| Copyright | Bas van Dijk Anders Kaseorg |
|---|---|
| License | BSD-style |
| Maintainer | Bas van Dijk <v.dijk.bas@gmail.com> |
| Stability | experimental |
| Portability | non-portable (extended exceptions) |
| Safe Haskell | Safe |
| Language | Haskell98 |
Control.Exception.Lifted
Description
This is a wrapped version of Control.Exception with types generalized
from IO to all monads in either MonadBase or MonadBaseControl.
Synopsis
- assert :: Bool -> a -> a
- mapException :: (Exception e1, Exception e2) => (e1 -> e2) -> a -> a
- tryWithContext :: Exception e => IO a -> IO (Either (ExceptionWithContext e) a)
- throw :: forall a e. (HasCallStack, Exception e) => e -> a
- addExceptionContext :: ExceptionAnnotation a => a -> SomeException -> SomeException
- displayExceptionWithInfo :: SomeException -> String
- someExceptionContext :: SomeException -> ExceptionContext
- annotateIO :: ExceptionAnnotation e => e -> IO a -> IO a
- catchNoPropagate :: Exception e => IO a -> (ExceptionWithContext e -> IO a) -> IO a
- interruptible :: IO a -> IO a
- rethrowIO :: Exception e => ExceptionWithContext e -> IO a
- asyncExceptionFromException :: Exception e => SomeException -> Maybe e
- asyncExceptionToException :: Exception e => e -> SomeException
- data NestedAtomically = NestedAtomically
- newtype NoMethodError = NoMethodError String
- data NonTermination = NonTermination
- newtype PatternMatchFail = PatternMatchFail String
- newtype RecConError = RecConError String
- newtype RecSelError = RecSelError String
- newtype RecUpdError = RecUpdError String
- newtype TypeError = TypeError String
- data ErrorCall where
- data ArithException
- class (Typeable e, Show e) => Exception e where
- toException :: e -> SomeException
- fromException :: SomeException -> Maybe e
- displayException :: e -> String
- backtraceDesired :: e -> Bool
- data ExceptionWithContext a = ExceptionWithContext ExceptionContext a
- newtype NoBacktrace e = NoBacktrace e
- data SomeException = (Exception e, HasExceptionContext) => SomeException e
- data WhileHandling = WhileHandling SomeException
- data MaskingState
- data AllocationLimitExceeded = AllocationLimitExceeded
- data ArrayException
- newtype AssertionFailed = AssertionFailed String
- data AsyncException
- data BlockedIndefinitelyOnMVar = BlockedIndefinitelyOnMVar
- data BlockedIndefinitelyOnSTM = BlockedIndefinitelyOnSTM
- newtype CompactionFailed = CompactionFailed String
- data Deadlock = Deadlock
- data IOException
- data SomeAsyncException = Exception e => SomeAsyncException e
- throwIO :: (MonadBase IO m, Exception e) => e -> m a
- ioError :: MonadBase IO m => IOError -> m a
- throwTo :: (MonadBase IO m, Exception e) => ThreadId -> e -> m ()
- catch :: (MonadBaseControl IO m, Exception e) => m a -> (e -> m a) -> m a
- catches :: MonadBaseControl IO m => m a -> [Handler m a] -> m a
- data Handler (m :: Type -> Type) a = Exception e => Handler (e -> m a)
- catchJust :: (MonadBaseControl IO m, Exception e) => (e -> Maybe b) -> m a -> (b -> m a) -> m a
- handle :: (MonadBaseControl IO m, Exception e) => (e -> m a) -> m a -> m a
- handleJust :: (MonadBaseControl IO m, Exception e) => (e -> Maybe b) -> (b -> m a) -> m a -> m a
- try :: (MonadBaseControl IO m, Exception e) => m a -> m (Either e a)
- tryJust :: (MonadBaseControl IO m, Exception e) => (e -> Maybe b) -> m a -> m (Either b a)
- evaluate :: MonadBase IO m => a -> m a
- mask :: MonadBaseControl IO m => ((forall a. m a -> m a) -> m b) -> m b
- mask_ :: MonadBaseControl IO m => m a -> m a
- uninterruptibleMask :: MonadBaseControl IO m => ((forall a. m a -> m a) -> m b) -> m b
- uninterruptibleMask_ :: MonadBaseControl IO m => m a -> m a
- getMaskingState :: MonadBase IO m => m MaskingState
- allowInterrupt :: MonadBase IO m => m ()
- bracket :: MonadBaseControl IO m => m a -> (a -> m b) -> (a -> m c) -> m c
- bracket_ :: MonadBaseControl IO m => m a -> m b -> m c -> m c
- bracketOnError :: MonadBaseControl IO m => m a -> (a -> m b) -> (a -> m c) -> m c
- finally :: MonadBaseControl IO m => m a -> m b -> m a
- onException :: MonadBaseControl IO m => m a -> m b -> m a
Documentation
If the first argument evaluates to True, then the result is the
second argument. Otherwise an AssertionFailed exception
is raised, containing a String with the source file and line number of the
call to assert.
