A first-party Rust clan is a Team (R5). This module becomes the site's Team provider and answers core from the plugin's `clans` board. Design of record: docs/modules/rust/PLAN.md §24, D47-D58. - The store: rust_clans, rust_clan_members and rust_clan_boards. A clan's identity is <serverId>:<clanId>:<createdMs> (D52), because the game restarts clan ids whenever its clan database version changes. - The provider (D53): getTeams is complete only when every server's board is fresh, supported and untruncated. It is partial when some are, and refuses when none are. Freshness is judged by the website's clock, from when the board's `t` last advanced. - Only a complete board may mark a clan gone. A board at the game's 100-clan ceiling (D55), or one with an unreadable row, proves nothing about what it leaves out. - Leadership is diffed board to board and published (D54). The five clan events are published as team.* kinds, and written to the Team feed as members-only lines (D49). - Core only writes feed items for a Team it already holds. So the last 10 minutes of clan events are re-offered on each board refresh, deduped by a sha1 key: core clamps a dedupeKey to 40 characters, and a readable key would be truncated into collisions. - projectRoster and the clan page share one audience rule (D48): the clan's linked members and staff by default, re-read from the users row. The setting lives on Admin > Rust visibility, which also warns about uMod Clans (D47) and the ceiling. - Public: GET servers/:id/clans (the list is public, D58) and GET clans/:externalId. The client adds a Clans tab and /rust/clans/:externalId, with three module slots for core's notify, activity and forum contributions (D56). - Linking and unlinking an account ask core to reconcile Teams (D57). - The clan kinds are staff-class in the public feed allowlist. - PROTOCOL_VERSION is now 6. Co-Authored-By: Claude Opus 5.5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01E14m6SuuY6i1vASFeGDBeY
180 lines
8.5 KiB
JavaScript
180 lines
8.5 KiB
JavaScript
// ── The registration handshake ────────────────────────────────────────────
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//
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// The one suite every module should have, whatever else it does. Core validates
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// all of this at boot and refuses to mount a module that fails — so testing it
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// here is the difference between finding out in half a second and finding out on
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// an operator's install.
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const test = require('node:test')
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const assert = require('node:assert')
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const { fakeCtx, fakeApi } = require('./_fakes')
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const manifest = require('../../module.json')
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/** A fresh registration. `core.js` holds a module-level `ctx`, so reset it. */
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function register(ctx = fakeCtx()) {
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require('../core')._reset()
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const api = fakeApi()
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require('../index')(ctx, api)
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return { api, ctx }
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}
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test('registers exactly the mounts module.json declares', () => {
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const { api } = register()
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// Core compares these two and rejects a mismatch in EITHER direction: a prefix
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// declared and never registered is as fatal as a route registered and never
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// declared. Asserting against the manifest rather than against a literal is
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// what keeps the test true after a prefix is added.
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assert.deepStrictEqual(
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Object.keys(api.record.routes).sort(),
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Object.keys(manifest.mounts).sort(),
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)
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for (const [tier, prefixes] of Object.entries(manifest.mounts)) {
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assert.deepStrictEqual(Object.keys(api.record.routes[tier]).sort(), [...prefixes].sort())
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}
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})
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test('all three tiers are mounted (R14)', () => {
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const { api } = register()
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// Not the assertion above restated. That one says the manifest and the code
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// agree; this one says WHICH answer they agree on, so that deleting a tier from
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// both halves at once still fails. R14 puts this module on all three from the
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// start precisely so that a later phase adding a player surface does not have
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// to move an address clients are already calling.
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assert.deepStrictEqual(Object.keys(api.record.routes).sort(), ['admin', 'player', 'public'])
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for (const tier of ['admin', 'player', 'public']) {
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assert.deepStrictEqual(Object.keys(api.record.routes[tier]), ['/rust'])
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}
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})
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test('every registered mount is a real express router', () => {
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const { api } = register()
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for (const byPrefix of Object.values(api.record.routes)) {
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for (const [prefix, router] of Object.entries(byPrefix)) {
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assert.strictEqual(typeof router, 'function', `${prefix} is not a router`)
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assert.ok(router.stack, `${prefix} has no middleware stack`)
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}
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}
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})
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test('prefixes are one segment, lowercase, no parameters', () => {
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// §2.4's rule, restated where a typo is cheap to find. Core enforces it, and a
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// module that fails it does not mount at all.
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for (const prefixes of Object.values(manifest.mounts)) {
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for (const prefix of prefixes) {
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assert.match(prefix, /^\/[a-z0-9][a-z0-9-]*$/, `illegal mount prefix ${prefix}`)
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}
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}
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})
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test('registration touches no database and awaits nothing', () => {
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const ctx = fakeCtx()
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register(ctx)
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// §2.2's first rule. Core requires `app.js` with the pool pointed at a dead
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// port in two build tools, so a query here would hang both — and the symptom is
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// a build that never finishes rather than an error naming this module.
