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aion_server/stream/
socket.rs

1//! WebSocket forward loop + lag handling.
2
3use std::num::NonZeroUsize;
4
5use aion_core::{Event, WorkflowId};
6use aion_proto::SubscriptionRequest;
7use aion_proto::{WireError, WireErrorCode, encode_streamed_event};
8use axum::extract::ws::{CloseFrame, Message, WebSocket, close_code};
9use futures::{SinkExt, StreamExt};
10use tokio::sync::{mpsc, oneshot};
11
12use crate::config::EVENT_BROADCAST_CAPACITY_REQUIRED;
13use crate::error::ServerError;
14use crate::namespace::CallerIdentity;
15use crate::state::ServerState;
16use crate::stream::namespace_filter::{GateVerdict, NamespaceEventGate};
17use crate::stream::selector::SubscriptionSelector;
18use crate::stream::subscribe::{EventSubscription, subscribe_events};
19
20/// Encoded event frame queued for a WebSocket connection.
21pub type EncodedFrame = String;
22
23/// `error_type` discriminator for the per-workflow contiguity tripwire: a
24/// delivered-stream sequence gap or regression that should be unreachable
25/// under the splice invariants, surfaced loudly instead of delivering a
26/// gapped stream.
27pub const SEQUENCE_CONTIGUITY_VIOLATION: &str = "SequenceContiguityViolation";
28
29/// Authorize a wire subscription request and forward it on an accepted socket.
30///
31/// The per-connection buffer bound and the namespace-gate verdict-cache bound
32/// are read from runtime config, not defaulted in the transport loop.
33///
34/// A subscription rejected before streaming (namespace authorization failure,
35/// per-workflow target failure, or resume-cursor validation failure) is never
36/// a silent drop: the rejection is sent to the client as one terminal
37/// `{"error": <WireError>}` frame followed by a close frame, so SDKs can
38/// branch on the stable code instead of reconnecting against a deterministic
39/// denial.
40///
41/// # Errors
42///
43/// Returns [`ServerError`] when namespace authorization, engine subscription,
44/// frame serialization, or bounded-buffer forwarding fails.
45pub async fn handle_subscription_socket(
46    mut socket: WebSocket,
47    state: &ServerState,
48    caller: &CallerIdentity,
49    request: &SubscriptionRequest,
50) -> Result<(), ServerError> {
51    let subscription = match subscribe_events(state.namespace_guard(), caller, request).await {
52        Ok(subscription) => subscription,
53        Err(error) => {
54            send_wire_error(&mut socket, &error.to_wire_error()).await?;
55            return Err(error);
56        }
57    };
58    // The gate's per-workflow verdict cache is bounded by the configured
59    // broadcast capacity: the engine-global channel retains at most that many
60    // events, so any burst this connection can observe without lagging out
61    // references at most that many distinct workflows. Startup validation
62    // requires the value, so absence here is a wiring bug reported loudly.
63    let Some(gate_capacity) = state
64        .runtime_config()
65        .websocket
66        .event_broadcast_capacity
67        .and_then(NonZeroUsize::new)
68    else {
69        let error = ServerError::Config {
70            message: EVENT_BROADCAST_CAPACITY_REQUIRED.to_owned(),
71        };
72        send_wire_error(&mut socket, &error.to_wire_error()).await?;
73        return Err(error);
74    };
75    // The broadcast channel is engine-global with no namespace dimension, so
76    // every delivered event passes the namespace gate before encoding. The
77    // guard-verified per-workflow target is pre-seeded as allowed.
78    let mut gate = NamespaceEventGate::new(
79        state.namespace_guard().resolver().clone(),
80        subscription.namespace.clone(),
81        gate_capacity,
82    );
83    if let Some(target) = &subscription.workflow_target {
84        gate.allow(target.clone());
85    }
86    let outbound_buffer_bound = state.runtime_config().websocket.outbound_buffer_bound;
87    forward_subscription(socket, subscription, gate, outbound_buffer_bound).await
88}
89
90/// Forward a previously authorized engine subscription to a WebSocket.
91///
92/// The reader task is aborted on every exit path — success, terminal error
93/// frame, and frame-encoding failure alike — so it can never linger holding a
94/// broadcast receiver after the socket loop ends.
95///
96/// # Errors
97///
98/// Returns [`ServerError`] when the stream ends with a terminal error frame
99/// (lag, gate failure, encoding failure) or a wire frame cannot be encoded.
100pub async fn forward_subscription(
101    socket: WebSocket,
102    subscription: EventSubscription,
103    gate: NamespaceEventGate,
104    outbound_buffer_bound: usize,
105) -> Result<(), ServerError> {
106    let EncodedEventStream {
107        mut frames,
108        lagged,
109        reader_done,
110    } = spawn_encoded_event_stream(subscription, gate, outbound_buffer_bound)?;
111    let (mut socket_tx, mut socket_rx) = socket.split();
112    let result = drive_socket(&mut socket_tx, &mut socket_rx, &mut frames, lagged).await;
113    // Abort unconditionally, before any error propagation, so the reader can
114    // never outlive the connection holding a broadcast receiver.
115    reader_done.abort();
116    result
117}
118
119/// Drive one subscription socket: forward frames, watch for client close, and
120/// deliver the terminal error frame deterministically.
121///
122/// The reader task upholds two ordering guarantees this loop relies on:
123/// every frame is queued into the bounded channel *before* the terminal
124/// oneshot fires, and the oneshot fires *before* the frame sender is dropped.
125/// Whichever `select!` branch wins a race between "frames closed" and
126/// "terminal error fired", the client therefore observes the same sequence:
127/// all queued event frames, then exactly one terminal error frame, then close.
128async fn drive_socket<Tx, Rx>(
129    socket_tx: &mut Tx,
130    socket_rx: &mut Rx,
131    frames: &mut mpsc::Receiver<EncodedFrame>,
132    lagged: oneshot::Receiver<WireError>,
133) -> Result<(), ServerError>
134where
135    Tx: futures::Sink<Message> + Unpin,
136    <Tx as futures::Sink<Message>>::Error: std::fmt::Debug,
137    Rx: futures::Stream<Item = Result<Message, axum::Error>> + Unpin,
138{
139    let mut lagged = lagged;
140    let mut lag_closed = false;
141    loop {
142        tokio::select! {
143            client_message = socket_rx.next() => {
144                match client_message {
145                    Some(Ok(Message::Close(_))) | None => return Ok(()),
146                    Some(Ok(message)) => drop(message),
147                    Some(Err(error)) => {
148                        drop(error);
149                        return Ok(());
150                    }
151                }
152            }
153            lag = &mut lagged, if !lag_closed => {
154                match lag {
155                    Ok(error) => {
156                        // The reader stopped after queueing everything that
157                        // will ever exist: deliver the quiescent backlog, then
158                        // the terminal error frame — buffered events are never
159                        // dropped because the lag branch won the race.
