2ba397eff7d6c8936e62519c22b54ccb4ce12089
103 Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
| 2e964cfeee |
feat(events): the runner (Phase 2)
`utils/eventRunner.js`, the eighth poller, wired into server.js beside engagementWorker. Its tick reclaims stale leases, sweeps occurrences past their grace window into `missed`, advances each due run through its phases, and drains that phase's steps in `seq` order. The three core actions from Phase 1 get real bodies, so a published event started from the existing run route now announces, waits and completes on its own. No routes are added: a runner has no surface, and the live controls stay Phase 3's. Four things the org lead settled (2026-09-02): a parked step is `running` with a NULL lease; `await: 'human'` and `holdFor` are ordinary success-envelope members rather than special cases keyed on an action id; a run whose concurrency key is held stays `scheduled` and lets its grace window decide; and `n` in §L's `retry(n)` is a runner constant. Co-Authored-By: Claude <noreply@anthropic.com> |
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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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| 5779d15150 |
feat(engagement): retention — three sweeps and one recorded refusal
ENGAGEMENT.md Phase 14, the last phase of the workstream. Four engagement
tables grew on every fire and nothing had ever deleted from any of them.
Three of them now have a horizon, swept nightly by one worker
(utils/engagementRetentionPrune.js — setInterval + unref + stop(), batched
1000 x 50, each table's failure caught on its own so a lock timeout on one
does not leave the other two unbounded):
engagement_sends 180 days engagement_sends_retain_days (7-3650)
engagement_cooldowns 30 days engagement_cooldowns_retain_days (2-3650)
engagement_outbox 30 days engagement_outbox_retain_days (2-3650)
The fourth, engagement_suppressions, does not expire, and that is the
recorded decision rather than an omission: a suppression is a standing
decision, and ageing out a hard bounce re-mails an address that already
bounced. The way out stays deliberate, and is now reachable per row.
Six decisions were settled by the org lead before any code. Two of them
widened the phase past what was offered:
* the send-log horizon is admin-configurable, so retention got a SCREEN
(Admin -> Engagement -> Retention) where team_activity and
user_notifications keep theirs in invisible settings rows. The send-log
horizon changes what an operator-facing page is able to show, so it has
to be visible; the other two came with it, because "what does this
deployment keep" is one question.
* the suppression purge, which cost a Phase 9 decision. The list
deliberately stripped address_hash from every row, so the only way out
was a window.prompt asking the operator to retype an address the screen
has never shown them. The row had no handle at all. The hash is now
returned: this route is admin-only and an admin can already suppress and
unsuppress any address they can name, so it grants no capability they
lack. GET /sends still strips its own.
The outbox sweep is TERMINAL-ONLY and that is a correctness rule: a
scheduled row is a send this deployment still intends to make (delay_seconds
can put one a day out) and a sending row may be mid-flight.
One shipped defect had to be fixed for the sweep to be a bound at all.
reclaimStale returned every stale sending row to scheduled, and MAX_ATTEMPTS
is consulted only on a graceful retry outcome — so a send that killed the
process mid-flight cycled sending -> scheduled -> sending forever, never
terminal, therefore never eligible for any sweep. It now fails an exhausted
row BEFORE reclaiming the rest; the order is the fix.
Two indexes (idx_engo_sweep, idx_engs_sweep): every existing index on those
tables has created_at in second position, which serves a per-rule window and
is useless to a whole-table horizon.
Proved twice: engagementRetentionSql.test.js against a real MariaDB (7
tests, incl. the acceptance case and the wrong reclaim order run
deliberately), and the live stack, where a 90-day-old cancelled row was
swept and a 90-day-old scheduled row survived.
Co-Authored-By: Claude <noreply@anthropic.com>
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| eec7dbf785 |
fix(engagement): claim the seed guard atomically, and let a rule name a digest body
Both defects came out of Phase 13's acceptance walk, and neither was visible to any test. **1. The one-shot rule-group guard was not a guard.** `seedRuleGroup` and `coreRules.seedGroup` both read their settings stamp, inserted the whole group, and wrote the stamp AFTER the loop. Two instances booting in the same moment both read "absent" and both insert -- the walk ended up with 52 module rules where the module ships 26. `docker compose up --scale app=2` and a rolling restart both start two instances on purpose, so this is ordinary rather than exotic. `settings.db` gains `claim(key, value)`: the same `INSERT IGNORE` as `seedDefault`, reporting its own `affectedRows`, so exactly one caller can win a key. The atomicity is the PRIMARY KEY's -- no transaction, no lock, the same bargain `engagementWorker`'s row claim already makes. Both seeders claim before inserting. The trade the code already documented is unchanged, only its order: a process that dies mid-loop leaves the group stamped and partly seeded, and the missing rules are an operator's visit to the "new rule" form. A duplicate rule is two mails per event, for every rule in the group, which both functions' own comments already call the worse outcome. **Why no test caught it:** the stubs supplied `get` and `set` over a Map, which cannot race, so they agreed with the bug -- Phase 4a's `foundRows` finding in a different costume. The fake is now `claim`-shaped and decides without yielding, exactly as the table does, and both suites gained a test that runs two seeders with `Promise.all` and asserts one insert each. Verified by reverting the fix: the module test then reports every rule inserted twice. **2. A rule that names a `digest` body could not be saved.** `registries.js` `checkSeedRule` permits `digest` in as many words -- it is the body `teamDigestWorker` renders for a rule whose email channel an individual set to digest mode, so it never appears in `channels` and never could -- and MODULE_API.md 2.4 tells modules they may point `template_keys` at `notify.digest`. `engagementRules.model.js` then rejected any key that was not one of the rule's channels. So every rule shipping a digest body answered an operator who opened it and pressed Save with a 400 naming a key they had never typed: core's own Team and news rules, and sixteen of module-uo's. The only way to save was to delete the digest body, silently dropping digest support from that rule. The two validators now agree; anything that is neither a channel nor `digest` is still refused, with a test for each direction. No MODULE_API bump: no member is added, removed or changed, and the documented contract is what the code now honours rather than something new. 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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| 1d4cd4adae |
feat(engagement): the admin ceiling and core's news.post emitter (Phase 11a)
Core's half of ENGAGEMENT.md Phase 11a: the two decisions the org lead settled before any code that land in core rather than in module-uo. Pairs with Module-uo#22 and docs#194. ## Decision 1 -- a seventh ceiling, `admin`, as a child of `staff` Phase 11's operator-facing triggers (uo.audit.staff_action, uo.economy.milestone, uo.world.saved) are described as admin-audience everywhere, and the narrowest value the lattice had was `staff` -- which ceilings.js defines as admin, editor AND moderator. Ceilinging them there would have let an operator save a rule that mails the staff audit digest to every moderator in it. `admin` is the ONLY genuine refinement in the tree -- every admin is staff, which is exactly the containment every other pair of branches lacks -- so it is a child rather than a seventh leaf, and permits/meet/meetAll needed no change beyond the new PARENT entry. **The one non-obvious consequence, and the reason for ROLE_CEILINGS.** notificationChannelPrefs' `visibleTo` asked `item.ceiling !== 'staff'`. That was correct while `staff` was the only role-gated value, and the day `admin` arrived it would have silently published every admin-ceilinged id -- the staff audit digest, the economy thresholds -- to every player's preferences screen by name. It now reads a TABLE (`ceilings.reachableBy`), so a ceiling added without an entry fails closed instead. An EDITOR is the viewer that tells the two rules apart, and the new tests use one. MODULE_API_VERSION -> 1.8.0 on both halves. Additive: every declaration valid under 1.7.0 is valid now and no stored value changes. ## Decision 5 -- 7.1 Q9: news.post gets an emitter, and it REPLACES the tickle `news.post` has been a declared payload contract with no caller since Phase 2, so a rule naming it could never fire. utils/newsNotify.js is the caller; announceIfNewlyPublished now calls it instead of pushDispatch.publish, gated on the same enqueueIfNeeded job id -- the single "newly published news" transition signal, not re-derived. **News push therefore stops on upgrade** until an operator enables the seeded rule. That is the org lead's decision, taken over keeping the raw call beside the emit "for one release": an exception with a deadline nobody owns, which Phase 6 already refused for Teams. The Rules screen gains a second migration notice naming news, and Phase 13's release note carries it as an upgrade step. **The seed needed its own one-shot key, and this is the trap worth recording.** `engagement_team_rules_seeded` is already stamped on every deployment that has booted since Phase 6, and the guard reads its presence -- so appending news to RULES would have seeded it on fresh installs only, and on exactly the upgrades that lose their raw push, never. One key per seed GROUP is now the rule; seedGroup() is the shared implementation and seedCoreRules() is what boot calls. Also fixes news.post's `postUrl` example, which named `/news/<slug>` -- a path App.jsx does not mount. An example is what the template editor previews and test-sends with, so a wrong one is a preview that looks right and a mail that is not. It is `/site/news`, the list, which is what the Discord and town-crier announcements have always linked. 1550 tests pass (16 new), 327 client tests pass, client builds, check:modules clean -- core still names no module identifier with module-uo now registering 24 UO-named triggers. Co-Authored-By: Claude <noreply@anthropic.com> |
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| c208543044 |
feat(engagement): deliverability — suppression, bounces and the verification gate
ENGAGEMENT.md Phase 9, closing gap G16. Two mechanisms decide that somebody in a
rule's audience does not get the mail, and they sit at deliberately different
points in the pipeline.
`engagement_suppressions` is checked at DELIVERY: an outbox row can sit through a
rule's `delay_seconds` grace window and an address can bounce inside it, so the
only correct check is the one taken immediately before the transport call — which
is also what produces the `status='suppressed'` row with no transport call at all.
The Phase 1b verification gate is applied at ENQUEUE, through a new optional
`registerDeliveryChannel({ eligible })` that only `email` declares. Filtering the
shared audience would have silenced the wrong sink: a rule spanning email and
in-app must still put an item in an unverified user's inbox. The excluded counts
reach `summary.ineligible` and the admin reach preview, which until now reported
an audience size that was never the number of people who would be mailed.
`bounceClassify.js` is the only thing that may write a `bounce` row, and it is
deliberately NOT `mailer.PERMANENT_CODES`. That set answers "is retrying
pointless?" and contains EAUTH and 554 — an auth failure and a relay-wide policy
refusal, neither of which is a fact about the recipient. Reusing it would mean one
stale SMTP password suppressing every address the worker touched, silently. The
classifier reads the RFC 3463 enhanced status first, falls back to a phrase match
only past a veto list and only for 550/551/553, and does not suppress anything it
is unsure about.
Scope is engagement rules only: resets, invites, verification and the contact form
still attempt, matching the posture passwordReset.controller.js already stated.
Found on the live rig, against a real MariaDB and a real SMTP conversation: a hard
bounce was being recorded as `failed`, so the Send Log's "Bounced" filter — a
status `engagement_sends` has carried since §4.5 — matched nothing and always
would have. It is now its own outcome; the outbox row stays `failed`, since that
ENUM has no `bounced` and a bounced row is one that finished unsuccessfully.
