moq_net/model/broadcast.rs
1//! A broadcast is a named collection of tracks, split into a [Producer] and [Consumer] handle.
2//!
3//! A [Producer] creates tracks on demand: a [Consumer] subscribes by name, and the
4//! producer either serves a track it already has or is handed a [`track::Request`] to
5//! fill. Both handles are refcounted clones of one broadcast, which closes on
6//! [`Producer::finish`] or when the last producer drops.
7//!
8//! [Info] is the static metadata; [Route] is the dynamic path the broadcast takes to
9//! reach an origin, including whether it is announced to subscribers.
10use crate::{stats, track};
11use std::{
12 collections::{HashMap, VecDeque},
13 sync::Arc,
14 task::{Poll, ready},
15 time::Duration,
16};
17
18use crate::Error;
19
20use super::{Origin, OriginList, Requests, WeakCache};
21
22/// A collection of media tracks that can be published and subscribed to.
23///
24/// Create via [`Info::produce`] to obtain both [`Producer`] and [`Consumer`] pair.
25/// This is the broadcast's static identity, fixed for its lifetime; the path it
26/// takes to get here is the dynamic [`Route`], observed via [`Consumer::route`].
27#[derive(Clone, Debug, Default)]
28#[non_exhaustive]
29pub struct Info {
30 /// The origin this broadcast belongs to (its identity, and the cache pool its
31 /// tracks and groups inherit). A track reaches its pool by walking up this link,
32 /// so the pool has a single home on the origin rather than being copied per
33 /// broadcast. Defaults to an unknown origin with an unbounded pool (a standalone
34 /// broadcast with no relay origin).
35 pub origin: super::origin::Info,
36}
37
38impl Info {
39 /// Create a new broadcast with default metadata.
40 pub fn new() -> Self {
41 Self::default()
42 }
43
44 /// Consume this [Info] to create a producer that carries its metadata.
45 ///
46 /// Keep the returned [`Producer`] alive for as long as the broadcast should stay
47 /// available, and end it with [`Producer::finish`]. See the note on [`Producer`].
48 pub fn produce(self) -> Producer {
49 Producer::new(self)
50 }
51}
52
53/// The path a broadcast takes to reach this origin, and how preferable it is.
54///
55/// Unlike [`Info`], the route is dynamic: it changes when the serving session fails
56/// over, the upstream topology shifts, or the publisher re-advertises itself.
57/// Publish a change with [`Producer::set_route`] and observe one with
58/// [`Consumer::route_changed`]; downstream sessions forward updates as a restart
59/// on the wire, so route churn never looks like a new broadcast.
60#[derive(Clone, Debug, Default, PartialEq, Eq)]
61#[non_exhaustive]
62pub struct Route {
63 /// The chain of origins the broadcast has traversed, oldest first. Each relay
64 /// appends its own [`crate::Origin`] when forwarding; used for loop detection
65 /// and as the selection tie-break.
66 pub hops: OriginList,
67
68 /// The cost of pulling the broadcast via this route, accumulated per link:
69 /// lower wins, with ties broken by hop length, then a deterministic hash, and
70 /// finally the most recently attached route.
71 ///
72 /// The original publisher seeds it with its production cost (zero for a live
73 /// publish, something large for a standby that would have to start working,
74 /// like a cold transcoder), and each link adds its own configured price as
75 /// the announcement crosses it, so a route over a metered backbone ranks
76 /// worse than an equal-length one within a datacenter. The accumulation
77 /// restarts at zero at any node actively carrying the broadcast: those
78 /// upstream legs already exist and are not re-paid by one more subscriber,
79 /// so the sum is the cost of the transfers a subscription would newly cause.
80 ///
81 /// Carried on the wire from lite-06; older peers always report zero, leaving
82 /// the hop-count tie-break as the effective metric exactly as before.
83 pub cost: u64,
84
85 /// The cost as the announcing peer advertised it, before this link's charge
86 /// was added to [`Self::cost`]. Local bookkeeping, never forwarded: zero on a
87 /// chain of two or more hops means the announcing relay is actively carrying
88 /// the broadcast, which is what the origin's handover gate keys on.
89 pub(crate) advertised: u64,
90
91 /// Whether the broadcast should be announced: advertised to consumers via
92 /// [`crate::origin::Consumer::announced`] while this is the best route. A
93 /// non-announced broadcast stays reachable by exact path for subscribes and
94 /// fetches (e.g. serving cached or on-demand content), so toggling this via
95 /// [`Producer::set_route`] announces or unannounces without touching the
96 /// broadcast itself. Defaults to `false`.
97 pub announce: bool,
98}
99
100impl Route {
101 /// An unannounced direct route: no hops, best cost.
102 ///
103 /// The broadcast is reachable only by its exact path, so subscribers must already
104 /// know it exists. Use [`announced`](Self::announced) to advertise it instead.
105 pub fn new() -> Self {
106 Self::default()
107 }
108
109 /// An announced direct route: no hops, best cost.
110 ///
111 /// The broadcast is advertised to subscribers via
112 /// [`crate::origin::Consumer::announced`] while this is the best route, on top of
113 /// staying reachable by exact path. Use [`new`](Self::new) to keep it unadvertised.
114 pub fn announced() -> Self {
115 Self {
116 announce: true,
117 ..Self::default()
118 }
119 }
120
121 /// Append a hop to the chain, oldest first.
122 ///
123 /// Fails with [`crate::TooManyOrigins`] once the chain is full, the same limit
124 /// the wire enforces.
125 pub fn with_hop(mut self, origin: super::Origin) -> Result<Self, super::TooManyOrigins> {
126 self.hops.push(origin)?;
127 Ok(self)
128 }
129
130 /// Replace the hop chain.
131 pub fn with_hops(mut self, hops: OriginList) -> Self {
132 self.hops = hops;
133 self
134 }
135
136 /// Set the cost: lower wins among routes serving the same broadcast.
137 pub fn with_cost(mut self, cost: u64) -> Self {
138 self.cost = cost;
139 self
140 }
141
142 /// Set whether the broadcast is announced via this route.
143 pub fn with_announce(mut self, announce: bool) -> Self {
144 self.announce = announce;
145 self
146 }
147}
148
149/// How long a drained broadcast keeps advertising a zero cost before restoring its
150/// cold one.
151///
152/// Pure hysteresis: demand edges arrive exactly (via [`Demand`]), but re-pricing the
153/// instant the last viewer leaves would flap routing across the mesh on viewer churn.
154pub(crate) const COST_LINGER: Duration = Duration::from_secs(5);
155
156/// The routes advertisable to one peer, best first: the announced ones whose hop chain
157/// avoids both the peer (`exclude`) and ourselves (a reflection), each paired with
158/// whether it is the serving route.
159///
160/// `routes` is the broadcast's table in preference order with the serving (active)
161/// route first, so a peer usually receives exactly what we serve everyone; a peer the
162/// active chain flows through receives the best standby instead of nothing. The
163/// subscribe path picks its source by the same exclusion (see
164/// [`origin::Consumer::excluding`](super::origin::Consumer::excluding)), which keeps
165/// the advertised chain truthful and the mesh loop-free.
166///
167/// Callers take the first entry they can actually stamp themselves onto, since a chain
168/// already at `MAX_HOPS` has no room and almost certainly means a loop. Empty when
169/// every chain loops through the peer or us, or none is announced.
170/// [`Origin::UNKNOWN`] identifies nothing, so it excludes nothing and is never a loop.
171pub(crate) fn advertisable_routes(
172 routes: &[Route],
173 self_origin: Origin,
174 exclude: Origin,
175) -> impl Iterator<Item = (&Route, bool)> {
176 routes.iter().enumerate().filter_map(move |(index, route)| {
177 // Offline routes are reachable by exact path but never advertised.
178 if !route.announce {
179 return None;
180 }
181 if exclude != Origin::UNKNOWN && route.hops.contains(&exclude) {
182 return None;
183 }
184 if self_origin != Origin::UNKNOWN && route.hops.contains(&self_origin) {
185 return None;
186 }
187 Some((route, index == 0))
188 })
189}
190
191/// The cost to advertise for a route.
192///
193/// While the broadcast has demand, the *serving* (active) route costs zero: our
194/// ingress is already paid for (or, for a local standby publisher, the work is already
195/// running), so one more subscriber only pays the links below us. That is what lets a
196/// cluster deduplicate onto a warm copy. A standby advertised to a peer the active
197/// chain flows through keeps its own accumulated cost, since serving that peer means
198/// opening a fresh ingest. Otherwise we forward the accumulated cost unchanged.
199///
200/// The receiving side adds its own link price on top, so this never accounts for the
201/// link we are sending over.
202pub(crate) fn outgoing_cost(demand: &Demand, route: &Route, serving: bool) -> u64 {
203 match serving && demand.is_used() {
204 true => 0,
205 false => route.cost,
206 }
207}
208
209#[derive(Default)]
210struct BroadcastState {
211 // Weak references for deduplication. Doesn't prevent track auto-close.
212 // Keyed by the track's shared `Arc<str>` name (the same Arc the handle holds).
213 // The cache reclaims closed entries incrementally on insert so a long-lived
214 // broadcast churning distinct track names stays bounded by the live count.
215 tracks: WeakCache<Arc<str>, track::TrackWeak>,
216
217 // Pending requests keyed by track name, coalescing concurrent `track()` calls
218 // and waiting for a dynamic handler to accept or deny them. A request leaves
219 // here once handed out (the handler caches it in `tracks`, so lookups keep
220 // coalescing onto it there).