160                        return drain_then_terminal(socket_tx, frames, error).await;
161                    }
162                    Err(_closed) => {
163                        lag_closed = true;
164                    }
165                }
166            }
167            frame = frames.recv() => {
168                let Some(frame) = frame else {
169                    // The reader fires the terminal oneshot strictly before
170                    // dropping the frame sender, so if a terminal error raced
171                    // this branch it is observable now — the client must not
172                    // get an abrupt close instead of its error frame.
173                    if !lag_closed
174                        && let Ok(error) = lagged.try_recv()
175                    {
176                        return deliver_terminal(socket_tx, error).await;
177                    }
178                    // Graceful subscription end (per-workflow terminal event
179                    // delivered, or the engine stream ended cleanly): finish
180                    // the WebSocket close handshake with a normal-closure
181                    // (1000) frame instead of dropping the socket — every SDK
182                    // treats close-1000 as "stream complete" and anything
183                    // else as a transient drop it would reconnect against.
184                    return send_normal_close(socket_tx).await;
185                };
186                if socket_tx.send(Message::Text(frame.into())).await.is_err() {
187                    return Ok(());
188                }
189            }
190        }
191    }
192}
193
194/// Deliver the reader's already-queued frames, then the terminal error frame.
195///
196/// Called only after the terminal oneshot fired: the reader queues frames and
197/// fires the oneshot from one task in program order, so by the time the value
198/// is observed the channel holds every frame that will ever be sent and
199/// `try_recv` drains it completely.
200async fn drain_then_terminal<Tx>(
201    socket_tx: &mut Tx,
202    frames: &mut mpsc::Receiver<EncodedFrame>,
203    error: WireError,
204) -> Result<(), ServerError>
205where
206    Tx: futures::Sink<Message> + Unpin,
207    <Tx as futures::Sink<Message>>::Error: std::fmt::Debug,
208{
209    while let Ok(frame) = frames.try_recv() {
210        if socket_tx.send(Message::Text(frame.into())).await.is_err() {
211            // The client is gone; there is no one left to tell.
212            return Ok(());
213        }
214    }
215    deliver_terminal(socket_tx, error).await
216}
217
218/// Reason carried by the graceful-end close-1000 frame.
219const SUBSCRIPTION_COMPLETE_REASON: &str = "subscription complete";
220
221/// Finish a graceful subscription end with a WebSocket close-1000 frame.
222///
223/// A send failure means the client is already gone, which is still a clean
224/// end — there is no one left to close against.
225async fn send_normal_close<Tx>(socket_tx: &mut Tx) -> Result<(), ServerError>
226where
227    Tx: futures::Sink<Message> + Unpin,
228    <Tx as futures::Sink<Message>>::Error: std::fmt::Debug,
229{
230    let close = CloseFrame {
231        code: close_code::NORMAL,
232        reason: SUBSCRIPTION_COMPLETE_REASON.into(),
233    };
234    let close_result = socket_tx.send(Message::Close(Some(close))).await;
235    drop(close_result);
236    Ok(())
237}
238
239/// Send the terminal error frame + close, then surface the failure typed.
240async fn deliver_terminal<Tx>(socket_tx: &mut Tx, error: WireError) -> Result<(), ServerError>
241where
242    Tx: futures::Sink<Message> + Unpin,
243    <Tx as futures::Sink<Message>>::Error: std::fmt::Debug,
244{
245    send_wire_error(socket_tx, &error).await?;
246    Err(ServerError::Wire { wire: error })
247}
248
249/// Send one terminal WebSocket error frame followed by a close frame.
250///
251/// Every WebSocket error frame is the standardized wrapper object
252/// `{"error": <WireError as JSON>}` — the shape every SDK detects as a
253/// terminal stream error — never a bare `WireError`.
254pub(crate) async fn send_wire_error<S>(
255    socket_tx: &mut S,
256    error: &WireError,
257) -> Result<(), ServerError>
258where
259    S: futures::Sink<Message> + Unpin,
260    <S as futures::Sink<Message>>::Error: std::fmt::Debug,
261{
262    let frame = serde_json::json!({ "error": error });
263    let payload = serde_json::to_string(&frame).map_err(|source| ServerError::Wire {
264        wire: WireError::backend(format!("failed to serialize stream error: {source}")),
265    })?;
266    if socket_tx.send(Message::Text(payload.into())).await.is_err() {
267        return Ok(());
268    }
269    let close = CloseFrame {
270        code: close_code::ERROR,
271        reason: error.code.as_str().into(),
272    };
273    let close_result = socket_tx.send(Message::Close(Some(close))).await;
274    drop(close_result);
275    Ok(())
276}
277
278/// Bounded encoded stream built from an engine subscription.
279pub struct EncodedEventStream {
280    /// Frames ready to write to a socket.
281    pub frames: mpsc::Receiver<EncodedFrame>,
282    /// Receives a typed terminal error if the bounded frame queue fills, an
283    /// engine-side lag item arrives, encoding fails, the namespace gate's
284    /// ownership source fails, or the per-workflow contiguity tripwire fires.
285    pub lagged: oneshot::Receiver<WireError>,
286    /// Reader task owning the upstream engine stream.
287    pub reader_done: tokio::task::JoinHandle<()>,
288}
289
290/// Spawn the non-blocking engine-reader side of a WebSocket subscription.
291///
292/// Replay frames (the resume history slice) are queued with awaiting sends so
293/// a replay longer than the per-connection buffer is delivered completely —
294/// replay can never be silently dropped or spuriously lagged. The live tail
295/// keeps `try_send`: the reader never awaits socket capacity for live events,
296/// so a slow consumer lags out (one terminal frame) instead of back-pressuring
297/// the engine event tail.
298///
299/// Every event — replay and live, all subscription kinds — passes the
300/// namespace gate and the subscription selector before its frame is encoded,
301/// and per-workflow streams carry a delivered-sequence contiguity tripwire.
