mirror of
https://github.com/fafhrd91/actix-web
synced 2024-11-24 00:21:08 +01:00
client connector wait timeout
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parent
800f711cc1
commit
6c55501252
@ -1,11 +1,11 @@
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use std::{fmt, mem, io, time};
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use std::cell::RefCell;
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use std::cell::{Cell, RefCell};
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use std::rc::Rc;
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use std::net::Shutdown;
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use std::time::{Duration, Instant};
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use std::collections::{HashMap, VecDeque};
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use actix::{fut, Actor, ActorFuture, Context, AsyncContext,
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use actix::{fut, Actor, ActorFuture, Arbiter, Context, AsyncContext,
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Handler, Message, ActorResponse, Supervised, ContextFutureSpawner};
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use actix::registry::ArbiterService;
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use actix::fut::WrapFuture;
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@ -16,6 +16,7 @@ use futures::{Async, Future, Poll};
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use futures::task::{Task, current as current_task};
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use futures::unsync::oneshot;
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use tokio_io::{AsyncRead, AsyncWrite};
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use tokio_core::reactor::Timeout;
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#[cfg(feature="alpn")]
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use openssl::ssl::{SslMethod, SslConnector, Error as OpensslError};
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@ -35,8 +36,9 @@ use server::IoStream;
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/// `Connect` type represents message that can be send to `ClientConnector`
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/// with connection request.
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pub struct Connect {
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pub uri: Uri,
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pub conn_timeout: Duration,
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pub(crate) uri: Uri,
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pub(crate) wait_time: Duration,
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pub(crate) conn_timeout: Duration,
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}
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impl Connect {
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@ -44,9 +46,25 @@ impl Connect {
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pub fn new<U>(uri: U) -> Result<Connect, HttpError> where Uri: HttpTryFrom<U> {
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Ok(Connect {
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uri: Uri::try_from(uri).map_err(|e| e.into())?,
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conn_timeout: Duration::from_secs(1)
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wait_time: Duration::from_secs(5),
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conn_timeout: Duration::from_secs(1),
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})
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}
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/// Connection timeout, max time to connect to remote host.
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/// By default connect timeout is 1 seccond.
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pub fn conn_timeout(mut self, timeout: Duration) -> Self {
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self.conn_timeout = timeout;
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self
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}
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/// If connection pool limits are enabled, wait time indicates
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/// max time to wait for available connection.
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/// By default connect timeout is 5 secconds.
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pub fn wait_time(mut self, timeout: Duration) -> Self {
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self.wait_time = timeout;
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self
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}
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}
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impl Message for Connect {
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@ -102,6 +120,7 @@ impl From<ConnectorError> for ClientConnectorError {
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struct Waiter {
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tx: oneshot::Sender<Result<Connection, ClientConnectorError>>,
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wait: Instant,
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conn_timeout: Duration,
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}
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@ -114,6 +133,8 @@ pub struct ClientConnector {
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connector: TlsConnector,
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pool: Rc<Pool>,
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pool_modified: Rc<Cell<bool>>,
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conn_lifetime: Duration,
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conn_keep_alive: Duration,
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limit: usize,
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@ -123,6 +144,7 @@ pub struct ClientConnector {
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available: HashMap<Key, VecDeque<Conn>>,
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to_close: Vec<Connection>,
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waiters: HashMap<Key, VecDeque<Waiter>>,
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wait_timeout: Option<(Instant, Timeout)>,
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}
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impl Actor for ClientConnector {
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@ -140,6 +162,8 @@ impl ArbiterService for ClientConnector {}
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impl Default for ClientConnector {
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fn default() -> ClientConnector {
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let modified = Rc::new(Cell::new(false));
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#[cfg(all(feature="alpn"))]
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{
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let builder = SslConnector::builder(SslMethod::tls()).unwrap();
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@ -149,7 +173,8 @@ impl Default for ClientConnector {
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{
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let builder = TlsConnector::builder().unwrap();
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ClientConnector {
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pool: Rc::new(Pool::new()),
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pool: Rc::new(Pool::new(Rc::clone(&modified))),
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pool_modified: modified,
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connector: builder.build().unwrap(),
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conn_lifetime: Duration::from_secs(15),
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conn_keep_alive: Duration::from_secs(75),
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@ -160,11 +185,13 @@ impl Default for ClientConnector {
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available: HashMap::new(),
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to_close: Vec::new(),
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waiters: HashMap::new(),
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wait_timeout: None,
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}
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}
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#[cfg(not(any(feature="alpn", feature="tls")))]
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ClientConnector {pool: Rc::new(Pool::new()),
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ClientConnector {pool: Rc::new(Pool::new(Rc::clone(&modified))),
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pool_modified: modified,
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conn_lifetime: Duration::from_secs(15),
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conn_keep_alive: Duration::from_secs(75),
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limit: 100,
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@ -174,6 +201,7 @@ impl Default for ClientConnector {
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available: HashMap::new(),
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to_close: Vec::new(),
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waiters: HashMap::new(),
