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Author SHA1 Message Date
d4d5989926 feat(atlas): the spawn atlas reads the shard, not the shard's filesystem (Phase 7)
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`spawnAtlasSource.js` gains a second backend behind its existing interface
(docs/link/v8.md 10). Where a shard is linked and enabled the tree arrives over
the sidecar; where there is none, a local ServUO tree is read exactly as before.
An explicit --servuo path is an instruction and overrules both.

The parsers do not move. spawnAtlasParse.js is still pure, still fs-free and
still CI-covered without a ServUO tree anywhere near it; `buildFromFiles` is now
where the parse starts, and both readers feed it the same shape.

treeBridge.js walks the manifest and then the chunks. Three of its checks are
not decoration -- each is a way this ends in a tree that LOOKS imported, and XML
is forgiving enough that a mis-assembled spawn file parses cleanly and simply
has fewer spawns in it:

  - every chunk re-declares its address and carries the hash of its own
    uncompressed bytes, and chunks are placed by declared index rather than
    arrival order
  - the whole file is hashed after reassembly against its manifest row
  - the catalog must not move mid-walk, or the import is refused rather than
    stitched out of two trees

Boot does not call the shard. The same answer 17.7 gave the cliloc table, and
the same reasoning: a local tree hashes in ~120 ms and skips, while a round trip
in the boot sequence would answer "no" on every restart that did not follow a
map edit. Editing spawn files is an operator action, so importing is one --
Admin -> Spawn Atlas -> Import. What that costs is real and is said out loud in
the panel, the CLI and the log: an install on the bridge has NO automatic
refresh at all.

Two things the live walk found that the unit tests could not:

  - PARSER_VERSION 4 -> 5. The parse is order-sensitive in one place -- the
    decoration index keeps the FIRST item id it sees for a type -- and the two
    readers agreed on a stock tree by coincidence, since the filesystem reader
    walks each directory with localeCompare while the shard sorts whole relative
    paths. buildFromFiles now sorts by label, ordinally, once, whatever order
    the files arrived in. Identical input, a different answer for a handful of
    types: exactly what the version number exists to push through the hash gate.
    The parity test asserted deepEqual, which ignores key order; it now asserts
    serialised equality too.
  - The source fingerprint is taken over RAW BYTES at both ends. Hashing decoded
    text hashes a UTF-8 re-encoding -- identical for valid UTF-8, different for a
    file that is not, because an undecodable byte becomes U+FFFD and never comes
    back. One Latin-1 character in a creature name would have made the drift gate
    report a change on every import, forever, with the tree untouched.

A 200 from assets.sources also stopped meaning "the client files are on offer":
a shard may now serve its configuration tree while declining to serve its UO
client. Both client-file readers check `assetsEnabled` and say DISABLED, instead
of reading an empty file list as "your client has no cliloc.enu" and sending an
operator to their client install for a setting that lives on their shard.

Measured end to end against a live shard and the real sidecar: 141 files,
11.9 MB, 158 chunks, 3 pages, 1.33 MB on the wire, 512 ms; every file
byte-identical to disk; and the atlas built over the bridge identical to the one
built off it -- 6,455 points, 800 creatures, 387 regions, 558 landmarks,
25 champions, 309 decoration types.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_016wDDVXWMDz82WqE1i969r4
2026-09-14 02:00:43 -05:00
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>
2026-08-11 12:06:26 -05:00