d0178c64194fca23f7efcbca46efe84e9af1af3e
14 Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
| 809426ad73 |
fix(events): give a lease's ledger row a reconcile path (Phase 11b)
A lease row had no reconcile path at all, and nothing failed to say so.
`cleanup.js` resolves a resource to the action of the step that made it, and for
a lease that action is `core.lease` -- a CORE action, on a path a module cannot
register anything on. So every `override` row came back `unanswered` for the life
of the run, and a lease the shard had quietly dropped (a config lease is
memory-only there, so a restart reverts it by design) stayed in the ledger as
live until teardown went hunting a baseline nobody was holding.
`core.lease` gains a `reconcile()`, and `registerEventLeases` gains an optional
`inForce()`: "does the game side still have any record of this hold?"
Deliberately not `read()` plus a comparison. A value that differs from what the
run applied is DRIFT, which teardown must deliver through `restore()` so the row
lands `drifted` with the current value beside it; a reconcile that inferred
absence from a changed value would orphan the row first and tell the operator the
lease vanished rather than that somebody moved it. Only an explicit
`{ ok: true, held: false }` takes a row out -- a throw, a timeout, an
unrecognised shape and a lease with no `inForce()` all leave the ledger alone.
MODULE_API_VERSION stays 1.10.0, amended in place.
Co-Authored-By: Claude <noreply@anthropic.com>
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| fdc118166c |
feat(events): the resource ledger, leases and cleanup (Phase 8)
Event System Phase 8 (EVENTS_PLAN.md). Docs half: RunicGateway/docs#NNN. One table, one core action, one route, one body field, and two members added to MODULE_API 1.10.0 in place. The safety property the whole world-write half depends on: core now remembers what a run changed in the world, and gives it back on every terminal path. Four decisions settled by the org lead on 2026-09-03, all as recommended: - A lease is acquired by a new CORE action, `core.lease`. Section F puts the duration bound and the two-events-one-target conflict check on core's side of the seam, and a lease verb per module would be both re-implemented once per module, advisory everywhere. - Record-before-confirm is a PLACEHOLDER keyed by the step's idempotency key. A spawn's ref does not exist until the module answers, so what core writes before the dispatch is `kind: '@step'`, `ref` = that key. If the answer never comes it stands, and cleanup calls revert() with the key and no resources -- which is why section F's revert takes the key at all. - Cleanup is one sweep over the ledger, not synthetic step rows. The step-shaped version costs a second retry counter beside `revert_attempts`. - `reconcile` is declared here and TRIGGERED BY THE MODULE, through `ctx.events.reconcile()`. Core has no concept of the game being up, so it cannot decide when to ask; it asks once at its own boot. MODULE_API stays 1.10.0. A protocol owes a bump once it has landed on `main`; while it is on `edge` it is amended in place, so the whole module contract reaches an author as one version they read once. Verify - `npm test` -- 2025 tests, 1935 pass, 89 skipped, 1 fail. That one is the pre-existing engagementManifest CRLF failure, in a file this branch does not touch (`edge` before: 1950/1876/73/1). +75 tests. - The unique key was proved against a REAL MariaDB, because nothing else can prove it: whether multiple NULLs collide in a unique index, whether a STORED generated column is recomputed on UPDATE, and whether the SET NULL foreign key survives beside it are properties of the server. eventRunnerSql.test.js gained 16 tests; 65 pass against the container. The real schema.sql was applied to a fresh database and to an existing one. - Client: 362 pass, and it builds. routes:manifest and swagger -- one route added, none moved. The live walk found three defects, and two of them are the phase's real finding Driven by a throwaway `rig` module in website/modules/, deleted before commit. 1. A lease was never given back at all. `core.lease` reserves its own ledger row, so it never went through the ledger's dirty-marking, so a run holding only a lease kept `cleanup_status = 'not_required'` and the cleanup leg -- which selected on `pending` -- never looked at it. 2. EVENT_REVERT_MAX_ATTEMPTS meant one attempt, not three. The first failing sweep moved the run to `incomplete`, which took it out of the leg's own scan for ever. The test covering the bound asserted `<= 3` and was satisfied by 1: a bound has two halves, and a test that only asserts the ceiling passes against a floor. 