Struct ic_utils::call::AndThenAsyncCaller [−][src]
pub struct AndThenAsyncCaller<Out: for<'de> ArgumentDecoder<'de> + Send, Out2: for<'de> ArgumentDecoder<'de> + Send, Inner: AsyncCall<Out> + Send, R: Future<Output = Result<Out2, AgentError>> + Send, AndThen: Send + Fn(Out) -> R> { /* fields omitted */ }
An AsyncCall that applies a transform function to the result of the call. Because of constraints on the type system in Rust, both the input and output to the function must be deserializable.
Implementations
impl<Out, Out2, Inner, R, AndThen> AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
Out: for<'de> ArgumentDecoder<'de> + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
Inner: AsyncCall<Out> + Send,
R: Future<Output = Result<Out2, AgentError>> + Send,
AndThen: Send + Fn(Out) -> R, [src]
impl<Out, Out2, Inner, R, AndThen> AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
Out: for<'de> ArgumentDecoder<'de> + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
Inner: AsyncCall<Out> + Send,
R: Future<Output = Result<Out2, AgentError>> + Send,
AndThen: Send + Fn(Out) -> R, [src]pub fn new(inner: Inner, and_then: AndThen) -> Self[src]
pub async fn call(self) -> Result<RequestId, AgentError>[src]
pub async fn call_and_wait<W>(self, waiter: W) -> Result<Out2, AgentError> where
W: Waiter, [src]
W: Waiter,
pub fn and_then<Out3, R2, AndThen2>(
self,
and_then: AndThen2
) -> AndThenAsyncCaller<Out2, Out3, Self, R2, AndThen2> where
Out3: for<'de> ArgumentDecoder<'de> + Send,
R2: Future<Output = Result<Out3, AgentError>> + Send,
AndThen2: Send + Fn(Out2) -> R2, [src]
self,
and_then: AndThen2
) -> AndThenAsyncCaller<Out2, Out3, Self, R2, AndThen2> where
Out3: for<'de> ArgumentDecoder<'de> + Send,
R2: Future<Output = Result<Out3, AgentError>> + Send,
AndThen2: Send + Fn(Out2) -> R2,
pub fn map<Out3, Map>(
self,
map: Map
) -> MappedAsyncCaller<Out2, Out3, Self, Map> where
Out3: for<'de> ArgumentDecoder<'de> + Send,
Map: Send + Fn(Out2) -> Out3, [src]
self,
map: Map
) -> MappedAsyncCaller<Out2, Out3, Self, Map> where
Out3: for<'de> ArgumentDecoder<'de> + Send,
Map: Send + Fn(Out2) -> Out3,
Trait Implementations
impl<Out, Out2, Inner, R, AndThen> AsyncCall<Out2> for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
Out: for<'de> ArgumentDecoder<'de> + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
Inner: AsyncCall<Out> + Send,
R: Future<Output = Result<Out2, AgentError>> + Send,
AndThen: Send + Fn(Out) -> R, [src]
impl<Out, Out2, Inner, R, AndThen> AsyncCall<Out2> for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
Out: for<'de> ArgumentDecoder<'de> + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
Inner: AsyncCall<Out> + Send,
R: Future<Output = Result<Out2, AgentError>> + Send,
AndThen: Send + Fn(Out) -> R, [src]fn call<'async_trait>(
self
) -> Pin<Box<dyn Future<Output = Result<RequestId, AgentError>> + Send + 'async_trait>> where
Self: 'async_trait, [src]
fn call<'async_trait>(
self
) -> Pin<Box<dyn Future<Output = Result<RequestId, AgentError>> + Send + 'async_trait>> where
Self: 'async_trait, [src]Execute the call, but returns the RequestId. Waiting on the request Id must be managed by the caller using the Agent directly. Read more
