
-> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ExperimentReporter r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterInitialise
              let simulate :: Simulation m ()
simulate =
                    do ResultPredefinedSignals m
signals <- Simulation m (ResultPredefinedSignals m)
forall (m :: * -> *).
MonadDES m =>
Simulation m (ResultPredefinedSignals m)
newResultPredefinedSignals
                       Results m
results <- Simulation m (Results m)
simulation
                       let d :: ExperimentData m
d = ExperimentData { experimentResults :: Results m
experimentResults = Experiment m -> ResultTransform m
forall (m :: * -> *). Experiment m -> ResultTransform m
experimentTransform Experiment m
e Results m
results,
                                                experimentPredefinedSignals :: ResultPredefinedSignals m
experimentPredefinedSignals = ResultPredefinedSignals m
signals }
                       ((), DisposableEvent m
fs) <- Dynamics m ((), DisposableEvent m)
-> Simulation m ((), DisposableEvent m)
forall (m :: * -> *) a. Dynamics m a -> Simulation m a
runDynamicsInStartTime (Dynamics m ((), DisposableEvent m)
 -> Simulation m ((), DisposableEvent m))
-> Dynamics m ((), DisposableEvent m)
-> Simulation m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   EventProcessing
-> Event m ((), DisposableEvent m)
-> Dynamics m ((), DisposableEvent m)
forall a. EventProcessing -> Event m a -> Dynamics m a
forall (m :: * -> *) a.
EventQueueing m =>
EventProcessing -> Event m a -> Dynamics m a
runEventWith EventProcessing
EarlierEvents (Event m ((), DisposableEvent m)
 -> Dynamics m ((), DisposableEvent m))
-> Event m ((), DisposableEvent m)
-> Dynamics m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   (Composite m ()
 -> DisposableEvent m -> Event m ((), DisposableEvent m))
-> DisposableEvent m
-> Composite m ()
-> Event m ((), DisposableEvent m)
forall a b c. (a -> b -> c) -> b -> a -> c
flip Composite m ()
-> DisposableEvent m -> Event m ((), DisposableEvent m)
forall (m :: * -> *) a.
Composite m a
-> DisposableEvent m -> Event m (a, DisposableEvent m)
runComposite DisposableEvent m
forall a. Monoid a => a
mempty (Composite m () -> Event m ((), DisposableEvent m))
-> Composite m () -> Event m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   [ExperimentReporter r m]
-> (ExperimentReporter r m -> Composite m ()) -> Composite m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ((ExperimentReporter r m -> Composite m ()) -> Composite m ())
-> (ExperimentReporter r m -> Composite m ()) -> Composite m ()
forall a b. (a -> b) -> a -> b
$ \ExperimentReporter r m
reporter ->
                                   ExperimentReporter r m -> ExperimentData m -> Composite m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentData m -> Composite m ()
reporterSimulate ExperimentReporter r m
reporter ExperimentData m
d
                       let m1 :: Simulation m ()
m1 =
                             Event m () -> Simulation m ()
forall (m :: * -> *) a. MonadDES m => Event m a -> Simulation m a
runEventInStopTime (Event m () -> Simulation m ()) -> Event m () -> Simulation m ()
forall a b. (a -> b) -> a -> b
$
                             () -> Event m ()
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forall (m :: * -> *) a. Monad m => a -> m a
return ()
                           m2 :: Simulation m ()
m2 =
                             Event m () -> Simulation m ()
forall (m :: * -> *) a. MonadDES m => Event m a -> Simulation m a
runEventInStopTime (Event m () -> Simulation m ()) -> Event m () -> Simulation m ()
forall a b. (a -> b) -> a -> b
$
                             DisposableEvent m -> Event m ()
forall (m :: * -> *). DisposableEvent m -> Event m ()
disposeEvent DisposableEvent m
fs
                           mh :: SimulationAbort -> m ()
mh (SimulationAbort String
e') =
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forall a. a -> m a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
                       Simulation m () -> Simulation m () -> Simulation m ()
forall (m :: * -> *) a b.
MonadException m =>
Simulation m a -> Simulation m b -> Simulation m a
finallySimulation (Simulation m ()
-> (SimulationAbort -> Simulation m ()) -> Simulation m ()
forall (m :: * -> *) e a.
(MonadException m, Exception e) =>
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catchSimulation Simulation m ()
m1 SimulationAbort -> Simulation m ()
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mh) Simulation m ()
m2
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a <- m () -> ExperimentMonad r m a
executor (m () -> ExperimentMonad r m a) -> m () -> ExperimentMonad r m a
forall a b. (a -> b) -> a -> b
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forall (m :: * -> *) a.
MonadDES m =>
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runSimulationByIndex Simulation m ()
simulate Specs m
specs Int
runCount Int
runIndex
              [ExperimentReporter r m]
-> (ExperimentReporter r m -> ExperimentMonad r m ())
-> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ExperimentReporter r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterFinalise
              Experiment m
-> r
-> [ExperimentReporter r m]
-> ExperimentEnvironment r m
-> ExperimentMonad r m ()
forall r (m :: * -> *).
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Experiment m
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-> [ExperimentReporter r m]
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renderExperiment Experiment m
e r
r [ExperimentReporter r m]
reporters ExperimentEnvironment r m
env
              Experiment m
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forall r (m :: * -> *).
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onExperimentCompleted Experiment m
e r
r ExperimentEnvironment r m
env
              Either SomeException a -> ExperimentMonadTry r m a
forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (a -> Either SomeException a
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Right a
a)
         ch :: SomeException -> ExperimentMonadTry r m a
ch z :: SomeException
z@(SomeException e
e') =
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forall e.
Exception e =>
Experiment m
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forall r (m :: * -> *) e.
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Experiment m
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onExperimentFailed Experiment m
e r
r ExperimentEnvironment r m
env e
e'
              Either SomeException a -> ExperimentMonadTry r m a
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forall (m :: * -> *) a. Monad m => a -> m a
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z)
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forall e a.
Exception e =>
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forall (m :: * -> *) e a.
(MonadException m, Exception e) =>
m a -> (e -> m a) -> m a
catchComp ExperimentMonadTry r m a
c1 SomeException -> ExperimentMonadTry r m a
ch
runExperimentByIndex_ :: (MonadDES m,
                          ExperimentRendering r m,
                          Monad (ExperimentMonad r m),
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                         => (m () -> ExperimentMonad r m a)
                         