302///
303/// # Errors
304///
305/// Returns `ServerError::Config` if `outbound_buffer_bound` is zero.
306pub fn spawn_encoded_event_stream(
307    subscription: EventSubscription,
308    gate: NamespaceEventGate,
309    outbound_buffer_bound: usize,
310) -> Result<EncodedEventStream, ServerError> {
311    if outbound_buffer_bound == 0 {
312        return Err(ServerError::Config {
313            message: "websocket.outbound_buffer_bound must be greater than zero".to_owned(),
314        });
315    }
316
317    let EventSubscription {
318        namespace,
319        workflow_target,
320        replay,
321        events,
322        selector,
323        filter: _,
324    } = subscription;
325    let (frames_tx, frames) = mpsc::channel(outbound_buffer_bound);
326    let (lag_tx, lagged) = oneshot::channel();
327    let reader = SubscriptionReader {
328        namespace,
329        workflow_target,
330        gate,
331        selector,
332        contiguity: ContiguityGuard::new(),
333        error_tx: Some(lag_tx),
334        frames_tx,
335    };
336    let reader_done = tokio::spawn(reader.run(replay, events));
337
338    Ok(EncodedEventStream {
339        frames,
340        lagged,
341        reader_done,
342    })
343}
344
345/// Queueing discipline for one frame.
346enum QueueMode {
347    /// Await channel capacity (replay delivery).
348    Awaiting,
349    /// `try_send`; a full buffer is a terminal lag (live delivery).
350    Bounded,
351}
352
353/// Outcome of queuing one frame from the reader task.
354enum FrameOutcome {
355    /// Frame queued for delivery.
356    Delivered,
357    /// Event filtered out (namespace gate or subscription selector).
358    Filtered,
359    /// Receiver gone: stop reading.
360    Stop,
361}
362
363/// Whether the reader continues after processing one event.
364enum ReaderStep {
365    /// Keep reading.
366    Continue,
367    /// Stop: terminal event delivered, terminal error reported, or the
368    /// receiver is gone.
369    Stop,
370}
371
372/// Reader-task state: gates, selects, encodes, and queues events.
373struct SubscriptionReader {
374    namespace: String,
375    workflow_target: Option<WorkflowId>,
376    gate: NamespaceEventGate,
377    selector: SubscriptionSelector,
378    contiguity: ContiguityGuard,
379    error_tx: Option<oneshot::Sender<WireError>>,
380    frames_tx: mpsc::Sender<EncodedFrame>,
381}
382
383impl SubscriptionReader {
384    async fn run(
385        mut self,
386        replay: Vec<Event>,
387        mut events: futures::stream::BoxStream<'static, Result<Event, aion::EventStreamLagged>>,
388    ) {
389        // Replay phase: awaiting sends, gap-free by construction.
390        for event in replay {
391            if matches!(
392                self.process(&event, QueueMode::Awaiting).await,
393                ReaderStep::Stop
394            ) {
395                return;
396            }
397        }
398
399        // Live phase: try_send lag semantics.
400        while let Some(item) = events.next().await {
401            // An engine-side lag item routes into the existing terminal
402            // lagged path: one error frame, then close.
403            let Ok(event) = item else {
404                self.send_terminal(ServerError::lagged_stream().to_wire_error());
405                return;
406            };
407            if matches!(
408                self.process(&event, QueueMode::Bounded).await,
409                ReaderStep::Stop
410            ) {
411                return;
412            }
413        }
414    }
415
416    async fn process(&mut self, event: &Event, mode: QueueMode) -> ReaderStep {
417        let is_target = self
418            .workflow_target
419            .as_ref()
420            .is_some_and(|target| event.workflow_id() == target);
421        // FINDING L2 tripwire: never deliver a gapped per-workflow stream —
422        // a contiguity violation is a loud typed terminal error instead.
423        if is_target && let Err(error) = self.contiguity.check(event) {
424            self.send_terminal(error);
425            return ReaderStep::Stop;
426        }
427        match self.queue(event, mode).await {
428            Ok(FrameOutcome::Delivered) => {
429                if is_target {
430                    self.contiguity.record_delivered(event);
431                    if is_terminal_workflow_event(event) {
432                        return ReaderStep::Stop;
433                    }
434                }
435                ReaderStep::Continue
436            }
437            Ok(FrameOutcome::Filtered) => ReaderStep::Continue,
438            Ok(FrameOutcome::Stop) | Err(()) => ReaderStep::Stop,
439        }
440    }
441
442    /// Gate, select, encode, and queue one event. `Err(())` means a terminal
443    /// error frame was already reported through the oneshot.
444    async fn queue(&mut self, event: &Event, mode: QueueMode) -> Result<FrameOutcome, ()> {
445        let workflow_type = match self.gate.admit(event).await {
446            Ok(GateVerdict::Permitted { workflow_type }) => workflow_type,
447            // Foreign/unknown workflow on the engine-global broadcast: never
448            // this tenant's frame. Filtered out before encoding.
449            Ok(GateVerdict::Filtered) => return Ok(FrameOutcome::Filtered),
450            Err(error) => {
451                self.send_terminal(error.to_wire_error());
452                return Err(());
453            }
454        };
455        // Server-side selector enforcement: workflow-type and status
456        // selectors run on the same cached read that proved ownership.
457        if !self.selector.matches(event, workflow_type.as_deref()) {
458            return Ok(FrameOutcome::Filtered);
459        }
460        let frame = match encode_frame(&self.namespace, event) {
461            Ok(frame) => frame,
462            Err(error) => {
463                self.send_terminal(error);
464                return Err(());
465            }
466        };
467        match mode {
468            QueueMode::Awaiting => {
469                if self.frames_tx.send(frame).await.is_err() {
470                    return Ok(FrameOutcome::Stop);
471                }
472                Ok(FrameOutcome::Delivered)
473            }
474            QueueMode::Bounded => match self.frames_tx.try_send(frame) {
475                Ok(()) => Ok(FrameOutcome::Delivered),
476                Err(mpsc::error::TrySendError::Full(frame)) => {
477                    drop(frame);
478                    self.send_terminal(ServerError::lagged_stream().to_wire_error());
479                    Err(())
480                }
481                Err(mpsc::error::TrySendError::Closed(frame)) => {
482                    drop(frame);
483                    Ok(FrameOutcome::Stop)
484                }
485            },
486        }
487    }
488
489    fn send_terminal(&mut self, error: WireError) {
490        if let Some(sender) = self.error_tx.take() {
491            let send_result = sender.send(error);
492            drop(send_result);
493        }
494    }
495}
496
497/// Per-workflow delivered-sequence tripwire.
