Compare commits
1 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 2dff4b84a4 |
@@ -0,0 +1,96 @@
|
|||||||
|
# Audit: async ticket / rendezvous lifecycle (`fleetd/src/main/java/dev/ltms/fleet/msg/`)
|
||||||
|
|
||||||
|
Scope: `Rendezvous.java` and `MessageService.java` — the lifecycle of an async ticket
|
||||||
|
(`Task`) and a rendezvous waiter: create, send, ask, answer, resolve, timeout, abandon, prune.
|
||||||
|
|
||||||
|
## Main finding
|
||||||
|
|
||||||
|
```
|
||||||
|
1. fleetd/src/main/java/dev/ltms/fleet/msg/MessageService.java:938
|
||||||
|
2. issue: answer() completes an async ticket's future with a QUESTION outcome when the worker
|
||||||
|
asks a second fleet_ask in the same resumed turn, permanently mislabeling a live delegation
|
||||||
|
as failed and losing its real reply to fleet_poll.
|
||||||
|
3. fix: guard the finishAsyncTask(turnId, result) call at line 938 the same way sendAsync's
|
||||||
|
lambda already guards its own call (lines 999-1005): skip it when result.outcome() ==
|
||||||
|
Outcome.QUESTION, and instead re-associate the task with the new turnId (as markAsyncQuestion
|
||||||
|
does on the first ask).
|
||||||
|
4. severity: high
|
||||||
|
```
|
||||||
|
|
||||||
|
### Call sequence that reaches it
|
||||||
|
|
||||||
|
1. Lead: `fleet_send{sessionId: W, content: "task", wait:false}` → `sendAsync` creates `task1`
|
||||||
|
/ `ticket1`. Its worker thread calls `send(W, content, ASYNC_TIMEOUT_MS, onAccepted, task1)`,
|
||||||
|
which does `asyncTasksByWaiter.put(reply, task1)` (line 802) before blocking on
|
||||||
|
`reply.get()`.
|
||||||
|
2. Worker `W` calls `fleet_ask{"Q1"}` → `ask(W, "Q1", t)`. `markAsyncQuestion` finds `task1`
|
||||||
|
via `asyncTasksByWaiter`, stamps `task1.turnId = turnId1`,
|
||||||
|
`asyncTasksByTurn[turnId1] = task1`. `resolveQuestion` wakes step 1's `send()`, which returns
|
||||||
|
`Outcome.QUESTION`; `sendAsync`'s lambda sees `QUESTION` and deliberately does **not** call
|
||||||
|
`finishAsyncTask` (lines 1000-1005) — `ticket1` correctly polls `Phase.ASKING`.
|
||||||
|
3. Lead polls, sees `ASKING`, answers: `fleet_send{turnId: turnId1, content: "A1"}` →
|
||||||
|
`answer(turnId1, "A1", t)`. This opens a **new** waiter via `rendezvous.open(workerSession)`
|
||||||
|
(line 929) but — unlike `send()` — never puts it into `asyncTasksByWaiter`.
|
||||||
|
`answerAsk(turnId1, "A1")` unblocks the worker's `ask()` call.
|
||||||
|
`clearAsyncQuestion(turnId1, false)` clears `task1.question` but keeps
|
||||||
|
`asyncTasksByTurn[turnId1] = task1` (deliberate, per its own javadoc). `answer()` then blocks
|
||||||
|
on its own `reply.get()` (line 936).
|
||||||
|
4. Worker `W`, still in the same resumed turn, calls `fleet_ask{"Q2"}` again before replying →
|
||||||
|
a second `ask(W, "Q2", t)`. `openAsk` mints `turnId2`. `markAsyncQuestion` looks up
|
||||||
|
`asyncTasksByWaiter.get(waiter)` for the waiter `answer()` opened in step 3 — **not found**
|
||||||
|
(never registered), so `task == null`; `task1.turnId` stays `turnId1`, no
|
||||||
|
`asyncTasksByTurn[turnId2]` entry is ever created. `resolveQuestion` still succeeds (it only
|
||||||
|
needs a live waiter, not a `Task`) and wakes `answer(turnId1,...)`'s blocked `reply.get()`
|
||||||
|
with `Resolution(QUESTION, "Q2", turnId2)`.
|
||||||
|
5. `answer(turnId1,...)` (line 936-939): `result = Reply(Outcome.QUESTION, "Q2", turnId2)`;
|
||||||
|
`finishAsyncTask(turnId1, result)` looks up `task1` by the **original** `turnId1` (still
|
||||||
|
stamped from step 3) and unconditionally does `task1.future.complete(result)` — completing
|
||||||
|
`ticket1`'s future with a **QUESTION** outcome, then removes `asyncTasksByTurn[turnId1]`.