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wait_timeout: None,
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}
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}
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}
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@ -224,9 +252,11 @@ impl ClientConnector {
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/// }
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/// ```
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pub fn with_connector(connector: SslConnector) -> ClientConnector {
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let modified = Rc::new(Cell::new(false));
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ClientConnector {
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connector,
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pool: Rc::new(Pool::new()),
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pool: Rc::new(Pool::new(Rc::clone(&modified))),
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pool_modified: modified,
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conn_lifetime: Duration::from_secs(15),
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conn_keep_alive: Duration::from_secs(75),
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limit: 100,
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@ -236,6 +266,7 @@ impl ClientConnector {
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available: HashMap::new(),
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to_close: Vec::new(),
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waiters: HashMap::new(),
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wait_timeout: None,
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}
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}
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@ -357,31 +388,33 @@ impl ClientConnector {
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fn collect(&mut self, periodic: bool) {
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let now = Instant::now();
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// collect half acquire keys
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if let Some(keys) = self.pool.collect_keys() {
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for key in keys {
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self.release_key(&key);
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if self.pool_modified.get() {
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// collect half acquire keys
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if let Some(keys) = self.pool.collect_keys() {
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for key in keys {
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self.release_key(&key);
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}
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}
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}
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// collect connections for close
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if let Some(to_close) = self.pool.collect_close() {
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for conn in to_close {
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self.release_key(&conn.key);
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self.to_close.push(conn);
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// collect connections for close
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if let Some(to_close) = self.pool.collect_close() {
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for conn in to_close {
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self.release_key(&conn.key);
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self.to_close.push(conn);
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}
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}
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}
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// connection connections
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if let Some(to_release) = self.pool.collect_release() {
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for conn in to_release {
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self.release_key(&conn.key);
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// connection connections
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if let Some(to_release) = self.pool.collect_release() {
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for conn in to_release {
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self.release_key(&conn.key);
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// check connection lifetime and the return to available pool
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if (now - conn.ts) < self.conn_lifetime {
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self.available.entry(conn.key.clone())
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.or_insert_with(VecDeque::new)
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.push_back(Conn(Instant::now(), conn));
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// check connection lifetime and the return to available pool
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if (now - conn.ts) < self.conn_lifetime {
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self.available.entry(conn.key.clone())
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.or_insert_with(VecDeque::new)
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.push_back(Conn(Instant::now(), conn));
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}
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}
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}
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}
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@ -412,6 +445,8 @@ impl ClientConnector {
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}
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}
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}
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self.pool_modified.set(false);
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}
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fn collect_periodic(&mut self, ctx: &mut Context<Self>) {
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@ -419,15 +454,58 @@ impl ClientConnector {
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// re-schedule next collect period
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ctx.run_later(Duration::from_secs(1), |act, ctx| act.collect_periodic(ctx));
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}
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fn collect_waiters(&mut self) {
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let now = Instant::now();
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let mut next = None;
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for (_, waiters) in &mut self.waiters {
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let mut idx = 0;
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while idx < waiters.len() {
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if waiters[idx].wait <= now {
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let waiter = waiters.swap_remove_back(idx).unwrap();
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let _ = waiter.tx.send(Err(ClientConnectorError::Timeout));
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} else {
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if let Some(n) = next {
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if waiters[idx].wait < n {
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next = Some(waiters[idx].wait);
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}
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} else {
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next = Some(waiters[idx].wait);
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}
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idx += 1;
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}
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}
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}
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if next.is_some() {
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self.install_wait_timeout(next.unwrap());
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}
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}
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fn install_wait_timeout(&mut self, time: Instant) {
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if let Some(ref mut wait) = self.wait_timeout {
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if wait.0 < time {
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return
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}
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}
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let mut timeout = Timeout::new(time-Instant::now(), Arbiter::handle()).unwrap();
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let _ = timeout.poll();
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self.wait_timeout = Some((time, timeout));
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}
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}
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impl Handler<Connect> for ClientConnector {