498///
499/// Per-workflow subscriptions contract contiguous `seq` delivery; under the
500/// splice invariants (single writer, publish-after-commit,
501/// subscribe-then-snapshot) a gap is unreachable, so observing one means an
502/// invariant was violated upstream. The guard converts that into a loud typed
503/// terminal frame instead of a silently gapped stream; the client's standard
504/// lagged recovery (reconnect with `resume_from_seq = last delivered + 1`)
505/// re-reads durable history and is correct for gaps and regressions alike.
506struct ContiguityGuard {
507    last_delivered: Option<u64>,
508}
509
510impl ContiguityGuard {
511    const fn new() -> Self {
512        Self {
513            last_delivered: None,
514        }
515    }
516
517    /// Validate the next about-to-be-delivered target event. On `Err` the
518    /// event must not be delivered.
519    fn check(&self, event: &Event) -> Result<(), WireError> {
520        let Some(last) = self.last_delivered else {
521            // The first delivered event establishes the baseline (resume
522            // cursors and mid-history live attaches both start anywhere).
523            return Ok(());
524        };
525        let expected = last.saturating_add(1);
526        let observed = event.seq();
527        if observed == expected {
528            return Ok(());
529        }
530        Err(WireError::new_with_type(
531            WireErrorCode::Lagged,
532            SEQUENCE_CONTIGUITY_VIOLATION,
533            format!(
534                "per-workflow stream contiguity violated: expected seq {expected}, observed seq \
535                 {observed}; reconnect with resume_from_seq = {expected} to resume gap-free from \
536                 recorded history"
537            ),
538        ))
539    }
540
541    fn record_delivered(&mut self, event: &Event) {
542        self.last_delivered = Some(event.seq());
543    }
544}
545
546fn encode_frame(namespace: &str, event: &Event) -> Result<EncodedFrame, WireError> {
547    let frame = encode_streamed_event(namespace.to_owned(), None, event)?;
548    serde_json::to_string(&frame).map_err(|source| {
549        WireError::backend(format!(
550            "failed to serialize streamed event frame: {source}"
551        ))
552    })
553}
554
555fn is_terminal_workflow_event(event: &Event) -> bool {
556    matches!(
557        event,
558        Event::WorkflowCompleted { .. }
559            | Event::WorkflowFailed { .. }
560            | Event::WorkflowCancelled { .. }
561            | Event::WorkflowTimedOut { .. }
562            | Event::WorkflowContinuedAsNew { .. }
563    )
564}
565
566#[cfg(test)]
567mod tests {
568    use std::num::NonZeroUsize;
569    use std::time::Duration;
570
571    use aion::EventFilter;
572    use aion_core::{Event, EventEnvelope, Payload, WorkflowId, WorkflowStatus};
573    use aion_proto::{WireError, WireErrorCode};
574    use axum::extract::ws::Message;
575    use futures::{StreamExt, stream, stream::BoxStream};
576    use serde_json::json;
577
578    use super::{SEQUENCE_CONTIGUITY_VIOLATION, drive_socket, spawn_encoded_event_stream};
579    use crate::config::NamespaceMode;
580    use crate::error::ServerError;
581    use crate::namespace::{NamespaceResolver, StaticScheduleNamespaces, StaticWorkflowNamespaces};
582    use crate::stream::namespace_filter::NamespaceEventGate;
583    use crate::stream::selector::SubscriptionSelector;
584    use crate::stream::subscribe::EventSubscription;
585
586    fn capacity(value: usize) -> Result<NonZeroUsize, Box<dyn std::error::Error>> {
587        NonZeroUsize::new(value).ok_or_else(|| "capacity must be non-zero".into())
588    }
589
590    fn envelope(seq: u64, workflow_id: &WorkflowId) -> EventEnvelope {
591        EventEnvelope {
592            seq,
593            recorded_at: chrono::Utc::now(),
594            workflow_id: workflow_id.clone(),
595        }
596    }
597
598    fn payload(label: &str) -> Result<Payload, aion_core::PayloadError> {
599        Payload::from_json(&json!({ "label": label }))
600    }
601
602    fn started_with_type(
603        seq: u64,
604        workflow_id: &WorkflowId,
605        workflow_type: &str,
606    ) -> Result<aion_core::Event, aion_core::PayloadError> {
607        Ok(aion_core::Event::WorkflowStarted {
608            envelope: envelope(seq, workflow_id),
609            workflow_type: workflow_type.to_owned(),
610            input: payload("input")?,
611            run_id: aion_core::RunId::new(uuid::Uuid::from_u128(1)),
612            parent_run_id: None,
613            parent_workflow_id: None,
614            package_version: aion_core::PackageVersion::new("a".repeat(64)),
615        })
616    }
617
618    fn started(
619        seq: u64,
620        workflow_id: &WorkflowId,
621    ) -> Result<aion_core::Event, aion_core::PayloadError> {
622        started_with_type(seq, workflow_id, "checkout")
623    }
624
625    fn signal(
626        seq: u64,
627        workflow_id: &WorkflowId,
628    ) -> Result<aion_core::Event, aion_core::PayloadError> {
629        Ok(aion_core::Event::SignalReceived {
630            envelope: envelope(seq, workflow_id),
631            name: format!("signal-{seq}"),
632            payload: payload("signal")?,
633        })
634    }
635
636    fn completed(
637        seq: u64,
638        workflow_id: &WorkflowId,
639    ) -> Result<aion_core::Event, aion_core::PayloadError> {
640        Ok(aion_core::Event::WorkflowCompleted {
641            envelope: envelope(seq, workflow_id),
642            result: payload("result")?,
643        })
644    }
645
646    fn tenant_a_gate(
647        ownership: StaticWorkflowNamespaces,
648    ) -> Result<NamespaceEventGate, Box<dyn std::error::Error>> {
649        let resolver = NamespaceResolver::authorization_only(
650            NamespaceMode::SharedEngine,
651            ownership,
652            StaticScheduleNamespaces::default(),
653        );
654        Ok(NamespaceEventGate::new(
655            resolver,
656            "tenant-a".to_owned(),
657            capacity(16)?,
658        ))
659    }
660
661    fn subscription(
662        workflow_target: Option<WorkflowId>,
663        replay: Vec<Event>,
664        events: BoxStream<'static, Result<Event, aion::EventStreamLagged>>,
665    ) -> EventSubscription {
666        selected_subscription(