Assertions can normally be turned on or off with a compiler flag
(for GHC, assertions are normally on unless optimisation is turned on
with -O or the -fignore-asserts option is given). When assertions
are turned off, the first argument to assert is ignored, and the second
argument is returned as the result.
mapException :: (Exception e1, Exception e2) => (e1 -> e2) -> a -> a #
This function maps one exception into another as proposed in the paper "A semantics for imprecise exceptions".
tryWithContext :: Exception e => IO a -> IO (Either (ExceptionWithContext e) a) #
Like try but also returns the exception context, which is useful if you intend
to rethrow the exception later.
throw :: forall a e. (HasCallStack, Exception e) => e -> a #
Throw an exception. Exceptions may be thrown from purely
functional code, but may only be caught within the IO monad.
WARNING: You may want to use throwIO instead so that your pure code
stays exception-free.
addExceptionContext :: ExceptionAnnotation a => a -> SomeException -> SomeException #
Add more ExceptionContext to a SomeException.
displayExceptionWithInfo :: SomeException -> String #
Displays a SomeException with additional information:
- The type of the underlying exception
- The exception context
By default, uncaughtExceptionHandler uses displayExceptionWithInfo to print uncaught exceptions.
This default can be overridden with setUncaughtExceptionHandler, for
instance, to present custom error messages on exceptions to the user.
Since: base-4.22
someExceptionContext :: SomeException -> ExceptionContext #
View the ExceptionContext of a SomeException.
annotateIO :: ExceptionAnnotation e => e -> IO a -> IO a #
Execute an IO action, adding the given ExceptionContext
to any thrown synchronous exceptions.
Since: base-4.20.0.0
catchNoPropagate :: Exception e => IO a -> (ExceptionWithContext e -> IO a) -> IO a #
A variant of catch which doesn't annotate the handler with the exception
which was caught. This function should be used when you are implementing your own
error handling functions which may rethrow the exceptions.
In the case where you rethrow an exception without modifying it, you should rethrow the exception with the old exception context.
interruptible :: IO a -> IO a #
Allow asynchronous exceptions to be raised even inside mask, making
the operation interruptible (see the discussion of "Interruptible operations"
in Exception).
When called outside mask, or inside uninterruptibleMask, this
function has no effect.
Since: base-4.9.0.0
rethrowIO :: Exception e => ExceptionWithContext e -> IO a #
A utility to use when rethrowing exceptions, no new backtrace will be attached when rethrowing an exception but you must supply the existing context.
asyncExceptionFromException :: Exception e => SomeException -> Maybe e #
Since: base-4.7.0.0
asyncExceptionToException :: Exception e => e -> SomeException #
Since: base-4.7.0.0
data NestedAtomically #
Thrown when the program attempts to call atomically, from the stm
package, inside another call to atomically.
Constructors
| NestedAtomically |
Instances
| Exception NestedAtomically # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: NestedAtomically -> SomeException # fromException :: SomeException -> Maybe NestedAtomically # | |
| Show NestedAtomically # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> NestedAtomically -> ShowS # show :: NestedAtomically -> String # showList :: [NestedAtomically] -> ShowS # | |
newtype NoMethodError #
A class method without a definition (neither a default definition,
nor a definition in the appropriate instance) was called. The
String gives information about which method it was.
