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https://github.com/fafhrd91/actix-net
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add .apply_cfg new service combinator
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@ -1,11 +1,14 @@
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# Changes
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## [0.3.2] - 2019-03-xx
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## [0.3.3] - 2019-03-xx
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### Added
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* Add `ApplyTransform` new service for transform and new service.
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* Add `NewService::apply_cfg()` combinator, it allows to use
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nested `NewService` with different config parameter.
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### Changed
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* Revert IntoFuture change
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163
actix-service/src/apply_cfg.rs
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163
actix-service/src/apply_cfg.rs
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@ -0,0 +1,163 @@
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use std::marker::PhantomData;
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use futures::{Async, Future, Poll};
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use crate::and_then::AndThen;
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use crate::{IntoNewService, NewService};
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/// `ApplyNewService` new service combinator
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pub struct ApplyConfig<F, A, B, C1, C2> {
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a: A,
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b: B,
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f: F,
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r: PhantomData<(C1, C2)>,
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}
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impl<F, A, B, C1, C2> ApplyConfig<F, A, B, C1, C2>
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where
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A: NewService<C1>,
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B: NewService<C2, Request = A::Response, Error = A::Error, InitError = A::InitError>,
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F: Fn(&C1) -> C2,
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{
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/// Create new `ApplyNewService` new service instance
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pub fn new<A1: IntoNewService<A, C1>, B1: IntoNewService<B, C2>>(
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a: A1,
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b: B1,
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f: F,
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) -> Self {
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Self {
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f,
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a: a.into_new_service(),
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b: b.into_new_service(),
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r: PhantomData,
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}
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}
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}
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impl<F, A, B, C1, C2> Clone for ApplyConfig<F, A, B, C1, C2>
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where
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A: Clone,
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B: Clone,
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F: Clone,
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{
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fn clone(&self) -> Self {
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Self {
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a: self.a.clone(),
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b: self.b.clone(),
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f: self.f.clone(),
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r: PhantomData,
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}
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}
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}
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impl<F, A, B, C1, C2> NewService<C1> for ApplyConfig<F, A, B, C1, C2>
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where
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A: NewService<C1>,
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B: NewService<C2, Request = A::Response, Error = A::Error, InitError = A::InitError>,
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F: Fn(&C1) -> C2,
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{
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type Request = A::Request;
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type Response = B::Response;
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type Error = A::Error;
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type Service = AndThen<A::Service, B::Service>;
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type InitError = A::InitError;
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type Future = ApplyConfigResponse<A, B, C1, C2>;
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fn new_service(&self, cfg: &C1) -> Self::Future {
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let cfg2 = (self.f)(cfg);
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ApplyConfigResponse {
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a: None,
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b: None,
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fut_a: self.a.new_service(cfg),
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fut_b: self.b.new_service(&cfg2),
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}
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}
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}
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pub struct ApplyConfigResponse<A, B, C1, C2>
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where
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A: NewService<C1>,
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B: NewService<C2>,
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{
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fut_b: B::Future,
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fut_a: A::Future,
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a: Option<A::Service>,
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b: Option<B::Service>,
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}
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impl<A, B, C1, C2> Future for ApplyConfigResponse<A, B, C1, C2>
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where
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A: NewService<C1>,
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B: NewService<C2, Request = A::Response, Error = A::Error, InitError = A::InitError>,
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{
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type Item = AndThen<A::Service, B::Service>;
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type Error = A::InitError;
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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if self.a.is_none() {
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if let Async::Ready(service) = self.fut_a.poll()? {
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self.a = Some(service);
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}
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}
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if self.b.is_none() {
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if let Async::Ready(service) = self.fut_b.poll()? {
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self.b = Some(service);
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}
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}
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if self.a.is_some() && self.b.is_some() {
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Ok(Async::Ready(AndThen::new(
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self.a.take().unwrap(),
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self.b.take().unwrap(),
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)))
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} else {
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Ok(Async::NotReady)
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}
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}
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}
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#[cfg(test)]
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mod tests {
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use futures::future::{ok, FutureResult};
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use futures::{Async, Future, Poll};
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use crate::{fn_cfg_factory, NewService, Service};
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#[derive(Clone)]
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struct Srv;
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impl Service for Srv {
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type Request = ();
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type Response = ();
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type Error = ();
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type Future = FutureResult<(), ()>;
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fn poll_ready(&mut self) -> Poll<(), Self::Error> {
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Ok(Async::Ready(()))
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}
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fn call(&mut self, _: ()) -> Self::Future {
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ok(())
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}
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}
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#[test]
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fn test_new_service() {
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let new_srv = fn_cfg_factory(|_: &usize| Ok::<_, ()>(Srv)).apply_cfg(
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fn_cfg_factory(|s: &String| {
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assert_eq!(s, "test");
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Ok::<_, ()>(Srv)
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}),
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|cfg: &usize| {
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assert_eq!(*cfg, 1);
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"test".to_string()
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},
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);
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if let Async::Ready(mut srv) = new_srv.new_service(&1).poll().unwrap() {
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assert!(srv.poll_ready().is_ok());
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}
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}
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}
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@ -9,6 +9,7 @@ mod and_then;
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mod and_then_apply;
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mod and_then_apply_fn;
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mod apply;
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mod apply_cfg;
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pub mod blank;
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pub mod boxed;
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mod cell;
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@ -26,6 +27,7 @@ pub use self::and_then::{AndThen, AndThenNewService};
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use self::and_then_apply::AndThenTransform;
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use self::and_then_apply_fn::{AndThenApply, AndThenApplyNewService};
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pub use self::apply::{Apply, ApplyNewService};
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use self::apply_cfg::ApplyConfig;
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pub use self::fn_service::{fn_cfg_factory, fn_factory, fn_service, FnService};
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pub use self::fn_transform::FnTransform;
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pub use self::from_err::{FromErr, FromErrNewService};
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@ -204,7 +206,7 @@ pub trait NewService<Config = ()> {
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/// Create and return a new service value asynchronously.
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fn new_service(&self, cfg: &Config) -> Self::Future;
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/// Apply function to specified service and use it as a next service in
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/// Apply transform service to specified service and use it as a next service in
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/// chain.
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fn apply<T, T1, B, B1>(
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self,
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@ -240,6 +242,23 @@ pub trait NewService<Config = ()> {
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AndThenApplyNewService::new(self, service, f)
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}
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/// Map this service's config type to a different config,
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/// and use for nested service
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fn apply_cfg<F, C, B, B1>(self, service: B1, f: F) -> ApplyConfig<F, Self, B, Config, C>
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where
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Self: Sized,
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F: Fn(&Config) -> C,
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B1: IntoNewService<B, C>,
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B: NewService<
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C,
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Request = Self::Response,
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Error = Self::Error,
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InitError = Self::InitError,
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>,
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{
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ApplyConfig::new(self, service, f)
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}
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/// Call another service after call to this one has resolved successfully.
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fn and_then<F, B>(self, new_service: F) -> AndThenNewService<Self, B, Config>
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where
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