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type Result = ActorResponse<ClientConnector, Connection, ClientConnectorError>;
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fn handle(&mut self, msg: Connect, _: &mut Self::Context) -> Self::Result {
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self.collect(false);
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if self.pool_modified.get() {
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self.collect(false);
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}
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let uri = &msg.uri;
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let wait_time = msg.wait_time;
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let conn_timeout = msg.conn_timeout;
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// host name is required
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@ -469,7 +547,11 @@ impl Handler<Connect> for ClientConnector {
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Acquire::NotAvailable => {
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// connection is not available, wait
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let (tx, rx) = oneshot::channel();
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let waiter = Waiter{ tx, conn_timeout };
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let wait = Instant::now() + wait_time;
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self.install_wait_timeout(wait);
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let waiter = Waiter{ tx, wait, conn_timeout };
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self.waiters.entry(key.clone()).or_insert_with(VecDeque::new)
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.push_back(waiter);
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return ActorResponse::async(
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@ -563,8 +645,13 @@ impl fut::ActorFuture for Maintenance
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fn poll(&mut self, act: &mut ClientConnector, ctx: &mut Context<ClientConnector>)
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-> Poll<Self::Item, Self::Error>
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{
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// collecto connections
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act.collect(false);
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// collect connections
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if act.pool_modified.get() {
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act.collect(false);
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}
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// collect wait timers
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act.collect_waiters();
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// check waiters
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let tmp: &mut ClientConnector = unsafe{mem::transmute(act as &mut _)};
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@ -781,11 +868,13 @@ pub struct Pool {
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to_close: RefCell<Vec<Connection>>,
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to_release: RefCell<Vec<Connection>>,
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task: RefCell<Option<Task>>,
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modified: Rc<Cell<bool>>,
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}
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impl Pool {
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fn new() -> Pool {
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fn new(modified: Rc<Cell<bool>>) -> Pool {
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Pool {
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modified,
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keys: RefCell::new(Vec::new()),
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to_close: RefCell::new(Vec::new()),
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to_release: RefCell::new(Vec::new()),
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@ -818,6 +907,7 @@ impl Pool {
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}
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fn close(&self, conn: Connection) {
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self.modified.set(true);
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self.to_close.borrow_mut().push(conn);
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if let Some(ref task) = *self.task.borrow() {
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task.notify()
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@ -825,6 +915,7 @@ impl Pool {
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}
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fn release(&self, conn: Connection) {
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self.modified.set(true);
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self.to_release.borrow_mut().push(conn);
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if let Some(ref task) = *self.task.borrow() {
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task.notify()
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@ -832,6 +923,7 @@ impl Pool {
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}
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fn release_key(&self, key: Key) {
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self.modified.set(true);
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self.keys.borrow_mut().push(key);
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if let Some(ref task) = *self.task.borrow() {
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task.notify()
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@ -69,6 +69,7 @@ pub struct SendRequest {
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state: State,
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conn: Addr<Unsync, ClientConnector>,
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conn_timeout: Duration,
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wait_time: Duration,
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timeout: Option<Timeout>,
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}
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@ -83,7 +84,8 @@ impl SendRequest {
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SendRequest{req, conn,
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state: State::New,
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timeout: None,
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conn_timeout: Duration::from_secs(1)
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wait_time: Duration::from_secs(5),
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conn_timeout: Duration::from_secs(1),
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}
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}
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@ -93,6 +95,7 @@ impl SendRequest {
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state: State::Connection(conn),
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conn: ClientConnector::from_registry(),
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timeout: None,
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wait_time: Duration::from_secs(5),
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conn_timeout: Duration::from_secs(1),
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}
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}
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@ -115,6 +118,15 @@ impl SendRequest {
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self.conn_timeout = timeout;
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self
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}
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/// Set wait time
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///
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/// If connections pool limits are enabled, wait time indicates max time
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/// to wait for available connection. Default value is 5 seconds.
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pub fn wait_time(mut self, timeout: Duration) -> Self {
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self.wait_time = timeout;
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self
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}
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}
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impl Future for SendRequest {
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@ -129,6 +141,7 @@ impl Future for SendRequest {
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State::New =>
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self.state = State::Connect(self.conn.send(Connect {
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uri: self.req.uri().clone(),
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wait_time: self.wait_time,
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conn_timeout: self.conn_timeout,
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})),
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State::Connect(mut conn) => match conn.poll() {
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