667            workflow_target,
668            replay,
669            events,
670            SubscriptionSelector::unrestricted(),
671        )
672    }
673
674    fn selected_subscription(
675        workflow_target: Option<WorkflowId>,
676        replay: Vec<Event>,
677        events: BoxStream<'static, Result<Event, aion::EventStreamLagged>>,
678        selector: SubscriptionSelector,
679    ) -> EventSubscription {
680        EventSubscription {
681            namespace: "tenant-a".to_owned(),
682            filter: EventFilter::default(),
683            selector,
684            workflow_target,
685            replay,
686            events,
687        }
688    }
689
690    fn owned_gate(
691        workflow_ids: &[&WorkflowId],
692    ) -> Result<NamespaceEventGate, Box<dyn std::error::Error>> {
693        let ownership = StaticWorkflowNamespaces::default();
694        for workflow_id in workflow_ids {
695            ownership.record((*workflow_id).clone(), "tenant-a")?;
696        }
697        tenant_a_gate(ownership)
698    }
699
700    async fn next_frame(
701        receiver: &mut tokio::sync::mpsc::Receiver<String>,
702    ) -> Result<Option<String>, tokio::time::error::Elapsed> {
703        tokio::time::timeout(Duration::from_secs(1), receiver.recv()).await
704    }
705
706    #[tokio::test]
707    async fn per_workflow_stream_ends_after_terminal_event()
708    -> Result<(), Box<dyn std::error::Error>> {
709        let workflow_id = WorkflowId::new_v4();
710        let events = stream::iter([
711            Ok(started(1, &workflow_id)?),
712            Ok(completed(2, &workflow_id)?),
713            Ok(started(3, &workflow_id)?),
714        ])
715        .boxed();
716        let mut stream = spawn_encoded_event_stream(
717            subscription(Some(workflow_id.clone()), Vec::new(), events),
718            owned_gate(&[&workflow_id])?,
719            4,
720        )?;
721
722        let first = next_frame(&mut stream.frames).await?;
723        let second = next_frame(&mut stream.frames).await?;
724        let third = next_frame(&mut stream.frames).await?;
725
726        assert!(first.is_some());
727        assert!(second.is_some());
728        assert!(third.is_none());
729        Ok(())
730    }
731
732    #[tokio::test]
733    async fn dropping_receiver_cleans_up_subscription_reader()
734    -> Result<(), Box<dyn std::error::Error>> {
735        let workflow_id = WorkflowId::new_v4();
736        let events =
737            stream::iter([Ok(started(1, &workflow_id)?), Ok(signal(2, &workflow_id)?)]).boxed();
738        let stream = spawn_encoded_event_stream(
739            subscription(None, Vec::new(), events),
740            owned_gate(&[&workflow_id])?,
741            1,
742        )?;
743        drop(stream.frames);
744
745        tokio::time::timeout(Duration::from_secs(1), stream.reader_done).await??;
746        Ok(())
747    }
748
749    #[tokio::test]
750    async fn slow_consumer_lags_without_blocking_fast_consumer()
751    -> Result<(), Box<dyn std::error::Error>> {
752        let workflow_id = WorkflowId::new_v4();
753        let events: Vec<Result<aion_core::Event, aion::EventStreamLagged>> = vec![
754            Ok(started(1, &workflow_id)?),
755            Ok(signal(2, &workflow_id)?),
756            Ok(completed(3, &workflow_id)?),
757        ];
758        let slow = spawn_encoded_event_stream(
759            subscription(None, Vec::new(), stream::iter(events.clone()).boxed()),
760            owned_gate(&[&workflow_id])?,
761            1,
762        )?;
763        let mut fast = spawn_encoded_event_stream(
764            subscription(None, Vec::new(), stream::iter(events).boxed()),
765            owned_gate(&[&workflow_id])?,
766            4,
767        )?;
768
769        let lag = tokio::time::timeout(Duration::from_secs(1), slow.lagged).await??;
770        assert_eq!(lag.code, WireErrorCode::Lagged);
771
772        let mut received = 0_usize;
773        while let Some(frame) = next_frame(&mut fast.frames).await? {
774            drop(frame);
775            received += 1;
776        }
777        assert_eq!(received, 3);
778        Ok(())
779    }
780
781    /// REVIEW RIDER 1: the broadcast channel is engine-global; a firehose
782    /// subscription authorized for tenant-a must never observe tenant-b's
783    /// events, and every delivered frame is labeled with the authorized
784    /// namespace only because the gate proved ownership first.
785    #[tokio::test]
786    async fn firehose_never_delivers_foreign_namespace_events()
787    -> Result<(), Box<dyn std::error::Error>> {
788        let own = WorkflowId::new(uuid::Uuid::from_u128(1));
789        let foreign = WorkflowId::new(uuid::Uuid::from_u128(2));
790        let unknown = WorkflowId::new(uuid::Uuid::from_u128(3));
791        let ownership = StaticWorkflowNamespaces::default();
792        ownership.record(own.clone(), "tenant-a")?;
793        ownership.record(foreign.clone(), "tenant-b")?;
794        // The engine-global broadcast interleaves both tenants plus an
795        // ownerless workflow.
796        let events = stream::iter([
797            Ok(started(1, &foreign)?),
798            Ok(started(1, &own)?),
799            Ok(started(1, &unknown)?),
800            Ok(signal(2, &foreign)?),
801            Ok(signal(2, &own)?),
802        ])
803        .boxed();
804        let mut stream = spawn_encoded_event_stream(
805            subscription(None, Vec::new(), events),
806            tenant_a_gate(ownership)?,
807            8,
808        )?;
809
810        let mut delivered = Vec::new();
811        while let Some(frame) = next_frame(&mut stream.frames).await? {
812            let streamed: aion_proto::StreamedEvent = serde_json::from_str(&frame)?;
813            assert_eq!(streamed.namespace, "tenant-a");
814            delivered.push(streamed.decode_event()?.workflow_id().clone());
815        }
816        assert_eq!(
817            delivered,
818            vec![own.clone(), own],
819            "only tenant-a workflow events may be delivered"
820        );
821        Ok(())
822    }
823
824    /// FINDING M2: a `workflow_type` selector must deliver only matching
825    /// workflows' events — including events first-sighted mid-stream whose
826    /// type comes from the gate's cached durable read, not the event itself.