221 requests: Requests<Arc<str>, track::Request>,
222
223 // Route-fed mode (a relay/origin "front"): tracks are spliced logical tracks
224 // joined across per-session tracks. `None` for an ordinary broadcast.
225 spliced: Option<SplicedState>,
226
227 // The path the broadcast currently takes to reach us, bumping `route_epoch`
228 // on every change so consumers can watch for updates.
229 route: Route,
230 route_epoch: u64,
231
232 // Every route currently attached at this path, in preference order with the
233 // serving (active) route first. Mirrored from the origin's source table for
234 // route-fed broadcasts so sessions can pick a different route per peer; an
235 // ordinary broadcast holds just its own route. `routes_epoch` bumps on any
236 // table change, including ones that leave the active route untouched (a
237 // standby attaching or repricing), which is why it is tracked separately
238 // from `route_epoch`.
239 routes: Vec<Route>,
240 routes_epoch: u64,
241
242 // Set by an explicit `Producer::finish()` or `Producer::abort()` so `Drop` can
243 // tell a deliberate shutdown apart from a producer dropped by accident.
244 closing: bool,
245
246 // Set only by `Producer::finish()`: the broadcast ended deliberately, as
247 // opposed to aborting or losing its producer. The origin reads this to decide
248 // whether a detached source may linger for a replacement.
249 finished: bool,
250
251 // The error passed to `Producer::abort()`, reported by `Consumer::closed`.
252 // `None` for a finish or a dropped producer (reported as `Error::Dropped`).
253 abort: Option<Error>,
254}
255
256/// The spliced (route-fed) half of a broadcast: logical tracks that outlive any
257/// single session, plus the queue of tracks awaiting a serving route.
258#[derive(Default)]
259struct SplicedState {
260 // Logical tracks by name, owned strongly: they live as long as the broadcast
261 // (the origin's front), not as long as any consumer.
262 tracks: HashMap<Arc<str>, super::resume::Producer>,
263
264 // Names awaiting assignment to a route, in request order.
265 pending: VecDeque<Arc<str>>,
266}
267
268impl BroadcastState {
269 /// Insert a track weak handle into the lookup, returning an error if a live
270 /// track already holds the name. A closed entry under the name is reclaimed.
271 fn insert_track(&mut self, weak: track::TrackWeak) -> Result<(), Error> {
272 match self.tracks.insert(weak.name().clone(), weak) {
273 Some(_) => Err(Error::Duplicate),
274 None => Ok(()),
275 }
276 }
277
278 /// Resolve every name the broadcast never filled, so subscribers waiting on a
279 /// [`track::Info`] that can no longer arrive fail with `err` instead of parking.
280 ///
281 /// Covers a reservation nobody accepted, a request handed to a [`Dynamic`] that
282 /// never answered it, and one still queued for a handler. A track that carries
283 /// its info has a publisher and is left alone: an end there is that publisher's
284 /// call, and its cache stays readable.
285 fn reject_unserved(&mut self, err: Error) {
286 for request in self.requests.drain_queued() {
287 request.reject(err.clone());
288 }
289 for track in self.tracks.iter() {
290 track.reject(err.clone());
291 }
292 }
293
294 /// Live demand: a subscribed spliced track (route-fed broadcast), or a
295 /// pending request / consumed track (ordinary broadcast). See [`Demand`].
296 fn is_used(&self) -> bool {
297 if let Some(spliced) = &self.spliced {
298 return spliced.tracks.values().any(|track| track.is_used());
299 }
300 !self.requests.is_empty() || self.tracks.iter().any(|track| track.is_used())
301 }
302
303 /// Park `waiter` on every per-track channel feeding [`Self::is_used`]: the
304 /// consumer counts live on those channels, and their flips don't write this
305 /// state, so a watcher registered here alone would miss the edge. `want`
306 /// picks the direction; each channel only arms while its side is unmet.
307 fn register_demand(&self, waiter: &kio::Waiter, want: bool) {
308 if let Some(spliced) = &self.spliced {
309 for track in spliced.tracks.values() {
310 let _ = match want {
311 true => track.poll_used(waiter),
312 false => track.poll_unused(waiter),
313 };
314 }
315 return;
316 }
317 for track in self.tracks.iter() {
318 match want {
319 true => track.poll_used(waiter),
320 false => track.poll_unused(waiter),
321 }
322 }
323 }
324}
325
326/// Manages tracks within a broadcast.
327///
328/// Create tracks up front with [Self::create_track], reserve a name to fill in
329/// later with [Self::reserve_track], or handle on-demand consumer requests via
330/// [Self::dynamic].
331///
332/// # Lifetime
333///
334/// **You must keep this producer alive for as long as the broadcast should stay
335/// available.** A broadcast lives as long as at least one [`Producer`] exists;
336/// children do *not* keep it alive (cloning a [`Consumer`] or holding a
337/// [`track::Producer`] does nothing for the broadcast's lifetime). When the last
338/// producer goes away every consumer observes [`Error::Dropped`].
339///
340/// End the broadcast with [`Self::finish`] rather than dropping it. Dropping is an
341/// easy footgun in garbage-collected bindings (Go, Python, ...), where the handle
342/// can be collected the moment it falls out of scope even while you are still
343/// publishing, tearing the stream down mid-broadcast. Dropping the last producer
344/// without [`Self::finish`] logs a warning.
345#[derive(Clone)]
346pub struct Producer {
347 // Held behind an Arc so each track born from this broadcast can inherit a shared
348 // handle (threaded down by [`Self::create_track`] / [`Self::reserve_track`]).
349 info: Arc<Info>,
350
351 // Broadcast liveness, shared with every `Dynamic`. Consumers watch it (read-only)
352 // for close; the guard ends the broadcast when the last of those handles drops.
353 alive: Arc<Alive>,
354
355 // Track registry plus the dynamic request queue, mutated by producers and
356 // consumers alike under one lock.
357 state: kio::Shared<BroadcastState>,
358
359 // Ingress stats scope, set by a tagged `origin::Producer` at
360 // `create_broadcast`. Inherited by the tracks this producer creates. Empty
361 // (no-op) for an untagged broadcast.
362 stats: stats::Scope,
363}
364
365impl Producer {
366 /// Create a producer for the given broadcast metadata. Prefer [`Info::produce`].
367 pub fn new(info: Info) -> Self {
368 let state = kio::Shared::<BroadcastState>::default();
369 Self {
370 info: Arc::new(info),
371 alive: Alive::new(state.clone()),
372 state,
373 stats: stats::Scope::default(),
374 }
375 }
376
377 /// Attach an ingress stats scope, inherited by the tracks created on this
378 /// broadcast. Set by a tagged `origin::Producer` at `create_broadcast`.
379 pub(crate) fn with_stats(mut self, scope: stats::Scope) -> Self {
380 self.stats = scope;
381 self
382 }
383
384 /// Create a route-fed (spliced) broadcast: consumer track lookups mint logical
385 /// tracks that are spliced across per-session tracks, queued for a route to
386 /// serve. Used by the origin for broadcasts reached over the network.
387 pub(crate) fn new_spliced(info: Info) -> Self {
388 let state = kio::Shared::new(BroadcastState {
389 spliced: Some(SplicedState::default()),
390 ..Default::default()
391 });
392 Self {
393 info: Arc::new(info),
394 alive: Alive::new(state.clone()),
395 state,
396 // The origin-owned spliced broadcast stays untagged: egress attribution is
397 // applied when a tagged `origin::Consumer` hands the consumer out.
398 stats: stats::Scope::default(),
399 }
400 }
401
402 /// The broadcast's static metadata, fixed when it was created.
403 pub fn info(&self) -> &Info {
404 &self.info
405 }
406
407 /// A watch-only handle to the broadcast's demand. See [`Demand`].
408 pub fn demand(&self) -> Demand {
409 Demand {
410 alive: self.alive.token.consume().weak(),
411 state: self.state.clone(),
412 }
413 }
414
415 /// Remove a track from the lookup.
416 pub fn remove_track(&mut self, name: &str) -> Result<(), Error> {
417 self.state.lock().tracks.remove(name).ok_or(Error::NotFound)?;
418 Ok(())
419 }
420
421 /// Produce a new track and insert it into the broadcast.
422 ///
423 /// Pass a name and an optional [`track::Info`], so a bare name works:
424 /// `create_track("video", None)`.
425 pub fn create_track(
426 &mut self,
427 name: impl Into<Arc<str>>,
428 info: impl Into<Option<track::Info>>,
429 ) -> Result<track::Producer, Error> {
430 let name = name.into();
431 let info = info.into().unwrap_or_default();
432 let mut state = self.state.lock();
433
434 // A consumer may have requested this name before it existed (a live
435 // [`Dynamic`] queues such requests). Creating the track fulfills that
436 // request: its consumers resolve against this very producer. Without
437 // this they would be stranded, since the name is taken the moment the
438 // track exists, so no handler could ever serve their queue entry.
439 if let Some(request) = state.requests.take(name.as_ref()) {
440 let track = request.with_stats(self.stats.clone()).accept(info);
441 // Cache it like a served request so concurrent lookups coalesce; a
442 // live same-name entry cannot exist (its presence would have kept
443 // the request from queuing).
444 let _ = state.tracks.insert(name, track.weak());
445 return Ok(track);
446 }
447
448 let track = track::Producer::new(self.info.clone(), name, info).with_stats(self.stats.clone());
449 state.insert_track(track.weak())?;
450 Ok(track)
451 }
452
453 /// Reserve a track by name without finalizing its [`track::Info`].