                         -> Experiment m
                         
                         -> [ExperimentGenerator r m]
                         
                         -> r
                         
                         -> Simulation m (Results m)
                         
                         -> Int
                         
                         -> ExperimentMonadTry r m ()
{-# INLINABLE runExperimentByIndex_ #-}
runExperimentByIndex_ :: forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> Int
-> ExperimentMonadTry r m ()
runExperimentByIndex_ m () -> ExperimentMonad r m a
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation Int
runIndex =
  do Either SomeException a
x <- (m () -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> Int
-> ExperimentMonad r m (Either SomeException a)
forall (m :: * -> *) r a.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m a)
-> Experiment m
-> [ExperimentGenerator r m]
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runExperimentByIndex m () -> ExperimentMonad r m a
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation Int
runIndex
     Either SomeException () -> ExperimentMonadTry r m ()
forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (Either SomeException a
x Either SomeException a
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forall a b.
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-> Either SomeException b -> Either SomeException b
forall (m :: * -> *) a b. Monad m => m a -> m b -> m b
>> () -> Either SomeException ()
forall a. a -> Either SomeException a
forall (m :: * -> *) a. Monad m => a -> m a
return ())
runExperimentContByIndex :: (MonadDES m,
                             ExperimentRendering r m,
                             Monad (ExperimentMonad r m),
                             MonadException (ExperimentMonad r m))
                            => (m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
                            
                            
                            -> Experiment m
                            
                            -> [ExperimentGenerator r m]
                            
