11e12d1cc0
Former-commit-id: 191840bb8848691830762fdd1eeb67e0a3b036ab [formerly 8945a115947915b46a98028b4da732408ae87ea2] [formerly c55ece9b56df88c695b3cd9c7eca4c76462e779c [formerly 59db895e9138736928e346a12b2802dd36173a3c]] Former-commit-id: 62404ae9125e40bdb8d7c753283f913e8c527c2e [formerly 2d87ea4729096dff990afb94f91b62e805669608] Former-commit-id: 0b618ec5c5546780096d0a4418e96a45d47b9e63 Former-commit-id: 3ee30f721128eec0d10c8297bd0b13a1c4a8e36e Former-commit-id: a6866378f3dce77943b5c8901a73e3b9a82ff37f Former-commit-id: 7d267f5ccd2769061c7883c8b3087e523c719445 [formerly b9b9e2ebe518e1d20e4b9b15e40518d35952e802] Former-commit-id: b2cbd84fce1fe7e52ae2b3ec4bf195913bcfc7a8
518 lines
16 KiB
Rust
518 lines
16 KiB
Rust
use std::collections::HashSet;
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use std::future::Future;
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use std::ops::{Deref, Not};
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use std::pin::Pin;
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use std::sync::Arc;
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use std::time::Duration;
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use crate::{tcp, tls, LocalProtocol, LocalToRemote, WsClientConfig, WsServerConfig};
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use anyhow::Context;
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use fastwebsockets::{
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Frame, OpCode, Payload, WebSocket, WebSocketError, WebSocketRead, WebSocketWrite,
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};
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use futures_util::pin_mut;
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use hyper::header::{AUTHORIZATION, SEC_WEBSOCKET_VERSION, UPGRADE};
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use hyper::header::{CONNECTION, HOST, SEC_WEBSOCKET_KEY};
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use hyper::server::conn::Http;
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use hyper::service::service_fn;
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use hyper::upgrade::Upgraded;
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use hyper::{http, Body, Request, Response, StatusCode};
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use jsonwebtoken::{Algorithm, DecodingKey, EncodingKey, Header, TokenData, Validation};
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use once_cell::sync::Lazy;
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use tokio::io::{AsyncRead, AsyncReadExt, AsyncWrite, AsyncWriteExt, ReadHalf, WriteHalf};
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use tokio::net::{TcpListener, UdpSocket};
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use tokio::select;
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use tokio::sync::oneshot;
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use tokio::time::timeout;
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use crate::udp::MyUdpSocket;
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use serde::{Deserialize, Serialize};
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use tracing::log::debug;
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use tracing::{error, info, instrument, span, trace, warn, Instrument, Level, Span};
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use url::Host;
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use uuid::Uuid;
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struct SpawnExecutor;
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impl<Fut> hyper::rt::Executor<Fut> for SpawnExecutor
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where
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Fut: Future + Send + 'static,
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Fut::Output: Send + 'static,
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{
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fn execute(&self, fut: Fut) {
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tokio::task::spawn(fut);
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}
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}
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#[derive(Debug, Clone, Serialize, Deserialize)]
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struct JwtTunnelConfig {
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pub id: String,
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pub p: LocalProtocol,
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pub r: String,
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pub rp: u16,
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}
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static JWT_SECRET: &[u8; 15] = b"champignonfrais";
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static JWT_KEY: Lazy<(Header, EncodingKey)> = Lazy::new(|| {
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(
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Header::new(Algorithm::HS256),
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EncodingKey::from_secret(JWT_SECRET),
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)
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});
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static JWT_DECODE: Lazy<(Validation, DecodingKey)> = Lazy::new(|| {
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let mut validation = Validation::new(Algorithm::HS256);
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validation.required_spec_claims = HashSet::with_capacity(0);
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(validation, DecodingKey::from_secret(JWT_SECRET))
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});
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pub async fn connect(
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request_id: Uuid,
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server_cfg: &WsClientConfig,
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tunnel_cfg: &LocalToRemote,
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) -> anyhow::Result<WebSocket<Upgraded>> {
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let (host, port) = &server_cfg.remote_addr;
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let tcp_stream = if let Some(http_proxy) = &server_cfg.http_proxy {
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tcp::connect_with_http_proxy(
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http_proxy,
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host,
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*port,
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&tunnel_cfg.socket_so_mark,
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server_cfg.timeout_connect,
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)
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.await?
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} else {
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tcp::connect(
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host,
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*port,
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&tunnel_cfg.socket_so_mark,
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server_cfg.timeout_connect,
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)
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.await?
