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port forward: closing the tunnel reaches channels parked on their socket
A channel whose far end neither reads nor writes has both relays parked on the socket, not on the inbound queue, so `close_all` dropping the queue's sender woke neither: the socket and both tasks lived on until the far end hung up. Both sides now hold a per-tunnel teardown signal that `run_channel` selects on beside its own cancel, and `close_all` sends it after clearing the map. Co-Authored-By: Claude Fable 5.1 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01EZ49AbZJYfm8NTp5yDPMab
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@@ -346,6 +346,9 @@ async fn relay_tunnel_to_socket<W: AsyncWrite + Unpin>(
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/// Runs both halves as independent tasks; whichever ends first cancels the
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/// other. Sends `close` once, after the last data, and only when the channel
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/// ended for a local reason — the peer's own `close` is never echoed.
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/// `teardown` is the tunnel closing under the channel: it cancels both halves
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/// even when they are parked on the socket, where dropping the inbound sender
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/// reaches neither.
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pub async fn run_channel<R, W>(
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id: i32,
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reader: R,
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@@ -356,6 +359,7 @@ pub async fn run_channel<R, W>(
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window: Arc<Mutex<RecvWindow>>,
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inbound: mpsc::UnboundedReceiver<Inbound>,
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sink: FrameSink,
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mut teardown: watch::Receiver<()>,
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) where
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R: AsyncRead + Unpin + Send + 'static,
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W: AsyncWrite + Unpin + Send + 'static,
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@@ -376,6 +380,10 @@ pub async fn run_channel<R, W>(
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let _ = cancel_tx.send(true);
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(r.unwrap_or(RelayEnd::Cancelled), to_tunnel.await.unwrap_or(RelayEnd::Cancelled))
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}
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_ = teardown.changed() => {
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let _ = cancel_tx.send(true);
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(to_tunnel.await.unwrap_or(RelayEnd::Cancelled), to_socket.await.unwrap_or(RelayEnd::Cancelled))
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}
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};
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let peer_closed = first == RelayEnd::PeerClosed || second == RelayEnd::PeerClosed;
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let tunnel_gone = first == RelayEnd::TunnelGone || second == RelayEnd::TunnelGone;
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@@ -463,6 +471,7 @@ mod tunnel {
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channels: Mutex::new(HashMap::new()),
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next_id: AtomicI32::new(1),
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reported: Default::default(),
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teardown: watch::channel(()).0,
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});
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let state = self.state.clone();
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// Publish before spawning: if the loop exits first and resets the
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@@ -502,6 +511,9 @@ mod tunnel {
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channels: Mutex<HashMap<i32, ChannelEntry>>,
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next_id: AtomicI32,
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reported: Mutex<HashMap<String, Instant>>,
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/// Sent once, by `close_all`, for the channels its `clear` cannot
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/// reach: one parked on its local socket is not on the inbound queue.
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teardown: watch::Sender<()>,
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}
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impl TunnelHandle {
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@@ -541,10 +553,11 @@ mod tunnel {
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let open = open_msg(id, host, port, CHANNEL_WINDOW);
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let (reader, writer) = socket.into_split();
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let sink = self.sink.clone();
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let teardown = self.teardown.subscribe();
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let handle = self.clone();
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tokio::spawn(async move {
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if sink.send_ordered(open).await.is_ok() {
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run_channel(id, reader, writer, prebuf, Vec::new(), credit, window, inbound_rx, sink).await;
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run_channel(id, reader, writer, prebuf, Vec::new(), credit, window, inbound_rx, sink, teardown).await;
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}
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handle.channels.lock().unwrap().remove(&id);
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});
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@@ -643,6 +656,7 @@ mod tunnel {
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fn close_all(&self) {
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self.channels.lock().unwrap().clear();
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self.teardown.send(()).ok();
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}
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#[cfg(test)]
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@@ -883,6 +897,7 @@ mod tests {
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credit: Arc<SendCredit>,
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window: Arc<Mutex<RecvWindow>>,
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local: tokio::io::DuplexStream,
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teardown: watch::Sender<()>,
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task: tokio::task::JoinHandle<()>,
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}
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@@ -897,10 +912,11 @@ mod tests {
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let credit = Arc::new(SendCredit::new(INITIAL_WINDOW));
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let window = Arc::new(Mutex::new(RecvWindow::new(CHANNEL_WINDOW)));
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let sink = FrameSink::Queued { data: data_tx, control: control_tx };
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let (teardown, teardown_rx) = watch::channel(());
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let task = tokio::spawn(run_channel(
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id, r, w, prebuf, initial_out, credit.clone(), window.clone(), inbound_rx, sink,
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id, r, w, prebuf, initial_out, credit.clone(), window.clone(), inbound_rx, sink, teardown_rx,
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));
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Harness { data_rx, control_rx, inbound_tx, credit, window, local, task }
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Harness { data_rx, control_rx, inbound_tx, credit, window, local, teardown, task }
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}
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// `PortForwardData.data` is generated as `bytes::Bytes` (hbb_common builds
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@@ -926,6 +942,24 @@ mod tests {
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}
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}
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#[test]
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fn teardown_ends_a_channel_parked_on_a_socket_nobody_reads() {
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rt().block_on(async {
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// Nothing reads the local side, so once the duplex buffer is full
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// the socket relay parks in write_all; nothing writes it either,
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// so the tunnel relay parks in read. Neither is on the inbound
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// queue, which stays open here: teardown alone must end them.
