Some documentation and QUIC updates
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@ -52,6 +52,7 @@ use the provided `xmpp-proxy.toml` configuration as-is.
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Edit `/etc/prosody/prosody.cfg.lua`, Add these to modules_enabled:
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```
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"net_proxy";
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"secure_interfaces";
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"s2s_outgoing_proxy";
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```
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Until prosody-modules is updated, use my new module [mod_s2s_outgoing_proxy.lua](https://www.moparisthebest.com/mod_s2s_outgoing_proxy.lua).
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@ -71,6 +72,9 @@ s2s_secure_auth = false
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-- xmpp-proxy outgoing is listening on this port, make all outgoing s2s connections directly to here
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s2s_outgoing_proxy = { "127.0.0.1", 15270 }
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-- trust connections coming from these IPs
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secure_interfaces = { "127.0.0.1", "::1" }
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-- handle PROXY protocol on these ports
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proxy_port_mappings = {
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[15222] = "c2s",
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@ -134,3 +138,8 @@ To build a reverse proxy only, but supporting all of STARTTLS/TLS/QUIC, run: `ca
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GNU/AGPLv3 - Check LICENSE.md for details
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Thanks [rxml](https://github.com/horazont/rxml) for afl-fuzz seeds
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#### todo
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1. sasl external for s2s, initiating and recieving
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2. better debug log output
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3. websocket incoming and outgoing, maybe even for s2s
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35
src/quic.rs
35
src/quic.rs
@ -15,7 +15,7 @@ pub async fn quic_connect(target: SocketAddr, server_name: &str, is_c2s: bool) -
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endpoint_builder.default_client_config(client_cfg);
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let (endpoint, _incoming) = endpoint_builder.bind(&bind_addr)?;
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// connect to server
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let quinn::NewConnection { connection, .. } = endpoint.connect(&target, server_name).unwrap().await?;
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let quinn::NewConnection { connection, .. } = endpoint.connect(&target, server_name)?.await?;
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debug!("[client] connected: addr={}", connection.remote_address());
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let (wrt, rd) = connection.open_bi().await?;
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@ -72,24 +72,27 @@ pub fn spawn_quic_listener(local_addr: SocketAddr, config: CloneableConfig, serv
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let mut endpoint_builder = Endpoint::builder();
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endpoint_builder.listen(server_config);
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let (_endpoint, mut incoming) = endpoint_builder.bind(&local_addr).die("cannot listen on port/interface");
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// accept a single connection
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tokio::spawn(async move {
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let incoming_conn = incoming.next().await.unwrap();
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let mut new_conn = incoming_conn.await.unwrap();
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let client_addr = new_conn.connection.remote_address();
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let config = config.clone();
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tokio::spawn(async move {
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println!("INFO: {} quic connected", client_addr);
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// when could this return None, do we quit?
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while let Some(incoming_conn) = incoming.next().await {
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let config = config.clone();
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tokio::spawn(async move {
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if let Ok(mut new_conn) = incoming_conn.await {
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let client_addr = new_conn.connection.remote_address();
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println!("INFO: {} quic connected", client_addr);
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while let Some(Ok((wrt, rd))) = new_conn.bi_streams.next().await {
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let config = config.clone();
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tokio::spawn(async move {
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if let Err(e) = shuffle_rd_wr(rd, wrt, config, local_addr, client_addr).await {
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eprintln!("ERROR: {} {}", client_addr, e);
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while let Some(Ok((wrt, rd))) = new_conn.bi_streams.next().await {
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let config = config.clone();
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tokio::spawn(async move {
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if let Err(e) = shuffle_rd_wr(rd, wrt, config, local_addr, client_addr).await {
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eprintln!("ERROR: {} {}", client_addr, e);
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}
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});
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}
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});
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}
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});
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}
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});
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}
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println!("INFO: quic listener shutting down, should never happen????");
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#[allow(unreachable_code)]
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Ok(())
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})
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