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actix-web/actix-http/src/h1/service.rs

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use std::future::Future;
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use std::marker::PhantomData;
use std::pin::Pin;
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use std::rc::Rc;
use std::task::{Context, Poll};
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use std::{fmt, net};
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use actix_codec::{AsyncRead, AsyncWrite, Framed};
use actix_rt::net::TcpStream;
use actix_service::{pipeline_factory, IntoServiceFactory, Service, ServiceFactory};
use futures::future::{ok, Ready};
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use futures::ready;
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use crate::body::MessageBody;
use crate::cloneable::CloneableService;
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use crate::config::ServiceConfig;
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use crate::error::{DispatchError, Error, ParseError};
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use crate::helpers::DataFactory;
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use crate::request::Request;
use crate::response::Response;
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use super::codec::Codec;
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use super::dispatcher::Dispatcher;
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use super::{ExpectHandler, Message, UpgradeHandler};
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/// `ServiceFactory` implementation for HTTP1 transport
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pub struct H1Service<T, S, B, X = ExpectHandler, U = UpgradeHandler<T>> {
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srv: S,
cfg: ServiceConfig,
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expect: X,
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upgrade: Option<U>,
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on_connect: Option<Rc<dyn Fn(&T) -> Box<dyn DataFactory>>>,
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_t: PhantomData<(T, B)>,
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}
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impl<T, S, B> H1Service<T, S, B>
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where
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S: ServiceFactory<Config = (), Request = Request>,
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S::Error: Into<Error>,
S::InitError: fmt::Debug,
S::Response: Into<Response<B>>,
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B: MessageBody,
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{
/// Create new `HttpService` instance with config.
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pub(crate) fn with_config<F: IntoServiceFactory<S>>(
cfg: ServiceConfig,
service: F,
) -> Self {
H1Service {
cfg,
srv: service.into_factory(),
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expect: ExpectHandler,
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upgrade: None,
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on_connect: None,
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_t: PhantomData,
}
}
}
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impl<S, B, X, U> H1Service<TcpStream, S, B, X, U>
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where
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S: ServiceFactory<Config = (), Request = Request>,
S::Error: Into<Error>,
S::InitError: fmt::Debug,
S::Response: Into<Response<B>>,
B: MessageBody,
X: ServiceFactory<Config = (), Request = Request, Response = Request>,
X::Error: Into<Error>,
X::InitError: fmt::Debug,
U: ServiceFactory<
Config = (),
Request = (Request, Framed<TcpStream, Codec>),
Response = (),
>,
U::Error: fmt::Display,
U::InitError: fmt::Debug,
{
/// Create simple tcp stream service
pub fn tcp(
self,
) -> impl ServiceFactory<
Config = (),
Request = TcpStream,
Response = (),
Error = DispatchError,
InitError = (),
> {
pipeline_factory(|io: TcpStream| {
let peer_addr = io.peer_addr().ok();
ok((io, peer_addr))
})
.and_then(self)
}
}
#[cfg(feature = "openssl")]
mod openssl {
use super::*;
use actix_tls::openssl::{Acceptor, SslStream};
use actix_tls::{openssl::HandshakeError, SslError};
use open_ssl::ssl::SslAcceptor;
impl<S, B, X, U> H1Service<SslStream<TcpStream>, S, B, X, U>
where
S: ServiceFactory<Config = (), Request = Request>,
S::Error: Into<Error>,
S::InitError: fmt::Debug,
S::Response: Into<Response<B>>,
B: MessageBody,
X: ServiceFactory<Config = (), Request = Request, Response = Request>,
X::Error: Into<Error>,
X::InitError: fmt::Debug,
U: ServiceFactory<
Config = (),
Request = (Request, Framed<SslStream<TcpStream>, Codec>),
Response = (),
>,
U::Error: fmt::Display,
U::InitError: fmt::Debug,
{
/// Create openssl based service
pub fn openssl(
self,
acceptor: SslAcceptor,
) -> impl ServiceFactory<
Config = (),
Request = TcpStream,
Response = (),
Error = SslError<HandshakeError<TcpStream>, DispatchError>,
InitError = (),
> {
pipeline_factory(
Acceptor::new(acceptor)
.map_err(SslError::Ssl)
.map_init_err(|_| panic!()),
)
.and_then(|io: SslStream<TcpStream>| {
let peer_addr = io.get_ref().peer_addr().ok();
ok((io, peer_addr))
})
.and_then(self.map_err(SslError::Service))
}
}
}
impl<T, S, B, X, U> H1Service<T, S, B, X, U>
where
S: ServiceFactory<Config = (), Request = Request>,
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S::Error: Into<Error>,
S::Response: Into<Response<B>>,
S::InitError: fmt::Debug,
B: MessageBody,
{
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pub fn expect<X1>(self, expect: X1) -> H1Service<T, S, B, X1, U>
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where
X1: ServiceFactory<Request = Request, Response = Request>,
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X1::Error: Into<Error>,
