{-# LANGUAGE TypeApplications #-}
#if !defined(__HADDOCK_VERSION__)
#define ENABLE_OVERLOADING
#endif
module GI.Gsk.Objects.LinearGradientNode
(
LinearGradientNode(..) ,
IsLinearGradientNode ,
toLinearGradientNode ,
#if defined(ENABLE_OVERLOADING)
ResolveLinearGradientNodeMethod ,
#endif
#if defined(ENABLE_OVERLOADING)
LinearGradientNodeGetColorStopsMethodInfo,
#endif
linearGradientNodeGetColorStops ,
#if defined(ENABLE_OVERLOADING)
LinearGradientNodeGetEndMethodInfo ,
#endif
linearGradientNodeGetEnd ,
#if defined(ENABLE_OVERLOADING)
LinearGradientNodeGetNColorStopsMethodInfo,
#endif
linearGradientNodeGetNColorStops ,
#if defined(ENABLE_OVERLOADING)
LinearGradientNodeGetStartMethodInfo ,
#endif
linearGradientNodeGetStart ,
linearGradientNodeNew ,
) 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.Gdk.Structs.RGBA as Gdk.RGBA
import qualified GI.Graphene.Structs.Point as Graphene.Point
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
import {-# SOURCE #-} qualified GI.Gsk.Structs.ColorStop as Gsk.ColorStop
#else
import qualified GI.Graphene.Structs.Point as Graphene.Point
import qualified GI.Graphene.Structs.Rect as Graphene.Rect
import {-# SOURCE #-} qualified GI.Gsk.Objects.RenderNode as Gsk.RenderNode
import {-# SOURCE #-} qualified GI.Gsk.Structs.ColorStop as Gsk.ColorStop
#endif
newtype LinearGradientNode = LinearGradientNode (SP.ManagedPtr LinearGradientNode)
deriving (LinearGradientNode -> LinearGradientNode -> Bool
(LinearGradientNode -> LinearGradientNode -> Bool)
-> (LinearGradientNode -> LinearGradientNode -> Bool)
-> Eq LinearGradientNode
forall a. (a -> a -> Bool) -> (a -> a -> Bool) -> Eq a
$c== :: LinearGradientNode -> LinearGradientNode -> Bool
== :: LinearGradientNode -> LinearGradientNode -> Bool
$c/= :: LinearGradientNode -> LinearGradientNode -> Bool
/= :: LinearGradientNode -> LinearGradientNode -> Bool
Eq)
instance SP.ManagedPtrNewtype LinearGradientNode where
toManagedPtr :: LinearGradientNode -> ManagedPtr LinearGradientNode
toManagedPtr (LinearGradientNode ManagedPtr LinearGradientNode
p) = ManagedPtr LinearGradientNode
p
foreign import ccall "gsk_linear_gradient_node_get_type"
c_gsk_linear_gradient_node_get_type :: IO B.Types.GType
instance B.Types.TypedObject LinearGradientNode where
glibType :: IO GType
glibType = IO GType
c_gsk_linear_gradient_node_get_type
class (SP.BoxedPtr o, SP.TypedObject o, O.IsDescendantOf LinearGradientNode o) => IsLinearGradientNode o
instance (SP.BoxedPtr o, SP.TypedObject o, O.IsDescendantOf LinearGradientNode o) => IsLinearGradientNode o
instance O.HasParentTypes LinearGradientNode
type instance O.ParentTypes LinearGradientNode = '[Gsk.RenderNode.RenderNode]
toLinearGradientNode :: (MIO.MonadIO m, IsLinearGradientNode o) => o -> m LinearGradientNode
toLinearGradientNode :: forall (m :: * -> *) o.
(MonadIO m, IsLinearGradientNode o) =>
o -> m LinearGradientNode
toLinearGradientNode = IO LinearGradientNode -> m LinearGradientNode
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
MIO.liftIO (IO LinearGradientNode -> m LinearGradientNode)
-> (o -> IO LinearGradientNode) -> o -> m LinearGradientNode
forall b c a. (b -> c) -> (a -> b) -> a -> c
. (ManagedPtr LinearGradientNode -> LinearGradientNode)
-> o -> IO LinearGradientNode
forall o o'.
