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7 Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
| 10fde87724 |
feat(events): what an author borrows, and two one-shots (Phase 12b)
Five targeted leases over two planes, the item grant, the world save, and the atlas work the spawner dropdown needed. FIVE LEASES, ONE FACTORY `uo.spawner.maxcount`, `.mindelay`, `.maxdelay`, `.running` and `uo.seasonal.status`. The four callables differ only in which key they name, so they are built rather than repeated: five copies would be five chances for one of them to forget the drift check, which is the one thing §F says a lease must not be allowed to skip. It is `MaxCount`, not the `Amount` EVENTS_PLAN.md named -- there is no such property on ServUO 57.4. `MinDelay`/`MaxDelay` are TimeSpans, so the wire carries SECONDS: the spawn files' own `DelayInSec` flag proves both units are in use on a real tree, and a unit that cannot express five seconds cannot express this shard's own data. The seasonal lease is a THREE-value enum over EIGHT events. §G called `GetEntry(type).Status` "a nine-value enum" and had it backwards: `EventStatus` has three values and it is `EventType` that has nine entries. Eight rather than nine because `TreasuresOfTokuno` is excluded -- `IsActive()` reads its own `DropEra` rather than `Status`, so leasing it would apply cleanly, read back, restore cleanly and do nothing at all. Two behaviours worth the review. `inForce()` reads the frame's `holds` rather than a row's `held` flag, because a catalog walk can enumerate the keys but never the holds on a targeted one. And a target that VANISHED mid-run is a SUCCESSFUL restore: there is nothing to give back, and reporting it failed would leave a ledger row unresolved for ever over an object that is gone -- 12a's `gone` in the lease plane's vocabulary. THE GRANT NAMES A RUN, NEVER A RECIPIENT LIST Core has the participants in `event_run_participants`, but a module cannot read core's tables -- so the alternative was a new core surface handing them over. Not needed: the shard has held the run's ledger since it opened, keyed by the same serials core stores as `member_key`. And the grant is RETRYABLE. §G called it un-retryable because a lost acknowledgement and a grant that never applied were the same event, which is exactly the argument that made `uo.broadcast` answer `retry: false` in Phase 9. Protocol 6's idempotency key closes it. `uo.rewards` counts ITEMS rather than grants: 500 gold to forty people and a candle to forty people are not the same imposition. THE ATLAS KEEPS UniqueId AGAIN, AND THE SPAWNER SOURCE SEARCHES The parser has read `<UniqueId>` and thrown it away since the atlas shipped, on a line citing a committed artifact -- there is no committed artifact, as `spawnAtlasSource.js` says in its own header. It is the ONLY name for one particular spawner that exists off the shard, so a property lease could not have had a dropdown without it. `PARSER_VERSION` -> 4 so an unchanged tree is re-read. `uo.options.spawners` is the first searchable source and the first that had to be: 6,707 spawn points against `MAX_OPTIONS`' 2,000, so a flat list would drop two thirds of the world and say nothing about which two thirds. ONE DEFECT IN ALREADY-MERGED CODE, AND IT WOULD HAVE BROKEN EVERYTHING The protocol pin never left 5. `uo_link_config.protocol` reaches the sidecar as `X-UOLink-Version` on every REST call and an exact mismatch is a 409, so from Phase 11a onward every sidecar call on a real deployment would have been refused -- the whole event plane dead, loudly, for a reason nobody would look here for. 11a took the wire to 6 and 12a to 7; neither moved the pin, in either of the two places this repo declares it. It survived both because both live walks set the column by hand while standing the rig up, which is exactly what makes a migration nobody runs invisible. All three sites go to 7. The test that guards them is worth understanding before trusting it: `schemaFragment.test.js` asserts the three declarations agree WITH EACH OTHER -- a real check they once failed -- but all three being equally stale passes it, and nothing in this repo can anchor it to the wire. Recorded in the model's own header so the next reader knows. CHECKS `npm test`: 620 pass, 0 fail (was 605). `check:imports` and `check:externals` clean; the client builds and its 42 tests pass. `check:swagger` reports the fragment stale -- it is ALREADY stale on `edge` (verified by stashing this branch's changes and re-running) and this phase adds no route, so it is left alone rather than regenerated inside an unrelated change. Two bugs the new tests caught in this branch's own code before it left: `counted()` returns `.count` and the grant read `.value`, so every grant went out with `amount: undefined` and the non-stackable guard never fired; and `optionalInt`'s `ok` was ignored, so a bad hue passed silently instead of refusing. Refs: docs/link/v7.md §11-§14, docs/website/EVENTS_PLAN.md Phase 12b Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016wDDVXWMDz82WqE1i969r4 |