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};
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let data = JwtTunnelConfig {
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id: request_id.to_string(),
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p: match tunnel_cfg.local_protocol {
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LocalProtocol::Tcp => LocalProtocol::Tcp,
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LocalProtocol::Udp { .. } => tunnel_cfg.local_protocol,
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LocalProtocol::Stdio => LocalProtocol::Tcp,
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LocalProtocol::Socks5 => LocalProtocol::Tcp,
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},
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r: tunnel_cfg.remote.0.to_string(),
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rp: tunnel_cfg.remote.1,
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};
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let (alg, secret) = JWT_KEY.deref();
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let mut req = Request::builder()
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.method("GET")
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.uri(format!(
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"/{}/events?bearer={}",
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&server_cfg.http_upgrade_path_prefix,
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jsonwebtoken::encode(alg, &data, secret).unwrap_or_default(),
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))
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.header(HOST, server_cfg.remote_addr.0.to_string())
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.header(UPGRADE, "websocket")
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.header(CONNECTION, "upgrade")
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.header(SEC_WEBSOCKET_KEY, fastwebsockets::handshake::generate_key())
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.header(SEC_WEBSOCKET_VERSION, "13")
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.version(hyper::Version::HTTP_11);
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for (k, v) in &server_cfg.http_headers {
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req = req.header(k.clone(), v.clone());
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}
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if let Some(auth) = &server_cfg.http_upgrade_credentials {
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req = req.header(AUTHORIZATION, auth.clone());
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}
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let req = req.body(Body::empty()).with_context(|| {
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format!(
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"failed to build HTTP request to contact the server {:?}",
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server_cfg.remote_addr
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)
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})?;
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debug!("with HTTP upgrade request {:?}", req);
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let ws_handshake = match &server_cfg.tls {
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None => fastwebsockets::handshake::client(&SpawnExecutor, req, tcp_stream).await,
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Some(tls_cfg) => {
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let tls_stream = tls::connect(server_cfg, tls_cfg, tcp_stream).await?;
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fastwebsockets::handshake::client(&SpawnExecutor, req, tls_stream).await
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}
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};
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let (ws, _) = ws_handshake.with_context(|| {
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format!(
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"failed to do websocket handshake with the server {:?}",
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server_cfg.remote_addr
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)
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})?;
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Ok(ws)
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}
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pub async fn connect_to_server<R, W>(
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request_id: Uuid,
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server_config: &WsClientConfig,
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remote_cfg: &LocalToRemote,
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duplex_stream: (R, W),
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) -> anyhow::Result<()>
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where
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R: AsyncRead + Send + 'static,
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W: AsyncWrite + Send + 'static,
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{
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let mut ws = connect(request_id, server_config, remote_cfg).await?;
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ws.set_auto_apply_mask(server_config.websocket_mask_frame);
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let (ws_rx, ws_tx) = ws.split(tokio::io::split);
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let (local_rx, local_tx) = duplex_stream;
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let (close_tx, close_rx) = oneshot::channel::<()>();
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// Forward local tx to websocket tx
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let ping_frequency = server_config.websocket_ping_frequency;
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tokio::spawn(
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propagate_read(local_rx, ws_tx, close_tx, ping_frequency).instrument(Span::current()),
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);
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// Forward websocket rx to local rx
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let _ = propagate_write(local_tx, ws_rx, close_rx).await;
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Ok(())
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}
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async fn from_query(
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server_config: &WsServerConfig,
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query: &str,
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) -> anyhow::Result<(
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LocalProtocol,
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Host,
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u16,
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Pin<Box<dyn AsyncRead + Send>>,
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Pin<Box<dyn AsyncWrite + Send>>,
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)> {
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let jwt: TokenData<JwtTunnelConfig> = match query.split_once('=') {
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Some(("bearer", jwt)) => {
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let (validation, decode_key) = JWT_DECODE.deref();
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match jsonwebtoken::decode(jwt, decode_key, validation) {
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Ok(jwt) => jwt,
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err => {
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error!("error while decoding jwt for tunnel info {:?}", err);
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return Err(anyhow::anyhow!("Invalid upgrade request"));
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}
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}
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}
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_err => return Err(anyhow::anyhow!("Invalid upgrade request")),
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};
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Span::current().record("id", jwt.claims.id);
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Span::current().record("remote", format!("{}:{}", jwt.claims.r, jwt.claims.rp));
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if let Some(allowed_dests) = &server_config.restrict_to {
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let requested_dest = format!("{}:{}", jwt.claims.r, jwt.claims.rp);
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if allowed_dests
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.iter()
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.any(|dest| dest == &requested_dest)
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.not()
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{
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warn!(
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"Rejecting connection with not allowed destination: {}",
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requested_dest
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);
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return Err(anyhow::anyhow!("Invalid upgrade request"));
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}
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}
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match jwt.claims.p {
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LocalProtocol::Udp { .. } => {
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let host = Host::parse(&jwt.claims.r)?;
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let cnx = Arc::new(UdpSocket::bind("[::]:0").await?);
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cnx.connect((host.to_string(), jwt.claims.rp)).await?;
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Ok((
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LocalProtocol::Udp { timeout: None },
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host,
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jwt.claims.rp,
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Box::pin(MyUdpSocket::new(cnx.clone())),
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Box::pin(MyUdpSocket::new(cnx)),
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))
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}
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LocalProtocol::Tcp { .. } => {
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let host = Host::parse(&jwt.claims.r)?;
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let port = jwt.claims.rp;
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let (rx, tx) = tcp::connect(
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&host,
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port,
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&server_config.socket_so_mark,
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Duration::from_secs(10),
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)
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.await?