`address_masked` is this phase's one addition to §4.5's DDL. A hash-only table
cannot be operated — an operator cannot tell three typos from a whole domain
refusing mail — and the domain survives while the local part is destroyed, so the
column can never be read back as an address book.
- schema: `engagement_suppressions` (+ `address_masked`, `created_by`)
- `GET/POST/DELETE /api/v1/admin/engagement/suppressions`, and Admin → Engagement
→ Suppressions, the only way out of the list
- `sendNotification` returns `smtp: { code, responseCode, response }`
- 26 new tests; swagger, routes manifest and guards regenerated
Docs: RunicGateway/docs#191.
Co-Authored-By: Claude <noreply@anthropic.com>
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| 24a3cd85b3 |
feat(engagement): the in-app channel, core and web (engagement Phase 7)
ENGAGEMENT.md Phase 7. `user_notifications`, the in-app DeliveryChannel, the
four inbox routes, and the web surface — plus the two pieces earlier phases
assigned here that Phase 7's own acceptance line omits.
Four decisions settled by the org lead before any code:
1. `inapp` defaults to `instant` — the only channel that does. Push wakes a
device somebody is holding and email leaves the building, so both are asked
for; an inbox item is a row on a page the user chose to open. Left `off` the
channel ships dead.
2. The phase takes push's `deliver` (§2603) and the web per-channel preferences
screen (Phase 3's as-built), neither of which its own bullets mention.
3. The inbox takes `/auth/me/notifications` and `/account/notifications`; the
preferences screen moves to `…/settings`. The plain word belongs to the
content, which is what the bell opens.
4. `ctx.inbox.push` honours the user's in-app preference when `triggerId` names
a registered trigger, and writes when it does not.
Server
- `user_notifications` + `model/userNotifications/`. The dedupe UNIQUE is scoped
to the USER, narrower than the outbox's `(rule, user, channel)`: an inbox has
no channel dimension, so two rows for one event would be one item shown twice.
- `engagement/inappChannel.js` — renders by block ROLE (first heading → title,
first button → url, the rest → body) and inserts. `pushChannel.js` — a
content-free `{stream, ref}` tickle whose ref deep-links the inbox row.
- `engine.liveChannels` orders `inapp` first (`CHANNEL_ORDER`) so that ref
resolves on the first sweep. An ordering, not a dependency.
- `templates.renderInappByKey` + `resolveTemplate` extracted from `renderByKey`,
so both channels take the same fallback chain.
- `inapp.event` seed → seedVersion 2: it named `body`/`url`, which nothing
supplies. Renamed to the structural vocabulary the projection fills in.
- `utils/userNotificationsPrune.js` — nightly, READ items only, horizon in
`settings.user_notifications_retain_days` (default 90).
- `GET /auth/me/notifications`, `…/unread-count`, `POST …/:id/read`,
`POST …/read-all`. Swagger + route manifest + four component schemas.
Web
- `NotificationBell` in all three headers, polling its badge once a minute and
pausing while the tab is hidden. `PlayerInbox` at `/account/notifications`.
- The preferences screen becomes a channel matrix over
`/auth/me/notifications/channels` — a strict superset of the push-only stream
list it replaces. The two legacy endpoints are untouched, so the shipped
Android app keeps its wire shape.
- Staff get the same two screens at `/admin/notifications…`: `RequirePlayer`
keeps them out of `/account`, so without this the inbox was unreachable for
every non-player account. `lib/notificationPaths.js` is the one mapping.
Verified: 28 new server tests (5 of them against a real MariaDB, for the three
index/statement properties that are a server contract rather than a reading of
this code) + 3 client. Server suite green, client 327 green. A live rig walked
the whole path: two rules on one event produced three outbox rows and exactly
one inbox item, the tickle carried `ref: notification:2`, and the retention
sweep dropped an aged read row while keeping an equally aged unread one.
Docs: RunicGateway/docs#TBD, RunicGateway/runicgateway.com#TBD
Co-Authored-By: Claude <noreply@anthropic.com>
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| 065bec7ad8 |
feat(engagement): the email channel on the engine, and the Teams migration (engagement Phase 6)
Email becomes a DeliveryChannel driven by rules, and the Team pipeline stops being
its own thing. `teamNotify.forumPost` now emits an event; a rule decides who is
mailed, through which template, and how often at most. One walk goes forum write
-> events.emit -> rule -> outbox -> worker -> email channel -> template -> SMTP.
Seven decisions settled by the org lead before any code:
- email only moves; the push tickle and the Discord bridge stay direct calls
- the EVENT carries its access-checked audience, and `members` resolves to it
- the four Team rules are seeded DISABLED, with an admin banner and a note
- team_notification_prefs stays, read by the engine as a scoped preference
- the payload wins and a structural projection fills the gaps
- the digest keeps computing at send time; only its state generalizes
- an unsubscribe token turns off the channel it names, and nothing else
Three defects found while building it:
- `email.button` never absolutized its href, while image and itemList both
did. Every rule-driven CTA would have been a dead relative link, because a
trigger's url variables are validated site-relative by construction.
- Phase 4a enqueued digest-mode recipients for a drain that Phase 6 decided
not to build. An outbox row snapshots the payload and so has none of the
three properties the digest design exists for, including the security one.
- the digest's send-log row carried no address_hash while the instant row
beside it did, which would have made half the mail uncorrelatable in Phase 9.
Also: engagement_digest_state + a replay-safe backfill, engagement_outbox.scope_key,
a v2 unsubscribe token that still verifies v1 forever, and the canonical
/public/engagement/unsubscribe pair with the old /public/teams path kept
permanently — mail is not editable once sent.
Verified with 1464 server tests, 324 client tests, and a live rig (MariaDB +
Mailpit + a real Team) covering the instant mail, the digest, the generic
template, a pre-migration unsubscribe link and the backfill's replay-safety.
Docs: RunicGateway/docs#TBD
Co-Authored-By: Claude <noreply@anthropic.com>
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| 3f90070566 |
feat(engagement): the template editor, the trigger catalog and the send log (engagement Phase 5b)
Phase 5a gave templates a table, a renderer and nine seeded rows; nothing could
change one. This is the screen that lets an operator change one without being able
to break the mail the system depends on — plus the two screens Q4 promised Phase 5:
Triggers (read-only, from the registries) and the Send Log, which closes G15.
The shape follows from one fact: a mail body is rendered by the SERVER, so the
preview is too, and framed rather than redrawn in React. A client-side renderer
would be a second implementation of the one artifact that matters, agreeing with
the send path on the day it was written and drifting from the first Outlook fix on.
Settled with the org lead before any code: a shipped default is edited IN PLACE
(`protected` blocks deletion and nothing else, `customized = 1` keeps the edit);
duplicate is the only way to a new template; `renderByKey` now requires
`published`; a test send is logged under a synthetic `core.admin.test-send`; and a
template a rule points at refuses deletion with a 409 naming the rules.
Three things the plan did not know, found by building it:
- The undeclared-variable check cannot be a token scan. `email.itemList.variable`
holds a BARE name, so a digest pointed at `itmes` would have saved clean and
arrived empty. Blocks now declare `variables(props)`; the editor makes that
field a select over the trigger's list variables so the typo is unavailable.
- A duplicate that drops `seed_key` loses its variable palette, so duplicating
`notify.event` would have been refused for the tokens it was copied with — the
one action §4.6.2 offers, refusing itself. The copy inherits it; `customized`
is what the seeder actually reads.
- `validateEmailBlocks` returns `{ valid, errors }`, not an array, and the first
version tested it with `.length` — so block validation never ran at all.
Also fixes a Phase 4a defect the live walk found, with the org lead's approval: a
rule's template key was checked against a pattern with no dot in it, so no rule
could name any template that exists — §4.6.2's whole duplicate-and-point-a-rule-at-it
workflow was unreachable. Both models now read one pattern.
Verified against the running stack: real multipart mail into a mailpit catcher
including an unsaved draft, the draft/published arms both ways through the real
mailer path, every refusal, and the end-to-end duplicate → rule → 409 walk.
Server 1428 tests green, client 324.
Co-Authored-By: Claude <noreply@anthropic.com>
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| 12ff201ed5 |
feat(engagement): templates — the email block family, renderer and seeded set (engagement Phase 5a)
Every subject and body moves out of `mailer.js` into `engagement_templates` rows an operator can edit. A relocation, not a regression: nothing that sends mail today starts depending on an operator authoring something first. - `email.*` block family in its own registry, sharing the page family's envelope walk and validate-then-sanitize order by binding rather than by copy. - A server-side renderer producing both parts of a multipart message; the text part is byte-identical to the literals this commit deletes. - Nine seeded templates, six of them wired now; the seeder's `customized = 0` guard lives in the UPDATE's own WHERE. - `renderByKey` falls back to the shipped seed when a row is missing or unusable, so no failure of the table can stop a password reset. Also fixes `check:hosts` reading the template key `auth.email-verify` as the hostname `auth.email`. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 4b45eddb5d |
feat(engagement): Admin - Engagement - Rules and Audiences (engagement Phase 4b)
The admin surface over the Phase 4a engine: two screens, twelve routes and the
reach preview. Nothing in the engine changed; what changed is that an operator
can now reach it.
Four decisions settled by the org lead before any code:
- segments get their OWN nav entry, "Audiences", not a tab of the rules screen
- the on/off switch is its own PATCH route, not a full PUT
- the reach preview is a count only, on demand
- a rule can be hard-deleted; the send log survives it
The switch is the one with real content in it. A PUT re-validates against the
registries as they are NOW, so the rules a re-validating toggle cannot switch
off are exactly the three an operator most wants stopped: a rule whose module
was uninstalled, one naming a channel that is gone, and one whose trigger has
since narrowed its ceiling under a saved audience. PATCH .../enabled writes one
column and always works. Switching ON unvalidated is safe because the engine
re-checks the ceiling at send time.
The preview calls the engine's own resolver rather than a second query that
agrees with it today, and answers a count and nothing else - the resolver's
output for a module-declared segment is a set of players derived from game data.
It reports `capped` at the 5000-row bound (the count is a floor, not a total),
`reason` for an `owner` audience (which resolves per event and has no advance
answer), and `permitted` so the editor cannot show a healthy number beside a
save the server will refuse.
Two defects found by walking it against a live server, both in Phase 4a's code:
1. A rule pointing at a DORMANT segment read as healthy. listAnnotated asked
only whether the segment ROW existed. The other shape of the same failure
is a segment sitting exactly where it was whose every audience belongs to
an uninstalled module: same outcome, nothing deleted. Uninstalling a module
under an enabled rule produced a rule the screen showed as on and firing.
The expression walk now lives in engagement/segments.js as
`missingAudiences` and both lists ask it.
2. "1 rule still use this segment" - the delete refusal pluralised the noun
and not the verb, in the sentence an operator reads when told no.
Also: a rule's trigger is now a stated rule rather than an omission in the
UPDATE statement (its cooldowns, queued sends and history are all about one
trigger id); a condition tree the editor cannot render is shown read-only rather
than flattened, because flattening changes which events fire the rule; and
literals are coerced client-side to the type the trigger declared, with anything
that does not parse passed through unchanged so the server's refusal names the
variable.