454 ///
455 /// Returns a [`track::Request`] already discoverable by consumers; call
456 /// [`track::Request::accept`] to set its info and start producing. Use this when
457 /// the producer can't pick the track's properties (e.g. timescale) until it has
458 /// inspected the media, the same shape as a consumer-driven
459 /// [`Dynamic::requested_track`].
460 ///
461 /// Subscribers wait on the name until it is accepted, so a reservation the producer
462 /// ends up never filling has to be dropped or rejected. Ending the broadcast
463 /// ([`Self::finish`] or [`Self::abort`]) resolves whatever is left.
464 pub fn reserve_track(&mut self, name: impl Into<Arc<str>>) -> Result<track::Request, Error> {
465 let request = track::Request::new(self.info.clone(), name).with_stats(self.stats.clone());
466 self.state.lock().insert_track(request.weak())?;
467 Ok(request)
468 }
469
470 /// Create a track with a unique name using the given suffix.
471 ///
472 /// Generates names like `0{suffix}`, `1{suffix}`, etc. and picks the first
473 /// one not already used in this broadcast.
474 pub fn unique_track(
475 &mut self,
476 suffix: &str,
477 info: impl Into<Option<track::Info>>,
478 ) -> Result<track::Producer, Error> {
479 let name = self.unique_name(suffix);
480 self.create_track(name, info)
481 }
482
483 /// Generate a unique track name from a suffix without creating the track.
484 ///
485 /// Returns a fresh name like `0{suffix}`, `1{suffix}`, etc. Use this when
486 /// you need to set non-default Track properties (e.g. `with_timescale`,
487 /// `with_latency_max`) before handing the Track to [`Self::create_track`].
488 pub fn unique_name(&self, suffix: &str) -> String {
489 let state = self.state.read();
490 (0u16..)
491 .map(|i| format!("{i}{suffix}"))
492 .find(|name| !state.tracks.contains_key(name.as_str()))
493 .expect("u16 namespace exhausted; wow")
494 }
495
496 /// Create a dynamic producer that handles on-demand track requests from consumers.
497 pub fn dynamic(&self) -> Dynamic {
498 Dynamic::new(
499 self.info.clone(),
500 self.alive.clone(),
501 self.state.clone(),
502 self.stats.clone(),
503 )
504 }
505
506 /// Set the broadcast's [`Route`]: the hop chain and cost it advertises.
507 ///
508 /// Call this when the path to the content changes (an upstream failover) or the
509 /// publisher's preference changes (e.g. a transcoder warming up lowers its
510 /// cost). Consumers observe the change via [`Consumer::route_changed`] and
511 /// sessions forward it downstream as a restart, never as a new broadcast.
512 /// Setting the current route again is a no-op.
513 pub fn set_route(&mut self, route: Route) -> Result<(), Error> {
514 let mut state = self.state.lock();
515 if state.route == route {
516 return Ok(());
517 }
518 state.route = route.clone();
519 state.route_epoch += 1;
520 // An ordinary broadcast's table is just its own route; a route-fed one is
521 // overwritten by the next `set_routes` from the origin.
522 state.routes = vec![route];
523 state.routes_epoch += 1;
524 Ok(())
525 }
526
527 /// Replace the full route table, in preference order with the active route
528 /// first. Set by the origin's front on every source-table change; the active
529 /// route doubles as the broadcast's advertised [`Route`].
530 ///
531 /// `routes` must be non-empty. A front whose table empties is on its way out,
532 /// and it unannounces and aborts rather than advertising a "no route" route,
533 /// so there is no such value to publish here.
534 pub(crate) fn set_routes(&mut self, routes: Vec<Route>) {
535 debug_assert!(!routes.is_empty(), "set_routes requires a non-empty table");
536 let mut state = self.state.lock();
537 if let Some(active) = routes.first()
538 && state.route != *active
539 {
540 state.route = active.clone();
541 state.route_epoch += 1;
542 }
543 if state.routes != routes {
544 state.routes = routes;
545 state.routes_epoch += 1;
546 }
547 }
548
549 /// Poll for the next spliced track awaiting a serving route, returning its name
550 /// and logical producer. Route-fed broadcasts only.
551 pub(crate) fn poll_spliced_assigned(&self, waiter: &kio::Waiter) -> Poll<(Arc<str>, super::resume::Producer)> {
552 let mut state = ready!(self.state.poll(waiter, |state| {
553 match &state.spliced {
554 Some(spliced) if !spliced.pending.is_empty() => Poll::Ready(()),
555 _ => Poll::Pending,
556 }
557 }));
558
559 let spliced = state.spliced.as_mut().expect("predicate guaranteed spliced");
560 let name = spliced.pending.pop_front().expect("predicate guaranteed a request");
561 let producer = spliced.tracks.get(&name).expect("pending name without a track").clone();
562 Poll::Ready((name, producer))
563 }
564
565 /// Abort every spliced track, releasing their subscribers with `err`. Called
566 /// when the broadcast closes for good.
567 pub(crate) fn abort_spliced(&self, err: Error) {
568 let mut state = self.state.lock();
569 if let Some(spliced) = state.spliced.as_mut() {
570 spliced.pending.clear();
571 for producer in spliced.tracks.values_mut() {
572 let _ = producer.abort(err.clone());
573 }
574 }
575 }
576
577 /// Create a consumer that can subscribe to tracks in this broadcast.
578 pub fn consume(&self) -> Consumer {
579 Consumer {
580 info: self.info.clone(),
581 alive: self.alive.token.consume(),
582 state: self.state.clone(),
583 route_seen: None,
584 routes_seen: None,
585 stats: stats::Scope::default(),
586 exclusion: None,
587 }
588 }
589
590 /// Cleanly finish the broadcast once you are done publishing.
591 ///
592 /// Marks the broadcast as deliberately finished so consumers observe a normal
593 /// end. Prefer this over dropping the producer: an accidental drop (see the note
594 /// on [`Producer`]) logs a warning, whereas `finish()` is silent.
595 ///
596 /// Ends the broadcast outright: consumers observe a normal end immediately and no
597 /// new tracks are served, whether or not other producer clones are still alive.
598 /// Existing tracks stay readable so consumers can drain what they already have.
599 ///
600 /// A name that was reserved or requested but never served resolves with
601 /// [`Error::NotFound`]: nothing can fill it now, so its subscribers fail rather
602 /// than waiting on a [`track::Info`] that is never coming.
603 ///
604 /// Borrows rather than consumes, matching [`track::Producer::finish`]. Finishing
605 /// declares the end, so it must not depend on the caller also surrendering the
606 /// handle.
607 pub fn finish(&mut self) {
608 {
609 let mut state = self.state.lock();
610 state.closing = true;
611 state.finished = true;
612 // A name that was reserved or requested but never served can't arrive now,
613 // and `Consumer::track` already answers `NotFound` for one asked about after
614 // this point. Say the same to whoever asked earlier.
615 state.reject_unserved(Error::NotFound);
616 }
617 // Ending the broadcast is what consumers wait on, so signal it here rather
618 // than leaving it to the last handle drop.
619 let _ = self.alive.token.close();
620 }
621
622 /// Abort the broadcast, ending it for consumers with `err`.
623 ///
624 /// Like [`finish`](Self::finish) the end is immediate, whether or not other
625 /// producer clones are still alive, and existing tracks stay readable so
626 /// consumers can drain what they already have (an abort does not cascade into
627 /// the tracks), while a name nothing ever served resolves with `err` the same
628 /// way [`finish`](Self::finish) resolves it. Unlike a finish, consumers observe `err` from
629 /// [`Consumer::closed`], and an origin treats the source as ungracefully lost,
630 /// so the path may linger for a replacement (see
631 /// [`origin::Info::linger`](crate::origin::Info::linger)).
632 ///
633 /// Consumes the producer: an abort is terminal. Errors if the broadcast was
634 /// already finished or aborted.
635 pub fn abort(self, err: Error) -> Result<(), Error> {
636 {
637 let mut state = self.state.lock();
638 if state.closing {
639 return Err(Error::Closed);
640 }
641 state.closing = true;
642 state.abort = Some(err.clone());
643 // Same as a finish: an unserved name is answerable now, with the reason the
644 // broadcast ended. Published tracks keep their cache (no cascade).
645 state.reject_unserved(err);
646 }
647 let _ = self.alive.token.close();
648 Ok(())
649 }
650
651 /// Return true if this is the same broadcast instance.
652 pub fn is_clone(&self, other: &Self) -> bool {
653 self.state.same_channel(&other.state)
654 }
655}
656
657/// Ends the broadcast when the last [`Producer`] or [`Dynamic`] drops, closing the
658/// liveness channel every [`Consumer`] watches.
659///
660/// A refcount rather than a "am I the last one?" check inside `Drop`: that answer is
661/// a snapshot, and acting on it is exactly what invalidates it.
662struct Alive {
663 token: kio::Producer<()>,
664 state: kio::Shared<BroadcastState>,
665}
666
667impl Alive {
668 fn new(state: kio::Shared<BroadcastState>) -> Arc<Self> {
669 Arc::new(Self {
670 token: kio::Producer::default(),
671 state,
672 })
673 }
674}
675
676impl Drop for Alive {
677 fn drop(&mut self) {
678 // Warn if the last exit wasn't an explicit finish(), since consumers will
679 // then see Error::Dropped (classically a GC-collected handle in a language
680 // binding that tears the stream down mid-publish).
681 if !self.state.read().closing {
682 tracing::warn!(
683 "broadcast::Producer dropped without finish(). Keep the producer alive while publishing, then call finish()."
