mirror of
https://github.com/actix/actix-extras.git
synced 2024-11-25 00:12:59 +01:00
354 lines
12 KiB
Rust
354 lines
12 KiB
Rust
//! `WebSocket` support for Actix
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//!
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//! To setup a `WebSocket`, first do web socket handshake then on success convert `Payload`
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//! into a `WsStream` stream and then use `WsWriter` to communicate with the peer.
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//!
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//! ## Example
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//!
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//! ```rust
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//! # extern crate actix;
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//! # extern crate actix_web;
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//! # use actix::*;
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//! # use actix_web::*;
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//! use actix_web::ws;
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//!
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//! // do websocket handshake and start actor
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//! fn ws_index(req: HttpRequest) -> Result<HttpResponse> {
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//! ws::start(req, Ws)
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//! }
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//!
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//! struct Ws;
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//!
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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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//!
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//! // Define Handler for ws::Message message
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//! impl Handler<ws::Message> for Ws {
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//! type Result = ();
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//!
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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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//! _ => (),
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//! }
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//! }
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//! }
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//! #
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//! # fn main() {
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//! # Application::new()
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//! # .resource("/ws/", |r| r.f(ws_index)) // <- register websocket route
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//! # .finish();
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//! # }
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//! ```
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use bytes::BytesMut;
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use http::{Method, StatusCode, header};
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use futures::{Async, Poll, Stream};
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use actix::{Actor, AsyncContext, ResponseType, Handler};
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use body::Binary;
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use payload::ReadAny;
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use error::{Error, WsHandshakeError};
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use httprequest::HttpRequest;
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use httpresponse::{ConnectionType, HttpResponse, HttpResponseBuilder};
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mod frame;
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mod proto;
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mod context;
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mod mask;
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mod client;
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mod connect;
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use self::frame::Frame;
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use self::proto::{hash_key, OpCode};
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pub use self::proto::CloseCode;
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pub use self::context::WebsocketContext;
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pub use self::client::{WsClient, WsClientError, WsReader, WsWriter, WsFuture};
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const SEC_WEBSOCKET_ACCEPT: &str = "SEC-WEBSOCKET-ACCEPT";
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const SEC_WEBSOCKET_KEY: &str = "SEC-WEBSOCKET-KEY";
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const SEC_WEBSOCKET_VERSION: &str = "SEC-WEBSOCKET-VERSION";
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// const SEC_WEBSOCKET_PROTOCOL: &'static str = "SEC-WEBSOCKET-PROTOCOL";
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/// `WebSocket` Message
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#[derive(Debug)]
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pub enum Message {
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Text(String),
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Binary(Binary),
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Ping(String),
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Pong(String),
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Close,
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Closed,
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Error
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}
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impl ResponseType for Message {
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type Item = ();
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type Error = ();
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}
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/// Do websocket handshake and start actor
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pub fn start<A, S>(mut req: HttpRequest<S>, actor: A) -> Result<HttpResponse, Error>
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where A: Actor<Context=WebsocketContext<A, S>> + Handler<Message>,
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S: 'static
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{
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let mut resp = handshake(&req)?;
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let stream = WsStream::new(req.payload_mut().readany());
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let mut ctx = WebsocketContext::new(req, actor);
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ctx.add_message_stream(stream);
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Ok(resp.body(ctx)?)
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}
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/// Prepare `WebSocket` handshake response.
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///
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/// This function returns handshake `HttpResponse`, ready to send to peer.
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/// It does not perform any IO.
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///
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// /// `protocols` is a sequence of known protocols. On successful handshake,
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// /// the returned response headers contain the first protocol in this list
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// /// which the server also knows.
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pub fn handshake<S>(req: &HttpRequest<S>) -> Result<HttpResponseBuilder, WsHandshakeError> {
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// WebSocket accepts only GET
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if *req.method() != Method::GET {
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return Err(WsHandshakeError::GetMethodRequired)
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}
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// Check for "UPGRADE" to websocket header
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let has_hdr = if let Some(hdr) = req.headers().get(header::UPGRADE) {
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if let Ok(s) = hdr.to_str() {
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s.to_lowercase().contains("websocket")
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} else {
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false
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}
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} else {
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false
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};
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if !has_hdr {
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return Err(WsHandshakeError::NoWebsocketUpgrade)
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}
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// Upgrade connection
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if !req.upgrade() {
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return Err(WsHandshakeError::NoConnectionUpgrade)
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}
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// check supported version
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if !req.headers().contains_key(SEC_WEBSOCKET_VERSION) {
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return Err(WsHandshakeError::NoVersionHeader)
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}
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let supported_ver = {
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if let Some(hdr) = req.headers().get(SEC_WEBSOCKET_VERSION) {
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hdr == "13" || hdr == "8" || hdr == "7"
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} else {
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false
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}
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};
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if !supported_ver {
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return Err(WsHandshakeError::UnsupportedVersion)
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}
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// check client handshake for validity
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if !req.headers().contains_key(SEC_WEBSOCKET_KEY) {
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return Err(WsHandshakeError::BadWebsocketKey)
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}
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let key = {
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let key = req.headers().get(SEC_WEBSOCKET_KEY).unwrap();
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hash_key(key.as_ref())
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};
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Ok(HttpResponse::build(StatusCode::SWITCHING_PROTOCOLS)
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.connection_type(ConnectionType::Upgrade)
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.header(header::UPGRADE, "websocket")
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.header(header::TRANSFER_ENCODING, "chunked")
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.header(SEC_WEBSOCKET_ACCEPT, key.as_str())
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.take())
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}
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/// Maps `Payload` stream into stream of `ws::Message` items
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pub struct WsStream {
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rx: ReadAny,
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buf: BytesMut,