Tests: 21 new server tests (test/engagementAdmin.test.js) and 25 client ones
(client/test/engagementRules.test.js), all green. The single failure in the
server suite (`the committed manifest matches the declarations in the tree`) is
the known Windows CRLF artifact and fails identically on clean edge.
Companion docs PR: docs#184.
- [x] AI-assisted: written with Claude Code (Opus)
Co-Authored-By: Claude <noreply@anthropic.com>
|
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| 2079aaf667 |
feat(engagement): the rules engine, cooldowns and outbox (engagement Phase 4a)
Phase 4 of docs/website/ENGAGEMENT.md, split 4a/4b at the org lead's direction. This is 4a: the engine, server only, with no HTTP surface at all. A fired trigger now produces outbox rows and send-log entries; Admin - Engagement - Rules and the segment composition UI are 4b. Five tables (rules, audience segments, cooldowns, outbox, sends), the sweep worker, audience resolution, condition evaluation, the grace window and its cancellation, and the save-path validation 4b's form will call. engagementEmit's Phase 2 log line becomes the engine call. Two settled questions this phase was blocked on: Q2 (multi-instance) - neither SKIP LOCKED nor documented single-instance: the outbox claims each row with a compare-and-set into the 'sending' state the ENUM already carried. It makes the outbox safe for two instances, not the deployment. Q4 (admin surface) - its own top-level nav group, built in 4b. Two defects in the plan's own section 4, both found by building it: The global UNIQUE(dedupe_key) was data loss. A dedupe key names the EVENT, and one event is one row per (rule, user, channel) - so a fifty-person audience would have had one row admitted and forty-nine silently ignored. Scoped. Section 4.1's single INSERT ... ON DUPLICATE KEY UPDATE cooldown claim always passes against this codebase's pool: the mariadb connector defaults foundRows:true, so a no-op update reports affectedRows 1 rather than 0. It is two statements now, with the interval guard in a WHERE clause. The second defect is why there is a second test file. The stubbed suite was green against the broken claim, because a stub can only agree with whoever wrote it; engagementEngineSql.test.js runs the raw statements against a real MariaDB and skips when there is none. Verification: 43 new tests green in engagementEngine.test.js, 12 more against MariaDB 11.8, and the whole path exercised end to end against a live database - per-subject cooldowns, conditions, the CAS claim, the send log's honest failure detail, and dormancy on uninstall. The three pre-existing Windows-only CRLF failures in the generated-artifact tests are unchanged from clean edge. Co-Authored-By: Claude <noreply@anthropic.com> |
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| b13ffd584f |
feat(notifications): per-channel preferences and the delivery-channel registry (engagement Phase 3)
`notification_subscriptions` answers one question — which streams a user wants
PUSHED — because that is the only question the shipped Android client can ask.
This adds the general one: which subscribable ids, on which channel, in which
mode. The old table becomes the push projection of the new one and keeps its
exact wire shape, so the shipped APK needs no update and no delivery path is
touched.
What lands:
- `engagement/channels.js` — `registerDeliveryChannel` (ENGAGEMENT.md §3.1), the
declarative half only: id, label, `carriesContent`, `defaultMode`,
`supportsDigest`. `addressFor`/`render`/`deliver` wait for Phases 6 and 7, for
the reason `transports/index.js` deferred this file at all. `coreChannels.js`
declares push / email / inapp through the subsystem's one door.
- `notification_channel_prefs` + a replay-safe `INSERT IGNORE … SELECT` backfill,
copying the `announce_jobs → announce_job_legs` precedent.
- `GET · PUT /auth/me/notifications/channels`. The PUT is SPARSE — only the
`(id, channel)` pairs named are written — deliberately unlike the two whole-set
PUTs beside it. `off` is a mode rather than an omission, so this endpoint has
no empty-array case and the kotlinx DTO gotcha cannot arise here.
Three decisions the org lead settled before any code, and one corrects the
phase's own acceptance criterion: push's `defaultMode` is `off`, not `instant`.
The plan borrowed "push is opt-OUT" from `team_notification_prefs`, where no row
does mean notified — but stream subscriptions have never worked that way, so
`instant` would have projected the whole catalog into the legacy GET for every
existing user and switched every toggle on in the shipped app after an upgrade
nobody asked for. A test pins the legacy GET at `{streams:[]}` for a fresh user.
One thing not named by the phase, and it is a G24 consequence rather than scope
creep: a trigger ceilinged at `staff` can never reach a non-staff user, so
offering the toggle would be offering a dead control AND disclosing the event
exists — `uo.cheat.detected` would otherwise appear in every player's screen the
moment Phase 11 declared it. Filtered from the catalog and gated on write. That
gave the `staff` label its first consumer, now written down as
`ceilings.STAFF_CEILING_ROLES` (the admin tier's three, deliberately not
`teamGrants.STAFF_ROLES`, which answers a different question).
15 new tests; swagger, route manifest and guards regenerated. No web or app
surface — those are Phases 7 and 8, where a preference governs something visible.
Refs: docs/website/ENGAGEMENT.md Phase 3, §3.1, §4.5
Co-Authored-By: Claude <noreply@anthropic.com>
|
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| fbb4b0bd91 |
feat(auth): unique, changeable, verifiable email addresses (engagement Phase 1b)
Makes `users.email` unique, de-duplicates the addresses an upgrade will find, and builds the self-service change-and-verify flow that did not exist. The uniqueness index is on a generated `email_norm AS (LOWER(email)) STORED` column under `utf8mb4_bin`, NOT on `email` under a `_ci` collation as the plan specified. Every case-insensitive collation this server offers is also accent-insensitive: `josé@x.com` and `jose@x.com` compare equal, and those are two different mailboxes. The plan's index would have refused the second address forever and the de-duplication would have nulled a legitimate account's. A requested address is STAGED in `email_pending` and only a tokened link installs it, so a typo cannot silently redirect account-recovery mail. `isDuplicateUsername()` now distinguishes the two indexes. All five call sites branch on it; each answers differently on purpose, because a public form, an IdP callback, a half-completed invite and an admin screen do not owe the same person the same amount of truth. SSO reads the IdP's actual `email_verified`/`verified` claim instead of inferring verification from an address merely being present. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 47c8b37d45 |
feat(email): remove Gmail OAuth2, put SMTP behind a transport registry
Engagement Phase 1 (docs/website/ENGAGEMENT.md §1.2a, §3.1, §3.2). A subtraction and a replacement in one commit, because leaving the OAuth2 flow half-wired across a release is worse than either end state. Deleted, per the §1.2a inventory: GET /admin/email/connect/start and /connect/callback, the connectStart/connectCallback controllers with the email_oauth_tx signed cookie, the PKCE verifier and CSRF nonce plumbing, the https://mail.google.com/ scope, the borrowed `google` auth-providers client, the OAuth2 nodemailer transport with its smtp.gmail.com:465 literals, the refresh-token decrypt in the model, and the client's Connect Gmail button, redirect banner and six Gmail error strings. `provider` and `refresh_token_enc` stay as columns under the additive-only discipline, unread. Added: a mail transport registry (server/src/engagement/transports) with `smtp` as the sole registration. `credentialFields` is the single declaration the admin form renders, the sanitizer filters against, and the "is it secret" answer comes from, so adding a transport is a registration rather than four edits. email_config gains transport / credential_enc (one encrypted JSON blob, since the field list is the transport's to declare) / reply_to. All six call sites keep their exact failure contracts: the contact form's mailto fallback, the invite's copyable link, the reset's generic 200, and sendTeamNotification's never-throws. One deliberate behaviour change: `enabled` now gates every sender rather than only isConfigured() — the connect flow used to set it as a side effect, and with a credential form the toggle has to mean what it says. Send-test becomes the real verification. Under OAuth2 the sender came back from Google and was guaranteed to belong to the credential; operator-typed, it can be refused, so failures name the sender and the SPF/DMARC reason (§1.2a consequence 2). G22, the silent degradation: an upgraded deployment backfills to smtp with no credentials and every sink politely does nothing. The admin dashboard now warns when the deprecated Gmail token is present and no replacement credential is, so the one deployment this happens to is told. A fresh install has never had mail and is not nagged. Guardrails: new `npm run check:hosts` (§3.2 rule 4) with its own self-test, wired into pr-checks before the install; routes.manifest and routes.guards regenerated (-2 routes). Co-Authored-By: Claude <noreply@anthropic.com> |
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| f72c92ffbe |
fix(teams): the two defects the phase 9 rig walk found
Walked against real MariaDB, the real app, and a fake standing in for Discord
that mounts the bot's real internal routes — everything up to the Discord API
call was production code. 47 assertions, and it found two things every unit
test in the phase had passed over.
1. **Every query failed: two result columns named `team_id`.** `desiredTeams`
and `holdersWithoutClaim` both select `t.id AS team_id`, and the shared
column list added `i.team_id` beside it. The `mariadb` driver refuses a
result set with a repeated field name outright, so the pass died at its
first query with "Error in results, duplicate field name `team_id`" — on the
one code path every unit test stubs.
It was also the wrong column: `desiredTeams` LEFT JOINs, so `i.team_id` is
NULL for exactly the Teams that have no channel yet, which is the create
case. The two queries that do not join `teams` now ask for it by name.
The regression test checks the INTERPOLATED sql captured from a fake
`query`, not the source text — in the source the shared list is still a
`${COLUMNS}` placeholder, and a first attempt that read the file passed
happily with the bug reintroduced.
2. **"Sync now" said "Nothing was done" while it was doing it.** Saving the
settings with voice switched on asks for a pass. An operator who then
presses Sync now — the obvious next thing — hit `running` and got back
`ran: false, reason: "a pass is already running"`, which the panel renders
as nothing having happened, while the pass they triggered was busy creating
their channels. A pass in flight is now JOINED and its real outcome
returned, the same choice `teamSync.reconcileNow` makes for the same reason.
Tests: 1162 server (+2), 53 bot, 284 client.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 61abb3ec89 |
feat(teams): phase 9 — one voice channel per Team, granted by a role
TEAMS.md §7.3. Each qualifying Team gets a Discord voice channel of its own
and a role that opens it, kept in step by a reconciler that rides the Team
reconcile it already depends on.
Access is a per-Team ROLE, always. §7.3 designed per-member overwrites with
escalation to a role above ~90 members; the org lead settled on roles always
(2026-08-18), which deletes `voice_overwrite_max`, the escalation and the
`mode` column — and moves the ceiling. Overwrites are capped per channel, so
the old shape's limit was "how big can one Team be"; roles are capped per
guild at 250, so the new one is "how many Teams can have voice at all". That
is a limit an operator must be told about before they hit it, so the panel
reports it and the pass refuses the create rather than letting Discord do it.
Three things §7.3 named that this codebase does not have, all settled by
asking the operator because nothing in the data model can answer:
- "the staff role" — there is no staff-role concept anywhere. Now a list of
role ids the admin designates; empty is a normal answer, since guild
administrators bypass overwrites and what is really missing is a way to
let NON-admin staff in.
- the parent category — §7.3 said the bot creates it and gave the id nowhere
to live (`team_integrations.team_id` is NOT NULL). The bot creates it and
the server stores the id in settings.