3. The first fix for (2) made the console lie. Spending every row's `revert_attempts` was a tidy way to take a `cleanup: false` run out of a counter-bounded scan, and the run page then rendered "3 attempts" beside resources nothing had ever tried. Found by opening the page. Both (1) and (2) are the same mistake: deriving "is there anything to do" from a summary column instead of from the rows. Neither was visible to a unit test, because a test that calls the sweep directly never asks what would have selected the run. The two properties that need the process to die were walked as the plan asks. With the module's perform() hanging, the placeholder existed while the dispatch was in flight and nothing was named; after taskkill and a restart the reclaim re-dispatched the same idempotency key, the retry re-used its own placeholder, and everything was given back. Then, with the module reporting one of two resources as no longer in force, the boot-time reconcile marked the other `orphaned` -- never `reverted`. This branch does NOT bump MODULE_API_VERSION, so the integration kit stays as Phase 7 left it: red until the Phase 16 cutover re-pins ci/core-ref.json. Co-Authored-By: Claude <noreply@anthropic.com> |
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| fd9fb50351 |
feat(events): open the event contract to modules (Phase 7)
MODULE_API 1.10.0. Four names forwarded on the module-facing `api` -- registerEventActions, registerEventBudgets, registerEventLeases and registerEventOptionSources -- one new route, and one rule made real: a `cost()` naming a dimension no module declared is refused. Only one of the four is new machinery. The action registry has staged core's three actions on every boot since Phase 1; what it never had was a way in, because loader.js builds its own `api` facade and had no method that delegated to it. So the registry a module now reaches is one that has been exercised on every boot for six phases. Four decisions, settled 2026-09-03, all as recommended: - Option sources are their own registration, modelled on registerAudiences, because a catalog has more than one consumer. - An undeclared dimension is refused -- at save, at the dry run and at dispatch -- with its own code, because the fix is a module's declaration and not a deployment's cap. - A lease is declared here and acquired by nothing; the ledger is Phase 8. - Core registers core.options.legs, so an announce leg is a dropdown rather than the free-text box whose typo Phase 6's walk caught mid-run. Proved with a throwaway module through the real loader, not with module-uo: eventModuleContract.test.js writes a module to a real directory and lets the loader scan it, covering all five envelope failure shapes, verify: true, the four id spaces and dormancy on uninstall. The live walk found the one defect nothing else could: the option-source loader wrote its "already asked?" guard inside a setState updater and read it on the next line, so the request was never made and the field sat on "Reading the list..." for ever. It is a useRef now. Co-Authored-By: Claude <noreply@anthropic.com> Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01T6t8mrAWhZU5vnyYgZTMtL |
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| 8e03497eb3 |
feat(events): schema, CRUD and the core action registry (Phase 1)
EVENTS_PLAN.md Phase 1. Six of the nine core tables — the ones that do not
depend on the module contract — plus definitions CRUD, publish, archive, and
the action registry with core as its first registrant.
**Nothing dispatches.** There is no runner until Phase 2, so a run row is
created and stays `scheduled`. That is this phase's correct answer and the
surface renders it verbatim rather than hiding it.
Schema (`db/schema.sql`, append-only):
event_series, event_definitions, event_versions, event_runs,
event_run_steps, event_run_log. The four that need a writer —
event_action_settings, event_run_budget, event_run_resources,
event_run_participants — arrive with the phases that give them one.
Registry (`modules/registries.js` + `config/coreEventActions.js`):
registerEventActions staging and commit, with its own id namespace, the
closed risk and reversibility sets, revert() required iff and only iff
reversible: 'ledger', a bounded budgetMs and a param shape whose every
entry needs a type and an example. perform/revert/cost are stripped from
everything the catalog serves. Core declares core.announce, core.wait and
core.cue through the same staging area a module will use.