X1::InitError: fmt::Debug,
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{
H1Service {
expect,
cfg: self.cfg,
srv: self.srv,
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upgrade: self.upgrade,
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on_connect: self.on_connect,
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_t: PhantomData,
}
}
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pub fn upgrade<U1>(self, upgrade: Option<U1>) -> H1Service<T, S, B, X, U1>
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where
U1: ServiceFactory<Request = (Request, Framed<T, Codec>), Response = ()>,
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U1::Error: fmt::Display,
U1::InitError: fmt::Debug,
{
H1Service {
upgrade,
cfg: self.cfg,
srv: self.srv,
expect: self.expect,
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on_connect: self.on_connect,
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_t: PhantomData,
}
}
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/// Set on connect callback.
pub(crate) fn on_connect(
mut self,
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f: Option<Rc<dyn Fn(&T) -> Box<dyn DataFactory>>>,
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) -> Self {
self.on_connect = f;
self
}
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}
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impl<T, S, B, X, U> ServiceFactory for H1Service<T, S, B, X, U>
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where
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T: AsyncRead + AsyncWrite + Unpin,
S: ServiceFactory<Config = (), Request = Request>,
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S::Error: Into<Error>,
S::Response: Into<Response<B>>,
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S::InitError: fmt::Debug,
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B: MessageBody,
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X: ServiceFactory<Config = (), Request = Request, Response = Request>,
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X::Error: Into<Error>,
X::InitError: fmt::Debug,
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U: ServiceFactory<Config = (), Request = (Request, Framed<T, Codec>), Response = ()>,
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U::Error: fmt::Display,
U::InitError: fmt::Debug,
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{
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type Config = ();
type Request = (T, Option<net::SocketAddr>);
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type Response = ();
type Error = DispatchError;
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type InitError = ();
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type Service = H1ServiceHandler<T, S::Service, B, X::Service, U::Service>;
type Future = H1ServiceResponse<T, S, B, X, U>;
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fn new_service(&self, cfg: &()) -> Self::Future {
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H1ServiceResponse {
fut: self.srv.new_service(cfg),
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fut_ex: Some(self.expect.new_service(cfg)),
fut_upg: self.upgrade.as_ref().map(|f| f.new_service(cfg)),
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expect: None,
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upgrade: None,
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on_connect: self.on_connect.clone(),
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cfg: Some(self.cfg.clone()),
_t: PhantomData,
}
}
}
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#[doc(hidden)]
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#[pin_project::pin_project]
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pub struct H1ServiceResponse<T, S, B, X, U>
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where
S: ServiceFactory<Request = Request>,
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S::Error: Into<Error>,
S::InitError: fmt::Debug,
X: ServiceFactory<Request = Request, Response = Request>,
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X::Error: Into<Error>,
X::InitError: fmt::Debug,
U: ServiceFactory<Request = (Request, Framed<T, Codec>), Response = ()>,
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U::Error: fmt::Display,
U::InitError: fmt::Debug,
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{
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#[pin]
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fut: S::Future,
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#[pin]
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fut_ex: Option<X::Future>,
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#[pin]
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fut_upg: Option<U::Future>,
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expect: Option<X::Service>,
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upgrade: Option<U::Service>,
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on_connect: Option<Rc<dyn Fn(&T) -> Box<dyn DataFactory>>>,
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cfg: Option<ServiceConfig>,
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_t: PhantomData<(T, B)>,
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}
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impl<T, S, B, X, U> Future for H1ServiceResponse<T, S, B, X, U>
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where
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T: AsyncRead + AsyncWrite + Unpin,
S: ServiceFactory<Request = Request>,
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S::Error: Into<Error>,
S::Response: Into<Response<B>>,
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S::InitError: fmt::Debug,
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B: MessageBody,
