{-# LANGUAGE TypeApplications #-}
#if !defined(__HADDOCK_VERSION__)
#define ENABLE_OVERLOADING
#endif
module GI.GLib.Structs.SequenceIter
(
SequenceIter(..) ,
#if defined(ENABLE_OVERLOADING)
ResolveSequenceIterMethod ,
#endif
#if defined(ENABLE_OVERLOADING)
SequenceIterCompareMethodInfo ,
#endif
sequenceIterCompare ,
#if defined(ENABLE_OVERLOADING)
SequenceIterGetPositionMethodInfo ,
#endif
sequenceIterGetPosition ,
#if defined(ENABLE_OVERLOADING)
SequenceIterGetSequenceMethodInfo ,
#endif
sequenceIterGetSequence ,
#if defined(ENABLE_OVERLOADING)
SequenceIterIsBeginMethodInfo ,
#endif
sequenceIterIsBegin ,
#if defined(ENABLE_OVERLOADING)
SequenceIterIsEndMethodInfo ,
#endif
sequenceIterIsEnd ,
#if defined(ENABLE_OVERLOADING)
SequenceIterMoveMethodInfo ,
#endif
sequenceIterMove ,
#if defined(ENABLE_OVERLOADING)
SequenceIterNextMethodInfo ,
#endif
sequenceIterNext ,
#if defined(ENABLE_OVERLOADING)
SequenceIterPrevMethodInfo ,
#endif
sequenceIterPrev ,
) where
import Data.GI.Base.ShortPrelude
import qualified Data.GI.Base.ShortPrelude as SP
import qualified Data.GI.Base.Overloading as O
import qualified Prelude as P
import qualified Data.GI.Base.Attributes as GI.Attributes
import qualified Data.GI.Base.BasicTypes as B.Types
import qualified Data.GI.Base.ManagedPtr as B.ManagedPtr
import qualified Data.GI.Base.GArray as B.GArray
import qualified Data.GI.Base.GClosure as B.GClosure
import qualified Data.GI.Base.GError as B.GError
import qualified Data.GI.Base.GHashTable as B.GHT
import qualified Data.GI.Base.GVariant as B.GVariant
import qualified Data.GI.Base.GValue as B.GValue
import qualified Data.GI.Base.GParamSpec as B.GParamSpec
import qualified Data.GI.Base.CallStack as B.CallStack
import qualified Data.GI.Base.Properties as B.Properties
import qualified Data.GI.Base.Signals as B.Signals
import qualified Control.Monad.IO.Class as MIO
import qualified Data.Coerce as Coerce
import qualified Data.Text as T
import qualified Data.Kind as DK
import qualified Data.ByteString.Char8 as B
import qualified Data.Map as Map
import qualified Foreign.Ptr as FP
import qualified GHC.OverloadedLabels as OL
import qualified GHC.Records as R
import qualified Data.Word as DW
import qualified Data.Int as DI
import qualified System.Posix.Types as SPT
import qualified Foreign.C.Types as FCT
#if MIN_VERSION_base(4,18,0)
import qualified GI.GLib.Callbacks as GLib.Callbacks
import {-# SOURCE #-} qualified GI.GLib.Structs.Sequence as GLib.Sequence
#else
import {-# SOURCE #-} qualified GI.GLib.Structs.Sequence as GLib.Sequence
#endif
newtype SequenceIter = SequenceIter (SP.ManagedPtr SequenceIter)
deriving (SequenceIter -> SequenceIter -> Bool
(SequenceIter -> SequenceIter -> Bool)
-> (SequenceIter -> SequenceIter -> Bool) -> Eq SequenceIter
forall a. (a -> a -> Bool) -> (a -> a -> Bool) -> Eq a
$c== :: SequenceIter -> SequenceIter -> Bool
== :: SequenceIter -> SequenceIter -> Bool
$c/= :: SequenceIter -> SequenceIter -> Bool
/= :: SequenceIter -> SequenceIter -> Bool
Eq)
instance SP.ManagedPtrNewtype SequenceIter where
toManagedPtr :: SequenceIter -> ManagedPtr SequenceIter
toManagedPtr (SequenceIter ManagedPtr SequenceIter
p) = ManagedPtr SequenceIter
p
instance BoxedPtr SequenceIter where
boxedPtrCopy :: SequenceIter -> IO SequenceIter
boxedPtrCopy = SequenceIter -> IO SequenceIter
forall a. a -> IO a
forall (m :: * -> *) a. Monad m => a -> m a
return
boxedPtrFree :: SequenceIter -> IO ()
boxedPtrFree = \SequenceIter
_x -> () -> IO ()
forall a. a -> IO a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
#if defined(ENABLE_OVERLOADING)
instance O.HasAttributeList SequenceIter
type instance O.AttributeList SequenceIter = SequenceIterAttributeList
type SequenceIterAttributeList = ('[ ] :: [(Symbol, DK.Type)])
#endif
foreign import ccall "g_sequence_iter_compare" g_sequence_iter_compare ::
Ptr SequenceIter ->
Ptr SequenceIter ->
IO Int32
sequenceIterCompare ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> SequenceIter
-> m Int32
sequenceIterCompare :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> SequenceIter -> m Int32
sequenceIterCompare SequenceIter
a SequenceIter
b = IO Int32 -> m Int32
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Int32 -> m Int32) -> IO Int32 -> m Int32
forall a b. (a -> b) -> a -> b
$ do
a' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
a
b' <- unsafeManagedPtrGetPtr b
result <- g_sequence_iter_compare a' b'
touchManagedPtr a
touchManagedPtr b
return result
#if defined(ENABLE_OVERLOADING)
data SequenceIterCompareMethodInfo
instance (signature ~ (SequenceIter -> m Int32), MonadIO m) => O.OverloadedMethod SequenceIterCompareMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterCompare
