{-# LANGUAGE TypeApplications #-}
#if (MIN_VERSION_haskell_gi_overloading(1,0,0) && !defined(__HADDOCK_VERSION__))
#define ENABLE_OVERLOADING
#endif
module GI.Gsk.Objects.ContainerNode
(
ContainerNode(..) ,
IsContainerNode ,
toContainerNode ,
#if defined(ENABLE_OVERLOADING)
ResolveContainerNodeMethod ,
#endif
#if defined(ENABLE_OVERLOADING)
ContainerNodeGetChildMethodInfo ,
#endif
containerNodeGetChild ,
#if defined(ENABLE_OVERLOADING)
ContainerNodeGetNChildrenMethodInfo ,
#endif
containerNodeGetNChildren ,
containerNodeNew ,
) 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.Cairo.Structs.Context as Cairo.Context
import qualified GI.GLib.Structs.Bytes as GLib.Bytes
import qualified GI.Graphene.Structs.Rect as Graphene.Rect
import qualified GI.Gsk.Callbacks as Gsk.Callbacks
import {-# SOURCE #-} qualified GI.Gsk.Enums as Gsk.Enums
import {-# SOURCE #-} qualified GI.Gsk.Objects.RenderNode as Gsk.RenderNode
#else
import {-# SOURCE #-} qualified GI.Gsk.Objects.RenderNode as Gsk.RenderNode
#endif
newtype ContainerNode = ContainerNode (SP.ManagedPtr ContainerNode)
deriving (ContainerNode -> ContainerNode -> Bool
(ContainerNode -> ContainerNode -> Bool)
-> (ContainerNode -> ContainerNode -> Bool) -> Eq ContainerNode
forall a. (a -> a -> Bool) -> (a -> a -> Bool) -> Eq a
$c== :: ContainerNode -> ContainerNode -> Bool
== :: ContainerNode -> ContainerNode -> Bool
$c/= :: ContainerNode -> ContainerNode -> Bool
/= :: ContainerNode -> ContainerNode -> Bool
Eq)
instance SP.ManagedPtrNewtype ContainerNode where
toManagedPtr :: ContainerNode -> ManagedPtr ContainerNode
toManagedPtr (ContainerNode ManagedPtr ContainerNode
p) = ManagedPtr ContainerNode
p
foreign import ccall "gsk_container_node_get_type"
c_gsk_container_node_get_type :: IO B.Types.GType
instance B.Types.TypedObject ContainerNode where
glibType :: IO GType
glibType = IO GType
c_gsk_container_node_get_type
class (SP.BoxedPtr o, SP.TypedObject o, O.IsDescendantOf ContainerNode o) => IsContainerNode o
instance (SP.BoxedPtr o, SP.TypedObject o, O.IsDescendantOf ContainerNode o) => IsContainerNode o
instance O.HasParentTypes ContainerNode
type instance O.ParentTypes ContainerNode = '[Gsk.RenderNode.RenderNode]
toContainerNode :: (MIO.MonadIO m, IsContainerNode o) => o -> m ContainerNode
toContainerNode :: forall (m :: * -> *) o.
(MonadIO m, IsContainerNode o) =>
o -> m ContainerNode
toContainerNode = IO ContainerNode -> m ContainerNode
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
MIO.liftIO (IO ContainerNode -> m ContainerNode)
-> (o -> IO ContainerNode) -> o -> m ContainerNode
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (ManagedPtr ContainerNode -> ContainerNode)
-> o -> IO ContainerNode
forall o o'.
(HasCallStack, ManagedPtrNewtype o, TypedObject o,
ManagedPtrNewtype o', TypedObject o') =>
(ManagedPtr o' -> o') -> o -> IO o'
B.ManagedPtr.unsafeCastTo ManagedPtr ContainerNode -> ContainerNode
ContainerNode
#if defined(ENABLE_OVERLOADING)
type family ResolveContainerNodeMethod (t :: Symbol) (o :: DK.Type) :: DK.Type where
ResolveContainerNodeMethod "draw" o = Gsk.RenderNode.RenderNodeDrawMethodInfo
ResolveContainerNodeMethod "ref" o = Gsk.RenderNode.RenderNodeRefMethodInfo
ResolveContainerNodeMethod "serialize" o = Gsk.RenderNode.RenderNodeSerializeMethodInfo
ResolveContainerNodeMethod "unref" o = Gsk.RenderNode.RenderNodeUnrefMethodInfo
ResolveContainerNodeMethod "writeToFile" o = Gsk.RenderNode.RenderNodeWriteToFileMethodInfo
ResolveContainerNodeMethod "getBounds" o = Gsk.RenderNode.RenderNodeGetBoundsMethodInfo
ResolveContainerNodeMethod "getChild" o = ContainerNodeGetChildMethodInfo
ResolveContainerNodeMethod "getNChildren" o = ContainerNodeGetNChildrenMethodInfo
ResolveContainerNodeMethod "getNodeType" o = Gsk.RenderNode.RenderNodeGetNodeTypeMethodInfo
ResolveContainerNodeMethod "getOpaqueRect" o = Gsk.RenderNode.RenderNodeGetOpaqueRectMethodInfo
ResolveContainerNodeMethod l o = O.MethodResolutionFailed l o
instance (info ~ ResolveContainerNodeMethod t ContainerNode, O.OverloadedMethod info ContainerNode p) => OL.IsLabel t (ContainerNode -> 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 ~ ResolveContainerNodeMethod t ContainerNode, O.OverloadedMethod info ContainerNode p, R.HasField t ContainerNode p) => R.HasField t ContainerNode p where
getField = O.overloadedMethod @info
#endif
instance (info ~ ResolveContainerNodeMethod t ContainerNode, O.OverloadedMethodInfo info ContainerNode) => OL.IsLabel t (O.MethodProxy info ContainerNode) where
#if MIN_VERSION_base(4,10,0)
fromLabel = O.MethodProxy
#else
fromLabel _ = O.MethodProxy
#endif
