mirror of
https://github.com/fafhrd91/actix-net
synced 2024-11-27 21:22:57 +01:00
333 lines
9.1 KiB
Rust
333 lines
9.1 KiB
Rust
use actix_service::boxed::BoxFuture;
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use actix_service::IntoService;
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use actix_service::Service;
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/// Benchmark various implementations of and_then
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use criterion::{criterion_main, Criterion};
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use futures_util::future::join_all;
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use futures_util::future::TryFutureExt;
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use std::cell::{RefCell, UnsafeCell};
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use std::future::Future;
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use std::pin::Pin;
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use std::rc::Rc;
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use std::task::{Context, Poll};
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/*
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* Test services A,B for AndThen service implementations
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*/
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async fn svc1(_: ()) -> Result<usize, ()> {
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Ok(1)
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}
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async fn svc2(req: usize) -> Result<usize, ()> {
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Ok(req + 1)
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}
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/*
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* AndThenUC - original AndThen service based on UnsafeCell
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* Cut down version of actix_service::AndThenService based on actix-service::Cell
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*/
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struct AndThenUC<A, B>(Rc<UnsafeCell<(A, B)>>);
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impl<A, B> AndThenUC<A, B> {
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fn new(a: A, b: B) -> Self
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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Self(Rc::new(UnsafeCell::new((a, b))))
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}
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}
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impl<A, B> Clone for AndThenUC<A, B> {
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fn clone(&self) -> Self {
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Self(self.0.clone())
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}
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}
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impl<A, B> Service for AndThenUC<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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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 Future = AndThenServiceResponse<A, B>;
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fn poll_ready(&mut self, _: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
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Poll::Ready(Ok(()))
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}
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fn call(&mut self, req: A::Request) -> Self::Future {
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let fut = unsafe { &mut *(*self.0).get() }.0.call(req);
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AndThenServiceResponse {
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state: State::A(fut, Some(self.0.clone())),
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}
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}
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}
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#[pin_project::pin_project]
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pub(crate) struct AndThenServiceResponse<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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#[pin]
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state: State<A, B>,
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}
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#[pin_project::pin_project(project = StateProj)]
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enum State<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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A(#[pin] A::Future, Option<Rc<UnsafeCell<(A, B)>>>),
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B(#[pin] B::Future),
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Empty,
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}
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impl<A, B> Future for AndThenServiceResponse<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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type Output = Result<B::Response, A::Error>;
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fn poll(mut self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<Self::Output> {
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let mut this = self.as_mut().project();
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match this.state.as_mut().project() {
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StateProj::A(fut, b) => match fut.poll(cx)? {
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Poll::Ready(res) => {
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let b = b.take().unwrap();
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this.state.set(State::Empty); // drop fut A
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let fut = unsafe { &mut (*b.get()).1 }.call(res);
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this.state.set(State::B(fut));
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self.poll(cx)
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}
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Poll::Pending => Poll::Pending,
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},
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StateProj::B(fut) => fut.poll(cx).map(|r| {
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this.state.set(State::Empty);
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r
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}),
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StateProj::Empty => {
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panic!("future must not be polled after it returned `Poll::Ready`")
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}
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}
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}
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}
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/*
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* AndThenRC - AndThen service based on RefCell
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*/
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struct AndThenRC<A, B>(Rc<RefCell<(A, B)>>);
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impl<A, B> AndThenRC<A, B> {
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fn new(a: A, b: B) -> Self
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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Self(Rc::new(RefCell::new((a, b))))
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}
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}
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impl<A, B> Clone for AndThenRC<A, B> {
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fn clone(&self) -> Self {
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Self(self.0.clone())
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}
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}
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impl<A, B> Service for AndThenRC<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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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 Future = AndThenServiceResponseRC<A, B>;
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fn poll_ready(&mut self, _: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
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Poll::Ready(Ok(()))
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}
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fn call(&mut self, req: A::Request) -> Self::Future {
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let fut = self.0.borrow_mut().0.call(req);
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AndThenServiceResponseRC {
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state: StateRC::A(fut, Some(self.0.clone())),
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}
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}
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}
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#[pin_project::pin_project]
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pub(crate) struct AndThenServiceResponseRC<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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#[pin]
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state: StateRC<A, B>,
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}
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#[pin_project::pin_project(project = StateRCProj)]
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enum StateRC<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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A(#[pin] A::Future, Option<Rc<RefCell<(A, B)>>>),
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B(#[pin] B::Future),
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Empty,
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}
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impl<A, B> Future for AndThenServiceResponseRC<A, B>
