Struct IntoPipeSystem
pub struct IntoPipeSystem<A, B> { /* private fields */ }Expand description
An IntoSystem creating an instance of PipeSystem.
Implementations§
§impl<A, B> IntoPipeSystem<A, B>
impl<A, B> IntoPipeSystem<A, B>
pub const fn new(a: A, b: B) -> IntoPipeSystem<A, B>
pub const fn new(a: A, b: B) -> IntoPipeSystem<A, B>
Creates a new IntoSystem that pipes two inner systems.
Trait Implementations§
§impl<A, B> Clone for IntoPipeSystem<A, B>
impl<A, B> Clone for IntoPipeSystem<A, B>
§fn clone(&self) -> IntoPipeSystem<A, B>
fn clone(&self) -> IntoPipeSystem<A, B>
Returns a duplicate of the value. Read more
1.0.0 (const: unstable) · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
Performs copy-assignment from
source. Read more§impl<A, B, IA, OA, IB, OB, MA, MB> IntoSystem<IA, OB, (IsPipeSystemMarker, OA, IB, MA, MB)> for IntoPipeSystem<A, B>where
IA: SystemInput,
A: IntoSystem<IA, OA, MA>,
B: IntoSystem<IB, OB, MB>,
IB: for<'a> SystemInput<Inner<'a> = OA>,
impl<A, B, IA, OA, IB, OB, MA, MB> IntoSystem<IA, OB, (IsPipeSystemMarker, OA, IB, MA, MB)> for IntoPipeSystem<A, B>where
IA: SystemInput,
A: IntoSystem<IA, OA, MA>,
B: IntoSystem<IB, OB, MB>,
IB: for<'a> SystemInput<Inner<'a> = OA>,
§type System = PipeSystem<<A as IntoSystem<IA, OA, MA>>::System, <B as IntoSystem<IB, OB, MB>>::System>
type System = PipeSystem<<A as IntoSystem<IA, OA, MA>>::System, <B as IntoSystem<IB, OB, MB>>::System>
The type of
System that this instance converts into.§fn into_system(
this: IntoPipeSystem<A, B>,
) -> <IntoPipeSystem<A, B> as IntoSystem<IA, OB, (IsPipeSystemMarker, OA, IB, MA, MB)>>::System
fn into_system( this: IntoPipeSystem<A, B>, ) -> <IntoPipeSystem<A, B> as IntoSystem<IA, OB, (IsPipeSystemMarker, OA, IB, MA, MB)>>::System
Turns this value into its corresponding
System.§fn pipe<B, BIn, BOut, MarkerB>(self, system: B) -> IntoPipeSystem<Self, B>where
Out: 'static,
B: IntoSystem<BIn, BOut, MarkerB>,
BIn: for<'a> SystemInput<Inner<'a> = Out>,
fn pipe<B, BIn, BOut, MarkerB>(self, system: B) -> IntoPipeSystem<Self, B>where
Out: 'static,
B: IntoSystem<BIn, BOut, MarkerB>,
BIn: for<'a> SystemInput<Inner<'a> = Out>,
§fn map<T, F>(self, f: F) -> IntoAdapterSystem<F, Self>
fn map<T, F>(self, f: F) -> IntoAdapterSystem<F, Self>
Pass the output of this system into the passed function
f, creating a new system that
outputs the value returned from the function. Read more§fn with_input<T>(self, value: T) -> WithInputWrapper<Self::System, T>
fn with_input<T>(self, value: T) -> WithInputWrapper<Self::System, T>
Passes a mutable reference to
value as input to the system each run,
turning it into a system that takes no input. Read more§fn with_input_from<T>(self) -> WithInputFromWrapper<Self::System, T>
fn with_input_from<T>(self) -> WithInputFromWrapper<Self::System, T>
§fn system_type_id(&self) -> TypeId
fn system_type_id(&self) -> TypeId
Auto Trait Implementations§
impl<A, B> Freeze for IntoPipeSystem<A, B>
impl<A, B> RefUnwindSafe for IntoPipeSystem<A, B>where
A: RefUnwindSafe,
B: RefUnwindSafe,
impl<A, B> Send for IntoPipeSystem<A, B>
impl<A, B> Sync for IntoPipeSystem<A, B>
impl<A, B> Unpin for IntoPipeSystem<A, B>
impl<A, B> UnsafeUnpin for IntoPipeSystem<A, B>where
A: UnsafeUnpin,
B: UnsafeUnpin,
impl<A, B> UnwindSafe for IntoPipeSystem<A, B>where
A: UnwindSafe,
B: UnwindSafe,
Blanket Implementations§
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
Mutably borrows from an owned value. Read more
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
§impl<T> Conv for T
impl<T> Conv for 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>
Converts
Box<dyn Trait> (where Trait: Downcast) to Box<dyn Any>, which can then be
downcast into Box<dyn 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>
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downcast into Rc<ConcreteType> where ConcreteType implements Trait.§fn as_any(&self) -> &(dyn Any + 'static)