- whether the bot can act at all — nothing has ever checked. The operator
invites the bot by hand and no invite URL with a permission integer exists
in the tree, so a deployment can be one unticked box from every call
failing. A preflight is now a PRECONDITION to enabling (422), not a
per-Team error discovered afterwards.
Two more, decided rather than asked:
- the threshold counts every active member, not linked ones. §7.3 wrote
`voice_min_linked_members`; the operator is judging whether a Team is real,
and link state answers a different question.
- hidden Teams are never provisioned. A channel name is a game-sourced string
published outside the site, which is exactly §2.8's concern —
reservedNames.js already names "and eventually a Discord channel name" as a
surface it protects — so the screen that suppresses a Team's page suppresses
its channel, and a Team that becomes hidden takes the grace window.
Turning voice OFF tears nothing down: the pass suspends in both directions and
the panel offers per-row removal. A checkbox must not delete structure in
somebody's guild.
Fixes a phase 8 defect that blocks this phase's own artifact: `npm run swagger`
has been unable to run on `edge` at all. `param('teamId').custom((v) => ... ||
/^[0-9]+$/.test(v))` makes swagger-autogen's parser run away — a regex literal
followed directly by `.test(`. Hoisted to a const, as modules.router.js
already does. Underneath it, `teams.router.js` sits exactly at that parser's
per-file limit: at twenty `teamsRouter.*` statements it dies, at nineteen it
generates, and one more statement of ANY shape tips it — an unannotated route
does, and so does a bare `use`. So the voice routes are their own router file
mounted from `admin/index.js`, and teams.router.js keeps its nineteen.
Also breaks a require cycle this phase would have introduced:
teamSync -> teamVoiceSync -> teams.model -> teamSync left `teams.model` holding
the reconciler's exports object as it stood mid-load — the empty one, since
`module.exports = {…}` replaces rather than fills. The symptom is not in the
new code: it is `teamSync.intervalSeconds is not a function` thrown out of
`syncStatus()`, the freshness banner on every public Team page.
Tests: 1160 server (+40), 53 bot (+21), 284 client (+21). Swagger, routes
manifest and guards regenerated; the guard shape of the four new routes is
byte-identical to the existing admin-only ones.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 11b4368b57 |
feat(teams): phase 8 — the notifications bridge, and the gate §7.2 could not check
The same Team event as §6, delivered a third time: push, email, and now a Discord channel the operator configured. Not a second pipeline — teamNotify.js already computed the recipient set once, so the bridge is a sink beside the two that were there. The design's gate has no data source. §7.2 bridges an event only if "its visibility is public, or its destination channel is configured for a members-only Team context". The four team.* streams carry no visibility; forum threads have no public/members column because a forum is members-only by construction; and core cannot see a Discord channel's permissions. So §7.2's own example config names exactly the two events that are never public. The gate is therefore an attributed operator acknowledgement, in the shape teams_forum_uploads_ack already uses. It is a precondition — 422, not a quiet drop at delivery — it is re-asked at delivery as well as at the save, and changing the channel clears it, because an acknowledgement is about a destination and cannot survive the destination changing underneath it. The design's DDL cannot hold its own default row: MariaDB coerces every PRIMARY KEY column to NOT NULL, so `team_id NULL` — the deployment-wide default every override overrides — is unrepresentable. Proved on a real MariaDB (error 1048). Replaced with a surrogate id, a generated team_key AS IFNULL(team_id, 0) in the unique key, and the foreign key the original had no room for. One-shot, not queued: "identical to announce and mod-reverse" names two different reliability models, and a Team notification is the moment it describes. 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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| 13312d7fc3 |
fix(teams): make "replace the whole set" actually replace it
Found walking the live rig, which is the only place it could be found: every unit
test and the settings screen itself send every row, so the bug was invisible to
both.
`PUT /auth/me/notifications/teams` documents itself as replacing the whole set. It
did not — it wrote the entries it was given and left every other preference
standing. So `{"teams": []}` cleared nothing, which is precisely the body the route
requires the array for: the field is mandatory even when empty so that clearing
everything is expressible, and it was the one thing that did not work.
A Team the caller could have named and did not now returns to its defaults. RESET
rather than deleted, and the difference is `last_digest_at`: that column is the
digest worker's state and not a preference, so dropping the row with it would make
every visit to the settings screen re-open a day-wide digest window and mail
somebody a summary they had already read.
Walked again after the fix on the real database: the empty set clears, an entry
naming a Team the caller is not in is still dropped, and the digest stamp survives.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 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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| 26c23bd603 |
feat(teams): the notification core — four streams, and a recipient set
Phase 6's foundation: the fan-out shape the existing pipeline could not express. `pushDispatch.publish` answers "everyone subscribed to a stream" and "this one owner". Team notifications need "these N users", because Team scoping cannot live in a stream id: the catalog is a static registration validated at boot against a namespaced pattern, so a stream per Team is unexpressible, and stream ids are stored in `notification_subscriptions` rows that would need collecting every time a Team archived. So there are FOUR fixed core streams and the Team lives entirely in the recipient set. `team_notification_prefs` is opt-out for push and opt-IN for email — the two sinks default opposite ways, and the asymmetry lives in the column defaults so no condition anywhere has to remember it. One recipient query serves all four streams, because §6.2's two populations are the same set written twice: "active members with a user_id plus active grants" IS "everyone with resolved forum access". Mutes are subtracted in SQL rather than by the caller — there is no function here that returns an unfiltered set. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 128de0ff2e |
test(teams): phase 5's server surface, and the negative property under it
1008 pass (972 before). The tests worth reading first are the ones that pin a
property no screen would look different without:
* **The edit window is decided on the server, twice.** One test proves the read
path stamps `canEdit` per post per viewer; another proves the WRITE path
re-derives it from `created_at` and refuses a stale edit even though the
client was told it could — because a time-bounded permission must not take its
clock from the party it bounds.
* **A locked thread refuses staff too**, asserted over member, leader and staff
in one loop, at 409 rather than 403: well-formed request, refusing state.
* **delete → restore is reversible for images.** Without the second half of the
pair a restored post returns its words and loses its pictures a retention
window later, silently — the test asserts both calls and that `hide` makes
neither.
* **Post moderation recomputes the thread's counters** rather than nudging them;
the test runs hide → unhide → hide, which is the cycle a delta gets wrong.
* **acceptance: nothing in the report model is reachable by a Team leader.** The
negative property is the whole point of §5.6 and negatives are what nobody
notices going, so it is asserted directly — the module's function surface is
pinned, and `queue`/`handle` are checked not to mention leadership at all. If
a leader-facing queue is ever wanted it is the org lead's decision, and this
test is what makes somebody ask.
* **A report never changes the content it is about**, proved by stubbing every
mutation the forum has to throw. If filing a report touched a status then
"report" would BE moderation, and the first person to work that out would have
found a way to hide anything on the site.
The test suite caught one real defect: `describeTarget` returned `undefined` for a
hard-deleted target, and `undefined` is dropped by JSON.stringify — so the
documented `target: null` would have reached clients as an absent key.
Two phase-4 tests were updated rather than added to, both because phase 5 changed
what they describe: `canPost` split into `canPost` (open a discussion, everyone)
and `canAnnounce` (leaders), and `discussion` is no longer a refused thread type.
Phase 5's four new player routes are added to acceptance criterion 2's list, so
"with the forum off every forum route 404s" keeps covering the whole surface.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| fff14848f1 |
feat(moderation): member-raised abuse reports, to site staff only
TEAMS.md §5.6. **Core has had no user-facing report flow of any kind** — the `moderation`, `mod_notes` and `appeals` tables are all either staff-initiated or Discord-sanction-shaped, and nothing anywhere let a member say "this is a problem". That was survivable while every piece of content on the site came from staff; phase 5 lets players write to each other, so it stops being. The gap has a specific shape: leaders moderate their own Team's forum, and a Team's leaders are exactly the people who will not report their own Team. So the whole point of this queue is a path that routes AROUND a Team's own leadership. Org lead settled it on 2026-08-18: **reports are site administration only** — there is no leader-facing view of this queue, not even a read-only one scoped to their own Team. §5.6's "a leader may also see and act on reports for their own Team" is not implemented and is not deferred. `content_reports` is deliberately generic — `target_type` is a VARCHAR so a wiki page or a news comment becomes a value rather than a table — and the queue is mounted beside appeals under /admin/moderation rather than under Teams, because a staffer working a queue should have one place to work. **§5.6's literal unique key has a defect and this does not copy it.** Written as (target_type, target_id, reporter_user_id, status) it makes CLOSED rows collide with each other too: reporter reports a post, staff dismiss it, the behaviour recurs, they report again — and the second dismissal is an UPDATE into a tuple that already exists, so working the queue starts throwing duplicate-key errors on the first repeat reporter. The key is on a generated `open_marker` instead, the same trick `team_forum_grants.active_marker` uses: 1 while open, NULL once closed, and NULLs are distinct — which is what §5.6's prose asks for, "one open report per (target, reporter)". Two other departures from the doc, both small and both flagged in the docs PR: `handled_note`, because a queue whose resolution reason lives only in an activity_log line is one where the next staffer to see a repeat report cannot find out why the last was dismissed; and a CASCADE on `team_id`, so a deleted Team does not leave a queue full of reports about content that no longer exists. Also here: a report is filed against a target the model verifies really belongs to the Team the request came through, or the queue's per-Team filter would quietly be lying; the queue resolves every row's target in three batched reads rather than N+1, which is §5.6's fourth rule (uploader, size and sniffed type without hunting) actually paying for §5.5.4's attribution table; a target that has since been hard-deleted comes back null and the report still lists, because "somebody reported this and by the time we looked it was gone" is a fact a moderator needs; and every transition writes activity_log, `dismissed` included — a queue where acting is audited and declining to act is not is one where the cheapest way to make a report vanish leaves no trace. `teams_forum_edit_window_minutes` gains its range validation on the admin settings PUT and is seeded at 15, so the value on the settings screen is the value in force. Route manifest and OpenAPI regenerated: 6 operations added, 0 lost. Co-Authored-By: Claude <noreply@anthropic.com> |
|||
| ae0d27cf27 |
feat(teams): discussion threads, replies, the edit window and post moderation
Phase 5's server half — TEAMS.md §5.1's "5b". The schema for all of it landed in
phase 4, so this adds no ALTER: every column it needed (`type`, `locked`,
`edited_at`, `edited_by`, the post table's `status`, the ledger's
`target_type='post'`) was already there waiting.
* `teams_forum_edit_window_minutes` (0…1440, default 15) joins the forum's
settings. It fails closed to ZERO rather than to its default, which is the
opposite of what it looks like it should do: the risk an edit window bounds is
an author rewriting a post out from under a reader quoting it or a moderator
about to act on a report, so the safe answer during a DB fault is "nobody may
edit for the next minute". A stale uploads acknowledgement freezes this key
too — it is a forum setting.
* Thread creation splits its authority BY TYPE, which is what phase 4's comment
said would happen here rather than widening the leader gate. An announcement
stays leader-authored; a discussion is open to every participant, and
"participant" includes a granted non-member with no game identity — path 3
doing its job. `type` still defaults to `announcement`, so a phase-4 client
keeps meaning what it meant.
