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a01165365b |
feat: a saturated lane can grow itself, within the cap the operator set (4297)
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Milestone 422 step 7 — the one sweep in this milestone that decides rather than obeys, so it is off until a lane is opted in, bounded by the operator's cap, floored at the operator's value, and it reports every decision including the ones where it did nothing. Growth needs BOTH halves: all slots busy AND a backlog. Depth alone means celery is about to pick those up and growing would add idle children (#1253 is that bug in the GPU agent); saturation alone means the lane is busy with exactly as much work as exists. The backlog is depth PLUS reserved, because celery prefetches and LLEN reads 0 while a worker holds thirty tasks in memory — the case an LLEN-only autoscaler misses entirely, and the reason step 2 plumbed `reserved` through. The two sweeps had to be taught not to fight. The reconcile drives every lane to its stored slots every five minutes, which would have reverted each grow on the next tick: grow, revert, grow, revert, forever. For an autoscaling lane the stored value is now a FLOOR — restored when a lane falls below it, never taken back above it. The operator's "a task that runs for x concurrent time" idea stays a UI warning rather than a trigger: a long task does not finish sooner because the lane gained a slot, so scaling on it would spend memory to change nothing. Read from `task_run` on our own wall clock, not celery's `time_start`, which is the WORKER's monotonic clock and would produce a duration that is meaningless in the direction that matters — plausible. Caught while reading it back: the first version read the stored slots as the CURRENT pool. The autoscaler never writes that row, so every tick would have proposed floor+1 — resizing nothing, reporting `grew` anyway (a replica already past the target is issued no message and reports success), and capping the lane one slot above its floor forever while claiming otherwise. It now reads the live pool and keeps the stored value purely as the floor, and the tests fix the two to different numbers so an equal-fixture pass cannot hide it again. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01LVjrnpQjRgHdvq95rASoiR |
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84f13135ce |
feat: worker lanes become rows — slots, a settable cap, a derived ceiling (4291)
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Milestone 422 step 1. The data model the rest of the milestone reads. No
behaviour change: nothing consumes these rows yet, and every lane still boots
at its CELERY_CONCURRENCY env value.
Three numbers, not two, per the operator's distinction — the derived value is
a cap ON the cap:
slots <= slots_cap <= derived_ceiling
(live) (operator) (computed)
They can always lower their own cap; they cannot raise it past what the
container can hold. The ceiling is never stored, so a row written on a 32GB
host and later run in a 4GB container is bounded by the 4GB.
`services/worker_lanes.py` is the one place that knows the lane set.
`models/worker_lane.py` holds only what an operator may change.
Two deviations from the step as written, both deliberate:
QUEUES ARE NOT A COLUMN. The step body said the row carries its `-Q` list,
but a lane's queues are decided by celery_app's task_routes, not by
preference — an operator cannot move a backup off maintenance_long. Storing
them would create a row that can contradict the routing table, with nothing
to notice until a queue had no consumer. So queues are code, slots are data.
`test_every_routed_queue_has_a_lane_that_serves_it` reads the real routing
table and fails if a route is ever added without a lane.
ROLE_NAMES IS NOW DERIVED, not left alone. It was a hand-kept second copy of
"queue set -> display name" and had already drifted: maintenance_long is a
live lane with four task routes and a dedicated worker in the operator's
stack, and the roster did not know its name — so the System tab labelled it
`Worker (maintenance_long)`. Adding a lane table beside it would have made
three copies.
The ceiling honours cgroup limits rather than the host's. `os.cpu_count()`
reports the HOST's cores from inside a container, so a 4-core quota on a
32-core host would otherwise offer 32 slots — and the operator's own stack
sets `cpus: '4.0'` on ml-worker, so that is real configuration, not a
hypothetical. Memory reads cgroup v2 then v1, and recognises v1's
PAGE_SIZE-aligned LONG_MAX sentinel by magnitude rather than treating it as
petabytes.
Every uncertain case fails LOW. An unreadable limit yields UNKNOWN_CEILING,
never unlimited — not knowing how much memory there is must not read as
plenty. A box too small to hold one model beside the web process gets an ML
ceiling of 0 rather than a floor of 1: offering a slot that OOMs the
container the first time it is used is exactly what this exists to prevent.
ML_BYTES_PER_SLOT is 4 GiB and is UNMEASURED — flagged as such in the code,
with the method for replacing it with a real figure. It decides whether a
stranger's server survives enabling tagging, so it errs toward refusing a
slot that would have fitted.
Seeded one-of-each with ml at 0 and disabled (alembic 0103). ML off is step
6's requirement arriving early: enabling the lane is what triggers the SigLIP
download, and rule 164 permits a runtime fetch only for a feature that is
optional and clearly off. The seed values are literals rather than an import
of LANES — a migration is a statement about one moment, and importing the
live defaults would silently change what this revision does on a fresh
database in 2027.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01LVjrnpQjRgHdvq95rASoiR
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