Safe Haskell | Safe |
---|---|
Language | Haskell2010 |
Please see the README.md file in the safe-exceptions repo for information on how to use this module. Relevant links:
- throw :: (MonadThrow m, Exception e) => e -> m a
- throwIO :: (MonadThrow m, Exception e) => e -> m a
- throwM :: (MonadThrow m, Exception e) => e -> m a
- throwTo :: (Exception e, MonadIO m) => ThreadId -> e -> m ()
- impureThrow :: Exception e => e -> a
- catch :: (MonadCatch m, Exception e) => m a -> (e -> m a) -> m a
- catchIO :: MonadCatch m => m a -> (IOException -> m a) -> m a
- catchAny :: MonadCatch m => m a -> (SomeException -> m a) -> m a
- catchDeep :: (MonadCatch m, MonadIO m, Exception e, NFData a) => m a -> (e -> m a) -> m a
- catchAnyDeep :: (MonadCatch m, MonadIO m, NFData a) => m a -> (SomeException -> m a) -> m a
- catchAsync :: (MonadCatch m, Exception e) => m a -> (e -> m a) -> m a
- catchJust :: (MonadCatch m, Exception e) => (e -> Maybe b) -> m a -> (b -> m a) -> m a
- handle :: (MonadCatch m, Exception e) => (e -> m a) -> m a -> m a
- handleIO :: MonadCatch m => (IOException -> m a) -> m a -> m a
- handleAny :: MonadCatch m => (SomeException -> m a) -> m a -> m a
- handleDeep :: (MonadCatch m, Exception e, MonadIO m, NFData a) => (e -> m a) -> m a -> m a
- handleAnyDeep :: (MonadCatch m, MonadIO m, NFData a) => (SomeException -> m a) -> m a -> m a
- handleAsync :: (MonadCatch m, Exception e) => (e -> m a) -> m a -> m a
- handleJust :: (MonadCatch m, Exception e) => (e -> Maybe b) -> (b -> m a) -> m a -> m a
- try :: (MonadCatch m, Exception e) => m a -> m (Either e a)
- tryIO :: MonadCatch m => m a -> m (Either IOException a)
- tryAny :: MonadCatch m => m a -> m (Either SomeException a)
- tryDeep :: (MonadCatch m, MonadIO m, Exception e, NFData a) => m a -> m (Either e a)
- tryAnyDeep :: (MonadCatch m, MonadIO m, NFData a) => m a -> m (Either SomeException a)
- tryAsync :: (MonadCatch m, Exception e) => m a -> m (Either e a)
- tryJust :: (MonadCatch m, Exception e) => (e -> Maybe b) -> m a -> m (Either b a)
- data Handler m a = Exception e => Handler (e -> m a)
- catches :: (MonadCatch m, MonadThrow m) => m a -> [Handler m a] -> m a
- catchesDeep :: (MonadCatch m, MonadThrow m, MonadIO m, NFData a) => m a -> [Handler m a] -> m a
- catchesAsync :: (MonadCatch m, MonadThrow m) => m a -> [Handler m a] -> m a
- onException :: MonadMask m => m a -> m b -> m a
- bracket :: forall m a b c. MonadMask m => m a -> (a -> m b) -> (a -> m c) -> m c
- bracket_ :: MonadMask m => m a -> m b -> m c -> m c
- finally :: MonadMask m => m a -> m b -> m a
- withException :: (MonadMask m, Exception e) => m a -> (e -> m b) -> m a
- bracketOnError :: forall m a b c. MonadMask m => m a -> (a -> m b) -> (a -> m c) -> m c
- bracketOnError_ :: MonadMask m => m a -> m b -> m c -> m c
- data SyncExceptionWrapper = Exception e => SyncExceptionWrapper e
- toSyncException :: Exception e => e -> SomeException
- data AsyncExceptionWrapper = Exception e => AsyncExceptionWrapper e
- toAsyncException :: Exception e => e -> SomeException
- isSyncException :: Exception e => e -> Bool
- isAsyncException :: Exception e => e -> Bool
- class Monad m => MonadThrow m
- class MonadThrow m => MonadCatch m
- class MonadCatch m => MonadMask m where
- mask :: ((forall a. m a -> m a) -> m b) -> m b
- uninterruptibleMask :: ((forall a. m a -> m a) -> m b) -> m b
- mask_ :: MonadMask m => m a -> m a
- uninterruptibleMask_ :: MonadMask m => m a -> m a
- catchIOError :: MonadCatch m => m a -> (IOError -> m a) -> m a
- handleIOError :: MonadCatch m => (IOError -> m a) -> m a -> m a
- class (Typeable * e, Show e) => Exception e where
- toException :: e -> SomeException
- fromException :: SomeException -> Maybe e
- displayException :: e -> String
- class Typeable k a
- data SomeException :: * where
- data SomeAsyncException :: * where
- data IOException :: *
Throwing
throw :: (MonadThrow m, Exception e) => e -> m a Source #
Synchronously throw the given exception
Since: 0.1.0.0