It is reachable ONLY by registerCore(): loader.js builds its own api facade
and has no method that delegates here, so no module can call it and
MODULE_API_VERSION is untouched. Phase 7 adds the facade and the bump.
Surface (13 routes under /api/v1/admin/events):
Reads staff-wide; publish, archive and run creation admin-only from this
phase per EVENTS.md §N2, even though the switchboard they will consult does
not exist yet — a button that is admin-only later and open now is a gate
nobody notices was missing. The live run controls and `verify` are absent
rather than stubbed, because nothing is in flight yet.
Four things the build settled, all recorded in docs:
- event_definitions gained a `spec` column. A draft's working copy cannot
be an event_versions row: that table is immutable and a run pins one.
- The spec validator must accept its own output. It added `actionVersion`
and `dormant` and then refused them as unknown keys, which would have made
the second save of any definition — and publish's re-validation —
impossible. A test caught it; both are now accepted and recomputed.
- A param's `example` is required, optional params included, matching
registerEventTriggers. It is the authoring form's placeholder.
- Two routes the §API-surface table did not name: GET /admin/events/:id and
GET /admin/events/series.
Core's three perform() bodies answer { ok: false, retry: false } rather than
{ ok: true }: `ok: true` on an action that did nothing is a recorded world
change that did not occur, which is the exact mistake §F's failure default
exists to prevent.
`conditions.checkLiteral` is exported and reused for step-param type checking
— one switch over the six types, so "is this a datetime" has one answer.
Verified: 44 new tests, whole server suite, `npm run check:modules`, routes
manifest and swagger regenerated (the manifest diff is +13 routes, zero moved).
Docs: RunicGateway/docs#209
Co-Authored-By: Claude <noreply@anthropic.com>
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| c8d45733b6 |
fix(engagement): two defects the Phase 11b live walk found in core
Both are invisible to a fixture and loud on a real database, which is why the walk is the phase's acceptance rather than a formality. 1. registerEngagementSeeds validated `max_sends_per_hour` and then dropped it from the normalized rule. The column is NOT NULL, so every one of the 25 module-seeded rules failed to insert at boot. The registry test asserted the REJECTION of a bad ceiling and never that a good one survives; it now asserts the normalized rule against `engagementRules.db.insert`'s own column list, so the next field added is covered the day it is added. 2. The cooldown claim runs inside the engine's per-channel loop and its key was (rule, user, subject). So the first channel of a rule claimed the cooldown and every later one was reported as cooled -- and `inapp` is ranked first deliberately, so a rule naming email + in-app delivered the inbox item and silently never the mail. Core's own `news.post` rule has that shape. Phase 11b's decision 8 requires the letter and the inbox item to fire together. `channel` joins the PRIMARY KEY (the org lead's decision 12: a cooldown is per delivery, not per occasion). Migrated in place behind an information_schema guard, because MariaDB has no conditional form of a key change and replaying schema.sql would otherwise fail on every boot after the first. 1551 core tests green; both new tests verified by reverting each fix in turn. Co-Authored-By: Claude <noreply@anthropic.com> |
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| cfd1cb3c3c |
feat(engagement): let a module ship its own templates and rules (Phase 11b)
Phase 11a declared 24 triggers and stopped where the plan said it would. Standing
11b up found that the next sentence — "24 rules, all enabled = 0; bespoke template
bodies" — described work with no mechanism to land in: templateSeeds.js and
coreRules.js are core files with core arrays in them, and there was no
registerTemplates or registerRules anywhere in registries.js.
So a module could say what an event's payload was and could never say what the
mail should read like. That is tolerable for one trigger and not for a catalogue,
and it is decisive once the bodies carry domain prose core must not contain (§5.2).
Adds api.registerEngagementSeeds({ templates, ruleGroups }) — MODULE_API 1.9.0.
