mirror of
https://github.com/fafhrd91/actix-web
synced 2024-11-25 08:52:42 +01:00
443 lines
14 KiB
Rust
443 lines
14 KiB
Rust
use std::fmt;
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use std::marker::PhantomData;
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use std::time::Duration;
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use actix_codec::{AsyncRead, AsyncWrite};
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use actix_connect::{
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default_connector, Connect as TcpConnect, Connection as TcpConnection,
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};
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use actix_service::{apply_fn, Service, ServiceExt};
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use actix_utils::timeout::{TimeoutError, TimeoutService};
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use http::Uri;
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use tokio_tcp::TcpStream;
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use super::connection::Connection;
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use super::error::ConnectError;
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use super::pool::{ConnectionPool, Protocol};
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#[cfg(feature = "ssl")]
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use openssl::ssl::SslConnector;
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#[cfg(not(feature = "ssl"))]
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type SslConnector = ();
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/// Http client connector builde instance.
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/// `Connector` type uses builder-like pattern for connector service construction.
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pub struct Connector<T, U> {
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connector: T,
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timeout: Duration,
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conn_lifetime: Duration,
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conn_keep_alive: Duration,
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disconnect_timeout: Duration,
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limit: usize,
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#[allow(dead_code)]
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ssl: SslConnector,
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_t: PhantomData<U>,
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}
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impl Connector<(), ()> {
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pub fn new() -> Connector<
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impl Service<
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Request = TcpConnect<Uri>,
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Response = TcpConnection<Uri, TcpStream>,
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Error = actix_connect::ConnectError,
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> + Clone,
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TcpStream,
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> {
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let ssl = {
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#[cfg(feature = "ssl")]
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{
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use log::error;
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use openssl::ssl::{SslConnector, SslMethod};
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let mut ssl = SslConnector::builder(SslMethod::tls()).unwrap();
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let _ = ssl
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.set_alpn_protos(b"\x02h2\x08http/1.1")
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.map_err(|e| error!("Can not set alpn protocol: {:?}", e));
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ssl.build()
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}
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#[cfg(not(feature = "ssl"))]
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{}
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};
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Connector {
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ssl,
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connector: default_connector(),
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timeout: Duration::from_secs(1),
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conn_lifetime: Duration::from_secs(75),
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conn_keep_alive: Duration::from_secs(15),
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disconnect_timeout: Duration::from_millis(3000),
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limit: 100,
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_t: PhantomData,
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}
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}
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}
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impl<T, U> Connector<T, U> {
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/// Use custom connector.
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pub fn connector<T1, U1>(self, connector: T1) -> Connector<T1, U1>
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where
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U1: AsyncRead + AsyncWrite + fmt::Debug,
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T1: Service<
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Request = TcpConnect<Uri>,
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Response = TcpConnection<Uri, U1>,
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Error = actix_connect::ConnectError,
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> + Clone,
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{
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Connector {
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connector,
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timeout: self.timeout,
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conn_lifetime: self.conn_lifetime,
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conn_keep_alive: self.conn_keep_alive,
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disconnect_timeout: self.disconnect_timeout,
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limit: self.limit,
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ssl: self.ssl,
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_t: PhantomData,
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}
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}
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}
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impl<T, U> Connector<T, U>
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where
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U: AsyncRead + AsyncWrite + fmt::Debug + 'static,
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T: Service<
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Request = TcpConnect<Uri>,
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Response = TcpConnection<Uri, U>,
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Error = actix_connect::ConnectError,
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> + Clone,
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{
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/// Connection timeout, i.e. max time to connect to remote host including dns name resolution.
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/// Set to 1 second by default.
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pub fn timeout(mut self, timeout: Duration) -> Self {
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self.timeout = timeout;
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self
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}
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#[cfg(feature = "ssl")]
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/// Use custom `SslConnector` instance.
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pub fn ssl(mut self, connector: SslConnector) -> Self {
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self.ssl = connector;
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self
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}
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/// Set total number of simultaneous connections per type of scheme.
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///
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/// If limit is 0, the connector has no limit.
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/// The default limit size is 100.
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pub fn limit(mut self, limit: usize) -> Self {
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self.limit = limit;
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self
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}
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/// Set keep-alive period for opened connection.
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///
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/// Keep-alive period is the period between connection usage. If
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/// the delay between repeated usages of the same connection
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/// exceeds this period, the connection is closed.
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/// Default keep-alive period is 15 seconds.
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pub fn conn_keep_alive(mut self, dur: Duration) -> Self {
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self.conn_keep_alive = dur;
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self
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}
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/// Set max lifetime period for connection.
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///
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/// Connection lifetime is max lifetime of any opened connection
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/// until it is closed regardless of keep-alive period.
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/// Default lifetime period is 75 seconds.
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pub fn conn_lifetime(mut self, dur: Duration) -> Self {
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self.conn_lifetime = dur;
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self
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}
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/// Set server connection disconnect timeout in milliseconds.