throwTo :: (Exception e, MonadIO m) => ThreadId -> e -> m () Source #
Throw an asynchronous exception to another thread
It's usually a better idea to use the async package, see https://github.com/fpco/safe-exceptions#quickstart
Since: 0.1.0.0
impureThrow :: Exception e => e -> a Source #
Generate a pure value which, when forced, will synchronously throw the given exception
Generally it's better to avoid using this function and instead use throw
,
see https://github.com/fpco/safe-exceptions#quickstart
Since: 0.1.0.0
Catching (with recovery)
catch :: (MonadCatch m, Exception e) => m a -> (e -> m a) -> m a Source #
Same as upstream catch
, but will not catch asynchronous
exceptions
Since: 0.1.0.0
catchIO :: MonadCatch m => m a -> (IOException -> m a) -> m a Source #
catch
specialized to only catching IOException
s
Since: 0.1.3.0
catchAny :: MonadCatch m => m a -> (SomeException -> m a) -> m a Source #
catch
specialized to catch all synchronous exception
Since: 0.1.0.0
catchDeep :: (MonadCatch m, MonadIO m, Exception e, NFData a) => m a -> (e -> m a) -> m a Source #
Same as catch
, but fully force evaluation of the result value
to find all impure exceptions.
Since: 0.1.1.0
catchAnyDeep :: (MonadCatch m, MonadIO m, NFData a) => m a -> (SomeException -> m a) -> m a Source #
catchDeep
specialized to catch all synchronous exception
Since: 0.1.1.0
catchAsync :: (MonadCatch m, Exception e) => m a -> (e -> m a) -> m a Source #
catch
without async exception safety
Generally it's better to avoid using this function since we do not want to recover from async exceptions, see https://github.com/fpco/safe-exceptions#quickstart
Since: 0.1.0.0
handle :: (MonadCatch m, Exception e) => (e -> m a) -> m a -> m a Source #
Flipped version of catch
Since: 0.1.0.0
handleIO :: MonadCatch m => (IOException -> m a) -> m a -> m a Source #
handle
specialized to only catching IOException
s
Since: 0.1.3.0
handleAny :: MonadCatch m => (SomeException -> m a) -> m a -> m a Source #
Flipped version of catchAny
Since: 0.1.0.0
handleDeep :: (MonadCatch m, Exception e, MonadIO m, NFData a) => (e -> m a) -> m a -> m a Source #
Flipped version of catchDeep
Since: 0.1.1.0
handleAnyDeep :: (MonadCatch m, MonadIO m, NFData a) => (SomeException -> m a) -> m a -> m a Source #
Flipped version of catchAnyDeep
Since: 0.1.1.0
handleAsync :: (MonadCatch m, Exception e) => (e -> m a) -> m a -> m a Source #
Flipped version of catchAsync
Generally it's better to avoid using this function since we do not want to recover from async exceptions, see https://github.com/fpco/safe-exceptions#quickstart
Since: 0.1.0.0
handleJust :: (MonadCatch m, Exception e) => (e -> Maybe b) -> (b -> m a) -> m a -> m a Source #
Flipped catchJust
.
Since: 0.1.4.0
try :: (MonadCatch m, Exception e) => m a -> m (Either e a) Source #
Same as upstream try
, but will not catch asynchronous
exceptions
Since: 0.1.0.0
tryIO :: MonadCatch m => m a -> m (Either IOException a) Source #
try
specialized to only catching IOException
s
Since: 0.1.3.0
tryAny :: MonadCatch m => m a -> m (Either SomeException a) Source #
try
specialized to catch all synchronous exceptions
Since: 0.1.0.0
tryDeep :: (MonadCatch m, MonadIO m, Exception e, NFData a) => m a -> m (Either e a) Source #
Same as try
, but fully force evaluation of the result value
to find all impure exceptions.
Since: 0.1.1.0
tryAnyDeep :: (MonadCatch m, MonadIO m, NFData a) => m a -> m (Either SomeException a) Source #
tryDeep
specialized to catch all synchronous exceptions
Since: 0.1.1.0
tryAsync :: (MonadCatch m, Exception e) => m a -> m (Either e a) Source #
try
without async exception safety
Generally it's better to avoid using this function since we do not want to recover from async exceptions, see https://github.com/fpco/safe-exceptions#quickstart
Since: 0.1.0.0
tryJust :: (MonadCatch m, Exception e) => (e -> Maybe b) -> m a -> m (Either b a) Source #
A variant of try
that takes an exception predicate to select
which exceptions are caught.