                            -> r
                            
                            -> Simulation m (Results m)
                            
                            -> Int
                            
                            -> ExperimentMonadTry r m (a, ExperimentMonadTry r m b)
{-# INLINABLE runExperimentContByIndex #-}
runExperimentContByIndex :: forall (m :: * -> *) r a b.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
-> Experiment m
-> [ExperimentGenerator r m]
-> r
-> Simulation m (Results m)
-> Int
-> ExperimentMonadTry r m (a, ExperimentMonadTry r m b)
runExperimentContByIndex m () -> ExperimentMonad r m (a, ExperimentMonad r m b)
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation Int
runIndex =
  do let specs :: Specs m
specs      = Experiment m -> Specs m
forall (m :: * -> *). Experiment m -> Specs m
experimentSpecs Experiment m
e
         runCount :: Int
runCount   = Experiment m -> Int
forall (m :: * -> *). Experiment m -> Int
experimentRunCount Experiment m
e
     ExperimentEnvironment r m
env <- Experiment m
-> r -> ExperimentMonad r m (ExperimentEnvironment r m)
forall r (m :: * -> *).
ExperimentRendering r m =>
Experiment m
-> r -> ExperimentMonad r m (ExperimentEnvironment r m)
prepareExperiment Experiment m
e r
r
     let c1 :: ExperimentMonadTry r m (a, ExperimentMonadTry r m b)
c1 =
           do [ExperimentReporter r m]
reporters <- (ExperimentGenerator r m
 -> ExperimentMonad r m (ExperimentReporter r m))
-> [ExperimentGenerator r m]
-> ExperimentMonad r m [ExperimentReporter r m]
forall (t :: * -> *) (m :: * -> *) a b.
(Traversable t, Monad m) =>
(a -> m b) -> t a -> m (t b)
forall (m :: * -> *) a b. Monad m => (a -> m b) -> [a] -> m [b]
mapM (\ExperimentGenerator r m
x -> ExperimentGenerator r m
-> Experiment m
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forall r (m :: * -> *).
ExperimentGenerator r m
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generateReporter ExperimentGenerator r m
x Experiment m
e r
r ExperimentEnvironment r m
env)
                           [ExperimentGenerator r m]
generators
              [ExperimentReporter r m]
-> (ExperimentReporter r m -> ExperimentMonad r m ())
-> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ExperimentReporter r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterInitialise
              let simulate :: Simulation m ()
simulate =
                    do ResultPredefinedSignals m
signals <- Simulation m (ResultPredefinedSignals m)
forall (m :: * -> *).
MonadDES m =>
Simulation m (ResultPredefinedSignals m)
newResultPredefinedSignals
                       Results m
results <- Simulation m (Results m)
simulation
                       let d :: ExperimentData m
d = ExperimentData { experimentResults :: Results m
experimentResults = Experiment m -> ResultTransform m
forall (m :: * -> *). Experiment m -> ResultTransform m
experimentTransform Experiment m
e Results m
results,
                                                experimentPredefinedSignals :: ResultPredefinedSignals m
experimentPredefinedSignals = ResultPredefinedSignals m
signals }
                       ((), DisposableEvent m
fs) <- Dynamics m ((), DisposableEvent m)
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forall (m :: * -> *) a. Dynamics m a -> Simulation m a
runDynamicsInStartTime (Dynamics m ((), DisposableEvent m)
 -> Simulation m ((), DisposableEvent m))
-> Dynamics m ((), DisposableEvent m)
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forall a b. (a -> b) -> a -> b
$
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-> Event m ((), DisposableEvent m)
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forall a. EventProcessing -> Event m a -> Dynamics m a
forall (m :: * -> *) a.
EventQueueing m =>
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runEventWith EventProcessing
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forall a b. (a -> b) -> a -> b
$
                                   (Composite m ()
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-> DisposableEvent m
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forall a b c. (a -> b -> c) -> b -> a -> c
flip Composite m ()
-> DisposableEvent m -> Event m ((), DisposableEvent m)
forall (m :: * -> *) a.
Composite m a
-> DisposableEvent m -> Event m (a, DisposableEvent m)
runComposite DisposableEvent m
forall a. Monoid a => a
mempty (Composite m () -> Event m ((), DisposableEvent m))
-> Composite m () -> Event m ((), DisposableEvent m)
forall a b. (a -> b) -> a -> b
$
                                   [ExperimentReporter r m]
-> (ExperimentReporter r m -> Composite m ()) -> Composite m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ((ExperimentReporter r m -> Composite m ()) -> Composite m ())
-> (ExperimentReporter r m -> Composite m ()) -> Composite m ()
forall a b. (a -> b) -> a -> b
$ \ExperimentReporter r m
reporter ->
                                   ExperimentReporter r m -> ExperimentData m -> Composite m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentData m -> Composite m ()
reporterSimulate ExperimentReporter r m
reporter ExperimentData m
d
                       let m1 :: Simulation m ()
m1 =
                             Event m () -> Simulation m ()
forall (m :: * -> *) a. MonadDES m => Event m a -> Simulation m a
runEventInStopTime (Event m () -> Simulation m ()) -> Event m () -> Simulation m ()
forall a b. (a -> b) -> a -> b
$
                             () -> Event m ()
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forall (m :: * -> *) a. Monad m => a -> m a
return ()
                           m2 :: Simulation m ()
m2 =
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forall (m :: * -> *) a. MonadDES m => Event m a -> Simulation m a