X: ServiceFactory<Request = Request, Response = Request>,
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X::Error: Into<Error>,
X::InitError: fmt::Debug,
U: ServiceFactory<Request = (Request, Framed<T, Codec>), Response = ()>,
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U::Error: fmt::Display,
U::InitError: fmt::Debug,
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{
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type Output = Result<H1ServiceHandler<T, S::Service, B, X::Service, U::Service>, ()>;
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fn poll(mut self: Pin<&mut Self>, cx: &mut Context) -> Poll<Self::Output> {
let mut this = self.as_mut().project();
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if let Some(fut) = this.fut_ex.as_pin_mut() {
let expect = ready!(fut
.poll(cx)
.map_err(|e| log::error!("Init http service error: {:?}", e)))?;
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this = self.as_mut().project();
*this.expect = Some(expect);
this.fut_ex.set(None);
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}
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if let Some(fut) = this.fut_upg.as_pin_mut() {
let upgrade = ready!(fut
.poll(cx)
.map_err(|e| log::error!("Init http service error: {:?}", e)))?;
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this = self.as_mut().project();
*this.upgrade = Some(upgrade);
this.fut_ex.set(None);
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}
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let result = ready!(this
.fut
.poll(cx)
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.map_err(|e| log::error!("Init http service error: {:?}", e)));
Poll::Ready(result.map(|service| {
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let this = self.as_mut().project();
H1ServiceHandler::new(
this.cfg.take().unwrap(),
service,
this.expect.take().unwrap(),
this.upgrade.take(),
this.on_connect.clone(),
)
}))
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}
}
/// `Service` implementation for HTTP1 transport
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pub struct H1ServiceHandler<T, S, B, X, U> {
srv: CloneableService<S>,
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expect: CloneableService<X>,
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upgrade: Option<CloneableService<U>>,
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on_connect: Option<Rc<dyn Fn(&T) -> Box<dyn DataFactory>>>,
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cfg: ServiceConfig,
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_t: PhantomData<(T, B)>,
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}
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impl<T, S, B, X, U> H1ServiceHandler<T, S, B, X, U>
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where
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S: Service<Request = Request>,
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S::Error: Into<Error>,
S::Response: Into<Response<B>>,
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B: MessageBody,
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X: Service<Request = Request, Response = Request>,
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X::Error: Into<Error>,
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U: Service<Request = (Request, Framed<T, Codec>), Response = ()>,
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U::Error: fmt::Display,
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{
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fn new(
cfg: ServiceConfig,
srv: S,
expect: X,
upgrade: Option<U>,
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on_connect: Option<Rc<dyn Fn(&T) -> Box<dyn DataFactory>>>,
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) -> H1ServiceHandler<T, S, B, X, U> {
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H1ServiceHandler {
srv: CloneableService::new(srv),
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expect: CloneableService::new(expect),
upgrade: upgrade.map(CloneableService::new),
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cfg,
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on_connect,
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_t: PhantomData,
}
}
}
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impl<T, S, B, X, U> Service for H1ServiceHandler<T, S, B, X, U>
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where
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T: AsyncRead + AsyncWrite + Unpin,
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S: Service<Request = Request>,
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S::Error: Into<Error>,
S::Response: Into<Response<B>>,
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B: MessageBody,
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X: Service<Request = Request, Response = Request>,
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X::Error: Into<Error>,
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U: Service<Request = (Request, Framed<T, Codec>), Response = ()>,
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U::Error: fmt::Display,
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{
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type Request = (T, Option<net::SocketAddr>);
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type Response = ();
type Error = DispatchError;
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type Future = Dispatcher<T, S, B, X, U>;
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fn poll_ready(&mut self, cx: &mut Context) -> Poll<Result<(), Self::Error>> {
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let ready = self
.expect
.poll_ready(cx)
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.map_err(|e| {
let e = e.into();
log::error!("Http service readiness error: {:?}", e);
DispatchError::Service(e)
})?
