Records the slice that closes the extraction, and adds the two documents phase 3 owed: docs/modules/uo/ and the module-rust dry run. **The slice found an obligation neither repo had built.** MODULE_API.md §2.8 and §6.1a settle the OpenAPI fragment in detail — a module ships one, core merges the fragments of started modules into /api/docs.json. Neither half existed, so the 72 URLs module-uo serves were in no spec at all. §2.8 and §6.1a now record what was built, including the four things settled while building it: the filename is fixed rather than declared, a module namespaces what it DEFINES and references core's shared schemas by core's name, the generator derives its prefixes from the module's own register() call, and swagger-autogen's diagnostics have to be captured because it reports a broken annotation and then prints Success. **§5.3 gains the design decision the frozen manifest actually made:** it is a SUBTRACTION, not a prefix filter. Generating the manifest without the module and then with it answers "what does the module serve" AND "did core lose anything", and the second is the one §1.2 promises to the shipped Android app. A module that shadowed a core route cannot appear as an addition anywhere. **BACKEND_DESIGN.md §4.0.1** is new: /api/docs.json is assembled per request, the two generated artifacts are core's alone, and the route count was still 228. **docs/modules/** is new, per §2.10 (module documentation aggregates here, not in module repos): docs/modules/uo/README.md orients a reader on what module-uo serves, owns and needs from an operator, and links out to the feature docs that already existed rather than restating them. **docs/modules/rust-dryrun.md** is phase 3's fourth acceptance criterion. A written, deliberately unimplemented module for Rust — chosen because it wipes monthly, runs several servers rather than one shard, identifies by Steam, and ships RCON so there is no sidecar to write. The contract generalises: same manifest, same seven registration calls, same schema rules, and six of the UI kit's seven members wanted by a game with nothing in common with the one the kit was curated from. It found one real gap — **a module cannot register an identity provider**, and "Sign in with Steam" is what a Rust community expects. Recorded as the first candidate for a future MODULE_API_VERSION bump rather than bolted on: an identity provider participates in session creation, and §2.7's link-only SSO policy has to survive it. Also: website-README.md refreshed from the repo (it was several changes stale), and three settled decisions added (18-20). Pairs with Module-uo#6 and website#141. Co-Authored-By: Claude <noreply@anthropic.com>
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module-rust — a dry run
Phase 3's fourth acceptance criterion (../website/MODULE_SYSTEM.md
§2.7). A written design for a module serving a Rust (Facepunch) community, taken far enough to
find out whether the contract generalises past the game it was extracted from — and deliberately
not implemented. A contract validated only against the module it was carved out of has not been
validated.
The exercise is honest if it finds something. It found four things, one of which is a gap in the contract that a real second module would hit on its first day. They are in Findings at the end; the design comes first, because a finding is only worth anything with the design that produced it.
Rust was chosen because it is unlike Ultima Online in the ways most likely to break assumptions: it wipes every month, a community runs several servers rather than one shard, its identity is Steam, and its server speaks a protocol nobody has to write — RCON over WebSocket, built in. If the contract survives that, "game-agnostic" means something.
Nothing here re-specifies the contract.
../website/MODULE_API.mdis normative; this document only uses it.
1. The manifest
{
"id": "rust",
"name": "Rust",
"version": "0.1.0",
"coreApi": "^1.3.0",
"server": "server/index.js",
"client": { "entry": "client/dist/entry.js" },
"schema": "server/db/schema.sql",
"purge": "server/db/purge.sql",
"mounts": {
"public": ["/rust"],
"admin": ["/rust"],
"player": ["/rust"]
},
"extensions": ["admin.users.detail"],
"capabilities": ["servers", "wipes", "leaderboards", "map", "killfeed", "teams"]
}
One prefix per tier, named for the module rather than for a feature — the opposite of module-uo's
/shard + /atlas + /uo-link, and the better choice for anything new. Module-uo's prefixes are
what they are because §1.2 froze the URLs core already served; a module written today has no such
debt and should claim one obvious segment. It also sidesteps the collision surface entirely:
/shard is a word a second game might want, /rust is not.