* Replies refuse three ways with deliberately different codes: 404 for absent or
hidden, 400 for an announcement (which takes no replies by TYPE, not by being
closed), and 409 for locked — well-formed request, refusing state. Locked
refuses staff too; they hold `unlock`, and unlock/post/relock reaches the same
place leaving three ledger rows that say so.
* The edit window is evaluated on the server twice, on purpose. The read path
stamps every post with `canEdit`/`editableUntil` so the client knows whether to
draw the control; the write re-derives it from `created_at` before allowing
anything. A time-bounded permission must not take its clock from the party it
bounds. Staff are not time-bounded, and a staff edit of someone else's words
writes `activity_log` while a member fixing their own typo does not (§5.3).
* Post moderation shares the thread ledger via `target_type='post'`, so
"everything moderated in this Team" stays one query. `pin`/`lock` are refused
by name rather than as unknown actions — they describe a thread's place in a
list and its openness to replies, neither of which a post has. Counters are
RECOMPUTED after each action rather than nudged, because hide → unhide → hide
is a cycle a delta gets wrong the first time a step is retried.
Two fixes to phase 4 code this work reached: `softDeleteUploadsForPost` bound its
two arguments in the wrong order (never fired — nothing called it until post
deletion did), and it had no inverse, so `delete` → `restore` would have returned
a post's words and silently lost its pictures a retention window later.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 5baada08ef |
fix(teams): four defects the live rig found in the forum
None of these could fail a unit test, and three of them break the feature for the operator rather than for the code. **The uploads acknowledgement was a one-way door.** A settings form sends every field it owns, so once `teams_forum_images` was `uploads`, every later save re-sent `uploads` — and the gate fired on the VALUE being present rather than on the mode being SELECTED. The operator could never change a forum setting again, and the thing they would reach for in a hurry, switching the forum off, was exactly what came back 400. The gate now passes when an acknowledgement for the version in force is already on record AND uploads is already the stored mode: there is no new consent to take. A transition INTO uploads still asks, and a reworded notice is still caught by assertSettingsWritable. **An uploaded image could never become a picture.** `uploads` mode hands the composer `/uploads/<name>.png`, the composer puts it in the body as text — the author never writes markup, which is the whole design — and the renderer only rewrites ANCHORS. The linkifier matched absolute http(s) URLs only, so the write path could not produce the anchor the read path looks for, even though `isEmbeddableImageUrl` had accepted those paths since the first commit. The two halves disagreed and only a real upload showed it. **The embed sat beside its link, not beneath it**, because an <img> is inline, and nothing capped a remote image to the column — one post from a host serving a 4000px file would have blown the layout out. Core now emits `class="forum-embed"` and the stylesheet owns both. A class rather than an inline style because the style would then have to survive the client's DOMPurify pass, and its CSS sanitiser is a larger thing to reason about than one class name. **The panel's buttons had no button styling.** `btn-ghost` is a MODIFIER — every other call site in this codebase pairs it with the base `btn` — so alone it contributed colours and no geometry, and the controls rendered as bare boxes. Small inline actions use `pill`, which is what the rest of the admin surface uses for exactly these. Same class of mistake as the Material one in the Android M12 phase: the modifier carries no base. Also: the post body now re-sanitises client-side like every other body-HTML surface on this site, with `ADD_ATTR: ['referrerpolicy']`. That argument is load-bearing — DOMPurify's default allowlist carries `loading` but not `referrerpolicy`, so a plain sanitize() call silently strips the one attribute limiting what a remote embed leaks to the host serving it, which is the privacy property the admin help text promises. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 4ac353684a |
feat(teams): harden the upload path for an uploader who is not an admin
The existing admin upload path is already good for an admin: an 8 MB cap, a mimetype allowlist, a random filename, an extension derived from the mimetype map and never from originalname, and nosniff forced on serve. All of it is kept. What it does not have is anything that assumes a hostile uploader, because until now it has not had one. Magic-byte sniffing, because `file.mimetype` is the client's own Content-Type header — a player can send image/png with arbitrary bytes and land arbitrary content under a .png. Unrecognised bytes are a rejection and never a fallback to what the header claimed. The file is on disk before it can be sniffed, so the rejection path removes it: a rejected upload left on disk is the same disk-exhaustion vector reached another way. A rolling per-account byte quota and a per-IP rate limit, because community uploads with no ceiling is disk exhaustion on the operator's own host. An attribution row per accepted file. Not bookkeeping: the acknowledgement is meaningless if "who uploaded this" cannot be answered afterwards, which is exactly what the operator has just accepted responsibility for. A nightly sweep for soft-deleted files past retention and for never-referenced orphans, in the same in-process shape as the activity prune. It runs whether or not `uploads` is the current mode, and that is the point — an operator who turns uploads off after a problem still has the files, and a sweep that switched itself off with the setting would strand exactly the bytes they were trying to be rid of. It works from the forum's own rows outward and never from the directory listing inward, because UPLOAD_DIR is shared with the admin upload path. Co-Authored-By: Claude <noreply@anthropic.com> |
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| e27c368234 |
feat(teams): the grant flow, announcements, and the routes behind both guards
Path 3's WRITE half. The resolver landed in phase 2; this is who may hand access
out, to whom, and what stops a leader turning a Team forum into open hosting on
the operator's site.
Two authorities, and not one authority with different reach. Staff may act on any
Team, uncapped, and may revoke anything. A leader may grant and revoke ordinary
access on their own Team, is capped at `teams_max_grants_per_team` (default 50),
is rate-limited, and may NOT revoke a staff-issued grant — which is what stops a
leader undoing a moderation decision. The issuer's role is checked at revoke time
rather than stored, so an account that has since lost its staff role stops
protecting the grants it made.
Nothing on this path writes team_members, in either direction. A grant may name any
account, including one with no linked game identity — that is the point of it — and
that account stays off the roster, out of every count, and ineligible for external
platforms.
Announcements are a degenerate thread rather than their own object, so phase 5 adds
no migration. Moderation records WHICH authority was exercised: a staff action also
writes activity_log, a leader's writes only the Team's own ledger. Merging the two
would make a guild leader locking a thread an appealable Discord sanction.
Every forum route answers 404 while the switch is off, and 404 — never 403 — to a
caller with no access: in a private room the contents and the existence are the
same secret. The grant routes deliberately answer even while the forum is OFF,
because a toggle-off revokes no grant and the access list has to stay manageable.
Under /player rather than /admin: a leader is a player, and the /admin tier gate is
requireRole('admin','editor','moderator') — putting a leader endpoint behind it
would mean widening that gate.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 11fd9821bf |
feat(teams): the forum schema, the operator's two switches, and the ack gate
The whole forum schema lands at once — threads, posts, the moderation ledger and upload attribution — including the columns only phase 5's discussion threads use. That is TEAMS.md 5.1's split BY LAYER rather than by feature: phase 5 opens paths instead of migrating data. Three settings keys, and only one of them is ordinary. `teams_forums_enabled` and `teams_forum_images` are enum keys on the existing admin settings endpoint; `teams_forum_images` also carries a server-side PRECONDITION, which is why the three live in their own model rather than in the generic setMany() loop where a reader would never find it. The gate is the server's. `PUT teams_forum_images = 'uploads'` is rejected 400 unless the same request carries the acknowledgement version — the admin checkbox is how the gate is presented, never the gate. What is stored is the TEXT VERSION, so "which wording did they agree to" is answerable later; settings already record updated_by/updated_at, and an activity_log row puts it in the staff audit trail. A reworded notice makes a stored acknowledgement stale, and neither obvious answer is right: uploads KEEP WORKING, and no other forum setting may be saved until it is re-given. Non-destructive, and impossible to ignore. Both reads fail closed. A DB fault reports the forum off and images disabled — a forum that 404s for a minute is the cheap failure; a policy that is not a policy is not. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 5d9d10b245 |
refactor(teams)!: Teams is a contract, not a surface — invert the slots
Org lead's correction, and it changes what this phase ships.
TEAMS.md §3.1 and §3.5 put four public pages and three nav rows in core. They
should never have been core's. **Teams is the platform primitive that the API
contract exposes; the module builds the pages on top of it.** module-uo builds
guilds; the Rust module that comes next builds clans. Core does not own the word
for a Team, so a core page under a noun core invented would have sat beside
module-uo's existing /uo/guilds saying the same thing in the wrong vocabulary.
Removed: /teams, /teams/:slug, /teams/:slug/roster, /player/teams, the public
and portal nav rows, the `teams` feature flag and the core feature provider that
answered it. /admin/teams stays — an operator inspecting the primitive is
looking at the primitive.
Kept, and unchanged: the tables, the reconciler, the access resolver, the
activity feed, the retention prune, the whole public/player/admin API,
optionalAuth and the roster projection. That is the contract, and it is what
this phase was actually for.
**So the extension slots invert, which is a new direction in MODULE_API §3.7.**
`team.overview` and `team.member.row` assumed core rendered the page. In their
place `registry.declareModuleSlot(id, name)` lets a MODULE declare a place on
its own page and core fill it. Core fills `uo.guild.detail` with the Team
activity feed — the one part of that page core cannot hand over, because only
core can resolve whether the viewer is inside the Team and the public/members
split is a security boundary.
Three things about the inverted direction are load-bearing:
- the name is namespaced under the declaring module and that is enforced, not
conventional: it is the only thing keeping two modules off one name;
- core's fills are applied at MOUNT rather than eagerly. Core's bundle
evaluates before every module chunk, so when core registers a fill the slot
does not exist yet — filling eagerly would silently do nothing;
- a fill for a slot nobody declared is a no-op, never an error. The declaring
module is simply not installed, which is the ordinary case. That is the
opposite of §3.7, where an unknown slot throws, and the asymmetry is real:
there, core declares first, so an unknown name is always a typo.
`Slot` becomes the eighth member of the shared UI kit, so a module renders the
place with core's own error boundary. It matters more here than anywhere else in
the kit: the thing being contained is core's content failing inside the module's
page.
`GET /public/teams/by-external/:moduleId/:externalId` is added because a module
names a Team in its own vocabulary and core keys the feed by slug. The module id
is matched rather than trusted — an external id is unique only within a module.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 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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| aa332eda82 |
feat(teams): the activity feed, its two writers and its retention
TEAMS.md Part 4. `team_activity` takes items from two sources and treats them
identically on the read path: core writes its own membership and rename items
with source='core', and a module pushes game items through
`ctx.teams.activity.push`, which stops throwing and starts working.
Core writing here too is deliberate — the rendering path is exercised by core's
own content from day one, so the feed is never empty on a deployment whose
module pushes nothing.
Three rules shape the model:
- core never composes a summary. It arrives already rendered and is stored
verbatim; core cannot phrase "gained 15,000 gold" for a game whose
vocabulary it does not know.
- visibility fails closed. An item with no stated visibility is `members`.
- a push never throws at its call site. It is called from inside a game-event
handler, and a storage problem of core's must not become the module's
control flow.