684 );
685 }
686 }
687}
688
689#[cfg(test)]
690#[allow(missing_docs)] // test-only assertion helpers
691impl Producer {
692 pub fn assert_create_track(
693 &mut self,
694 name: impl Into<Arc<str>>,
695 info: impl Into<Option<track::Info>>,
696 ) -> track::Producer {
697 self.create_track(name, info).expect("should not have errored")
698 }
699}
700
701/// A session-owned handle to a source broadcast created via
702/// [`crate::origin::Producer::create_broadcast`]: [`Self::finish`] ends it
703/// deliberately, while dropping the guard aborts it as [`Error::Dropped`] (a dead
704/// session), letting the origin linger the path for a reconnect. Shared by the
705/// lite and IETF subscribers so the drop-vs-finish contract lives in one place.
706pub(crate) struct SourceGuard {
707 // `Option` so `finish` can consume the producer while `Drop` aborts it.
708 producer: Option<Producer>,
709}
710
711impl SourceGuard {
712 pub fn new(producer: Producer) -> Self {
713 Self {
714 producer: Some(producer),
715 }
716 }
717
718 /// A clone of the guarded producer.
719 pub fn producer(&self) -> Producer {
720 self.producer.clone().expect("guard holds a producer until finished")
721 }
722
723 /// End the source deliberately: the origin detaches it immediately,
724 /// unannouncing the path if it was the last.
725 pub fn finish(mut self) {
726 if let Some(mut producer) = self.producer.take() {
727 producer.finish();
728 }
729 }
730
731 /// Update the source's advertised route in place.
732 pub fn set_route(&mut self, route: Route) {
733 if let Some(producer) = &mut self.producer {
734 let _ = producer.set_route(route);
735 }
736 }
737}
738
739impl Drop for SourceGuard {
740 fn drop(&mut self) {
741 if let Some(producer) = self.producer.take() {
742 let _ = producer.abort(Error::Dropped);
743 }
744 }
745}
746
747/// Handles on-demand track creation for a broadcast.
748///
749/// When a consumer requests a track that doesn't exist, the dynamic producer
750/// picks up the request via [`Self::requested_track`] and either
751/// [`track::Request::accept`]s it with a concrete [`track::Info`] or
752/// [`track::Request::reject`]s it. Dropped when no longer needed; pending requests
753/// are automatically aborted.
754pub struct Dynamic {
755 info: Arc<Info>,
756 // Keeps the broadcast alive while a handler exists (mirrors a producer).
757 alive: Arc<Alive>,
758 state: kio::Shared<BroadcastState>,
759 // Ingress stats scope, applied to the tracks this handler serves. Empty (no-op)
760 // for an untagged broadcast.
761 stats: stats::Scope,
762}
763
764impl Clone for Dynamic {
765 fn clone(&self) -> Self {
766 // Mirror `new`: count each live handle. Without this, deriving Clone would
767 // let `Drop` decrement past `new`'s single increment and prematurely flip
768 // the handler count to zero, causing future `track` calls to return `NotFound`.
769 self.state.lock().requests.add_handler();
770
771 Self {
772 info: self.info.clone(),
773 alive: self.alive.clone(),
774 state: self.state.clone(),
775 stats: self.stats.clone(),
776 }
777 }
778}
779
780impl Dynamic {
781 fn new(info: Arc<Info>, alive: Arc<Alive>, state: kio::Shared<BroadcastState>, stats: stats::Scope) -> Self {
782 state.lock().requests.add_handler();
783
784 Self {
785 info,
786 alive,
787 state,
788 stats,
789 }
790 }
791
792 /// The broadcast's static metadata, fixed when it was created.
793 pub fn info(&self) -> &Info {
794 &self.info
795 }
796
797 /// Poll for the next consumer-requested track, without blocking.
798 ///
799 /// Returns [`Error::Closed`] once the broadcast was deliberately ended
800 /// ([`Producer::finish`] or aborted), so a serving loop knows to stop and
801 /// release its handle.
802 pub fn poll_requested_track(&mut self, waiter: &kio::Waiter) -> Poll<Result<track::Request, Error>> {
803 let mut state = ready!(self.state.poll(waiter, |state| {
804 if state.requests.has_queued() || state.closing {
805 Poll::Ready(())
806 } else {
807 Poll::Pending
808 }
809 }));
810
811 if state.closing && !state.requests.has_queued() {
812 return Poll::Ready(Err(Error::Closed));
813 }
814
815 let name = state.requests.pop().expect("predicate guaranteed a request");
816 let pending = state.requests.remove(&name).expect("popped key must be pending");
817 // Cache the served track so concurrent lookups coalesce onto it. If a live track already
818 // holds the name (a publish raced the request), `insert` keeps it rather than shadowing it.
819 let _ = state.tracks.insert(name, pending.weak());
820 // Attribute the served track to this broadcast's ingress scope (no-op untagged).
821 Poll::Ready(Ok(pending.with_stats(self.stats.clone())))
822 }
823
824 /// Block until a consumer requests a track, returning a [`track::Request`] to serve.
825 pub async fn requested_track(&mut self) -> Result<track::Request, Error> {
826 kio::wait(|waiter| self.poll_requested_track(waiter)).await
827 }
828
829 /// Create a consumer that can subscribe to tracks in this broadcast.
830 pub fn consume(&self) -> Consumer {
831 Consumer {
832 info: self.info.clone(),
833 alive: self.alive.token.consume(),
834 state: self.state.clone(),
835 route_seen: None,
836 routes_seen: None,
837 stats: stats::Scope::default(),
838 exclusion: None,
839 }
840 }
841
842 /// Block until the broadcast is closed, by [`Producer::finish`],
843 /// [`Producer::abort`], or every producer dropping, returning the cause.
844 pub async fn closed(&self) -> Error {
845 kio::wait(|waiter| self.poll_closed(waiter)).await
846 }
847
848 /// Poll until the broadcast closes; ready with the cause: the error passed to
849 /// [`Producer::abort`], or [`Error::Dropped`] for a [`Producer::finish`] or a
850 /// dropped producer (check [`Consumer::is_finished`] to tell those apart).
851 pub fn poll_closed(&self, waiter: &kio::Waiter) -> Poll<Error> {
852 ready!(self.alive.token.poll_closed(waiter));
853 Poll::Ready(self.state.read().abort.clone().unwrap_or(Error::Dropped))
854 }
855
856 /// Return true if this is the same broadcast instance.
857 pub fn is_clone(&self, other: &Self) -> bool {
858 self.state.same_channel(&other.state)
859 }
860}
861
862impl Drop for Dynamic {
863 fn drop(&mut self) {
864 // Decrement and reject under one lock, so a `track` call that saw a live
865 // handler through the same lock can't slip a request past the rejection.
866 let mut state = self.state.lock();
867 if state.requests.remove_handler() {
868 // No handlers left to fulfill pending requests; reject them so consumers
869 // don't block forever on tracks nobody will serve.
870 for request in state.requests.drain_queued() {
871 request.reject(Error::Dropped);
872 }
873 }
874 }
875}
876
877#[cfg(test)]
878use futures::FutureExt;
879
880#[cfg(test)]
881#[allow(missing_docs)] // test-only assertion helpers
882impl Dynamic {
883 pub fn assert_request(&mut self) -> track::Request {
884 self.requested_track()
885 .now_or_never()
886 .expect("should not have blocked")
887 .expect("should not have errored")
888 }
889
890 pub fn assert_no_request(&mut self) {
891 assert!(self.requested_track().now_or_never().is_none(), "should have blocked");
892 }
893}
894
895/// Subscribe to arbitrary broadcast/tracks.
896pub struct Consumer {
897 info: Arc<Info>,
898 // Broadcast liveness (read-only): watched for close.
899 alive: kio::Consumer<()>,
900 // Track registry plus request queue; `track()` reads the registry and enqueues requests.
901 state: kio::Shared<BroadcastState>,
902 // The route epoch last yielded by `route_changed`, so each consumer clone
903 // observes the current route first and every change after it exactly once.
904 route_seen: Option<u64>,
905 // Same cursor for the full route table (`routes_changed`), tracked separately
906 // because the table can change without the active route moving.
907 routes_seen: Option<u64>,
908 // Egress stats scope, set by a tagged `origin::Consumer` at the broadcast
909 // handoff. Inherited by the tracks subscribed through this handle. Empty (no-op)
910 // for an untagged broadcast.
911 stats: stats::Scope,
912 // Keeps the origin's front off routes that flow back through the peer this
913 // handle was resolved for, released when the last clone drops. Only set on the
914 // shared front of a route-fed broadcast, and only for a peer that declared an
915 // origin; `None` everywhere else.
916 exclusion: Option<Arc<super::origin_impl::ExclusionGuard>>,
917}
918
919impl Clone for Consumer {
920 fn clone(&self) -> Self {
921 Self {
922 info: self.info.clone(),
923 alive: self.alive.clone(),
924 state: self.state.clone(),
925 // Reset the cursor so the clone observes the current route first,
926 // even if the original already drained `route_changed`.
927 route_seen: None,
928 routes_seen: None,
929 stats: self.stats.clone(),
930 exclusion: self.exclusion.clone(),
931 }
932 }
933}
934
935impl Consumer {
936 /// Attach the guard that keeps the origin's front off routes flowing back
937 /// through the peer this handle was resolved for. Set once, at the origin's
938 /// broadcast handoff; the guard is shared by every clone of this handle.
939 pub(crate) fn with_exclusion(mut self, guard: Arc<super::origin_impl::ExclusionGuard>) -> Self {
940 self.exclusion = Some(guard);
941 self
942 }
943
944 /// Attach an egress stats scope, inherited by the tracks subscribed through this
945 /// handle. Set by a tagged `origin::Consumer` at the broadcast handoff.