2. The server half
module.exports = function register(ctx, api) {
core.init(ctx)
const publicRouter = require('./router/public/rust.router')
const adminRouter = require('./router/admin/rust.router')
const playerRouter = require('./router/player/rust.router')
const userExt = require('./router/admin/usersRust.router')
api.registerRoutes({
public: { '/rust': publicRouter },
admin: { '/rust': adminRouter },
player: { '/rust': playerRouter },
})
api.registerExtension('admin.users.detail', userExt)
api.registerNotificationStreams([
{ id: 'rust.wipe', label: 'Server wipes',
description: 'A server wiped — new map, new seed, everything reset.',
personal: false, requiresLinkedAccount: false },
{ id: 'rust.raid', label: 'Base raided',
description: 'Your base took damage while you were offline.',
personal: true, requiresLinkedAccount: true },
])
api.registerAnnounceLeg({
leg: 'rust.ingame',
label: 'In-game chat',
dispatch: (post) => rcon.say(`[NEWS] ${post.title} — ${ctx.site.baseUrl}/news/${post.slug}`),
classify: (result) => (result.ok ? { outcome: 'done' } : { outcome: 'retry', error: result.error }),
})
api.onBoot(async () => { await rcon.connectAll() })
api.onShutdown(async () => { await rcon.closeAll() })
}
Everything above is a call the contract already has, used the way module-uo uses it. Two details are worth pointing at:
rust.wipeandrust.raidare namespaced, with no grandfathering request. Module-uo's seven bare stream ids are allowlisted because they were innotification_subsbefore the rule existed (§6.5); a new module gets the rule, and the rule is exactly right.- The announce leg goes to in-game chat over RCON, which is a one-shot delivery with retry —
registerAnnounceLeg, notregisterPostHook. The distinction §2.4 draws holds up on a game that has nothing in common with the one it was drawn for.
Tables
rust_servers, rust_wipes, rust_players, rust_player_stats, rust_teams, rust_events,
rust_bans, rust_maps. All rust_-prefixed, all in one idempotent schema.sql fragment.
Every table that holds gameplay data carries a wipe_id. That is the whole shape of the game in
one column: a leaderboard means "since the last wipe", a base means "on this map", and a player's
stats are per-wipe with an all-time rollup kept separately. It has no bearing on the contract —
core replays the fragment and never looks inside — but it is the first thing a UO-shaped mental
model gets wrong, and it is worth writing down for whoever builds this.
Talking to the game
No sidecar. Rust ships RCON over WebSocket, so the module dials the server directly with the
token an admin saved, encrypted at rest through ctx.secretBox.
This is the sharpest test of whether the module system's boundary is drawn in the right place, and it
passes: core has no opinion about how a module reaches its game. What core owns is that the module
never blocks a request on it, that its secrets are encrypted, and that a game being down degrades to
a page saying so. The shard-dials-out invariant that shapes
../link/PLAN.md is a property of ServUO — a game engine with no remote-control
surface, whose plugin must not stall on a socket — not of the platform. A game that ships RCON
already answers the question the sidecar exists to answer.
The Integration Kit (MODULE_SYSTEM.md §2.11) should say this
plainly, or its second reader will build a sidecar they did not need.
3. The client half
registry.registerRoutes('rust', {
public: [
{ path: 'servers', element: <Servers /> },
{ path: 'servers/:id', element: <ServerDetail /> },
{ path: 'servers/:id/map', element: <MapView /> },
{ path: 'leaderboards', element: <Leaderboards /> },
{ path: 'wipes', element: <WipeSchedule /> },
],
player: [
{ path: 'account', element: <LinkedAccount /> },
{ path: 'stats', element: <MyStats /> },
],
admin: [
{ path: 'servers', element: <AdminServers />, gate: { roles: ['admin'] } },
{ path: 'ops', element: <AdminOps />, gate: { roles: ['admin', 'moderator'] } },
],
})
registry.registerNav('rust', {
area: 'public',
items: [
{ label: 'Servers', to: '/rust/servers', group: 'Play', order: 10, icon: ServerIcon },
{ label: 'Leaderboards', to: '/rust/leaderboards', group: 'Play', order: 20, icon: TrophyIcon,
feature: 'leaderboards' },
{ label: 'Wipe schedule', to: '/rust/wipes', group: 'Play', order: 30, icon: CalendarIcon },
],
})
registry.registerFeatureProvider('rust', 'rust', useRustFeatures)
registry.registerExtension('rust', 'admin.users.detail', LinkedSteamAccounts)
Play is a group core does not have; §3.3 appends an unknown group rather than dropping the items,
so this works and lands at the end of the nav — where an operator can move it, because a module row
is an ordinary row once it is interleaved.