Constructors
| NoMethodError String |
Instances
| Exception NoMethodError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: NoMethodError -> SomeException # fromException :: SomeException -> Maybe NoMethodError # displayException :: NoMethodError -> String # backtraceDesired :: NoMethodError -> Bool # | |
| Show NoMethodError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> NoMethodError -> ShowS # show :: NoMethodError -> String # showList :: [NoMethodError] -> ShowS # | |
data NonTermination #
Thrown when the runtime system detects that the computation is guaranteed not to terminate. Note that there is no guarantee that the runtime system will notice whether any given computation is guaranteed to terminate or not.
Constructors
| NonTermination |
Instances
| Exception NonTermination # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: NonTermination -> SomeException # fromException :: SomeException -> Maybe NonTermination # displayException :: NonTermination -> String # backtraceDesired :: NonTermination -> Bool # | |
| Show NonTermination # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> NonTermination -> ShowS # show :: NonTermination -> String # showList :: [NonTermination] -> ShowS # | |
newtype PatternMatchFail #
A pattern match failed. The String gives information about the
source location of the pattern.
Constructors
| PatternMatchFail String |
Instances
| Exception PatternMatchFail # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: PatternMatchFail -> SomeException # fromException :: SomeException -> Maybe PatternMatchFail # | |
| Show PatternMatchFail # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> PatternMatchFail -> ShowS # show :: PatternMatchFail -> String # showList :: [PatternMatchFail] -> ShowS # | |
newtype RecConError #
An uninitialised record field was used. The String gives
information about the source location where the record was
constructed.
Constructors
| RecConError String |
Instances
| Exception RecConError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: RecConError -> SomeException # fromException :: SomeException -> Maybe RecConError # displayException :: RecConError -> String # backtraceDesired :: RecConError -> Bool # | |
| Show RecConError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> RecConError -> ShowS # show :: RecConError -> String # showList :: [RecConError] -> ShowS # | |
newtype RecSelError #
A record selector was applied to a constructor without the
appropriate field. This can only happen with a datatype with
multiple constructors, where some fields are in one constructor
but not another. The String gives information about the source
location of the record selector.
Constructors
| RecSelError String |
Instances
| Exception RecSelError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: RecSelError -> SomeException # fromException :: SomeException -> Maybe RecSelError # displayException :: RecSelError -> String # backtraceDesired :: RecSelError -> Bool # | |
| Show RecSelError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> RecSelError -> ShowS # show :: RecSelError -> String # showList :: [RecSelError] -> ShowS # | |
newtype RecUpdError #
A record update was performed on a constructor without the
appropriate field. This can only happen with a datatype with
multiple constructors, where some fields are in one constructor
but not another. The String gives information about the source
location of the record update.
Constructors
| RecUpdError String |
Instances
| Exception RecUpdError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: RecUpdError -> SomeException # fromException :: SomeException -> Maybe RecUpdError # displayException :: RecUpdError -> String # backtraceDesired :: RecUpdError -> Bool # | |
| Show RecUpdError # | Since: base-4.0 |
Defined in GHC.Internal.Control.Exception.Base Methods showsPrec :: Int -> RecUpdError -> ShowS # show :: RecUpdError -> String # showList :: [RecUpdError] -> ShowS # | |
An expression that didn't typecheck during compile time was called.
This is only possible with -fdefer-type-errors. The String gives
details about the failed type check.
Since: base-4.9.0.0
Instances
| Exception TypeError # | Since: base-4.9.0.0 |
Defined in GHC.Internal.Control.Exception.Base Methods toException :: TypeError -> SomeException # fromException :: SomeException -> Maybe TypeError # displayException :: TypeError -> String # backtraceDesired :: TypeError -> Bool # | |
| Show TypeError # | Since: base-4.9.0.0 |
This is thrown when the user calls error. The String is the
argument given to error.
Historically, there was a second String for the location, but it was subsumed by the backtrace mechanisms (since base-4.22).
Bundled Patterns
| pattern ErrorCallWithLocation :: String -> String -> ErrorCall | Deprecated: ErrorCallWithLocation has been deprecated in favour of ErrorCall (which does not have a location). Backtraces are now handled by the backtrace exception mechanisms exclusively. |
Instances
| Eq ErrorCall # | Since: base-4.7.0.0 |
| Ord ErrorCall # | Since: base-4.7.0.0 |
| Exception ErrorCall # | Since: base-4.0.0.0 |
Defined in GHC.Internal.Exception Methods toException :: ErrorCall -> SomeException # fromException :: SomeException -> Maybe ErrorCall # displayException :: ErrorCall -> String # backtraceDesired :: ErrorCall -> Bool # | |
| Show ErrorCall # | Since: base-4.0.0.0 |
data ArithException #
Arithmetic exceptions.