.is_ready();
let ready = self
.srv
.poll_ready(cx)
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.map_err(|e| {
let e = e.into();
log::error!("Http service readiness error: {:?}", e);
DispatchError::Service(e)
})?
.is_ready()
&& ready;
if ready {
Poll::Ready(Ok(()))
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} else {
Poll::Pending
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}
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}
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fn call(&mut self, (io, addr): Self::Request) -> Self::Future {
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let on_connect = if let Some(ref on_connect) = self.on_connect {
Some(on_connect(&io))
} else {
None
};
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Dispatcher::new(
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io,
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self.cfg.clone(),
self.srv.clone(),
self.expect.clone(),
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self.upgrade.clone(),
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on_connect,
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addr,
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)
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}
}
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/// `ServiceFactory` implementation for `OneRequestService` service
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#[derive(Default)]
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pub struct OneRequest<T> {
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config: ServiceConfig,
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_t: PhantomData<T>,
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}
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impl<T> OneRequest<T>
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where
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T: AsyncRead + AsyncWrite + Unpin,
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{
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/// Create new `H1SimpleService` instance.
pub fn new() -> Self {
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OneRequest {
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config: ServiceConfig::default(),
_t: PhantomData,
}
}
}
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impl<T> ServiceFactory for OneRequest<T>
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where
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T: AsyncRead + AsyncWrite + Unpin,
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{
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type Config = ();
type Request = T;
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type Response = (Request, Framed<T, Codec>);
type Error = ParseError;
type InitError = ();
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type Service = OneRequestService<T>;
type Future = Ready<Result<Self::Service, Self::InitError>>;
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fn new_service(&self, _: &()) -> Self::Future {
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ok(OneRequestService {
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_t: PhantomData,
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config: self.config.clone(),
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})
}
}
/// `Service` implementation for HTTP1 transport. Reads one request and returns
/// request and framed object.
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pub struct OneRequestService<T> {
_t: PhantomData<T>,
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config: ServiceConfig,
}
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impl<T> Service for OneRequestService<T>
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where
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T: AsyncRead + AsyncWrite + Unpin,
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{
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type Request = T;
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type Response = (Request, Framed<T, Codec>);
type Error = ParseError;
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type Future = OneRequestServiceResponse<T>;
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fn poll_ready(&mut self, _: &mut Context) -> Poll<Result<(), Self::Error>> {
Poll::Ready(Ok(()))
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}
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fn call(&mut self, req: Self::Request) -> Self::Future {
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OneRequestServiceResponse {
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framed: Some(Framed::new(req, Codec::new(self.config.clone()))),
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}
}
}
#[doc(hidden)]
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pub struct OneRequestServiceResponse<T>
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where
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T: AsyncRead + AsyncWrite + Unpin,
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{
framed: Option<Framed<T, Codec>>,
}
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impl<T> Future for OneRequestServiceResponse<T>
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where
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T: AsyncRead + AsyncWrite + Unpin,
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{
type Output = Result<(Request, Framed<T, Codec>), ParseError>;
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fn poll(mut self: Pin<&mut Self>, cx: &mut Context) -> Poll<Self::Output> {
match self.framed.as_mut().unwrap().next_item(cx) {
Poll::Ready(Some(Ok(req))) => match req {
Message::Item(req) => {
Poll::Ready(Ok((req, self.framed.take().unwrap())))
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}
Message::Chunk(_) => unreachable!("Something is wrong"),
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},
Poll::Ready(Some(Err(err))) => Poll::Ready(Err(err)),
Poll::Ready(None) => Poll::Ready(Err(ParseError::Incomplete)),
Poll::Pending => Poll::Pending,
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}
}
}