946 pub(crate) fn with_stats(mut self, scope: stats::Scope) -> Self {
947 self.stats = scope;
948 self
949 }
950
951 /// The broadcast's static metadata, fixed when it was created.
952 pub fn info(&self) -> &Info {
953 &self.info
954 }
955
956 /// The [`Route`] the broadcast currently takes to reach this origin.
957 pub fn route(&self) -> Route {
958 self.state.read().route.clone()
959 }
960
961 /// Poll for a route change. See [`Self::route_changed`].
962 pub fn poll_route_changed(&mut self, waiter: &kio::Waiter) -> Poll<Result<Route, Error>> {
963 let seen = self.route_seen;
964 if let Poll::Ready(state) = self.state.poll(waiter, |state| {
965 if seen != Some(state.route_epoch) {
966 Poll::Ready(())
967 } else {
968 Poll::Pending
969 }
970 }) {
971 self.route_seen = Some(state.route_epoch);
972 return Poll::Ready(Ok(state.route.clone()));
973 }
974 // No pending change: surface the broadcast's end instead of parking forever.
975 ready!(self.alive.poll_closed(waiter));
976 Poll::Ready(Err(Error::Dropped))
977 }
978
979 /// Wait for the broadcast's [`Route`] to change.
980 ///
981 /// The first call returns the current route immediately; each later call blocks
982 /// until it changes again, so a loop observes the initial value followed by
983 /// every update. Returns [`Error::Dropped`] once every producer is gone.
984 pub async fn route_changed(&mut self) -> Result<Route, Error> {
985 kio::wait(|waiter| self.poll_route_changed(waiter)).await
986 }
987
988 /// Every route currently attached at this path, in preference order with the
989 /// serving (active) route first. An ordinary broadcast holds just its own
990 /// route; a route-fed one mirrors the origin's source table so sessions can
991 /// advertise a different route per peer.
992 pub(crate) fn routes(&self) -> Vec<Route> {
993 self.state.read().routes.clone()
994 }
995
996 /// Poll for any change to the route table, including ones that leave the
997 /// active route untouched (a standby attaching, detaching, or repricing).
998 /// The first call is ready immediately; read the table with [`Self::routes`].
999 pub(crate) fn poll_routes_changed(&mut self, waiter: &kio::Waiter) -> Poll<Result<(), Error>> {
1000 let seen = self.routes_seen;
1001 if let Poll::Ready(state) = self.state.poll(waiter, |state| {
1002 if seen != Some(state.routes_epoch) {
1003 Poll::Ready(())
1004 } else {
1005 Poll::Pending
1006 }
1007 }) {
1008 self.routes_seen = Some(state.routes_epoch);
1009 return Poll::Ready(Ok(()));
1010 }
1011 // No pending change: surface the broadcast's end instead of parking forever.
1012 ready!(self.alive.poll_closed(waiter));
1013 Poll::Ready(Err(Error::Dropped))
1014 }
1015
1016 /// Get a handle to a track on this broadcast.
1017 pub fn track(&self, name: &str) -> Result<track::Consumer, Error> {
1018 // Tag the resolved track with this broadcast's egress scope so its
1019 // subscriptions, fetches, and groups are attributed to the same broadcast.
1020 self.track_inner(name).map(|track| track.with_stats(self.stats.clone()))
1021 }
1022
1023 fn track_inner(&self, name: &str) -> Result<track::Consumer, Error> {
1024 // A closed broadcast (every producer and handler gone) serves nothing.
1025 if self.is_closed() {
1026 return Err(Error::Dropped);
1027 }
1028
1029 let mut state = self.state.lock();
1030
1031 // A route-fed broadcast mints spliced logical tracks: they outlive any
1032 // session, and a route is asked (via the pending queue) to start serving.
1033 let closing = state.closing;
1034 if let Some(spliced) = state.spliced.as_mut() {
1035 // An aborted logical track is a verdict from the sources attached at
1036 // the time, not a property of the name: a publisher that had not yet
1037 // created the track may have it now. Drop it so this request reaches a
1038 // source again, exactly as the plain lookup below reclaims a closed
1039 // entry. A *finished* one stays, since its cache is still readable.
1040 //
1041 // So a name, once finished, never comes back here: a publisher that
1042 // finishes a track and publishes it again is serving new content, not
1043 // resuming this one, and a subscriber has to re-read the catalog and
1044 // re-initialize rather than be spliced onto it. Resuming the same
1045 // content across routes is the transparent case, and that is what
1046 // `resume::Producer` already does. Publish new content under a new
1047 // name.
1048 if spliced.tracks.get(name).is_some_and(|track| track.is_aborted()) {
1049 spliced.tracks.remove(name);
1050 }
1051 if let Some(producer) = spliced.tracks.get(name) {
1052 return Ok(track::Consumer::spliced(name.into(), producer.consume()));
1053 }
1054 // A deliberately-ended broadcast serves nothing new; nothing drains the
1055 // pending queue once the front is torn down.
1056 if closing {
1057 return Err(Error::NotFound);
1058 }
1059 let name: Arc<str> = name.into();
1060 let producer = super::resume::Producer::new();
1061 let consumer = producer.consume();
1062 spliced.tracks.insert(name.clone(), producer);
1063 spliced.pending.push_back(name.clone());
1064 return Ok(track::Consumer::spliced(name, consumer));
1065 }
1066
1067 // Reuse a live producer if one is already publishing the track. `get` drops a
1068 // closed entry and returns `None`, so we fall through to a fresh request.
1069 if let Some(weak) = state.tracks.get(name) {
1070 return Ok(weak.consume());
1071 }
1072
1073 if let Some(pending) = state.requests.join(name) {
1074 // Coalesce onto a queued request for the same name.
1075 return Ok(pending.consume());
1076 }
1077
1078 // A deliberately-ended broadcast serves nothing new; existing tracks above
1079 // stay readable so consumers can drain the cache.
1080 if state.closing {
1081 return Err(Error::NotFound);
1082 }
1083
1084 // Allocate the name once and share the same Arc across the request, the
1085 // requests map, and the FIFO order. The request inherits the broadcast's
1086 // cache pool through its `Arc<Info>`, same as a producer-created track.
1087 let name: Arc<str> = name.into();
1088 let request = track::Request::new(self.info.clone(), name.clone());
1089 let consumer = request.consume();
1090
1091 // With no handler alive to serve it, the request is dropped: `NotFound` beats
1092 // handing back a consumer that would only resolve `Dropped`.
1093 if state.requests.insert(name, request).is_err() {
1094 return Err(Error::NotFound);
1095 }
1096
1097 Ok(consumer)
1098 }
1099
1100 /// A watch-only handle to the broadcast's demand. See [`Demand`].
1101 ///
1102 /// The consumer-side sibling of [`Producer::demand`], for a holder that has
1103 /// only a read handle: a relay pulling a broadcast from upstream owns no
1104 /// producer for it (the ingesting session does), yet the question it has to
1105 /// answer is whether anything downstream is still reading. Holding this
1106 /// handle, or the [`Consumer`] it came from, is not itself demand.
1107 ///
1108 /// Two endings a caller has to tell apart. Demand going away is
1109 /// [`Demand::unused`] resolving, and means nobody downstream is reading.
1110 /// The broadcast going away is [`Error::Dropped`], and here that is the
1111 /// upstream producer, not the readers.
1112 pub fn demand(&self) -> Demand {
1113 Demand {
1114 alive: self.alive.weak(),
1115 state: self.state.clone(),
1116 }
1117 }
1118
1119 /// Block until the broadcast is closed, by [`Producer::finish`],
1120 /// [`Producer::abort`], or every producer dropping, and return the cause.
1121 ///
1122 /// Returns the error passed to [`Producer::abort`], or [`Error::Dropped`] for a
1123 /// [`Producer::finish`] or a dropped producer (check [`Self::is_finished`] to
1124 /// tell those apart).
1125 pub async fn closed(&self) -> Error {
1126 self.alive.closed().await;
1127 self.state.read().abort.clone().unwrap_or(Error::Dropped)
1128 }
1129
1130 /// Returns true if every [`Producer`] has been dropped.
1131 pub fn is_closed(&self) -> bool {
1132 self.alive.is_closed()
1133 }
1134
1135 /// Whether the broadcast is on its way out: deliberately ended (finish/abort
1136 /// marked, even while handles remain) or already fully closed. The origin's
1137 /// dispatcher treats a rejection from such a source as imminent detach rather
1138 /// than a strike.
1139 pub(crate) fn is_closing(&self) -> bool {
1140 self.is_closed() || self.state.read().closing
1141 }
1142
1143 /// Whether the broadcast ended via a deliberate [`Producer::finish`], as opposed
1144 /// to aborting or losing its producer. `false` while the broadcast is still live;
1145 /// an origin uses this to close a front immediately on a deliberate end instead
1146 /// of lingering for a replacement.
1147 pub fn is_finished(&self) -> bool {
1148 self.state.read().finished
1149 }
1150
1151 /// Register a [`kio::Waiter`] that fires when the broadcast closes.
1152 ///
1153 /// Returns [`Poll::Ready`] if already closed, otherwise [`Poll::Pending`] after
1154 /// arming the waiter. Useful for composing close-detection into a larger poll
1155 /// without spawning a task per broadcast.
1156 pub fn poll_closed(&self, waiter: &kio::Waiter) -> Poll<()> {
1157 self.alive.poll_closed(waiter)
1158 }
1159
1160 /// Check if this is the exact same instance of a broadcast.