Constructors
| Overflow | |
| Underflow | |
| LossOfPrecision | |
| DivideByZero | |
| Denormal | |
| RatioZeroDenominator | Since: base-4.6.0.0 |
Instances
class (Typeable e, Show e) => Exception e where #
Any type that you wish to throw or catch as an exception must be an
instance of the Exception class. The simplest case is a new exception
type directly below the root:
data MyException = ThisException | ThatException
deriving Show
instance Exception MyExceptionThe default method definitions in the Exception class do what we need
in this case. You can now throw and catch ThisException and
ThatException as exceptions:
*Main> throw ThisException `catch` \e -> putStrLn ("Caught " ++ show (e :: MyException))
Caught ThisException
In more complicated examples, you may wish to define a whole hierarchy of exceptions:
---------------------------------------------------------------------
-- Make the root exception type for all the exceptions in a compiler
data SomeCompilerException = forall e . Exception e => SomeCompilerException e
instance Show SomeCompilerException where
show (SomeCompilerException e) = show e
instance Exception SomeCompilerException
compilerExceptionToException :: Exception e => e -> SomeException
compilerExceptionToException = toException . SomeCompilerException
compilerExceptionFromException :: Exception e => SomeException -> Maybe e
compilerExceptionFromException x = do
SomeCompilerException a <- fromException x
cast a
---------------------------------------------------------------------
-- Make a subhierarchy for exceptions in the frontend of the compiler
data SomeFrontendException = forall e . Exception e => SomeFrontendException e
instance Show SomeFrontendException where
show (SomeFrontendException e) = show e
instance Exception SomeFrontendException where
toException = compilerExceptionToException
fromException = compilerExceptionFromException
frontendExceptionToException :: Exception e => e -> SomeException
frontendExceptionToException = toException . SomeFrontendException
frontendExceptionFromException :: Exception e => SomeException -> Maybe e
frontendExceptionFromException x = do
SomeFrontendException a <- fromException x
cast a
---------------------------------------------------------------------
-- Make an exception type for a particular frontend compiler exception
data MismatchedParentheses = MismatchedParentheses
deriving Show
instance Exception MismatchedParentheses where
toException = frontendExceptionToException
fromException = frontendExceptionFromExceptionWe can now catch a MismatchedParentheses exception as
MismatchedParentheses, SomeFrontendException or
SomeCompilerException, but not other types, e.g. IOException:
*Main> throw MismatchedParentheses `catch` \e -> putStrLn ("Caught " ++ show (e :: MismatchedParentheses))
Caught MismatchedParentheses
*Main> throw MismatchedParentheses `catch` \e -> putStrLn ("Caught " ++ show (e :: SomeFrontendException))
Caught MismatchedParentheses
*Main> throw MismatchedParentheses `catch` \e -> putStrLn ("Caught " ++ show (e :: SomeCompilerException))
Caught MismatchedParentheses
*Main> throw MismatchedParentheses `catch` \e -> putStrLn ("Caught " ++ show (e :: IOException))
*** Exception: MismatchedParentheses
Minimal complete definition
Nothing
Methods
toException :: e -> SomeException #
toException should produce a SomeException with no attached ExceptionContext.
fromException :: SomeException -> Maybe e #
displayException :: e -> String #
Render this exception value in a human-friendly manner.
Default implementation: .show
Since: base-4.8.0.0
backtraceDesired :: e -> Bool #
Since: base-4.20.0.0
Instances
data ExceptionWithContext a #
Wraps a particular exception exposing its ExceptionContext. Intended to
be used when catching exceptions in cases where access to the context is
desired.