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let mut h = harness(1, vec![], vec![]);
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for _ in 0..17 {
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h.inbound_tx.send(Inbound::Data(Bytes::from(vec![0u8; MAX_FRAME]))).unwrap();
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}
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tokio::time::sleep(std::time::Duration::from_millis(50)).await;
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h.teardown.send(()).ok();
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let ended = tokio::time::timeout(std::time::Duration::from_millis(500), &mut h.task).await;
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assert!(ended.is_ok(), "channel task outlived the tunnel");
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});
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}
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#[test]
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fn local_bytes_become_data_frames_capped_at_max_frame() {
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rt().block_on(async {
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@@ -8,7 +8,7 @@ use hbb_common::{
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log,
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message_proto::*,
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timeout,
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tokio::{self, net::TcpStream, sync::mpsc},
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tokio::{self, net::TcpStream, sync::{mpsc, watch}},
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};
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use std::{
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collections::HashMap,
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@@ -35,6 +35,9 @@ pub struct PortForwardMux {
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channels: HashMap<i32, Entry>,
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tx: Sender,
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login_target: String,
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/// Sent once, by `close_all`, for the channels its `clear` cannot reach:
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/// one parked on its target socket is not on the inbound queue.
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teardown: watch::Sender<()>,
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}
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impl PortForwardMux {
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@@ -43,6 +46,7 @@ impl PortForwardMux {
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channels: HashMap::new(),
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tx,
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login_target,
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teardown: watch::channel(()).0,
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}
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}
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@@ -150,6 +154,7 @@ impl PortForwardMux {
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window,
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inbound_rx,
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FrameSink::Direct(self.tx.clone()),
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self.teardown.subscribe(),
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));
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}
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@@ -169,9 +174,11 @@ impl PortForwardMux {
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self.channels.get(&id).map(|e| e.window.lock().unwrap().remaining())
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}
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/// Dropping every sender ends every task; each drops its target socket.
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/// Every task ends and drops its target socket: the queue's senders go for
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/// a task on the queue, `teardown` reaches one parked on the socket.
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pub fn close_all(&mut self) {
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self.channels.clear();
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self.teardown.send(()).ok();
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}
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}
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@@ -186,6 +193,7 @@ async fn run_controlled_channel(
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window: Arc<Mutex<RecvWindow>>,
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mut inbound: mpsc::UnboundedReceiver<Inbound>,
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sink: FrameSink,
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teardown: watch::Receiver<()>,
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) {
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let mut pending: Vec<Bytes> = Vec::new();
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let mut pending_len = 0usize;
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@@ -235,7 +243,7 @@ async fn run_controlled_channel(
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return;
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}
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let (reader, writer) = socket.into_split();
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run_channel(id, reader, writer, Vec::new(), pending, credit, window, inbound, sink).await;
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run_channel(id, reader, writer, Vec::new(), pending, credit, window, inbound, sink, teardown).await;
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}
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/// The same words the raw pipe puts in its login error, so one problem reads
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