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closed: bool,
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error_sent: bool,
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}
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impl WsStream {
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pub fn new(payload: ReadAny) -> WsStream {
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WsStream { rx: payload,
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buf: BytesMut::new(),
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closed: false,
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error_sent: false }
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}
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}
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impl Stream for WsStream {
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type Item = Message;
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type Error = ();
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fn poll(&mut self) -> Poll<Option<Self::Item>, Self::Error> {
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let mut done = false;
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if !self.closed {
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loop {
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match self.rx.poll() {
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Ok(Async::Ready(Some(chunk))) => {
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self.buf.extend_from_slice(&chunk)
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}
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Ok(Async::Ready(None)) => {
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done = true;
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self.closed = true;
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break;
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}
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Ok(Async::NotReady) => break,
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Err(_) => {
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self.closed = true;
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break;
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}
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}
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}
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}
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loop {
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match Frame::parse(&mut self.buf) {
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Ok(Some(frame)) => {
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// trace!("WsFrame {}", frame);
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let (_finished, opcode, payload) = frame.unpack();
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match opcode {
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OpCode::Continue => continue,
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OpCode::Bad =>
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return Ok(Async::Ready(Some(Message::Error))),
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OpCode::Close => {
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self.closed = true;
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self.error_sent = true;
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return Ok(Async::Ready(Some(Message::Closed)))
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},
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OpCode::Ping =>
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return Ok(Async::Ready(Some(
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Message::Ping(
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String::from_utf8_lossy(payload.as_ref()).into())))),
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OpCode::Pong =>
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return Ok(Async::Ready(Some(
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Message::Pong(
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String::from_utf8_lossy(payload.as_ref()).into())))),
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OpCode::Binary =>
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return Ok(Async::Ready(Some(Message::Binary(payload)))),
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OpCode::Text => {
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let tmp = Vec::from(payload.as_ref());
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match String::from_utf8(tmp) {
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Ok(s) =>
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return Ok(Async::Ready(Some(Message::Text(s)))),
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Err(_) =>
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return Ok(Async::Ready(Some(Message::Error))),
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}
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}
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}
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}
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Ok(None) => {
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if done {
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return Ok(Async::Ready(None))
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} else if self.closed {
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if !self.error_sent {
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self.error_sent = true;
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return Ok(Async::Ready(Some(Message::Closed)))
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} else {
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return Ok(Async::Ready(None))
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}
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} else {
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return Ok(Async::NotReady)
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}
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},
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Err(_) => {
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self.closed = true;
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self.error_sent = true;
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return Ok(Async::Ready(Some(Message::Error)));
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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(test)]
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mod tests {
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use super::*;
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use std::str::FromStr;
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use http::{Method, HeaderMap, Version, Uri, header};
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#[test]
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fn test_handshake() {
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let req = HttpRequest::new(Method::POST, Uri::from_str("/").unwrap(),
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Version::HTTP_11, HeaderMap::new(), None);
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assert_eq!(WsHandshakeError::GetMethodRequired, handshake(&req).err().unwrap());
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, HeaderMap::new(), None);
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assert_eq!(WsHandshakeError::NoWebsocketUpgrade, handshake(&req).err().unwrap());
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let mut headers = HeaderMap::new();
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headers.insert(header::UPGRADE,
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header::HeaderValue::from_static("test"));
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, headers, None);
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assert_eq!(WsHandshakeError::NoWebsocketUpgrade, handshake(&req).err().unwrap());
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let mut headers = HeaderMap::new();
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headers.insert(header::UPGRADE,
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header::HeaderValue::from_static("websocket"));
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, headers, None);
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assert_eq!(WsHandshakeError::NoConnectionUpgrade, handshake(&req).err().unwrap());
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let mut headers = HeaderMap::new();
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headers.insert(header::UPGRADE,
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header::HeaderValue::from_static("websocket"));
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headers.insert(header::CONNECTION,
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header::HeaderValue::from_static("upgrade"));
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, headers, None);
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assert_eq!(WsHandshakeError::NoVersionHeader, handshake(&req).err().unwrap());
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let mut headers = HeaderMap::new();
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headers.insert(header::UPGRADE,
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header::HeaderValue::from_static("websocket"));
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headers.insert(header::CONNECTION,
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header::HeaderValue::from_static("upgrade"));
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headers.insert(SEC_WEBSOCKET_VERSION,
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header::HeaderValue::from_static("5"));
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, headers, None);
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assert_eq!(WsHandshakeError::UnsupportedVersion, handshake(&req).err().unwrap());
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let mut headers = HeaderMap::new();
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headers.insert(header::UPGRADE,
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header::HeaderValue::from_static("websocket"));
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headers.insert(header::CONNECTION,
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header::HeaderValue::from_static("upgrade"));
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headers.insert(SEC_WEBSOCKET_VERSION,
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header::HeaderValue::from_static("13"));
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, headers, None);
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assert_eq!(WsHandshakeError::BadWebsocketKey, handshake(&req).err().unwrap());
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let mut headers = HeaderMap::new();
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headers.insert(header::UPGRADE,
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header::HeaderValue::from_static("websocket"));
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headers.insert(header::CONNECTION,
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header::HeaderValue::from_static("upgrade"));
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headers.insert(SEC_WEBSOCKET_VERSION,
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header::HeaderValue::from_static("13"));
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headers.insert(SEC_WEBSOCKET_KEY,
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header::HeaderValue::from_static("13"));
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let req = HttpRequest::new(Method::GET, Uri::from_str("/").unwrap(),
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Version::HTTP_11, headers, None);
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assert_eq!(StatusCode::SWITCHING_PROTOCOLS,
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handshake(&req).unwrap().finish().unwrap().status());
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}
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}
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