Since: 0.1.4.0
catches :: (MonadCatch m, MonadThrow m) => m a -> [Handler m a] -> m a Source #
Same as upstream catches
, but will not catch asynchronous
exceptions
Since: 0.1.2.0
catchesDeep :: (MonadCatch m, MonadThrow m, MonadIO m, NFData a) => m a -> [Handler m a] -> m a Source #
Same as catches
, but fully force evaluation of the result value
to find all impure exceptions.
Since: 0.1.2.0
catchesAsync :: (MonadCatch m, MonadThrow m) => m a -> [Handler m a] -> m a Source #
catches
without async exception safety
Generally it's better to avoid using this function since we do not want to recover from async exceptions, see https://github.com/fpco/safe-exceptions#quickstart
Since: 0.1.2.0
Cleanup (no recovery)
onException :: MonadMask m => m a -> m b -> m a Source #
Async safe version of onException
Since: 0.1.0.0
bracket :: forall m a b c. MonadMask m => m a -> (a -> m b) -> (a -> m c) -> m c Source #
Async safe version of bracket
Since: 0.1.0.0
bracket_ :: MonadMask m => m a -> m b -> m c -> m c Source #
Async safe version of bracket_
Since: 0.1.0.0
withException :: (MonadMask m, Exception e) => m a -> (e -> m b) -> m a Source #
Like onException
, but provides the handler the thrown
exception.
Since: 0.1.0.0
bracketOnError :: forall m a b c. MonadMask m => m a -> (a -> m b) -> (a -> m c) -> m c Source #
Async safe version of bracketOnError
Since: 0.1.0.0
bracketOnError_ :: MonadMask m => m a -> m b -> m c -> m c Source #
Async safe version of bracketOnError_
Since: 0.1.0.0
Coercion to sync and async
data SyncExceptionWrapper Source #
Wrap up an asynchronous exception to be treated as a synchronous exception
This is intended to be created via toSyncException
Since: 0.1.0.0
Exception e => SyncExceptionWrapper e |
toSyncException :: Exception e => e -> SomeException Source #
Convert an exception into a synchronous exception
For synchronous exceptions, this is the same as toException
.
For asynchronous exceptions, this will wrap up the exception with
SyncExceptionWrapper
Since: 0.1.0.0
data AsyncExceptionWrapper Source #
Wrap up a synchronous exception to be treated as an asynchronous exception
This is intended to be created via toAsyncException
Since: 0.1.0.0
Exception e => AsyncExceptionWrapper e |
toAsyncException :: Exception e => e -> SomeException Source #
Convert an exception into an asynchronous exception
For asynchronous exceptions, this is the same as toException
.
For synchronous exceptions, this will wrap up the exception with
AsyncExceptionWrapper
Since: 0.1.0.0
Check exception type
isSyncException :: Exception e => e -> Bool Source #
Check if the given exception is synchronous
Since: 0.1.0.0
isAsyncException :: Exception e => e -> Bool Source #
Check if the given exception is asynchronous
Since: 0.1.0.0
Reexports
class Monad m => MonadThrow m #
A class for monads in which exceptions may be thrown.
Instances should obey the following law:
throwM e >> x = throwM e
In other words, throwing an exception short-circuits the rest of the monadic computation.
MonadThrow [] | |
MonadThrow Maybe | |
MonadThrow IO | |
MonadThrow Q | |
MonadThrow STM | |
(~) * e SomeException => MonadThrow (Either e) | |
MonadThrow m => MonadThrow (ListT m) | |
MonadThrow m => MonadThrow (MaybeT m) | Throws exceptions into the base monad. |
MonadThrow m => MonadThrow (ExceptT e m) | Throws exceptions into the base monad. |
(Error e, MonadThrow m) => MonadThrow (ErrorT e m) | Throws exceptions into the base monad. |
MonadThrow m => MonadThrow (StateT s m) | |
MonadThrow m => MonadThrow (StateT s m) | |
(MonadThrow m, Monoid w) => MonadThrow (WriterT w m) | |
(MonadThrow m, Monoid w) => MonadThrow (WriterT w m) | |
MonadThrow m => MonadThrow (IdentityT * m) | |
MonadThrow m => MonadThrow (ContT * r m) | |
MonadThrow m => MonadThrow (ReaderT * r m) | |
(MonadThrow m, Monoid w) => MonadThrow (RWST r w s m) | |
(MonadThrow m, Monoid w) => MonadThrow (RWST r w s m) | |
class MonadThrow m => MonadCatch m #
A class for monads which allow exceptions to be caught, in particular
exceptions which were thrown by throwM
.