1161 pub fn is_clone(&self, other: &Self) -> bool {
1162 self.state.same_channel(&other.state)
1163 }
1164
1165 /// Create a weak reference that doesn't keep the broadcast alive.
1166 ///
1167 /// Used to deduplicate dynamically-served broadcasts in the origin: a live weak yields
1168 /// a shared clone, a closed one is discarded so the next request re-serves.
1169 pub(crate) fn weak(&self) -> WeakConsumer {
1170 WeakConsumer {
1171 info: self.info.clone(),
1172 alive: self.alive.weak(),
1173 state: self.state.clone(),
1174 }
1175 }
1176}
1177
1178/// A weak reference to a broadcast that doesn't prevent it from closing.
1179///
1180/// Mirrors [`track::TrackWeak`]: held by the origin's dynamic cache to share one
1181/// dynamically-served broadcast across repeat requests without pinning it alive.
1182/// Only the `alive` handle needs to be weak; a [`kio::Shared`] carries no liveness,
1183/// so holding the state outright pins nothing.
1184#[derive(Clone)]
1185pub(crate) struct WeakConsumer {
1186 info: Arc<Info>,
1187 alive: kio::ConsumerWeak<()>,
1188 state: kio::Shared<BroadcastState>,
1189}
1190
1191impl WeakConsumer {
1192 /// Upgrade to a full [`Consumer`] sharing the same broadcast state.
1193 pub fn consume(&self) -> Consumer {
1194 Consumer {
1195 info: self.info.clone(),
1196 alive: self.alive.consume(),
1197 state: self.state.clone(),
1198 route_seen: None,
1199 routes_seen: None,
1200 stats: stats::Scope::default(),
1201 exclusion: None,
1202 }
1203 }
1204}
1205
1206impl super::WeakEntry for WeakConsumer {
1207 fn is_closed(&self) -> bool {
1208 self.alive.is_closed()
1209 }
1210
1211 fn same_channel(&self, other: &Self) -> bool {
1212 self.state.same_channel(&other.state)
1213 }
1214}
1215
1216/// A cloneable, watch-only handle to a broadcast's subscriber demand.
1217///
1218/// Obtained from [`Producer::demand`] or [`Consumer::demand`]; the broadcast-level
1219/// sibling of [`track::Demand`](crate::track::Demand). Demand means live interest in the
1220/// broadcast's content: a subscribed spliced track on a route-fed broadcast, or
1221/// a pending track request / a consumed track on an ordinary one. A publisher
1222/// uses it to run expensive work only while someone is watching, and routing
1223/// uses it to advertise a warm copy at zero cost.
1224///
1225/// It's a weak handle: it neither keeps the broadcast alive nor counts as
1226/// demand itself. Once every producer is gone, [`used`](Self::used) /
1227/// [`unused`](Self::unused) return [`Error::Dropped`].
1228#[derive(Clone)]
1229pub struct Demand {
1230 alive: kio::ConsumerWeak<()>,
1231 state: kio::Shared<BroadcastState>,
1232}
1233
1234impl Demand {
1235 /// Whether the broadcast has live demand right now.
1236 ///
1237 /// A point-in-time snapshot with no registration; use [`Self::used`] /
1238 /// [`Self::unused`] (or their `poll_*` forms) to wait for the edge.
1239 pub fn is_used(&self) -> bool {
1240 self.state.read().is_used()
1241 }
1242
1243 /// Block until the broadcast has demand. Resolves immediately if it already
1244 /// does; returns [`Error::Dropped`] once every producer is gone.
1245 pub async fn used(&self) -> Result<(), Error> {
1246 kio::wait(|waiter| self.poll_used(waiter)).await
1247 }
1248
1249 /// Block until the broadcast has no demand. Resolves immediately if it has
1250 /// none; returns [`Error::Dropped`] once every producer is gone.
1251 pub async fn unused(&self) -> Result<(), Error> {
1252 kio::wait(|waiter| self.poll_unused(waiter)).await
1253 }
1254
1255 /// Poll-based variant of [`Self::used`].
1256 pub fn poll_used(&self, waiter: &kio::Waiter) -> Poll<Result<(), Error>> {
1257 self.poll_demand(waiter, true)
1258 }
1259
1260 /// Poll-based variant of [`Self::unused`].
1261 pub fn poll_unused(&self, waiter: &kio::Waiter) -> Poll<Result<(), Error>> {
1262 self.poll_demand(waiter, false)
1263 }
1264
1265 fn poll_demand(&self, waiter: &kio::Waiter, want: bool) -> Poll<Result<(), Error>> {
1266 // Closure is checked first, matching `track::Demand`: a dead broadcast
1267 // reports Dropped rather than pretending to answer.
1268 if self.alive.poll_closed(waiter).is_ready() {
1269 return Poll::Ready(Err(Error::Dropped));
1270 }
1271 let ready = self.state.poll(waiter, |state| {
1272 // The consumer counts live on the per-track channels, whose flips
1273 // don't write this state: park on those channels too so the edge
1274 // wakes us, then recompute here.
1275 state.register_demand(waiter, want);
1276 match state.is_used() == want {
1277 true => Poll::Ready(()),
1278 false => Poll::Pending,
1279 }
1280 });
1281 match ready {
1282 Poll::Ready(_) => Poll::Ready(Ok(())),
1283 Poll::Pending => Poll::Pending,
1284 }
1285 }
1286}
1287
1288#[cfg(test)]
1289#[allow(missing_docs)] // test-only assertion helpers
1290impl Consumer {
1291 pub fn assert_not_closed(&self) {
1292 assert!(self.closed().now_or_never().is_none(), "should not be closed");
1293 }
1294
1295 pub fn assert_closed(&self) {
1296 assert!(self.closed().now_or_never().is_some(), "should be closed");
1297 }
1298}
1299
1300#[cfg(test)]
1301mod test {
1302 use super::*;
1303
1304 /// Await with a timeout so a missed demand wake fails the test instead of
1305 /// hanging it (time is paused, so the timeout fires instantly when idle).
1306 async fn expect<T>(fut: impl Future<Output = T>) -> T {
1307 tokio::time::timeout(std::time::Duration::from_secs(1), fut)
1308 .await
1309 .expect("timed out waiting for a demand edge")
1310 }
1311
1312 /// Demand on an ordinary broadcast tracks subscriber interest, not
1313 /// production: a live track producer alone is unused, a consumed track is
1314 /// used, and both edges wake parked waiters.
1315 #[tokio::test]
1316 async fn demand_ordinary() {
1317 tokio::time::pause();
1318
1319 let mut producer = Info::new().produce();
1320 let consumer = producer.consume();
1321 let demand = producer.demand();
1322
1323 // No demand yet; `unused` resolves immediately.
1324 assert!(!demand.is_used());
1325 demand.unused().await.unwrap();
1326
1327 // Producing alone is not demand.
1328 let _track = producer.create_track("a", None).unwrap();
1329 assert!(!demand.is_used());
1330
1331 // A consumer appearing wakes a parked `used`.
1332 let (used, handle) = tokio::join!(expect(demand.used()), async { consumer.track("a").unwrap() });
1333 used.unwrap();
1334 assert!(demand.is_used());
1335
1336 // The last consumer dropping wakes a parked `unused`.
1337 let (unused, ()) = tokio::join!(expect(demand.unused()), async { drop(handle) });
1338 unused.unwrap();
1339 assert!(!demand.is_used());
1340
1341 // Every producer gone: both edges report the closure.
1342 producer.finish();
1343 assert!(matches!(demand.used().await, Err(Error::Dropped)));
1344 assert!(matches!(demand.unused().await, Err(Error::Dropped)));
1345 }
1346
1347 /// Demand on a spliced (route-fed) broadcast follows the logical tracks'
1348 /// consumers, which is what flips a relay's advertised cost.
1349 #[tokio::test]
1350 async fn demand_spliced() {
1351 tokio::time::pause();
1352
1353 let producer = Producer::new_spliced(Info::new());
1354 let consumer = producer.consume();
1355 let demand = producer.demand();
1356 // The read handle answers the same question, which is all a relay
1357 // holding a pulled broadcast has.
1358 let watched = consumer.demand();
1359
1360 assert!(!demand.is_used());
1361 assert!(!watched.is_used());
1362 let track = consumer.track("video").unwrap();
1363 assert!(demand.is_used());
1364 assert!(watched.is_used());
1365
1366 // Dropping the only consumer wakes a parked `unused`, even though the
1367 // logical track itself stays cached in the broadcast. Parked on the read
1368 // handle: that edge is what tells a relay its pull has no readers left.
1369 let (unused, ()) = tokio::join!(expect(watched.unused()), async { drop(track) });
1370 unused.unwrap();
1371 assert!(!demand.is_used());
1372 assert!(!watched.is_used());
1373
1374 // A repeat consumer for the cached track counts again.
1375 let _track = consumer.track("video").unwrap();
1376 assert!(demand.is_used());
1377 }
1378
1379 /// A read handle's demand reports the producer going away as `Dropped`,
1380 /// distinct from its readers going away.
1381 ///
1382 /// The distinction a relay has to act on: no readers means stop pulling,
1383 /// while an upstream that vanished means the pull is over. Both arrive on
1384 /// the same handle, so the two have to be told apart by their result rather
1385 /// than by which one resolved.
