The hover mini-map said "This asset has a position (2835, 1410) but no level"
for every asset in the product. When 0.11.0 gave LocationMapTooltip a levelid
prop, NONE of its seven call sites were taught to pass one - printer, machine and
PC detail pages, the toner report, enforcement reports, the warranty chip and the
dashboard cards - so the component correctly reported a missing level and the
preview never drew. Two payloads behind those views also emitted mapx/mapy with
no level: the toner report and the enforcement report.
The map PDF export had the ORIGINAL bug still in it: it plotted every filtered
asset onto the sheet, so exporting the ground floor printed second-floor markers
on it. Worse than on screen, because nobody can correct a sheet once it has been
printed and carried onto the floor. It now exports only the level being viewed.
The legacy import loader sent mapleft/maptop with no level at three call sites.
That loader is the one still to run against production, and every marker it
created would have been undrawable. It now resolves the site's default level -
the legacy schema predates levels and has one floor plan, so that is what its
coordinates mean.
THE GATE MISSED ALL OF THIS because it asked whether a FILE mentions 'levelid',
not whether each position does: one module emitted 'mapx' six times and 'levelid'
once and passed. It now checks per occurrence, covers scripts/ as well as shopdb/
and plugins/, and fails any Vue file that binds tooltip coordinates without
:levelid. Both new rules were confirmed to fail the build against planted
violations before being relied on.
Printer QR labels: the asset number is no longer printed. A label now reads name
(8201-HPLaserJetPro), QR, FQDN, then IP. The name falls back to the assetnumber
because that is where sites actually keep it - every printer here has an empty
name field, so preferring the Windows queue name alone would have printed a blank
line on every label.
Two fields on the same page were both labelled "Type": the asset's own, and the
catalog model's. Only one of them was vague. "Model type" already says exactly
what it is; the bare "Type" did not say whose.
So the unqualified one is the one that changes. No new vocabulary, and "Model
type" reads correctly against it:
Type -> Machine Type (machines)
Type -> PC Type (computers)
Type -> Printer Type (printers)
Type -> Device Type (network devices)
Left alone everywhere the word is not ambiguous - measuring tools, subnets,
VLANs, notifications, supply types and the manifest editor have no model type on
screen to be confused with.
This is a labelling change only. It does not address the blank type column on
machines imported from the classic ASP database, which is a data gap the
backfill script fills; renaming a column heading was never going to put values
in it.
Adding a "Model type" row next to "Type" put two rows in the Hardware section
that read identically. They come from different tables - modeltypes is the
catalog-wide list spanning every kind of asset, machinetypes is machine-only -
but the names line up in practice: all 262 machines in the development database
match exactly, which is the same fact that makes the type backfill safe.
So the row now appears only when the two disagree, which is the case worth
seeing: a model catalogued as one thing fitted to an asset recorded as another.
When they agree it says nothing and is hidden. Applied to machines, PCs,
printers and network devices, each compared against its own type table.
An asset that carries a model but no vendor was showing a blank the database
could already answer: the model records its vendor, and both sides reference the
same vendors table. Machines, PCs, printers and network devices now fall back to
it.
The fallback is FLAGGED, not merged silently. to_dict sets vendorfrommodel and
the detail pages render "(from model)" beside the value, because the record
itself is still empty: the edit form shows an empty vendor box, and a page
implying the vendor is stored would be lying about where it came from.
The model's type is exposed under its own name, modeltypename, and shown as a
separate "Model type" row. It is deliberately NOT used to fill in the asset's
own type. modeltypes is the catalog-wide list covering every kind of asset - it
holds "Access Point", "Camera" and "Desktop PC" alongside the machine entries -
so it is a different taxonomy from machinetypes. Only about two thirds of the
names overlap, and mapping one onto the other would mistype the remainder, with
the failure mode being a machine labelled "Desktop PC".
scripts/backfill_vendor_from_model.py writes the derived vendor down for real,
since the display fallback leaves reports that read vendorid still seeing
nothing. It is a dry run unless given --commit, fills only rows where the
asset's vendor is NULL and the model names one, and never overwrites a vendor
somebody chose. It skips a table lacking either column, so it runs against a
server whose network migration has not been applied yet.
Verified against the development database by nulling one machine's vendor inside
a transaction: it was detected as fillable, restored to exactly its original
value, and the rollback left the row untouched.
FLASK_ENV is not forced by the script. The app already reads it from .env, and
overriding it demanded a SECRET_KEY the environment had no reason to supply.
Model image URLs are root-relative (/api/models/image/...), so on an /ops
subpath deploy the raw <img src> resolved to the server root and 404'd. Wrap
every model-image src in withBase(): machine/printer/PC/network detail heroes,
the models settings preview, and the machine-badge / asset-label print pages.
withBase leaves external http(s)/data URLs untouched.
Relocate applications, geenforce, knowledgebase, and machines - each owns only
its own views dir, so a clean move to plugins/<name>/frontend/ (views/ +
routes.js, core imports rewritten to @/). geenforce's entryForm.js helper + its
vitest spec move with it (ManifestEditor imports it as a sibling).
Machinery fixes this batch surfaced:
- routes.gen.js codegen uses namespace imports (import * as p_x). A route file
without a `toplevel` export is undefined on the namespace instead of a strict-
ESM missing-binding build error.
- vitest gains a `pretest` stage so plugin-frontend specs (now under
plugins/<name>/frontend/) run from their staged copy in src/.plugins-staged/.
Verified live: GE-Enforce (the most complex, uses the entryForm sibling helper)
renders fully from its staged frontend. Build + 58 vitest + naming green.