Instances should obey the following law:
catch (throwM e) f = f e
Note that the ability to catch an exception does not guarantee that we can
deal with all possible exit points from a computation. Some monads, such as
continuation-based stacks, allow for more than just a success/failure
strategy, and therefore catch
cannot be used by those monads to properly
implement a function such as finally
. For more information, see
MonadMask
.
MonadCatch IO | |
MonadCatch STM | |
(~) * e SomeException => MonadCatch (Either e) | Since: 0.8.3 |
MonadCatch m => MonadCatch (ListT m) | |
MonadCatch m => MonadCatch (MaybeT m) | Catches exceptions from the base monad. |
MonadCatch m => MonadCatch (ExceptT e m) | Catches exceptions from the base monad. |
(Error e, MonadCatch m) => MonadCatch (ErrorT e m) | Catches exceptions from the base monad. |
MonadCatch m => MonadCatch (StateT s m) | |
MonadCatch m => MonadCatch (StateT s m) | |
(MonadCatch m, Monoid w) => MonadCatch (WriterT w m) | |
(MonadCatch m, Monoid w) => MonadCatch (WriterT w m) | |
MonadCatch m => MonadCatch (IdentityT * m) | |
MonadCatch m => MonadCatch (ReaderT * r m) | |
(MonadCatch m, Monoid w) => MonadCatch (RWST r w s m) | |
(MonadCatch m, Monoid w) => MonadCatch (RWST r w s m) | |
class MonadCatch m => MonadMask m where #
A class for monads which provide for the ability to account for all
possible exit points from a computation, and to mask asynchronous
exceptions. Continuation-based monads, and stacks such as ErrorT e IO
which provide for multiple failure modes, are invalid instances of this
class.
Note that this package does provide a MonadMask
instance for CatchT
.
This instance is only valid if the base monad provides no ability to
provide multiple exit. For example, IO
or Either
would be invalid base
monads, but Reader
or State
would be acceptable.
Instances should ensure that, in the following code:
f `finally` g
The action g
is called regardless of what occurs within f
, including
async exceptions.
MonadMask IO | |
(~) * e SomeException => MonadMask (Either e) | Since: 0.8.3 |
MonadMask m => MonadMask (StateT s m) | |
MonadMask m => MonadMask (StateT s m) | |
(MonadMask m, Monoid w) => MonadMask (WriterT w m) | |
(MonadMask m, Monoid w) => MonadMask (WriterT w m) | |
MonadMask m => MonadMask (IdentityT * m) | |
MonadMask m => MonadMask (ReaderT * r m) | |
(MonadMask m, Monoid w) => MonadMask (RWST r w s m) | |
(MonadMask m, Monoid w) => MonadMask (RWST r w s m) | |
uninterruptibleMask_ :: MonadMask m => m a -> m a #
Like uninterruptibleMask
, but does not pass a restore
action to the
argument.
catchIOError :: MonadCatch m => m a -> (IOError -> m a) -> m a #
Catch all IOError
(eqv. IOException
) exceptions. Still somewhat too
general, but better than using catchAll
. See catchIf
for an easy way
of catching specific IOError
s based on the predicates in System.IO.Error.
handleIOError :: MonadCatch m => (IOError -> m a) -> m a -> m a #
Flipped catchIOError
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, Typeable) instance Exception MyException
The 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 deriving Typeable 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 deriving Typeable 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 (Typeable, Show) instance Exception MismatchedParentheses where toException = frontendExceptionToException fromException = frontendExceptionFromException
We can now catch a MismatchedParentheses
exception as
MismatchedParentheses
, SomeFrontendException
or
SomeCompilerException
, but not other types, e.g. IOException
:
*Main> throw MismatchedParenthesescatch
e -> putStrLn ("Caught " ++ show (e :: MismatchedParentheses)) Caught MismatchedParentheses *Main> throw MismatchedParenthesescatch
e -> putStrLn ("Caught " ++ show (e :: SomeFrontendException)) Caught MismatchedParentheses *Main> throw MismatchedParenthesescatch
e -> putStrLn ("Caught " ++ show (e :: SomeCompilerException)) Caught MismatchedParentheses *Main> throw MismatchedParenthesescatch
e -> putStrLn ("Caught " ++ show (e :: IOException)) *** Exception: MismatchedParentheses
Nothing
The class Typeable
allows a concrete representation of a type to
be calculated.
data SomeException :: * where #
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
.
data SomeAsyncException :: * where #
Superclass for asynchronous exceptions.
Since: 4.7.0.0
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.