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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type Output = Result<B::Response, A::Error>;
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fn poll(mut self: Pin<&mut Self>, cx: &mut Context<'_>) -> Poll<Self::Output> {
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let mut this = self.as_mut().project();
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match this.state.as_mut().project() {
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StateRCProj::A(fut, b) => match fut.poll(cx)? {
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Poll::Ready(res) => {
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let b = b.take().unwrap();
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this.state.set(StateRC::Empty); // drop fut A
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let fut = b.borrow_mut().1.call(res);
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this.state.set(StateRC::B(fut));
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self.poll(cx)
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}
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Poll::Pending => Poll::Pending,
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},
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StateRCProj::B(fut) => fut.poll(cx).map(|r| {
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this.state.set(StateRC::Empty);
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r
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}),
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StateRCProj::Empty => {
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panic!("future must not be polled after it returned `Poll::Ready`")
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}
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}
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}
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}
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/*
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* AndThenRCFuture - AndThen service based on RefCell
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* and standard futures::future::and_then combinator in a Box
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*/
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struct AndThenRCFuture<A, B>(Rc<RefCell<(A, B)>>);
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impl<A, B> AndThenRCFuture<A, B> {
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fn new(a: A, b: B) -> Self
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where
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A: Service,
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B: Service<Request = A::Response, Error = A::Error>,
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{
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Self(Rc::new(RefCell::new((a, b))))
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}
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}
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impl<A, B> Clone for AndThenRCFuture<A, B> {
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fn clone(&self) -> Self {
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Self(self.0.clone())
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}
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}
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impl<A, B> Service for AndThenRCFuture<A, B>
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where
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A: Service + 'static,
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A::Future: 'static,
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B: Service<Request = A::Response, Error = A::Error> + 'static,
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B::Future: 'static,
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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 Future = BoxFuture<Self::Response, Self::Error>;
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fn poll_ready(&mut self, _: &mut Context<'_>) -> Poll<Result<(), Self::Error>> {
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Poll::Ready(Ok(()))
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}
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fn call(&mut self, req: A::Request) -> Self::Future {
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let fut = self.0.borrow_mut().0.call(req);
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let core = self.0.clone();
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let fut2 = move |res| (*core).borrow_mut().1.call(res);
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Box::pin(fut.and_then(fut2))
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}
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}
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/// Criterion Benchmark for async Service
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/// Should be used from within criterion group:
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/// ```rust,ignore
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/// let mut criterion: ::criterion::Criterion<_> =
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/// ::criterion::Criterion::default().configure_from_args();
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/// bench_async_service(&mut criterion, ok_service(), "async_service_direct");
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/// ```
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///
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/// Usable for benching Service wrappers:
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/// Using minimum service code implementation we first measure
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/// time to run minimum service, then measure time with wrapper.
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///
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/// Sample output
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/// async_service_direct time: [1.0908 us 1.1656 us 1.2613 us]
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pub fn bench_async_service<S>(c: &mut Criterion, srv: S, name: &str)
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where
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S: Service<Request = (), Response = usize, Error = ()> + Clone + 'static,
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{
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let mut rt = actix_rt::System::new("test");
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// start benchmark loops
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c.bench_function(name, move |b| {
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b.iter_custom(|iters| {
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let mut srvs: Vec<_> = (1..iters).map(|_| srv.clone()).collect();
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// exclude request generation, it appears it takes significant time vs call (3us vs 1us)
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let start = std::time::Instant::now();
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// benchmark body
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rt.block_on(async move { join_all(srvs.iter_mut().map(|srv| srv.call(()))).await });
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// check that at least first request succeeded
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start.elapsed()
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})
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});
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}
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pub fn service_benches() {
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let mut criterion: ::criterion::Criterion<_> =
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::criterion::Criterion::default().configure_from_args();
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bench_async_service(
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&mut criterion,
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AndThenUC::new(svc1.into_service(), svc2.into_service()),
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"AndThen with UnsafeCell",
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);
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bench_async_service(
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&mut criterion,
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AndThenRC::new(svc1.into_service(), svc2.into_service()),
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"AndThen with RefCell",
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);
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bench_async_service(
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&mut criterion,
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AndThenUC::new(svc1.into_service(), svc2.into_service()),
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"AndThen with UnsafeCell",
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);
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bench_async_service(
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&mut criterion,
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AndThenRC::new(svc1.into_service(), svc2.into_service()),
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"AndThen with RefCell",
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);
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bench_async_service(
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&mut criterion,
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AndThenRCFuture::new(svc1.into_service(), svc2.into_service()),
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"AndThen with RefCell via future::and_then",
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);
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}
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criterion_main!(service_benches);
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