(HasCallStack, ManagedPtrNewtype o, TypedObject o,
ManagedPtrNewtype o', TypedObject o') =>
(ManagedPtr o' -> o') -> o -> IO o'
B.ManagedPtr.unsafeCastTo ManagedPtr LinearGradientNode -> LinearGradientNode
LinearGradientNode
#if defined(ENABLE_OVERLOADING)
type family ResolveLinearGradientNodeMethod (t :: Symbol) (o :: DK.Type) :: DK.Type where
ResolveLinearGradientNodeMethod "draw" o = Gsk.RenderNode.RenderNodeDrawMethodInfo
ResolveLinearGradientNodeMethod "ref" o = Gsk.RenderNode.RenderNodeRefMethodInfo
ResolveLinearGradientNodeMethod "serialize" o = Gsk.RenderNode.RenderNodeSerializeMethodInfo
ResolveLinearGradientNodeMethod "unref" o = Gsk.RenderNode.RenderNodeUnrefMethodInfo
ResolveLinearGradientNodeMethod "writeToFile" o = Gsk.RenderNode.RenderNodeWriteToFileMethodInfo
ResolveLinearGradientNodeMethod "getBounds" o = Gsk.RenderNode.RenderNodeGetBoundsMethodInfo
ResolveLinearGradientNodeMethod "getChildren" o = Gsk.RenderNode.RenderNodeGetChildrenMethodInfo
ResolveLinearGradientNodeMethod "getColorStops" o = LinearGradientNodeGetColorStopsMethodInfo
ResolveLinearGradientNodeMethod "getEnd" o = LinearGradientNodeGetEndMethodInfo
ResolveLinearGradientNodeMethod "getNColorStops" o = LinearGradientNodeGetNColorStopsMethodInfo
ResolveLinearGradientNodeMethod "getNodeType" o = Gsk.RenderNode.RenderNodeGetNodeTypeMethodInfo
ResolveLinearGradientNodeMethod "getOpaqueRect" o = Gsk.RenderNode.RenderNodeGetOpaqueRectMethodInfo
ResolveLinearGradientNodeMethod "getStart" o = LinearGradientNodeGetStartMethodInfo
ResolveLinearGradientNodeMethod l o = O.MethodResolutionFailed l o
instance (info ~ ResolveLinearGradientNodeMethod t LinearGradientNode, O.OverloadedMethod info LinearGradientNode p) => OL.IsLabel t (LinearGradientNode -> 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 ~ ResolveLinearGradientNodeMethod t LinearGradientNode, O.OverloadedMethod info LinearGradientNode p, R.HasField t LinearGradientNode p) => R.HasField t LinearGradientNode p where
getField = O.overloadedMethod @info
#endif
instance (info ~ ResolveLinearGradientNodeMethod t LinearGradientNode, O.OverloadedMethodInfo info LinearGradientNode) => OL.IsLabel t (O.MethodProxy info LinearGradientNode) where
#if MIN_VERSION_base(4,10,0)
fromLabel = O.MethodProxy
#else
fromLabel _ = O.MethodProxy
#endif
#endif
instance BoxedPtr LinearGradientNode where
boxedPtrCopy :: LinearGradientNode -> IO LinearGradientNode
boxedPtrCopy = LinearGradientNode -> IO LinearGradientNode
forall a. a -> IO a
forall (m :: * -> *) a. Monad m => a -> m a
return
boxedPtrFree :: LinearGradientNode -> IO ()
boxedPtrFree = \LinearGradientNode
_x -> () -> IO ()
forall a. a -> IO a
forall (m :: * -> *) a. Monad m => a -> m a
return ()
foreign import ccall "gsk_linear_gradient_node_new" gsk_linear_gradient_node_new ::
Ptr Graphene.Rect.Rect ->
Ptr Graphene.Point.Point ->
Ptr Graphene.Point.Point ->
Ptr Gsk.ColorStop.ColorStop ->
FCT.CSize ->
IO (Ptr LinearGradientNode)
linearGradientNodeNew ::
(B.CallStack.HasCallStack, MonadIO m) =>
Graphene.Rect.Rect
-> Graphene.Point.Point
-> Graphene.Point.Point
-> [Gsk.ColorStop.ColorStop]
-> m LinearGradientNode
linearGradientNodeNew :: forall (m :: * -> *).
