Struct WpFifoV1
pub struct WpFifoV1 { /* private fields */ }wayland and Linux only.Expand description
fifo interface
A fifo object for a surface that may be used to add display refresh constraints to content updates.
This interface has no events.
Implementations§
§impl WpFifoV1
impl WpFifoV1
pub fn set_barrier(&self)
pub fn set_barrier(&self)
sets the start point for a fifo constraint
When the content update containing the “set_barrier” is applied, it sets a “fifo_barrier” condition on the surface associated with the fifo object. The condition is cleared immediately after the following latching deadline for non-tearing presentation.
The compositor may clear the condition early if it must do so to ensure client forward progress assumptions.
To wait for this condition to clear, use the “wait_barrier” request.
“set_barrier” is double-buffered state, see wl_surface.commit.
Requesting set_barrier after the fifo object’s surface is destroyed will generate a “surface_destroyed” error.
pub fn wait_barrier(&self)
pub fn wait_barrier(&self)
adds a fifo constraint to a content update
Indicate that this content update is not ready while a “fifo_barrier” condition is present on the surface.
This means that when the content update containing “set_barrier” was made active at a latching deadline, it will be active for at least one refresh cycle. A content update which is allowed to tear might become active after a latching deadline if no content update became active at the deadline.
The constraint must be ignored if the surface is a subsurface in synchronized mode. If the surface is not being updated by the compositor (off-screen, occluded) the compositor may ignore the constraint. Clients must use an additional mechanism such as frame callbacks or timestamps to ensure throttling occurs under all conditions.
“wait_barrier” is double-buffered state, see wl_surface.commit.
Requesting “wait_barrier” after the fifo object’s surface is destroyed will generate a “surface_destroyed” error.
pub fn destroy(&self)
pub fn destroy(&self)
destroy the fifo interface
Informs the server that the client will no longer be using this protocol object.
Surface state changes previously made by this protocol are unaffected by this object’s destruction.
Trait Implementations§
§impl Proxy for WpFifoV1
impl Proxy for WpFifoV1
§fn object_data(&self) -> Option<&Arc<dyn ObjectData>>
fn object_data(&self) -> Option<&Arc<dyn ObjectData>>
§fn backend(&self) -> &WeakBackend
fn backend(&self) -> &WeakBackend
§fn send_request(
&self,
req: <WpFifoV1 as Proxy>::Request<'_>,
) -> Result<(), InvalidId>
fn send_request( &self, req: <WpFifoV1 as Proxy>::Request<'_>, ) -> Result<(), InvalidId>
§fn send_constructor<I>(
&self,
req: <WpFifoV1 as Proxy>::Request<'_>,
data: Arc<dyn ObjectData>,
) -> Result<I, InvalidId>where
I: Proxy,
fn send_constructor<I>(
&self,
req: <WpFifoV1 as Proxy>::Request<'_>,
data: Arc<dyn ObjectData>,
) -> Result<I, InvalidId>where
I: Proxy,
§fn from_id(conn: &Connection, id: ObjectId) -> Result<WpFifoV1, InvalidId>
fn from_id(conn: &Connection, id: ObjectId) -> Result<WpFifoV1, InvalidId>
§fn inert(backend: WeakBackend) -> WpFifoV1
fn inert(backend: WeakBackend) -> WpFifoV1
§fn parse_event(
conn: &Connection,
msg: Message<ObjectId, OwnedFd>,
) -> Result<(WpFifoV1, <WpFifoV1 as Proxy>::Event), DispatchError>