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///
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/// Defines a timeout for disconnect connection. If a disconnect procedure does not complete
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/// within this time, the socket get dropped. This timeout affects only secure connections.
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///
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/// To disable timeout set value to 0.
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///
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/// By default disconnect timeout is set to 3000 milliseconds.
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pub fn disconnect_timeout(mut self, dur: Duration) -> Self {
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self.disconnect_timeout = dur;
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self
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}
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/// Finish configuration process and create connector service.
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pub fn service(
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self,
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) -> impl Service<Request = Uri, Response = impl Connection, Error = ConnectError> + Clone
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{
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#[cfg(not(feature = "ssl"))]
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{
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let connector = TimeoutService::new(
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self.timeout,
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apply_fn(self.connector, |msg: Uri, srv| srv.call(msg.into()))
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.map_err(ConnectError::from)
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.map(|stream| (stream.into_parts().0, Protocol::Http1)),
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)
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.map_err(|e| match e {
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TimeoutError::Service(e) => e,
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TimeoutError::Timeout => ConnectError::Timeout,
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});
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connect_impl::InnerConnector {
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tcp_pool: ConnectionPool::new(
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connector,
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self.conn_lifetime,
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self.conn_keep_alive,
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None,
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self.limit,
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),
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}
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}
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#[cfg(feature = "ssl")]
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{
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const H2: &[u8] = b"h2";
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use actix_connect::ssl::OpensslConnector;
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let ssl_service = TimeoutService::new(
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self.timeout,
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apply_fn(self.connector.clone(), |msg: Uri, srv| srv.call(msg.into()))
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.map_err(ConnectError::from)
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.and_then(
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OpensslConnector::service(self.ssl)
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.map_err(ConnectError::from)
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.map(|stream| {
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let sock = stream.into_parts().0;
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let h2 = sock
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.get_ref()
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.ssl()
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.selected_alpn_protocol()
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.map(|protos| protos.windows(2).any(|w| w == H2))
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.unwrap_or(false);
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if h2 {
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(sock, Protocol::Http2)
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} else {
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(sock, Protocol::Http1)
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}
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}),
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),
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)
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.map_err(|e| match e {
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TimeoutError::Service(e) => e,
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TimeoutError::Timeout => ConnectError::Timeout,
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});
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let tcp_service = TimeoutService::new(
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self.timeout,
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apply_fn(self.connector.clone(), |msg: Uri, srv| srv.call(msg.into()))
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.map_err(ConnectError::from)
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.map(|stream| (stream.into_parts().0, Protocol::Http1)),
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)
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.map_err(|e| match e {
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TimeoutError::Service(e) => e,
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TimeoutError::Timeout => ConnectError::Timeout,
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});
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connect_impl::InnerConnector {
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tcp_pool: ConnectionPool::new(
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tcp_service,
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self.conn_lifetime,
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self.conn_keep_alive,
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None,
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self.limit,
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),
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ssl_pool: ConnectionPool::new(
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ssl_service,
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self.conn_lifetime,
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self.conn_keep_alive,
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Some(self.disconnect_timeout),
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self.limit,
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),
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}
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}
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}
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}
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#[cfg(not(feature = "ssl"))]
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mod connect_impl {
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use futures::future::{err, Either, FutureResult};
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use futures::Poll;
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use super::*;
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use crate::client::connection::IoConnection;
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pub(crate) struct InnerConnector<T, Io>
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where
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Io: AsyncRead + AsyncWrite + 'static,
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T: Service<Request = Uri, Response = (Io, Protocol), Error = ConnectError>,
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{
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pub(crate) tcp_pool: ConnectionPool<T, Io>,
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}
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impl<T, Io> Clone for InnerConnector<T, Io>
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where
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Io: AsyncRead + AsyncWrite + 'static,
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T: Service<Request = Uri, Response = (Io, Protocol), Error = ConnectError>
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+ Clone,
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{
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fn clone(&self) -> Self {
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InnerConnector {
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tcp_pool: self.tcp_pool.clone(),
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}
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}
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}
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impl<T, Io> Service for InnerConnector<T, Io>
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where
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Io: AsyncRead + AsyncWrite + 'static,
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T: Service<Request = Uri, Response = (Io, Protocol), Error = ConnectError>,
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{
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type Request = Uri;
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type Response = IoConnection<Io>;
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type Error = ConnectError;
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type Future = Either<
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<ConnectionPool<T, Io> as Service>::Future,
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FutureResult<IoConnection<Io>, ConnectError>,
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>;