827    #[tokio::test]
828    async fn type_selector_delivers_only_matching_workflows_events()
829    -> Result<(), Box<dyn std::error::Error>> {
830        let checkout = WorkflowId::new(uuid::Uuid::from_u128(1));
831        let fulfillment = WorkflowId::new(uuid::Uuid::from_u128(2));
832        let untyped = WorkflowId::new(uuid::Uuid::from_u128(3));
833        let ownership = StaticWorkflowNamespaces::default();
834        ownership.record_with_type(checkout.clone(), "tenant-a", "checkout")?;
835        ownership.record_with_type(fulfillment.clone(), "tenant-a", "fulfillment")?;
836        ownership.record(untyped.clone(), "tenant-a")?;
837        let events = stream::iter([
838            // First-sighted via a signal: type must come from the cached read.
839            Ok(signal(5, &checkout)?),
840            Ok(signal(5, &fulfillment)?),
841            Ok(signal(5, &untyped)?),
842            Ok(started_with_type(6, &checkout, "checkout")?),
843            Ok(started_with_type(6, &fulfillment, "fulfillment")?),
844        ])
845        .boxed();
846        let mut stream = spawn_encoded_event_stream(
847            selected_subscription(
848                None,
849                Vec::new(),
850                events,
851                SubscriptionSelector {
852                    workflow_type: Some("checkout".to_owned()),
853                    status: None,
854                },
855            ),
856            tenant_a_gate(ownership)?,
857            8,
858        )?;
859
860        let mut delivered = Vec::new();
861        while let Some(frame) = next_frame(&mut stream.frames).await? {
862            let streamed: aion_proto::StreamedEvent = serde_json::from_str(&frame)?;
863            delivered.push(streamed.decode_event()?.workflow_id().clone());
864        }
865        assert_eq!(
866            delivered,
867            vec![checkout.clone(), checkout],
868            "only events of workflows with the selected type may be delivered"
869        );
870        Ok(())
871    }
872
873    /// FINDING M2: a `status` selector delivers per the documented event-kind
874    /// rule — terminal events match their projected status, `Running` matches
875    /// non-terminal events.
876    #[tokio::test]
877    async fn status_selector_delivers_per_event_kind_rule() -> Result<(), Box<dyn std::error::Error>>
878    {
879        let workflow_id = WorkflowId::new(uuid::Uuid::from_u128(1));
880        let make_events = || -> Result<_, aion_core::PayloadError> {
881            Ok(stream::iter([
882                Ok(started(1, &workflow_id)?),
883                Ok(signal(2, &workflow_id)?),
884                Ok(completed(3, &workflow_id)?),
885            ])
886            .boxed())
887        };
888
889        let mut completed_only = spawn_encoded_event_stream(
890            selected_subscription(
891                None,
892                Vec::new(),
893                make_events()?,
894                SubscriptionSelector {
895                    workflow_type: None,
896                    status: Some(WorkflowStatus::Completed),
897                },
898            ),
899            owned_gate(&[&workflow_id])?,
900            8,
901        )?;
902        let mut delivered = Vec::new();
903        while let Some(frame) = next_frame(&mut completed_only.frames).await? {
904            let streamed: aion_proto::StreamedEvent = serde_json::from_str(&frame)?;
905            delivered.push(streamed.decode_event()?.seq());
906        }
907        assert_eq!(
908            delivered,
909            vec![3],
910            "status=Completed delivers only the WorkflowCompleted event"
911        );
912
913        let mut running_only = spawn_encoded_event_stream(
914            selected_subscription(
915                None,
916                Vec::new(),
917                make_events()?,
918                SubscriptionSelector {
919                    workflow_type: None,
920                    status: Some(WorkflowStatus::Running),
921                },
922            ),
923            owned_gate(&[&workflow_id])?,
924            8,
925        )?;
926        let mut delivered = Vec::new();
927        while let Some(frame) = next_frame(&mut running_only.frames).await? {
928            let streamed: aion_proto::StreamedEvent = serde_json::from_str(&frame)?;
929            delivered.push(streamed.decode_event()?.seq());
930        }
931        assert_eq!(
932            delivered,
933            vec![1, 2],
934            "status=Running delivers exactly the non-terminal events"
935        );
936        Ok(())
937    }
938
939    /// FINDING M2: combined selectors AND together.
940    #[tokio::test]
941    async fn combined_selectors_and_together() -> Result<(), Box<dyn std::error::Error>> {
942        let checkout = WorkflowId::new(uuid::Uuid::from_u128(1));
943        let fulfillment = WorkflowId::new(uuid::Uuid::from_u128(2));
944        let ownership = StaticWorkflowNamespaces::default();
945        ownership.record_with_type(checkout.clone(), "tenant-a", "checkout")?;
946        ownership.record_with_type(fulfillment.clone(), "tenant-a", "fulfillment")?;
947        let events = stream::iter([
948            Ok(signal(1, &checkout)?),
949            Ok(completed(2, &fulfillment)?),
950            Ok(completed(2, &checkout)?),
951        ])
952        .boxed();
953        let mut stream = spawn_encoded_event_stream(
954            selected_subscription(
955                None,
956                Vec::new(),
957                events,
958                SubscriptionSelector {
959                    workflow_type: Some("checkout".to_owned()),
960                    status: Some(WorkflowStatus::Completed),
961                },
962            ),
963            tenant_a_gate(ownership)?,
964            8,
965        )?;
966
967        let mut delivered = Vec::new();
968        while let Some(frame) = next_frame(&mut stream.frames).await? {
969            let streamed: aion_proto::StreamedEvent = serde_json::from_str(&frame)?;
970            let event = streamed.decode_event()?;
971            delivered.push((event.workflow_id().clone(), event.seq()));
972        }
973        assert_eq!(
974            delivered,
975            vec![(checkout, 2)],
976            "only the selected type's terminal event may pass both selectors"
977        );
978        Ok(())
979    }
980
981    /// A replay longer than the outbound buffer must be delivered completely
982    /// via awaiting sends — never dropped, never a spurious lag.