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| 89be9d6a4e |
feat(events): the five world verbs an author sees (Phase 12a)
`uo.creature.spawn`, `uo.boss.spawn`, `uo.npc.place`, `uo.gate.open` and `uo.decor.place`, over protocol 7's one command family. Five actions because five is what an author has; one `perform`/`revert`/`reconcile` because on the wire they are one thing. Five new budget dimensions -- `uo.creatures`, `uo.bosses`, `uo.npcs`, `uo.decor`, `uo.gate.minutes` -- all declared by THIS MODULE (org lead, 2026-09-07). Core meters whatever dimensions a module declares and holds no UO knowledge, which is the whole of what MODULE_API means by game-agnostic. A gate is priced in minutes rather than in gates: one standing all day and twelve standing five minutes each are not the same imposition on a world. `reconcile()` ASKS the shard, and is the one place in this file that must not use `reconcileByBootId`. A crier line lives in shard memory, so a changed `bootId` IS proof it is gone; a spawned creature is in the world SAVE and survives the restart the stamp would report it lost by. Anything `world.owned` does not list is gone -- safe only because the shard's registry and the objects it describes are written by the same save. Teardown reports `gone` as success and `refused` as failed. A creature a player killed is the point of having spawned it, and a run that ended `incomplete` because its event worked would be a report nobody could read. `refused` means the shard denies this run ever owned the serial, so nothing will delete it through this path and the row must land unresolved with a reason. The atlas gains a decoration index, parsed from the shard's own `Data/Decoration/**/*.cfg` -- 120 files, read RECURSIVELY because the real tree nests two deep and a flat read would index a fraction of it while looking like it worked. 313 distinct types. The decor verb resolves through it rather than passing a type name through, which keeps the verb to this shard's own decoration vocabulary AND fetches the item id: `Static` alone accounts for 5031 placements under 1992 different graphics, so a bare type name places the wrong thing. `PARSER_VERSION` -> 3, so an already-imported tree is re-read. Two things the build found in code that had already shipped: `uo.options.creatures` answered with the atlas SLUG -- unique, stable, and not something the shard can build, because a creature is constructed from a ServUO class name and `orc-brute` is not one. The atlas's `name` is the raw type token from the spawn files, so the fix was to stop discarding the half that works. Safe to change because Phase 12a is the source's first consumer; the file said so when it shipped. `uo.npc.place` could not be performed from its own required params. Both ends refuse an oracle with neither a greeting nor a line, but both fields were optional -- so a cross-field rule sat where no authoring form could render it. The greeting is now `required`, which says the same thing in the contract itself. Caught by the existing dry-run sweep, which is a better argument for that test than anything written about it when it shipped. 605 tests pass. `swagger-fragment.json` is stale on `edge` already and this phase adds no route, so it is left alone. Refs: docs/link/v7.md, docs/website/EVENTS_PLAN.md Phase 12a Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_016wDDVXWMDz82WqE1i969r4 |
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| 88bfe9310e |
feat(events): one lease and the participation verbs (Phase 11b)
The UO half of protocol 6 part b. No route added, no schema change, no
MODULE_API bump.
`uo.playercaps.skillcap` is the one lease, and the catalog is short because
ServUO made it short: of the 158 non-Bridge `Config.Get` call sites in
`Scripts/`, roughly eight are read live. This one is read inside
`CharacterCreation.cs`'s per-character path, so it is both live and observable --
which is what "proven" has to mean, since the failure an allowlist exists to
prevent is a key that applies cleanly and changes nothing.
Its `apply()` sends a DURATION rather than the deadline: an absolute time
computed here and honoured there is measured against two clocks, and a shard
running ten minutes fast would restore a ten-minute lease the instant it took it.
Its `restore()` turns `lease.drifted` into `{ drifted: true, current }` rather
than an error, because core records drift as a distinct successful outcome and an
error would put the row on the retry ladder. Its `inForce()` asks whether the
shard still HOLDS the lease, never whether the value still matches -- see the
core PR.
`uo.participation.open` / `.collect` count who took part and file them on the
success envelope. `open` is the one resource in this module that must NOT
reconcile by boot stamp: every other resource here lives in shard memory, so a
changed bootId IS the proof it is gone, while the participation ledger is written
into the world save precisely so it survives that restart. It asks instead.