instance O.OverloadedMethodInfo SequenceIterCompareMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterCompare",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterCompare"
})
#endif
foreign import ccall "g_sequence_iter_get_position" g_sequence_iter_get_position ::
Ptr SequenceIter ->
IO Int32
sequenceIterGetPosition ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> m Int32
sequenceIterGetPosition :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> m Int32
sequenceIterGetPosition SequenceIter
iter = IO Int32 -> m Int32
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Int32 -> m Int32) -> IO Int32 -> m Int32
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_get_position iter'
touchManagedPtr iter
return result
#if defined(ENABLE_OVERLOADING)
data SequenceIterGetPositionMethodInfo
instance (signature ~ (m Int32), MonadIO m) => O.OverloadedMethod SequenceIterGetPositionMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterGetPosition
instance O.OverloadedMethodInfo SequenceIterGetPositionMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterGetPosition",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterGetPosition"
})
#endif
foreign import ccall "g_sequence_iter_get_sequence" g_sequence_iter_get_sequence ::
Ptr SequenceIter ->
IO (Ptr GLib.Sequence.Sequence)
sequenceIterGetSequence ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> m GLib.Sequence.Sequence
sequenceIterGetSequence :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> m Sequence
sequenceIterGetSequence SequenceIter
iter = IO Sequence -> m Sequence
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Sequence -> m Sequence) -> IO Sequence -> m Sequence
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_get_sequence iter'
checkUnexpectedReturnNULL "sequenceIterGetSequence" result
result' <- (newPtr GLib.Sequence.Sequence) result
touchManagedPtr iter
return result'
#if defined(ENABLE_OVERLOADING)
data SequenceIterGetSequenceMethodInfo
instance (signature ~ (m GLib.Sequence.Sequence), MonadIO m) => O.OverloadedMethod SequenceIterGetSequenceMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterGetSequence
instance O.OverloadedMethodInfo SequenceIterGetSequenceMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterGetSequence",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterGetSequence"
})
#endif
foreign import ccall "g_sequence_iter_is_begin" g_sequence_iter_is_begin ::
Ptr SequenceIter ->
IO CInt
sequenceIterIsBegin ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> m Bool
sequenceIterIsBegin :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> m Bool
sequenceIterIsBegin SequenceIter
iter = IO Bool -> m Bool
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Bool -> m Bool) -> IO Bool -> m Bool
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_is_begin iter'
let result' = (CInt -> CInt -> Bool
forall a. Eq a => a -> a -> Bool
/= CInt
0) CInt
result
touchManagedPtr iter
return result'
#if defined(ENABLE_OVERLOADING)
data SequenceIterIsBeginMethodInfo
instance (signature ~ (m Bool), MonadIO m) => O.OverloadedMethod SequenceIterIsBeginMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterIsBegin
instance O.OverloadedMethodInfo SequenceIterIsBeginMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterIsBegin",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterIsBegin"
})
#endif
foreign import ccall "g_sequence_iter_is_end" g_sequence_iter_is_end ::
Ptr SequenceIter ->
IO CInt
sequenceIterIsEnd ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> m Bool
sequenceIterIsEnd :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> m Bool
sequenceIterIsEnd SequenceIter
iter = IO Bool -> m Bool
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Bool -> m Bool) -> IO Bool -> m Bool
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_is_end iter'
let result' = (CInt -> CInt -> Bool
forall a. Eq a => a -> a -> Bool
/= CInt
0) CInt
result
touchManagedPtr iter
return result'
#if defined(ENABLE_OVERLOADING)
data SequenceIterIsEndMethodInfo
instance (signature ~ (m Bool), MonadIO m) => O.OverloadedMethod SequenceIterIsEndMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterIsEnd
instance O.OverloadedMethodInfo SequenceIterIsEndMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterIsEnd",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterIsEnd"
})
#endif
foreign import ccall "g_sequence_iter_move" g_sequence_iter_move ::
Ptr SequenceIter ->
Int32 ->
IO (Ptr SequenceIter)
sequenceIterMove ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> Int32
-> m SequenceIter
sequenceIterMove :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> Int32 -> m SequenceIter
sequenceIterMove SequenceIter
