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//! Post-decrypt dispatch: event emission, acks and delivery receipts.
use super::*;
#[inline]
fn delivery_receipt_burst_warning(
result: &crate::socket::error::EncryptSendResult,
) -> Option<&crate::socket::error::EncryptSendError> {
match result {
Err(error) if !error.is_transport_unavailable() => Some(error),
Ok(()) | Err(_) => None,
}
}
impl Client {
/// Dispatches a successfully parsed message to the event bus and sends a delivery receipt.
#[cfg_attr(feature = "tracing", tracing::instrument(name = "wa.recv.dispatch", level = "debug", skip_all, fields(chat = %info.source.chat.observe(), sender = %info.source.sender.observe(), msg_id = %info.id)))]
pub(crate) async fn dispatch_parsed_message(
self: &Arc<Self>,
msg: wa::Message,
info: &Arc<MessageInfo>,
track_commit: bool,
) -> InboundCommitState {
use wacore::proto_helpers::MessageExt;
wacore::telemetry::recv("decrypted");
self.stats.record_message_received();
let mut info = Arc::clone(info);
if info.ephemeral_expiration.is_none()
&& let Some(exp) = msg.get_base_message().get_ephemeral_expiration()
{
Arc::make_mut(&mut info).ephemeral_expiration = Some(exp);
}
// Keep this ordered with dispatch; add-on messages can immediately
// reference the secret from the stanza just processed.
self.maybe_capture_inbound_msg_secret(&msg, &info).await;
let decrypted = self
.maybe_decrypt_secret_encrypted_message(&msg, &info)
.await;
// A decrypted comment surfaces as its inner body Message, which has no
// slot for the parent post key; carry the threading link on the info.
if decrypted.is_some()
&& let Some(target) = msg
.enc_comment_message
.as_option()
.and_then(|c| c.target_message_key.as_option().cloned())
{
Arc::make_mut(&mut info).comment_target = Some(target);
}
let dispatch_msg = Arc::new(decrypted.unwrap_or(msg));
// Newsletters never enter the commit pipeline: the plaintext stanza
// was already transport-acked at enqueue and the server never
// redelivers it, so a hook failure (or a batcher reset) would lose
// the message for good instead of trading on redelivery. They also
// reach here without the processing permit, so enqueueing could
// straddle the drain→live transition.
if info.source.chat.is_newsletter() {
self.core.event_bus.dispatch(Event::Messages(
wacore::types::events::MessageBatch::builder()
.messages(Arc::from([wacore::types::events::InboundMessage::builder(
)
.message(dispatch_msg)
.info(info)
.build()]))
.origin(wacore::types::events::BatchOrigin::Live)
.build(),
));
return InboundCommitState::Durable;
}
// Live traffic commits (and acks) as a batch of one; during the
// offline drain the message joins the accumulating commit batch and
// the event/ack fire only after its batch commits. Either way the
// hook (when registered) gates everything observable.
self.commit_or_batch_inbound(
wacore::types::events::InboundMessage::builder()
.message(dispatch_msg)
.info(info)
.build(),
track_commit,
)
.await
}
/// Acknowledge a received message so the server drops it from the offline
/// queue: a delivery receipt when applicable (incl. the `type="sender"`
/// receipt for own-account self-fanouts), else a transport ack. status is
/// acked by the `should_ack` gate, newsletters/empty ids need nothing here.
pub(crate) fn ack_received_message(self: &Arc<Self>, info: &Arc<MessageInfo>) {
if info.id.is_empty() || info.source.chat.is_newsletter() {
return;
}
// WA Web `sendAggregateReceipts`: for a DELIVERY where the chat is NOT
// a bot but the author IS a bot (a bot reply inside a group), it emits
// a bare `<ack class="message">` via `sendBotInvokeResponseAcks`, not a
// `<receipt>`. A 1:1 bot chat keeps the normal receipt (chat.isBot() →
// the branch's `v` is false). Our transport ack is that bare
// `<ack class="message">` (group form carries `participant`).
if info.source.is_bot_authored_non_bot_chat() {
self.spawn_message_ack(info);
return;
}
if Self::should_send_delivery_receipt(info) {
self.spawn_delivery_receipt(info);
} else if !info.source.chat.is_status_broadcast() {
self.spawn_message_ack(info);
}
}
/// Queue a delivery receipt, tracked so `disconnect()` can flush it (issue #571).
///
/// Live receipts feed a single persistent worker instead of one spawned
/// task each: the per-message cost drops to a channel slot plus a
/// [`crate::flush_scope::FlushGuard`], and `flush()` still waits because
/// the guard rides the queue until the send completes.