Co-Authored-By: Claude <noreply@anthropic.com>
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| 57419111e6 |
feat(events): UO wave 1 — the verbs that need no protocol change (Phase 9)
module-uo registers its first event actions: `uo.broadcast`, `uo.towncrier.post` and `uo.news.post`, plus the `uo.broadcasts` budget dimension and the three spawn-atlas option sources. The write plane they use has existed since protocol 2.1; what is new is the declaration that lets the event engine drive it unattended. Three things the tree corrected about the plan: - The plan's `on_failure: 'skip'` for `uo.broadcast` is already the default for `risk: 'notify'`, and `on_failure` is what happens AFTER the retries. The lever a module actually has is the failure envelope, so the action answers `retry: false` to everything — and every action declares `budgetMs: 15000`, because core's 10s default deadline fires before `uoLinkClient`'s 12s timeout and `classify()` answers `retry` for a timeout without asking the module. Without the budget the retry refusal is unreachable. - `reconcile()` needs no protocol work. A shard restart wipes both the crier lines and an event's news article, so `perform()` stamps the shard `bootId` into the resource payload and `reconcile()` reports in force exactly the rows whose stamp still matches — correct for the module's own trigger and for core's boot sweep alike. `shardIngest` fires `ctx.events.reconcile()` on a changed `bootId`, after `recordStatus` so the comparison reads the new boot. - Event articles post under `evt-<idempotencyKey>`, because `newsGump.js` uses the bare website post id and re-pushes that set on every reconnect. `ci/core-ref.json` moves to a website `edge` sha for the length of this workstream: `registerEventActions` exists only from MODULE_API 1.10.0, so under the old `main` pin the module does not load at all. Verified locally — the frozen-manifest rig passes against the new pin. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 268449f2a6 |
feat(teams): answer core's Team provider from the guild board
A UO guild is a Team. This registers module-uo as the authoritative source of
them (MODULE_API 1.6.0, docs/website/TEAMS.md §2.3) and answers the three
questions core asks, from the board and the roster Protocol 4 put there.
`externalId` is the persistent ServUO `Guild.Id`, which survives a rename -- so
core sees "an id whose name changed" and applies its rename rule rather than an
unrelated new guild appearing beside the old one. That mapping is this module's
to make: only the game knows what identity survives what.
The most important code here is the refusal guard, and it is deliberately
conservative. Core's contract is that module unavailability becomes staleness and
never emptiness, and this module is the only thing that can honour it -- an empty
array from here reads as an authoritative "there are none", and core archives
Teams and departs members from an authoritative answer. Three states refuse: no
uo-link configured, the integration disabled, and the socket not connected.
**The third is the one worth arguing about.** The board is durable and survives an
outage, so serving it while disconnected looks harmless. It is not: core cannot
tell a board five minutes stale from one five days stale, and a complete answer
licenses destruction. There is a test named for that.
A fourth refusal has no equivalent anywhere else: a guild whose roster has not
arrived. Protocol 4's roster comes on its own frames, separately from the
`guild.update` that creates the board row, so there is a real window where a
155-member guild has zero roster rows. The board's own `members` count is the only
thing that distinguishes "the roster is late" from "this guild is empty", and it
is checked -- with the count in the refusal message, because it is the evidence.
The other side is tested too: when the board says zero, an empty roster is the
truth and withholding it would freeze a disbanding guild's membership forever.
Two limitations, both honest and both in the code as comments:
- **`rankLabel` is null.** The wire's roster member is the standard actor object
(`serial`, `name`, `player`, `acct?`, `webId?`) and carries no guild rank.
Inventing a label from the leader flag would be core displaying something this
module made up.
- **One leader, not several.** TEAMS.md §2.5 expects multiple leaders from
`GuildRank.Rank >= 4` and core supports them, but Protocol 4 does not put rank
on the wire, so the only leadership visible here is the board's single
`leader_serial`. Raising it to the full set is a protocol change, not
something this module can fix.
`online` comes from `shard_online` rather than the roster, which carries no
per-member presence and only a board-level count -- the same source the public
"who's online" surface already uses. `userId` prefers the roster's own `web_id`
(what the shard asserted at roster time) and falls back to the `shard_account_links`
join for a member whose row predates their link; resolving it here rather than in
core is the contract, since core reading `shard_account_links` would be core
naming a module's table.