fn parse_event( conn: &Connection, msg: Message<ObjectId, OwnedFd>, ) -> Result<(WpFifoV1, <WpFifoV1 as Proxy>::Event), DispatchError>
§fn write_request<'a>(
&self,
conn: &Connection,
msg: <WpFifoV1 as Proxy>::Request<'a>,
) -> Result<(Message<ObjectId, BorrowedFd<'a>>, Option<(&'static Interface, u32)>), InvalidId>
fn write_request<'a>( &self, conn: &Connection, msg: <WpFifoV1 as Proxy>::Request<'a>, ) -> Result<(Message<ObjectId, BorrowedFd<'a>>, Option<(&'static Interface, u32)>), InvalidId>
impl Eq for WpFifoV1
Auto Trait Implementations§
impl Freeze for WpFifoV1
impl !RefUnwindSafe for WpFifoV1
impl Send for WpFifoV1
impl Sync for WpFifoV1
impl Unpin for WpFifoV1
impl !UnwindSafe for WpFifoV1
Blanket Implementations§
Source§impl<S, D, Swp, Dwp, T> AdaptInto<D, Swp, Dwp, T> for Swhere
T: Real + Zero + Arithmetics + Clone,
Swp: WhitePoint<T>,
Dwp: WhitePoint<T>,
D: AdaptFrom<S, Swp, Dwp, T>,
impl<S, D, Swp, Dwp, T> AdaptInto<D, Swp, Dwp, T> for Swhere
T: Real + Zero + Arithmetics + Clone,
Swp: WhitePoint<T>,
Dwp: WhitePoint<T>,
D: AdaptFrom<S, Swp, Dwp, T>,
Source§fn adapt_into_using<M>(self, method: M) -> Dwhere
M: TransformMatrix<T>,
fn adapt_into_using<M>(self, method: M) -> Dwhere
M: TransformMatrix<T>,
Source§fn adapt_into(self) -> D
fn adapt_into(self) -> D
§impl<T> AnyEq for T
impl<T> AnyEq for T
§impl<T, Res> Apply<Res> for Twhere
T: ?Sized,
impl<T, Res> Apply<Res> for Twhere
T: ?Sized,
Source§impl<T, C> ArraysFrom<C> for Twhere
C: IntoArrays<T>,
impl<T, C> ArraysFrom<C> for Twhere
C: IntoArrays<T>,
Source§fn arrays_from(colors: C) -> T
fn arrays_from(colors: C) -> T
Source§impl<T, C> ArraysInto<C> for Twhere
C: FromArrays<T>,
impl<T, C> ArraysInto<C> for Twhere
C: FromArrays<T>,
Source§fn arrays_into(self) -> C
fn arrays_into(self) -> C
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Source§impl<WpParam, T, U> Cam16IntoUnclamped<WpParam, T> for Uwhere
T: FromCam16Unclamped<WpParam, U>,
impl<WpParam, T, U> Cam16IntoUnclamped<WpParam, T> for Uwhere
T: FromCam16Unclamped<WpParam, U>,
Source§type Scalar = <T as FromCam16Unclamped<WpParam, U>>::Scalar
type Scalar = <T as FromCam16Unclamped<WpParam, U>>::Scalar
parameters when converting.Source§fn cam16_into_unclamped(
self,
parameters: BakedParameters<WpParam, <U as Cam16IntoUnclamped<WpParam, T>>::Scalar>,
) -> T
fn cam16_into_unclamped( self, parameters: BakedParameters<WpParam, <U as Cam16IntoUnclamped<WpParam, T>>::Scalar>, ) -> T
self into C, using the provided parameters.Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§impl<T, C> ComponentsFrom<C> for Twhere
C: IntoComponents<T>,
impl<T, C> ComponentsFrom<C> for Twhere
C: IntoComponents<T>,
Source§fn components_from(colors: C) -> T
fn components_from(colors: C) -> T
§impl<T> Downcast for Twhere
T: Any,
impl<T> Downcast for Twhere
T: Any,
§fn into_any(self: Box<T>) -> Box<dyn Any>
fn into_any(self: Box<T>) -> Box<dyn Any>
Box<dyn Trait> (where Trait: Downcast) to Box<dyn Any>. Box<dyn Any> can
then be further downcast into Box<ConcreteType> where ConcreteType implements Trait.§fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
fn into_any_rc(self: Rc<T>) -> Rc<dyn Any>
Rc<Trait> (where Trait: Downcast) to Rc<Any>. Rc<Any> can then be
further downcast into Rc<ConcreteType> where ConcreteType implements Trait.§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
&Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot
generate &Any’s vtable from &Trait’s.§fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
fn as_any_mut(&mut self) -> &mut (dyn Any + 'static)
&mut Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot
generate &mut Any’s vtable from &mut Trait’s.§impl<T> DowncastSync for T
impl<T> DowncastSync for T
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
key and return true if they are equal.Source§impl<T> FromAngle<T> for T
impl<T> FromAngle<T> for T
Source§fn from_angle(angle: T) -> T
fn from_angle(angle: T) -> T
angle.Source§impl<T, U> FromStimulus<U> for Twhere
U: IntoStimulus<T>,
impl<T, U> FromStimulus<U> for Twhere
U: IntoStimulus<T>,
Source§fn from_stimulus(other: U) -> T
fn from_stimulus(other: U) -> T
other into Self, while performing the appropriate scaling,
rounding and clamping.§impl<T> Instrument for T
impl<T> Instrument for T
§fn instrument(self, span: Span) -> Instrumented<Self> ⓘ
fn instrument(self, span: Span) -> Instrumented<Self> ⓘ
Source§impl<T, U> IntoAngle<U> for Twhere
U: FromAngle<T>,
impl<T, U> IntoAngle<U> for Twhere
U: FromAngle<T>,
Source§fn into_angle(self) -> U
fn into_angle(self) -> U
T.§impl<State, Message> IntoBoot<State, Message> for State
impl<State, Message> IntoBoot<State, Message> for State
§fn into_boot(self) -> (State, Task<Message>)
fn into_boot(self) -> (State, Task<Message>)
Application.Source§impl<WpParam, T, U> IntoCam16Unclamped<WpParam, T> for Uwhere
T: Cam16FromUnclamped<WpParam, U>,
impl<WpParam, T, U> IntoCam16Unclamped<WpParam, T> for Uwhere
T: Cam16FromUnclamped<WpParam, U>,
Source§type Scalar = <T as Cam16FromUnclamped<WpParam, U>>::Scalar
type Scalar = <T as Cam16FromUnclamped<WpParam, U>>::Scalar
parameters when converting.Source§fn into_cam16_unclamped(
self,
parameters: BakedParameters<WpParam, <U as IntoCam16Unclamped<WpParam, T>>::Scalar>,
) -> T
fn into_cam16_unclamped( self, parameters: BakedParameters<WpParam, <U as IntoCam16Unclamped<WpParam, T>>::Scalar>, ) -> T
self into C, using the provided parameters.Source§impl<T, U> IntoColor<U> for Twhere
U: FromColor<T>,
impl<T, U> IntoColor<U> for Twhere
U: FromColor<T>,
Source§fn into_color(self) -> U
fn into_color(self) -> U
Source§impl<T, U> IntoColorUnclamped<U> for Twhere
U: FromColorUnclamped<T>,
impl<T, U> IntoColorUnclamped<U> for Twhere
U: FromColorUnclamped<T>,
Source§fn into_color_unclamped(self) -> U
fn into_color_unclamped(self) -> U
Source§impl<T> IntoStimulus<T> for T
impl<T> IntoStimulus<T> for T
Source§fn into_stimulus(self) -> T
fn into_stimulus(self) -> T
self into T, while performing the appropriate scaling,
rounding and clamping.Source§impl<T, C> TryComponentsInto<C> for Twhere
C: TryFromComponents<T>,
impl<T, C> TryComponentsInto<C> for Twhere
C: TryFromComponents<T>,
Source§type Error = <C as TryFromComponents<T>>::Error
type Error = <C as TryFromComponents<T>>::Error
try_into_colors fails to cast.Source§fn try_components_into(self) -> Result<C, <T as TryComponentsInto<C>>::Error>
fn try_components_into(self) -> Result<C, <T as TryComponentsInto<C>>::Error>
Source§impl<T, U> TryIntoColor<U> for Twhere
U: TryFromColor<T>,
impl<T, U> TryIntoColor<U> for Twhere
U: TryFromColor<T>,
Source§fn try_into_color(self) -> Result<U, OutOfBounds<U>>
fn try_into_color(self) -> Result<U, OutOfBounds<U>>
OutOfBounds error is returned which contains
the unclamped color. Read more