(HasCallStack, MonadIO m) =>
Rect -> Point -> Point -> [ColorStop] -> m LinearGradientNode
linearGradientNodeNew Rect
bounds Point
start Point
end [ColorStop]
colorStops = IO LinearGradientNode -> m LinearGradientNode
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO LinearGradientNode -> m LinearGradientNode)
-> IO LinearGradientNode -> m LinearGradientNode
forall a b. (a -> b) -> a -> b
$ do
let nColorStops :: CSize
nColorStops = Int -> CSize
forall a b. (Integral a, Num b) => a -> b
fromIntegral (Int -> CSize) -> Int -> CSize
forall a b. (a -> b) -> a -> b
$ [ColorStop] -> Int
forall a. [a] -> Int
forall (t :: * -> *) a. Foldable t => t a -> Int
P.length [ColorStop]
colorStops
bounds' <- Rect -> IO (Ptr Rect)
forall a. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr a)
unsafeManagedPtrGetPtr Rect
bounds
start' <- unsafeManagedPtrGetPtr start
end' <- unsafeManagedPtrGetPtr end
colorStops' <- mapM unsafeManagedPtrGetPtr colorStops
colorStops'' <- packBlockArray 20 colorStops'
result <- gsk_linear_gradient_node_new bounds' start' end' colorStops'' nColorStops
checkUnexpectedReturnNULL "linearGradientNodeNew" result
result' <- (wrapPtr LinearGradientNode) result
touchManagedPtr bounds
touchManagedPtr start
touchManagedPtr end
mapM_ touchManagedPtr colorStops
freeMem colorStops''
return result'
#if defined(ENABLE_OVERLOADING)
#endif
foreign import ccall "gsk_linear_gradient_node_get_color_stops" gsk_linear_gradient_node_get_color_stops ::
Ptr LinearGradientNode ->
Ptr FCT.CSize ->
IO (Ptr Gsk.ColorStop.ColorStop)
linearGradientNodeGetColorStops ::
(B.CallStack.HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a
-> m [Gsk.ColorStop.ColorStop]
linearGradientNodeGetColorStops :: forall (m :: * -> *) a.
(HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a -> m [ColorStop]
linearGradientNodeGetColorStops a
node = IO [ColorStop] -> m [ColorStop]
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO [ColorStop] -> m [ColorStop])
-> IO [ColorStop] -> m [ColorStop]
forall a b. (a -> b) -> a -> b
$ do
node' <- a -> IO (Ptr LinearGradientNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr a
node
nStops <- allocMem :: IO (Ptr FCT.CSize)
result <- gsk_linear_gradient_node_get_color_stops node' nStops
nStops' <- peek nStops
checkUnexpectedReturnNULL "linearGradientNodeGetColorStops" result
result' <- (unpackBlockArrayWithLength 20 nStops') result
result'' <- mapM (newPtr Gsk.ColorStop.ColorStop) result'
touchManagedPtr node
freeMem nStops
return result''
#if defined(ENABLE_OVERLOADING)
data LinearGradientNodeGetColorStopsMethodInfo
instance (signature ~ (m [Gsk.ColorStop.ColorStop]), MonadIO m, IsLinearGradientNode a) => O.OverloadedMethod LinearGradientNodeGetColorStopsMethodInfo a signature where
overloadedMethod = linearGradientNodeGetColorStops
instance O.OverloadedMethodInfo LinearGradientNodeGetColorStopsMethodInfo a where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.Gsk.Objects.LinearGradientNode.linearGradientNodeGetColorStops",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-gsk-4.0.9/docs/GI-Gsk-Objects-LinearGradientNode.html#v:linearGradientNodeGetColorStops"
})
#endif
foreign import ccall "gsk_linear_gradient_node_get_end" gsk_linear_gradient_node_get_end ::
Ptr LinearGradientNode ->
IO (Ptr Graphene.Point.Point)
linearGradientNodeGetEnd ::
(B.CallStack.HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a
-> m Graphene.Point.Point
linearGradientNodeGetEnd :: forall (m :: * -> *) a.
(HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a -> m Point
linearGradientNodeGetEnd a
node = IO Point -> m Point
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Point -> m Point) -> IO Point -> m Point
forall a b. (a -> b) -> a -> b
$ do
node' <- a -> IO (Ptr LinearGradientNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr a
node
result <- gsk_linear_gradient_node_get_end node'
checkUnexpectedReturnNULL "linearGradientNodeGetEnd" result
result' <- (newBoxed Graphene.Point.Point) result
touchManagedPtr node
return result'
#if defined(ENABLE_OVERLOADING)
data LinearGradientNodeGetEndMethodInfo
instance (signature ~ (m Graphene.Point.Point), MonadIO m, IsLinearGradientNode a) => O.OverloadedMethod LinearGradientNodeGetEndMethodInfo a signature where
overloadedMethod = linearGradientNodeGetEnd
instance O.OverloadedMethodInfo LinearGradientNodeGetEndMethodInfo a where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.Gsk.Objects.LinearGradientNode.linearGradientNodeGetEnd",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-gsk-4.0.9/docs/GI-Gsk-Objects-LinearGradientNode.html#v:linearGradientNodeGetEnd"
})
#endif
foreign import ccall "gsk_linear_gradient_node_get_n_color_stops" gsk_linear_gradient_node_get_n_color_stops ::
Ptr LinearGradientNode ->
IO FCT.CSize
linearGradientNodeGetNColorStops ::
(B.CallStack.HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a
-> m FCT.CSize
linearGradientNodeGetNColorStops :: forall (m :: * -> *) a.
(HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a -> m CSize
linearGradientNodeGetNColorStops a
node = IO CSize -> m CSize
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO CSize -> m CSize) -> IO CSize -> m CSize
forall a b. (a -> b) -> a -> b
$ do
node' <- a -> IO (Ptr LinearGradientNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr a
node
result <- gsk_linear_gradient_node_get_n_color_stops node'
touchManagedPtr node
return result
#if defined(ENABLE_OVERLOADING)
data LinearGradientNodeGetNColorStopsMethodInfo
instance (signature ~ (m FCT.CSize), MonadIO m, IsLinearGradientNode a) => O.OverloadedMethod LinearGradientNodeGetNColorStopsMethodInfo a signature where
overloadedMethod = linearGradientNodeGetNColorStops
instance O.OverloadedMethodInfo LinearGradientNodeGetNColorStopsMethodInfo a where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.Gsk.Objects.LinearGradientNode.linearGradientNodeGetNColorStops",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-gsk-4.0.9/docs/GI-Gsk-Objects-LinearGradientNode.html#v:linearGradientNodeGetNColorStops"
})
#endif
foreign import ccall "gsk_linear_gradient_node_get_start" gsk_linear_gradient_node_get_start ::
Ptr LinearGradientNode ->
IO (Ptr Graphene.Point.Point)
linearGradientNodeGetStart ::
(B.CallStack.HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a
-> m Graphene.Point.Point
linearGradientNodeGetStart :: forall (m :: * -> *) a.
(HasCallStack, MonadIO m, IsLinearGradientNode a) =>
a -> m Point
linearGradientNodeGetStart a
node = IO Point -> m Point
forall a. IO a -> m a
forall (m :: * -> *) a. MonadIO m => IO a -> m a
liftIO (IO Point -> m Point) -> IO Point -> m Point
forall a b. (a -> b) -> a -> b
$ do
node' <- a -> IO (Ptr LinearGradientNode)
forall a b. (HasCallStack, ManagedPtrNewtype a) => a -> IO (Ptr b)
unsafeManagedPtrCastPtr a
node
result <- gsk_linear_gradient_node_get_start node'
checkUnexpectedReturnNULL "linearGradientNodeGetStart" result
result' <- (newBoxed Graphene.Point.Point) result
touchManagedPtr node
return result'
#if defined(ENABLE_OVERLOADING)
data LinearGradientNodeGetStartMethodInfo
instance (signature ~ (m Graphene.Point.Point), MonadIO m, IsLinearGradientNode a) => O.OverloadedMethod LinearGradientNodeGetStartMethodInfo a signature where
overloadedMethod = linearGradientNodeGetStart
instance O.OverloadedMethodInfo LinearGradientNodeGetStartMethodInfo a where
overloadedMethodInfo = P.Just (O.ResolvedSymbolInfo {
O.resolvedSymbolName = "GI.Gsk.Objects.LinearGradientNode.linearGradientNodeGetStart",
O.resolvedSymbolURL = "https://hackage.haskell.org/package/gi-gsk-4.0.9/docs/GI-Gsk-Objects-LinearGradientNode.html#v:linearGradientNodeGetStart"
})
#endif