#endif
instance BoxedPtr ContainerNode where
boxedPtrCopy :: ContainerNode -> IO ContainerNode
boxedPtrCopy = ContainerNode -> IO ContainerNode
forall a. a -> IO a
forall (m :: * -> *) a. Monad m => a -> m a
return
boxedPtrFree :: ContainerNode -> IO ()
boxedPtrFree = \ContainerNode
_x -> () -> IO ()
forall a. a -> IO a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
foreign import ccall "gsk_container_node_new" gsk_container_node_new ::
Ptr (Ptr Gsk.RenderNode.RenderNode) ->
Word32 ->
IO (Ptr ContainerNode)
containerNodeNew ::
(B.CallStack.HasCallStack, MonadIO m) =>
[Gsk.RenderNode.RenderNode]
-> m ContainerNode
containerNodeNew :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
[RenderNode] -> m ContainerNode
containerNodeNew [RenderNode]
children = IO ContainerNode -> m ContainerNode
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO ContainerNode -> m ContainerNode)
-> IO ContainerNode -> m ContainerNode
forall a b. (a -> b) -> a -> b
$ do
let nChildren :: Word32
nChildren = Int -> Word32
forall a b. (Integral a, Num b) => a -> b
fromIntegral (Int -> Word32) -> Int -> Word32
forall a b. (a -> b) -> a -> b
$ [RenderNode] -> Int
forall a. [a] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
P.length [RenderNode]
children
children' <- (RenderNode -> IO (Ptr RenderNode))
-> [RenderNode] -> IO [Ptr RenderNode]
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 RenderNode -> IO (Ptr RenderNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr [RenderNode]
children
children'' <- packPtrArray children'
result <- gsk_container_node_new children'' nChildren
checkUnexpectedReturnNULL "containerNodeNew" result
result' <- (wrapPtr ContainerNode) result
mapM_ touchManagedPtr children
freeMem children''
return result'
#if defined(ENABLE_OVERLOADING)
#endif
foreign import ccall "gsk_container_node_get_child" gsk_container_node_get_child ::
Ptr ContainerNode ->
Word32 ->
IO (Ptr Gsk.RenderNode.RenderNode)
containerNodeGetChild ::
(B.CallStack.HasCallStack, MonadIO m, IsContainerNode a) =>
a
-> Word32
-> m Gsk.RenderNode.RenderNode
containerNodeGetChild :: forall (m :: * -> *) a.
(HasCallStack, MonadIO m, IsContainerNode a) =>
a -> Word32 -> m RenderNode
containerNodeGetChild a
node Word32
idx = IO RenderNode -> m RenderNode
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO RenderNode -> m RenderNode) -> IO RenderNode -> m RenderNode
forall a b. (a -> b) -> a -> b
$ do
node' <- a -> IO (Ptr ContainerNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr a
node
result <- gsk_container_node_get_child node' idx
checkUnexpectedReturnNULL "containerNodeGetChild" result
result' <- (newPtr Gsk.RenderNode.RenderNode) result
touchManagedPtr node
return result'
#if defined(ENABLE_OVERLOADING)
data ContainerNodeGetChildMethodInfo
instance (signature ~ (Word32 -> m Gsk.RenderNode.RenderNode), MonadIO m, IsContainerNode a) => O.OverloadedMethod ContainerNodeGetChildMethodInfo a signature where
overloadedMethod = containerNodeGetChild
instance O.OverloadedMethodInfo ContainerNodeGetChildMethodInfo a where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.Gsk.Objects.ContainerNode.containerNodeGetChild",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-gsk-4.0.9/docs/GI-Gsk-Objects-ContainerNode.html#v:containerNodeGetChild"
})
#endif
foreign import ccall "gsk_container_node_get_n_children" gsk_container_node_get_n_children ::
Ptr ContainerNode ->
IO Word32
containerNodeGetNChildren ::
(B.CallStack.HasCallStack, MonadIO m, IsContainerNode a) =>
a
-> m Word32
containerNodeGetNChildren :: forall (m :: * -> *) a.
(HasCallStack, MonadIO m, IsContainerNode a) =>
a -> m Word32
containerNodeGetNChildren a
node = IO Word32 -> m Word32
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Word32 -> m Word32) -> IO Word32 -> m Word32
forall a b. (a -> b) -> a -> b
$ do
node' <- a -> IO (Ptr ContainerNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr a
node
result <- gsk_container_node_get_n_children node'
touchManagedPtr node
return result
#if defined(ENABLE_OVERLOADING)
data ContainerNodeGetNChildrenMethodInfo
instance (signature ~ (m Word32), MonadIO m, IsContainerNode a) => O.OverloadedMethod ContainerNodeGetNChildrenMethodInfo a signature where
overloadedMethod = containerNodeGetNChildren
instance O.OverloadedMethodInfo ContainerNodeGetNChildrenMethodInfo a where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.Gsk.Objects.ContainerNode.containerNodeGetNChildren",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-gsk-4.0.9/docs/GI-Gsk-Objects-ContainerNode.html#v:containerNodeGetNChildren"
})
#endif