fn as_any(&self) -> &(dyn Any + 'static)
Converts
&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)
Converts
&mut Trait (where Trait: Downcast) to &Any. This is needed since Rust cannot
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impl<T> DowncastSend for T
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impl<T> FmtForward for T
§fn fmt_binary(self) -> FmtBinary<Self>where
Self: Binary,
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Self: Binary,
Causes
self to use its Binary implementation when Debug-formatted.§fn fmt_display(self) -> FmtDisplay<Self>where
Self: Display,
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Self: Display,
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self to use its Display implementation when
Debug-formatted.§fn fmt_lower_exp(self) -> FmtLowerExp<Self>where
Self: LowerExp,
fn fmt_lower_exp(self) -> FmtLowerExp<Self>where
Self: LowerExp,
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Debug-formatted.§fn fmt_lower_hex(self) -> FmtLowerHex<Self>where
Self: LowerHex,
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Self: LowerHex,
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Debug-formatted.§fn fmt_octal(self) -> FmtOctal<Self>where
Self: Octal,
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Self: Octal,
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Self: Pointer,
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Self: UpperExp,
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Self: UpperExp,
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self to use its UpperExp implementation when
Debug-formatted.§fn fmt_upper_hex(self) -> FmtUpperHex<Self>where
Self: UpperHex,
fn fmt_upper_hex(self) -> FmtUpperHex<Self>where
Self: UpperHex,
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self to use its UpperHex implementation when
Debug-formatted.§fn fmt_list(self) -> FmtList<Self>where
&'a Self: for<'a> IntoIterator,
fn fmt_list(self) -> FmtList<Self>where
&'a Self: for<'a> IntoIterator,
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§impl<T> Instrument for T
impl<T> Instrument for T
§fn instrument(self, span: Span) -> Instrumented<Self>
fn instrument(self, span: Span) -> Instrumented<Self>
§fn in_current_span(self) -> Instrumented<Self>
fn in_current_span(self) -> Instrumented<Self>
§impl<E, B, M, T> IntoEntityObserver<(E, B, M)> for T
impl<E, B, M, T> IntoEntityObserver<(E, B, M)> for T
§fn into_observer_for_entity(self, entity: Entity) -> Observer
fn into_observer_for_entity(self, entity: Entity) -> Observer
Converts this type into an
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impl<E, B, M, T> IntoObserver<(E, B, M)> for T
§fn into_observer(self) -> Observer
fn into_observer(self) -> Observer
Converts this type into an
Observer.§impl<E, B, M, Out, S> IntoObserverSystem<E, B, M, Out> for Swhere
E: Event + 'static,
S: IntoSystem<On<'static, 'static, E, B>, Out, M> + Send + 'static,
<S as IntoSystem<On<'static, 'static, E, B>, Out, M>>::System: ObserverSystem<E, B, Out>,
B: Bundle,
impl<E, B, M, Out, S> IntoObserverSystem<E, B, M, Out> for Swhere
E: Event + 'static,
S: IntoSystem<On<'static, 'static, E, B>, Out, M> + Send + 'static,
<S as IntoSystem<On<'static, 'static, E, B>, Out, M>>::System: ObserverSystem<E, B, Out>,
B: Bundle,
§type System = <S as IntoSystem<On<'static, 'static, E, B>, Out, M>>::System
type System = <S as IntoSystem<On<'static, 'static, E, B>, Out, M>>::System
The type of
System that this instance converts into.§fn into_system(this: S) -> <S as IntoObserverSystem<E, B, M, Out>>::System
fn into_system(this: S) -> <S as IntoObserverSystem<E, B, M, Out>>::System
Turns this value into its corresponding
System.§impl<T> IntoResult<T> for T
impl<T> IntoResult<T> for T
§fn into_result(self) -> Result<T, RunSystemError>
fn into_result(self) -> Result<T, RunSystemError>
Converts this type into the system output type.