iter Int32
delta = IO SequenceIter -> m SequenceIter
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO SequenceIter -> m SequenceIter)
-> IO SequenceIter -> m SequenceIter
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_move iter' delta
checkUnexpectedReturnNULL "sequenceIterMove" result
result' <- (newPtr SequenceIter) result
touchManagedPtr iter
return result'
#if defined(ENABLE_OVERLOADING)
data SequenceIterMoveMethodInfo
instance (signature ~ (Int32 -> m SequenceIter), MonadIO m) => O.OverloadedMethod SequenceIterMoveMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterMove
instance O.OverloadedMethodInfo SequenceIterMoveMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterMove",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterMove"
})
#endif
foreign import ccall "g_sequence_iter_next" g_sequence_iter_next ::
Ptr SequenceIter ->
IO (Ptr SequenceIter)
sequenceIterNext ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> m SequenceIter
sequenceIterNext :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> m SequenceIter
sequenceIterNext SequenceIter
iter = IO SequenceIter -> m SequenceIter
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO SequenceIter -> m SequenceIter)
-> IO SequenceIter -> m SequenceIter
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_next iter'
checkUnexpectedReturnNULL "sequenceIterNext" result
result' <- (newPtr SequenceIter) result
touchManagedPtr iter
return result'
#if defined(ENABLE_OVERLOADING)
data SequenceIterNextMethodInfo
instance (signature ~ (m SequenceIter), MonadIO m) => O.OverloadedMethod SequenceIterNextMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterNext
instance O.OverloadedMethodInfo SequenceIterNextMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterNext",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterNext"
})
#endif
foreign import ccall "g_sequence_iter_prev" g_sequence_iter_prev ::
Ptr SequenceIter ->
IO (Ptr SequenceIter)
sequenceIterPrev ::
(B.CallStack.HasCallStack, MonadIO m) =>
SequenceIter
-> m SequenceIter
sequenceIterPrev :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
SequenceIter -> m SequenceIter
sequenceIterPrev SequenceIter
iter = IO SequenceIter -> m SequenceIter
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO SequenceIter -> m SequenceIter)
-> IO SequenceIter -> m SequenceIter
forall a b. (a -> b) -> a -> b
$ do
iter' <- SequenceIter -> IO (Ptr SequenceIter)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr SequenceIter
iter
result <- g_sequence_iter_prev iter'
checkUnexpectedReturnNULL "sequenceIterPrev" result
result' <- (newPtr SequenceIter) result
touchManagedPtr iter
return result'
#if defined(ENABLE_OVERLOADING)
data SequenceIterPrevMethodInfo
instance (signature ~ (m SequenceIter), MonadIO m) => O.OverloadedMethod SequenceIterPrevMethodInfo SequenceIter signature where
overloadedMethod = sequenceIterPrev
instance O.OverloadedMethodInfo SequenceIterPrevMethodInfo SequenceIter where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.GLib.Structs.SequenceIter.sequenceIterPrev",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-glib-2.0.30/docs/GI-GLib-Structs-SequenceIter.html#v:sequenceIterPrev"
})
#endif
#if defined(ENABLE_OVERLOADING)
type family ResolveSequenceIterMethod (t :: Symbol) (o :: DK.Type) :: DK.Type where
ResolveSequenceIterMethod "compare" o = SequenceIterCompareMethodInfo
ResolveSequenceIterMethod "isBegin" o = SequenceIterIsBeginMethodInfo
ResolveSequenceIterMethod "isEnd" o = SequenceIterIsEndMethodInfo
ResolveSequenceIterMethod "move" o = SequenceIterMoveMethodInfo
ResolveSequenceIterMethod "next" o = SequenceIterNextMethodInfo
ResolveSequenceIterMethod "prev" o = SequenceIterPrevMethodInfo
ResolveSequenceIterMethod "getPosition" o = SequenceIterGetPositionMethodInfo
ResolveSequenceIterMethod "getSequence" o = SequenceIterGetSequenceMethodInfo
ResolveSequenceIterMethod l o = O.MethodResolutionFailed l o
instance (info ~ ResolveSequenceIterMethod t SequenceIter, O.OverloadedMethod info SequenceIter p) => OL.IsLabel t (SequenceIter -> p) where
#if MIN_VERSION_base(4,10,0)
fromLabel = O.overloadedMethod @info
#else
fromLabel _ = O.overloadedMethod @info
#endif
#if MIN_VERSION_base(4,13,0)
instance (info ~ ResolveSequenceIterMethod t SequenceIter, O.OverloadedMethod info SequenceIter p, R.HasField t SequenceIter p) => R.HasField t SequenceIter p where
getField = O.overloadedMethod @info
#endif
instance (info ~ ResolveSequenceIterMethod t SequenceIter, O.OverloadedMethodInfo info SequenceIter) => OL.IsLabel t (O.MethodProxy info SequenceIter) where
#if MIN_VERSION_base(4,10,0)
fromLabel = O.MethodProxy
#else
fromLabel _ = O.MethodProxy
#endif
#endif