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5 Commits
| Author | SHA1 | Message | Date | |
|---|---|---|---|---|
| 5cdcf0fbb6 |
feat(release): ship an OpenAPI fragment, a frozen manifest and a bundle (phase 3, slice 5)
The three artifacts that make this module installable and checkable, closing
phase 3's extraction. Nothing about what the module serves changes: the same 72
URLs, the same behaviour.
**The OpenAPI fragment (MODULE_API.md §2.8, §6.1a) was never built, on either
side.** The 417 `#swagger` annotations came across in slice 1 and went nowhere,
and core's /api/docs.json merged nothing — so every route this module serves was
in no spec at all, which is core's standing rule ("never ship a route that isn't
in the spec") being broken by the extraction rather than by a route.
`server/scripts/swaggerFragment.js` generates it. The prefixes are DERIVED: the
script runs the module's own `register()` against a recording api and asks
`require.cache` which file each router came from, so a mount prefix exists in one
place — `server/index.js` — and not in a table beside it. The 31 schemas moved
here from core's swagger.js, namespaced `Uo…` because core wins every key
collision in the merge; `Error` and `ValidationError` stay referenced by core's
names, since they resolve in the merged document.
**The frozen route manifest (§5.3)** is derived too, and by subtraction: CI
clones core at the ref pinned in ci/core-ref.json, generates its manifest without
this module and then with it, and the difference is what this module serves. That
buys the half of §5.3 that matters most for free — a module that shadowed or
displaced one of core's routes shows up as a REMOVAL, not merely as an addition
elsewhere. The same job checks the fragment against ground truth: every route
must have an operation and every operation must be a route.
**The release workflow** publishes `module-uo-<version>.tar.gz` plus a manifest
carrying its sha256. The version is declared in module.json rather than computed
from commit subjects, and the workflow never writes to a branch — it tags and
publishes — so `main` needs no push exception. The bundle is assembled from an
include list, because an exclude list ships whatever it forgot.
Four annotation defects, inherited from core and never visible until something
generated a spec from these files: two `requestBody` literals a brace short (the
route documented with an empty body), and two descriptions whose inner quoting
swagger-autogen cannot survive — it re-quotes `"` and a backtick to `'` before
evaluating, so either inside a single-quoted description ends the string early
and the annotation is dropped. It reports each one and then prints Success in
green, so the generator now captures its diagnostics and makes them fatal.
Also fixed while writing it: passing one shared `doc` to swagger-autogen six
times. It renders components.schemas from an EXAMPLE object and writes the result
back into what it was handed, so each pass re-wrapped the last and the fragment
came out at 484 MB.
- 409 server tests (+21), 40 client tests unchanged
- swagger-fragment.json: 69 paths covering all 72 routes
- routes.manifest.json: 72 routes; core's own surface unchanged, 0 removals
- verified end to end by assembling the bundle exactly as CI will, unpacking it
into a real core and regenerating the manifest
Refs: docs/website/MODULE_SYSTEM.md §2.7.1, MODULE_API.md §2.8, §5.3, §6.1a
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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| fe3251a543 |
feat(server): port the UO models, utils and schema fragment
The data half of the extraction: 8 model directories, 13 utils, the shard
stream catalog and the 27-table schema fragment with its purge.
server/core.js is what makes the port a one-line import change per file rather
than a signature change per function. Ported code requires its dependencies at
file scope -- `const { query } = require('../../core')` -- which runs before
register() has been called and before any ctx exists. So every member is a
stable function that resolves ctx when CALLED, and nothing may be destructured
off ctx at init either, because core is free to hand over a getter.
Two helpers are vendored rather than taken from ctx, and the line between them
is the point. utils/excerpt.js is core's deriveExcerpt -- nine lines of pure
text handling. Core's sanitiser next to it was NOT copied: a second copy of a
security control diverges silently the moment either is fixed. announceLinks.js
vendors legError and articleUrl the same way, but baseUrl could not be: core's
reads APP_BASE_URL, and §2.7 forbids a module reading core's environment, so it
comes off ctx.site.baseUrl.
The schema fragment is core's 27 shard_*/uo_link_* statements, verbs CREATE,
ALTER and UPDATE only, every CREATE TABLE guarded. Two of its tables carry a
foreign key INTO users, which is allowed and is why the replay order matters --
core's schema is in place before this runs. The reverse never occurs and must
not: it would make core unable to boot without a module installed.
One real port bug caught by the integration run, not by tests: the atlas art
map resolved `../../../db/data`, which pointed at core's tree when this file
lived there and points outside server/ now. A path that happens to resolve is
exactly what survives a green suite, because the absent-file branch returns {}
and looks like the normal case.
Co-Authored-By: Claude <noreply@anthropic.com>
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| 47809854ef |
fix(module): ask Node whether a specifier is a builtin
The first CI run failed on `node:test`, in every test file, reported as the module boundary being broken. It was not: `builtinModules` omits `test` on Node 20 (CI) and includes it on Node 24 (local), so a list rebuilt from it disagrees with itself across versions. Use `isBuiltin`, which is Node's own answer, and treat the `node:` prefix as sufficient on its own -- a prefixed specifier can never resolve to a package, whatever the running version enumerates. Test covers both forms. Also corrects this file's header: the client half's guard is no longer `external` (it never worked), it is the Vite build's resolution-time check plus checkExternals.js on the built chunk. 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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