The module supplies data; core keeps seedOne's customized skip, its seed_version
comparison and the block registry's validation, which is the whole argument for a
registry over the ctx.query a module already holds: a copy of any of those living
outside engagement/ would drift the first time core improved the original, and the
drift would surface as a mail somebody already received.
The two halves behave differently, deliberately:
- Templates re-ensure on every boot, so a bumped seedVersion reaches every
deployment except the ones where an operator edited that row.
- Rule groups are ONE-SHOT, each under its own settings guard — re-ensuring
would resurrect a rule an operator deleted and reset one they enabled. This is
11a's seed-key finding stated as an API rather than as a warning: a rule
appended to an existing group reaches fresh installs only, and one that must
reach stamped deployments takes a new group key.
Three prohibitions, each a shipped mistake that would only surface as mail: a
seeded rule is always enabled = 0 (Q3's invariant, ignored rather than refused so
a typo cannot take a module offline at boot); a module may not mark a template
protected; and a rule may only name its own trigger ids and its own or core's
template keys, with template keys namespaced because the key column is UNIQUE.
Runs from modules/lifecycle.js boot() rather than seedDefaults(), and that is
forced rather than chosen: server.js seeds before it requires app.js, and
requiring app.js is what runs the loader — at the moment core seeds, no module has
registered anything. Placed after the installed_modules reconcile (so a disabled
or failed module is skipped) and before the onBoot dispatch (so a module warming a
cache may assume its rules exist).
16 new tests; 1549 core tests green; check:modules clean.
Refs docs#/ENGAGEMENT.md Phase 11b decision 7.
Co-Authored-By: Claude <noreply@anthropic.com>
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| 563199a096 |
feat(modules): event triggers, audiences and the ceiling lattice (engagement Phase 2)
The contract half of the engagement system: a module (and core) can DECLARE an
event with a payload contract and fire it. Nothing delivers yet — `emit`
validates, logs and stops, and Phase 4 replaces that log line with the engine.
`api.registerEventTriggers` and `api.registerAudiences` ride the existing
stage()/apply() validate-then-commit discipline, so a registrant that throws
halfway leaves nothing behind. `ctx.events.emit` is fire-and-forget and binds
the owner from the calling module — a module fires its own triggers and no one
else's. `ctx.inbox.push` is present and throws until Phase 7, the shape 1.6.0
settled on for a member that arrives a phase late.
MODULE_API_VERSION 1.7.0 on both halves. Additions only; module-uo's
`coreApi: "^1.3.0"` still resolves.
Three design decisions, approved by the org lead before any code:
ONE NAMESPACE for trigger ids and notification-stream ids (ENGAGEMENT.md §7.2,
against the recommendation in the text). A trigger is a payload contract
attached to an id that may also carry a subscription toggle, so an id has
exactly one owner across both facets, checked in both directions. Core's five
trigger ids ARE its five stream ids, so the same-owner upgrade case is
exercised on every boot rather than only by a module. It keeps
notification_channel_prefs single-keyed in Phase 3, where two namespaces would
have forced a `kind` discriminator into its primary key.
Two knock-on effects appeared only once it was implemented. The id grammar had
to be RELAXED to admit `_` inside a segment — §4.3's own worked example is
`uo.house.idoc_warning`, and two grammars over one namespace would mean an id
legal as a trigger and illegal as the stream it is the same event as. And the
seven grandfathered `uo.*` ids had to share their legacy allowlist with
triggers, because under one namespace `idoc.warning` is a single id. The push
catalog is untouched either way: allStreams() still serves the stream facet
only, so the shipped Android client sees exactly what it saw before.
THE CEILING LATTICE (G24), which the plan named everywhere and defined nowhere.
It is containment, not size: everyone ⊃ authenticated ⊃ {subscribers, members,
staff, owner}, with the four leaves mutually incomparable. The flat total order
the plan's wording invites would let a `staff`-ceilinged trigger be given an
`owner` audience — a rule that mails cheat detection to the player it detected.
