debug(media): add connection diagnostics for direct P2P drops
When direct P2P calls show 100% datagram drops, we need to know
WHY send_media() fails. This commit adds:
- Remote address + stable_id logging on A-role accept and D-role
dial success (dual_path.rs) — tells us which candidate won
- Remote address + max_datagram_size on engine transport init —
verifies datagrams are negotiated
- last_send_err in send heartbeat — captures the actual error
from send_datagram() failures
- QuinnTransport::remote_address() helper
Also fixes UI badge: was looking for wrong event name
("dual_path_race_won" → "path_negotiated").
Co-Authored-By: Claude Opus 4.6 (1M context) <noreply@anthropic.com>
This commit is contained in:
@@ -202,12 +202,20 @@ pub async fn race(
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tokio::select! {
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v4 = wzp_transport::accept(&ep_for_fut) => {
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let conn = v4.map_err(|e| anyhow::anyhow!("v4 accept: {e}"))?;
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tracing::info!("dual_path: A-role accepted on IPv4 endpoint");
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tracing::info!(
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remote = %conn.remote_address(),
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stable_id = conn.stable_id(),
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"dual_path: A-role accepted on IPv4 endpoint"
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);
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Ok(QuinnTransport::new(conn))
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}
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v6 = wzp_transport::accept(&v6_ep) => {
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let conn = v6.map_err(|e| anyhow::anyhow!("v6 accept: {e}"))?;
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tracing::info!("dual_path: A-role accepted on IPv6 endpoint");
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tracing::info!(
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remote = %conn.remote_address(),
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stable_id = conn.stable_id(),
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"dual_path: A-role accepted on IPv6 endpoint"
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);
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Ok(QuinnTransport::new(conn))
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}
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}
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@@ -216,6 +224,11 @@ pub async fn race(
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let conn = wzp_transport::accept(&ep_for_fut)
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.await
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.map_err(|e| anyhow::anyhow!("direct accept: {e}"))?;
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tracing::info!(
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remote = %conn.remote_address(),
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stable_id = conn.stable_id(),
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"dual_path: A-role accepted (v4-only)"
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);
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Ok(QuinnTransport::new(conn))
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}
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}
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@@ -316,6 +329,8 @@ pub async fn race(
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tracing::info!(
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%candidate,
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candidate_idx = idx,
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remote = %conn.remote_address(),
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stable_id = conn.stable_id(),
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"dual_path: direct dial succeeded on candidate"
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);
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// Abort the remaining in-flight
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@@ -33,6 +33,11 @@ impl QuinnTransport {
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&self.connection
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}
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/// Remote address of the peer on this connection.
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pub fn remote_address(&self) -> std::net::SocketAddr {
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self.connection.remote_address()
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}
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/// Send raw bytes as a QUIC datagram (no MediaPacket framing).
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pub fn send_raw_datagram(&self, data: &[u8]) -> Result<(), TransportError> {
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self.connection
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@@ -477,6 +477,7 @@ impl CallEngine {
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let send_fs = frames_sent.clone();
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let send_level = audio_level.clone();
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let send_drops = Arc::new(AtomicU64::new(0));
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let send_last_err: Arc<Mutex<Option<String>>> = Arc::new(Mutex::new(None));
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let send_quality = quality.clone();
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let send_tx_codec = tx_codec.clone();
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let send_t0 = call_t0;
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@@ -561,9 +562,14 @@ impl CallEngine {
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last_pkt_bytes = pkt.payload.len();
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if let Err(e) = send_t.send_media(pkt).await {
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send_drops.fetch_add(1, Ordering::Relaxed);
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if send_drops.load(Ordering::Relaxed) <= 3 {
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let count = send_drops.load(Ordering::Relaxed);
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if count <= 3 {
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tracing::warn!("send_media error (dropping packet): {e}");
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}
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// Latch last error for heartbeat
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if count == 1 {
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*send_last_err.lock().await = Some(format!("{e}"));
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}
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}
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}
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let before = send_fs.fetch_add(1, Ordering::Relaxed);
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@@ -605,6 +611,7 @@ impl CallEngine {
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// you capture/mic is broken; a live one with
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// no peer recv tells you outbound is being
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// dropped somewhere in the media path.
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let err_str = send_last_err.lock().await.clone();
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crate::emit_call_debug(
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&send_app,
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"media:send_heartbeat",
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@@ -614,6 +621,7 @@ impl CallEngine {
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"last_pkt_bytes": last_pkt_bytes,
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"short_reads": short_reads,
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"drops": drops,
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"last_send_err": err_str,
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}),
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);
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heartbeat = std::time::Instant::now();
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@@ -1105,7 +1113,12 @@ impl CallEngine {
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// Transport source: either pre-connected or fresh.
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let transport = if let Some(t) = pre_connected_transport {
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info!(is_direct_p2p, "using pre-connected transport");
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info!(
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is_direct_p2p,
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remote = %t.remote_address(),
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max_datagram = ?t.max_datagram_size(),
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"using pre-connected transport"
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);
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t
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} else {
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// Connect — reuse the signal endpoint if the direct-call path gave
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