The pages need PublicLayout, PageHeader, the three PageState components, useAsync and
useAuth: six of the kit's seven members, and the seventh (useSite) on the wipe-schedule page
for the site's timezone. A second game, unrelated to the first, wanting exactly what the kit
contains is the strongest evidence available that §3.4 was curated at the right altitude.
The map view is the one page that wants something the kit does not have — a pan/zoom canvas. It bundles one, which is the answer §3.4 already gives ("everything else a module bundles itself"), and it costs the chunk about 40 KB.
Findings
1. A module cannot register an identity provider — and Rust's identity is Steam
The gap. Module-uo proves account ownership with an in-game [link command that issues a one-time
code; the website confirms it with the sidecar. Nothing about that needs core's auth layer, so
nothing in api ever needed to touch it.
Rust's answer is Steam OpenID, and every Rust community expects "Sign in with Steam". Core has an
SSO layer — authProviders, userIdentities, OAuth2/OIDC providers behind a registry — and
MODULE_API.md §2.4 offers a module no way in. There is no
registerAuthProvider, and §2.7 forbids reaching for one.
A Rust module can still ship: it can copy the UO shape, issuing a code in-game and matching it on the website. That works, it is one screen worse, and it leaves the community's obvious expectation unmet.
This is not a defect in what was built — it is the boundary of what was specified, found exactly where a dry run is supposed to find it. It is worth stating precisely, because whoever adds it has to answer a question the current policy already has an opinion about: SSO is link-only by design, an external identity must already be linked to an existing account, and identities are never auto-provisioned. A Steam provider a module registers must inherit that, not route around it. It is also not a small addition: an identity provider participates in session creation, which is the one part of core a module must never be able to weaken.
Recommendation: leave it out of v1 of the contract and record it here as the first candidate for
MODULE_API_VERSION 1.4 or 2.0, specified deliberately rather than bolted on when someone needs it.
2. "One module, one game" is not the same as "one module, one server"
A UO community runs one shard. A Rust community runs four or five, wipes them on different schedules, and every page is a per-server view.
The contract is silent on this, and silence turns out to be right: multiplicity lives entirely in the
module's own tables and route parameters (/rust/servers/:id). Core's mount prefixes, capabilities
and state machine are per-module, and none of them wanted to be per-server.
Worth recording only because it looks like a problem until you try it — and because it is the shape
that would have broken a contract designed around "the shard" as a singular noun. The phase-2
inversions that removed core's opinions about game content (the push catalog, the announce legs,
mapEvent dropped) are why it does not.
3. The event catalog generalises; the retention assumption does not
rust_events is the twin of shard_events, and the ingest shape carries over unchanged.
What does not carry over is that a UO event log grows forever while a Rust one is truncated every
wipe. That is module-internal — but it lands on something core does own: the schema fragment
must not be where that truncation happens. §2.6's leading-verb allowlist (CREATE, ALTER,
INSERT, UPDATE) already forbids DELETE and TRUNCATE in a fragment, precisely because the
fragment is replayed on every boot and would empty the table each restart.
So a wipe is a runtime operation on a module route, not a schema one. The allowlist was written for a different reason — the phase-2 note says "the file replays every boot, so TRUNCATE/DELETE would empty a table each restart" — and it correctly forbids the first mistake this module's author would make. A rule that catches a case it was not written for is a rule at the right altitude.
4. capabilities earns its keep the moment there are two modules
With one module, capabilities reads like decoration — core never interprets one, and the SPA knows
what it registered. With two, it is the only thing a client can ask.
The Android app is the case: it feature-detects against GET /api/v1/public/modules and must render
a site whose module it has never heard of. ["servers", "wipes", "leaderboards"] tells it there is
nothing shard-shaped here without it having to know what rust means, and §2.9's rule — treat an
unknown capability as absent, never infer a route from one — is what keeps that from becoming a
second, worse route table.
No change needed. Recorded because the design decision looked over-engineered with one module and is load-bearing with two.
Verdict
The contract generalises. A second game, chosen for how little it shares with the first, is
served by the same module.json, the same seven registration calls, the same schema-fragment rules,
the same client registry and the same UI kit — with one genuine gap (identity providers), one
non-issue that looks like a gap (multiple servers), and two places where a rule written for one
reason turns out to cover another.
The gap is worth having found before something was built on top of it, which is what a dry run is for. What it does not establish is that someone outside this org could build this module from the documentation alone — that is the Integration Kit's acceptance test (§2.11), and it stays untested until a person who did not write any of this does it.