|
||||||
|
`answer()` returns `Outcome.QUESTION` to the lead's own `fleet_send{turnId1,...}` call
|
||||||
|
(correct, and separately answerable via `turnId2`), but `ticket1` is now terminally done.
|
||||||
|
|
||||||
|
### What goes wrong
|
||||||
|
|
||||||
|
- `fleet_poll{ticket1}` now hits the `f.isDone()` branch in `poll()` permanently. `Outcome.QUESTION`
|
||||||
|
is not `REPLIED`/`COMPLETED_UNREPLIED` (`r.completed()` is false) and carries no
|
||||||
|
`WORKER_FAILED`/`BACKEND_EXHAUSTED` reason, so it falls through to
|
||||||
|
`Phase.FAILED`, `detail = "no reply — question"` — even though the worker is alive and only
|
||||||
|
waiting on `turnId2`.
|
||||||
|
- `asyncTasksByTurn` no longer has any entry for `task1`/`target`, so
|
||||||
|
`hasAsyncQuestion(target)` goes back to `false` immediately, and `hasOrphanedDelegation`
|
||||||
|
no longer excludes this target's real state correctly either.
|
||||||
|
- If the worker's eventual real `fleet_reply` (after `turnId2` is answered, or times out and it
|
||||||
|
finishes on its own) is not captured by a chained direct `answer(turnId2,...)` call,
|
||||||
|
`reply()`'s fast path (`rendezvous.resolve`) finds no live waiter, `askAnsweredAsyncTasks`
|
||||||
|
finds no candidate (`task1.future.isDone()` is already true, so it is excluded), and the reply
|
||||||
|
is silently dropped into the inbox as a **stranded reply** — unreachable from `ticket1` and
|
||||||
|
from `abandon()`'s stranded-reply recovery (no open `matching` task exists any more).
|
||||||
|
|
||||||
|
### Confidence
|
||||||
|
|
||||||
|
High. I traced this with no races or interleavings assumed beyond the documented, deterministic
|
||||||
|
CB-205 chained-ask protocol that `outcomeOf`/`answer()` already generically support (mapping
|
||||||
|
`Kind.QUESTION` through `answer()`'s own return value is clearly intentional — see the
|
||||||
|
`Reply.turnId()` javadoc). I did not run the suite, but grepped
|
||||||
|
`src/test/java/dev/ltms/fleet/msg/MessageServiceTest.java` for a test exercising a *second*
|
||||||
|
`fleet_ask` inside one resumed (answered) turn and found none — `asyncQuestionBelongsToTheTaskThatOwnsItsForwardWaiter`
|
||||||
|
and `askSurfacesAsAQuestionAndTheAnswerResumesTheSameTurn` both cover only a single ask per
|
||||||
|
turn. A `git log -p` on this file also turned up the CB-588 comment (now at
|
||||||
|
`sendAsync`, describing the `whenComplete` hook) which explicitly frames
|
||||||
|
`answer()`'s `finishAsyncTask(turnId, result)` as firing "once a QUESTION is resolved" —
|
||||||
|
i.e. the author modeled that call as inherently terminal, which is exactly the assumption this
|
||||||
|
bug violates when the resumed turn asks again.
|
||||||
|
|
||||||
|
## Secondary (much shorter)
|
||||||
|
|
||||||
|
1. **Root-cause detail, same defect as above** — `answer()` (line 929) never puts its freshly
|
||||||
|
opened waiter into `asyncTasksByWaiter`, unlike `send()` (line 802). Even if the outcome
|
||||||
|
guard above is added, a chained second ask still can't be re-attached to `task1` via the
|
||||||
|
normal `markAsyncQuestion` path without also fixing this registration gap.
|
||||||
|
2. **Low / shape only** — `pruneTerminalTickets()` (line ~1092) is only invoked from inside
|
||||||
|
`sendAsync()`. A fleet whose sessions stop receiving new async sends (e.g. everything now
|
||||||
|
goes through blocking `send()`, or the target churns and workers are torn down) never prunes
|
||||||
|
its already-terminal `tasks` entries past `TICKET_TTL_NANOS`. Not reachable as a "stuck"
|
||||||
|
ticket (tickets still resolve correctly), only as unbounded `tasks`/`asyncTasksByWaiter`-adjacent
|
||||||
|
memory growth over a long-lived daemon with no further `sendAsync` traffic; did not verify
|
||||||
|
this is realistic in production traffic patterns, flagging as a shape only.
|
||||||
Reference in New Issue
Block a user