runEventInStopTime (Event m () -> Simulation m ()) -> Event m () -> Simulation m ()
forall a b. (a -> b) -> a -> b
$
                             DisposableEvent m -> Event m ()
forall (m :: * -> *). DisposableEvent m -> Event m ()
disposeEvent DisposableEvent m
fs
                           mh :: SimulationAbort -> m ()
mh (SimulationAbort String
e') =
                             () -> m ()
forall a. a -> m a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
                       Simulation m () -> Simulation m () -> Simulation m ()
forall (m :: * -> *) a b.
MonadException m =>
Simulation m a -> Simulation m b -> Simulation m a
finallySimulation (Simulation m ()
-> (SimulationAbort -> Simulation m ()) -> Simulation m ()
forall (m :: * -> *) e a.
(MonadException m, Exception e) =>
Simulation m a -> (e -> Simulation m a) -> Simulation m a
catchSimulation Simulation m ()
m1 SimulationAbort -> Simulation m ()
forall {m :: * -> *}. Monad m => SimulationAbort -> m ()
mh) Simulation m ()
m2
              (a
a, ExperimentMonad r m b
m) <- m () -> ExperimentMonad r m (a, ExperimentMonad r m b)
executor (m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
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forall a b. (a -> b) -> a -> b
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                        Simulation m () -> Specs m -> Int -> Int -> m ()
forall (m :: * -> *) a.
MonadDES m =>
Simulation m a -> Specs m -> Int -> Int -> m a
runSimulationByIndex Simulation m ()
simulate Specs m
specs Int
runCount Int
runIndex
              let m2 :: ExperimentMonadTry r m b
m2 =
                    do b
b <- ExperimentMonad r m b
m
                       [ExperimentReporter r m]
-> (ExperimentReporter r m -> ExperimentMonad r m ())
-> ExperimentMonad r m ()
forall (t :: * -> *) (m :: * -> *) a b.
(Foldable t, Monad m) =>
t a -> (a -> m b) -> m ()
forM_ [ExperimentReporter r m]
reporters ExperimentReporter r m -> ExperimentMonad r m ()
forall r (m :: * -> *).
ExperimentReporter r m -> ExperimentMonad r m ()
reporterFinalise
                       Experiment m
-> r
-> [ExperimentReporter r m]
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forall r (m :: * -> *).
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Experiment m
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renderExperiment Experiment m
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r [ExperimentReporter r m]
reporters ExperimentEnvironment r m
env
                       Experiment m
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Experiment m
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onExperimentCompleted Experiment m
e r
r ExperimentEnvironment r m
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                       Either SomeException b -> ExperimentMonadTry r m b
forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (b -> Either SomeException b
forall a b. b -> Either a b
Right b
b)
                  mh :: SomeException -> ExperimentMonadTry r m b
mh z :: SomeException
z@(SomeException e
e') =
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-> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
forall e.
Exception e =>
Experiment m
-> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
forall r (m :: * -> *) e.
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Experiment m
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onExperimentFailed Experiment m
e r
r ExperimentEnvironment r m
env e
e'
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forall a. a -> ExperimentMonad r m a
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Left SomeException
z)
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forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return ((a, ExperimentMonadTry r m b)
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Right (a
a, ExperimentMonadTry r m b
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forall e a.
Exception e =>
ExperimentMonad r m a
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forall (m :: * -> *) e a.
(MonadException m, Exception e) =>
m a -> (e -> m a) -> m a
catchComp ExperimentMonadTry r m b
m2 SomeException -> ExperimentMonadTry r m b
mh))
         ch :: SomeException
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ch z :: SomeException
z@(SomeException e
e') =
           do Experiment m
-> r -> ExperimentEnvironment r m -> e -> ExperimentMonad r m ()
forall e.
Exception e =>
Experiment m
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forall r (m :: * -> *) e.
(ExperimentRendering r m, Exception e) =>
Experiment m
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onExperimentFailed Experiment m
e r
r ExperimentEnvironment r m
env e
e'
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forall a. a -> ExperimentMonad r m a
forall (m :: * -> *) a. Monad m => a -> m a
return (SomeException -> Either SomeException (a, ExperimentMonadTry r m b)
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Left SomeException
z)
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forall e a.
Exception e =>
ExperimentMonad r m a
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forall (m :: * -> *) e a.
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m a -> (e -> m a) -> m a
catchComp ExperimentMonadTry r m (a, ExperimentMonadTry r m b)
c1 SomeException
-> ExperimentMonadTry r m (a, ExperimentMonadTry r m b)
ch
runExperimentContByIndex_ :: (MonadDES m,
                              ExperimentRendering r m,
                              Monad (ExperimentMonad r m),
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                             => (m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
                             