Constructors
| ExceptionWithContext ExceptionContext a |
Instances
| Exception a => Exception (ExceptionWithContext a) # | |
Defined in GHC.Internal.Exception.Type Methods toException :: ExceptionWithContext a -> SomeException # fromException :: SomeException -> Maybe (ExceptionWithContext a) # displayException :: ExceptionWithContext a -> String # backtraceDesired :: ExceptionWithContext a -> Bool # | |
| Show a => Show (ExceptionWithContext a) # | |
Defined in GHC.Internal.Exception.Type Methods showsPrec :: Int -> ExceptionWithContext a -> ShowS # show :: ExceptionWithContext a -> String # showList :: [ExceptionWithContext a] -> ShowS # | |
newtype NoBacktrace e #
Constructors
| NoBacktrace e |
Instances
| Exception e => Exception (NoBacktrace e) # | |
Defined in GHC.Internal.Exception.Type Methods toException :: NoBacktrace e -> SomeException # fromException :: SomeException -> Maybe (NoBacktrace e) # displayException :: NoBacktrace e -> String # backtraceDesired :: NoBacktrace e -> Bool # | |
| Show e => Show (NoBacktrace e) # | |
Defined in GHC.Internal.Exception.Type Methods showsPrec :: Int -> NoBacktrace e -> ShowS # show :: NoBacktrace e -> String # showList :: [NoBacktrace e] -> ShowS # | |
data SomeException #
The SomeException type is the root of the exception type hierarchy.
When an exception of type e is thrown, behind the scenes it is
encapsulated in a SomeException.
Constructors
| (Exception e, HasExceptionContext) => SomeException e |
Instances
| Exception SomeException # | This drops any attached Since: base-3.0 |
Defined in GHC.Internal.Exception.Type Methods toException :: SomeException -> SomeException # fromException :: SomeException -> Maybe SomeException # displayException :: SomeException -> String # backtraceDesired :: SomeException -> Bool # | |
| Show SomeException # | Since: ghc-internal-3.0 |
Defined in GHC.Internal.Exception.Type Methods showsPrec :: Int -> SomeException -> ShowS # show :: SomeException -> String # showList :: [SomeException] -> ShowS # | |
data WhileHandling #
WhileHandling is used to annotate rethrow exceptions. By inspecting
the WhileHandling annotation, all the places the exception has been rethrow
can be recovered.
Constructors
| WhileHandling SomeException |
Instances
| ExceptionAnnotation WhileHandling # | |
Defined in GHC.Internal.Exception.Type Methods | |
| Show WhileHandling # | |
Defined in GHC.Internal.Exception.Type Methods showsPrec :: Int -> WhileHandling -> ShowS # show :: WhileHandling -> String # showList :: [WhileHandling] -> ShowS # | |
data MaskingState #
Describes the behaviour of a thread when an asynchronous exception is received.
Constructors
| Unmasked | asynchronous exceptions are unmasked (the normal state) |
| MaskedInterruptible | the state during |
| MaskedUninterruptible | the state during |
Instances
| Eq MaskingState # | Since: base-4.3.0.0 |
Defined in GHC.Internal.IO | |
| Show MaskingState # | Since: base-4.3.0.0 |
Defined in GHC.Internal.IO Methods showsPrec :: Int -> MaskingState -> ShowS # show :: MaskingState -> String # showList :: [MaskingState] -> ShowS # | |
data AllocationLimitExceeded #
This thread has exceeded its allocation limit. See
setAllocationCounter and
enableAllocationLimit.
Since: base-4.8.0.0
Constructors
| AllocationLimitExceeded |
Instances
| Exception AllocationLimitExceeded # | Since: base-4.8.0.0 |
Defined in GHC.Internal.IO.Exception | |
| Show AllocationLimitExceeded # | Since: base-4.7.1.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> AllocationLimitExceeded -> ShowS # show :: AllocationLimitExceeded -> String # showList :: [AllocationLimitExceeded] -> ShowS # | |
data ArrayException #
Exceptions generated by array operations
Constructors
| IndexOutOfBounds String | An attempt was made to index an array outside its declared bounds. |
| UndefinedElement String | An attempt was made to evaluate an element of an array that had not been initialized. |
Instances
newtype AssertionFailed #
Constructors
| AssertionFailed String |
Instances
| Exception AssertionFailed # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods toException :: AssertionFailed -> SomeException # fromException :: SomeException -> Maybe AssertionFailed # displayException :: AssertionFailed -> String # backtraceDesired :: AssertionFailed -> Bool # | |
| Show AssertionFailed # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> AssertionFailed -> ShowS # show :: AssertionFailed -> String # showList :: [AssertionFailed] -> ShowS # | |
data AsyncException #
Asynchronous exceptions.