983    #[tokio::test]
984    async fn replay_longer_than_outbound_buffer_is_delivered_without_lag()
985    -> Result<(), Box<dyn std::error::Error>> {
986        let workflow_id = WorkflowId::new_v4();
987        let mut replay: Vec<Event> = vec![started(1, &workflow_id)?];
988        for seq in 2..=6 {
989            replay.push(signal(seq, &workflow_id)?);
990        }
991        let mut stream = spawn_encoded_event_stream(
992            subscription(Some(workflow_id.clone()), replay, stream::empty().boxed()),
993            owned_gate(&[&workflow_id])?,
994            2,
995        )?;
996
997        let mut received = 0_usize;
998        while let Some(frame) = next_frame(&mut stream.frames).await? {
999            drop(frame);
1000            received += 1;
1001        }
1002        assert_eq!(received, 6, "all replay frames must arrive despite bound 2");
1003        let lag = tokio::time::timeout(Duration::from_secs(1), stream.lagged).await?;
1004        assert!(lag.is_err(), "replay must not produce a lag error");
1005        Ok(())
1006    }
1007
1008    /// FINDING L2: a gapped live tail on a per-workflow subscription is a loud
1009    /// typed terminal error — the gapped event is never delivered silently.
1010    #[tokio::test]
1011    async fn gapped_per_workflow_stream_is_terminal_error_never_silent_delivery()
1012    -> Result<(), Box<dyn std::error::Error>> {
1013        let workflow_id = WorkflowId::new_v4();
1014        // Deliberately gapped: 1, 2, then 4.
1015        let events = stream::iter([
1016            Ok(started(1, &workflow_id)?),
1017            Ok(signal(2, &workflow_id)?),
1018            Ok(signal(4, &workflow_id)?),
1019        ])
1020        .boxed();
1021        let mut stream = spawn_encoded_event_stream(
1022            subscription(Some(workflow_id.clone()), Vec::new(), events),
1023            owned_gate(&[&workflow_id])?,
1024            8,
1025        )?;
1026
1027        let mut delivered = Vec::new();
1028        while let Some(frame) = next_frame(&mut stream.frames).await? {
1029            let streamed: aion_proto::StreamedEvent = serde_json::from_str(&frame)?;
1030            delivered.push(streamed.decode_event()?.seq());
1031        }
1032        assert_eq!(delivered, vec![1, 2], "the gapped event must never deliver");
1033
1034        let error = tokio::time::timeout(Duration::from_secs(1), stream.lagged).await??;
1035        assert_eq!(error.code, WireErrorCode::Lagged);
1036        assert_eq!(
1037            error.error_type.as_deref(),
1038            Some(SEQUENCE_CONTIGUITY_VIOLATION)
1039        );
1040        Ok(())
1041    }
1042
1043    /// FINDING L2: the tripwire spans the replay→live boundary and also trips
1044    /// on regressions (duplicate seq), not just gaps.
1045    #[tokio::test]
1046    async fn contiguity_tripwire_spans_replay_live_boundary_and_duplicates()
1047    -> Result<(), Box<dyn std::error::Error>> {
1048        let workflow_id = WorkflowId::new_v4();
1049
1050        // Replay ends at 2; live starts at 4: gap across the boundary.
1051        let gapped = spawn_encoded_event_stream(
1052            subscription(
1053                Some(workflow_id.clone()),
1054                vec![started(1, &workflow_id)?, signal(2, &workflow_id)?],
1055                stream::iter([Ok(signal(4, &workflow_id)?)]).boxed(),
1056            ),
1057            owned_gate(&[&workflow_id])?,
1058            8,
1059        )?;
1060        let error = tokio::time::timeout(Duration::from_secs(1), gapped.lagged).await??;
1061        assert_eq!(
1062            error.error_type.as_deref(),
1063            Some(SEQUENCE_CONTIGUITY_VIOLATION)
1064        );
1065
1066        // Live re-emits the already-delivered seq 2: regression trips too.
1067        let duplicated = spawn_encoded_event_stream(
1068            subscription(
1069                Some(workflow_id.clone()),
1070                vec![started(1, &workflow_id)?, signal(2, &workflow_id)?],
1071                stream::iter([Ok(signal(2, &workflow_id)?)]).boxed(),
1072            ),
1073            owned_gate(&[&workflow_id])?,
1074            8,
1075        )?;
1076        let error = tokio::time::timeout(Duration::from_secs(1), duplicated.lagged).await??;
1077        assert_eq!(
1078            error.error_type.as_deref(),
1079            Some(SEQUENCE_CONTIGUITY_VIOLATION)
1080        );
1081        Ok(())
1082    }
1083
1084    /// Collected sink messages from one `drive_socket` run.
1085    async fn run_drive_socket(
1086        frames: tokio::sync::mpsc::Receiver<String>,
1087        lagged: tokio::sync::oneshot::Receiver<WireError>,
1088    ) -> Result<(Vec<Message>, Result<(), ServerError>), Box<dyn std::error::Error>> {
1089        let mut frames = frames;
1090        let (mut sink, collected) = futures::channel::mpsc::unbounded();
1091        let mut socket_rx = stream::pending::<Result<Message, axum::Error>>();
1092        let outcome = tokio::time::timeout(
1093            Duration::from_secs(1),
1094            drive_socket(&mut sink, &mut socket_rx, &mut frames, lagged),
1095        )
1096        .await?;
1097        drop(sink);
1098        let messages: Vec<Message> = collected.collect().await;
1099        Ok((messages, outcome))
1100    }
1101
1102    fn assert_frames_then_error_then_close(
1103        messages: &[Message],
1104        expected_frames: usize,
1105        expected_code: &str,
1106    ) -> Result<(), Box<dyn std::error::Error>> {
1107        assert_eq!(
1108            messages.len(),
1109            expected_frames + 2,
1110            "expected {expected_frames} event frames + error frame + close, got {messages:?}"
1111        );
1112        for message in &messages[..expected_frames] {
1113            let Message::Text(text) = message else {
1114                return Err(format!("expected an event text frame, got {message:?}").into());
1115            };
1116            let value: serde_json::Value = serde_json::from_str(text.as_str())?;
1117            assert!(
1118                value.get("error").is_none(),
1119                "event frames must precede the error frame"
1120            );
1121        }
1122        let Message::Text(text) = &messages[expected_frames] else {
1123            return Err("expected the terminal error text frame".into());
1124        };
1125        let value: serde_json::Value = serde_json::from_str(text.as_str())?;
1126        assert_eq!(value["error"]["code"], json!(expected_code));
1127        let Message::Close(Some(close)) = &messages[expected_frames + 1] else {
1128            return Err("expected a close frame after the error frame".into());
1129        };
1130        assert_eq!(close.reason.as_str(), expected_code);
1131        Ok(())
1132    }
1133
1134    /// FINDING M1: when the reader queues frames, fires the terminal oneshot,
1135    /// and drops the frame sender, both `select!` branches are ready and the
1136    /// winner is random — yet the client must always receive every buffered
1137    /// frame, then exactly one terminal error frame, then close. Constructed
1138    /// with both branches ready before the loop starts and repeated to cover
1139    /// both orderings.