§impl<F, Marker> IntoScheduleConfigs<Box<dyn System<Out = (), In = ()>>, Marker> for F
impl<F, Marker> IntoScheduleConfigs<Box<dyn System<Out = (), In = ()>>, Marker> for F
§fn into_configs(self) -> ScheduleConfigs<Box<dyn System<Out = (), In = ()>>>
fn into_configs(self) -> ScheduleConfigs<Box<dyn System<Out = (), In = ()>>>
Convert into a
ScheduleConfigs.§fn in_set(self, set: impl SystemSet) -> ScheduleConfigs<T>
fn in_set(self, set: impl SystemSet) -> ScheduleConfigs<T>
Add these systems to the provided
set.§fn before<M>(self, set: impl IntoSystemSet<M>) -> ScheduleConfigs<T>
fn before<M>(self, set: impl IntoSystemSet<M>) -> ScheduleConfigs<T>
§fn after<M>(self, set: impl IntoSystemSet<M>) -> ScheduleConfigs<T>
fn after<M>(self, set: impl IntoSystemSet<M>) -> ScheduleConfigs<T>
§fn before_ignore_deferred<M>(
self,
set: impl IntoSystemSet<M>,
) -> ScheduleConfigs<T>
fn before_ignore_deferred<M>( self, set: impl IntoSystemSet<M>, ) -> ScheduleConfigs<T>
Run before all systems in
set. Read more§fn after_ignore_deferred<M>(
self,
set: impl IntoSystemSet<M>,
) -> ScheduleConfigs<T>
fn after_ignore_deferred<M>( self, set: impl IntoSystemSet<M>, ) -> ScheduleConfigs<T>
Run after all systems in
set. Read more§fn distributive_run_if<M>(
self,
condition: impl SystemCondition<M> + Clone,
) -> ScheduleConfigs<T>
fn distributive_run_if<M>( self, condition: impl SystemCondition<M> + Clone, ) -> ScheduleConfigs<T>
Add a run condition to each contained system. Read more
§fn run_if<M>(self, condition: impl SystemCondition<M>) -> ScheduleConfigs<T>
fn run_if<M>(self, condition: impl SystemCondition<M>) -> ScheduleConfigs<T>
§fn ambiguous_with<M>(self, set: impl IntoSystemSet<M>) -> ScheduleConfigs<T>
fn ambiguous_with<M>(self, set: impl IntoSystemSet<M>) -> ScheduleConfigs<T>
Suppress warnings and errors that would result from these systems having ambiguities
(conflicting access but indeterminate order) with systems in
set.§fn ambiguous_with_all(self) -> ScheduleConfigs<T>
fn ambiguous_with_all(self) -> ScheduleConfigs<T>
Suppress warnings and errors that would result from these systems having ambiguities
(conflicting access but indeterminate order) with any other system.
§fn chain(self) -> ScheduleConfigs<T>
fn chain(self) -> ScheduleConfigs<T>
Treat this collection as a sequence of systems. Read more
§fn chain_ignore_deferred(self) -> ScheduleConfigs<T>
fn chain_ignore_deferred(self) -> ScheduleConfigs<T>
Treat this collection as a sequence of systems. Read more
§impl<E, B, M, T> ObserverSystemExt<E, B, M> for T
impl<E, B, M, T> ObserverSystemExt<E, B, M> for T
§fn run_if<C, CM>(self, condition: C) -> ObserverWithCondition<E, B, M, Self>where
C: SystemCondition<CM>,
fn run_if<C, CM>(self, condition: C) -> ObserverWithCondition<E, B, M, Self>where
C: SystemCondition<CM>,
Adds a run condition to this observer system. Read more
§impl<T> Pipe for Twhere
T: ?Sized,
impl<T> Pipe for Twhere
T: ?Sized,
§fn pipe<R>(self, func: impl FnOnce(Self) -> R) -> Rwhere
Self: Sized,
fn pipe<R>(self, func: impl FnOnce(Self) -> R) -> Rwhere
Self: Sized,
Pipes by value. This is generally the method you want to use. Read more
§fn pipe_ref<'a, R>(&'a self, func: impl FnOnce(&'a Self) -> R) -> Rwhere
R: 'a,
fn pipe_ref<'a, R>(&'a self, func: impl FnOnce(&'a Self) -> R) -> Rwhere
R: 'a,
Borrows
self and passes that borrow into the pipe function. Read more§fn pipe_ref_mut<'a, R>(&'a mut self, func: impl FnOnce(&'a mut Self) -> R) -> Rwhere
R: 'a,
fn pipe_ref_mut<'a, R>(&'a mut self, func: impl FnOnce(&'a mut Self) -> R) -> Rwhere
R: 'a,
Mutably borrows
self and passes that borrow into the pipe function. Read more§fn pipe_borrow<'a, B, R>(&'a self, func: impl FnOnce(&'a B) -> R) -> R
fn pipe_borrow<'a, B, R>(&'a self, func: impl FnOnce(&'a B) -> R) -> R
§fn pipe_borrow_mut<'a, B, R>(
&'a mut self,
func: impl FnOnce(&'a mut B) -> R,
) -> R
fn pipe_borrow_mut<'a, B, R>( &'a mut self, func: impl FnOnce(&'a mut B) -> R, ) -> R
§fn pipe_as_ref<'a, U, R>(&'a self, func: impl FnOnce(&'a U) -> R) -> R
fn pipe_as_ref<'a, U, R>(&'a self, func: impl FnOnce(&'a U) -> R) -> R
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self, then passes self.as_ref() into the pipe function.§fn pipe_as_mut<'a, U, R>(&'a mut self, func: impl FnOnce(&'a mut U) -> R) -> R
fn pipe_as_mut<'a, U, R>(&'a mut self, func: impl FnOnce(&'a mut U) -> R) -> R
Mutably borrows
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fn pipe_deref<'a, T, R>(&'a self, func: impl FnOnce(&'a T) -> R) -> R
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§impl<T> Tap for T
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Immutable access to the
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§impl<T> TypeData for T
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§fn clone_type_data(&self) -> Box<dyn TypeData>
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Creates a type-erased clone of this value.