1386 #[tokio::test]
1387 async fn a_read_handle_reports_a_dropped_producer_apart_from_lost_demand() {
1388 let producer = Producer::new_spliced(Info::new());
1389 let consumer = producer.consume();
1390 let watched = consumer.demand();
1391
1392 let track = consumer.track("video").unwrap();
1393 assert!(watched.is_used());
1394
1395 // Readers go, the broadcast stays: demand ends, and the handle keeps
1396 // answering.
1397 let (unused, ()) = tokio::join!(expect(watched.unused()), async { drop(track) });
1398 unused.unwrap();
1399
1400 // The producer goes: the same handle now refuses rather than reporting
1401 // no demand, which is what stops a relay retrying a pull that has no
1402 // source left.
1403 drop(producer);
1404 assert!(matches!(watched.used().await, Err(Error::Dropped)));
1405 assert!(matches!(watched.unused().await, Err(Error::Dropped)));
1406 }
1407
1408 /// Subscribe and assert the result hasn't resolved yet (it stays pending until
1409 /// a publisher accepts). Returns the pending subscription to resolve after accepting.
1410 macro_rules! subscribe_pending {
1411 ($consumer:expr, $name:expr) => {{
1412 let pending = $consumer.track($name).unwrap().subscribe(None);
1413 assert!(
1414 pending.poll_ok(&kio::Waiter::noop()).is_pending(),
1415 "subscribe should stay pending until the request is accepted"
1416 );
1417 pending
1418 }};
1419 }
1420
1421 #[tokio::test]
1422 async fn insert() {
1423 let mut producer = Info::new().produce();
1424
1425 // Create the track before any consumer exists.
1426 let mut track1 = producer.assert_create_track("track1", None);
1427 track1.append_group().unwrap();
1428
1429 let consumer = producer.consume();
1430
1431 // The track already exists, so subscribe resolves immediately.
1432 let mut track1_sub = consumer.track("track1").unwrap().subscribe(None).await.unwrap();
1433 track1_sub.assert_group();
1434
1435 let mut track2 = producer.assert_create_track("track2", None);
1436
1437 let consumer2 = producer.consume();
1438 let mut track2_consumer = consumer2.track("track2").unwrap().subscribe(None).await.unwrap();
1439 track2_consumer.assert_no_group();
1440
1441 track2.append_group().unwrap();
1442
1443 track2_consumer.assert_group();
1444 }
1445
1446 #[tokio::test]
1447 async fn closed() {
1448 let mut producer = Info::new().produce();
1449 let dynamic = producer.dynamic();
1450
1451 let consumer = producer.consume();
1452 consumer.assert_not_closed();
1453
1454 // Create a new track and insert it into the broadcast (resolves immediately).
1455 let track1 = producer.assert_create_track("track1", None);
1456 let mut track1c = consumer.track("track1").unwrap().subscribe(None).await.unwrap();
1457
1458 // A track nobody publishes stays pending until accepted.
1459 let track2_fut = subscribe_pending!(consumer, "track2");
1460
1461 // Dropping the last dynamic handler rejects pending requests, but must NOT
1462 // cascade to externally-owned tracks.
1463 drop(dynamic);
1464
1465 // track2 was a pending dynamic request, so its subscribe surfaces the rejection.
1466 assert!(track2_fut.await.is_err());
1467
1468 // track1's producer is held outside the broadcast, so it survives.
1469 assert!(!track1.is_closed());
1470 track1c.assert_not_closed();
1471 }
1472
1473 /// `closed()` reports the cause: the abort error, or `Dropped` for a finish or
1474 /// a dropped producer, with `is_finished` telling the latter two apart.
1475 #[tokio::test]
1476 async fn closed_cause() {
1477 // Abort: the error comes through, and it isn't a finish.
1478 let producer = Info::new().produce();
1479 let consumer = producer.consume();
1480 producer.abort(Error::Timeout).unwrap();
1481 assert!(matches!(consumer.closed().await, Error::Timeout));
1482 assert!(!consumer.is_finished());
1483
1484 // Finish: a deliberate clean end.
1485 let mut producer = Info::new().produce();
1486 let consumer = producer.consume();
1487 producer.finish();
1488 assert!(matches!(consumer.closed().await, Error::Dropped));
1489 assert!(consumer.is_finished());
1490
1491 // Plain drop: neither aborted nor finished.
1492 let producer = Info::new().produce();
1493 let consumer = producer.consume();
1494 // Deliberate for the test: exercises the accidental-drop path (warns).
1495 drop(producer);
1496 assert!(matches!(consumer.closed().await, Error::Dropped));
1497 assert!(!consumer.is_finished());
1498 }
1499
1500 #[tokio::test]
1501 async fn requests() {
1502 let mut producer = Info::new().produce().dynamic();
1503
1504 let consumer = producer.consume();
1505 let consumer2 = consumer.clone();
1506
1507 // Two subscribers to the same name coalesce into one request.
1508 let track1_fut = subscribe_pending!(consumer, "track1");
1509 let track2_fut = subscribe_pending!(consumer2, "track1");
1510
1511 // There should be exactly one request to serve.
1512 let request = producer.assert_request();
1513 producer.assert_no_request();
1514 assert_eq!(request.name(), "track1");
1515
1516 // Accept it, which resolves both waiting subscribers.
1517 let mut track3 = request.accept(None);
1518 let mut track1 = track1_fut.await.unwrap();
1519 let mut track2 = track2_fut.await.unwrap();
1520
1521 track1.assert_not_closed();
1522 track1.assert_is_clone(&track2);
1523 track3.subscribe(None).assert_is_clone(&track1);
1524
1525 // Append a group and make sure they all get it.
1526 track3.append_group().unwrap();
1527 track1.assert_group();
1528 track2.assert_group();
1529
1530 // A pending request is cancelled when the dynamic producer is dropped.
1531 let track4_fut = subscribe_pending!(consumer, "track2");
1532 drop(producer);
1533 assert!(track4_fut.await.is_err());
1534
1535 // With no dynamic producer left, requesting the handle fails outright.
1536 let track5 = consumer2.track("track3");
1537 assert!(track5.is_err(), "should have errored");
1538 }
1539
1540 #[tokio::test]
1541 async fn stale_producer() {
1542 let mut broadcast = Info::new().produce().dynamic();
1543 let consumer = broadcast.consume();
1544
1545 // Subscribe to a track and serve it.
1546 let track1_fut = subscribe_pending!(consumer, "track1");
1547 let mut producer1 = broadcast.assert_request().accept(None);
1548 let mut track1 = track1_fut.await.unwrap();
1549
1550 // Close the producer (simulating publisher disconnect).
1551 producer1.append_group().unwrap();
1552 producer1.finish().unwrap();
1553 drop(producer1);
1554
1555 // The consumer should see the track as closed.
1556 track1.assert_closed();
1557
1558 // Subscribe again to the same track: should get a NEW producer, not the stale one.
1559 let track2_fut = subscribe_pending!(consumer, "track1");
1560 let mut producer2 = broadcast.assert_request().accept(None);
1561 let mut track2 = track2_fut.await.unwrap();
1562 track2.assert_not_closed();
1563 track2.assert_not_clone(&track1);
1564
1565 // The new consumer should receive the new group.
1566 producer2.append_group().unwrap();
1567 track2.assert_group();
1568 }
1569
1570 #[tokio::test(start_paused = true)]
1571 async fn requested_unused() {
1572 let mut broadcast = Info::new().produce().dynamic();
1573 let bc = broadcast.consume();
1574
1575 // Subscribe to a track that doesn't exist yet, then serve it.
1576 let c1_fut = subscribe_pending!(bc, "unknown_track");
1577 let producer1 = broadcast.assert_request().accept(None);
1578 let consumer1 = c1_fut.await.unwrap();
1579
1580 // The producer should NOT be unused yet because there's a consumer.
1581 assert!(
1582 producer1.unused().now_or_never().is_none(),
1583 "track producer should be used"
1584 );
1585
1586 // A second subscriber reuses the live producer (fast path / dedup).
1587 let consumer2 = bc.track("unknown_track").unwrap().subscribe(None).await.unwrap();
1588 consumer2.assert_is_clone(&consumer1);
1589
1590 drop(consumer1);
1591 assert!(
1592 producer1.unused().now_or_never().is_none(),
1593 "track producer should be used"
1594 );
1595
1596 drop(consumer2);
1597 assert!(
1598 producer1.unused().now_or_never().is_some(),
1599 "track producer should be unused after all consumers are dropped"
1600 );
1601
1602 // While the producer is still alive, re-subscribing to the same name reuses
1603 // it (no new request). This is what lets the relay linger upstream
1604 // subscriptions across transient consumer churn.
1605 let consumer3 = bc.track("unknown_track").unwrap().subscribe(None).await.unwrap();
1606 consumer3.assert_is_clone(&producer1.subscribe(None));
1607 broadcast.assert_no_request();
1608 drop(consumer3);
1609
1610 // Aborting the producer closes its lookup entry; the next subscribe sees the
1611 // stale weak, evicts it, and creates a fresh request.
1612 producer1.abort(Error::Cancel).unwrap();
1613
1614 let c4_fut = subscribe_pending!(bc, "unknown_track");
1615 let producer2 = broadcast.assert_request().accept(None);
1616 let consumer4 = c4_fut.await.unwrap();
1617 drop(consumer4);
1618 assert!(
1619 producer2.unused().now_or_never().is_some(),
1620 "new track producer should be unused after its consumer is dropped"
1621 );
1622 }
1623
1624 /// Creating a track a consumer already requested fulfills that request: the
1625 /// waiting subscriber resolves against the created producer, and no handler
1626 /// ever sees the (now-taken) name. Without this the requester is stranded:
1627 /// the name exists the moment the track does, so the queue entry could
1628 /// never be served under it.