1140    #[tokio::test]
1141    async fn terminal_error_and_buffered_frames_are_never_lost_regardless_of_select_order()
1142    -> Result<(), Box<dyn std::error::Error>> {
1143        for _ in 0..64 {
1144            let (frames_tx, frames_rx) = tokio::sync::mpsc::channel::<String>(8);
1145            let (lag_tx, lag_rx) = tokio::sync::oneshot::channel::<WireError>();
1146            // Reader ordering contract: frames queued, then oneshot fired,
1147            // then sender dropped — reproduced here with both select branches
1148            // ready before drive_socket polls either.
1149            for seq in 1..=3 {
1150                frames_tx
1151                    .send(json!({ "seq": seq }).to_string())
1152                    .await
1153                    .map_err(|_| "frame channel must accept the fixture frames")?;
1154            }
1155            lag_tx
1156                .send(WireError::lagged("subscriber lagged behind"))
1157                .map_err(|_| "oneshot must accept the terminal error")?;
1158            drop(frames_tx);
1159
1160            let (messages, outcome) = run_drive_socket(frames_rx, lag_rx).await?;
1161            assert_frames_then_error_then_close(&messages, 3, "lagged")?;
1162            let error = outcome.err().ok_or("terminal stream must surface Err")?;
1163            assert_eq!(error.to_wire_error().code, WireErrorCode::Lagged);
1164        }
1165        Ok(())
1166    }
1167
1168    /// FINDING M1 end-to-end through the real reader: N events then an
1169    /// engine-side lag item must always deliver N frames, then the lagged
1170    /// error frame, then close — across repeated runs with arbitrary task
1171    /// interleaving.
1172    #[tokio::test]
1173    async fn reader_lag_after_events_delivers_all_frames_then_error()
1174    -> Result<(), Box<dyn std::error::Error>> {
1175        let workflow_id = WorkflowId::new_v4();
1176        for _ in 0..32 {
1177            let events = stream::iter([
1178                Ok(started(1, &workflow_id)?),
1179                Ok(signal(2, &workflow_id)?),
1180                Ok(signal(3, &workflow_id)?),
1181                Err(aion::EventStreamLagged { skipped: 7 }),
1182            ])
1183            .boxed();
1184            let encoded = spawn_encoded_event_stream(
1185                subscription(Some(workflow_id.clone()), Vec::new(), events),
1186                owned_gate(&[&workflow_id])?,
1187                8,
1188            )?;
1189            let (messages, outcome) = run_drive_socket(encoded.frames, encoded.lagged).await?;
1190            assert_frames_then_error_then_close(&messages, 3, "lagged")?;
1191            assert!(outcome.is_err(), "lagged stream must surface Err");
1192            encoded.reader_done.abort();
1193        }
1194        Ok(())
1195    }
1196
1197    /// A clean reader end (no terminal error) delivers the buffered frames,
1198    /// finishes the close handshake with a normal-closure (1000) frame, and
1199    /// returns Ok without inventing an error frame.
1200    #[tokio::test]
1201    async fn clean_stream_end_delivers_frames_then_close_1000_without_error_frame()
1202    -> Result<(), Box<dyn std::error::Error>> {
1203        let (frames_tx, frames_rx) = tokio::sync::mpsc::channel::<String>(8);
1204        let (lag_tx, lag_rx) = tokio::sync::oneshot::channel::<WireError>();
1205        for seq in 1..=2 {
1206            frames_tx
1207                .send(json!({ "seq": seq }).to_string())
1208                .await
1209                .map_err(|_| "frame channel must accept the fixture frames")?;
1210        }
1211        drop(frames_tx);
1212        drop(lag_tx);
1213
1214        let (messages, outcome) = run_drive_socket(frames_rx, lag_rx).await?;
1215        assert!(outcome.is_ok(), "clean end must not surface an error");
1216        assert_eq!(
1217            messages.len(),
1218            3,
1219            "exactly the event frames plus the close-1000 handshake frame"
1220        );
1221        for message in &messages[..2] {
1222            let Message::Text(text) = message else {
1223                return Err(format!("expected a text frame, got {message:?}").into());
1224            };
1225            let value: serde_json::Value = serde_json::from_str(text.as_str())?;
1226            assert!(value.get("error").is_none());
1227        }
1228        let Message::Close(Some(close)) = &messages[2] else {
1229            return Err(format!(
1230                "graceful end must finish with a close frame, got {:?}",
1231                messages[2]
1232            )
1233            .into());
1234        };
1235        assert_eq!(close.code, axum::extract::ws::close_code::NORMAL);
1236        assert_eq!(close.reason.as_str(), super::SUBSCRIPTION_COMPLETE_REASON);
1237        Ok(())
1238    }
1239
1240    #[tokio::test]
1241    async fn wire_error_frame_is_wrapped_and_followed_by_close()
1242    -> Result<(), Box<dyn std::error::Error>> {
1243        let (mut sink, collected) = futures::channel::mpsc::unbounded();
1244        let error = crate::error::ServerError::lagged_stream().to_wire_error();
1245
1246        super::send_wire_error(&mut sink, &error).await?;
1247        drop(sink);
1248
1249        let messages: Vec<axum::extract::ws::Message> = collected.collect().await;
1250        assert_eq!(
1251            messages.len(),
1252            2,
1253            "expected exactly one error frame + close"
1254        );
1255
1256        let axum::extract::ws::Message::Text(text) = &messages[0] else {
1257            return Err("expected a text error frame".into());
1258        };
1259        let frame: serde_json::Value = serde_json::from_str(text.as_str())?;
1260        assert_eq!(frame["error"]["code"], json!("lagged"));
1261        assert!(
1262            frame["error"]["message"].is_string(),
1263            "error frame must carry the informational message"
1264        );
1265
1266        let axum::extract::ws::Message::Close(Some(close)) = &messages[1] else {
1267            return Err("expected a close frame after the error frame".into());
1268        };
1269        assert_eq!(close.reason.as_str(), "lagged");
1270        Ok(())
1271    }
1272}