Fewer people is not less exposure. Two incomparable ceilings have no meet at
all, so a composition is refused rather than guessed; union-widens is the
intuitive implementation and it is the wrong one.
`kind: 'event' | 'scheduled'` is declarable now and no evaluator exists (§7.1
Q6). Registration accepts `scheduled` and emit refuses to fire one, so `kind`
means something from the moment it can be written rather than from the moment
it is honoured.
Also: `GET /admin/engagement/{triggers,audiences}`, served from the registries
rather than a table so an uninstalled module simply stops appearing;
`npm run engagement:manifest` plus its CI `--check`, the twin of the route
manifest, because renaming a variable breaks stored templates silently, at send
time, in mail someone already received.
Co-Authored-By: Claude <noreply@anthropic.com>
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| cecd72915f |
feat(teams): the slash-command seam, and the first command through it
Phase 7 of TEAMS.md. `api.registerSlashCommands` stops throwing: a module registers a command's DEFINITION and its HANDLER together, the bot pulls the definitions over the internal listener and runs none of our code, and the handler executes here — forced by the bot container having no `modules` volume, and the right boundary anyway. Registration validates what Discord would reject as a batch (names, description lengths, the four option types, required-before-optional), because the bot registers the whole set in one PUT and a single bad entry costs every command including the bot's own. Commands are not namespaced under their owner — there is no dot in Discord's name grammar — so collisions are first-come with the holder named. The dispatcher is the access boundary: `linked` has no Discord equivalent, so the platform-side permission default can only ever be advertising. It resolves the actor by `auth_providers.kind` rather than the id slug, treats a banned account as unlinked, bounds a handler under the bot's own timeout, and keeps `ok` outside the envelope so a handler cannot forge it. Liveness is asked at both the pull and the dispatch. The registries have no removal path, so a module an operator disables at runtime would otherwise keep a live handler behind a command Discord still advertises. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 2a56cbf22a |
feat(teams): fire the four events, and the routes that configure them
The roster sync tickles at most ONCE per stream per run, not once per member: a tickle is content-free, so five people joining in one sweep is five identical notifications and one piece of information. Suppressed on a Team's FIRST roster, the same condition the activity feed uses and the half where it matters more — importing a 155-member guild would otherwise wake every one of their phones. Forum notifications fire from the CONTROLLER, not from the forum model. That file takes an already-resolved access decision and reads no membership table by design; the fan-out reads both to compute its recipients, so calling it from inside would make the forum model transitively depend on exactly what its header says it must not touch. The model returns a `notify` key the controller destructures out before the response, so the API's answer to "did my post save" is unchanged. `pageUrlTemplate` joins the team provider — the one thing phase 6 found that the design of record had not anticipated. Phase 3 left core with no Team page and therefore no way to LINK to one, so a notification email could name a Team and not take you to it. It is data rather than a callback: a function would put a module hook on the mail path to produce a string that never varies. Relative paths only, and protocol-relative is refused with absolute. The unsubscribe endpoint is the only write in the public tier and the only route with no `siteMode` — the reader is in their mail client, and the mail went out before the site went into maintenance. POST always answers 200, valid token or forged: distinguishing them would be an oracle for which (user, Team) pairs exist. GET redirects and acts on nothing, so a mail client's link scanner cannot mute Teams nobody asked to leave. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 03631d7d40 |
feat(teams): the roster's audience projection, and optionalAuth to resolve it