1629 #[tokio::test]
1630 async fn create_track_fulfills_queued_request() {
1631 let mut producer = Info::new().produce();
1632 let mut dynamic = producer.dynamic();
1633 let bc = dynamic.consume();
1634
1635 // Queue a request for a track that doesn't exist yet.
1636 let subscribing = subscribe_pending!(bc, "video");
1637
1638 // The producer creates the track before any handler drains the queue.
1639 let mut track = producer.create_track("video", None).unwrap();
1640 let mut sub = subscribing.await.expect("fulfilled by create_track");
1641
1642 // The fulfilled subscription is live against this very producer.
1643 track.append_group().unwrap();
1644 sub.recv_group().await.expect("recv").expect("group");
1645
1646 // The handler never sees the request; a fresh subscribe reuses the track.
1647 dynamic.assert_no_request();
1648 let again = bc.track("video").unwrap().subscribe(None).await.unwrap();
1649 again.assert_is_clone(&track.subscribe(None));
1650 }
1651
1652 // Cloning a `Consumer` resets its route cursor: a clone that inherited the
1653 // original's `route_seen` would skip the initial-value delivery that
1654 // `route_changed` promises.
1655 #[tokio::test]
1656 async fn route_clone_observes_current_route() {
1657 let mut producer = Info::new().produce();
1658 let mut consumer = producer.consume();
1659
1660 // Drain the initial route, then a change.
1661 consumer.route_changed().await.unwrap();
1662 let route = Route::new().with_cost(7);
1663 producer.set_route(route.clone()).unwrap();
1664 assert_eq!(consumer.route_changed().await.unwrap(), route);
1665
1666 // The original is fully drained: no update pending.
1667 assert!(consumer.route_changed().now_or_never().is_none());
1668
1669 // A clone starts fresh, yielding the current route immediately.
1670 let mut clone = consumer.clone();
1671 let seen = clone
1672 .route_changed()
1673 .now_or_never()
1674 .expect("clone should observe the current route immediately")
1675 .unwrap();
1676 assert_eq!(seen, route);
1677 }
1678
1679 // Cloning a `Dynamic` and dropping the clone must not flip the handler
1680 // count to zero. The relay's lite subscriber clones the
1681 // dynamic per spawned subscribe; if Clone skipped the increment, the
1682 // first finished subscribe would tear down the broadcast and any
1683 // follow-up `track` would return `NotFound`.
1684 #[tokio::test]
1685 async fn dynamic_clone_keeps_alive() {
1686 let broadcast = Info::new().produce().dynamic();
1687 let consumer = broadcast.consume();
1688
1689 let clone = broadcast.clone();
1690 drop(clone);
1691
1692 // Original handle is still live, so the request registers (stays pending)
1693 // instead of failing with NotFound.
1694 let _fut = subscribe_pending!(consumer, "track1");
1695 }
1696
1697 /// A reserved name nobody accepts is the parking case a publisher has to be able to
1698 /// end. Ending the broadcast is where it does: `Consumer::track` already answers
1699 /// `NotFound` for a name asked about after this point, so whoever asked earlier gets
1700 /// the same answer instead of waiting on info that can never arrive.
1701 #[tokio::test]
1702 async fn finish_resolves_a_reserved_name() {
1703 let mut producer = Info::new().produce();
1704 let consumer = producer.consume();
1705
1706 let _request = producer.reserve_track("track1").unwrap();
1707 let pending = subscribe_pending!(consumer, "track1");
1708
1709 producer.finish();
1710 assert!(matches!(pending.await, Err(Error::NotFound)));
1711 }
1712
1713 /// An abort says why the broadcast ended, and an unserved name resolves with that
1714 /// reason rather than a generic failure.
1715 #[tokio::test]
1716 async fn abort_resolves_a_reserved_name_with_its_reason() {
1717 let mut producer = Info::new().produce();
1718 let consumer = producer.consume();
1719
1720 let request = producer.reserve_track("track1").unwrap();
1721 let pending = subscribe_pending!(consumer, "track1");
1722
1723 producer.abort(Error::Cancel).unwrap();
1724 assert!(matches!(pending.await, Err(Error::Cancel)));
1725
1726 let track = request.accept(None);
1727 let mut subscriber = track.subscribe(None);
1728 assert!(matches!(subscriber.recv_group().await, Err(Error::Cancel)));
1729 }
1730
1731 /// A request still queued for a handler is the same parking case reached from the
1732 /// consumer side, so it ends the same way.
1733 #[tokio::test]
1734 async fn finish_resolves_a_queued_request() {
1735 let mut producer = Info::new().produce();
1736 let dynamic = producer.dynamic();
1737 let consumer = dynamic.consume();
1738
1739 let pending = subscribe_pending!(consumer, "track1");
1740
1741 producer.finish();
1742 assert!(matches!(pending.await, Err(Error::NotFound)));
1743 drop(dynamic);
1744 }
1745
1746 /// A request a handler already took parks the same way if the handler never answers
1747 /// it, so the sweep has to reach that one too.
1748 #[tokio::test]
1749 async fn finish_resolves_a_request_a_handler_never_answered() {
1750 let mut producer = Info::new().produce();
1751 let mut dynamic = producer.dynamic();
1752 let consumer = dynamic.consume();
1753
1754 let pending = subscribe_pending!(consumer, "track1");
1755 let _request = dynamic.requested_track().await.unwrap();
1756
1757 producer.finish();
1758 assert!(matches!(pending.await, Err(Error::NotFound)));
1759 drop(dynamic);
1760 }
1761
1762 /// A reverse fetch can install the track metadata before the live request is
1763 /// accepted, but it does not create a live publisher. Finishing the broadcast
1764 /// must still reject that name so an arrival-order subscriber does not park on
1765 /// backfill that is deliberately absent from its queue.
1766 #[tokio::test]
1767 async fn finish_resolves_an_unaccepted_track_with_fetched_info() {
1768 let mut producer = Info::new().produce();
1769 let consumer = producer.consume();
1770
1771 let request = producer.reserve_track("track1").unwrap();
1772 let dynamic = request.dynamic();
1773 let track = consumer.track("track1").unwrap();
1774 let pending_fetch = track.fetch_group(0, None);
1775 let fetch = dynamic.requested_group().await.unwrap();
1776 let mut group = fetch.accept(None).unwrap();
1777 group.finish().unwrap();
1778 pending_fetch.await.unwrap();
1779
1780 let mut subscriber = track.subscribe(None).await.unwrap();
1781 producer.finish();
1782 assert!(matches!(subscriber.recv_group().await, Err(Error::NotFound)));
1783
1784 let mut stale = request.accept(None);
1785 assert!(stale.append_group().is_err());
1786 }
1787
1788 /// Ending the broadcast doesn't cascade into a track someone is publishing: it keeps
1789 /// its cache and its publisher decides when it ends.
1790 #[tokio::test]
1791 async fn finish_spares_a_served_track() {
1792 let mut producer = Info::new().produce();
1793 let consumer = producer.consume();
1794
1795 let mut track = producer.create_track("track1", None).unwrap();
1796 let mut subscriber = consumer.track("track1").unwrap().subscribe(None).await.unwrap();
1797
1798 producer.finish();
1799
1800 track.append_group().unwrap();
1801 subscriber.assert_group();
1802 track.finish().unwrap();
1803 }
1804
1805 /// The publisher may still be holding the `track::Request` for a name the broadcast
1806 /// just gave up on. Accepting it afterwards must not resurrect the track, or a
1807 /// subscriber that was told `NotFound` could be contradicted by a later one.
1808 #[tokio::test]
1809 async fn finish_leaves_a_stale_reservation_inert() {
1810 let mut producer = Info::new().produce();
1811 let consumer = producer.consume();
1812
1813 let request = producer.reserve_track("track1").unwrap();
1814 let pending = subscribe_pending!(consumer, "track1");
1815
1816 producer.finish();
1817 assert!(matches!(pending.await, Err(Error::NotFound)));
1818
1819 let mut track = request.accept(None);
1820 assert!(track.append_group().is_err());
1821 let mut subscriber = track.subscribe(None);
1822 assert!(matches!(subscriber.recv_group().await, Err(Error::NotFound)));
1823 assert!(consumer.track("track1").is_err());
1824 }
1825
1826 /// Dropping a `track::Request` is not a verdict about the name, so it resolves as
1827 /// `Dropped` (a handler lost to a crashed publisher or a dead transport), never as
1828 /// `NotFound`. Only an explicit rejection may claim the track is absent.
1829 #[tokio::test]
1830 async fn dropping_a_reserved_request_resolves_dropped() {
1831 let mut producer = Info::new().produce();
1832 let consumer = producer.consume();
1833
1834 let request = producer.reserve_track("track1").unwrap();
1835 let pending = subscribe_pending!(consumer, "track1");
1836
1837 drop(request);
1838 assert!(matches!(pending.await, Err(Error::Dropped)));
1839 producer.finish();
1840 }
1841
1842 /// `track::Request::reject` carries its reason the same way, which is what lets a
1843 /// subscriber tell "no such track" from "the publisher went away".
1844 #[tokio::test]
1845 async fn rejecting_a_reserved_request_carries_the_reason() {
1846 let mut producer = Info::new().produce();
1847 let consumer = producer.consume();
1848
1849 let request = producer.reserve_track("track1").unwrap();
1850 let pending = subscribe_pending!(consumer, "track1");
1851
1852 request.reject(Error::NotFound);
1853 assert!(matches!(pending.await, Err(Error::NotFound)));
1854 producer.finish();
1855 }
1856}