Enum snarkvm_wasm::ops::GeneratorState
source · pub enum GeneratorState<Y, R> {
Yielded(Y),
Complete(R),
}
generator_trait
)Expand description
The result of a generator resumption.
This enum is returned from the Generator::resume
method and indicates the
possible return values of a generator. Currently this corresponds to either
a suspension point (Yielded
) or a termination point (Complete
).
Variants
Yielded(Y)
generator_trait
)The generator suspended with a value.
This state indicates that a generator has been suspended, and typically
corresponds to a yield
statement. The value provided in this variant
corresponds to the expression passed to yield
and allows generators to
provide a value each time they yield.
Complete(R)
generator_trait
)The generator completed with a return value.
This state indicates that a generator has finished execution with the
provided value. Once a generator has returned Complete
it is
considered a programmer error to call resume
again.
Trait Implementations
sourceimpl<Y, R> Clone for GeneratorState<Y, R>where
Y: Clone,
R: Clone,
impl<Y, R> Clone for GeneratorState<Y, R>where
Y: Clone,
R: Clone,
sourcefn clone(&self) -> GeneratorState<Y, R>
fn clone(&self) -> GeneratorState<Y, R>
1.0.0 · sourcefn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source
. Read moresourceimpl<Y, R> Debug for GeneratorState<Y, R>where
Y: Debug,
R: Debug,
impl<Y, R> Debug for GeneratorState<Y, R>where
Y: Debug,
R: Debug,
sourceimpl<Y, R> Hash for GeneratorState<Y, R>where
Y: Hash,
R: Hash,
impl<Y, R> Hash for GeneratorState<Y, R>where
Y: Hash,
R: Hash,
sourceimpl<Y, R> Ord for GeneratorState<Y, R>where
Y: Ord,
R: Ord,
impl<Y, R> Ord for GeneratorState<Y, R>where
Y: Ord,
R: Ord,
sourcefn cmp(&self, other: &GeneratorState<Y, R>) -> Ordering
fn cmp(&self, other: &GeneratorState<Y, R>) -> Ordering
1.21.0 · sourcefn max(self, other: Self) -> Selfwhere
Self: Sized,
fn max(self, other: Self) -> Selfwhere
Self: Sized,
1.21.0 · sourcefn min(self, other: Self) -> Selfwhere
Self: Sized,
fn min(self, other: Self) -> Selfwhere
Self: Sized,
1.50.0 · sourcefn clamp(self, min: Self, max: Self) -> Selfwhere
Self: Sized + PartialOrd<Self>,
fn clamp(self, min: Self, max: Self) -> Selfwhere
Self: Sized + PartialOrd<Self>,
sourceimpl<Y, R> PartialEq<GeneratorState<Y, R>> for GeneratorState<Y, R>where
Y: PartialEq<Y>,
R: PartialEq<R>,
impl<Y, R> PartialEq<GeneratorState<Y, R>> for GeneratorState<Y, R>where
Y: PartialEq<Y>,
R: PartialEq<R>,
sourcefn eq(&self, other: &GeneratorState<Y, R>) -> bool
fn eq(&self, other: &GeneratorState<Y, R>) -> bool
sourceimpl<Y, R> PartialOrd<GeneratorState<Y, R>> for GeneratorState<Y, R>where
Y: PartialOrd<Y>,
R: PartialOrd<R>,
impl<Y, R> PartialOrd<GeneratorState<Y, R>> for GeneratorState<Y, R>where
Y: PartialOrd<Y>,
R: PartialOrd<R>,
sourcefn partial_cmp(&self, other: &GeneratorState<Y, R>) -> Option<Ordering>
fn partial_cmp(&self, other: &GeneratorState<Y, R>) -> Option<Ordering>
1.0.0 · sourcefn le(&self, other: &Rhs) -> bool
fn le(&self, other: &Rhs) -> bool
self
and other
) and is used by the <=
operator. Read moreimpl<Y, R> Copy for GeneratorState<Y, R>where
Y: Copy,
R: Copy,
impl<Y, R> Eq for GeneratorState<Y, R>where
Y: Eq,
R: Eq,
impl<Y, R> StructuralEq for GeneratorState<Y, R>
impl<Y, R> StructuralPartialEq for GeneratorState<Y, R>
Auto Trait Implementations
impl<Y, R> RefUnwindSafe for GeneratorState<Y, R>where
R: RefUnwindSafe,
Y: RefUnwindSafe,
impl<Y, R> Send for GeneratorState<Y, R>where
R: Send,
Y: Send,
impl<Y, R> Sync for GeneratorState<Y, R>where
R: Sync,
Y: Sync,
impl<Y, R> Unpin for GeneratorState<Y, R>where
R: Unpin,
Y: Unpin,
impl<Y, R> UnwindSafe for GeneratorState<Y, R>where
R: UnwindSafe,
Y: UnwindSafe,
Blanket Implementations
sourceimpl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
const: unstable · sourcefn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
sourceimpl<Q, K> Equivalent<K> for Qwhere
Q: Eq + ?Sized,
K: Borrow<Q> + ?Sized,
impl<Q, K> Equivalent<K> for Qwhere
Q: Eq + ?Sized,
K: Borrow<Q> + ?Sized,
sourcefn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
key
and return true
if they are equal.sourceimpl<T> Instrument for T
impl<T> Instrument for T
sourcefn instrument(self, span: Span) -> Instrumented<Self>ⓘNotable traits for Instrumented<T>impl<T> Future for Instrumented<T>where
T: Future, type Output = <T as Future>::Output;
fn instrument(self, span: Span) -> Instrumented<Self>ⓘNotable traits for Instrumented<T>impl<T> Future for Instrumented<T>where
T: Future, type Output = <T as Future>::Output;
T: Future, type Output = <T as Future>::Output;
sourcefn in_current_span(self) -> Instrumented<Self>ⓘNotable traits for Instrumented<T>impl<T> Future for Instrumented<T>where
T: Future, type Output = <T as Future>::Output;
fn in_current_span(self) -> Instrumented<Self>ⓘNotable traits for Instrumented<T>impl<T> Future for Instrumented<T>where
T: Future, type Output = <T as Future>::Output;
T: Future, type Output = <T as Future>::Output;
impl<T> Pointable for T
impl<T> Pointable for T
impl<V, T> VZip<V> for Twhere
V: MultiLane<T>,
impl<V, T> VZip<V> for Twhere
V: MultiLane<T>,
fn vzip(self) -> V
sourceimpl<T> WithSubscriber for T
impl<T> WithSubscriber for T
sourcefn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self>ⓘNotable traits for WithDispatch<T>impl<T> Future for WithDispatch<T>where
T: Future, type Output = <T as Future>::Output;
where
S: Into<Dispatch>,
fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self>ⓘNotable traits for WithDispatch<T>impl<T> Future for WithDispatch<T>where
T: Future, type Output = <T as Future>::Output;
where
S: Into<Dispatch>,
T: Future, type Output = <T as Future>::Output;
sourcefn with_current_subscriber(self) -> WithDispatch<Self>ⓘNotable traits for WithDispatch<T>impl<T> Future for WithDispatch<T>where
T: Future, type Output = <T as Future>::Output;
fn with_current_subscriber(self) -> WithDispatch<Self>ⓘNotable traits for WithDispatch<T>impl<T> Future for WithDispatch<T>where
T: Future, type Output = <T as Future>::Output;
T: Future, type Output = <T as Future>::Output;