`coreApi` stays `^1.3.0` -- 1.6.0 satisfies it, which is what makes the bump minor.
18 provider tests plus two on the entry point: that all three methods are
registered, and that registration performs no query. The second matters because
register() runs while core's app.js is still being required with the pool pointed
at a dead port, which both routeManifest.js and swagger.js depend on.
`fakeApi` gained `registerTeamProvider` with the same `once` rule core applies --
one provider per deployment, so a second registration has to fail here too rather
than passing a shape core rejects at load.
411 -> 413 tests, all passing.
Refs docs/website/TEAMS.md §2.3, Part 12 phase 2
Co-Authored-By: Claude <noreply@anthropic.com>
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| 6b99d7e220 |
test(server): port core's UO suite onto the ctx harness
22 test files moved from core, plus the two that were split out of files core keeps. 351 tests pass. One change runs through every moved test, and it is the boundary rather than a chore: core internals can no longer be stubbed by requiring them, because there are none to require. `../utils/db` and `../model/settings` do not exist here. What a test controls instead is the ctx core would have handed over, installed once by test/_setup.js -- which is a better seam anyway, since it is exactly the surface the contract promises and nothing wider. The ctx _setup installs is deliberately unfrozen. Core freezes what it hands a module and entry.test.js still asserts against a frozen one; but a test that needs settings.get to return a path has to be able to say so. Two tests changed SHAPE, and that is the boundary too. fromShardEvent used to assert through publish() into pushDevices and a captured fetch -- which endpoints were hit, how many requests went out. None of that is this module's any more: publish is ctx.push.publish, and the device registry and the relay are behind it. Reaching for them from here would be reaching past ctx. What remains is what the module owns and is the part worth guarding: a game account resolves to a website user, a personal target that resolves to nobody is dropped rather than published, and a sensitive kind never reaches publish at all. Co-Authored-By: Claude <noreply@anthropic.com> |
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| 5d7668d5ea |
feat(module): the bundle skeleton (phase 3, slice 0)
The first real module. It registers nothing, deliberately: what slice 0 proves
is the delivery path itself, end to end, before a single UO file moves into it.
Server half: module.json, an entry point that takes (ctx, api) and registers
nothing, a test suite built on a fake ctx, and scripts/checkImports.js -- the
MODULE_API.md §5.1 boundary check. Client half: the Vite library build, four
shims re-exporting react / react-dom/client / react-router-dom / jsx-runtime
from window.__rg, an entry that verifies each is identity-equal to core's copy,
and scripts/checkExternals.js. 29 server tests, 9 client tests, both new.
Verified against a real core: the module loads, mounts its zero routes, runs to
`started`, and is published by /api/v1/public/modules. Its chunk serves from
the entry's directory with `Cache-Control: no-cache` while the module's server
source, module.json and package.json all 404. In Chrome, under the enforced
`script-src 'self'`, the chunk evaluates and reports all four shared
dependencies OK, with zero CSP reports and no console errors.
Three findings, each of which had produced a green build that was wrong.
MODULE_API.md §3.6 shows `external` alongside the aliases and they do not
compose. Rollup asks `external` BEFORE Vite's alias resolver runs, so a
specifier in both is marked external and never aliased -- the chunk then ships
bare `import "react"`, which no browser can resolve without an import map, and
CSP forbids one. Built cleanly and emitted exactly that; checkExternals caught
it. So: alias only, `external` empty, and vite.config.js grows a resolution-time
guard that fails the build if a shared dependency resolves into node_modules.
That guard was wrong twice before it worked. Written against Rollup's `load`
hook it never ran -- `load` is first-wins and an earlier plugin had already
claimed the module -- so a deliberately-broken alias produced a 24 kB chunk with
react-router welded in, and a green build. And its forbidden-package list was
derived from the alias list "so the two cannot disagree", which meant deleting
an alias also deleted the guard against what that alias prevented. It states the
contract now, and a test asserts the aliases stay inside it.
checkImports failed on its own documentation the first time it ran: the comment
naming require("../../etc/passwd") as an example of what to catch, and index.js
explaining why the module must never require("express"). A boundary check that
cannot survive being described is one people stop writing comments around. It
strips comments and template literals with a character walk rather than a
regexp, because a URL in a string contains a comment opener and a comment
contains quotes -- and it has its own test suite, since a check never shown to
fail is a check nobody knows the state of.
Co-Authored-By: Claude <noreply@anthropic.com>
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