                             
                             -> Experiment m
                             
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                             -> r
                             
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{-# INLINABLE runExperimentContByIndex_ #-}
runExperimentContByIndex_ :: forall (m :: * -> *) r a b.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
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-> r
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-> ExperimentMonadTry r m (a, ExperimentMonadTry r m ())
runExperimentContByIndex_ m () -> ExperimentMonad r m (a, ExperimentMonad r m b)
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation Int
runIndex =
  do Either
  SomeException (a, ExperimentMonad r m (Either SomeException b))
x <- (m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
-> Experiment m
-> [ExperimentGenerator r m]
-> r
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-> ExperimentMonad
     r
     m
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        SomeException (a, ExperimentMonad r m (Either SomeException b)))
forall (m :: * -> *) r a b.
(MonadDES m, ExperimentRendering r m, Monad (ExperimentMonad r m),
 MonadException (ExperimentMonad r m)) =>
(m () -> ExperimentMonad r m (a, ExperimentMonad r m b))
-> Experiment m
-> [ExperimentGenerator r m]
-> r
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-> ExperimentMonadTry r m (a, ExperimentMonadTry r m b)
runExperimentContByIndex m () -> ExperimentMonad r m (a, ExperimentMonad r m b)
executor Experiment m
e [ExperimentGenerator r m]
generators r
r Simulation m (Results m)
simulation Int
runIndex
     case Either
  SomeException (a, ExperimentMonad r m (Either SomeException b))
x of
       Left SomeException
e -> Either SomeException (a, ExperimentMonadTry r m ())
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forall a b. (a -> b) -> a -> b
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forall (m :: * -> *) a b. Monad m => m a -> m b -> m b
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