TEAMS.md §3.3, as the eighth member of MODULE_API 1.6.0 — amended in place per the org lead, on the rule Protocol 4 was given in phase 2: a contract owes a bump only once it has landed on `main`. Two questions meet on the roster and they belong to different owners. WHICH ROWS a viewer may see is the module's, because the audience rungs and their configuration live there and core does not know what a rung is. WHAT A ROW LOOKS LIKE stays core's. So `projectRoster` answers with member KEYS, not rows. §3.3 said rows, and rows would let a module widen what is published — handing back a `userId` core had withheld — leaving core's field guarantee resting on every module's good behaviour. Core asks which rows and re-normalises the answer through its own public shape, so a module can narrow and cannot widen. "The module declines" needed splitting before it could be implemented. No module at all and a module whose rungs could not be consulted are opposite situations: the first withholds nothing and must serve the roster whole, the second must serve none of it. The refusal carries `projects`, and only `projects: true` fails closed. Without the split, bare core serves an empty roster on every Team page. This is also the first public route whose CONTENT depends on identity, which needed a middleware core did not have. `attachSession` only decodes a token, so a banned account, a password change or a logout would have kept working against the private half of a feed until the JWT expired. `optionalAuth` runs requireAuth's full database re-validation and, on any failure, continues ANONYMOUSLY rather than rejecting — a caller whose session is no longer good sees the public view, which is what they are entitled to. `GET /public/teams/:slug/activity` lands here for the same reason: §2.11's route table had no activity endpoint though §4.3 describes a filtered feed. Paged, with the visibility resolved from the session and never from a parameter. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 8b63ffc725 |
feat(modules): registerTeamProvider, and a call path that cannot answer "empty"
The registration a module uses to become the authoritative source of Teams
(docs/website/TEAMS.md §2.3), plus the wrapper core calls it through.
registerTeamProvider is the first registration where core CALLS THE MODULE and
waits for an answer. Every existing one is either the module claiming a mount or
core notifying it; the closest precedent is registerAnnounceLeg's dispatch, and
this is modelled on it rather than invented. It also holds a single value rather
than a map, unlike every other registry: Teams have one authoritative source by
construction, and two modules answering "what teams exist" would produce two
disjoint sets under one `teams` table with no rule for merging them. A second
registration is therefore a collision, named against the module that holds it.
teamProvider.js is where invariant 1 -- module unavailability is staleness,
never emptiness -- is actually enforced. It is deliberately generous about what
counts as a failure: a rejected promise, a synchronous throw, a timeout, a
non-object, a bare array, a missing `ok`, or a structurally malformed row all
leave as the same `{ ok: false }` a module would have sent on purpose. There is
no shape a broken provider can produce that arrives at the reconciler looking
like an authoritative empty list -- which is the entire argument for the
envelope, since a bare array has exactly one such shape and it is the one a
module returns while its sidecar is still connecting.
A malformed row fails the whole call rather than being dropped. Salvaging is the
dangerous option: one unreadable member quietly omitted from a roster is
indistinguishable, downstream, from that member having left, and the sync would
mark them departed on the strength of a broken payload. Refusing costs one stale
interval.
The deadline timer is unreffed as well as cleared. Clearing covers the case
where the race settles; it cannot cover a module promise that never settles at
all, where nothing exists to clear until the deadline fires. Caught by the test
file taking 10.2s to run 265ms of assertions -- the same class of bug as the
mariadb pool that used to hold the suite open (test/_setup.js). 292ms now.
28 tests. Full suite 770 passed, 0 failed.