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assert.deepStrictEqual(ctx.db.query.calls, [])
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})
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test('registers both lifecycle hooks', () => {
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const { api } = register()
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assert.strictEqual(typeof api.record.hooks.onBoot, 'function')
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assert.strictEqual(typeof api.record.hooks.onShutdown, 'function')
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})
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test('the manifest declares what the loader requires', () => {
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assert.match(manifest.id, /^[a-z][a-z0-9-]{1,31}$/)
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assert.match(manifest.version, /^\d+\.\d+\.\d+/)
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assert.ok(manifest.coreApi, 'coreApi is required — it is the version check')
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// Declaring a schema without a purge is refused: a module that can create
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// tables and cannot drop them leaves an operator with orphaned data.
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if (manifest.schema) assert.ok(manifest.purge, 'a schema fragment requires a purge file')
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// The chunk must be in a SUBDIRECTORY — the directory it sits in is what core
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// serves, so an entry in the module root would publish the whole module.
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if (manifest.client) assert.ok(manifest.client.entry.includes('/'), 'client.entry must be in a subdirectory')
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})
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test('the manifest declares no extension slot it does not fill', () => {
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const { api } = register()
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// §11.3 of the plan reads `extensions` as "declared, and held against reality
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// by the loader". Only the first half is true: the loader checks that a named
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// slot EXISTS (`registries.hasSlot`) and never checks that the module went on
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// to fill it — `checkDeclared` covers `mounts` alone. So a declaration with
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// nothing behind it loads cleanly and means nothing, which is exactly why this
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// module does not write one until it has an extension to register.
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//
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// The other half of that correction: `admin.users.detail` is the ONLY server
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// slot core declares. `site.footer.status` is a CLIENT slot and is registered
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// from the chunk — naming it here would fail the load with
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// `unknown extension slot "site.footer.status"`.
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const declared = manifest.extensions || []
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const filled = api.record.extensions.map((e) => e.slot)
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assert.deepStrictEqual([...declared].sort(), [...filled].sort())
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})
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test('the Team provider is registered, whole, with the page core links to (phase 9)', () => {
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const { api } = register()
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const provider = api.record.teamProvider
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// The three required methods, the optional fourth (D48's roster audience),
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// and the fifth member, which is DATA: core substitutes `{externalId}` and
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// nothing else, so the page cannot be nested under its server (D56).
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for (const name of ['getTeams', 'getTeamMembers', 'getTeamLeaders', 'projectRoster']) {
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assert.strictEqual(typeof provider[name], 'function', `${name} must be a function`)
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}
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assert.strictEqual(provider.pageUrlTemplate, '/rust/clans/{externalId}')
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})
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test('nothing is registered that has nothing behind it yet', () => {
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const { api } = register()
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// The phase-1 statement, written down so that removing it is deliberate. A
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// declared trigger nothing emits and a declared slot nothing fills are both
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// surfaces an operator can configure and then wait on — worse than an absent
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// one, because the absence is visible. Each of these arrives with the phase
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// that has something real to put in it, and this assertion is what that phase
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// deletes. Phase 9 deleted the Team provider's line.
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assert.strictEqual(api.record.triggers, null)
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assert.strictEqual(api.record.audiences, null)
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assert.strictEqual(api.record.engagementSeeds, null)
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assert.strictEqual(api.record.streams, null)
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assert.strictEqual(api.record.eventBudgets, null)
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assert.strictEqual(api.record.eventOptionSources, null)
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assert.strictEqual(api.record.eventLeases, null)
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assert.strictEqual(api.record.eventActions, null)
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})
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test('the module’s protocol version agrees with the manifest it ships beside', () => {
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const sidecar = require('../sidecarClient')
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// The wire version is declared in three repos — here, `PROTOCOL_VERSION` in
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// the sidecar, and `overlay.toml` in the plugin overlay — and nothing in one
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// repo can check the other two. What CAN be checked is that this repo says one
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// thing: the number the client sends is the number an operator sees on a
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// freshly created server row, so a bump that edits one and not the other
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// configures every new server against a version the client does not speak.
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assert.strictEqual(typeof sidecar.PROTOCOL_VERSION, 'number')
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assert.ok(sidecar.PROTOCOL_VERSION >= 1)
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})
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test('an identity capability is declared, and it is the module id (phase 5, D16)', () => {
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// Core flattens every started module's capabilities into ONE list, so a client
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// asking "is this module installed" needs a string only this module can
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// declare. `servers` is not that string — it names a surface, and another
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// module could name it too — which is the whole reason this one exists beside
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// the five surface words.
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//
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// It is asserted against `manifest.id` rather than against the literal "rust"
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// so that the two cannot drift: the day the id changes, the capability a
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// client gates a whole navigation group on has to change with it.
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assert.ok(
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manifest.capabilities.includes(manifest.id),
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`module.json must declare "${manifest.id}" as a capability — it is the only string a client can` +
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' use to tell this module apart from any other, and the Android app gates its Rust rows on it',
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)
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})
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