Core emits four of the five kinds §4.2 names — `core.forum.thread` has nothing
to emit it until the forum lands in phase 4 — and emits none of them for a
Team's FIRST roster: importing a 155-member guild is one Team arriving, not 155
people joining, and a join per member would bury every real event under the
import and reach the row cap on day one.
Retention ships with the feed rather than after someone notices. A nightly
worker applies an age horizon and a per-Team row cap, both settings; either
alone has a hole, since age lets one busy guild write a million rows inside the
window and a cap keeps a dead Team's feed forever.
The sync now reads member ROWS rather than keys, replacing the `memberKeys`
call rather than adding to it: the feed needs each changing member's display
name and prior `is_leader`, and the upsert is about to overwrite both.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| cf2666e5bc |
feat(teams): the Team read API, the moderation routes, and Admin -> Teams
The eighteen routes of docs/website/TEAMS.md §2.11, their OpenAPI annotations,
and the staff screen that drives them.
Two rules shape the read model. Hidden means absent from every public surface --
the index, the lookup and the roster alike, and a hidden Team 404s
indistinguishably from one that does not exist, because "absent" includes not
confirming it is there. And staleness is surfaced rather than silent: every
public payload carries { configured, stale, lastSyncAt }, so a page can say how
recently the projection was confirmed instead of presenting stale data as
current.
The public roster withholds both the member key and the user id -- one is a
game-internal identifier, the other names a site account. `linked` answers the
only question a public page has without publishing which account. The module's
per-audience field projection is phase 3's; this is a conservative core one.
The §2.9 gate is enforced per REQUEST, not per route. A moderator may call all
eighteen; three of them mean something different when they do, and the server
decides from the role it re-validates on every request rather than from a token
claim. The client has no "file as request" argument to get wrong.
Found by booting the real server against the real database, and not by any test:
**the index and the by-slug lookup disagreed about what exists.** listPublic was
keyed on a registered team provider while findBySlug is not, so with no module
installed `/teams` returned an empty list while `/teams/:slug/members` served a
full roster -- the index denying a Team that direct URLs answered for in full.
The rows are core's and they outlive the module that filled them: an uninstalled
module leaves a projection that is unmaintained, not one that stopped existing,
and `configured: false` is how a client learns that. The read side no longer
takes the provider into account at all. There is now a test named for the
property.
Also verified live: the public routes answer anonymously, an unknown and a hidden
slug both 404, the player and admin tiers 401 an anonymous caller, a seeded
roster projects correctly, and the reconciler logs that it is staying idle with
no provider registered rather than failing a boot.
Process obligations, all done: #swagger.* annotations on every route, `npm run
swagger` regenerated (18 paths in the spec, no dangling $refs, and the schemas
they reference added), `npm run routes:manifest` regenerated -- additions only,
184 public routes -- and BACKEND_DESIGN.md updated across the schema section and
all three tier tables.
Admin -> Teams follows the ModulesAdmin precedent: everything that decides what a
row SAYS lives in lib/teamAdmin.js, which is plain JS with tests, and the view
renders it. That split earns itself here specifically -- the screen's job is to
make "the shard has no Teams" and "core has not been able to ask for two hours"
impossible to confuse, and those two produce the same empty table. The four
freshness states are named and tested for exactly that reason, and the last
provider error is shown verbatim rather than paraphrased.
The button labels follow the caller's role: a moderator sees "Request publish",
so the pending result is not a surprise. Hiding is offered to everyone with no
gate, matching the server.
Server 894 passed, client 206 passed, client build clean. 17 route tests, 20
client display tests.
Refs docs/website/TEAMS.md §2.11, Part 12 phase 2
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 8fe2e01466 |
feat(teams): reserved-name screening, auto-hide, and the admin-approval gate
The one place untrusted game data becomes a public page (docs/website/TEAMS.md
§2.8), and the gate on releasing it (§2.9).
A Team's name is written by a player, in the game, with no review, and this
platform turns it into a public page, a URL and eventually a Discord channel
name. Someone naming their guild "Admin" or "<Brand> Staff" gets an
official-looking page on the operator's own site for free.
Hide, never reject. Core cannot refuse a name -- the guild already exists in the
game and core is a mirror of it, not an authority over it. A match hides the Team
from public surfaces and files it in a review queue, and it keeps working
completely for its own members: their forum, their grants, their notifications.
The people in it are not being punished for a name their leader chose.
That asymmetry -- a false positive costs a human glance, a false negative costs
an impersonated staff page -- is what lets the matcher be conservative. It is not
licence to be sloppy the other way: a check that fires on "Badminton" gets
switched off, and then the real cost is paid in full. So matching is whole WORDS
after normalisation, never substrings, following the precedent
scripts/checkModuleIdentifiers.js set for exactly this reason.
Three matcher gaps found by writing the tests, all real impersonation vectors:
- "Guild of Moderators" did not match `moderator`. Only a trailing s off the
WHOLE term is stripped, so "Nomads" still does not match `mod`.
- "G.M." normalises to two single-letter words and matched nothing. A run of
two or more single-letter words is now also offered joined. Deliberately not
a whole-name condensation, which would re-admit substring matching.
- The multi-word condensed form was already handled and is what makes
"RunicGateway" match the two-word term -- the form an impersonator would
reach for, since it is what the Gitea org and every URL use.
Terms resolve at CHECK time, never baked in, so renaming a deployment protects
the new name without a redeploy. A failed settings read falls back to the static
role and project terms rather than to an empty list: screening fewer terms is
bad, screening none is the whole hole.
Re-screening runs on every reconcile, over names no human has ruled on. Names are
immutable per row, so it only ever changes an outcome when the TERM LIST changed
-- an operator adding one, or a rename -- which is exactly what a create-time-only
check would miss forever. `name_reviewed_at` is what makes a staff decision
sticky; without it an override would be undone every fifteen minutes.
The gate is scoped to three actions because they publish untrusted game-sourced
strings, and to nothing else. Ordinary forum grants, leadership overrides,
archives and forum moderation still apply immediately and are audited. A
moderator initiating one files a pending request; an admin applies at once.
Never four-eyes on admins: users.role defaults to admin and `npm run seed`
creates exactly one, so most deployments have precisely one and a second-approver
rule would wedge them with no way out.
Hiding is deliberately NOT gated. Publishing untrusted data needs a second pair
of eyes; withdrawing it needs to be possible at once, by whoever is on duty.
Two concurrency details worth the review: a decision moves the row out of
`pending` under a guard and applies its effect only if the row actually moved,
so two admins clicking approve cannot double-apply or overwrite each other's
record; and a JSON payload is parsed defensively, because the driver returns
JSON columns already parsed on some versions and as a string on others.
Screening is stubbed in the reconciler's own tests -- it is a separate unit, and
the real call reads settings, which this suite must never do against a live
database. That was caught the hard way: the suite went from 11s to hanging, and
the cause was the reconciler reaching a dead pool through the new call.
44 tests in the reconciler file (up from 39), 19 for the matcher, 25 for the
gate. Full suite 877 passed, 0 failed.
Refs docs/website/TEAMS.md §2.8, §2.9, Part 12 phase 2
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| bfd844e8fb |
feat(teams): the four-path access resolver and staff leadership overrides
The four authority paths of docs/website/TEAMS.md §2.5, and the rule that they stay four: four tables answering four questions, and no resolver reads another path's table. 1. Is this account a member? module team_members 2. Does this account lead the Team? module team_members.is_leader + override 3. May it use the Team forum? CORE team_forum_grants OR path 1 4. May it get external access? CORE derived, nothing of its own The temptation this resists is collapsing 1 and 3 into one boolean. They answer different questions about different populations: a forum grant may name any Runic Gateway account, including one with no game identity at all -- that is the point of it, since letting an unlinked guildmate into a forum must not require a staff ticket. Reading "has forum access" as "is a member" would put that person on the public roster, into every membership count, and into the external-platform grant, which is where a modelling preference becomes an impersonation risk. Path 4 is deliberately blind to path 3, and the reason is written down so nobody "fixes" it: an integration cannot verify that an unlinked, forum-granted account corresponds to a real game member, so it must not hand that account a privilege on a platform where impersonation has consequences. A forum is a room on the operator's own site with a known moderator; a Discord role is an identity claim in someone else's space. Leadership overrides are applied ON TOP of the synced value at read time, never written into the projection. The sync owns that column and rewrites it every interval, so an override stored there would be undone fifteen minutes after staff set it -- which is the whole reason §2.5.1 is a separate table. The roster carries both the resolved answer and `is_leader_synced`, so an admin sees that a decision was made rather than being shown it as fact. Three tests are named INVARIANT rather than for behaviour, because what they protect is structural and a reasonable-looking refactor destroys it silently: a grant never writes the membership projection, a granted user is absent from the roster, and a grant does not confer external eligibility. None of those failures appears on a screen as a bug -- the first shows up as a stranger on a public roster, the second as a Discord role handed to an account nobody can tie to a real player. Every unit test here stubs the db layer, so the SQL itself was verified separately: all 44 statements across teams.db.js and teamAccess.db.js were run against MariaDB 11 with a throwaway module id and cleaned up after. That run also confirmed live what the reconciler's tests could only assert against a stub -- an upsert does not overwrite is_leader, a revoked grant frees the unique key for a new one while the ledger keeps both, and an archived team stays resolvable at its old slug while its external_id is free for the successor row. 19 tests. Full suite 828 passed, 0 failed. Refs docs/website/TEAMS.md §2.5, §2.5.1, §2.6, Part 12 phase 2 Co-Authored-By: Claude <noreply@anthropic.com> |
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| 92631347f9 |
feat(teams): the reconciler, its four refusal gates, and ctx.teams (API 1.6.0)
Core's projection of the module's Teams, kept in step (docs/website/TEAMS.md
§2.4), plus the two ctx members a module pushes through.
The four gates are the file, and each is invariant 1 in a different costume --
module unavailability is staleness, never emptiness:
1. getTeams() not ok -> record the failure, touch NOTHING, return.
2. ok but empty, core holds >=1 -> quarantine; apply only if the NEXT
authoritative answer, an interval later,
agrees.
3. getTeamMembers() not ok -> that Team's roster untouched and stale; the
other Teams sync normally.
4. ok but zero members, had some -> the same two-strikes quarantine, per Team.
Gates 2 and 4 exist because an authoritative-looking empty answer during a cold
start is the one failure indistinguishable from a real wipe. "Every Team on the
shard disbanded at once" costs one interval to confirm; getting it wrong empties
every roster on the site.
Events are an optimisation, never the source of truth. Member and leadership
deltas apply at once for a Team core already knows; team.created and
team.disbanded only ask for a run. §2.2 scopes archival to an authoritative full
list, so a repeated or spurious disband event costs a reconcile rather than a
Team -- and a Team invented from a delta would have no name, no roster and no
leaders anyway.
Two columns TEAMS.md did not contemplate, both on `teams`:
- roster_synced_at, because team_sync_state holds one row per MODULE and gate 3
leaves ONE Team behind while the others sync. Without a per-Team stamp that
Team's page would report the module's last success as its own -- exactly the
staleness the gate exists to surface.
- members_empty_since, gate 4's per-Team quarantine. The twin of
team_sync_state.pending_empty_since, which is per module and cannot express it.