Refs docs/website/TEAMS.md §2.3, Part 12 phase 2
Co-Authored-By: Claude <noreply@anthropic.com>
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| f50541f374 |
feat(modules): ctx additions and the post-hook registry (API 1.1.0)
Everything the extraction needed from core that ctx did not already offer. Additions only, so minor. ctx.activity.log, because an admin action a module performs has to land in core's one audit log or the trail has a hole exactly where a module operates the game -- a module keeping its own log would be a second place to look, which in practice means a place nobody looks. Write-only; reading the log is the admin panel's job and it spans every actor. ctx.users.getById, one function for one caller: the admin.users.detail slot router needs the user its prefix names. ctx.site.baseUrl, because a module has to build absolute links and §2.7 forbids it reading core's APP_BASE_URL -- a getter, not a captured string, so it cannot go stale against the env. ctx.middleware.rateLimit is core's makeLimiter, plus accountChangeLimiter handed over whole. The split is deliberate: a module states its own window and cap because it knows what its endpoints cost, and takes the plumbing from core so there is one express-rate-limit in the process and one place a breach is logged. accountChangeLimiter is shared policy -- core's /auth/me and /player/account sit behind the same counter -- so a module's account-change route has to land IN it rather than beside it. marketLimiter was UO policy living in core's file and leaves with the route it guards. registerPostHook is the fourth registry, and the last thing binding core to the module. Core's post controller called newsGump.syncPost directly: core's CMS naming a UO file. It now publishes what it already knows and a subscriber decides what to do with it. Not folded into registerAnnounceLeg, which fires on the same transition, because a leg is a one-shot DELIVERY with retry and classification while a post hook maintains idempotent STATE, runs on delete as well as save, and refreshes silently on an edit. Also fixes a real loader defect the extraction exposed: schema table names were matched against the RAW file, so a fragment whose header says "every CREATE TABLE carries IF NOT EXISTS" was rejected for a prefix violation on a table called `carries`. module-uo's fragment hit exactly that. Both scans now read split statements, which strip comments -- the same class of bug as a boundary check failing on its own documentation. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 97f19b4221 |
docs(modules): note that registerExtension's spec-file argument is core-only
Co-Authored-By: Claude <noreply@anthropic.com> |
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| 6195c76d61 |
feat(modules): the three de-entanglement registries, with core as the registrant
Phase 2 PR 4 of docs/website/MODULE_SYSTEM.md §2.7. Adds server/src/modules/registries.js and moves core's own notification streams, announce leg and users-detail routes behind it, so the three seams §1.8 and §1.9 named are exercised on every boot before any module depends on them. Registering is validate-then-commit per registrant: the loader stages what a module claims and the second pass commits it, so a module that throws halfway through register() — or fails checkDeclared after it — leaves nothing behind. That is the registry-side twin of PR 2's second-pass mount rule. Four decisions, all the recommended option: - announce legs became a child table. `announce_job_legs` replaces the towncrier_*/discord_* column groups, so the leg set is data: core registers `discord`, module-uo will register `towncrier`, and a module cannot ALTER a core table to add its own. Backfill is guarded on information_schema (a SELECT of a dropped column is a parse error, not a runtime one) and the columns go with DROP COLUMN IF EXISTS. Verified against the live dev DB: three legacy jobs migrated faithfully, three replays, no duplicates. - `mapEvent` dropped from registerNotificationStreams. §1.8 already inverts the push path so a module owns fromShardEvent and calls core's publish() with a stream id it resolved; a second mapping mechanism was a leftover. The public safety filter, the kinds it reads and the streams it protects now live in one file and move together. - core registers through the same staging area a module uses, via an explicit registries.registerCore() in app.js before modules.load(). - core's six /admin/users/:id/shard/* paths now go through the `admin.users.detail` slot, and getUser moved back to admin.controller.js. Found on the way, and the reason two build tools changed: - scripts/routeManifest.js could not decode a parameterised mount. Its unwinder expected `(?:([^\/]+?))`; express 4.22 emits `(?:\/([^/]+?))` with the separator inside the group. The branch had never run. It threw rather than guessing, which is what it is for. - swagger-autogen cannot follow a route into an extension slot — the slot's router is created by declareSlot() and filled later, so there is no literal mount for a static parse. Regenerating deleted 407 lines and printed `Swagger-autogen: Success`, the spike's exact failure (MODULE_API.md §7.4). swagger/slotSpecs.js generates a fragment per filled slot and re-roots it at the prefix the router actually hangs at in the live app — read from the express stack via routeManifest's own mountPath, so the manifest and the spec cannot disagree. swagger/mergeSpec.js is the merge helper core owes for module fragments anyway (§6.1a), proved here against core's own slot first. 884 tests pass (856 before). routes.manifest.json is unchanged at 229 routes. The OpenAPI spec diff is two lines of intent: the retry endpoint's summary, and its `leg` no longer being a fixed enum. Co-Authored-By: Claude <noreply@anthropic.com> |