fn call_and_wait<'async_trait, W>(
self,
waiter: W
) -> Pin<Box<dyn Future<Output = Result<Out2, AgentError>> + Send + 'async_trait>> where
W: Waiter,
W: 'async_trait,
Self: 'async_trait, [src]
fn call_and_wait<'async_trait, W>(
self,
waiter: W
) -> Pin<Box<dyn Future<Output = Result<Out2, AgentError>> + Send + 'async_trait>> where
W: Waiter,
W: 'async_trait,
Self: 'async_trait, [src]fn and_then<Out2, R, AndThen>(
self,
and_then: AndThen
) -> AndThenAsyncCaller<Out, Out2, Self, R, AndThen> where
Self: Sized + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
R: Future<Output = Result<Out2, AgentError>> + Send,
AndThen: Send + Fn(Out) -> R, [src]
fn and_then<Out2, R, AndThen>(
self,
and_then: AndThen
) -> AndThenAsyncCaller<Out, Out2, Self, R, AndThen> where
Self: Sized + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
R: Future<Output = Result<Out2, AgentError>> + Send,
AndThen: Send + Fn(Out) -> R, [src]Apply a transformation function after the call has been successful. The transformation is applied with the result. Read more
fn map<Out2, Map>(self, map: Map) -> MappedAsyncCaller<Out, Out2, Self, Map> where
Self: Sized + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
Map: Send + Fn(Out) -> Out2, [src]
Self: Sized + Send,
Out2: for<'de> ArgumentDecoder<'de> + Send,
Map: Send + Fn(Out) -> Out2,
Auto Trait Implementations
impl<Out, Out2, Inner, R, AndThen> RefUnwindSafe for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
AndThen: RefUnwindSafe,
Inner: RefUnwindSafe,
Out: RefUnwindSafe,
Out2: RefUnwindSafe,
AndThen: RefUnwindSafe,
Inner: RefUnwindSafe,
Out: RefUnwindSafe,
Out2: RefUnwindSafe,
impl<Out, Out2, Inner, R, AndThen> Send for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen>
impl<Out, Out2, Inner, R, AndThen> Sync for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
AndThen: Sync,
Inner: Sync,
Out: Sync,
Out2: Sync,
AndThen: Sync,
Inner: Sync,
Out: Sync,
Out2: Sync,
impl<Out, Out2, Inner, R, AndThen> Unpin for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
AndThen: Unpin,
Inner: Unpin,
Out: Unpin,
Out2: Unpin,
AndThen: Unpin,
Inner: Unpin,
Out: Unpin,
Out2: Unpin,
impl<Out, Out2, Inner, R, AndThen> UnwindSafe for AndThenAsyncCaller<Out, Out2, Inner, R, AndThen> where
AndThen: UnwindSafe,
Inner: UnwindSafe,
Out: UnwindSafe,
Out2: UnwindSafe,
AndThen: UnwindSafe,
Inner: UnwindSafe,
Out: UnwindSafe,
Out2: UnwindSafe,
Blanket Implementations
impl<T> BorrowMut<T> for T where
T: ?Sized, [src]
impl<T> BorrowMut<T> for T where
T: ?Sized, [src]pub fn borrow_mut(&mut self) -> &mut T[src]
pub fn borrow_mut(&mut self) -> &mut T[src]Mutably borrows from an owned value. Read more
impl<T> Instrument for T[src]
impl<T> Instrument for T[src]fn instrument(self, span: Span) -> Instrumented<Self>[src]
fn instrument(self, span: Span) -> Instrumented<Self>[src]Instruments this type with the provided Span, returning an
Instrumented wrapper. Read more
fn in_current_span(self) -> Instrumented<Self>[src]
fn in_current_span(self) -> Instrumented<Self>[src]impl<T> Same<T> for T
impl<T> Same<T> for Ttype Output = T
type Output = TShould always be Self
impl<V, T> VZip<V> for T where
V: MultiLane<T>,
impl<V, T> VZip<V> for T where
V: MultiLane<T>,