One real bug found by its own test. The roster upsert was writing is_leader, so a
refused getTeamLeaders() left every member demoted -- the roster had already
written `leader: false` before the authoritative call was even made. §2.5 is
explicit that path 2 is answered by getTeamLeaders(), so is_leader is now set on
INSERT only (seeding a Team so it is not leaderless while that call fails) and
moved afterwards by setLeaders() alone. Two writers for one column was the whole
defect.
MODULE_API_VERSION 1.6.0 on both halves -- they state one contract and a module
declares one coreApi range. The number covers the whole Team surface per Part 11;
the members arrive by phase. registerTeamProvider, ctx.teams.publish and
ctx.teams.reconcile are live. ctx.teams.activity.push (§4, phase 3) and
api.registerSlashCommands (§7.1, phase 7) are present and THROW with a sentence
naming their phase, rather than being absent or silently accepting data into
tables that do not exist yet.
39 tests here, and the ctx surface guard in moduleLoader.test.js updated -- it
caught the addition, which is what it is for. Server 809 passed, client 192
passed, 0 failed.
Refs docs/website/TEAMS.md §2.2, §2.3, §2.4, Part 11, Part 12 phase 2
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| 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>
|
|||
| 732927a6bb |
fix(modules): three defects a real install exposed (phase 4, slice 1)
Standing the slice-2 screen up against a live server and installing the
published module-uo v0.3.0 through it found three things, none of which any
unit test in this repo could have caught. Two of them are older than this
phase.
1. The boot refresh nulled every install's provenance
--------------------------------------------------------
`installed_modules.source` and `.sha256` exist so the admin panel can say
where a module came from. They never survived a restart.
`lifecycle.boot()` re-records every scanned module with no source and no
sha256 -- correctly, because a scan finds a directory and never where it came
from -- and `upsert` assigned both columns unconditionally. So an install's
provenance lasted exactly until the restart that install asked for, and the
screen then described a module installed from a URL as "placed on the volume
by hand". Verified live: install, restart, provenance gone.
Nothing could have caught it before now. Phase 4 wrote the first non-null
value these columns had ever had, so lifecycle.js's comment asserting that
"recordInstalled leaves what it is not given" described an intention rather
than the statement below it -- and modules.model.test.js's fake reproduced
the defect faithfully, assigning unconditionally just like the SQL.
Fixed with COALESCE(VALUES(col), col): a value overwrites, a NULL leaves what
is there. The fake now matches, and two tests pin both directions -- a boot
refresh must not wipe it, and a re-install from a new URL must still replace
it, or the column would become write-once and an upgrade would for ever show
where the first version came from.
2. The restart killed the server on Windows instead of stopping it
------------------------------------------------------------------
The route called `process.kill(process.pid, 'SIGTERM')` to reach server.js's
graceful-shutdown handler. That works on Linux. **Windows has no POSIX
signals, and Node documents SIGTERM there as unconditional termination of the
target process** -- so on a Windows host the restart killed the server
outright: no module onShutdown, no listener close, no pool close, no log
flush. Observed exactly that: the process was gone and the shutdown handler
had logged nothing at all.
`process.on('SIGTERM', ...)` is an ordinary EventEmitter listener, so
`process.emit('SIGTERM')` reaches the same handler on every platform without
involving the OS. One shutdown path, still; it just gets there by an event.
Deployment is Linux containers and would never have shown this. Development
is not, and neither is the smoke that found it.
The test was worse than useless: it stubbed `process.kill` and asserted it
had been called with SIGTERM, which is precisely the call whose MEANING
differs by platform. It now waits for the SIGTERM EVENT -- what server.js is
actually subscribed to -- so a pass here means the handler would run.
3. `present()` did not publish the running version
--------------------------------------------------
An upgrade writes new files and a new row while the old code stays loaded, so
the row's version is a promise about the next boot rather than a description
of this one. Adds `liveVersion` from the loader beside `liveState`, so the
screen can tell the two apart instead of reporting the new version as running.
723 server tests (+2), manifest and OpenAPI both unchanged.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| f7d27f7a06 |
refactor(client): delete the UO client half (phase 3, slice 3)
35 files and 5,332 lines out — twelve public pages, seven admin views, two player views, eight components, the two `data/` leaves and the three `lib/` ones, plus the two tests that came with them. §2.7.1's estimate of 51 files / ~3,700 lines was measured differently and is corrected in the docs PR. The seams core keeps, each smaller than what it replaced: Nine rows leave the public header and six leave the admin sidebar, and both lists are now free of `feature` gates and of `IconShard`. `moduleTitle` already handled a module page's heading, so the six TITLES entries and the `/admin/characters` branch of `sectionTitle` simply go. `/player` had `PlayerCharacters` as its index — a UO page — and rather than name a replacement or invent a landing screen it now resolves to the first row of the portal nav this viewer can reach (`firstDestinationFor`, beside `allowedPathsFor` and reading the BASE nav for the same reason: an override is presentation and where everybody lands is behaviour). With the module installed that is still Characters, so a player's first screen after signing in does not change. Deliberately generic and deliberately not in the portal layout — the admin index is the same question with a hardcoded answer, and if the two logged-in areas ever become one this is what serves both. `game_account_signup` goes with the rest of core's UO prose: the mode list, the derived public flag, the validation and a Site Settings field whose help text named Bridge.cfg. The row itself is untouched and module-uo reads it through ctx.settings — the data stays, the semantics move. KNOWN BREAK, accepted by the org lead: the shipped Android app reads `gameAccountSignup` off `/public/settings` (PublicDto.kt:80). The field has a `= false` default so nothing crashes; the app silently stops offering game-account creation until it reads the module's `/public/shard/features` instead. Out of scope here, recorded in the Android plan, and it lands well before this workstream's cutover reaches `main`. 620 server + 161 client tests. Manifest 158 public + 2 internal, unchanged; routes.guards unchanged. The OpenAPI spec loses exactly one property, and only because it was hand-written in swagger.js — regeneration alone would have left the spec documenting a field core no longer returns. 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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| 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> |
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| 3add0063bf |
feat(modules): installed_modules and the module state machine
Phase 2 PR 1 of the module system (docs/website/MODULE_SYSTEM.md 2.7). The table and the state machine only: no loader, no routes, no boot wiring, so nothing an operator or a client can see changes and the route manifest diff is zero lines. The five states of 2.4 live in one `state` column: installed -> enabled -> started, with disabled and startup_failed as the recoverable ones. The row is a record of what happened, never the source of truth for what is mounted -- the loader scans the filesystem at require time, before the database is reachable (MODULE_API.md 4.1), which is what keeps routes.manifest.json generatable against a dead database. Two rules the model owns and the boot path will lean on: - Every boot resets each non-disabled row to `enabled` and clears its recorded failure, so a startup_failed module is retried on the next restart and a fixed one recovers with no admin-panel visit. `disabled` is the one operator decision rather than outcome, so it survives untouched -- and a disabled module's failure is a no-op, never a re-enable. - A failure carries the stage it happened at, and every non-failing transition clears it, so a running module can never show a stale reason. An illegal move throws instead of writing a row that misrepresents the state, except on the two boot-path softenings noted above, because one module's failure must never become everybody's. 22 model tests over an in-memory fake; the SQL and the DDL were round-tripped against a real MariaDB separately. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 847cfd2d2b |
feat(theming): brand-asset overrides and a cached, settings-aware HTML shell
Phase 5 of docs/website/THEMING_AND_NAV.md: uploaded logo/hero/favicon overrides on top of the BRAND_* env defaults, delivered through an HTML shell that is no longer built once at boot. - utils/htmlShell.js owns the shell lifecycle: rendered lazily, cached per process, invalidated on a brand_assets/theme_visual write with a 5-minute TTL so other workers converge. A settings-read failure renders the env-only shell and caches that, so a DB outage is not a failing query per page view, and with no rows the output is byte-identical to what app.js served before. - POST /admin/settings/brand-asset/:slot uploads one asset and writes the row in the same call, so an upload never leaves an unreferenced file. It reuses the shared multer allowlist and only tightens it per slot: favicons are PNG-only and capped at 512 KB, logos at 1 MB, heroes at 8 MB. Refused files are unlinked before the response. - utils/brandAssets.js constrains a stored asset to a same-origin path under /uploads, /brand or /assets — these are the only settings values written straight into the page as a URL. Strict on write, forgiving on read. - The shell also carries the resolved theme as a <style id="theme-boot"> block, removing the first-paint flash phases 3-4 deferred; SiteContext drops that block once a successful settings fetch has been applied. - BrandLogo renders beside the MoonDot on all six shells and renders nothing when no logo is set, which is the shipped default. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 3d6b2e23a7 |
feat(theming): server-resolved theme engine and admin appearance UI
Phases 3-4 of docs/website/THEMING_AND_NAV.md. Three presets, the curated font shortlist, and /admin/appearance to drive them. The design put the presets in theme.css as [data-theme] blocks. That does not work: SiteContext writes --accent as an inline style on <html>, which beats any attribute-selector block, so a preset's accent would have been painted over by BRAND_ACCENT_COLOR while getPublic().brand.accent -- the value the Android app themes itself from -- reported the other one. Presets now live in server/src/config/themePresets.js. themeResolve.js layers :root <- preset <- custom per field into a token map, getPublic() returns it as `theme`, and the client writes it onto <html>. One authority for the merge, and brand.accent is by construction the accent the site paints. theme.css's :root is untouched, so an instance with no row gets no theme block and renders as today. Also: presets carry the full 15-token palette (eight would have left Fantasy with blue-grey borders); the option catalog is served from GET /settings/theme/options so the form cannot offer what the server rejects; validation is strict on write and forgiving on read; and the Discord bot now fetches the effective accent instead of its boot-time env copy. Fixes a Phase 0 bug in passing: settings/nav.controller.js imported the logger factory rather than calling it, so a DB fault would have thrown a TypeError inside the catch instead of returning 500. Co-Authored-By: Claude <noreply@anthropic.com> |
|||
| ec0036ce6d |
feat(theming): settings-store, nav merge util and radius tokens