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.into_split();
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Ok((jwt.claims.p, host, port, Box::pin(rx), Box::pin(tx)))
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}
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_ => Err(anyhow::anyhow!("Invalid upgrade request")),
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}
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}
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async fn server_upgrade(
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server_config: Arc<WsServerConfig>,
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mut req: Request<Body>,
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) -> Result<Response<Body>, anyhow::Error> {
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if let Some(x) = req.headers().get("X-Forwarded-For") {
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info!("Request X-Forwarded-For: {:?}", x);
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Span::current().record("forwarded_for", x.to_str().unwrap_or_default());
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}
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if !req.uri().path().ends_with("/events") {
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warn!(
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"Rejecting connection with bad upgrade request: {}",
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req.uri()
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);
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return Ok(http::Response::builder()
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.status(StatusCode::BAD_REQUEST)
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.body(Body::from("Invalid upgrade request".to_string()))
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.unwrap_or_default());
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}
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let (protocol, dest, port, local_rx, local_tx) =
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match from_query(&server_config, req.uri().query().unwrap_or_default()).await {
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Ok(ret) => ret,
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Err(err) => {
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warn!(
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"Rejecting connection with bad upgrade request: {} {}",
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err,
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req.uri()
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);
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return Ok(http::Response::builder()
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.status(StatusCode::BAD_REQUEST)
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.body(Body::from(format!("Invalid upgrade request: {:?}", err)))
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.unwrap_or_default());
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}
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};
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info!("connected to {:?} {:?} {:?}", protocol, dest, port);
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let (response, fut) = match fastwebsockets::upgrade::upgrade(&mut req) {
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Ok(ret) => ret,
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Err(err) => {
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warn!(
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"Rejecting connection with bad upgrade request: {} {}",
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err,
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req.uri()
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);
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return Ok(http::Response::builder()
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.status(StatusCode::BAD_REQUEST)
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.body(Body::from(format!("Invalid upgrade request: {:?}", err)))
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.unwrap_or_default());
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}
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};
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tokio::spawn(
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async move {
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let (ws_rx, mut ws_tx) = match fut.await {
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Ok(ws) => ws.split(tokio::io::split),
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Err(err) => {
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error!("Error during http upgrade request: {:?}", err);
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return;
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}
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};
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let (close_tx, close_rx) = oneshot::channel::<()>();
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let ping_frequency = server_config
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.websocket_ping_frequency
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.unwrap_or(Duration::MAX);
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ws_tx.set_auto_apply_mask(server_config.websocket_mask_frame);
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tokio::task::spawn(
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propagate_write(local_tx, ws_rx, close_rx).instrument(Span::current()),
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);
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let _ = propagate_read(local_rx, ws_tx, close_tx, ping_frequency).await;
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}
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.instrument(Span::current()),
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);
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Ok(response)
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}
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#[instrument(name="tunnel", level="info", skip_all, fields(id=tracing::field::Empty, remote=tracing::field::Empty, peer=tracing::field::Empty, forwarded_for=tracing::field::Empty))]
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pub async fn run_server(server_config: Arc<WsServerConfig>) -> anyhow::Result<()> {
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info!(
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"Starting wstunnel server listening on {}",
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server_config.bind
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);
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let config = server_config.clone();
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let upgrade_fn = move |req: Request<Body>| server_upgrade(config.clone(), req);
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let listener = TcpListener::bind(&server_config.bind).await?;
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let tls_acceptor = if let Some(tls) = &server_config.tls {
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Some(tls::tls_acceptor(tls, Some(vec![b"http/1.1".to_vec()]))?)
