mirror of
https://github.com/actix/actix-extras.git
synced 2024-11-24 07:53:00 +01:00
241 lines
6.2 KiB
Rust
241 lines
6.2 KiB
Rust
extern crate actix;
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extern crate actix_web;
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extern crate bytes;
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extern crate futures;
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extern crate http;
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extern crate rand;
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use bytes::Bytes;
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use futures::Stream;
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use rand::Rng;
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#[cfg(feature = "alpn")]
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extern crate openssl;
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use actix::prelude::*;
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use actix_web::*;
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struct Ws;
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impl Actor for Ws {
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type Context = ws::WebsocketContext<Self>;
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}
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impl StreamHandler<ws::Message, ws::ProtocolError> for Ws {
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fn handle(&mut self, msg: ws::Message, ctx: &mut Self::Context) {
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match msg {
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ws::Message::Ping(msg) => ctx.pong(&msg),
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ws::Message::Text(text) => ctx.text(text),
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ws::Message::Binary(bin) => ctx.binary(bin),
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ws::Message::Close(reason) => ctx.close(reason, ""),
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_ => (),
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}
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}
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}
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#[test]
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fn test_simple() {
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let mut srv = test::TestServer::new(|app| app.handler(|req| ws::start(req, Ws)));
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let (reader, mut writer) = srv.ws().unwrap();
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writer.text("text");
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let (item, reader) = srv.execute(reader.into_future()).unwrap();
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assert_eq!(item, Some(ws::Message::Text("text".to_owned())));
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writer.binary(b"text".as_ref());
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let (item, reader) = srv.execute(reader.into_future()).unwrap();
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assert_eq!(
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item,
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Some(ws::Message::Binary(
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Bytes::from_static(b"text").into()
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))
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);
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writer.ping("ping");
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let (item, reader) = srv.execute(reader.into_future()).unwrap();
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assert_eq!(item, Some(ws::Message::Pong("ping".to_owned())));
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writer.close(ws::CloseCode::Normal, "");
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let (item, _) = srv.execute(reader.into_future()).unwrap();
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assert_eq!(item, Some(ws::Message::Close(ws::CloseCode::Normal)));
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}
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#[test]
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fn test_empty_close_code() {
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let mut srv = test::TestServer::new(|app| app.handler(|req| ws::start(req, Ws)));
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let (reader, mut writer) = srv.ws().unwrap();
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writer.close(ws::CloseCode::Empty, "");
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let (item, _) = srv.execute(reader.into_future()).unwrap();
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assert_eq!(item, Some(ws::Message::Close(ws::CloseCode::Status)));
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}
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#[test]
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fn test_large_text() {
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let data = rand::thread_rng()
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.gen_ascii_chars()
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.take(65_536)
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.collect::<String>();
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let mut srv = test::TestServer::new(|app| app.handler(|req| ws::start(req, Ws)));
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let (mut reader, mut writer) = srv.ws().unwrap();
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for _ in 0..100 {
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writer.text(data.clone());
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let (item, r) = srv.execute(reader.into_future()).unwrap();
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reader = r;
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assert_eq!(item, Some(ws::Message::Text(data.clone())));
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}
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}
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#[test]
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fn test_large_bin() {
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let data = rand::thread_rng()
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.gen_ascii_chars()
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.take(65_536)
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.collect::<String>();
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let mut srv = test::TestServer::new(|app| app.handler(|req| ws::start(req, Ws)));
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let (mut reader, mut writer) = srv.ws().unwrap();
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for _ in 0..100 {
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writer.binary(data.clone());
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let (item, r) = srv.execute(reader.into_future()).unwrap();
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reader = r;
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assert_eq!(
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item,
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Some(ws::Message::Binary(Binary::from(data.clone())))
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);
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}
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}
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struct Ws2 {
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count: usize,
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bin: bool,
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}
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impl Actor for Ws2 {
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type Context = ws::WebsocketContext<Self>;
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fn started(&mut self, ctx: &mut Self::Context) {
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self.send(ctx);
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}
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}
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impl Ws2 {
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fn send(&mut self, ctx: &mut ws::WebsocketContext<Self>) {
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if self.bin {
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ctx.binary(Vec::from("0".repeat(65_536)));
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} else {
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ctx.text("0".repeat(65_536));
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}
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ctx.drain()
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.and_then(|_, act, ctx| {
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act.count += 1;
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if act.count != 10_000 {
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act.send(ctx);
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}
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actix::fut::ok(())
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})
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.wait(ctx);
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}
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}
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impl StreamHandler<ws::Message, ws::ProtocolError> for Ws2 {
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fn handle(&mut self, msg: ws::Message, ctx: &mut Self::Context) {
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match msg {
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ws::Message::Ping(msg) => ctx.pong(&msg),
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ws::Message::Text(text) => ctx.text(text),
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ws::Message::Binary(bin) => ctx.binary(bin),
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ws::Message::Close(reason) => ctx.close(reason, ""),
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_ => (),
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}
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}
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}
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#[test]
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fn test_server_send_text() {
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let data = Some(ws::Message::Text("0".repeat(65_536)));
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let mut srv = test::TestServer::new(|app| {
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app.handler(|req| {
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ws::start(
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req,
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Ws2 {
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count: 0,
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bin: false,
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},
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)
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})
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});
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let (mut reader, _writer) = srv.ws().unwrap();
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for _ in 0..10_000 {
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let (item, r) = srv.execute(reader.into_future()).unwrap();
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reader = r;
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assert_eq!(item, data);
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}
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}
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#[test]
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fn test_server_send_bin() {
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let data = Some(ws::Message::Binary(Binary::from("0".repeat(65_536))));
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let mut srv = test::TestServer::new(|app| {
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app.handler(|req| {
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ws::start(
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req,
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Ws2 {
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count: 0,
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bin: true,
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},
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)
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})
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});
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let (mut reader, _writer) = srv.ws().unwrap();
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for _ in 0..10_000 {
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let (item, r) = srv.execute(reader.into_future()).unwrap();
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reader = r;
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assert_eq!(item, data);
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}
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}
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#[test]
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#[cfg(feature = "alpn")]
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fn test_ws_server_ssl() {
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extern crate openssl;
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use openssl::ssl::{SslAcceptor, SslFiletype, SslMethod};
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// load ssl keys
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let mut builder = SslAcceptor::mozilla_intermediate(SslMethod::tls()).unwrap();
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builder
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.set_private_key_file("tests/key.pem", SslFiletype::PEM)
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.unwrap();
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builder
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.set_certificate_chain_file("tests/cert.pem")
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.unwrap();
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let mut srv = test::TestServer::build()
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.ssl(builder.build())
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.start(|app| {
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app.handler(|req| {
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ws::start(
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req,
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Ws2 {
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count: 0,
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bin: false,
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},
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)
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})
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});
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let (mut reader, _writer) = srv.ws().unwrap();
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let data = Some(ws::Message::Text("0".repeat(65_536)));
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for _ in 0..10_000 {
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let (item, r) = srv.execute(reader.into_future()).unwrap();
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reader = r;
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assert_eq!(item, data);
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}
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}
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