Constructors
| StackOverflow | The current thread's stack exceeded its limit. Since an exception has been raised, the thread's stack will certainly be below its limit again, but the programmer should take remedial action immediately. |
| HeapOverflow | The program's heap is reaching its limit, and the program should take action to reduce the amount of live data it has. Notes:
|
| ThreadKilled | This exception is raised by another thread
calling |
| UserInterrupt | This exception is raised by default in the main thread of the program when the user requests to terminate the program via the usual mechanism(s) (e.g. Control-C in the console). |
Instances
data BlockedIndefinitelyOnMVar #
The thread is blocked on an MVar, but there are no other references
to the MVar so it can't ever continue.
Constructors
| BlockedIndefinitelyOnMVar |
Instances
| Exception BlockedIndefinitelyOnMVar # | Since: base-4.1.0.0 |
| Show BlockedIndefinitelyOnMVar # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> BlockedIndefinitelyOnMVar -> ShowS # show :: BlockedIndefinitelyOnMVar -> String # showList :: [BlockedIndefinitelyOnMVar] -> ShowS # | |
data BlockedIndefinitelyOnSTM #
The thread is waiting to retry an STM transaction, but there are no
other references to any TVars involved, so it can't ever continue.
Constructors
| BlockedIndefinitelyOnSTM |
Instances
| Exception BlockedIndefinitelyOnSTM # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception | |
| Show BlockedIndefinitelyOnSTM # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> BlockedIndefinitelyOnSTM -> ShowS # show :: BlockedIndefinitelyOnSTM -> String # showList :: [BlockedIndefinitelyOnSTM] -> ShowS # | |
newtype CompactionFailed #
Compaction found an object that cannot be compacted. Functions
cannot be compacted, nor can mutable objects or pinned objects.
See compact.
Since: base-4.10.0.0
Constructors
| CompactionFailed String |
Instances
| Exception CompactionFailed # | Since: base-4.10.0.0 |
Defined in GHC.Internal.IO.Exception Methods toException :: CompactionFailed -> SomeException # fromException :: SomeException -> Maybe CompactionFailed # | |
| Show CompactionFailed # | Since: base-4.10.0.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> CompactionFailed -> ShowS # show :: CompactionFailed -> String # showList :: [CompactionFailed] -> ShowS # | |
There are no runnable threads, so the program is deadlocked.
The Deadlock exception is raised in the main thread only.
Constructors
| Deadlock |
Instances
| Exception Deadlock # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods toException :: Deadlock -> SomeException # fromException :: SomeException -> Maybe Deadlock # displayException :: Deadlock -> String # backtraceDesired :: Deadlock -> Bool # | |
| Show Deadlock # | Since: base-4.1.0.0 |
data IOException #
Exceptions that occur in the IO monad.
An IOException records a more specific error type, a descriptive
string and maybe the handle that was used when the error was
flagged.
Instances
| Eq IOException # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception | |
| Exception IOException # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods toException :: IOException -> SomeException # fromException :: SomeException -> Maybe IOException # displayException :: IOException -> String # backtraceDesired :: IOException -> Bool # | |
| Show IOException # | Since: base-4.1.0.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> IOException -> ShowS # show :: IOException -> String # showList :: [IOException] -> ShowS # | |
data SomeAsyncException #
Superclass for asynchronous exceptions.
Since: base-4.7.0.0
Constructors
| Exception e => SomeAsyncException e |
Instances
| Exception SomeAsyncException # | Since: base-4.7.0.0 |
Defined in GHC.Internal.IO.Exception Methods toException :: SomeAsyncException -> SomeException # fromException :: SomeException -> Maybe SomeAsyncException # | |
| Show SomeAsyncException # | Since: base-4.7.0.0 |
Defined in GHC.Internal.IO.Exception Methods showsPrec :: Int -> SomeAsyncException -> ShowS # show :: SomeAsyncException -> String # showList :: [SomeAsyncException] -> ShowS # | |
Throwing exceptions
throwTo :: (MonadBase IO m, Exception e) => ThreadId -> e -> m () Source #
Generalized version of throwTo.