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} else {
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None
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};
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loop {
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let (stream, peer_addr) = listener.accept().await?;
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let _ = stream.set_nodelay(true);
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let span = span!(
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Level::INFO,
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"tunnel",
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id = tracing::field::Empty,
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remote = tracing::field::Empty,
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peer = peer_addr.to_string(),
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forwarded_for = tracing::field::Empty
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);
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info!("Accepting connection");
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let upgrade_fn = upgrade_fn.clone();
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// TLS
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if let Some(tls_acceptor) = &tls_acceptor {
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let tls_acceptor = tls_acceptor.clone();
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let fut = async move {
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info!("Doing TLS handshake");
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let tls_stream = match tls_acceptor.accept(stream).await {
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Ok(tls_stream) => tls_stream,
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Err(err) => {
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error!("error while accepting TLS connection {}", err);
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return;
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}
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};
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let conn_fut = Http::new()
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.http1_only(true)
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.serve_connection(tls_stream, service_fn(upgrade_fn))
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.with_upgrades();
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if let Err(e) = conn_fut.await {
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error!("Error while upgrading cnx to websocket: {:?}", e);
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}
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}
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.instrument(span);
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tokio::spawn(fut);
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// Normal
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} else {
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let conn_fut = Http::new()
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.http1_only(true)
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.serve_connection(stream, service_fn(upgrade_fn))
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.with_upgrades();
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let fut = async move {
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if let Err(e) = conn_fut.await {
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error!("Error while upgrading cnx to weboscket: {:?}", e);
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}
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}
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.instrument(span);
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tokio::spawn(fut);
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};
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}
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}
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async fn propagate_read(
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local_rx: impl AsyncRead,
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mut ws_tx: WebSocketWrite<WriteHalf<Upgraded>>,
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mut close_tx: oneshot::Sender<()>,
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ping_frequency: Duration,
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) -> Result<(), WebSocketError> {
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let _guard = scopeguard::guard((), |_| {
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info!("Closing local tx ==> websocket tx tunnel");
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});
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let mut buffer = vec![0u8; 8 * 1024];
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pin_mut!(local_rx);
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loop {
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let read = select! {
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biased;
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read_len = local_rx.read(buffer.as_mut_slice()) => read_len,
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_ = close_tx.closed() => break,
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_ = timeout(ping_frequency, futures_util::future::pending::<()>()) => {
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debug!("sending ping to keep websocket connection alive");
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ws_tx.write_frame(Frame::new(true, OpCode::Ping, None, Payload::Borrowed(&[]))).await?;
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continue;
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}
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};
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let read_len = match read {
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Ok(read_len) if read_len > 0 => read_len,
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Ok(_) => break,
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Err(err) => {
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warn!(
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"error while reading incoming bytes from local tx tunnel {}",
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err
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);
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break;
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}
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};
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trace!("read {} bytes", read_len);
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match ws_tx
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.write_frame(Frame::binary(Payload::Borrowed(&buffer[..read_len])))
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.await
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{
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Ok(_) => {}
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Err(err) => {
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warn!("error while writing to websocket tx tunnel {}", err);
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break;
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}
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}
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if read_len == buffer.len() {
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buffer.resize(read_len * 2, 0);
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}
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}
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let _ = ws_tx.write_frame(Frame::close(1000, &[])).await;
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|
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Ok(())
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}
|
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|
|
async fn propagate_write(
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local_tx: impl AsyncWrite,
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mut ws_rx: WebSocketRead<ReadHalf<Upgraded>>,
|
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mut close_rx: oneshot::Receiver<()>,
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) -> Result<(), WebSocketError> {
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let _guard = scopeguard::guard((), |_| {
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info!("Closing local rx <== websocket rx tunnel");
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});
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let mut x = |x: Frame<'_>| {
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debug!("frame {:?} {:?}", x.opcode, x.payload);
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futures_util::future::ready(anyhow::Ok(()))
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};
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pin_mut!(local_tx);
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loop {
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let ret = select! {
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biased;
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ret = ws_rx.read_frame(&mut x) => ret,
|
|
|
|
_ = &mut close_rx => break,
|
|
};
|
|
|
|
let msg = match ret {
|
|
Ok(msg) => msg,
|
|
Err(err) => {
|
|
error!("error while reading from websocket rx {}", err);
|
|
break;
|
|
}
|
|
};
|
|
|
|
trace!("receive ws frame {:?} {:?}", msg.opcode, msg.payload);
|
|
let ret = match msg.opcode {
|
|
OpCode::Continuation | OpCode::Text | OpCode::Binary => {
|
|
local_tx.write_all(msg.payload.as_ref()).await
|
|
}
|
|
OpCode::Close => break,
|
|
OpCode::Ping => Ok(()),
|
|
OpCode::Pong => Ok(()),
|
|
};
|
|
|
|
match ret {
|
|
Ok(_) => {}
|
|
Err(err) => {
|
|
error!("error while writing bytes to local for rx tunnel {}", err);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
Ok(())
|
|
}
|