Phases 0-2 of docs/website/THEMING_AND_NAV.md. Groundwork only: no admin UI, no consumer wiring, and an instance that never touches the new settings keys renders exactly as it does today. Phase 0 - settings store: - settingsDb.remove() and DELETE /api/v1/admin/settings/:key, the "reset to default" primitive. Defaults for these keys live in BRAND_* env, theme.css and the hardcoded NAV arrays, so reset has to delete the row rather than store a copy of the default. Allowlisted to the five theming/nav keys plus hero_layout_draft, admin-only, idempotent. - GET /api/v1/settings/nav behind requireAuth with no role gate. AdminLayout renders for editors and moderators and PlayerPortalLayout for players, and none of them can read GET /admin/settings, so without this their nav override would silently never apply. - A fifth router group for it: /public is anonymous, /admin/settings is adminOnly, /player is self-scoped data. This is configuration that needs a login. - parseJsonSetting() in utils/settingsJson.js. settings.value is TEXT, so every JSON key arrives as a string; malformed or wrong-shaped reads as absent, never as an error and never half-applied. - theme_visual / brand_assets / nav_public join PUBLIC_KEYS; nav_admin and nav_player deliberately do not. Phase 1 - client/src/lib/navOverrides.js, the pure merge util. Presentation only: it can set label/order/hidden and (grouped navs) group, and nothing else. It cannot introduce a `to`, cannot touch roles/feature, and hidden:false cannot un-hide anything - the existing filters run afterward, unchanged, and remain the boundary. Phase 2 - promoted 23 border-radius literals in theme.css to four tokens at today's values (14x8px, 4x999px, 4x10px, 1x12px). The 7px/6px editor chrome and the two 50% circles stay literal. --shadow-card and --panel-grad were already tokens. Tests: 16 new server tests, 20 new client tests. The route-manifest guard now also asserts /settings/** sits behind requireAuth. Swagger and both route artifacts regenerated. Co-Authored-By: Claude <noreply@anthropic.com> |
|||
| 01a559792c |
fix(shard): answer with the instance name when the shard is unnamed
ServUO ships Server.cfg with `Name=My Shard`. An operator who never edited it publishes that verbatim, so the rules page read "My Shard" under a header carrying the real name. That value is the shard saying *unnamed* rather than naming anything, so the site now answers with its own. `settings.getInstanceName()` resolves `site_title || BRAND_NAME` — the same resolution `getPublic().brand.name` already uses, so an install that set only the site title can never show two different names on two pages. Bare `brand.name` would have been wrong for exactly that case. Substituted at INGEST rather than on read: world.ruleset is also broadcast live, and the same object is handed to the SSE fan-out, so a read-time fix would be undone by the next reconnect's frame. Matched case- and padding-insensitively but only as a whole value, so a shard genuinely called "My Shard Reborn" keeps its name. Fixes a second ruleset writer found on the way: uoLinkSocket.backfill() called shardState.setRuleset directly instead of going through the dispatcher as ingestEach does, so the boot/reconnect snapshot silently skipped this normalization. The two arrival orders have to produce the same stored frame. Also renders a placeholder row on an unscored leaderboard — the instance name with an em dash where a score goes, deliberately not shaped like an entry (no medal, no bar) because a placeholder that looked like a real standing would be a fabricated one. Presentation only; the API still sends an empty `top`. Verified live against the shard + sidecar: rules page and leaderboards on web and Android both correct. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01U7CBg11prhLimL9iHSX1bP |
|||
| 779a304173 |
feat(shard)!: declare wire protocol 3
The site's declared version is the admin-set uo_link_config.protocol column, so the sidecar's PROTOCOL_VERSION 2 -> 3 bump has to be matched here or every REST call 409s and uoLinkSocket closes the WS on the ws.hello mismatch. Five places carry the number and all five move together: the column default, the model's DEFAULT_PROTOCOL (what a site with nothing saved yet declares), the two `config.protocol || 1` fallbacks in uoLinkClient/uoLinkSocket -- unreachable today, but an unset value quietly sending 1 is exactly the confusing 409 the version check exists to prevent -- the admin form's initial value, and the documented env default. The boot migration is the only subtle part. schema.sql is re-run on EVERY boot, and `protocol` is admin-editable, so a bare UPDATE would silently un-pin an operator who had deliberately pinned an older sidecar in Admin -> Shard. It is therefore gated on a marker row in `settings`, written after the UPDATE: the first boot on this build migrates, every later boot is a no-op. `protocol < 3` rather than `= 2` picks up an install still on the old default of 1, which could not have been talking to a v2 sidecar anyway. A fresh install has no row to update and just gets the marker plus the new column default. Verified against the local MariaDB through ensureSchema (the production path): 2 -> 3 with the marker written and the column default now 3; pinned back to 2 by hand, re-ran, and it STAYED 2 -- the one-shot property holds. 673 server tests, 47 client tests, client build green. Co-Authored-By: Claude <noreply@anthropic.com> |
|||
| 8771a1cf6c |
feat(shard): the player-vendor marketplace
Protocol 3.0 §8, the website half. Ingests vendor.listing / vendor.listing.remove
into shard_vendors + shard_vendor_items, serves a searchable public API over
them, and ships /site/market and /site/market/vendors/:serial.
Three things the pages have to say out loud, all consequences of how the data is
gathered:
- The prices are NOT live. The shard sweeps vendors round-robin, so a shop can be
a full cycle behind. The banner is driven by the OLDEST vendor row, not the
newest — the one stale shop is the one that wastes somebody's trip.
- A shop can be truncated. `total` exceeding `count` means the shop holds more
than the shard publishes per frame; the vendor page says "showing 250 of 3,104"
rather than presenting a partial shop as complete.
- An item may have no name. On a shard with no cliloc table the honest render is
the item id, never an invented label.
## The pre-wired visibility rules, re-checked
Part A pre-wired market.ownerName and market.location before the frame existed,
and the sibling rule it pre-wired for leaderboards (`characterName`) turned out
to be INERT because projectValue matches literal JSON keys. Both market rules
were checked against the real frame this time:
- `ownerName` is a real key. Kept.
- `location` is a real key ONLY because the frame nests it. Flat map/x/y/region
would have made the rule match nothing — the same failure, one part later. It
is nested on the wire and on the read model so one rule hides the facet, the
coordinates, the region and the house together; five flat keys would be five
rules that drift apart.
- `ownerSerial` was ADDED. An admin who hides the owner's name and leaves a
serial that the leaderboards and guild boards resolve back to that same name
has not hidden anything.
Tests assert all three bite, on the stored read model AND on the raw frame —
the market's SSE stream is off by default but an admin can turn it on, and a rule
that worked on only one path is exactly the leak §3.6.1 records.
## Notable
- **No payload column on shard_vendors**, unlike shard_points_boards next door.
The board's top-N is a fixed-size list read whole; here the items ARE the
searchable rows, so they are normalized and nothing is left worth duplicating.
- **display_name is denormalized at ingest** (literal name preferred over the
cliloc — a player set it, so it is more specific). Resolving at query time
would put the cliloc table on the hot path and make search-by-name impossible.
Because the shard's diff sweep will not re-send an unchanged shop just because
the site learned what its items are called, a cliloc import now triggers a bulk
re-resolution — 50 ms per thousand rows, never throws.
- **updated_at is written explicitly** on every upsert. MariaDB does not fire ON
UPDATE CURRENT_TIMESTAMP when every column is written back unchanged, and a
shop re-published identically is still freshly confirmed — without this the
staleness banner would age a perfectly current shop forever.
- **LIKE wildcards in `q` are escaped.** `%` and `_` are LIKE metacharacters, not
SQL ones, so parameterization does not neutralize them: `?q=%` would otherwise
match every listing on the shard.
- **Rate-limited** (60/min/IP), the only limited public read. Every other public
GET is an indexed lookup of bounded size; this is a LIKE scan plus a COUNT over
the largest shard_* table, anonymous by default.
- Reconnect backfill pages /market, bounded by MARKET_SNAPSHOT_MAX = 5000 and
stopping on a short page as well as on `total`, so a concurrent sweep shrinking
the index cannot spin the walk.
## How it was tested
673 server tests pass (27 new). Client builds clean; swagger-output.json,
routes.manifest.json and routes.guards.json regenerated.
Verified full-stack against the live MariaDB and a real shard, not only units:
- 27 real vendors / 1,040 listings swept off the ServUO tree, through the Rust
sidecar, into the site — names resolving through the cliloc table ("longsword",
"katana"), real facets and regions in the filters.
- `?q=sword` 682, `?q=%` and `?q=_` **0** (the escape), map/region/price/sort
filters, paging, and the vendor detail route.
- Visibility live: fields gated to staff vanish for an anonymous caller while
shopName and price survive; audience=player 403s; enabled=0 404s; and
/shard/features correctly drops `market` so the nav hides it.
- Re-publishing a shop smaller leaves no orphan items; an identical re-publish
moves updated_at.
- The limiter fires (38x200 then 32x429 on a 70-request burst).
Not covered by an automated test: the two React pages are presentational and this
repo's client suite covers pure-logic modules only. They were driven against the
live API above, but not rendered in a DOM harness.
Co-Authored-By: Claude <noreply@anthropic.com>
|
|||
| bda031566a |
feat(shard): read clilocs from a source SET so shard items get names
Shards edit items and add new ones, and those carry cliloc ids no stock client
table has. Reading exactly one converted file meant an operator had to
re-export 5 MB every time they added one item — friction enough that the table
would simply go stale, which is the failure the spawn atlas was redesigned to
avoid in the first place.
So this mirrors spawnAtlasSource.readSources(): a BASE (the converted client
table) plus every operator-maintained overlay under `custom/`, all re-read on
every boot and hash-gated as a SET. Later sources win, so an overlay both adds
ids the client never had and overrides stock ones the shard re-purposed.
Adding, editing or removing any overlay counts as drift.
`custom/` is the one convention here that is ours rather than the shard's, and
deliberately so: ServUO has no server-side notion of a custom cliloc — they
live in the patched client a shard distributes, and nothing in the tree
declares them. There is nothing to discover. (An operator who does patch their
client cliloc needs no overlay: convert the patched file and the edits are in
the base.) Scale, measured on the live shard: its script tree references 16,434
cliloc ids and only 37 are absent from stock — tens against a 67k base, which
is why this is an overlay and not a second table.
The set brings back a hazard a single file did not have, and it gets the
atlas's answer. A corrupt source fails the parse loudly, but a source that has
VANISHED parses perfectly and imports a table quietly missing everything it
contributed — an unmounted volume is indistinguishable from a deliberate
deletion. So it is staged, not applied (`needsReview`), reported by both the
import and status(), and accepted with `{approve:true}`. That is a flag rather
than the atlas's approve/reject pair because the atlas stores a pending
decision SO THAT approving re-parses; here nothing is stored, so re-reading at
approval time is automatic.
Also reports a per-source breakdown (entries/added/overrode) on import and in
status, which is how an operator confirms an overlay took effect — "overrode: 0"
on a file meant to re-label stock items says it did not.
Two bugs this surfaced, both found by running a shard-style overlay rather than
by another stock-table fixture:
- displayText tidied punctuation unconditionally, so a custom
"Runic Gateway Sigil (v2)" rendered as "(v2". Stripping leftover brackets is
right after a placeholder is removed and wrong otherwise — the same condition
the `%` rule already had.
- CANDIDATE_NAMES did not include `clilocs.plain`, which is the exact filename
CLILOCS.md and the export tool's README tell operators to write. Pointing at
the directory they were told to create failed with NO_FILE.
Verified end to end against the live MariaDB and a real server boot: base-only
import, overlay adding one id and overriding another (per-source breakdown
correct), unchanged set as a no-op, an edited overlay re-importing and
withdrawing its override, a vanished overlay refused with the table intact,
status reporting missingSources, approve applying it, and a file-path
configuration still finding overlays beside it. All three resolve correctly
through the running server: shard-added, overridden and stock. 646 server tests
pass (16 new in clilocSource.test.js, 3 new in clilocParse.test.js); swagger,
routes.manifest.json and routes.guards.json regenerated.
Co-Authored-By: Claude <noreply@anthropic.com>
|