///
/// Offline-drained messages are buffered instead and flushed as aggregate
/// `<receipt>` stanzas when the offline sync completes, collapsing a
/// reconnect backlog of N receipts into ~1 stanza per (chat, author)
/// (WA Web `sendAggregateOfflineReceipts`). Live messages stay 1:1.
fn spawn_delivery_receipt(self: &Arc<Self>, info: &Arc<MessageInfo>) {
if info.is_offline && self.try_buffer_offline_receipt(info) {
return;
}
// A closed scope (disconnect in progress) drops the receipt, exactly
// like the previous spawn-per-receipt path.
let Some(guard) = self.outbound_flush.try_track() else {
return;
};
let tx = self
.delivery_receipt_queue
.get_or_init(|| self.start_delivery_receipt_worker());
// Only fails if the worker exited (client teardown); dropping the
// guard here keeps `flush()` honest.
let _ = tx.try_send((Arc::clone(info), guard));
}
/// How many queued receipts one burst may take; mirrors the ack worker's
/// [`MAX_ACK_BURST`](Client::MAX_ACK_BURST), where the tradeoff is measured.
const MAX_RECEIPT_BURST: usize = 4;
/// Worker task shared by every live delivery receipt. Holds only a `Weak`
/// so a dropped `Client` closes the channel and ends the task instead of
/// keeping the client alive.
fn start_delivery_receipt_worker(
self: &Arc<Self>,
) -> async_channel::Sender<(Arc<MessageInfo>, crate::flush_scope::FlushGuard)> {
let (tx, rx) =
async_channel::unbounded::<(Arc<MessageInfo>, crate::flush_scope::FlushGuard)>();
let client = Arc::downgrade(self);
self.runtime
.spawn(Box::pin(async move {
// Reuse the bounded control buffers for the worker's lifetime.
// Encoded payload allocations still move into `Bytes`; only
// the outer storage stays here.
let mut batch = Vec::with_capacity(Self::MAX_RECEIPT_BURST);
let mut frames = Vec::with_capacity(Self::MAX_RECEIPT_BURST);
let mut guards = Vec::with_capacity(Self::MAX_RECEIPT_BURST);
let mut results = Vec::with_capacity(Self::MAX_RECEIPT_BURST);
while let Ok(first) = rx.recv().await {
let Some(client) = client.upgrade() else {
break;
};
// Same reasoning as the ack worker: awaiting each receipt
// before reading the next means the noise sender never has
// two frames to coalesce. `try_recv` only, so nothing waits
// on work that has not arrived.
batch.push(first);
while batch.len() < Self::MAX_RECEIPT_BURST
&& let Ok(next) = rx.try_recv()
{
batch.push(next);
}
// No teardown gate here, unlike the ack worker: the
// single-receipt path never had one either (it relies on
// the socket reporting NotConnected), and adding one for
// symmetry would silently start dropping receipts that
// today still go out.
for (info, guard) in batch.drain(..) {
// Building the node is synchronous, so the burst is
// fully prepared before anything reaches the socket.
if let Some(frame) = client.prepare_delivery_receipt(&info) {
frames.push(frame);
guards.push(guard);
}
}
if frames.is_empty() {
continue;
}
// Spans the await *and* the result inspection: a receipt
// that stalls or fails in the transport has to show up
// inside the span, not after it closed. The per-receipt
// `wa.receipt.send_delivery` span stays on the
// single-receipt path, which this one does not use.
let frame_count = frames.len();
let send_and_report = async {
match client.send_raw_bytes_burst(&mut frames, &mut results).await {
Ok(()) => {
for result in results.drain(..) {
if let Some(error) = delivery_receipt_burst_warning(&result) {
log::warn!(target: "Client/Receipt", "Failed to send delivery receipt: {error:?}");
}
}
}
Err(e) => {
if !matches!(e, crate::client::ClientError::NotConnected) {
log::warn!(target: "Client/Receipt", "Failed to send delivery receipt burst: {e:?}");
}
}
}
};
#[cfg(feature = "tracing")]
{
use tracing::Instrument;
send_and_report
.instrument(tracing::debug_span!(
"wa.receipt.delivery_burst",
frames = frame_count
))
.await;
}
#[cfg(not(feature = "tracing"))]
{
let _ = frame_count;
send_and_report.await;
}
debug_assert!(
frames.is_empty(),
"send_raw_bytes_burst must always drain its input"
);
guards.clear();
}
}))
.detach();
tx
}
}
#[cfg(test)]
mod tests {
use super::delivery_receipt_burst_warning;
use crate::socket::error::EncryptSendError;
#[test]
fn receipt_burst_logging_is_quiet_for_success_and_reconnect_failures() {
let reconnect_failures = [
Ok(()),
Err(EncryptSendError::transport(anyhow::anyhow!(
"transport unavailable"
))),
Err(EncryptSendError::channel_closed()),
Err(EncryptSendError::poisoned()),
];
for result in &reconnect_failures {
assert!(
delivery_receipt_burst_warning(result).is_none(),
"success and reconnect-related failures must stay quiet: {result:?}"
);
}
}
#[test]
fn receipt_burst_logging_keeps_actionable_local_failures_visible() {
let actionable_failures = [
Err(EncryptSendError::crypto(anyhow::anyhow!(
"encryption failed"
))),
Err(EncryptSendError::framing(anyhow::anyhow!("framing failed"))),
Err(EncryptSendError::join(anyhow::anyhow!(
"sender join failed"
))),
];
for result in &actionable_failures {
assert!(
delivery_receipt_burst_warning(result).is_some(),
"local send failures must remain visible: {result:?}"
);
}
}
}