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fn poll_ready(&mut self) -> Poll<(), Self::Error> {
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self.tcp_pool.poll_ready()
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}
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fn call(&mut self, req: Uri) -> Self::Future {
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match req.scheme_str() {
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Some("https") | Some("wss") => {
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Either::B(err(ConnectError::SslIsNotSupported))
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}
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_ => Either::A(self.tcp_pool.call(req)),
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}
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}
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}
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}
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#[cfg(feature = "ssl")]
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mod connect_impl {
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use std::marker::PhantomData;
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use futures::future::{Either, FutureResult};
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use futures::{Async, Future, Poll};
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use super::*;
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use crate::client::connection::EitherConnection;
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pub(crate) struct InnerConnector<T1, T2, Io1, Io2>
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where
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Io1: AsyncRead + AsyncWrite + 'static,
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Io2: AsyncRead + AsyncWrite + 'static,
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T1: Service<Request = Uri, Response = (Io1, Protocol), Error = ConnectError>,
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T2: Service<Request = Uri, Response = (Io2, Protocol), Error = ConnectError>,
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{
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pub(crate) tcp_pool: ConnectionPool<T1, Io1>,
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pub(crate) ssl_pool: ConnectionPool<T2, Io2>,
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}
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impl<T1, T2, Io1, Io2> Clone for InnerConnector<T1, T2, Io1, Io2>
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where
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Io1: AsyncRead + AsyncWrite + 'static,
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Io2: AsyncRead + AsyncWrite + 'static,
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T1: Service<Request = Uri, Response = (Io1, Protocol), Error = ConnectError>
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+ Clone,
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T2: Service<Request = Uri, Response = (Io2, Protocol), Error = ConnectError>
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+ Clone,
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{
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fn clone(&self) -> Self {
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InnerConnector {
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tcp_pool: self.tcp_pool.clone(),
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ssl_pool: self.ssl_pool.clone(),
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}
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}
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}
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impl<T1, T2, Io1, Io2> Service for InnerConnector<T1, T2, Io1, Io2>
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where
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Io1: AsyncRead + AsyncWrite + 'static,
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Io2: AsyncRead + AsyncWrite + 'static,
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T1: Service<Request = Uri, Response = (Io1, Protocol), Error = ConnectError>,
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T2: Service<Request = Uri, Response = (Io2, Protocol), Error = ConnectError>,
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{
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type Request = Uri;
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type Response = EitherConnection<Io1, Io2>;
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type Error = ConnectError;
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type Future = Either<
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FutureResult<Self::Response, Self::Error>,
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Either<
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InnerConnectorResponseA<T1, Io1, Io2>,
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InnerConnectorResponseB<T2, Io1, Io2>,
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>,
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>;
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fn poll_ready(&mut self) -> Poll<(), Self::Error> {
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self.tcp_pool.poll_ready()
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}
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fn call(&mut self, req: Uri) -> Self::Future {
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match req.scheme_str() {
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Some("https") | Some("wss") => {
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Either::B(Either::B(InnerConnectorResponseB {
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fut: self.ssl_pool.call(req),
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_t: PhantomData,
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}))
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}
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_ => Either::B(Either::A(InnerConnectorResponseA {
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fut: self.tcp_pool.call(req),
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_t: PhantomData,
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})),
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}
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}
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}
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pub(crate) struct InnerConnectorResponseA<T, Io1, Io2>
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where
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Io1: AsyncRead + AsyncWrite + 'static,
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T: Service<Request = Uri, Response = (Io1, Protocol), Error = ConnectError>,
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{
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fut: <ConnectionPool<T, Io1> as Service>::Future,
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_t: PhantomData<Io2>,
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}
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impl<T, Io1, Io2> Future for InnerConnectorResponseA<T, Io1, Io2>
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where
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T: Service<Request = Uri, Response = (Io1, Protocol), Error = ConnectError>,
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Io1: AsyncRead + AsyncWrite + 'static,
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Io2: AsyncRead + AsyncWrite + 'static,
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{
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type Item = EitherConnection<Io1, Io2>;
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type Error = ConnectError;
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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match self.fut.poll()? {
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Async::NotReady => Ok(Async::NotReady),
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Async::Ready(res) => Ok(Async::Ready(EitherConnection::A(res))),
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}
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}
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}
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pub(crate) struct InnerConnectorResponseB<T, Io1, Io2>
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where
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Io2: AsyncRead + AsyncWrite + 'static,
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T: Service<Request = Uri, Response = (Io2, Protocol), Error = ConnectError>,
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{
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fut: <ConnectionPool<T, Io2> as Service>::Future,
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_t: PhantomData<Io1>,
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}
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impl<T, Io1, Io2> Future for InnerConnectorResponseB<T, Io1, Io2>
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where
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T: Service<Request = Uri, Response = (Io2, Protocol), Error = ConnectError>,
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Io1: AsyncRead + AsyncWrite + 'static,
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Io2: AsyncRead + AsyncWrite + 'static,
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{
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type Item = EitherConnection<Io1, Io2>;
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type Error = ConnectError;
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fn poll(&mut self) -> Poll<Self::Item, Self::Error> {
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match self.fut.poll()? {
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Async::NotReady => Ok(Async::NotReady),
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Async::Ready(res) => Ok(Async::Ready(EitherConnection::B(res))),
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}
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}
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}
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}
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