Catching exceptions
The catch functions
Arguments
| :: (MonadBaseControl IO m, Exception e) | |
| => m a | The computation to run |
| -> (e -> m a) | Handler to invoke if an exception is raised |
| -> m a |
Generalized version of catch.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
catches :: MonadBaseControl IO m => m a -> [Handler m a] -> m a Source #
Generalized version of catches.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
Arguments
| :: (MonadBaseControl IO m, Exception e) | |
| => (e -> Maybe b) | Predicate to select exceptions |
| -> m a | Computation to run |
| -> (b -> m a) | Handler |
| -> m a |
Generalized version of catchJust.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
The handle functions
handle :: (MonadBaseControl IO m, Exception e) => (e -> m a) -> m a -> m a Source #
Generalized version of handle.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
handleJust :: (MonadBaseControl IO m, Exception e) => (e -> Maybe b) -> (b -> m a) -> m a -> m a Source #
Generalized version of handleJust.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
The try functions
try :: (MonadBaseControl IO m, Exception e) => m a -> m (Either e a) Source #
Generalized version of try.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
tryJust :: (MonadBaseControl IO m, Exception e) => (e -> Maybe b) -> m a -> m (Either b a) Source #
Generalized version of tryJust.
Note, when the given computation throws an exception any monadic
side effects in m will be discarded.
The evaluate function
Asynchronous Exceptions
Asynchronous exception control
The following functions allow a thread to control delivery of asynchronous exceptions during a critical region.
mask :: MonadBaseControl IO m => ((forall a. m a -> m a) -> m b) -> m b Source #
Generalized version of mask.
uninterruptibleMask :: MonadBaseControl IO m => ((forall a. m a -> m a) -> m b) -> m b Source #
Generalized version of uninterruptibleMask.
uninterruptibleMask_ :: MonadBaseControl IO m => m a -> m a Source #
Generalized version of uninterruptibleMask_.
getMaskingState :: MonadBase IO m => m MaskingState Source #
Generalized version of getMaskingState.
allowInterrupt :: MonadBase IO m => m () Source #
Generalized version of allowInterrupt.
Brackets
Arguments
| :: MonadBaseControl IO m | |
| => m a | computation to run first ("acquire resource") |
| -> (a -> m b) | computation to run last ("release resource") |
| -> (a -> m c) | computation to run in-between |
| -> m c |
Generalized version of bracket.
Note:
- When the "acquire" or "release" computations throw exceptions
any monadic side effects in
mwill be discarded. - When the "in-between" computation throws an exception any
monadic side effects in
mproduced by that computation will be discarded but the side effects of the "acquire" or "release" computations will be retained. - Also, any monadic side effects in
mof the "release" computation will be discarded; it is run only for its side effects inIO.
Note that when your acquire and release computations are of type IO
it will be more efficient to write:
liftBaseOp(bracketacquire release)
Arguments
| :: MonadBaseControl IO m | |
| => m a | computation to run first ("acquire resource") |
| -> m b | computation to run last ("release resource") |
| -> m c | computation to run in-between |
| -> m c |
Generalized version of bracket_.
Note any monadic side effects in m of both the "acquire" and
"release" computations will be discarded. To keep the monadic
side effects of the "acquire" computation, use bracket with
constant functions instead.
Note that when your acquire and release computations are of type IO
it will be more efficient to write:
liftBaseOp_(bracket_acquire release)
Arguments
| :: MonadBaseControl IO m | |
| => m a | computation to run first ("acquire resource") |
| -> (a -> m b) | computation to run last ("release resource") |
| -> (a -> m c) | computation to run in-between |
| -> m c |
Generalized version of bracketOnError.
Note:
- When the "acquire" or "release" computations throw exceptions
any monadic side effects in
mwill be discarded. - When the "in-between" computation throws an exception any
monadic side effects in
mproduced by that computation will be discarded but the side effects of the "acquire" computation will be retained. - Also, any monadic side effects in
mof the "release" computation will be discarded; it is run only for its side effects inIO.
Note that when your acquire and release computations are of
type IO it will be more efficient to write:
liftBaseOp(bracketOnErroracquire release)
Utilities
Arguments
| :: MonadBaseControl IO m | |
| => m a | computation to run first |
| -> m b | computation to run afterward (even if an exception was raised) |
| -> m a |
Generalized version of finally.
Note, any monadic side effects in m of the "afterward"
computation will be discarded.
onException :: MonadBaseControl IO m => m a -> m b -> m a Source #
Generalized version of onException.
Note, any monadic side effects in m of the "afterward"
computation will be discarded.